source: mainline/uspace/srv/fs/fat/fat_idx.c@ b1834a01

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since b1834a01 was b1834a01, checked in by Jakub Jermar <jakub@…>, 7 years ago

Categorize the remaining orphan doxygroups

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File size: 13.3 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 fat
30 * @{
31 */
32
33/**
34 * @file fat_idx.c
35 * @brief Layer for translating FAT entities to VFS node indices.
36 */
37
38#include "fat.h"
39#include "../../vfs/vfs.h"
40#include <errno.h>
41#include <str.h>
42#include <adt/hash_table.h>
43#include <adt/hash.h>
44#include <adt/list.h>
45#include <assert.h>
46#include <fibril_synch.h>
47#include <stdlib.h>
48
49/** Each instance of this type describes one interval of freed VFS indices. */
50typedef struct {
51 link_t link;
52 fs_index_t first;
53 fs_index_t last;
54} freed_t;
55
56/**
57 * Each instance of this type describes state of all VFS indices that
58 * are currently unused.
59 */
60typedef struct {
61 link_t link;
62 service_id_t service_id;
63
64 /** Next unassigned index. */
65 fs_index_t next;
66 /** Number of remaining unassigned indices. */
67 uint64_t remaining;
68
69 /** Sorted list of intervals of freed indices. */
70 list_t freed_list;
71} unused_t;
72
73/** Mutex protecting the list of unused structures. */
74static FIBRIL_MUTEX_INITIALIZE(unused_lock);
75
76/** List of unused structures. */
77static LIST_INITIALIZE(unused_list);
78
79static void unused_initialize(unused_t *u, service_id_t service_id)
80{
81 link_initialize(&u->link);
82 u->service_id = service_id;
83 u->next = 0;
84 u->remaining = ((uint64_t)((fs_index_t)-1)) + 1;
85 list_initialize(&u->freed_list);
86}
87
88static unused_t *unused_find(service_id_t service_id, bool lock)
89{
90 if (lock)
91 fibril_mutex_lock(&unused_lock);
92
93 list_foreach(unused_list, link, unused_t, u) {
94 if (u->service_id == service_id)
95 return u;
96 }
97
98 if (lock)
99 fibril_mutex_unlock(&unused_lock);
100 return NULL;
101}
102
103/** Mutex protecting the up_hash and ui_hash. */
104static FIBRIL_MUTEX_INITIALIZE(used_lock);
105
106/**
107 * Global hash table of all used fat_idx_t structures.
108 * The index structures are hashed by the service_id, parent node's first
109 * cluster and index within the parent directory.
110 */
111static hash_table_t up_hash;
112
113typedef struct {
114 service_id_t service_id;
115 fat_cluster_t pfc;
116 unsigned pdi;
117} pos_key_t;
118
119static inline size_t pos_key_hash(void *key)
120{
121 pos_key_t *pos = (pos_key_t *)key;
122
123 size_t hash = 0;
124 hash = hash_combine(pos->pfc, pos->pdi);
125 return hash_combine(hash, pos->service_id);
126}
127
128static size_t pos_hash(const ht_link_t *item)
129{
130 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uph_link);
131
132 pos_key_t pkey = {
133 .service_id = fidx->service_id,
134 .pfc = fidx->pfc,
135 .pdi = fidx->pdi,
136 };
137
138 return pos_key_hash(&pkey);
139}
140
141static bool pos_key_equal(void *key, const ht_link_t *item)
142{
143 pos_key_t *pos = (pos_key_t *)key;
144 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uph_link);
145
146 return pos->service_id == fidx->service_id &&
147 pos->pdi == fidx->pdi &&
148 pos->pfc == fidx->pfc;
149}
150
151static hash_table_ops_t uph_ops = {
152 .hash = pos_hash,
153 .key_hash = pos_key_hash,
154 .key_equal = pos_key_equal,
155 .equal = NULL,
156 .remove_callback = NULL,
157};
158
159/**
160 * Global hash table of all used fat_idx_t structures.
161 * The index structures are hashed by the service_id and index.
162 */
163static hash_table_t ui_hash;
164
165typedef struct {
166 service_id_t service_id;
167 fs_index_t index;
168} idx_key_t;
169
170static size_t idx_key_hash(void *key_arg)
171{
172 idx_key_t *key = (idx_key_t *)key_arg;
173 return hash_combine(key->service_id, key->index);
174}
175
176static size_t idx_hash(const ht_link_t *item)
177{
178 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uih_link);
179 return hash_combine(fidx->service_id, fidx->index);
180}
181
182static bool idx_key_equal(void *key_arg, const ht_link_t *item)
183{
184 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uih_link);
185 idx_key_t *key = (idx_key_t *)key_arg;
186
187 return key->index == fidx->index && key->service_id == fidx->service_id;
188}
189
190static void idx_remove_callback(ht_link_t *item)
191{
192 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uih_link);
193
194 free(fidx);
195}
196
197static hash_table_ops_t uih_ops = {
198 .hash = idx_hash,
199 .key_hash = idx_key_hash,
200 .key_equal = idx_key_equal,
201 .equal = NULL,
202 .remove_callback = idx_remove_callback,
203};
204
205/** Allocate a VFS index which is not currently in use. */
206static bool fat_index_alloc(service_id_t service_id, fs_index_t *index)
207{
208 unused_t *u;
209
210 assert(index);
211 u = unused_find(service_id, true);
212 if (!u)
213 return false;
214
215 if (list_empty(&u->freed_list)) {
216 if (u->remaining) {
217 /*
218 * There are no freed indices, allocate one directly
219 * from the counter.
220 */
221 *index = u->next++;
222 --u->remaining;
223 fibril_mutex_unlock(&unused_lock);
224 return true;
225 }
226 } else {
227 /* There are some freed indices which we can reuse. */
228 freed_t *f = list_get_instance(list_first(&u->freed_list),
229 freed_t, link);
230 *index = f->first;
231 if (f->first++ == f->last) {
232 /* Destroy the interval. */
233 list_remove(&f->link);
234 free(f);
235 }
236 fibril_mutex_unlock(&unused_lock);
237 return true;
238 }
239 /*
240 * We ran out of indices, which is extremely unlikely with FAT16, but
241 * theoretically still possible (e.g. too many open unlinked nodes or
242 * too many zero-sized nodes).
243 */
244 fibril_mutex_unlock(&unused_lock);
245 return false;
246}
247
248/** If possible, coalesce two intervals of freed indices. */
249static void try_coalesce_intervals(link_t *l, link_t *r, link_t *cur)
250{
251 freed_t *fl = list_get_instance(l, freed_t, link);
252 freed_t *fr = list_get_instance(r, freed_t, link);
253
254 if (fl->last + 1 == fr->first) {
255 if (cur == l) {
256 fl->last = fr->last;
257 list_remove(r);
258 free(r);
259 } else {
260 fr->first = fl->first;
261 list_remove(l);
262 free(l);
263 }
264 }
265}
266
267/** Free a VFS index, which is no longer in use. */
268static void fat_index_free(service_id_t service_id, fs_index_t index)
269{
270 unused_t *u;
271
272 u = unused_find(service_id, true);
273 assert(u);
274
275 if (u->next == index + 1) {
276 /* The index can be returned directly to the counter. */
277 u->next--;
278 u->remaining++;
279 } else {
280 /*
281 * The index must be returned either to an existing freed
282 * interval or a new interval must be created.
283 */
284 link_t *lnk;
285 freed_t *n;
286 for (lnk = u->freed_list.head.next; lnk != &u->freed_list.head;
287 lnk = lnk->next) {
288 freed_t *f = list_get_instance(lnk, freed_t, link);
289 if (f->first == index + 1) {
290 f->first--;
291 if (lnk->prev != &u->freed_list.head)
292 try_coalesce_intervals(lnk->prev, lnk,
293 lnk);
294 fibril_mutex_unlock(&unused_lock);
295 return;
296 }
297 if (f->last == index - 1) {
298 f->last++;
299 if (lnk->next != &u->freed_list.head)
300 try_coalesce_intervals(lnk, lnk->next,
301 lnk);
302 fibril_mutex_unlock(&unused_lock);
303 return;
304 }
305 if (index > f->first) {
306 n = malloc(sizeof(freed_t));
307 /* TODO: sleep until allocation succeeds */
308 assert(n);
309 link_initialize(&n->link);
310 n->first = index;
311 n->last = index;
312 list_insert_before(&n->link, lnk);
313 fibril_mutex_unlock(&unused_lock);
314 return;
315 }
316
317 }
318 /* The index will form the last interval. */
319 n = malloc(sizeof(freed_t));
320 /* TODO: sleep until allocation succeeds */
321 assert(n);
322 link_initialize(&n->link);
323 n->first = index;
324 n->last = index;
325 list_append(&n->link, &u->freed_list);
326 }
327 fibril_mutex_unlock(&unused_lock);
328}
329
330static errno_t fat_idx_create(fat_idx_t **fidxp, service_id_t service_id)
331{
332 fat_idx_t *fidx;
333
334 fidx = (fat_idx_t *) malloc(sizeof(fat_idx_t));
335 if (!fidx)
336 return ENOMEM;
337 if (!fat_index_alloc(service_id, &fidx->index)) {
338 free(fidx);
339 return ENOSPC;
340 }
341
342 fibril_mutex_initialize(&fidx->lock);
343 fidx->service_id = service_id;
344 fidx->pfc = FAT_CLST_RES0; /* no parent yet */
345 fidx->pdi = 0;
346 fidx->nodep = NULL;
347
348 *fidxp = fidx;
349 return EOK;
350}
351
352errno_t fat_idx_get_new(fat_idx_t **fidxp, service_id_t service_id)
353{
354 fat_idx_t *fidx;
355 errno_t rc;
356
357 fibril_mutex_lock(&used_lock);
358 rc = fat_idx_create(&fidx, service_id);
359 if (rc != EOK) {
360 fibril_mutex_unlock(&used_lock);
361 return rc;
362 }
363
364 hash_table_insert(&ui_hash, &fidx->uih_link);
365 fibril_mutex_lock(&fidx->lock);
366 fibril_mutex_unlock(&used_lock);
367
368 *fidxp = fidx;
369 return EOK;
370}
371
372fat_idx_t *
373fat_idx_get_by_pos(service_id_t service_id, fat_cluster_t pfc, unsigned pdi)
374{
375 fat_idx_t *fidx;
376
377 pos_key_t pos_key = {
378 .service_id = service_id,
379 .pfc = pfc,
380 .pdi = pdi,
381 };
382
383 fibril_mutex_lock(&used_lock);
384 ht_link_t *l = hash_table_find(&up_hash, &pos_key);
385 if (l) {
386 fidx = hash_table_get_inst(l, fat_idx_t, uph_link);
387 } else {
388 errno_t rc;
389
390 rc = fat_idx_create(&fidx, service_id);
391 if (rc != EOK) {
392 fibril_mutex_unlock(&used_lock);
393 return NULL;
394 }
395
396 fidx->pfc = pfc;
397 fidx->pdi = pdi;
398
399 hash_table_insert(&up_hash, &fidx->uph_link);
400 hash_table_insert(&ui_hash, &fidx->uih_link);
401 }
402 fibril_mutex_lock(&fidx->lock);
403 fibril_mutex_unlock(&used_lock);
404
405 return fidx;
406}
407
408void fat_idx_hashin(fat_idx_t *idx)
409{
410 fibril_mutex_lock(&used_lock);
411 hash_table_insert(&up_hash, &idx->uph_link);
412 fibril_mutex_unlock(&used_lock);
413}
414
415void fat_idx_hashout(fat_idx_t *idx)
416{
417 fibril_mutex_lock(&used_lock);
418 hash_table_remove_item(&up_hash, &idx->uph_link);
419 fibril_mutex_unlock(&used_lock);
420}
421
422fat_idx_t *
423fat_idx_get_by_index(service_id_t service_id, fs_index_t index)
424{
425 fat_idx_t *fidx = NULL;
426
427 idx_key_t idx_key = {
428 .service_id = service_id,
429 .index = index,
430 };
431
432 fibril_mutex_lock(&used_lock);
433 ht_link_t *l = hash_table_find(&ui_hash, &idx_key);
434 if (l) {
435 fidx = hash_table_get_inst(l, fat_idx_t, uih_link);
436 fibril_mutex_lock(&fidx->lock);
437 }
438 fibril_mutex_unlock(&used_lock);
439
440 return fidx;
441}
442
443/** Destroy the index structure.
444 *
445 * @param idx The index structure to be destroyed.
446 */
447void fat_idx_destroy(fat_idx_t *idx)
448{
449 idx_key_t idx_key = {
450 .service_id = idx->service_id,
451 .index = idx->index,
452 };
453
454 assert(idx->pfc == FAT_CLST_RES0);
455
456 fibril_mutex_lock(&used_lock);
457 /*
458 * Since we can only free unlinked nodes, the index structure is not
459 * present in the position hash (uph). We therefore hash it out from
460 * the index hash only.
461 */
462 hash_table_remove(&ui_hash, &idx_key);
463 fibril_mutex_unlock(&used_lock);
464 /* Release the VFS index. */
465 fat_index_free(idx_key.service_id, idx_key.index);
466 /* The index structure itself is freed in idx_remove_callback(). */
467}
468
469errno_t fat_idx_init(void)
470{
471 if (!hash_table_create(&up_hash, 0, 0, &uph_ops))
472 return ENOMEM;
473 if (!hash_table_create(&ui_hash, 0, 0, &uih_ops)) {
474 hash_table_destroy(&up_hash);
475 return ENOMEM;
476 }
477 return EOK;
478}
479
480void fat_idx_fini(void)
481{
482 /* We assume the hash tables are empty. */
483 assert(hash_table_empty(&up_hash) && hash_table_empty(&ui_hash));
484 hash_table_destroy(&up_hash);
485 hash_table_destroy(&ui_hash);
486}
487
488errno_t fat_idx_init_by_service_id(service_id_t service_id)
489{
490 unused_t *u;
491 errno_t rc = EOK;
492
493 u = (unused_t *) malloc(sizeof(unused_t));
494 if (!u)
495 return ENOMEM;
496 unused_initialize(u, service_id);
497 fibril_mutex_lock(&unused_lock);
498 if (!unused_find(service_id, false)) {
499 list_append(&u->link, &unused_list);
500 } else {
501 free(u);
502 rc = EEXIST;
503 }
504 fibril_mutex_unlock(&unused_lock);
505 return rc;
506}
507
508static bool rm_pos_service_id(ht_link_t *item, void *arg)
509{
510 service_id_t service_id = *(service_id_t *)arg;
511 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uph_link);
512
513 if (fidx->service_id == service_id) {
514 hash_table_remove_item(&up_hash, item);
515 }
516
517 return true;
518}
519
520static bool rm_idx_service_id(ht_link_t *item, void *arg)
521{
522 service_id_t service_id = *(service_id_t *)arg;
523 fat_idx_t *fidx = hash_table_get_inst(item, fat_idx_t, uih_link);
524
525 if (fidx->service_id == service_id) {
526 hash_table_remove_item(&ui_hash, item);
527 }
528
529 return true;
530}
531
532void fat_idx_fini_by_service_id(service_id_t service_id)
533{
534 /*
535 * Remove this instance's index structure from up_hash and ui_hash.
536 * Process up_hash first and ui_hash second because the index structure
537 * is actually removed in idx_remove_callback().
538 */
539 fibril_mutex_lock(&used_lock);
540 hash_table_apply(&up_hash, rm_pos_service_id, &service_id);
541 hash_table_apply(&ui_hash, rm_idx_service_id, &service_id);
542 fibril_mutex_unlock(&used_lock);
543
544 /*
545 * Free the unused and freed structures for this instance.
546 */
547 unused_t *u = unused_find(service_id, true);
548 assert(u);
549 list_remove(&u->link);
550 fibril_mutex_unlock(&unused_lock);
551
552 while (!list_empty(&u->freed_list)) {
553 freed_t *f;
554 f = list_get_instance(list_first(&u->freed_list), freed_t, link);
555 list_remove(&f->link);
556 free(f);
557 }
558 free(u);
559}
560
561/**
562 * @}
563 */
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