3 * Copyright (C) 2011 Novell Inc.
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published by
7 * the Free Software Foundation.
11 #include <linux/namei.h>
12 #include <linux/pagemap.h>
13 #include <linux/xattr.h>
14 #include <linux/security.h>
15 #include <linux/mount.h>
16 #include <linux/slab.h>
17 #include <linux/parser.h>
18 #include <linux/module.h>
19 #include <linux/sched.h>
20 #include <linux/statfs.h>
21 #include <linux/seq_file.h>
22 #include <linux/posix_acl_xattr.h>
23 #include "overlayfs.h"
25 MODULE_AUTHOR("Miklos Szeredi <miklos@szeredi.hu>");
26 MODULE_DESCRIPTION("Overlay filesystem");
27 MODULE_LICENSE("GPL");
33 bool default_permissions
;
36 /* private information held for overlayfs's superblock */
38 struct vfsmount
*upper_mnt
;
40 struct vfsmount
**lower_mnt
;
41 struct dentry
*workdir
;
43 /* pathnames of lower and upper dirs, for show_options */
44 struct ovl_config config
;
45 /* creds of process who forced instantiation of super block */
46 const struct cred
*creator_cred
;
51 /* private information held for every overlayfs dentry */
53 struct dentry
*__upperdentry
;
54 struct ovl_dir_cache
*cache
;
63 struct path lowerstack
[];
66 #define OVL_MAX_STACK 500
68 static struct dentry
*__ovl_dentry_lower(struct ovl_entry
*oe
)
70 return oe
->numlower
? oe
->lowerstack
[0].dentry
: NULL
;
73 enum ovl_path_type
ovl_path_type(struct dentry
*dentry
)
75 struct ovl_entry
*oe
= dentry
->d_fsdata
;
76 enum ovl_path_type type
= 0;
78 if (oe
->__upperdentry
) {
79 type
= __OVL_PATH_UPPER
;
82 * Non-dir dentry can hold lower dentry from previous
83 * location. Its purity depends only on opaque flag.
85 if (oe
->numlower
&& S_ISDIR(dentry
->d_inode
->i_mode
))
86 type
|= __OVL_PATH_MERGE
;
88 type
|= __OVL_PATH_PURE
;
91 type
|= __OVL_PATH_MERGE
;
96 static struct dentry
*ovl_upperdentry_dereference(struct ovl_entry
*oe
)
98 return lockless_dereference(oe
->__upperdentry
);
101 void ovl_path_upper(struct dentry
*dentry
, struct path
*path
)
103 struct ovl_fs
*ofs
= dentry
->d_sb
->s_fs_info
;
104 struct ovl_entry
*oe
= dentry
->d_fsdata
;
106 path
->mnt
= ofs
->upper_mnt
;
107 path
->dentry
= ovl_upperdentry_dereference(oe
);
110 enum ovl_path_type
ovl_path_real(struct dentry
*dentry
, struct path
*path
)
112 enum ovl_path_type type
= ovl_path_type(dentry
);
114 if (!OVL_TYPE_UPPER(type
))
115 ovl_path_lower(dentry
, path
);
117 ovl_path_upper(dentry
, path
);
122 struct dentry
*ovl_dentry_upper(struct dentry
*dentry
)
124 struct ovl_entry
*oe
= dentry
->d_fsdata
;
126 return ovl_upperdentry_dereference(oe
);
129 struct dentry
*ovl_dentry_lower(struct dentry
*dentry
)
131 struct ovl_entry
*oe
= dentry
->d_fsdata
;
133 return __ovl_dentry_lower(oe
);
136 struct dentry
*ovl_dentry_real(struct dentry
*dentry
)
138 struct ovl_entry
*oe
= dentry
->d_fsdata
;
139 struct dentry
*realdentry
;
141 realdentry
= ovl_upperdentry_dereference(oe
);
143 realdentry
= __ovl_dentry_lower(oe
);
148 static void ovl_inode_init(struct inode
*inode
, struct inode
*realinode
,
151 WRITE_ONCE(inode
->i_private
, (unsigned long) realinode
|
152 (is_upper
? OVL_ISUPPER_MASK
: 0));
155 struct vfsmount
*ovl_entry_mnt_real(struct ovl_entry
*oe
, struct inode
*inode
,
159 struct ovl_fs
*ofs
= inode
->i_sb
->s_fs_info
;
161 return ofs
->upper_mnt
;
163 return oe
->numlower
? oe
->lowerstack
[0].mnt
: NULL
;
167 struct ovl_dir_cache
*ovl_dir_cache(struct dentry
*dentry
)
169 struct ovl_entry
*oe
= dentry
->d_fsdata
;
174 void ovl_set_dir_cache(struct dentry
*dentry
, struct ovl_dir_cache
*cache
)
176 struct ovl_entry
*oe
= dentry
->d_fsdata
;
181 void ovl_path_lower(struct dentry
*dentry
, struct path
*path
)
183 struct ovl_entry
*oe
= dentry
->d_fsdata
;
185 *path
= oe
->numlower
? oe
->lowerstack
[0] : (struct path
) { NULL
, NULL
};
188 int ovl_want_write(struct dentry
*dentry
)
190 struct ovl_fs
*ofs
= dentry
->d_sb
->s_fs_info
;
191 return mnt_want_write(ofs
->upper_mnt
);
194 void ovl_drop_write(struct dentry
*dentry
)
196 struct ovl_fs
*ofs
= dentry
->d_sb
->s_fs_info
;
197 mnt_drop_write(ofs
->upper_mnt
);
200 struct dentry
*ovl_workdir(struct dentry
*dentry
)
202 struct ovl_fs
*ofs
= dentry
->d_sb
->s_fs_info
;
206 bool ovl_dentry_is_opaque(struct dentry
*dentry
)
208 struct ovl_entry
*oe
= dentry
->d_fsdata
;
212 void ovl_dentry_set_opaque(struct dentry
*dentry
, bool opaque
)
214 struct ovl_entry
*oe
= dentry
->d_fsdata
;
218 void ovl_dentry_update(struct dentry
*dentry
, struct dentry
*upperdentry
)
220 struct ovl_entry
*oe
= dentry
->d_fsdata
;
222 WARN_ON(!inode_is_locked(upperdentry
->d_parent
->d_inode
));
223 WARN_ON(oe
->__upperdentry
);
225 * Make sure upperdentry is consistent before making it visible to
226 * ovl_upperdentry_dereference().
229 oe
->__upperdentry
= upperdentry
;
232 void ovl_inode_update(struct inode
*inode
, struct inode
*upperinode
)
234 WARN_ON(!upperinode
);
235 WARN_ON(!inode_unhashed(inode
));
236 WRITE_ONCE(inode
->i_private
,
237 (unsigned long) upperinode
| OVL_ISUPPER_MASK
);
238 if (!S_ISDIR(upperinode
->i_mode
))
239 __insert_inode_hash(inode
, (unsigned long) upperinode
);
242 void ovl_dentry_version_inc(struct dentry
*dentry
)
244 struct ovl_entry
*oe
= dentry
->d_fsdata
;
246 WARN_ON(!inode_is_locked(dentry
->d_inode
));
250 u64
ovl_dentry_version_get(struct dentry
*dentry
)
252 struct ovl_entry
*oe
= dentry
->d_fsdata
;
254 WARN_ON(!inode_is_locked(dentry
->d_inode
));
258 bool ovl_is_whiteout(struct dentry
*dentry
)
260 struct inode
*inode
= dentry
->d_inode
;
262 return inode
&& IS_WHITEOUT(inode
);
265 const struct cred
*ovl_override_creds(struct super_block
*sb
)
267 struct ovl_fs
*ofs
= sb
->s_fs_info
;
269 return override_creds(ofs
->creator_cred
);
272 static bool ovl_is_opaquedir(struct dentry
*dentry
)
276 struct inode
*inode
= dentry
->d_inode
;
278 if (!S_ISDIR(inode
->i_mode
) || !inode
->i_op
->getxattr
)
281 res
= inode
->i_op
->getxattr(dentry
, inode
, OVL_XATTR_OPAQUE
, &val
, 1);
282 if (res
== 1 && val
== 'y')
288 static void ovl_dentry_release(struct dentry
*dentry
)
290 struct ovl_entry
*oe
= dentry
->d_fsdata
;
295 dput(oe
->__upperdentry
);
296 for (i
= 0; i
< oe
->numlower
; i
++)
297 dput(oe
->lowerstack
[i
].dentry
);
302 static struct dentry
*ovl_d_real(struct dentry
*dentry
,
303 const struct inode
*inode
,
304 unsigned int open_flags
)
308 if (d_is_dir(dentry
)) {
309 if (!inode
|| inode
== d_inode(dentry
))
314 if (d_is_negative(dentry
))
318 int err
= ovl_open_maybe_copy_up(dentry
, open_flags
);
324 real
= ovl_dentry_upper(dentry
);
325 if (real
&& (!inode
|| inode
== d_inode(real
)))
328 real
= ovl_dentry_lower(dentry
);
332 if (!inode
|| inode
== d_inode(real
))
335 /* Handle recursion */
336 return d_real(real
, inode
, open_flags
);
338 WARN(1, "ovl_d_real(%pd4, %s:%lu): real dentry not found\n", dentry
,
339 inode
? inode
->i_sb
->s_id
: "NULL", inode
? inode
->i_ino
: 0);
343 static int ovl_dentry_revalidate(struct dentry
*dentry
, unsigned int flags
)
345 struct ovl_entry
*oe
= dentry
->d_fsdata
;
349 for (i
= 0; i
< oe
->numlower
; i
++) {
350 struct dentry
*d
= oe
->lowerstack
[i
].dentry
;
352 if (d
->d_flags
& DCACHE_OP_REVALIDATE
) {
353 ret
= d
->d_op
->d_revalidate(d
, flags
);
357 if (!(flags
& LOOKUP_RCU
))
366 static int ovl_dentry_weak_revalidate(struct dentry
*dentry
, unsigned int flags
)
368 struct ovl_entry
*oe
= dentry
->d_fsdata
;
372 for (i
= 0; i
< oe
->numlower
; i
++) {
373 struct dentry
*d
= oe
->lowerstack
[i
].dentry
;
375 if (d
->d_flags
& DCACHE_OP_WEAK_REVALIDATE
) {
376 ret
= d
->d_op
->d_weak_revalidate(d
, flags
);
384 static const struct dentry_operations ovl_dentry_operations
= {
385 .d_release
= ovl_dentry_release
,
386 .d_real
= ovl_d_real
,
389 static const struct dentry_operations ovl_reval_dentry_operations
= {
390 .d_release
= ovl_dentry_release
,
391 .d_real
= ovl_d_real
,
392 .d_revalidate
= ovl_dentry_revalidate
,
393 .d_weak_revalidate
= ovl_dentry_weak_revalidate
,
396 static struct ovl_entry
*ovl_alloc_entry(unsigned int numlower
)
398 size_t size
= offsetof(struct ovl_entry
, lowerstack
[numlower
]);
399 struct ovl_entry
*oe
= kzalloc(size
, GFP_KERNEL
);
402 oe
->numlower
= numlower
;
407 static bool ovl_dentry_remote(struct dentry
*dentry
)
409 return dentry
->d_flags
&
410 (DCACHE_OP_REVALIDATE
| DCACHE_OP_WEAK_REVALIDATE
|
414 static bool ovl_dentry_weird(struct dentry
*dentry
)
416 return dentry
->d_flags
& (DCACHE_NEED_AUTOMOUNT
|
417 DCACHE_MANAGE_TRANSIT
|
422 static inline struct dentry
*ovl_lookup_real(struct super_block
*ovl_sb
,
424 const struct qstr
*name
)
426 const struct cred
*old_cred
;
427 struct dentry
*dentry
;
429 old_cred
= ovl_override_creds(ovl_sb
);
430 dentry
= lookup_one_len_unlocked(name
->name
, dir
, name
->len
);
431 revert_creds(old_cred
);
433 if (IS_ERR(dentry
)) {
434 if (PTR_ERR(dentry
) == -ENOENT
)
436 } else if (!dentry
->d_inode
) {
439 } else if (ovl_dentry_weird(dentry
)) {
441 /* Don't support traversing automounts and other weirdness */
442 dentry
= ERR_PTR(-EREMOTE
);
448 * Returns next layer in stack starting from top.
449 * Returns -1 if this is the last layer.
451 int ovl_path_next(int idx
, struct dentry
*dentry
, struct path
*path
)
453 struct ovl_entry
*oe
= dentry
->d_fsdata
;
457 ovl_path_upper(dentry
, path
);
459 return oe
->numlower
? 1 : -1;
462 BUG_ON(idx
> oe
->numlower
);
463 *path
= oe
->lowerstack
[idx
- 1];
465 return (idx
< oe
->numlower
) ? idx
+ 1 : -1;
468 struct dentry
*ovl_lookup(struct inode
*dir
, struct dentry
*dentry
,
471 struct ovl_entry
*oe
;
472 struct ovl_entry
*poe
= dentry
->d_parent
->d_fsdata
;
473 struct path
*stack
= NULL
;
474 struct dentry
*upperdir
, *upperdentry
= NULL
;
475 unsigned int ctr
= 0;
476 struct inode
*inode
= NULL
;
477 bool upperopaque
= false;
478 struct dentry
*this, *prev
= NULL
;
482 upperdir
= ovl_upperdentry_dereference(poe
);
484 this = ovl_lookup_real(dentry
->d_sb
, upperdir
, &dentry
->d_name
);
490 if (unlikely(ovl_dentry_remote(this))) {
495 if (ovl_is_whiteout(this)) {
499 } else if (poe
->numlower
&& ovl_is_opaquedir(this)) {
503 upperdentry
= prev
= this;
506 if (!upperopaque
&& poe
->numlower
) {
508 stack
= kcalloc(poe
->numlower
, sizeof(struct path
), GFP_KERNEL
);
513 for (i
= 0; !upperopaque
&& i
< poe
->numlower
; i
++) {
515 struct path lowerpath
= poe
->lowerstack
[i
];
517 this = ovl_lookup_real(dentry
->d_sb
,
518 lowerpath
.dentry
, &dentry
->d_name
);
522 * If it's positive, then treat ENAMETOOLONG as ENOENT.
524 if (err
== -ENAMETOOLONG
&& (upperdentry
|| ctr
))
530 if (ovl_is_whiteout(this)) {
535 * Only makes sense to check opaque dir if this is not the
538 if (i
< poe
->numlower
- 1 && ovl_is_opaquedir(this))
541 if (prev
&& (!S_ISDIR(prev
->d_inode
->i_mode
) ||
542 !S_ISDIR(this->d_inode
->i_mode
))) {
544 * FIXME: check for upper-opaqueness maybe better done
547 if (prev
== upperdentry
)
553 * If this is a non-directory then stop here.
555 if (!S_ISDIR(this->d_inode
->i_mode
))
558 stack
[ctr
].dentry
= this;
559 stack
[ctr
].mnt
= lowerpath
.mnt
;
566 oe
= ovl_alloc_entry(ctr
);
571 if (upperdentry
|| ctr
) {
572 struct dentry
*realdentry
;
573 struct inode
*realinode
;
575 realdentry
= upperdentry
? upperdentry
: stack
[0].dentry
;
576 realinode
= d_inode(realdentry
);
579 if (upperdentry
&& !d_is_dir(upperdentry
)) {
580 inode
= ovl_get_inode(dentry
->d_sb
, realinode
);
582 inode
= ovl_new_inode(dentry
->d_sb
, realinode
->i_mode
);
584 ovl_inode_init(inode
, realinode
, !!upperdentry
);
588 ovl_copyattr(realdentry
->d_inode
, inode
);
591 oe
->opaque
= upperopaque
;
592 oe
->__upperdentry
= upperdentry
;
593 memcpy(oe
->lowerstack
, stack
, sizeof(struct path
) * ctr
);
595 dentry
->d_fsdata
= oe
;
596 d_add(dentry
, inode
);
603 for (i
= 0; i
< ctr
; i
++)
604 dput(stack
[i
].dentry
);
612 struct file
*ovl_path_open(struct path
*path
, int flags
)
614 return dentry_open(path
, flags
| O_NOATIME
, current_cred());
617 static void ovl_put_super(struct super_block
*sb
)
619 struct ovl_fs
*ufs
= sb
->s_fs_info
;
623 mntput(ufs
->upper_mnt
);
624 for (i
= 0; i
< ufs
->numlower
; i
++)
625 mntput(ufs
->lower_mnt
[i
]);
626 kfree(ufs
->lower_mnt
);
628 kfree(ufs
->config
.lowerdir
);
629 kfree(ufs
->config
.upperdir
);
630 kfree(ufs
->config
.workdir
);
631 put_cred(ufs
->creator_cred
);
637 * @sb: The overlayfs super block
638 * @buf: The struct kstatfs to fill in with stats
640 * Get the filesystem statistics. As writes always target the upper layer
641 * filesystem pass the statfs to the upper filesystem (if it exists)
643 static int ovl_statfs(struct dentry
*dentry
, struct kstatfs
*buf
)
645 struct ovl_fs
*ofs
= dentry
->d_sb
->s_fs_info
;
646 struct dentry
*root_dentry
= dentry
->d_sb
->s_root
;
650 ovl_path_real(root_dentry
, &path
);
652 err
= vfs_statfs(&path
, buf
);
654 buf
->f_namelen
= max(buf
->f_namelen
, ofs
->lower_namelen
);
655 buf
->f_type
= OVERLAYFS_SUPER_MAGIC
;
664 * Prints the mount options for a given superblock.
665 * Returns zero; does not fail.
667 static int ovl_show_options(struct seq_file
*m
, struct dentry
*dentry
)
669 struct super_block
*sb
= dentry
->d_sb
;
670 struct ovl_fs
*ufs
= sb
->s_fs_info
;
672 seq_show_option(m
, "lowerdir", ufs
->config
.lowerdir
);
673 if (ufs
->config
.upperdir
) {
674 seq_show_option(m
, "upperdir", ufs
->config
.upperdir
);
675 seq_show_option(m
, "workdir", ufs
->config
.workdir
);
677 if (ufs
->config
.default_permissions
)
678 seq_puts(m
, ",default_permissions");
682 static int ovl_remount(struct super_block
*sb
, int *flags
, char *data
)
684 struct ovl_fs
*ufs
= sb
->s_fs_info
;
686 if (!(*flags
& MS_RDONLY
) && (!ufs
->upper_mnt
|| !ufs
->workdir
))
692 static const struct super_operations ovl_super_operations
= {
693 .put_super
= ovl_put_super
,
694 .statfs
= ovl_statfs
,
695 .show_options
= ovl_show_options
,
696 .remount_fs
= ovl_remount
,
697 .drop_inode
= generic_delete_inode
,
704 OPT_DEFAULT_PERMISSIONS
,
708 static const match_table_t ovl_tokens
= {
709 {OPT_LOWERDIR
, "lowerdir=%s"},
710 {OPT_UPPERDIR
, "upperdir=%s"},
711 {OPT_WORKDIR
, "workdir=%s"},
712 {OPT_DEFAULT_PERMISSIONS
, "default_permissions"},
716 static char *ovl_next_opt(char **s
)
724 for (p
= sbegin
; *p
; p
++) {
729 } else if (*p
== ',') {
739 static int ovl_parse_opt(char *opt
, struct ovl_config
*config
)
743 while ((p
= ovl_next_opt(&opt
)) != NULL
) {
745 substring_t args
[MAX_OPT_ARGS
];
750 token
= match_token(p
, ovl_tokens
, args
);
753 kfree(config
->upperdir
);
754 config
->upperdir
= match_strdup(&args
[0]);
755 if (!config
->upperdir
)
760 kfree(config
->lowerdir
);
761 config
->lowerdir
= match_strdup(&args
[0]);
762 if (!config
->lowerdir
)
767 kfree(config
->workdir
);
768 config
->workdir
= match_strdup(&args
[0]);
769 if (!config
->workdir
)
773 case OPT_DEFAULT_PERMISSIONS
:
774 config
->default_permissions
= true;
778 pr_err("overlayfs: unrecognized mount option \"%s\" or missing value\n", p
);
783 /* Workdir is useless in non-upper mount */
784 if (!config
->upperdir
&& config
->workdir
) {
785 pr_info("overlayfs: option \"workdir=%s\" is useless in a non-upper mount, ignore\n",
787 kfree(config
->workdir
);
788 config
->workdir
= NULL
;
794 #define OVL_WORKDIR_NAME "work"
796 static struct dentry
*ovl_workdir_create(struct vfsmount
*mnt
,
797 struct dentry
*dentry
)
799 struct inode
*dir
= dentry
->d_inode
;
802 bool retried
= false;
804 err
= mnt_want_write(mnt
);
808 inode_lock_nested(dir
, I_MUTEX_PARENT
);
810 work
= lookup_one_len(OVL_WORKDIR_NAME
, dentry
,
811 strlen(OVL_WORKDIR_NAME
));
814 struct kstat stat
= {
824 ovl_cleanup(dir
, work
);
829 err
= ovl_create_real(dir
, work
, &stat
, NULL
, NULL
, true);
845 static void ovl_unescape(char *s
)
858 static int ovl_mount_dir_noesc(const char *name
, struct path
*path
)
863 pr_err("overlayfs: empty lowerdir\n");
866 err
= kern_path(name
, LOOKUP_FOLLOW
, path
);
868 pr_err("overlayfs: failed to resolve '%s': %i\n", name
, err
);
872 if (ovl_dentry_weird(path
->dentry
)) {
873 pr_err("overlayfs: filesystem on '%s' not supported\n", name
);
876 if (!S_ISDIR(path
->dentry
->d_inode
->i_mode
)) {
877 pr_err("overlayfs: '%s' not a directory\n", name
);
888 static int ovl_mount_dir(const char *name
, struct path
*path
)
891 char *tmp
= kstrdup(name
, GFP_KERNEL
);
895 err
= ovl_mount_dir_noesc(tmp
, path
);
898 if (ovl_dentry_remote(path
->dentry
)) {
899 pr_err("overlayfs: filesystem on '%s' not supported as upperdir\n",
909 static int ovl_lower_dir(const char *name
, struct path
*path
, long *namelen
,
910 int *stack_depth
, bool *remote
)
913 struct kstatfs statfs
;
915 err
= ovl_mount_dir_noesc(name
, path
);
919 err
= vfs_statfs(path
, &statfs
);
921 pr_err("overlayfs: statfs failed on '%s'\n", name
);
924 *namelen
= max(*namelen
, statfs
.f_namelen
);
925 *stack_depth
= max(*stack_depth
, path
->mnt
->mnt_sb
->s_stack_depth
);
927 if (ovl_dentry_remote(path
->dentry
))
938 /* Workdir should not be subdir of upperdir and vice versa */
939 static bool ovl_workdir_ok(struct dentry
*workdir
, struct dentry
*upperdir
)
943 if (workdir
!= upperdir
) {
944 ok
= (lock_rename(workdir
, upperdir
) == NULL
);
945 unlock_rename(workdir
, upperdir
);
950 static unsigned int ovl_split_lowerdirs(char *str
)
952 unsigned int ctr
= 1;
955 for (s
= d
= str
;; s
++, d
++) {
958 } else if (*s
== ':') {
970 static int ovl_posix_acl_xattr_set(const struct xattr_handler
*handler
,
971 struct dentry
*dentry
, struct inode
*inode
,
972 const char *name
, const void *value
,
973 size_t size
, int flags
)
975 struct dentry
*workdir
= ovl_workdir(dentry
);
976 struct inode
*realinode
= ovl_inode_real(inode
, NULL
);
977 struct posix_acl
*acl
= NULL
;
980 /* Check that everything is OK before copy-up */
982 acl
= posix_acl_from_xattr(&init_user_ns
, value
, size
);
987 if (!IS_POSIXACL(d_inode(workdir
)))
988 goto out_acl_release
;
989 if (!realinode
->i_op
->set_acl
)
990 goto out_acl_release
;
991 if (handler
->flags
== ACL_TYPE_DEFAULT
&& !S_ISDIR(inode
->i_mode
)) {
992 err
= acl
? -EACCES
: 0;
993 goto out_acl_release
;
996 if (!inode_owner_or_capable(inode
))
997 goto out_acl_release
;
999 posix_acl_release(acl
);
1001 return ovl_setxattr(dentry
, inode
, handler
->name
, value
, size
, flags
);
1004 posix_acl_release(acl
);
1008 static int ovl_other_xattr_set(const struct xattr_handler
*handler
,
1009 struct dentry
*dentry
, struct inode
*inode
,
1010 const char *name
, const void *value
,
1011 size_t size
, int flags
)
1013 return ovl_setxattr(dentry
, inode
, name
, value
, size
, flags
);
1016 static int ovl_own_xattr_set(const struct xattr_handler
*handler
,
1017 struct dentry
*dentry
, struct inode
*inode
,
1018 const char *name
, const void *value
,
1019 size_t size
, int flags
)
1024 static const struct xattr_handler ovl_posix_acl_access_xattr_handler
= {
1025 .name
= XATTR_NAME_POSIX_ACL_ACCESS
,
1026 .flags
= ACL_TYPE_ACCESS
,
1027 .set
= ovl_posix_acl_xattr_set
,
1030 static const struct xattr_handler ovl_posix_acl_default_xattr_handler
= {
1031 .name
= XATTR_NAME_POSIX_ACL_DEFAULT
,
1032 .flags
= ACL_TYPE_DEFAULT
,
1033 .set
= ovl_posix_acl_xattr_set
,
1036 static const struct xattr_handler ovl_own_xattr_handler
= {
1037 .prefix
= OVL_XATTR_PREFIX
,
1038 .set
= ovl_own_xattr_set
,
1041 static const struct xattr_handler ovl_other_xattr_handler
= {
1042 .prefix
= "", /* catch all */
1043 .set
= ovl_other_xattr_set
,
1046 static const struct xattr_handler
*ovl_xattr_handlers
[] = {
1047 &ovl_posix_acl_access_xattr_handler
,
1048 &ovl_posix_acl_default_xattr_handler
,
1049 &ovl_own_xattr_handler
,
1050 &ovl_other_xattr_handler
,
1054 static const struct xattr_handler
*ovl_xattr_noacl_handlers
[] = {
1055 &ovl_own_xattr_handler
,
1056 &ovl_other_xattr_handler
,
1060 static int ovl_fill_super(struct super_block
*sb
, void *data
, int silent
)
1062 struct path upperpath
= { NULL
, NULL
};
1063 struct path workpath
= { NULL
, NULL
};
1064 struct dentry
*root_dentry
;
1065 struct inode
*realinode
;
1066 struct ovl_entry
*oe
;
1068 struct path
*stack
= NULL
;
1071 unsigned int numlower
;
1072 unsigned int stacklen
= 0;
1074 bool remote
= false;
1078 ufs
= kzalloc(sizeof(struct ovl_fs
), GFP_KERNEL
);
1082 err
= ovl_parse_opt((char *) data
, &ufs
->config
);
1084 goto out_free_config
;
1087 if (!ufs
->config
.lowerdir
) {
1089 pr_err("overlayfs: missing 'lowerdir'\n");
1090 goto out_free_config
;
1093 sb
->s_stack_depth
= 0;
1094 sb
->s_maxbytes
= MAX_LFS_FILESIZE
;
1095 if (ufs
->config
.upperdir
) {
1096 if (!ufs
->config
.workdir
) {
1097 pr_err("overlayfs: missing 'workdir'\n");
1098 goto out_free_config
;
1101 err
= ovl_mount_dir(ufs
->config
.upperdir
, &upperpath
);
1103 goto out_free_config
;
1105 /* Upper fs should not be r/o */
1106 if (upperpath
.mnt
->mnt_sb
->s_flags
& MS_RDONLY
) {
1107 pr_err("overlayfs: upper fs is r/o, try multi-lower layers mount\n");
1109 goto out_put_upperpath
;
1112 err
= ovl_mount_dir(ufs
->config
.workdir
, &workpath
);
1114 goto out_put_upperpath
;
1117 if (upperpath
.mnt
!= workpath
.mnt
) {
1118 pr_err("overlayfs: workdir and upperdir must reside under the same mount\n");
1119 goto out_put_workpath
;
1121 if (!ovl_workdir_ok(workpath
.dentry
, upperpath
.dentry
)) {
1122 pr_err("overlayfs: workdir and upperdir must be separate subtrees\n");
1123 goto out_put_workpath
;
1125 sb
->s_stack_depth
= upperpath
.mnt
->mnt_sb
->s_stack_depth
;
1128 lowertmp
= kstrdup(ufs
->config
.lowerdir
, GFP_KERNEL
);
1130 goto out_put_workpath
;
1133 stacklen
= ovl_split_lowerdirs(lowertmp
);
1134 if (stacklen
> OVL_MAX_STACK
) {
1135 pr_err("overlayfs: too many lower directries, limit is %d\n",
1137 goto out_free_lowertmp
;
1138 } else if (!ufs
->config
.upperdir
&& stacklen
== 1) {
1139 pr_err("overlayfs: at least 2 lowerdir are needed while upperdir nonexistent\n");
1140 goto out_free_lowertmp
;
1143 stack
= kcalloc(stacklen
, sizeof(struct path
), GFP_KERNEL
);
1145 goto out_free_lowertmp
;
1148 for (numlower
= 0; numlower
< stacklen
; numlower
++) {
1149 err
= ovl_lower_dir(lower
, &stack
[numlower
],
1150 &ufs
->lower_namelen
, &sb
->s_stack_depth
,
1153 goto out_put_lowerpath
;
1155 lower
= strchr(lower
, '\0') + 1;
1159 sb
->s_stack_depth
++;
1160 if (sb
->s_stack_depth
> FILESYSTEM_MAX_STACK_DEPTH
) {
1161 pr_err("overlayfs: maximum fs stacking depth exceeded\n");
1162 goto out_put_lowerpath
;
1165 if (ufs
->config
.upperdir
) {
1166 ufs
->upper_mnt
= clone_private_mount(&upperpath
);
1167 err
= PTR_ERR(ufs
->upper_mnt
);
1168 if (IS_ERR(ufs
->upper_mnt
)) {
1169 pr_err("overlayfs: failed to clone upperpath\n");
1170 goto out_put_lowerpath
;
1172 /* Don't inherit atime flags */
1173 ufs
->upper_mnt
->mnt_flags
&= ~(MNT_NOATIME
| MNT_NODIRATIME
| MNT_RELATIME
);
1175 sb
->s_time_gran
= ufs
->upper_mnt
->mnt_sb
->s_time_gran
;
1177 ufs
->workdir
= ovl_workdir_create(ufs
->upper_mnt
, workpath
.dentry
);
1178 err
= PTR_ERR(ufs
->workdir
);
1179 if (IS_ERR(ufs
->workdir
)) {
1180 pr_warn("overlayfs: failed to create directory %s/%s (errno: %i); mounting read-only\n",
1181 ufs
->config
.workdir
, OVL_WORKDIR_NAME
, -err
);
1182 sb
->s_flags
|= MS_RDONLY
;
1183 ufs
->workdir
= NULL
;
1187 * Upper should support d_type, else whiteouts are visible.
1188 * Given workdir and upper are on same fs, we can do
1189 * iterate_dir() on workdir. This check requires successful
1190 * creation of workdir in previous step.
1193 err
= ovl_check_d_type_supported(&workpath
);
1195 goto out_put_workdir
;
1198 * We allowed this configuration and don't want to
1199 * break users over kernel upgrade. So warn instead
1203 pr_warn("overlayfs: upper fs needs to support d_type.\n");
1208 ufs
->lower_mnt
= kcalloc(numlower
, sizeof(struct vfsmount
*), GFP_KERNEL
);
1209 if (ufs
->lower_mnt
== NULL
)
1210 goto out_put_workdir
;
1211 for (i
= 0; i
< numlower
; i
++) {
1212 struct vfsmount
*mnt
= clone_private_mount(&stack
[i
]);
1216 pr_err("overlayfs: failed to clone lowerpath\n");
1217 goto out_put_lower_mnt
;
1220 * Make lower_mnt R/O. That way fchmod/fchown on lower file
1221 * will fail instead of modifying lower fs.
1223 mnt
->mnt_flags
|= MNT_READONLY
| MNT_NOATIME
;
1225 ufs
->lower_mnt
[ufs
->numlower
] = mnt
;
1229 /* If the upper fs is nonexistent, we mark overlayfs r/o too */
1230 if (!ufs
->upper_mnt
)
1231 sb
->s_flags
|= MS_RDONLY
;
1234 sb
->s_d_op
= &ovl_reval_dentry_operations
;
1236 sb
->s_d_op
= &ovl_dentry_operations
;
1238 ufs
->creator_cred
= prepare_creds();
1239 if (!ufs
->creator_cred
)
1240 goto out_put_lower_mnt
;
1243 oe
= ovl_alloc_entry(numlower
);
1247 root_dentry
= d_make_root(ovl_new_inode(sb
, S_IFDIR
));
1251 mntput(upperpath
.mnt
);
1252 for (i
= 0; i
< numlower
; i
++)
1253 mntput(stack
[i
].mnt
);
1254 path_put(&workpath
);
1257 oe
->__upperdentry
= upperpath
.dentry
;
1258 for (i
= 0; i
< numlower
; i
++) {
1259 oe
->lowerstack
[i
].dentry
= stack
[i
].dentry
;
1260 oe
->lowerstack
[i
].mnt
= ufs
->lower_mnt
[i
];
1264 root_dentry
->d_fsdata
= oe
;
1266 realinode
= d_inode(ovl_dentry_real(root_dentry
));
1267 ovl_inode_init(d_inode(root_dentry
), realinode
, !!upperpath
.dentry
);
1268 ovl_copyattr(realinode
, d_inode(root_dentry
));
1270 sb
->s_magic
= OVERLAYFS_SUPER_MAGIC
;
1271 sb
->s_op
= &ovl_super_operations
;
1272 if (IS_ENABLED(CONFIG_FS_POSIX_ACL
))
1273 sb
->s_xattr
= ovl_xattr_handlers
;
1275 sb
->s_xattr
= ovl_xattr_noacl_handlers
;
1276 sb
->s_root
= root_dentry
;
1277 sb
->s_fs_info
= ufs
;
1278 sb
->s_flags
|= MS_POSIXACL
;
1285 put_cred(ufs
->creator_cred
);
1287 for (i
= 0; i
< ufs
->numlower
; i
++)
1288 mntput(ufs
->lower_mnt
[i
]);
1289 kfree(ufs
->lower_mnt
);
1292 mntput(ufs
->upper_mnt
);
1294 for (i
= 0; i
< numlower
; i
++)
1295 path_put(&stack
[i
]);
1300 path_put(&workpath
);
1302 path_put(&upperpath
);
1304 kfree(ufs
->config
.lowerdir
);
1305 kfree(ufs
->config
.upperdir
);
1306 kfree(ufs
->config
.workdir
);
1312 static struct dentry
*ovl_mount(struct file_system_type
*fs_type
, int flags
,
1313 const char *dev_name
, void *raw_data
)
1315 return mount_nodev(fs_type
, flags
, raw_data
, ovl_fill_super
);
1318 static struct file_system_type ovl_fs_type
= {
1319 .owner
= THIS_MODULE
,
1322 .kill_sb
= kill_anon_super
,
1324 MODULE_ALIAS_FS("overlay");
1326 static int __init
ovl_init(void)
1328 return register_filesystem(&ovl_fs_type
);
1331 static void __exit
ovl_exit(void)
1333 unregister_filesystem(&ovl_fs_type
);
1336 module_init(ovl_init
);
1337 module_exit(ovl_exit
);