blob: 74a3e63242e8231c1d18c59242706d8557020b58 [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0-or-later
2/* -*- mode: c; c-basic-offset: 8; -*-
3 * vim: noexpandtab sw=8 ts=8 sts=0:
4 *
5 * dir.c
6 *
7 * Creates, reads, walks and deletes directory-nodes
8 *
9 * Copyright (C) 2002, 2004 Oracle. All rights reserved.
10 *
11 * Portions of this code from linux/fs/ext3/dir.c
12 *
13 * Copyright (C) 1992, 1993, 1994, 1995
14 * Remy Card (card@masi.ibp.fr)
15 * Laboratoire MASI - Institut Blaise pascal
16 * Universite Pierre et Marie Curie (Paris VI)
17 *
18 * from
19 *
20 * linux/fs/minix/dir.c
21 *
22 * Copyright (C) 1991, 1992 Linus Torvalds
23 */
24
25#include <linux/fs.h>
26#include <linux/types.h>
27#include <linux/slab.h>
28#include <linux/highmem.h>
29#include <linux/quotaops.h>
30#include <linux/sort.h>
31#include <linux/iversion.h>
32
33#include <cluster/masklog.h>
34
35#include "ocfs2.h"
36
37#include "alloc.h"
38#include "blockcheck.h"
39#include "dir.h"
40#include "dlmglue.h"
41#include "extent_map.h"
42#include "file.h"
43#include "inode.h"
44#include "journal.h"
45#include "namei.h"
46#include "suballoc.h"
47#include "super.h"
48#include "sysfile.h"
49#include "uptodate.h"
50#include "ocfs2_trace.h"
51
52#include "buffer_head_io.h"
53
54#define NAMEI_RA_CHUNKS 2
55#define NAMEI_RA_BLOCKS 4
56#define NAMEI_RA_SIZE (NAMEI_RA_CHUNKS * NAMEI_RA_BLOCKS)
57
58static int ocfs2_do_extend_dir(struct super_block *sb,
59 handle_t *handle,
60 struct inode *dir,
61 struct buffer_head *parent_fe_bh,
62 struct ocfs2_alloc_context *data_ac,
63 struct ocfs2_alloc_context *meta_ac,
64 struct buffer_head **new_bh);
65static int ocfs2_dir_indexed(struct inode *inode);
66
67/*
68 * These are distinct checks because future versions of the file system will
69 * want to have a trailing dirent structure independent of indexing.
70 */
71static int ocfs2_supports_dir_trailer(struct inode *dir)
72{
73 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
74
75 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
76 return 0;
77
78 return ocfs2_meta_ecc(osb) || ocfs2_dir_indexed(dir);
79}
80
81/*
82 * "new' here refers to the point at which we're creating a new
83 * directory via "mkdir()", but also when we're expanding an inline
84 * directory. In either case, we don't yet have the indexing bit set
85 * on the directory, so the standard checks will fail in when metaecc
86 * is turned off. Only directory-initialization type functions should
87 * use this then. Everything else wants ocfs2_supports_dir_trailer()
88 */
89static int ocfs2_new_dir_wants_trailer(struct inode *dir)
90{
91 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
92
93 return ocfs2_meta_ecc(osb) ||
94 ocfs2_supports_indexed_dirs(osb);
95}
96
97static inline unsigned int ocfs2_dir_trailer_blk_off(struct super_block *sb)
98{
99 return sb->s_blocksize - sizeof(struct ocfs2_dir_block_trailer);
100}
101
102#define ocfs2_trailer_from_bh(_bh, _sb) ((struct ocfs2_dir_block_trailer *) ((_bh)->b_data + ocfs2_dir_trailer_blk_off((_sb))))
103
104/* XXX ocfs2_block_dqtrailer() is similar but not quite - can we make
105 * them more consistent? */
106struct ocfs2_dir_block_trailer *ocfs2_dir_trailer_from_size(int blocksize,
107 void *data)
108{
109 char *p = data;
110
111 p += blocksize - sizeof(struct ocfs2_dir_block_trailer);
112 return (struct ocfs2_dir_block_trailer *)p;
113}
114
115/*
116 * XXX: This is executed once on every dirent. We should consider optimizing
117 * it.
118 */
119static int ocfs2_skip_dir_trailer(struct inode *dir,
120 struct ocfs2_dir_entry *de,
121 unsigned long offset,
122 unsigned long blklen)
123{
124 unsigned long toff = blklen - sizeof(struct ocfs2_dir_block_trailer);
125
126 if (!ocfs2_supports_dir_trailer(dir))
127 return 0;
128
129 if (offset != toff)
130 return 0;
131
132 return 1;
133}
134
135static void ocfs2_init_dir_trailer(struct inode *inode,
136 struct buffer_head *bh, u16 rec_len)
137{
138 struct ocfs2_dir_block_trailer *trailer;
139
140 trailer = ocfs2_trailer_from_bh(bh, inode->i_sb);
141 strcpy(trailer->db_signature, OCFS2_DIR_TRAILER_SIGNATURE);
142 trailer->db_compat_rec_len =
143 cpu_to_le16(sizeof(struct ocfs2_dir_block_trailer));
144 trailer->db_parent_dinode = cpu_to_le64(OCFS2_I(inode)->ip_blkno);
145 trailer->db_blkno = cpu_to_le64(bh->b_blocknr);
146 trailer->db_free_rec_len = cpu_to_le16(rec_len);
147}
148/*
149 * Link an unindexed block with a dir trailer structure into the index free
150 * list. This function will modify dirdata_bh, but assumes you've already
151 * passed it to the journal.
152 */
153static int ocfs2_dx_dir_link_trailer(struct inode *dir, handle_t *handle,
154 struct buffer_head *dx_root_bh,
155 struct buffer_head *dirdata_bh)
156{
157 int ret;
158 struct ocfs2_dx_root_block *dx_root;
159 struct ocfs2_dir_block_trailer *trailer;
160
161 ret = ocfs2_journal_access_dr(handle, INODE_CACHE(dir), dx_root_bh,
162 OCFS2_JOURNAL_ACCESS_WRITE);
163 if (ret) {
164 mlog_errno(ret);
165 goto out;
166 }
167 trailer = ocfs2_trailer_from_bh(dirdata_bh, dir->i_sb);
168 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
169
170 trailer->db_free_next = dx_root->dr_free_blk;
171 dx_root->dr_free_blk = cpu_to_le64(dirdata_bh->b_blocknr);
172
173 ocfs2_journal_dirty(handle, dx_root_bh);
174
175out:
176 return ret;
177}
178
179static int ocfs2_free_list_at_root(struct ocfs2_dir_lookup_result *res)
180{
181 return res->dl_prev_leaf_bh == NULL;
182}
183
184void ocfs2_free_dir_lookup_result(struct ocfs2_dir_lookup_result *res)
185{
186 brelse(res->dl_dx_root_bh);
187 brelse(res->dl_leaf_bh);
188 brelse(res->dl_dx_leaf_bh);
189 brelse(res->dl_prev_leaf_bh);
190}
191
192static int ocfs2_dir_indexed(struct inode *inode)
193{
194 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INDEXED_DIR_FL)
195 return 1;
196 return 0;
197}
198
199static inline int ocfs2_dx_root_inline(struct ocfs2_dx_root_block *dx_root)
200{
201 return dx_root->dr_flags & OCFS2_DX_FLAG_INLINE;
202}
203
204/*
205 * Hashing code adapted from ext3
206 */
207#define DELTA 0x9E3779B9
208
209static void TEA_transform(__u32 buf[4], __u32 const in[])
210{
211 __u32 sum = 0;
212 __u32 b0 = buf[0], b1 = buf[1];
213 __u32 a = in[0], b = in[1], c = in[2], d = in[3];
214 int n = 16;
215
216 do {
217 sum += DELTA;
218 b0 += ((b1 << 4)+a) ^ (b1+sum) ^ ((b1 >> 5)+b);
219 b1 += ((b0 << 4)+c) ^ (b0+sum) ^ ((b0 >> 5)+d);
220 } while (--n);
221
222 buf[0] += b0;
223 buf[1] += b1;
224}
225
226static void str2hashbuf(const char *msg, int len, __u32 *buf, int num)
227{
228 __u32 pad, val;
229 int i;
230
231 pad = (__u32)len | ((__u32)len << 8);
232 pad |= pad << 16;
233
234 val = pad;
235 if (len > num*4)
236 len = num * 4;
237 for (i = 0; i < len; i++) {
238 if ((i % 4) == 0)
239 val = pad;
240 val = msg[i] + (val << 8);
241 if ((i % 4) == 3) {
242 *buf++ = val;
243 val = pad;
244 num--;
245 }
246 }
247 if (--num >= 0)
248 *buf++ = val;
249 while (--num >= 0)
250 *buf++ = pad;
251}
252
253static void ocfs2_dx_dir_name_hash(struct inode *dir, const char *name, int len,
254 struct ocfs2_dx_hinfo *hinfo)
255{
256 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
257 const char *p;
258 __u32 in[8], buf[4];
259
260 /*
261 * XXX: Is this really necessary, if the index is never looked
262 * at by readdir? Is a hash value of '0' a bad idea?
263 */
264 if ((len == 1 && !strncmp(".", name, 1)) ||
265 (len == 2 && !strncmp("..", name, 2))) {
266 buf[0] = buf[1] = 0;
267 goto out;
268 }
269
270#ifdef OCFS2_DEBUG_DX_DIRS
271 /*
272 * This makes it very easy to debug indexing problems. We
273 * should never allow this to be selected without hand editing
274 * this file though.
275 */
276 buf[0] = buf[1] = len;
277 goto out;
278#endif
279
280 memcpy(buf, osb->osb_dx_seed, sizeof(buf));
281
282 p = name;
283 while (len > 0) {
284 str2hashbuf(p, len, in, 4);
285 TEA_transform(buf, in);
286 len -= 16;
287 p += 16;
288 }
289
290out:
291 hinfo->major_hash = buf[0];
292 hinfo->minor_hash = buf[1];
293}
294
295/*
296 * bh passed here can be an inode block or a dir data block, depending
297 * on the inode inline data flag.
298 */
299static int ocfs2_check_dir_entry(struct inode *dir,
300 struct ocfs2_dir_entry *de,
301 struct buffer_head *bh,
302 char *buf,
303 unsigned int size,
304 unsigned long offset)
305{
306 const char *error_msg = NULL;
307 const int rlen = le16_to_cpu(de->rec_len);
308 const unsigned long next_offset = ((char *) de - buf) + rlen;
309
310 if (unlikely(rlen < OCFS2_DIR_REC_LEN(1)))
311 error_msg = "rec_len is smaller than minimal";
312 else if (unlikely(rlen % 4 != 0))
313 error_msg = "rec_len % 4 != 0";
314 else if (unlikely(rlen < OCFS2_DIR_REC_LEN(de->name_len)))
315 error_msg = "rec_len is too small for name_len";
316 else if (unlikely(next_offset > size))
317 error_msg = "directory entry overrun";
318 else if (unlikely(next_offset > size - OCFS2_DIR_REC_LEN(1)) &&
319 next_offset != size)
320 error_msg = "directory entry too close to end";
321
322 if (unlikely(error_msg != NULL))
323 mlog(ML_ERROR, "bad entry in directory #%llu: %s - "
324 "offset=%lu, inode=%llu, rec_len=%d, name_len=%d\n",
325 (unsigned long long)OCFS2_I(dir)->ip_blkno, error_msg,
326 offset, (unsigned long long)le64_to_cpu(de->inode), rlen,
327 de->name_len);
328
329 return error_msg == NULL ? 1 : 0;
330}
331
332static inline int ocfs2_match(int len,
333 const char * const name,
334 struct ocfs2_dir_entry *de)
335{
336 if (len != de->name_len)
337 return 0;
338 if (!de->inode)
339 return 0;
340 return !memcmp(name, de->name, len);
341}
342
343/*
344 * Returns 0 if not found, -1 on failure, and 1 on success
345 */
346static inline int ocfs2_search_dirblock(struct buffer_head *bh,
347 struct inode *dir,
348 const char *name, int namelen,
349 unsigned long offset,
350 char *first_de,
351 unsigned int bytes,
352 struct ocfs2_dir_entry **res_dir)
353{
354 struct ocfs2_dir_entry *de;
355 char *dlimit, *de_buf;
356 int de_len;
357 int ret = 0;
358
359 de_buf = first_de;
360 dlimit = de_buf + bytes;
361
362 while (de_buf < dlimit - OCFS2_DIR_MEMBER_LEN) {
363 /* this code is executed quadratically often */
364 /* do minimal checking `by hand' */
365
366 de = (struct ocfs2_dir_entry *) de_buf;
367
368 if (de->name + namelen <= dlimit &&
369 ocfs2_match(namelen, name, de)) {
370 /* found a match - just to be sure, do a full check */
371 if (!ocfs2_check_dir_entry(dir, de, bh, first_de,
372 bytes, offset)) {
373 ret = -1;
374 goto bail;
375 }
376 *res_dir = de;
377 ret = 1;
378 goto bail;
379 }
380
381 /* prevent looping on a bad block */
382 de_len = le16_to_cpu(de->rec_len);
383 if (de_len <= 0) {
384 ret = -1;
385 goto bail;
386 }
387
388 de_buf += de_len;
389 offset += de_len;
390 }
391
392bail:
393 trace_ocfs2_search_dirblock(ret);
394 return ret;
395}
396
397static struct buffer_head *ocfs2_find_entry_id(const char *name,
398 int namelen,
399 struct inode *dir,
400 struct ocfs2_dir_entry **res_dir)
401{
402 int ret, found;
403 struct buffer_head *di_bh = NULL;
404 struct ocfs2_dinode *di;
405 struct ocfs2_inline_data *data;
406
407 ret = ocfs2_read_inode_block(dir, &di_bh);
408 if (ret) {
409 mlog_errno(ret);
410 goto out;
411 }
412
413 di = (struct ocfs2_dinode *)di_bh->b_data;
414 data = &di->id2.i_data;
415
416 found = ocfs2_search_dirblock(di_bh, dir, name, namelen, 0,
417 data->id_data, i_size_read(dir), res_dir);
418 if (found == 1)
419 return di_bh;
420
421 brelse(di_bh);
422out:
423 return NULL;
424}
425
426static int ocfs2_validate_dir_block(struct super_block *sb,
427 struct buffer_head *bh)
428{
429 int rc;
430 struct ocfs2_dir_block_trailer *trailer =
431 ocfs2_trailer_from_bh(bh, sb);
432
433
434 /*
435 * We don't validate dirents here, that's handled
436 * in-place when the code walks them.
437 */
438 trace_ocfs2_validate_dir_block((unsigned long long)bh->b_blocknr);
439
440 BUG_ON(!buffer_uptodate(bh));
441
442 /*
443 * If the ecc fails, we return the error but otherwise
444 * leave the filesystem running. We know any error is
445 * local to this block.
446 *
447 * Note that we are safe to call this even if the directory
448 * doesn't have a trailer. Filesystems without metaecc will do
449 * nothing, and filesystems with it will have one.
450 */
451 rc = ocfs2_validate_meta_ecc(sb, bh->b_data, &trailer->db_check);
452 if (rc)
453 mlog(ML_ERROR, "Checksum failed for dinode %llu\n",
454 (unsigned long long)bh->b_blocknr);
455
456 return rc;
457}
458
459/*
460 * Validate a directory trailer.
461 *
462 * We check the trailer here rather than in ocfs2_validate_dir_block()
463 * because that function doesn't have the inode to test.
464 */
465static int ocfs2_check_dir_trailer(struct inode *dir, struct buffer_head *bh)
466{
467 int rc = 0;
468 struct ocfs2_dir_block_trailer *trailer;
469
470 trailer = ocfs2_trailer_from_bh(bh, dir->i_sb);
471 if (!OCFS2_IS_VALID_DIR_TRAILER(trailer)) {
472 rc = ocfs2_error(dir->i_sb,
473 "Invalid dirblock #%llu: signature = %.*s\n",
474 (unsigned long long)bh->b_blocknr, 7,
475 trailer->db_signature);
476 goto out;
477 }
478 if (le64_to_cpu(trailer->db_blkno) != bh->b_blocknr) {
479 rc = ocfs2_error(dir->i_sb,
480 "Directory block #%llu has an invalid db_blkno of %llu\n",
481 (unsigned long long)bh->b_blocknr,
482 (unsigned long long)le64_to_cpu(trailer->db_blkno));
483 goto out;
484 }
485 if (le64_to_cpu(trailer->db_parent_dinode) !=
486 OCFS2_I(dir)->ip_blkno) {
487 rc = ocfs2_error(dir->i_sb,
488 "Directory block #%llu on dinode #%llu has an invalid parent_dinode of %llu\n",
489 (unsigned long long)bh->b_blocknr,
490 (unsigned long long)OCFS2_I(dir)->ip_blkno,
491 (unsigned long long)le64_to_cpu(trailer->db_blkno));
492 goto out;
493 }
494out:
495 return rc;
496}
497
498/*
499 * This function forces all errors to -EIO for consistency with its
500 * predecessor, ocfs2_bread(). We haven't audited what returning the
501 * real error codes would do to callers. We log the real codes with
502 * mlog_errno() before we squash them.
503 */
504static int ocfs2_read_dir_block(struct inode *inode, u64 v_block,
505 struct buffer_head **bh, int flags)
506{
507 int rc = 0;
508 struct buffer_head *tmp = *bh;
509
510 rc = ocfs2_read_virt_blocks(inode, v_block, 1, &tmp, flags,
511 ocfs2_validate_dir_block);
512 if (rc) {
513 mlog_errno(rc);
514 goto out;
515 }
516
517 if (!(flags & OCFS2_BH_READAHEAD) &&
518 ocfs2_supports_dir_trailer(inode)) {
519 rc = ocfs2_check_dir_trailer(inode, tmp);
520 if (rc) {
521 if (!*bh)
522 brelse(tmp);
523 mlog_errno(rc);
524 goto out;
525 }
526 }
527
528 /* If ocfs2_read_virt_blocks() got us a new bh, pass it up. */
529 if (!*bh)
530 *bh = tmp;
531
532out:
533 return rc ? -EIO : 0;
534}
535
536/*
537 * Read the block at 'phys' which belongs to this directory
538 * inode. This function does no virtual->physical block translation -
539 * what's passed in is assumed to be a valid directory block.
540 */
541static int ocfs2_read_dir_block_direct(struct inode *dir, u64 phys,
542 struct buffer_head **bh)
543{
544 int ret;
545 struct buffer_head *tmp = *bh;
546
547 ret = ocfs2_read_block(INODE_CACHE(dir), phys, &tmp,
548 ocfs2_validate_dir_block);
549 if (ret) {
550 mlog_errno(ret);
551 goto out;
552 }
553
554 if (ocfs2_supports_dir_trailer(dir)) {
555 ret = ocfs2_check_dir_trailer(dir, tmp);
556 if (ret) {
557 if (!*bh)
558 brelse(tmp);
559 mlog_errno(ret);
560 goto out;
561 }
562 }
563
564 if (!ret && !*bh)
565 *bh = tmp;
566out:
567 return ret;
568}
569
570static int ocfs2_validate_dx_root(struct super_block *sb,
571 struct buffer_head *bh)
572{
573 int ret;
574 struct ocfs2_dx_root_block *dx_root;
575
576 BUG_ON(!buffer_uptodate(bh));
577
578 dx_root = (struct ocfs2_dx_root_block *) bh->b_data;
579
580 ret = ocfs2_validate_meta_ecc(sb, bh->b_data, &dx_root->dr_check);
581 if (ret) {
582 mlog(ML_ERROR,
583 "Checksum failed for dir index root block %llu\n",
584 (unsigned long long)bh->b_blocknr);
585 return ret;
586 }
587
588 if (!OCFS2_IS_VALID_DX_ROOT(dx_root)) {
589 ret = ocfs2_error(sb,
590 "Dir Index Root # %llu has bad signature %.*s\n",
591 (unsigned long long)le64_to_cpu(dx_root->dr_blkno),
592 7, dx_root->dr_signature);
593 }
594
595 return ret;
596}
597
598static int ocfs2_read_dx_root(struct inode *dir, struct ocfs2_dinode *di,
599 struct buffer_head **dx_root_bh)
600{
601 int ret;
602 u64 blkno = le64_to_cpu(di->i_dx_root);
603 struct buffer_head *tmp = *dx_root_bh;
604
605 ret = ocfs2_read_block(INODE_CACHE(dir), blkno, &tmp,
606 ocfs2_validate_dx_root);
607
608 /* If ocfs2_read_block() got us a new bh, pass it up. */
609 if (!ret && !*dx_root_bh)
610 *dx_root_bh = tmp;
611
612 return ret;
613}
614
615static int ocfs2_validate_dx_leaf(struct super_block *sb,
616 struct buffer_head *bh)
617{
618 int ret;
619 struct ocfs2_dx_leaf *dx_leaf = (struct ocfs2_dx_leaf *)bh->b_data;
620
621 BUG_ON(!buffer_uptodate(bh));
622
623 ret = ocfs2_validate_meta_ecc(sb, bh->b_data, &dx_leaf->dl_check);
624 if (ret) {
625 mlog(ML_ERROR,
626 "Checksum failed for dir index leaf block %llu\n",
627 (unsigned long long)bh->b_blocknr);
628 return ret;
629 }
630
631 if (!OCFS2_IS_VALID_DX_LEAF(dx_leaf)) {
632 ret = ocfs2_error(sb, "Dir Index Leaf has bad signature %.*s\n",
633 7, dx_leaf->dl_signature);
634 }
635
636 return ret;
637}
638
639static int ocfs2_read_dx_leaf(struct inode *dir, u64 blkno,
640 struct buffer_head **dx_leaf_bh)
641{
642 int ret;
643 struct buffer_head *tmp = *dx_leaf_bh;
644
645 ret = ocfs2_read_block(INODE_CACHE(dir), blkno, &tmp,
646 ocfs2_validate_dx_leaf);
647
648 /* If ocfs2_read_block() got us a new bh, pass it up. */
649 if (!ret && !*dx_leaf_bh)
650 *dx_leaf_bh = tmp;
651
652 return ret;
653}
654
655/*
656 * Read a series of dx_leaf blocks. This expects all buffer_head
657 * pointers to be NULL on function entry.
658 */
659static int ocfs2_read_dx_leaves(struct inode *dir, u64 start, int num,
660 struct buffer_head **dx_leaf_bhs)
661{
662 int ret;
663
664 ret = ocfs2_read_blocks(INODE_CACHE(dir), start, num, dx_leaf_bhs, 0,
665 ocfs2_validate_dx_leaf);
666 if (ret)
667 mlog_errno(ret);
668
669 return ret;
670}
671
672static struct buffer_head *ocfs2_find_entry_el(const char *name, int namelen,
673 struct inode *dir,
674 struct ocfs2_dir_entry **res_dir)
675{
676 struct super_block *sb;
677 struct buffer_head *bh_use[NAMEI_RA_SIZE];
678 struct buffer_head *bh, *ret = NULL;
679 unsigned long start, block, b;
680 int ra_max = 0; /* Number of bh's in the readahead
681 buffer, bh_use[] */
682 int ra_ptr = 0; /* Current index into readahead
683 buffer */
684 int num = 0;
685 int nblocks, i, err;
686
687 sb = dir->i_sb;
688
689 nblocks = i_size_read(dir) >> sb->s_blocksize_bits;
690 start = OCFS2_I(dir)->ip_dir_start_lookup;
691 if (start >= nblocks)
692 start = 0;
693 block = start;
694
695restart:
696 do {
697 /*
698 * We deal with the read-ahead logic here.
699 */
700 if (ra_ptr >= ra_max) {
701 /* Refill the readahead buffer */
702 ra_ptr = 0;
703 b = block;
704 for (ra_max = 0; ra_max < NAMEI_RA_SIZE; ra_max++) {
705 /*
706 * Terminate if we reach the end of the
707 * directory and must wrap, or if our
708 * search has finished at this block.
709 */
710 if (b >= nblocks || (num && block == start)) {
711 bh_use[ra_max] = NULL;
712 break;
713 }
714 num++;
715
716 bh = NULL;
717 err = ocfs2_read_dir_block(dir, b++, &bh,
718 OCFS2_BH_READAHEAD);
719 bh_use[ra_max] = bh;
720 }
721 }
722 if ((bh = bh_use[ra_ptr++]) == NULL)
723 goto next;
724 if (ocfs2_read_dir_block(dir, block, &bh, 0)) {
725 /* read error, skip block & hope for the best.
726 * ocfs2_read_dir_block() has released the bh. */
727 mlog(ML_ERROR, "reading directory %llu, "
728 "offset %lu\n",
729 (unsigned long long)OCFS2_I(dir)->ip_blkno,
730 block);
731 goto next;
732 }
733 i = ocfs2_search_dirblock(bh, dir, name, namelen,
734 block << sb->s_blocksize_bits,
735 bh->b_data, sb->s_blocksize,
736 res_dir);
737 if (i == 1) {
738 OCFS2_I(dir)->ip_dir_start_lookup = block;
739 ret = bh;
740 goto cleanup_and_exit;
741 } else {
742 brelse(bh);
743 if (i < 0)
744 goto cleanup_and_exit;
745 }
746 next:
747 if (++block >= nblocks)
748 block = 0;
749 } while (block != start);
750
751 /*
752 * If the directory has grown while we were searching, then
753 * search the last part of the directory before giving up.
754 */
755 block = nblocks;
756 nblocks = i_size_read(dir) >> sb->s_blocksize_bits;
757 if (block < nblocks) {
758 start = 0;
759 goto restart;
760 }
761
762cleanup_and_exit:
763 /* Clean up the read-ahead blocks */
764 for (; ra_ptr < ra_max; ra_ptr++)
765 brelse(bh_use[ra_ptr]);
766
767 trace_ocfs2_find_entry_el(ret);
768 return ret;
769}
770
771static int ocfs2_dx_dir_lookup_rec(struct inode *inode,
772 struct ocfs2_extent_list *el,
773 u32 major_hash,
774 u32 *ret_cpos,
775 u64 *ret_phys_blkno,
776 unsigned int *ret_clen)
777{
778 int ret = 0, i, found;
779 struct buffer_head *eb_bh = NULL;
780 struct ocfs2_extent_block *eb;
781 struct ocfs2_extent_rec *rec = NULL;
782
783 if (el->l_tree_depth) {
784 ret = ocfs2_find_leaf(INODE_CACHE(inode), el, major_hash,
785 &eb_bh);
786 if (ret) {
787 mlog_errno(ret);
788 goto out;
789 }
790
791 eb = (struct ocfs2_extent_block *) eb_bh->b_data;
792 el = &eb->h_list;
793
794 if (el->l_tree_depth) {
795 ret = ocfs2_error(inode->i_sb,
796 "Inode %lu has non zero tree depth in btree tree block %llu\n",
797 inode->i_ino,
798 (unsigned long long)eb_bh->b_blocknr);
799 goto out;
800 }
801 }
802
803 found = 0;
804 for (i = le16_to_cpu(el->l_next_free_rec) - 1; i >= 0; i--) {
805 rec = &el->l_recs[i];
806
807 if (le32_to_cpu(rec->e_cpos) <= major_hash) {
808 found = 1;
809 break;
810 }
811 }
812
813 if (!found) {
814 ret = ocfs2_error(inode->i_sb,
815 "Inode %lu has bad extent record (%u, %u, 0) in btree\n",
816 inode->i_ino,
817 le32_to_cpu(rec->e_cpos),
818 ocfs2_rec_clusters(el, rec));
819 goto out;
820 }
821
822 if (ret_phys_blkno)
823 *ret_phys_blkno = le64_to_cpu(rec->e_blkno);
824 if (ret_cpos)
825 *ret_cpos = le32_to_cpu(rec->e_cpos);
826 if (ret_clen)
827 *ret_clen = le16_to_cpu(rec->e_leaf_clusters);
828
829out:
830 brelse(eb_bh);
831 return ret;
832}
833
834/*
835 * Returns the block index, from the start of the cluster which this
836 * hash belongs too.
837 */
838static inline unsigned int __ocfs2_dx_dir_hash_idx(struct ocfs2_super *osb,
839 u32 minor_hash)
840{
841 return minor_hash & osb->osb_dx_mask;
842}
843
844static inline unsigned int ocfs2_dx_dir_hash_idx(struct ocfs2_super *osb,
845 struct ocfs2_dx_hinfo *hinfo)
846{
847 return __ocfs2_dx_dir_hash_idx(osb, hinfo->minor_hash);
848}
849
850static int ocfs2_dx_dir_lookup(struct inode *inode,
851 struct ocfs2_extent_list *el,
852 struct ocfs2_dx_hinfo *hinfo,
853 u32 *ret_cpos,
854 u64 *ret_phys_blkno)
855{
856 int ret = 0;
857 unsigned int cend, clen;
858 u32 cpos;
859 u64 blkno;
860 u32 name_hash = hinfo->major_hash;
861
862 ret = ocfs2_dx_dir_lookup_rec(inode, el, name_hash, &cpos, &blkno,
863 &clen);
864 if (ret) {
865 mlog_errno(ret);
866 goto out;
867 }
868
869 cend = cpos + clen;
870 if (name_hash >= cend) {
871 /* We want the last cluster */
872 blkno += ocfs2_clusters_to_blocks(inode->i_sb, clen - 1);
873 cpos += clen - 1;
874 } else {
875 blkno += ocfs2_clusters_to_blocks(inode->i_sb,
876 name_hash - cpos);
877 cpos = name_hash;
878 }
879
880 /*
881 * We now have the cluster which should hold our entry. To
882 * find the exact block from the start of the cluster to
883 * search, we take the lower bits of the hash.
884 */
885 blkno += ocfs2_dx_dir_hash_idx(OCFS2_SB(inode->i_sb), hinfo);
886
887 if (ret_phys_blkno)
888 *ret_phys_blkno = blkno;
889 if (ret_cpos)
890 *ret_cpos = cpos;
891
892out:
893
894 return ret;
895}
896
897static int ocfs2_dx_dir_search(const char *name, int namelen,
898 struct inode *dir,
899 struct ocfs2_dx_root_block *dx_root,
900 struct ocfs2_dir_lookup_result *res)
901{
902 int ret, i, found;
903 u64 phys;
904 struct buffer_head *dx_leaf_bh = NULL;
905 struct ocfs2_dx_leaf *dx_leaf;
906 struct ocfs2_dx_entry *dx_entry = NULL;
907 struct buffer_head *dir_ent_bh = NULL;
908 struct ocfs2_dir_entry *dir_ent = NULL;
909 struct ocfs2_dx_hinfo *hinfo = &res->dl_hinfo;
910 struct ocfs2_extent_list *dr_el;
911 struct ocfs2_dx_entry_list *entry_list;
912
913 ocfs2_dx_dir_name_hash(dir, name, namelen, &res->dl_hinfo);
914
915 if (ocfs2_dx_root_inline(dx_root)) {
916 entry_list = &dx_root->dr_entries;
917 goto search;
918 }
919
920 dr_el = &dx_root->dr_list;
921
922 ret = ocfs2_dx_dir_lookup(dir, dr_el, hinfo, NULL, &phys);
923 if (ret) {
924 mlog_errno(ret);
925 goto out;
926 }
927
928 trace_ocfs2_dx_dir_search((unsigned long long)OCFS2_I(dir)->ip_blkno,
929 namelen, name, hinfo->major_hash,
930 hinfo->minor_hash, (unsigned long long)phys);
931
932 ret = ocfs2_read_dx_leaf(dir, phys, &dx_leaf_bh);
933 if (ret) {
934 mlog_errno(ret);
935 goto out;
936 }
937
938 dx_leaf = (struct ocfs2_dx_leaf *) dx_leaf_bh->b_data;
939
940 trace_ocfs2_dx_dir_search_leaf_info(
941 le16_to_cpu(dx_leaf->dl_list.de_num_used),
942 le16_to_cpu(dx_leaf->dl_list.de_count));
943
944 entry_list = &dx_leaf->dl_list;
945
946search:
947 /*
948 * Empty leaf is legal, so no need to check for that.
949 */
950 found = 0;
951 for (i = 0; i < le16_to_cpu(entry_list->de_num_used); i++) {
952 dx_entry = &entry_list->de_entries[i];
953
954 if (hinfo->major_hash != le32_to_cpu(dx_entry->dx_major_hash)
955 || hinfo->minor_hash != le32_to_cpu(dx_entry->dx_minor_hash))
956 continue;
957
958 /*
959 * Search unindexed leaf block now. We're not
960 * guaranteed to find anything.
961 */
962 ret = ocfs2_read_dir_block_direct(dir,
963 le64_to_cpu(dx_entry->dx_dirent_blk),
964 &dir_ent_bh);
965 if (ret) {
966 mlog_errno(ret);
967 goto out;
968 }
969
970 /*
971 * XXX: We should check the unindexed block here,
972 * before using it.
973 */
974
975 found = ocfs2_search_dirblock(dir_ent_bh, dir, name, namelen,
976 0, dir_ent_bh->b_data,
977 dir->i_sb->s_blocksize, &dir_ent);
978 if (found == 1)
979 break;
980
981 if (found == -1) {
982 /* This means we found a bad directory entry. */
983 ret = -EIO;
984 mlog_errno(ret);
985 goto out;
986 }
987
988 brelse(dir_ent_bh);
989 dir_ent_bh = NULL;
990 }
991
992 if (found <= 0) {
993 ret = -ENOENT;
994 goto out;
995 }
996
997 res->dl_leaf_bh = dir_ent_bh;
998 res->dl_entry = dir_ent;
999 res->dl_dx_leaf_bh = dx_leaf_bh;
1000 res->dl_dx_entry = dx_entry;
1001
1002 ret = 0;
1003out:
1004 if (ret) {
1005 brelse(dx_leaf_bh);
1006 brelse(dir_ent_bh);
1007 }
1008 return ret;
1009}
1010
1011static int ocfs2_find_entry_dx(const char *name, int namelen,
1012 struct inode *dir,
1013 struct ocfs2_dir_lookup_result *lookup)
1014{
1015 int ret;
1016 struct buffer_head *di_bh = NULL;
1017 struct ocfs2_dinode *di;
1018 struct buffer_head *dx_root_bh = NULL;
1019 struct ocfs2_dx_root_block *dx_root;
1020
1021 ret = ocfs2_read_inode_block(dir, &di_bh);
1022 if (ret) {
1023 mlog_errno(ret);
1024 goto out;
1025 }
1026
1027 di = (struct ocfs2_dinode *)di_bh->b_data;
1028
1029 ret = ocfs2_read_dx_root(dir, di, &dx_root_bh);
1030 if (ret) {
1031 mlog_errno(ret);
1032 goto out;
1033 }
1034 dx_root = (struct ocfs2_dx_root_block *) dx_root_bh->b_data;
1035
1036 ret = ocfs2_dx_dir_search(name, namelen, dir, dx_root, lookup);
1037 if (ret) {
1038 if (ret != -ENOENT)
1039 mlog_errno(ret);
1040 goto out;
1041 }
1042
1043 lookup->dl_dx_root_bh = dx_root_bh;
1044 dx_root_bh = NULL;
1045out:
1046 brelse(di_bh);
1047 brelse(dx_root_bh);
1048 return ret;
1049}
1050
1051/*
1052 * Try to find an entry of the provided name within 'dir'.
1053 *
1054 * If nothing was found, -ENOENT is returned. Otherwise, zero is
1055 * returned and the struct 'res' will contain information useful to
1056 * other directory manipulation functions.
1057 *
1058 * Caller can NOT assume anything about the contents of the
1059 * buffer_heads - they are passed back only so that it can be passed
1060 * into any one of the manipulation functions (add entry, delete
1061 * entry, etc). As an example, bh in the extent directory case is a
1062 * data block, in the inline-data case it actually points to an inode,
1063 * in the indexed directory case, multiple buffers are involved.
1064 */
1065int ocfs2_find_entry(const char *name, int namelen,
1066 struct inode *dir, struct ocfs2_dir_lookup_result *lookup)
1067{
1068 struct buffer_head *bh;
1069 struct ocfs2_dir_entry *res_dir = NULL;
1070
1071 if (ocfs2_dir_indexed(dir))
1072 return ocfs2_find_entry_dx(name, namelen, dir, lookup);
1073
1074 /*
1075 * The unindexed dir code only uses part of the lookup
1076 * structure, so there's no reason to push it down further
1077 * than this.
1078 */
1079 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
1080 bh = ocfs2_find_entry_id(name, namelen, dir, &res_dir);
1081 else
1082 bh = ocfs2_find_entry_el(name, namelen, dir, &res_dir);
1083
1084 if (bh == NULL)
1085 return -ENOENT;
1086
1087 lookup->dl_leaf_bh = bh;
1088 lookup->dl_entry = res_dir;
1089 return 0;
1090}
1091
1092/*
1093 * Update inode number and type of a previously found directory entry.
1094 */
1095int ocfs2_update_entry(struct inode *dir, handle_t *handle,
1096 struct ocfs2_dir_lookup_result *res,
1097 struct inode *new_entry_inode)
1098{
1099 int ret;
1100 ocfs2_journal_access_func access = ocfs2_journal_access_db;
1101 struct ocfs2_dir_entry *de = res->dl_entry;
1102 struct buffer_head *de_bh = res->dl_leaf_bh;
1103
1104 /*
1105 * The same code works fine for both inline-data and extent
1106 * based directories, so no need to split this up. The only
1107 * difference is the journal_access function.
1108 */
1109
1110 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
1111 access = ocfs2_journal_access_di;
1112
1113 ret = access(handle, INODE_CACHE(dir), de_bh,
1114 OCFS2_JOURNAL_ACCESS_WRITE);
1115 if (ret) {
1116 mlog_errno(ret);
1117 goto out;
1118 }
1119
1120 de->inode = cpu_to_le64(OCFS2_I(new_entry_inode)->ip_blkno);
1121 ocfs2_set_de_type(de, new_entry_inode->i_mode);
1122
1123 ocfs2_journal_dirty(handle, de_bh);
1124
1125out:
1126 return ret;
1127}
1128
1129/*
1130 * __ocfs2_delete_entry deletes a directory entry by merging it with the
1131 * previous entry
1132 */
1133static int __ocfs2_delete_entry(handle_t *handle, struct inode *dir,
1134 struct ocfs2_dir_entry *de_del,
1135 struct buffer_head *bh, char *first_de,
1136 unsigned int bytes)
1137{
1138 struct ocfs2_dir_entry *de, *pde;
1139 int i, status = -ENOENT;
1140 ocfs2_journal_access_func access = ocfs2_journal_access_db;
1141
1142 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
1143 access = ocfs2_journal_access_di;
1144
1145 i = 0;
1146 pde = NULL;
1147 de = (struct ocfs2_dir_entry *) first_de;
1148 while (i < bytes) {
1149 if (!ocfs2_check_dir_entry(dir, de, bh, first_de, bytes, i)) {
1150 status = -EIO;
1151 mlog_errno(status);
1152 goto bail;
1153 }
1154 if (de == de_del) {
1155 status = access(handle, INODE_CACHE(dir), bh,
1156 OCFS2_JOURNAL_ACCESS_WRITE);
1157 if (status < 0) {
1158 status = -EIO;
1159 mlog_errno(status);
1160 goto bail;
1161 }
1162 if (pde)
1163 le16_add_cpu(&pde->rec_len,
1164 le16_to_cpu(de->rec_len));
1165 de->inode = 0;
1166 inode_inc_iversion(dir);
1167 ocfs2_journal_dirty(handle, bh);
1168 goto bail;
1169 }
1170 i += le16_to_cpu(de->rec_len);
1171 pde = de;
1172 de = (struct ocfs2_dir_entry *)((char *)de + le16_to_cpu(de->rec_len));
1173 }
1174bail:
1175 return status;
1176}
1177
1178static unsigned int ocfs2_figure_dirent_hole(struct ocfs2_dir_entry *de)
1179{
1180 unsigned int hole;
1181
1182 if (le64_to_cpu(de->inode) == 0)
1183 hole = le16_to_cpu(de->rec_len);
1184 else
1185 hole = le16_to_cpu(de->rec_len) -
1186 OCFS2_DIR_REC_LEN(de->name_len);
1187
1188 return hole;
1189}
1190
1191static int ocfs2_find_max_rec_len(struct super_block *sb,
1192 struct buffer_head *dirblock_bh)
1193{
1194 int size, this_hole, largest_hole = 0;
1195 char *trailer, *de_buf, *limit, *start = dirblock_bh->b_data;
1196 struct ocfs2_dir_entry *de;
1197
1198 trailer = (char *)ocfs2_trailer_from_bh(dirblock_bh, sb);
1199 size = ocfs2_dir_trailer_blk_off(sb);
1200 limit = start + size;
1201 de_buf = start;
1202 de = (struct ocfs2_dir_entry *)de_buf;
1203 do {
1204 if (de_buf != trailer) {
1205 this_hole = ocfs2_figure_dirent_hole(de);
1206 if (this_hole > largest_hole)
1207 largest_hole = this_hole;
1208 }
1209
1210 de_buf += le16_to_cpu(de->rec_len);
1211 de = (struct ocfs2_dir_entry *)de_buf;
1212 } while (de_buf < limit);
1213
1214 if (largest_hole >= OCFS2_DIR_MIN_REC_LEN)
1215 return largest_hole;
1216 return 0;
1217}
1218
1219static void ocfs2_dx_list_remove_entry(struct ocfs2_dx_entry_list *entry_list,
1220 int index)
1221{
1222 int num_used = le16_to_cpu(entry_list->de_num_used);
1223
1224 if (num_used == 1 || index == (num_used - 1))
1225 goto clear;
1226
1227 memmove(&entry_list->de_entries[index],
1228 &entry_list->de_entries[index + 1],
1229 (num_used - index - 1)*sizeof(struct ocfs2_dx_entry));
1230clear:
1231 num_used--;
1232 memset(&entry_list->de_entries[num_used], 0,
1233 sizeof(struct ocfs2_dx_entry));
1234 entry_list->de_num_used = cpu_to_le16(num_used);
1235}
1236
1237static int ocfs2_delete_entry_dx(handle_t *handle, struct inode *dir,
1238 struct ocfs2_dir_lookup_result *lookup)
1239{
1240 int ret, index, max_rec_len, add_to_free_list = 0;
1241 struct buffer_head *dx_root_bh = lookup->dl_dx_root_bh;
1242 struct buffer_head *leaf_bh = lookup->dl_leaf_bh;
1243 struct ocfs2_dx_leaf *dx_leaf;
1244 struct ocfs2_dx_entry *dx_entry = lookup->dl_dx_entry;
1245 struct ocfs2_dir_block_trailer *trailer;
1246 struct ocfs2_dx_root_block *dx_root;
1247 struct ocfs2_dx_entry_list *entry_list;
1248
1249 /*
1250 * This function gets a bit messy because we might have to
1251 * modify the root block, regardless of whether the indexed
1252 * entries are stored inline.
1253 */
1254
1255 /*
1256 * *Only* set 'entry_list' here, based on where we're looking
1257 * for the indexed entries. Later, we might still want to
1258 * journal both blocks, based on free list state.
1259 */
1260 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
1261 if (ocfs2_dx_root_inline(dx_root)) {
1262 entry_list = &dx_root->dr_entries;
1263 } else {
1264 dx_leaf = (struct ocfs2_dx_leaf *) lookup->dl_dx_leaf_bh->b_data;
1265 entry_list = &dx_leaf->dl_list;
1266 }
1267
1268 /* Neither of these are a disk corruption - that should have
1269 * been caught by lookup, before we got here. */
1270 BUG_ON(le16_to_cpu(entry_list->de_count) <= 0);
1271 BUG_ON(le16_to_cpu(entry_list->de_num_used) <= 0);
1272
1273 index = (char *)dx_entry - (char *)entry_list->de_entries;
1274 index /= sizeof(*dx_entry);
1275
1276 if (index >= le16_to_cpu(entry_list->de_num_used)) {
1277 mlog(ML_ERROR, "Dir %llu: Bad dx_entry ptr idx %d, (%p, %p)\n",
1278 (unsigned long long)OCFS2_I(dir)->ip_blkno, index,
1279 entry_list, dx_entry);
1280 return -EIO;
1281 }
1282
1283 /*
1284 * We know that removal of this dirent will leave enough room
1285 * for a new one, so add this block to the free list if it
1286 * isn't already there.
1287 */
1288 trailer = ocfs2_trailer_from_bh(leaf_bh, dir->i_sb);
1289 if (trailer->db_free_rec_len == 0)
1290 add_to_free_list = 1;
1291
1292 /*
1293 * Add the block holding our index into the journal before
1294 * removing the unindexed entry. If we get an error return
1295 * from __ocfs2_delete_entry(), then it hasn't removed the
1296 * entry yet. Likewise, successful return means we *must*
1297 * remove the indexed entry.
1298 *
1299 * We're also careful to journal the root tree block here as
1300 * the entry count needs to be updated. Also, we might be
1301 * adding to the start of the free list.
1302 */
1303 ret = ocfs2_journal_access_dr(handle, INODE_CACHE(dir), dx_root_bh,
1304 OCFS2_JOURNAL_ACCESS_WRITE);
1305 if (ret) {
1306 mlog_errno(ret);
1307 goto out;
1308 }
1309
1310 if (!ocfs2_dx_root_inline(dx_root)) {
1311 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir),
1312 lookup->dl_dx_leaf_bh,
1313 OCFS2_JOURNAL_ACCESS_WRITE);
1314 if (ret) {
1315 mlog_errno(ret);
1316 goto out;
1317 }
1318 }
1319
1320 trace_ocfs2_delete_entry_dx((unsigned long long)OCFS2_I(dir)->ip_blkno,
1321 index);
1322
1323 ret = __ocfs2_delete_entry(handle, dir, lookup->dl_entry,
1324 leaf_bh, leaf_bh->b_data, leaf_bh->b_size);
1325 if (ret) {
1326 mlog_errno(ret);
1327 goto out;
1328 }
1329
1330 max_rec_len = ocfs2_find_max_rec_len(dir->i_sb, leaf_bh);
1331 trailer->db_free_rec_len = cpu_to_le16(max_rec_len);
1332 if (add_to_free_list) {
1333 trailer->db_free_next = dx_root->dr_free_blk;
1334 dx_root->dr_free_blk = cpu_to_le64(leaf_bh->b_blocknr);
1335 ocfs2_journal_dirty(handle, dx_root_bh);
1336 }
1337
1338 /* leaf_bh was journal_accessed for us in __ocfs2_delete_entry */
1339 ocfs2_journal_dirty(handle, leaf_bh);
1340
1341 le32_add_cpu(&dx_root->dr_num_entries, -1);
1342 ocfs2_journal_dirty(handle, dx_root_bh);
1343
1344 ocfs2_dx_list_remove_entry(entry_list, index);
1345
1346 if (!ocfs2_dx_root_inline(dx_root))
1347 ocfs2_journal_dirty(handle, lookup->dl_dx_leaf_bh);
1348
1349out:
1350 return ret;
1351}
1352
1353static inline int ocfs2_delete_entry_id(handle_t *handle,
1354 struct inode *dir,
1355 struct ocfs2_dir_entry *de_del,
1356 struct buffer_head *bh)
1357{
1358 int ret;
1359 struct buffer_head *di_bh = NULL;
1360 struct ocfs2_dinode *di;
1361 struct ocfs2_inline_data *data;
1362
1363 ret = ocfs2_read_inode_block(dir, &di_bh);
1364 if (ret) {
1365 mlog_errno(ret);
1366 goto out;
1367 }
1368
1369 di = (struct ocfs2_dinode *)di_bh->b_data;
1370 data = &di->id2.i_data;
1371
1372 ret = __ocfs2_delete_entry(handle, dir, de_del, bh, data->id_data,
1373 i_size_read(dir));
1374
1375 brelse(di_bh);
1376out:
1377 return ret;
1378}
1379
1380static inline int ocfs2_delete_entry_el(handle_t *handle,
1381 struct inode *dir,
1382 struct ocfs2_dir_entry *de_del,
1383 struct buffer_head *bh)
1384{
1385 return __ocfs2_delete_entry(handle, dir, de_del, bh, bh->b_data,
1386 bh->b_size);
1387}
1388
1389/*
1390 * Delete a directory entry. Hide the details of directory
1391 * implementation from the caller.
1392 */
1393int ocfs2_delete_entry(handle_t *handle,
1394 struct inode *dir,
1395 struct ocfs2_dir_lookup_result *res)
1396{
1397 if (ocfs2_dir_indexed(dir))
1398 return ocfs2_delete_entry_dx(handle, dir, res);
1399
1400 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
1401 return ocfs2_delete_entry_id(handle, dir, res->dl_entry,
1402 res->dl_leaf_bh);
1403
1404 return ocfs2_delete_entry_el(handle, dir, res->dl_entry,
1405 res->dl_leaf_bh);
1406}
1407
1408/*
1409 * Check whether 'de' has enough room to hold an entry of
1410 * 'new_rec_len' bytes.
1411 */
1412static inline int ocfs2_dirent_would_fit(struct ocfs2_dir_entry *de,
1413 unsigned int new_rec_len)
1414{
1415 unsigned int de_really_used;
1416
1417 /* Check whether this is an empty record with enough space */
1418 if (le64_to_cpu(de->inode) == 0 &&
1419 le16_to_cpu(de->rec_len) >= new_rec_len)
1420 return 1;
1421
1422 /*
1423 * Record might have free space at the end which we can
1424 * use.
1425 */
1426 de_really_used = OCFS2_DIR_REC_LEN(de->name_len);
1427 if (le16_to_cpu(de->rec_len) >= (de_really_used + new_rec_len))
1428 return 1;
1429
1430 return 0;
1431}
1432
1433static void ocfs2_dx_dir_leaf_insert_tail(struct ocfs2_dx_leaf *dx_leaf,
1434 struct ocfs2_dx_entry *dx_new_entry)
1435{
1436 int i;
1437
1438 i = le16_to_cpu(dx_leaf->dl_list.de_num_used);
1439 dx_leaf->dl_list.de_entries[i] = *dx_new_entry;
1440
1441 le16_add_cpu(&dx_leaf->dl_list.de_num_used, 1);
1442}
1443
1444static void ocfs2_dx_entry_list_insert(struct ocfs2_dx_entry_list *entry_list,
1445 struct ocfs2_dx_hinfo *hinfo,
1446 u64 dirent_blk)
1447{
1448 int i;
1449 struct ocfs2_dx_entry *dx_entry;
1450
1451 i = le16_to_cpu(entry_list->de_num_used);
1452 dx_entry = &entry_list->de_entries[i];
1453
1454 memset(dx_entry, 0, sizeof(*dx_entry));
1455 dx_entry->dx_major_hash = cpu_to_le32(hinfo->major_hash);
1456 dx_entry->dx_minor_hash = cpu_to_le32(hinfo->minor_hash);
1457 dx_entry->dx_dirent_blk = cpu_to_le64(dirent_blk);
1458
1459 le16_add_cpu(&entry_list->de_num_used, 1);
1460}
1461
1462static int __ocfs2_dx_dir_leaf_insert(struct inode *dir, handle_t *handle,
1463 struct ocfs2_dx_hinfo *hinfo,
1464 u64 dirent_blk,
1465 struct buffer_head *dx_leaf_bh)
1466{
1467 int ret;
1468 struct ocfs2_dx_leaf *dx_leaf;
1469
1470 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir), dx_leaf_bh,
1471 OCFS2_JOURNAL_ACCESS_WRITE);
1472 if (ret) {
1473 mlog_errno(ret);
1474 goto out;
1475 }
1476
1477 dx_leaf = (struct ocfs2_dx_leaf *)dx_leaf_bh->b_data;
1478 ocfs2_dx_entry_list_insert(&dx_leaf->dl_list, hinfo, dirent_blk);
1479 ocfs2_journal_dirty(handle, dx_leaf_bh);
1480
1481out:
1482 return ret;
1483}
1484
1485static void ocfs2_dx_inline_root_insert(struct inode *dir, handle_t *handle,
1486 struct ocfs2_dx_hinfo *hinfo,
1487 u64 dirent_blk,
1488 struct ocfs2_dx_root_block *dx_root)
1489{
1490 ocfs2_dx_entry_list_insert(&dx_root->dr_entries, hinfo, dirent_blk);
1491}
1492
1493static int ocfs2_dx_dir_insert(struct inode *dir, handle_t *handle,
1494 struct ocfs2_dir_lookup_result *lookup)
1495{
1496 int ret = 0;
1497 struct ocfs2_dx_root_block *dx_root;
1498 struct buffer_head *dx_root_bh = lookup->dl_dx_root_bh;
1499
1500 ret = ocfs2_journal_access_dr(handle, INODE_CACHE(dir), dx_root_bh,
1501 OCFS2_JOURNAL_ACCESS_WRITE);
1502 if (ret) {
1503 mlog_errno(ret);
1504 goto out;
1505 }
1506
1507 dx_root = (struct ocfs2_dx_root_block *)lookup->dl_dx_root_bh->b_data;
1508 if (ocfs2_dx_root_inline(dx_root)) {
1509 ocfs2_dx_inline_root_insert(dir, handle,
1510 &lookup->dl_hinfo,
1511 lookup->dl_leaf_bh->b_blocknr,
1512 dx_root);
1513 } else {
1514 ret = __ocfs2_dx_dir_leaf_insert(dir, handle, &lookup->dl_hinfo,
1515 lookup->dl_leaf_bh->b_blocknr,
1516 lookup->dl_dx_leaf_bh);
1517 if (ret)
1518 goto out;
1519 }
1520
1521 le32_add_cpu(&dx_root->dr_num_entries, 1);
1522 ocfs2_journal_dirty(handle, dx_root_bh);
1523
1524out:
1525 return ret;
1526}
1527
1528static void ocfs2_remove_block_from_free_list(struct inode *dir,
1529 handle_t *handle,
1530 struct ocfs2_dir_lookup_result *lookup)
1531{
1532 struct ocfs2_dir_block_trailer *trailer, *prev;
1533 struct ocfs2_dx_root_block *dx_root;
1534 struct buffer_head *bh;
1535
1536 trailer = ocfs2_trailer_from_bh(lookup->dl_leaf_bh, dir->i_sb);
1537
1538 if (ocfs2_free_list_at_root(lookup)) {
1539 bh = lookup->dl_dx_root_bh;
1540 dx_root = (struct ocfs2_dx_root_block *)bh->b_data;
1541 dx_root->dr_free_blk = trailer->db_free_next;
1542 } else {
1543 bh = lookup->dl_prev_leaf_bh;
1544 prev = ocfs2_trailer_from_bh(bh, dir->i_sb);
1545 prev->db_free_next = trailer->db_free_next;
1546 }
1547
1548 trailer->db_free_rec_len = cpu_to_le16(0);
1549 trailer->db_free_next = cpu_to_le64(0);
1550
1551 ocfs2_journal_dirty(handle, bh);
1552 ocfs2_journal_dirty(handle, lookup->dl_leaf_bh);
1553}
1554
1555/*
1556 * This expects that a journal write has been reserved on
1557 * lookup->dl_prev_leaf_bh or lookup->dl_dx_root_bh
1558 */
1559static void ocfs2_recalc_free_list(struct inode *dir, handle_t *handle,
1560 struct ocfs2_dir_lookup_result *lookup)
1561{
1562 int max_rec_len;
1563 struct ocfs2_dir_block_trailer *trailer;
1564
1565 /* Walk dl_leaf_bh to figure out what the new free rec_len is. */
1566 max_rec_len = ocfs2_find_max_rec_len(dir->i_sb, lookup->dl_leaf_bh);
1567 if (max_rec_len) {
1568 /*
1569 * There's still room in this block, so no need to remove it
1570 * from the free list. In this case, we just want to update
1571 * the rec len accounting.
1572 */
1573 trailer = ocfs2_trailer_from_bh(lookup->dl_leaf_bh, dir->i_sb);
1574 trailer->db_free_rec_len = cpu_to_le16(max_rec_len);
1575 ocfs2_journal_dirty(handle, lookup->dl_leaf_bh);
1576 } else {
1577 ocfs2_remove_block_from_free_list(dir, handle, lookup);
1578 }
1579}
1580
1581/* we don't always have a dentry for what we want to add, so people
1582 * like orphan dir can call this instead.
1583 *
1584 * The lookup context must have been filled from
1585 * ocfs2_prepare_dir_for_insert.
1586 */
1587int __ocfs2_add_entry(handle_t *handle,
1588 struct inode *dir,
1589 const char *name, int namelen,
1590 struct inode *inode, u64 blkno,
1591 struct buffer_head *parent_fe_bh,
1592 struct ocfs2_dir_lookup_result *lookup)
1593{
1594 unsigned long offset;
1595 unsigned short rec_len;
1596 struct ocfs2_dir_entry *de, *de1;
1597 struct ocfs2_dinode *di = (struct ocfs2_dinode *)parent_fe_bh->b_data;
1598 struct super_block *sb = dir->i_sb;
1599 int retval;
1600 unsigned int size = sb->s_blocksize;
1601 struct buffer_head *insert_bh = lookup->dl_leaf_bh;
1602 char *data_start = insert_bh->b_data;
1603
1604 if (!namelen)
1605 return -EINVAL;
1606
1607 if (ocfs2_dir_indexed(dir)) {
1608 struct buffer_head *bh;
1609
1610 /*
1611 * An indexed dir may require that we update the free space
1612 * list. Reserve a write to the previous node in the list so
1613 * that we don't fail later.
1614 *
1615 * XXX: This can be either a dx_root_block, or an unindexed
1616 * directory tree leaf block.
1617 */
1618 if (ocfs2_free_list_at_root(lookup)) {
1619 bh = lookup->dl_dx_root_bh;
1620 retval = ocfs2_journal_access_dr(handle,
1621 INODE_CACHE(dir), bh,
1622 OCFS2_JOURNAL_ACCESS_WRITE);
1623 } else {
1624 bh = lookup->dl_prev_leaf_bh;
1625 retval = ocfs2_journal_access_db(handle,
1626 INODE_CACHE(dir), bh,
1627 OCFS2_JOURNAL_ACCESS_WRITE);
1628 }
1629 if (retval) {
1630 mlog_errno(retval);
1631 return retval;
1632 }
1633 } else if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
1634 data_start = di->id2.i_data.id_data;
1635 size = i_size_read(dir);
1636
1637 BUG_ON(insert_bh != parent_fe_bh);
1638 }
1639
1640 rec_len = OCFS2_DIR_REC_LEN(namelen);
1641 offset = 0;
1642 de = (struct ocfs2_dir_entry *) data_start;
1643 while (1) {
1644 BUG_ON((char *)de >= (size + data_start));
1645
1646 /* These checks should've already been passed by the
1647 * prepare function, but I guess we can leave them
1648 * here anyway. */
1649 if (!ocfs2_check_dir_entry(dir, de, insert_bh, data_start,
1650 size, offset)) {
1651 retval = -ENOENT;
1652 goto bail;
1653 }
1654 if (ocfs2_match(namelen, name, de)) {
1655 retval = -EEXIST;
1656 goto bail;
1657 }
1658
1659 /* We're guaranteed that we should have space, so we
1660 * can't possibly have hit the trailer...right? */
1661 mlog_bug_on_msg(ocfs2_skip_dir_trailer(dir, de, offset, size),
1662 "Hit dir trailer trying to insert %.*s "
1663 "(namelen %d) into directory %llu. "
1664 "offset is %lu, trailer offset is %d\n",
1665 namelen, name, namelen,
1666 (unsigned long long)parent_fe_bh->b_blocknr,
1667 offset, ocfs2_dir_trailer_blk_off(dir->i_sb));
1668
1669 if (ocfs2_dirent_would_fit(de, rec_len)) {
1670 dir->i_mtime = dir->i_ctime = current_time(dir);
1671 retval = ocfs2_mark_inode_dirty(handle, dir, parent_fe_bh);
1672 if (retval < 0) {
1673 mlog_errno(retval);
1674 goto bail;
1675 }
1676
1677 if (insert_bh == parent_fe_bh)
1678 retval = ocfs2_journal_access_di(handle,
1679 INODE_CACHE(dir),
1680 insert_bh,
1681 OCFS2_JOURNAL_ACCESS_WRITE);
1682 else {
1683 retval = ocfs2_journal_access_db(handle,
1684 INODE_CACHE(dir),
1685 insert_bh,
1686 OCFS2_JOURNAL_ACCESS_WRITE);
1687
1688 if (!retval && ocfs2_dir_indexed(dir))
1689 retval = ocfs2_dx_dir_insert(dir,
1690 handle,
1691 lookup);
1692 }
1693
1694 if (retval) {
1695 mlog_errno(retval);
1696 goto bail;
1697 }
1698
1699 /* By now the buffer is marked for journaling */
1700 offset += le16_to_cpu(de->rec_len);
1701 if (le64_to_cpu(de->inode)) {
1702 de1 = (struct ocfs2_dir_entry *)((char *) de +
1703 OCFS2_DIR_REC_LEN(de->name_len));
1704 de1->rec_len =
1705 cpu_to_le16(le16_to_cpu(de->rec_len) -
1706 OCFS2_DIR_REC_LEN(de->name_len));
1707 de->rec_len = cpu_to_le16(OCFS2_DIR_REC_LEN(de->name_len));
1708 de = de1;
1709 }
1710 de->file_type = FT_UNKNOWN;
1711 if (blkno) {
1712 de->inode = cpu_to_le64(blkno);
1713 ocfs2_set_de_type(de, inode->i_mode);
1714 } else
1715 de->inode = 0;
1716 de->name_len = namelen;
1717 memcpy(de->name, name, namelen);
1718
1719 if (ocfs2_dir_indexed(dir))
1720 ocfs2_recalc_free_list(dir, handle, lookup);
1721
1722 inode_inc_iversion(dir);
1723 ocfs2_journal_dirty(handle, insert_bh);
1724 retval = 0;
1725 goto bail;
1726 }
1727
1728 offset += le16_to_cpu(de->rec_len);
1729 de = (struct ocfs2_dir_entry *) ((char *) de + le16_to_cpu(de->rec_len));
1730 }
1731
1732 /* when you think about it, the assert above should prevent us
1733 * from ever getting here. */
1734 retval = -ENOSPC;
1735bail:
1736 if (retval)
1737 mlog_errno(retval);
1738
1739 return retval;
1740}
1741
1742static int ocfs2_dir_foreach_blk_id(struct inode *inode,
1743 u64 *f_version,
1744 struct dir_context *ctx)
1745{
1746 int ret, i;
1747 unsigned long offset = ctx->pos;
1748 struct buffer_head *di_bh = NULL;
1749 struct ocfs2_dinode *di;
1750 struct ocfs2_inline_data *data;
1751 struct ocfs2_dir_entry *de;
1752
1753 ret = ocfs2_read_inode_block(inode, &di_bh);
1754 if (ret) {
1755 mlog(ML_ERROR, "Unable to read inode block for dir %llu\n",
1756 (unsigned long long)OCFS2_I(inode)->ip_blkno);
1757 goto out;
1758 }
1759
1760 di = (struct ocfs2_dinode *)di_bh->b_data;
1761 data = &di->id2.i_data;
1762
1763 while (ctx->pos < i_size_read(inode)) {
1764 /* If the dir block has changed since the last call to
1765 * readdir(2), then we might be pointing to an invalid
1766 * dirent right now. Scan from the start of the block
1767 * to make sure. */
1768 if (!inode_eq_iversion(inode, *f_version)) {
1769 for (i = 0; i < i_size_read(inode) && i < offset; ) {
1770 de = (struct ocfs2_dir_entry *)
1771 (data->id_data + i);
1772 /* It's too expensive to do a full
1773 * dirent test each time round this
1774 * loop, but we do have to test at
1775 * least that it is non-zero. A
1776 * failure will be detected in the
1777 * dirent test below. */
1778 if (le16_to_cpu(de->rec_len) <
1779 OCFS2_DIR_REC_LEN(1))
1780 break;
1781 i += le16_to_cpu(de->rec_len);
1782 }
1783 ctx->pos = offset = i;
1784 *f_version = inode_query_iversion(inode);
1785 }
1786
1787 de = (struct ocfs2_dir_entry *) (data->id_data + ctx->pos);
1788 if (!ocfs2_check_dir_entry(inode, de, di_bh, (char *)data->id_data,
1789 i_size_read(inode), ctx->pos)) {
1790 /* On error, skip the f_pos to the end. */
1791 ctx->pos = i_size_read(inode);
1792 break;
1793 }
1794 offset += le16_to_cpu(de->rec_len);
1795 if (le64_to_cpu(de->inode)) {
1796 if (!dir_emit(ctx, de->name, de->name_len,
1797 le64_to_cpu(de->inode),
1798 fs_ftype_to_dtype(de->file_type)))
1799 goto out;
1800 }
1801 ctx->pos += le16_to_cpu(de->rec_len);
1802 }
1803out:
1804 brelse(di_bh);
1805 return 0;
1806}
1807
1808/*
1809 * NOTE: This function can be called against unindexed directories,
1810 * and indexed ones.
1811 */
1812static int ocfs2_dir_foreach_blk_el(struct inode *inode,
1813 u64 *f_version,
1814 struct dir_context *ctx,
1815 bool persist)
1816{
1817 unsigned long offset, blk, last_ra_blk = 0;
1818 int i;
1819 struct buffer_head * bh, * tmp;
1820 struct ocfs2_dir_entry * de;
1821 struct super_block * sb = inode->i_sb;
1822 unsigned int ra_sectors = 16;
1823 int stored = 0;
1824
1825 bh = NULL;
1826
1827 offset = ctx->pos & (sb->s_blocksize - 1);
1828
1829 while (ctx->pos < i_size_read(inode)) {
1830 blk = ctx->pos >> sb->s_blocksize_bits;
1831 if (ocfs2_read_dir_block(inode, blk, &bh, 0)) {
1832 /* Skip the corrupt dirblock and keep trying */
1833 ctx->pos += sb->s_blocksize - offset;
1834 continue;
1835 }
1836
1837 /* The idea here is to begin with 8k read-ahead and to stay
1838 * 4k ahead of our current position.
1839 *
1840 * TODO: Use the pagecache for this. We just need to
1841 * make sure it's cluster-safe... */
1842 if (!last_ra_blk
1843 || (((last_ra_blk - blk) << 9) <= (ra_sectors / 2))) {
1844 for (i = ra_sectors >> (sb->s_blocksize_bits - 9);
1845 i > 0; i--) {
1846 tmp = NULL;
1847 if (!ocfs2_read_dir_block(inode, ++blk, &tmp,
1848 OCFS2_BH_READAHEAD))
1849 brelse(tmp);
1850 }
1851 last_ra_blk = blk;
1852 ra_sectors = 8;
1853 }
1854
1855 /* If the dir block has changed since the last call to
1856 * readdir(2), then we might be pointing to an invalid
1857 * dirent right now. Scan from the start of the block
1858 * to make sure. */
1859 if (!inode_eq_iversion(inode, *f_version)) {
1860 for (i = 0; i < sb->s_blocksize && i < offset; ) {
1861 de = (struct ocfs2_dir_entry *) (bh->b_data + i);
1862 /* It's too expensive to do a full
1863 * dirent test each time round this
1864 * loop, but we do have to test at
1865 * least that it is non-zero. A
1866 * failure will be detected in the
1867 * dirent test below. */
1868 if (le16_to_cpu(de->rec_len) <
1869 OCFS2_DIR_REC_LEN(1))
1870 break;
1871 i += le16_to_cpu(de->rec_len);
1872 }
1873 offset = i;
1874 ctx->pos = (ctx->pos & ~(sb->s_blocksize - 1))
1875 | offset;
1876 *f_version = inode_query_iversion(inode);
1877 }
1878
1879 while (ctx->pos < i_size_read(inode)
1880 && offset < sb->s_blocksize) {
1881 de = (struct ocfs2_dir_entry *) (bh->b_data + offset);
1882 if (!ocfs2_check_dir_entry(inode, de, bh, bh->b_data,
1883 sb->s_blocksize, offset)) {
1884 /* On error, skip the f_pos to the
1885 next block. */
1886 ctx->pos = (ctx->pos | (sb->s_blocksize - 1)) + 1;
1887 break;
1888 }
1889 if (le64_to_cpu(de->inode)) {
1890 if (!dir_emit(ctx, de->name,
1891 de->name_len,
1892 le64_to_cpu(de->inode),
1893 fs_ftype_to_dtype(de->file_type))) {
1894 brelse(bh);
1895 return 0;
1896 }
1897 stored++;
1898 }
1899 offset += le16_to_cpu(de->rec_len);
1900 ctx->pos += le16_to_cpu(de->rec_len);
1901 }
1902 offset = 0;
1903 brelse(bh);
1904 bh = NULL;
1905 if (!persist && stored)
1906 break;
1907 }
1908 return 0;
1909}
1910
1911static int ocfs2_dir_foreach_blk(struct inode *inode, u64 *f_version,
1912 struct dir_context *ctx,
1913 bool persist)
1914{
1915 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
1916 return ocfs2_dir_foreach_blk_id(inode, f_version, ctx);
1917 return ocfs2_dir_foreach_blk_el(inode, f_version, ctx, persist);
1918}
1919
1920/*
1921 * This is intended to be called from inside other kernel functions,
1922 * so we fake some arguments.
1923 */
1924int ocfs2_dir_foreach(struct inode *inode, struct dir_context *ctx)
1925{
1926 u64 version = inode_query_iversion(inode);
1927 ocfs2_dir_foreach_blk(inode, &version, ctx, true);
1928 return 0;
1929}
1930
1931/*
1932 * ocfs2_readdir()
1933 *
1934 */
1935int ocfs2_readdir(struct file *file, struct dir_context *ctx)
1936{
1937 int error = 0;
1938 struct inode *inode = file_inode(file);
1939 int lock_level = 0;
1940
1941 trace_ocfs2_readdir((unsigned long long)OCFS2_I(inode)->ip_blkno);
1942
1943 error = ocfs2_inode_lock_atime(inode, file->f_path.mnt, &lock_level, 1);
1944 if (lock_level && error >= 0) {
1945 /* We release EX lock which used to update atime
1946 * and get PR lock again to reduce contention
1947 * on commonly accessed directories. */
1948 ocfs2_inode_unlock(inode, 1);
1949 lock_level = 0;
1950 error = ocfs2_inode_lock(inode, NULL, 0);
1951 }
1952 if (error < 0) {
1953 if (error != -ENOENT)
1954 mlog_errno(error);
1955 /* we haven't got any yet, so propagate the error. */
1956 goto bail_nolock;
1957 }
1958
1959 error = ocfs2_dir_foreach_blk(inode, &file->f_version, ctx, false);
1960
1961 ocfs2_inode_unlock(inode, lock_level);
1962 if (error)
1963 mlog_errno(error);
1964
1965bail_nolock:
1966
1967 return error;
1968}
1969
1970/*
1971 * NOTE: this should always be called with parent dir i_mutex taken.
1972 */
1973int ocfs2_find_files_on_disk(const char *name,
1974 int namelen,
1975 u64 *blkno,
1976 struct inode *inode,
1977 struct ocfs2_dir_lookup_result *lookup)
1978{
1979 int status = -ENOENT;
1980
1981 trace_ocfs2_find_files_on_disk(namelen, name, blkno,
1982 (unsigned long long)OCFS2_I(inode)->ip_blkno);
1983
1984 status = ocfs2_find_entry(name, namelen, inode, lookup);
1985 if (status)
1986 goto leave;
1987
1988 *blkno = le64_to_cpu(lookup->dl_entry->inode);
1989
1990 status = 0;
1991leave:
1992
1993 return status;
1994}
1995
1996/*
1997 * Convenience function for callers which just want the block number
1998 * mapped to a name and don't require the full dirent info, etc.
1999 */
2000int ocfs2_lookup_ino_from_name(struct inode *dir, const char *name,
2001 int namelen, u64 *blkno)
2002{
2003 int ret;
2004 struct ocfs2_dir_lookup_result lookup = { NULL, };
2005
2006 ret = ocfs2_find_files_on_disk(name, namelen, blkno, dir, &lookup);
2007 ocfs2_free_dir_lookup_result(&lookup);
2008
2009 return ret;
2010}
2011
2012/* Check for a name within a directory.
2013 *
2014 * Return 0 if the name does not exist
2015 * Return -EEXIST if the directory contains the name
2016 *
2017 * Callers should have i_mutex + a cluster lock on dir
2018 */
2019int ocfs2_check_dir_for_entry(struct inode *dir,
2020 const char *name,
2021 int namelen)
2022{
2023 int ret = 0;
2024 struct ocfs2_dir_lookup_result lookup = { NULL, };
2025
2026 trace_ocfs2_check_dir_for_entry(
2027 (unsigned long long)OCFS2_I(dir)->ip_blkno, namelen, name);
2028
2029 if (ocfs2_find_entry(name, namelen, dir, &lookup) == 0) {
2030 ret = -EEXIST;
2031 mlog_errno(ret);
2032 }
2033
2034 ocfs2_free_dir_lookup_result(&lookup);
2035
2036 return ret;
2037}
2038
2039struct ocfs2_empty_dir_priv {
2040 struct dir_context ctx;
2041 unsigned seen_dot;
2042 unsigned seen_dot_dot;
2043 unsigned seen_other;
2044 unsigned dx_dir;
2045};
2046static int ocfs2_empty_dir_filldir(struct dir_context *ctx, const char *name,
2047 int name_len, loff_t pos, u64 ino,
2048 unsigned type)
2049{
2050 struct ocfs2_empty_dir_priv *p =
2051 container_of(ctx, struct ocfs2_empty_dir_priv, ctx);
2052
2053 /*
2054 * Check the positions of "." and ".." records to be sure
2055 * they're in the correct place.
2056 *
2057 * Indexed directories don't need to proceed past the first
2058 * two entries, so we end the scan after seeing '..'. Despite
2059 * that, we allow the scan to proceed In the event that we
2060 * have a corrupted indexed directory (no dot or dot dot
2061 * entries). This allows us to double check for existing
2062 * entries which might not have been found in the index.
2063 */
2064 if (name_len == 1 && !strncmp(".", name, 1) && pos == 0) {
2065 p->seen_dot = 1;
2066 return 0;
2067 }
2068
2069 if (name_len == 2 && !strncmp("..", name, 2) &&
2070 pos == OCFS2_DIR_REC_LEN(1)) {
2071 p->seen_dot_dot = 1;
2072
2073 if (p->dx_dir && p->seen_dot)
2074 return 1;
2075
2076 return 0;
2077 }
2078
2079 p->seen_other = 1;
2080 return 1;
2081}
2082
2083static int ocfs2_empty_dir_dx(struct inode *inode,
2084 struct ocfs2_empty_dir_priv *priv)
2085{
2086 int ret;
2087 struct buffer_head *di_bh = NULL;
2088 struct buffer_head *dx_root_bh = NULL;
2089 struct ocfs2_dinode *di;
2090 struct ocfs2_dx_root_block *dx_root;
2091
2092 priv->dx_dir = 1;
2093
2094 ret = ocfs2_read_inode_block(inode, &di_bh);
2095 if (ret) {
2096 mlog_errno(ret);
2097 goto out;
2098 }
2099 di = (struct ocfs2_dinode *)di_bh->b_data;
2100
2101 ret = ocfs2_read_dx_root(inode, di, &dx_root_bh);
2102 if (ret) {
2103 mlog_errno(ret);
2104 goto out;
2105 }
2106 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
2107
2108 if (le32_to_cpu(dx_root->dr_num_entries) != 2)
2109 priv->seen_other = 1;
2110
2111out:
2112 brelse(di_bh);
2113 brelse(dx_root_bh);
2114 return ret;
2115}
2116
2117/*
2118 * routine to check that the specified directory is empty (for rmdir)
2119 *
2120 * Returns 1 if dir is empty, zero otherwise.
2121 *
2122 * XXX: This is a performance problem for unindexed directories.
2123 */
2124int ocfs2_empty_dir(struct inode *inode)
2125{
2126 int ret;
2127 struct ocfs2_empty_dir_priv priv = {
2128 .ctx.actor = ocfs2_empty_dir_filldir,
2129 };
2130
2131 if (ocfs2_dir_indexed(inode)) {
2132 ret = ocfs2_empty_dir_dx(inode, &priv);
2133 if (ret)
2134 mlog_errno(ret);
2135 /*
2136 * We still run ocfs2_dir_foreach to get the checks
2137 * for "." and "..".
2138 */
2139 }
2140
2141 ret = ocfs2_dir_foreach(inode, &priv.ctx);
2142 if (ret)
2143 mlog_errno(ret);
2144
2145 if (!priv.seen_dot || !priv.seen_dot_dot) {
2146 mlog(ML_ERROR, "bad directory (dir #%llu) - no `.' or `..'\n",
2147 (unsigned long long)OCFS2_I(inode)->ip_blkno);
2148 /*
2149 * XXX: Is it really safe to allow an unlink to continue?
2150 */
2151 return 1;
2152 }
2153
2154 return !priv.seen_other;
2155}
2156
2157/*
2158 * Fills "." and ".." dirents in a new directory block. Returns dirent for
2159 * "..", which might be used during creation of a directory with a trailing
2160 * header. It is otherwise safe to ignore the return code.
2161 */
2162static struct ocfs2_dir_entry *ocfs2_fill_initial_dirents(struct inode *inode,
2163 struct inode *parent,
2164 char *start,
2165 unsigned int size)
2166{
2167 struct ocfs2_dir_entry *de = (struct ocfs2_dir_entry *)start;
2168
2169 de->inode = cpu_to_le64(OCFS2_I(inode)->ip_blkno);
2170 de->name_len = 1;
2171 de->rec_len =
2172 cpu_to_le16(OCFS2_DIR_REC_LEN(de->name_len));
2173 strcpy(de->name, ".");
2174 ocfs2_set_de_type(de, S_IFDIR);
2175
2176 de = (struct ocfs2_dir_entry *) ((char *)de + le16_to_cpu(de->rec_len));
2177 de->inode = cpu_to_le64(OCFS2_I(parent)->ip_blkno);
2178 de->rec_len = cpu_to_le16(size - OCFS2_DIR_REC_LEN(1));
2179 de->name_len = 2;
2180 strcpy(de->name, "..");
2181 ocfs2_set_de_type(de, S_IFDIR);
2182
2183 return de;
2184}
2185
2186/*
2187 * This works together with code in ocfs2_mknod_locked() which sets
2188 * the inline-data flag and initializes the inline-data section.
2189 */
2190static int ocfs2_fill_new_dir_id(struct ocfs2_super *osb,
2191 handle_t *handle,
2192 struct inode *parent,
2193 struct inode *inode,
2194 struct buffer_head *di_bh)
2195{
2196 int ret;
2197 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
2198 struct ocfs2_inline_data *data = &di->id2.i_data;
2199 unsigned int size = le16_to_cpu(data->id_count);
2200
2201 ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), di_bh,
2202 OCFS2_JOURNAL_ACCESS_WRITE);
2203 if (ret) {
2204 mlog_errno(ret);
2205 goto out;
2206 }
2207
2208 ocfs2_fill_initial_dirents(inode, parent, data->id_data, size);
2209 ocfs2_journal_dirty(handle, di_bh);
2210
2211 i_size_write(inode, size);
2212 set_nlink(inode, 2);
2213 inode->i_blocks = ocfs2_inode_sector_count(inode);
2214
2215 ret = ocfs2_mark_inode_dirty(handle, inode, di_bh);
2216 if (ret < 0)
2217 mlog_errno(ret);
2218
2219out:
2220 return ret;
2221}
2222
2223static int ocfs2_fill_new_dir_el(struct ocfs2_super *osb,
2224 handle_t *handle,
2225 struct inode *parent,
2226 struct inode *inode,
2227 struct buffer_head *fe_bh,
2228 struct ocfs2_alloc_context *data_ac,
2229 struct buffer_head **ret_new_bh)
2230{
2231 int status;
2232 unsigned int size = osb->sb->s_blocksize;
2233 struct buffer_head *new_bh = NULL;
2234 struct ocfs2_dir_entry *de;
2235
2236 if (ocfs2_new_dir_wants_trailer(inode))
2237 size = ocfs2_dir_trailer_blk_off(parent->i_sb);
2238
2239 status = ocfs2_do_extend_dir(osb->sb, handle, inode, fe_bh,
2240 data_ac, NULL, &new_bh);
2241 if (status < 0) {
2242 mlog_errno(status);
2243 goto bail;
2244 }
2245
2246 ocfs2_set_new_buffer_uptodate(INODE_CACHE(inode), new_bh);
2247
2248 status = ocfs2_journal_access_db(handle, INODE_CACHE(inode), new_bh,
2249 OCFS2_JOURNAL_ACCESS_CREATE);
2250 if (status < 0) {
2251 mlog_errno(status);
2252 goto bail;
2253 }
2254 memset(new_bh->b_data, 0, osb->sb->s_blocksize);
2255
2256 de = ocfs2_fill_initial_dirents(inode, parent, new_bh->b_data, size);
2257 if (ocfs2_new_dir_wants_trailer(inode)) {
2258 int size = le16_to_cpu(de->rec_len);
2259
2260 /*
2261 * Figure out the size of the hole left over after
2262 * insertion of '.' and '..'. The trailer wants this
2263 * information.
2264 */
2265 size -= OCFS2_DIR_REC_LEN(2);
2266 size -= sizeof(struct ocfs2_dir_block_trailer);
2267
2268 ocfs2_init_dir_trailer(inode, new_bh, size);
2269 }
2270
2271 ocfs2_journal_dirty(handle, new_bh);
2272
2273 i_size_write(inode, inode->i_sb->s_blocksize);
2274 set_nlink(inode, 2);
2275 inode->i_blocks = ocfs2_inode_sector_count(inode);
2276 status = ocfs2_mark_inode_dirty(handle, inode, fe_bh);
2277 if (status < 0) {
2278 mlog_errno(status);
2279 goto bail;
2280 }
2281
2282 status = 0;
2283 if (ret_new_bh) {
2284 *ret_new_bh = new_bh;
2285 new_bh = NULL;
2286 }
2287bail:
2288 brelse(new_bh);
2289
2290 return status;
2291}
2292
2293static int ocfs2_dx_dir_attach_index(struct ocfs2_super *osb,
2294 handle_t *handle, struct inode *dir,
2295 struct buffer_head *di_bh,
2296 struct buffer_head *dirdata_bh,
2297 struct ocfs2_alloc_context *meta_ac,
2298 int dx_inline, u32 num_entries,
2299 struct buffer_head **ret_dx_root_bh)
2300{
2301 int ret;
2302 struct ocfs2_dinode *di = (struct ocfs2_dinode *) di_bh->b_data;
2303 u16 dr_suballoc_bit;
2304 u64 suballoc_loc, dr_blkno;
2305 unsigned int num_bits;
2306 struct buffer_head *dx_root_bh = NULL;
2307 struct ocfs2_dx_root_block *dx_root;
2308 struct ocfs2_dir_block_trailer *trailer =
2309 ocfs2_trailer_from_bh(dirdata_bh, dir->i_sb);
2310
2311 ret = ocfs2_claim_metadata(handle, meta_ac, 1, &suballoc_loc,
2312 &dr_suballoc_bit, &num_bits, &dr_blkno);
2313 if (ret) {
2314 mlog_errno(ret);
2315 goto out;
2316 }
2317
2318 trace_ocfs2_dx_dir_attach_index(
2319 (unsigned long long)OCFS2_I(dir)->ip_blkno,
2320 (unsigned long long)dr_blkno);
2321
2322 dx_root_bh = sb_getblk(osb->sb, dr_blkno);
2323 if (dx_root_bh == NULL) {
2324 ret = -ENOMEM;
2325 goto out;
2326 }
2327 ocfs2_set_new_buffer_uptodate(INODE_CACHE(dir), dx_root_bh);
2328
2329 ret = ocfs2_journal_access_dr(handle, INODE_CACHE(dir), dx_root_bh,
2330 OCFS2_JOURNAL_ACCESS_CREATE);
2331 if (ret < 0) {
2332 mlog_errno(ret);
2333 goto out;
2334 }
2335
2336 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
2337 memset(dx_root, 0, osb->sb->s_blocksize);
2338 strcpy(dx_root->dr_signature, OCFS2_DX_ROOT_SIGNATURE);
2339 dx_root->dr_suballoc_slot = cpu_to_le16(meta_ac->ac_alloc_slot);
2340 dx_root->dr_suballoc_loc = cpu_to_le64(suballoc_loc);
2341 dx_root->dr_suballoc_bit = cpu_to_le16(dr_suballoc_bit);
2342 dx_root->dr_fs_generation = cpu_to_le32(osb->fs_generation);
2343 dx_root->dr_blkno = cpu_to_le64(dr_blkno);
2344 dx_root->dr_dir_blkno = cpu_to_le64(OCFS2_I(dir)->ip_blkno);
2345 dx_root->dr_num_entries = cpu_to_le32(num_entries);
2346 if (le16_to_cpu(trailer->db_free_rec_len))
2347 dx_root->dr_free_blk = cpu_to_le64(dirdata_bh->b_blocknr);
2348 else
2349 dx_root->dr_free_blk = cpu_to_le64(0);
2350
2351 if (dx_inline) {
2352 dx_root->dr_flags |= OCFS2_DX_FLAG_INLINE;
2353 dx_root->dr_entries.de_count =
2354 cpu_to_le16(ocfs2_dx_entries_per_root(osb->sb));
2355 } else {
2356 dx_root->dr_list.l_count =
2357 cpu_to_le16(ocfs2_extent_recs_per_dx_root(osb->sb));
2358 }
2359 ocfs2_journal_dirty(handle, dx_root_bh);
2360
2361 ret = ocfs2_journal_access_di(handle, INODE_CACHE(dir), di_bh,
2362 OCFS2_JOURNAL_ACCESS_CREATE);
2363 if (ret) {
2364 mlog_errno(ret);
2365 goto out;
2366 }
2367
2368 di->i_dx_root = cpu_to_le64(dr_blkno);
2369
2370 spin_lock(&OCFS2_I(dir)->ip_lock);
2371 OCFS2_I(dir)->ip_dyn_features |= OCFS2_INDEXED_DIR_FL;
2372 di->i_dyn_features = cpu_to_le16(OCFS2_I(dir)->ip_dyn_features);
2373 spin_unlock(&OCFS2_I(dir)->ip_lock);
2374
2375 ocfs2_journal_dirty(handle, di_bh);
2376
2377 *ret_dx_root_bh = dx_root_bh;
2378 dx_root_bh = NULL;
2379
2380out:
2381 brelse(dx_root_bh);
2382 return ret;
2383}
2384
2385static int ocfs2_dx_dir_format_cluster(struct ocfs2_super *osb,
2386 handle_t *handle, struct inode *dir,
2387 struct buffer_head **dx_leaves,
2388 int num_dx_leaves, u64 start_blk)
2389{
2390 int ret, i;
2391 struct ocfs2_dx_leaf *dx_leaf;
2392 struct buffer_head *bh;
2393
2394 for (i = 0; i < num_dx_leaves; i++) {
2395 bh = sb_getblk(osb->sb, start_blk + i);
2396 if (bh == NULL) {
2397 ret = -ENOMEM;
2398 goto out;
2399 }
2400 dx_leaves[i] = bh;
2401
2402 ocfs2_set_new_buffer_uptodate(INODE_CACHE(dir), bh);
2403
2404 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir), bh,
2405 OCFS2_JOURNAL_ACCESS_CREATE);
2406 if (ret < 0) {
2407 mlog_errno(ret);
2408 goto out;
2409 }
2410
2411 dx_leaf = (struct ocfs2_dx_leaf *) bh->b_data;
2412
2413 memset(dx_leaf, 0, osb->sb->s_blocksize);
2414 strcpy(dx_leaf->dl_signature, OCFS2_DX_LEAF_SIGNATURE);
2415 dx_leaf->dl_fs_generation = cpu_to_le32(osb->fs_generation);
2416 dx_leaf->dl_blkno = cpu_to_le64(bh->b_blocknr);
2417 dx_leaf->dl_list.de_count =
2418 cpu_to_le16(ocfs2_dx_entries_per_leaf(osb->sb));
2419
2420 trace_ocfs2_dx_dir_format_cluster(
2421 (unsigned long long)OCFS2_I(dir)->ip_blkno,
2422 (unsigned long long)bh->b_blocknr,
2423 le16_to_cpu(dx_leaf->dl_list.de_count));
2424
2425 ocfs2_journal_dirty(handle, bh);
2426 }
2427
2428 ret = 0;
2429out:
2430 return ret;
2431}
2432
2433/*
2434 * Allocates and formats a new cluster for use in an indexed dir
2435 * leaf. This version will not do the extent insert, so that it can be
2436 * used by operations which need careful ordering.
2437 */
2438static int __ocfs2_dx_dir_new_cluster(struct inode *dir,
2439 u32 cpos, handle_t *handle,
2440 struct ocfs2_alloc_context *data_ac,
2441 struct buffer_head **dx_leaves,
2442 int num_dx_leaves, u64 *ret_phys_blkno)
2443{
2444 int ret;
2445 u32 phys, num;
2446 u64 phys_blkno;
2447 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
2448
2449 /*
2450 * XXX: For create, this should claim cluster for the index
2451 * *before* the unindexed insert so that we have a better
2452 * chance of contiguousness as the directory grows in number
2453 * of entries.
2454 */
2455 ret = __ocfs2_claim_clusters(handle, data_ac, 1, 1, &phys, &num);
2456 if (ret) {
2457 mlog_errno(ret);
2458 goto out;
2459 }
2460
2461 /*
2462 * Format the new cluster first. That way, we're inserting
2463 * valid data.
2464 */
2465 phys_blkno = ocfs2_clusters_to_blocks(osb->sb, phys);
2466 ret = ocfs2_dx_dir_format_cluster(osb, handle, dir, dx_leaves,
2467 num_dx_leaves, phys_blkno);
2468 if (ret) {
2469 mlog_errno(ret);
2470 goto out;
2471 }
2472
2473 *ret_phys_blkno = phys_blkno;
2474out:
2475 return ret;
2476}
2477
2478static int ocfs2_dx_dir_new_cluster(struct inode *dir,
2479 struct ocfs2_extent_tree *et,
2480 u32 cpos, handle_t *handle,
2481 struct ocfs2_alloc_context *data_ac,
2482 struct ocfs2_alloc_context *meta_ac,
2483 struct buffer_head **dx_leaves,
2484 int num_dx_leaves)
2485{
2486 int ret;
2487 u64 phys_blkno;
2488
2489 ret = __ocfs2_dx_dir_new_cluster(dir, cpos, handle, data_ac, dx_leaves,
2490 num_dx_leaves, &phys_blkno);
2491 if (ret) {
2492 mlog_errno(ret);
2493 goto out;
2494 }
2495
2496 ret = ocfs2_insert_extent(handle, et, cpos, phys_blkno, 1, 0,
2497 meta_ac);
2498 if (ret)
2499 mlog_errno(ret);
2500out:
2501 return ret;
2502}
2503
2504static struct buffer_head **ocfs2_dx_dir_kmalloc_leaves(struct super_block *sb,
2505 int *ret_num_leaves)
2506{
2507 int num_dx_leaves = ocfs2_clusters_to_blocks(sb, 1);
2508 struct buffer_head **dx_leaves;
2509
2510 dx_leaves = kcalloc(num_dx_leaves, sizeof(struct buffer_head *),
2511 GFP_NOFS);
2512 if (dx_leaves && ret_num_leaves)
2513 *ret_num_leaves = num_dx_leaves;
2514
2515 return dx_leaves;
2516}
2517
2518static int ocfs2_fill_new_dir_dx(struct ocfs2_super *osb,
2519 handle_t *handle,
2520 struct inode *parent,
2521 struct inode *inode,
2522 struct buffer_head *di_bh,
2523 struct ocfs2_alloc_context *data_ac,
2524 struct ocfs2_alloc_context *meta_ac)
2525{
2526 int ret;
2527 struct buffer_head *leaf_bh = NULL;
2528 struct buffer_head *dx_root_bh = NULL;
2529 struct ocfs2_dx_hinfo hinfo;
2530 struct ocfs2_dx_root_block *dx_root;
2531 struct ocfs2_dx_entry_list *entry_list;
2532
2533 /*
2534 * Our strategy is to create the directory as though it were
2535 * unindexed, then add the index block. This works with very
2536 * little complication since the state of a new directory is a
2537 * very well known quantity.
2538 *
2539 * Essentially, we have two dirents ("." and ".."), in the 1st
2540 * block which need indexing. These are easily inserted into
2541 * the index block.
2542 */
2543
2544 ret = ocfs2_fill_new_dir_el(osb, handle, parent, inode, di_bh,
2545 data_ac, &leaf_bh);
2546 if (ret) {
2547 mlog_errno(ret);
2548 goto out;
2549 }
2550
2551 ret = ocfs2_dx_dir_attach_index(osb, handle, inode, di_bh, leaf_bh,
2552 meta_ac, 1, 2, &dx_root_bh);
2553 if (ret) {
2554 mlog_errno(ret);
2555 goto out;
2556 }
2557 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
2558 entry_list = &dx_root->dr_entries;
2559
2560 /* Buffer has been journaled for us by ocfs2_dx_dir_attach_index */
2561 ocfs2_dx_dir_name_hash(inode, ".", 1, &hinfo);
2562 ocfs2_dx_entry_list_insert(entry_list, &hinfo, leaf_bh->b_blocknr);
2563
2564 ocfs2_dx_dir_name_hash(inode, "..", 2, &hinfo);
2565 ocfs2_dx_entry_list_insert(entry_list, &hinfo, leaf_bh->b_blocknr);
2566
2567out:
2568 brelse(dx_root_bh);
2569 brelse(leaf_bh);
2570 return ret;
2571}
2572
2573int ocfs2_fill_new_dir(struct ocfs2_super *osb,
2574 handle_t *handle,
2575 struct inode *parent,
2576 struct inode *inode,
2577 struct buffer_head *fe_bh,
2578 struct ocfs2_alloc_context *data_ac,
2579 struct ocfs2_alloc_context *meta_ac)
2580
2581{
2582 BUG_ON(!ocfs2_supports_inline_data(osb) && data_ac == NULL);
2583
2584 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
2585 return ocfs2_fill_new_dir_id(osb, handle, parent, inode, fe_bh);
2586
2587 if (ocfs2_supports_indexed_dirs(osb))
2588 return ocfs2_fill_new_dir_dx(osb, handle, parent, inode, fe_bh,
2589 data_ac, meta_ac);
2590
2591 return ocfs2_fill_new_dir_el(osb, handle, parent, inode, fe_bh,
2592 data_ac, NULL);
2593}
2594
2595static int ocfs2_dx_dir_index_block(struct inode *dir,
2596 handle_t *handle,
2597 struct buffer_head **dx_leaves,
2598 int num_dx_leaves,
2599 u32 *num_dx_entries,
2600 struct buffer_head *dirent_bh)
2601{
2602 int ret = 0, namelen, i;
2603 char *de_buf, *limit;
2604 struct ocfs2_dir_entry *de;
2605 struct buffer_head *dx_leaf_bh;
2606 struct ocfs2_dx_hinfo hinfo;
2607 u64 dirent_blk = dirent_bh->b_blocknr;
2608
2609 de_buf = dirent_bh->b_data;
2610 limit = de_buf + dir->i_sb->s_blocksize;
2611
2612 while (de_buf < limit) {
2613 de = (struct ocfs2_dir_entry *)de_buf;
2614
2615 namelen = de->name_len;
2616 if (!namelen || !de->inode)
2617 goto inc;
2618
2619 ocfs2_dx_dir_name_hash(dir, de->name, namelen, &hinfo);
2620
2621 i = ocfs2_dx_dir_hash_idx(OCFS2_SB(dir->i_sb), &hinfo);
2622 dx_leaf_bh = dx_leaves[i];
2623
2624 ret = __ocfs2_dx_dir_leaf_insert(dir, handle, &hinfo,
2625 dirent_blk, dx_leaf_bh);
2626 if (ret) {
2627 mlog_errno(ret);
2628 goto out;
2629 }
2630
2631 *num_dx_entries = *num_dx_entries + 1;
2632
2633inc:
2634 de_buf += le16_to_cpu(de->rec_len);
2635 }
2636
2637out:
2638 return ret;
2639}
2640
2641/*
2642 * XXX: This expects dx_root_bh to already be part of the transaction.
2643 */
2644static void ocfs2_dx_dir_index_root_block(struct inode *dir,
2645 struct buffer_head *dx_root_bh,
2646 struct buffer_head *dirent_bh)
2647{
2648 char *de_buf, *limit;
2649 struct ocfs2_dx_root_block *dx_root;
2650 struct ocfs2_dir_entry *de;
2651 struct ocfs2_dx_hinfo hinfo;
2652 u64 dirent_blk = dirent_bh->b_blocknr;
2653
2654 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
2655
2656 de_buf = dirent_bh->b_data;
2657 limit = de_buf + dir->i_sb->s_blocksize;
2658
2659 while (de_buf < limit) {
2660 de = (struct ocfs2_dir_entry *)de_buf;
2661
2662 if (!de->name_len || !de->inode)
2663 goto inc;
2664
2665 ocfs2_dx_dir_name_hash(dir, de->name, de->name_len, &hinfo);
2666
2667 trace_ocfs2_dx_dir_index_root_block(
2668 (unsigned long long)dir->i_ino,
2669 hinfo.major_hash, hinfo.minor_hash,
2670 de->name_len, de->name,
2671 le16_to_cpu(dx_root->dr_entries.de_num_used));
2672
2673 ocfs2_dx_entry_list_insert(&dx_root->dr_entries, &hinfo,
2674 dirent_blk);
2675
2676 le32_add_cpu(&dx_root->dr_num_entries, 1);
2677inc:
2678 de_buf += le16_to_cpu(de->rec_len);
2679 }
2680}
2681
2682/*
2683 * Count the number of inline directory entries in di_bh and compare
2684 * them against the number of entries we can hold in an inline dx root
2685 * block.
2686 */
2687static int ocfs2_new_dx_should_be_inline(struct inode *dir,
2688 struct buffer_head *di_bh)
2689{
2690 int dirent_count = 0;
2691 char *de_buf, *limit;
2692 struct ocfs2_dir_entry *de;
2693 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
2694
2695 de_buf = di->id2.i_data.id_data;
2696 limit = de_buf + i_size_read(dir);
2697
2698 while (de_buf < limit) {
2699 de = (struct ocfs2_dir_entry *)de_buf;
2700
2701 if (de->name_len && de->inode)
2702 dirent_count++;
2703
2704 de_buf += le16_to_cpu(de->rec_len);
2705 }
2706
2707 /* We are careful to leave room for one extra record. */
2708 return dirent_count < ocfs2_dx_entries_per_root(dir->i_sb);
2709}
2710
2711/*
2712 * Expand rec_len of the rightmost dirent in a directory block so that it
2713 * contains the end of our valid space for dirents. We do this during
2714 * expansion from an inline directory to one with extents. The first dir block
2715 * in that case is taken from the inline data portion of the inode block.
2716 *
2717 * This will also return the largest amount of contiguous space for a dirent
2718 * in the block. That value is *not* necessarily the last dirent, even after
2719 * expansion. The directory indexing code wants this value for free space
2720 * accounting. We do this here since we're already walking the entire dir
2721 * block.
2722 *
2723 * We add the dir trailer if this filesystem wants it.
2724 */
2725static unsigned int ocfs2_expand_last_dirent(char *start, unsigned int old_size,
2726 struct inode *dir)
2727{
2728 struct super_block *sb = dir->i_sb;
2729 struct ocfs2_dir_entry *de;
2730 struct ocfs2_dir_entry *prev_de;
2731 char *de_buf, *limit;
2732 unsigned int new_size = sb->s_blocksize;
2733 unsigned int bytes, this_hole;
2734 unsigned int largest_hole = 0;
2735
2736 if (ocfs2_new_dir_wants_trailer(dir))
2737 new_size = ocfs2_dir_trailer_blk_off(sb);
2738
2739 bytes = new_size - old_size;
2740
2741 limit = start + old_size;
2742 de_buf = start;
2743 de = (struct ocfs2_dir_entry *)de_buf;
2744 do {
2745 this_hole = ocfs2_figure_dirent_hole(de);
2746 if (this_hole > largest_hole)
2747 largest_hole = this_hole;
2748
2749 prev_de = de;
2750 de_buf += le16_to_cpu(de->rec_len);
2751 de = (struct ocfs2_dir_entry *)de_buf;
2752 } while (de_buf < limit);
2753
2754 le16_add_cpu(&prev_de->rec_len, bytes);
2755
2756 /* We need to double check this after modification of the final
2757 * dirent. */
2758 this_hole = ocfs2_figure_dirent_hole(prev_de);
2759 if (this_hole > largest_hole)
2760 largest_hole = this_hole;
2761
2762 if (largest_hole >= OCFS2_DIR_MIN_REC_LEN)
2763 return largest_hole;
2764 return 0;
2765}
2766
2767/*
2768 * We allocate enough clusters to fulfill "blocks_wanted", but set
2769 * i_size to exactly one block. Ocfs2_extend_dir() will handle the
2770 * rest automatically for us.
2771 *
2772 * *first_block_bh is a pointer to the 1st data block allocated to the
2773 * directory.
2774 */
2775static int ocfs2_expand_inline_dir(struct inode *dir, struct buffer_head *di_bh,
2776 unsigned int blocks_wanted,
2777 struct ocfs2_dir_lookup_result *lookup,
2778 struct buffer_head **first_block_bh)
2779{
2780 u32 alloc, dx_alloc, bit_off, len, num_dx_entries = 0;
2781 struct super_block *sb = dir->i_sb;
2782 int ret, i, num_dx_leaves = 0, dx_inline = 0,
2783 credits = ocfs2_inline_to_extents_credits(sb);
2784 u64 dx_insert_blkno, blkno,
2785 bytes = blocks_wanted << sb->s_blocksize_bits;
2786 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
2787 struct ocfs2_inode_info *oi = OCFS2_I(dir);
2788 struct ocfs2_alloc_context *data_ac = NULL;
2789 struct ocfs2_alloc_context *meta_ac = NULL;
2790 struct buffer_head *dirdata_bh = NULL;
2791 struct buffer_head *dx_root_bh = NULL;
2792 struct buffer_head **dx_leaves = NULL;
2793 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
2794 handle_t *handle;
2795 struct ocfs2_extent_tree et;
2796 struct ocfs2_extent_tree dx_et;
2797 int did_quota = 0, bytes_allocated = 0;
2798
2799 ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(dir), di_bh);
2800
2801 alloc = ocfs2_clusters_for_bytes(sb, bytes);
2802 dx_alloc = 0;
2803
2804 down_write(&oi->ip_alloc_sem);
2805
2806 if (ocfs2_supports_indexed_dirs(osb)) {
2807 credits += ocfs2_add_dir_index_credits(sb);
2808
2809 dx_inline = ocfs2_new_dx_should_be_inline(dir, di_bh);
2810 if (!dx_inline) {
2811 /* Add one more cluster for an index leaf */
2812 dx_alloc++;
2813 dx_leaves = ocfs2_dx_dir_kmalloc_leaves(sb,
2814 &num_dx_leaves);
2815 if (!dx_leaves) {
2816 ret = -ENOMEM;
2817 mlog_errno(ret);
2818 goto out;
2819 }
2820 }
2821
2822 /* This gets us the dx_root */
2823 ret = ocfs2_reserve_new_metadata_blocks(osb, 1, &meta_ac);
2824 if (ret) {
2825 mlog_errno(ret);
2826 goto out;
2827 }
2828 }
2829
2830 /*
2831 * We should never need more than 2 clusters for the unindexed
2832 * tree - maximum dirent size is far less than one block. In
2833 * fact, the only time we'd need more than one cluster is if
2834 * blocksize == clustersize and the dirent won't fit in the
2835 * extra space that the expansion to a single block gives. As
2836 * of today, that only happens on 4k/4k file systems.
2837 */
2838 BUG_ON(alloc > 2);
2839
2840 ret = ocfs2_reserve_clusters(osb, alloc + dx_alloc, &data_ac);
2841 if (ret) {
2842 mlog_errno(ret);
2843 goto out;
2844 }
2845
2846 /*
2847 * Prepare for worst case allocation scenario of two separate
2848 * extents in the unindexed tree.
2849 */
2850 if (alloc == 2)
2851 credits += OCFS2_SUBALLOC_ALLOC;
2852
2853 handle = ocfs2_start_trans(osb, credits);
2854 if (IS_ERR(handle)) {
2855 ret = PTR_ERR(handle);
2856 mlog_errno(ret);
2857 goto out;
2858 }
2859
2860 ret = dquot_alloc_space_nodirty(dir,
2861 ocfs2_clusters_to_bytes(osb->sb, alloc + dx_alloc));
2862 if (ret)
2863 goto out_commit;
2864 did_quota = 1;
2865
2866 if (ocfs2_supports_indexed_dirs(osb) && !dx_inline) {
2867 /*
2868 * Allocate our index cluster first, to maximize the
2869 * possibility that unindexed leaves grow
2870 * contiguously.
2871 */
2872 ret = __ocfs2_dx_dir_new_cluster(dir, 0, handle, data_ac,
2873 dx_leaves, num_dx_leaves,
2874 &dx_insert_blkno);
2875 if (ret) {
2876 mlog_errno(ret);
2877 goto out_commit;
2878 }
2879 bytes_allocated += ocfs2_clusters_to_bytes(dir->i_sb, 1);
2880 }
2881
2882 /*
2883 * Try to claim as many clusters as the bitmap can give though
2884 * if we only get one now, that's enough to continue. The rest
2885 * will be claimed after the conversion to extents.
2886 */
2887 if (ocfs2_dir_resv_allowed(osb))
2888 data_ac->ac_resv = &oi->ip_la_data_resv;
2889 ret = ocfs2_claim_clusters(handle, data_ac, 1, &bit_off, &len);
2890 if (ret) {
2891 mlog_errno(ret);
2892 goto out_commit;
2893 }
2894 bytes_allocated += ocfs2_clusters_to_bytes(dir->i_sb, 1);
2895
2896 /*
2897 * Operations are carefully ordered so that we set up the new
2898 * data block first. The conversion from inline data to
2899 * extents follows.
2900 */
2901 blkno = ocfs2_clusters_to_blocks(dir->i_sb, bit_off);
2902 dirdata_bh = sb_getblk(sb, blkno);
2903 if (!dirdata_bh) {
2904 ret = -ENOMEM;
2905 mlog_errno(ret);
2906 goto out_commit;
2907 }
2908
2909 ocfs2_set_new_buffer_uptodate(INODE_CACHE(dir), dirdata_bh);
2910
2911 ret = ocfs2_journal_access_db(handle, INODE_CACHE(dir), dirdata_bh,
2912 OCFS2_JOURNAL_ACCESS_CREATE);
2913 if (ret) {
2914 mlog_errno(ret);
2915 goto out_commit;
2916 }
2917
2918 memcpy(dirdata_bh->b_data, di->id2.i_data.id_data, i_size_read(dir));
2919 memset(dirdata_bh->b_data + i_size_read(dir), 0,
2920 sb->s_blocksize - i_size_read(dir));
2921 i = ocfs2_expand_last_dirent(dirdata_bh->b_data, i_size_read(dir), dir);
2922 if (ocfs2_new_dir_wants_trailer(dir)) {
2923 /*
2924 * Prepare the dir trailer up front. It will otherwise look
2925 * like a valid dirent. Even if inserting the index fails
2926 * (unlikely), then all we'll have done is given first dir
2927 * block a small amount of fragmentation.
2928 */
2929 ocfs2_init_dir_trailer(dir, dirdata_bh, i);
2930 }
2931
2932 ocfs2_update_inode_fsync_trans(handle, dir, 1);
2933 ocfs2_journal_dirty(handle, dirdata_bh);
2934
2935 if (ocfs2_supports_indexed_dirs(osb) && !dx_inline) {
2936 /*
2937 * Dx dirs with an external cluster need to do this up
2938 * front. Inline dx root's get handled later, after
2939 * we've allocated our root block. We get passed back
2940 * a total number of items so that dr_num_entries can
2941 * be correctly set once the dx_root has been
2942 * allocated.
2943 */
2944 ret = ocfs2_dx_dir_index_block(dir, handle, dx_leaves,
2945 num_dx_leaves, &num_dx_entries,
2946 dirdata_bh);
2947 if (ret) {
2948 mlog_errno(ret);
2949 goto out_commit;
2950 }
2951 }
2952
2953 /*
2954 * Set extent, i_size, etc on the directory. After this, the
2955 * inode should contain the same exact dirents as before and
2956 * be fully accessible from system calls.
2957 *
2958 * We let the later dirent insert modify c/mtime - to the user
2959 * the data hasn't changed.
2960 */
2961 ret = ocfs2_journal_access_di(handle, INODE_CACHE(dir), di_bh,
2962 OCFS2_JOURNAL_ACCESS_CREATE);
2963 if (ret) {
2964 mlog_errno(ret);
2965 goto out_commit;
2966 }
2967
2968 spin_lock(&oi->ip_lock);
2969 oi->ip_dyn_features &= ~OCFS2_INLINE_DATA_FL;
2970 di->i_dyn_features = cpu_to_le16(oi->ip_dyn_features);
2971 spin_unlock(&oi->ip_lock);
2972
2973 ocfs2_dinode_new_extent_list(dir, di);
2974
2975 i_size_write(dir, sb->s_blocksize);
2976 dir->i_mtime = dir->i_ctime = current_time(dir);
2977
2978 di->i_size = cpu_to_le64(sb->s_blocksize);
2979 di->i_ctime = di->i_mtime = cpu_to_le64(dir->i_ctime.tv_sec);
2980 di->i_ctime_nsec = di->i_mtime_nsec = cpu_to_le32(dir->i_ctime.tv_nsec);
2981 ocfs2_update_inode_fsync_trans(handle, dir, 1);
2982
2983 /*
2984 * This should never fail as our extent list is empty and all
2985 * related blocks have been journaled already.
2986 */
2987 ret = ocfs2_insert_extent(handle, &et, 0, blkno, len,
2988 0, NULL);
2989 if (ret) {
2990 mlog_errno(ret);
2991 goto out_commit;
2992 }
2993
2994 /*
2995 * Set i_blocks after the extent insert for the most up to
2996 * date ip_clusters value.
2997 */
2998 dir->i_blocks = ocfs2_inode_sector_count(dir);
2999
3000 ocfs2_journal_dirty(handle, di_bh);
3001
3002 if (ocfs2_supports_indexed_dirs(osb)) {
3003 ret = ocfs2_dx_dir_attach_index(osb, handle, dir, di_bh,
3004 dirdata_bh, meta_ac, dx_inline,
3005 num_dx_entries, &dx_root_bh);
3006 if (ret) {
3007 mlog_errno(ret);
3008 goto out_commit;
3009 }
3010
3011 if (dx_inline) {
3012 ocfs2_dx_dir_index_root_block(dir, dx_root_bh,
3013 dirdata_bh);
3014 } else {
3015 ocfs2_init_dx_root_extent_tree(&dx_et,
3016 INODE_CACHE(dir),
3017 dx_root_bh);
3018 ret = ocfs2_insert_extent(handle, &dx_et, 0,
3019 dx_insert_blkno, 1, 0, NULL);
3020 if (ret)
3021 mlog_errno(ret);
3022 }
3023 }
3024
3025 /*
3026 * We asked for two clusters, but only got one in the 1st
3027 * pass. Claim the 2nd cluster as a separate extent.
3028 */
3029 if (alloc > len) {
3030 ret = ocfs2_claim_clusters(handle, data_ac, 1, &bit_off,
3031 &len);
3032 if (ret) {
3033 mlog_errno(ret);
3034 goto out_commit;
3035 }
3036 blkno = ocfs2_clusters_to_blocks(dir->i_sb, bit_off);
3037
3038 ret = ocfs2_insert_extent(handle, &et, 1,
3039 blkno, len, 0, NULL);
3040 if (ret) {
3041 mlog_errno(ret);
3042 goto out_commit;
3043 }
3044 bytes_allocated += ocfs2_clusters_to_bytes(dir->i_sb, 1);
3045 }
3046
3047 *first_block_bh = dirdata_bh;
3048 dirdata_bh = NULL;
3049 if (ocfs2_supports_indexed_dirs(osb)) {
3050 unsigned int off;
3051
3052 if (!dx_inline) {
3053 /*
3054 * We need to return the correct block within the
3055 * cluster which should hold our entry.
3056 */
3057 off = ocfs2_dx_dir_hash_idx(osb,
3058 &lookup->dl_hinfo);
3059 get_bh(dx_leaves[off]);
3060 lookup->dl_dx_leaf_bh = dx_leaves[off];
3061 }
3062 lookup->dl_dx_root_bh = dx_root_bh;
3063 dx_root_bh = NULL;
3064 }
3065
3066out_commit:
3067 if (ret < 0 && did_quota)
3068 dquot_free_space_nodirty(dir, bytes_allocated);
3069
3070 ocfs2_commit_trans(osb, handle);
3071
3072out:
3073 up_write(&oi->ip_alloc_sem);
3074 if (data_ac)
3075 ocfs2_free_alloc_context(data_ac);
3076 if (meta_ac)
3077 ocfs2_free_alloc_context(meta_ac);
3078
3079 if (dx_leaves) {
3080 for (i = 0; i < num_dx_leaves; i++)
3081 brelse(dx_leaves[i]);
3082 kfree(dx_leaves);
3083 }
3084
3085 brelse(dirdata_bh);
3086 brelse(dx_root_bh);
3087
3088 return ret;
3089}
3090
3091/* returns a bh of the 1st new block in the allocation. */
3092static int ocfs2_do_extend_dir(struct super_block *sb,
3093 handle_t *handle,
3094 struct inode *dir,
3095 struct buffer_head *parent_fe_bh,
3096 struct ocfs2_alloc_context *data_ac,
3097 struct ocfs2_alloc_context *meta_ac,
3098 struct buffer_head **new_bh)
3099{
3100 int status;
3101 int extend, did_quota = 0;
3102 u64 p_blkno, v_blkno;
3103
3104 spin_lock(&OCFS2_I(dir)->ip_lock);
3105 extend = (i_size_read(dir) == ocfs2_clusters_to_bytes(sb, OCFS2_I(dir)->ip_clusters));
3106 spin_unlock(&OCFS2_I(dir)->ip_lock);
3107
3108 if (extend) {
3109 u32 offset = OCFS2_I(dir)->ip_clusters;
3110
3111 status = dquot_alloc_space_nodirty(dir,
3112 ocfs2_clusters_to_bytes(sb, 1));
3113 if (status)
3114 goto bail;
3115 did_quota = 1;
3116
3117 status = ocfs2_add_inode_data(OCFS2_SB(sb), dir, &offset,
3118 1, 0, parent_fe_bh, handle,
3119 data_ac, meta_ac, NULL);
3120 BUG_ON(status == -EAGAIN);
3121 if (status < 0) {
3122 mlog_errno(status);
3123 goto bail;
3124 }
3125 }
3126
3127 v_blkno = ocfs2_blocks_for_bytes(sb, i_size_read(dir));
3128 status = ocfs2_extent_map_get_blocks(dir, v_blkno, &p_blkno, NULL, NULL);
3129 if (status < 0) {
3130 mlog_errno(status);
3131 goto bail;
3132 }
3133
3134 *new_bh = sb_getblk(sb, p_blkno);
3135 if (!*new_bh) {
3136 status = -ENOMEM;
3137 mlog_errno(status);
3138 goto bail;
3139 }
3140 status = 0;
3141bail:
3142 if (did_quota && status < 0)
3143 dquot_free_space_nodirty(dir, ocfs2_clusters_to_bytes(sb, 1));
3144 return status;
3145}
3146
3147/*
3148 * Assumes you already have a cluster lock on the directory.
3149 *
3150 * 'blocks_wanted' is only used if we have an inline directory which
3151 * is to be turned into an extent based one. The size of the dirent to
3152 * insert might be larger than the space gained by growing to just one
3153 * block, so we may have to grow the inode by two blocks in that case.
3154 *
3155 * If the directory is already indexed, dx_root_bh must be provided.
3156 */
3157static int ocfs2_extend_dir(struct ocfs2_super *osb,
3158 struct inode *dir,
3159 struct buffer_head *parent_fe_bh,
3160 unsigned int blocks_wanted,
3161 struct ocfs2_dir_lookup_result *lookup,
3162 struct buffer_head **new_de_bh)
3163{
3164 int status = 0;
3165 int credits, num_free_extents, drop_alloc_sem = 0;
3166 loff_t dir_i_size;
3167 struct ocfs2_dinode *fe = (struct ocfs2_dinode *) parent_fe_bh->b_data;
3168 struct ocfs2_extent_list *el = &fe->id2.i_list;
3169 struct ocfs2_alloc_context *data_ac = NULL;
3170 struct ocfs2_alloc_context *meta_ac = NULL;
3171 handle_t *handle = NULL;
3172 struct buffer_head *new_bh = NULL;
3173 struct ocfs2_dir_entry * de;
3174 struct super_block *sb = osb->sb;
3175 struct ocfs2_extent_tree et;
3176 struct buffer_head *dx_root_bh = lookup->dl_dx_root_bh;
3177
3178 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
3179 /*
3180 * This would be a code error as an inline directory should
3181 * never have an index root.
3182 */
3183 BUG_ON(dx_root_bh);
3184
3185 status = ocfs2_expand_inline_dir(dir, parent_fe_bh,
3186 blocks_wanted, lookup,
3187 &new_bh);
3188 if (status) {
3189 mlog_errno(status);
3190 goto bail;
3191 }
3192
3193 /* Expansion from inline to an indexed directory will
3194 * have given us this. */
3195 dx_root_bh = lookup->dl_dx_root_bh;
3196
3197 if (blocks_wanted == 1) {
3198 /*
3199 * If the new dirent will fit inside the space
3200 * created by pushing out to one block, then
3201 * we can complete the operation
3202 * here. Otherwise we have to expand i_size
3203 * and format the 2nd block below.
3204 */
3205 BUG_ON(new_bh == NULL);
3206 goto bail_bh;
3207 }
3208
3209 /*
3210 * Get rid of 'new_bh' - we want to format the 2nd
3211 * data block and return that instead.
3212 */
3213 brelse(new_bh);
3214 new_bh = NULL;
3215
3216 down_write(&OCFS2_I(dir)->ip_alloc_sem);
3217 drop_alloc_sem = 1;
3218 dir_i_size = i_size_read(dir);
3219 credits = OCFS2_SIMPLE_DIR_EXTEND_CREDITS;
3220 goto do_extend;
3221 }
3222
3223 down_write(&OCFS2_I(dir)->ip_alloc_sem);
3224 drop_alloc_sem = 1;
3225 dir_i_size = i_size_read(dir);
3226 trace_ocfs2_extend_dir((unsigned long long)OCFS2_I(dir)->ip_blkno,
3227 dir_i_size);
3228
3229 /* dir->i_size is always block aligned. */
3230 spin_lock(&OCFS2_I(dir)->ip_lock);
3231 if (dir_i_size == ocfs2_clusters_to_bytes(sb, OCFS2_I(dir)->ip_clusters)) {
3232 spin_unlock(&OCFS2_I(dir)->ip_lock);
3233 ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(dir),
3234 parent_fe_bh);
3235 num_free_extents = ocfs2_num_free_extents(&et);
3236 if (num_free_extents < 0) {
3237 status = num_free_extents;
3238 mlog_errno(status);
3239 goto bail;
3240 }
3241
3242 if (!num_free_extents) {
3243 status = ocfs2_reserve_new_metadata(osb, el, &meta_ac);
3244 if (status < 0) {
3245 if (status != -ENOSPC)
3246 mlog_errno(status);
3247 goto bail;
3248 }
3249 }
3250
3251 status = ocfs2_reserve_clusters(osb, 1, &data_ac);
3252 if (status < 0) {
3253 if (status != -ENOSPC)
3254 mlog_errno(status);
3255 goto bail;
3256 }
3257
3258 if (ocfs2_dir_resv_allowed(osb))
3259 data_ac->ac_resv = &OCFS2_I(dir)->ip_la_data_resv;
3260
3261 credits = ocfs2_calc_extend_credits(sb, el);
3262 } else {
3263 spin_unlock(&OCFS2_I(dir)->ip_lock);
3264 credits = OCFS2_SIMPLE_DIR_EXTEND_CREDITS;
3265 }
3266
3267do_extend:
3268 if (ocfs2_dir_indexed(dir))
3269 credits++; /* For attaching the new dirent block to the
3270 * dx_root */
3271
3272 handle = ocfs2_start_trans(osb, credits);
3273 if (IS_ERR(handle)) {
3274 status = PTR_ERR(handle);
3275 handle = NULL;
3276 mlog_errno(status);
3277 goto bail;
3278 }
3279
3280 status = ocfs2_do_extend_dir(osb->sb, handle, dir, parent_fe_bh,
3281 data_ac, meta_ac, &new_bh);
3282 if (status < 0) {
3283 mlog_errno(status);
3284 goto bail;
3285 }
3286
3287 ocfs2_set_new_buffer_uptodate(INODE_CACHE(dir), new_bh);
3288
3289 status = ocfs2_journal_access_db(handle, INODE_CACHE(dir), new_bh,
3290 OCFS2_JOURNAL_ACCESS_CREATE);
3291 if (status < 0) {
3292 mlog_errno(status);
3293 goto bail;
3294 }
3295 memset(new_bh->b_data, 0, sb->s_blocksize);
3296
3297 de = (struct ocfs2_dir_entry *) new_bh->b_data;
3298 de->inode = 0;
3299 if (ocfs2_supports_dir_trailer(dir)) {
3300 de->rec_len = cpu_to_le16(ocfs2_dir_trailer_blk_off(sb));
3301
3302 ocfs2_init_dir_trailer(dir, new_bh, le16_to_cpu(de->rec_len));
3303
3304 if (ocfs2_dir_indexed(dir)) {
3305 status = ocfs2_dx_dir_link_trailer(dir, handle,
3306 dx_root_bh, new_bh);
3307 if (status) {
3308 mlog_errno(status);
3309 goto bail;
3310 }
3311 }
3312 } else {
3313 de->rec_len = cpu_to_le16(sb->s_blocksize);
3314 }
3315 ocfs2_update_inode_fsync_trans(handle, dir, 1);
3316 ocfs2_journal_dirty(handle, new_bh);
3317
3318 dir_i_size += dir->i_sb->s_blocksize;
3319 i_size_write(dir, dir_i_size);
3320 dir->i_blocks = ocfs2_inode_sector_count(dir);
3321 status = ocfs2_mark_inode_dirty(handle, dir, parent_fe_bh);
3322 if (status < 0) {
3323 mlog_errno(status);
3324 goto bail;
3325 }
3326
3327bail_bh:
3328 *new_de_bh = new_bh;
3329 get_bh(*new_de_bh);
3330bail:
3331 if (handle)
3332 ocfs2_commit_trans(osb, handle);
3333 if (drop_alloc_sem)
3334 up_write(&OCFS2_I(dir)->ip_alloc_sem);
3335
3336 if (data_ac)
3337 ocfs2_free_alloc_context(data_ac);
3338 if (meta_ac)
3339 ocfs2_free_alloc_context(meta_ac);
3340
3341 brelse(new_bh);
3342
3343 return status;
3344}
3345
3346static int ocfs2_find_dir_space_id(struct inode *dir, struct buffer_head *di_bh,
3347 const char *name, int namelen,
3348 struct buffer_head **ret_de_bh,
3349 unsigned int *blocks_wanted)
3350{
3351 int ret;
3352 struct super_block *sb = dir->i_sb;
3353 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
3354 struct ocfs2_dir_entry *de, *last_de = NULL;
3355 char *first_de, *de_buf, *limit;
3356 unsigned long offset = 0;
3357 unsigned int rec_len, new_rec_len, free_space = dir->i_sb->s_blocksize;
3358
3359 /*
3360 * This calculates how many free bytes we'd have in block zero, should
3361 * this function force expansion to an extent tree.
3362 */
3363 if (ocfs2_new_dir_wants_trailer(dir))
3364 free_space = ocfs2_dir_trailer_blk_off(sb) - i_size_read(dir);
3365 else
3366 free_space = dir->i_sb->s_blocksize - i_size_read(dir);
3367
3368 first_de = di->id2.i_data.id_data;
3369 de_buf = first_de;
3370 limit = de_buf + i_size_read(dir);
3371 rec_len = OCFS2_DIR_REC_LEN(namelen);
3372
3373 while (de_buf < limit) {
3374 de = (struct ocfs2_dir_entry *)de_buf;
3375
3376 if (!ocfs2_check_dir_entry(dir, de, di_bh, first_de,
3377 i_size_read(dir), offset)) {
3378 ret = -ENOENT;
3379 goto out;
3380 }
3381 if (ocfs2_match(namelen, name, de)) {
3382 ret = -EEXIST;
3383 goto out;
3384 }
3385 /*
3386 * No need to check for a trailing dirent record here as
3387 * they're not used for inline dirs.
3388 */
3389
3390 if (ocfs2_dirent_would_fit(de, rec_len)) {
3391 /* Ok, we found a spot. Return this bh and let
3392 * the caller actually fill it in. */
3393 *ret_de_bh = di_bh;
3394 get_bh(*ret_de_bh);
3395 ret = 0;
3396 goto out;
3397 }
3398
3399 last_de = de;
3400 de_buf += le16_to_cpu(de->rec_len);
3401 offset += le16_to_cpu(de->rec_len);
3402 }
3403
3404 /*
3405 * We're going to require expansion of the directory - figure
3406 * out how many blocks we'll need so that a place for the
3407 * dirent can be found.
3408 */
3409 *blocks_wanted = 1;
3410 new_rec_len = le16_to_cpu(last_de->rec_len) + free_space;
3411 if (new_rec_len < (rec_len + OCFS2_DIR_REC_LEN(last_de->name_len)))
3412 *blocks_wanted = 2;
3413
3414 ret = -ENOSPC;
3415out:
3416 return ret;
3417}
3418
3419static int ocfs2_find_dir_space_el(struct inode *dir, const char *name,
3420 int namelen, struct buffer_head **ret_de_bh)
3421{
3422 unsigned long offset;
3423 struct buffer_head *bh = NULL;
3424 unsigned short rec_len;
3425 struct ocfs2_dir_entry *de;
3426 struct super_block *sb = dir->i_sb;
3427 int status;
3428 int blocksize = dir->i_sb->s_blocksize;
3429
3430 status = ocfs2_read_dir_block(dir, 0, &bh, 0);
3431 if (status)
3432 goto bail;
3433
3434 rec_len = OCFS2_DIR_REC_LEN(namelen);
3435 offset = 0;
3436 de = (struct ocfs2_dir_entry *) bh->b_data;
3437 while (1) {
3438 if ((char *)de >= sb->s_blocksize + bh->b_data) {
3439 brelse(bh);
3440 bh = NULL;
3441
3442 if (i_size_read(dir) <= offset) {
3443 /*
3444 * Caller will have to expand this
3445 * directory.
3446 */
3447 status = -ENOSPC;
3448 goto bail;
3449 }
3450 status = ocfs2_read_dir_block(dir,
3451 offset >> sb->s_blocksize_bits,
3452 &bh, 0);
3453 if (status)
3454 goto bail;
3455
3456 /* move to next block */
3457 de = (struct ocfs2_dir_entry *) bh->b_data;
3458 }
3459 if (!ocfs2_check_dir_entry(dir, de, bh, bh->b_data, blocksize,
3460 offset)) {
3461 status = -ENOENT;
3462 goto bail;
3463 }
3464 if (ocfs2_match(namelen, name, de)) {
3465 status = -EEXIST;
3466 goto bail;
3467 }
3468
3469 if (ocfs2_skip_dir_trailer(dir, de, offset % blocksize,
3470 blocksize))
3471 goto next;
3472
3473 if (ocfs2_dirent_would_fit(de, rec_len)) {
3474 /* Ok, we found a spot. Return this bh and let
3475 * the caller actually fill it in. */
3476 *ret_de_bh = bh;
3477 get_bh(*ret_de_bh);
3478 status = 0;
3479 goto bail;
3480 }
3481next:
3482 offset += le16_to_cpu(de->rec_len);
3483 de = (struct ocfs2_dir_entry *)((char *) de + le16_to_cpu(de->rec_len));
3484 }
3485
3486bail:
3487 brelse(bh);
3488 if (status)
3489 mlog_errno(status);
3490
3491 return status;
3492}
3493
3494static int dx_leaf_sort_cmp(const void *a, const void *b)
3495{
3496 const struct ocfs2_dx_entry *entry1 = a;
3497 const struct ocfs2_dx_entry *entry2 = b;
3498 u32 major_hash1 = le32_to_cpu(entry1->dx_major_hash);
3499 u32 major_hash2 = le32_to_cpu(entry2->dx_major_hash);
3500 u32 minor_hash1 = le32_to_cpu(entry1->dx_minor_hash);
3501 u32 minor_hash2 = le32_to_cpu(entry2->dx_minor_hash);
3502
3503 if (major_hash1 > major_hash2)
3504 return 1;
3505 if (major_hash1 < major_hash2)
3506 return -1;
3507
3508 /*
3509 * It is not strictly necessary to sort by minor
3510 */
3511 if (minor_hash1 > minor_hash2)
3512 return 1;
3513 if (minor_hash1 < minor_hash2)
3514 return -1;
3515 return 0;
3516}
3517
3518static void dx_leaf_sort_swap(void *a, void *b, int size)
3519{
3520 struct ocfs2_dx_entry *entry1 = a;
3521 struct ocfs2_dx_entry *entry2 = b;
3522
3523 BUG_ON(size != sizeof(*entry1));
3524
3525 swap(*entry1, *entry2);
3526}
3527
3528static int ocfs2_dx_leaf_same_major(struct ocfs2_dx_leaf *dx_leaf)
3529{
3530 struct ocfs2_dx_entry_list *dl_list = &dx_leaf->dl_list;
3531 int i, num = le16_to_cpu(dl_list->de_num_used);
3532
3533 for (i = 0; i < (num - 1); i++) {
3534 if (le32_to_cpu(dl_list->de_entries[i].dx_major_hash) !=
3535 le32_to_cpu(dl_list->de_entries[i + 1].dx_major_hash))
3536 return 0;
3537 }
3538
3539 return 1;
3540}
3541
3542/*
3543 * Find the optimal value to split this leaf on. This expects the leaf
3544 * entries to be in sorted order.
3545 *
3546 * leaf_cpos is the cpos of the leaf we're splitting. insert_hash is
3547 * the hash we want to insert.
3548 *
3549 * This function is only concerned with the major hash - that which
3550 * determines which cluster an item belongs to.
3551 */
3552static int ocfs2_dx_dir_find_leaf_split(struct ocfs2_dx_leaf *dx_leaf,
3553 u32 leaf_cpos, u32 insert_hash,
3554 u32 *split_hash)
3555{
3556 struct ocfs2_dx_entry_list *dl_list = &dx_leaf->dl_list;
3557 int i, num_used = le16_to_cpu(dl_list->de_num_used);
3558 int allsame;
3559
3560 /*
3561 * There's a couple rare, but nasty corner cases we have to
3562 * check for here. All of them involve a leaf where all value
3563 * have the same hash, which is what we look for first.
3564 *
3565 * Most of the time, all of the above is false, and we simply
3566 * pick the median value for a split.
3567 */
3568 allsame = ocfs2_dx_leaf_same_major(dx_leaf);
3569 if (allsame) {
3570 u32 val = le32_to_cpu(dl_list->de_entries[0].dx_major_hash);
3571
3572 if (val == insert_hash) {
3573 /*
3574 * No matter where we would choose to split,
3575 * the new entry would want to occupy the same
3576 * block as these. Since there's no space left
3577 * in their existing block, we know there
3578 * won't be space after the split.
3579 */
3580 return -ENOSPC;
3581 }
3582
3583 if (val == leaf_cpos) {
3584 /*
3585 * Because val is the same as leaf_cpos (which
3586 * is the smallest value this leaf can have),
3587 * yet is not equal to insert_hash, then we
3588 * know that insert_hash *must* be larger than
3589 * val (and leaf_cpos). At least cpos+1 in value.
3590 *
3591 * We also know then, that there cannot be an
3592 * adjacent extent (otherwise we'd be looking
3593 * at it). Choosing this value gives us a
3594 * chance to get some contiguousness.
3595 */
3596 *split_hash = leaf_cpos + 1;
3597 return 0;
3598 }
3599
3600 if (val > insert_hash) {
3601 /*
3602 * val can not be the same as insert hash, and
3603 * also must be larger than leaf_cpos. Also,
3604 * we know that there can't be a leaf between
3605 * cpos and val, otherwise the entries with
3606 * hash 'val' would be there.
3607 */
3608 *split_hash = val;
3609 return 0;
3610 }
3611
3612 *split_hash = insert_hash;
3613 return 0;
3614 }
3615
3616 /*
3617 * Since the records are sorted and the checks above
3618 * guaranteed that not all records in this block are the same,
3619 * we simple travel forward, from the median, and pick the 1st
3620 * record whose value is larger than leaf_cpos.
3621 */
3622 for (i = (num_used / 2); i < num_used; i++)
3623 if (le32_to_cpu(dl_list->de_entries[i].dx_major_hash) >
3624 leaf_cpos)
3625 break;
3626
3627 BUG_ON(i == num_used); /* Should be impossible */
3628 *split_hash = le32_to_cpu(dl_list->de_entries[i].dx_major_hash);
3629 return 0;
3630}
3631
3632/*
3633 * Transfer all entries in orig_dx_leaves whose major hash is equal to or
3634 * larger than split_hash into new_dx_leaves. We use a temporary
3635 * buffer (tmp_dx_leaf) to make the changes to the original leaf blocks.
3636 *
3637 * Since the block offset inside a leaf (cluster) is a constant mask
3638 * of minor_hash, we can optimize - an item at block offset X within
3639 * the original cluster, will be at offset X within the new cluster.
3640 */
3641static void ocfs2_dx_dir_transfer_leaf(struct inode *dir, u32 split_hash,
3642 handle_t *handle,
3643 struct ocfs2_dx_leaf *tmp_dx_leaf,
3644 struct buffer_head **orig_dx_leaves,
3645 struct buffer_head **new_dx_leaves,
3646 int num_dx_leaves)
3647{
3648 int i, j, num_used;
3649 u32 major_hash;
3650 struct ocfs2_dx_leaf *orig_dx_leaf, *new_dx_leaf;
3651 struct ocfs2_dx_entry_list *orig_list, *tmp_list;
3652 struct ocfs2_dx_entry *dx_entry;
3653
3654 tmp_list = &tmp_dx_leaf->dl_list;
3655
3656 for (i = 0; i < num_dx_leaves; i++) {
3657 orig_dx_leaf = (struct ocfs2_dx_leaf *) orig_dx_leaves[i]->b_data;
3658 orig_list = &orig_dx_leaf->dl_list;
3659 new_dx_leaf = (struct ocfs2_dx_leaf *) new_dx_leaves[i]->b_data;
3660
3661 num_used = le16_to_cpu(orig_list->de_num_used);
3662
3663 memcpy(tmp_dx_leaf, orig_dx_leaf, dir->i_sb->s_blocksize);
3664 tmp_list->de_num_used = cpu_to_le16(0);
3665 memset(&tmp_list->de_entries, 0, sizeof(*dx_entry)*num_used);
3666
3667 for (j = 0; j < num_used; j++) {
3668 dx_entry = &orig_list->de_entries[j];
3669 major_hash = le32_to_cpu(dx_entry->dx_major_hash);
3670 if (major_hash >= split_hash)
3671 ocfs2_dx_dir_leaf_insert_tail(new_dx_leaf,
3672 dx_entry);
3673 else
3674 ocfs2_dx_dir_leaf_insert_tail(tmp_dx_leaf,
3675 dx_entry);
3676 }
3677 memcpy(orig_dx_leaf, tmp_dx_leaf, dir->i_sb->s_blocksize);
3678
3679 ocfs2_journal_dirty(handle, orig_dx_leaves[i]);
3680 ocfs2_journal_dirty(handle, new_dx_leaves[i]);
3681 }
3682}
3683
3684static int ocfs2_dx_dir_rebalance_credits(struct ocfs2_super *osb,
3685 struct ocfs2_dx_root_block *dx_root)
3686{
3687 int credits = ocfs2_clusters_to_blocks(osb->sb, 3);
3688
3689 credits += ocfs2_calc_extend_credits(osb->sb, &dx_root->dr_list);
3690 credits += ocfs2_quota_trans_credits(osb->sb);
3691 return credits;
3692}
3693
3694/*
3695 * Find the median value in dx_leaf_bh and allocate a new leaf to move
3696 * half our entries into.
3697 */
3698static int ocfs2_dx_dir_rebalance(struct ocfs2_super *osb, struct inode *dir,
3699 struct buffer_head *dx_root_bh,
3700 struct buffer_head *dx_leaf_bh,
3701 struct ocfs2_dx_hinfo *hinfo, u32 leaf_cpos,
3702 u64 leaf_blkno)
3703{
3704 struct ocfs2_dx_leaf *dx_leaf = (struct ocfs2_dx_leaf *)dx_leaf_bh->b_data;
3705 int credits, ret, i, num_used, did_quota = 0;
3706 u32 cpos, split_hash, insert_hash = hinfo->major_hash;
3707 u64 orig_leaves_start;
3708 int num_dx_leaves;
3709 struct buffer_head **orig_dx_leaves = NULL;
3710 struct buffer_head **new_dx_leaves = NULL;
3711 struct ocfs2_alloc_context *data_ac = NULL, *meta_ac = NULL;
3712 struct ocfs2_extent_tree et;
3713 handle_t *handle = NULL;
3714 struct ocfs2_dx_root_block *dx_root;
3715 struct ocfs2_dx_leaf *tmp_dx_leaf = NULL;
3716
3717 trace_ocfs2_dx_dir_rebalance((unsigned long long)OCFS2_I(dir)->ip_blkno,
3718 (unsigned long long)leaf_blkno,
3719 insert_hash);
3720
3721 ocfs2_init_dx_root_extent_tree(&et, INODE_CACHE(dir), dx_root_bh);
3722
3723 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
3724 /*
3725 * XXX: This is a rather large limit. We should use a more
3726 * realistic value.
3727 */
3728 if (le32_to_cpu(dx_root->dr_clusters) == UINT_MAX)
3729 return -ENOSPC;
3730
3731 num_used = le16_to_cpu(dx_leaf->dl_list.de_num_used);
3732 if (num_used < le16_to_cpu(dx_leaf->dl_list.de_count)) {
3733 mlog(ML_ERROR, "DX Dir: %llu, Asked to rebalance empty leaf: "
3734 "%llu, %d\n", (unsigned long long)OCFS2_I(dir)->ip_blkno,
3735 (unsigned long long)leaf_blkno, num_used);
3736 ret = -EIO;
3737 goto out;
3738 }
3739
3740 orig_dx_leaves = ocfs2_dx_dir_kmalloc_leaves(osb->sb, &num_dx_leaves);
3741 if (!orig_dx_leaves) {
3742 ret = -ENOMEM;
3743 mlog_errno(ret);
3744 goto out;
3745 }
3746
3747 new_dx_leaves = ocfs2_dx_dir_kmalloc_leaves(osb->sb, NULL);
3748 if (!new_dx_leaves) {
3749 ret = -ENOMEM;
3750 mlog_errno(ret);
3751 goto out;
3752 }
3753
3754 ret = ocfs2_lock_allocators(dir, &et, 1, 0, &data_ac, &meta_ac);
3755 if (ret) {
3756 if (ret != -ENOSPC)
3757 mlog_errno(ret);
3758 goto out;
3759 }
3760
3761 credits = ocfs2_dx_dir_rebalance_credits(osb, dx_root);
3762 handle = ocfs2_start_trans(osb, credits);
3763 if (IS_ERR(handle)) {
3764 ret = PTR_ERR(handle);
3765 handle = NULL;
3766 mlog_errno(ret);
3767 goto out;
3768 }
3769
3770 ret = dquot_alloc_space_nodirty(dir,
3771 ocfs2_clusters_to_bytes(dir->i_sb, 1));
3772 if (ret)
3773 goto out_commit;
3774 did_quota = 1;
3775
3776 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir), dx_leaf_bh,
3777 OCFS2_JOURNAL_ACCESS_WRITE);
3778 if (ret) {
3779 mlog_errno(ret);
3780 goto out_commit;
3781 }
3782
3783 /*
3784 * This block is changing anyway, so we can sort it in place.
3785 */
3786 sort(dx_leaf->dl_list.de_entries, num_used,
3787 sizeof(struct ocfs2_dx_entry), dx_leaf_sort_cmp,
3788 dx_leaf_sort_swap);
3789
3790 ocfs2_journal_dirty(handle, dx_leaf_bh);
3791
3792 ret = ocfs2_dx_dir_find_leaf_split(dx_leaf, leaf_cpos, insert_hash,
3793 &split_hash);
3794 if (ret) {
3795 mlog_errno(ret);
3796 goto out_commit;
3797 }
3798
3799 trace_ocfs2_dx_dir_rebalance_split(leaf_cpos, split_hash, insert_hash);
3800
3801 /*
3802 * We have to carefully order operations here. There are items
3803 * which want to be in the new cluster before insert, but in
3804 * order to put those items in the new cluster, we alter the
3805 * old cluster. A failure to insert gets nasty.
3806 *
3807 * So, start by reserving writes to the old
3808 * cluster. ocfs2_dx_dir_new_cluster will reserve writes on
3809 * the new cluster for us, before inserting it. The insert
3810 * won't happen if there's an error before that. Once the
3811 * insert is done then, we can transfer from one leaf into the
3812 * other without fear of hitting any error.
3813 */
3814
3815 /*
3816 * The leaf transfer wants some scratch space so that we don't
3817 * wind up doing a bunch of expensive memmove().
3818 */
3819 tmp_dx_leaf = kmalloc(osb->sb->s_blocksize, GFP_NOFS);
3820 if (!tmp_dx_leaf) {
3821 ret = -ENOMEM;
3822 mlog_errno(ret);
3823 goto out_commit;
3824 }
3825
3826 orig_leaves_start = ocfs2_block_to_cluster_start(dir->i_sb, leaf_blkno);
3827 ret = ocfs2_read_dx_leaves(dir, orig_leaves_start, num_dx_leaves,
3828 orig_dx_leaves);
3829 if (ret) {
3830 mlog_errno(ret);
3831 goto out_commit;
3832 }
3833
3834 cpos = split_hash;
3835 ret = ocfs2_dx_dir_new_cluster(dir, &et, cpos, handle,
3836 data_ac, meta_ac, new_dx_leaves,
3837 num_dx_leaves);
3838 if (ret) {
3839 mlog_errno(ret);
3840 goto out_commit;
3841 }
3842
3843 for (i = 0; i < num_dx_leaves; i++) {
3844 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir),
3845 orig_dx_leaves[i],
3846 OCFS2_JOURNAL_ACCESS_WRITE);
3847 if (ret) {
3848 mlog_errno(ret);
3849 goto out_commit;
3850 }
3851
3852 ret = ocfs2_journal_access_dl(handle, INODE_CACHE(dir),
3853 new_dx_leaves[i],
3854 OCFS2_JOURNAL_ACCESS_WRITE);
3855 if (ret) {
3856 mlog_errno(ret);
3857 goto out_commit;
3858 }
3859 }
3860
3861 ocfs2_dx_dir_transfer_leaf(dir, split_hash, handle, tmp_dx_leaf,
3862 orig_dx_leaves, new_dx_leaves, num_dx_leaves);
3863
3864out_commit:
3865 if (ret < 0 && did_quota)
3866 dquot_free_space_nodirty(dir,
3867 ocfs2_clusters_to_bytes(dir->i_sb, 1));
3868
3869 ocfs2_update_inode_fsync_trans(handle, dir, 1);
3870 ocfs2_commit_trans(osb, handle);
3871
3872out:
3873 if (orig_dx_leaves || new_dx_leaves) {
3874 for (i = 0; i < num_dx_leaves; i++) {
3875 if (orig_dx_leaves)
3876 brelse(orig_dx_leaves[i]);
3877 if (new_dx_leaves)
3878 brelse(new_dx_leaves[i]);
3879 }
3880 kfree(orig_dx_leaves);
3881 kfree(new_dx_leaves);
3882 }
3883
3884 if (meta_ac)
3885 ocfs2_free_alloc_context(meta_ac);
3886 if (data_ac)
3887 ocfs2_free_alloc_context(data_ac);
3888
3889 kfree(tmp_dx_leaf);
3890 return ret;
3891}
3892
3893static int ocfs2_find_dir_space_dx(struct ocfs2_super *osb, struct inode *dir,
3894 struct buffer_head *di_bh,
3895 struct buffer_head *dx_root_bh,
3896 const char *name, int namelen,
3897 struct ocfs2_dir_lookup_result *lookup)
3898{
3899 int ret, rebalanced = 0;
3900 struct ocfs2_dx_root_block *dx_root;
3901 struct buffer_head *dx_leaf_bh = NULL;
3902 struct ocfs2_dx_leaf *dx_leaf;
3903 u64 blkno;
3904 u32 leaf_cpos;
3905
3906 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
3907
3908restart_search:
3909 ret = ocfs2_dx_dir_lookup(dir, &dx_root->dr_list, &lookup->dl_hinfo,
3910 &leaf_cpos, &blkno);
3911 if (ret) {
3912 mlog_errno(ret);
3913 goto out;
3914 }
3915
3916 ret = ocfs2_read_dx_leaf(dir, blkno, &dx_leaf_bh);
3917 if (ret) {
3918 mlog_errno(ret);
3919 goto out;
3920 }
3921
3922 dx_leaf = (struct ocfs2_dx_leaf *)dx_leaf_bh->b_data;
3923
3924 if (le16_to_cpu(dx_leaf->dl_list.de_num_used) >=
3925 le16_to_cpu(dx_leaf->dl_list.de_count)) {
3926 if (rebalanced) {
3927 /*
3928 * Rebalancing should have provided us with
3929 * space in an appropriate leaf.
3930 *
3931 * XXX: Is this an abnormal condition then?
3932 * Should we print a message here?
3933 */
3934 ret = -ENOSPC;
3935 goto out;
3936 }
3937
3938 ret = ocfs2_dx_dir_rebalance(osb, dir, dx_root_bh, dx_leaf_bh,
3939 &lookup->dl_hinfo, leaf_cpos,
3940 blkno);
3941 if (ret) {
3942 if (ret != -ENOSPC)
3943 mlog_errno(ret);
3944 goto out;
3945 }
3946
3947 /*
3948 * Restart the lookup. The rebalance might have
3949 * changed which block our item fits into. Mark our
3950 * progress, so we only execute this once.
3951 */
3952 brelse(dx_leaf_bh);
3953 dx_leaf_bh = NULL;
3954 rebalanced = 1;
3955 goto restart_search;
3956 }
3957
3958 lookup->dl_dx_leaf_bh = dx_leaf_bh;
3959 dx_leaf_bh = NULL;
3960
3961out:
3962 brelse(dx_leaf_bh);
3963 return ret;
3964}
3965
3966static int ocfs2_search_dx_free_list(struct inode *dir,
3967 struct buffer_head *dx_root_bh,
3968 int namelen,
3969 struct ocfs2_dir_lookup_result *lookup)
3970{
3971 int ret = -ENOSPC;
3972 struct buffer_head *leaf_bh = NULL, *prev_leaf_bh = NULL;
3973 struct ocfs2_dir_block_trailer *db;
3974 u64 next_block;
3975 int rec_len = OCFS2_DIR_REC_LEN(namelen);
3976 struct ocfs2_dx_root_block *dx_root;
3977
3978 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
3979 next_block = le64_to_cpu(dx_root->dr_free_blk);
3980
3981 while (next_block) {
3982 brelse(prev_leaf_bh);
3983 prev_leaf_bh = leaf_bh;
3984 leaf_bh = NULL;
3985
3986 ret = ocfs2_read_dir_block_direct(dir, next_block, &leaf_bh);
3987 if (ret) {
3988 mlog_errno(ret);
3989 goto out;
3990 }
3991
3992 db = ocfs2_trailer_from_bh(leaf_bh, dir->i_sb);
3993 if (rec_len <= le16_to_cpu(db->db_free_rec_len)) {
3994 lookup->dl_leaf_bh = leaf_bh;
3995 lookup->dl_prev_leaf_bh = prev_leaf_bh;
3996 leaf_bh = NULL;
3997 prev_leaf_bh = NULL;
3998 break;
3999 }
4000
4001 next_block = le64_to_cpu(db->db_free_next);
4002 }
4003
4004 if (!next_block)
4005 ret = -ENOSPC;
4006
4007out:
4008
4009 brelse(leaf_bh);
4010 brelse(prev_leaf_bh);
4011 return ret;
4012}
4013
4014static int ocfs2_expand_inline_dx_root(struct inode *dir,
4015 struct buffer_head *dx_root_bh)
4016{
4017 int ret, num_dx_leaves, i, j, did_quota = 0;
4018 struct buffer_head **dx_leaves = NULL;
4019 struct ocfs2_extent_tree et;
4020 u64 insert_blkno;
4021 struct ocfs2_alloc_context *data_ac = NULL;
4022 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
4023 handle_t *handle = NULL;
4024 struct ocfs2_dx_root_block *dx_root;
4025 struct ocfs2_dx_entry_list *entry_list;
4026 struct ocfs2_dx_entry *dx_entry;
4027 struct ocfs2_dx_leaf *target_leaf;
4028
4029 ret = ocfs2_reserve_clusters(osb, 1, &data_ac);
4030 if (ret) {
4031 mlog_errno(ret);
4032 goto out;
4033 }
4034
4035 dx_leaves = ocfs2_dx_dir_kmalloc_leaves(osb->sb, &num_dx_leaves);
4036 if (!dx_leaves) {
4037 ret = -ENOMEM;
4038 mlog_errno(ret);
4039 goto out;
4040 }
4041
4042 handle = ocfs2_start_trans(osb, ocfs2_calc_dxi_expand_credits(osb->sb));
4043 if (IS_ERR(handle)) {
4044 ret = PTR_ERR(handle);
4045 mlog_errno(ret);
4046 goto out;
4047 }
4048
4049 ret = dquot_alloc_space_nodirty(dir,
4050 ocfs2_clusters_to_bytes(osb->sb, 1));
4051 if (ret)
4052 goto out_commit;
4053 did_quota = 1;
4054
4055 /*
4056 * We do this up front, before the allocation, so that a
4057 * failure to add the dx_root_bh to the journal won't result
4058 * us losing clusters.
4059 */
4060 ret = ocfs2_journal_access_dr(handle, INODE_CACHE(dir), dx_root_bh,
4061 OCFS2_JOURNAL_ACCESS_WRITE);
4062 if (ret) {
4063 mlog_errno(ret);
4064 goto out_commit;
4065 }
4066
4067 ret = __ocfs2_dx_dir_new_cluster(dir, 0, handle, data_ac, dx_leaves,
4068 num_dx_leaves, &insert_blkno);
4069 if (ret) {
4070 mlog_errno(ret);
4071 goto out_commit;
4072 }
4073
4074 /*
4075 * Transfer the entries from our dx_root into the appropriate
4076 * block
4077 */
4078 dx_root = (struct ocfs2_dx_root_block *) dx_root_bh->b_data;
4079 entry_list = &dx_root->dr_entries;
4080
4081 for (i = 0; i < le16_to_cpu(entry_list->de_num_used); i++) {
4082 dx_entry = &entry_list->de_entries[i];
4083
4084 j = __ocfs2_dx_dir_hash_idx(osb,
4085 le32_to_cpu(dx_entry->dx_minor_hash));
4086 target_leaf = (struct ocfs2_dx_leaf *)dx_leaves[j]->b_data;
4087
4088 ocfs2_dx_dir_leaf_insert_tail(target_leaf, dx_entry);
4089
4090 /* Each leaf has been passed to the journal already
4091 * via __ocfs2_dx_dir_new_cluster() */
4092 }
4093
4094 dx_root->dr_flags &= ~OCFS2_DX_FLAG_INLINE;
4095 memset(&dx_root->dr_list, 0, osb->sb->s_blocksize -
4096 offsetof(struct ocfs2_dx_root_block, dr_list));
4097 dx_root->dr_list.l_count =
4098 cpu_to_le16(ocfs2_extent_recs_per_dx_root(osb->sb));
4099
4100 /* This should never fail considering we start with an empty
4101 * dx_root. */
4102 ocfs2_init_dx_root_extent_tree(&et, INODE_CACHE(dir), dx_root_bh);
4103 ret = ocfs2_insert_extent(handle, &et, 0, insert_blkno, 1, 0, NULL);
4104 if (ret)
4105 mlog_errno(ret);
4106 did_quota = 0;
4107
4108 ocfs2_update_inode_fsync_trans(handle, dir, 1);
4109 ocfs2_journal_dirty(handle, dx_root_bh);
4110
4111out_commit:
4112 if (ret < 0 && did_quota)
4113 dquot_free_space_nodirty(dir,
4114 ocfs2_clusters_to_bytes(dir->i_sb, 1));
4115
4116 ocfs2_commit_trans(osb, handle);
4117
4118out:
4119 if (data_ac)
4120 ocfs2_free_alloc_context(data_ac);
4121
4122 if (dx_leaves) {
4123 for (i = 0; i < num_dx_leaves; i++)
4124 brelse(dx_leaves[i]);
4125 kfree(dx_leaves);
4126 }
4127 return ret;
4128}
4129
4130static int ocfs2_inline_dx_has_space(struct buffer_head *dx_root_bh)
4131{
4132 struct ocfs2_dx_root_block *dx_root;
4133 struct ocfs2_dx_entry_list *entry_list;
4134
4135 dx_root = (struct ocfs2_dx_root_block *) dx_root_bh->b_data;
4136 entry_list = &dx_root->dr_entries;
4137
4138 if (le16_to_cpu(entry_list->de_num_used) >=
4139 le16_to_cpu(entry_list->de_count))
4140 return -ENOSPC;
4141
4142 return 0;
4143}
4144
4145static int ocfs2_prepare_dx_dir_for_insert(struct inode *dir,
4146 struct buffer_head *di_bh,
4147 const char *name,
4148 int namelen,
4149 struct ocfs2_dir_lookup_result *lookup)
4150{
4151 int ret, free_dx_root = 1;
4152 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
4153 struct buffer_head *dx_root_bh = NULL;
4154 struct buffer_head *leaf_bh = NULL;
4155 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
4156 struct ocfs2_dx_root_block *dx_root;
4157
4158 ret = ocfs2_read_dx_root(dir, di, &dx_root_bh);
4159 if (ret) {
4160 mlog_errno(ret);
4161 goto out;
4162 }
4163
4164 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
4165 if (le32_to_cpu(dx_root->dr_num_entries) == OCFS2_DX_ENTRIES_MAX) {
4166 ret = -ENOSPC;
4167 mlog_errno(ret);
4168 goto out;
4169 }
4170
4171 if (ocfs2_dx_root_inline(dx_root)) {
4172 ret = ocfs2_inline_dx_has_space(dx_root_bh);
4173
4174 if (ret == 0)
4175 goto search_el;
4176
4177 /*
4178 * We ran out of room in the root block. Expand it to
4179 * an extent, then allow ocfs2_find_dir_space_dx to do
4180 * the rest.
4181 */
4182 ret = ocfs2_expand_inline_dx_root(dir, dx_root_bh);
4183 if (ret) {
4184 mlog_errno(ret);
4185 goto out;
4186 }
4187 }
4188
4189 /*
4190 * Insert preparation for an indexed directory is split into two
4191 * steps. The call to find_dir_space_dx reserves room in the index for
4192 * an additional item. If we run out of space there, it's a real error
4193 * we can't continue on.
4194 */
4195 ret = ocfs2_find_dir_space_dx(osb, dir, di_bh, dx_root_bh, name,
4196 namelen, lookup);
4197 if (ret) {
4198 mlog_errno(ret);
4199 goto out;
4200 }
4201
4202search_el:
4203 /*
4204 * Next, we need to find space in the unindexed tree. This call
4205 * searches using the free space linked list. If the unindexed tree
4206 * lacks sufficient space, we'll expand it below. The expansion code
4207 * is smart enough to add any new blocks to the free space list.
4208 */
4209 ret = ocfs2_search_dx_free_list(dir, dx_root_bh, namelen, lookup);
4210 if (ret && ret != -ENOSPC) {
4211 mlog_errno(ret);
4212 goto out;
4213 }
4214
4215 /* Do this up here - ocfs2_extend_dir might need the dx_root */
4216 lookup->dl_dx_root_bh = dx_root_bh;
4217 free_dx_root = 0;
4218
4219 if (ret == -ENOSPC) {
4220 ret = ocfs2_extend_dir(osb, dir, di_bh, 1, lookup, &leaf_bh);
4221
4222 if (ret) {
4223 mlog_errno(ret);
4224 goto out;
4225 }
4226
4227 /*
4228 * We make the assumption here that new leaf blocks are added
4229 * to the front of our free list.
4230 */
4231 lookup->dl_prev_leaf_bh = NULL;
4232 lookup->dl_leaf_bh = leaf_bh;
4233 }
4234
4235out:
4236 if (free_dx_root)
4237 brelse(dx_root_bh);
4238 return ret;
4239}
4240
4241/*
4242 * Get a directory ready for insert. Any directory allocation required
4243 * happens here. Success returns zero, and enough context in the dir
4244 * lookup result that ocfs2_add_entry() will be able complete the task
4245 * with minimal performance impact.
4246 */
4247int ocfs2_prepare_dir_for_insert(struct ocfs2_super *osb,
4248 struct inode *dir,
4249 struct buffer_head *parent_fe_bh,
4250 const char *name,
4251 int namelen,
4252 struct ocfs2_dir_lookup_result *lookup)
4253{
4254 int ret;
4255 unsigned int blocks_wanted = 1;
4256 struct buffer_head *bh = NULL;
4257
4258 trace_ocfs2_prepare_dir_for_insert(
4259 (unsigned long long)OCFS2_I(dir)->ip_blkno, namelen);
4260
4261 if (!namelen) {
4262 ret = -EINVAL;
4263 mlog_errno(ret);
4264 goto out;
4265 }
4266
4267 /*
4268 * Do this up front to reduce confusion.
4269 *
4270 * The directory might start inline, then be turned into an
4271 * indexed one, in which case we'd need to hash deep inside
4272 * ocfs2_find_dir_space_id(). Since
4273 * ocfs2_prepare_dx_dir_for_insert() also needs this hash
4274 * done, there seems no point in spreading out the calls. We
4275 * can optimize away the case where the file system doesn't
4276 * support indexing.
4277 */
4278 if (ocfs2_supports_indexed_dirs(osb))
4279 ocfs2_dx_dir_name_hash(dir, name, namelen, &lookup->dl_hinfo);
4280
4281 if (ocfs2_dir_indexed(dir)) {
4282 ret = ocfs2_prepare_dx_dir_for_insert(dir, parent_fe_bh,
4283 name, namelen, lookup);
4284 if (ret)
4285 mlog_errno(ret);
4286 goto out;
4287 }
4288
4289 if (OCFS2_I(dir)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
4290 ret = ocfs2_find_dir_space_id(dir, parent_fe_bh, name,
4291 namelen, &bh, &blocks_wanted);
4292 } else
4293 ret = ocfs2_find_dir_space_el(dir, name, namelen, &bh);
4294
4295 if (ret && ret != -ENOSPC) {
4296 mlog_errno(ret);
4297 goto out;
4298 }
4299
4300 if (ret == -ENOSPC) {
4301 /*
4302 * We have to expand the directory to add this name.
4303 */
4304 BUG_ON(bh);
4305
4306 ret = ocfs2_extend_dir(osb, dir, parent_fe_bh, blocks_wanted,
4307 lookup, &bh);
4308 if (ret) {
4309 if (ret != -ENOSPC)
4310 mlog_errno(ret);
4311 goto out;
4312 }
4313
4314 BUG_ON(!bh);
4315 }
4316
4317 lookup->dl_leaf_bh = bh;
4318 bh = NULL;
4319out:
4320 brelse(bh);
4321 return ret;
4322}
4323
4324static int ocfs2_dx_dir_remove_index(struct inode *dir,
4325 struct buffer_head *di_bh,
4326 struct buffer_head *dx_root_bh)
4327{
4328 int ret;
4329 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
4330 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
4331 struct ocfs2_dx_root_block *dx_root;
4332 struct inode *dx_alloc_inode = NULL;
4333 struct buffer_head *dx_alloc_bh = NULL;
4334 handle_t *handle;
4335 u64 blk;
4336 u16 bit;
4337 u64 bg_blkno;
4338
4339 dx_root = (struct ocfs2_dx_root_block *) dx_root_bh->b_data;
4340
4341 dx_alloc_inode = ocfs2_get_system_file_inode(osb,
4342 EXTENT_ALLOC_SYSTEM_INODE,
4343 le16_to_cpu(dx_root->dr_suballoc_slot));
4344 if (!dx_alloc_inode) {
4345 ret = -ENOMEM;
4346 mlog_errno(ret);
4347 goto out;
4348 }
4349 inode_lock(dx_alloc_inode);
4350
4351 ret = ocfs2_inode_lock(dx_alloc_inode, &dx_alloc_bh, 1);
4352 if (ret) {
4353 mlog_errno(ret);
4354 goto out_mutex;
4355 }
4356
4357 handle = ocfs2_start_trans(osb, OCFS2_DX_ROOT_REMOVE_CREDITS);
4358 if (IS_ERR(handle)) {
4359 ret = PTR_ERR(handle);
4360 mlog_errno(ret);
4361 goto out_unlock;
4362 }
4363
4364 ret = ocfs2_journal_access_di(handle, INODE_CACHE(dir), di_bh,
4365 OCFS2_JOURNAL_ACCESS_WRITE);
4366 if (ret) {
4367 mlog_errno(ret);
4368 goto out_commit;
4369 }
4370
4371 spin_lock(&OCFS2_I(dir)->ip_lock);
4372 OCFS2_I(dir)->ip_dyn_features &= ~OCFS2_INDEXED_DIR_FL;
4373 di->i_dyn_features = cpu_to_le16(OCFS2_I(dir)->ip_dyn_features);
4374 spin_unlock(&OCFS2_I(dir)->ip_lock);
4375 di->i_dx_root = cpu_to_le64(0ULL);
4376 ocfs2_update_inode_fsync_trans(handle, dir, 1);
4377
4378 ocfs2_journal_dirty(handle, di_bh);
4379
4380 blk = le64_to_cpu(dx_root->dr_blkno);
4381 bit = le16_to_cpu(dx_root->dr_suballoc_bit);
4382 if (dx_root->dr_suballoc_loc)
4383 bg_blkno = le64_to_cpu(dx_root->dr_suballoc_loc);
4384 else
4385 bg_blkno = ocfs2_which_suballoc_group(blk, bit);
4386 ret = ocfs2_free_suballoc_bits(handle, dx_alloc_inode, dx_alloc_bh,
4387 bit, bg_blkno, 1);
4388 if (ret)
4389 mlog_errno(ret);
4390
4391out_commit:
4392 ocfs2_commit_trans(osb, handle);
4393
4394out_unlock:
4395 ocfs2_inode_unlock(dx_alloc_inode, 1);
4396
4397out_mutex:
4398 inode_unlock(dx_alloc_inode);
4399 brelse(dx_alloc_bh);
4400out:
4401 iput(dx_alloc_inode);
4402 return ret;
4403}
4404
4405int ocfs2_dx_dir_truncate(struct inode *dir, struct buffer_head *di_bh)
4406{
4407 int ret;
4408 unsigned int clen;
4409 u32 major_hash = UINT_MAX, p_cpos, cpos;
4410 u64 blkno;
4411 struct ocfs2_super *osb = OCFS2_SB(dir->i_sb);
4412 struct buffer_head *dx_root_bh = NULL;
4413 struct ocfs2_dx_root_block *dx_root;
4414 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
4415 struct ocfs2_cached_dealloc_ctxt dealloc;
4416 struct ocfs2_extent_tree et;
4417
4418 ocfs2_init_dealloc_ctxt(&dealloc);
4419
4420 if (!ocfs2_dir_indexed(dir))
4421 return 0;
4422
4423 ret = ocfs2_read_dx_root(dir, di, &dx_root_bh);
4424 if (ret) {
4425 mlog_errno(ret);
4426 goto out;
4427 }
4428 dx_root = (struct ocfs2_dx_root_block *)dx_root_bh->b_data;
4429
4430 if (ocfs2_dx_root_inline(dx_root))
4431 goto remove_index;
4432
4433 ocfs2_init_dx_root_extent_tree(&et, INODE_CACHE(dir), dx_root_bh);
4434
4435 /* XXX: What if dr_clusters is too large? */
4436 while (le32_to_cpu(dx_root->dr_clusters)) {
4437 ret = ocfs2_dx_dir_lookup_rec(dir, &dx_root->dr_list,
4438 major_hash, &cpos, &blkno, &clen);
4439 if (ret) {
4440 mlog_errno(ret);
4441 goto out;
4442 }
4443
4444 p_cpos = ocfs2_blocks_to_clusters(dir->i_sb, blkno);
4445
4446 ret = ocfs2_remove_btree_range(dir, &et, cpos, p_cpos, clen, 0,
4447 &dealloc, 0, false);
4448 if (ret) {
4449 mlog_errno(ret);
4450 goto out;
4451 }
4452
4453 if (cpos == 0)
4454 break;
4455
4456 major_hash = cpos - 1;
4457 }
4458
4459remove_index:
4460 ret = ocfs2_dx_dir_remove_index(dir, di_bh, dx_root_bh);
4461 if (ret) {
4462 mlog_errno(ret);
4463 goto out;
4464 }
4465
4466 ocfs2_remove_from_cache(INODE_CACHE(dir), dx_root_bh);
4467out:
4468 ocfs2_schedule_truncate_log_flush(osb, 1);
4469 ocfs2_run_deallocs(osb, &dealloc);
4470
4471 brelse(dx_root_bh);
4472 return ret;
4473}