1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Copyright (C) International Business Machines Corp., 2000-2004
4 * Copyright (C) Christoph Hellwig, 2002
7 #include <linux/capability.h>
9 #include <linux/xattr.h>
10 #include <linux/posix_acl_xattr.h>
11 #include <linux/slab.h>
12 #include <linux/quotaops.h>
13 #include <linux/security.h>
14 #include "jfs_incore.h"
15 #include "jfs_superblock.h"
17 #include "jfs_debug.h"
18 #include "jfs_dinode.h"
19 #include "jfs_extent.h"
20 #include "jfs_metapage.h"
21 #include "jfs_xattr.h"
25 * jfs_xattr.c: extended attribute service
31 * Extended attribute lists (jfs_ea_list) consist of an overall size (32 bit
32 * value) and a variable (0 or more) number of extended attribute
33 * entries. Each extended attribute entry (jfs_ea) is a <name,value> double
34 * where <name> is constructed from a null-terminated ascii string
35 * (1 ... 255 bytes in the name) and <value> is arbitrary 8 bit data
36 * (1 ... 65535 bytes). The in-memory format is
38 * 0 1 2 4 4 + namelen + 1
39 * +-------+--------+--------+----------------+-------------------+
40 * | Flags | Name | Value | Name String \0 | Data . . . . |
41 * | | Length | Length | | |
42 * +-------+--------+--------+----------------+-------------------+
44 * A jfs_ea_list then is structured as
46 * 0 4 4 + EA_SIZE(ea1)
47 * +------------+-------------------+--------------------+-----
48 * | Overall EA | First FEA Element | Second FEA Element | .....
50 * +------------+-------------------+--------------------+-----
54 * FEALISTs are stored on disk using blocks allocated by dbAlloc() and
55 * written directly. An EA list may be in-lined in the inode if there is
56 * sufficient room available.
60 int flag
; /* Indicates what storage xattr points to */
61 int max_size
; /* largest xattr that fits in current buffer */
62 dxd_t new_ea
; /* dxd to replace ea when modifying xattr */
63 struct metapage
*mp
; /* metapage containing ea list */
64 struct jfs_ea_list
*xattr
; /* buffer containing ea list */
68 * ea_buffer.flag values
70 #define EA_INLINE 0x0001
71 #define EA_EXTENT 0x0002
73 #define EA_MALLOC 0x0008
77 * Mapping of on-disk attribute names: for on-disk attribute names with an
78 * unknown prefix (not "system.", "user.", "security.", or "trusted."), the
79 * prefix "os2." is prepended. On the way back to disk, "os2." prefixes are
80 * stripped and we make sure that the remaining name does not start with one
81 * of the know prefixes.
84 static int is_known_namespace(const char *name
)
86 if (strncmp(name
, XATTR_SYSTEM_PREFIX
, XATTR_SYSTEM_PREFIX_LEN
) &&
87 strncmp(name
, XATTR_USER_PREFIX
, XATTR_USER_PREFIX_LEN
) &&
88 strncmp(name
, XATTR_SECURITY_PREFIX
, XATTR_SECURITY_PREFIX_LEN
) &&
89 strncmp(name
, XATTR_TRUSTED_PREFIX
, XATTR_TRUSTED_PREFIX_LEN
))
95 static inline int name_size(struct jfs_ea
*ea
)
97 if (is_known_namespace(ea
->name
))
100 return ea
->namelen
+ XATTR_OS2_PREFIX_LEN
;
103 static inline int copy_name(char *buffer
, struct jfs_ea
*ea
)
105 int len
= ea
->namelen
;
107 if (!is_known_namespace(ea
->name
)) {
108 memcpy(buffer
, XATTR_OS2_PREFIX
, XATTR_OS2_PREFIX_LEN
);
109 buffer
+= XATTR_OS2_PREFIX_LEN
;
110 len
+= XATTR_OS2_PREFIX_LEN
;
112 memcpy(buffer
, ea
->name
, ea
->namelen
);
113 buffer
[ea
->namelen
] = 0;
118 /* Forward references */
119 static void ea_release(struct inode
*inode
, struct ea_buffer
*ea_buf
);
122 * NAME: ea_write_inline
124 * FUNCTION: Attempt to write an EA inline if area is available
127 * Already verified that the specified EA is small enough to fit inline
131 * ealist - EA list pointer
132 * size - size of ealist in bytes
133 * ea - dxd_t structure to be filled in with necessary EA information
134 * if we successfully copy the EA inline
137 * Checks if the inode's inline area is available. If so, copies EA inline
138 * and sets <ea> fields appropriately. Otherwise, returns failure, EA will
139 * have to be put into an extent.
141 * RETURNS: 0 for successful copy to inline area; -1 if area not available
143 static int ea_write_inline(struct inode
*ip
, struct jfs_ea_list
*ealist
,
144 int size
, dxd_t
* ea
)
146 struct jfs_inode_info
*ji
= JFS_IP(ip
);
149 * Make sure we have an EA -- the NULL EA list is valid, but you
152 if (ealist
&& size
> sizeof (struct jfs_ea_list
)) {
153 assert(size
<= sizeof (ji
->i_inline_ea
));
156 * See if the space is available or if it is already being
157 * used for an inline EA.
159 if (!(ji
->mode2
& INLINEEA
) && !(ji
->ea
.flag
& DXD_INLINE
))
165 memcpy(ji
->i_inline_ea
, ealist
, size
);
166 ea
->flag
= DXD_INLINE
;
167 ji
->mode2
&= ~INLINEEA
;
174 /* Free up INLINE area */
175 if (ji
->ea
.flag
& DXD_INLINE
)
176 ji
->mode2
|= INLINEEA
;
185 * FUNCTION: Write an EA for an inode
187 * PRE CONDITIONS: EA has been verified
191 * ealist - EA list pointer
192 * size - size of ealist in bytes
193 * ea - dxd_t structure to be filled in appropriately with where the
196 * NOTES: Will write EA inline if able to, otherwise allocates blocks for an
197 * extent and synchronously writes it to those blocks.
199 * RETURNS: 0 for success; Anything else indicates failure
201 static int ea_write(struct inode
*ip
, struct jfs_ea_list
*ealist
, int size
,
204 struct super_block
*sb
= ip
->i_sb
;
205 struct jfs_inode_info
*ji
= JFS_IP(ip
);
206 struct jfs_sb_info
*sbi
= JFS_SBI(sb
);
216 * Quick check to see if this is an in-linable EA. Short EAs
217 * and empty EAs are all in-linable, provided the space exists.
219 if (!ealist
|| size
<= sizeof (ji
->i_inline_ea
)) {
220 if (!ea_write_inline(ip
, ealist
, size
, ea
))
224 /* figure out how many blocks we need */
225 nblocks
= (size
+ (sb
->s_blocksize
- 1)) >> sb
->s_blocksize_bits
;
227 /* Allocate new blocks to quota. */
228 rc
= dquot_alloc_block(ip
, nblocks
);
232 rc
= dbAlloc(ip
, INOHINT(ip
), nblocks
, &blkno
);
234 /*Rollback quota allocation. */
235 dquot_free_block(ip
, nblocks
);
240 * Now have nblocks worth of storage to stuff into the FEALIST.
241 * loop over the FEALIST copying data into the buffer one page at
244 cp
= (char *) ealist
;
246 for (i
= 0; i
< nblocks
; i
+= sbi
->nbperpage
) {
248 * Determine how many bytes for this request, and round up to
249 * the nearest aggregate block size
251 nb
= min(PSIZE
, nbytes
);
253 ((((nb
+ sb
->s_blocksize
- 1)) >> sb
->s_blocksize_bits
))
254 << sb
->s_blocksize_bits
;
256 if (!(mp
= get_metapage(ip
, blkno
+ i
, bytes_to_write
, 1))) {
261 memcpy(mp
->data
, cp
, nb
);
264 * We really need a way to propagate errors for
265 * forced writes like this one. --hch
267 * (__write_metapage => release_metapage => flush_metapage)
270 if ((rc
= flush_metapage(mp
))) {
272 * the write failed -- this means that the buffer
273 * is still assigned and the blocks are not being
274 * used. this seems like the best error recovery
287 ea
->flag
= DXD_EXTENT
;
288 DXDsize(ea
, le32_to_cpu(ealist
->size
));
289 DXDlength(ea
, nblocks
);
290 DXDaddress(ea
, blkno
);
292 /* Free up INLINE area */
293 if (ji
->ea
.flag
& DXD_INLINE
)
294 ji
->mode2
|= INLINEEA
;
299 /* Rollback quota allocation. */
300 dquot_free_block(ip
, nblocks
);
302 dbFree(ip
, blkno
, nblocks
);
307 * NAME: ea_read_inline
309 * FUNCTION: Read an inlined EA into user's buffer
313 * ealist - Pointer to buffer to fill in with EA
317 static int ea_read_inline(struct inode
*ip
, struct jfs_ea_list
*ealist
)
319 struct jfs_inode_info
*ji
= JFS_IP(ip
);
320 int ea_size
= sizeDXD(&ji
->ea
);
328 if ((sizeDXD(&ji
->ea
) > sizeof (ji
->i_inline_ea
)))
330 if (le32_to_cpu(((struct jfs_ea_list
*) &ji
->i_inline_ea
)->size
)
334 memcpy(ealist
, ji
->i_inline_ea
, ea_size
);
341 * FUNCTION: copy EA data into user's buffer
345 * ealist - Pointer to buffer to fill in with EA
347 * NOTES: If EA is inline calls ea_read_inline() to copy EA.
349 * RETURNS: 0 for success; other indicates failure
351 static int ea_read(struct inode
*ip
, struct jfs_ea_list
*ealist
)
353 struct super_block
*sb
= ip
->i_sb
;
354 struct jfs_inode_info
*ji
= JFS_IP(ip
);
355 struct jfs_sb_info
*sbi
= JFS_SBI(sb
);
358 char *cp
= (char *) ealist
;
364 /* quick check for in-line EA */
365 if (ji
->ea
.flag
& DXD_INLINE
)
366 return ea_read_inline(ip
, ealist
);
368 nbytes
= sizeDXD(&ji
->ea
);
370 jfs_error(sb
, "nbytes is 0\n");
375 * Figure out how many blocks were allocated when this EA list was
376 * originally written to disk.
378 nblocks
= lengthDXD(&ji
->ea
) << sbi
->l2nbperpage
;
379 blkno
= addressDXD(&ji
->ea
) << sbi
->l2nbperpage
;
382 * I have found the disk blocks which were originally used to store
383 * the FEALIST. now i loop over each contiguous block copying the
384 * data into the buffer.
386 for (i
= 0; i
< nblocks
; i
+= sbi
->nbperpage
) {
388 * Determine how many bytes for this request, and round up to
389 * the nearest aggregate block size
391 nb
= min(PSIZE
, nbytes
);
393 ((((nb
+ sb
->s_blocksize
- 1)) >> sb
->s_blocksize_bits
))
394 << sb
->s_blocksize_bits
;
396 if (!(mp
= read_metapage(ip
, blkno
+ i
, bytes_to_read
, 1)))
399 memcpy(cp
, mp
->data
, nb
);
400 release_metapage(mp
);
412 * FUNCTION: Returns buffer containing existing extended attributes.
413 * The size of the buffer will be the larger of the existing
414 * attributes size, or min_size.
416 * The buffer, which may be inlined in the inode or in the
417 * page cache must be release by calling ea_release or ea_put
420 * inode - Inode pointer
421 * ea_buf - Structure to be populated with ealist and its metadata
422 * min_size- minimum size of buffer to be returned
424 * RETURNS: 0 for success; Other indicates failure
426 static int ea_get(struct inode
*inode
, struct ea_buffer
*ea_buf
, int min_size
)
428 struct jfs_inode_info
*ji
= JFS_IP(inode
);
429 struct super_block
*sb
= inode
->i_sb
;
431 int ea_size
= sizeDXD(&ji
->ea
);
432 int blocks_needed
, current_blocks
;
435 int quota_allocation
= 0;
437 /* When fsck.jfs clears a bad ea, it doesn't clear the size */
438 if (ji
->ea
.flag
== 0)
444 ea_buf
->max_size
= 0;
445 ea_buf
->xattr
= NULL
;
448 if ((min_size
<= sizeof (ji
->i_inline_ea
)) &&
449 (ji
->mode2
& INLINEEA
)) {
450 ea_buf
->flag
= EA_INLINE
| EA_NEW
;
451 ea_buf
->max_size
= sizeof (ji
->i_inline_ea
);
452 ea_buf
->xattr
= (struct jfs_ea_list
*) ji
->i_inline_ea
;
453 DXDlength(&ea_buf
->new_ea
, 0);
454 DXDaddress(&ea_buf
->new_ea
, 0);
455 ea_buf
->new_ea
.flag
= DXD_INLINE
;
456 DXDsize(&ea_buf
->new_ea
, min_size
);
460 } else if (ji
->ea
.flag
& DXD_INLINE
) {
461 if (min_size
<= sizeof (ji
->i_inline_ea
)) {
462 ea_buf
->flag
= EA_INLINE
;
463 ea_buf
->max_size
= sizeof (ji
->i_inline_ea
);
464 ea_buf
->xattr
= (struct jfs_ea_list
*) ji
->i_inline_ea
;
469 if (!(ji
->ea
.flag
& DXD_EXTENT
)) {
470 jfs_error(sb
, "invalid ea.flag\n");
473 current_blocks
= (ea_size
+ sb
->s_blocksize
- 1) >>
474 sb
->s_blocksize_bits
;
476 size
= max(min_size
, ea_size
);
480 * To keep the rest of the code simple. Allocate a
481 * contiguous buffer to work with. Make the buffer large
482 * enough to make use of the whole extent.
484 ea_buf
->max_size
= (size
+ sb
->s_blocksize
- 1) &
485 ~(sb
->s_blocksize
- 1);
487 ea_buf
->xattr
= kmalloc(ea_buf
->max_size
, GFP_KERNEL
);
488 if (ea_buf
->xattr
== NULL
)
491 ea_buf
->flag
= EA_MALLOC
;
496 if ((rc
= ea_read(inode
, ea_buf
->xattr
))) {
497 kfree(ea_buf
->xattr
);
498 ea_buf
->xattr
= NULL
;
503 blocks_needed
= (min_size
+ sb
->s_blocksize
- 1) >>
504 sb
->s_blocksize_bits
;
506 if (blocks_needed
> current_blocks
) {
507 /* Allocate new blocks to quota. */
508 rc
= dquot_alloc_block(inode
, blocks_needed
);
512 quota_allocation
= blocks_needed
;
514 rc
= dbAlloc(inode
, INOHINT(inode
), (s64
) blocks_needed
,
519 DXDlength(&ea_buf
->new_ea
, blocks_needed
);
520 DXDaddress(&ea_buf
->new_ea
, blkno
);
521 ea_buf
->new_ea
.flag
= DXD_EXTENT
;
522 DXDsize(&ea_buf
->new_ea
, min_size
);
524 ea_buf
->flag
= EA_EXTENT
| EA_NEW
;
526 ea_buf
->mp
= get_metapage(inode
, blkno
,
527 blocks_needed
<< sb
->s_blocksize_bits
,
529 if (ea_buf
->mp
== NULL
) {
530 dbFree(inode
, blkno
, (s64
) blocks_needed
);
534 ea_buf
->xattr
= ea_buf
->mp
->data
;
535 ea_buf
->max_size
= (min_size
+ sb
->s_blocksize
- 1) &
536 ~(sb
->s_blocksize
- 1);
539 if ((rc
= ea_read(inode
, ea_buf
->xattr
))) {
540 discard_metapage(ea_buf
->mp
);
541 dbFree(inode
, blkno
, (s64
) blocks_needed
);
546 ea_buf
->flag
= EA_EXTENT
;
547 ea_buf
->mp
= read_metapage(inode
, addressDXD(&ji
->ea
),
548 lengthDXD(&ji
->ea
) << sb
->s_blocksize_bits
,
550 if (ea_buf
->mp
== NULL
) {
554 ea_buf
->xattr
= ea_buf
->mp
->data
;
555 ea_buf
->max_size
= (ea_size
+ sb
->s_blocksize
- 1) &
556 ~(sb
->s_blocksize
- 1);
559 if (EALIST_SIZE(ea_buf
->xattr
) != ea_size
) {
560 printk(KERN_ERR
"ea_get: invalid extended attribute\n");
561 print_hex_dump(KERN_ERR
, "", DUMP_PREFIX_ADDRESS
, 16, 1,
562 ea_buf
->xattr
, ea_size
, 1);
563 ea_release(inode
, ea_buf
);
571 /* Rollback quota allocation */
572 if (quota_allocation
)
573 dquot_free_block(inode
, quota_allocation
);
578 static void ea_release(struct inode
*inode
, struct ea_buffer
*ea_buf
)
580 if (ea_buf
->flag
& EA_MALLOC
)
581 kfree(ea_buf
->xattr
);
582 else if (ea_buf
->flag
& EA_EXTENT
) {
584 release_metapage(ea_buf
->mp
);
586 if (ea_buf
->flag
& EA_NEW
)
587 dbFree(inode
, addressDXD(&ea_buf
->new_ea
),
588 lengthDXD(&ea_buf
->new_ea
));
592 static int ea_put(tid_t tid
, struct inode
*inode
, struct ea_buffer
*ea_buf
,
595 struct jfs_inode_info
*ji
= JFS_IP(inode
);
596 unsigned long old_blocks
, new_blocks
;
600 ea_release(inode
, ea_buf
);
602 } else if (ea_buf
->flag
& EA_INLINE
) {
603 assert(new_size
<= sizeof (ji
->i_inline_ea
));
604 ji
->mode2
&= ~INLINEEA
;
605 ea_buf
->new_ea
.flag
= DXD_INLINE
;
606 DXDsize(&ea_buf
->new_ea
, new_size
);
607 DXDaddress(&ea_buf
->new_ea
, 0);
608 DXDlength(&ea_buf
->new_ea
, 0);
609 } else if (ea_buf
->flag
& EA_MALLOC
) {
610 rc
= ea_write(inode
, ea_buf
->xattr
, new_size
, &ea_buf
->new_ea
);
611 kfree(ea_buf
->xattr
);
612 } else if (ea_buf
->flag
& EA_NEW
) {
613 /* We have already allocated a new dxd */
614 flush_metapage(ea_buf
->mp
);
616 /* ->xattr must point to original ea's metapage */
617 rc
= ea_write(inode
, ea_buf
->xattr
, new_size
, &ea_buf
->new_ea
);
618 discard_metapage(ea_buf
->mp
);
623 old_blocks
= new_blocks
= 0;
625 if (ji
->ea
.flag
& DXD_EXTENT
) {
626 invalidate_dxd_metapages(inode
, ji
->ea
);
627 old_blocks
= lengthDXD(&ji
->ea
);
631 txEA(tid
, inode
, &ji
->ea
, &ea_buf
->new_ea
);
632 if (ea_buf
->new_ea
.flag
& DXD_EXTENT
) {
633 new_blocks
= lengthDXD(&ea_buf
->new_ea
);
634 if (ji
->ea
.flag
& DXD_INLINE
)
635 ji
->mode2
|= INLINEEA
;
637 ji
->ea
= ea_buf
->new_ea
;
639 txEA(tid
, inode
, &ji
->ea
, NULL
);
640 if (ji
->ea
.flag
& DXD_INLINE
)
641 ji
->mode2
|= INLINEEA
;
646 /* If old blocks exist, they must be removed from quota allocation. */
648 dquot_free_block(inode
, old_blocks
);
650 inode
->i_ctime
= current_time(inode
);
655 int __jfs_setxattr(tid_t tid
, struct inode
*inode
, const char *name
,
656 const void *value
, size_t value_len
, int flags
)
658 struct jfs_ea_list
*ealist
;
659 struct jfs_ea
*ea
, *old_ea
= NULL
, *next_ea
= NULL
;
660 struct ea_buffer ea_buf
;
664 int namelen
= strlen(name
);
669 down_write(&JFS_IP(inode
)->xattr_sem
);
671 xattr_size
= ea_get(inode
, &ea_buf
, 0);
672 if (xattr_size
< 0) {
678 ealist
= (struct jfs_ea_list
*) ea_buf
.xattr
;
679 new_size
= sizeof (struct jfs_ea_list
);
682 for (ea
= FIRST_EA(ealist
); ea
< END_EALIST(ealist
);
684 if ((namelen
== ea
->namelen
) &&
685 (memcmp(name
, ea
->name
, namelen
) == 0)) {
687 if (flags
& XATTR_CREATE
) {
692 old_ea_size
= EA_SIZE(ea
);
693 next_ea
= NEXT_EA(ea
);
695 new_size
+= EA_SIZE(ea
);
700 if (flags
& XATTR_REPLACE
) {
710 new_size
+= sizeof (struct jfs_ea
) + namelen
+ 1 + value_len
;
712 if (new_size
> ea_buf
.max_size
) {
714 * We need to allocate more space for merged ea list.
715 * We should only have loop to again: once.
717 ea_release(inode
, &ea_buf
);
718 xattr_size
= ea_get(inode
, &ea_buf
, new_size
);
719 if (xattr_size
< 0) {
726 /* Remove old ea of the same name */
728 /* number of bytes following target EA */
729 length
= (char *) END_EALIST(ealist
) - (char *) next_ea
;
731 memmove(old_ea
, next_ea
, length
);
732 xattr_size
-= old_ea_size
;
735 /* Add new entry to the end */
738 /* Completely new ea list */
739 xattr_size
= sizeof (struct jfs_ea_list
);
742 * The size of EA value is limitted by on-disk format up to
743 * __le16, there would be an overflow if the size is equal
744 * to XATTR_SIZE_MAX (65536). In order to avoid this issue,
745 * we can pre-checkup the value size against USHRT_MAX, and
746 * return -E2BIG in this case, which is consistent with the
747 * VFS setxattr interface.
749 if (value_len
>= USHRT_MAX
) {
754 ea
= (struct jfs_ea
*) ((char *) ealist
+ xattr_size
);
756 ea
->namelen
= namelen
;
757 ea
->valuelen
= (cpu_to_le16(value_len
));
758 memcpy(ea
->name
, name
, namelen
);
759 ea
->name
[namelen
] = 0;
761 memcpy(&ea
->name
[namelen
+ 1], value
, value_len
);
762 xattr_size
+= EA_SIZE(ea
);
765 /* DEBUG - If we did this right, these number match */
766 if (xattr_size
!= new_size
) {
768 "__jfs_setxattr: xattr_size = %d, new_size = %d\n",
769 xattr_size
, new_size
);
776 * If we're left with an empty list, there's no ea
778 if (new_size
== sizeof (struct jfs_ea_list
))
781 ealist
->size
= cpu_to_le32(new_size
);
783 rc
= ea_put(tid
, inode
, &ea_buf
, new_size
);
787 ea_release(inode
, &ea_buf
);
789 up_write(&JFS_IP(inode
)->xattr_sem
);
794 ssize_t
__jfs_getxattr(struct inode
*inode
, const char *name
, void *data
,
797 struct jfs_ea_list
*ealist
;
799 struct ea_buffer ea_buf
;
802 int namelen
= strlen(name
);
805 down_read(&JFS_IP(inode
)->xattr_sem
);
807 xattr_size
= ea_get(inode
, &ea_buf
, 0);
809 if (xattr_size
< 0) {
817 ealist
= (struct jfs_ea_list
*) ea_buf
.xattr
;
819 /* Find the named attribute */
820 for (ea
= FIRST_EA(ealist
); ea
< END_EALIST(ealist
); ea
= NEXT_EA(ea
))
821 if ((namelen
== ea
->namelen
) &&
822 memcmp(name
, ea
->name
, namelen
) == 0) {
824 size
= le16_to_cpu(ea
->valuelen
);
827 else if (size
> buf_size
) {
831 value
= ((char *) &ea
->name
) + ea
->namelen
+ 1;
832 memcpy(data
, value
, size
);
838 ea_release(inode
, &ea_buf
);
840 up_read(&JFS_IP(inode
)->xattr_sem
);
846 * No special permissions are needed to list attributes except for trusted.*
848 static inline int can_list(struct jfs_ea
*ea
)
850 return (strncmp(ea
->name
, XATTR_TRUSTED_PREFIX
,
851 XATTR_TRUSTED_PREFIX_LEN
) ||
852 capable(CAP_SYS_ADMIN
));
855 ssize_t
jfs_listxattr(struct dentry
* dentry
, char *data
, size_t buf_size
)
857 struct inode
*inode
= d_inode(dentry
);
861 struct jfs_ea_list
*ealist
;
863 struct ea_buffer ea_buf
;
865 down_read(&JFS_IP(inode
)->xattr_sem
);
867 xattr_size
= ea_get(inode
, &ea_buf
, 0);
868 if (xattr_size
< 0) {
876 ealist
= (struct jfs_ea_list
*) ea_buf
.xattr
;
878 /* compute required size of list */
879 for (ea
= FIRST_EA(ealist
); ea
< END_EALIST(ealist
); ea
= NEXT_EA(ea
)) {
881 size
+= name_size(ea
) + 1;
887 if (size
> buf_size
) {
892 /* Copy attribute names to buffer */
894 for (ea
= FIRST_EA(ealist
); ea
< END_EALIST(ealist
); ea
= NEXT_EA(ea
)) {
896 int namelen
= copy_name(buffer
, ea
);
897 buffer
+= namelen
+ 1;
902 ea_release(inode
, &ea_buf
);
904 up_read(&JFS_IP(inode
)->xattr_sem
);
908 static int __jfs_xattr_set(struct inode
*inode
, const char *name
,
909 const void *value
, size_t size
, int flags
)
911 struct jfs_inode_info
*ji
= JFS_IP(inode
);
915 tid
= txBegin(inode
->i_sb
, 0);
916 mutex_lock(&ji
->commit_mutex
);
917 rc
= __jfs_setxattr(tid
, inode
, name
, value
, size
, flags
);
919 rc
= txCommit(tid
, 1, &inode
, 0);
921 mutex_unlock(&ji
->commit_mutex
);
926 static int jfs_xattr_get(const struct xattr_handler
*handler
,
927 struct dentry
*unused
, struct inode
*inode
,
928 const char *name
, void *value
, size_t size
)
930 name
= xattr_full_name(handler
, name
);
931 return __jfs_getxattr(inode
, name
, value
, size
);
934 static int jfs_xattr_set(const struct xattr_handler
*handler
,
935 struct dentry
*unused
, struct inode
*inode
,
936 const char *name
, const void *value
,
937 size_t size
, int flags
)
939 name
= xattr_full_name(handler
, name
);
940 return __jfs_xattr_set(inode
, name
, value
, size
, flags
);
943 static int jfs_xattr_get_os2(const struct xattr_handler
*handler
,
944 struct dentry
*unused
, struct inode
*inode
,
945 const char *name
, void *value
, size_t size
)
947 if (is_known_namespace(name
))
949 return __jfs_getxattr(inode
, name
, value
, size
);
952 static int jfs_xattr_set_os2(const struct xattr_handler
*handler
,
953 struct dentry
*unused
, struct inode
*inode
,
954 const char *name
, const void *value
,
955 size_t size
, int flags
)
957 if (is_known_namespace(name
))
959 return __jfs_xattr_set(inode
, name
, value
, size
, flags
);
962 static const struct xattr_handler jfs_user_xattr_handler
= {
963 .prefix
= XATTR_USER_PREFIX
,
964 .get
= jfs_xattr_get
,
965 .set
= jfs_xattr_set
,
968 static const struct xattr_handler jfs_os2_xattr_handler
= {
969 .prefix
= XATTR_OS2_PREFIX
,
970 .get
= jfs_xattr_get_os2
,
971 .set
= jfs_xattr_set_os2
,
974 static const struct xattr_handler jfs_security_xattr_handler
= {
975 .prefix
= XATTR_SECURITY_PREFIX
,
976 .get
= jfs_xattr_get
,
977 .set
= jfs_xattr_set
,
980 static const struct xattr_handler jfs_trusted_xattr_handler
= {
981 .prefix
= XATTR_TRUSTED_PREFIX
,
982 .get
= jfs_xattr_get
,
983 .set
= jfs_xattr_set
,
986 const struct xattr_handler
*jfs_xattr_handlers
[] = {
987 #ifdef CONFIG_JFS_POSIX_ACL
988 &posix_acl_access_xattr_handler
,
989 &posix_acl_default_xattr_handler
,
991 &jfs_os2_xattr_handler
,
992 &jfs_user_xattr_handler
,
993 &jfs_security_xattr_handler
,
994 &jfs_trusted_xattr_handler
,
999 #ifdef CONFIG_JFS_SECURITY
1000 static int jfs_initxattrs(struct inode
*inode
, const struct xattr
*xattr_array
,
1003 const struct xattr
*xattr
;
1004 tid_t
*tid
= fs_info
;
1008 for (xattr
= xattr_array
; xattr
->name
!= NULL
; xattr
++) {
1009 name
= kmalloc(XATTR_SECURITY_PREFIX_LEN
+
1010 strlen(xattr
->name
) + 1, GFP_NOFS
);
1015 strcpy(name
, XATTR_SECURITY_PREFIX
);
1016 strcpy(name
+ XATTR_SECURITY_PREFIX_LEN
, xattr
->name
);
1018 err
= __jfs_setxattr(*tid
, inode
, name
,
1019 xattr
->value
, xattr
->value_len
, 0);
1027 int jfs_init_security(tid_t tid
, struct inode
*inode
, struct inode
*dir
,
1028 const struct qstr
*qstr
)
1030 return security_inode_init_security(inode
, dir
, qstr
,
1031 &jfs_initxattrs
, &tid
);