source: mainline/uspace/srv/fs/tmpfs/tmpfs_ops.c@ 472c09d

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 472c09d was 472c09d, checked in by Martin Decky <martin@…>, 15 years ago

more consistent naming scheme:

async_data_blob_receive → async_data_receive
async_data_string_receive → async_string_receive
CLIPBOARD_TAG_BLOB → CLIPBOARD_TAG_DATA

async_data_receive can now check the granularity of the received data
async_string_receive can now return the raw size of the received data

replace several common patterns of async_data_write_receive/_finalize
with a single async_data_receive/_string_receive (this greatly improves
code readability)

  • Property mode set to 100644
File size: 17.1 KB
Line 
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 tmpfs_ops.c
35 * @brief Implementation of VFS operations for the TMPFS file system
36 * server.
37 */
38
39#include "tmpfs.h"
40#include "../../vfs/vfs.h"
41#include <ipc/ipc.h>
42#include <async.h>
43#include <errno.h>
44#include <atomic.h>
45#include <stdlib.h>
46#include <string.h>
47#include <stdio.h>
48#include <assert.h>
49#include <sys/types.h>
50#include <adt/hash_table.h>
51#include <as.h>
52#include <libfs.h>
53
54#define min(a, b) ((a) < (b) ? (a) : (b))
55#define max(a, b) ((a) > (b) ? (a) : (b))
56
57#define NODES_BUCKETS 256
58
59/** All root nodes have index 0. */
60#define TMPFS_SOME_ROOT 0
61/** Global counter for assigning node indices. Shared by all instances. */
62fs_index_t tmpfs_next_index = 1;
63
64/*
65 * Implementation of the libfs interface.
66 */
67
68/* Forward declarations of static functions. */
69static int tmpfs_match(fs_node_t **, fs_node_t *, const char *);
70static int tmpfs_node_get(fs_node_t **, dev_handle_t, fs_index_t);
71static int tmpfs_node_open(fs_node_t *);
72static int tmpfs_node_put(fs_node_t *);
73static int tmpfs_create_node(fs_node_t **, dev_handle_t, int);
74static int tmpfs_destroy_node(fs_node_t *);
75static int tmpfs_link_node(fs_node_t *, fs_node_t *, const char *);
76static int tmpfs_unlink_node(fs_node_t *, fs_node_t *, const char *);
77
78/* Implementation of helper functions. */
79static int tmpfs_root_get(fs_node_t **rfn, dev_handle_t dev_handle)
80{
81 return tmpfs_node_get(rfn, dev_handle, TMPFS_SOME_ROOT);
82}
83
84static int tmpfs_has_children(bool *has_children, fs_node_t *fn)
85{
86 *has_children = !list_empty(&TMPFS_NODE(fn)->cs_head);
87 return EOK;
88}
89
90static fs_index_t tmpfs_index_get(fs_node_t *fn)
91{
92 return TMPFS_NODE(fn)->index;
93}
94
95static size_t tmpfs_size_get(fs_node_t *fn)
96{
97 return TMPFS_NODE(fn)->size;
98}
99
100static unsigned tmpfs_lnkcnt_get(fs_node_t *fn)
101{
102 return TMPFS_NODE(fn)->lnkcnt;
103}
104
105static char tmpfs_plb_get_char(unsigned pos)
106{
107 return tmpfs_reg.plb_ro[pos % PLB_SIZE];
108}
109
110static bool tmpfs_is_directory(fs_node_t *fn)
111{
112 return TMPFS_NODE(fn)->type == TMPFS_DIRECTORY;
113}
114
115static bool tmpfs_is_file(fs_node_t *fn)
116{
117 return TMPFS_NODE(fn)->type == TMPFS_FILE;
118}
119
120static dev_handle_t tmpfs_device_get(fs_node_t *fn)
121{
122 return 0;
123}
124
125/** libfs operations */
126libfs_ops_t tmpfs_libfs_ops = {
127 .root_get = tmpfs_root_get,
128 .match = tmpfs_match,
129 .node_get = tmpfs_node_get,
130 .node_open = tmpfs_node_open,
131 .node_put = tmpfs_node_put,
132 .create = tmpfs_create_node,
133 .destroy = tmpfs_destroy_node,
134 .link = tmpfs_link_node,
135 .unlink = tmpfs_unlink_node,
136 .has_children = tmpfs_has_children,
137 .index_get = tmpfs_index_get,
138 .size_get = tmpfs_size_get,
139 .lnkcnt_get = tmpfs_lnkcnt_get,
140 .plb_get_char = tmpfs_plb_get_char,
141 .is_directory = tmpfs_is_directory,
142 .is_file = tmpfs_is_file,
143 .device_get = tmpfs_device_get
144};
145
146/** Hash table of all TMPFS nodes. */
147hash_table_t nodes;
148
149#define NODES_KEY_DEV 0
150#define NODES_KEY_INDEX 1
151
152/* Implementation of hash table interface for the nodes hash table. */
153static hash_index_t nodes_hash(unsigned long key[])
154{
155 return key[NODES_KEY_INDEX] % NODES_BUCKETS;
156}
157
158static int nodes_compare(unsigned long key[], hash_count_t keys, link_t *item)
159{
160 tmpfs_node_t *nodep = hash_table_get_instance(item, tmpfs_node_t,
161 nh_link);
162
163 switch (keys) {
164 case 1:
165 return (nodep->dev_handle == key[NODES_KEY_DEV]);
166 case 2:
167 return ((nodep->dev_handle == key[NODES_KEY_DEV]) &&
168 (nodep->index == key[NODES_KEY_INDEX]));
169 default:
170 abort();
171 }
172}
173
174static void nodes_remove_callback(link_t *item)
175{
176 tmpfs_node_t *nodep = hash_table_get_instance(item, tmpfs_node_t,
177 nh_link);
178
179 while (!list_empty(&nodep->cs_head)) {
180 tmpfs_dentry_t *dentryp = list_get_instance(nodep->cs_head.next,
181 tmpfs_dentry_t, link);
182
183 assert(nodep->type == TMPFS_DIRECTORY);
184 list_remove(&dentryp->link);
185 free(dentryp);
186 }
187
188 if (nodep->data) {
189 assert(nodep->type == TMPFS_FILE);
190 free(nodep->data);
191 }
192 free(nodep->bp);
193 free(nodep);
194}
195
196/** TMPFS nodes hash table operations. */
197hash_table_operations_t nodes_ops = {
198 .hash = nodes_hash,
199 .compare = nodes_compare,
200 .remove_callback = nodes_remove_callback
201};
202
203static void tmpfs_node_initialize(tmpfs_node_t *nodep)
204{
205 nodep->bp = NULL;
206 nodep->index = 0;
207 nodep->dev_handle = 0;
208 nodep->type = TMPFS_NONE;
209 nodep->lnkcnt = 0;
210 nodep->size = 0;
211 nodep->data = NULL;
212 link_initialize(&nodep->nh_link);
213 list_initialize(&nodep->cs_head);
214}
215
216static void tmpfs_dentry_initialize(tmpfs_dentry_t *dentryp)
217{
218 link_initialize(&dentryp->link);
219 dentryp->name = NULL;
220 dentryp->node = NULL;
221}
222
223bool tmpfs_init(void)
224{
225 if (!hash_table_create(&nodes, NODES_BUCKETS, 2, &nodes_ops))
226 return false;
227
228 return true;
229}
230
231static bool tmpfs_instance_init(dev_handle_t dev_handle)
232{
233 fs_node_t *rfn;
234 int rc;
235
236 rc = tmpfs_create_node(&rfn, dev_handle, L_DIRECTORY);
237 if (rc != EOK || !rfn)
238 return false;
239 TMPFS_NODE(rfn)->lnkcnt = 0; /* FS root is not linked */
240 return true;
241}
242
243static void tmpfs_instance_done(dev_handle_t dev_handle)
244{
245 unsigned long key[] = {
246 [NODES_KEY_DEV] = dev_handle
247 };
248 /*
249 * Here we are making use of one special feature of our hash table
250 * implementation, which allows to remove more items based on a partial
251 * key match. In the following, we are going to remove all nodes
252 * matching our device handle. The nodes_remove_callback() function will
253 * take care of resource deallocation.
254 */
255 hash_table_remove(&nodes, key, 1);
256}
257
258int tmpfs_match(fs_node_t **rfn, fs_node_t *pfn, const char *component)
259{
260 tmpfs_node_t *parentp = TMPFS_NODE(pfn);
261 link_t *lnk;
262
263 for (lnk = parentp->cs_head.next; lnk != &parentp->cs_head;
264 lnk = lnk->next) {
265 tmpfs_dentry_t *dentryp;
266 dentryp = list_get_instance(lnk, tmpfs_dentry_t, link);
267 if (!str_cmp(dentryp->name, component)) {
268 *rfn = FS_NODE(dentryp->node);
269 return EOK;
270 }
271 }
272
273 *rfn = NULL;
274 return EOK;
275}
276
277int tmpfs_node_get(fs_node_t **rfn, dev_handle_t dev_handle, fs_index_t index)
278{
279 unsigned long key[] = {
280 [NODES_KEY_DEV] = dev_handle,
281 [NODES_KEY_INDEX] = index
282 };
283 link_t *lnk = hash_table_find(&nodes, key);
284 if (lnk) {
285 tmpfs_node_t *nodep;
286 nodep = hash_table_get_instance(lnk, tmpfs_node_t, nh_link);
287 *rfn = FS_NODE(nodep);
288 } else {
289 *rfn = NULL;
290 }
291 return EOK;
292}
293
294int tmpfs_node_open(fs_node_t *fn)
295{
296 /* nothing to do */
297 return EOK;
298}
299
300int tmpfs_node_put(fs_node_t *fn)
301{
302 /* nothing to do */
303 return EOK;
304}
305
306int tmpfs_create_node(fs_node_t **rfn, dev_handle_t dev_handle, int lflag)
307{
308 fs_node_t *rootfn;
309 int rc;
310
311 assert((lflag & L_FILE) ^ (lflag & L_DIRECTORY));
312
313 tmpfs_node_t *nodep = malloc(sizeof(tmpfs_node_t));
314 if (!nodep)
315 return ENOMEM;
316 tmpfs_node_initialize(nodep);
317 nodep->bp = malloc(sizeof(fs_node_t));
318 if (!nodep->bp) {
319 free(nodep);
320 return ENOMEM;
321 }
322 fs_node_initialize(nodep->bp);
323 nodep->bp->data = nodep; /* link the FS and TMPFS nodes */
324
325 rc = tmpfs_root_get(&rootfn, dev_handle);
326 assert(rc == EOK);
327 if (!rootfn)
328 nodep->index = TMPFS_SOME_ROOT;
329 else
330 nodep->index = tmpfs_next_index++;
331 nodep->dev_handle = dev_handle;
332 if (lflag & L_DIRECTORY)
333 nodep->type = TMPFS_DIRECTORY;
334 else
335 nodep->type = TMPFS_FILE;
336
337 /* Insert the new node into the nodes hash table. */
338 unsigned long key[] = {
339 [NODES_KEY_DEV] = nodep->dev_handle,
340 [NODES_KEY_INDEX] = nodep->index
341 };
342 hash_table_insert(&nodes, key, &nodep->nh_link);
343 *rfn = FS_NODE(nodep);
344 return EOK;
345}
346
347int tmpfs_destroy_node(fs_node_t *fn)
348{
349 tmpfs_node_t *nodep = TMPFS_NODE(fn);
350
351 assert(!nodep->lnkcnt);
352 assert(list_empty(&nodep->cs_head));
353
354 unsigned long key[] = {
355 [NODES_KEY_DEV] = nodep->dev_handle,
356 [NODES_KEY_INDEX] = nodep->index
357 };
358 hash_table_remove(&nodes, key, 2);
359
360 /*
361 * The nodes_remove_callback() function takes care of the actual
362 * resource deallocation.
363 */
364 return EOK;
365}
366
367int tmpfs_link_node(fs_node_t *pfn, fs_node_t *cfn, const char *nm)
368{
369 tmpfs_node_t *parentp = TMPFS_NODE(pfn);
370 tmpfs_node_t *childp = TMPFS_NODE(cfn);
371 tmpfs_dentry_t *dentryp;
372 link_t *lnk;
373
374 assert(parentp->type == TMPFS_DIRECTORY);
375
376 /* Check for duplicit entries. */
377 for (lnk = parentp->cs_head.next; lnk != &parentp->cs_head;
378 lnk = lnk->next) {
379 dentryp = list_get_instance(lnk, tmpfs_dentry_t, link);
380 if (!str_cmp(dentryp->name, nm))
381 return EEXIST;
382 }
383
384 /* Allocate and initialize the dentry. */
385 dentryp = malloc(sizeof(tmpfs_dentry_t));
386 if (!dentryp)
387 return ENOMEM;
388 tmpfs_dentry_initialize(dentryp);
389
390 /* Populate and link the new dentry. */
391 size_t size = str_size(nm);
392 dentryp->name = malloc(size + 1);
393 if (!dentryp->name) {
394 free(dentryp);
395 return ENOMEM;
396 }
397 str_cpy(dentryp->name, size + 1, nm);
398 dentryp->node = childp;
399 childp->lnkcnt++;
400 list_append(&dentryp->link, &parentp->cs_head);
401
402 return EOK;
403}
404
405int tmpfs_unlink_node(fs_node_t *pfn, fs_node_t *cfn, const char *nm)
406{
407 tmpfs_node_t *parentp = TMPFS_NODE(pfn);
408 tmpfs_node_t *childp = NULL;
409 tmpfs_dentry_t *dentryp;
410 link_t *lnk;
411
412 if (!parentp)
413 return EBUSY;
414
415 for (lnk = parentp->cs_head.next; lnk != &parentp->cs_head;
416 lnk = lnk->next) {
417 dentryp = list_get_instance(lnk, tmpfs_dentry_t, link);
418 if (!str_cmp(dentryp->name, nm)) {
419 childp = dentryp->node;
420 assert(FS_NODE(childp) == cfn);
421 break;
422 }
423 }
424
425 if (!childp)
426 return ENOENT;
427
428 if ((childp->lnkcnt == 1) && !list_empty(&childp->cs_head))
429 return ENOTEMPTY;
430
431 list_remove(&dentryp->link);
432 free(dentryp);
433 childp->lnkcnt--;
434
435 return EOK;
436}
437
438void tmpfs_mounted(ipc_callid_t rid, ipc_call_t *request)
439{
440 dev_handle_t dev_handle = (dev_handle_t) IPC_GET_ARG1(*request);
441
442 /* Accept the mount options */
443 char *opts;
444 int rc = async_string_receive(&opts, 0, NULL);
445
446 if (rc != EOK) {
447 ipc_answer_0(rid, rc);
448 return;
449 }
450
451 /* Initialize TMPFS instance. */
452 if (!tmpfs_instance_init(dev_handle)) {
453 free(opts);
454 ipc_answer_0(rid, ENOMEM);
455 return;
456 }
457
458 fs_node_t *rootfn;
459 rc = tmpfs_root_get(&rootfn, dev_handle);
460 assert(rc == EOK);
461 tmpfs_node_t *rootp = TMPFS_NODE(rootfn);
462 if (str_cmp(opts, "restore") == 0) {
463 if (tmpfs_restore(dev_handle))
464 ipc_answer_3(rid, EOK, rootp->index, rootp->size,
465 rootp->lnkcnt);
466 else
467 ipc_answer_0(rid, ELIMIT);
468 } else {
469 ipc_answer_3(rid, EOK, rootp->index, rootp->size,
470 rootp->lnkcnt);
471 }
472 free(opts);
473}
474
475void tmpfs_mount(ipc_callid_t rid, ipc_call_t *request)
476{
477 libfs_mount(&tmpfs_libfs_ops, tmpfs_reg.fs_handle, rid, request);
478}
479
480void tmpfs_unmounted(ipc_callid_t rid, ipc_call_t *request)
481{
482 dev_handle_t dev_handle = (dev_handle_t) IPC_GET_ARG1(*request);
483
484 tmpfs_instance_done(dev_handle);
485 ipc_answer_0(rid, EOK);
486}
487
488void tmpfs_unmount(ipc_callid_t rid, ipc_call_t *request)
489{
490 libfs_unmount(&tmpfs_libfs_ops, rid, request);
491}
492
493void tmpfs_lookup(ipc_callid_t rid, ipc_call_t *request)
494{
495 libfs_lookup(&tmpfs_libfs_ops, tmpfs_reg.fs_handle, rid, request);
496}
497
498void tmpfs_read(ipc_callid_t rid, ipc_call_t *request)
499{
500 dev_handle_t dev_handle = (dev_handle_t)IPC_GET_ARG1(*request);
501 fs_index_t index = (fs_index_t)IPC_GET_ARG2(*request);
502 off_t pos = (off_t)IPC_GET_ARG3(*request);
503
504 /*
505 * Lookup the respective TMPFS node.
506 */
507 link_t *hlp;
508 unsigned long key[] = {
509 [NODES_KEY_DEV] = dev_handle,
510 [NODES_KEY_INDEX] = index
511 };
512 hlp = hash_table_find(&nodes, key);
513 if (!hlp) {
514 ipc_answer_0(rid, ENOENT);
515 return;
516 }
517 tmpfs_node_t *nodep = hash_table_get_instance(hlp, tmpfs_node_t,
518 nh_link);
519
520 /*
521 * Receive the read request.
522 */
523 ipc_callid_t callid;
524 size_t size;
525 if (!async_data_read_receive(&callid, &size)) {
526 ipc_answer_0(callid, EINVAL);
527 ipc_answer_0(rid, EINVAL);
528 return;
529 }
530
531 size_t bytes;
532 if (nodep->type == TMPFS_FILE) {
533 bytes = max(0, min(nodep->size - pos, size));
534 (void) async_data_read_finalize(callid, nodep->data + pos,
535 bytes);
536 } else {
537 tmpfs_dentry_t *dentryp;
538 link_t *lnk;
539 int i;
540
541 assert(nodep->type == TMPFS_DIRECTORY);
542
543 /*
544 * Yes, we really use O(n) algorithm here.
545 * If it bothers someone, it could be fixed by introducing a
546 * hash table.
547 */
548 for (i = 0, lnk = nodep->cs_head.next;
549 i < pos && lnk != &nodep->cs_head;
550 i++, lnk = lnk->next)
551 ;
552
553 if (lnk == &nodep->cs_head) {
554 ipc_answer_0(callid, ENOENT);
555 ipc_answer_1(rid, ENOENT, 0);
556 return;
557 }
558
559 dentryp = list_get_instance(lnk, tmpfs_dentry_t, link);
560
561 (void) async_data_read_finalize(callid, dentryp->name,
562 str_size(dentryp->name) + 1);
563 bytes = 1;
564 }
565
566 /*
567 * Answer the VFS_READ call.
568 */
569 ipc_answer_1(rid, EOK, bytes);
570}
571
572void tmpfs_write(ipc_callid_t rid, ipc_call_t *request)
573{
574 dev_handle_t dev_handle = (dev_handle_t)IPC_GET_ARG1(*request);
575 fs_index_t index = (fs_index_t)IPC_GET_ARG2(*request);
576 off_t pos = (off_t)IPC_GET_ARG3(*request);
577
578 /*
579 * Lookup the respective TMPFS node.
580 */
581 link_t *hlp;
582 unsigned long key[] = {
583 [NODES_KEY_DEV] = dev_handle,
584 [NODES_KEY_INDEX] = index
585 };
586 hlp = hash_table_find(&nodes, key);
587 if (!hlp) {
588 ipc_answer_0(rid, ENOENT);
589 return;
590 }
591 tmpfs_node_t *nodep = hash_table_get_instance(hlp, tmpfs_node_t,
592 nh_link);
593
594 /*
595 * Receive the write request.
596 */
597 ipc_callid_t callid;
598 size_t size;
599 if (!async_data_write_receive(&callid, &size)) {
600 ipc_answer_0(callid, EINVAL);
601 ipc_answer_0(rid, EINVAL);
602 return;
603 }
604
605 /*
606 * Check whether the file needs to grow.
607 */
608 if (pos + size <= nodep->size) {
609 /* The file size is not changing. */
610 (void) async_data_write_finalize(callid, nodep->data + pos, size);
611 ipc_answer_2(rid, EOK, size, nodep->size);
612 return;
613 }
614 size_t delta = (pos + size) - nodep->size;
615 /*
616 * At this point, we are deliberately extremely straightforward and
617 * simply realloc the contents of the file on every write that grows the
618 * file. In the end, the situation might not be as bad as it may look:
619 * our heap allocator can save us and just grow the block whenever
620 * possible.
621 */
622 void *newdata = realloc(nodep->data, nodep->size + delta);
623 if (!newdata) {
624 ipc_answer_0(callid, ENOMEM);
625 ipc_answer_2(rid, EOK, 0, nodep->size);
626 return;
627 }
628 /* Clear any newly allocated memory in order to emulate gaps. */
629 memset(newdata + nodep->size, 0, delta);
630 nodep->size += delta;
631 nodep->data = newdata;
632 (void) async_data_write_finalize(callid, nodep->data + pos, size);
633 ipc_answer_2(rid, EOK, size, nodep->size);
634}
635
636void tmpfs_truncate(ipc_callid_t rid, ipc_call_t *request)
637{
638 dev_handle_t dev_handle = (dev_handle_t)IPC_GET_ARG1(*request);
639 fs_index_t index = (fs_index_t)IPC_GET_ARG2(*request);
640 size_t size = (off_t)IPC_GET_ARG3(*request);
641
642 /*
643 * Lookup the respective TMPFS node.
644 */
645 link_t *hlp;
646 unsigned long key[] = {
647 [NODES_KEY_DEV] = dev_handle,
648 [NODES_KEY_INDEX] = index
649 };
650 hlp = hash_table_find(&nodes, key);
651 if (!hlp) {
652 ipc_answer_0(rid, ENOENT);
653 return;
654 }
655 tmpfs_node_t *nodep = hash_table_get_instance(hlp, tmpfs_node_t,
656 nh_link);
657
658 if (size == nodep->size) {
659 ipc_answer_0(rid, EOK);
660 return;
661 }
662
663 void *newdata = realloc(nodep->data, size);
664 if (!newdata) {
665 ipc_answer_0(rid, ENOMEM);
666 return;
667 }
668 if (size > nodep->size) {
669 size_t delta = size - nodep->size;
670 memset(newdata + nodep->size, 0, delta);
671 }
672 nodep->size = size;
673 nodep->data = newdata;
674 ipc_answer_0(rid, EOK);
675}
676
677void tmpfs_close(ipc_callid_t rid, ipc_call_t *request)
678{
679 ipc_answer_0(rid, EOK);
680}
681
682void tmpfs_destroy(ipc_callid_t rid, ipc_call_t *request)
683{
684 dev_handle_t dev_handle = (dev_handle_t)IPC_GET_ARG1(*request);
685 fs_index_t index = (fs_index_t)IPC_GET_ARG2(*request);
686 int rc;
687
688 link_t *hlp;
689 unsigned long key[] = {
690 [NODES_KEY_DEV] = dev_handle,
691 [NODES_KEY_INDEX] = index
692 };
693 hlp = hash_table_find(&nodes, key);
694 if (!hlp) {
695 ipc_answer_0(rid, ENOENT);
696 return;
697 }
698 tmpfs_node_t *nodep = hash_table_get_instance(hlp, tmpfs_node_t,
699 nh_link);
700 rc = tmpfs_destroy_node(FS_NODE(nodep));
701 ipc_answer_0(rid, rc);
702}
703
704void tmpfs_open_node(ipc_callid_t rid, ipc_call_t *request)
705{
706 libfs_open_node(&tmpfs_libfs_ops, tmpfs_reg.fs_handle, rid, request);
707}
708
709void tmpfs_stat(ipc_callid_t rid, ipc_call_t *request)
710{
711 libfs_stat(&tmpfs_libfs_ops, tmpfs_reg.fs_handle, rid, request);
712}
713
714void tmpfs_sync(ipc_callid_t rid, ipc_call_t *request)
715{
716 /* Dummy implementation */
717 ipc_answer_0(rid, EOK);
718}
719
720/**
721 * @}
722 */
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