fat: split include/msdos_fs.h
[sfrench/cifs-2.6.git] / fs / fat / fatent.c
1 /*
2  * Copyright (C) 2004, OGAWA Hirofumi
3  * Released under GPL v2.
4  */
5
6 #include <linux/module.h>
7 #include <linux/fs.h>
8 #include <linux/msdos_fs.h>
9 #include <linux/blkdev.h>
10 #include "fat.h"
11
12 struct fatent_operations {
13         void (*ent_blocknr)(struct super_block *, int, int *, sector_t *);
14         void (*ent_set_ptr)(struct fat_entry *, int);
15         int (*ent_bread)(struct super_block *, struct fat_entry *,
16                          int, sector_t);
17         int (*ent_get)(struct fat_entry *);
18         void (*ent_put)(struct fat_entry *, int);
19         int (*ent_next)(struct fat_entry *);
20 };
21
22 static DEFINE_SPINLOCK(fat12_entry_lock);
23
24 static void fat12_ent_blocknr(struct super_block *sb, int entry,
25                               int *offset, sector_t *blocknr)
26 {
27         struct msdos_sb_info *sbi = MSDOS_SB(sb);
28         int bytes = entry + (entry >> 1);
29         WARN_ON(entry < FAT_START_ENT || sbi->max_cluster <= entry);
30         *offset = bytes & (sb->s_blocksize - 1);
31         *blocknr = sbi->fat_start + (bytes >> sb->s_blocksize_bits);
32 }
33
34 static void fat_ent_blocknr(struct super_block *sb, int entry,
35                             int *offset, sector_t *blocknr)
36 {
37         struct msdos_sb_info *sbi = MSDOS_SB(sb);
38         int bytes = (entry << sbi->fatent_shift);
39         WARN_ON(entry < FAT_START_ENT || sbi->max_cluster <= entry);
40         *offset = bytes & (sb->s_blocksize - 1);
41         *blocknr = sbi->fat_start + (bytes >> sb->s_blocksize_bits);
42 }
43
44 static void fat12_ent_set_ptr(struct fat_entry *fatent, int offset)
45 {
46         struct buffer_head **bhs = fatent->bhs;
47         if (fatent->nr_bhs == 1) {
48                 WARN_ON(offset >= (bhs[0]->b_size - 1));
49                 fatent->u.ent12_p[0] = bhs[0]->b_data + offset;
50                 fatent->u.ent12_p[1] = bhs[0]->b_data + (offset + 1);
51         } else {
52                 WARN_ON(offset != (bhs[0]->b_size - 1));
53                 fatent->u.ent12_p[0] = bhs[0]->b_data + offset;
54                 fatent->u.ent12_p[1] = bhs[1]->b_data;
55         }
56 }
57
58 static void fat16_ent_set_ptr(struct fat_entry *fatent, int offset)
59 {
60         WARN_ON(offset & (2 - 1));
61         fatent->u.ent16_p = (__le16 *)(fatent->bhs[0]->b_data + offset);
62 }
63
64 static void fat32_ent_set_ptr(struct fat_entry *fatent, int offset)
65 {
66         WARN_ON(offset & (4 - 1));
67         fatent->u.ent32_p = (__le32 *)(fatent->bhs[0]->b_data + offset);
68 }
69
70 static int fat12_ent_bread(struct super_block *sb, struct fat_entry *fatent,
71                            int offset, sector_t blocknr)
72 {
73         struct buffer_head **bhs = fatent->bhs;
74
75         WARN_ON(blocknr < MSDOS_SB(sb)->fat_start);
76         bhs[0] = sb_bread(sb, blocknr);
77         if (!bhs[0])
78                 goto err;
79
80         if ((offset + 1) < sb->s_blocksize)
81                 fatent->nr_bhs = 1;
82         else {
83                 /* This entry is block boundary, it needs the next block */
84                 blocknr++;
85                 bhs[1] = sb_bread(sb, blocknr);
86                 if (!bhs[1])
87                         goto err_brelse;
88                 fatent->nr_bhs = 2;
89         }
90         fat12_ent_set_ptr(fatent, offset);
91         return 0;
92
93 err_brelse:
94         brelse(bhs[0]);
95 err:
96         printk(KERN_ERR "FAT: FAT read failed (blocknr %llu)\n",
97                (unsigned long long)blocknr);
98         return -EIO;
99 }
100
101 static int fat_ent_bread(struct super_block *sb, struct fat_entry *fatent,
102                          int offset, sector_t blocknr)
103 {
104         struct fatent_operations *ops = MSDOS_SB(sb)->fatent_ops;
105
106         WARN_ON(blocknr < MSDOS_SB(sb)->fat_start);
107         fatent->bhs[0] = sb_bread(sb, blocknr);
108         if (!fatent->bhs[0]) {
109                 printk(KERN_ERR "FAT: FAT read failed (blocknr %llu)\n",
110                        (unsigned long long)blocknr);
111                 return -EIO;
112         }
113         fatent->nr_bhs = 1;
114         ops->ent_set_ptr(fatent, offset);
115         return 0;
116 }
117
118 static int fat12_ent_get(struct fat_entry *fatent)
119 {
120         u8 **ent12_p = fatent->u.ent12_p;
121         int next;
122
123         spin_lock(&fat12_entry_lock);
124         if (fatent->entry & 1)
125                 next = (*ent12_p[0] >> 4) | (*ent12_p[1] << 4);
126         else
127                 next = (*ent12_p[1] << 8) | *ent12_p[0];
128         spin_unlock(&fat12_entry_lock);
129
130         next &= 0x0fff;
131         if (next >= BAD_FAT12)
132                 next = FAT_ENT_EOF;
133         return next;
134 }
135
136 static int fat16_ent_get(struct fat_entry *fatent)
137 {
138         int next = le16_to_cpu(*fatent->u.ent16_p);
139         WARN_ON((unsigned long)fatent->u.ent16_p & (2 - 1));
140         if (next >= BAD_FAT16)
141                 next = FAT_ENT_EOF;
142         return next;
143 }
144
145 static int fat32_ent_get(struct fat_entry *fatent)
146 {
147         int next = le32_to_cpu(*fatent->u.ent32_p) & 0x0fffffff;
148         WARN_ON((unsigned long)fatent->u.ent32_p & (4 - 1));
149         if (next >= BAD_FAT32)
150                 next = FAT_ENT_EOF;
151         return next;
152 }
153
154 static void fat12_ent_put(struct fat_entry *fatent, int new)
155 {
156         u8 **ent12_p = fatent->u.ent12_p;
157
158         if (new == FAT_ENT_EOF)
159                 new = EOF_FAT12;
160
161         spin_lock(&fat12_entry_lock);
162         if (fatent->entry & 1) {
163                 *ent12_p[0] = (new << 4) | (*ent12_p[0] & 0x0f);
164                 *ent12_p[1] = new >> 4;
165         } else {
166                 *ent12_p[0] = new & 0xff;
167                 *ent12_p[1] = (*ent12_p[1] & 0xf0) | (new >> 8);
168         }
169         spin_unlock(&fat12_entry_lock);
170
171         mark_buffer_dirty(fatent->bhs[0]);
172         if (fatent->nr_bhs == 2)
173                 mark_buffer_dirty(fatent->bhs[1]);
174 }
175
176 static void fat16_ent_put(struct fat_entry *fatent, int new)
177 {
178         if (new == FAT_ENT_EOF)
179                 new = EOF_FAT16;
180
181         *fatent->u.ent16_p = cpu_to_le16(new);
182         mark_buffer_dirty(fatent->bhs[0]);
183 }
184
185 static void fat32_ent_put(struct fat_entry *fatent, int new)
186 {
187         if (new == FAT_ENT_EOF)
188                 new = EOF_FAT32;
189
190         WARN_ON(new & 0xf0000000);
191         new |= le32_to_cpu(*fatent->u.ent32_p) & ~0x0fffffff;
192         *fatent->u.ent32_p = cpu_to_le32(new);
193         mark_buffer_dirty(fatent->bhs[0]);
194 }
195
196 static int fat12_ent_next(struct fat_entry *fatent)
197 {
198         u8 **ent12_p = fatent->u.ent12_p;
199         struct buffer_head **bhs = fatent->bhs;
200         u8 *nextp = ent12_p[1] + 1 + (fatent->entry & 1);
201
202         fatent->entry++;
203         if (fatent->nr_bhs == 1) {
204                 WARN_ON(ent12_p[0] > (u8 *)(bhs[0]->b_data + (bhs[0]->b_size - 2)));
205                 WARN_ON(ent12_p[1] > (u8 *)(bhs[0]->b_data + (bhs[0]->b_size - 1)));
206                 if (nextp < (u8 *)(bhs[0]->b_data + (bhs[0]->b_size - 1))) {
207                         ent12_p[0] = nextp - 1;
208                         ent12_p[1] = nextp;
209                         return 1;
210                 }
211         } else {
212                 WARN_ON(ent12_p[0] != (u8 *)(bhs[0]->b_data + (bhs[0]->b_size - 1)));
213                 WARN_ON(ent12_p[1] != (u8 *)bhs[1]->b_data);
214                 ent12_p[0] = nextp - 1;
215                 ent12_p[1] = nextp;
216                 brelse(bhs[0]);
217                 bhs[0] = bhs[1];
218                 fatent->nr_bhs = 1;
219                 return 1;
220         }
221         ent12_p[0] = NULL;
222         ent12_p[1] = NULL;
223         return 0;
224 }
225
226 static int fat16_ent_next(struct fat_entry *fatent)
227 {
228         const struct buffer_head *bh = fatent->bhs[0];
229         fatent->entry++;
230         if (fatent->u.ent16_p < (__le16 *)(bh->b_data + (bh->b_size - 2))) {
231                 fatent->u.ent16_p++;
232                 return 1;
233         }
234         fatent->u.ent16_p = NULL;
235         return 0;
236 }
237
238 static int fat32_ent_next(struct fat_entry *fatent)
239 {
240         const struct buffer_head *bh = fatent->bhs[0];
241         fatent->entry++;
242         if (fatent->u.ent32_p < (__le32 *)(bh->b_data + (bh->b_size - 4))) {
243                 fatent->u.ent32_p++;
244                 return 1;
245         }
246         fatent->u.ent32_p = NULL;
247         return 0;
248 }
249
250 static struct fatent_operations fat12_ops = {
251         .ent_blocknr    = fat12_ent_blocknr,
252         .ent_set_ptr    = fat12_ent_set_ptr,
253         .ent_bread      = fat12_ent_bread,
254         .ent_get        = fat12_ent_get,
255         .ent_put        = fat12_ent_put,
256         .ent_next       = fat12_ent_next,
257 };
258
259 static struct fatent_operations fat16_ops = {
260         .ent_blocknr    = fat_ent_blocknr,
261         .ent_set_ptr    = fat16_ent_set_ptr,
262         .ent_bread      = fat_ent_bread,
263         .ent_get        = fat16_ent_get,
264         .ent_put        = fat16_ent_put,
265         .ent_next       = fat16_ent_next,
266 };
267
268 static struct fatent_operations fat32_ops = {
269         .ent_blocknr    = fat_ent_blocknr,
270         .ent_set_ptr    = fat32_ent_set_ptr,
271         .ent_bread      = fat_ent_bread,
272         .ent_get        = fat32_ent_get,
273         .ent_put        = fat32_ent_put,
274         .ent_next       = fat32_ent_next,
275 };
276
277 static inline void lock_fat(struct msdos_sb_info *sbi)
278 {
279         mutex_lock(&sbi->fat_lock);
280 }
281
282 static inline void unlock_fat(struct msdos_sb_info *sbi)
283 {
284         mutex_unlock(&sbi->fat_lock);
285 }
286
287 void fat_ent_access_init(struct super_block *sb)
288 {
289         struct msdos_sb_info *sbi = MSDOS_SB(sb);
290
291         mutex_init(&sbi->fat_lock);
292
293         switch (sbi->fat_bits) {
294         case 32:
295                 sbi->fatent_shift = 2;
296                 sbi->fatent_ops = &fat32_ops;
297                 break;
298         case 16:
299                 sbi->fatent_shift = 1;
300                 sbi->fatent_ops = &fat16_ops;
301                 break;
302         case 12:
303                 sbi->fatent_shift = -1;
304                 sbi->fatent_ops = &fat12_ops;
305                 break;
306         }
307 }
308
309 static inline int fat_ent_update_ptr(struct super_block *sb,
310                                      struct fat_entry *fatent,
311                                      int offset, sector_t blocknr)
312 {
313         struct msdos_sb_info *sbi = MSDOS_SB(sb);
314         struct fatent_operations *ops = sbi->fatent_ops;
315         struct buffer_head **bhs = fatent->bhs;
316
317         /* Is this fatent's blocks including this entry? */
318         if (!fatent->nr_bhs || bhs[0]->b_blocknr != blocknr)
319                 return 0;
320         /* Does this entry need the next block? */
321         if (sbi->fat_bits == 12 && (offset + 1) >= sb->s_blocksize) {
322                 if (fatent->nr_bhs != 2 || bhs[1]->b_blocknr != (blocknr + 1))
323                         return 0;
324         }
325         ops->ent_set_ptr(fatent, offset);
326         return 1;
327 }
328
329 int fat_ent_read(struct inode *inode, struct fat_entry *fatent, int entry)
330 {
331         struct super_block *sb = inode->i_sb;
332         struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
333         struct fatent_operations *ops = sbi->fatent_ops;
334         int err, offset;
335         sector_t blocknr;
336
337         if (entry < FAT_START_ENT || sbi->max_cluster <= entry) {
338                 fatent_brelse(fatent);
339                 fat_fs_panic(sb, "invalid access to FAT (entry 0x%08x)", entry);
340                 return -EIO;
341         }
342
343         fatent_set_entry(fatent, entry);
344         ops->ent_blocknr(sb, entry, &offset, &blocknr);
345
346         if (!fat_ent_update_ptr(sb, fatent, offset, blocknr)) {
347                 fatent_brelse(fatent);
348                 err = ops->ent_bread(sb, fatent, offset, blocknr);
349                 if (err)
350                         return err;
351         }
352         return ops->ent_get(fatent);
353 }
354
355 /* FIXME: We can write the blocks as more big chunk. */
356 static int fat_mirror_bhs(struct super_block *sb, struct buffer_head **bhs,
357                           int nr_bhs)
358 {
359         struct msdos_sb_info *sbi = MSDOS_SB(sb);
360         struct buffer_head *c_bh;
361         int err, n, copy;
362
363         err = 0;
364         for (copy = 1; copy < sbi->fats; copy++) {
365                 sector_t backup_fat = sbi->fat_length * copy;
366
367                 for (n = 0; n < nr_bhs; n++) {
368                         c_bh = sb_getblk(sb, backup_fat + bhs[n]->b_blocknr);
369                         if (!c_bh) {
370                                 err = -ENOMEM;
371                                 goto error;
372                         }
373                         memcpy(c_bh->b_data, bhs[n]->b_data, sb->s_blocksize);
374                         set_buffer_uptodate(c_bh);
375                         mark_buffer_dirty(c_bh);
376                         if (sb->s_flags & MS_SYNCHRONOUS)
377                                 err = sync_dirty_buffer(c_bh);
378                         brelse(c_bh);
379                         if (err)
380                                 goto error;
381                 }
382         }
383 error:
384         return err;
385 }
386
387 int fat_ent_write(struct inode *inode, struct fat_entry *fatent,
388                   int new, int wait)
389 {
390         struct super_block *sb = inode->i_sb;
391         struct fatent_operations *ops = MSDOS_SB(sb)->fatent_ops;
392         int err;
393
394         ops->ent_put(fatent, new);
395         if (wait) {
396                 err = fat_sync_bhs(fatent->bhs, fatent->nr_bhs);
397                 if (err)
398                         return err;
399         }
400         return fat_mirror_bhs(sb, fatent->bhs, fatent->nr_bhs);
401 }
402
403 static inline int fat_ent_next(struct msdos_sb_info *sbi,
404                                struct fat_entry *fatent)
405 {
406         if (sbi->fatent_ops->ent_next(fatent)) {
407                 if (fatent->entry < sbi->max_cluster)
408                         return 1;
409         }
410         return 0;
411 }
412
413 static inline int fat_ent_read_block(struct super_block *sb,
414                                      struct fat_entry *fatent)
415 {
416         struct fatent_operations *ops = MSDOS_SB(sb)->fatent_ops;
417         sector_t blocknr;
418         int offset;
419
420         fatent_brelse(fatent);
421         ops->ent_blocknr(sb, fatent->entry, &offset, &blocknr);
422         return ops->ent_bread(sb, fatent, offset, blocknr);
423 }
424
425 static void fat_collect_bhs(struct buffer_head **bhs, int *nr_bhs,
426                             struct fat_entry *fatent)
427 {
428         int n, i;
429
430         for (n = 0; n < fatent->nr_bhs; n++) {
431                 for (i = 0; i < *nr_bhs; i++) {
432                         if (fatent->bhs[n] == bhs[i])
433                                 break;
434                 }
435                 if (i == *nr_bhs) {
436                         get_bh(fatent->bhs[n]);
437                         bhs[i] = fatent->bhs[n];
438                         (*nr_bhs)++;
439                 }
440         }
441 }
442
443 int fat_alloc_clusters(struct inode *inode, int *cluster, int nr_cluster)
444 {
445         struct super_block *sb = inode->i_sb;
446         struct msdos_sb_info *sbi = MSDOS_SB(sb);
447         struct fatent_operations *ops = sbi->fatent_ops;
448         struct fat_entry fatent, prev_ent;
449         struct buffer_head *bhs[MAX_BUF_PER_PAGE];
450         int i, count, err, nr_bhs, idx_clus;
451
452         BUG_ON(nr_cluster > (MAX_BUF_PER_PAGE / 2));    /* fixed limit */
453
454         lock_fat(sbi);
455         if (sbi->free_clusters != -1 && sbi->free_clus_valid &&
456             sbi->free_clusters < nr_cluster) {
457                 unlock_fat(sbi);
458                 return -ENOSPC;
459         }
460
461         err = nr_bhs = idx_clus = 0;
462         count = FAT_START_ENT;
463         fatent_init(&prev_ent);
464         fatent_init(&fatent);
465         fatent_set_entry(&fatent, sbi->prev_free + 1);
466         while (count < sbi->max_cluster) {
467                 if (fatent.entry >= sbi->max_cluster)
468                         fatent.entry = FAT_START_ENT;
469                 fatent_set_entry(&fatent, fatent.entry);
470                 err = fat_ent_read_block(sb, &fatent);
471                 if (err)
472                         goto out;
473
474                 /* Find the free entries in a block */
475                 do {
476                         if (ops->ent_get(&fatent) == FAT_ENT_FREE) {
477                                 int entry = fatent.entry;
478
479                                 /* make the cluster chain */
480                                 ops->ent_put(&fatent, FAT_ENT_EOF);
481                                 if (prev_ent.nr_bhs)
482                                         ops->ent_put(&prev_ent, entry);
483
484                                 fat_collect_bhs(bhs, &nr_bhs, &fatent);
485
486                                 sbi->prev_free = entry;
487                                 if (sbi->free_clusters != -1)
488                                         sbi->free_clusters--;
489                                 sb->s_dirt = 1;
490
491                                 cluster[idx_clus] = entry;
492                                 idx_clus++;
493                                 if (idx_clus == nr_cluster)
494                                         goto out;
495
496                                 /*
497                                  * fat_collect_bhs() gets ref-count of bhs,
498                                  * so we can still use the prev_ent.
499                                  */
500                                 prev_ent = fatent;
501                         }
502                         count++;
503                         if (count == sbi->max_cluster)
504                                 break;
505                 } while (fat_ent_next(sbi, &fatent));
506         }
507
508         /* Couldn't allocate the free entries */
509         sbi->free_clusters = 0;
510         sbi->free_clus_valid = 1;
511         sb->s_dirt = 1;
512         err = -ENOSPC;
513
514 out:
515         unlock_fat(sbi);
516         fatent_brelse(&fatent);
517         if (!err) {
518                 if (inode_needs_sync(inode))
519                         err = fat_sync_bhs(bhs, nr_bhs);
520                 if (!err)
521                         err = fat_mirror_bhs(sb, bhs, nr_bhs);
522         }
523         for (i = 0; i < nr_bhs; i++)
524                 brelse(bhs[i]);
525
526         if (err && idx_clus)
527                 fat_free_clusters(inode, cluster[0]);
528
529         return err;
530 }
531
532 int fat_free_clusters(struct inode *inode, int cluster)
533 {
534         struct super_block *sb = inode->i_sb;
535         struct msdos_sb_info *sbi = MSDOS_SB(sb);
536         struct fatent_operations *ops = sbi->fatent_ops;
537         struct fat_entry fatent;
538         struct buffer_head *bhs[MAX_BUF_PER_PAGE];
539         int i, err, nr_bhs;
540         int first_cl = cluster;
541
542         nr_bhs = 0;
543         fatent_init(&fatent);
544         lock_fat(sbi);
545         do {
546                 cluster = fat_ent_read(inode, &fatent, cluster);
547                 if (cluster < 0) {
548                         err = cluster;
549                         goto error;
550                 } else if (cluster == FAT_ENT_FREE) {
551                         fat_fs_panic(sb, "%s: deleting FAT entry beyond EOF",
552                                      __func__);
553                         err = -EIO;
554                         goto error;
555                 }
556
557                 /* 
558                  * Issue discard for the sectors we no longer care about,
559                  * batching contiguous clusters into one request
560                  */
561                 if (cluster != fatent.entry + 1) {
562                         int nr_clus = fatent.entry - first_cl + 1;
563
564                         sb_issue_discard(sb, fat_clus_to_blknr(sbi, first_cl),
565                                          nr_clus * sbi->sec_per_clus);
566                         first_cl = cluster;
567                 }
568
569                 ops->ent_put(&fatent, FAT_ENT_FREE);
570                 if (sbi->free_clusters != -1) {
571                         sbi->free_clusters++;
572                         sb->s_dirt = 1;
573                 }
574
575                 if (nr_bhs + fatent.nr_bhs > MAX_BUF_PER_PAGE) {
576                         if (sb->s_flags & MS_SYNCHRONOUS) {
577                                 err = fat_sync_bhs(bhs, nr_bhs);
578                                 if (err)
579                                         goto error;
580                         }
581                         err = fat_mirror_bhs(sb, bhs, nr_bhs);
582                         if (err)
583                                 goto error;
584                         for (i = 0; i < nr_bhs; i++)
585                                 brelse(bhs[i]);
586                         nr_bhs = 0;
587                 }
588                 fat_collect_bhs(bhs, &nr_bhs, &fatent);
589         } while (cluster != FAT_ENT_EOF);
590
591         if (sb->s_flags & MS_SYNCHRONOUS) {
592                 err = fat_sync_bhs(bhs, nr_bhs);
593                 if (err)
594                         goto error;
595         }
596         err = fat_mirror_bhs(sb, bhs, nr_bhs);
597 error:
598         fatent_brelse(&fatent);
599         for (i = 0; i < nr_bhs; i++)
600                 brelse(bhs[i]);
601         unlock_fat(sbi);
602
603         return err;
604 }
605
606 EXPORT_SYMBOL_GPL(fat_free_clusters);
607
608 /* 128kb is the whole sectors for FAT12 and FAT16 */
609 #define FAT_READA_SIZE          (128 * 1024)
610
611 static void fat_ent_reada(struct super_block *sb, struct fat_entry *fatent,
612                           unsigned long reada_blocks)
613 {
614         struct fatent_operations *ops = MSDOS_SB(sb)->fatent_ops;
615         sector_t blocknr;
616         int i, offset;
617
618         ops->ent_blocknr(sb, fatent->entry, &offset, &blocknr);
619
620         for (i = 0; i < reada_blocks; i++)
621                 sb_breadahead(sb, blocknr + i);
622 }
623
624 int fat_count_free_clusters(struct super_block *sb)
625 {
626         struct msdos_sb_info *sbi = MSDOS_SB(sb);
627         struct fatent_operations *ops = sbi->fatent_ops;
628         struct fat_entry fatent;
629         unsigned long reada_blocks, reada_mask, cur_block;
630         int err = 0, free;
631
632         lock_fat(sbi);
633         if (sbi->free_clusters != -1 && sbi->free_clus_valid)
634                 goto out;
635
636         reada_blocks = FAT_READA_SIZE >> sb->s_blocksize_bits;
637         reada_mask = reada_blocks - 1;
638         cur_block = 0;
639
640         free = 0;
641         fatent_init(&fatent);
642         fatent_set_entry(&fatent, FAT_START_ENT);
643         while (fatent.entry < sbi->max_cluster) {
644                 /* readahead of fat blocks */
645                 if ((cur_block & reada_mask) == 0) {
646                         unsigned long rest = sbi->fat_length - cur_block;
647                         fat_ent_reada(sb, &fatent, min(reada_blocks, rest));
648                 }
649                 cur_block++;
650
651                 err = fat_ent_read_block(sb, &fatent);
652                 if (err)
653                         goto out;
654
655                 do {
656                         if (ops->ent_get(&fatent) == FAT_ENT_FREE)
657                                 free++;
658                 } while (fat_ent_next(sbi, &fatent));
659         }
660         sbi->free_clusters = free;
661         sbi->free_clus_valid = 1;
662         sb->s_dirt = 1;
663         fatent_brelse(&fatent);
664 out:
665         unlock_fat(sbi);
666         return err;
667 }