]> git.ipfire.org Git - thirdparty/kernel/linux.git/blame - fs/overlayfs/super.c
ovl: remove redundant ofs->indexdir member
[thirdparty/kernel/linux.git] / fs / overlayfs / super.c
CommitLineData
d2912cb1 1// SPDX-License-Identifier: GPL-2.0-only
e9be9d5e
MS
2/*
3 *
4 * Copyright (C) 2011 Novell Inc.
e9be9d5e
MS
5 */
6
5b825c3a 7#include <uapi/linux/magic.h>
e9be9d5e
MS
8#include <linux/fs.h>
9#include <linux/namei.h>
10#include <linux/xattr.h>
e9be9d5e 11#include <linux/mount.h>
e9be9d5e
MS
12#include <linux/parser.h>
13#include <linux/module.h>
cc259639 14#include <linux/statfs.h>
f45827e8 15#include <linux/seq_file.h>
d837a49b 16#include <linux/posix_acl_xattr.h>
e487d889 17#include <linux/exportfs.h>
2b1a7746 18#include <linux/file.h>
1784fbc2 19#include <linux/fs_context.h>
dcb399de 20#include <linux/fs_parser.h>
e9be9d5e 21#include "overlayfs.h"
7fb7998b 22#include "params.h"
e9be9d5e
MS
23
24MODULE_AUTHOR("Miklos Szeredi <miklos@szeredi.hu>");
25MODULE_DESCRIPTION("Overlay filesystem");
26MODULE_LICENSE("GPL");
27
e9be9d5e
MS
28
29struct ovl_dir_cache;
30
2d902671 31static struct dentry *ovl_d_real(struct dentry *dentry,
fb16043b 32 const struct inode *inode)
d101a125 33{
cef4cbff 34 struct dentry *real = NULL, *lower;
184996e9 35 int err;
d101a125 36
def3ae83
AG
37 /*
38 * vfs is only expected to call d_real() with NULL from d_real_inode()
39 * and with overlay inode from file_dentry() on an overlay file.
40 *
41 * TODO: remove @inode argument from d_real() API, remove code in this
42 * function that deals with non-NULL @inode and remove d_real() call
43 * from file_dentry().
44 */
e8c985ba
MS
45 if (inode && d_inode(dentry) == inode)
46 return dentry;
def3ae83
AG
47 else if (inode)
48 goto bug;
e8c985ba 49
ca4c8a3a 50 if (!d_is_reg(dentry)) {
def3ae83
AG
51 /* d_real_inode() is only relevant for regular files */
52 return dentry;
d101a125
MS
53 }
54
55 real = ovl_dentry_upper(dentry);
2c3d7358 56 if (real && (inode == d_inode(real)))
d101a125
MS
57 return real;
58
2c3d7358
VG
59 if (real && !inode && ovl_has_upperdata(d_inode(dentry)))
60 return real;
61
41665644 62 /*
42dd69ae 63 * Best effort lazy lookup of lowerdata for !inode case to return
41665644
AG
64 * the real lowerdata dentry. The only current caller of d_real() with
65 * NULL inode is d_real_inode() from trace_uprobe and this caller is
66 * likely going to be followed reading from the file, before placing
67 * uprobes on offset within the file, so lowerdata should be available
68 * when setting the uprobe.
69 */
184996e9
AL
70 err = ovl_verify_lowerdata(dentry);
71 if (err)
72 goto bug;
cef4cbff
MS
73 lower = ovl_dentry_lowerdata(dentry);
74 if (!lower)
d101a125 75 goto bug;
cef4cbff 76 real = lower;
d101a125 77
c4fcfc16 78 /* Handle recursion */
fb16043b 79 real = d_real(real, inode);
c4fcfc16 80
d101a125
MS
81 if (!inode || inode == d_inode(real))
82 return real;
d101a125 83bug:
cef4cbff
MS
84 WARN(1, "%s(%pd4, %s:%lu): real dentry (%p/%lu) not found\n",
85 __func__, dentry, inode ? inode->i_sb->s_id : "NULL",
86 inode ? inode->i_ino : 0, real,
87 real && d_inode(real) ? d_inode(real)->i_ino : 0);
d101a125
MS
88 return dentry;
89}
90
3bb7df92 91static int ovl_revalidate_real(struct dentry *d, unsigned int flags, bool weak)
7c03b5d4 92{
7c03b5d4
MS
93 int ret = 1;
94
41665644
AG
95 if (!d)
96 return 1;
97
3bb7df92
MS
98 if (weak) {
99 if (d->d_flags & DCACHE_OP_WEAK_REVALIDATE)
100 ret = d->d_op->d_weak_revalidate(d, flags);
101 } else if (d->d_flags & DCACHE_OP_REVALIDATE) {
102 ret = d->d_op->d_revalidate(d, flags);
103 if (!ret) {
104 if (!(flags & LOOKUP_RCU))
105 d_invalidate(d);
106 ret = -ESTALE;
7c03b5d4
MS
107 }
108 }
3bb7df92 109 return ret;
7c03b5d4
MS
110}
111
3bb7df92
MS
112static int ovl_dentry_revalidate_common(struct dentry *dentry,
113 unsigned int flags, bool weak)
7c03b5d4 114{
c54719c9
AV
115 struct ovl_entry *oe;
116 struct ovl_path *lowerstack;
672e4268 117 struct inode *inode = d_inode_rcu(dentry);
bccece1e 118 struct dentry *upper;
7c03b5d4
MS
119 unsigned int i;
120 int ret = 1;
121
672e4268
CZ
122 /* Careful in RCU mode */
123 if (!inode)
124 return -ECHILD;
125
c54719c9
AV
126 oe = OVL_I_E(inode);
127 lowerstack = ovl_lowerstack(oe);
672e4268 128 upper = ovl_i_dentry_upper(inode);
bccece1e
MS
129 if (upper)
130 ret = ovl_revalidate_real(upper, flags, weak);
131
5522c9c7
AG
132 for (i = 0; ret > 0 && i < ovl_numlower(oe); i++)
133 ret = ovl_revalidate_real(lowerstack[i].dentry, flags, weak);
134
7c03b5d4
MS
135 return ret;
136}
137
3bb7df92
MS
138static int ovl_dentry_revalidate(struct dentry *dentry, unsigned int flags)
139{
140 return ovl_dentry_revalidate_common(dentry, flags, false);
141}
142
143static int ovl_dentry_weak_revalidate(struct dentry *dentry, unsigned int flags)
144{
145 return ovl_dentry_revalidate_common(dentry, flags, true);
146}
147
e9be9d5e 148static const struct dentry_operations ovl_dentry_operations = {
d101a125 149 .d_real = ovl_d_real,
7c03b5d4
MS
150 .d_revalidate = ovl_dentry_revalidate,
151 .d_weak_revalidate = ovl_dentry_weak_revalidate,
152};
153
13cf199d
AG
154static struct kmem_cache *ovl_inode_cachep;
155
156static struct inode *ovl_alloc_inode(struct super_block *sb)
157{
fd60b288 158 struct ovl_inode *oi = alloc_inode_sb(sb, ovl_inode_cachep, GFP_KERNEL);
13cf199d 159
b3885bd6
HN
160 if (!oi)
161 return NULL;
162
04a01ac7 163 oi->cache = NULL;
cf31c463 164 oi->redirect = NULL;
04a01ac7 165 oi->version = 0;
13c72075 166 oi->flags = 0;
09d8b586 167 oi->__upperdentry = NULL;
2b21da92 168 oi->lowerdata_redirect = NULL;
0af950f5 169 oi->oe = NULL;
a015dafc 170 mutex_init(&oi->lock);
25b7713a 171
13cf199d
AG
172 return &oi->vfs_inode;
173}
174
0b269ded 175static void ovl_free_inode(struct inode *inode)
13cf199d 176{
0b269ded 177 struct ovl_inode *oi = OVL_I(inode);
13cf199d 178
0b269ded 179 kfree(oi->redirect);
d9e8319a 180 kfree(oi->oe);
0b269ded
AV
181 mutex_destroy(&oi->lock);
182 kmem_cache_free(ovl_inode_cachep, oi);
13cf199d
AG
183}
184
185static void ovl_destroy_inode(struct inode *inode)
186{
09d8b586
MS
187 struct ovl_inode *oi = OVL_I(inode);
188
189 dput(oi->__upperdentry);
d9e8319a 190 ovl_stack_put(ovl_lowerstack(oi->oe), ovl_numlower(oi->oe));
2664bd08
VG
191 if (S_ISDIR(inode->i_mode))
192 ovl_dir_cache_free(inode);
2b21da92
AG
193 else
194 kfree(oi->lowerdata_redirect);
13cf199d
AG
195}
196
a9075cdb
MS
197static void ovl_put_super(struct super_block *sb)
198{
f01d0889 199 struct ovl_fs *ofs = OVL_FS(sb);
a9075cdb 200
1784fbc2
CB
201 if (ofs)
202 ovl_free_fs(ofs);
a9075cdb
MS
203}
204
e8d4bfe3 205/* Sync real dirty inodes in upper filesystem (if it exists) */
e593b2bf
AG
206static int ovl_sync_fs(struct super_block *sb, int wait)
207{
f01d0889 208 struct ovl_fs *ofs = OVL_FS(sb);
e593b2bf
AG
209 struct super_block *upper_sb;
210 int ret;
211
335d3fc5
SD
212 ret = ovl_sync_status(ofs);
213 /*
214 * We have to always set the err, because the return value isn't
215 * checked in syncfs, and instead indirectly return an error via
216 * the sb's writeback errseq, which VFS inspects after this call.
217 */
218 if (ret < 0) {
219 errseq_set(&sb->s_wb_err, -EIO);
220 return -EIO;
221 }
222
223 if (!ret)
224 return ret;
e8d4bfe3
CX
225
226 /*
32b1924b
KK
227 * Not called for sync(2) call or an emergency sync (SB_I_SKIP_SYNC).
228 * All the super blocks will be iterated, including upper_sb.
e8d4bfe3
CX
229 *
230 * If this is a syncfs(2) call, then we do need to call
231 * sync_filesystem() on upper_sb, but enough if we do it when being
232 * called with wait == 1.
233 */
234 if (!wait)
e593b2bf
AG
235 return 0;
236
08f4c7c8 237 upper_sb = ovl_upper_mnt(ofs)->mnt_sb;
e8d4bfe3 238
e593b2bf 239 down_read(&upper_sb->s_umount);
e8d4bfe3 240 ret = sync_filesystem(upper_sb);
e593b2bf 241 up_read(&upper_sb->s_umount);
e8d4bfe3 242
e593b2bf
AG
243 return ret;
244}
245
cc259639
AW
246/**
247 * ovl_statfs
9c5dd803 248 * @dentry: The dentry to query
cc259639
AW
249 * @buf: The struct kstatfs to fill in with stats
250 *
251 * Get the filesystem statistics. As writes always target the upper layer
4ebc5818 252 * filesystem pass the statfs to the upper filesystem (if it exists)
cc259639
AW
253 */
254static int ovl_statfs(struct dentry *dentry, struct kstatfs *buf)
255{
b0504bfe
AG
256 struct super_block *sb = dentry->d_sb;
257 struct ovl_fs *ofs = OVL_FS(sb);
258 struct dentry *root_dentry = sb->s_root;
cc259639
AW
259 struct path path;
260 int err;
261
4ebc5818 262 ovl_path_real(root_dentry, &path);
cc259639
AW
263
264 err = vfs_statfs(&path, buf);
265 if (!err) {
6b2d5fe4 266 buf->f_namelen = ofs->namelen;
cc259639 267 buf->f_type = OVERLAYFS_SUPER_MAGIC;
b0504bfe
AG
268 if (ovl_has_fsid(ofs))
269 buf->f_fsid = uuid_to_fsid(sb->s_uuid.b);
cc259639
AW
270 }
271
272 return err;
273}
274
e9be9d5e 275static const struct super_operations ovl_super_operations = {
13cf199d 276 .alloc_inode = ovl_alloc_inode,
0b269ded 277 .free_inode = ovl_free_inode,
13cf199d
AG
278 .destroy_inode = ovl_destroy_inode,
279 .drop_inode = generic_delete_inode,
e9be9d5e 280 .put_super = ovl_put_super,
e593b2bf 281 .sync_fs = ovl_sync_fs,
cc259639 282 .statfs = ovl_statfs,
f45827e8 283 .show_options = ovl_show_options,
e9be9d5e
MS
284};
285
e9be9d5e 286#define OVL_WORKDIR_NAME "work"
02bcd157 287#define OVL_INDEXDIR_NAME "index"
e9be9d5e 288
ad204488 289static struct dentry *ovl_workdir_create(struct ovl_fs *ofs,
6b8aa129 290 const char *name, bool persist)
e9be9d5e 291{
ad204488 292 struct inode *dir = ofs->workbasedir->d_inode;
08f4c7c8 293 struct vfsmount *mnt = ovl_upper_mnt(ofs);
e9be9d5e
MS
294 struct dentry *work;
295 int err;
296 bool retried = false;
297
5955102c 298 inode_lock_nested(dir, I_MUTEX_PARENT);
e9be9d5e 299retry:
22f289ce 300 work = ovl_lookup_upper(ofs, name, ofs->workbasedir, strlen(name));
e9be9d5e
MS
301
302 if (!IS_ERR(work)) {
c11b9fdd
MS
303 struct iattr attr = {
304 .ia_valid = ATTR_MODE,
32a3d848 305 .ia_mode = S_IFDIR | 0,
c11b9fdd 306 };
e9be9d5e
MS
307
308 if (work->d_inode) {
309 err = -EEXIST;
310 if (retried)
311 goto out_dput;
312
6b8aa129
AG
313 if (persist)
314 goto out_unlock;
315
e9be9d5e 316 retried = true;
576bb263 317 err = ovl_workdir_cleanup(ofs, dir, mnt, work, 0);
e9be9d5e 318 dput(work);
235ce9ed
AG
319 if (err == -EINVAL) {
320 work = ERR_PTR(err);
321 goto out_unlock;
322 }
e9be9d5e
MS
323 goto retry;
324 }
325
576bb263 326 err = ovl_mkdir_real(ofs, dir, &work, attr.ia_mode);
1f5573cf
MS
327 if (err)
328 goto out_dput;
329
330 /* Weird filesystem returning with hashed negative (kernfs)? */
331 err = -EINVAL;
332 if (d_really_is_negative(work))
333 goto out_dput;
c11b9fdd 334
cb348edb
MS
335 /*
336 * Try to remove POSIX ACL xattrs from workdir. We are good if:
337 *
338 * a) success (there was a POSIX ACL xattr and was removed)
339 * b) -ENODATA (there was no POSIX ACL xattr)
340 * c) -EOPNOTSUPP (POSIX ACL xattrs are not supported)
341 *
342 * There are various other error values that could effectively
343 * mean that the xattr doesn't exist (e.g. -ERANGE is returned
344 * if the xattr name is too long), but the set of filesystems
345 * allowed as upper are limited to "normal" ones, where checking
346 * for the above two errors is sufficient.
347 */
31acceb9 348 err = ovl_do_remove_acl(ofs, work, XATTR_NAME_POSIX_ACL_DEFAULT);
e1ff3dd1 349 if (err && err != -ENODATA && err != -EOPNOTSUPP)
c11b9fdd
MS
350 goto out_dput;
351
31acceb9 352 err = ovl_do_remove_acl(ofs, work, XATTR_NAME_POSIX_ACL_ACCESS);
e1ff3dd1 353 if (err && err != -ENODATA && err != -EOPNOTSUPP)
c11b9fdd
MS
354 goto out_dput;
355
356 /* Clear any inherited mode bits */
357 inode_lock(work->d_inode);
a15506ea 358 err = ovl_do_notify_change(ofs, work, &attr);
c11b9fdd
MS
359 inode_unlock(work->d_inode);
360 if (err)
361 goto out_dput;
6b8aa129
AG
362 } else {
363 err = PTR_ERR(work);
364 goto out_err;
e9be9d5e
MS
365 }
366out_unlock:
2068cf7d 367 inode_unlock(dir);
e9be9d5e
MS
368 return work;
369
370out_dput:
371 dput(work);
6b8aa129 372out_err:
1bd0a3ae 373 pr_warn("failed to create directory %s/%s (errno: %i); mounting read-only\n",
ad204488 374 ofs->config.workdir, name, -err);
6b8aa129 375 work = NULL;
e9be9d5e
MS
376 goto out_unlock;
377}
378
2d343087 379static int ovl_check_namelen(const struct path *path, struct ovl_fs *ofs,
6b2d5fe4 380 const char *name)
ab508822 381{
ab508822 382 struct kstatfs statfs;
6b2d5fe4
MS
383 int err = vfs_statfs(path, &statfs);
384
385 if (err)
1bd0a3ae 386 pr_err("statfs failed on '%s'\n", name);
6b2d5fe4
MS
387 else
388 ofs->namelen = max(ofs->namelen, statfs.f_namelen);
389
390 return err;
391}
392
393static int ovl_lower_dir(const char *name, struct path *path,
f4288844 394 struct ovl_fs *ofs, int *stack_depth)
6b2d5fe4 395{
e487d889 396 int fh_type;
6b2d5fe4 397 int err;
ab508822 398
6b2d5fe4
MS
399 err = ovl_check_namelen(path, ofs, name);
400 if (err)
b8e42a65 401 return err;
6b2d5fe4 402
ab508822
MS
403 *stack_depth = max(*stack_depth, path->mnt->mnt_sb->s_stack_depth);
404
02bcd157 405 /*
f168f109
AG
406 * The inodes index feature and NFS export need to encode and decode
407 * file handles, so they require that all layers support them.
02bcd157 408 */
e487d889 409 fh_type = ovl_can_decode_fh(path->dentry->d_sb);
f168f109 410 if ((ofs->config.nfs_export ||
e487d889 411 (ofs->config.index && ofs->config.upperdir)) && !fh_type) {
02bcd157 412 ofs->config.index = false;
f168f109 413 ofs->config.nfs_export = false;
1bd0a3ae 414 pr_warn("fs on '%s' does not support file handles, falling back to index=off,nfs_export=off.\n",
f168f109 415 name);
02bcd157 416 }
16aac5ad 417 ofs->nofh |= !fh_type;
b0e0f697
AG
418 /*
419 * Decoding origin file handle is required for persistent st_ino.
420 * Without persistent st_ino, xino=auto falls back to xino=off.
421 */
422 if (ofs->config.xino == OVL_XINO_AUTO &&
423 ofs->config.upperdir && !fh_type) {
424 ofs->config.xino = OVL_XINO_OFF;
425 pr_warn("fs on '%s' does not support file handles, falling back to xino=off.\n",
426 name);
427 }
02bcd157 428
e487d889
AG
429 /* Check if lower fs has 32bit inode numbers */
430 if (fh_type != FILEID_INO32_GEN)
0f831ec8 431 ofs->xino_mode = -1;
e487d889 432
ab508822 433 return 0;
ab508822
MS
434}
435
e9be9d5e
MS
436/* Workdir should not be subdir of upperdir and vice versa */
437static bool ovl_workdir_ok(struct dentry *workdir, struct dentry *upperdir)
438{
439 bool ok = false;
440
441 if (workdir != upperdir) {
442 ok = (lock_rename(workdir, upperdir) == NULL);
443 unlock_rename(workdir, upperdir);
444 }
445 return ok;
446}
447
146d62e5
AG
448static int ovl_setup_trap(struct super_block *sb, struct dentry *dir,
449 struct inode **ptrap, const char *name)
450{
451 struct inode *trap;
452 int err;
453
454 trap = ovl_get_trap_inode(sb, dir);
1dac6f5b
AB
455 err = PTR_ERR_OR_ZERO(trap);
456 if (err) {
146d62e5 457 if (err == -ELOOP)
1bd0a3ae 458 pr_err("conflicting %s path\n", name);
146d62e5
AG
459 return err;
460 }
461
462 *ptrap = trap;
463 return 0;
464}
465
0be0bfd2
AG
466/*
467 * Determine how we treat concurrent use of upperdir/workdir based on the
468 * index feature. This is papering over mount leaks of container runtimes,
469 * for example, an old overlay mount is leaked and now its upperdir is
470 * attempted to be used as a lower layer in a new overlay mount.
471 */
472static int ovl_report_in_use(struct ovl_fs *ofs, const char *name)
473{
474 if (ofs->config.index) {
1bd0a3ae 475 pr_err("%s is in-use as upperdir/workdir of another mount, mount with '-o index=off' to override exclusive upperdir protection.\n",
0be0bfd2
AG
476 name);
477 return -EBUSY;
478 } else {
1bd0a3ae 479 pr_warn("%s is in-use as upperdir/workdir of another mount, accessing files from both mounts will result in undefined behavior.\n",
0be0bfd2
AG
480 name);
481 return 0;
482 }
483}
484
146d62e5 485static int ovl_get_upper(struct super_block *sb, struct ovl_fs *ofs,
b36a5780
CB
486 struct ovl_layer *upper_layer,
487 const struct path *upperpath)
6ee8acf0 488{
5064975e 489 struct vfsmount *upper_mnt;
6ee8acf0
MS
490 int err;
491
e21a6c57
AG
492 /* Upperdir path should not be r/o */
493 if (__mnt_is_readonly(upperpath->mnt)) {
1bd0a3ae 494 pr_err("upper fs is r/o, try multi-lower layers mount\n");
6ee8acf0
MS
495 err = -EINVAL;
496 goto out;
497 }
498
ad204488 499 err = ovl_check_namelen(upperpath, ofs, ofs->config.upperdir);
6ee8acf0
MS
500 if (err)
501 goto out;
502
b8e42a65 503 err = ovl_setup_trap(sb, upperpath->dentry, &upper_layer->trap,
146d62e5
AG
504 "upperdir");
505 if (err)
506 goto out;
507
5064975e
MS
508 upper_mnt = clone_private_mount(upperpath);
509 err = PTR_ERR(upper_mnt);
510 if (IS_ERR(upper_mnt)) {
1bd0a3ae 511 pr_err("failed to clone upperpath\n");
5064975e
MS
512 goto out;
513 }
514
515 /* Don't inherit atime flags */
516 upper_mnt->mnt_flags &= ~(MNT_NOATIME | MNT_NODIRATIME | MNT_RELATIME);
b8e42a65
MS
517 upper_layer->mnt = upper_mnt;
518 upper_layer->idx = 0;
519 upper_layer->fsid = 0;
8c25741a 520
654255fa
JX
521 /*
522 * Inherit SB_NOSEC flag from upperdir.
523 *
524 * This optimization changes behavior when a security related attribute
525 * (suid/sgid/security.*) is changed on an underlying layer. This is
526 * okay because we don't yet have guarantees in that case, but it will
527 * need careful treatment once we want to honour changes to underlying
528 * filesystems.
529 */
530 if (upper_mnt->mnt_sb->s_flags & SB_NOSEC)
531 sb->s_flags |= SB_NOSEC;
532
08f4c7c8 533 if (ovl_inuse_trylock(ovl_upper_mnt(ofs)->mnt_root)) {
8c25741a 534 ofs->upperdir_locked = true;
8c25741a 535 } else {
0be0bfd2
AG
536 err = ovl_report_in_use(ofs, "upperdir");
537 if (err)
538 goto out;
8c25741a
MS
539 }
540
6ee8acf0
MS
541 err = 0;
542out:
543 return err;
544}
545
cad218ab
AG
546/*
547 * Returns 1 if RENAME_WHITEOUT is supported, 0 if not supported and
548 * negative values if error is encountered.
549 */
576bb263 550static int ovl_check_rename_whiteout(struct ovl_fs *ofs)
cad218ab 551{
576bb263 552 struct dentry *workdir = ofs->workdir;
cad218ab
AG
553 struct inode *dir = d_inode(workdir);
554 struct dentry *temp;
555 struct dentry *dest;
556 struct dentry *whiteout;
557 struct name_snapshot name;
558 int err;
559
560 inode_lock_nested(dir, I_MUTEX_PARENT);
561
576bb263 562 temp = ovl_create_temp(ofs, workdir, OVL_CATTR(S_IFREG | 0));
cad218ab
AG
563 err = PTR_ERR(temp);
564 if (IS_ERR(temp))
565 goto out_unlock;
566
576bb263 567 dest = ovl_lookup_temp(ofs, workdir);
cad218ab
AG
568 err = PTR_ERR(dest);
569 if (IS_ERR(dest)) {
570 dput(temp);
571 goto out_unlock;
572 }
573
574 /* Name is inline and stable - using snapshot as a copy helper */
575 take_dentry_name_snapshot(&name, temp);
576bb263 576 err = ovl_do_rename(ofs, dir, temp, dir, dest, RENAME_WHITEOUT);
cad218ab
AG
577 if (err) {
578 if (err == -EINVAL)
579 err = 0;
580 goto cleanup_temp;
581 }
582
22f289ce 583 whiteout = ovl_lookup_upper(ofs, name.name.name, workdir, name.name.len);
cad218ab
AG
584 err = PTR_ERR(whiteout);
585 if (IS_ERR(whiteout))
586 goto cleanup_temp;
587
bc8df7a3 588 err = ovl_upper_is_whiteout(ofs, whiteout);
cad218ab
AG
589
590 /* Best effort cleanup of whiteout and temp file */
591 if (err)
576bb263 592 ovl_cleanup(ofs, dir, whiteout);
cad218ab
AG
593 dput(whiteout);
594
595cleanup_temp:
576bb263 596 ovl_cleanup(ofs, dir, temp);
cad218ab
AG
597 release_dentry_name_snapshot(&name);
598 dput(temp);
599 dput(dest);
600
601out_unlock:
602 inode_unlock(dir);
603
604 return err;
605}
606
576bb263
CB
607static struct dentry *ovl_lookup_or_create(struct ovl_fs *ofs,
608 struct dentry *parent,
c86243b0
VG
609 const char *name, umode_t mode)
610{
611 size_t len = strlen(name);
612 struct dentry *child;
613
614 inode_lock_nested(parent->d_inode, I_MUTEX_PARENT);
22f289ce 615 child = ovl_lookup_upper(ofs, name, parent, len);
c86243b0 616 if (!IS_ERR(child) && !child->d_inode)
576bb263 617 child = ovl_create_real(ofs, parent->d_inode, child,
c86243b0
VG
618 OVL_CATTR(mode));
619 inode_unlock(parent->d_inode);
620 dput(parent);
621
622 return child;
623}
624
625/*
626 * Creates $workdir/work/incompat/volatile/dirty file if it is not already
627 * present.
628 */
629static int ovl_create_volatile_dirty(struct ovl_fs *ofs)
630{
631 unsigned int ctr;
632 struct dentry *d = dget(ofs->workbasedir);
633 static const char *const volatile_path[] = {
634 OVL_WORKDIR_NAME, "incompat", "volatile", "dirty"
635 };
636 const char *const *name = volatile_path;
637
638 for (ctr = ARRAY_SIZE(volatile_path); ctr; ctr--, name++) {
576bb263 639 d = ovl_lookup_or_create(ofs, d, *name, ctr > 1 ? S_IFDIR : S_IFREG);
c86243b0
VG
640 if (IS_ERR(d))
641 return PTR_ERR(d);
642 }
643 dput(d);
644 return 0;
645}
646
146d62e5 647static int ovl_make_workdir(struct super_block *sb, struct ovl_fs *ofs,
2d343087 648 const struct path *workpath)
8ed61dc3 649{
08f4c7c8 650 struct vfsmount *mnt = ovl_upper_mnt(ofs);
2b1a7746
MS
651 struct dentry *workdir;
652 struct file *tmpfile;
d80172c2
AG
653 bool rename_whiteout;
654 bool d_type;
e487d889 655 int fh_type;
8ed61dc3
MS
656 int err;
657
2ba9d57e
AG
658 err = mnt_want_write(mnt);
659 if (err)
660 return err;
661
235ce9ed
AG
662 workdir = ovl_workdir_create(ofs, OVL_WORKDIR_NAME, false);
663 err = PTR_ERR(workdir);
664 if (IS_ERR_OR_NULL(workdir))
2ba9d57e 665 goto out;
8ed61dc3 666
235ce9ed
AG
667 ofs->workdir = workdir;
668
146d62e5
AG
669 err = ovl_setup_trap(sb, ofs->workdir, &ofs->workdir_trap, "workdir");
670 if (err)
671 goto out;
672
8ed61dc3
MS
673 /*
674 * Upper should support d_type, else whiteouts are visible. Given
675 * workdir and upper are on same fs, we can do iterate_dir() on
676 * workdir. This check requires successful creation of workdir in
677 * previous step.
678 */
679 err = ovl_check_d_type_supported(workpath);
680 if (err < 0)
2ba9d57e 681 goto out;
8ed61dc3 682
d80172c2
AG
683 d_type = err;
684 if (!d_type)
1bd0a3ae 685 pr_warn("upper fs needs to support d_type.\n");
8ed61dc3
MS
686
687 /* Check if upper/work fs supports O_TMPFILE */
2b1a7746
MS
688 tmpfile = ovl_do_tmpfile(ofs, ofs->workdir, S_IFREG | 0);
689 ofs->tmpfile = !IS_ERR(tmpfile);
ad204488 690 if (ofs->tmpfile)
2b1a7746 691 fput(tmpfile);
8ed61dc3 692 else
1bd0a3ae 693 pr_warn("upper fs does not support tmpfile.\n");
8ed61dc3 694
cad218ab
AG
695
696 /* Check if upper/work fs supports RENAME_WHITEOUT */
576bb263 697 err = ovl_check_rename_whiteout(ofs);
cad218ab
AG
698 if (err < 0)
699 goto out;
700
d80172c2
AG
701 rename_whiteout = err;
702 if (!rename_whiteout)
cad218ab
AG
703 pr_warn("upper fs does not support RENAME_WHITEOUT.\n");
704
8ed61dc3 705 /*
2d2f2d73 706 * Check if upper/work fs supports (trusted|user).overlay.* xattr
8ed61dc3 707 */
c914c0e2 708 err = ovl_setxattr(ofs, ofs->workdir, OVL_XATTR_OPAQUE, "0", 1);
8ed61dc3 709 if (err) {
b10b85fe 710 pr_warn("failed to set xattr on upper\n");
ad204488 711 ofs->noxattr = true;
af5f2396
AG
712 if (ovl_redirect_follow(ofs)) {
713 ofs->config.redirect_mode = OVL_REDIRECT_NOFOLLOW;
714 pr_warn("...falling back to redirect_dir=nofollow.\n");
715 }
716 if (ofs->config.metacopy) {
b0e0f697 717 ofs->config.metacopy = false;
af5f2396
AG
718 pr_warn("...falling back to metacopy=off.\n");
719 }
720 if (ofs->config.index) {
721 ofs->config.index = false;
722 pr_warn("...falling back to index=off.\n");
b0e0f697 723 }
d9544c1b
AG
724 if (ovl_has_fsid(ofs)) {
725 ofs->config.uuid = OVL_UUID_NULL;
726 pr_warn("...falling back to uuid=null.\n");
727 }
b0e0f697
AG
728 /*
729 * xattr support is required for persistent st_ino.
730 * Without persistent st_ino, xino=auto falls back to xino=off.
731 */
732 if (ofs->config.xino == OVL_XINO_AUTO) {
733 ofs->config.xino = OVL_XINO_OFF;
b10b85fe 734 pr_warn("...falling back to xino=off.\n");
b0e0f697 735 }
b10b85fe
MS
736 if (err == -EPERM && !ofs->config.userxattr)
737 pr_info("try mounting with 'userxattr' option\n");
2ba9d57e 738 err = 0;
8ed61dc3 739 } else {
c914c0e2 740 ovl_removexattr(ofs, ofs->workdir, OVL_XATTR_OPAQUE);
8ed61dc3
MS
741 }
742
d80172c2
AG
743 /*
744 * We allowed sub-optimal upper fs configuration and don't want to break
745 * users over kernel upgrade, but we never allowed remote upper fs, so
746 * we can enforce strict requirements for remote upper fs.
747 */
748 if (ovl_dentry_remote(ofs->workdir) &&
749 (!d_type || !rename_whiteout || ofs->noxattr)) {
750 pr_err("upper fs missing required features.\n");
751 err = -EINVAL;
752 goto out;
753 }
754
c86243b0
VG
755 /*
756 * For volatile mount, create a incompat/volatile/dirty file to keep
757 * track of it.
758 */
759 if (ofs->config.ovl_volatile) {
760 err = ovl_create_volatile_dirty(ofs);
761 if (err < 0) {
762 pr_err("Failed to create volatile/dirty file.\n");
763 goto out;
764 }
765 }
766
8ed61dc3 767 /* Check if upper/work fs supports file handles */
e487d889
AG
768 fh_type = ovl_can_decode_fh(ofs->workdir->d_sb);
769 if (ofs->config.index && !fh_type) {
ad204488 770 ofs->config.index = false;
1bd0a3ae 771 pr_warn("upper fs does not support file handles, falling back to index=off.\n");
8ed61dc3 772 }
16aac5ad 773 ofs->nofh |= !fh_type;
8ed61dc3 774
e487d889
AG
775 /* Check if upper fs has 32bit inode numbers */
776 if (fh_type != FILEID_INO32_GEN)
0f831ec8 777 ofs->xino_mode = -1;
e487d889 778
f168f109
AG
779 /* NFS export of r/w mount depends on index */
780 if (ofs->config.nfs_export && !ofs->config.index) {
1bd0a3ae 781 pr_warn("NFS export requires \"index=on\", falling back to nfs_export=off.\n");
f168f109
AG
782 ofs->config.nfs_export = false;
783 }
2ba9d57e
AG
784out:
785 mnt_drop_write(mnt);
786 return err;
8ed61dc3
MS
787}
788
146d62e5 789static int ovl_get_workdir(struct super_block *sb, struct ovl_fs *ofs,
b36a5780
CB
790 const struct path *upperpath,
791 const struct path *workpath)
520d7c86
MS
792{
793 int err;
520d7c86
MS
794
795 err = -EINVAL;
b36a5780 796 if (upperpath->mnt != workpath->mnt) {
1bd0a3ae 797 pr_err("workdir and upperdir must reside under the same mount\n");
b36a5780 798 return err;
520d7c86 799 }
b36a5780 800 if (!ovl_workdir_ok(workpath->dentry, upperpath->dentry)) {
1bd0a3ae 801 pr_err("workdir and upperdir must be separate subtrees\n");
b36a5780 802 return err;
520d7c86
MS
803 }
804
b36a5780 805 ofs->workbasedir = dget(workpath->dentry);
8c25741a 806
8c25741a 807 if (ovl_inuse_trylock(ofs->workbasedir)) {
ad204488 808 ofs->workdir_locked = true;
520d7c86 809 } else {
0be0bfd2
AG
810 err = ovl_report_in_use(ofs, "workdir");
811 if (err)
b36a5780 812 return err;
520d7c86
MS
813 }
814
0be0bfd2
AG
815 err = ovl_setup_trap(sb, ofs->workbasedir, &ofs->workbasedir_trap,
816 "workdir");
817 if (err)
b36a5780 818 return err;
bca44b52 819
b36a5780 820 return ovl_make_workdir(sb, ofs, workpath);
520d7c86
MS
821}
822
146d62e5 823static int ovl_get_indexdir(struct super_block *sb, struct ovl_fs *ofs,
2d343087 824 struct ovl_entry *oe, const struct path *upperpath)
f7e3a7d9 825{
08f4c7c8 826 struct vfsmount *mnt = ovl_upper_mnt(ofs);
235ce9ed 827 struct dentry *indexdir;
5b02bfc1
AG
828 struct dentry *origin = ovl_lowerstack(oe)->dentry;
829 const struct ovl_fh *fh;
f7e3a7d9
MS
830 int err;
831
5b02bfc1
AG
832 fh = ovl_get_origin_fh(ofs, origin);
833 if (IS_ERR(fh))
834 return PTR_ERR(fh);
835
2ba9d57e
AG
836 err = mnt_want_write(mnt);
837 if (err)
5b02bfc1 838 goto out_free_fh;
2ba9d57e 839
f7e3a7d9 840 /* Verify lower root is upper root origin */
5b02bfc1 841 err = ovl_verify_origin_fh(ofs, upperpath->dentry, fh, true);
f7e3a7d9 842 if (err) {
1bd0a3ae 843 pr_err("failed to verify upper root origin\n");
f7e3a7d9
MS
844 goto out;
845 }
846
470c1563
AG
847 /* index dir will act also as workdir */
848 iput(ofs->workdir_trap);
849 ofs->workdir_trap = NULL;
850 dput(ofs->workdir);
851 ofs->workdir = NULL;
235ce9ed
AG
852 indexdir = ovl_workdir_create(ofs, OVL_INDEXDIR_NAME, true);
853 if (IS_ERR(indexdir)) {
854 err = PTR_ERR(indexdir);
855 } else if (indexdir) {
02d70090
AG
856 ofs->workdir = indexdir;
857 err = ovl_setup_trap(sb, indexdir, &ofs->workdir_trap,
146d62e5
AG
858 "indexdir");
859 if (err)
860 goto out;
861
ad1d615c
AG
862 /*
863 * Verify upper root is exclusively associated with index dir.
2d2f2d73 864 * Older kernels stored upper fh in ".overlay.origin"
ad1d615c
AG
865 * xattr. If that xattr exists, verify that it is a match to
866 * upper dir file handle. In any case, verify or set xattr
2d2f2d73 867 * ".overlay.upper" to indicate that index may have
ad1d615c
AG
868 * directory entries.
869 */
02d70090
AG
870 if (ovl_check_origin_xattr(ofs, indexdir)) {
871 err = ovl_verify_origin_xattr(ofs, indexdir,
5b02bfc1
AG
872 OVL_XATTR_ORIGIN,
873 upperpath->dentry, true,
874 false);
ad1d615c 875 if (err)
1bd0a3ae 876 pr_err("failed to verify index dir 'origin' xattr\n");
ad1d615c 877 }
02d70090 878 err = ovl_verify_upper(ofs, indexdir, upperpath->dentry, true);
f7e3a7d9 879 if (err)
1bd0a3ae 880 pr_err("failed to verify index dir 'upper' xattr\n");
f7e3a7d9
MS
881
882 /* Cleanup bad/stale/orphan index entries */
883 if (!err)
1eff1a1d 884 err = ovl_indexdir_cleanup(ofs);
f7e3a7d9 885 }
02d70090 886 if (err || !indexdir)
1bd0a3ae 887 pr_warn("try deleting index dir or mounting with '-o index=off' to disable inodes index.\n");
f7e3a7d9
MS
888
889out:
2ba9d57e 890 mnt_drop_write(mnt);
5b02bfc1
AG
891out_free_fh:
892 kfree(fh);
f7e3a7d9
MS
893 return err;
894}
895
9df085f3
AG
896static bool ovl_lower_uuid_ok(struct ovl_fs *ofs, const uuid_t *uuid)
897{
898 unsigned int i;
899
08f4c7c8 900 if (!ofs->config.nfs_export && !ovl_upper_mnt(ofs))
9df085f3
AG
901 return true;
902
a888db31
AG
903 /*
904 * We allow using single lower with null uuid for index and nfs_export
905 * for example to support those features with single lower squashfs.
906 * To avoid regressions in setups of overlay with re-formatted lower
907 * squashfs, do not allow decoding origin with lower null uuid unless
908 * user opted-in to one of the new features that require following the
909 * lower inode of non-dir upper.
910 */
ca45275c 911 if (ovl_allow_offline_changes(ofs) && uuid_is_null(uuid))
a888db31
AG
912 return false;
913
1b81dddd 914 for (i = 0; i < ofs->numfs; i++) {
9df085f3
AG
915 /*
916 * We use uuid to associate an overlay lower file handle with a
917 * lower layer, so we can accept lower fs with null uuid as long
918 * as all lower layers with null uuid are on the same fs.
7e63c87f
AG
919 * if we detect multiple lower fs with the same uuid, we
920 * disable lower file handle decoding on all of them.
9df085f3 921 */
1b81dddd
AG
922 if (ofs->fs[i].is_lower &&
923 uuid_equal(&ofs->fs[i].sb->s_uuid, uuid)) {
07f1e596 924 ofs->fs[i].bad_uuid = true;
9df085f3 925 return false;
7e63c87f 926 }
9df085f3
AG
927 }
928 return true;
929}
930
5148626b 931/* Get a unique fsid for the layer */
9df085f3 932static int ovl_get_fsid(struct ovl_fs *ofs, const struct path *path)
5148626b 933{
9df085f3 934 struct super_block *sb = path->mnt->mnt_sb;
5148626b
AG
935 unsigned int i;
936 dev_t dev;
937 int err;
7e63c87f 938 bool bad_uuid = false;
b0e0f697 939 bool warn = false;
5148626b 940
07f1e596
AG
941 for (i = 0; i < ofs->numfs; i++) {
942 if (ofs->fs[i].sb == sb)
943 return i;
5148626b
AG
944 }
945
9df085f3 946 if (!ovl_lower_uuid_ok(ofs, &sb->s_uuid)) {
7e63c87f 947 bad_uuid = true;
b0e0f697
AG
948 if (ofs->config.xino == OVL_XINO_AUTO) {
949 ofs->config.xino = OVL_XINO_OFF;
950 warn = true;
951 }
7e63c87f
AG
952 if (ofs->config.index || ofs->config.nfs_export) {
953 ofs->config.index = false;
954 ofs->config.nfs_export = false;
b0e0f697
AG
955 warn = true;
956 }
957 if (warn) {
958 pr_warn("%s uuid detected in lower fs '%pd2', falling back to xino=%s,index=off,nfs_export=off.\n",
7e63c87f
AG
959 uuid_is_null(&sb->s_uuid) ? "null" :
960 "conflicting",
dcb399de 961 path->dentry, ovl_xino_mode(&ofs->config));
7e63c87f 962 }
9df085f3
AG
963 }
964
5148626b
AG
965 err = get_anon_bdev(&dev);
966 if (err) {
1bd0a3ae 967 pr_err("failed to get anonymous bdev for lowerpath\n");
5148626b
AG
968 return err;
969 }
970
07f1e596
AG
971 ofs->fs[ofs->numfs].sb = sb;
972 ofs->fs[ofs->numfs].pseudo_dev = dev;
973 ofs->fs[ofs->numfs].bad_uuid = bad_uuid;
5148626b 974
07f1e596 975 return ofs->numfs++;
5148626b
AG
976}
977
37ebf056
AG
978/*
979 * The fsid after the last lower fsid is used for the data layers.
980 * It is a "null fs" with a null sb, null uuid, and no pseudo dev.
981 */
982static int ovl_get_data_fsid(struct ovl_fs *ofs)
983{
984 return ofs->numfs;
985}
986
987
94375f9d 988static int ovl_get_layers(struct super_block *sb, struct ovl_fs *ofs,
b36a5780 989 struct ovl_fs_context *ctx, struct ovl_layer *layers)
520d7c86
MS
990{
991 int err;
992 unsigned int i;
b36a5780 993 size_t nr_merged_lower;
520d7c86 994
b36a5780 995 ofs->fs = kcalloc(ctx->nr + 2, sizeof(struct ovl_sb), GFP_KERNEL);
07f1e596 996 if (ofs->fs == NULL)
9e88f905 997 return -ENOMEM;
5148626b 998
37ebf056
AG
999 /*
1000 * idx/fsid 0 are reserved for upper fs even with lower only overlay
1001 * and the last fsid is reserved for "null fs" of the data layers.
1002 */
07f1e596
AG
1003 ofs->numfs++;
1004
07f1e596 1005 /*
b7bf9908
AG
1006 * All lower layers that share the same fs as upper layer, use the same
1007 * pseudo_dev as upper layer. Allocate fs[0].pseudo_dev even for lower
1008 * only overlay to simplify ovl_fs_free().
1b81dddd 1009 * is_lower will be set if upper fs is shared with a lower layer.
07f1e596 1010 */
b7bf9908
AG
1011 err = get_anon_bdev(&ofs->fs[0].pseudo_dev);
1012 if (err) {
1013 pr_err("failed to get anonymous bdev for upper fs\n");
9e88f905 1014 return err;
b7bf9908
AG
1015 }
1016
08f4c7c8
MS
1017 if (ovl_upper_mnt(ofs)) {
1018 ofs->fs[0].sb = ovl_upper_mnt(ofs)->mnt_sb;
1b81dddd 1019 ofs->fs[0].is_lower = false;
07f1e596
AG
1020 }
1021
b36a5780
CB
1022 nr_merged_lower = ctx->nr - ctx->nr_data;
1023 for (i = 0; i < ctx->nr; i++) {
1024 struct ovl_fs_context_layer *l = &ctx->lower[i];
520d7c86 1025 struct vfsmount *mnt;
146d62e5 1026 struct inode *trap;
5148626b 1027 int fsid;
520d7c86 1028
b36a5780
CB
1029 if (i < nr_merged_lower)
1030 fsid = ovl_get_fsid(ofs, &l->path);
37ebf056
AG
1031 else
1032 fsid = ovl_get_data_fsid(ofs);
9e88f905
AG
1033 if (fsid < 0)
1034 return fsid;
520d7c86 1035
24f14009 1036 /*
1037 * Check if lower root conflicts with this overlay layers before
1038 * checking if it is in-use as upperdir/workdir of "another"
1039 * mount, because we do not bother to check in ovl_is_inuse() if
1040 * the upperdir/workdir is in fact in-use by our
1041 * upperdir/workdir.
1042 */
b36a5780 1043 err = ovl_setup_trap(sb, l->path.dentry, &trap, "lowerdir");
146d62e5 1044 if (err)
9e88f905 1045 return err;
146d62e5 1046
b36a5780 1047 if (ovl_is_inuse(l->path.dentry)) {
0be0bfd2 1048 err = ovl_report_in_use(ofs, "lowerdir");
24f14009 1049 if (err) {
1050 iput(trap);
9e88f905 1051 return err;
24f14009 1052 }
0be0bfd2
AG
1053 }
1054
b36a5780 1055 mnt = clone_private_mount(&l->path);
520d7c86
MS
1056 err = PTR_ERR(mnt);
1057 if (IS_ERR(mnt)) {
1bd0a3ae 1058 pr_err("failed to clone lowerpath\n");
146d62e5 1059 iput(trap);
9e88f905 1060 return err;
520d7c86 1061 }
5148626b 1062
520d7c86
MS
1063 /*
1064 * Make lower layers R/O. That way fchmod/fchown on lower file
1065 * will fail instead of modifying lower fs.
1066 */
1067 mnt->mnt_flags |= MNT_READONLY | MNT_NOATIME;
1068
13464165
MS
1069 layers[ofs->numlayer].trap = trap;
1070 layers[ofs->numlayer].mnt = mnt;
1071 layers[ofs->numlayer].idx = ofs->numlayer;
1072 layers[ofs->numlayer].fsid = fsid;
1073 layers[ofs->numlayer].fs = &ofs->fs[fsid];
a535116d
AG
1074 /* Store for printing lowerdir=... in ovl_show_options() */
1075 ofs->config.lowerdirs[ofs->numlayer] = l->name;
b36a5780 1076 l->name = NULL;
94375f9d 1077 ofs->numlayer++;
1b81dddd 1078 ofs->fs[fsid].is_lower = true;
520d7c86 1079 }
e487d889 1080
795939a9
AG
1081 /*
1082 * When all layers on same fs, overlay can use real inode numbers.
926e94d7
AG
1083 * With mount option "xino=<on|auto>", mounter declares that there are
1084 * enough free high bits in underlying fs to hold the unique fsid.
795939a9
AG
1085 * If overlayfs does encounter underlying inodes using the high xino
1086 * bits reserved for fsid, it emits a warning and uses the original
dfe51d47
AG
1087 * inode number or a non persistent inode number allocated from a
1088 * dedicated range.
795939a9 1089 */
08f4c7c8 1090 if (ofs->numfs - !ovl_upper_mnt(ofs) == 1) {
0f831ec8
AG
1091 if (ofs->config.xino == OVL_XINO_ON)
1092 pr_info("\"xino=on\" is useless with all layers on same fs, ignore.\n");
1093 ofs->xino_mode = 0;
53afcd31
AG
1094 } else if (ofs->config.xino == OVL_XINO_OFF) {
1095 ofs->xino_mode = -1;
926e94d7 1096 } else if (ofs->xino_mode < 0) {
795939a9 1097 /*
07f1e596 1098 * This is a roundup of number of bits needed for encoding
dfe51d47
AG
1099 * fsid, where fsid 0 is reserved for upper fs (even with
1100 * lower only overlay) +1 extra bit is reserved for the non
1101 * persistent inode number range that is used for resolving
1102 * xino lower bits overflow.
795939a9 1103 */
dfe51d47
AG
1104 BUILD_BUG_ON(ilog2(OVL_MAX_STACK) > 30);
1105 ofs->xino_mode = ilog2(ofs->numfs - 1) + 2;
795939a9
AG
1106 }
1107
0f831ec8 1108 if (ofs->xino_mode > 0) {
1bd0a3ae 1109 pr_info("\"xino\" feature enabled using %d upper inode bits.\n",
0f831ec8 1110 ofs->xino_mode);
795939a9 1111 }
e487d889 1112
9e88f905 1113 return 0;
520d7c86
MS
1114}
1115
4155c10a 1116static struct ovl_entry *ovl_get_lowerstack(struct super_block *sb,
b36a5780
CB
1117 struct ovl_fs_context *ctx,
1118 struct ovl_fs *ofs,
1119 struct ovl_layer *layers)
53dbb0b4
MS
1120{
1121 int err;
b8e42a65 1122 unsigned int i;
b36a5780 1123 size_t nr_merged_lower;
4155c10a 1124 struct ovl_entry *oe;
b36a5780
CB
1125 struct ovl_path *lowerstack;
1126
1127 struct ovl_fs_context_layer *l;
53dbb0b4 1128
b36a5780 1129 if (!ofs->config.upperdir && ctx->nr == 1) {
1bd0a3ae 1130 pr_err("at least 2 lowerdir are needed while upperdir nonexistent\n");
b8e42a65 1131 return ERR_PTR(-EINVAL);
53dbb0b4
MS
1132 }
1133
b36a5780
CB
1134 err = -EINVAL;
1135 for (i = 0; i < ctx->nr; i++) {
1136 l = &ctx->lower[i];
53dbb0b4 1137
b36a5780 1138 err = ovl_lower_dir(l->name, &l->path, ofs, &sb->s_stack_depth);
53dbb0b4 1139 if (err)
b36a5780 1140 return ERR_PTR(err);
53dbb0b4
MS
1141 }
1142
1143 err = -EINVAL;
1144 sb->s_stack_depth++;
1145 if (sb->s_stack_depth > FILESYSTEM_MAX_STACK_DEPTH) {
1bd0a3ae 1146 pr_err("maximum fs stacking depth exceeded\n");
b36a5780 1147 return ERR_PTR(err);
53dbb0b4
MS
1148 }
1149
b36a5780 1150 err = ovl_get_layers(sb, ofs, ctx, layers);
4155c10a 1151 if (err)
b36a5780 1152 return ERR_PTR(err);
4155c10a
MS
1153
1154 err = -ENOMEM;
37ebf056 1155 /* Data-only layers are not merged in root directory */
b36a5780
CB
1156 nr_merged_lower = ctx->nr - ctx->nr_data;
1157 oe = ovl_alloc_entry(nr_merged_lower);
4155c10a 1158 if (!oe)
b36a5780 1159 return ERR_PTR(err);
4155c10a 1160
5522c9c7 1161 lowerstack = ovl_lowerstack(oe);
b36a5780
CB
1162 for (i = 0; i < nr_merged_lower; i++) {
1163 l = &ctx->lower[i];
1164 lowerstack[i].dentry = dget(l->path.dentry);
1165 lowerstack[i].layer = &ofs->layers[i + 1];
4155c10a 1166 }
b36a5780 1167 ofs->numdatalayer = ctx->nr_data;
4155c10a
MS
1168
1169 return oe;
53dbb0b4
MS
1170}
1171
146d62e5
AG
1172/*
1173 * Check if this layer root is a descendant of:
1174 * - another layer of this overlayfs instance
1175 * - upper/work dir of any overlayfs instance
146d62e5 1176 */
0be0bfd2 1177static int ovl_check_layer(struct super_block *sb, struct ovl_fs *ofs,
708fa015
MS
1178 struct dentry *dentry, const char *name,
1179 bool is_lower)
146d62e5 1180{
9179c21d 1181 struct dentry *next = dentry, *parent;
146d62e5
AG
1182 int err = 0;
1183
9179c21d 1184 if (!dentry)
146d62e5
AG
1185 return 0;
1186
9179c21d
MS
1187 parent = dget_parent(next);
1188
1189 /* Walk back ancestors to root (inclusive) looking for traps */
1190 while (!err && parent != next) {
708fa015 1191 if (is_lower && ovl_lookup_trap_inode(sb, parent)) {
146d62e5 1192 err = -ELOOP;
1bd0a3ae 1193 pr_err("overlapping %s path\n", name);
0be0bfd2
AG
1194 } else if (ovl_is_inuse(parent)) {
1195 err = ovl_report_in_use(ofs, name);
146d62e5 1196 }
146d62e5 1197 next = parent;
9179c21d
MS
1198 parent = dget_parent(next);
1199 dput(next);
146d62e5
AG
1200 }
1201
9179c21d 1202 dput(parent);
146d62e5
AG
1203
1204 return err;
1205}
1206
1207/*
1208 * Check if any of the layers or work dirs overlap.
1209 */
1210static int ovl_check_overlapping_layers(struct super_block *sb,
1211 struct ovl_fs *ofs)
1212{
1213 int i, err;
1214
08f4c7c8
MS
1215 if (ovl_upper_mnt(ofs)) {
1216 err = ovl_check_layer(sb, ofs, ovl_upper_mnt(ofs)->mnt_root,
708fa015 1217 "upperdir", false);
146d62e5
AG
1218 if (err)
1219 return err;
1220
1221 /*
1222 * Checking workbasedir avoids hitting ovl_is_inuse(parent) of
1223 * this instance and covers overlapping work and index dirs,
1224 * unless work or index dir have been moved since created inside
1225 * workbasedir. In that case, we already have their traps in
1226 * inode cache and we will catch that case on lookup.
1227 */
708fa015
MS
1228 err = ovl_check_layer(sb, ofs, ofs->workbasedir, "workdir",
1229 false);
146d62e5
AG
1230 if (err)
1231 return err;
1232 }
1233
94375f9d 1234 for (i = 1; i < ofs->numlayer; i++) {
0be0bfd2 1235 err = ovl_check_layer(sb, ofs,
94375f9d 1236 ofs->layers[i].mnt->mnt_root,
708fa015 1237 "lowerdir", true);
146d62e5
AG
1238 if (err)
1239 return err;
1240 }
1241
1242 return 0;
1243}
1244
2effc5c2
AG
1245static struct dentry *ovl_get_root(struct super_block *sb,
1246 struct dentry *upperdentry,
1247 struct ovl_entry *oe)
1248{
1249 struct dentry *root;
5522c9c7 1250 struct ovl_path *lowerpath = ovl_lowerstack(oe);
62c832ed
AG
1251 unsigned long ino = d_inode(lowerpath->dentry)->i_ino;
1252 int fsid = lowerpath->layer->fsid;
1253 struct ovl_inode_params oip = {
1254 .upperdentry = upperdentry,
0af950f5 1255 .oe = oe,
62c832ed 1256 };
2effc5c2
AG
1257
1258 root = d_make_root(ovl_new_inode(sb, S_IFDIR, 0));
1259 if (!root)
1260 return NULL;
1261
2effc5c2 1262 if (upperdentry) {
62c832ed
AG
1263 /* Root inode uses upper st_ino/i_ino */
1264 ino = d_inode(upperdentry)->i_ino;
1265 fsid = 0;
2effc5c2 1266 ovl_dentry_set_upper_alias(root);
610afc0b 1267 if (ovl_is_impuredir(sb, upperdentry))
2effc5c2
AG
1268 ovl_set_flag(OVL_IMPURE, d_inode(root));
1269 }
1270
1271 /* Root is always merge -> can have whiteouts */
1272 ovl_set_flag(OVL_WHITEOUTS, d_inode(root));
1273 ovl_dentry_set_flag(OVL_E_CONNECTED, root);
1274 ovl_set_upperdata(d_inode(root));
62c832ed 1275 ovl_inode_init(d_inode(root), &oip, ino, fsid);
0af950f5 1276 ovl_dentry_init_flags(root, upperdentry, oe, DCACHE_OP_WEAK_REVALIDATE);
367d002d
AG
1277 /* root keeps a reference of upperdentry */
1278 dget(upperdentry);
2effc5c2
AG
1279
1280 return root;
1281}
1282
7fb7998b 1283int ovl_fill_super(struct super_block *sb, struct fs_context *fc)
e9be9d5e 1284{
1784fbc2
CB
1285 struct ovl_fs *ofs = sb->s_fs_info;
1286 struct ovl_fs_context *ctx = fc->fs_private;
e9be9d5e 1287 struct dentry *root_dentry;
4155c10a 1288 struct ovl_entry *oe;
b8e42a65 1289 struct ovl_layer *layers;
51f8f3c4 1290 struct cred *cred;
e9be9d5e
MS
1291 int err;
1292
9efb069d 1293 err = -EIO;
1784fbc2
CB
1294 if (WARN_ON(fc->user_ns != current_user_ns()))
1295 goto out_err;
9efb069d 1296
f4288844
MS
1297 sb->s_d_op = &ovl_dentry_operations;
1298
d7b49b10 1299 err = -ENOMEM;
ad204488 1300 ofs->creator_cred = cred = prepare_creds();
c6fe6254
MS
1301 if (!cred)
1302 goto out_err;
1303
1784fbc2 1304 err = ovl_fs_params_verify(ctx, &ofs->config);
f45827e8 1305 if (err)
a9075cdb 1306 goto out_err;
f45827e8 1307
e9be9d5e 1308 err = -EINVAL;
b36a5780 1309 if (ctx->nr == 0) {
1784fbc2 1310 if (!(fc->sb_flags & SB_SILENT))
1bd0a3ae 1311 pr_err("missing 'lowerdir'\n");
a9075cdb 1312 goto out_err;
e9be9d5e
MS
1313 }
1314
b8e42a65 1315 err = -ENOMEM;
b36a5780 1316 layers = kcalloc(ctx->nr + 1, sizeof(struct ovl_layer), GFP_KERNEL);
b8e42a65
MS
1317 if (!layers)
1318 goto out_err;
1319
a535116d
AG
1320 ofs->config.lowerdirs = kcalloc(ctx->nr + 1, sizeof(char *), GFP_KERNEL);
1321 if (!ofs->config.lowerdirs) {
1322 kfree(layers);
1323 goto out_err;
1324 }
b8e42a65 1325 ofs->layers = layers;
a535116d
AG
1326 /*
1327 * Layer 0 is reserved for upper even if there's no upper.
0cea4c09
AG
1328 * config.lowerdirs[0] is used for storing the user provided colon
1329 * separated lowerdir string.
a535116d 1330 */
0cea4c09
AG
1331 ofs->config.lowerdirs[0] = ctx->lowerdir_all;
1332 ctx->lowerdir_all = NULL;
b8e42a65
MS
1333 ofs->numlayer = 1;
1334
53a08cb9 1335 sb->s_stack_depth = 0;
cf9a6784 1336 sb->s_maxbytes = MAX_LFS_FILESIZE;
4d314f78 1337 atomic_long_set(&ofs->last_ino, 1);
4f119628 1338 /* Assume underlying fs uses 32bit inodes unless proven otherwise */
53afcd31 1339 if (ofs->config.xino != OVL_XINO_OFF) {
0f831ec8 1340 ofs->xino_mode = BITS_PER_LONG - 32;
53afcd31
AG
1341 if (!ofs->xino_mode) {
1342 pr_warn("xino not supported on 32bit kernel, falling back to xino=off.\n");
1343 ofs->config.xino = OVL_XINO_OFF;
1344 }
1345 }
795939a9 1346
146d62e5
AG
1347 /* alloc/destroy_inode needed for setting up traps in inode cache */
1348 sb->s_op = &ovl_super_operations;
1349
ad204488 1350 if (ofs->config.upperdir) {
335d3fc5
SD
1351 struct super_block *upper_sb;
1352
d7b49b10 1353 err = -EINVAL;
ad204488 1354 if (!ofs->config.workdir) {
1bd0a3ae 1355 pr_err("missing 'workdir'\n");
a9075cdb 1356 goto out_err;
53a08cb9 1357 }
e9be9d5e 1358
b36a5780 1359 err = ovl_get_upper(sb, ofs, &layers[0], &ctx->upper);
53a08cb9 1360 if (err)
a9075cdb 1361 goto out_err;
2cac0c00 1362
335d3fc5
SD
1363 upper_sb = ovl_upper_mnt(ofs)->mnt_sb;
1364 if (!ovl_should_sync(ofs)) {
1365 ofs->errseq = errseq_sample(&upper_sb->s_wb_err);
1366 if (errseq_check(&upper_sb->s_wb_err, ofs->errseq)) {
1367 err = -EIO;
1368 pr_err("Cannot mount volatile when upperdir has an unseen error. Sync upperdir fs to clear state.\n");
1369 goto out_err;
1370 }
1371 }
1372
b36a5780 1373 err = ovl_get_workdir(sb, ofs, &ctx->upper, &ctx->work);
8ed61dc3 1374 if (err)
a9075cdb 1375 goto out_err;
c6fe6254 1376
ad204488 1377 if (!ofs->workdir)
1751e8a6 1378 sb->s_flags |= SB_RDONLY;
6e88256e 1379
335d3fc5
SD
1380 sb->s_stack_depth = upper_sb->s_stack_depth;
1381 sb->s_time_gran = upper_sb->s_time_gran;
e9be9d5e 1382 }
b36a5780 1383 oe = ovl_get_lowerstack(sb, ctx, ofs, layers);
4155c10a
MS
1384 err = PTR_ERR(oe);
1385 if (IS_ERR(oe))
a9075cdb 1386 goto out_err;
e9be9d5e 1387
71cbad7e 1388 /* If the upper fs is nonexistent, we mark overlayfs r/o too */
08f4c7c8 1389 if (!ovl_upper_mnt(ofs))
1751e8a6 1390 sb->s_flags |= SB_RDONLY;
e9be9d5e 1391
b0504bfe
AG
1392 if (!ovl_origin_uuid(ofs) && ofs->numfs > 1) {
1393 pr_warn("The uuid=off requires a single fs for lower and upper, falling back to uuid=null.\n");
1394 ofs->config.uuid = OVL_UUID_NULL;
d9544c1b
AG
1395 } else if (ovl_has_fsid(ofs) && ovl_upper_mnt(ofs)) {
1396 /* Use per instance persistent uuid/fsid */
1397 ovl_init_uuid_xattr(sb, ofs, &ctx->upper);
5830fb6b
PT
1398 }
1399
470c1563 1400 if (!ovl_force_readonly(ofs) && ofs->config.index) {
b36a5780 1401 err = ovl_get_indexdir(sb, ofs, oe, &ctx->upper);
54fb347e 1402 if (err)
4155c10a 1403 goto out_free_oe;
6e88256e 1404
972d0093 1405 /* Force r/o mount with no index dir */
02d70090 1406 if (!ofs->workdir)
1751e8a6 1407 sb->s_flags |= SB_RDONLY;
02bcd157
AG
1408 }
1409
146d62e5
AG
1410 err = ovl_check_overlapping_layers(sb, ofs);
1411 if (err)
1412 goto out_free_oe;
1413
972d0093 1414 /* Show index=off in /proc/mounts for forced r/o mount */
02d70090 1415 if (!ofs->workdir) {
ad204488 1416 ofs->config.index = false;
08f4c7c8 1417 if (ovl_upper_mnt(ofs) && ofs->config.nfs_export) {
1bd0a3ae 1418 pr_warn("NFS export requires an index dir, falling back to nfs_export=off.\n");
f168f109
AG
1419 ofs->config.nfs_export = false;
1420 }
1421 }
02bcd157 1422
d5791044 1423 if (ofs->config.metacopy && ofs->config.nfs_export) {
1bd0a3ae 1424 pr_warn("NFS export is not supported with metadata only copy up, falling back to nfs_export=off.\n");
d5791044
VG
1425 ofs->config.nfs_export = false;
1426 }
1427
16aac5ad
AG
1428 /*
1429 * Support encoding decodable file handles with nfs_export=on
1430 * and encoding non-decodable file handles with nfs_export=off
1431 * if all layers support file handles.
1432 */
8383f174
AG
1433 if (ofs->config.nfs_export)
1434 sb->s_export_op = &ovl_export_operations;
16aac5ad
AG
1435 else if (!ofs->nofh)
1436 sb->s_export_op = &ovl_export_fid_operations;
8383f174 1437
51f8f3c4
KK
1438 /* Never override disk quota limits or use reserved space */
1439 cap_lower(cred->cap_effective, CAP_SYS_RESOURCE);
1440
655042cc 1441 sb->s_magic = OVERLAYFS_SUPER_MAGIC;
420a62dd 1442 sb->s_xattr = ovl_xattr_handlers(ofs);
ad204488 1443 sb->s_fs_info = ofs;
2bc5e5e8 1444#ifdef CONFIG_FS_POSIX_ACL
7c4d37c2 1445 sb->s_flags |= SB_POSIXACL;
2bc5e5e8 1446#endif
b836c4d2 1447 sb->s_iflags |= SB_I_SKIP_SYNC;
2bc5e5e8
CB
1448 /*
1449 * Ensure that umask handling is done by the filesystems used
1450 * for the the upper layer instead of overlayfs as that would
1451 * lead to unexpected results.
1452 */
1453 sb->s_iflags |= SB_I_NOUMASK;
655042cc 1454
c6fe6254 1455 err = -ENOMEM;
b36a5780 1456 root_dentry = ovl_get_root(sb, ctx->upper.dentry, oe);
e9be9d5e 1457 if (!root_dentry)
4155c10a 1458 goto out_free_oe;
e9be9d5e 1459
e9be9d5e 1460 sb->s_root = root_dentry;
e9be9d5e
MS
1461
1462 return 0;
1463
4155c10a 1464out_free_oe:
163db0da 1465 ovl_free_entry(oe);
4155c10a 1466out_err:
ad204488 1467 ovl_free_fs(ofs);
1784fbc2 1468 sb->s_fs_info = NULL;
e9be9d5e
MS
1469 return err;
1470}
1471
f01d0889 1472struct file_system_type ovl_fs_type = {
1784fbc2
CB
1473 .owner = THIS_MODULE,
1474 .name = "overlay",
1475 .init_fs_context = ovl_init_fs_context,
1476 .parameters = ovl_parameter_spec,
1477 .fs_flags = FS_USERNS_MOUNT,
1478 .kill_sb = kill_anon_super,
e9be9d5e 1479};
ef94b186 1480MODULE_ALIAS_FS("overlay");
e9be9d5e 1481
13cf199d
AG
1482static void ovl_inode_init_once(void *foo)
1483{
1484 struct ovl_inode *oi = foo;
1485
1486 inode_init_once(&oi->vfs_inode);
1487}
1488
e9be9d5e
MS
1489static int __init ovl_init(void)
1490{
13cf199d
AG
1491 int err;
1492
1493 ovl_inode_cachep = kmem_cache_create("ovl_inode",
1494 sizeof(struct ovl_inode), 0,
1495 (SLAB_RECLAIM_ACCOUNT|
1496 SLAB_MEM_SPREAD|SLAB_ACCOUNT),
1497 ovl_inode_init_once);
1498 if (ovl_inode_cachep == NULL)
1499 return -ENOMEM;
1500
2406a307
JX
1501 err = ovl_aio_request_cache_init();
1502 if (!err) {
1503 err = register_filesystem(&ovl_fs_type);
1504 if (!err)
1505 return 0;
1506
1507 ovl_aio_request_cache_destroy();
1508 }
1509 kmem_cache_destroy(ovl_inode_cachep);
13cf199d
AG
1510
1511 return err;
e9be9d5e
MS
1512}
1513
1514static void __exit ovl_exit(void)
1515{
1516 unregister_filesystem(&ovl_fs_type);
13cf199d
AG
1517
1518 /*
1519 * Make sure all delayed rcu free inodes are flushed before we
1520 * destroy cache.
1521 */
1522 rcu_barrier();
1523 kmem_cache_destroy(ovl_inode_cachep);
2406a307 1524 ovl_aio_request_cache_destroy();
e9be9d5e
MS
1525}
1526
1527module_init(ovl_init);
1528module_exit(ovl_exit);