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b2441318 1// SPDX-License-Identifier: GPL-2.0
1da177e4
LT
2/*
3 * linux/fs/super.c
4 *
5 * Copyright (C) 1991, 1992 Linus Torvalds
6 *
7 * super.c contains code to handle: - mount structures
8 * - super-block tables
9 * - filesystem drivers list
10 * - mount system call
11 * - umount system call
12 * - ustat system call
13 *
14 * GK 2/5/95 - Changed to support mounting the root fs via NFS
15 *
16 * Added kerneld support: Jacques Gelinas and Bjorn Ekwall
17 * Added change_root: Werner Almesberger & Hans Lermen, Feb '96
18 * Added options to /proc/mounts:
96de0e25 19 * Torbjörn Lindh (torbjorn.lindh@gopta.se), April 14, 1996.
1da177e4
LT
20 * Added devfs support: Richard Gooch <rgooch@atnf.csiro.au>, 13-JAN-1998
21 * Heavily rewritten for 'one fs - one tree' dcache architecture. AV, Mar 2000
22 */
23
630d9c47 24#include <linux/export.h>
1da177e4 25#include <linux/slab.h>
1da177e4 26#include <linux/blkdev.h>
1da177e4
LT
27#include <linux/mount.h>
28#include <linux/security.h>
1da177e4
LT
29#include <linux/writeback.h> /* for the emergency remount stuff */
30#include <linux/idr.h>
353ab6e9 31#include <linux/mutex.h>
5477d0fa 32#include <linux/backing-dev.h>
ceb5bdc2 33#include <linux/rculist_bl.h>
c515e1fd 34#include <linux/cleancache.h>
40401530 35#include <linux/fsnotify.h>
5accdf82 36#include <linux/lockdep.h>
6e4eab57 37#include <linux/user_namespace.h>
6d59e7f5 38#include "internal.h"
1da177e4
LT
39
40
15d0f5ea
AV
41static LIST_HEAD(super_blocks);
42static DEFINE_SPINLOCK(sb_lock);
1da177e4 43
5accdf82
JK
44static char *sb_writers_name[SB_FREEZE_LEVELS] = {
45 "sb_writers",
46 "sb_pagefaults",
47 "sb_internal",
48};
49
b0d40c92
DC
50/*
51 * One thing we have to be careful of with a per-sb shrinker is that we don't
52 * drop the last active reference to the superblock from within the shrinker.
53 * If that happens we could trigger unregistering the shrinker from within the
54 * shrinker path and that leads to deadlock on the shrinker_rwsem. Hence we
55 * take a passive reference to the superblock to avoid this from occurring.
56 */
0a234c6d
DC
57static unsigned long super_cache_scan(struct shrinker *shrink,
58 struct shrink_control *sc)
b0d40c92
DC
59{
60 struct super_block *sb;
0a234c6d
DC
61 long fs_objects = 0;
62 long total_objects;
63 long freed = 0;
64 long dentries;
65 long inodes;
b0d40c92
DC
66
67 sb = container_of(shrink, struct super_block, s_shrink);
68
69 /*
70 * Deadlock avoidance. We may hold various FS locks, and we don't want
71 * to recurse into the FS that called us in clear_inode() and friends..
72 */
0a234c6d
DC
73 if (!(sc->gfp_mask & __GFP_FS))
74 return SHRINK_STOP;
b0d40c92 75
eb6ef3df 76 if (!trylock_super(sb))
0a234c6d 77 return SHRINK_STOP;
b0d40c92 78
d0407903 79 if (sb->s_op->nr_cached_objects)
4101b624 80 fs_objects = sb->s_op->nr_cached_objects(sb, sc);
0e1fdafd 81
503c358c
VD
82 inodes = list_lru_shrink_count(&sb->s_inode_lru, sc);
83 dentries = list_lru_shrink_count(&sb->s_dentry_lru, sc);
f6041567 84 total_objects = dentries + inodes + fs_objects + 1;
475d0db7
TH
85 if (!total_objects)
86 total_objects = 1;
0e1fdafd 87
0a234c6d 88 /* proportion the scan between the caches */
f6041567 89 dentries = mult_frac(sc->nr_to_scan, dentries, total_objects);
bc3b14cb 90 inodes = mult_frac(sc->nr_to_scan, inodes, total_objects);
503c358c 91 fs_objects = mult_frac(sc->nr_to_scan, fs_objects, total_objects);
b0d40c92 92
0a234c6d
DC
93 /*
94 * prune the dcache first as the icache is pinned by it, then
95 * prune the icache, followed by the filesystem specific caches
49e7e7ff
VD
96 *
97 * Ensure that we always scan at least one object - memcg kmem
98 * accounting uses this to fully empty the caches.
0a234c6d 99 */
49e7e7ff 100 sc->nr_to_scan = dentries + 1;
503c358c 101 freed = prune_dcache_sb(sb, sc);
49e7e7ff 102 sc->nr_to_scan = inodes + 1;
503c358c 103 freed += prune_icache_sb(sb, sc);
0a234c6d
DC
104
105 if (fs_objects) {
49e7e7ff 106 sc->nr_to_scan = fs_objects + 1;
4101b624 107 freed += sb->s_op->free_cached_objects(sb, sc);
b0d40c92
DC
108 }
109
eb6ef3df 110 up_read(&sb->s_umount);
0a234c6d
DC
111 return freed;
112}
113
114static unsigned long super_cache_count(struct shrinker *shrink,
115 struct shrink_control *sc)
116{
117 struct super_block *sb;
118 long total_objects = 0;
119
120 sb = container_of(shrink, struct super_block, s_shrink);
121
d23da150 122 /*
eb6ef3df 123 * Don't call trylock_super as it is a potential
d23da150
TC
124 * scalability bottleneck. The counts could get updated
125 * between super_cache_count and super_cache_scan anyway.
126 * Call to super_cache_count with shrinker_rwsem held
503c358c 127 * ensures the safety of call to list_lru_shrink_count() and
d23da150
TC
128 * s_op->nr_cached_objects().
129 */
0a234c6d 130 if (sb->s_op && sb->s_op->nr_cached_objects)
4101b624 131 total_objects = sb->s_op->nr_cached_objects(sb, sc);
0a234c6d 132
503c358c
VD
133 total_objects += list_lru_shrink_count(&sb->s_dentry_lru, sc);
134 total_objects += list_lru_shrink_count(&sb->s_inode_lru, sc);
0a234c6d 135
55f841ce 136 total_objects = vfs_pressure_ratio(total_objects);
0e1fdafd 137 return total_objects;
b0d40c92
DC
138}
139
853b39a7
ON
140static void destroy_super_work(struct work_struct *work)
141{
142 struct super_block *s = container_of(work, struct super_block,
143 destroy_work);
144 int i;
145
146 for (i = 0; i < SB_FREEZE_LEVELS; i++)
8129ed29 147 percpu_free_rwsem(&s->s_writers.rw_sem[i]);
853b39a7
ON
148 kfree(s);
149}
150
151static void destroy_super_rcu(struct rcu_head *head)
152{
153 struct super_block *s = container_of(head, struct super_block, rcu);
154 INIT_WORK(&s->destroy_work, destroy_super_work);
155 schedule_work(&s->destroy_work);
156}
157
0200894d
AV
158/* Free a superblock that has never been seen by anyone */
159static void destroy_unused_super(struct super_block *s)
5accdf82 160{
0200894d
AV
161 if (!s)
162 return;
163 up_write(&s->s_umount);
7eb5e882
AV
164 list_lru_destroy(&s->s_dentry_lru);
165 list_lru_destroy(&s->s_inode_lru);
7eb5e882 166 security_sb_free(s);
6e4eab57 167 put_user_ns(s->s_user_ns);
7eb5e882 168 kfree(s->s_subtype);
0200894d
AV
169 /* no delays needed */
170 destroy_super_work(&s->destroy_work);
5accdf82
JK
171}
172
1da177e4
LT
173/**
174 * alloc_super - create new superblock
fe2bbc48 175 * @type: filesystem type superblock should belong to
9249e17f 176 * @flags: the mount flags
6e4eab57 177 * @user_ns: User namespace for the super_block
1da177e4
LT
178 *
179 * Allocates and initializes a new &struct super_block. alloc_super()
180 * returns a pointer new superblock or %NULL if allocation had failed.
181 */
6e4eab57
EB
182static struct super_block *alloc_super(struct file_system_type *type, int flags,
183 struct user_namespace *user_ns)
1da177e4 184{
11b0b5ab 185 struct super_block *s = kzalloc(sizeof(struct super_block), GFP_USER);
b87221de 186 static const struct super_operations default_op;
7eb5e882
AV
187 int i;
188
189 if (!s)
190 return NULL;
1da177e4 191
b5bd856a 192 INIT_LIST_HEAD(&s->s_mounts);
6e4eab57 193 s->s_user_ns = get_user_ns(user_ns);
ca0168e8
AV
194 init_rwsem(&s->s_umount);
195 lockdep_set_class(&s->s_umount, &type->s_umount_key);
196 /*
197 * sget() can have s_umount recursion.
198 *
199 * When it cannot find a suitable sb, it allocates a new
200 * one (this one), and tries again to find a suitable old
201 * one.
202 *
203 * In case that succeeds, it will acquire the s_umount
204 * lock of the old one. Since these are clearly distrinct
205 * locks, and this object isn't exposed yet, there's no
206 * risk of deadlocks.
207 *
208 * Annotate this by putting this lock in a different
209 * subclass.
210 */
211 down_write_nested(&s->s_umount, SINGLE_DEPTH_NESTING);
b5bd856a 212
7eb5e882
AV
213 if (security_sb_alloc(s))
214 goto fail;
7b7a8665 215
7eb5e882 216 for (i = 0; i < SB_FREEZE_LEVELS; i++) {
8129ed29
ON
217 if (__percpu_init_rwsem(&s->s_writers.rw_sem[i],
218 sb_writers_name[i],
219 &type->s_writers_key[i]))
7eb5e882 220 goto fail;
1da177e4 221 }
7eb5e882 222 init_waitqueue_head(&s->s_writers.wait_unfrozen);
df0ce26c 223 s->s_bdi = &noop_backing_dev_info;
7eb5e882 224 s->s_flags = flags;
cc50a07a 225 if (s->s_user_ns != &init_user_ns)
67690f93 226 s->s_iflags |= SB_I_NODEV;
7eb5e882
AV
227 INIT_HLIST_NODE(&s->s_instances);
228 INIT_HLIST_BL_HEAD(&s->s_anon);
e97fedb9 229 mutex_init(&s->s_sync_lock);
7eb5e882 230 INIT_LIST_HEAD(&s->s_inodes);
74278da9 231 spin_lock_init(&s->s_inode_list_lock);
6c60d2b5
DC
232 INIT_LIST_HEAD(&s->s_inodes_wb);
233 spin_lock_init(&s->s_inode_wblist_lock);
7eb5e882 234
2acb60a0 235 if (list_lru_init_memcg(&s->s_dentry_lru))
7eb5e882 236 goto fail;
2acb60a0 237 if (list_lru_init_memcg(&s->s_inode_lru))
7eb5e882 238 goto fail;
7eb5e882
AV
239 s->s_count = 1;
240 atomic_set(&s->s_active, 1);
241 mutex_init(&s->s_vfs_rename_mutex);
242 lockdep_set_class(&s->s_vfs_rename_mutex, &type->s_vfs_rename_key);
bc8230ee 243 init_rwsem(&s->s_dquot.dqio_sem);
7eb5e882
AV
244 s->s_maxbytes = MAX_NON_LFS;
245 s->s_op = &default_op;
246 s->s_time_gran = 1000000000;
3cb29d11 247 s->cleancache_poolid = CLEANCACHE_NO_POOL;
7eb5e882
AV
248
249 s->s_shrink.seeks = DEFAULT_SEEKS;
250 s->s_shrink.scan_objects = super_cache_scan;
251 s->s_shrink.count_objects = super_cache_count;
252 s->s_shrink.batch = 1024;
2acb60a0 253 s->s_shrink.flags = SHRINKER_NUMA_AWARE | SHRINKER_MEMCG_AWARE;
1da177e4 254 return s;
5ca302c8 255
7eb5e882 256fail:
0200894d 257 destroy_unused_super(s);
7eb5e882 258 return NULL;
1da177e4
LT
259}
260
261/* Superblock refcounting */
262
263/*
35cf7ba0 264 * Drop a superblock's refcount. The caller must hold sb_lock.
1da177e4 265 */
c645b930 266static void __put_super(struct super_block *s)
1da177e4 267{
c645b930
AV
268 if (!--s->s_count) {
269 list_del_init(&s->s_list);
270 WARN_ON(s->s_dentry_lru.node);
271 WARN_ON(s->s_inode_lru.node);
272 WARN_ON(!list_empty(&s->s_mounts));
273 security_sb_free(s);
274 put_user_ns(s->s_user_ns);
275 kfree(s->s_subtype);
276 call_rcu(&s->rcu, destroy_super_rcu);
1da177e4 277 }
1da177e4
LT
278}
279
280/**
281 * put_super - drop a temporary reference to superblock
282 * @sb: superblock in question
283 *
284 * Drops a temporary reference, frees superblock if there's no
285 * references left.
286 */
f47ec3f2 287static void put_super(struct super_block *sb)
1da177e4
LT
288{
289 spin_lock(&sb_lock);
290 __put_super(sb);
291 spin_unlock(&sb_lock);
292}
293
294
295/**
1712ac8f 296 * deactivate_locked_super - drop an active reference to superblock
1da177e4
LT
297 * @s: superblock to deactivate
298 *
bd7ced98 299 * Drops an active reference to superblock, converting it into a temporary
1712ac8f 300 * one if there is no other active references left. In that case we
1da177e4
LT
301 * tell fs driver to shut it down and drop the temporary reference we
302 * had just acquired.
1712ac8f
AV
303 *
304 * Caller holds exclusive lock on superblock; that lock is released.
1da177e4 305 */
1712ac8f 306void deactivate_locked_super(struct super_block *s)
1da177e4
LT
307{
308 struct file_system_type *fs = s->s_type;
b20bd1a5 309 if (atomic_dec_and_test(&s->s_active)) {
3167760f 310 cleancache_invalidate_fs(s);
b0d40c92 311 unregister_shrinker(&s->s_shrink);
28f2cd4f 312 fs->kill_sb(s);
f5e1dd34 313
c0a5b560
VD
314 /*
315 * Since list_lru_destroy() may sleep, we cannot call it from
316 * put_super(), where we hold the sb_lock. Therefore we destroy
317 * the lru lists right now.
318 */
319 list_lru_destroy(&s->s_dentry_lru);
320 list_lru_destroy(&s->s_inode_lru);
321
1da177e4
LT
322 put_filesystem(fs);
323 put_super(s);
1712ac8f
AV
324 } else {
325 up_write(&s->s_umount);
1da177e4
LT
326 }
327}
328
1712ac8f 329EXPORT_SYMBOL(deactivate_locked_super);
1da177e4 330
74dbbdd7 331/**
1712ac8f 332 * deactivate_super - drop an active reference to superblock
74dbbdd7
AV
333 * @s: superblock to deactivate
334 *
1712ac8f
AV
335 * Variant of deactivate_locked_super(), except that superblock is *not*
336 * locked by caller. If we are going to drop the final active reference,
337 * lock will be acquired prior to that.
74dbbdd7 338 */
1712ac8f 339void deactivate_super(struct super_block *s)
74dbbdd7 340{
1712ac8f
AV
341 if (!atomic_add_unless(&s->s_active, -1, 1)) {
342 down_write(&s->s_umount);
343 deactivate_locked_super(s);
74dbbdd7
AV
344 }
345}
346
1712ac8f 347EXPORT_SYMBOL(deactivate_super);
74dbbdd7 348
1da177e4
LT
349/**
350 * grab_super - acquire an active reference
351 * @s: reference we are trying to make active
352 *
353 * Tries to acquire an active reference. grab_super() is used when we
354 * had just found a superblock in super_blocks or fs_type->fs_supers
355 * and want to turn it into a full-blown active reference. grab_super()
356 * is called with sb_lock held and drops it. Returns 1 in case of
357 * success, 0 if we had failed (superblock contents was already dead or
acfec9a5
AV
358 * dying when grab_super() had been called). Note that this is only
359 * called for superblocks not in rundown mode (== ones still on ->fs_supers
360 * of their type), so increment of ->s_count is OK here.
1da177e4 361 */
9c4dbee7 362static int grab_super(struct super_block *s) __releases(sb_lock)
1da177e4
LT
363{
364 s->s_count++;
365 spin_unlock(&sb_lock);
366 down_write(&s->s_umount);
e462ec50 367 if ((s->s_flags & SB_BORN) && atomic_inc_not_zero(&s->s_active)) {
acfec9a5
AV
368 put_super(s);
369 return 1;
370 }
1da177e4
LT
371 up_write(&s->s_umount);
372 put_super(s);
1da177e4
LT
373 return 0;
374}
375
12ad3ab6 376/*
eb6ef3df 377 * trylock_super - try to grab ->s_umount shared
331cbdee 378 * @sb: reference we are trying to grab
12ad3ab6 379 *
eb6ef3df 380 * Try to prevent fs shutdown. This is used in places where we
12ad3ab6 381 * cannot take an active reference but we need to ensure that the
eb6ef3df
KK
382 * filesystem is not shut down while we are working on it. It returns
383 * false if we cannot acquire s_umount or if we lose the race and
384 * filesystem already got into shutdown, and returns true with the s_umount
385 * lock held in read mode in case of success. On successful return,
386 * the caller must drop the s_umount lock when done.
387 *
388 * Note that unlike get_super() et.al. this one does *not* bump ->s_count.
389 * The reason why it's safe is that we are OK with doing trylock instead
390 * of down_read(). There's a couple of places that are OK with that, but
391 * it's very much not a general-purpose interface.
12ad3ab6 392 */
eb6ef3df 393bool trylock_super(struct super_block *sb)
12ad3ab6 394{
12ad3ab6 395 if (down_read_trylock(&sb->s_umount)) {
eb6ef3df 396 if (!hlist_unhashed(&sb->s_instances) &&
e462ec50 397 sb->s_root && (sb->s_flags & SB_BORN))
12ad3ab6
DC
398 return true;
399 up_read(&sb->s_umount);
400 }
401
12ad3ab6
DC
402 return false;
403}
404
1da177e4
LT
405/**
406 * generic_shutdown_super - common helper for ->kill_sb()
407 * @sb: superblock to kill
408 *
409 * generic_shutdown_super() does all fs-independent work on superblock
410 * shutdown. Typical ->kill_sb() should pick all fs-specific objects
411 * that need destruction out of superblock, call generic_shutdown_super()
412 * and release aforementioned objects. Note: dentries and inodes _are_
413 * taken care of and do not need specific handling.
c636ebdb
DH
414 *
415 * Upon calling this function, the filesystem may no longer alter or
416 * rearrange the set of dentries belonging to this super_block, nor may it
417 * change the attachments of dentries to inodes.
1da177e4
LT
418 */
419void generic_shutdown_super(struct super_block *sb)
420{
ee9b6d61 421 const struct super_operations *sop = sb->s_op;
1da177e4 422
c636ebdb
DH
423 if (sb->s_root) {
424 shrink_dcache_for_umount(sb);
60b0680f 425 sync_filesystem(sb);
e462ec50 426 sb->s_flags &= ~SB_ACTIVE;
efaee192 427
74278da9 428 fsnotify_unmount_inodes(sb);
a1a0e23e 429 cgroup_writeback_umount();
63997e98
AV
430
431 evict_inodes(sb);
1da177e4 432
7b7a8665
CH
433 if (sb->s_dio_done_wq) {
434 destroy_workqueue(sb->s_dio_done_wq);
435 sb->s_dio_done_wq = NULL;
436 }
437
1da177e4
LT
438 if (sop->put_super)
439 sop->put_super(sb);
440
63997e98 441 if (!list_empty(&sb->s_inodes)) {
7b4fe29e
DJ
442 printk("VFS: Busy inodes after unmount of %s. "
443 "Self-destruct in 5 seconds. Have a nice day...\n",
444 sb->s_id);
1da177e4 445 }
1da177e4
LT
446 }
447 spin_lock(&sb_lock);
448 /* should be initialized for __put_super_and_need_restart() */
a5166169 449 hlist_del_init(&sb->s_instances);
1da177e4
LT
450 spin_unlock(&sb_lock);
451 up_write(&sb->s_umount);
c1844d53 452 if (sb->s_bdi != &noop_backing_dev_info) {
fca39346
JK
453 bdi_put(sb->s_bdi);
454 sb->s_bdi = &noop_backing_dev_info;
fca39346 455 }
1da177e4
LT
456}
457
458EXPORT_SYMBOL(generic_shutdown_super);
459
460/**
6e4eab57 461 * sget_userns - find or create a superblock
1da177e4
LT
462 * @type: filesystem type superblock should belong to
463 * @test: comparison callback
464 * @set: setup callback
9249e17f 465 * @flags: mount flags
6e4eab57 466 * @user_ns: User namespace for the super_block
1da177e4
LT
467 * @data: argument to each of them
468 */
6e4eab57 469struct super_block *sget_userns(struct file_system_type *type,
1da177e4
LT
470 int (*test)(struct super_block *,void *),
471 int (*set)(struct super_block *,void *),
6e4eab57 472 int flags, struct user_namespace *user_ns,
1da177e4
LT
473 void *data)
474{
475 struct super_block *s = NULL;
d4730127 476 struct super_block *old;
1da177e4
LT
477 int err;
478
e462ec50 479 if (!(flags & (SB_KERNMOUNT|SB_SUBMOUNT)) &&
a001e74c
EB
480 !(type->fs_flags & FS_USERNS_MOUNT) &&
481 !capable(CAP_SYS_ADMIN))
482 return ERR_PTR(-EPERM);
1da177e4
LT
483retry:
484 spin_lock(&sb_lock);
d4730127 485 if (test) {
b67bfe0d 486 hlist_for_each_entry(old, &type->fs_supers, s_instances) {
d4730127
MK
487 if (!test(old, data))
488 continue;
6e4eab57
EB
489 if (user_ns != old->s_user_ns) {
490 spin_unlock(&sb_lock);
0200894d 491 destroy_unused_super(s);
6e4eab57
EB
492 return ERR_PTR(-EBUSY);
493 }
d4730127
MK
494 if (!grab_super(old))
495 goto retry;
0200894d 496 destroy_unused_super(s);
d4730127
MK
497 return old;
498 }
1da177e4
LT
499 }
500 if (!s) {
501 spin_unlock(&sb_lock);
e462ec50 502 s = alloc_super(type, (flags & ~SB_SUBMOUNT), user_ns);
1da177e4
LT
503 if (!s)
504 return ERR_PTR(-ENOMEM);
505 goto retry;
506 }
dd111b31 507
1da177e4
LT
508 err = set(s, data);
509 if (err) {
510 spin_unlock(&sb_lock);
0200894d 511 destroy_unused_super(s);
1da177e4
LT
512 return ERR_PTR(err);
513 }
514 s->s_type = type;
515 strlcpy(s->s_id, type->name, sizeof(s->s_id));
516 list_add_tail(&s->s_list, &super_blocks);
a5166169 517 hlist_add_head(&s->s_instances, &type->fs_supers);
1da177e4
LT
518 spin_unlock(&sb_lock);
519 get_filesystem(type);
b0d40c92 520 register_shrinker(&s->s_shrink);
1da177e4
LT
521 return s;
522}
523
6e4eab57
EB
524EXPORT_SYMBOL(sget_userns);
525
526/**
527 * sget - find or create a superblock
528 * @type: filesystem type superblock should belong to
529 * @test: comparison callback
530 * @set: setup callback
531 * @flags: mount flags
532 * @data: argument to each of them
533 */
534struct super_block *sget(struct file_system_type *type,
535 int (*test)(struct super_block *,void *),
536 int (*set)(struct super_block *,void *),
537 int flags,
538 void *data)
539{
540 struct user_namespace *user_ns = current_user_ns();
541
93faccbb
EB
542 /* We don't yet pass the user namespace of the parent
543 * mount through to here so always use &init_user_ns
544 * until that changes.
545 */
e462ec50 546 if (flags & SB_SUBMOUNT)
93faccbb
EB
547 user_ns = &init_user_ns;
548
6e4eab57 549 /* Ensure the requestor has permissions over the target filesystem */
e462ec50 550 if (!(flags & (SB_KERNMOUNT|SB_SUBMOUNT)) && !ns_capable(user_ns, CAP_SYS_ADMIN))
6e4eab57
EB
551 return ERR_PTR(-EPERM);
552
553 return sget_userns(type, test, set, flags, user_ns, data);
554}
555
1da177e4
LT
556EXPORT_SYMBOL(sget);
557
558void drop_super(struct super_block *sb)
559{
560 up_read(&sb->s_umount);
561 put_super(sb);
562}
563
564EXPORT_SYMBOL(drop_super);
565
ba6379f7
JK
566void drop_super_exclusive(struct super_block *sb)
567{
568 up_write(&sb->s_umount);
569 put_super(sb);
570}
571EXPORT_SYMBOL(drop_super_exclusive);
572
01a05b33
AV
573/**
574 * iterate_supers - call function for all active superblocks
575 * @f: function to call
576 * @arg: argument to pass to it
577 *
578 * Scans the superblock list and calls given function, passing it
579 * locked superblock and given argument.
580 */
581void iterate_supers(void (*f)(struct super_block *, void *), void *arg)
582{
dca33252 583 struct super_block *sb, *p = NULL;
01a05b33
AV
584
585 spin_lock(&sb_lock);
dca33252 586 list_for_each_entry(sb, &super_blocks, s_list) {
a5166169 587 if (hlist_unhashed(&sb->s_instances))
01a05b33
AV
588 continue;
589 sb->s_count++;
590 spin_unlock(&sb_lock);
591
592 down_read(&sb->s_umount);
e462ec50 593 if (sb->s_root && (sb->s_flags & SB_BORN))
01a05b33
AV
594 f(sb, arg);
595 up_read(&sb->s_umount);
596
597 spin_lock(&sb_lock);
dca33252
AV
598 if (p)
599 __put_super(p);
600 p = sb;
01a05b33 601 }
dca33252
AV
602 if (p)
603 __put_super(p);
01a05b33
AV
604 spin_unlock(&sb_lock);
605}
606
43e15cdb
AV
607/**
608 * iterate_supers_type - call function for superblocks of given type
609 * @type: fs type
610 * @f: function to call
611 * @arg: argument to pass to it
612 *
613 * Scans the superblock list and calls given function, passing it
614 * locked superblock and given argument.
615 */
616void iterate_supers_type(struct file_system_type *type,
617 void (*f)(struct super_block *, void *), void *arg)
618{
619 struct super_block *sb, *p = NULL;
620
621 spin_lock(&sb_lock);
b67bfe0d 622 hlist_for_each_entry(sb, &type->fs_supers, s_instances) {
43e15cdb
AV
623 sb->s_count++;
624 spin_unlock(&sb_lock);
625
626 down_read(&sb->s_umount);
e462ec50 627 if (sb->s_root && (sb->s_flags & SB_BORN))
43e15cdb
AV
628 f(sb, arg);
629 up_read(&sb->s_umount);
630
631 spin_lock(&sb_lock);
632 if (p)
633 __put_super(p);
634 p = sb;
635 }
636 if (p)
637 __put_super(p);
638 spin_unlock(&sb_lock);
639}
640
641EXPORT_SYMBOL(iterate_supers_type);
642
ba6379f7 643static struct super_block *__get_super(struct block_device *bdev, bool excl)
1da177e4 644{
618f0636
KK
645 struct super_block *sb;
646
1da177e4
LT
647 if (!bdev)
648 return NULL;
618f0636 649
1da177e4 650 spin_lock(&sb_lock);
618f0636
KK
651rescan:
652 list_for_each_entry(sb, &super_blocks, s_list) {
a5166169 653 if (hlist_unhashed(&sb->s_instances))
551de6f3 654 continue;
618f0636
KK
655 if (sb->s_bdev == bdev) {
656 sb->s_count++;
1da177e4 657 spin_unlock(&sb_lock);
ba6379f7
JK
658 if (!excl)
659 down_read(&sb->s_umount);
660 else
661 down_write(&sb->s_umount);
df40c01a 662 /* still alive? */
e462ec50 663 if (sb->s_root && (sb->s_flags & SB_BORN))
618f0636 664 return sb;
ba6379f7
JK
665 if (!excl)
666 up_read(&sb->s_umount);
667 else
668 up_write(&sb->s_umount);
df40c01a 669 /* nope, got unmounted */
618f0636 670 spin_lock(&sb_lock);
df40c01a
AV
671 __put_super(sb);
672 goto rescan;
1da177e4
LT
673 }
674 }
675 spin_unlock(&sb_lock);
676 return NULL;
677}
678
6b6dc836 679/**
ba6379f7 680 * get_super - get the superblock of a device
6b6dc836
JK
681 * @bdev: device to get the superblock for
682 *
683 * Scans the superblock list and finds the superblock of the file system
ba6379f7 684 * mounted on the device given. %NULL is returned if no match is found.
6b6dc836 685 */
ba6379f7
JK
686struct super_block *get_super(struct block_device *bdev)
687{
688 return __get_super(bdev, false);
689}
690EXPORT_SYMBOL(get_super);
691
692static struct super_block *__get_super_thawed(struct block_device *bdev,
693 bool excl)
6b6dc836
JK
694{
695 while (1) {
ba6379f7 696 struct super_block *s = __get_super(bdev, excl);
5accdf82 697 if (!s || s->s_writers.frozen == SB_UNFROZEN)
6b6dc836 698 return s;
ba6379f7
JK
699 if (!excl)
700 up_read(&s->s_umount);
701 else
702 up_write(&s->s_umount);
5accdf82
JK
703 wait_event(s->s_writers.wait_unfrozen,
704 s->s_writers.frozen == SB_UNFROZEN);
6b6dc836
JK
705 put_super(s);
706 }
707}
ba6379f7
JK
708
709/**
710 * get_super_thawed - get thawed superblock of a device
711 * @bdev: device to get the superblock for
712 *
713 * Scans the superblock list and finds the superblock of the file system
714 * mounted on the device. The superblock is returned once it is thawed
715 * (or immediately if it was not frozen). %NULL is returned if no match
716 * is found.
717 */
718struct super_block *get_super_thawed(struct block_device *bdev)
719{
720 return __get_super_thawed(bdev, false);
721}
6b6dc836
JK
722EXPORT_SYMBOL(get_super_thawed);
723
ba6379f7
JK
724/**
725 * get_super_exclusive_thawed - get thawed superblock of a device
726 * @bdev: device to get the superblock for
727 *
728 * Scans the superblock list and finds the superblock of the file system
729 * mounted on the device. The superblock is returned once it is thawed
730 * (or immediately if it was not frozen) and s_umount semaphore is held
731 * in exclusive mode. %NULL is returned if no match is found.
732 */
733struct super_block *get_super_exclusive_thawed(struct block_device *bdev)
734{
735 return __get_super_thawed(bdev, true);
736}
737EXPORT_SYMBOL(get_super_exclusive_thawed);
738
4504230a
CH
739/**
740 * get_active_super - get an active reference to the superblock of a device
741 * @bdev: device to get the superblock for
742 *
743 * Scans the superblock list and finds the superblock of the file system
744 * mounted on the device given. Returns the superblock with an active
d3f21473 745 * reference or %NULL if none was found.
4504230a
CH
746 */
747struct super_block *get_active_super(struct block_device *bdev)
748{
749 struct super_block *sb;
750
751 if (!bdev)
752 return NULL;
753
1494583d 754restart:
4504230a
CH
755 spin_lock(&sb_lock);
756 list_for_each_entry(sb, &super_blocks, s_list) {
a5166169 757 if (hlist_unhashed(&sb->s_instances))
551de6f3 758 continue;
1494583d 759 if (sb->s_bdev == bdev) {
acfec9a5 760 if (!grab_super(sb))
1494583d 761 goto restart;
acfec9a5
AV
762 up_write(&sb->s_umount);
763 return sb;
1494583d 764 }
4504230a
CH
765 }
766 spin_unlock(&sb_lock);
767 return NULL;
768}
dd111b31 769
df40c01a 770struct super_block *user_get_super(dev_t dev)
1da177e4 771{
618f0636 772 struct super_block *sb;
1da177e4 773
1da177e4 774 spin_lock(&sb_lock);
618f0636
KK
775rescan:
776 list_for_each_entry(sb, &super_blocks, s_list) {
a5166169 777 if (hlist_unhashed(&sb->s_instances))
551de6f3 778 continue;
618f0636
KK
779 if (sb->s_dev == dev) {
780 sb->s_count++;
1da177e4 781 spin_unlock(&sb_lock);
618f0636 782 down_read(&sb->s_umount);
df40c01a 783 /* still alive? */
e462ec50 784 if (sb->s_root && (sb->s_flags & SB_BORN))
618f0636
KK
785 return sb;
786 up_read(&sb->s_umount);
df40c01a 787 /* nope, got unmounted */
618f0636 788 spin_lock(&sb_lock);
df40c01a
AV
789 __put_super(sb);
790 goto rescan;
1da177e4
LT
791 }
792 }
793 spin_unlock(&sb_lock);
794 return NULL;
795}
796
1da177e4
LT
797/**
798 * do_remount_sb - asks filesystem to change mount options.
799 * @sb: superblock in question
e462ec50 800 * @sb_flags: revised superblock flags
1da177e4
LT
801 * @data: the rest of options
802 * @force: whether or not to force the change
803 *
804 * Alters the mount options of a mounted file system.
805 */
e462ec50 806int do_remount_sb(struct super_block *sb, int sb_flags, void *data, int force)
1da177e4
LT
807{
808 int retval;
c79d967d 809 int remount_ro;
4504230a 810
5accdf82 811 if (sb->s_writers.frozen != SB_UNFROZEN)
4504230a
CH
812 return -EBUSY;
813
9361401e 814#ifdef CONFIG_BLOCK
e462ec50 815 if (!(sb_flags & SB_RDONLY) && bdev_read_only(sb->s_bdev))
1da177e4 816 return -EACCES;
9361401e 817#endif
4504230a 818
e462ec50 819 remount_ro = (sb_flags & SB_RDONLY) && !sb_rdonly(sb);
d208bbdd 820
0aec09d0 821 if (remount_ro) {
fdab684d 822 if (!hlist_empty(&sb->s_pins)) {
0aec09d0 823 up_write(&sb->s_umount);
fdab684d 824 group_pin_kill(&sb->s_pins);
0aec09d0
AV
825 down_write(&sb->s_umount);
826 if (!sb->s_root)
827 return 0;
828 if (sb->s_writers.frozen != SB_UNFROZEN)
829 return -EBUSY;
e462ec50 830 remount_ro = (sb_flags & SB_RDONLY) && !sb_rdonly(sb);
0aec09d0
AV
831 }
832 }
833 shrink_dcache_sb(sb);
834
1da177e4
LT
835 /* If we are remounting RDONLY and current sb is read/write,
836 make sure there are no rw files opened */
d208bbdd 837 if (remount_ro) {
4ed5e82f 838 if (force) {
eee5cc27
AV
839 sb->s_readonly_remount = 1;
840 smp_wmb();
4ed5e82f
MS
841 } else {
842 retval = sb_prepare_remount_readonly(sb);
843 if (retval)
844 return retval;
4ed5e82f 845 }
1da177e4
LT
846 }
847
848 if (sb->s_op->remount_fs) {
e462ec50 849 retval = sb->s_op->remount_fs(sb, &sb_flags, data);
2833eb2b
MS
850 if (retval) {
851 if (!force)
4ed5e82f 852 goto cancel_readonly;
2833eb2b
MS
853 /* If forced remount, go ahead despite any errors */
854 WARN(1, "forced remount of a %s fs returned %i\n",
855 sb->s_type->name, retval);
856 }
1da177e4 857 }
e462ec50 858 sb->s_flags = (sb->s_flags & ~MS_RMT_MASK) | (sb_flags & MS_RMT_MASK);
4ed5e82f
MS
859 /* Needs to be ordered wrt mnt_is_readonly() */
860 smp_wmb();
861 sb->s_readonly_remount = 0;
c79d967d 862
d208bbdd
NP
863 /*
864 * Some filesystems modify their metadata via some other path than the
865 * bdev buffer cache (eg. use a private mapping, or directories in
866 * pagecache, etc). Also file data modifications go via their own
867 * mappings. So If we try to mount readonly then copy the filesystem
868 * from bdev, we could get stale data, so invalidate it to give a best
869 * effort at coherency.
870 */
871 if (remount_ro && sb->s_bdev)
872 invalidate_bdev(sb->s_bdev);
1da177e4 873 return 0;
4ed5e82f
MS
874
875cancel_readonly:
876 sb->s_readonly_remount = 0;
877 return retval;
1da177e4
LT
878}
879
a2a9537a 880static void do_emergency_remount(struct work_struct *work)
1da177e4 881{
dca33252 882 struct super_block *sb, *p = NULL;
1da177e4
LT
883
884 spin_lock(&sb_lock);
dca33252 885 list_for_each_entry(sb, &super_blocks, s_list) {
a5166169 886 if (hlist_unhashed(&sb->s_instances))
551de6f3 887 continue;
1da177e4
LT
888 sb->s_count++;
889 spin_unlock(&sb_lock);
443b94ba 890 down_write(&sb->s_umount);
e462ec50 891 if (sb->s_root && sb->s_bdev && (sb->s_flags & SB_BORN) &&
bc98a42c 892 !sb_rdonly(sb)) {
1da177e4 893 /*
1da177e4
LT
894 * What lock protects sb->s_flags??
895 */
e462ec50 896 do_remount_sb(sb, SB_RDONLY, NULL, 1);
1da177e4 897 }
443b94ba 898 up_write(&sb->s_umount);
1da177e4 899 spin_lock(&sb_lock);
dca33252
AV
900 if (p)
901 __put_super(p);
902 p = sb;
1da177e4 903 }
dca33252
AV
904 if (p)
905 __put_super(p);
1da177e4 906 spin_unlock(&sb_lock);
a2a9537a 907 kfree(work);
1da177e4
LT
908 printk("Emergency Remount complete\n");
909}
910
911void emergency_remount(void)
912{
a2a9537a
JA
913 struct work_struct *work;
914
915 work = kmalloc(sizeof(*work), GFP_ATOMIC);
916 if (work) {
917 INIT_WORK(work, do_emergency_remount);
918 schedule_work(work);
919 }
1da177e4
LT
920}
921
922/*
923 * Unnamed block devices are dummy devices used by virtual
924 * filesystems which don't use real block-devices. -- jrs
925 */
926
ad76cbc6 927static DEFINE_IDA(unnamed_dev_ida);
1da177e4 928static DEFINE_SPINLOCK(unnamed_dev_lock);/* protects the above */
a2a4dc49
TB
929/* Many userspace utilities consider an FSID of 0 invalid.
930 * Always return at least 1 from get_anon_bdev.
931 */
932static int unnamed_dev_start = 1;
1da177e4 933
0ee5dc67 934int get_anon_bdev(dev_t *p)
1da177e4
LT
935{
936 int dev;
937 int error;
938
939 retry:
ad76cbc6 940 if (ida_pre_get(&unnamed_dev_ida, GFP_ATOMIC) == 0)
1da177e4
LT
941 return -ENOMEM;
942 spin_lock(&unnamed_dev_lock);
c63e09ec 943 error = ida_get_new_above(&unnamed_dev_ida, unnamed_dev_start, &dev);
f21f6220
AV
944 if (!error)
945 unnamed_dev_start = dev + 1;
1da177e4
LT
946 spin_unlock(&unnamed_dev_lock);
947 if (error == -EAGAIN)
948 /* We raced and lost with another CPU. */
949 goto retry;
950 else if (error)
951 return -EAGAIN;
952
1af95de6 953 if (dev >= (1 << MINORBITS)) {
1da177e4 954 spin_lock(&unnamed_dev_lock);
ad76cbc6 955 ida_remove(&unnamed_dev_ida, dev);
f21f6220
AV
956 if (unnamed_dev_start > dev)
957 unnamed_dev_start = dev;
1da177e4
LT
958 spin_unlock(&unnamed_dev_lock);
959 return -EMFILE;
960 }
0ee5dc67 961 *p = MKDEV(0, dev & MINORMASK);
1da177e4
LT
962 return 0;
963}
0ee5dc67 964EXPORT_SYMBOL(get_anon_bdev);
1da177e4 965
0ee5dc67 966void free_anon_bdev(dev_t dev)
1da177e4 967{
0ee5dc67 968 int slot = MINOR(dev);
1da177e4 969 spin_lock(&unnamed_dev_lock);
ad76cbc6 970 ida_remove(&unnamed_dev_ida, slot);
c63e09ec
AV
971 if (slot < unnamed_dev_start)
972 unnamed_dev_start = slot;
1da177e4
LT
973 spin_unlock(&unnamed_dev_lock);
974}
0ee5dc67
AV
975EXPORT_SYMBOL(free_anon_bdev);
976
977int set_anon_super(struct super_block *s, void *data)
978{
df0ce26c 979 return get_anon_bdev(&s->s_dev);
0ee5dc67
AV
980}
981
982EXPORT_SYMBOL(set_anon_super);
983
984void kill_anon_super(struct super_block *sb)
985{
986 dev_t dev = sb->s_dev;
987 generic_shutdown_super(sb);
988 free_anon_bdev(dev);
989}
1da177e4
LT
990
991EXPORT_SYMBOL(kill_anon_super);
992
1da177e4
LT
993void kill_litter_super(struct super_block *sb)
994{
995 if (sb->s_root)
996 d_genocide(sb->s_root);
997 kill_anon_super(sb);
998}
999
1000EXPORT_SYMBOL(kill_litter_super);
1001
909e6d94
SH
1002static int ns_test_super(struct super_block *sb, void *data)
1003{
1004 return sb->s_fs_info == data;
1005}
1006
1007static int ns_set_super(struct super_block *sb, void *data)
1008{
1009 sb->s_fs_info = data;
1010 return set_anon_super(sb, NULL);
1011}
1012
d91ee87d
EB
1013struct dentry *mount_ns(struct file_system_type *fs_type,
1014 int flags, void *data, void *ns, struct user_namespace *user_ns,
1015 int (*fill_super)(struct super_block *, void *, int))
909e6d94
SH
1016{
1017 struct super_block *sb;
1018
d91ee87d
EB
1019 /* Don't allow mounting unless the caller has CAP_SYS_ADMIN
1020 * over the namespace.
1021 */
e462ec50 1022 if (!(flags & SB_KERNMOUNT) && !ns_capable(user_ns, CAP_SYS_ADMIN))
d91ee87d
EB
1023 return ERR_PTR(-EPERM);
1024
6e4eab57
EB
1025 sb = sget_userns(fs_type, ns_test_super, ns_set_super, flags,
1026 user_ns, ns);
909e6d94 1027 if (IS_ERR(sb))
ceefda69 1028 return ERR_CAST(sb);
909e6d94
SH
1029
1030 if (!sb->s_root) {
1031 int err;
e462ec50 1032 err = fill_super(sb, data, flags & SB_SILENT ? 1 : 0);
909e6d94 1033 if (err) {
74dbbdd7 1034 deactivate_locked_super(sb);
ceefda69 1035 return ERR_PTR(err);
909e6d94
SH
1036 }
1037
e462ec50 1038 sb->s_flags |= SB_ACTIVE;
909e6d94
SH
1039 }
1040
ceefda69 1041 return dget(sb->s_root);
909e6d94
SH
1042}
1043
ceefda69 1044EXPORT_SYMBOL(mount_ns);
909e6d94 1045
9361401e 1046#ifdef CONFIG_BLOCK
1da177e4
LT
1047static int set_bdev_super(struct super_block *s, void *data)
1048{
1049 s->s_bdev = data;
1050 s->s_dev = s->s_bdev->bd_dev;
13eec236 1051 s->s_bdi = bdi_get(s->s_bdev->bd_bdi);
32a88aa1 1052
1da177e4
LT
1053 return 0;
1054}
1055
1056static int test_bdev_super(struct super_block *s, void *data)
1057{
1058 return (void *)s->s_bdev == data;
1059}
1060
152a0836 1061struct dentry *mount_bdev(struct file_system_type *fs_type,
1da177e4 1062 int flags, const char *dev_name, void *data,
152a0836 1063 int (*fill_super)(struct super_block *, void *, int))
1da177e4
LT
1064{
1065 struct block_device *bdev;
1066 struct super_block *s;
d4d77629 1067 fmode_t mode = FMODE_READ | FMODE_EXCL;
1da177e4
LT
1068 int error = 0;
1069
e462ec50 1070 if (!(flags & SB_RDONLY))
30c40d2c
AV
1071 mode |= FMODE_WRITE;
1072
d4d77629 1073 bdev = blkdev_get_by_path(dev_name, mode, fs_type);
1da177e4 1074 if (IS_ERR(bdev))
152a0836 1075 return ERR_CAST(bdev);
1da177e4
LT
1076
1077 /*
1078 * once the super is inserted into the list by sget, s_umount
1079 * will protect the lockfs code from trying to start a snapshot
1080 * while we are mounting
1081 */
4fadd7bb
CH
1082 mutex_lock(&bdev->bd_fsfreeze_mutex);
1083 if (bdev->bd_fsfreeze_count > 0) {
1084 mutex_unlock(&bdev->bd_fsfreeze_mutex);
1085 error = -EBUSY;
1086 goto error_bdev;
1087 }
e462ec50 1088 s = sget(fs_type, test_bdev_super, set_bdev_super, flags | SB_NOSEC,
9249e17f 1089 bdev);
4fadd7bb 1090 mutex_unlock(&bdev->bd_fsfreeze_mutex);
1da177e4 1091 if (IS_ERR(s))
454e2398 1092 goto error_s;
1da177e4
LT
1093
1094 if (s->s_root) {
e462ec50 1095 if ((flags ^ s->s_flags) & SB_RDONLY) {
74dbbdd7 1096 deactivate_locked_super(s);
454e2398
DH
1097 error = -EBUSY;
1098 goto error_bdev;
1da177e4 1099 }
454e2398 1100
4f331f01
TH
1101 /*
1102 * s_umount nests inside bd_mutex during
e525fd89
TH
1103 * __invalidate_device(). blkdev_put() acquires
1104 * bd_mutex and can't be called under s_umount. Drop
1105 * s_umount temporarily. This is safe as we're
1106 * holding an active reference.
4f331f01
TH
1107 */
1108 up_write(&s->s_umount);
d4d77629 1109 blkdev_put(bdev, mode);
4f331f01 1110 down_write(&s->s_umount);
1da177e4 1111 } else {
30c40d2c 1112 s->s_mode = mode;
a1c6f057 1113 snprintf(s->s_id, sizeof(s->s_id), "%pg", bdev);
e78c9a00 1114 sb_set_blocksize(s, block_size(bdev));
e462ec50 1115 error = fill_super(s, data, flags & SB_SILENT ? 1 : 0);
1da177e4 1116 if (error) {
74dbbdd7 1117 deactivate_locked_super(s);
454e2398 1118 goto error;
fa675765 1119 }
454e2398 1120
e462ec50 1121 s->s_flags |= SB_ACTIVE;
87d8fe1e 1122 bdev->bd_super = s;
1da177e4
LT
1123 }
1124
152a0836 1125 return dget(s->s_root);
1da177e4 1126
454e2398
DH
1127error_s:
1128 error = PTR_ERR(s);
1129error_bdev:
d4d77629 1130 blkdev_put(bdev, mode);
454e2398 1131error:
152a0836
AV
1132 return ERR_PTR(error);
1133}
1134EXPORT_SYMBOL(mount_bdev);
1135
1da177e4
LT
1136void kill_block_super(struct super_block *sb)
1137{
1138 struct block_device *bdev = sb->s_bdev;
30c40d2c 1139 fmode_t mode = sb->s_mode;
1da177e4 1140
ddbaaf30 1141 bdev->bd_super = NULL;
1da177e4
LT
1142 generic_shutdown_super(sb);
1143 sync_blockdev(bdev);
d4d77629 1144 WARN_ON_ONCE(!(mode & FMODE_EXCL));
e525fd89 1145 blkdev_put(bdev, mode | FMODE_EXCL);
1da177e4
LT
1146}
1147
1148EXPORT_SYMBOL(kill_block_super);
9361401e 1149#endif
1da177e4 1150
3c26ff6e 1151struct dentry *mount_nodev(struct file_system_type *fs_type,
1da177e4 1152 int flags, void *data,
3c26ff6e 1153 int (*fill_super)(struct super_block *, void *, int))
1da177e4
LT
1154{
1155 int error;
9249e17f 1156 struct super_block *s = sget(fs_type, NULL, set_anon_super, flags, NULL);
1da177e4
LT
1157
1158 if (IS_ERR(s))
3c26ff6e 1159 return ERR_CAST(s);
1da177e4 1160
e462ec50 1161 error = fill_super(s, data, flags & SB_SILENT ? 1 : 0);
1da177e4 1162 if (error) {
74dbbdd7 1163 deactivate_locked_super(s);
3c26ff6e 1164 return ERR_PTR(error);
1da177e4 1165 }
e462ec50 1166 s->s_flags |= SB_ACTIVE;
3c26ff6e 1167 return dget(s->s_root);
1da177e4 1168}
3c26ff6e
AV
1169EXPORT_SYMBOL(mount_nodev);
1170
1da177e4
LT
1171static int compare_single(struct super_block *s, void *p)
1172{
1173 return 1;
1174}
1175
fc14f2fe 1176struct dentry *mount_single(struct file_system_type *fs_type,
1da177e4 1177 int flags, void *data,
fc14f2fe 1178 int (*fill_super)(struct super_block *, void *, int))
1da177e4
LT
1179{
1180 struct super_block *s;
1181 int error;
1182
9249e17f 1183 s = sget(fs_type, compare_single, set_anon_super, flags, NULL);
1da177e4 1184 if (IS_ERR(s))
fc14f2fe 1185 return ERR_CAST(s);
1da177e4 1186 if (!s->s_root) {
e462ec50 1187 error = fill_super(s, data, flags & SB_SILENT ? 1 : 0);
1da177e4 1188 if (error) {
74dbbdd7 1189 deactivate_locked_super(s);
fc14f2fe 1190 return ERR_PTR(error);
1da177e4 1191 }
e462ec50 1192 s->s_flags |= SB_ACTIVE;
9329d1be
KS
1193 } else {
1194 do_remount_sb(s, flags, data, 0);
1da177e4 1195 }
fc14f2fe
AV
1196 return dget(s->s_root);
1197}
1198EXPORT_SYMBOL(mount_single);
1199
9d412a43
AV
1200struct dentry *
1201mount_fs(struct file_system_type *type, int flags, const char *name, void *data)
1da177e4 1202{
c96e41e9 1203 struct dentry *root;
9d412a43 1204 struct super_block *sb;
1da177e4 1205 char *secdata = NULL;
9d412a43 1206 int error = -ENOMEM;
8089352a 1207
e0007529 1208 if (data && !(type->fs_flags & FS_BINARY_MOUNTDATA)) {
1da177e4 1209 secdata = alloc_secdata();
454e2398 1210 if (!secdata)
9d412a43 1211 goto out;
1da177e4 1212
e0007529 1213 error = security_sb_copy_data(data, secdata);
454e2398 1214 if (error)
1da177e4 1215 goto out_free_secdata;
1da177e4
LT
1216 }
1217
1a102ff9
AV
1218 root = type->mount(type, flags, name, data);
1219 if (IS_ERR(root)) {
1220 error = PTR_ERR(root);
1221 goto out_free_secdata;
c96e41e9 1222 }
9d412a43
AV
1223 sb = root->d_sb;
1224 BUG_ON(!sb);
1225 WARN_ON(!sb->s_bdi);
e462ec50 1226 sb->s_flags |= SB_BORN;
454e2398 1227
9d412a43 1228 error = security_sb_kern_mount(sb, flags, secdata);
5129a469
JE
1229 if (error)
1230 goto out_sb;
454e2398 1231
42cb56ae
JL
1232 /*
1233 * filesystems should never set s_maxbytes larger than MAX_LFS_FILESIZE
1234 * but s_maxbytes was an unsigned long long for many releases. Throw
1235 * this warning for a little while to try and catch filesystems that
4358b567 1236 * violate this rule.
42cb56ae 1237 */
9d412a43
AV
1238 WARN((sb->s_maxbytes < 0), "%s set sb->s_maxbytes to "
1239 "negative value (%lld)\n", type->name, sb->s_maxbytes);
42cb56ae 1240
9d412a43 1241 up_write(&sb->s_umount);
8680e22f 1242 free_secdata(secdata);
9d412a43 1243 return root;
1da177e4 1244out_sb:
9d412a43
AV
1245 dput(root);
1246 deactivate_locked_super(sb);
1da177e4
LT
1247out_free_secdata:
1248 free_secdata(secdata);
1da177e4 1249out:
454e2398 1250 return ERR_PTR(error);
1da177e4
LT
1251}
1252
fca39346
JK
1253/*
1254 * Setup private BDI for given superblock. It gets automatically cleaned up
1255 * in generic_shutdown_super().
1256 */
1257int super_setup_bdi_name(struct super_block *sb, char *fmt, ...)
1258{
1259 struct backing_dev_info *bdi;
1260 int err;
1261 va_list args;
1262
1263 bdi = bdi_alloc(GFP_KERNEL);
1264 if (!bdi)
1265 return -ENOMEM;
1266
1267 bdi->name = sb->s_type->name;
1268
1269 va_start(args, fmt);
7c4cc300 1270 err = bdi_register_va(bdi, fmt, args);
fca39346
JK
1271 va_end(args);
1272 if (err) {
1273 bdi_put(bdi);
1274 return err;
1275 }
1276 WARN_ON(sb->s_bdi != &noop_backing_dev_info);
1277 sb->s_bdi = bdi;
fca39346
JK
1278
1279 return 0;
1280}
1281EXPORT_SYMBOL(super_setup_bdi_name);
1282
1283/*
1284 * Setup private BDI for given superblock. I gets automatically cleaned up
1285 * in generic_shutdown_super().
1286 */
1287int super_setup_bdi(struct super_block *sb)
1288{
1289 static atomic_long_t bdi_seq = ATOMIC_LONG_INIT(0);
1290
1291 return super_setup_bdi_name(sb, "%.28s-%ld", sb->s_type->name,
1292 atomic_long_inc_return(&bdi_seq));
1293}
1294EXPORT_SYMBOL(super_setup_bdi);
1295
5accdf82
JK
1296/*
1297 * This is an internal function, please use sb_end_{write,pagefault,intwrite}
1298 * instead.
1299 */
1300void __sb_end_write(struct super_block *sb, int level)
1301{
8129ed29 1302 percpu_up_read(sb->s_writers.rw_sem + level-1);
5accdf82
JK
1303}
1304EXPORT_SYMBOL(__sb_end_write);
1305
f4b554af
ON
1306/*
1307 * This is an internal function, please use sb_start_{write,pagefault,intwrite}
1308 * instead.
1309 */
1310int __sb_start_write(struct super_block *sb, int level, bool wait)
1311{
1312 bool force_trylock = false;
8129ed29 1313 int ret = 1;
f4b554af
ON
1314
1315#ifdef CONFIG_LOCKDEP
1316 /*
1317 * We want lockdep to tell us about possible deadlocks with freezing
1318 * but it's it bit tricky to properly instrument it. Getting a freeze
1319 * protection works as getting a read lock but there are subtle
1320 * problems. XFS for example gets freeze protection on internal level
1321 * twice in some cases, which is OK only because we already hold a
1322 * freeze protection also on higher level. Due to these cases we have
1323 * to use wait == F (trylock mode) which must not fail.
1324 */
1325 if (wait) {
1326 int i;
1327
1328 for (i = 0; i < level - 1; i++)
8129ed29 1329 if (percpu_rwsem_is_held(sb->s_writers.rw_sem + i)) {
f4b554af
ON
1330 force_trylock = true;
1331 break;
1332 }
1333 }
1334#endif
8129ed29
ON
1335 if (wait && !force_trylock)
1336 percpu_down_read(sb->s_writers.rw_sem + level-1);
1337 else
1338 ret = percpu_down_read_trylock(sb->s_writers.rw_sem + level-1);
1339
22224a17 1340 WARN_ON(force_trylock && !ret);
f4b554af
ON
1341 return ret;
1342}
5accdf82
JK
1343EXPORT_SYMBOL(__sb_start_write);
1344
1345/**
1346 * sb_wait_write - wait until all writers to given file system finish
1347 * @sb: the super for which we wait
1348 * @level: type of writers we wait for (normal vs page fault)
1349 *
1350 * This function waits until there are no writers of given type to given file
8129ed29 1351 * system.
5accdf82
JK
1352 */
1353static void sb_wait_write(struct super_block *sb, int level)
1354{
8129ed29 1355 percpu_down_write(sb->s_writers.rw_sem + level-1);
8129ed29 1356}
5accdf82 1357
f1a96220
ON
1358/*
1359 * We are going to return to userspace and forget about these locks, the
1360 * ownership goes to the caller of thaw_super() which does unlock().
1361 */
1362static void lockdep_sb_freeze_release(struct super_block *sb)
1363{
1364 int level;
1365
1366 for (level = SB_FREEZE_LEVELS - 1; level >= 0; level--)
1367 percpu_rwsem_release(sb->s_writers.rw_sem + level, 0, _THIS_IP_);
1368}
1369
1370/*
1371 * Tell lockdep we are holding these locks before we call ->unfreeze_fs(sb).
1372 */
1373static void lockdep_sb_freeze_acquire(struct super_block *sb)
8129ed29
ON
1374{
1375 int level;
5accdf82 1376
8129ed29
ON
1377 for (level = 0; level < SB_FREEZE_LEVELS; ++level)
1378 percpu_rwsem_acquire(sb->s_writers.rw_sem + level, 0, _THIS_IP_);
f1a96220
ON
1379}
1380
1381static void sb_freeze_unlock(struct super_block *sb)
1382{
1383 int level;
5accdf82 1384
8129ed29
ON
1385 for (level = SB_FREEZE_LEVELS - 1; level >= 0; level--)
1386 percpu_up_write(sb->s_writers.rw_sem + level);
5accdf82
JK
1387}
1388
18e9e510 1389/**
7000d3c4
RD
1390 * freeze_super - lock the filesystem and force it into a consistent state
1391 * @sb: the super to lock
18e9e510
JB
1392 *
1393 * Syncs the super to make sure the filesystem is consistent and calls the fs's
1394 * freeze_fs. Subsequent calls to this without first thawing the fs will return
1395 * -EBUSY.
5accdf82
JK
1396 *
1397 * During this function, sb->s_writers.frozen goes through these values:
1398 *
1399 * SB_UNFROZEN: File system is normal, all writes progress as usual.
1400 *
1401 * SB_FREEZE_WRITE: The file system is in the process of being frozen. New
1402 * writes should be blocked, though page faults are still allowed. We wait for
1403 * all writes to complete and then proceed to the next stage.
1404 *
1405 * SB_FREEZE_PAGEFAULT: Freezing continues. Now also page faults are blocked
1406 * but internal fs threads can still modify the filesystem (although they
1407 * should not dirty new pages or inodes), writeback can run etc. After waiting
1408 * for all running page faults we sync the filesystem which will clean all
1409 * dirty pages and inodes (no new dirty pages or inodes can be created when
1410 * sync is running).
1411 *
1412 * SB_FREEZE_FS: The file system is frozen. Now all internal sources of fs
1413 * modification are blocked (e.g. XFS preallocation truncation on inode
1414 * reclaim). This is usually implemented by blocking new transactions for
1415 * filesystems that have them and need this additional guard. After all
1416 * internal writers are finished we call ->freeze_fs() to finish filesystem
1417 * freezing. Then we transition to SB_FREEZE_COMPLETE state. This state is
1418 * mostly auxiliary for filesystems to verify they do not modify frozen fs.
1419 *
1420 * sb->s_writers.frozen is protected by sb->s_umount.
18e9e510
JB
1421 */
1422int freeze_super(struct super_block *sb)
1423{
1424 int ret;
1425
1426 atomic_inc(&sb->s_active);
1427 down_write(&sb->s_umount);
5accdf82 1428 if (sb->s_writers.frozen != SB_UNFROZEN) {
18e9e510
JB
1429 deactivate_locked_super(sb);
1430 return -EBUSY;
1431 }
1432
e462ec50 1433 if (!(sb->s_flags & SB_BORN)) {
dabe0dc1
AV
1434 up_write(&sb->s_umount);
1435 return 0; /* sic - it's "nothing to do" */
1436 }
1437
bc98a42c 1438 if (sb_rdonly(sb)) {
5accdf82
JK
1439 /* Nothing to do really... */
1440 sb->s_writers.frozen = SB_FREEZE_COMPLETE;
18e9e510
JB
1441 up_write(&sb->s_umount);
1442 return 0;
1443 }
1444
5accdf82 1445 sb->s_writers.frozen = SB_FREEZE_WRITE;
5accdf82
JK
1446 /* Release s_umount to preserve sb_start_write -> s_umount ordering */
1447 up_write(&sb->s_umount);
5accdf82 1448 sb_wait_write(sb, SB_FREEZE_WRITE);
8129ed29 1449 down_write(&sb->s_umount);
5accdf82
JK
1450
1451 /* Now we go and block page faults... */
5accdf82 1452 sb->s_writers.frozen = SB_FREEZE_PAGEFAULT;
5accdf82
JK
1453 sb_wait_write(sb, SB_FREEZE_PAGEFAULT);
1454
1455 /* All writers are done so after syncing there won't be dirty data */
18e9e510
JB
1456 sync_filesystem(sb);
1457
5accdf82
JK
1458 /* Now wait for internal filesystem counter */
1459 sb->s_writers.frozen = SB_FREEZE_FS;
5accdf82 1460 sb_wait_write(sb, SB_FREEZE_FS);
18e9e510 1461
18e9e510
JB
1462 if (sb->s_op->freeze_fs) {
1463 ret = sb->s_op->freeze_fs(sb);
1464 if (ret) {
1465 printk(KERN_ERR
1466 "VFS:Filesystem freeze failed\n");
5accdf82 1467 sb->s_writers.frozen = SB_UNFROZEN;
8129ed29 1468 sb_freeze_unlock(sb);
5accdf82 1469 wake_up(&sb->s_writers.wait_unfrozen);
18e9e510
JB
1470 deactivate_locked_super(sb);
1471 return ret;
1472 }
1473 }
5accdf82 1474 /*
89f39af1
ON
1475 * For debugging purposes so that fs can warn if it sees write activity
1476 * when frozen is set to SB_FREEZE_COMPLETE, and for thaw_super().
5accdf82
JK
1477 */
1478 sb->s_writers.frozen = SB_FREEZE_COMPLETE;
f1a96220 1479 lockdep_sb_freeze_release(sb);
18e9e510
JB
1480 up_write(&sb->s_umount);
1481 return 0;
1482}
1483EXPORT_SYMBOL(freeze_super);
1484
1485/**
1486 * thaw_super -- unlock filesystem
1487 * @sb: the super to thaw
1488 *
1489 * Unlocks the filesystem and marks it writeable again after freeze_super().
1490 */
1491int thaw_super(struct super_block *sb)
1492{
1493 int error;
1494
1495 down_write(&sb->s_umount);
89f39af1 1496 if (sb->s_writers.frozen != SB_FREEZE_COMPLETE) {
18e9e510
JB
1497 up_write(&sb->s_umount);
1498 return -EINVAL;
1499 }
1500
bc98a42c 1501 if (sb_rdonly(sb)) {
8129ed29 1502 sb->s_writers.frozen = SB_UNFROZEN;
18e9e510 1503 goto out;
8129ed29 1504 }
18e9e510 1505
f1a96220
ON
1506 lockdep_sb_freeze_acquire(sb);
1507
18e9e510
JB
1508 if (sb->s_op->unfreeze_fs) {
1509 error = sb->s_op->unfreeze_fs(sb);
1510 if (error) {
1511 printk(KERN_ERR
1512 "VFS:Filesystem thaw failed\n");
f1a96220 1513 lockdep_sb_freeze_release(sb);
18e9e510
JB
1514 up_write(&sb->s_umount);
1515 return error;
1516 }
1517 }
1518
5accdf82 1519 sb->s_writers.frozen = SB_UNFROZEN;
8129ed29
ON
1520 sb_freeze_unlock(sb);
1521out:
5accdf82 1522 wake_up(&sb->s_writers.wait_unfrozen);
18e9e510 1523 deactivate_locked_super(sb);
18e9e510
JB
1524 return 0;
1525}
1526EXPORT_SYMBOL(thaw_super);