1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * linux/fs/ext2/ialloc.c
4 *
5 * Copyright (C) 1992, 1993, 1994, 1995
6 * Remy Card (card@masi.ibp.fr)
7 * Laboratoire MASI - Institut Blaise Pascal
8 * Universite Pierre et Marie Curie (Paris VI)
9 *
10 * BSD ufs-inspired inode and directory allocation by
11 * Stephen Tweedie (sct@dcs.ed.ac.uk), 1993
12 * Big-endian to little-endian byte-swapping/bitmaps by
13 * David S. Miller (davem@caip.rutgers.edu), 1995
14 */
15
16 #include <linux/quotaops.h>
17 #include <linux/sched.h>
18 #include <linux/backing-dev.h>
19 #include <linux/buffer_head.h>
20 #include <linux/random.h>
21 #include "ext2.h"
22 #include "xattr.h"
23 #include "acl.h"
24
25 /*
26 * ialloc.c contains the inodes allocation and deallocation routines
27 */
28
29 /*
30 * The free inodes are managed by bitmaps. A file system contains several
31 * blocks groups. Each group contains 1 bitmap block for blocks, 1 bitmap
32 * block for inodes, N blocks for the inode table and data blocks.
33 *
34 * The file system contains group descriptors which are located after the
35 * super block. Each descriptor contains the number of the bitmap block and
36 * the free blocks count in the block.
37 */
38
39
40 /*
41 * Read the inode allocation bitmap for a given block_group, reading
42 * into the specified slot in the superblock's bitmap cache.
43 *
44 * Return buffer_head of bitmap on success or NULL.
45 */
46 static struct buffer_head *
read_inode_bitmap(struct super_block * sb,unsigned long block_group)47 read_inode_bitmap(struct super_block * sb, unsigned long block_group)
48 {
49 struct ext2_group_desc *desc;
50 struct buffer_head *bh = NULL;
51
52 desc = ext2_get_group_desc(sb, block_group, NULL);
53 if (!desc)
54 goto error_out;
55
56 bh = sb_bread(sb, le32_to_cpu(desc->bg_inode_bitmap));
57 if (!bh)
58 ext2_error(sb, "read_inode_bitmap",
59 "Cannot read inode bitmap - "
60 "block_group = %lu, inode_bitmap = %u",
61 block_group, le32_to_cpu(desc->bg_inode_bitmap));
62 error_out:
63 return bh;
64 }
65
ext2_release_inode(struct super_block * sb,int group,int dir)66 static void ext2_release_inode(struct super_block *sb, int group, int dir)
67 {
68 struct ext2_group_desc * desc;
69 struct buffer_head *bh;
70
71 desc = ext2_get_group_desc(sb, group, &bh);
72 if (!desc) {
73 ext2_error(sb, "ext2_release_inode",
74 "can't get descriptor for group %d", group);
75 return;
76 }
77
78 spin_lock(sb_bgl_lock(EXT2_SB(sb), group));
79 le16_add_cpu(&desc->bg_free_inodes_count, 1);
80 if (dir)
81 le16_add_cpu(&desc->bg_used_dirs_count, -1);
82 spin_unlock(sb_bgl_lock(EXT2_SB(sb), group));
83 percpu_counter_inc(&EXT2_SB(sb)->s_freeinodes_counter);
84 if (dir)
85 percpu_counter_dec(&EXT2_SB(sb)->s_dirs_counter);
86 mark_buffer_dirty(bh);
87 }
88
89 /*
90 * NOTE! When we get the inode, we're the only people
91 * that have access to it, and as such there are no
92 * race conditions we have to worry about. The inode
93 * is not on the hash-lists, and it cannot be reached
94 * through the filesystem because the directory entry
95 * has been deleted earlier.
96 *
97 * HOWEVER: we must make sure that we get no aliases,
98 * which means that we have to call "clear_inode()"
99 * _before_ we mark the inode not in use in the inode
100 * bitmaps. Otherwise a newly created file might use
101 * the same inode number (not actually the same pointer
102 * though), and then we'd have two inodes sharing the
103 * same inode number and space on the harddisk.
104 */
ext2_free_inode(struct inode * inode)105 void ext2_free_inode (struct inode * inode)
106 {
107 struct super_block * sb = inode->i_sb;
108 int is_directory;
109 unsigned long ino;
110 struct buffer_head *bitmap_bh;
111 unsigned long block_group;
112 unsigned long bit;
113 struct ext2_super_block * es;
114
115 ino = inode->i_ino;
116 ext2_debug ("freeing inode %lu\n", ino);
117
118 /*
119 * Note: we must free any quota before locking the superblock,
120 * as writing the quota to disk may need the lock as well.
121 */
122 /* Quota is already initialized in iput() */
123 dquot_free_inode(inode);
124 dquot_drop(inode);
125
126 es = EXT2_SB(sb)->s_es;
127 is_directory = S_ISDIR(inode->i_mode);
128
129 if (ino < EXT2_FIRST_INO(sb) ||
130 ino > le32_to_cpu(es->s_inodes_count)) {
131 ext2_error (sb, "ext2_free_inode",
132 "reserved or nonexistent inode %lu", ino);
133 return;
134 }
135 block_group = (ino - 1) / EXT2_INODES_PER_GROUP(sb);
136 bit = (ino - 1) % EXT2_INODES_PER_GROUP(sb);
137 bitmap_bh = read_inode_bitmap(sb, block_group);
138 if (!bitmap_bh)
139 return;
140
141 /* Ok, now we can actually update the inode bitmaps.. */
142 if (!ext2_clear_bit_atomic(sb_bgl_lock(EXT2_SB(sb), block_group),
143 bit, (void *) bitmap_bh->b_data))
144 ext2_error (sb, "ext2_free_inode",
145 "bit already cleared for inode %lu", ino);
146 else
147 ext2_release_inode(sb, block_group, is_directory);
148 mark_buffer_dirty(bitmap_bh);
149 if (sb->s_flags & SB_SYNCHRONOUS)
150 sync_dirty_buffer(bitmap_bh);
151
152 brelse(bitmap_bh);
153 }
154
155 /*
156 * We perform asynchronous prereading of the new inode's inode block when
157 * we create the inode, in the expectation that the inode will be written
158 * back soon. There are two reasons:
159 *
160 * - When creating a large number of files, the async prereads will be
161 * nicely merged into large reads
162 * - When writing out a large number of inodes, we don't need to keep on
163 * stalling the writes while we read the inode block.
164 *
165 * FIXME: ext2_get_group_desc() needs to be simplified.
166 */
ext2_preread_inode(struct inode * inode)167 static void ext2_preread_inode(struct inode *inode)
168 {
169 unsigned long block_group;
170 unsigned long offset;
171 unsigned long block;
172 struct ext2_group_desc * gdp;
173 struct backing_dev_info *bdi;
174
175 bdi = inode_to_bdi(inode);
176 if (bdi_read_congested(bdi))
177 return;
178 if (bdi_write_congested(bdi))
179 return;
180
181 block_group = (inode->i_ino - 1) / EXT2_INODES_PER_GROUP(inode->i_sb);
182 gdp = ext2_get_group_desc(inode->i_sb, block_group, NULL);
183 if (gdp == NULL)
184 return;
185
186 /*
187 * Figure out the offset within the block group inode table
188 */
189 offset = ((inode->i_ino - 1) % EXT2_INODES_PER_GROUP(inode->i_sb)) *
190 EXT2_INODE_SIZE(inode->i_sb);
191 block = le32_to_cpu(gdp->bg_inode_table) +
192 (offset >> EXT2_BLOCK_SIZE_BITS(inode->i_sb));
193 sb_breadahead(inode->i_sb, block);
194 }
195
196 /*
197 * There are two policies for allocating an inode. If the new inode is
198 * a directory, then a forward search is made for a block group with both
199 * free space and a low directory-to-inode ratio; if that fails, then of
200 * the groups with above-average free space, that group with the fewest
201 * directories already is chosen.
202 *
203 * For other inodes, search forward from the parent directory\'s block
204 * group to find a free inode.
205 */
find_group_dir(struct super_block * sb,struct inode * parent)206 static int find_group_dir(struct super_block *sb, struct inode *parent)
207 {
208 int ngroups = EXT2_SB(sb)->s_groups_count;
209 int avefreei = ext2_count_free_inodes(sb) / ngroups;
210 struct ext2_group_desc *desc, *best_desc = NULL;
211 int group, best_group = -1;
212
213 for (group = 0; group < ngroups; group++) {
214 desc = ext2_get_group_desc (sb, group, NULL);
215 if (!desc || !desc->bg_free_inodes_count)
216 continue;
217 if (le16_to_cpu(desc->bg_free_inodes_count) < avefreei)
218 continue;
219 if (!best_desc ||
220 (le16_to_cpu(desc->bg_free_blocks_count) >
221 le16_to_cpu(best_desc->bg_free_blocks_count))) {
222 best_group = group;
223 best_desc = desc;
224 }
225 }
226 if (!best_desc)
227 return -1;
228
229 return best_group;
230 }
231
232 /*
233 * Orlov's allocator for directories.
234 *
235 * We always try to spread first-level directories.
236 *
237 * If there are blockgroups with both free inodes and free blocks counts
238 * not worse than average we return one with smallest directory count.
239 * Otherwise we simply return a random group.
240 *
241 * For the rest rules look so:
242 *
243 * It's OK to put directory into a group unless
244 * it has too many directories already (max_dirs) or
245 * it has too few free inodes left (min_inodes) or
246 * it has too few free blocks left (min_blocks) or
247 * it's already running too large debt (max_debt).
248 * Parent's group is preferred, if it doesn't satisfy these
249 * conditions we search cyclically through the rest. If none
250 * of the groups look good we just look for a group with more
251 * free inodes than average (starting at parent's group).
252 *
253 * Debt is incremented each time we allocate a directory and decremented
254 * when we allocate an inode, within 0--255.
255 */
256
257 #define INODE_COST 64
258 #define BLOCK_COST 256
259
find_group_orlov(struct super_block * sb,struct inode * parent)260 static int find_group_orlov(struct super_block *sb, struct inode *parent)
261 {
262 int parent_group = EXT2_I(parent)->i_block_group;
263 struct ext2_sb_info *sbi = EXT2_SB(sb);
264 struct ext2_super_block *es = sbi->s_es;
265 int ngroups = sbi->s_groups_count;
266 int inodes_per_group = EXT2_INODES_PER_GROUP(sb);
267 int freei;
268 int avefreei;
269 int free_blocks;
270 int avefreeb;
271 int blocks_per_dir;
272 int ndirs;
273 int max_debt, max_dirs, min_blocks, min_inodes;
274 int group = -1, i;
275 struct ext2_group_desc *desc;
276
277 freei = percpu_counter_read_positive(&sbi->s_freeinodes_counter);
278 avefreei = freei / ngroups;
279 free_blocks = percpu_counter_read_positive(&sbi->s_freeblocks_counter);
280 avefreeb = free_blocks / ngroups;
281 ndirs = percpu_counter_read_positive(&sbi->s_dirs_counter);
282
283 if ((parent == d_inode(sb->s_root)) ||
284 (EXT2_I(parent)->i_flags & EXT2_TOPDIR_FL)) {
285 struct ext2_group_desc *best_desc = NULL;
286 int best_ndir = inodes_per_group;
287 int best_group = -1;
288
289 group = prandom_u32();
290 parent_group = (unsigned)group % ngroups;
291 for (i = 0; i < ngroups; i++) {
292 group = (parent_group + i) % ngroups;
293 desc = ext2_get_group_desc (sb, group, NULL);
294 if (!desc || !desc->bg_free_inodes_count)
295 continue;
296 if (le16_to_cpu(desc->bg_used_dirs_count) >= best_ndir)
297 continue;
298 if (le16_to_cpu(desc->bg_free_inodes_count) < avefreei)
299 continue;
300 if (le16_to_cpu(desc->bg_free_blocks_count) < avefreeb)
301 continue;
302 best_group = group;
303 best_ndir = le16_to_cpu(desc->bg_used_dirs_count);
304 best_desc = desc;
305 }
306 if (best_group >= 0) {
307 desc = best_desc;
308 group = best_group;
309 goto found;
310 }
311 goto fallback;
312 }
313
314 if (ndirs == 0)
315 ndirs = 1; /* percpu_counters are approximate... */
316
317 blocks_per_dir = (le32_to_cpu(es->s_blocks_count)-free_blocks) / ndirs;
318
319 max_dirs = ndirs / ngroups + inodes_per_group / 16;
320 min_inodes = avefreei - inodes_per_group / 4;
321 min_blocks = avefreeb - EXT2_BLOCKS_PER_GROUP(sb) / 4;
322
323 max_debt = EXT2_BLOCKS_PER_GROUP(sb) / max(blocks_per_dir, BLOCK_COST);
324 if (max_debt * INODE_COST > inodes_per_group)
325 max_debt = inodes_per_group / INODE_COST;
326 if (max_debt > 255)
327 max_debt = 255;
328 if (max_debt == 0)
329 max_debt = 1;
330
331 for (i = 0; i < ngroups; i++) {
332 group = (parent_group + i) % ngroups;
333 desc = ext2_get_group_desc (sb, group, NULL);
334 if (!desc || !desc->bg_free_inodes_count)
335 continue;
336 if (sbi->s_debts[group] >= max_debt)
337 continue;
338 if (le16_to_cpu(desc->bg_used_dirs_count) >= max_dirs)
339 continue;
340 if (le16_to_cpu(desc->bg_free_inodes_count) < min_inodes)
341 continue;
342 if (le16_to_cpu(desc->bg_free_blocks_count) < min_blocks)
343 continue;
344 goto found;
345 }
346
347 fallback:
348 for (i = 0; i < ngroups; i++) {
349 group = (parent_group + i) % ngroups;
350 desc = ext2_get_group_desc (sb, group, NULL);
351 if (!desc || !desc->bg_free_inodes_count)
352 continue;
353 if (le16_to_cpu(desc->bg_free_inodes_count) >= avefreei)
354 goto found;
355 }
356
357 if (avefreei) {
358 /*
359 * The free-inodes counter is approximate, and for really small
360 * filesystems the above test can fail to find any blockgroups
361 */
362 avefreei = 0;
363 goto fallback;
364 }
365
366 return -1;
367
368 found:
369 return group;
370 }
371
find_group_other(struct super_block * sb,struct inode * parent)372 static int find_group_other(struct super_block *sb, struct inode *parent)
373 {
374 int parent_group = EXT2_I(parent)->i_block_group;
375 int ngroups = EXT2_SB(sb)->s_groups_count;
376 struct ext2_group_desc *desc;
377 int group, i;
378
379 /*
380 * Try to place the inode in its parent directory
381 */
382 group = parent_group;
383 desc = ext2_get_group_desc (sb, group, NULL);
384 if (desc && le16_to_cpu(desc->bg_free_inodes_count) &&
385 le16_to_cpu(desc->bg_free_blocks_count))
386 goto found;
387
388 /*
389 * We're going to place this inode in a different blockgroup from its
390 * parent. We want to cause files in a common directory to all land in
391 * the same blockgroup. But we want files which are in a different
392 * directory which shares a blockgroup with our parent to land in a
393 * different blockgroup.
394 *
395 * So add our directory's i_ino into the starting point for the hash.
396 */
397 group = (group + parent->i_ino) % ngroups;
398
399 /*
400 * Use a quadratic hash to find a group with a free inode and some
401 * free blocks.
402 */
403 for (i = 1; i < ngroups; i <<= 1) {
404 group += i;
405 if (group >= ngroups)
406 group -= ngroups;
407 desc = ext2_get_group_desc (sb, group, NULL);
408 if (desc && le16_to_cpu(desc->bg_free_inodes_count) &&
409 le16_to_cpu(desc->bg_free_blocks_count))
410 goto found;
411 }
412
413 /*
414 * That failed: try linear search for a free inode, even if that group
415 * has no free blocks.
416 */
417 group = parent_group;
418 for (i = 0; i < ngroups; i++) {
419 if (++group >= ngroups)
420 group = 0;
421 desc = ext2_get_group_desc (sb, group, NULL);
422 if (desc && le16_to_cpu(desc->bg_free_inodes_count))
423 goto found;
424 }
425
426 return -1;
427
428 found:
429 return group;
430 }
431
ext2_new_inode(struct inode * dir,umode_t mode,const struct qstr * qstr)432 struct inode *ext2_new_inode(struct inode *dir, umode_t mode,
433 const struct qstr *qstr)
434 {
435 struct super_block *sb;
436 struct buffer_head *bitmap_bh = NULL;
437 struct buffer_head *bh2;
438 int group, i;
439 ino_t ino = 0;
440 struct inode * inode;
441 struct ext2_group_desc *gdp;
442 struct ext2_super_block *es;
443 struct ext2_inode_info *ei;
444 struct ext2_sb_info *sbi;
445 int err;
446
447 sb = dir->i_sb;
448 inode = new_inode(sb);
449 if (!inode)
450 return ERR_PTR(-ENOMEM);
451
452 ei = EXT2_I(inode);
453 sbi = EXT2_SB(sb);
454 es = sbi->s_es;
455 if (S_ISDIR(mode)) {
456 if (test_opt(sb, OLDALLOC))
457 group = find_group_dir(sb, dir);
458 else
459 group = find_group_orlov(sb, dir);
460 } else
461 group = find_group_other(sb, dir);
462
463 if (group == -1) {
464 err = -ENOSPC;
465 goto fail;
466 }
467
468 for (i = 0; i < sbi->s_groups_count; i++) {
469 gdp = ext2_get_group_desc(sb, group, &bh2);
470 if (!gdp) {
471 if (++group == sbi->s_groups_count)
472 group = 0;
473 continue;
474 }
475 brelse(bitmap_bh);
476 bitmap_bh = read_inode_bitmap(sb, group);
477 if (!bitmap_bh) {
478 err = -EIO;
479 goto fail;
480 }
481 ino = 0;
482
483 repeat_in_this_group:
484 ino = ext2_find_next_zero_bit((unsigned long *)bitmap_bh->b_data,
485 EXT2_INODES_PER_GROUP(sb), ino);
486 if (ino >= EXT2_INODES_PER_GROUP(sb)) {
487 /*
488 * Rare race: find_group_xx() decided that there were
489 * free inodes in this group, but by the time we tried
490 * to allocate one, they're all gone. This can also
491 * occur because the counters which find_group_orlov()
492 * uses are approximate. So just go and search the
493 * next block group.
494 */
495 if (++group == sbi->s_groups_count)
496 group = 0;
497 continue;
498 }
499 if (ext2_set_bit_atomic(sb_bgl_lock(sbi, group),
500 ino, bitmap_bh->b_data)) {
501 /* we lost this inode */
502 if (++ino >= EXT2_INODES_PER_GROUP(sb)) {
503 /* this group is exhausted, try next group */
504 if (++group == sbi->s_groups_count)
505 group = 0;
506 continue;
507 }
508 /* try to find free inode in the same group */
509 goto repeat_in_this_group;
510 }
511 goto got;
512 }
513
514 /*
515 * Scanned all blockgroups.
516 */
517 err = -ENOSPC;
518 goto fail;
519 got:
520 mark_buffer_dirty(bitmap_bh);
521 if (sb->s_flags & SB_SYNCHRONOUS)
522 sync_dirty_buffer(bitmap_bh);
523 brelse(bitmap_bh);
524
525 ino += group * EXT2_INODES_PER_GROUP(sb) + 1;
526 if (ino < EXT2_FIRST_INO(sb) || ino > le32_to_cpu(es->s_inodes_count)) {
527 ext2_error (sb, "ext2_new_inode",
528 "reserved inode or inode > inodes count - "
529 "block_group = %d,inode=%lu", group,
530 (unsigned long) ino);
531 err = -EIO;
532 goto fail;
533 }
534
535 percpu_counter_dec(&sbi->s_freeinodes_counter);
536 if (S_ISDIR(mode))
537 percpu_counter_inc(&sbi->s_dirs_counter);
538
539 spin_lock(sb_bgl_lock(sbi, group));
540 le16_add_cpu(&gdp->bg_free_inodes_count, -1);
541 if (S_ISDIR(mode)) {
542 if (sbi->s_debts[group] < 255)
543 sbi->s_debts[group]++;
544 le16_add_cpu(&gdp->bg_used_dirs_count, 1);
545 } else {
546 if (sbi->s_debts[group])
547 sbi->s_debts[group]--;
548 }
549 spin_unlock(sb_bgl_lock(sbi, group));
550
551 mark_buffer_dirty(bh2);
552 if (test_opt(sb, GRPID)) {
553 inode->i_mode = mode;
554 inode->i_uid = current_fsuid();
555 inode->i_gid = dir->i_gid;
556 } else
557 inode_init_owner(inode, dir, mode);
558
559 inode->i_ino = ino;
560 inode->i_blocks = 0;
561 inode->i_mtime = inode->i_atime = inode->i_ctime = current_time(inode);
562 memset(ei->i_data, 0, sizeof(ei->i_data));
563 ei->i_flags =
564 ext2_mask_flags(mode, EXT2_I(dir)->i_flags & EXT2_FL_INHERITED);
565 ei->i_faddr = 0;
566 ei->i_frag_no = 0;
567 ei->i_frag_size = 0;
568 ei->i_file_acl = 0;
569 ei->i_dir_acl = 0;
570 ei->i_dtime = 0;
571 ei->i_block_alloc_info = NULL;
572 ei->i_block_group = group;
573 ei->i_dir_start_lookup = 0;
574 ei->i_state = EXT2_STATE_NEW;
575 ext2_set_inode_flags(inode);
576 spin_lock(&sbi->s_next_gen_lock);
577 inode->i_generation = sbi->s_next_generation++;
578 spin_unlock(&sbi->s_next_gen_lock);
579 if (insert_inode_locked(inode) < 0) {
580 ext2_error(sb, "ext2_new_inode",
581 "inode number already in use - inode=%lu",
582 (unsigned long) ino);
583 err = -EIO;
584 goto fail;
585 }
586
587 err = dquot_initialize(inode);
588 if (err)
589 goto fail_drop;
590
591 err = dquot_alloc_inode(inode);
592 if (err)
593 goto fail_drop;
594
595 err = ext2_init_acl(inode, dir);
596 if (err)
597 goto fail_free_drop;
598
599 err = ext2_init_security(inode, dir, qstr);
600 if (err)
601 goto fail_free_drop;
602
603 mark_inode_dirty(inode);
604 ext2_debug("allocating inode %lu\n", inode->i_ino);
605 ext2_preread_inode(inode);
606 return inode;
607
608 fail_free_drop:
609 dquot_free_inode(inode);
610
611 fail_drop:
612 dquot_drop(inode);
613 inode->i_flags |= S_NOQUOTA;
614 clear_nlink(inode);
615 discard_new_inode(inode);
616 return ERR_PTR(err);
617
618 fail:
619 make_bad_inode(inode);
620 iput(inode);
621 return ERR_PTR(err);
622 }
623
ext2_count_free_inodes(struct super_block * sb)624 unsigned long ext2_count_free_inodes (struct super_block * sb)
625 {
626 struct ext2_group_desc *desc;
627 unsigned long desc_count = 0;
628 int i;
629
630 #ifdef EXT2FS_DEBUG
631 struct ext2_super_block *es;
632 unsigned long bitmap_count = 0;
633 struct buffer_head *bitmap_bh = NULL;
634
635 es = EXT2_SB(sb)->s_es;
636 for (i = 0; i < EXT2_SB(sb)->s_groups_count; i++) {
637 unsigned x;
638
639 desc = ext2_get_group_desc (sb, i, NULL);
640 if (!desc)
641 continue;
642 desc_count += le16_to_cpu(desc->bg_free_inodes_count);
643 brelse(bitmap_bh);
644 bitmap_bh = read_inode_bitmap(sb, i);
645 if (!bitmap_bh)
646 continue;
647
648 x = ext2_count_free(bitmap_bh, EXT2_INODES_PER_GROUP(sb) / 8);
649 printk("group %d: stored = %d, counted = %u\n",
650 i, le16_to_cpu(desc->bg_free_inodes_count), x);
651 bitmap_count += x;
652 }
653 brelse(bitmap_bh);
654 printk("ext2_count_free_inodes: stored = %lu, computed = %lu, %lu\n",
655 (unsigned long)
656 percpu_counter_read(&EXT2_SB(sb)->s_freeinodes_counter),
657 desc_count, bitmap_count);
658 return desc_count;
659 #else
660 for (i = 0; i < EXT2_SB(sb)->s_groups_count; i++) {
661 desc = ext2_get_group_desc (sb, i, NULL);
662 if (!desc)
663 continue;
664 desc_count += le16_to_cpu(desc->bg_free_inodes_count);
665 }
666 return desc_count;
667 #endif
668 }
669
670 /* Called at mount-time, super-block is locked */
ext2_count_dirs(struct super_block * sb)671 unsigned long ext2_count_dirs (struct super_block * sb)
672 {
673 unsigned long count = 0;
674 int i;
675
676 for (i = 0; i < EXT2_SB(sb)->s_groups_count; i++) {
677 struct ext2_group_desc *gdp = ext2_get_group_desc (sb, i, NULL);
678 if (!gdp)
679 continue;
680 count += le16_to_cpu(gdp->bg_used_dirs_count);
681 }
682 return count;
683 }
684
685