source: mainline/uspace/srv/fs/fat/fat_ops.c@ 7ece4247

lfn serial ticket/834-toolchain-update topic/fix-logger-deadlock topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 7ece4247 was 7ece4247, checked in by Jakub Jermar <jakub@…>, 15 years ago

Cleanup.

  • Property mode set to 100644
File size: 32.5 KB
Line 
1/*
2 * Copyright (c) 2008 Jakub Jermar
3 * Copyright (c) 2011 Oleg Romanenko
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * - Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * - Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * - The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30/** @addtogroup fs
31 * @{
32 */
33
34/**
35 * @file fat_ops.c
36 * @brief Implementation of VFS operations for the FAT file system server.
37 */
38
39#include "fat.h"
40#include "fat_dentry.h"
41#include "fat_fat.h"
42#include "fat_directory.h"
43#include "../../vfs/vfs.h"
44#include <libfs.h>
45#include <libblock.h>
46#include <ipc/services.h>
47#include <ipc/loc.h>
48#include <macros.h>
49#include <async.h>
50#include <errno.h>
51#include <str.h>
52#include <byteorder.h>
53#include <adt/hash_table.h>
54#include <adt/list.h>
55#include <assert.h>
56#include <fibril_synch.h>
57#include <sys/mman.h>
58#include <align.h>
59#include <malloc.h>
60#include <str.h>
61
62#define FAT_NODE(node) ((node) ? (fat_node_t *) (node)->data : NULL)
63#define FS_NODE(node) ((node) ? (node)->bp : NULL)
64
65#define DPS(bs) (BPS((bs)) / sizeof(fat_dentry_t))
66#define BPC(bs) (BPS((bs)) * SPC((bs)))
67
68/** Mutex protecting the list of cached free FAT nodes. */
69static FIBRIL_MUTEX_INITIALIZE(ffn_mutex);
70
71/** List of cached free FAT nodes. */
72static LIST_INITIALIZE(ffn_list);
73
74/*
75 * Forward declarations of FAT libfs operations.
76 */
77static int fat_root_get(fs_node_t **, service_id_t);
78static int fat_match(fs_node_t **, fs_node_t *, const char *);
79static int fat_node_get(fs_node_t **, service_id_t, fs_index_t);
80static int fat_node_open(fs_node_t *);
81static int fat_node_put(fs_node_t *);
82static int fat_create_node(fs_node_t **, service_id_t, int);
83static int fat_destroy_node(fs_node_t *);
84static int fat_link(fs_node_t *, fs_node_t *, const char *);
85static int fat_unlink(fs_node_t *, fs_node_t *, const char *);
86static int fat_has_children(bool *, fs_node_t *);
87static fs_index_t fat_index_get(fs_node_t *);
88static aoff64_t fat_size_get(fs_node_t *);
89static unsigned fat_lnkcnt_get(fs_node_t *);
90static bool fat_is_directory(fs_node_t *);
91static bool fat_is_file(fs_node_t *node);
92static service_id_t fat_device_get(fs_node_t *node);
93
94/*
95 * Helper functions.
96 */
97static void fat_node_initialize(fat_node_t *node)
98{
99 fibril_mutex_initialize(&node->lock);
100 node->bp = NULL;
101 node->idx = NULL;
102 node->type = 0;
103 link_initialize(&node->ffn_link);
104 node->size = 0;
105 node->lnkcnt = 0;
106 node->refcnt = 0;
107 node->dirty = false;
108 node->lastc_cached_valid = false;
109 node->lastc_cached_value = 0;
110 node->currc_cached_valid = false;
111 node->currc_cached_bn = 0;
112 node->currc_cached_value = 0;
113}
114
115static int fat_node_sync(fat_node_t *node)
116{
117 block_t *b;
118 fat_bs_t *bs;
119 fat_dentry_t *d;
120 int rc;
121
122 assert(node->dirty);
123
124 bs = block_bb_get(node->idx->service_id);
125
126 /* Read the block that contains the dentry of interest. */
127 rc = _fat_block_get(&b, bs, node->idx->service_id, node->idx->pfc,
128 NULL, (node->idx->pdi * sizeof(fat_dentry_t)) / BPS(bs),
129 BLOCK_FLAGS_NONE);
130 if (rc != EOK)
131 return rc;
132
133 d = ((fat_dentry_t *)b->data) + (node->idx->pdi % DPS(bs));
134
135 d->firstc = host2uint16_t_le(node->firstc);
136 if (node->type == FAT_FILE) {
137 d->size = host2uint32_t_le(node->size);
138 } else if (node->type == FAT_DIRECTORY) {
139 d->attr = FAT_ATTR_SUBDIR;
140 }
141
142 /* TODO: update other fields? (e.g time fields) */
143
144 b->dirty = true; /* need to sync block */
145 rc = block_put(b);
146 return rc;
147}
148
149static int fat_node_fini_by_service_id(service_id_t service_id)
150{
151 fat_node_t *nodep;
152 int rc;
153
154 /*
155 * We are called from fat_unmounted() and assume that there are already
156 * no nodes belonging to this instance with non-zero refcount. Therefore
157 * it is sufficient to clean up only the FAT free node list.
158 */
159
160restart:
161 fibril_mutex_lock(&ffn_mutex);
162 list_foreach(ffn_list, lnk) {
163 nodep = list_get_instance(lnk, fat_node_t, ffn_link);
164 if (!fibril_mutex_trylock(&nodep->lock)) {
165 fibril_mutex_unlock(&ffn_mutex);
166 goto restart;
167 }
168 if (!fibril_mutex_trylock(&nodep->idx->lock)) {
169 fibril_mutex_unlock(&nodep->lock);
170 fibril_mutex_unlock(&ffn_mutex);
171 goto restart;
172 }
173 if (nodep->idx->service_id != service_id) {
174 fibril_mutex_unlock(&nodep->idx->lock);
175 fibril_mutex_unlock(&nodep->lock);
176 continue;
177 }
178
179 list_remove(&nodep->ffn_link);
180 fibril_mutex_unlock(&ffn_mutex);
181
182 /*
183 * We can unlock the node and its index structure because we are
184 * the last player on this playground and VFS is preventing new
185 * players from entering.
186 */
187 fibril_mutex_unlock(&nodep->idx->lock);
188 fibril_mutex_unlock(&nodep->lock);
189
190 if (nodep->dirty) {
191 rc = fat_node_sync(nodep);
192 if (rc != EOK)
193 return rc;
194 }
195 nodep->idx->nodep = NULL;
196 free(nodep->bp);
197 free(nodep);
198
199 /* Need to restart because we changed ffn_list. */
200 goto restart;
201 }
202 fibril_mutex_unlock(&ffn_mutex);
203
204 return EOK;
205}
206
207static int fat_node_get_new(fat_node_t **nodepp)
208{
209 fs_node_t *fn;
210 fat_node_t *nodep;
211 int rc;
212
213 fibril_mutex_lock(&ffn_mutex);
214 if (!list_empty(&ffn_list)) {
215 /* Try to use a cached free node structure. */
216 fat_idx_t *idxp_tmp;
217 nodep = list_get_instance(list_first(&ffn_list), fat_node_t,
218 ffn_link);
219 if (!fibril_mutex_trylock(&nodep->lock))
220 goto skip_cache;
221 idxp_tmp = nodep->idx;
222 if (!fibril_mutex_trylock(&idxp_tmp->lock)) {
223 fibril_mutex_unlock(&nodep->lock);
224 goto skip_cache;
225 }
226 list_remove(&nodep->ffn_link);
227 fibril_mutex_unlock(&ffn_mutex);
228 if (nodep->dirty) {
229 rc = fat_node_sync(nodep);
230 if (rc != EOK) {
231 idxp_tmp->nodep = NULL;
232 fibril_mutex_unlock(&nodep->lock);
233 fibril_mutex_unlock(&idxp_tmp->lock);
234 free(nodep->bp);
235 free(nodep);
236 return rc;
237 }
238 }
239 idxp_tmp->nodep = NULL;
240 fibril_mutex_unlock(&nodep->lock);
241 fibril_mutex_unlock(&idxp_tmp->lock);
242 fn = FS_NODE(nodep);
243 } else {
244skip_cache:
245 /* Try to allocate a new node structure. */
246 fibril_mutex_unlock(&ffn_mutex);
247 fn = (fs_node_t *)malloc(sizeof(fs_node_t));
248 if (!fn)
249 return ENOMEM;
250 nodep = (fat_node_t *)malloc(sizeof(fat_node_t));
251 if (!nodep) {
252 free(fn);
253 return ENOMEM;
254 }
255 }
256 fat_node_initialize(nodep);
257 fs_node_initialize(fn);
258 fn->data = nodep;
259 nodep->bp = fn;
260
261 *nodepp = nodep;
262 return EOK;
263}
264
265/** Internal version of fat_node_get().
266 *
267 * @param idxp Locked index structure.
268 */
269static int fat_node_get_core(fat_node_t **nodepp, fat_idx_t *idxp)
270{
271 block_t *b;
272 fat_bs_t *bs;
273 fat_dentry_t *d;
274 fat_node_t *nodep = NULL;
275 int rc;
276
277 if (idxp->nodep) {
278 /*
279 * We are lucky.
280 * The node is already instantiated in memory.
281 */
282 fibril_mutex_lock(&idxp->nodep->lock);
283 if (!idxp->nodep->refcnt++) {
284 fibril_mutex_lock(&ffn_mutex);
285 list_remove(&idxp->nodep->ffn_link);
286 fibril_mutex_unlock(&ffn_mutex);
287 }
288 fibril_mutex_unlock(&idxp->nodep->lock);
289 *nodepp = idxp->nodep;
290 return EOK;
291 }
292
293 /*
294 * We must instantiate the node from the file system.
295 */
296
297 assert(idxp->pfc);
298
299 rc = fat_node_get_new(&nodep);
300 if (rc != EOK)
301 return rc;
302
303 bs = block_bb_get(idxp->service_id);
304
305 /* Read the block that contains the dentry of interest. */
306 rc = _fat_block_get(&b, bs, idxp->service_id, idxp->pfc, NULL,
307 (idxp->pdi * sizeof(fat_dentry_t)) / BPS(bs), BLOCK_FLAGS_NONE);
308 if (rc != EOK) {
309 (void) fat_node_put(FS_NODE(nodep));
310 return rc;
311 }
312
313 d = ((fat_dentry_t *)b->data) + (idxp->pdi % DPS(bs));
314 if (FAT_IS_FAT32(bs)) {
315 nodep->firstc = uint16_t_le2host(d->firstc_lo) |
316 (uint16_t_le2host(d->firstc_hi) << 16);
317 } else
318 nodep->firstc = uint16_t_le2host(d->firstc);
319
320 if (d->attr & FAT_ATTR_SUBDIR) {
321 /*
322 * The only directory which does not have this bit set is the
323 * root directory itself. The root directory node is handled
324 * and initialized elsewhere.
325 */
326 nodep->type = FAT_DIRECTORY;
327
328 /*
329 * Unfortunately, the 'size' field of the FAT dentry is not
330 * defined for the directory entry type. We must determine the
331 * size of the directory by walking the FAT.
332 */
333 uint32_t clusters;
334 rc = fat_clusters_get(&clusters, bs, idxp->service_id,
335 nodep->firstc);
336 if (rc != EOK) {
337 (void) block_put(b);
338 (void) fat_node_put(FS_NODE(nodep));
339 return rc;
340 }
341 nodep->size = BPS(bs) * SPC(bs) * clusters;
342 } else {
343 nodep->type = FAT_FILE;
344 nodep->size = uint32_t_le2host(d->size);
345 }
346
347 nodep->lnkcnt = 1;
348 nodep->refcnt = 1;
349
350 rc = block_put(b);
351 if (rc != EOK) {
352 (void) fat_node_put(FS_NODE(nodep));
353 return rc;
354 }
355
356 /* Link the idx structure with the node structure. */
357 nodep->idx = idxp;
358 idxp->nodep = nodep;
359
360 *nodepp = nodep;
361 return EOK;
362}
363
364/*
365 * FAT libfs operations.
366 */
367
368int fat_root_get(fs_node_t **rfn, service_id_t service_id)
369{
370 return fat_node_get(rfn, service_id, 0);
371}
372
373int fat_match(fs_node_t **rfn, fs_node_t *pfn, const char *component)
374{
375 fat_node_t *parentp = FAT_NODE(pfn);
376 char name[FAT_LFN_NAME_SIZE];
377 fat_dentry_t *d;
378 service_id_t service_id;
379 int rc;
380
381 fibril_mutex_lock(&parentp->idx->lock);
382 service_id = parentp->idx->service_id;
383 fibril_mutex_unlock(&parentp->idx->lock);
384
385 fat_directory_t di;
386 rc = fat_directory_open(parentp, &di);
387 if (rc != EOK)
388 return rc;
389
390 while (fat_directory_read(&di, name, &d) == EOK) {
391 if (fat_dentry_namecmp(name, component) == 0) {
392 /* hit */
393 fat_node_t *nodep;
394 aoff64_t o = di.pos %
395 (BPS(di.bs) / sizeof(fat_dentry_t));
396 fat_idx_t *idx = fat_idx_get_by_pos(service_id,
397 parentp->firstc, di.bnum * DPS(di.bs) + o);
398 if (!idx) {
399 /*
400 * Can happen if memory is low or if we
401 * run out of 32-bit indices.
402 */
403 rc = fat_directory_close(&di);
404 return (rc == EOK) ? ENOMEM : rc;
405 }
406 rc = fat_node_get_core(&nodep, idx);
407 fibril_mutex_unlock(&idx->lock);
408 if (rc != EOK) {
409 (void) fat_directory_close(&di);
410 return rc;
411 }
412 *rfn = FS_NODE(nodep);
413 rc = fat_directory_close(&di);
414 if (rc != EOK)
415 (void) fat_node_put(*rfn);
416 return rc;
417 } else {
418 rc = fat_directory_next(&di);
419 if (rc != EOK)
420 break;
421 }
422 }
423 (void) fat_directory_close(&di);
424 *rfn = NULL;
425 return EOK;
426}
427
428/** Instantiate a FAT in-core node. */
429int fat_node_get(fs_node_t **rfn, service_id_t service_id, fs_index_t index)
430{
431 fat_node_t *nodep;
432 fat_idx_t *idxp;
433 int rc;
434
435 idxp = fat_idx_get_by_index(service_id, index);
436 if (!idxp) {
437 *rfn = NULL;
438 return EOK;
439 }
440 /* idxp->lock held */
441 rc = fat_node_get_core(&nodep, idxp);
442 fibril_mutex_unlock(&idxp->lock);
443 if (rc == EOK)
444 *rfn = FS_NODE(nodep);
445 return rc;
446}
447
448int fat_node_open(fs_node_t *fn)
449{
450 /*
451 * Opening a file is stateless, nothing
452 * to be done here.
453 */
454 return EOK;
455}
456
457int fat_node_put(fs_node_t *fn)
458{
459 fat_node_t *nodep = FAT_NODE(fn);
460 bool destroy = false;
461
462 fibril_mutex_lock(&nodep->lock);
463 if (!--nodep->refcnt) {
464 if (nodep->idx) {
465 fibril_mutex_lock(&ffn_mutex);
466 list_append(&nodep->ffn_link, &ffn_list);
467 fibril_mutex_unlock(&ffn_mutex);
468 } else {
469 /*
470 * The node does not have any index structure associated
471 * with itself. This can only mean that we are releasing
472 * the node after a failed attempt to allocate the index
473 * structure for it.
474 */
475 destroy = true;
476 }
477 }
478 fibril_mutex_unlock(&nodep->lock);
479 if (destroy) {
480 free(nodep->bp);
481 free(nodep);
482 }
483 return EOK;
484}
485
486int fat_create_node(fs_node_t **rfn, service_id_t service_id, int flags)
487{
488 fat_idx_t *idxp;
489 fat_node_t *nodep;
490 fat_bs_t *bs;
491 fat_cluster_t mcl, lcl;
492 int rc;
493
494 bs = block_bb_get(service_id);
495 if (flags & L_DIRECTORY) {
496 /* allocate a cluster */
497 rc = fat_alloc_clusters(bs, service_id, 1, &mcl, &lcl);
498 if (rc != EOK)
499 return rc;
500 /* populate the new cluster with unused dentries */
501 rc = fat_zero_cluster(bs, service_id, mcl);
502 if (rc != EOK) {
503 (void) fat_free_clusters(bs, service_id, mcl);
504 return rc;
505 }
506 }
507
508 rc = fat_node_get_new(&nodep);
509 if (rc != EOK) {
510 (void) fat_free_clusters(bs, service_id, mcl);
511 return rc;
512 }
513 rc = fat_idx_get_new(&idxp, service_id);
514 if (rc != EOK) {
515 (void) fat_free_clusters(bs, service_id, mcl);
516 (void) fat_node_put(FS_NODE(nodep));
517 return rc;
518 }
519 /* idxp->lock held */
520 if (flags & L_DIRECTORY) {
521 nodep->type = FAT_DIRECTORY;
522 nodep->firstc = mcl;
523 nodep->size = BPS(bs) * SPC(bs);
524 } else {
525 nodep->type = FAT_FILE;
526 nodep->firstc = FAT_CLST_RES0;
527 nodep->size = 0;
528 }
529 nodep->lnkcnt = 0; /* not linked anywhere */
530 nodep->refcnt = 1;
531 nodep->dirty = true;
532
533 nodep->idx = idxp;
534 idxp->nodep = nodep;
535
536 fibril_mutex_unlock(&idxp->lock);
537 *rfn = FS_NODE(nodep);
538 return EOK;
539}
540
541int fat_destroy_node(fs_node_t *fn)
542{
543 fat_node_t *nodep = FAT_NODE(fn);
544 fat_bs_t *bs;
545 bool has_children;
546 int rc;
547
548 /*
549 * The node is not reachable from the file system. This means that the
550 * link count should be zero and that the index structure cannot be
551 * found in the position hash. Obviously, we don't need to lock the node
552 * nor its index structure.
553 */
554 assert(nodep->lnkcnt == 0);
555
556 /*
557 * The node may not have any children.
558 */
559 rc = fat_has_children(&has_children, fn);
560 if (rc != EOK)
561 return rc;
562 assert(!has_children);
563
564 bs = block_bb_get(nodep->idx->service_id);
565 if (nodep->firstc != FAT_CLST_RES0) {
566 assert(nodep->size);
567 /* Free all clusters allocated to the node. */
568 rc = fat_free_clusters(bs, nodep->idx->service_id,
569 nodep->firstc);
570 }
571
572 fat_idx_destroy(nodep->idx);
573 free(nodep->bp);
574 free(nodep);
575 return rc;
576}
577
578int fat_link(fs_node_t *pfn, fs_node_t *cfn, const char *name)
579{
580 fat_node_t *parentp = FAT_NODE(pfn);
581 fat_node_t *childp = FAT_NODE(cfn);
582 fat_dentry_t *d;
583 fat_bs_t *bs;
584 block_t *b;
585 fat_directory_t di;
586 fat_dentry_t de;
587 int rc;
588
589 fibril_mutex_lock(&childp->lock);
590 if (childp->lnkcnt == 1) {
591 /*
592 * On FAT, we don't support multiple hard links.
593 */
594 fibril_mutex_unlock(&childp->lock);
595 return EMLINK;
596 }
597 assert(childp->lnkcnt == 0);
598 fibril_mutex_unlock(&childp->lock);
599
600 if (!fat_valid_name(name))
601 return ENOTSUP;
602
603 fibril_mutex_lock(&parentp->idx->lock);
604 bs = block_bb_get(parentp->idx->service_id);
605 rc = fat_directory_open(parentp, &di);
606 if (rc != EOK)
607 return rc;
608
609 /*
610 * At this point we only establish the link between the parent and the
611 * child. The dentry, except of the name and the extension, will remain
612 * uninitialized until the corresponding node is synced. Thus the valid
613 * dentry data is kept in the child node structure.
614 */
615 memset(&de, 0, sizeof(fat_dentry_t));
616
617 rc = fat_directory_write(&di, name, &de);
618 if (rc != EOK)
619 return rc;
620 rc = fat_directory_close(&di);
621 if (rc != EOK)
622 return rc;
623
624 fibril_mutex_unlock(&parentp->idx->lock);
625 if (rc != EOK)
626 return rc;
627
628 fibril_mutex_lock(&childp->idx->lock);
629
630 if (childp->type == FAT_DIRECTORY) {
631 /*
632 * If possible, create the Sub-directory Identifier Entry and
633 * the Sub-directory Parent Pointer Entry (i.e. "." and "..").
634 * These entries are not mandatory according to Standard
635 * ECMA-107 and HelenOS VFS does not use them anyway, so this is
636 * rather a sign of our good will.
637 */
638 rc = fat_block_get(&b, bs, childp, 0, BLOCK_FLAGS_NONE);
639 if (rc != EOK) {
640 /*
641 * Rather than returning an error, simply skip the
642 * creation of these two entries.
643 */
644 goto skip_dots;
645 }
646 d = (fat_dentry_t *) b->data;
647 if ((fat_classify_dentry(d) == FAT_DENTRY_LAST) ||
648 (bcmp(d->name, FAT_NAME_DOT, FAT_NAME_LEN)) == 0) {
649 memset(d, 0, sizeof(fat_dentry_t));
650 memcpy(d->name, FAT_NAME_DOT, FAT_NAME_LEN);
651 memcpy(d->ext, FAT_EXT_PAD, FAT_EXT_LEN);
652 d->attr = FAT_ATTR_SUBDIR;
653 d->firstc = host2uint16_t_le(childp->firstc);
654 /* TODO: initialize also the date/time members. */
655 }
656 d++;
657 if ((fat_classify_dentry(d) == FAT_DENTRY_LAST) ||
658 (bcmp(d->name, FAT_NAME_DOT_DOT, FAT_NAME_LEN) == 0)) {
659 memset(d, 0, sizeof(fat_dentry_t));
660 memcpy(d->name, FAT_NAME_DOT_DOT, FAT_NAME_LEN);
661 memcpy(d->ext, FAT_EXT_PAD, FAT_EXT_LEN);
662 d->attr = FAT_ATTR_SUBDIR;
663 d->firstc = (parentp->firstc == FAT_ROOT_CLST(bs)) ?
664 host2uint16_t_le(FAT_CLST_ROOTPAR) :
665 host2uint16_t_le(parentp->firstc);
666 /* TODO: initialize also the date/time members. */
667 }
668 b->dirty = true; /* need to sync block */
669 /*
670 * Ignore the return value as we would have fallen through on error
671 * anyway.
672 */
673 (void) block_put(b);
674 }
675skip_dots:
676
677 childp->idx->pfc = parentp->firstc;
678 childp->idx->pdi = di.pos; /* di.pos holds absolute position of SFN entry */
679 fibril_mutex_unlock(&childp->idx->lock);
680
681 fibril_mutex_lock(&childp->lock);
682 childp->lnkcnt = 1;
683 childp->dirty = true; /* need to sync node */
684 fibril_mutex_unlock(&childp->lock);
685
686 /*
687 * Hash in the index structure into the position hash.
688 */
689 fat_idx_hashin(childp->idx);
690
691 return EOK;
692}
693
694int fat_unlink(fs_node_t *pfn, fs_node_t *cfn, const char *nm)
695{
696 fat_node_t *parentp = FAT_NODE(pfn);
697 fat_node_t *childp = FAT_NODE(cfn);
698 bool has_children;
699 int rc;
700
701 if (!parentp)
702 return EBUSY;
703
704 rc = fat_has_children(&has_children, cfn);
705 if (rc != EOK)
706 return rc;
707 if (has_children)
708 return ENOTEMPTY;
709
710 fibril_mutex_lock(&parentp->lock);
711 fibril_mutex_lock(&childp->lock);
712 assert(childp->lnkcnt == 1);
713 fibril_mutex_lock(&childp->idx->lock);
714
715 fat_directory_t di;
716 rc = fat_directory_open(parentp, &di);
717 if (rc != EOK)
718 goto error;
719 rc = fat_directory_seek(&di, childp->idx->pdi);
720 if (rc != EOK)
721 goto error;
722 rc = fat_directory_erase(&di);
723 if (rc != EOK)
724 goto error;
725 rc = fat_directory_close(&di);
726 if (rc != EOK)
727 goto error;
728
729 /* remove the index structure from the position hash */
730 fat_idx_hashout(childp->idx);
731 /* clear position information */
732 childp->idx->pfc = FAT_CLST_RES0;
733 childp->idx->pdi = 0;
734 fibril_mutex_unlock(&childp->idx->lock);
735 childp->lnkcnt = 0;
736 childp->refcnt++; /* keep the node in memory until destroyed */
737 childp->dirty = true;
738 fibril_mutex_unlock(&childp->lock);
739 fibril_mutex_unlock(&parentp->lock);
740
741 return EOK;
742
743error:
744 (void) fat_directory_close(&di);
745 fibril_mutex_unlock(&childp->idx->lock);
746 fibril_mutex_unlock(&childp->lock);
747 fibril_mutex_unlock(&parentp->lock);
748 return rc;
749}
750
751int fat_has_children(bool *has_children, fs_node_t *fn)
752{
753 fat_bs_t *bs;
754 fat_node_t *nodep = FAT_NODE(fn);
755 unsigned blocks;
756 block_t *b;
757 unsigned i, j;
758 int rc;
759
760 if (nodep->type != FAT_DIRECTORY) {
761 *has_children = false;
762 return EOK;
763 }
764
765 fibril_mutex_lock(&nodep->idx->lock);
766 bs = block_bb_get(nodep->idx->service_id);
767
768 blocks = nodep->size / BPS(bs);
769
770 for (i = 0; i < blocks; i++) {
771 fat_dentry_t *d;
772
773 rc = fat_block_get(&b, bs, nodep, i, BLOCK_FLAGS_NONE);
774 if (rc != EOK) {
775 fibril_mutex_unlock(&nodep->idx->lock);
776 return rc;
777 }
778 for (j = 0; j < DPS(bs); j++) {
779 d = ((fat_dentry_t *)b->data) + j;
780 switch (fat_classify_dentry(d)) {
781 case FAT_DENTRY_SKIP:
782 case FAT_DENTRY_FREE:
783 continue;
784 case FAT_DENTRY_LAST:
785 rc = block_put(b);
786 fibril_mutex_unlock(&nodep->idx->lock);
787 *has_children = false;
788 return rc;
789 default:
790 case FAT_DENTRY_VALID:
791 rc = block_put(b);
792 fibril_mutex_unlock(&nodep->idx->lock);
793 *has_children = true;
794 return rc;
795 }
796 }
797 rc = block_put(b);
798 if (rc != EOK) {
799 fibril_mutex_unlock(&nodep->idx->lock);
800 return rc;
801 }
802 }
803
804 fibril_mutex_unlock(&nodep->idx->lock);
805 *has_children = false;
806 return EOK;
807}
808
809
810fs_index_t fat_index_get(fs_node_t *fn)
811{
812 return FAT_NODE(fn)->idx->index;
813}
814
815aoff64_t fat_size_get(fs_node_t *fn)
816{
817 return FAT_NODE(fn)->size;
818}
819
820unsigned fat_lnkcnt_get(fs_node_t *fn)
821{
822 return FAT_NODE(fn)->lnkcnt;
823}
824
825bool fat_is_directory(fs_node_t *fn)
826{
827 return FAT_NODE(fn)->type == FAT_DIRECTORY;
828}
829
830bool fat_is_file(fs_node_t *fn)
831{
832 return FAT_NODE(fn)->type == FAT_FILE;
833}
834
835service_id_t fat_device_get(fs_node_t *node)
836{
837 return 0;
838}
839
840/** libfs operations */
841libfs_ops_t fat_libfs_ops = {
842 .root_get = fat_root_get,
843 .match = fat_match,
844 .node_get = fat_node_get,
845 .node_open = fat_node_open,
846 .node_put = fat_node_put,
847 .create = fat_create_node,
848 .destroy = fat_destroy_node,
849 .link = fat_link,
850 .unlink = fat_unlink,
851 .has_children = fat_has_children,
852 .index_get = fat_index_get,
853 .size_get = fat_size_get,
854 .lnkcnt_get = fat_lnkcnt_get,
855 .is_directory = fat_is_directory,
856 .is_file = fat_is_file,
857 .device_get = fat_device_get
858};
859
860/*
861 * FAT VFS_OUT operations.
862 */
863
864static int
865fat_mounted(service_id_t service_id, const char *opts, fs_index_t *index,
866 aoff64_t *size, unsigned *linkcnt)
867{
868 enum cache_mode cmode;
869 fat_bs_t *bs;
870 int rc;
871
872 /* Check for option enabling write through. */
873 if (str_cmp(opts, "wtcache") == 0)
874 cmode = CACHE_MODE_WT;
875 else
876 cmode = CACHE_MODE_WB;
877
878 /* initialize libblock */
879 rc = block_init(EXCHANGE_SERIALIZE, service_id, BS_SIZE);
880 if (rc != EOK)
881 return rc;
882
883 /* prepare the boot block */
884 rc = block_bb_read(service_id, BS_BLOCK);
885 if (rc != EOK) {
886 block_fini(service_id);
887 return rc;
888 }
889
890 /* get the buffer with the boot sector */
891 bs = block_bb_get(service_id);
892
893 if (BPS(bs) != BS_SIZE) {
894 block_fini(service_id);
895 return ENOTSUP;
896 }
897
898 /* Initialize the block cache */
899 rc = block_cache_init(service_id, BPS(bs), 0 /* XXX */, cmode);
900 if (rc != EOK) {
901 block_fini(service_id);
902 return rc;
903 }
904
905 /* Do some simple sanity checks on the file system. */
906 rc = fat_sanity_check(bs, service_id);
907 if (rc != EOK) {
908 (void) block_cache_fini(service_id);
909 block_fini(service_id);
910 return rc;
911 }
912
913 rc = fat_idx_init_by_service_id(service_id);
914 if (rc != EOK) {
915 (void) block_cache_fini(service_id);
916 block_fini(service_id);
917 return rc;
918 }
919
920 /* Initialize the root node. */
921 fs_node_t *rfn = (fs_node_t *)malloc(sizeof(fs_node_t));
922 if (!rfn) {
923 (void) block_cache_fini(service_id);
924 block_fini(service_id);
925 fat_idx_fini_by_service_id(service_id);
926 return ENOMEM;
927 }
928
929 fs_node_initialize(rfn);
930 fat_node_t *rootp = (fat_node_t *)malloc(sizeof(fat_node_t));
931 if (!rootp) {
932 free(rfn);
933 (void) block_cache_fini(service_id);
934 block_fini(service_id);
935 fat_idx_fini_by_service_id(service_id);
936 return ENOMEM;
937 }
938 fat_node_initialize(rootp);
939
940 fat_idx_t *ridxp = fat_idx_get_by_pos(service_id, FAT_CLST_ROOTPAR, 0);
941 if (!ridxp) {
942 free(rfn);
943 free(rootp);
944 (void) block_cache_fini(service_id);
945 block_fini(service_id);
946 fat_idx_fini_by_service_id(service_id);
947 return ENOMEM;
948 }
949 assert(ridxp->index == 0);
950 /* ridxp->lock held */
951
952 rootp->type = FAT_DIRECTORY;
953 rootp->firstc = FAT_ROOT_CLST(bs);
954 rootp->refcnt = 1;
955 rootp->lnkcnt = 0; /* FS root is not linked */
956
957 if (FAT_IS_FAT32(bs)) {
958 uint32_t clusters;
959 rc = fat_clusters_get(&clusters, bs, service_id, rootp->firstc);
960 if (rc != EOK) {
961 free(rfn);
962 free(rootp);
963 (void) block_cache_fini(service_id);
964 block_fini(service_id);
965 fat_idx_fini_by_service_id(service_id);
966 return ENOTSUP;
967 }
968 rootp->size = BPS(bs) * SPC(bs) * clusters;
969 } else
970 rootp->size = RDE(bs) * sizeof(fat_dentry_t);
971
972 rootp->idx = ridxp;
973 ridxp->nodep = rootp;
974 rootp->bp = rfn;
975 rfn->data = rootp;
976
977 fibril_mutex_unlock(&ridxp->lock);
978
979 *index = ridxp->index;
980 *size = rootp->size;
981 *linkcnt = rootp->lnkcnt;
982
983 return EOK;
984}
985
986static int fat_unmounted(service_id_t service_id)
987{
988 fs_node_t *fn;
989 fat_node_t *nodep;
990 int rc;
991
992 rc = fat_root_get(&fn, service_id);
993 if (rc != EOK)
994 return rc;
995 nodep = FAT_NODE(fn);
996
997 /*
998 * We expect exactly two references on the root node. One for the
999 * fat_root_get() above and one created in fat_mounted().
1000 */
1001 if (nodep->refcnt != 2) {
1002 (void) fat_node_put(fn);
1003 return EBUSY;
1004 }
1005
1006 /*
1007 * Put the root node and force it to the FAT free node list.
1008 */
1009 (void) fat_node_put(fn);
1010 (void) fat_node_put(fn);
1011
1012 /*
1013 * Perform cleanup of the node structures, index structures and
1014 * associated data. Write back this file system's dirty blocks and
1015 * stop using libblock for this instance.
1016 */
1017 (void) fat_node_fini_by_service_id(service_id);
1018 fat_idx_fini_by_service_id(service_id);
1019 (void) block_cache_fini(service_id);
1020 block_fini(service_id);
1021
1022 return EOK;
1023}
1024
1025static int
1026fat_read(service_id_t service_id, fs_index_t index, aoff64_t pos,
1027 size_t *rbytes)
1028{
1029 fs_node_t *fn;
1030 fat_node_t *nodep;
1031 fat_bs_t *bs;
1032 size_t bytes;
1033 block_t *b;
1034 int rc;
1035
1036 rc = fat_node_get(&fn, service_id, index);
1037 if (rc != EOK)
1038 return rc;
1039 if (!fn)
1040 return ENOENT;
1041 nodep = FAT_NODE(fn);
1042
1043 ipc_callid_t callid;
1044 size_t len;
1045 if (!async_data_read_receive(&callid, &len)) {
1046 fat_node_put(fn);
1047 async_answer_0(callid, EINVAL);
1048 return EINVAL;
1049 }
1050
1051 bs = block_bb_get(service_id);
1052
1053 if (nodep->type == FAT_FILE) {
1054 /*
1055 * Our strategy for regular file reads is to read one block at
1056 * most and make use of the possibility to return less data than
1057 * requested. This keeps the code very simple.
1058 */
1059 if (pos >= nodep->size) {
1060 /* reading beyond the EOF */
1061 bytes = 0;
1062 (void) async_data_read_finalize(callid, NULL, 0);
1063 } else {
1064 bytes = min(len, BPS(bs) - pos % BPS(bs));
1065 bytes = min(bytes, nodep->size - pos);
1066 rc = fat_block_get(&b, bs, nodep, pos / BPS(bs),
1067 BLOCK_FLAGS_NONE);
1068 if (rc != EOK) {
1069 fat_node_put(fn);
1070 async_answer_0(callid, rc);
1071 return rc;
1072 }
1073 (void) async_data_read_finalize(callid,
1074 b->data + pos % BPS(bs), bytes);
1075 rc = block_put(b);
1076 if (rc != EOK) {
1077 fat_node_put(fn);
1078 return rc;
1079 }
1080 }
1081 } else {
1082 aoff64_t spos = pos;
1083 char name[FAT_LFN_NAME_SIZE];
1084 fat_dentry_t *d;
1085
1086 assert(nodep->type == FAT_DIRECTORY);
1087 assert(nodep->size % BPS(bs) == 0);
1088 assert(BPS(bs) % sizeof(fat_dentry_t) == 0);
1089
1090 fat_directory_t di;
1091 rc = fat_directory_open(nodep, &di);
1092 if (rc != EOK)
1093 goto err;
1094 rc = fat_directory_seek(&di, pos);
1095 if (rc != EOK) {
1096 (void) fat_directory_close(&di);
1097 goto err;
1098 }
1099
1100 rc = fat_directory_read(&di, name, &d);
1101 if (rc == EOK)
1102 goto hit;
1103 if (rc == ENOENT)
1104 goto miss;
1105
1106err:
1107 (void) fat_node_put(fn);
1108 async_answer_0(callid, rc);
1109 return rc;
1110
1111miss:
1112 rc = fat_directory_close(&di);
1113 if (rc != EOK)
1114 goto err;
1115 rc = fat_node_put(fn);
1116 async_answer_0(callid, rc != EOK ? rc : ENOENT);
1117 *rbytes = 0;
1118 return rc != EOK ? rc : ENOENT;
1119
1120hit:
1121 pos = di.pos;
1122 rc = fat_directory_close(&di);
1123 if (rc != EOK)
1124 goto err;
1125 (void) async_data_read_finalize(callid, name,
1126 str_size(name) + 1);
1127 bytes = (pos - spos) + 1;
1128 }
1129
1130 rc = fat_node_put(fn);
1131 *rbytes = bytes;
1132 return rc;
1133}
1134
1135static int
1136fat_write(service_id_t service_id, fs_index_t index, aoff64_t pos,
1137 size_t *wbytes, aoff64_t *nsize)
1138{
1139 fs_node_t *fn;
1140 fat_node_t *nodep;
1141 fat_bs_t *bs;
1142 size_t bytes;
1143 block_t *b;
1144 aoff64_t boundary;
1145 int flags = BLOCK_FLAGS_NONE;
1146 int rc;
1147
1148 rc = fat_node_get(&fn, service_id, index);
1149 if (rc != EOK)
1150 return rc;
1151 if (!fn)
1152 return ENOENT;
1153 nodep = FAT_NODE(fn);
1154
1155 ipc_callid_t callid;
1156 size_t len;
1157 if (!async_data_write_receive(&callid, &len)) {
1158 (void) fat_node_put(fn);
1159 async_answer_0(callid, EINVAL);
1160 return EINVAL;
1161 }
1162
1163 bs = block_bb_get(service_id);
1164
1165 /*
1166 * In all scenarios, we will attempt to write out only one block worth
1167 * of data at maximum. There might be some more efficient approaches,
1168 * but this one greatly simplifies fat_write(). Note that we can afford
1169 * to do this because the client must be ready to handle the return
1170 * value signalizing a smaller number of bytes written.
1171 */
1172 bytes = min(len, BPS(bs) - pos % BPS(bs));
1173 if (bytes == BPS(bs))
1174 flags |= BLOCK_FLAGS_NOREAD;
1175
1176 boundary = ROUND_UP(nodep->size, BPC(bs));
1177 if (pos < boundary) {
1178 /*
1179 * This is the easier case - we are either overwriting already
1180 * existing contents or writing behind the EOF, but still within
1181 * the limits of the last cluster. The node size may grow to the
1182 * next block size boundary.
1183 */
1184 rc = fat_fill_gap(bs, nodep, FAT_CLST_RES0, pos);
1185 if (rc != EOK) {
1186 (void) fat_node_put(fn);
1187 async_answer_0(callid, rc);
1188 return rc;
1189 }
1190 rc = fat_block_get(&b, bs, nodep, pos / BPS(bs), flags);
1191 if (rc != EOK) {
1192 (void) fat_node_put(fn);
1193 async_answer_0(callid, rc);
1194 return rc;
1195 }
1196 (void) async_data_write_finalize(callid,
1197 b->data + pos % BPS(bs), bytes);
1198 b->dirty = true; /* need to sync block */
1199 rc = block_put(b);
1200 if (rc != EOK) {
1201 (void) fat_node_put(fn);
1202 return rc;
1203 }
1204 if (pos + bytes > nodep->size) {
1205 nodep->size = pos + bytes;
1206 nodep->dirty = true; /* need to sync node */
1207 }
1208 *wbytes = bytes;
1209 *nsize = nodep->size;
1210 rc = fat_node_put(fn);
1211 return rc;
1212 } else {
1213 /*
1214 * This is the more difficult case. We must allocate new
1215 * clusters for the node and zero them out.
1216 */
1217 unsigned nclsts;
1218 fat_cluster_t mcl, lcl;
1219
1220 nclsts = (ROUND_UP(pos + bytes, BPC(bs)) - boundary) / BPC(bs);
1221 /* create an independent chain of nclsts clusters in all FATs */
1222 rc = fat_alloc_clusters(bs, service_id, nclsts, &mcl, &lcl);
1223 if (rc != EOK) {
1224 /* could not allocate a chain of nclsts clusters */
1225 (void) fat_node_put(fn);
1226 async_answer_0(callid, rc);
1227 return rc;
1228 }
1229 /* zero fill any gaps */
1230 rc = fat_fill_gap(bs, nodep, mcl, pos);
1231 if (rc != EOK) {
1232 (void) fat_free_clusters(bs, service_id, mcl);
1233 (void) fat_node_put(fn);
1234 async_answer_0(callid, rc);
1235 return rc;
1236 }
1237 rc = _fat_block_get(&b, bs, service_id, lcl, NULL,
1238 (pos / BPS(bs)) % SPC(bs), flags);
1239 if (rc != EOK) {
1240 (void) fat_free_clusters(bs, service_id, mcl);
1241 (void) fat_node_put(fn);
1242 async_answer_0(callid, rc);
1243 return rc;
1244 }
1245 (void) async_data_write_finalize(callid,
1246 b->data + pos % BPS(bs), bytes);
1247 b->dirty = true; /* need to sync block */
1248 rc = block_put(b);
1249 if (rc != EOK) {
1250 (void) fat_free_clusters(bs, service_id, mcl);
1251 (void) fat_node_put(fn);
1252 return rc;
1253 }
1254 /*
1255 * Append the cluster chain starting in mcl to the end of the
1256 * node's cluster chain.
1257 */
1258 rc = fat_append_clusters(bs, nodep, mcl, lcl);
1259 if (rc != EOK) {
1260 (void) fat_free_clusters(bs, service_id, mcl);
1261 (void) fat_node_put(fn);
1262 return rc;
1263 }
1264 *nsize = nodep->size = pos + bytes;
1265 rc = fat_node_put(fn);
1266 nodep->dirty = true; /* need to sync node */
1267 *wbytes = bytes;
1268 return rc;
1269 }
1270}
1271
1272static int
1273fat_truncate(service_id_t service_id, fs_index_t index, aoff64_t size)
1274{
1275 fs_node_t *fn;
1276 fat_node_t *nodep;
1277 fat_bs_t *bs;
1278 int rc;
1279
1280 rc = fat_node_get(&fn, service_id, index);
1281 if (rc != EOK)
1282 return rc;
1283 if (!fn)
1284 return ENOENT;
1285 nodep = FAT_NODE(fn);
1286
1287 bs = block_bb_get(service_id);
1288
1289 if (nodep->size == size) {
1290 rc = EOK;
1291 } else if (nodep->size < size) {
1292 /*
1293 * The standard says we have the freedom to grow the node.
1294 * For now, we simply return an error.
1295 */
1296 rc = EINVAL;
1297 } else if (ROUND_UP(nodep->size, BPC(bs)) == ROUND_UP(size, BPC(bs))) {
1298 /*
1299 * The node will be shrunk, but no clusters will be deallocated.
1300 */
1301 nodep->size = size;
1302 nodep->dirty = true; /* need to sync node */
1303 rc = EOK;
1304 } else {
1305 /*
1306 * The node will be shrunk, clusters will be deallocated.
1307 */
1308 if (size == 0) {
1309 rc = fat_chop_clusters(bs, nodep, FAT_CLST_RES0);
1310 if (rc != EOK)
1311 goto out;
1312 } else {
1313 fat_cluster_t lastc;
1314 rc = fat_cluster_walk(bs, service_id, nodep->firstc,
1315 &lastc, NULL, (size - 1) / BPC(bs));
1316 if (rc != EOK)
1317 goto out;
1318 rc = fat_chop_clusters(bs, nodep, lastc);
1319 if (rc != EOK)
1320 goto out;
1321 }
1322 nodep->size = size;
1323 nodep->dirty = true; /* need to sync node */
1324 rc = EOK;
1325 }
1326out:
1327 fat_node_put(fn);
1328 return rc;
1329}
1330
1331static int fat_close(service_id_t service_id, fs_index_t index)
1332{
1333 return EOK;
1334}
1335
1336static int fat_destroy(service_id_t service_id, fs_index_t index)
1337{
1338 fs_node_t *fn;
1339 fat_node_t *nodep;
1340 int rc;
1341
1342 rc = fat_node_get(&fn, service_id, index);
1343 if (rc != EOK)
1344 return rc;
1345 if (!fn)
1346 return ENOENT;
1347
1348 nodep = FAT_NODE(fn);
1349 /*
1350 * We should have exactly two references. One for the above
1351 * call to fat_node_get() and one from fat_unlink().
1352 */
1353 assert(nodep->refcnt == 2);
1354
1355 rc = fat_destroy_node(fn);
1356 return rc;
1357}
1358
1359static int fat_sync(service_id_t service_id, fs_index_t index)
1360{
1361 fs_node_t *fn;
1362 int rc = fat_node_get(&fn, service_id, index);
1363 if (rc != EOK)
1364 return rc;
1365 if (!fn)
1366 return ENOENT;
1367
1368 fat_node_t *nodep = FAT_NODE(fn);
1369
1370 nodep->dirty = true;
1371 rc = fat_node_sync(nodep);
1372
1373 fat_node_put(fn);
1374 return rc;
1375}
1376
1377vfs_out_ops_t fat_ops = {
1378 .mounted = fat_mounted,
1379 .unmounted = fat_unmounted,
1380 .read = fat_read,
1381 .write = fat_write,
1382 .truncate = fat_truncate,
1383 .close = fat_close,
1384 .destroy = fat_destroy,
1385 .sync = fat_sync,
1386};
1387
1388/**
1389 * @}
1390 */
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