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0b61f8a4 1// SPDX-License-Identifier: GPL-2.0
1da177e4 2/*
7b718769 3 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
517c2220 4 * Copyright (c) 2013 Red Hat, Inc.
7b718769 5 * All Rights Reserved.
1da177e4 6 */
1da177e4 7#include "xfs.h"
a844f451 8#include "xfs_fs.h"
632b89e8 9#include "xfs_shared.h"
a4fbe6ab 10#include "xfs_format.h"
239880ef
DC
11#include "xfs_log_format.h"
12#include "xfs_trans_resv.h"
1da177e4 13#include "xfs_sb.h"
1da177e4 14#include "xfs_mount.h"
57062787 15#include "xfs_da_format.h"
a844f451 16#include "xfs_da_btree.h"
1da177e4 17#include "xfs_inode.h"
239880ef 18#include "xfs_trans.h"
a4fbe6ab 19#include "xfs_bmap_btree.h"
1da177e4 20#include "xfs_bmap.h"
a4fbe6ab
DC
21#include "xfs_attr_sf.h"
22#include "xfs_attr_remote.h"
1da177e4
LT
23#include "xfs_attr.h"
24#include "xfs_attr_leaf.h"
25#include "xfs_error.h"
0b1b213f 26#include "xfs_trace.h"
517c2220 27#include "xfs_buf_item.h"
4bceb18f 28#include "xfs_dir2.h"
a45086e2 29#include "xfs_log.h"
517c2220 30
1da177e4
LT
31
32/*
33 * xfs_attr_leaf.c
34 *
35 * Routines to implement leaf blocks of attributes as Btrees of hashed names.
36 */
37
38/*========================================================================
39 * Function prototypes for the kernel.
40 *========================================================================*/
41
42/*
43 * Routines used for growing the Btree.
44 */
517c2220
DC
45STATIC int xfs_attr3_leaf_create(struct xfs_da_args *args,
46 xfs_dablk_t which_block, struct xfs_buf **bpp);
47STATIC int xfs_attr3_leaf_add_work(struct xfs_buf *leaf_buffer,
48 struct xfs_attr3_icleaf_hdr *ichdr,
49 struct xfs_da_args *args, int freemap_index);
50STATIC void xfs_attr3_leaf_compact(struct xfs_da_args *args,
51 struct xfs_attr3_icleaf_hdr *ichdr,
52 struct xfs_buf *leaf_buffer);
53STATIC void xfs_attr3_leaf_rebalance(xfs_da_state_t *state,
1da177e4
LT
54 xfs_da_state_blk_t *blk1,
55 xfs_da_state_blk_t *blk2);
517c2220
DC
56STATIC int xfs_attr3_leaf_figure_balance(xfs_da_state_t *state,
57 xfs_da_state_blk_t *leaf_blk_1,
58 struct xfs_attr3_icleaf_hdr *ichdr1,
59 xfs_da_state_blk_t *leaf_blk_2,
60 struct xfs_attr3_icleaf_hdr *ichdr2,
61 int *number_entries_in_blk1,
62 int *number_usedbytes_in_blk1);
1da177e4
LT
63
64/*
65 * Utility routines.
66 */
c2c4c477
DC
67STATIC void xfs_attr3_leaf_moveents(struct xfs_da_args *args,
68 struct xfs_attr_leafblock *src_leaf,
517c2220
DC
69 struct xfs_attr3_icleaf_hdr *src_ichdr, int src_start,
70 struct xfs_attr_leafblock *dst_leaf,
71 struct xfs_attr3_icleaf_hdr *dst_ichdr, int dst_start,
c2c4c477 72 int move_count);
ba0f32d4 73STATIC int xfs_attr_leaf_entsize(xfs_attr_leafblock_t *leaf, int index);
726801ba 74
e87021a2
BF
75/*
76 * attr3 block 'firstused' conversion helpers.
77 *
78 * firstused refers to the offset of the first used byte of the nameval region
79 * of an attr leaf block. The region starts at the tail of the block and expands
80 * backwards towards the middle. As such, firstused is initialized to the block
81 * size for an empty leaf block and is reduced from there.
82 *
83 * The attr3 block size is pegged to the fsb size and the maximum fsb is 64k.
84 * The in-core firstused field is 32-bit and thus supports the maximum fsb size.
85 * The on-disk field is only 16-bit, however, and overflows at 64k. Since this
86 * only occurs at exactly 64k, we use zero as a magic on-disk value to represent
87 * the attr block size. The following helpers manage the conversion between the
88 * in-core and on-disk formats.
89 */
90
91static void
92xfs_attr3_leaf_firstused_from_disk(
93 struct xfs_da_geometry *geo,
94 struct xfs_attr3_icleaf_hdr *to,
95 struct xfs_attr_leafblock *from)
96{
97 struct xfs_attr3_leaf_hdr *hdr3;
98
99 if (from->hdr.info.magic == cpu_to_be16(XFS_ATTR3_LEAF_MAGIC)) {
100 hdr3 = (struct xfs_attr3_leaf_hdr *) from;
101 to->firstused = be16_to_cpu(hdr3->firstused);
102 } else {
103 to->firstused = be16_to_cpu(from->hdr.firstused);
104 }
105
106 /*
107 * Convert from the magic fsb size value to actual blocksize. This
108 * should only occur for empty blocks when the block size overflows
109 * 16-bits.
110 */
111 if (to->firstused == XFS_ATTR3_LEAF_NULLOFF) {
112 ASSERT(!to->count && !to->usedbytes);
113 ASSERT(geo->blksize > USHRT_MAX);
114 to->firstused = geo->blksize;
115 }
116}
117
118static void
119xfs_attr3_leaf_firstused_to_disk(
120 struct xfs_da_geometry *geo,
121 struct xfs_attr_leafblock *to,
122 struct xfs_attr3_icleaf_hdr *from)
123{
124 struct xfs_attr3_leaf_hdr *hdr3;
125 uint32_t firstused;
126
127 /* magic value should only be seen on disk */
128 ASSERT(from->firstused != XFS_ATTR3_LEAF_NULLOFF);
129
130 /*
131 * Scale down the 32-bit in-core firstused value to the 16-bit on-disk
132 * value. This only overflows at the max supported value of 64k. Use the
133 * magic on-disk value to represent block size in this case.
134 */
135 firstused = from->firstused;
136 if (firstused > USHRT_MAX) {
137 ASSERT(from->firstused == geo->blksize);
138 firstused = XFS_ATTR3_LEAF_NULLOFF;
139 }
140
141 if (from->magic == XFS_ATTR3_LEAF_MAGIC) {
142 hdr3 = (struct xfs_attr3_leaf_hdr *) to;
143 hdr3->firstused = cpu_to_be16(firstused);
144 } else {
145 to->hdr.firstused = cpu_to_be16(firstused);
146 }
147}
148
517c2220
DC
149void
150xfs_attr3_leaf_hdr_from_disk(
2f661241 151 struct xfs_da_geometry *geo,
517c2220
DC
152 struct xfs_attr3_icleaf_hdr *to,
153 struct xfs_attr_leafblock *from)
154{
155 int i;
156
157 ASSERT(from->hdr.info.magic == cpu_to_be16(XFS_ATTR_LEAF_MAGIC) ||
158 from->hdr.info.magic == cpu_to_be16(XFS_ATTR3_LEAF_MAGIC));
159
160 if (from->hdr.info.magic == cpu_to_be16(XFS_ATTR3_LEAF_MAGIC)) {
161 struct xfs_attr3_leaf_hdr *hdr3 = (struct xfs_attr3_leaf_hdr *)from;
162
163 to->forw = be32_to_cpu(hdr3->info.hdr.forw);
164 to->back = be32_to_cpu(hdr3->info.hdr.back);
165 to->magic = be16_to_cpu(hdr3->info.hdr.magic);
166 to->count = be16_to_cpu(hdr3->count);
167 to->usedbytes = be16_to_cpu(hdr3->usedbytes);
e87021a2 168 xfs_attr3_leaf_firstused_from_disk(geo, to, from);
517c2220
DC
169 to->holes = hdr3->holes;
170
171 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
172 to->freemap[i].base = be16_to_cpu(hdr3->freemap[i].base);
173 to->freemap[i].size = be16_to_cpu(hdr3->freemap[i].size);
174 }
175 return;
176 }
177 to->forw = be32_to_cpu(from->hdr.info.forw);
178 to->back = be32_to_cpu(from->hdr.info.back);
179 to->magic = be16_to_cpu(from->hdr.info.magic);
180 to->count = be16_to_cpu(from->hdr.count);
181 to->usedbytes = be16_to_cpu(from->hdr.usedbytes);
e87021a2 182 xfs_attr3_leaf_firstused_from_disk(geo, to, from);
517c2220
DC
183 to->holes = from->hdr.holes;
184
185 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
186 to->freemap[i].base = be16_to_cpu(from->hdr.freemap[i].base);
187 to->freemap[i].size = be16_to_cpu(from->hdr.freemap[i].size);
188 }
189}
190
191void
192xfs_attr3_leaf_hdr_to_disk(
2f661241 193 struct xfs_da_geometry *geo,
517c2220
DC
194 struct xfs_attr_leafblock *to,
195 struct xfs_attr3_icleaf_hdr *from)
196{
e87021a2 197 int i;
517c2220
DC
198
199 ASSERT(from->magic == XFS_ATTR_LEAF_MAGIC ||
200 from->magic == XFS_ATTR3_LEAF_MAGIC);
201
202 if (from->magic == XFS_ATTR3_LEAF_MAGIC) {
203 struct xfs_attr3_leaf_hdr *hdr3 = (struct xfs_attr3_leaf_hdr *)to;
204
205 hdr3->info.hdr.forw = cpu_to_be32(from->forw);
206 hdr3->info.hdr.back = cpu_to_be32(from->back);
207 hdr3->info.hdr.magic = cpu_to_be16(from->magic);
208 hdr3->count = cpu_to_be16(from->count);
209 hdr3->usedbytes = cpu_to_be16(from->usedbytes);
e87021a2 210 xfs_attr3_leaf_firstused_to_disk(geo, to, from);
517c2220
DC
211 hdr3->holes = from->holes;
212 hdr3->pad1 = 0;
213
214 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
215 hdr3->freemap[i].base = cpu_to_be16(from->freemap[i].base);
216 hdr3->freemap[i].size = cpu_to_be16(from->freemap[i].size);
217 }
218 return;
219 }
220 to->hdr.info.forw = cpu_to_be32(from->forw);
221 to->hdr.info.back = cpu_to_be32(from->back);
222 to->hdr.info.magic = cpu_to_be16(from->magic);
223 to->hdr.count = cpu_to_be16(from->count);
224 to->hdr.usedbytes = cpu_to_be16(from->usedbytes);
e87021a2 225 xfs_attr3_leaf_firstused_to_disk(geo, to, from);
517c2220
DC
226 to->hdr.holes = from->holes;
227 to->hdr.pad1 = 0;
228
229 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
230 to->hdr.freemap[i].base = cpu_to_be16(from->freemap[i].base);
231 to->hdr.freemap[i].size = cpu_to_be16(from->freemap[i].size);
232 }
233}
234
c8476065
DW
235static xfs_failaddr_t
236xfs_attr3_leaf_verify_entry(
237 struct xfs_mount *mp,
238 char *buf_end,
239 struct xfs_attr_leafblock *leaf,
240 struct xfs_attr3_icleaf_hdr *leafhdr,
241 struct xfs_attr_leaf_entry *ent,
242 int idx,
243 __u32 *last_hashval)
244{
245 struct xfs_attr_leaf_name_local *lentry;
246 struct xfs_attr_leaf_name_remote *rentry;
247 char *name_end;
248 unsigned int nameidx;
249 unsigned int namesize;
250 __u32 hashval;
251
252 /* hash order check */
253 hashval = be32_to_cpu(ent->hashval);
254 if (hashval < *last_hashval)
255 return __this_address;
256 *last_hashval = hashval;
257
258 nameidx = be16_to_cpu(ent->nameidx);
259 if (nameidx < leafhdr->firstused || nameidx >= mp->m_attr_geo->blksize)
260 return __this_address;
261
262 /*
263 * Check the name information. The namelen fields are u8 so we can't
264 * possibly exceed the maximum name length of 255 bytes.
265 */
266 if (ent->flags & XFS_ATTR_LOCAL) {
267 lentry = xfs_attr3_leaf_name_local(leaf, idx);
268 namesize = xfs_attr_leaf_entsize_local(lentry->namelen,
269 be16_to_cpu(lentry->valuelen));
270 name_end = (char *)lentry + namesize;
271 if (lentry->namelen == 0)
272 return __this_address;
273 } else {
274 rentry = xfs_attr3_leaf_name_remote(leaf, idx);
275 namesize = xfs_attr_leaf_entsize_remote(rentry->namelen);
276 name_end = (char *)rentry + namesize;
277 if (rentry->namelen == 0)
278 return __this_address;
279 if (!(ent->flags & XFS_ATTR_INCOMPLETE) &&
280 rentry->valueblk == 0)
281 return __this_address;
282 }
283
284 if (name_end > buf_end)
285 return __this_address;
286
287 return NULL;
288}
289
a6a781a5 290static xfs_failaddr_t
517c2220 291xfs_attr3_leaf_verify(
79a69bf8 292 struct xfs_buf *bp)
ad14c33a 293{
79a69bf8 294 struct xfs_attr3_icleaf_hdr ichdr;
dbd329f1 295 struct xfs_mount *mp = bp->b_mount;
79a69bf8 296 struct xfs_attr_leafblock *leaf = bp->b_addr;
79a69bf8 297 struct xfs_attr_leaf_entry *entries;
c8476065
DW
298 struct xfs_attr_leaf_entry *ent;
299 char *buf_end;
837514f7 300 uint32_t end; /* must be 32bit - see below */
c8476065 301 __u32 last_hashval = 0;
65cfcc38 302 int i;
8764f983 303 xfs_failaddr_t fa;
ad14c33a 304
2f661241 305 xfs_attr3_leaf_hdr_from_disk(mp->m_attr_geo, &ichdr, leaf);
517c2220 306
8764f983
BF
307 fa = xfs_da3_blkinfo_verify(bp, bp->b_addr);
308 if (fa)
309 return fa;
517c2220 310
79a69bf8
DW
311 /*
312 * firstused is the block offset of the first name info structure.
313 * Make sure it doesn't go off the block or crash into the header.
314 */
315 if (ichdr.firstused > mp->m_attr_geo->blksize)
316 return __this_address;
317 if (ichdr.firstused < xfs_attr3_leaf_hdr_size(leaf))
318 return __this_address;
319
320 /* Make sure the entries array doesn't crash into the name info. */
321 entries = xfs_attr3_leaf_entryp(bp->b_addr);
322 if ((char *)&entries[ichdr.count] >
323 (char *)bp->b_addr + ichdr.firstused)
324 return __this_address;
325
f28cef9e
BF
326 /*
327 * NOTE: This verifier historically failed empty leaf buffers because
328 * we expect the fork to be in another format. Empty attr fork format
329 * conversions are possible during xattr set, however, and format
330 * conversion is not atomic with the xattr set that triggers it. We
331 * cannot assume leaf blocks are non-empty until that is addressed.
332 */
c8476065
DW
333 buf_end = (char *)bp->b_addr + mp->m_attr_geo->blksize;
334 for (i = 0, ent = entries; i < ichdr.count; ent++, i++) {
335 fa = xfs_attr3_leaf_verify_entry(mp, buf_end, leaf, &ichdr,
336 ent, i, &last_hashval);
337 if (fa)
338 return fa;
339 }
517c2220 340
65cfcc38
DW
341 /*
342 * Quickly check the freemap information. Attribute data has to be
343 * aligned to 4-byte boundaries, and likewise for the free space.
837514f7
DC
344 *
345 * Note that for 64k block size filesystems, the freemap entries cannot
346 * overflow as they are only be16 fields. However, when checking end
347 * pointer of the freemap, we have to be careful to detect overflows and
348 * so use uint32_t for those checks.
65cfcc38
DW
349 */
350 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
351 if (ichdr.freemap[i].base > mp->m_attr_geo->blksize)
352 return __this_address;
353 if (ichdr.freemap[i].base & 0x3)
354 return __this_address;
355 if (ichdr.freemap[i].size > mp->m_attr_geo->blksize)
356 return __this_address;
357 if (ichdr.freemap[i].size & 0x3)
358 return __this_address;
837514f7
DC
359
360 /* be care of 16 bit overflows here */
361 end = (uint32_t)ichdr.freemap[i].base + ichdr.freemap[i].size;
65cfcc38
DW
362 if (end < ichdr.freemap[i].base)
363 return __this_address;
364 if (end > mp->m_attr_geo->blksize)
365 return __this_address;
366 }
367
a6a781a5 368 return NULL;
612cfbfe
DC
369}
370
371static void
517c2220 372xfs_attr3_leaf_write_verify(
612cfbfe
DC
373 struct xfs_buf *bp)
374{
dbd329f1 375 struct xfs_mount *mp = bp->b_mount;
fb1755a6 376 struct xfs_buf_log_item *bip = bp->b_log_item;
517c2220 377 struct xfs_attr3_leaf_hdr *hdr3 = bp->b_addr;
bc1a09b8 378 xfs_failaddr_t fa;
517c2220 379
bc1a09b8
DW
380 fa = xfs_attr3_leaf_verify(bp);
381 if (fa) {
382 xfs_verifier_error(bp, -EFSCORRUPTED, fa);
517c2220
DC
383 return;
384 }
385
386 if (!xfs_sb_version_hascrc(&mp->m_sb))
387 return;
388
389 if (bip)
390 hdr3->info.lsn = cpu_to_be64(bip->bli_item.li_lsn);
391
f1dbcd7e 392 xfs_buf_update_cksum(bp, XFS_ATTR3_LEAF_CRC_OFF);
612cfbfe 393}
ad14c33a 394
517c2220
DC
395/*
396 * leaf/node format detection on trees is sketchy, so a node read can be done on
397 * leaf level blocks when detection identifies the tree as a node format tree
398 * incorrectly. In this case, we need to swap the verifier to match the correct
399 * format of the block being read.
400 */
1813dd64 401static void
517c2220
DC
402xfs_attr3_leaf_read_verify(
403 struct xfs_buf *bp)
612cfbfe 404{
dbd329f1 405 struct xfs_mount *mp = bp->b_mount;
bc1a09b8 406 xfs_failaddr_t fa;
517c2220 407
ce5028cf
ES
408 if (xfs_sb_version_hascrc(&mp->m_sb) &&
409 !xfs_buf_verify_cksum(bp, XFS_ATTR3_LEAF_CRC_OFF))
bc1a09b8
DW
410 xfs_verifier_error(bp, -EFSBADCRC, __this_address);
411 else {
412 fa = xfs_attr3_leaf_verify(bp);
413 if (fa)
414 xfs_verifier_error(bp, -EFSCORRUPTED, fa);
415 }
ad14c33a
DC
416}
417
517c2220 418const struct xfs_buf_ops xfs_attr3_leaf_buf_ops = {
233135b7 419 .name = "xfs_attr3_leaf",
15baadf7
DW
420 .magic16 = { cpu_to_be16(XFS_ATTR_LEAF_MAGIC),
421 cpu_to_be16(XFS_ATTR3_LEAF_MAGIC) },
517c2220
DC
422 .verify_read = xfs_attr3_leaf_read_verify,
423 .verify_write = xfs_attr3_leaf_write_verify,
b5572597 424 .verify_struct = xfs_attr3_leaf_verify,
1813dd64 425};
612cfbfe 426
ad14c33a 427int
517c2220 428xfs_attr3_leaf_read(
ad14c33a
DC
429 struct xfs_trans *tp,
430 struct xfs_inode *dp,
431 xfs_dablk_t bno,
ad14c33a
DC
432 struct xfs_buf **bpp)
433{
d75afeb3
DC
434 int err;
435
cd2c9f1b 436 err = xfs_da_read_buf(tp, dp, bno, 0, bpp, XFS_ATTR_FORK,
dfb87594 437 &xfs_attr3_leaf_buf_ops);
cd87d867 438 if (!err && tp && *bpp)
61fe135c 439 xfs_trans_buf_set_type(tp, *bpp, XFS_BLFT_ATTR_LEAF_BUF);
d75afeb3 440 return err;
ad14c33a
DC
441}
442
726801ba
TS
443/*========================================================================
444 * Namespace helper routines
445 *========================================================================*/
446
377f16ac
CH
447static bool
448xfs_attr_match(
449 struct xfs_da_args *args,
450 uint8_t namelen,
451 unsigned char *name,
452 int flags)
726801ba 453{
377f16ac
CH
454 if (args->namelen != namelen)
455 return false;
456 if (memcmp(args->name, name, namelen) != 0)
457 return false;
254f800f
CH
458 /*
459 * If we are looking for incomplete entries, show only those, else only
460 * show complete entries.
461 */
462 if (args->attr_filter !=
463 (flags & (XFS_ATTR_NSP_ONDISK_MASK | XFS_ATTR_INCOMPLETE)))
377f16ac
CH
464 return false;
465 return true;
726801ba
TS
466}
467
9df243a1
DC
468static int
469xfs_attr_copy_value(
470 struct xfs_da_args *args,
471 unsigned char *value,
472 int valuelen)
473{
474 /*
475 * No copy if all we have to do is get the length
476 */
e513e25c 477 if (!args->valuelen) {
9df243a1
DC
478 args->valuelen = valuelen;
479 return 0;
480 }
481
482 /*
483 * No copy if the length of the existing buffer is too small
484 */
485 if (args->valuelen < valuelen) {
486 args->valuelen = valuelen;
487 return -ERANGE;
488 }
ddbca70c 489
d49db18b 490 if (!args->value) {
6dcde60e 491 args->value = kmem_alloc_large(valuelen, KM_NOLOCKDEP);
ddbca70c
DC
492 if (!args->value)
493 return -ENOMEM;
494 }
9df243a1
DC
495 args->valuelen = valuelen;
496
497 /* remote block xattr requires IO for copy-in */
498 if (args->rmtblkno)
499 return xfs_attr_rmtval_get(args);
500
501 /*
502 * This is to prevent a GCC warning because the remote xattr case
503 * doesn't have a value to pass in. In that case, we never reach here,
504 * but GCC can't work that out and so throws a "passing NULL to
505 * memcpy" warning.
506 */
507 if (!value)
508 return -EINVAL;
509 memcpy(args->value, value, valuelen);
510 return 0;
511}
1da177e4
LT
512
513/*========================================================================
d8cc890d 514 * External routines when attribute fork size < XFS_LITINO(mp).
1da177e4
LT
515 *========================================================================*/
516
517/*
d8cc890d
NS
518 * Query whether the requested number of additional bytes of extended
519 * attribute space will be able to fit inline.
4c393a60 520 *
d8cc890d
NS
521 * Returns zero if not, else the di_forkoff fork offset to be used in the
522 * literal area for attribute data once the new bytes have been added.
523 *
524 * di_forkoff must be 8 byte aligned, hence is stored as a >>3 value;
525 * special case for dev/uuid inodes, they have fixed size data forks.
1da177e4
LT
526 */
527int
3f8a4f1d
DC
528xfs_attr_shortform_bytesfit(
529 struct xfs_inode *dp,
530 int bytes)
d8cc890d 531{
3f8a4f1d
DC
532 struct xfs_mount *mp = dp->i_mount;
533 int64_t dsize;
534 int minforkoff;
535 int maxforkoff;
536 int offset;
d8cc890d 537
56cea2d0 538 /* rounded down */
e9e2eae8 539 offset = (XFS_LITINO(mp) - bytes) >> 3;
d8cc890d 540
f7e67b20 541 if (dp->i_df.if_format == XFS_DINODE_FMT_DEV) {
d8cc890d
NS
542 minforkoff = roundup(sizeof(xfs_dev_t), 8) >> 3;
543 return (offset >= minforkoff) ? minforkoff : 0;
d8cc890d
NS
544 }
545
4c393a60
CH
546 /*
547 * If the requested numbers of bytes is smaller or equal to the
548 * current attribute fork size we can always proceed.
549 *
550 * Note that if_bytes in the data fork might actually be larger than
551 * the current data fork size is due to delalloc extents. In that
552 * case either the extent count will go down when they are converted
553 * to real extents, or the delalloc conversion will take care of the
554 * literal area rebalancing.
555 */
556 if (bytes <= XFS_IFORK_ASIZE(dp))
557 return dp->i_d.di_forkoff;
558
559 /*
560 * For attr2 we can try to move the forkoff if there is space in the
561 * literal area, but for the old format we are done if there is no
562 * space in the fixed attribute fork.
563 */
564 if (!(mp->m_flags & XFS_MOUNT_ATTR2))
da087bad 565 return 0;
da087bad 566
e5889e90 567 dsize = dp->i_df.if_bytes;
4c393a60 568
f7e67b20 569 switch (dp->i_df.if_format) {
e5889e90 570 case XFS_DINODE_FMT_EXTENTS:
4c393a60 571 /*
e5889e90 572 * If there is no attr fork and the data fork is extents,
4c393a60
CH
573 * determine if creating the default attr fork will result
574 * in the extents form migrating to btree. If so, the
575 * minimum offset only needs to be the space required for
e5889e90 576 * the btree root.
4c393a60 577 */
1a5902c5
CH
578 if (!dp->i_d.di_forkoff && dp->i_df.if_bytes >
579 xfs_default_attroffset(dp))
e5889e90
BN
580 dsize = XFS_BMDR_SPACE_CALC(MINDBTPTRS);
581 break;
e5889e90
BN
582 case XFS_DINODE_FMT_BTREE:
583 /*
4c393a60
CH
584 * If we have a data btree then keep forkoff if we have one,
585 * otherwise we are adding a new attr, so then we set
586 * minforkoff to where the btree root can finish so we have
e5889e90
BN
587 * plenty of room for attrs
588 */
589 if (dp->i_d.di_forkoff) {
4c393a60 590 if (offset < dp->i_d.di_forkoff)
e5889e90 591 return 0;
4c393a60
CH
592 return dp->i_d.di_forkoff;
593 }
ee1a47ab 594 dsize = XFS_BMAP_BROOT_SPACE(mp, dp->i_df.if_broot);
e5889e90
BN
595 break;
596 }
4c393a60
CH
597
598 /*
599 * A data fork btree root must have space for at least
e5889e90
BN
600 * MINDBTPTRS key/ptr pairs if the data fork is small or empty.
601 */
3f8a4f1d 602 minforkoff = max_t(int64_t, dsize, XFS_BMDR_SPACE_CALC(MINDBTPTRS));
d8cc890d
NS
603 minforkoff = roundup(minforkoff, 8) >> 3;
604
605 /* attr fork btree root can have at least this many key/ptr pairs */
e9e2eae8 606 maxforkoff = XFS_LITINO(mp) - XFS_BMDR_SPACE_CALC(MINABTPTRS);
d8cc890d
NS
607 maxforkoff = maxforkoff >> 3; /* rounded down */
608
d8cc890d
NS
609 if (offset >= maxforkoff)
610 return maxforkoff;
4c393a60
CH
611 if (offset >= minforkoff)
612 return offset;
d8cc890d
NS
613 return 0;
614}
615
616/*
617 * Switch on the ATTR2 superblock bit (implies also FEATURES2)
618 */
619STATIC void
620xfs_sbversion_add_attr2(xfs_mount_t *mp, xfs_trans_t *tp)
621{
13059ff0 622 if ((mp->m_flags & XFS_MOUNT_ATTR2) &&
62118709 623 !(xfs_sb_version_hasattr2(&mp->m_sb))) {
3685c2a1 624 spin_lock(&mp->m_sb_lock);
62118709
ES
625 if (!xfs_sb_version_hasattr2(&mp->m_sb)) {
626 xfs_sb_version_addattr2(&mp->m_sb);
3685c2a1 627 spin_unlock(&mp->m_sb_lock);
61e63ecb 628 xfs_log_sb(tp);
d8cc890d 629 } else
3685c2a1 630 spin_unlock(&mp->m_sb_lock);
d8cc890d
NS
631 }
632}
633
634/*
635 * Create the initial contents of a shortform attribute list.
636 */
637void
f7e67b20
CH
638xfs_attr_shortform_create(
639 struct xfs_da_args *args)
1da177e4 640{
f7e67b20
CH
641 struct xfs_inode *dp = args->dp;
642 struct xfs_ifork *ifp = dp->i_afp;
643 struct xfs_attr_sf_hdr *hdr;
1da177e4 644
5a5881cd
DC
645 trace_xfs_attr_sf_create(args);
646
1da177e4 647 ASSERT(ifp->if_bytes == 0);
f7e67b20 648 if (ifp->if_format == XFS_DINODE_FMT_EXTENTS) {
1da177e4 649 ifp->if_flags &= ~XFS_IFEXTENTS; /* just in case */
f7e67b20 650 ifp->if_format = XFS_DINODE_FMT_LOCAL;
1da177e4
LT
651 ifp->if_flags |= XFS_IFINLINE;
652 } else {
653 ASSERT(ifp->if_flags & XFS_IFINLINE);
654 }
655 xfs_idata_realloc(dp, sizeof(*hdr), XFS_ATTR_FORK);
125eac24
DW
656 hdr = (struct xfs_attr_sf_hdr *)ifp->if_u1.if_data;
657 memset(hdr, 0, sizeof(*hdr));
3b244aa8 658 hdr->totsize = cpu_to_be16(sizeof(*hdr));
1da177e4 659 xfs_trans_log_inode(args->trans, dp, XFS_ILOG_CORE | XFS_ILOG_ADATA);
1da177e4
LT
660}
661
07120f1a
AC
662/*
663 * Return -EEXIST if attr is found, or -ENOATTR if not
664 * args: args containing attribute name and namelen
665 * sfep: If not null, pointer will be set to the last attr entry found on
666 -EEXIST. On -ENOATTR pointer is left at the last entry in the list
667 * basep: If not null, pointer is set to the byte offset of the entry in the
668 * list on -EEXIST. On -ENOATTR, pointer is left at the byte offset of
669 * the last entry in the list
670 */
671int
672xfs_attr_sf_findname(
673 struct xfs_da_args *args,
674 struct xfs_attr_sf_entry **sfep,
675 unsigned int *basep)
676{
677 struct xfs_attr_shortform *sf;
678 struct xfs_attr_sf_entry *sfe;
679 unsigned int base = sizeof(struct xfs_attr_sf_hdr);
680 int size = 0;
681 int end;
682 int i;
683
684 sf = (struct xfs_attr_shortform *)args->dp->i_afp->if_u1.if_data;
685 sfe = &sf->list[0];
686 end = sf->hdr.count;
687 for (i = 0; i < end; sfe = XFS_ATTR_SF_NEXTENTRY(sfe),
688 base += size, i++) {
689 size = XFS_ATTR_SF_ENTSIZE(sfe);
690 if (!xfs_attr_match(args, sfe->namelen, sfe->nameval,
691 sfe->flags))
692 continue;
693 break;
694 }
695
696 if (sfep != NULL)
697 *sfep = sfe;
698
699 if (basep != NULL)
700 *basep = base;
701
702 if (i == end)
703 return -ENOATTR;
704 return -EEXIST;
705}
706
1da177e4
LT
707/*
708 * Add a name/value pair to the shortform attribute list.
709 * Overflow from the inode has already been checked for.
710 */
d8cc890d 711void
07120f1a
AC
712xfs_attr_shortform_add(
713 struct xfs_da_args *args,
714 int forkoff)
1da177e4 715{
07120f1a
AC
716 struct xfs_attr_shortform *sf;
717 struct xfs_attr_sf_entry *sfe;
718 int offset, size;
719 struct xfs_mount *mp;
720 struct xfs_inode *dp;
721 struct xfs_ifork *ifp;
1da177e4 722
5a5881cd
DC
723 trace_xfs_attr_sf_add(args);
724
1da177e4 725 dp = args->dp;
d8cc890d
NS
726 mp = dp->i_mount;
727 dp->i_d.di_forkoff = forkoff;
d8cc890d 728
1da177e4
LT
729 ifp = dp->i_afp;
730 ASSERT(ifp->if_flags & XFS_IFINLINE);
47e6cc10 731 sf = (struct xfs_attr_shortform *)ifp->if_u1.if_data;
07120f1a
AC
732 if (xfs_attr_sf_findname(args, &sfe, NULL) == -EEXIST)
733 ASSERT(0);
1da177e4
LT
734
735 offset = (char *)sfe - (char *)sf;
736 size = XFS_ATTR_SF_ENTSIZE_BYNAME(args->namelen, args->valuelen);
737 xfs_idata_realloc(dp, size, XFS_ATTR_FORK);
47e6cc10 738 sf = (struct xfs_attr_shortform *)ifp->if_u1.if_data;
6337c844 739 sfe = (struct xfs_attr_sf_entry *)((char *)sf + offset);
1da177e4
LT
740
741 sfe->namelen = args->namelen;
3b244aa8 742 sfe->valuelen = args->valuelen;
d5f0f49a 743 sfe->flags = args->attr_filter;
1da177e4
LT
744 memcpy(sfe->nameval, args->name, args->namelen);
745 memcpy(&sfe->nameval[args->namelen], args->value, args->valuelen);
3b244aa8 746 sf->hdr.count++;
413d57c9 747 be16_add_cpu(&sf->hdr.totsize, size);
1da177e4
LT
748 xfs_trans_log_inode(args->trans, dp, XFS_ILOG_CORE | XFS_ILOG_ADATA);
749
d8cc890d 750 xfs_sbversion_add_attr2(mp, args->trans);
1da177e4
LT
751}
752
e1486dea
CH
753/*
754 * After the last attribute is removed revert to original inode format,
755 * making all literal area available to the data fork once more.
756 */
6dfe5a04
DC
757void
758xfs_attr_fork_remove(
e1486dea
CH
759 struct xfs_inode *ip,
760 struct xfs_trans *tp)
761{
daf83964
CH
762 ASSERT(ip->i_afp->if_nextents == 0);
763
ef838512
CH
764 xfs_idestroy_fork(ip->i_afp);
765 kmem_cache_free(xfs_ifork_zone, ip->i_afp);
766 ip->i_afp = NULL;
e1486dea 767 ip->i_d.di_forkoff = 0;
e1486dea
CH
768 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
769}
770
1da177e4 771/*
d8cc890d 772 * Remove an attribute from the shortform attribute list structure.
1da177e4
LT
773 */
774int
07120f1a
AC
775xfs_attr_shortform_remove(
776 struct xfs_da_args *args)
1da177e4 777{
07120f1a
AC
778 struct xfs_attr_shortform *sf;
779 struct xfs_attr_sf_entry *sfe;
780 int size = 0, end, totsize;
781 unsigned int base;
782 struct xfs_mount *mp;
783 struct xfs_inode *dp;
784 int error;
1da177e4 785
5a5881cd
DC
786 trace_xfs_attr_sf_remove(args);
787
1da177e4 788 dp = args->dp;
d8cc890d 789 mp = dp->i_mount;
47e6cc10 790 sf = (struct xfs_attr_shortform *)dp->i_afp->if_u1.if_data;
07120f1a
AC
791
792 error = xfs_attr_sf_findname(args, &sfe, &base);
793 if (error != -EEXIST)
794 return error;
795 size = XFS_ATTR_SF_ENTSIZE(sfe);
1da177e4 796
d8cc890d
NS
797 /*
798 * Fix up the attribute fork data, covering the hole
799 */
1da177e4 800 end = base + size;
3b244aa8 801 totsize = be16_to_cpu(sf->hdr.totsize);
d8cc890d
NS
802 if (end != totsize)
803 memmove(&((char *)sf)[base], &((char *)sf)[end], totsize - end);
3b244aa8 804 sf->hdr.count--;
413d57c9 805 be16_add_cpu(&sf->hdr.totsize, -size);
d8cc890d
NS
806
807 /*
808 * Fix up the start offset of the attribute fork
809 */
810 totsize -= size;
6a178100 811 if (totsize == sizeof(xfs_attr_sf_hdr_t) &&
e1486dea 812 (mp->m_flags & XFS_MOUNT_ATTR2) &&
f7e67b20 813 (dp->i_df.if_format != XFS_DINODE_FMT_BTREE) &&
e1486dea 814 !(args->op_flags & XFS_DA_OP_ADDNAME)) {
6dfe5a04 815 xfs_attr_fork_remove(dp, args->trans);
d8cc890d
NS
816 } else {
817 xfs_idata_realloc(dp, -size, XFS_ATTR_FORK);
818 dp->i_d.di_forkoff = xfs_attr_shortform_bytesfit(dp, totsize);
819 ASSERT(dp->i_d.di_forkoff);
6a178100
BN
820 ASSERT(totsize > sizeof(xfs_attr_sf_hdr_t) ||
821 (args->op_flags & XFS_DA_OP_ADDNAME) ||
822 !(mp->m_flags & XFS_MOUNT_ATTR2) ||
f7e67b20 823 dp->i_df.if_format == XFS_DINODE_FMT_BTREE);
d8cc890d
NS
824 xfs_trans_log_inode(args->trans, dp,
825 XFS_ILOG_CORE | XFS_ILOG_ADATA);
826 }
827
828 xfs_sbversion_add_attr2(mp, args->trans);
1da177e4 829
d99831ff 830 return 0;
1da177e4
LT
831}
832
833/*
834 * Look up a name in a shortform attribute list structure.
835 */
836/*ARGSUSED*/
837int
838xfs_attr_shortform_lookup(xfs_da_args_t *args)
839{
47e6cc10 840 struct xfs_attr_shortform *sf;
6337c844 841 struct xfs_attr_sf_entry *sfe;
1da177e4 842 int i;
3ba738df 843 struct xfs_ifork *ifp;
1da177e4 844
5a5881cd
DC
845 trace_xfs_attr_sf_lookup(args);
846
1da177e4
LT
847 ifp = args->dp->i_afp;
848 ASSERT(ifp->if_flags & XFS_IFINLINE);
47e6cc10 849 sf = (struct xfs_attr_shortform *)ifp->if_u1.if_data;
1da177e4 850 sfe = &sf->list[0];
3b244aa8 851 for (i = 0; i < sf->hdr.count;
1da177e4 852 sfe = XFS_ATTR_SF_NEXTENTRY(sfe), i++) {
377f16ac
CH
853 if (xfs_attr_match(args, sfe->namelen, sfe->nameval,
854 sfe->flags))
855 return -EEXIST;
1da177e4 856 }
2451337d 857 return -ENOATTR;
1da177e4
LT
858}
859
860/*
cf085a1b 861 * Retrieve the attribute value and length.
728bcaa3 862 *
e513e25c
CH
863 * If args->valuelen is zero, only the length needs to be returned. Unlike a
864 * lookup, we only return an error if the attribute does not exist or we can't
865 * retrieve the value.
1da177e4 866 */
1da177e4 867int
9df243a1
DC
868xfs_attr_shortform_getvalue(
869 struct xfs_da_args *args)
1da177e4 870{
9df243a1
DC
871 struct xfs_attr_shortform *sf;
872 struct xfs_attr_sf_entry *sfe;
873 int i;
1da177e4 874
914ed44b 875 ASSERT(args->dp->i_afp->if_flags == XFS_IFINLINE);
47e6cc10 876 sf = (struct xfs_attr_shortform *)args->dp->i_afp->if_u1.if_data;
1da177e4 877 sfe = &sf->list[0];
3b244aa8 878 for (i = 0; i < sf->hdr.count;
1da177e4 879 sfe = XFS_ATTR_SF_NEXTENTRY(sfe), i++) {
377f16ac
CH
880 if (xfs_attr_match(args, sfe->namelen, sfe->nameval,
881 sfe->flags))
882 return xfs_attr_copy_value(args,
883 &sfe->nameval[args->namelen], sfe->valuelen);
1da177e4 884 }
2451337d 885 return -ENOATTR;
1da177e4
LT
886}
887
888/*
6e643cd0
DW
889 * Convert from using the shortform to the leaf. On success, return the
890 * buffer so that we can keep it locked until we're totally done with it.
1da177e4
LT
891 */
892int
6e643cd0 893xfs_attr_shortform_to_leaf(
32a9b7c6
BF
894 struct xfs_da_args *args,
895 struct xfs_buf **leaf_bp)
1da177e4 896{
32a9b7c6
BF
897 struct xfs_inode *dp;
898 struct xfs_attr_shortform *sf;
899 struct xfs_attr_sf_entry *sfe;
900 struct xfs_da_args nargs;
901 char *tmpbuffer;
902 int error, i, size;
903 xfs_dablk_t blkno;
904 struct xfs_buf *bp;
905 struct xfs_ifork *ifp;
1da177e4 906
5a5881cd
DC
907 trace_xfs_attr_sf_to_leaf(args);
908
1da177e4
LT
909 dp = args->dp;
910 ifp = dp->i_afp;
47e6cc10 911 sf = (struct xfs_attr_shortform *)ifp->if_u1.if_data;
3b244aa8 912 size = be16_to_cpu(sf->hdr.totsize);
707e0dda 913 tmpbuffer = kmem_alloc(size, 0);
1da177e4
LT
914 ASSERT(tmpbuffer != NULL);
915 memcpy(tmpbuffer, ifp->if_u1.if_data, size);
47e6cc10 916 sf = (struct xfs_attr_shortform *)tmpbuffer;
1da177e4
LT
917
918 xfs_idata_realloc(dp, -size, XFS_ATTR_FORK);
aeea4b75 919 xfs_bmap_local_to_extents_empty(args->trans, dp, XFS_ATTR_FORK);
f3508bcd 920
1da177e4
LT
921 bp = NULL;
922 error = xfs_da_grow_inode(args, &blkno);
603efebd 923 if (error)
1da177e4 924 goto out;
1da177e4
LT
925
926 ASSERT(blkno == 0);
517c2220 927 error = xfs_attr3_leaf_create(args, blkno, &bp);
603efebd 928 if (error)
1da177e4 929 goto out;
1da177e4
LT
930
931 memset((char *)&nargs, 0, sizeof(nargs));
932 nargs.dp = dp;
0650b554 933 nargs.geo = args->geo;
1da177e4
LT
934 nargs.total = args->total;
935 nargs.whichfork = XFS_ATTR_FORK;
936 nargs.trans = args->trans;
6a178100 937 nargs.op_flags = XFS_DA_OP_OKNOENT;
1da177e4
LT
938
939 sfe = &sf->list[0];
3b244aa8 940 for (i = 0; i < sf->hdr.count; i++) {
a9273ca5 941 nargs.name = sfe->nameval;
1da177e4 942 nargs.namelen = sfe->namelen;
a9273ca5 943 nargs.value = &sfe->nameval[nargs.namelen];
3b244aa8 944 nargs.valuelen = sfe->valuelen;
a9273ca5 945 nargs.hashval = xfs_da_hashname(sfe->nameval,
1da177e4 946 sfe->namelen);
d5f0f49a 947 nargs.attr_filter = sfe->flags & XFS_ATTR_NSP_ONDISK_MASK;
517c2220 948 error = xfs_attr3_leaf_lookup_int(bp, &nargs); /* set a->index */
2451337d 949 ASSERT(error == -ENOATTR);
517c2220 950 error = xfs_attr3_leaf_add(bp, &nargs);
2451337d 951 ASSERT(error != -ENOSPC);
1da177e4
LT
952 if (error)
953 goto out;
954 sfe = XFS_ATTR_SF_NEXTENTRY(sfe);
955 }
956 error = 0;
6e643cd0 957 *leaf_bp = bp;
1da177e4 958out:
f0e2d93c 959 kmem_free(tmpbuffer);
d99831ff 960 return error;
1da177e4
LT
961}
962
1da177e4
LT
963/*
964 * Check a leaf attribute block to see if all the entries would fit into
965 * a shortform attribute list.
966 */
967int
1d9025e5 968xfs_attr_shortform_allfit(
b38958d7
DC
969 struct xfs_buf *bp,
970 struct xfs_inode *dp)
1da177e4 971{
b38958d7
DC
972 struct xfs_attr_leafblock *leaf;
973 struct xfs_attr_leaf_entry *entry;
1da177e4 974 xfs_attr_leaf_name_local_t *name_loc;
b38958d7
DC
975 struct xfs_attr3_icleaf_hdr leafhdr;
976 int bytes;
977 int i;
dbd329f1 978 struct xfs_mount *mp = bp->b_mount;
1da177e4 979
1d9025e5 980 leaf = bp->b_addr;
2f661241 981 xfs_attr3_leaf_hdr_from_disk(mp->m_attr_geo, &leafhdr, leaf);
b38958d7 982 entry = xfs_attr3_leaf_entryp(leaf);
1da177e4 983
1da177e4 984 bytes = sizeof(struct xfs_attr_sf_hdr);
b38958d7 985 for (i = 0; i < leafhdr.count; entry++, i++) {
1da177e4
LT
986 if (entry->flags & XFS_ATTR_INCOMPLETE)
987 continue; /* don't copy partial entries */
988 if (!(entry->flags & XFS_ATTR_LOCAL))
d99831ff 989 return 0;
517c2220 990 name_loc = xfs_attr3_leaf_name_local(leaf, i);
1da177e4 991 if (name_loc->namelen >= XFS_ATTR_SF_ENTSIZE_MAX)
d99831ff 992 return 0;
053b5758 993 if (be16_to_cpu(name_loc->valuelen) >= XFS_ATTR_SF_ENTSIZE_MAX)
d99831ff 994 return 0;
c418dbc9
CM
995 bytes += XFS_ATTR_SF_ENTSIZE_BYNAME(name_loc->namelen,
996 be16_to_cpu(name_loc->valuelen));
1da177e4 997 }
13059ff0 998 if ((dp->i_mount->m_flags & XFS_MOUNT_ATTR2) &&
f7e67b20 999 (dp->i_df.if_format != XFS_DINODE_FMT_BTREE) &&
e0144ca5 1000 (bytes == sizeof(struct xfs_attr_sf_hdr)))
b38958d7
DC
1001 return -1;
1002 return xfs_attr_shortform_bytesfit(dp, bytes);
1da177e4
LT
1003}
1004
1e1bbd8e
DW
1005/* Verify the consistency of an inline attribute fork. */
1006xfs_failaddr_t
1007xfs_attr_shortform_verify(
1008 struct xfs_inode *ip)
1009{
1010 struct xfs_attr_shortform *sfp;
1011 struct xfs_attr_sf_entry *sfep;
1012 struct xfs_attr_sf_entry *next_sfep;
1013 char *endp;
1014 struct xfs_ifork *ifp;
1015 int i;
3f8a4f1d 1016 int64_t size;
1e1bbd8e 1017
f7e67b20 1018 ASSERT(ip->i_afp->if_format == XFS_DINODE_FMT_LOCAL);
1e1bbd8e
DW
1019 ifp = XFS_IFORK_PTR(ip, XFS_ATTR_FORK);
1020 sfp = (struct xfs_attr_shortform *)ifp->if_u1.if_data;
1021 size = ifp->if_bytes;
1022
1023 /*
1024 * Give up if the attribute is way too short.
1025 */
1026 if (size < sizeof(struct xfs_attr_sf_hdr))
1027 return __this_address;
1028
1029 endp = (char *)sfp + size;
1030
1031 /* Check all reported entries */
1032 sfep = &sfp->list[0];
1033 for (i = 0; i < sfp->hdr.count; i++) {
1034 /*
1035 * struct xfs_attr_sf_entry has a variable length.
1036 * Check the fixed-offset parts of the structure are
1037 * within the data buffer.
f4020438
ES
1038 * xfs_attr_sf_entry is defined with a 1-byte variable
1039 * array at the end, so we must subtract that off.
1e1bbd8e 1040 */
c418dbc9 1041 if (((char *)sfep + sizeof(*sfep)) >= endp)
1e1bbd8e
DW
1042 return __this_address;
1043
1044 /* Don't allow names with known bad length. */
1045 if (sfep->namelen == 0)
1046 return __this_address;
1047
1048 /*
1049 * Check that the variable-length part of the structure is
1050 * within the data buffer. The next entry starts after the
1051 * name component, so nextentry is an acceptable test.
1052 */
1053 next_sfep = XFS_ATTR_SF_NEXTENTRY(sfep);
1054 if ((char *)next_sfep > endp)
1055 return __this_address;
1056
1057 /*
1058 * Check for unknown flags. Short form doesn't support
1059 * the incomplete or local bits, so we can use the namespace
1060 * mask here.
1061 */
1062 if (sfep->flags & ~XFS_ATTR_NSP_ONDISK_MASK)
1063 return __this_address;
1064
1065 /*
1066 * Check for invalid namespace combinations. We only allow
1067 * one namespace flag per xattr, so we can just count the
1068 * bits (i.e. hweight) here.
1069 */
1070 if (hweight8(sfep->flags & XFS_ATTR_NSP_ONDISK_MASK) > 1)
1071 return __this_address;
1072
1073 sfep = next_sfep;
1074 }
1075 if ((void *)sfep != (void *)endp)
1076 return __this_address;
1077
1078 return NULL;
1079}
1080
1da177e4
LT
1081/*
1082 * Convert a leaf attribute list to shortform attribute list
1083 */
1084int
517c2220
DC
1085xfs_attr3_leaf_to_shortform(
1086 struct xfs_buf *bp,
1087 struct xfs_da_args *args,
1088 int forkoff)
1da177e4 1089{
517c2220
DC
1090 struct xfs_attr_leafblock *leaf;
1091 struct xfs_attr3_icleaf_hdr ichdr;
1092 struct xfs_attr_leaf_entry *entry;
1093 struct xfs_attr_leaf_name_local *name_loc;
1094 struct xfs_da_args nargs;
1095 struct xfs_inode *dp = args->dp;
1096 char *tmpbuffer;
1097 int error;
1098 int i;
1da177e4 1099
5a5881cd
DC
1100 trace_xfs_attr_leaf_to_sf(args);
1101
707e0dda 1102 tmpbuffer = kmem_alloc(args->geo->blksize, 0);
517c2220 1103 if (!tmpbuffer)
2451337d 1104 return -ENOMEM;
1da177e4 1105
c2c4c477 1106 memcpy(tmpbuffer, bp->b_addr, args->geo->blksize);
517c2220 1107
1da177e4 1108 leaf = (xfs_attr_leafblock_t *)tmpbuffer;
2f661241 1109 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220
DC
1110 entry = xfs_attr3_leaf_entryp(leaf);
1111
1112 /* XXX (dgc): buffer is about to be marked stale - why zero it? */
c2c4c477 1113 memset(bp->b_addr, 0, args->geo->blksize);
1da177e4
LT
1114
1115 /*
1116 * Clean out the prior contents of the attribute list.
1117 */
1118 error = xfs_da_shrink_inode(args, 0, bp);
1119 if (error)
1120 goto out;
d8cc890d
NS
1121
1122 if (forkoff == -1) {
13059ff0 1123 ASSERT(dp->i_mount->m_flags & XFS_MOUNT_ATTR2);
f7e67b20 1124 ASSERT(dp->i_df.if_format != XFS_DINODE_FMT_BTREE);
6dfe5a04 1125 xfs_attr_fork_remove(dp, args->trans);
1da177e4 1126 goto out;
d8cc890d
NS
1127 }
1128
1129 xfs_attr_shortform_create(args);
1da177e4
LT
1130
1131 /*
1132 * Copy the attributes
1133 */
1134 memset((char *)&nargs, 0, sizeof(nargs));
0650b554 1135 nargs.geo = args->geo;
1da177e4 1136 nargs.dp = dp;
1da177e4
LT
1137 nargs.total = args->total;
1138 nargs.whichfork = XFS_ATTR_FORK;
1139 nargs.trans = args->trans;
6a178100 1140 nargs.op_flags = XFS_DA_OP_OKNOENT;
517c2220
DC
1141
1142 for (i = 0; i < ichdr.count; entry++, i++) {
1da177e4
LT
1143 if (entry->flags & XFS_ATTR_INCOMPLETE)
1144 continue; /* don't copy partial entries */
1145 if (!entry->nameidx)
1146 continue;
1147 ASSERT(entry->flags & XFS_ATTR_LOCAL);
517c2220 1148 name_loc = xfs_attr3_leaf_name_local(leaf, i);
a9273ca5 1149 nargs.name = name_loc->nameval;
1da177e4 1150 nargs.namelen = name_loc->namelen;
a9273ca5 1151 nargs.value = &name_loc->nameval[nargs.namelen];
053b5758 1152 nargs.valuelen = be16_to_cpu(name_loc->valuelen);
6b19f2d8 1153 nargs.hashval = be32_to_cpu(entry->hashval);
d5f0f49a 1154 nargs.attr_filter = entry->flags & XFS_ATTR_NSP_ONDISK_MASK;
d8cc890d 1155 xfs_attr_shortform_add(&nargs, forkoff);
1da177e4
LT
1156 }
1157 error = 0;
1158
1159out:
f0e2d93c 1160 kmem_free(tmpbuffer);
517c2220 1161 return error;
1da177e4
LT
1162}
1163
1164/*
1165 * Convert from using a single leaf to a root node and a leaf.
1166 */
1167int
517c2220
DC
1168xfs_attr3_leaf_to_node(
1169 struct xfs_da_args *args)
1da177e4 1170{
517c2220
DC
1171 struct xfs_attr_leafblock *leaf;
1172 struct xfs_attr3_icleaf_hdr icleafhdr;
1173 struct xfs_attr_leaf_entry *entries;
517c2220
DC
1174 struct xfs_da3_icnode_hdr icnodehdr;
1175 struct xfs_da_intnode *node;
1176 struct xfs_inode *dp = args->dp;
1177 struct xfs_mount *mp = dp->i_mount;
1178 struct xfs_buf *bp1 = NULL;
1179 struct xfs_buf *bp2 = NULL;
1180 xfs_dablk_t blkno;
1181 int error;
1da177e4 1182
5a5881cd
DC
1183 trace_xfs_attr_leaf_to_node(args);
1184
1da177e4
LT
1185 error = xfs_da_grow_inode(args, &blkno);
1186 if (error)
1187 goto out;
dfb87594 1188 error = xfs_attr3_leaf_read(args->trans, dp, 0, &bp1);
1da177e4
LT
1189 if (error)
1190 goto out;
ad14c33a 1191
2911edb6 1192 error = xfs_da_get_buf(args->trans, dp, blkno, &bp2, XFS_ATTR_FORK);
1da177e4
LT
1193 if (error)
1194 goto out;
517c2220
DC
1195
1196 /* copy leaf to new buffer, update identifiers */
61fe135c 1197 xfs_trans_buf_set_type(args->trans, bp2, XFS_BLFT_ATTR_LEAF_BUF);
1813dd64 1198 bp2->b_ops = bp1->b_ops;
c2c4c477 1199 memcpy(bp2->b_addr, bp1->b_addr, args->geo->blksize);
517c2220
DC
1200 if (xfs_sb_version_hascrc(&mp->m_sb)) {
1201 struct xfs_da3_blkinfo *hdr3 = bp2->b_addr;
1202 hdr3->blkno = cpu_to_be64(bp2->b_bn);
1203 }
c2c4c477 1204 xfs_trans_log_buf(args->trans, bp2, 0, args->geo->blksize - 1);
1da177e4
LT
1205
1206 /*
1207 * Set up the new root node.
1208 */
f5ea1100 1209 error = xfs_da3_node_create(args, 0, 1, &bp1, XFS_ATTR_FORK);
1da177e4
LT
1210 if (error)
1211 goto out;
1d9025e5 1212 node = bp1->b_addr;
f475dc4d 1213 xfs_da3_node_hdr_from_disk(mp, &icnodehdr, node);
517c2220 1214
1d9025e5 1215 leaf = bp2->b_addr;
2f661241 1216 xfs_attr3_leaf_hdr_from_disk(args->geo, &icleafhdr, leaf);
517c2220
DC
1217 entries = xfs_attr3_leaf_entryp(leaf);
1218
1da177e4 1219 /* both on-disk, don't endian-flip twice */
51908ca7
CH
1220 icnodehdr.btree[0].hashval = entries[icleafhdr.count - 1].hashval;
1221 icnodehdr.btree[0].before = cpu_to_be32(blkno);
517c2220 1222 icnodehdr.count = 1;
e1c8af1e 1223 xfs_da3_node_hdr_to_disk(dp->i_mount, node, &icnodehdr);
c2c4c477 1224 xfs_trans_log_buf(args->trans, bp1, 0, args->geo->blksize - 1);
1da177e4
LT
1225 error = 0;
1226out:
517c2220 1227 return error;
1da177e4
LT
1228}
1229
1da177e4
LT
1230/*========================================================================
1231 * Routines used for growing the Btree.
1232 *========================================================================*/
1233
1234/*
1235 * Create the initial contents of a leaf attribute list
1236 * or a leaf in a node attribute list.
1237 */
ba0f32d4 1238STATIC int
517c2220
DC
1239xfs_attr3_leaf_create(
1240 struct xfs_da_args *args,
1241 xfs_dablk_t blkno,
1242 struct xfs_buf **bpp)
1da177e4 1243{
517c2220
DC
1244 struct xfs_attr_leafblock *leaf;
1245 struct xfs_attr3_icleaf_hdr ichdr;
1246 struct xfs_inode *dp = args->dp;
1247 struct xfs_mount *mp = dp->i_mount;
1248 struct xfs_buf *bp;
1249 int error;
1da177e4 1250
5a5881cd
DC
1251 trace_xfs_attr_leaf_create(args);
1252
2911edb6 1253 error = xfs_da_get_buf(args->trans, args->dp, blkno, &bp,
1da177e4
LT
1254 XFS_ATTR_FORK);
1255 if (error)
517c2220
DC
1256 return error;
1257 bp->b_ops = &xfs_attr3_leaf_buf_ops;
61fe135c 1258 xfs_trans_buf_set_type(args->trans, bp, XFS_BLFT_ATTR_LEAF_BUF);
1d9025e5 1259 leaf = bp->b_addr;
c2c4c477 1260 memset(leaf, 0, args->geo->blksize);
517c2220
DC
1261
1262 memset(&ichdr, 0, sizeof(ichdr));
c2c4c477 1263 ichdr.firstused = args->geo->blksize;
517c2220
DC
1264
1265 if (xfs_sb_version_hascrc(&mp->m_sb)) {
1266 struct xfs_da3_blkinfo *hdr3 = bp->b_addr;
1267
1268 ichdr.magic = XFS_ATTR3_LEAF_MAGIC;
1269
1270 hdr3->blkno = cpu_to_be64(bp->b_bn);
1271 hdr3->owner = cpu_to_be64(dp->i_ino);
ce748eaa 1272 uuid_copy(&hdr3->uuid, &mp->m_sb.sb_meta_uuid);
1da177e4 1273
517c2220
DC
1274 ichdr.freemap[0].base = sizeof(struct xfs_attr3_leaf_hdr);
1275 } else {
1276 ichdr.magic = XFS_ATTR_LEAF_MAGIC;
1277 ichdr.freemap[0].base = sizeof(struct xfs_attr_leaf_hdr);
1278 }
1279 ichdr.freemap[0].size = ichdr.firstused - ichdr.freemap[0].base;
1da177e4 1280
2f661241 1281 xfs_attr3_leaf_hdr_to_disk(args->geo, leaf, &ichdr);
c2c4c477 1282 xfs_trans_log_buf(args->trans, bp, 0, args->geo->blksize - 1);
1da177e4
LT
1283
1284 *bpp = bp;
517c2220 1285 return 0;
1da177e4
LT
1286}
1287
1288/*
1289 * Split the leaf node, rebalance, then add the new entry.
1290 */
1291int
517c2220
DC
1292xfs_attr3_leaf_split(
1293 struct xfs_da_state *state,
1294 struct xfs_da_state_blk *oldblk,
1295 struct xfs_da_state_blk *newblk)
1da177e4
LT
1296{
1297 xfs_dablk_t blkno;
1298 int error;
1299
5a5881cd
DC
1300 trace_xfs_attr_leaf_split(state->args);
1301
1da177e4
LT
1302 /*
1303 * Allocate space for a new leaf node.
1304 */
1305 ASSERT(oldblk->magic == XFS_ATTR_LEAF_MAGIC);
1306 error = xfs_da_grow_inode(state->args, &blkno);
1307 if (error)
d99831ff 1308 return error;
517c2220 1309 error = xfs_attr3_leaf_create(state->args, blkno, &newblk->bp);
1da177e4 1310 if (error)
d99831ff 1311 return error;
1da177e4
LT
1312 newblk->blkno = blkno;
1313 newblk->magic = XFS_ATTR_LEAF_MAGIC;
1314
1315 /*
1316 * Rebalance the entries across the two leaves.
1317 * NOTE: rebalance() currently depends on the 2nd block being empty.
1318 */
517c2220 1319 xfs_attr3_leaf_rebalance(state, oldblk, newblk);
f5ea1100 1320 error = xfs_da3_blk_link(state, oldblk, newblk);
1da177e4 1321 if (error)
d99831ff 1322 return error;
1da177e4
LT
1323
1324 /*
1325 * Save info on "old" attribute for "atomic rename" ops, leaf_add()
1326 * modifies the index/blkno/rmtblk/rmtblkcnt fields to show the
1327 * "new" attrs info. Will need the "old" info to remove it later.
1328 *
1329 * Insert the "new" entry in the correct block.
1330 */
5a5881cd
DC
1331 if (state->inleaf) {
1332 trace_xfs_attr_leaf_add_old(state->args);
517c2220 1333 error = xfs_attr3_leaf_add(oldblk->bp, state->args);
5a5881cd
DC
1334 } else {
1335 trace_xfs_attr_leaf_add_new(state->args);
517c2220 1336 error = xfs_attr3_leaf_add(newblk->bp, state->args);
5a5881cd 1337 }
1da177e4
LT
1338
1339 /*
1340 * Update last hashval in each block since we added the name.
1341 */
1342 oldblk->hashval = xfs_attr_leaf_lasthash(oldblk->bp, NULL);
1343 newblk->hashval = xfs_attr_leaf_lasthash(newblk->bp, NULL);
d99831ff 1344 return error;
1da177e4
LT
1345}
1346
1347/*
1348 * Add a name to the leaf attribute list structure.
1349 */
1350int
517c2220 1351xfs_attr3_leaf_add(
1d9025e5
DC
1352 struct xfs_buf *bp,
1353 struct xfs_da_args *args)
1da177e4 1354{
517c2220
DC
1355 struct xfs_attr_leafblock *leaf;
1356 struct xfs_attr3_icleaf_hdr ichdr;
1357 int tablesize;
1358 int entsize;
1359 int sum;
1360 int tmp;
1361 int i;
1da177e4 1362
5a5881cd
DC
1363 trace_xfs_attr_leaf_add(args);
1364
1d9025e5 1365 leaf = bp->b_addr;
2f661241 1366 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220 1367 ASSERT(args->index >= 0 && args->index <= ichdr.count);
c59f0ad2 1368 entsize = xfs_attr_leaf_newentsize(args, NULL);
1da177e4
LT
1369
1370 /*
1371 * Search through freemap for first-fit on new name length.
1372 * (may need to figure in size of entry struct too)
1373 */
517c2220
DC
1374 tablesize = (ichdr.count + 1) * sizeof(xfs_attr_leaf_entry_t)
1375 + xfs_attr3_leaf_hdr_size(leaf);
1376 for (sum = 0, i = XFS_ATTR_LEAF_MAPSIZE - 1; i >= 0; i--) {
1377 if (tablesize > ichdr.firstused) {
1378 sum += ichdr.freemap[i].size;
1da177e4
LT
1379 continue;
1380 }
517c2220 1381 if (!ichdr.freemap[i].size)
1da177e4
LT
1382 continue; /* no space in this map */
1383 tmp = entsize;
517c2220 1384 if (ichdr.freemap[i].base < ichdr.firstused)
1da177e4 1385 tmp += sizeof(xfs_attr_leaf_entry_t);
517c2220
DC
1386 if (ichdr.freemap[i].size >= tmp) {
1387 tmp = xfs_attr3_leaf_add_work(bp, &ichdr, args, i);
1388 goto out_log_hdr;
1da177e4 1389 }
517c2220 1390 sum += ichdr.freemap[i].size;
1da177e4
LT
1391 }
1392
1393 /*
1394 * If there are no holes in the address space of the block,
1395 * and we don't have enough freespace, then compaction will do us
1396 * no good and we should just give up.
1397 */
517c2220 1398 if (!ichdr.holes && sum < entsize)
2451337d 1399 return -ENOSPC;
1da177e4
LT
1400
1401 /*
1402 * Compact the entries to coalesce free space.
1403 * This may change the hdr->count via dropping INCOMPLETE entries.
1404 */
517c2220 1405 xfs_attr3_leaf_compact(args, &ichdr, bp);
1da177e4
LT
1406
1407 /*
1408 * After compaction, the block is guaranteed to have only one
1409 * free region, in freemap[0]. If it is not big enough, give up.
1410 */
517c2220 1411 if (ichdr.freemap[0].size < (entsize + sizeof(xfs_attr_leaf_entry_t))) {
2451337d 1412 tmp = -ENOSPC;
517c2220
DC
1413 goto out_log_hdr;
1414 }
1415
1416 tmp = xfs_attr3_leaf_add_work(bp, &ichdr, args, 0);
1da177e4 1417
517c2220 1418out_log_hdr:
2f661241 1419 xfs_attr3_leaf_hdr_to_disk(args->geo, leaf, &ichdr);
517c2220
DC
1420 xfs_trans_log_buf(args->trans, bp,
1421 XFS_DA_LOGRANGE(leaf, &leaf->hdr,
1422 xfs_attr3_leaf_hdr_size(leaf)));
1423 return tmp;
1da177e4
LT
1424}
1425
1426/*
1427 * Add a name to a leaf attribute list structure.
1428 */
1429STATIC int
517c2220
DC
1430xfs_attr3_leaf_add_work(
1431 struct xfs_buf *bp,
1432 struct xfs_attr3_icleaf_hdr *ichdr,
1433 struct xfs_da_args *args,
1434 int mapindex)
1da177e4 1435{
517c2220
DC
1436 struct xfs_attr_leafblock *leaf;
1437 struct xfs_attr_leaf_entry *entry;
1438 struct xfs_attr_leaf_name_local *name_loc;
1439 struct xfs_attr_leaf_name_remote *name_rmt;
1440 struct xfs_mount *mp;
1441 int tmp;
1442 int i;
1da177e4 1443
ee73259b
DC
1444 trace_xfs_attr_leaf_add_work(args);
1445
1d9025e5 1446 leaf = bp->b_addr;
517c2220
DC
1447 ASSERT(mapindex >= 0 && mapindex < XFS_ATTR_LEAF_MAPSIZE);
1448 ASSERT(args->index >= 0 && args->index <= ichdr->count);
1da177e4
LT
1449
1450 /*
1451 * Force open some space in the entry array and fill it in.
1452 */
517c2220
DC
1453 entry = &xfs_attr3_leaf_entryp(leaf)[args->index];
1454 if (args->index < ichdr->count) {
1455 tmp = ichdr->count - args->index;
1da177e4 1456 tmp *= sizeof(xfs_attr_leaf_entry_t);
517c2220 1457 memmove(entry + 1, entry, tmp);
1d9025e5 1458 xfs_trans_log_buf(args->trans, bp,
1da177e4
LT
1459 XFS_DA_LOGRANGE(leaf, entry, tmp + sizeof(*entry)));
1460 }
517c2220 1461 ichdr->count++;
1da177e4
LT
1462
1463 /*
1464 * Allocate space for the new string (at the end of the run).
1465 */
1da177e4 1466 mp = args->trans->t_mountp;
c2c4c477 1467 ASSERT(ichdr->freemap[mapindex].base < args->geo->blksize);
517c2220
DC
1468 ASSERT((ichdr->freemap[mapindex].base & 0x3) == 0);
1469 ASSERT(ichdr->freemap[mapindex].size >=
c59f0ad2 1470 xfs_attr_leaf_newentsize(args, NULL));
c2c4c477 1471 ASSERT(ichdr->freemap[mapindex].size < args->geo->blksize);
517c2220
DC
1472 ASSERT((ichdr->freemap[mapindex].size & 0x3) == 0);
1473
c59f0ad2 1474 ichdr->freemap[mapindex].size -= xfs_attr_leaf_newentsize(args, &tmp);
517c2220
DC
1475
1476 entry->nameidx = cpu_to_be16(ichdr->freemap[mapindex].base +
1477 ichdr->freemap[mapindex].size);
6b19f2d8 1478 entry->hashval = cpu_to_be32(args->hashval);
d5f0f49a
CH
1479 entry->flags = args->attr_filter;
1480 if (tmp)
1481 entry->flags |= XFS_ATTR_LOCAL;
6a178100 1482 if (args->op_flags & XFS_DA_OP_RENAME) {
1da177e4
LT
1483 entry->flags |= XFS_ATTR_INCOMPLETE;
1484 if ((args->blkno2 == args->blkno) &&
1485 (args->index2 <= args->index)) {
1486 args->index2++;
1487 }
1488 }
1d9025e5 1489 xfs_trans_log_buf(args->trans, bp,
1da177e4 1490 XFS_DA_LOGRANGE(leaf, entry, sizeof(*entry)));
6b19f2d8
NS
1491 ASSERT((args->index == 0) ||
1492 (be32_to_cpu(entry->hashval) >= be32_to_cpu((entry-1)->hashval)));
517c2220 1493 ASSERT((args->index == ichdr->count - 1) ||
6b19f2d8 1494 (be32_to_cpu(entry->hashval) <= be32_to_cpu((entry+1)->hashval)));
1da177e4
LT
1495
1496 /*
1da177e4
LT
1497 * For "remote" attribute values, simply note that we need to
1498 * allocate space for the "remote" value. We can't actually
1499 * allocate the extents in this transaction, and we can't decide
1500 * which blocks they should be as we might allocate more blocks
1501 * as part of this transaction (a split operation for example).
1502 */
1503 if (entry->flags & XFS_ATTR_LOCAL) {
517c2220 1504 name_loc = xfs_attr3_leaf_name_local(leaf, args->index);
1da177e4 1505 name_loc->namelen = args->namelen;
053b5758 1506 name_loc->valuelen = cpu_to_be16(args->valuelen);
1da177e4
LT
1507 memcpy((char *)name_loc->nameval, args->name, args->namelen);
1508 memcpy((char *)&name_loc->nameval[args->namelen], args->value,
053b5758 1509 be16_to_cpu(name_loc->valuelen));
1da177e4 1510 } else {
517c2220 1511 name_rmt = xfs_attr3_leaf_name_remote(leaf, args->index);
1da177e4
LT
1512 name_rmt->namelen = args->namelen;
1513 memcpy((char *)name_rmt->name, args->name, args->namelen);
1514 entry->flags |= XFS_ATTR_INCOMPLETE;
1515 /* just in case */
1516 name_rmt->valuelen = 0;
1517 name_rmt->valueblk = 0;
1518 args->rmtblkno = 1;
ad1858d7 1519 args->rmtblkcnt = xfs_attr3_rmt_blocks(mp, args->valuelen);
8275cdd0 1520 args->rmtvaluelen = args->valuelen;
1da177e4 1521 }
1d9025e5 1522 xfs_trans_log_buf(args->trans, bp,
517c2220 1523 XFS_DA_LOGRANGE(leaf, xfs_attr3_leaf_name(leaf, args->index),
1da177e4
LT
1524 xfs_attr_leaf_entsize(leaf, args->index)));
1525
1526 /*
1527 * Update the control info for this leaf node
1528 */
517c2220
DC
1529 if (be16_to_cpu(entry->nameidx) < ichdr->firstused)
1530 ichdr->firstused = be16_to_cpu(entry->nameidx);
1531
1532 ASSERT(ichdr->firstused >= ichdr->count * sizeof(xfs_attr_leaf_entry_t)
1533 + xfs_attr3_leaf_hdr_size(leaf));
1534 tmp = (ichdr->count - 1) * sizeof(xfs_attr_leaf_entry_t)
1535 + xfs_attr3_leaf_hdr_size(leaf);
1536
1537 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
1538 if (ichdr->freemap[i].base == tmp) {
1539 ichdr->freemap[i].base += sizeof(xfs_attr_leaf_entry_t);
2a2b5932
BF
1540 ichdr->freemap[i].size -=
1541 min_t(uint16_t, ichdr->freemap[i].size,
1542 sizeof(xfs_attr_leaf_entry_t));
1da177e4
LT
1543 }
1544 }
517c2220
DC
1545 ichdr->usedbytes += xfs_attr_leaf_entsize(leaf, args->index);
1546 return 0;
1da177e4
LT
1547}
1548
1549/*
1550 * Garbage collect a leaf attribute list block by copying it to a new buffer.
1551 */
1552STATIC void
517c2220 1553xfs_attr3_leaf_compact(
ee73259b 1554 struct xfs_da_args *args,
d4c712bc 1555 struct xfs_attr3_icleaf_hdr *ichdr_dst,
ee73259b 1556 struct xfs_buf *bp)
1da177e4 1557{
d4c712bc
DC
1558 struct xfs_attr_leafblock *leaf_src;
1559 struct xfs_attr_leafblock *leaf_dst;
1560 struct xfs_attr3_icleaf_hdr ichdr_src;
ee73259b 1561 struct xfs_trans *trans = args->trans;
ee73259b
DC
1562 char *tmpbuffer;
1563
1564 trace_xfs_attr_leaf_compact(args);
1da177e4 1565
707e0dda 1566 tmpbuffer = kmem_alloc(args->geo->blksize, 0);
c2c4c477
DC
1567 memcpy(tmpbuffer, bp->b_addr, args->geo->blksize);
1568 memset(bp->b_addr, 0, args->geo->blksize);
d4c712bc
DC
1569 leaf_src = (xfs_attr_leafblock_t *)tmpbuffer;
1570 leaf_dst = bp->b_addr;
1da177e4
LT
1571
1572 /*
d4c712bc
DC
1573 * Copy the on-disk header back into the destination buffer to ensure
1574 * all the information in the header that is not part of the incore
1575 * header structure is preserved.
1da177e4 1576 */
d4c712bc
DC
1577 memcpy(bp->b_addr, tmpbuffer, xfs_attr3_leaf_hdr_size(leaf_src));
1578
1579 /* Initialise the incore headers */
1580 ichdr_src = *ichdr_dst; /* struct copy */
c2c4c477 1581 ichdr_dst->firstused = args->geo->blksize;
d4c712bc
DC
1582 ichdr_dst->usedbytes = 0;
1583 ichdr_dst->count = 0;
1584 ichdr_dst->holes = 0;
1585 ichdr_dst->freemap[0].base = xfs_attr3_leaf_hdr_size(leaf_src);
1586 ichdr_dst->freemap[0].size = ichdr_dst->firstused -
1587 ichdr_dst->freemap[0].base;
1588
d4c712bc 1589 /* write the header back to initialise the underlying buffer */
2f661241 1590 xfs_attr3_leaf_hdr_to_disk(args->geo, leaf_dst, ichdr_dst);
1da177e4
LT
1591
1592 /*
1593 * Copy all entry's in the same (sorted) order,
1594 * but allocate name/value pairs packed and in sequence.
1595 */
c2c4c477
DC
1596 xfs_attr3_leaf_moveents(args, leaf_src, &ichdr_src, 0,
1597 leaf_dst, ichdr_dst, 0, ichdr_src.count);
517c2220
DC
1598 /*
1599 * this logs the entire buffer, but the caller must write the header
1600 * back to the buffer when it is finished modifying it.
1601 */
c2c4c477 1602 xfs_trans_log_buf(trans, bp, 0, args->geo->blksize - 1);
1da177e4 1603
f0e2d93c 1604 kmem_free(tmpbuffer);
1da177e4
LT
1605}
1606
517c2220
DC
1607/*
1608 * Compare two leaf blocks "order".
1609 * Return 0 unless leaf2 should go before leaf1.
1610 */
1611static int
1612xfs_attr3_leaf_order(
1613 struct xfs_buf *leaf1_bp,
1614 struct xfs_attr3_icleaf_hdr *leaf1hdr,
1615 struct xfs_buf *leaf2_bp,
1616 struct xfs_attr3_icleaf_hdr *leaf2hdr)
1617{
1618 struct xfs_attr_leaf_entry *entries1;
1619 struct xfs_attr_leaf_entry *entries2;
1620
1621 entries1 = xfs_attr3_leaf_entryp(leaf1_bp->b_addr);
1622 entries2 = xfs_attr3_leaf_entryp(leaf2_bp->b_addr);
1623 if (leaf1hdr->count > 0 && leaf2hdr->count > 0 &&
1624 ((be32_to_cpu(entries2[0].hashval) <
1625 be32_to_cpu(entries1[0].hashval)) ||
1626 (be32_to_cpu(entries2[leaf2hdr->count - 1].hashval) <
1627 be32_to_cpu(entries1[leaf1hdr->count - 1].hashval)))) {
1628 return 1;
1629 }
1630 return 0;
1631}
1632
1633int
1634xfs_attr_leaf_order(
1635 struct xfs_buf *leaf1_bp,
1636 struct xfs_buf *leaf2_bp)
1637{
1638 struct xfs_attr3_icleaf_hdr ichdr1;
1639 struct xfs_attr3_icleaf_hdr ichdr2;
dbd329f1 1640 struct xfs_mount *mp = leaf1_bp->b_mount;
517c2220 1641
2f661241
BF
1642 xfs_attr3_leaf_hdr_from_disk(mp->m_attr_geo, &ichdr1, leaf1_bp->b_addr);
1643 xfs_attr3_leaf_hdr_from_disk(mp->m_attr_geo, &ichdr2, leaf2_bp->b_addr);
517c2220
DC
1644 return xfs_attr3_leaf_order(leaf1_bp, &ichdr1, leaf2_bp, &ichdr2);
1645}
1646
1da177e4
LT
1647/*
1648 * Redistribute the attribute list entries between two leaf nodes,
1649 * taking into account the size of the new entry.
1650 *
1651 * NOTE: if new block is empty, then it will get the upper half of the
1652 * old block. At present, all (one) callers pass in an empty second block.
1653 *
1654 * This code adjusts the args->index/blkno and args->index2/blkno2 fields
1655 * to match what it is doing in splitting the attribute leaf block. Those
1656 * values are used in "atomic rename" operations on attributes. Note that
1657 * the "new" and "old" values can end up in different blocks.
1658 */
1659STATIC void
517c2220
DC
1660xfs_attr3_leaf_rebalance(
1661 struct xfs_da_state *state,
1662 struct xfs_da_state_blk *blk1,
1663 struct xfs_da_state_blk *blk2)
1da177e4 1664{
517c2220
DC
1665 struct xfs_da_args *args;
1666 struct xfs_attr_leafblock *leaf1;
1667 struct xfs_attr_leafblock *leaf2;
1668 struct xfs_attr3_icleaf_hdr ichdr1;
1669 struct xfs_attr3_icleaf_hdr ichdr2;
1670 struct xfs_attr_leaf_entry *entries1;
1671 struct xfs_attr_leaf_entry *entries2;
1672 int count;
1673 int totallen;
1674 int max;
1675 int space;
1676 int swap;
1da177e4
LT
1677
1678 /*
1679 * Set up environment.
1680 */
1681 ASSERT(blk1->magic == XFS_ATTR_LEAF_MAGIC);
1682 ASSERT(blk2->magic == XFS_ATTR_LEAF_MAGIC);
1d9025e5
DC
1683 leaf1 = blk1->bp->b_addr;
1684 leaf2 = blk2->bp->b_addr;
2f661241
BF
1685 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &ichdr1, leaf1);
1686 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &ichdr2, leaf2);
517c2220 1687 ASSERT(ichdr2.count == 0);
1da177e4
LT
1688 args = state->args;
1689
5a5881cd
DC
1690 trace_xfs_attr_leaf_rebalance(args);
1691
1da177e4
LT
1692 /*
1693 * Check ordering of blocks, reverse if it makes things simpler.
1694 *
1695 * NOTE: Given that all (current) callers pass in an empty
1696 * second block, this code should never set "swap".
1697 */
1698 swap = 0;
517c2220 1699 if (xfs_attr3_leaf_order(blk1->bp, &ichdr1, blk2->bp, &ichdr2)) {
1d5bebba 1700 swap(blk1, blk2);
517c2220 1701
1d5bebba
GS
1702 /* swap structures rather than reconverting them */
1703 swap(ichdr1, ichdr2);
517c2220 1704
1d9025e5
DC
1705 leaf1 = blk1->bp->b_addr;
1706 leaf2 = blk2->bp->b_addr;
1da177e4
LT
1707 swap = 1;
1708 }
1da177e4
LT
1709
1710 /*
1711 * Examine entries until we reduce the absolute difference in
1712 * byte usage between the two blocks to a minimum. Then get
1713 * the direction to copy and the number of elements to move.
1714 *
1715 * "inleaf" is true if the new entry should be inserted into blk1.
1716 * If "swap" is also true, then reverse the sense of "inleaf".
1717 */
517c2220
DC
1718 state->inleaf = xfs_attr3_leaf_figure_balance(state, blk1, &ichdr1,
1719 blk2, &ichdr2,
1720 &count, &totallen);
1da177e4
LT
1721 if (swap)
1722 state->inleaf = !state->inleaf;
1723
1724 /*
1725 * Move any entries required from leaf to leaf:
1726 */
517c2220 1727 if (count < ichdr1.count) {
1da177e4
LT
1728 /*
1729 * Figure the total bytes to be added to the destination leaf.
1730 */
1731 /* number entries being moved */
517c2220
DC
1732 count = ichdr1.count - count;
1733 space = ichdr1.usedbytes - totallen;
1da177e4
LT
1734 space += count * sizeof(xfs_attr_leaf_entry_t);
1735
1736 /*
1737 * leaf2 is the destination, compact it if it looks tight.
1738 */
517c2220
DC
1739 max = ichdr2.firstused - xfs_attr3_leaf_hdr_size(leaf1);
1740 max -= ichdr2.count * sizeof(xfs_attr_leaf_entry_t);
ee73259b 1741 if (space > max)
517c2220 1742 xfs_attr3_leaf_compact(args, &ichdr2, blk2->bp);
1da177e4
LT
1743
1744 /*
1745 * Move high entries from leaf1 to low end of leaf2.
1746 */
c2c4c477
DC
1747 xfs_attr3_leaf_moveents(args, leaf1, &ichdr1,
1748 ichdr1.count - count, leaf2, &ichdr2, 0, count);
1da177e4 1749
517c2220 1750 } else if (count > ichdr1.count) {
1da177e4
LT
1751 /*
1752 * I assert that since all callers pass in an empty
1753 * second buffer, this code should never execute.
1754 */
07428d7f 1755 ASSERT(0);
1da177e4
LT
1756
1757 /*
1758 * Figure the total bytes to be added to the destination leaf.
1759 */
1760 /* number entries being moved */
517c2220
DC
1761 count -= ichdr1.count;
1762 space = totallen - ichdr1.usedbytes;
1da177e4
LT
1763 space += count * sizeof(xfs_attr_leaf_entry_t);
1764
1765 /*
1766 * leaf1 is the destination, compact it if it looks tight.
1767 */
517c2220
DC
1768 max = ichdr1.firstused - xfs_attr3_leaf_hdr_size(leaf1);
1769 max -= ichdr1.count * sizeof(xfs_attr_leaf_entry_t);
ee73259b 1770 if (space > max)
517c2220 1771 xfs_attr3_leaf_compact(args, &ichdr1, blk1->bp);
1da177e4
LT
1772
1773 /*
1774 * Move low entries from leaf2 to high end of leaf1.
1775 */
c2c4c477
DC
1776 xfs_attr3_leaf_moveents(args, leaf2, &ichdr2, 0, leaf1, &ichdr1,
1777 ichdr1.count, count);
1da177e4
LT
1778 }
1779
2f661241
BF
1780 xfs_attr3_leaf_hdr_to_disk(state->args->geo, leaf1, &ichdr1);
1781 xfs_attr3_leaf_hdr_to_disk(state->args->geo, leaf2, &ichdr2);
b2a21e7a
DC
1782 xfs_trans_log_buf(args->trans, blk1->bp, 0, args->geo->blksize - 1);
1783 xfs_trans_log_buf(args->trans, blk2->bp, 0, args->geo->blksize - 1);
517c2220 1784
1da177e4
LT
1785 /*
1786 * Copy out last hashval in each block for B-tree code.
1787 */
517c2220
DC
1788 entries1 = xfs_attr3_leaf_entryp(leaf1);
1789 entries2 = xfs_attr3_leaf_entryp(leaf2);
1790 blk1->hashval = be32_to_cpu(entries1[ichdr1.count - 1].hashval);
1791 blk2->hashval = be32_to_cpu(entries2[ichdr2.count - 1].hashval);
1da177e4
LT
1792
1793 /*
1794 * Adjust the expected index for insertion.
1795 * NOTE: this code depends on the (current) situation that the
1796 * second block was originally empty.
1797 *
1798 * If the insertion point moved to the 2nd block, we must adjust
1799 * the index. We must also track the entry just following the
1800 * new entry for use in an "atomic rename" operation, that entry
1801 * is always the "old" entry and the "new" entry is what we are
1802 * inserting. The index/blkno fields refer to the "old" entry,
1803 * while the index2/blkno2 fields refer to the "new" entry.
1804 */
517c2220 1805 if (blk1->index > ichdr1.count) {
1da177e4 1806 ASSERT(state->inleaf == 0);
517c2220 1807 blk2->index = blk1->index - ichdr1.count;
1da177e4
LT
1808 args->index = args->index2 = blk2->index;
1809 args->blkno = args->blkno2 = blk2->blkno;
517c2220 1810 } else if (blk1->index == ichdr1.count) {
1da177e4
LT
1811 if (state->inleaf) {
1812 args->index = blk1->index;
1813 args->blkno = blk1->blkno;
1814 args->index2 = 0;
1815 args->blkno2 = blk2->blkno;
1816 } else {
07428d7f
DC
1817 /*
1818 * On a double leaf split, the original attr location
1819 * is already stored in blkno2/index2, so don't
1820 * overwrite it overwise we corrupt the tree.
1821 */
517c2220 1822 blk2->index = blk1->index - ichdr1.count;
07428d7f
DC
1823 args->index = blk2->index;
1824 args->blkno = blk2->blkno;
1825 if (!state->extravalid) {
1826 /*
1827 * set the new attr location to match the old
1828 * one and let the higher level split code
1829 * decide where in the leaf to place it.
1830 */
1831 args->index2 = blk2->index;
1832 args->blkno2 = blk2->blkno;
1833 }
1da177e4
LT
1834 }
1835 } else {
1836 ASSERT(state->inleaf == 1);
1837 args->index = args->index2 = blk1->index;
1838 args->blkno = args->blkno2 = blk1->blkno;
1839 }
1840}
1841
1842/*
1843 * Examine entries until we reduce the absolute difference in
1844 * byte usage between the two blocks to a minimum.
1845 * GROT: Is this really necessary? With other than a 512 byte blocksize,
1846 * GROT: there will always be enough room in either block for a new entry.
1847 * GROT: Do a double-split for this case?
1848 */
1849STATIC int
517c2220
DC
1850xfs_attr3_leaf_figure_balance(
1851 struct xfs_da_state *state,
1852 struct xfs_da_state_blk *blk1,
1853 struct xfs_attr3_icleaf_hdr *ichdr1,
1854 struct xfs_da_state_blk *blk2,
1855 struct xfs_attr3_icleaf_hdr *ichdr2,
1856 int *countarg,
1857 int *usedbytesarg)
1da177e4 1858{
517c2220
DC
1859 struct xfs_attr_leafblock *leaf1 = blk1->bp->b_addr;
1860 struct xfs_attr_leafblock *leaf2 = blk2->bp->b_addr;
1861 struct xfs_attr_leaf_entry *entry;
1862 int count;
1863 int max;
1864 int index;
1865 int totallen = 0;
1866 int half;
1867 int lastdelta;
1868 int foundit = 0;
1869 int tmp;
1da177e4
LT
1870
1871 /*
1872 * Examine entries until we reduce the absolute difference in
1873 * byte usage between the two blocks to a minimum.
1874 */
517c2220
DC
1875 max = ichdr1->count + ichdr2->count;
1876 half = (max + 1) * sizeof(*entry);
1877 half += ichdr1->usedbytes + ichdr2->usedbytes +
c59f0ad2 1878 xfs_attr_leaf_newentsize(state->args, NULL);
1da177e4 1879 half /= 2;
b2a21e7a 1880 lastdelta = state->args->geo->blksize;
517c2220 1881 entry = xfs_attr3_leaf_entryp(leaf1);
1da177e4
LT
1882 for (count = index = 0; count < max; entry++, index++, count++) {
1883
1884#define XFS_ATTR_ABS(A) (((A) < 0) ? -(A) : (A))
1885 /*
1886 * The new entry is in the first block, account for it.
1887 */
1888 if (count == blk1->index) {
1889 tmp = totallen + sizeof(*entry) +
c59f0ad2 1890 xfs_attr_leaf_newentsize(state->args, NULL);
1da177e4
LT
1891 if (XFS_ATTR_ABS(half - tmp) > lastdelta)
1892 break;
1893 lastdelta = XFS_ATTR_ABS(half - tmp);
1894 totallen = tmp;
1895 foundit = 1;
1896 }
1897
1898 /*
1899 * Wrap around into the second block if necessary.
1900 */
517c2220 1901 if (count == ichdr1->count) {
1da177e4 1902 leaf1 = leaf2;
517c2220 1903 entry = xfs_attr3_leaf_entryp(leaf1);
1da177e4
LT
1904 index = 0;
1905 }
1906
1907 /*
1908 * Figure out if next leaf entry would be too much.
1909 */
1910 tmp = totallen + sizeof(*entry) + xfs_attr_leaf_entsize(leaf1,
1911 index);
1912 if (XFS_ATTR_ABS(half - tmp) > lastdelta)
1913 break;
1914 lastdelta = XFS_ATTR_ABS(half - tmp);
1915 totallen = tmp;
1916#undef XFS_ATTR_ABS
1917 }
1918
1919 /*
1920 * Calculate the number of usedbytes that will end up in lower block.
1921 * If new entry not in lower block, fix up the count.
1922 */
1923 totallen -= count * sizeof(*entry);
1924 if (foundit) {
1925 totallen -= sizeof(*entry) +
c59f0ad2 1926 xfs_attr_leaf_newentsize(state->args, NULL);
1da177e4
LT
1927 }
1928
1929 *countarg = count;
1930 *usedbytesarg = totallen;
517c2220 1931 return foundit;
1da177e4
LT
1932}
1933
1934/*========================================================================
1935 * Routines used for shrinking the Btree.
1936 *========================================================================*/
1937
1938/*
1939 * Check a leaf block and its neighbors to see if the block should be
1940 * collapsed into one or the other neighbor. Always keep the block
1941 * with the smaller block number.
1942 * If the current block is over 50% full, don't try to join it, return 0.
1943 * If the block is empty, fill in the state structure and return 2.
1944 * If it can be collapsed, fill in the state structure and return 1.
1945 * If nothing can be done, return 0.
1946 *
1947 * GROT: allow for INCOMPLETE entries in calculation.
1948 */
1949int
517c2220
DC
1950xfs_attr3_leaf_toosmall(
1951 struct xfs_da_state *state,
1952 int *action)
1da177e4 1953{
517c2220
DC
1954 struct xfs_attr_leafblock *leaf;
1955 struct xfs_da_state_blk *blk;
1956 struct xfs_attr3_icleaf_hdr ichdr;
1957 struct xfs_buf *bp;
1958 xfs_dablk_t blkno;
1959 int bytes;
1960 int forward;
1961 int error;
1962 int retval;
1963 int i;
1da177e4 1964
ee73259b
DC
1965 trace_xfs_attr_leaf_toosmall(state->args);
1966
1da177e4
LT
1967 /*
1968 * Check for the degenerate case of the block being over 50% full.
1969 * If so, it's not worth even looking to see if we might be able
1970 * to coalesce with a sibling.
1971 */
1972 blk = &state->path.blk[ state->path.active-1 ];
517c2220 1973 leaf = blk->bp->b_addr;
2f661241 1974 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &ichdr, leaf);
517c2220
DC
1975 bytes = xfs_attr3_leaf_hdr_size(leaf) +
1976 ichdr.count * sizeof(xfs_attr_leaf_entry_t) +
1977 ichdr.usedbytes;
b2a21e7a 1978 if (bytes > (state->args->geo->blksize >> 1)) {
1da177e4 1979 *action = 0; /* blk over 50%, don't try to join */
d99831ff 1980 return 0;
1da177e4
LT
1981 }
1982
1983 /*
1984 * Check for the degenerate case of the block being empty.
1985 * If the block is empty, we'll simply delete it, no need to
c41564b5 1986 * coalesce it with a sibling block. We choose (arbitrarily)
1da177e4
LT
1987 * to merge with the forward block unless it is NULL.
1988 */
517c2220 1989 if (ichdr.count == 0) {
1da177e4
LT
1990 /*
1991 * Make altpath point to the block we want to keep and
1992 * path point to the block we want to drop (this one).
1993 */
517c2220 1994 forward = (ichdr.forw != 0);
1da177e4 1995 memcpy(&state->altpath, &state->path, sizeof(state->path));
f5ea1100 1996 error = xfs_da3_path_shift(state, &state->altpath, forward,
1da177e4
LT
1997 0, &retval);
1998 if (error)
d99831ff 1999 return error;
1da177e4
LT
2000 if (retval) {
2001 *action = 0;
2002 } else {
2003 *action = 2;
2004 }
517c2220 2005 return 0;
1da177e4
LT
2006 }
2007
2008 /*
2009 * Examine each sibling block to see if we can coalesce with
2010 * at least 25% free space to spare. We need to figure out
2011 * whether to merge with the forward or the backward block.
2012 * We prefer coalescing with the lower numbered sibling so as
2013 * to shrink an attribute list over time.
2014 */
2015 /* start with smaller blk num */
517c2220 2016 forward = ichdr.forw < ichdr.back;
1da177e4 2017 for (i = 0; i < 2; forward = !forward, i++) {
517c2220 2018 struct xfs_attr3_icleaf_hdr ichdr2;
1da177e4 2019 if (forward)
517c2220 2020 blkno = ichdr.forw;
1da177e4 2021 else
517c2220 2022 blkno = ichdr.back;
1da177e4
LT
2023 if (blkno == 0)
2024 continue;
517c2220 2025 error = xfs_attr3_leaf_read(state->args->trans, state->args->dp,
dfb87594 2026 blkno, &bp);
1da177e4 2027 if (error)
d99831ff 2028 return error;
1da177e4 2029
2f661241 2030 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &ichdr2, bp->b_addr);
517c2220 2031
b2a21e7a
DC
2032 bytes = state->args->geo->blksize -
2033 (state->args->geo->blksize >> 2) -
517c2220
DC
2034 ichdr.usedbytes - ichdr2.usedbytes -
2035 ((ichdr.count + ichdr2.count) *
2036 sizeof(xfs_attr_leaf_entry_t)) -
2037 xfs_attr3_leaf_hdr_size(leaf);
2038
1d9025e5 2039 xfs_trans_brelse(state->args->trans, bp);
1da177e4
LT
2040 if (bytes >= 0)
2041 break; /* fits with at least 25% to spare */
2042 }
2043 if (i >= 2) {
2044 *action = 0;
d99831ff 2045 return 0;
1da177e4
LT
2046 }
2047
2048 /*
2049 * Make altpath point to the block we want to keep (the lower
2050 * numbered block) and path point to the block we want to drop.
2051 */
2052 memcpy(&state->altpath, &state->path, sizeof(state->path));
2053 if (blkno < blk->blkno) {
f5ea1100 2054 error = xfs_da3_path_shift(state, &state->altpath, forward,
1da177e4
LT
2055 0, &retval);
2056 } else {
f5ea1100 2057 error = xfs_da3_path_shift(state, &state->path, forward,
1da177e4
LT
2058 0, &retval);
2059 }
2060 if (error)
d99831ff 2061 return error;
1da177e4
LT
2062 if (retval) {
2063 *action = 0;
2064 } else {
2065 *action = 1;
2066 }
d99831ff 2067 return 0;
1da177e4
LT
2068}
2069
2070/*
2071 * Remove a name from the leaf attribute list structure.
2072 *
2073 * Return 1 if leaf is less than 37% full, 0 if >= 37% full.
2074 * If two leaves are 37% full, when combined they will leave 25% free.
2075 */
2076int
517c2220
DC
2077xfs_attr3_leaf_remove(
2078 struct xfs_buf *bp,
2079 struct xfs_da_args *args)
1da177e4 2080{
517c2220
DC
2081 struct xfs_attr_leafblock *leaf;
2082 struct xfs_attr3_icleaf_hdr ichdr;
2083 struct xfs_attr_leaf_entry *entry;
517c2220
DC
2084 int before;
2085 int after;
2086 int smallest;
2087 int entsize;
2088 int tablesize;
2089 int tmp;
2090 int i;
1da177e4 2091
ee73259b
DC
2092 trace_xfs_attr_leaf_remove(args);
2093
1d9025e5 2094 leaf = bp->b_addr;
2f661241 2095 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220 2096
c2c4c477 2097 ASSERT(ichdr.count > 0 && ichdr.count < args->geo->blksize / 8);
517c2220
DC
2098 ASSERT(args->index >= 0 && args->index < ichdr.count);
2099 ASSERT(ichdr.firstused >= ichdr.count * sizeof(*entry) +
2100 xfs_attr3_leaf_hdr_size(leaf));
2101
2102 entry = &xfs_attr3_leaf_entryp(leaf)[args->index];
2103
2104 ASSERT(be16_to_cpu(entry->nameidx) >= ichdr.firstused);
c2c4c477 2105 ASSERT(be16_to_cpu(entry->nameidx) < args->geo->blksize);
1da177e4
LT
2106
2107 /*
2108 * Scan through free region table:
2109 * check for adjacency of free'd entry with an existing one,
2110 * find smallest free region in case we need to replace it,
2111 * adjust any map that borders the entry table,
2112 */
517c2220
DC
2113 tablesize = ichdr.count * sizeof(xfs_attr_leaf_entry_t)
2114 + xfs_attr3_leaf_hdr_size(leaf);
2115 tmp = ichdr.freemap[0].size;
1da177e4
LT
2116 before = after = -1;
2117 smallest = XFS_ATTR_LEAF_MAPSIZE - 1;
2118 entsize = xfs_attr_leaf_entsize(leaf, args->index);
517c2220 2119 for (i = 0; i < XFS_ATTR_LEAF_MAPSIZE; i++) {
c2c4c477
DC
2120 ASSERT(ichdr.freemap[i].base < args->geo->blksize);
2121 ASSERT(ichdr.freemap[i].size < args->geo->blksize);
517c2220
DC
2122 if (ichdr.freemap[i].base == tablesize) {
2123 ichdr.freemap[i].base -= sizeof(xfs_attr_leaf_entry_t);
2124 ichdr.freemap[i].size += sizeof(xfs_attr_leaf_entry_t);
1da177e4
LT
2125 }
2126
517c2220
DC
2127 if (ichdr.freemap[i].base + ichdr.freemap[i].size ==
2128 be16_to_cpu(entry->nameidx)) {
1da177e4 2129 before = i;
517c2220
DC
2130 } else if (ichdr.freemap[i].base ==
2131 (be16_to_cpu(entry->nameidx) + entsize)) {
1da177e4 2132 after = i;
517c2220
DC
2133 } else if (ichdr.freemap[i].size < tmp) {
2134 tmp = ichdr.freemap[i].size;
1da177e4
LT
2135 smallest = i;
2136 }
2137 }
2138
2139 /*
2140 * Coalesce adjacent freemap regions,
2141 * or replace the smallest region.
2142 */
2143 if ((before >= 0) || (after >= 0)) {
2144 if ((before >= 0) && (after >= 0)) {
517c2220
DC
2145 ichdr.freemap[before].size += entsize;
2146 ichdr.freemap[before].size += ichdr.freemap[after].size;
2147 ichdr.freemap[after].base = 0;
2148 ichdr.freemap[after].size = 0;
1da177e4 2149 } else if (before >= 0) {
517c2220 2150 ichdr.freemap[before].size += entsize;
1da177e4 2151 } else {
517c2220
DC
2152 ichdr.freemap[after].base = be16_to_cpu(entry->nameidx);
2153 ichdr.freemap[after].size += entsize;
1da177e4
LT
2154 }
2155 } else {
2156 /*
2157 * Replace smallest region (if it is smaller than free'd entry)
2158 */
517c2220
DC
2159 if (ichdr.freemap[smallest].size < entsize) {
2160 ichdr.freemap[smallest].base = be16_to_cpu(entry->nameidx);
2161 ichdr.freemap[smallest].size = entsize;
1da177e4
LT
2162 }
2163 }
2164
2165 /*
2166 * Did we remove the first entry?
2167 */
517c2220 2168 if (be16_to_cpu(entry->nameidx) == ichdr.firstused)
1da177e4
LT
2169 smallest = 1;
2170 else
2171 smallest = 0;
2172
2173 /*
2174 * Compress the remaining entries and zero out the removed stuff.
2175 */
517c2220
DC
2176 memset(xfs_attr3_leaf_name(leaf, args->index), 0, entsize);
2177 ichdr.usedbytes -= entsize;
1d9025e5 2178 xfs_trans_log_buf(args->trans, bp,
517c2220 2179 XFS_DA_LOGRANGE(leaf, xfs_attr3_leaf_name(leaf, args->index),
1da177e4
LT
2180 entsize));
2181
517c2220
DC
2182 tmp = (ichdr.count - args->index) * sizeof(xfs_attr_leaf_entry_t);
2183 memmove(entry, entry + 1, tmp);
2184 ichdr.count--;
1d9025e5 2185 xfs_trans_log_buf(args->trans, bp,
517c2220
DC
2186 XFS_DA_LOGRANGE(leaf, entry, tmp + sizeof(xfs_attr_leaf_entry_t)));
2187
2188 entry = &xfs_attr3_leaf_entryp(leaf)[ichdr.count];
2189 memset(entry, 0, sizeof(xfs_attr_leaf_entry_t));
1da177e4
LT
2190
2191 /*
2192 * If we removed the first entry, re-find the first used byte
2193 * in the name area. Note that if the entry was the "firstused",
2194 * then we don't have a "hole" in our block resulting from
2195 * removing the name.
2196 */
2197 if (smallest) {
c2c4c477 2198 tmp = args->geo->blksize;
517c2220
DC
2199 entry = xfs_attr3_leaf_entryp(leaf);
2200 for (i = ichdr.count - 1; i >= 0; entry++, i--) {
2201 ASSERT(be16_to_cpu(entry->nameidx) >= ichdr.firstused);
c2c4c477 2202 ASSERT(be16_to_cpu(entry->nameidx) < args->geo->blksize);
6b19f2d8
NS
2203
2204 if (be16_to_cpu(entry->nameidx) < tmp)
2205 tmp = be16_to_cpu(entry->nameidx);
1da177e4 2206 }
517c2220 2207 ichdr.firstused = tmp;
66db8104 2208 ASSERT(ichdr.firstused != 0);
1da177e4 2209 } else {
517c2220 2210 ichdr.holes = 1; /* mark as needing compaction */
1da177e4 2211 }
2f661241 2212 xfs_attr3_leaf_hdr_to_disk(args->geo, leaf, &ichdr);
1d9025e5 2213 xfs_trans_log_buf(args->trans, bp,
517c2220
DC
2214 XFS_DA_LOGRANGE(leaf, &leaf->hdr,
2215 xfs_attr3_leaf_hdr_size(leaf)));
1da177e4
LT
2216
2217 /*
2218 * Check if leaf is less than 50% full, caller may want to
2219 * "join" the leaf with a sibling if so.
2220 */
517c2220
DC
2221 tmp = ichdr.usedbytes + xfs_attr3_leaf_hdr_size(leaf) +
2222 ichdr.count * sizeof(xfs_attr_leaf_entry_t);
2223
ed358c00 2224 return tmp < args->geo->magicpct; /* leaf is < 37% full */
1da177e4
LT
2225}
2226
2227/*
2228 * Move all the attribute list entries from drop_leaf into save_leaf.
2229 */
2230void
517c2220
DC
2231xfs_attr3_leaf_unbalance(
2232 struct xfs_da_state *state,
2233 struct xfs_da_state_blk *drop_blk,
2234 struct xfs_da_state_blk *save_blk)
1da177e4 2235{
517c2220
DC
2236 struct xfs_attr_leafblock *drop_leaf = drop_blk->bp->b_addr;
2237 struct xfs_attr_leafblock *save_leaf = save_blk->bp->b_addr;
2238 struct xfs_attr3_icleaf_hdr drophdr;
2239 struct xfs_attr3_icleaf_hdr savehdr;
2240 struct xfs_attr_leaf_entry *entry;
1da177e4 2241
5a5881cd
DC
2242 trace_xfs_attr_leaf_unbalance(state->args);
2243
1d9025e5
DC
2244 drop_leaf = drop_blk->bp->b_addr;
2245 save_leaf = save_blk->bp->b_addr;
2f661241
BF
2246 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &drophdr, drop_leaf);
2247 xfs_attr3_leaf_hdr_from_disk(state->args->geo, &savehdr, save_leaf);
517c2220 2248 entry = xfs_attr3_leaf_entryp(drop_leaf);
1da177e4
LT
2249
2250 /*
2251 * Save last hashval from dying block for later Btree fixup.
2252 */
517c2220 2253 drop_blk->hashval = be32_to_cpu(entry[drophdr.count - 1].hashval);
1da177e4
LT
2254
2255 /*
2256 * Check if we need a temp buffer, or can we do it in place.
2257 * Note that we don't check "leaf" for holes because we will
2258 * always be dropping it, toosmall() decided that for us already.
2259 */
517c2220 2260 if (savehdr.holes == 0) {
1da177e4
LT
2261 /*
2262 * dest leaf has no holes, so we add there. May need
2263 * to make some room in the entry array.
2264 */
517c2220
DC
2265 if (xfs_attr3_leaf_order(save_blk->bp, &savehdr,
2266 drop_blk->bp, &drophdr)) {
c2c4c477
DC
2267 xfs_attr3_leaf_moveents(state->args,
2268 drop_leaf, &drophdr, 0,
517c2220 2269 save_leaf, &savehdr, 0,
c2c4c477 2270 drophdr.count);
1da177e4 2271 } else {
c2c4c477
DC
2272 xfs_attr3_leaf_moveents(state->args,
2273 drop_leaf, &drophdr, 0,
517c2220 2274 save_leaf, &savehdr,
c2c4c477 2275 savehdr.count, drophdr.count);
1da177e4
LT
2276 }
2277 } else {
2278 /*
2279 * Destination has holes, so we make a temporary copy
2280 * of the leaf and add them both to that.
2281 */
517c2220
DC
2282 struct xfs_attr_leafblock *tmp_leaf;
2283 struct xfs_attr3_icleaf_hdr tmphdr;
2284
707e0dda 2285 tmp_leaf = kmem_zalloc(state->args->geo->blksize, 0);
8517de2a
DC
2286
2287 /*
2288 * Copy the header into the temp leaf so that all the stuff
2289 * not in the incore header is present and gets copied back in
2290 * once we've moved all the entries.
2291 */
2292 memcpy(tmp_leaf, save_leaf, xfs_attr3_leaf_hdr_size(save_leaf));
517c2220 2293
8517de2a 2294 memset(&tmphdr, 0, sizeof(tmphdr));
517c2220
DC
2295 tmphdr.magic = savehdr.magic;
2296 tmphdr.forw = savehdr.forw;
2297 tmphdr.back = savehdr.back;
b2a21e7a 2298 tmphdr.firstused = state->args->geo->blksize;
8517de2a
DC
2299
2300 /* write the header to the temp buffer to initialise it */
2f661241 2301 xfs_attr3_leaf_hdr_to_disk(state->args->geo, tmp_leaf, &tmphdr);
8517de2a 2302
517c2220
DC
2303 if (xfs_attr3_leaf_order(save_blk->bp, &savehdr,
2304 drop_blk->bp, &drophdr)) {
c2c4c477
DC
2305 xfs_attr3_leaf_moveents(state->args,
2306 drop_leaf, &drophdr, 0,
517c2220 2307 tmp_leaf, &tmphdr, 0,
c2c4c477
DC
2308 drophdr.count);
2309 xfs_attr3_leaf_moveents(state->args,
2310 save_leaf, &savehdr, 0,
517c2220 2311 tmp_leaf, &tmphdr, tmphdr.count,
c2c4c477 2312 savehdr.count);
1da177e4 2313 } else {
c2c4c477
DC
2314 xfs_attr3_leaf_moveents(state->args,
2315 save_leaf, &savehdr, 0,
517c2220 2316 tmp_leaf, &tmphdr, 0,
c2c4c477
DC
2317 savehdr.count);
2318 xfs_attr3_leaf_moveents(state->args,
2319 drop_leaf, &drophdr, 0,
517c2220 2320 tmp_leaf, &tmphdr, tmphdr.count,
c2c4c477 2321 drophdr.count);
1da177e4 2322 }
b2a21e7a 2323 memcpy(save_leaf, tmp_leaf, state->args->geo->blksize);
517c2220
DC
2324 savehdr = tmphdr; /* struct copy */
2325 kmem_free(tmp_leaf);
1da177e4
LT
2326 }
2327
2f661241 2328 xfs_attr3_leaf_hdr_to_disk(state->args->geo, save_leaf, &savehdr);
1d9025e5 2329 xfs_trans_log_buf(state->args->trans, save_blk->bp, 0,
b2a21e7a 2330 state->args->geo->blksize - 1);
1da177e4
LT
2331
2332 /*
2333 * Copy out last hashval in each block for B-tree code.
2334 */
517c2220
DC
2335 entry = xfs_attr3_leaf_entryp(save_leaf);
2336 save_blk->hashval = be32_to_cpu(entry[savehdr.count - 1].hashval);
1da177e4
LT
2337}
2338
2339/*========================================================================
2340 * Routines used for finding things in the Btree.
2341 *========================================================================*/
2342
2343/*
2344 * Look up a name in a leaf attribute list structure.
2345 * This is the internal routine, it uses the caller's buffer.
2346 *
2347 * Note that duplicate keys are allowed, but only check within the
2348 * current leaf node. The Btree code must check in adjacent leaf nodes.
2349 *
2350 * Return in args->index the index into the entry[] array of either
2351 * the found entry, or where the entry should have been (insert before
2352 * that entry).
2353 *
2354 * Don't change the args->value unless we find the attribute.
2355 */
2356int
517c2220
DC
2357xfs_attr3_leaf_lookup_int(
2358 struct xfs_buf *bp,
2359 struct xfs_da_args *args)
1da177e4 2360{
517c2220
DC
2361 struct xfs_attr_leafblock *leaf;
2362 struct xfs_attr3_icleaf_hdr ichdr;
2363 struct xfs_attr_leaf_entry *entry;
2364 struct xfs_attr_leaf_entry *entries;
2365 struct xfs_attr_leaf_name_local *name_loc;
2366 struct xfs_attr_leaf_name_remote *name_rmt;
2367 xfs_dahash_t hashval;
2368 int probe;
2369 int span;
1da177e4 2370
5a5881cd
DC
2371 trace_xfs_attr_leaf_lookup(args);
2372
1d9025e5 2373 leaf = bp->b_addr;
2f661241 2374 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220 2375 entries = xfs_attr3_leaf_entryp(leaf);
a5155b87 2376 if (ichdr.count >= args->geo->blksize / 8) {
8d57c216 2377 xfs_buf_mark_corrupt(bp);
8ba92d43 2378 return -EFSCORRUPTED;
a5155b87 2379 }
1da177e4
LT
2380
2381 /*
2382 * Binary search. (note: small blocks will skip this loop)
2383 */
2384 hashval = args->hashval;
517c2220
DC
2385 probe = span = ichdr.count / 2;
2386 for (entry = &entries[probe]; span > 4; entry = &entries[probe]) {
1da177e4 2387 span /= 2;
6b19f2d8 2388 if (be32_to_cpu(entry->hashval) < hashval)
1da177e4 2389 probe += span;
6b19f2d8 2390 else if (be32_to_cpu(entry->hashval) > hashval)
1da177e4
LT
2391 probe -= span;
2392 else
2393 break;
2394 }
a5155b87 2395 if (!(probe >= 0 && (!ichdr.count || probe < ichdr.count))) {
8d57c216 2396 xfs_buf_mark_corrupt(bp);
8ba92d43 2397 return -EFSCORRUPTED;
a5155b87
DW
2398 }
2399 if (!(span <= 4 || be32_to_cpu(entry->hashval) == hashval)) {
8d57c216 2400 xfs_buf_mark_corrupt(bp);
8ba92d43 2401 return -EFSCORRUPTED;
a5155b87 2402 }
1da177e4
LT
2403
2404 /*
2405 * Since we may have duplicate hashval's, find the first matching
2406 * hashval in the leaf.
2407 */
517c2220 2408 while (probe > 0 && be32_to_cpu(entry->hashval) >= hashval) {
1da177e4
LT
2409 entry--;
2410 probe--;
2411 }
517c2220
DC
2412 while (probe < ichdr.count &&
2413 be32_to_cpu(entry->hashval) < hashval) {
1da177e4
LT
2414 entry++;
2415 probe++;
2416 }
517c2220 2417 if (probe == ichdr.count || be32_to_cpu(entry->hashval) != hashval) {
1da177e4 2418 args->index = probe;
2451337d 2419 return -ENOATTR;
1da177e4
LT
2420 }
2421
2422 /*
2423 * Duplicate keys may be present, so search all of them for a match.
2424 */
517c2220 2425 for (; probe < ichdr.count && (be32_to_cpu(entry->hashval) == hashval);
1da177e4
LT
2426 entry++, probe++) {
2427/*
2428 * GROT: Add code to remove incomplete entries.
2429 */
1da177e4 2430 if (entry->flags & XFS_ATTR_LOCAL) {
517c2220 2431 name_loc = xfs_attr3_leaf_name_local(leaf, probe);
377f16ac
CH
2432 if (!xfs_attr_match(args, name_loc->namelen,
2433 name_loc->nameval, entry->flags))
1da177e4
LT
2434 continue;
2435 args->index = probe;
2451337d 2436 return -EEXIST;
1da177e4 2437 } else {
517c2220 2438 name_rmt = xfs_attr3_leaf_name_remote(leaf, probe);
377f16ac
CH
2439 if (!xfs_attr_match(args, name_rmt->namelen,
2440 name_rmt->name, entry->flags))
1da177e4
LT
2441 continue;
2442 args->index = probe;
8275cdd0 2443 args->rmtvaluelen = be32_to_cpu(name_rmt->valuelen);
c0f054e7 2444 args->rmtblkno = be32_to_cpu(name_rmt->valueblk);
ad1858d7
DC
2445 args->rmtblkcnt = xfs_attr3_rmt_blocks(
2446 args->dp->i_mount,
8275cdd0 2447 args->rmtvaluelen);
2451337d 2448 return -EEXIST;
1da177e4
LT
2449 }
2450 }
2451 args->index = probe;
2451337d 2452 return -ENOATTR;
1da177e4
LT
2453}
2454
2455/*
2456 * Get the value associated with an attribute name from a leaf attribute
2457 * list structure.
728bcaa3 2458 *
e513e25c
CH
2459 * If args->valuelen is zero, only the length needs to be returned. Unlike a
2460 * lookup, we only return an error if the attribute does not exist or we can't
2461 * retrieve the value.
1da177e4
LT
2462 */
2463int
517c2220
DC
2464xfs_attr3_leaf_getvalue(
2465 struct xfs_buf *bp,
2466 struct xfs_da_args *args)
1da177e4 2467{
517c2220
DC
2468 struct xfs_attr_leafblock *leaf;
2469 struct xfs_attr3_icleaf_hdr ichdr;
2470 struct xfs_attr_leaf_entry *entry;
2471 struct xfs_attr_leaf_name_local *name_loc;
2472 struct xfs_attr_leaf_name_remote *name_rmt;
1da177e4 2473
1d9025e5 2474 leaf = bp->b_addr;
2f661241 2475 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
c2c4c477 2476 ASSERT(ichdr.count < args->geo->blksize / 8);
517c2220 2477 ASSERT(args->index < ichdr.count);
1da177e4 2478
517c2220 2479 entry = &xfs_attr3_leaf_entryp(leaf)[args->index];
1da177e4 2480 if (entry->flags & XFS_ATTR_LOCAL) {
517c2220 2481 name_loc = xfs_attr3_leaf_name_local(leaf, args->index);
1da177e4
LT
2482 ASSERT(name_loc->namelen == args->namelen);
2483 ASSERT(memcmp(args->name, name_loc->nameval, args->namelen) == 0);
9df243a1
DC
2484 return xfs_attr_copy_value(args,
2485 &name_loc->nameval[args->namelen],
2486 be16_to_cpu(name_loc->valuelen));
a0e959d3
DC
2487 }
2488
2489 name_rmt = xfs_attr3_leaf_name_remote(leaf, args->index);
2490 ASSERT(name_rmt->namelen == args->namelen);
2491 ASSERT(memcmp(args->name, name_rmt->name, args->namelen) == 0);
2492 args->rmtvaluelen = be32_to_cpu(name_rmt->valuelen);
2493 args->rmtblkno = be32_to_cpu(name_rmt->valueblk);
2494 args->rmtblkcnt = xfs_attr3_rmt_blocks(args->dp->i_mount,
2495 args->rmtvaluelen);
9df243a1 2496 return xfs_attr_copy_value(args, NULL, args->rmtvaluelen);
1da177e4
LT
2497}
2498
2499/*========================================================================
2500 * Utility routines.
2501 *========================================================================*/
2502
2503/*
2504 * Move the indicated entries from one leaf to another.
2505 * NOTE: this routine modifies both source and destination leaves.
2506 */
2507/*ARGSUSED*/
2508STATIC void
517c2220 2509xfs_attr3_leaf_moveents(
c2c4c477 2510 struct xfs_da_args *args,
517c2220
DC
2511 struct xfs_attr_leafblock *leaf_s,
2512 struct xfs_attr3_icleaf_hdr *ichdr_s,
2513 int start_s,
2514 struct xfs_attr_leafblock *leaf_d,
2515 struct xfs_attr3_icleaf_hdr *ichdr_d,
2516 int start_d,
c2c4c477 2517 int count)
1da177e4 2518{
517c2220
DC
2519 struct xfs_attr_leaf_entry *entry_s;
2520 struct xfs_attr_leaf_entry *entry_d;
2521 int desti;
2522 int tmp;
2523 int i;
1da177e4
LT
2524
2525 /*
2526 * Check for nothing to do.
2527 */
2528 if (count == 0)
2529 return;
2530
2531 /*
2532 * Set up environment.
2533 */
517c2220
DC
2534 ASSERT(ichdr_s->magic == XFS_ATTR_LEAF_MAGIC ||
2535 ichdr_s->magic == XFS_ATTR3_LEAF_MAGIC);
2536 ASSERT(ichdr_s->magic == ichdr_d->magic);
c2c4c477 2537 ASSERT(ichdr_s->count > 0 && ichdr_s->count < args->geo->blksize / 8);
517c2220
DC
2538 ASSERT(ichdr_s->firstused >= (ichdr_s->count * sizeof(*entry_s))
2539 + xfs_attr3_leaf_hdr_size(leaf_s));
c2c4c477 2540 ASSERT(ichdr_d->count < args->geo->blksize / 8);
517c2220
DC
2541 ASSERT(ichdr_d->firstused >= (ichdr_d->count * sizeof(*entry_d))
2542 + xfs_attr3_leaf_hdr_size(leaf_d));
2543
2544 ASSERT(start_s < ichdr_s->count);
2545 ASSERT(start_d <= ichdr_d->count);
2546 ASSERT(count <= ichdr_s->count);
2547
1da177e4
LT
2548
2549 /*
2550 * Move the entries in the destination leaf up to make a hole?
2551 */
517c2220
DC
2552 if (start_d < ichdr_d->count) {
2553 tmp = ichdr_d->count - start_d;
1da177e4 2554 tmp *= sizeof(xfs_attr_leaf_entry_t);
517c2220
DC
2555 entry_s = &xfs_attr3_leaf_entryp(leaf_d)[start_d];
2556 entry_d = &xfs_attr3_leaf_entryp(leaf_d)[start_d + count];
2557 memmove(entry_d, entry_s, tmp);
1da177e4
LT
2558 }
2559
2560 /*
2561 * Copy all entry's in the same (sorted) order,
2562 * but allocate attribute info packed and in sequence.
2563 */
517c2220
DC
2564 entry_s = &xfs_attr3_leaf_entryp(leaf_s)[start_s];
2565 entry_d = &xfs_attr3_leaf_entryp(leaf_d)[start_d];
1da177e4
LT
2566 desti = start_d;
2567 for (i = 0; i < count; entry_s++, entry_d++, desti++, i++) {
517c2220 2568 ASSERT(be16_to_cpu(entry_s->nameidx) >= ichdr_s->firstused);
1da177e4
LT
2569 tmp = xfs_attr_leaf_entsize(leaf_s, start_s + i);
2570#ifdef GROT
2571 /*
2572 * Code to drop INCOMPLETE entries. Difficult to use as we
2573 * may also need to change the insertion index. Code turned
2574 * off for 6.2, should be revisited later.
2575 */
2576 if (entry_s->flags & XFS_ATTR_INCOMPLETE) { /* skip partials? */
517c2220
DC
2577 memset(xfs_attr3_leaf_name(leaf_s, start_s + i), 0, tmp);
2578 ichdr_s->usedbytes -= tmp;
2579 ichdr_s->count -= 1;
1da177e4
LT
2580 entry_d--; /* to compensate for ++ in loop hdr */
2581 desti--;
2582 if ((start_s + i) < offset)
2583 result++; /* insertion index adjustment */
2584 } else {
2585#endif /* GROT */
517c2220 2586 ichdr_d->firstused -= tmp;
1da177e4
LT
2587 /* both on-disk, don't endian flip twice */
2588 entry_d->hashval = entry_s->hashval;
517c2220 2589 entry_d->nameidx = cpu_to_be16(ichdr_d->firstused);
1da177e4 2590 entry_d->flags = entry_s->flags;
6b19f2d8 2591 ASSERT(be16_to_cpu(entry_d->nameidx) + tmp
c2c4c477 2592 <= args->geo->blksize);
517c2220
DC
2593 memmove(xfs_attr3_leaf_name(leaf_d, desti),
2594 xfs_attr3_leaf_name(leaf_s, start_s + i), tmp);
6b19f2d8 2595 ASSERT(be16_to_cpu(entry_s->nameidx) + tmp
c2c4c477 2596 <= args->geo->blksize);
517c2220
DC
2597 memset(xfs_attr3_leaf_name(leaf_s, start_s + i), 0, tmp);
2598 ichdr_s->usedbytes -= tmp;
2599 ichdr_d->usedbytes += tmp;
2600 ichdr_s->count -= 1;
2601 ichdr_d->count += 1;
2602 tmp = ichdr_d->count * sizeof(xfs_attr_leaf_entry_t)
2603 + xfs_attr3_leaf_hdr_size(leaf_d);
2604 ASSERT(ichdr_d->firstused >= tmp);
1da177e4
LT
2605#ifdef GROT
2606 }
2607#endif /* GROT */
2608 }
2609
2610 /*
2611 * Zero out the entries we just copied.
2612 */
517c2220 2613 if (start_s == ichdr_s->count) {
1da177e4 2614 tmp = count * sizeof(xfs_attr_leaf_entry_t);
517c2220 2615 entry_s = &xfs_attr3_leaf_entryp(leaf_s)[start_s];
1da177e4 2616 ASSERT(((char *)entry_s + tmp) <=
c2c4c477 2617 ((char *)leaf_s + args->geo->blksize));
517c2220 2618 memset(entry_s, 0, tmp);
1da177e4
LT
2619 } else {
2620 /*
2621 * Move the remaining entries down to fill the hole,
2622 * then zero the entries at the top.
2623 */
517c2220
DC
2624 tmp = (ichdr_s->count - count) * sizeof(xfs_attr_leaf_entry_t);
2625 entry_s = &xfs_attr3_leaf_entryp(leaf_s)[start_s + count];
2626 entry_d = &xfs_attr3_leaf_entryp(leaf_s)[start_s];
2627 memmove(entry_d, entry_s, tmp);
1da177e4
LT
2628
2629 tmp = count * sizeof(xfs_attr_leaf_entry_t);
517c2220 2630 entry_s = &xfs_attr3_leaf_entryp(leaf_s)[ichdr_s->count];
1da177e4 2631 ASSERT(((char *)entry_s + tmp) <=
c2c4c477 2632 ((char *)leaf_s + args->geo->blksize));
517c2220 2633 memset(entry_s, 0, tmp);
1da177e4
LT
2634 }
2635
2636 /*
2637 * Fill in the freemap information
2638 */
517c2220
DC
2639 ichdr_d->freemap[0].base = xfs_attr3_leaf_hdr_size(leaf_d);
2640 ichdr_d->freemap[0].base += ichdr_d->count * sizeof(xfs_attr_leaf_entry_t);
2641 ichdr_d->freemap[0].size = ichdr_d->firstused - ichdr_d->freemap[0].base;
2642 ichdr_d->freemap[1].base = 0;
2643 ichdr_d->freemap[2].base = 0;
2644 ichdr_d->freemap[1].size = 0;
2645 ichdr_d->freemap[2].size = 0;
2646 ichdr_s->holes = 1; /* leaf may not be compact */
1da177e4
LT
2647}
2648
2649/*
2650 * Pick up the last hashvalue from a leaf block.
2651 */
2652xfs_dahash_t
1d9025e5
DC
2653xfs_attr_leaf_lasthash(
2654 struct xfs_buf *bp,
2655 int *count)
1da177e4 2656{
517c2220
DC
2657 struct xfs_attr3_icleaf_hdr ichdr;
2658 struct xfs_attr_leaf_entry *entries;
dbd329f1 2659 struct xfs_mount *mp = bp->b_mount;
1da177e4 2660
2f661241 2661 xfs_attr3_leaf_hdr_from_disk(mp->m_attr_geo, &ichdr, bp->b_addr);
517c2220 2662 entries = xfs_attr3_leaf_entryp(bp->b_addr);
1da177e4 2663 if (count)
517c2220
DC
2664 *count = ichdr.count;
2665 if (!ichdr.count)
2666 return 0;
2667 return be32_to_cpu(entries[ichdr.count - 1].hashval);
1da177e4
LT
2668}
2669
2670/*
2671 * Calculate the number of bytes used to store the indicated attribute
2672 * (whether local or remote only calculate bytes in this block).
2673 */
ba0f32d4 2674STATIC int
1da177e4
LT
2675xfs_attr_leaf_entsize(xfs_attr_leafblock_t *leaf, int index)
2676{
517c2220 2677 struct xfs_attr_leaf_entry *entries;
1da177e4
LT
2678 xfs_attr_leaf_name_local_t *name_loc;
2679 xfs_attr_leaf_name_remote_t *name_rmt;
2680 int size;
2681
517c2220
DC
2682 entries = xfs_attr3_leaf_entryp(leaf);
2683 if (entries[index].flags & XFS_ATTR_LOCAL) {
2684 name_loc = xfs_attr3_leaf_name_local(leaf, index);
c9fb86a9 2685 size = xfs_attr_leaf_entsize_local(name_loc->namelen,
053b5758 2686 be16_to_cpu(name_loc->valuelen));
1da177e4 2687 } else {
517c2220 2688 name_rmt = xfs_attr3_leaf_name_remote(leaf, index);
c9fb86a9 2689 size = xfs_attr_leaf_entsize_remote(name_rmt->namelen);
1da177e4 2690 }
517c2220 2691 return size;
1da177e4
LT
2692}
2693
2694/*
2695 * Calculate the number of bytes that would be required to store the new
2696 * attribute (whether local or remote only calculate bytes in this block).
2697 * This routine decides as a side effect whether the attribute will be
2698 * a "local" or a "remote" attribute.
2699 */
2700int
c59f0ad2
DC
2701xfs_attr_leaf_newentsize(
2702 struct xfs_da_args *args,
2703 int *local)
1da177e4 2704{
c59f0ad2 2705 int size;
1da177e4 2706
c59f0ad2
DC
2707 size = xfs_attr_leaf_entsize_local(args->namelen, args->valuelen);
2708 if (size < xfs_attr_leaf_entsize_local_max(args->geo->blksize)) {
2709 if (local)
1da177e4 2710 *local = 1;
c59f0ad2 2711 return size;
1da177e4 2712 }
c59f0ad2
DC
2713 if (local)
2714 *local = 0;
2715 return xfs_attr_leaf_entsize_remote(args->namelen);
1da177e4
LT
2716}
2717
1da177e4
LT
2718
2719/*========================================================================
2720 * Manage the INCOMPLETE flag in a leaf entry
2721 *========================================================================*/
2722
2723/*
2724 * Clear the INCOMPLETE flag on an entry in a leaf block.
2725 */
2726int
517c2220
DC
2727xfs_attr3_leaf_clearflag(
2728 struct xfs_da_args *args)
1da177e4 2729{
517c2220
DC
2730 struct xfs_attr_leafblock *leaf;
2731 struct xfs_attr_leaf_entry *entry;
2732 struct xfs_attr_leaf_name_remote *name_rmt;
2733 struct xfs_buf *bp;
2734 int error;
1da177e4 2735#ifdef DEBUG
517c2220 2736 struct xfs_attr3_icleaf_hdr ichdr;
1da177e4
LT
2737 xfs_attr_leaf_name_local_t *name_loc;
2738 int namelen;
2739 char *name;
2740#endif /* DEBUG */
2741
5a5881cd 2742 trace_xfs_attr_leaf_clearflag(args);
1da177e4
LT
2743 /*
2744 * Set up the operation.
2745 */
dfb87594 2746 error = xfs_attr3_leaf_read(args->trans, args->dp, args->blkno, &bp);
ad14c33a 2747 if (error)
d99831ff 2748 return error;
1da177e4 2749
1d9025e5 2750 leaf = bp->b_addr;
517c2220 2751 entry = &xfs_attr3_leaf_entryp(leaf)[args->index];
1da177e4
LT
2752 ASSERT(entry->flags & XFS_ATTR_INCOMPLETE);
2753
2754#ifdef DEBUG
2f661241 2755 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220
DC
2756 ASSERT(args->index < ichdr.count);
2757 ASSERT(args->index >= 0);
2758
1da177e4 2759 if (entry->flags & XFS_ATTR_LOCAL) {
517c2220 2760 name_loc = xfs_attr3_leaf_name_local(leaf, args->index);
1da177e4
LT
2761 namelen = name_loc->namelen;
2762 name = (char *)name_loc->nameval;
2763 } else {
517c2220 2764 name_rmt = xfs_attr3_leaf_name_remote(leaf, args->index);
1da177e4
LT
2765 namelen = name_rmt->namelen;
2766 name = (char *)name_rmt->name;
2767 }
6b19f2d8 2768 ASSERT(be32_to_cpu(entry->hashval) == args->hashval);
1da177e4
LT
2769 ASSERT(namelen == args->namelen);
2770 ASSERT(memcmp(name, args->name, namelen) == 0);
2771#endif /* DEBUG */
2772
2773 entry->flags &= ~XFS_ATTR_INCOMPLETE;
1d9025e5 2774 xfs_trans_log_buf(args->trans, bp,
1da177e4
LT
2775 XFS_DA_LOGRANGE(leaf, entry, sizeof(*entry)));
2776
2777 if (args->rmtblkno) {
2778 ASSERT((entry->flags & XFS_ATTR_LOCAL) == 0);
517c2220 2779 name_rmt = xfs_attr3_leaf_name_remote(leaf, args->index);
c0f054e7 2780 name_rmt->valueblk = cpu_to_be32(args->rmtblkno);
8275cdd0 2781 name_rmt->valuelen = cpu_to_be32(args->rmtvaluelen);
1d9025e5 2782 xfs_trans_log_buf(args->trans, bp,
1da177e4
LT
2783 XFS_DA_LOGRANGE(leaf, name_rmt, sizeof(*name_rmt)));
2784 }
1da177e4 2785
1fc618d7 2786 return 0;
1da177e4
LT
2787}
2788
2789/*
2790 * Set the INCOMPLETE flag on an entry in a leaf block.
2791 */
2792int
517c2220
DC
2793xfs_attr3_leaf_setflag(
2794 struct xfs_da_args *args)
1da177e4 2795{
517c2220
DC
2796 struct xfs_attr_leafblock *leaf;
2797 struct xfs_attr_leaf_entry *entry;
2798 struct xfs_attr_leaf_name_remote *name_rmt;
2799 struct xfs_buf *bp;
1da177e4 2800 int error;
517c2220
DC
2801#ifdef DEBUG
2802 struct xfs_attr3_icleaf_hdr ichdr;
2803#endif
1da177e4 2804
5a5881cd
DC
2805 trace_xfs_attr_leaf_setflag(args);
2806
1da177e4
LT
2807 /*
2808 * Set up the operation.
2809 */
dfb87594 2810 error = xfs_attr3_leaf_read(args->trans, args->dp, args->blkno, &bp);
ad14c33a 2811 if (error)
d99831ff 2812 return error;
1da177e4 2813
1d9025e5 2814 leaf = bp->b_addr;
517c2220 2815#ifdef DEBUG
2f661241 2816 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr, leaf);
517c2220 2817 ASSERT(args->index < ichdr.count);
1da177e4 2818 ASSERT(args->index >= 0);
517c2220
DC
2819#endif
2820 entry = &xfs_attr3_leaf_entryp(leaf)[args->index];
1da177e4
LT
2821
2822 ASSERT((entry->flags & XFS_ATTR_INCOMPLETE) == 0);
2823 entry->flags |= XFS_ATTR_INCOMPLETE;
1d9025e5 2824 xfs_trans_log_buf(args->trans, bp,
1da177e4
LT
2825 XFS_DA_LOGRANGE(leaf, entry, sizeof(*entry)));
2826 if ((entry->flags & XFS_ATTR_LOCAL) == 0) {
517c2220 2827 name_rmt = xfs_attr3_leaf_name_remote(leaf, args->index);
1da177e4
LT
2828 name_rmt->valueblk = 0;
2829 name_rmt->valuelen = 0;
1d9025e5 2830 xfs_trans_log_buf(args->trans, bp,
1da177e4
LT
2831 XFS_DA_LOGRANGE(leaf, name_rmt, sizeof(*name_rmt)));
2832 }
1da177e4 2833
0949d317 2834 return 0;
1da177e4
LT
2835}
2836
2837/*
2838 * In a single transaction, clear the INCOMPLETE flag on the leaf entry
2839 * given by args->blkno/index and set the INCOMPLETE flag on the leaf
2840 * entry given by args->blkno2/index2.
2841 *
2842 * Note that they could be in different blocks, or in the same block.
2843 */
2844int
517c2220
DC
2845xfs_attr3_leaf_flipflags(
2846 struct xfs_da_args *args)
1da177e4 2847{
517c2220
DC
2848 struct xfs_attr_leafblock *leaf1;
2849 struct xfs_attr_leafblock *leaf2;
2850 struct xfs_attr_leaf_entry *entry1;
2851 struct xfs_attr_leaf_entry *entry2;
2852 struct xfs_attr_leaf_name_remote *name_rmt;
2853 struct xfs_buf *bp1;
2854 struct xfs_buf *bp2;
1da177e4
LT
2855 int error;
2856#ifdef DEBUG
517c2220
DC
2857 struct xfs_attr3_icleaf_hdr ichdr1;
2858 struct xfs_attr3_icleaf_hdr ichdr2;
1da177e4
LT
2859 xfs_attr_leaf_name_local_t *name_loc;
2860 int namelen1, namelen2;
2861 char *name1, *name2;
2862#endif /* DEBUG */
2863
5a5881cd
DC
2864 trace_xfs_attr_leaf_flipflags(args);
2865
1da177e4
LT
2866 /*
2867 * Read the block containing the "old" attr
2868 */
dfb87594 2869 error = xfs_attr3_leaf_read(args->trans, args->dp, args->blkno, &bp1);
ad14c33a
DC
2870 if (error)
2871 return error;
1da177e4
LT
2872
2873 /*
2874 * Read the block containing the "new" attr, if it is different
2875 */
2876 if (args->blkno2 != args->blkno) {
517c2220 2877 error = xfs_attr3_leaf_read(args->trans, args->dp, args->blkno2,
dfb87594 2878 &bp2);
ad14c33a
DC
2879 if (error)
2880 return error;
1da177e4
LT
2881 } else {
2882 bp2 = bp1;
2883 }
2884
1d9025e5 2885 leaf1 = bp1->b_addr;
517c2220 2886 entry1 = &xfs_attr3_leaf_entryp(leaf1)[args->index];
1da177e4 2887
1d9025e5 2888 leaf2 = bp2->b_addr;
517c2220 2889 entry2 = &xfs_attr3_leaf_entryp(leaf2)[args->index2];
1da177e4
LT
2890
2891#ifdef DEBUG
2f661241 2892 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr1, leaf1);
517c2220
DC
2893 ASSERT(args->index < ichdr1.count);
2894 ASSERT(args->index >= 0);
2895
2f661241 2896 xfs_attr3_leaf_hdr_from_disk(args->geo, &ichdr2, leaf2);
517c2220
DC
2897 ASSERT(args->index2 < ichdr2.count);
2898 ASSERT(args->index2 >= 0);
2899
1da177e4 2900 if (entry1->flags & XFS_ATTR_LOCAL) {
517c2220 2901 name_loc = xfs_attr3_leaf_name_local(leaf1, args->index);
1da177e4
LT
2902 namelen1 = name_loc->namelen;
2903 name1 = (char *)name_loc->nameval;
2904 } else {
517c2220 2905 name_rmt = xfs_attr3_leaf_name_remote(leaf1, args->index);
1da177e4
LT
2906 namelen1 = name_rmt->namelen;
2907 name1 = (char *)name_rmt->name;
2908 }
2909 if (entry2->flags & XFS_ATTR_LOCAL) {
517c2220 2910 name_loc = xfs_attr3_leaf_name_local(leaf2, args->index2);
1da177e4
LT
2911 namelen2 = name_loc->namelen;
2912 name2 = (char *)name_loc->nameval;
2913 } else {
517c2220 2914 name_rmt = xfs_attr3_leaf_name_remote(leaf2, args->index2);
1da177e4
LT
2915 namelen2 = name_rmt->namelen;
2916 name2 = (char *)name_rmt->name;
2917 }
6b19f2d8 2918 ASSERT(be32_to_cpu(entry1->hashval) == be32_to_cpu(entry2->hashval));
1da177e4
LT
2919 ASSERT(namelen1 == namelen2);
2920 ASSERT(memcmp(name1, name2, namelen1) == 0);
2921#endif /* DEBUG */
2922
2923 ASSERT(entry1->flags & XFS_ATTR_INCOMPLETE);
2924 ASSERT((entry2->flags & XFS_ATTR_INCOMPLETE) == 0);
2925
2926 entry1->flags &= ~XFS_ATTR_INCOMPLETE;
1d9025e5 2927 xfs_trans_log_buf(args->trans, bp1,
1da177e4
LT
2928 XFS_DA_LOGRANGE(leaf1, entry1, sizeof(*entry1)));
2929 if (args->rmtblkno) {
2930 ASSERT((entry1->flags & XFS_ATTR_LOCAL) == 0);
517c2220 2931 name_rmt = xfs_attr3_leaf_name_remote(leaf1, args->index);
c0f054e7 2932 name_rmt->valueblk = cpu_to_be32(args->rmtblkno);
8275cdd0 2933 name_rmt->valuelen = cpu_to_be32(args->rmtvaluelen);
1d9025e5 2934 xfs_trans_log_buf(args->trans, bp1,
1da177e4
LT
2935 XFS_DA_LOGRANGE(leaf1, name_rmt, sizeof(*name_rmt)));
2936 }
2937
2938 entry2->flags |= XFS_ATTR_INCOMPLETE;
1d9025e5 2939 xfs_trans_log_buf(args->trans, bp2,
1da177e4
LT
2940 XFS_DA_LOGRANGE(leaf2, entry2, sizeof(*entry2)));
2941 if ((entry2->flags & XFS_ATTR_LOCAL) == 0) {
517c2220 2942 name_rmt = xfs_attr3_leaf_name_remote(leaf2, args->index2);
1da177e4
LT
2943 name_rmt->valueblk = 0;
2944 name_rmt->valuelen = 0;
1d9025e5 2945 xfs_trans_log_buf(args->trans, bp2,
1da177e4
LT
2946 XFS_DA_LOGRANGE(leaf2, name_rmt, sizeof(*name_rmt)));
2947 }
1da177e4 2948
e3be1272 2949 return 0;
1da177e4 2950}