1 // SPDX-License-Identifier: GPL-2.0-only
3 * This file is part of UBIFS.
5 * Copyright (C) 2006-2008 Nokia Corporation.
7 * Authors: Artem Bityutskiy (Битюцкий Артём)
12 * This file implements UBIFS extended attributes support.
14 * Extended attributes are implemented as regular inodes with attached data,
15 * which limits extended attribute size to UBIFS block size (4KiB). Names of
16 * extended attributes are described by extended attribute entries (xentries),
17 * which are almost identical to directory entries, but have different key type.
19 * In other words, the situation with extended attributes is very similar to
20 * directories. Indeed, any inode (but of course not xattr inodes) may have a
21 * number of associated xentries, just like directory inodes have associated
22 * directory entries. Extended attribute entries store the name of the extended
23 * attribute, the host inode number, and the extended attribute inode number.
24 * Similarly, direntries store the name, the parent and the target inode
25 * numbers. Thus, most of the common UBIFS mechanisms may be re-used for
26 * extended attributes.
28 * The number of extended attributes is not limited, but there is Linux
29 * limitation on the maximum possible size of the list of all extended
30 * attributes associated with an inode (%XATTR_LIST_MAX), so UBIFS makes sure
31 * the sum of all extended attribute names of the inode does not exceed that
34 * Extended attributes are synchronous, which means they are written to the
35 * flash media synchronously and there is no write-back for extended attribute
36 * inodes. The extended attribute values are not stored in compressed form on
39 * Since extended attributes are represented by regular inodes, they are cached
40 * in the VFS inode cache. The xentries are cached in the LNC cache (see
43 * ACL support is not implemented.
48 #include <linux/slab.h>
49 #include <linux/xattr.h>
51 static const struct inode_operations empty_iops
;
52 static const struct file_operations empty_fops
;
55 * create_xattr - create an extended attribute.
56 * @c: UBIFS file-system description object
58 * @nm: extended attribute name
59 * @value: extended attribute value
60 * @size: size of extended attribute value
62 * This is a helper function which creates an extended attribute of name @nm
63 * and value @value for inode @host. The host inode is also updated on flash
64 * because the ctime and extended attribute accounting data changes. This
65 * function returns zero in case of success and a negative error code in case
68 static int create_xattr(struct ubifs_info
*c
, struct inode
*host
,
69 const struct fscrypt_name
*nm
, const void *value
, int size
)
73 struct ubifs_inode
*ui
, *host_ui
= ubifs_inode(host
);
74 struct ubifs_budget_req req
= { .new_ino
= 1, .new_dent
= 1,
75 .new_ino_d
= ALIGN(size
, 8), .dirtied_ino
= 1,
76 .dirtied_ino_d
= ALIGN(host_ui
->data_len
, 8) };
78 if (host_ui
->xattr_cnt
>= ubifs_xattr_max_cnt(c
)) {
79 ubifs_err(c
, "inode %lu already has too many xattrs (%d), cannot create more",
80 host
->i_ino
, host_ui
->xattr_cnt
);
84 * Linux limits the maximum size of the extended attribute names list
85 * to %XATTR_LIST_MAX. This means we should not allow creating more
86 * extended attributes if the name list becomes larger. This limitation
87 * is artificial for UBIFS, though.
89 names_len
= host_ui
->xattr_names
+ host_ui
->xattr_cnt
+ fname_len(nm
) + 1;
90 if (names_len
> XATTR_LIST_MAX
) {
91 ubifs_err(c
, "cannot add one more xattr name to inode %lu, total names length would become %d, max. is %d",
92 host
->i_ino
, names_len
, XATTR_LIST_MAX
);
96 err
= ubifs_budget_space(c
, &req
);
100 inode
= ubifs_new_inode(c
, host
, S_IFREG
| S_IRWXUGO
, true);
102 err
= PTR_ERR(inode
);
106 /* Re-define all operations to be "nothing" */
107 inode
->i_mapping
->a_ops
= &empty_aops
;
108 inode
->i_op
= &empty_iops
;
109 inode
->i_fop
= &empty_fops
;
111 inode
->i_flags
|= S_SYNC
| S_NOATIME
| S_NOCMTIME
;
112 ui
= ubifs_inode(inode
);
114 ui
->flags
|= UBIFS_XATTR_FL
;
115 ui
->data
= kmemdup(value
, size
, GFP_NOFS
);
120 inode
->i_size
= ui
->ui_size
= size
;
123 mutex_lock(&host_ui
->ui_mutex
);
124 inode_set_ctime_current(host
);
125 host_ui
->xattr_cnt
+= 1;
126 host_ui
->xattr_size
+= CALC_DENT_SIZE(fname_len(nm
));
127 host_ui
->xattr_size
+= CALC_XATTR_BYTES(size
);
128 host_ui
->xattr_names
+= fname_len(nm
);
131 * We handle UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT here because we
132 * have to set the UBIFS_CRYPT_FL flag on the host inode.
133 * To avoid multiple updates of the same inode in the same operation,
136 if (strcmp(fname_name(nm
), UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT
) == 0)
137 host_ui
->flags
|= UBIFS_CRYPT_FL
;
139 err
= ubifs_jnl_update(c
, host
, nm
, inode
, 0, 1, 0);
142 ubifs_set_inode_flags(host
);
143 mutex_unlock(&host_ui
->ui_mutex
);
145 ubifs_release_budget(c
, &req
);
146 insert_inode_hash(inode
);
151 host_ui
->xattr_cnt
-= 1;
152 host_ui
->xattr_size
-= CALC_DENT_SIZE(fname_len(nm
));
153 host_ui
->xattr_size
-= CALC_XATTR_BYTES(size
);
154 host_ui
->xattr_names
-= fname_len(nm
);
155 host_ui
->flags
&= ~UBIFS_CRYPT_FL
;
156 mutex_unlock(&host_ui
->ui_mutex
);
158 make_bad_inode(inode
);
161 ubifs_release_budget(c
, &req
);
166 * change_xattr - change an extended attribute.
167 * @c: UBIFS file-system description object
169 * @inode: extended attribute inode
170 * @value: extended attribute value
171 * @size: size of extended attribute value
173 * This helper function changes the value of extended attribute @inode with new
174 * data from @value. Returns zero in case of success and a negative error code
175 * in case of failure.
177 static int change_xattr(struct ubifs_info
*c
, struct inode
*host
,
178 struct inode
*inode
, const void *value
, int size
)
181 struct ubifs_inode
*host_ui
= ubifs_inode(host
);
182 struct ubifs_inode
*ui
= ubifs_inode(inode
);
185 struct ubifs_budget_req req
= { .dirtied_ino
= 2,
186 .dirtied_ino_d
= ALIGN(size
, 8) + ALIGN(host_ui
->data_len
, 8) };
188 ubifs_assert(c
, ui
->data_len
== inode
->i_size
);
189 err
= ubifs_budget_space(c
, &req
);
193 buf
= kmemdup(value
, size
, GFP_NOFS
);
200 inode
->i_size
= ui
->ui_size
= size
;
201 old_size
= ui
->data_len
;
204 mutex_lock(&host_ui
->ui_mutex
);
205 inode_set_ctime_current(host
);
206 host_ui
->xattr_size
-= CALC_XATTR_BYTES(old_size
);
207 host_ui
->xattr_size
+= CALC_XATTR_BYTES(size
);
210 * It is important to write the host inode after the xattr inode
211 * because if the host inode gets synchronized (via 'fsync()'), then
212 * the extended attribute inode gets synchronized, because it goes
213 * before the host inode in the write-buffer.
215 err
= ubifs_jnl_change_xattr(c
, inode
, host
);
218 mutex_unlock(&host_ui
->ui_mutex
);
220 ubifs_release_budget(c
, &req
);
224 host_ui
->xattr_size
-= CALC_XATTR_BYTES(size
);
225 host_ui
->xattr_size
+= CALC_XATTR_BYTES(old_size
);
226 mutex_unlock(&host_ui
->ui_mutex
);
227 make_bad_inode(inode
);
229 ubifs_release_budget(c
, &req
);
233 static struct inode
*iget_xattr(struct ubifs_info
*c
, ino_t inum
)
237 inode
= ubifs_iget(c
->vfs_sb
, inum
);
239 ubifs_err(c
, "dead extended attribute entry, error %d",
240 (int)PTR_ERR(inode
));
243 if (ubifs_inode(inode
)->xattr
)
245 ubifs_err(c
, "corrupt extended attribute entry");
247 return ERR_PTR(-EINVAL
);
250 int ubifs_xattr_set(struct inode
*host
, const char *name
, const void *value
,
251 size_t size
, int flags
, bool check_lock
)
254 struct ubifs_info
*c
= host
->i_sb
->s_fs_info
;
255 struct fscrypt_name nm
= { .disk_name
= FSTR_INIT((char *)name
, strlen(name
))};
256 struct ubifs_dent_node
*xent
;
261 ubifs_assert(c
, inode_is_locked(host
));
263 if (size
> UBIFS_MAX_INO_DATA
)
266 if (fname_len(&nm
) > UBIFS_MAX_NLEN
)
267 return -ENAMETOOLONG
;
269 xent
= kmalloc(UBIFS_MAX_XENT_NODE_SZ
, GFP_NOFS
);
273 down_write(&ubifs_inode(host
)->xattr_sem
);
275 * The extended attribute entries are stored in LNC, so multiple
276 * look-ups do not involve reading the flash.
278 xent_key_init(c
, &key
, host
->i_ino
, &nm
);
279 err
= ubifs_tnc_lookup_nm(c
, &key
, xent
, &nm
);
284 if (flags
& XATTR_REPLACE
)
285 /* We are asked not to create the xattr */
288 err
= create_xattr(c
, host
, &nm
, value
, size
);
292 if (flags
& XATTR_CREATE
) {
293 /* We are asked not to replace the xattr */
298 inode
= iget_xattr(c
, le64_to_cpu(xent
->inum
));
300 err
= PTR_ERR(inode
);
304 err
= change_xattr(c
, host
, inode
, value
, size
);
308 up_write(&ubifs_inode(host
)->xattr_sem
);
313 ssize_t
ubifs_xattr_get(struct inode
*host
, const char *name
, void *buf
,
317 struct ubifs_info
*c
= host
->i_sb
->s_fs_info
;
318 struct fscrypt_name nm
= { .disk_name
= FSTR_INIT((char *)name
, strlen(name
))};
319 struct ubifs_inode
*ui
;
320 struct ubifs_dent_node
*xent
;
324 if (fname_len(&nm
) > UBIFS_MAX_NLEN
)
325 return -ENAMETOOLONG
;
327 xent
= kmalloc(UBIFS_MAX_XENT_NODE_SZ
, GFP_NOFS
);
331 down_read(&ubifs_inode(host
)->xattr_sem
);
332 xent_key_init(c
, &key
, host
->i_ino
, &nm
);
333 err
= ubifs_tnc_lookup_nm(c
, &key
, xent
, &nm
);
340 inode
= iget_xattr(c
, le64_to_cpu(xent
->inum
));
342 err
= PTR_ERR(inode
);
346 ui
= ubifs_inode(inode
);
347 ubifs_assert(c
, inode
->i_size
== ui
->data_len
);
348 ubifs_assert(c
, ubifs_inode(host
)->xattr_size
> ui
->data_len
);
351 /* If @buf is %NULL we are supposed to return the length */
352 if (ui
->data_len
> size
) {
357 memcpy(buf
, ui
->data
, ui
->data_len
);
364 up_read(&ubifs_inode(host
)->xattr_sem
);
369 static bool xattr_visible(const char *name
)
371 /* File encryption related xattrs are for internal use only */
372 if (strcmp(name
, UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT
) == 0)
375 /* Show trusted namespace only for "power" users */
376 if (strncmp(name
, XATTR_TRUSTED_PREFIX
,
377 XATTR_TRUSTED_PREFIX_LEN
) == 0 && !capable(CAP_SYS_ADMIN
))
383 ssize_t
ubifs_listxattr(struct dentry
*dentry
, char *buffer
, size_t size
)
386 struct inode
*host
= d_inode(dentry
);
387 struct ubifs_info
*c
= host
->i_sb
->s_fs_info
;
388 struct ubifs_inode
*host_ui
= ubifs_inode(host
);
389 struct ubifs_dent_node
*xent
, *pxent
= NULL
;
390 int err
, len
, written
= 0;
391 struct fscrypt_name nm
= {0};
393 dbg_gen("ino %lu ('%pd'), buffer size %zd", host
->i_ino
,
396 down_read(&host_ui
->xattr_sem
);
397 len
= host_ui
->xattr_names
+ host_ui
->xattr_cnt
;
400 * We should return the minimum buffer size which will fit a
401 * null-terminated list of all the extended attribute names.
412 lowest_xent_key(c
, &key
, host
->i_ino
);
414 xent
= ubifs_tnc_next_ent(c
, &key
, &nm
);
420 fname_name(&nm
) = xent
->name
;
421 fname_len(&nm
) = le16_to_cpu(xent
->nlen
);
423 if (xattr_visible(xent
->name
)) {
424 memcpy(buffer
+ written
, fname_name(&nm
), fname_len(&nm
) + 1);
425 written
+= fname_len(&nm
) + 1;
430 key_read(c
, &xent
->key
, &key
);
433 up_read(&host_ui
->xattr_sem
);
435 if (err
!= -ENOENT
) {
436 ubifs_err(c
, "cannot find next direntry, error %d", err
);
440 ubifs_assert(c
, written
<= size
);
444 up_read(&host_ui
->xattr_sem
);
448 static int remove_xattr(struct ubifs_info
*c
, struct inode
*host
,
449 struct inode
*inode
, const struct fscrypt_name
*nm
)
452 struct ubifs_inode
*host_ui
= ubifs_inode(host
);
453 struct ubifs_inode
*ui
= ubifs_inode(inode
);
454 struct ubifs_budget_req req
= { .dirtied_ino
= 2, .mod_dent
= 1,
455 .dirtied_ino_d
= ALIGN(host_ui
->data_len
, 8) };
457 ubifs_assert(c
, ui
->data_len
== inode
->i_size
);
459 err
= ubifs_budget_space(c
, &req
);
463 mutex_lock(&host_ui
->ui_mutex
);
464 inode_set_ctime_current(host
);
465 host_ui
->xattr_cnt
-= 1;
466 host_ui
->xattr_size
-= CALC_DENT_SIZE(fname_len(nm
));
467 host_ui
->xattr_size
-= CALC_XATTR_BYTES(ui
->data_len
);
468 host_ui
->xattr_names
-= fname_len(nm
);
470 err
= ubifs_jnl_delete_xattr(c
, host
, inode
, nm
);
473 mutex_unlock(&host_ui
->ui_mutex
);
475 ubifs_release_budget(c
, &req
);
479 host_ui
->xattr_cnt
+= 1;
480 host_ui
->xattr_size
+= CALC_DENT_SIZE(fname_len(nm
));
481 host_ui
->xattr_size
+= CALC_XATTR_BYTES(ui
->data_len
);
482 host_ui
->xattr_names
+= fname_len(nm
);
483 mutex_unlock(&host_ui
->ui_mutex
);
484 ubifs_release_budget(c
, &req
);
485 make_bad_inode(inode
);
489 int ubifs_purge_xattrs(struct inode
*host
)
492 struct ubifs_info
*c
= host
->i_sb
->s_fs_info
;
493 struct ubifs_dent_node
*xent
, *pxent
= NULL
;
495 struct fscrypt_name nm
= {0};
498 if (ubifs_inode(host
)->xattr_cnt
<= ubifs_xattr_max_cnt(c
))
501 ubifs_warn(c
, "inode %lu has too many xattrs, doing a non-atomic deletion",
504 down_write(&ubifs_inode(host
)->xattr_sem
);
505 lowest_xent_key(c
, &key
, host
->i_ino
);
507 xent
= ubifs_tnc_next_ent(c
, &key
, &nm
);
513 fname_name(&nm
) = xent
->name
;
514 fname_len(&nm
) = le16_to_cpu(xent
->nlen
);
516 xino
= ubifs_iget(c
->vfs_sb
, le64_to_cpu(xent
->inum
));
519 ubifs_err(c
, "dead directory entry '%s', error %d",
521 ubifs_ro_mode(c
, err
);
525 ubifs_assert(c
, ubifs_inode(xino
)->xattr
);
528 err
= remove_xattr(c
, host
, xino
, &nm
);
531 ubifs_err(c
, "cannot remove xattr, error %d", err
);
537 key_read(c
, &xent
->key
, &key
);
540 up_write(&ubifs_inode(host
)->xattr_sem
);
542 if (err
!= -ENOENT
) {
543 ubifs_err(c
, "cannot find next direntry, error %d", err
);
552 up_write(&ubifs_inode(host
)->xattr_sem
);
556 static int ubifs_xattr_remove(struct inode
*host
, const char *name
)
559 struct ubifs_info
*c
= host
->i_sb
->s_fs_info
;
560 struct fscrypt_name nm
= { .disk_name
= FSTR_INIT((char *)name
, strlen(name
))};
561 struct ubifs_dent_node
*xent
;
565 ubifs_assert(c
, inode_is_locked(host
));
567 if (fname_len(&nm
) > UBIFS_MAX_NLEN
)
568 return -ENAMETOOLONG
;
570 xent
= kmalloc(UBIFS_MAX_XENT_NODE_SZ
, GFP_NOFS
);
574 down_write(&ubifs_inode(host
)->xattr_sem
);
575 xent_key_init(c
, &key
, host
->i_ino
, &nm
);
576 err
= ubifs_tnc_lookup_nm(c
, &key
, xent
, &nm
);
583 inode
= iget_xattr(c
, le64_to_cpu(xent
->inum
));
585 err
= PTR_ERR(inode
);
589 ubifs_assert(c
, inode
->i_nlink
== 1);
591 err
= remove_xattr(c
, host
, inode
, &nm
);
595 /* If @i_nlink is 0, 'iput()' will delete the inode */
599 up_write(&ubifs_inode(host
)->xattr_sem
);
604 #ifdef CONFIG_UBIFS_FS_SECURITY
605 static int init_xattrs(struct inode
*inode
, const struct xattr
*xattr_array
,
608 const struct xattr
*xattr
;
612 for (xattr
= xattr_array
; xattr
->name
!= NULL
; xattr
++) {
613 name
= kmalloc(XATTR_SECURITY_PREFIX_LEN
+
614 strlen(xattr
->name
) + 1, GFP_NOFS
);
619 strcpy(name
, XATTR_SECURITY_PREFIX
);
620 strcpy(name
+ XATTR_SECURITY_PREFIX_LEN
, xattr
->name
);
622 * creating a new inode without holding the inode rwsem,
623 * no need to check whether inode is locked.
625 err
= ubifs_xattr_set(inode
, name
, xattr
->value
,
626 xattr
->value_len
, 0, false);
635 int ubifs_init_security(struct inode
*dentry
, struct inode
*inode
,
636 const struct qstr
*qstr
)
640 err
= security_inode_init_security(inode
, dentry
, qstr
,
643 struct ubifs_info
*c
= dentry
->i_sb
->s_fs_info
;
644 ubifs_err(c
, "cannot initialize security for inode %lu, error %d",
651 static int xattr_get(const struct xattr_handler
*handler
,
652 struct dentry
*dentry
, struct inode
*inode
,
653 const char *name
, void *buffer
, size_t size
)
655 dbg_gen("xattr '%s', ino %lu ('%pd'), buf size %zd", name
,
656 inode
->i_ino
, dentry
, size
);
658 name
= xattr_full_name(handler
, name
);
659 return ubifs_xattr_get(inode
, name
, buffer
, size
);
662 static int xattr_set(const struct xattr_handler
*handler
,
663 struct mnt_idmap
*idmap
,
664 struct dentry
*dentry
, struct inode
*inode
,
665 const char *name
, const void *value
,
666 size_t size
, int flags
)
668 dbg_gen("xattr '%s', host ino %lu ('%pd'), size %zd",
669 name
, inode
->i_ino
, dentry
, size
);
671 name
= xattr_full_name(handler
, name
);
674 return ubifs_xattr_set(inode
, name
, value
, size
, flags
, true);
676 return ubifs_xattr_remove(inode
, name
);
679 static const struct xattr_handler ubifs_user_xattr_handler
= {
680 .prefix
= XATTR_USER_PREFIX
,
685 static const struct xattr_handler ubifs_trusted_xattr_handler
= {
686 .prefix
= XATTR_TRUSTED_PREFIX
,
691 #ifdef CONFIG_UBIFS_FS_SECURITY
692 static const struct xattr_handler ubifs_security_xattr_handler
= {
693 .prefix
= XATTR_SECURITY_PREFIX
,
699 const struct xattr_handler
* const ubifs_xattr_handlers
[] = {
700 &ubifs_user_xattr_handler
,
701 &ubifs_trusted_xattr_handler
,
702 #ifdef CONFIG_UBIFS_FS_SECURITY
703 &ubifs_security_xattr_handler
,