source: mainline/uspace/srv/fs/fat/fat_fat.c@ dc87ad11

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since dc87ad11 was dc87ad11, checked in by Jakub Jermar <jakub@…>, 16 years ago

Make fat_get_cluster() return an error code.

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File size: 14.8 KB
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1/*
2 * Copyright (c) 2008 Jakub Jermar
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup fs
30 * @{
31 */
32
33/**
34 * @file fat_fat.c
35 * @brief Functions that manipulate the File Allocation Tables.
36 */
37
38#include "fat_fat.h"
39#include "fat_dentry.h"
40#include "fat.h"
41#include "../../vfs/vfs.h"
42#include <libfs.h>
43#include <libblock.h>
44#include <errno.h>
45#include <byteorder.h>
46#include <align.h>
47#include <assert.h>
48#include <fibril_sync.h>
49#include <mem.h>
50
51/**
52 * The fat_alloc_lock mutex protects all copies of the File Allocation Table
53 * during allocation of clusters. The lock does not have to be held durring
54 * deallocation of clusters.
55 */
56static FIBRIL_MUTEX_INITIALIZE(fat_alloc_lock);
57
58/** Walk the cluster chain.
59 *
60 * @param bs Buffer holding the boot sector for the file.
61 * @param dev_handle Device handle of the device with the file.
62 * @param firstc First cluster to start the walk with.
63 * @param lastc If non-NULL, output argument hodling the last cluster
64 * number visited.
65 * @param numc If non-NULL, output argument holding the number of
66 * clusters seen during the walk.
67 * @param max_clusters Maximum number of clusters to visit.
68 *
69 * @return EOK on success or a negative error code.
70 */
71int
72fat_cluster_walk(fat_bs_t *bs, dev_handle_t dev_handle, fat_cluster_t firstc,
73 fat_cluster_t *lastc, uint16_t *numc, uint16_t max_clusters)
74{
75 block_t *b;
76 unsigned bps;
77 unsigned rscnt; /* block address of the first FAT */
78 uint16_t clusters = 0;
79 fat_cluster_t clst = firstc;
80 int rc;
81
82 bps = uint16_t_le2host(bs->bps);
83 rscnt = uint16_t_le2host(bs->rscnt);
84
85 if (firstc == FAT_CLST_RES0) {
86 /* No space allocated to the file. */
87 if (lastc)
88 *lastc = firstc;
89 if (numc)
90 *numc = 0;
91 return EOK;
92 }
93
94 while (clst < FAT_CLST_LAST1 && clusters < max_clusters) {
95 bn_t fsec; /* sector offset relative to FAT1 */
96 unsigned fidx; /* FAT1 entry index */
97
98 assert(clst >= FAT_CLST_FIRST);
99 if (lastc)
100 *lastc = clst; /* remember the last cluster number */
101 fsec = (clst * sizeof(fat_cluster_t)) / bps;
102 fidx = clst % (bps / sizeof(fat_cluster_t));
103 /* read FAT1 */
104 rc = block_get(&b, dev_handle, rscnt + fsec, BLOCK_FLAGS_NONE);
105 if (rc != EOK)
106 return rc;
107 clst = uint16_t_le2host(((fat_cluster_t *)b->data)[fidx]);
108 assert(clst != FAT_CLST_BAD);
109 rc = block_put(b);
110 if (rc != EOK)
111 return rc;
112 clusters++;
113 }
114
115 if (lastc && clst < FAT_CLST_LAST1)
116 *lastc = clst;
117 if (numc)
118 *numc = clusters;
119
120 return EOK;
121}
122
123/** Read block from file located on a FAT file system.
124 *
125 * @param block Pointer to a block pointer for storing result.
126 * @param bs Buffer holding the boot sector of the file system.
127 * @param dev_handle Device handle of the file system.
128 * @param firstc First cluster used by the file. Can be zero if the file
129 * is empty.
130 * @param bn Block number.
131 * @param flags Flags passed to libblock.
132 *
133 * @return EOK on success or a negative error code.
134 */
135int
136_fat_block_get(block_t **block, fat_bs_t *bs, dev_handle_t dev_handle,
137 fat_cluster_t firstc, bn_t bn, int flags)
138{
139 unsigned bps;
140 unsigned rscnt; /* block address of the first FAT */
141 unsigned rde;
142 unsigned rds; /* root directory size */
143 unsigned sf;
144 unsigned ssa; /* size of the system area */
145 uint16_t clusters;
146 unsigned max_clusters;
147 fat_cluster_t lastc;
148 int rc;
149
150 bps = uint16_t_le2host(bs->bps);
151 rscnt = uint16_t_le2host(bs->rscnt);
152 rde = uint16_t_le2host(bs->root_ent_max);
153 sf = uint16_t_le2host(bs->sec_per_fat);
154
155 rds = (sizeof(fat_dentry_t) * rde) / bps;
156 rds += ((sizeof(fat_dentry_t) * rde) % bps != 0);
157 ssa = rscnt + bs->fatcnt * sf + rds;
158
159 if (firstc == FAT_CLST_ROOT) {
160 /* root directory special case */
161 assert(bn < rds);
162 rc = block_get(block, dev_handle, rscnt + bs->fatcnt * sf + bn,
163 flags);
164 return rc;
165 }
166
167 max_clusters = bn / bs->spc;
168 rc = fat_cluster_walk(bs, dev_handle, firstc, &lastc, &clusters,
169 max_clusters);
170 if (rc != EOK)
171 return rc;
172 assert(clusters == max_clusters);
173
174 rc = block_get(block, dev_handle,
175 ssa + (lastc - FAT_CLST_FIRST) * bs->spc + bn % bs->spc, flags);
176
177 return rc;
178}
179
180/** Fill the gap between EOF and a new file position.
181 *
182 * @param bs Buffer holding the boot sector for nodep.
183 * @param nodep FAT node with the gap.
184 * @param mcl First cluster in an independent cluster chain that will
185 * be later appended to the end of the node's own cluster
186 * chain. If pos is still in the last allocated cluster,
187 * this argument is ignored.
188 * @param pos Position in the last node block.
189 */
190void fat_fill_gap(fat_bs_t *bs, fat_node_t *nodep, fat_cluster_t mcl, off_t pos)
191{
192 uint16_t bps;
193 unsigned spc;
194 block_t *b;
195 off_t o, boundary;
196 int rc;
197
198 bps = uint16_t_le2host(bs->bps);
199 spc = bs->spc;
200
201 boundary = ROUND_UP(nodep->size, bps * spc);
202
203 /* zero out already allocated space */
204 for (o = nodep->size; o < pos && o < boundary;
205 o = ALIGN_DOWN(o + bps, bps)) {
206 int flags = (o % bps == 0) ?
207 BLOCK_FLAGS_NOREAD : BLOCK_FLAGS_NONE;
208 rc = fat_block_get(&b, bs, nodep, o / bps, flags);
209 assert(rc == EOK);
210 memset(b->data + o % bps, 0, bps - o % bps);
211 b->dirty = true; /* need to sync node */
212 rc = block_put(b);
213 assert(rc == EOK);
214 }
215
216 if (o >= pos)
217 return;
218
219 /* zero out the initial part of the new cluster chain */
220 for (o = boundary; o < pos; o += bps) {
221 rc = _fat_block_get(&b, bs, nodep->idx->dev_handle, mcl,
222 (o - boundary) / bps, BLOCK_FLAGS_NOREAD);
223 assert(rc == EOK);
224 memset(b->data, 0, min(bps, pos - o));
225 b->dirty = true; /* need to sync node */
226 rc = block_put(b);
227 assert(rc == EOK);
228 }
229}
230
231/** Get cluster from the first FAT.
232 *
233 * @param bs Buffer holding the boot sector for the file system.
234 * @param dev_handle Device handle for the file system.
235 * @param clst Cluster which to get.
236 * @param value Output argument holding the value of the cluster.
237 *
238 * @return EOK or a negative error code.
239 */
240int
241fat_get_cluster(fat_bs_t *bs, dev_handle_t dev_handle, fat_cluster_t clst,
242 fat_cluster_t *value)
243{
244 block_t *b;
245 uint16_t bps;
246 uint16_t rscnt;
247 fat_cluster_t *cp;
248 int rc;
249
250 bps = uint16_t_le2host(bs->bps);
251 rscnt = uint16_t_le2host(bs->rscnt);
252
253 rc = block_get(&b, dev_handle, rscnt +
254 (clst * sizeof(fat_cluster_t)) / bps, BLOCK_FLAGS_NONE);
255 if (rc != EOK)
256 return rc;
257 cp = (fat_cluster_t *)b->data + clst % (bps / sizeof(fat_cluster_t));
258 *value = uint16_t_le2host(*cp);
259 rc = block_put(b);
260
261 return rc;
262}
263
264/** Set cluster in one instance of FAT.
265 *
266 * @param bs Buffer holding the boot sector for the file system.
267 * @param dev_handle Device handle for the file system.
268 * @param fatno Number of the FAT instance where to make the change.
269 * @param clst Cluster which is to be set.
270 * @param value Value to set the cluster with.
271 */
272void
273fat_set_cluster(fat_bs_t *bs, dev_handle_t dev_handle, unsigned fatno,
274 fat_cluster_t clst, fat_cluster_t value)
275{
276 block_t *b;
277 uint16_t bps;
278 uint16_t rscnt;
279 uint16_t sf;
280 fat_cluster_t *cp;
281 int rc;
282
283 bps = uint16_t_le2host(bs->bps);
284 rscnt = uint16_t_le2host(bs->rscnt);
285 sf = uint16_t_le2host(bs->sec_per_fat);
286
287 assert(fatno < bs->fatcnt);
288 rc = block_get(&b, dev_handle, rscnt + sf * fatno +
289 (clst * sizeof(fat_cluster_t)) / bps, BLOCK_FLAGS_NONE);
290 assert(rc == EOK);
291 cp = (fat_cluster_t *)b->data + clst % (bps / sizeof(fat_cluster_t));
292 *cp = host2uint16_t_le(value);
293 b->dirty = true; /* need to sync block */
294 rc = block_put(b);
295 assert(rc == EOK);
296}
297
298/** Replay the allocatoin of clusters in all shadow instances of FAT.
299 *
300 * @param bs Buffer holding the boot sector of the file system.
301 * @param dev_handle Device handle of the file system.
302 * @param lifo Chain of allocated clusters.
303 * @param nclsts Number of clusters in the lifo chain.
304 */
305void fat_alloc_shadow_clusters(fat_bs_t *bs, dev_handle_t dev_handle,
306 fat_cluster_t *lifo, unsigned nclsts)
307{
308 uint8_t fatno;
309 unsigned c;
310
311 for (fatno = FAT1 + 1; fatno < bs->fatcnt; fatno++) {
312 for (c = 0; c < nclsts; c++) {
313 fat_set_cluster(bs, dev_handle, fatno, lifo[c],
314 c == 0 ? FAT_CLST_LAST1 : lifo[c - 1]);
315 }
316 }
317}
318
319/** Allocate clusters in all copies of FAT.
320 *
321 * This function will attempt to allocate the requested number of clusters in
322 * all instances of the FAT. The FAT will be altered so that the allocated
323 * clusters form an independent chain (i.e. a chain which does not belong to any
324 * file yet).
325 *
326 * @param bs Buffer holding the boot sector of the file system.
327 * @param dev_handle Device handle of the file system.
328 * @param nclsts Number of clusters to allocate.
329 * @param mcl Output parameter where the first cluster in the chain
330 * will be returned.
331 * @param lcl Output parameter where the last cluster in the chain
332 * will be returned.
333 *
334 * @return EOK on success, a negative error code otherwise.
335 */
336int
337fat_alloc_clusters(fat_bs_t *bs, dev_handle_t dev_handle, unsigned nclsts,
338 fat_cluster_t *mcl, fat_cluster_t *lcl)
339{
340 uint16_t bps;
341 uint16_t rscnt;
342 uint16_t sf;
343 block_t *blk;
344 fat_cluster_t *lifo; /* stack for storing free cluster numbers */
345 unsigned found = 0; /* top of the free cluster number stack */
346 unsigned b, c, cl;
347 int rc;
348
349 lifo = (fat_cluster_t *) malloc(nclsts * sizeof(fat_cluster_t));
350 if (!lifo)
351 return ENOMEM;
352
353 bps = uint16_t_le2host(bs->bps);
354 rscnt = uint16_t_le2host(bs->rscnt);
355 sf = uint16_t_le2host(bs->sec_per_fat);
356
357 /*
358 * Search FAT1 for unused clusters.
359 */
360 fibril_mutex_lock(&fat_alloc_lock);
361 for (b = 0, cl = 0; b < sf; b++) {
362 rc = block_get(&blk, dev_handle, rscnt + b, BLOCK_FLAGS_NONE);
363 for (c = 0; c < bps / sizeof(fat_cluster_t); c++, cl++) {
364 fat_cluster_t *clst = (fat_cluster_t *)blk->data + c;
365 if (uint16_t_le2host(*clst) == FAT_CLST_RES0) {
366 /*
367 * The cluster is free. Put it into our stack
368 * of found clusters and mark it as non-free.
369 */
370 lifo[found] = cl;
371 *clst = (found == 0) ?
372 host2uint16_t_le(FAT_CLST_LAST1) :
373 host2uint16_t_le(lifo[found - 1]);
374 blk->dirty = true; /* need to sync block */
375 if (++found == nclsts) {
376 /* we are almost done */
377 rc = block_put(blk);
378 assert(rc == EOK);
379 /* update the shadow copies of FAT */
380 fat_alloc_shadow_clusters(bs,
381 dev_handle, lifo, nclsts);
382 *mcl = lifo[found - 1];
383 *lcl = lifo[0];
384 free(lifo);
385 fibril_mutex_unlock(&fat_alloc_lock);
386 return EOK;
387 }
388 }
389 }
390 rc = block_put(blk);
391 assert(rc == EOK);
392 }
393 fibril_mutex_unlock(&fat_alloc_lock);
394
395 /*
396 * We could not find enough clusters. Now we need to free the clusters
397 * we have allocated so far.
398 */
399 while (found--) {
400 fat_set_cluster(bs, dev_handle, FAT1, lifo[found],
401 FAT_CLST_RES0);
402 }
403
404 free(lifo);
405 return ENOSPC;
406}
407
408/** Free clusters forming a cluster chain in all copies of FAT.
409 *
410 * @param bs Buffer hodling the boot sector of the file system.
411 * @param dev_handle Device handle of the file system.
412 * @param firstc First cluster in the chain which is to be freed.
413 */
414void
415fat_free_clusters(fat_bs_t *bs, dev_handle_t dev_handle, fat_cluster_t firstc)
416{
417 unsigned fatno;
418 fat_cluster_t nextc;
419 int rc;
420
421 /* Mark all clusters in the chain as free in all copies of FAT. */
422 while (firstc < FAT_CLST_LAST1) {
423 assert(firstc >= FAT_CLST_FIRST && firstc < FAT_CLST_BAD);
424 rc = fat_get_cluster(bs, dev_handle, firstc, &nextc);
425 assert(rc == EOK);
426 for (fatno = FAT1; fatno < bs->fatcnt; fatno++)
427 fat_set_cluster(bs, dev_handle, fatno, firstc,
428 FAT_CLST_RES0);
429 firstc = nextc;
430 }
431}
432
433/** Append a cluster chain to the last file cluster in all FATs.
434 *
435 * @param bs Buffer holding the boot sector of the file system.
436 * @param nodep Node representing the file.
437 * @param mcl First cluster of the cluster chain to append.
438 */
439void fat_append_clusters(fat_bs_t *bs, fat_node_t *nodep, fat_cluster_t mcl)
440{
441 dev_handle_t dev_handle = nodep->idx->dev_handle;
442 fat_cluster_t lcl;
443 uint16_t numc;
444 uint8_t fatno;
445 int rc;
446
447 rc = fat_cluster_walk(bs, dev_handle, nodep->firstc, &lcl, &numc,
448 (uint16_t) -1);
449 assert(rc == EOK);
450
451 if (numc == 0) {
452 /* No clusters allocated to the node yet. */
453 nodep->firstc = mcl;
454 nodep->dirty = true; /* need to sync node */
455 return;
456 }
457
458 for (fatno = FAT1; fatno < bs->fatcnt; fatno++)
459 fat_set_cluster(bs, nodep->idx->dev_handle, fatno, lcl, mcl);
460}
461
462/** Chop off node clusters in all copies of FAT.
463 *
464 * @param bs Buffer holding the boot sector of the file system.
465 * @param nodep FAT node where the chopping will take place.
466 * @param lastc Last cluster which will remain in the node. If this
467 * argument is FAT_CLST_RES0, then all clusters will
468 * be chopped off.
469 */
470void fat_chop_clusters(fat_bs_t *bs, fat_node_t *nodep, fat_cluster_t lastc)
471{
472 int rc;
473
474 dev_handle_t dev_handle = nodep->idx->dev_handle;
475 if (lastc == FAT_CLST_RES0) {
476 /* The node will have zero size and no clusters allocated. */
477 fat_free_clusters(bs, dev_handle, nodep->firstc);
478 nodep->firstc = FAT_CLST_RES0;
479 nodep->dirty = true; /* need to sync node */
480 } else {
481 fat_cluster_t nextc;
482 unsigned fatno;
483
484 rc = fat_get_cluster(bs, dev_handle, lastc, &nextc);
485 assert(rc == EOK);
486
487 /* Terminate the cluster chain in all copies of FAT. */
488 for (fatno = FAT1; fatno < bs->fatcnt; fatno++)
489 fat_set_cluster(bs, dev_handle, fatno, lastc, FAT_CLST_LAST1);
490
491 /* Free all following clusters. */
492 fat_free_clusters(bs, dev_handle, nextc);
493 }
494}
495
496void
497fat_zero_cluster(struct fat_bs *bs, dev_handle_t dev_handle, fat_cluster_t c)
498{
499 int i;
500 block_t *b;
501 unsigned bps;
502 int rc;
503
504 bps = uint16_t_le2host(bs->bps);
505
506 for (i = 0; i < bs->spc; i++) {
507 rc = _fat_block_get(&b, bs, dev_handle, c, i,
508 BLOCK_FLAGS_NOREAD);
509 assert(rc == EOK);
510 memset(b->data, 0, bps);
511 b->dirty = true;
512 rc = block_put(b);
513 assert(rc == EOK);
514 }
515}
516
517/**
518 * @}
519 */
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