1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * linux/fs/ext4/xattr.c
4 *
5 * Copyright (C) 2001-2003 Andreas Gruenbacher, <agruen@suse.de>
6 *
7 * Fix by Harrison Xing <harrison@mountainviewdata.com>.
8 * Ext4 code with a lot of help from Eric Jarman <ejarman@acm.org>.
9 * Extended attributes for symlinks and special files added per
10 * suggestion of Luka Renko <luka.renko@hermes.si>.
11 * xattr consolidation Copyright (c) 2004 James Morris <jmorris@redhat.com>,
12 * Red Hat Inc.
13 * ea-in-inode support by Alex Tomas <alex@clusterfs.com> aka bzzz
14 * and Andreas Gruenbacher <agruen@suse.de>.
15 */
16
17 /*
18 * Extended attributes are stored directly in inodes (on file systems with
19 * inodes bigger than 128 bytes) and on additional disk blocks. The i_file_acl
20 * field contains the block number if an inode uses an additional block. All
21 * attributes must fit in the inode and one additional block. Blocks that
22 * contain the identical set of attributes may be shared among several inodes.
23 * Identical blocks are detected by keeping a cache of blocks that have
24 * recently been accessed.
25 *
26 * The attributes in inodes and on blocks have a different header; the entries
27 * are stored in the same format:
28 *
29 * +------------------+
30 * | header |
31 * | entry 1 | |
32 * | entry 2 | | growing downwards
33 * | entry 3 | v
34 * | four null bytes |
35 * | . . . |
36 * | value 1 | ^
37 * | value 3 | | growing upwards
38 * | value 2 | |
39 * +------------------+
40 *
41 * The header is followed by multiple entry descriptors. In disk blocks, the
42 * entry descriptors are kept sorted. In inodes, they are unsorted. The
43 * attribute values are aligned to the end of the block in no specific order.
44 *
45 * Locking strategy
46 * ----------------
47 * EXT4_I(inode)->i_file_acl is protected by EXT4_I(inode)->xattr_sem.
48 * EA blocks are only changed if they are exclusive to an inode, so
49 * holding xattr_sem also means that nothing but the EA block's reference
50 * count can change. Multiple writers to the same block are synchronized
51 * by the buffer lock.
52 */
53
54 #include <linux/init.h>
55 #include <linux/fs.h>
56 #include <linux/slab.h>
57 #include <linux/mbcache.h>
58 #include <linux/quotaops.h>
59 #include <linux/iversion.h>
60 #include "ext4_jbd2.h"
61 #include "ext4.h"
62 #include "xattr.h"
63 #include "acl.h"
64
65 #ifdef EXT4_XATTR_DEBUG
66 # define ea_idebug(inode, fmt, ...) \
67 printk(KERN_DEBUG "inode %s:%lu: " fmt "\n", \
68 inode->i_sb->s_id, inode->i_ino, ##__VA_ARGS__)
69 # define ea_bdebug(bh, fmt, ...) \
70 printk(KERN_DEBUG "block %pg:%lu: " fmt "\n", \
71 bh->b_bdev, (unsigned long)bh->b_blocknr, ##__VA_ARGS__)
72 #else
73 # define ea_idebug(inode, fmt, ...) no_printk(fmt, ##__VA_ARGS__)
74 # define ea_bdebug(bh, fmt, ...) no_printk(fmt, ##__VA_ARGS__)
75 #endif
76
77 static void ext4_xattr_block_cache_insert(struct mb_cache *,
78 struct buffer_head *);
79 static struct buffer_head *
80 ext4_xattr_block_cache_find(struct inode *, struct ext4_xattr_header *,
81 struct mb_cache_entry **);
82 static __le32 ext4_xattr_hash_entry(char *name, size_t name_len, __le32 *value,
83 size_t value_count);
84 static __le32 ext4_xattr_hash_entry_signed(char *name, size_t name_len, __le32 *value,
85 size_t value_count);
86 static void ext4_xattr_rehash(struct ext4_xattr_header *);
87
88 static const struct xattr_handler * const ext4_xattr_handler_map[] = {
89 [EXT4_XATTR_INDEX_USER] = &ext4_xattr_user_handler,
90 #ifdef CONFIG_EXT4_FS_POSIX_ACL
91 [EXT4_XATTR_INDEX_POSIX_ACL_ACCESS] = &nop_posix_acl_access,
92 [EXT4_XATTR_INDEX_POSIX_ACL_DEFAULT] = &nop_posix_acl_default,
93 #endif
94 [EXT4_XATTR_INDEX_TRUSTED] = &ext4_xattr_trusted_handler,
95 #ifdef CONFIG_EXT4_FS_SECURITY
96 [EXT4_XATTR_INDEX_SECURITY] = &ext4_xattr_security_handler,
97 #endif
98 [EXT4_XATTR_INDEX_HURD] = &ext4_xattr_hurd_handler,
99 };
100
101 const struct xattr_handler *ext4_xattr_handlers[] = {
102 &ext4_xattr_user_handler,
103 &ext4_xattr_trusted_handler,
104 #ifdef CONFIG_EXT4_FS_SECURITY
105 &ext4_xattr_security_handler,
106 #endif
107 &ext4_xattr_hurd_handler,
108 NULL
109 };
110
111 #define EA_BLOCK_CACHE(inode) (((struct ext4_sb_info *) \
112 inode->i_sb->s_fs_info)->s_ea_block_cache)
113
114 #define EA_INODE_CACHE(inode) (((struct ext4_sb_info *) \
115 inode->i_sb->s_fs_info)->s_ea_inode_cache)
116
117 static int
118 ext4_expand_inode_array(struct ext4_xattr_inode_array **ea_inode_array,
119 struct inode *inode);
120
121 #ifdef CONFIG_LOCKDEP
ext4_xattr_inode_set_class(struct inode * ea_inode)122 void ext4_xattr_inode_set_class(struct inode *ea_inode)
123 {
124 struct ext4_inode_info *ei = EXT4_I(ea_inode);
125
126 lockdep_set_subclass(&ea_inode->i_rwsem, 1);
127 (void) ei; /* shut up clang warning if !CONFIG_LOCKDEP */
128 lockdep_set_subclass(&ei->i_data_sem, I_DATA_SEM_EA);
129 }
130 #endif
131
ext4_xattr_block_csum(struct inode * inode,sector_t block_nr,struct ext4_xattr_header * hdr)132 static __le32 ext4_xattr_block_csum(struct inode *inode,
133 sector_t block_nr,
134 struct ext4_xattr_header *hdr)
135 {
136 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
137 __u32 csum;
138 __le64 dsk_block_nr = cpu_to_le64(block_nr);
139 __u32 dummy_csum = 0;
140 int offset = offsetof(struct ext4_xattr_header, h_checksum);
141
142 csum = ext4_chksum(sbi, sbi->s_csum_seed, (__u8 *)&dsk_block_nr,
143 sizeof(dsk_block_nr));
144 csum = ext4_chksum(sbi, csum, (__u8 *)hdr, offset);
145 csum = ext4_chksum(sbi, csum, (__u8 *)&dummy_csum, sizeof(dummy_csum));
146 offset += sizeof(dummy_csum);
147 csum = ext4_chksum(sbi, csum, (__u8 *)hdr + offset,
148 EXT4_BLOCK_SIZE(inode->i_sb) - offset);
149
150 return cpu_to_le32(csum);
151 }
152
ext4_xattr_block_csum_verify(struct inode * inode,struct buffer_head * bh)153 static int ext4_xattr_block_csum_verify(struct inode *inode,
154 struct buffer_head *bh)
155 {
156 struct ext4_xattr_header *hdr = BHDR(bh);
157 int ret = 1;
158
159 if (ext4_has_metadata_csum(inode->i_sb)) {
160 lock_buffer(bh);
161 ret = (hdr->h_checksum == ext4_xattr_block_csum(inode,
162 bh->b_blocknr, hdr));
163 unlock_buffer(bh);
164 }
165 return ret;
166 }
167
ext4_xattr_block_csum_set(struct inode * inode,struct buffer_head * bh)168 static void ext4_xattr_block_csum_set(struct inode *inode,
169 struct buffer_head *bh)
170 {
171 if (ext4_has_metadata_csum(inode->i_sb))
172 BHDR(bh)->h_checksum = ext4_xattr_block_csum(inode,
173 bh->b_blocknr, BHDR(bh));
174 }
175
ext4_xattr_prefix(int name_index,struct dentry * dentry)176 static inline const char *ext4_xattr_prefix(int name_index,
177 struct dentry *dentry)
178 {
179 const struct xattr_handler *handler = NULL;
180
181 if (name_index > 0 && name_index < ARRAY_SIZE(ext4_xattr_handler_map))
182 handler = ext4_xattr_handler_map[name_index];
183
184 if (!xattr_handler_can_list(handler, dentry))
185 return NULL;
186
187 return xattr_prefix(handler);
188 }
189
190 static int
check_xattrs(struct inode * inode,struct buffer_head * bh,struct ext4_xattr_entry * entry,void * end,void * value_start,const char * function,unsigned int line)191 check_xattrs(struct inode *inode, struct buffer_head *bh,
192 struct ext4_xattr_entry *entry, void *end, void *value_start,
193 const char *function, unsigned int line)
194 {
195 struct ext4_xattr_entry *e = entry;
196 int err = -EFSCORRUPTED;
197 char *err_str;
198
199 if (bh) {
200 if (BHDR(bh)->h_magic != cpu_to_le32(EXT4_XATTR_MAGIC) ||
201 BHDR(bh)->h_blocks != cpu_to_le32(1)) {
202 err_str = "invalid header";
203 goto errout;
204 }
205 if (buffer_verified(bh))
206 return 0;
207 if (!ext4_xattr_block_csum_verify(inode, bh)) {
208 err = -EFSBADCRC;
209 err_str = "invalid checksum";
210 goto errout;
211 }
212 } else {
213 struct ext4_xattr_ibody_header *header = value_start;
214
215 header -= 1;
216 if (end - (void *)header < sizeof(*header) + sizeof(u32)) {
217 err_str = "in-inode xattr block too small";
218 goto errout;
219 }
220 if (header->h_magic != cpu_to_le32(EXT4_XATTR_MAGIC)) {
221 err_str = "bad magic number in in-inode xattr";
222 goto errout;
223 }
224 }
225
226 /* Find the end of the names list */
227 while (!IS_LAST_ENTRY(e)) {
228 struct ext4_xattr_entry *next = EXT4_XATTR_NEXT(e);
229 if ((void *)next >= end) {
230 err_str = "e_name out of bounds";
231 goto errout;
232 }
233 if (strnlen(e->e_name, e->e_name_len) != e->e_name_len) {
234 err_str = "bad e_name length";
235 goto errout;
236 }
237 e = next;
238 }
239
240 /* Check the values */
241 while (!IS_LAST_ENTRY(entry)) {
242 u32 size = le32_to_cpu(entry->e_value_size);
243 unsigned long ea_ino = le32_to_cpu(entry->e_value_inum);
244
245 if (!ext4_has_feature_ea_inode(inode->i_sb) && ea_ino) {
246 err_str = "ea_inode specified without ea_inode feature enabled";
247 goto errout;
248 }
249 if (ea_ino && ((ea_ino == EXT4_ROOT_INO) ||
250 !ext4_valid_inum(inode->i_sb, ea_ino))) {
251 err_str = "invalid ea_ino";
252 goto errout;
253 }
254 if (size > EXT4_XATTR_SIZE_MAX) {
255 err_str = "e_value size too large";
256 goto errout;
257 }
258
259 if (size != 0 && entry->e_value_inum == 0) {
260 u16 offs = le16_to_cpu(entry->e_value_offs);
261 void *value;
262
263 /*
264 * The value cannot overlap the names, and the value
265 * with padding cannot extend beyond 'end'. Check both
266 * the padded and unpadded sizes, since the size may
267 * overflow to 0 when adding padding.
268 */
269 if (offs > end - value_start) {
270 err_str = "e_value out of bounds";
271 goto errout;
272 }
273 value = value_start + offs;
274 if (value < (void *)e + sizeof(u32) ||
275 size > end - value ||
276 EXT4_XATTR_SIZE(size) > end - value) {
277 err_str = "overlapping e_value ";
278 goto errout;
279 }
280 }
281 entry = EXT4_XATTR_NEXT(entry);
282 }
283 if (bh)
284 set_buffer_verified(bh);
285 return 0;
286
287 errout:
288 if (bh)
289 __ext4_error_inode(inode, function, line, 0, -err,
290 "corrupted xattr block %llu: %s",
291 (unsigned long long) bh->b_blocknr,
292 err_str);
293 else
294 __ext4_error_inode(inode, function, line, 0, -err,
295 "corrupted in-inode xattr: %s", err_str);
296 return err;
297 }
298
299 static inline int
__ext4_xattr_check_block(struct inode * inode,struct buffer_head * bh,const char * function,unsigned int line)300 __ext4_xattr_check_block(struct inode *inode, struct buffer_head *bh,
301 const char *function, unsigned int line)
302 {
303 return check_xattrs(inode, bh, BFIRST(bh), bh->b_data + bh->b_size,
304 bh->b_data, function, line);
305 }
306
307 #define ext4_xattr_check_block(inode, bh) \
308 __ext4_xattr_check_block((inode), (bh), __func__, __LINE__)
309
310
311 static inline int
__xattr_check_inode(struct inode * inode,struct ext4_xattr_ibody_header * header,void * end,const char * function,unsigned int line)312 __xattr_check_inode(struct inode *inode, struct ext4_xattr_ibody_header *header,
313 void *end, const char *function, unsigned int line)
314 {
315 return check_xattrs(inode, NULL, IFIRST(header), end, IFIRST(header),
316 function, line);
317 }
318
319 #define xattr_check_inode(inode, header, end) \
320 __xattr_check_inode((inode), (header), (end), __func__, __LINE__)
321
322 static int
xattr_find_entry(struct inode * inode,struct ext4_xattr_entry ** pentry,void * end,int name_index,const char * name,int sorted)323 xattr_find_entry(struct inode *inode, struct ext4_xattr_entry **pentry,
324 void *end, int name_index, const char *name, int sorted)
325 {
326 struct ext4_xattr_entry *entry, *next;
327 size_t name_len;
328 int cmp = 1;
329
330 if (name == NULL)
331 return -EINVAL;
332 name_len = strlen(name);
333 for (entry = *pentry; !IS_LAST_ENTRY(entry); entry = next) {
334 next = EXT4_XATTR_NEXT(entry);
335 if ((void *) next >= end) {
336 EXT4_ERROR_INODE(inode, "corrupted xattr entries");
337 return -EFSCORRUPTED;
338 }
339 cmp = name_index - entry->e_name_index;
340 if (!cmp)
341 cmp = name_len - entry->e_name_len;
342 if (!cmp)
343 cmp = memcmp(name, entry->e_name, name_len);
344 if (cmp <= 0 && (sorted || cmp == 0))
345 break;
346 }
347 *pentry = entry;
348 return cmp ? -ENODATA : 0;
349 }
350
351 static u32
ext4_xattr_inode_hash(struct ext4_sb_info * sbi,const void * buffer,size_t size)352 ext4_xattr_inode_hash(struct ext4_sb_info *sbi, const void *buffer, size_t size)
353 {
354 return ext4_chksum(sbi, sbi->s_csum_seed, buffer, size);
355 }
356
ext4_xattr_inode_get_ref(struct inode * ea_inode)357 static u64 ext4_xattr_inode_get_ref(struct inode *ea_inode)
358 {
359 return ((u64) inode_get_ctime_sec(ea_inode) << 32) |
360 (u32) inode_peek_iversion_raw(ea_inode);
361 }
362
ext4_xattr_inode_set_ref(struct inode * ea_inode,u64 ref_count)363 static void ext4_xattr_inode_set_ref(struct inode *ea_inode, u64 ref_count)
364 {
365 inode_set_ctime(ea_inode, (u32)(ref_count >> 32), 0);
366 inode_set_iversion_raw(ea_inode, ref_count & 0xffffffff);
367 }
368
ext4_xattr_inode_get_hash(struct inode * ea_inode)369 static u32 ext4_xattr_inode_get_hash(struct inode *ea_inode)
370 {
371 return (u32) inode_get_atime_sec(ea_inode);
372 }
373
ext4_xattr_inode_set_hash(struct inode * ea_inode,u32 hash)374 static void ext4_xattr_inode_set_hash(struct inode *ea_inode, u32 hash)
375 {
376 inode_set_atime(ea_inode, hash, 0);
377 }
378
379 /*
380 * Read the EA value from an inode.
381 */
ext4_xattr_inode_read(struct inode * ea_inode,void * buf,size_t size)382 static int ext4_xattr_inode_read(struct inode *ea_inode, void *buf, size_t size)
383 {
384 int blocksize = 1 << ea_inode->i_blkbits;
385 int bh_count = (size + blocksize - 1) >> ea_inode->i_blkbits;
386 int tail_size = (size % blocksize) ?: blocksize;
387 struct buffer_head *bhs_inline[8];
388 struct buffer_head **bhs = bhs_inline;
389 int i, ret;
390
391 if (bh_count > ARRAY_SIZE(bhs_inline)) {
392 bhs = kmalloc_array(bh_count, sizeof(*bhs), GFP_NOFS);
393 if (!bhs)
394 return -ENOMEM;
395 }
396
397 ret = ext4_bread_batch(ea_inode, 0 /* block */, bh_count,
398 true /* wait */, bhs);
399 if (ret)
400 goto free_bhs;
401
402 for (i = 0; i < bh_count; i++) {
403 /* There shouldn't be any holes in ea_inode. */
404 if (!bhs[i]) {
405 ret = -EFSCORRUPTED;
406 goto put_bhs;
407 }
408 memcpy((char *)buf + blocksize * i, bhs[i]->b_data,
409 i < bh_count - 1 ? blocksize : tail_size);
410 }
411 ret = 0;
412 put_bhs:
413 for (i = 0; i < bh_count; i++)
414 brelse(bhs[i]);
415 free_bhs:
416 if (bhs != bhs_inline)
417 kfree(bhs);
418 return ret;
419 }
420
421 #define EXT4_XATTR_INODE_GET_PARENT(inode) ((__u32)(inode_get_mtime_sec(inode)))
422
ext4_xattr_inode_iget(struct inode * parent,unsigned long ea_ino,u32 ea_inode_hash,struct inode ** ea_inode)423 static int ext4_xattr_inode_iget(struct inode *parent, unsigned long ea_ino,
424 u32 ea_inode_hash, struct inode **ea_inode)
425 {
426 struct inode *inode;
427 int err;
428
429 /*
430 * We have to check for this corruption early as otherwise
431 * iget_locked() could wait indefinitely for the state of our
432 * parent inode.
433 */
434 if (parent->i_ino == ea_ino) {
435 ext4_error(parent->i_sb,
436 "Parent and EA inode have the same ino %lu", ea_ino);
437 return -EFSCORRUPTED;
438 }
439
440 inode = ext4_iget(parent->i_sb, ea_ino, EXT4_IGET_EA_INODE);
441 if (IS_ERR(inode)) {
442 err = PTR_ERR(inode);
443 ext4_error(parent->i_sb,
444 "error while reading EA inode %lu err=%d", ea_ino,
445 err);
446 return err;
447 }
448 ext4_xattr_inode_set_class(inode);
449
450 /*
451 * Check whether this is an old Lustre-style xattr inode. Lustre
452 * implementation does not have hash validation, rather it has a
453 * backpointer from ea_inode to the parent inode.
454 */
455 if (ea_inode_hash != ext4_xattr_inode_get_hash(inode) &&
456 EXT4_XATTR_INODE_GET_PARENT(inode) == parent->i_ino &&
457 inode->i_generation == parent->i_generation) {
458 ext4_set_inode_state(inode, EXT4_STATE_LUSTRE_EA_INODE);
459 ext4_xattr_inode_set_ref(inode, 1);
460 } else {
461 inode_lock_nested(inode, I_MUTEX_XATTR);
462 inode->i_flags |= S_NOQUOTA;
463 inode_unlock(inode);
464 }
465
466 *ea_inode = inode;
467 return 0;
468 }
469
470 /* Remove entry from mbcache when EA inode is getting evicted */
ext4_evict_ea_inode(struct inode * inode)471 void ext4_evict_ea_inode(struct inode *inode)
472 {
473 struct mb_cache_entry *oe;
474
475 if (!EA_INODE_CACHE(inode))
476 return;
477 /* Wait for entry to get unused so that we can remove it */
478 while ((oe = mb_cache_entry_delete_or_get(EA_INODE_CACHE(inode),
479 ext4_xattr_inode_get_hash(inode), inode->i_ino))) {
480 mb_cache_entry_wait_unused(oe);
481 mb_cache_entry_put(EA_INODE_CACHE(inode), oe);
482 }
483 }
484
485 static int
ext4_xattr_inode_verify_hashes(struct inode * ea_inode,struct ext4_xattr_entry * entry,void * buffer,size_t size)486 ext4_xattr_inode_verify_hashes(struct inode *ea_inode,
487 struct ext4_xattr_entry *entry, void *buffer,
488 size_t size)
489 {
490 u32 hash;
491
492 /* Verify stored hash matches calculated hash. */
493 hash = ext4_xattr_inode_hash(EXT4_SB(ea_inode->i_sb), buffer, size);
494 if (hash != ext4_xattr_inode_get_hash(ea_inode))
495 return -EFSCORRUPTED;
496
497 if (entry) {
498 __le32 e_hash, tmp_data;
499
500 /* Verify entry hash. */
501 tmp_data = cpu_to_le32(hash);
502 e_hash = ext4_xattr_hash_entry(entry->e_name, entry->e_name_len,
503 &tmp_data, 1);
504 /* All good? */
505 if (e_hash == entry->e_hash)
506 return 0;
507
508 /*
509 * Not good. Maybe the entry hash was calculated
510 * using the buggy signed char version?
511 */
512 e_hash = ext4_xattr_hash_entry_signed(entry->e_name, entry->e_name_len,
513 &tmp_data, 1);
514 /* Still no match - bad */
515 if (e_hash != entry->e_hash)
516 return -EFSCORRUPTED;
517
518 /* Let people know about old hash */
519 pr_warn_once("ext4: filesystem with signed xattr name hash");
520 }
521 return 0;
522 }
523
524 /*
525 * Read xattr value from the EA inode.
526 */
527 static int
ext4_xattr_inode_get(struct inode * inode,struct ext4_xattr_entry * entry,void * buffer,size_t size)528 ext4_xattr_inode_get(struct inode *inode, struct ext4_xattr_entry *entry,
529 void *buffer, size_t size)
530 {
531 struct mb_cache *ea_inode_cache = EA_INODE_CACHE(inode);
532 struct inode *ea_inode;
533 int err;
534
535 err = ext4_xattr_inode_iget(inode, le32_to_cpu(entry->e_value_inum),
536 le32_to_cpu(entry->e_hash), &ea_inode);
537 if (err) {
538 ea_inode = NULL;
539 goto out;
540 }
541
542 if (i_size_read(ea_inode) != size) {
543 ext4_warning_inode(ea_inode,
544 "ea_inode file size=%llu entry size=%zu",
545 i_size_read(ea_inode), size);
546 err = -EFSCORRUPTED;
547 goto out;
548 }
549
550 err = ext4_xattr_inode_read(ea_inode, buffer, size);
551 if (err)
552 goto out;
553
554 if (!ext4_test_inode_state(ea_inode, EXT4_STATE_LUSTRE_EA_INODE)) {
555 err = ext4_xattr_inode_verify_hashes(ea_inode, entry, buffer,
556 size);
557 if (err) {
558 ext4_warning_inode(ea_inode,
559 "EA inode hash validation failed");
560 goto out;
561 }
562
563 if (ea_inode_cache)
564 mb_cache_entry_create(ea_inode_cache, GFP_NOFS,
565 ext4_xattr_inode_get_hash(ea_inode),
566 ea_inode->i_ino, true /* reusable */);
567 }
568 out:
569 iput(ea_inode);
570 return err;
571 }
572
573 static int
ext4_xattr_block_get(struct inode * inode,int name_index,const char * name,void * buffer,size_t buffer_size)574 ext4_xattr_block_get(struct inode *inode, int name_index, const char *name,
575 void *buffer, size_t buffer_size)
576 {
577 struct buffer_head *bh = NULL;
578 struct ext4_xattr_entry *entry;
579 size_t size;
580 void *end;
581 int error;
582 struct mb_cache *ea_block_cache = EA_BLOCK_CACHE(inode);
583
584 ea_idebug(inode, "name=%d.%s, buffer=%p, buffer_size=%ld",
585 name_index, name, buffer, (long)buffer_size);
586
587 if (!EXT4_I(inode)->i_file_acl)
588 return -ENODATA;
589 ea_idebug(inode, "reading block %llu",
590 (unsigned long long)EXT4_I(inode)->i_file_acl);
591 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
592 if (IS_ERR(bh))
593 return PTR_ERR(bh);
594 ea_bdebug(bh, "b_count=%d, refcount=%d",
595 atomic_read(&(bh->b_count)), le32_to_cpu(BHDR(bh)->h_refcount));
596 error = ext4_xattr_check_block(inode, bh);
597 if (error)
598 goto cleanup;
599 ext4_xattr_block_cache_insert(ea_block_cache, bh);
600 entry = BFIRST(bh);
601 end = bh->b_data + bh->b_size;
602 error = xattr_find_entry(inode, &entry, end, name_index, name, 1);
603 if (error)
604 goto cleanup;
605 size = le32_to_cpu(entry->e_value_size);
606 error = -ERANGE;
607 if (unlikely(size > EXT4_XATTR_SIZE_MAX))
608 goto cleanup;
609 if (buffer) {
610 if (size > buffer_size)
611 goto cleanup;
612 if (entry->e_value_inum) {
613 error = ext4_xattr_inode_get(inode, entry, buffer,
614 size);
615 if (error)
616 goto cleanup;
617 } else {
618 u16 offset = le16_to_cpu(entry->e_value_offs);
619 void *p = bh->b_data + offset;
620
621 if (unlikely(p + size > end))
622 goto cleanup;
623 memcpy(buffer, p, size);
624 }
625 }
626 error = size;
627
628 cleanup:
629 brelse(bh);
630 return error;
631 }
632
633 int
ext4_xattr_ibody_get(struct inode * inode,int name_index,const char * name,void * buffer,size_t buffer_size)634 ext4_xattr_ibody_get(struct inode *inode, int name_index, const char *name,
635 void *buffer, size_t buffer_size)
636 {
637 struct ext4_xattr_ibody_header *header;
638 struct ext4_xattr_entry *entry;
639 struct ext4_inode *raw_inode;
640 struct ext4_iloc iloc;
641 size_t size;
642 void *end;
643 int error;
644
645 if (!ext4_test_inode_state(inode, EXT4_STATE_XATTR))
646 return -ENODATA;
647 error = ext4_get_inode_loc(inode, &iloc);
648 if (error)
649 return error;
650 raw_inode = ext4_raw_inode(&iloc);
651 header = IHDR(inode, raw_inode);
652 end = (void *)raw_inode + EXT4_SB(inode->i_sb)->s_inode_size;
653 error = xattr_check_inode(inode, header, end);
654 if (error)
655 goto cleanup;
656 entry = IFIRST(header);
657 error = xattr_find_entry(inode, &entry, end, name_index, name, 0);
658 if (error)
659 goto cleanup;
660 size = le32_to_cpu(entry->e_value_size);
661 error = -ERANGE;
662 if (unlikely(size > EXT4_XATTR_SIZE_MAX))
663 goto cleanup;
664 if (buffer) {
665 if (size > buffer_size)
666 goto cleanup;
667 if (entry->e_value_inum) {
668 error = ext4_xattr_inode_get(inode, entry, buffer,
669 size);
670 if (error)
671 goto cleanup;
672 } else {
673 u16 offset = le16_to_cpu(entry->e_value_offs);
674 void *p = (void *)IFIRST(header) + offset;
675
676 if (unlikely(p + size > end))
677 goto cleanup;
678 memcpy(buffer, p, size);
679 }
680 }
681 error = size;
682
683 cleanup:
684 brelse(iloc.bh);
685 return error;
686 }
687
688 /*
689 * ext4_xattr_get()
690 *
691 * Copy an extended attribute into the buffer
692 * provided, or compute the buffer size required.
693 * Buffer is NULL to compute the size of the buffer required.
694 *
695 * Returns a negative error number on failure, or the number of bytes
696 * used / required on success.
697 */
698 int
ext4_xattr_get(struct inode * inode,int name_index,const char * name,void * buffer,size_t buffer_size)699 ext4_xattr_get(struct inode *inode, int name_index, const char *name,
700 void *buffer, size_t buffer_size)
701 {
702 int error;
703
704 if (unlikely(ext4_forced_shutdown(inode->i_sb)))
705 return -EIO;
706
707 if (strlen(name) > 255)
708 return -ERANGE;
709
710 down_read(&EXT4_I(inode)->xattr_sem);
711 error = ext4_xattr_ibody_get(inode, name_index, name, buffer,
712 buffer_size);
713 if (error == -ENODATA)
714 error = ext4_xattr_block_get(inode, name_index, name, buffer,
715 buffer_size);
716 up_read(&EXT4_I(inode)->xattr_sem);
717 return error;
718 }
719
720 static int
ext4_xattr_list_entries(struct dentry * dentry,struct ext4_xattr_entry * entry,char * buffer,size_t buffer_size)721 ext4_xattr_list_entries(struct dentry *dentry, struct ext4_xattr_entry *entry,
722 char *buffer, size_t buffer_size)
723 {
724 size_t rest = buffer_size;
725
726 for (; !IS_LAST_ENTRY(entry); entry = EXT4_XATTR_NEXT(entry)) {
727 const char *prefix;
728
729 prefix = ext4_xattr_prefix(entry->e_name_index, dentry);
730 if (prefix) {
731 size_t prefix_len = strlen(prefix);
732 size_t size = prefix_len + entry->e_name_len + 1;
733
734 if (buffer) {
735 if (size > rest)
736 return -ERANGE;
737 memcpy(buffer, prefix, prefix_len);
738 buffer += prefix_len;
739 memcpy(buffer, entry->e_name, entry->e_name_len);
740 buffer += entry->e_name_len;
741 *buffer++ = 0;
742 }
743 rest -= size;
744 }
745 }
746 return buffer_size - rest; /* total size */
747 }
748
749 static int
ext4_xattr_block_list(struct dentry * dentry,char * buffer,size_t buffer_size)750 ext4_xattr_block_list(struct dentry *dentry, char *buffer, size_t buffer_size)
751 {
752 struct inode *inode = d_inode(dentry);
753 struct buffer_head *bh = NULL;
754 int error;
755
756 ea_idebug(inode, "buffer=%p, buffer_size=%ld",
757 buffer, (long)buffer_size);
758
759 if (!EXT4_I(inode)->i_file_acl)
760 return 0;
761 ea_idebug(inode, "reading block %llu",
762 (unsigned long long)EXT4_I(inode)->i_file_acl);
763 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
764 if (IS_ERR(bh))
765 return PTR_ERR(bh);
766 ea_bdebug(bh, "b_count=%d, refcount=%d",
767 atomic_read(&(bh->b_count)), le32_to_cpu(BHDR(bh)->h_refcount));
768 error = ext4_xattr_check_block(inode, bh);
769 if (error)
770 goto cleanup;
771 ext4_xattr_block_cache_insert(EA_BLOCK_CACHE(inode), bh);
772 error = ext4_xattr_list_entries(dentry, BFIRST(bh), buffer,
773 buffer_size);
774 cleanup:
775 brelse(bh);
776 return error;
777 }
778
779 static int
ext4_xattr_ibody_list(struct dentry * dentry,char * buffer,size_t buffer_size)780 ext4_xattr_ibody_list(struct dentry *dentry, char *buffer, size_t buffer_size)
781 {
782 struct inode *inode = d_inode(dentry);
783 struct ext4_xattr_ibody_header *header;
784 struct ext4_inode *raw_inode;
785 struct ext4_iloc iloc;
786 void *end;
787 int error;
788
789 if (!ext4_test_inode_state(inode, EXT4_STATE_XATTR))
790 return 0;
791 error = ext4_get_inode_loc(inode, &iloc);
792 if (error)
793 return error;
794 raw_inode = ext4_raw_inode(&iloc);
795 header = IHDR(inode, raw_inode);
796 end = (void *)raw_inode + EXT4_SB(inode->i_sb)->s_inode_size;
797 error = xattr_check_inode(inode, header, end);
798 if (error)
799 goto cleanup;
800 error = ext4_xattr_list_entries(dentry, IFIRST(header),
801 buffer, buffer_size);
802
803 cleanup:
804 brelse(iloc.bh);
805 return error;
806 }
807
808 /*
809 * Inode operation listxattr()
810 *
811 * d_inode(dentry)->i_rwsem: don't care
812 *
813 * Copy a list of attribute names into the buffer
814 * provided, or compute the buffer size required.
815 * Buffer is NULL to compute the size of the buffer required.
816 *
817 * Returns a negative error number on failure, or the number of bytes
818 * used / required on success.
819 */
820 ssize_t
ext4_listxattr(struct dentry * dentry,char * buffer,size_t buffer_size)821 ext4_listxattr(struct dentry *dentry, char *buffer, size_t buffer_size)
822 {
823 int ret, ret2;
824
825 down_read(&EXT4_I(d_inode(dentry))->xattr_sem);
826 ret = ret2 = ext4_xattr_ibody_list(dentry, buffer, buffer_size);
827 if (ret < 0)
828 goto errout;
829 if (buffer) {
830 buffer += ret;
831 buffer_size -= ret;
832 }
833 ret = ext4_xattr_block_list(dentry, buffer, buffer_size);
834 if (ret < 0)
835 goto errout;
836 ret += ret2;
837 errout:
838 up_read(&EXT4_I(d_inode(dentry))->xattr_sem);
839 return ret;
840 }
841
842 /*
843 * If the EXT4_FEATURE_COMPAT_EXT_ATTR feature of this file system is
844 * not set, set it.
845 */
ext4_xattr_update_super_block(handle_t * handle,struct super_block * sb)846 static void ext4_xattr_update_super_block(handle_t *handle,
847 struct super_block *sb)
848 {
849 if (ext4_has_feature_xattr(sb))
850 return;
851
852 BUFFER_TRACE(EXT4_SB(sb)->s_sbh, "get_write_access");
853 if (ext4_journal_get_write_access(handle, sb, EXT4_SB(sb)->s_sbh,
854 EXT4_JTR_NONE) == 0) {
855 lock_buffer(EXT4_SB(sb)->s_sbh);
856 ext4_set_feature_xattr(sb);
857 ext4_superblock_csum_set(sb);
858 unlock_buffer(EXT4_SB(sb)->s_sbh);
859 ext4_handle_dirty_metadata(handle, NULL, EXT4_SB(sb)->s_sbh);
860 }
861 }
862
ext4_get_inode_usage(struct inode * inode,qsize_t * usage)863 int ext4_get_inode_usage(struct inode *inode, qsize_t *usage)
864 {
865 struct ext4_iloc iloc = { .bh = NULL };
866 struct buffer_head *bh = NULL;
867 struct ext4_inode *raw_inode;
868 struct ext4_xattr_ibody_header *header;
869 struct ext4_xattr_entry *entry;
870 qsize_t ea_inode_refs = 0;
871 void *end;
872 int ret;
873
874 lockdep_assert_held_read(&EXT4_I(inode)->xattr_sem);
875
876 if (ext4_test_inode_state(inode, EXT4_STATE_XATTR)) {
877 ret = ext4_get_inode_loc(inode, &iloc);
878 if (ret)
879 goto out;
880 raw_inode = ext4_raw_inode(&iloc);
881 header = IHDR(inode, raw_inode);
882 end = (void *)raw_inode + EXT4_SB(inode->i_sb)->s_inode_size;
883 ret = xattr_check_inode(inode, header, end);
884 if (ret)
885 goto out;
886
887 for (entry = IFIRST(header); !IS_LAST_ENTRY(entry);
888 entry = EXT4_XATTR_NEXT(entry))
889 if (entry->e_value_inum)
890 ea_inode_refs++;
891 }
892
893 if (EXT4_I(inode)->i_file_acl) {
894 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
895 if (IS_ERR(bh)) {
896 ret = PTR_ERR(bh);
897 bh = NULL;
898 goto out;
899 }
900
901 ret = ext4_xattr_check_block(inode, bh);
902 if (ret)
903 goto out;
904
905 for (entry = BFIRST(bh); !IS_LAST_ENTRY(entry);
906 entry = EXT4_XATTR_NEXT(entry))
907 if (entry->e_value_inum)
908 ea_inode_refs++;
909 }
910 *usage = ea_inode_refs + 1;
911 ret = 0;
912 out:
913 brelse(iloc.bh);
914 brelse(bh);
915 return ret;
916 }
917
round_up_cluster(struct inode * inode,size_t length)918 static inline size_t round_up_cluster(struct inode *inode, size_t length)
919 {
920 struct super_block *sb = inode->i_sb;
921 size_t cluster_size = 1 << (EXT4_SB(sb)->s_cluster_bits +
922 inode->i_blkbits);
923 size_t mask = ~(cluster_size - 1);
924
925 return (length + cluster_size - 1) & mask;
926 }
927
ext4_xattr_inode_alloc_quota(struct inode * inode,size_t len)928 static int ext4_xattr_inode_alloc_quota(struct inode *inode, size_t len)
929 {
930 int err;
931
932 err = dquot_alloc_inode(inode);
933 if (err)
934 return err;
935 err = dquot_alloc_space_nodirty(inode, round_up_cluster(inode, len));
936 if (err)
937 dquot_free_inode(inode);
938 return err;
939 }
940
ext4_xattr_inode_free_quota(struct inode * parent,struct inode * ea_inode,size_t len)941 static void ext4_xattr_inode_free_quota(struct inode *parent,
942 struct inode *ea_inode,
943 size_t len)
944 {
945 if (ea_inode &&
946 ext4_test_inode_state(ea_inode, EXT4_STATE_LUSTRE_EA_INODE))
947 return;
948 dquot_free_space_nodirty(parent, round_up_cluster(parent, len));
949 dquot_free_inode(parent);
950 }
951
__ext4_xattr_set_credits(struct super_block * sb,struct inode * inode,struct buffer_head * block_bh,size_t value_len,bool is_create)952 int __ext4_xattr_set_credits(struct super_block *sb, struct inode *inode,
953 struct buffer_head *block_bh, size_t value_len,
954 bool is_create)
955 {
956 int credits;
957 int blocks;
958
959 /*
960 * 1) Owner inode update
961 * 2) Ref count update on old xattr block
962 * 3) new xattr block
963 * 4) block bitmap update for new xattr block
964 * 5) group descriptor for new xattr block
965 * 6) block bitmap update for old xattr block
966 * 7) group descriptor for old block
967 *
968 * 6 & 7 can happen if we have two racing threads T_a and T_b
969 * which are each trying to set an xattr on inodes I_a and I_b
970 * which were both initially sharing an xattr block.
971 */
972 credits = 7;
973
974 /* Quota updates. */
975 credits += EXT4_MAXQUOTAS_TRANS_BLOCKS(sb);
976
977 /*
978 * In case of inline data, we may push out the data to a block,
979 * so we need to reserve credits for this eventuality
980 */
981 if (inode && ext4_has_inline_data(inode))
982 credits += ext4_writepage_trans_blocks(inode) + 1;
983
984 /* We are done if ea_inode feature is not enabled. */
985 if (!ext4_has_feature_ea_inode(sb))
986 return credits;
987
988 /* New ea_inode, inode map, block bitmap, group descriptor. */
989 credits += 4;
990
991 /* Data blocks. */
992 blocks = (value_len + sb->s_blocksize - 1) >> sb->s_blocksize_bits;
993
994 /* Indirection block or one level of extent tree. */
995 blocks += 1;
996
997 /* Block bitmap and group descriptor updates for each block. */
998 credits += blocks * 2;
999
1000 /* Blocks themselves. */
1001 credits += blocks;
1002
1003 if (!is_create) {
1004 /* Dereference ea_inode holding old xattr value.
1005 * Old ea_inode, inode map, block bitmap, group descriptor.
1006 */
1007 credits += 4;
1008
1009 /* Data blocks for old ea_inode. */
1010 blocks = XATTR_SIZE_MAX >> sb->s_blocksize_bits;
1011
1012 /* Indirection block or one level of extent tree for old
1013 * ea_inode.
1014 */
1015 blocks += 1;
1016
1017 /* Block bitmap and group descriptor updates for each block. */
1018 credits += blocks * 2;
1019 }
1020
1021 /* We may need to clone the existing xattr block in which case we need
1022 * to increment ref counts for existing ea_inodes referenced by it.
1023 */
1024 if (block_bh) {
1025 struct ext4_xattr_entry *entry = BFIRST(block_bh);
1026
1027 for (; !IS_LAST_ENTRY(entry); entry = EXT4_XATTR_NEXT(entry))
1028 if (entry->e_value_inum)
1029 /* Ref count update on ea_inode. */
1030 credits += 1;
1031 }
1032 return credits;
1033 }
1034
ext4_xattr_inode_update_ref(handle_t * handle,struct inode * ea_inode,int ref_change)1035 static int ext4_xattr_inode_update_ref(handle_t *handle, struct inode *ea_inode,
1036 int ref_change)
1037 {
1038 struct ext4_iloc iloc;
1039 s64 ref_count;
1040 int ret;
1041
1042 inode_lock_nested(ea_inode, I_MUTEX_XATTR);
1043
1044 ret = ext4_reserve_inode_write(handle, ea_inode, &iloc);
1045 if (ret)
1046 goto out;
1047
1048 ref_count = ext4_xattr_inode_get_ref(ea_inode);
1049 ref_count += ref_change;
1050 ext4_xattr_inode_set_ref(ea_inode, ref_count);
1051
1052 if (ref_change > 0) {
1053 WARN_ONCE(ref_count <= 0, "EA inode %lu ref_count=%lld",
1054 ea_inode->i_ino, ref_count);
1055
1056 if (ref_count == 1) {
1057 WARN_ONCE(ea_inode->i_nlink, "EA inode %lu i_nlink=%u",
1058 ea_inode->i_ino, ea_inode->i_nlink);
1059
1060 set_nlink(ea_inode, 1);
1061 ext4_orphan_del(handle, ea_inode);
1062 }
1063 } else {
1064 WARN_ONCE(ref_count < 0, "EA inode %lu ref_count=%lld",
1065 ea_inode->i_ino, ref_count);
1066
1067 if (ref_count == 0) {
1068 WARN_ONCE(ea_inode->i_nlink != 1,
1069 "EA inode %lu i_nlink=%u",
1070 ea_inode->i_ino, ea_inode->i_nlink);
1071
1072 clear_nlink(ea_inode);
1073 ext4_orphan_add(handle, ea_inode);
1074 }
1075 }
1076
1077 ret = ext4_mark_iloc_dirty(handle, ea_inode, &iloc);
1078 if (ret)
1079 ext4_warning_inode(ea_inode,
1080 "ext4_mark_iloc_dirty() failed ret=%d", ret);
1081 out:
1082 inode_unlock(ea_inode);
1083 return ret;
1084 }
1085
ext4_xattr_inode_inc_ref(handle_t * handle,struct inode * ea_inode)1086 static int ext4_xattr_inode_inc_ref(handle_t *handle, struct inode *ea_inode)
1087 {
1088 return ext4_xattr_inode_update_ref(handle, ea_inode, 1);
1089 }
1090
ext4_xattr_inode_dec_ref(handle_t * handle,struct inode * ea_inode)1091 static int ext4_xattr_inode_dec_ref(handle_t *handle, struct inode *ea_inode)
1092 {
1093 return ext4_xattr_inode_update_ref(handle, ea_inode, -1);
1094 }
1095
ext4_xattr_inode_inc_ref_all(handle_t * handle,struct inode * parent,struct ext4_xattr_entry * first)1096 static int ext4_xattr_inode_inc_ref_all(handle_t *handle, struct inode *parent,
1097 struct ext4_xattr_entry *first)
1098 {
1099 struct inode *ea_inode;
1100 struct ext4_xattr_entry *entry;
1101 struct ext4_xattr_entry *failed_entry;
1102 unsigned int ea_ino;
1103 int err, saved_err;
1104
1105 for (entry = first; !IS_LAST_ENTRY(entry);
1106 entry = EXT4_XATTR_NEXT(entry)) {
1107 if (!entry->e_value_inum)
1108 continue;
1109 ea_ino = le32_to_cpu(entry->e_value_inum);
1110 err = ext4_xattr_inode_iget(parent, ea_ino,
1111 le32_to_cpu(entry->e_hash),
1112 &ea_inode);
1113 if (err)
1114 goto cleanup;
1115 err = ext4_xattr_inode_inc_ref(handle, ea_inode);
1116 if (err) {
1117 ext4_warning_inode(ea_inode, "inc ref error %d", err);
1118 iput(ea_inode);
1119 goto cleanup;
1120 }
1121 iput(ea_inode);
1122 }
1123 return 0;
1124
1125 cleanup:
1126 saved_err = err;
1127 failed_entry = entry;
1128
1129 for (entry = first; entry != failed_entry;
1130 entry = EXT4_XATTR_NEXT(entry)) {
1131 if (!entry->e_value_inum)
1132 continue;
1133 ea_ino = le32_to_cpu(entry->e_value_inum);
1134 err = ext4_xattr_inode_iget(parent, ea_ino,
1135 le32_to_cpu(entry->e_hash),
1136 &ea_inode);
1137 if (err) {
1138 ext4_warning(parent->i_sb,
1139 "cleanup ea_ino %u iget error %d", ea_ino,
1140 err);
1141 continue;
1142 }
1143 err = ext4_xattr_inode_dec_ref(handle, ea_inode);
1144 if (err)
1145 ext4_warning_inode(ea_inode, "cleanup dec ref error %d",
1146 err);
1147 iput(ea_inode);
1148 }
1149 return saved_err;
1150 }
1151
ext4_xattr_restart_fn(handle_t * handle,struct inode * inode,struct buffer_head * bh,bool block_csum,bool dirty)1152 static int ext4_xattr_restart_fn(handle_t *handle, struct inode *inode,
1153 struct buffer_head *bh, bool block_csum, bool dirty)
1154 {
1155 int error;
1156
1157 if (bh && dirty) {
1158 if (block_csum)
1159 ext4_xattr_block_csum_set(inode, bh);
1160 error = ext4_handle_dirty_metadata(handle, NULL, bh);
1161 if (error) {
1162 ext4_warning(inode->i_sb, "Handle metadata (error %d)",
1163 error);
1164 return error;
1165 }
1166 }
1167 return 0;
1168 }
1169
1170 static void
ext4_xattr_inode_dec_ref_all(handle_t * handle,struct inode * parent,struct buffer_head * bh,struct ext4_xattr_entry * first,bool block_csum,struct ext4_xattr_inode_array ** ea_inode_array,int extra_credits,bool skip_quota)1171 ext4_xattr_inode_dec_ref_all(handle_t *handle, struct inode *parent,
1172 struct buffer_head *bh,
1173 struct ext4_xattr_entry *first, bool block_csum,
1174 struct ext4_xattr_inode_array **ea_inode_array,
1175 int extra_credits, bool skip_quota)
1176 {
1177 struct inode *ea_inode;
1178 struct ext4_xattr_entry *entry;
1179 struct ext4_iloc iloc;
1180 bool dirty = false;
1181 unsigned int ea_ino;
1182 int err;
1183 int credits;
1184 void *end;
1185
1186 if (block_csum)
1187 end = (void *)bh->b_data + bh->b_size;
1188 else {
1189 ext4_get_inode_loc(parent, &iloc);
1190 end = (void *)ext4_raw_inode(&iloc) + EXT4_SB(parent->i_sb)->s_inode_size;
1191 }
1192
1193 /* One credit for dec ref on ea_inode, one for orphan list addition, */
1194 credits = 2 + extra_credits;
1195
1196 for (entry = first; (void *)entry < end && !IS_LAST_ENTRY(entry);
1197 entry = EXT4_XATTR_NEXT(entry)) {
1198 if (!entry->e_value_inum)
1199 continue;
1200 ea_ino = le32_to_cpu(entry->e_value_inum);
1201 err = ext4_xattr_inode_iget(parent, ea_ino,
1202 le32_to_cpu(entry->e_hash),
1203 &ea_inode);
1204 if (err)
1205 continue;
1206
1207 err = ext4_expand_inode_array(ea_inode_array, ea_inode);
1208 if (err) {
1209 ext4_warning_inode(ea_inode,
1210 "Expand inode array err=%d", err);
1211 iput(ea_inode);
1212 continue;
1213 }
1214
1215 err = ext4_journal_ensure_credits_fn(handle, credits, credits,
1216 ext4_free_metadata_revoke_credits(parent->i_sb, 1),
1217 ext4_xattr_restart_fn(handle, parent, bh, block_csum,
1218 dirty));
1219 if (err < 0) {
1220 ext4_warning_inode(ea_inode, "Ensure credits err=%d",
1221 err);
1222 continue;
1223 }
1224 if (err > 0) {
1225 err = ext4_journal_get_write_access(handle,
1226 parent->i_sb, bh, EXT4_JTR_NONE);
1227 if (err) {
1228 ext4_warning_inode(ea_inode,
1229 "Re-get write access err=%d",
1230 err);
1231 continue;
1232 }
1233 }
1234
1235 err = ext4_xattr_inode_dec_ref(handle, ea_inode);
1236 if (err) {
1237 ext4_warning_inode(ea_inode, "ea_inode dec ref err=%d",
1238 err);
1239 continue;
1240 }
1241
1242 if (!skip_quota)
1243 ext4_xattr_inode_free_quota(parent, ea_inode,
1244 le32_to_cpu(entry->e_value_size));
1245
1246 /*
1247 * Forget about ea_inode within the same transaction that
1248 * decrements the ref count. This avoids duplicate decrements in
1249 * case the rest of the work spills over to subsequent
1250 * transactions.
1251 */
1252 entry->e_value_inum = 0;
1253 entry->e_value_size = 0;
1254
1255 dirty = true;
1256 }
1257
1258 if (dirty) {
1259 /*
1260 * Note that we are deliberately skipping csum calculation for
1261 * the final update because we do not expect any journal
1262 * restarts until xattr block is freed.
1263 */
1264
1265 err = ext4_handle_dirty_metadata(handle, NULL, bh);
1266 if (err)
1267 ext4_warning_inode(parent,
1268 "handle dirty metadata err=%d", err);
1269 }
1270 }
1271
1272 /*
1273 * Release the xattr block BH: If the reference count is > 1, decrement it;
1274 * otherwise free the block.
1275 */
1276 static void
ext4_xattr_release_block(handle_t * handle,struct inode * inode,struct buffer_head * bh,struct ext4_xattr_inode_array ** ea_inode_array,int extra_credits)1277 ext4_xattr_release_block(handle_t *handle, struct inode *inode,
1278 struct buffer_head *bh,
1279 struct ext4_xattr_inode_array **ea_inode_array,
1280 int extra_credits)
1281 {
1282 struct mb_cache *ea_block_cache = EA_BLOCK_CACHE(inode);
1283 u32 hash, ref;
1284 int error = 0;
1285
1286 BUFFER_TRACE(bh, "get_write_access");
1287 error = ext4_journal_get_write_access(handle, inode->i_sb, bh,
1288 EXT4_JTR_NONE);
1289 if (error)
1290 goto out;
1291
1292 retry_ref:
1293 lock_buffer(bh);
1294 hash = le32_to_cpu(BHDR(bh)->h_hash);
1295 ref = le32_to_cpu(BHDR(bh)->h_refcount);
1296 if (ref == 1) {
1297 ea_bdebug(bh, "refcount now=0; freeing");
1298 /*
1299 * This must happen under buffer lock for
1300 * ext4_xattr_block_set() to reliably detect freed block
1301 */
1302 if (ea_block_cache) {
1303 struct mb_cache_entry *oe;
1304
1305 oe = mb_cache_entry_delete_or_get(ea_block_cache, hash,
1306 bh->b_blocknr);
1307 if (oe) {
1308 unlock_buffer(bh);
1309 mb_cache_entry_wait_unused(oe);
1310 mb_cache_entry_put(ea_block_cache, oe);
1311 goto retry_ref;
1312 }
1313 }
1314 get_bh(bh);
1315 unlock_buffer(bh);
1316
1317 if (ext4_has_feature_ea_inode(inode->i_sb))
1318 ext4_xattr_inode_dec_ref_all(handle, inode, bh,
1319 BFIRST(bh),
1320 true /* block_csum */,
1321 ea_inode_array,
1322 extra_credits,
1323 true /* skip_quota */);
1324 ext4_free_blocks(handle, inode, bh, 0, 1,
1325 EXT4_FREE_BLOCKS_METADATA |
1326 EXT4_FREE_BLOCKS_FORGET);
1327 } else {
1328 ref--;
1329 BHDR(bh)->h_refcount = cpu_to_le32(ref);
1330 if (ref == EXT4_XATTR_REFCOUNT_MAX - 1) {
1331 struct mb_cache_entry *ce;
1332
1333 if (ea_block_cache) {
1334 ce = mb_cache_entry_get(ea_block_cache, hash,
1335 bh->b_blocknr);
1336 if (ce) {
1337 set_bit(MBE_REUSABLE_B, &ce->e_flags);
1338 mb_cache_entry_put(ea_block_cache, ce);
1339 }
1340 }
1341 }
1342
1343 ext4_xattr_block_csum_set(inode, bh);
1344 /*
1345 * Beware of this ugliness: Releasing of xattr block references
1346 * from different inodes can race and so we have to protect
1347 * from a race where someone else frees the block (and releases
1348 * its journal_head) before we are done dirtying the buffer. In
1349 * nojournal mode this race is harmless and we actually cannot
1350 * call ext4_handle_dirty_metadata() with locked buffer as
1351 * that function can call sync_dirty_buffer() so for that case
1352 * we handle the dirtying after unlocking the buffer.
1353 */
1354 if (ext4_handle_valid(handle))
1355 error = ext4_handle_dirty_metadata(handle, inode, bh);
1356 unlock_buffer(bh);
1357 if (!ext4_handle_valid(handle))
1358 error = ext4_handle_dirty_metadata(handle, inode, bh);
1359 if (IS_SYNC(inode))
1360 ext4_handle_sync(handle);
1361 dquot_free_block(inode, EXT4_C2B(EXT4_SB(inode->i_sb), 1));
1362 ea_bdebug(bh, "refcount now=%d; releasing",
1363 le32_to_cpu(BHDR(bh)->h_refcount));
1364 }
1365 out:
1366 ext4_std_error(inode->i_sb, error);
1367 return;
1368 }
1369
1370 /*
1371 * Find the available free space for EAs. This also returns the total number of
1372 * bytes used by EA entries.
1373 */
ext4_xattr_free_space(struct ext4_xattr_entry * last,size_t * min_offs,void * base,int * total)1374 static size_t ext4_xattr_free_space(struct ext4_xattr_entry *last,
1375 size_t *min_offs, void *base, int *total)
1376 {
1377 for (; !IS_LAST_ENTRY(last); last = EXT4_XATTR_NEXT(last)) {
1378 if (!last->e_value_inum && last->e_value_size) {
1379 size_t offs = le16_to_cpu(last->e_value_offs);
1380 if (offs < *min_offs)
1381 *min_offs = offs;
1382 }
1383 if (total)
1384 *total += EXT4_XATTR_LEN(last->e_name_len);
1385 }
1386 return (*min_offs - ((void *)last - base) - sizeof(__u32));
1387 }
1388
1389 /*
1390 * Write the value of the EA in an inode.
1391 */
ext4_xattr_inode_write(handle_t * handle,struct inode * ea_inode,const void * buf,int bufsize)1392 static int ext4_xattr_inode_write(handle_t *handle, struct inode *ea_inode,
1393 const void *buf, int bufsize)
1394 {
1395 struct buffer_head *bh = NULL;
1396 unsigned long block = 0;
1397 int blocksize = ea_inode->i_sb->s_blocksize;
1398 int max_blocks = (bufsize + blocksize - 1) >> ea_inode->i_blkbits;
1399 int csize, wsize = 0;
1400 int ret = 0, ret2 = 0;
1401 int retries = 0;
1402
1403 retry:
1404 while (ret >= 0 && ret < max_blocks) {
1405 struct ext4_map_blocks map;
1406 map.m_lblk = block += ret;
1407 map.m_len = max_blocks -= ret;
1408
1409 ret = ext4_map_blocks(handle, ea_inode, &map,
1410 EXT4_GET_BLOCKS_CREATE);
1411 if (ret <= 0) {
1412 ext4_mark_inode_dirty(handle, ea_inode);
1413 if (ret == -ENOSPC &&
1414 ext4_should_retry_alloc(ea_inode->i_sb, &retries)) {
1415 ret = 0;
1416 goto retry;
1417 }
1418 break;
1419 }
1420 }
1421
1422 if (ret < 0)
1423 return ret;
1424
1425 block = 0;
1426 while (wsize < bufsize) {
1427 brelse(bh);
1428 csize = (bufsize - wsize) > blocksize ? blocksize :
1429 bufsize - wsize;
1430 bh = ext4_getblk(handle, ea_inode, block, 0);
1431 if (IS_ERR(bh))
1432 return PTR_ERR(bh);
1433 if (!bh) {
1434 WARN_ON_ONCE(1);
1435 EXT4_ERROR_INODE(ea_inode,
1436 "ext4_getblk() return bh = NULL");
1437 return -EFSCORRUPTED;
1438 }
1439 ret = ext4_journal_get_write_access(handle, ea_inode->i_sb, bh,
1440 EXT4_JTR_NONE);
1441 if (ret)
1442 goto out;
1443
1444 memcpy(bh->b_data, buf, csize);
1445 /*
1446 * Zero out block tail to avoid writing uninitialized memory
1447 * to disk.
1448 */
1449 if (csize < blocksize)
1450 memset(bh->b_data + csize, 0, blocksize - csize);
1451 set_buffer_uptodate(bh);
1452 ext4_handle_dirty_metadata(handle, ea_inode, bh);
1453
1454 buf += csize;
1455 wsize += csize;
1456 block += 1;
1457 }
1458
1459 inode_lock(ea_inode);
1460 i_size_write(ea_inode, wsize);
1461 ext4_update_i_disksize(ea_inode, wsize);
1462 inode_unlock(ea_inode);
1463
1464 ret2 = ext4_mark_inode_dirty(handle, ea_inode);
1465 if (unlikely(ret2 && !ret))
1466 ret = ret2;
1467
1468 out:
1469 brelse(bh);
1470
1471 return ret;
1472 }
1473
1474 /*
1475 * Create an inode to store the value of a large EA.
1476 */
ext4_xattr_inode_create(handle_t * handle,struct inode * inode,u32 hash)1477 static struct inode *ext4_xattr_inode_create(handle_t *handle,
1478 struct inode *inode, u32 hash)
1479 {
1480 struct inode *ea_inode = NULL;
1481 uid_t owner[2] = { i_uid_read(inode), i_gid_read(inode) };
1482 int err;
1483
1484 if (inode->i_sb->s_root == NULL) {
1485 ext4_warning(inode->i_sb,
1486 "refuse to create EA inode when umounting");
1487 WARN_ON(1);
1488 return ERR_PTR(-EINVAL);
1489 }
1490
1491 /*
1492 * Let the next inode be the goal, so we try and allocate the EA inode
1493 * in the same group, or nearby one.
1494 */
1495 ea_inode = ext4_new_inode(handle, inode->i_sb->s_root->d_inode,
1496 S_IFREG | 0600, NULL, inode->i_ino + 1, owner,
1497 EXT4_EA_INODE_FL);
1498 if (!IS_ERR(ea_inode)) {
1499 ea_inode->i_op = &ext4_file_inode_operations;
1500 ea_inode->i_fop = &ext4_file_operations;
1501 ext4_set_aops(ea_inode);
1502 ext4_xattr_inode_set_class(ea_inode);
1503 unlock_new_inode(ea_inode);
1504 ext4_xattr_inode_set_ref(ea_inode, 1);
1505 ext4_xattr_inode_set_hash(ea_inode, hash);
1506 err = ext4_mark_inode_dirty(handle, ea_inode);
1507 if (!err)
1508 err = ext4_inode_attach_jinode(ea_inode);
1509 if (err) {
1510 if (ext4_xattr_inode_dec_ref(handle, ea_inode))
1511 ext4_warning_inode(ea_inode,
1512 "cleanup dec ref error %d", err);
1513 iput(ea_inode);
1514 return ERR_PTR(err);
1515 }
1516
1517 /*
1518 * Xattr inodes are shared therefore quota charging is performed
1519 * at a higher level.
1520 */
1521 dquot_free_inode(ea_inode);
1522 dquot_drop(ea_inode);
1523 inode_lock(ea_inode);
1524 ea_inode->i_flags |= S_NOQUOTA;
1525 inode_unlock(ea_inode);
1526 }
1527
1528 return ea_inode;
1529 }
1530
1531 static struct inode *
ext4_xattr_inode_cache_find(struct inode * inode,const void * value,size_t value_len,u32 hash)1532 ext4_xattr_inode_cache_find(struct inode *inode, const void *value,
1533 size_t value_len, u32 hash)
1534 {
1535 struct inode *ea_inode;
1536 struct mb_cache_entry *ce;
1537 struct mb_cache *ea_inode_cache = EA_INODE_CACHE(inode);
1538 void *ea_data;
1539
1540 if (!ea_inode_cache)
1541 return NULL;
1542
1543 ce = mb_cache_entry_find_first(ea_inode_cache, hash);
1544 if (!ce)
1545 return NULL;
1546
1547 WARN_ON_ONCE(ext4_handle_valid(journal_current_handle()) &&
1548 !(current->flags & PF_MEMALLOC_NOFS));
1549
1550 ea_data = kvmalloc(value_len, GFP_KERNEL);
1551 if (!ea_data) {
1552 mb_cache_entry_put(ea_inode_cache, ce);
1553 return NULL;
1554 }
1555
1556 while (ce) {
1557 ea_inode = ext4_iget(inode->i_sb, ce->e_value,
1558 EXT4_IGET_EA_INODE);
1559 if (IS_ERR(ea_inode))
1560 goto next_entry;
1561 ext4_xattr_inode_set_class(ea_inode);
1562 if (i_size_read(ea_inode) == value_len &&
1563 !ext4_xattr_inode_read(ea_inode, ea_data, value_len) &&
1564 !ext4_xattr_inode_verify_hashes(ea_inode, NULL, ea_data,
1565 value_len) &&
1566 !memcmp(value, ea_data, value_len)) {
1567 mb_cache_entry_touch(ea_inode_cache, ce);
1568 mb_cache_entry_put(ea_inode_cache, ce);
1569 kvfree(ea_data);
1570 return ea_inode;
1571 }
1572 iput(ea_inode);
1573 next_entry:
1574 ce = mb_cache_entry_find_next(ea_inode_cache, ce);
1575 }
1576 kvfree(ea_data);
1577 return NULL;
1578 }
1579
1580 /*
1581 * Add value of the EA in an inode.
1582 */
ext4_xattr_inode_lookup_create(handle_t * handle,struct inode * inode,const void * value,size_t value_len)1583 static struct inode *ext4_xattr_inode_lookup_create(handle_t *handle,
1584 struct inode *inode, const void *value, size_t value_len)
1585 {
1586 struct inode *ea_inode;
1587 u32 hash;
1588 int err;
1589
1590 /* Account inode & space to quota even if sharing... */
1591 err = ext4_xattr_inode_alloc_quota(inode, value_len);
1592 if (err)
1593 return ERR_PTR(err);
1594
1595 hash = ext4_xattr_inode_hash(EXT4_SB(inode->i_sb), value, value_len);
1596 ea_inode = ext4_xattr_inode_cache_find(inode, value, value_len, hash);
1597 if (ea_inode) {
1598 err = ext4_xattr_inode_inc_ref(handle, ea_inode);
1599 if (err)
1600 goto out_err;
1601 return ea_inode;
1602 }
1603
1604 /* Create an inode for the EA value */
1605 ea_inode = ext4_xattr_inode_create(handle, inode, hash);
1606 if (IS_ERR(ea_inode)) {
1607 ext4_xattr_inode_free_quota(inode, NULL, value_len);
1608 return ea_inode;
1609 }
1610
1611 err = ext4_xattr_inode_write(handle, ea_inode, value, value_len);
1612 if (err) {
1613 if (ext4_xattr_inode_dec_ref(handle, ea_inode))
1614 ext4_warning_inode(ea_inode, "cleanup dec ref error %d", err);
1615 goto out_err;
1616 }
1617
1618 if (EA_INODE_CACHE(inode))
1619 mb_cache_entry_create(EA_INODE_CACHE(inode), GFP_NOFS, hash,
1620 ea_inode->i_ino, true /* reusable */);
1621 return ea_inode;
1622 out_err:
1623 iput(ea_inode);
1624 ext4_xattr_inode_free_quota(inode, NULL, value_len);
1625 return ERR_PTR(err);
1626 }
1627
1628 /*
1629 * Reserve min(block_size/8, 1024) bytes for xattr entries/names if ea_inode
1630 * feature is enabled.
1631 */
1632 #define EXT4_XATTR_BLOCK_RESERVE(inode) min(i_blocksize(inode)/8, 1024U)
1633
ext4_xattr_set_entry(struct ext4_xattr_info * i,struct ext4_xattr_search * s,handle_t * handle,struct inode * inode,struct inode * new_ea_inode,bool is_block)1634 static int ext4_xattr_set_entry(struct ext4_xattr_info *i,
1635 struct ext4_xattr_search *s,
1636 handle_t *handle, struct inode *inode,
1637 struct inode *new_ea_inode,
1638 bool is_block)
1639 {
1640 struct ext4_xattr_entry *last, *next;
1641 struct ext4_xattr_entry *here = s->here;
1642 size_t min_offs = s->end - s->base, name_len = strlen(i->name);
1643 int in_inode = i->in_inode;
1644 struct inode *old_ea_inode = NULL;
1645 size_t old_size, new_size;
1646 int ret;
1647
1648 /* Space used by old and new values. */
1649 old_size = (!s->not_found && !here->e_value_inum) ?
1650 EXT4_XATTR_SIZE(le32_to_cpu(here->e_value_size)) : 0;
1651 new_size = (i->value && !in_inode) ? EXT4_XATTR_SIZE(i->value_len) : 0;
1652
1653 /*
1654 * Optimization for the simple case when old and new values have the
1655 * same padded sizes. Not applicable if external inodes are involved.
1656 */
1657 if (new_size && new_size == old_size) {
1658 size_t offs = le16_to_cpu(here->e_value_offs);
1659 void *val = s->base + offs;
1660
1661 here->e_value_size = cpu_to_le32(i->value_len);
1662 if (i->value == EXT4_ZERO_XATTR_VALUE) {
1663 memset(val, 0, new_size);
1664 } else {
1665 memcpy(val, i->value, i->value_len);
1666 /* Clear padding bytes. */
1667 memset(val + i->value_len, 0, new_size - i->value_len);
1668 }
1669 goto update_hash;
1670 }
1671
1672 /* Compute min_offs and last. */
1673 last = s->first;
1674 for (; !IS_LAST_ENTRY(last); last = next) {
1675 next = EXT4_XATTR_NEXT(last);
1676 if ((void *)next >= s->end) {
1677 EXT4_ERROR_INODE(inode, "corrupted xattr entries");
1678 ret = -EFSCORRUPTED;
1679 goto out;
1680 }
1681 if (!last->e_value_inum && last->e_value_size) {
1682 size_t offs = le16_to_cpu(last->e_value_offs);
1683 if (offs < min_offs)
1684 min_offs = offs;
1685 }
1686 }
1687
1688 /* Check whether we have enough space. */
1689 if (i->value) {
1690 size_t free;
1691
1692 free = min_offs - ((void *)last - s->base) - sizeof(__u32);
1693 if (!s->not_found)
1694 free += EXT4_XATTR_LEN(name_len) + old_size;
1695
1696 if (free < EXT4_XATTR_LEN(name_len) + new_size) {
1697 ret = -ENOSPC;
1698 goto out;
1699 }
1700
1701 /*
1702 * If storing the value in an external inode is an option,
1703 * reserve space for xattr entries/names in the external
1704 * attribute block so that a long value does not occupy the
1705 * whole space and prevent further entries being added.
1706 */
1707 if (ext4_has_feature_ea_inode(inode->i_sb) &&
1708 new_size && is_block &&
1709 (min_offs + old_size - new_size) <
1710 EXT4_XATTR_BLOCK_RESERVE(inode)) {
1711 ret = -ENOSPC;
1712 goto out;
1713 }
1714 }
1715
1716 /*
1717 * Getting access to old and new ea inodes is subject to failures.
1718 * Finish that work before doing any modifications to the xattr data.
1719 */
1720 if (!s->not_found && here->e_value_inum) {
1721 ret = ext4_xattr_inode_iget(inode,
1722 le32_to_cpu(here->e_value_inum),
1723 le32_to_cpu(here->e_hash),
1724 &old_ea_inode);
1725 if (ret) {
1726 old_ea_inode = NULL;
1727 goto out;
1728 }
1729
1730 /* We are ready to release ref count on the old_ea_inode. */
1731 ret = ext4_xattr_inode_dec_ref(handle, old_ea_inode);
1732 if (ret)
1733 goto out;
1734
1735 ext4_xattr_inode_free_quota(inode, old_ea_inode,
1736 le32_to_cpu(here->e_value_size));
1737 }
1738
1739 /* No failures allowed past this point. */
1740
1741 if (!s->not_found && here->e_value_size && !here->e_value_inum) {
1742 /* Remove the old value. */
1743 void *first_val = s->base + min_offs;
1744 size_t offs = le16_to_cpu(here->e_value_offs);
1745 void *val = s->base + offs;
1746
1747 memmove(first_val + old_size, first_val, val - first_val);
1748 memset(first_val, 0, old_size);
1749 min_offs += old_size;
1750
1751 /* Adjust all value offsets. */
1752 last = s->first;
1753 while (!IS_LAST_ENTRY(last)) {
1754 size_t o = le16_to_cpu(last->e_value_offs);
1755
1756 if (!last->e_value_inum &&
1757 last->e_value_size && o < offs)
1758 last->e_value_offs = cpu_to_le16(o + old_size);
1759 last = EXT4_XATTR_NEXT(last);
1760 }
1761 }
1762
1763 if (!i->value) {
1764 /* Remove old name. */
1765 size_t size = EXT4_XATTR_LEN(name_len);
1766
1767 last = ENTRY((void *)last - size);
1768 memmove(here, (void *)here + size,
1769 (void *)last - (void *)here + sizeof(__u32));
1770 memset(last, 0, size);
1771
1772 /*
1773 * Update i_inline_off - moved ibody region might contain
1774 * system.data attribute. Handling a failure here won't
1775 * cause other complications for setting an xattr.
1776 */
1777 if (!is_block && ext4_has_inline_data(inode)) {
1778 ret = ext4_find_inline_data_nolock(inode);
1779 if (ret) {
1780 ext4_warning_inode(inode,
1781 "unable to update i_inline_off");
1782 goto out;
1783 }
1784 }
1785 } else if (s->not_found) {
1786 /* Insert new name. */
1787 size_t size = EXT4_XATTR_LEN(name_len);
1788 size_t rest = (void *)last - (void *)here + sizeof(__u32);
1789
1790 memmove((void *)here + size, here, rest);
1791 memset(here, 0, size);
1792 here->e_name_index = i->name_index;
1793 here->e_name_len = name_len;
1794 memcpy(here->e_name, i->name, name_len);
1795 } else {
1796 /* This is an update, reset value info. */
1797 here->e_value_inum = 0;
1798 here->e_value_offs = 0;
1799 here->e_value_size = 0;
1800 }
1801
1802 if (i->value) {
1803 /* Insert new value. */
1804 if (in_inode) {
1805 here->e_value_inum = cpu_to_le32(new_ea_inode->i_ino);
1806 } else if (i->value_len) {
1807 void *val = s->base + min_offs - new_size;
1808
1809 here->e_value_offs = cpu_to_le16(min_offs - new_size);
1810 if (i->value == EXT4_ZERO_XATTR_VALUE) {
1811 memset(val, 0, new_size);
1812 } else {
1813 memcpy(val, i->value, i->value_len);
1814 /* Clear padding bytes. */
1815 memset(val + i->value_len, 0,
1816 new_size - i->value_len);
1817 }
1818 }
1819 here->e_value_size = cpu_to_le32(i->value_len);
1820 }
1821
1822 update_hash:
1823 if (i->value) {
1824 __le32 hash = 0;
1825
1826 /* Entry hash calculation. */
1827 if (in_inode) {
1828 __le32 crc32c_hash;
1829
1830 /*
1831 * Feed crc32c hash instead of the raw value for entry
1832 * hash calculation. This is to avoid walking
1833 * potentially long value buffer again.
1834 */
1835 crc32c_hash = cpu_to_le32(
1836 ext4_xattr_inode_get_hash(new_ea_inode));
1837 hash = ext4_xattr_hash_entry(here->e_name,
1838 here->e_name_len,
1839 &crc32c_hash, 1);
1840 } else if (is_block) {
1841 __le32 *value = s->base + le16_to_cpu(
1842 here->e_value_offs);
1843
1844 hash = ext4_xattr_hash_entry(here->e_name,
1845 here->e_name_len, value,
1846 new_size >> 2);
1847 }
1848 here->e_hash = hash;
1849 }
1850
1851 if (is_block)
1852 ext4_xattr_rehash((struct ext4_xattr_header *)s->base);
1853
1854 ret = 0;
1855 out:
1856 iput(old_ea_inode);
1857 return ret;
1858 }
1859
1860 struct ext4_xattr_block_find {
1861 struct ext4_xattr_search s;
1862 struct buffer_head *bh;
1863 };
1864
1865 static int
ext4_xattr_block_find(struct inode * inode,struct ext4_xattr_info * i,struct ext4_xattr_block_find * bs)1866 ext4_xattr_block_find(struct inode *inode, struct ext4_xattr_info *i,
1867 struct ext4_xattr_block_find *bs)
1868 {
1869 struct super_block *sb = inode->i_sb;
1870 int error;
1871
1872 ea_idebug(inode, "name=%d.%s, value=%p, value_len=%ld",
1873 i->name_index, i->name, i->value, (long)i->value_len);
1874
1875 if (EXT4_I(inode)->i_file_acl) {
1876 /* The inode already has an extended attribute block. */
1877 bs->bh = ext4_sb_bread(sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
1878 if (IS_ERR(bs->bh)) {
1879 error = PTR_ERR(bs->bh);
1880 bs->bh = NULL;
1881 return error;
1882 }
1883 ea_bdebug(bs->bh, "b_count=%d, refcount=%d",
1884 atomic_read(&(bs->bh->b_count)),
1885 le32_to_cpu(BHDR(bs->bh)->h_refcount));
1886 error = ext4_xattr_check_block(inode, bs->bh);
1887 if (error)
1888 return error;
1889 /* Find the named attribute. */
1890 bs->s.base = BHDR(bs->bh);
1891 bs->s.first = BFIRST(bs->bh);
1892 bs->s.end = bs->bh->b_data + bs->bh->b_size;
1893 bs->s.here = bs->s.first;
1894 error = xattr_find_entry(inode, &bs->s.here, bs->s.end,
1895 i->name_index, i->name, 1);
1896 if (error && error != -ENODATA)
1897 return error;
1898 bs->s.not_found = error;
1899 }
1900 return 0;
1901 }
1902
1903 static int
ext4_xattr_block_set(handle_t * handle,struct inode * inode,struct ext4_xattr_info * i,struct ext4_xattr_block_find * bs)1904 ext4_xattr_block_set(handle_t *handle, struct inode *inode,
1905 struct ext4_xattr_info *i,
1906 struct ext4_xattr_block_find *bs)
1907 {
1908 struct super_block *sb = inode->i_sb;
1909 struct buffer_head *new_bh = NULL;
1910 struct ext4_xattr_search s_copy = bs->s;
1911 struct ext4_xattr_search *s = &s_copy;
1912 struct mb_cache_entry *ce = NULL;
1913 int error = 0;
1914 struct mb_cache *ea_block_cache = EA_BLOCK_CACHE(inode);
1915 struct inode *ea_inode = NULL, *tmp_inode;
1916 size_t old_ea_inode_quota = 0;
1917 unsigned int ea_ino;
1918
1919 #define header(x) ((struct ext4_xattr_header *)(x))
1920
1921 /* If we need EA inode, prepare it before locking the buffer */
1922 if (i->value && i->in_inode) {
1923 WARN_ON_ONCE(!i->value_len);
1924
1925 ea_inode = ext4_xattr_inode_lookup_create(handle, inode,
1926 i->value, i->value_len);
1927 if (IS_ERR(ea_inode)) {
1928 error = PTR_ERR(ea_inode);
1929 ea_inode = NULL;
1930 goto cleanup;
1931 }
1932 }
1933
1934 if (s->base) {
1935 int offset = (char *)s->here - bs->bh->b_data;
1936
1937 BUFFER_TRACE(bs->bh, "get_write_access");
1938 error = ext4_journal_get_write_access(handle, sb, bs->bh,
1939 EXT4_JTR_NONE);
1940 if (error)
1941 goto cleanup;
1942
1943 lock_buffer(bs->bh);
1944
1945 if (header(s->base)->h_refcount == cpu_to_le32(1)) {
1946 __u32 hash = le32_to_cpu(BHDR(bs->bh)->h_hash);
1947
1948 /*
1949 * This must happen under buffer lock for
1950 * ext4_xattr_block_set() to reliably detect modified
1951 * block
1952 */
1953 if (ea_block_cache) {
1954 struct mb_cache_entry *oe;
1955
1956 oe = mb_cache_entry_delete_or_get(ea_block_cache,
1957 hash, bs->bh->b_blocknr);
1958 if (oe) {
1959 /*
1960 * Xattr block is getting reused. Leave
1961 * it alone.
1962 */
1963 mb_cache_entry_put(ea_block_cache, oe);
1964 goto clone_block;
1965 }
1966 }
1967 ea_bdebug(bs->bh, "modifying in-place");
1968 error = ext4_xattr_set_entry(i, s, handle, inode,
1969 ea_inode, true /* is_block */);
1970 ext4_xattr_block_csum_set(inode, bs->bh);
1971 unlock_buffer(bs->bh);
1972 if (error == -EFSCORRUPTED)
1973 goto bad_block;
1974 if (!error)
1975 error = ext4_handle_dirty_metadata(handle,
1976 inode,
1977 bs->bh);
1978 if (error)
1979 goto cleanup;
1980 goto inserted;
1981 }
1982 clone_block:
1983 unlock_buffer(bs->bh);
1984 ea_bdebug(bs->bh, "cloning");
1985 s->base = kmemdup(BHDR(bs->bh), bs->bh->b_size, GFP_NOFS);
1986 error = -ENOMEM;
1987 if (s->base == NULL)
1988 goto cleanup;
1989 s->first = ENTRY(header(s->base)+1);
1990 header(s->base)->h_refcount = cpu_to_le32(1);
1991 s->here = ENTRY(s->base + offset);
1992 s->end = s->base + bs->bh->b_size;
1993
1994 /*
1995 * If existing entry points to an xattr inode, we need
1996 * to prevent ext4_xattr_set_entry() from decrementing
1997 * ref count on it because the reference belongs to the
1998 * original block. In this case, make the entry look
1999 * like it has an empty value.
2000 */
2001 if (!s->not_found && s->here->e_value_inum) {
2002 ea_ino = le32_to_cpu(s->here->e_value_inum);
2003 error = ext4_xattr_inode_iget(inode, ea_ino,
2004 le32_to_cpu(s->here->e_hash),
2005 &tmp_inode);
2006 if (error)
2007 goto cleanup;
2008
2009 if (!ext4_test_inode_state(tmp_inode,
2010 EXT4_STATE_LUSTRE_EA_INODE)) {
2011 /*
2012 * Defer quota free call for previous
2013 * inode until success is guaranteed.
2014 */
2015 old_ea_inode_quota = le32_to_cpu(
2016 s->here->e_value_size);
2017 }
2018 iput(tmp_inode);
2019
2020 s->here->e_value_inum = 0;
2021 s->here->e_value_size = 0;
2022 }
2023 } else {
2024 /* Allocate a buffer where we construct the new block. */
2025 s->base = kzalloc(sb->s_blocksize, GFP_NOFS);
2026 error = -ENOMEM;
2027 if (s->base == NULL)
2028 goto cleanup;
2029 header(s->base)->h_magic = cpu_to_le32(EXT4_XATTR_MAGIC);
2030 header(s->base)->h_blocks = cpu_to_le32(1);
2031 header(s->base)->h_refcount = cpu_to_le32(1);
2032 s->first = ENTRY(header(s->base)+1);
2033 s->here = ENTRY(header(s->base)+1);
2034 s->end = s->base + sb->s_blocksize;
2035 }
2036
2037 error = ext4_xattr_set_entry(i, s, handle, inode, ea_inode,
2038 true /* is_block */);
2039 if (error == -EFSCORRUPTED)
2040 goto bad_block;
2041 if (error)
2042 goto cleanup;
2043
2044 inserted:
2045 if (!IS_LAST_ENTRY(s->first)) {
2046 new_bh = ext4_xattr_block_cache_find(inode, header(s->base),
2047 &ce);
2048 if (new_bh) {
2049 /* We found an identical block in the cache. */
2050 if (new_bh == bs->bh)
2051 ea_bdebug(new_bh, "keeping");
2052 else {
2053 u32 ref;
2054
2055 #ifdef EXT4_XATTR_DEBUG
2056 WARN_ON_ONCE(dquot_initialize_needed(inode));
2057 #endif
2058 /* The old block is released after updating
2059 the inode. */
2060 error = dquot_alloc_block(inode,
2061 EXT4_C2B(EXT4_SB(sb), 1));
2062 if (error)
2063 goto cleanup;
2064 BUFFER_TRACE(new_bh, "get_write_access");
2065 error = ext4_journal_get_write_access(
2066 handle, sb, new_bh,
2067 EXT4_JTR_NONE);
2068 if (error)
2069 goto cleanup_dquot;
2070 lock_buffer(new_bh);
2071 /*
2072 * We have to be careful about races with
2073 * adding references to xattr block. Once we
2074 * hold buffer lock xattr block's state is
2075 * stable so we can check the additional
2076 * reference fits.
2077 */
2078 ref = le32_to_cpu(BHDR(new_bh)->h_refcount) + 1;
2079 if (ref > EXT4_XATTR_REFCOUNT_MAX) {
2080 /*
2081 * Undo everything and check mbcache
2082 * again.
2083 */
2084 unlock_buffer(new_bh);
2085 dquot_free_block(inode,
2086 EXT4_C2B(EXT4_SB(sb),
2087 1));
2088 brelse(new_bh);
2089 mb_cache_entry_put(ea_block_cache, ce);
2090 ce = NULL;
2091 new_bh = NULL;
2092 goto inserted;
2093 }
2094 BHDR(new_bh)->h_refcount = cpu_to_le32(ref);
2095 if (ref == EXT4_XATTR_REFCOUNT_MAX)
2096 clear_bit(MBE_REUSABLE_B, &ce->e_flags);
2097 ea_bdebug(new_bh, "reusing; refcount now=%d",
2098 ref);
2099 ext4_xattr_block_csum_set(inode, new_bh);
2100 unlock_buffer(new_bh);
2101 error = ext4_handle_dirty_metadata(handle,
2102 inode,
2103 new_bh);
2104 if (error)
2105 goto cleanup_dquot;
2106 }
2107 mb_cache_entry_touch(ea_block_cache, ce);
2108 mb_cache_entry_put(ea_block_cache, ce);
2109 ce = NULL;
2110 } else if (bs->bh && s->base == bs->bh->b_data) {
2111 /* We were modifying this block in-place. */
2112 ea_bdebug(bs->bh, "keeping this block");
2113 ext4_xattr_block_cache_insert(ea_block_cache, bs->bh);
2114 new_bh = bs->bh;
2115 get_bh(new_bh);
2116 } else {
2117 /* We need to allocate a new block */
2118 ext4_fsblk_t goal, block;
2119
2120 #ifdef EXT4_XATTR_DEBUG
2121 WARN_ON_ONCE(dquot_initialize_needed(inode));
2122 #endif
2123 goal = ext4_group_first_block_no(sb,
2124 EXT4_I(inode)->i_block_group);
2125 block = ext4_new_meta_blocks(handle, inode, goal, 0,
2126 NULL, &error);
2127 if (error)
2128 goto cleanup;
2129
2130 ea_idebug(inode, "creating block %llu",
2131 (unsigned long long)block);
2132
2133 new_bh = sb_getblk(sb, block);
2134 if (unlikely(!new_bh)) {
2135 error = -ENOMEM;
2136 getblk_failed:
2137 ext4_free_blocks(handle, inode, NULL, block, 1,
2138 EXT4_FREE_BLOCKS_METADATA);
2139 goto cleanup;
2140 }
2141 error = ext4_xattr_inode_inc_ref_all(handle, inode,
2142 ENTRY(header(s->base)+1));
2143 if (error)
2144 goto getblk_failed;
2145 if (ea_inode) {
2146 /* Drop the extra ref on ea_inode. */
2147 error = ext4_xattr_inode_dec_ref(handle,
2148 ea_inode);
2149 if (error)
2150 ext4_warning_inode(ea_inode,
2151 "dec ref error=%d",
2152 error);
2153 iput(ea_inode);
2154 ea_inode = NULL;
2155 }
2156
2157 lock_buffer(new_bh);
2158 error = ext4_journal_get_create_access(handle, sb,
2159 new_bh, EXT4_JTR_NONE);
2160 if (error) {
2161 unlock_buffer(new_bh);
2162 error = -EIO;
2163 goto getblk_failed;
2164 }
2165 memcpy(new_bh->b_data, s->base, new_bh->b_size);
2166 ext4_xattr_block_csum_set(inode, new_bh);
2167 set_buffer_uptodate(new_bh);
2168 unlock_buffer(new_bh);
2169 ext4_xattr_block_cache_insert(ea_block_cache, new_bh);
2170 error = ext4_handle_dirty_metadata(handle, inode,
2171 new_bh);
2172 if (error)
2173 goto cleanup;
2174 }
2175 }
2176
2177 if (old_ea_inode_quota)
2178 ext4_xattr_inode_free_quota(inode, NULL, old_ea_inode_quota);
2179
2180 /* Update the inode. */
2181 EXT4_I(inode)->i_file_acl = new_bh ? new_bh->b_blocknr : 0;
2182
2183 /* Drop the previous xattr block. */
2184 if (bs->bh && bs->bh != new_bh) {
2185 struct ext4_xattr_inode_array *ea_inode_array = NULL;
2186
2187 ext4_xattr_release_block(handle, inode, bs->bh,
2188 &ea_inode_array,
2189 0 /* extra_credits */);
2190 ext4_xattr_inode_array_free(ea_inode_array);
2191 }
2192 error = 0;
2193
2194 cleanup:
2195 if (ea_inode) {
2196 if (error) {
2197 int error2;
2198
2199 error2 = ext4_xattr_inode_dec_ref(handle, ea_inode);
2200 if (error2)
2201 ext4_warning_inode(ea_inode, "dec ref error=%d",
2202 error2);
2203 ext4_xattr_inode_free_quota(inode, ea_inode,
2204 i_size_read(ea_inode));
2205 }
2206 iput(ea_inode);
2207 }
2208 if (ce)
2209 mb_cache_entry_put(ea_block_cache, ce);
2210 brelse(new_bh);
2211 if (!(bs->bh && s->base == bs->bh->b_data))
2212 kfree(s->base);
2213
2214 return error;
2215
2216 cleanup_dquot:
2217 dquot_free_block(inode, EXT4_C2B(EXT4_SB(sb), 1));
2218 goto cleanup;
2219
2220 bad_block:
2221 EXT4_ERROR_INODE(inode, "bad block %llu",
2222 EXT4_I(inode)->i_file_acl);
2223 goto cleanup;
2224
2225 #undef header
2226 }
2227
ext4_xattr_ibody_find(struct inode * inode,struct ext4_xattr_info * i,struct ext4_xattr_ibody_find * is)2228 int ext4_xattr_ibody_find(struct inode *inode, struct ext4_xattr_info *i,
2229 struct ext4_xattr_ibody_find *is)
2230 {
2231 struct ext4_xattr_ibody_header *header;
2232 struct ext4_inode *raw_inode;
2233 int error;
2234
2235 if (!EXT4_INODE_HAS_XATTR_SPACE(inode))
2236 return 0;
2237
2238 raw_inode = ext4_raw_inode(&is->iloc);
2239 header = IHDR(inode, raw_inode);
2240 is->s.base = is->s.first = IFIRST(header);
2241 is->s.here = is->s.first;
2242 is->s.end = (void *)raw_inode + EXT4_SB(inode->i_sb)->s_inode_size;
2243 if (ext4_test_inode_state(inode, EXT4_STATE_XATTR)) {
2244 error = xattr_check_inode(inode, header, is->s.end);
2245 if (error)
2246 return error;
2247 /* Find the named attribute. */
2248 error = xattr_find_entry(inode, &is->s.here, is->s.end,
2249 i->name_index, i->name, 0);
2250 if (error && error != -ENODATA)
2251 return error;
2252 is->s.not_found = error;
2253 }
2254 return 0;
2255 }
2256
ext4_xattr_ibody_set(handle_t * handle,struct inode * inode,struct ext4_xattr_info * i,struct ext4_xattr_ibody_find * is)2257 int ext4_xattr_ibody_set(handle_t *handle, struct inode *inode,
2258 struct ext4_xattr_info *i,
2259 struct ext4_xattr_ibody_find *is)
2260 {
2261 struct ext4_xattr_ibody_header *header;
2262 struct ext4_xattr_search *s = &is->s;
2263 struct inode *ea_inode = NULL;
2264 int error;
2265
2266 if (!EXT4_INODE_HAS_XATTR_SPACE(inode))
2267 return -ENOSPC;
2268
2269 /* If we need EA inode, prepare it before locking the buffer */
2270 if (i->value && i->in_inode) {
2271 WARN_ON_ONCE(!i->value_len);
2272
2273 ea_inode = ext4_xattr_inode_lookup_create(handle, inode,
2274 i->value, i->value_len);
2275 if (IS_ERR(ea_inode))
2276 return PTR_ERR(ea_inode);
2277 }
2278 error = ext4_xattr_set_entry(i, s, handle, inode, ea_inode,
2279 false /* is_block */);
2280 if (error) {
2281 if (ea_inode) {
2282 int error2;
2283
2284 error2 = ext4_xattr_inode_dec_ref(handle, ea_inode);
2285 if (error2)
2286 ext4_warning_inode(ea_inode, "dec ref error=%d",
2287 error2);
2288
2289 ext4_xattr_inode_free_quota(inode, ea_inode,
2290 i_size_read(ea_inode));
2291 iput(ea_inode);
2292 }
2293 return error;
2294 }
2295 header = IHDR(inode, ext4_raw_inode(&is->iloc));
2296 if (!IS_LAST_ENTRY(s->first)) {
2297 header->h_magic = cpu_to_le32(EXT4_XATTR_MAGIC);
2298 ext4_set_inode_state(inode, EXT4_STATE_XATTR);
2299 } else {
2300 header->h_magic = cpu_to_le32(0);
2301 ext4_clear_inode_state(inode, EXT4_STATE_XATTR);
2302 }
2303 iput(ea_inode);
2304 return 0;
2305 }
2306
ext4_xattr_value_same(struct ext4_xattr_search * s,struct ext4_xattr_info * i)2307 static int ext4_xattr_value_same(struct ext4_xattr_search *s,
2308 struct ext4_xattr_info *i)
2309 {
2310 void *value;
2311
2312 /* When e_value_inum is set the value is stored externally. */
2313 if (s->here->e_value_inum)
2314 return 0;
2315 if (le32_to_cpu(s->here->e_value_size) != i->value_len)
2316 return 0;
2317 value = ((void *)s->base) + le16_to_cpu(s->here->e_value_offs);
2318 return !memcmp(value, i->value, i->value_len);
2319 }
2320
ext4_xattr_get_block(struct inode * inode)2321 static struct buffer_head *ext4_xattr_get_block(struct inode *inode)
2322 {
2323 struct buffer_head *bh;
2324 int error;
2325
2326 if (!EXT4_I(inode)->i_file_acl)
2327 return NULL;
2328 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
2329 if (IS_ERR(bh))
2330 return bh;
2331 error = ext4_xattr_check_block(inode, bh);
2332 if (error) {
2333 brelse(bh);
2334 return ERR_PTR(error);
2335 }
2336 return bh;
2337 }
2338
2339 /*
2340 * ext4_xattr_set_handle()
2341 *
2342 * Create, replace or remove an extended attribute for this inode. Value
2343 * is NULL to remove an existing extended attribute, and non-NULL to
2344 * either replace an existing extended attribute, or create a new extended
2345 * attribute. The flags XATTR_REPLACE and XATTR_CREATE
2346 * specify that an extended attribute must exist and must not exist
2347 * previous to the call, respectively.
2348 *
2349 * Returns 0, or a negative error number on failure.
2350 */
2351 int
ext4_xattr_set_handle(handle_t * handle,struct inode * inode,int name_index,const char * name,const void * value,size_t value_len,int flags)2352 ext4_xattr_set_handle(handle_t *handle, struct inode *inode, int name_index,
2353 const char *name, const void *value, size_t value_len,
2354 int flags)
2355 {
2356 struct ext4_xattr_info i = {
2357 .name_index = name_index,
2358 .name = name,
2359 .value = value,
2360 .value_len = value_len,
2361 .in_inode = 0,
2362 };
2363 struct ext4_xattr_ibody_find is = {
2364 .s = { .not_found = -ENODATA, },
2365 };
2366 struct ext4_xattr_block_find bs = {
2367 .s = { .not_found = -ENODATA, },
2368 };
2369 int no_expand;
2370 int error;
2371
2372 if (!name)
2373 return -EINVAL;
2374 if (strlen(name) > 255)
2375 return -ERANGE;
2376
2377 ext4_write_lock_xattr(inode, &no_expand);
2378
2379 /* Check journal credits under write lock. */
2380 if (ext4_handle_valid(handle)) {
2381 struct buffer_head *bh;
2382 int credits;
2383
2384 bh = ext4_xattr_get_block(inode);
2385 if (IS_ERR(bh)) {
2386 error = PTR_ERR(bh);
2387 goto cleanup;
2388 }
2389
2390 credits = __ext4_xattr_set_credits(inode->i_sb, inode, bh,
2391 value_len,
2392 flags & XATTR_CREATE);
2393 brelse(bh);
2394
2395 if (jbd2_handle_buffer_credits(handle) < credits) {
2396 error = -ENOSPC;
2397 goto cleanup;
2398 }
2399 WARN_ON_ONCE(!(current->flags & PF_MEMALLOC_NOFS));
2400 }
2401
2402 error = ext4_reserve_inode_write(handle, inode, &is.iloc);
2403 if (error)
2404 goto cleanup;
2405
2406 if (ext4_test_inode_state(inode, EXT4_STATE_NEW)) {
2407 struct ext4_inode *raw_inode = ext4_raw_inode(&is.iloc);
2408 memset(raw_inode, 0, EXT4_SB(inode->i_sb)->s_inode_size);
2409 ext4_clear_inode_state(inode, EXT4_STATE_NEW);
2410 }
2411
2412 error = ext4_xattr_ibody_find(inode, &i, &is);
2413 if (error)
2414 goto cleanup;
2415 if (is.s.not_found)
2416 error = ext4_xattr_block_find(inode, &i, &bs);
2417 if (error)
2418 goto cleanup;
2419 if (is.s.not_found && bs.s.not_found) {
2420 error = -ENODATA;
2421 if (flags & XATTR_REPLACE)
2422 goto cleanup;
2423 error = 0;
2424 if (!value)
2425 goto cleanup;
2426 } else {
2427 error = -EEXIST;
2428 if (flags & XATTR_CREATE)
2429 goto cleanup;
2430 }
2431
2432 if (!value) {
2433 if (!is.s.not_found)
2434 error = ext4_xattr_ibody_set(handle, inode, &i, &is);
2435 else if (!bs.s.not_found)
2436 error = ext4_xattr_block_set(handle, inode, &i, &bs);
2437 } else {
2438 error = 0;
2439 /* Xattr value did not change? Save us some work and bail out */
2440 if (!is.s.not_found && ext4_xattr_value_same(&is.s, &i))
2441 goto cleanup;
2442 if (!bs.s.not_found && ext4_xattr_value_same(&bs.s, &i))
2443 goto cleanup;
2444
2445 if (ext4_has_feature_ea_inode(inode->i_sb) &&
2446 (EXT4_XATTR_SIZE(i.value_len) >
2447 EXT4_XATTR_MIN_LARGE_EA_SIZE(inode->i_sb->s_blocksize)))
2448 i.in_inode = 1;
2449 retry_inode:
2450 error = ext4_xattr_ibody_set(handle, inode, &i, &is);
2451 if (!error && !bs.s.not_found) {
2452 i.value = NULL;
2453 error = ext4_xattr_block_set(handle, inode, &i, &bs);
2454 } else if (error == -ENOSPC) {
2455 if (EXT4_I(inode)->i_file_acl && !bs.s.base) {
2456 brelse(bs.bh);
2457 bs.bh = NULL;
2458 error = ext4_xattr_block_find(inode, &i, &bs);
2459 if (error)
2460 goto cleanup;
2461 }
2462 error = ext4_xattr_block_set(handle, inode, &i, &bs);
2463 if (!error && !is.s.not_found) {
2464 i.value = NULL;
2465 error = ext4_xattr_ibody_set(handle, inode, &i,
2466 &is);
2467 } else if (error == -ENOSPC) {
2468 /*
2469 * Xattr does not fit in the block, store at
2470 * external inode if possible.
2471 */
2472 if (ext4_has_feature_ea_inode(inode->i_sb) &&
2473 i.value_len && !i.in_inode) {
2474 i.in_inode = 1;
2475 goto retry_inode;
2476 }
2477 }
2478 }
2479 }
2480 if (!error) {
2481 ext4_xattr_update_super_block(handle, inode->i_sb);
2482 inode_set_ctime_current(inode);
2483 inode_inc_iversion(inode);
2484 if (!value)
2485 no_expand = 0;
2486 error = ext4_mark_iloc_dirty(handle, inode, &is.iloc);
2487 /*
2488 * The bh is consumed by ext4_mark_iloc_dirty, even with
2489 * error != 0.
2490 */
2491 is.iloc.bh = NULL;
2492 if (IS_SYNC(inode))
2493 ext4_handle_sync(handle);
2494 }
2495 ext4_fc_mark_ineligible(inode->i_sb, EXT4_FC_REASON_XATTR, handle);
2496
2497 cleanup:
2498 brelse(is.iloc.bh);
2499 brelse(bs.bh);
2500 ext4_write_unlock_xattr(inode, &no_expand);
2501 return error;
2502 }
2503
ext4_xattr_set_credits(struct inode * inode,size_t value_len,bool is_create,int * credits)2504 int ext4_xattr_set_credits(struct inode *inode, size_t value_len,
2505 bool is_create, int *credits)
2506 {
2507 struct buffer_head *bh;
2508 int err;
2509
2510 *credits = 0;
2511
2512 if (!EXT4_SB(inode->i_sb)->s_journal)
2513 return 0;
2514
2515 down_read(&EXT4_I(inode)->xattr_sem);
2516
2517 bh = ext4_xattr_get_block(inode);
2518 if (IS_ERR(bh)) {
2519 err = PTR_ERR(bh);
2520 } else {
2521 *credits = __ext4_xattr_set_credits(inode->i_sb, inode, bh,
2522 value_len, is_create);
2523 brelse(bh);
2524 err = 0;
2525 }
2526
2527 up_read(&EXT4_I(inode)->xattr_sem);
2528 return err;
2529 }
2530
2531 /*
2532 * ext4_xattr_set()
2533 *
2534 * Like ext4_xattr_set_handle, but start from an inode. This extended
2535 * attribute modification is a filesystem transaction by itself.
2536 *
2537 * Returns 0, or a negative error number on failure.
2538 */
2539 int
ext4_xattr_set(struct inode * inode,int name_index,const char * name,const void * value,size_t value_len,int flags)2540 ext4_xattr_set(struct inode *inode, int name_index, const char *name,
2541 const void *value, size_t value_len, int flags)
2542 {
2543 handle_t *handle;
2544 struct super_block *sb = inode->i_sb;
2545 int error, retries = 0;
2546 int credits;
2547
2548 error = dquot_initialize(inode);
2549 if (error)
2550 return error;
2551
2552 retry:
2553 error = ext4_xattr_set_credits(inode, value_len, flags & XATTR_CREATE,
2554 &credits);
2555 if (error)
2556 return error;
2557
2558 handle = ext4_journal_start(inode, EXT4_HT_XATTR, credits);
2559 if (IS_ERR(handle)) {
2560 error = PTR_ERR(handle);
2561 } else {
2562 int error2;
2563
2564 error = ext4_xattr_set_handle(handle, inode, name_index, name,
2565 value, value_len, flags);
2566 ext4_fc_mark_ineligible(inode->i_sb, EXT4_FC_REASON_XATTR,
2567 handle);
2568 error2 = ext4_journal_stop(handle);
2569 if (error == -ENOSPC &&
2570 ext4_should_retry_alloc(sb, &retries))
2571 goto retry;
2572 if (error == 0)
2573 error = error2;
2574 }
2575
2576 return error;
2577 }
2578
2579 /*
2580 * Shift the EA entries in the inode to create space for the increased
2581 * i_extra_isize.
2582 */
ext4_xattr_shift_entries(struct ext4_xattr_entry * entry,int value_offs_shift,void * to,void * from,size_t n)2583 static void ext4_xattr_shift_entries(struct ext4_xattr_entry *entry,
2584 int value_offs_shift, void *to,
2585 void *from, size_t n)
2586 {
2587 struct ext4_xattr_entry *last = entry;
2588 int new_offs;
2589
2590 /* We always shift xattr headers further thus offsets get lower */
2591 BUG_ON(value_offs_shift > 0);
2592
2593 /* Adjust the value offsets of the entries */
2594 for (; !IS_LAST_ENTRY(last); last = EXT4_XATTR_NEXT(last)) {
2595 if (!last->e_value_inum && last->e_value_size) {
2596 new_offs = le16_to_cpu(last->e_value_offs) +
2597 value_offs_shift;
2598 last->e_value_offs = cpu_to_le16(new_offs);
2599 }
2600 }
2601 /* Shift the entries by n bytes */
2602 memmove(to, from, n);
2603 }
2604
2605 /*
2606 * Move xattr pointed to by 'entry' from inode into external xattr block
2607 */
ext4_xattr_move_to_block(handle_t * handle,struct inode * inode,struct ext4_inode * raw_inode,struct ext4_xattr_entry * entry)2608 static int ext4_xattr_move_to_block(handle_t *handle, struct inode *inode,
2609 struct ext4_inode *raw_inode,
2610 struct ext4_xattr_entry *entry)
2611 {
2612 struct ext4_xattr_ibody_find *is = NULL;
2613 struct ext4_xattr_block_find *bs = NULL;
2614 char *buffer = NULL, *b_entry_name = NULL;
2615 size_t value_size = le32_to_cpu(entry->e_value_size);
2616 struct ext4_xattr_info i = {
2617 .value = NULL,
2618 .value_len = 0,
2619 .name_index = entry->e_name_index,
2620 .in_inode = !!entry->e_value_inum,
2621 };
2622 struct ext4_xattr_ibody_header *header = IHDR(inode, raw_inode);
2623 int needs_kvfree = 0;
2624 int error;
2625
2626 is = kzalloc(sizeof(struct ext4_xattr_ibody_find), GFP_NOFS);
2627 bs = kzalloc(sizeof(struct ext4_xattr_block_find), GFP_NOFS);
2628 b_entry_name = kmalloc(entry->e_name_len + 1, GFP_NOFS);
2629 if (!is || !bs || !b_entry_name) {
2630 error = -ENOMEM;
2631 goto out;
2632 }
2633
2634 is->s.not_found = -ENODATA;
2635 bs->s.not_found = -ENODATA;
2636 is->iloc.bh = NULL;
2637 bs->bh = NULL;
2638
2639 /* Save the entry name and the entry value */
2640 if (entry->e_value_inum) {
2641 buffer = kvmalloc(value_size, GFP_NOFS);
2642 if (!buffer) {
2643 error = -ENOMEM;
2644 goto out;
2645 }
2646 needs_kvfree = 1;
2647 error = ext4_xattr_inode_get(inode, entry, buffer, value_size);
2648 if (error)
2649 goto out;
2650 } else {
2651 size_t value_offs = le16_to_cpu(entry->e_value_offs);
2652 buffer = (void *)IFIRST(header) + value_offs;
2653 }
2654
2655 memcpy(b_entry_name, entry->e_name, entry->e_name_len);
2656 b_entry_name[entry->e_name_len] = '\0';
2657 i.name = b_entry_name;
2658
2659 error = ext4_get_inode_loc(inode, &is->iloc);
2660 if (error)
2661 goto out;
2662
2663 error = ext4_xattr_ibody_find(inode, &i, is);
2664 if (error)
2665 goto out;
2666
2667 i.value = buffer;
2668 i.value_len = value_size;
2669 error = ext4_xattr_block_find(inode, &i, bs);
2670 if (error)
2671 goto out;
2672
2673 /* Move ea entry from the inode into the block */
2674 error = ext4_xattr_block_set(handle, inode, &i, bs);
2675 if (error)
2676 goto out;
2677
2678 /* Remove the chosen entry from the inode */
2679 i.value = NULL;
2680 i.value_len = 0;
2681 error = ext4_xattr_ibody_set(handle, inode, &i, is);
2682
2683 out:
2684 kfree(b_entry_name);
2685 if (needs_kvfree && buffer)
2686 kvfree(buffer);
2687 if (is)
2688 brelse(is->iloc.bh);
2689 if (bs)
2690 brelse(bs->bh);
2691 kfree(is);
2692 kfree(bs);
2693
2694 return error;
2695 }
2696
ext4_xattr_make_inode_space(handle_t * handle,struct inode * inode,struct ext4_inode * raw_inode,int isize_diff,size_t ifree,size_t bfree,int * total_ino)2697 static int ext4_xattr_make_inode_space(handle_t *handle, struct inode *inode,
2698 struct ext4_inode *raw_inode,
2699 int isize_diff, size_t ifree,
2700 size_t bfree, int *total_ino)
2701 {
2702 struct ext4_xattr_ibody_header *header = IHDR(inode, raw_inode);
2703 struct ext4_xattr_entry *small_entry;
2704 struct ext4_xattr_entry *entry;
2705 struct ext4_xattr_entry *last;
2706 unsigned int entry_size; /* EA entry size */
2707 unsigned int total_size; /* EA entry size + value size */
2708 unsigned int min_total_size;
2709 int error;
2710
2711 while (isize_diff > ifree) {
2712 entry = NULL;
2713 small_entry = NULL;
2714 min_total_size = ~0U;
2715 last = IFIRST(header);
2716 /* Find the entry best suited to be pushed into EA block */
2717 for (; !IS_LAST_ENTRY(last); last = EXT4_XATTR_NEXT(last)) {
2718 /* never move system.data out of the inode */
2719 if ((last->e_name_len == 4) &&
2720 (last->e_name_index == EXT4_XATTR_INDEX_SYSTEM) &&
2721 !memcmp(last->e_name, "data", 4))
2722 continue;
2723 total_size = EXT4_XATTR_LEN(last->e_name_len);
2724 if (!last->e_value_inum)
2725 total_size += EXT4_XATTR_SIZE(
2726 le32_to_cpu(last->e_value_size));
2727 if (total_size <= bfree &&
2728 total_size < min_total_size) {
2729 if (total_size + ifree < isize_diff) {
2730 small_entry = last;
2731 } else {
2732 entry = last;
2733 min_total_size = total_size;
2734 }
2735 }
2736 }
2737
2738 if (entry == NULL) {
2739 if (small_entry == NULL)
2740 return -ENOSPC;
2741 entry = small_entry;
2742 }
2743
2744 entry_size = EXT4_XATTR_LEN(entry->e_name_len);
2745 total_size = entry_size;
2746 if (!entry->e_value_inum)
2747 total_size += EXT4_XATTR_SIZE(
2748 le32_to_cpu(entry->e_value_size));
2749 error = ext4_xattr_move_to_block(handle, inode, raw_inode,
2750 entry);
2751 if (error)
2752 return error;
2753
2754 *total_ino -= entry_size;
2755 ifree += total_size;
2756 bfree -= total_size;
2757 }
2758
2759 return 0;
2760 }
2761
2762 /*
2763 * Expand an inode by new_extra_isize bytes when EAs are present.
2764 * Returns 0 on success or negative error number on failure.
2765 */
ext4_expand_extra_isize_ea(struct inode * inode,int new_extra_isize,struct ext4_inode * raw_inode,handle_t * handle)2766 int ext4_expand_extra_isize_ea(struct inode *inode, int new_extra_isize,
2767 struct ext4_inode *raw_inode, handle_t *handle)
2768 {
2769 struct ext4_xattr_ibody_header *header;
2770 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
2771 static unsigned int mnt_count;
2772 size_t min_offs;
2773 size_t ifree, bfree;
2774 int total_ino;
2775 void *base, *end;
2776 int error = 0, tried_min_extra_isize = 0;
2777 int s_min_extra_isize = le16_to_cpu(sbi->s_es->s_min_extra_isize);
2778 int isize_diff; /* How much do we need to grow i_extra_isize */
2779
2780 retry:
2781 isize_diff = new_extra_isize - EXT4_I(inode)->i_extra_isize;
2782 if (EXT4_I(inode)->i_extra_isize >= new_extra_isize)
2783 return 0;
2784
2785 header = IHDR(inode, raw_inode);
2786
2787 /*
2788 * Check if enough free space is available in the inode to shift the
2789 * entries ahead by new_extra_isize.
2790 */
2791
2792 base = IFIRST(header);
2793 end = (void *)raw_inode + EXT4_SB(inode->i_sb)->s_inode_size;
2794 min_offs = end - base;
2795 total_ino = sizeof(struct ext4_xattr_ibody_header) + sizeof(u32);
2796
2797 error = xattr_check_inode(inode, header, end);
2798 if (error)
2799 goto cleanup;
2800
2801 ifree = ext4_xattr_free_space(base, &min_offs, base, &total_ino);
2802 if (ifree >= isize_diff)
2803 goto shift;
2804
2805 /*
2806 * Enough free space isn't available in the inode, check if
2807 * EA block can hold new_extra_isize bytes.
2808 */
2809 if (EXT4_I(inode)->i_file_acl) {
2810 struct buffer_head *bh;
2811
2812 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
2813 if (IS_ERR(bh)) {
2814 error = PTR_ERR(bh);
2815 goto cleanup;
2816 }
2817 error = ext4_xattr_check_block(inode, bh);
2818 if (error) {
2819 brelse(bh);
2820 goto cleanup;
2821 }
2822 base = BHDR(bh);
2823 end = bh->b_data + bh->b_size;
2824 min_offs = end - base;
2825 bfree = ext4_xattr_free_space(BFIRST(bh), &min_offs, base,
2826 NULL);
2827 brelse(bh);
2828 if (bfree + ifree < isize_diff) {
2829 if (!tried_min_extra_isize && s_min_extra_isize) {
2830 tried_min_extra_isize++;
2831 new_extra_isize = s_min_extra_isize;
2832 goto retry;
2833 }
2834 error = -ENOSPC;
2835 goto cleanup;
2836 }
2837 } else {
2838 bfree = inode->i_sb->s_blocksize;
2839 }
2840
2841 error = ext4_xattr_make_inode_space(handle, inode, raw_inode,
2842 isize_diff, ifree, bfree,
2843 &total_ino);
2844 if (error) {
2845 if (error == -ENOSPC && !tried_min_extra_isize &&
2846 s_min_extra_isize) {
2847 tried_min_extra_isize++;
2848 new_extra_isize = s_min_extra_isize;
2849 goto retry;
2850 }
2851 goto cleanup;
2852 }
2853 shift:
2854 /* Adjust the offsets and shift the remaining entries ahead */
2855 ext4_xattr_shift_entries(IFIRST(header), EXT4_I(inode)->i_extra_isize
2856 - new_extra_isize, (void *)raw_inode +
2857 EXT4_GOOD_OLD_INODE_SIZE + new_extra_isize,
2858 (void *)header, total_ino);
2859 EXT4_I(inode)->i_extra_isize = new_extra_isize;
2860
2861 if (ext4_has_inline_data(inode))
2862 error = ext4_find_inline_data_nolock(inode);
2863
2864 cleanup:
2865 if (error && (mnt_count != le16_to_cpu(sbi->s_es->s_mnt_count))) {
2866 ext4_warning(inode->i_sb, "Unable to expand inode %lu. Delete some EAs or run e2fsck.",
2867 inode->i_ino);
2868 mnt_count = le16_to_cpu(sbi->s_es->s_mnt_count);
2869 }
2870 return error;
2871 }
2872
2873 #define EIA_INCR 16 /* must be 2^n */
2874 #define EIA_MASK (EIA_INCR - 1)
2875
2876 /* Add the large xattr @inode into @ea_inode_array for deferred iput().
2877 * If @ea_inode_array is new or full it will be grown and the old
2878 * contents copied over.
2879 */
2880 static int
ext4_expand_inode_array(struct ext4_xattr_inode_array ** ea_inode_array,struct inode * inode)2881 ext4_expand_inode_array(struct ext4_xattr_inode_array **ea_inode_array,
2882 struct inode *inode)
2883 {
2884 if (*ea_inode_array == NULL) {
2885 /*
2886 * Start with 15 inodes, so it fits into a power-of-two size.
2887 * If *ea_inode_array is NULL, this is essentially offsetof()
2888 */
2889 (*ea_inode_array) =
2890 kmalloc(offsetof(struct ext4_xattr_inode_array,
2891 inodes[EIA_MASK]),
2892 GFP_NOFS);
2893 if (*ea_inode_array == NULL)
2894 return -ENOMEM;
2895 (*ea_inode_array)->count = 0;
2896 } else if (((*ea_inode_array)->count & EIA_MASK) == EIA_MASK) {
2897 /* expand the array once all 15 + n * 16 slots are full */
2898 struct ext4_xattr_inode_array *new_array = NULL;
2899 int count = (*ea_inode_array)->count;
2900
2901 /* if new_array is NULL, this is essentially offsetof() */
2902 new_array = kmalloc(
2903 offsetof(struct ext4_xattr_inode_array,
2904 inodes[count + EIA_INCR]),
2905 GFP_NOFS);
2906 if (new_array == NULL)
2907 return -ENOMEM;
2908 memcpy(new_array, *ea_inode_array,
2909 offsetof(struct ext4_xattr_inode_array, inodes[count]));
2910 kfree(*ea_inode_array);
2911 *ea_inode_array = new_array;
2912 }
2913 (*ea_inode_array)->inodes[(*ea_inode_array)->count++] = inode;
2914 return 0;
2915 }
2916
2917 /*
2918 * ext4_xattr_delete_inode()
2919 *
2920 * Free extended attribute resources associated with this inode. Traverse
2921 * all entries and decrement reference on any xattr inodes associated with this
2922 * inode. This is called immediately before an inode is freed. We have exclusive
2923 * access to the inode. If an orphan inode is deleted it will also release its
2924 * references on xattr block and xattr inodes.
2925 */
ext4_xattr_delete_inode(handle_t * handle,struct inode * inode,struct ext4_xattr_inode_array ** ea_inode_array,int extra_credits)2926 int ext4_xattr_delete_inode(handle_t *handle, struct inode *inode,
2927 struct ext4_xattr_inode_array **ea_inode_array,
2928 int extra_credits)
2929 {
2930 struct buffer_head *bh = NULL;
2931 struct ext4_xattr_ibody_header *header;
2932 struct ext4_iloc iloc = { .bh = NULL };
2933 struct ext4_xattr_entry *entry;
2934 struct inode *ea_inode;
2935 int error;
2936
2937 error = ext4_journal_ensure_credits(handle, extra_credits,
2938 ext4_free_metadata_revoke_credits(inode->i_sb, 1));
2939 if (error < 0) {
2940 EXT4_ERROR_INODE(inode, "ensure credits (error %d)", error);
2941 goto cleanup;
2942 }
2943
2944 if (ext4_has_feature_ea_inode(inode->i_sb) &&
2945 ext4_test_inode_state(inode, EXT4_STATE_XATTR)) {
2946
2947 error = ext4_get_inode_loc(inode, &iloc);
2948 if (error) {
2949 EXT4_ERROR_INODE(inode, "inode loc (error %d)", error);
2950 goto cleanup;
2951 }
2952
2953 error = ext4_journal_get_write_access(handle, inode->i_sb,
2954 iloc.bh, EXT4_JTR_NONE);
2955 if (error) {
2956 EXT4_ERROR_INODE(inode, "write access (error %d)",
2957 error);
2958 goto cleanup;
2959 }
2960
2961 header = IHDR(inode, ext4_raw_inode(&iloc));
2962 if (header->h_magic == cpu_to_le32(EXT4_XATTR_MAGIC))
2963 ext4_xattr_inode_dec_ref_all(handle, inode, iloc.bh,
2964 IFIRST(header),
2965 false /* block_csum */,
2966 ea_inode_array,
2967 extra_credits,
2968 false /* skip_quota */);
2969 }
2970
2971 if (EXT4_I(inode)->i_file_acl) {
2972 bh = ext4_sb_bread(inode->i_sb, EXT4_I(inode)->i_file_acl, REQ_PRIO);
2973 if (IS_ERR(bh)) {
2974 error = PTR_ERR(bh);
2975 if (error == -EIO) {
2976 EXT4_ERROR_INODE_ERR(inode, EIO,
2977 "block %llu read error",
2978 EXT4_I(inode)->i_file_acl);
2979 }
2980 bh = NULL;
2981 goto cleanup;
2982 }
2983 error = ext4_xattr_check_block(inode, bh);
2984 if (error)
2985 goto cleanup;
2986
2987 if (ext4_has_feature_ea_inode(inode->i_sb)) {
2988 for (entry = BFIRST(bh); !IS_LAST_ENTRY(entry);
2989 entry = EXT4_XATTR_NEXT(entry)) {
2990 if (!entry->e_value_inum)
2991 continue;
2992 error = ext4_xattr_inode_iget(inode,
2993 le32_to_cpu(entry->e_value_inum),
2994 le32_to_cpu(entry->e_hash),
2995 &ea_inode);
2996 if (error)
2997 continue;
2998 ext4_xattr_inode_free_quota(inode, ea_inode,
2999 le32_to_cpu(entry->e_value_size));
3000 iput(ea_inode);
3001 }
3002
3003 }
3004
3005 ext4_xattr_release_block(handle, inode, bh, ea_inode_array,
3006 extra_credits);
3007 /*
3008 * Update i_file_acl value in the same transaction that releases
3009 * block.
3010 */
3011 EXT4_I(inode)->i_file_acl = 0;
3012 error = ext4_mark_inode_dirty(handle, inode);
3013 if (error) {
3014 EXT4_ERROR_INODE(inode, "mark inode dirty (error %d)",
3015 error);
3016 goto cleanup;
3017 }
3018 ext4_fc_mark_ineligible(inode->i_sb, EXT4_FC_REASON_XATTR, handle);
3019 }
3020 error = 0;
3021 cleanup:
3022 brelse(iloc.bh);
3023 brelse(bh);
3024 return error;
3025 }
3026
ext4_xattr_inode_array_free(struct ext4_xattr_inode_array * ea_inode_array)3027 void ext4_xattr_inode_array_free(struct ext4_xattr_inode_array *ea_inode_array)
3028 {
3029 int idx;
3030
3031 if (ea_inode_array == NULL)
3032 return;
3033
3034 for (idx = 0; idx < ea_inode_array->count; ++idx)
3035 iput(ea_inode_array->inodes[idx]);
3036 kfree(ea_inode_array);
3037 }
3038
3039 /*
3040 * ext4_xattr_block_cache_insert()
3041 *
3042 * Create a new entry in the extended attribute block cache, and insert
3043 * it unless such an entry is already in the cache.
3044 *
3045 * Returns 0, or a negative error number on failure.
3046 */
3047 static void
ext4_xattr_block_cache_insert(struct mb_cache * ea_block_cache,struct buffer_head * bh)3048 ext4_xattr_block_cache_insert(struct mb_cache *ea_block_cache,
3049 struct buffer_head *bh)
3050 {
3051 struct ext4_xattr_header *header = BHDR(bh);
3052 __u32 hash = le32_to_cpu(header->h_hash);
3053 int reusable = le32_to_cpu(header->h_refcount) <
3054 EXT4_XATTR_REFCOUNT_MAX;
3055 int error;
3056
3057 if (!ea_block_cache)
3058 return;
3059 error = mb_cache_entry_create(ea_block_cache, GFP_NOFS, hash,
3060 bh->b_blocknr, reusable);
3061 if (error) {
3062 if (error == -EBUSY)
3063 ea_bdebug(bh, "already in cache");
3064 } else
3065 ea_bdebug(bh, "inserting [%x]", (int)hash);
3066 }
3067
3068 /*
3069 * ext4_xattr_cmp()
3070 *
3071 * Compare two extended attribute blocks for equality.
3072 *
3073 * Returns 0 if the blocks are equal, 1 if they differ, and
3074 * a negative error number on errors.
3075 */
3076 static int
ext4_xattr_cmp(struct ext4_xattr_header * header1,struct ext4_xattr_header * header2)3077 ext4_xattr_cmp(struct ext4_xattr_header *header1,
3078 struct ext4_xattr_header *header2)
3079 {
3080 struct ext4_xattr_entry *entry1, *entry2;
3081
3082 entry1 = ENTRY(header1+1);
3083 entry2 = ENTRY(header2+1);
3084 while (!IS_LAST_ENTRY(entry1)) {
3085 if (IS_LAST_ENTRY(entry2))
3086 return 1;
3087 if (entry1->e_hash != entry2->e_hash ||
3088 entry1->e_name_index != entry2->e_name_index ||
3089 entry1->e_name_len != entry2->e_name_len ||
3090 entry1->e_value_size != entry2->e_value_size ||
3091 entry1->e_value_inum != entry2->e_value_inum ||
3092 memcmp(entry1->e_name, entry2->e_name, entry1->e_name_len))
3093 return 1;
3094 if (!entry1->e_value_inum &&
3095 memcmp((char *)header1 + le16_to_cpu(entry1->e_value_offs),
3096 (char *)header2 + le16_to_cpu(entry2->e_value_offs),
3097 le32_to_cpu(entry1->e_value_size)))
3098 return 1;
3099
3100 entry1 = EXT4_XATTR_NEXT(entry1);
3101 entry2 = EXT4_XATTR_NEXT(entry2);
3102 }
3103 if (!IS_LAST_ENTRY(entry2))
3104 return 1;
3105 return 0;
3106 }
3107
3108 /*
3109 * ext4_xattr_block_cache_find()
3110 *
3111 * Find an identical extended attribute block.
3112 *
3113 * Returns a pointer to the block found, or NULL if such a block was
3114 * not found or an error occurred.
3115 */
3116 static struct buffer_head *
ext4_xattr_block_cache_find(struct inode * inode,struct ext4_xattr_header * header,struct mb_cache_entry ** pce)3117 ext4_xattr_block_cache_find(struct inode *inode,
3118 struct ext4_xattr_header *header,
3119 struct mb_cache_entry **pce)
3120 {
3121 __u32 hash = le32_to_cpu(header->h_hash);
3122 struct mb_cache_entry *ce;
3123 struct mb_cache *ea_block_cache = EA_BLOCK_CACHE(inode);
3124
3125 if (!ea_block_cache)
3126 return NULL;
3127 if (!header->h_hash)
3128 return NULL; /* never share */
3129 ea_idebug(inode, "looking for cached blocks [%x]", (int)hash);
3130 ce = mb_cache_entry_find_first(ea_block_cache, hash);
3131 while (ce) {
3132 struct buffer_head *bh;
3133
3134 bh = ext4_sb_bread(inode->i_sb, ce->e_value, REQ_PRIO);
3135 if (IS_ERR(bh)) {
3136 if (PTR_ERR(bh) == -ENOMEM) {
3137 mb_cache_entry_put(ea_block_cache, ce);
3138 return NULL;
3139 }
3140 bh = NULL;
3141 EXT4_ERROR_INODE(inode, "block %lu read error",
3142 (unsigned long)ce->e_value);
3143 } else if (ext4_xattr_cmp(header, BHDR(bh)) == 0) {
3144 *pce = ce;
3145 return bh;
3146 }
3147 brelse(bh);
3148 ce = mb_cache_entry_find_next(ea_block_cache, ce);
3149 }
3150 return NULL;
3151 }
3152
3153 #define NAME_HASH_SHIFT 5
3154 #define VALUE_HASH_SHIFT 16
3155
3156 /*
3157 * ext4_xattr_hash_entry()
3158 *
3159 * Compute the hash of an extended attribute.
3160 */
ext4_xattr_hash_entry(char * name,size_t name_len,__le32 * value,size_t value_count)3161 static __le32 ext4_xattr_hash_entry(char *name, size_t name_len, __le32 *value,
3162 size_t value_count)
3163 {
3164 __u32 hash = 0;
3165
3166 while (name_len--) {
3167 hash = (hash << NAME_HASH_SHIFT) ^
3168 (hash >> (8*sizeof(hash) - NAME_HASH_SHIFT)) ^
3169 (unsigned char)*name++;
3170 }
3171 while (value_count--) {
3172 hash = (hash << VALUE_HASH_SHIFT) ^
3173 (hash >> (8*sizeof(hash) - VALUE_HASH_SHIFT)) ^
3174 le32_to_cpu(*value++);
3175 }
3176 return cpu_to_le32(hash);
3177 }
3178
3179 /*
3180 * ext4_xattr_hash_entry_signed()
3181 *
3182 * Compute the hash of an extended attribute incorrectly.
3183 */
ext4_xattr_hash_entry_signed(char * name,size_t name_len,__le32 * value,size_t value_count)3184 static __le32 ext4_xattr_hash_entry_signed(char *name, size_t name_len, __le32 *value, size_t value_count)
3185 {
3186 __u32 hash = 0;
3187
3188 while (name_len--) {
3189 hash = (hash << NAME_HASH_SHIFT) ^
3190 (hash >> (8*sizeof(hash) - NAME_HASH_SHIFT)) ^
3191 (signed char)*name++;
3192 }
3193 while (value_count--) {
3194 hash = (hash << VALUE_HASH_SHIFT) ^
3195 (hash >> (8*sizeof(hash) - VALUE_HASH_SHIFT)) ^
3196 le32_to_cpu(*value++);
3197 }
3198 return cpu_to_le32(hash);
3199 }
3200
3201 #undef NAME_HASH_SHIFT
3202 #undef VALUE_HASH_SHIFT
3203
3204 #define BLOCK_HASH_SHIFT 16
3205
3206 /*
3207 * ext4_xattr_rehash()
3208 *
3209 * Re-compute the extended attribute hash value after an entry has changed.
3210 */
ext4_xattr_rehash(struct ext4_xattr_header * header)3211 static void ext4_xattr_rehash(struct ext4_xattr_header *header)
3212 {
3213 struct ext4_xattr_entry *here;
3214 __u32 hash = 0;
3215
3216 here = ENTRY(header+1);
3217 while (!IS_LAST_ENTRY(here)) {
3218 if (!here->e_hash) {
3219 /* Block is not shared if an entry's hash value == 0 */
3220 hash = 0;
3221 break;
3222 }
3223 hash = (hash << BLOCK_HASH_SHIFT) ^
3224 (hash >> (8*sizeof(hash) - BLOCK_HASH_SHIFT)) ^
3225 le32_to_cpu(here->e_hash);
3226 here = EXT4_XATTR_NEXT(here);
3227 }
3228 header->h_hash = cpu_to_le32(hash);
3229 }
3230
3231 #undef BLOCK_HASH_SHIFT
3232
3233 #define HASH_BUCKET_BITS 10
3234
3235 struct mb_cache *
ext4_xattr_create_cache(void)3236 ext4_xattr_create_cache(void)
3237 {
3238 return mb_cache_create(HASH_BUCKET_BITS);
3239 }
3240
ext4_xattr_destroy_cache(struct mb_cache * cache)3241 void ext4_xattr_destroy_cache(struct mb_cache *cache)
3242 {
3243 if (cache)
3244 mb_cache_destroy(cache);
3245 }
3246
3247