vfs_dirhash.c revision 1.10 1 1.10 enami /* $NetBSD: vfs_dirhash.c,v 1.10 2009/02/06 23:56:26 enami Exp $ */
2 1.1 reinoud
3 1.1 reinoud /*
4 1.1 reinoud * Copyright (c) 2008 Reinoud Zandijk
5 1.1 reinoud * All rights reserved.
6 1.1 reinoud *
7 1.1 reinoud * Redistribution and use in source and binary forms, with or without
8 1.1 reinoud * modification, are permitted provided that the following conditions
9 1.1 reinoud * are met:
10 1.1 reinoud * 1. Redistributions of source code must retain the above copyright
11 1.1 reinoud * notice, this list of conditions and the following disclaimer.
12 1.1 reinoud * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 reinoud * notice, this list of conditions and the following disclaimer in the
14 1.1 reinoud * documentation and/or other materials provided with the distribution.
15 1.1 reinoud *
16 1.1 reinoud * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 reinoud * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 reinoud * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 reinoud * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 reinoud * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 reinoud * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 reinoud * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 reinoud * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 reinoud * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.1 reinoud * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 reinoud *
27 1.1 reinoud */
28 1.1 reinoud
29 1.1 reinoud
30 1.1 reinoud #include <sys/cdefs.h>
31 1.10 enami __KERNEL_RCSID(0, "$NetBSD: vfs_dirhash.c,v 1.10 2009/02/06 23:56:26 enami Exp $");
32 1.1 reinoud
33 1.1 reinoud /* CLEAN UP! */
34 1.1 reinoud #include <sys/param.h>
35 1.1 reinoud #include <sys/kernel.h>
36 1.1 reinoud #include <sys/buf.h>
37 1.1 reinoud #include <sys/dirent.h>
38 1.5 reinoud #include <sys/hash.h>
39 1.5 reinoud #include <sys/mutex.h>
40 1.5 reinoud #include <sys/pool.h>
41 1.5 reinoud #include <sys/queue.h>
42 1.5 reinoud #include <sys/vnode.h>
43 1.5 reinoud #include <sys/sysctl.h>
44 1.1 reinoud
45 1.1 reinoud #include <sys/dirhash.h>
46 1.1 reinoud
47 1.5 reinoud #if 1
48 1.5 reinoud # define DPRINTF(a) ;
49 1.5 reinoud #else
50 1.9 reinoud # define DPRINTF(a) printf a;
51 1.5 reinoud #endif
52 1.5 reinoud
53 1.8 reinoud /*
54 1.8 reinoud * The locking protocol of the dirhash structures is fairly simple:
55 1.8 reinoud *
56 1.8 reinoud * The global dirhash_queue is protected by the dirhashmutex. This lock is
57 1.8 reinoud * internal only and is FS/mountpoint/vnode independent. On exit of the
58 1.8 reinoud * exported functions this mutex is not helt.
59 1.8 reinoud *
60 1.8 reinoud * The dirhash structure is considered part of the vnode/inode/udf_node
61 1.8 reinoud * structure and will thus use the lock that protects that vnode/inode.
62 1.8 reinoud *
63 1.8 reinoud * The dirhash entries are considered part of the dirhash structure and thus
64 1.8 reinoud * are on the same lock.
65 1.8 reinoud */
66 1.1 reinoud
67 1.1 reinoud static struct sysctllog *sysctl_log;
68 1.5 reinoud static struct pool dirhash_pool;
69 1.5 reinoud static struct pool dirhash_entry_pool;
70 1.1 reinoud
71 1.3 reinoud static kmutex_t dirhashmutex;
72 1.3 reinoud static uint32_t maxdirhashsize = DIRHASH_SIZE;
73 1.3 reinoud static uint32_t dirhashsize = 0;
74 1.3 reinoud static TAILQ_HEAD(_dirhash, dirhash) dirhash_queue;
75 1.1 reinoud
76 1.1 reinoud
77 1.1 reinoud void
78 1.1 reinoud dirhash_init(void)
79 1.1 reinoud {
80 1.2 reinoud const struct sysctlnode *rnode, *cnode;
81 1.5 reinoud size_t sz;
82 1.1 reinoud uint32_t max_entries;
83 1.1 reinoud
84 1.1 reinoud /* initialise dirhash queue */
85 1.1 reinoud TAILQ_INIT(&dirhash_queue);
86 1.1 reinoud
87 1.1 reinoud /* init dirhash pools */
88 1.5 reinoud sz = sizeof(struct dirhash);
89 1.5 reinoud pool_init(&dirhash_pool, sz, 0, 0, 0,
90 1.5 reinoud "dirhpl", NULL, IPL_NONE);
91 1.5 reinoud
92 1.5 reinoud sz = sizeof(struct dirhash_entry);
93 1.5 reinoud pool_init(&dirhash_entry_pool, sz, 0, 0, 0,
94 1.5 reinoud "dirhepl", NULL, IPL_NONE);
95 1.1 reinoud
96 1.1 reinoud mutex_init(&dirhashmutex, MUTEX_DEFAULT, IPL_NONE);
97 1.5 reinoud max_entries = maxdirhashsize / sz;
98 1.1 reinoud pool_sethiwat(&dirhash_entry_pool, max_entries);
99 1.1 reinoud dirhashsize = 0;
100 1.1 reinoud
101 1.1 reinoud /* create sysctl knobs and dials */
102 1.1 reinoud sysctl_log = NULL;
103 1.2 reinoud sysctl_createv(&sysctl_log, 0, NULL, &rnode,
104 1.1 reinoud CTLFLAG_PERMANENT,
105 1.2 reinoud CTLTYPE_NODE, "dirhash", NULL,
106 1.1 reinoud NULL, 0, NULL, 0,
107 1.2 reinoud CTL_VFS, VFS_GENERIC, CTL_CREATE, CTL_EOL);
108 1.2 reinoud sysctl_createv(&sysctl_log, 0, &rnode, &cnode,
109 1.1 reinoud CTLFLAG_PERMANENT,
110 1.2 reinoud CTLTYPE_INT, "memused",
111 1.2 reinoud SYSCTL_DESCR("current dirhash memory usage"),
112 1.1 reinoud NULL, 0, &dirhashsize, 0,
113 1.2 reinoud CTL_CREATE, CTL_EOL);
114 1.2 reinoud sysctl_createv(&sysctl_log, 0, &rnode, &cnode,
115 1.1 reinoud CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
116 1.2 reinoud CTLTYPE_INT, "maxmem",
117 1.2 reinoud SYSCTL_DESCR("maximum dirhash memory usage"),
118 1.1 reinoud NULL, 0, &maxdirhashsize, 0,
119 1.2 reinoud CTL_CREATE, CTL_EOL);
120 1.1 reinoud }
121 1.1 reinoud
122 1.1 reinoud
123 1.1 reinoud #if 0
124 1.1 reinoud void
125 1.1 reinoud dirhash_finish(void)
126 1.1 reinoud {
127 1.1 reinoud pool_destroy(&dirhash_pool);
128 1.1 reinoud pool_destroy(&dirhash_entry_pool);
129 1.1 reinoud
130 1.1 reinoud mutex_destroy(&dirhashmutex);
131 1.1 reinoud
132 1.1 reinoud /* sysctl_teardown(&sysctl_log); */
133 1.1 reinoud }
134 1.1 reinoud #endif
135 1.1 reinoud
136 1.1 reinoud
137 1.1 reinoud /*
138 1.1 reinoud * generic dirhash implementation
139 1.1 reinoud */
140 1.1 reinoud
141 1.1 reinoud void
142 1.1 reinoud dirhash_purge_entries(struct dirhash *dirh)
143 1.1 reinoud {
144 1.1 reinoud struct dirhash_entry *dirh_e;
145 1.1 reinoud uint32_t hashline;
146 1.1 reinoud
147 1.1 reinoud if (dirh == NULL)
148 1.1 reinoud return;
149 1.1 reinoud
150 1.1 reinoud if (dirh->size == 0)
151 1.1 reinoud return;
152 1.1 reinoud
153 1.1 reinoud for (hashline = 0; hashline < DIRHASH_HASHSIZE; hashline++) {
154 1.10 enami while ((dirh_e =
155 1.10 enami LIST_FIRST(&dirh->entries[hashline])) != NULL) {
156 1.1 reinoud LIST_REMOVE(dirh_e, next);
157 1.1 reinoud pool_put(&dirhash_entry_pool, dirh_e);
158 1.1 reinoud }
159 1.1 reinoud }
160 1.1 reinoud
161 1.10 enami while ((dirh_e = LIST_FIRST(&dirh->free_entries)) != NULL) {
162 1.1 reinoud LIST_REMOVE(dirh_e, next);
163 1.1 reinoud pool_put(&dirhash_entry_pool, dirh_e);
164 1.1 reinoud }
165 1.1 reinoud
166 1.1 reinoud dirh->flags &= ~DIRH_COMPLETE;
167 1.1 reinoud dirh->flags |= DIRH_PURGED;
168 1.1 reinoud
169 1.1 reinoud dirhashsize -= dirh->size;
170 1.1 reinoud dirh->size = 0;
171 1.1 reinoud }
172 1.1 reinoud
173 1.1 reinoud
174 1.1 reinoud void
175 1.1 reinoud dirhash_purge(struct dirhash **dirhp)
176 1.1 reinoud {
177 1.1 reinoud struct dirhash *dirh = *dirhp;
178 1.1 reinoud
179 1.1 reinoud if (dirh == NULL)
180 1.1 reinoud return;
181 1.1 reinoud
182 1.7 reinoud /* purge its entries */
183 1.7 reinoud dirhash_purge_entries(dirh);
184 1.7 reinoud
185 1.7 reinoud /* recycle */
186 1.1 reinoud mutex_enter(&dirhashmutex);
187 1.1 reinoud TAILQ_REMOVE(&dirhash_queue, dirh, next);
188 1.5 reinoud mutex_exit(&dirhashmutex);
189 1.5 reinoud
190 1.1 reinoud pool_put(&dirhash_pool, dirh);
191 1.1 reinoud *dirhp = NULL;
192 1.1 reinoud }
193 1.1 reinoud
194 1.1 reinoud
195 1.1 reinoud void
196 1.1 reinoud dirhash_get(struct dirhash **dirhp)
197 1.1 reinoud {
198 1.1 reinoud struct dirhash *dirh;
199 1.1 reinoud uint32_t hashline;
200 1.1 reinoud
201 1.5 reinoud /* if no dirhash was given, allocate one */
202 1.1 reinoud dirh = *dirhp;
203 1.5 reinoud if (dirh == NULL) {
204 1.1 reinoud dirh = pool_get(&dirhash_pool, PR_WAITOK);
205 1.1 reinoud memset(dirh, 0, sizeof(struct dirhash));
206 1.5 reinoud for (hashline = 0; hashline < DIRHASH_HASHSIZE; hashline++) {
207 1.1 reinoud LIST_INIT(&dirh->entries[hashline]);
208 1.5 reinoud }
209 1.5 reinoud }
210 1.5 reinoud
211 1.5 reinoud /* implement LRU on the dirhash queue */
212 1.5 reinoud mutex_enter(&dirhashmutex);
213 1.5 reinoud if (*dirhp) {
214 1.5 reinoud /* remove from queue to be requeued */
215 1.1 reinoud TAILQ_REMOVE(&dirhash_queue, dirh, next);
216 1.1 reinoud }
217 1.1 reinoud dirh->refcnt++;
218 1.1 reinoud TAILQ_INSERT_HEAD(&dirhash_queue, dirh, next);
219 1.5 reinoud mutex_exit(&dirhashmutex);
220 1.1 reinoud
221 1.5 reinoud *dirhp = dirh;
222 1.1 reinoud }
223 1.1 reinoud
224 1.1 reinoud
225 1.1 reinoud void
226 1.1 reinoud dirhash_put(struct dirhash *dirh)
227 1.1 reinoud {
228 1.1 reinoud
229 1.1 reinoud mutex_enter(&dirhashmutex);
230 1.1 reinoud dirh->refcnt--;
231 1.1 reinoud mutex_exit(&dirhashmutex);
232 1.1 reinoud }
233 1.1 reinoud
234 1.1 reinoud
235 1.1 reinoud void
236 1.1 reinoud dirhash_enter(struct dirhash *dirh,
237 1.1 reinoud struct dirent *dirent, uint64_t offset, uint32_t entry_size, int new)
238 1.1 reinoud {
239 1.1 reinoud struct dirhash *del_dirh, *prev_dirh;
240 1.1 reinoud struct dirhash_entry *dirh_e;
241 1.1 reinoud uint32_t hashvalue, hashline;
242 1.1 reinoud int entrysize;
243 1.1 reinoud
244 1.1 reinoud /* make sure we have a dirhash to work on */
245 1.1 reinoud KASSERT(dirh);
246 1.1 reinoud KASSERT(dirh->refcnt > 0);
247 1.1 reinoud
248 1.1 reinoud /* are we trying to re-enter an entry? */
249 1.1 reinoud if (!new && (dirh->flags & DIRH_COMPLETE))
250 1.1 reinoud return;
251 1.1 reinoud
252 1.1 reinoud /* calculate our hash */
253 1.5 reinoud hashvalue = hash32_strn(dirent->d_name, dirent->d_namlen, HASH32_STR_INIT);
254 1.1 reinoud hashline = hashvalue & DIRHASH_HASHMASK;
255 1.1 reinoud
256 1.1 reinoud /* lookup and insert entry if not there yet */
257 1.1 reinoud LIST_FOREACH(dirh_e, &dirh->entries[hashline], next) {
258 1.1 reinoud /* check for hash collision */
259 1.1 reinoud if (dirh_e->hashvalue != hashvalue)
260 1.1 reinoud continue;
261 1.1 reinoud if (dirh_e->offset != offset)
262 1.1 reinoud continue;
263 1.1 reinoud /* got it already */
264 1.1 reinoud KASSERT(dirh_e->d_namlen == dirent->d_namlen);
265 1.1 reinoud KASSERT(dirh_e->entry_size == entry_size);
266 1.1 reinoud return;
267 1.1 reinoud }
268 1.1 reinoud
269 1.1 reinoud DPRINTF(("dirhash enter %"PRIu64", %d, %d for `%*.*s`\n",
270 1.1 reinoud offset, entry_size, dirent->d_namlen,
271 1.1 reinoud dirent->d_namlen, dirent->d_namlen, dirent->d_name));
272 1.1 reinoud
273 1.1 reinoud /* check if entry is in free space list */
274 1.1 reinoud LIST_FOREACH(dirh_e, &dirh->free_entries, next) {
275 1.1 reinoud if (dirh_e->offset == offset) {
276 1.1 reinoud DPRINTF(("\tremoving free entry\n"));
277 1.1 reinoud LIST_REMOVE(dirh_e, next);
278 1.9 reinoud pool_put(&dirhash_entry_pool, dirh_e);
279 1.1 reinoud break;
280 1.1 reinoud }
281 1.1 reinoud }
282 1.1 reinoud
283 1.1 reinoud /* ensure we are not passing the dirhash limit */
284 1.1 reinoud entrysize = sizeof(struct dirhash_entry);
285 1.1 reinoud if (dirhashsize + entrysize > maxdirhashsize) {
286 1.7 reinoud /* we walk the dirhash_queue, so need to lock it */
287 1.7 reinoud mutex_enter(&dirhashmutex);
288 1.1 reinoud del_dirh = TAILQ_LAST(&dirhash_queue, _dirhash);
289 1.1 reinoud KASSERT(del_dirh);
290 1.1 reinoud while (dirhashsize + entrysize > maxdirhashsize) {
291 1.1 reinoud /* no use trying to delete myself */
292 1.1 reinoud if (del_dirh == dirh)
293 1.1 reinoud break;
294 1.1 reinoud prev_dirh = TAILQ_PREV(del_dirh, _dirhash, next);
295 1.1 reinoud if (del_dirh->refcnt == 0)
296 1.1 reinoud dirhash_purge_entries(del_dirh);
297 1.1 reinoud del_dirh = prev_dirh;
298 1.1 reinoud }
299 1.7 reinoud mutex_exit(&dirhashmutex);
300 1.1 reinoud }
301 1.1 reinoud
302 1.1 reinoud /* add to the hashline */
303 1.1 reinoud dirh_e = pool_get(&dirhash_entry_pool, PR_WAITOK);
304 1.1 reinoud memset(dirh_e, 0, sizeof(struct dirhash_entry));
305 1.1 reinoud
306 1.1 reinoud dirh_e->hashvalue = hashvalue;
307 1.1 reinoud dirh_e->offset = offset;
308 1.1 reinoud dirh_e->d_namlen = dirent->d_namlen;
309 1.1 reinoud dirh_e->entry_size = entry_size;
310 1.1 reinoud
311 1.1 reinoud dirh->size += sizeof(struct dirhash_entry);
312 1.1 reinoud dirhashsize += sizeof(struct dirhash_entry);
313 1.1 reinoud LIST_INSERT_HEAD(&dirh->entries[hashline], dirh_e, next);
314 1.1 reinoud }
315 1.1 reinoud
316 1.1 reinoud
317 1.1 reinoud void
318 1.1 reinoud dirhash_enter_freed(struct dirhash *dirh, uint64_t offset,
319 1.1 reinoud uint32_t entry_size)
320 1.1 reinoud {
321 1.1 reinoud struct dirhash_entry *dirh_e;
322 1.1 reinoud
323 1.1 reinoud /* make sure we have a dirhash to work on */
324 1.1 reinoud KASSERT(dirh);
325 1.1 reinoud KASSERT(dirh->refcnt > 0);
326 1.1 reinoud
327 1.1 reinoud /* check for double entry of free space */
328 1.5 reinoud LIST_FOREACH(dirh_e, &dirh->free_entries, next) {
329 1.1 reinoud KASSERT(dirh_e->offset != offset);
330 1.5 reinoud }
331 1.1 reinoud
332 1.1 reinoud DPRINTF(("dirhash enter FREED %"PRIu64", %d\n",
333 1.1 reinoud offset, entry_size));
334 1.1 reinoud dirh_e = pool_get(&dirhash_entry_pool, PR_WAITOK);
335 1.1 reinoud memset(dirh_e, 0, sizeof(struct dirhash_entry));
336 1.1 reinoud
337 1.1 reinoud dirh_e->hashvalue = 0; /* not relevant */
338 1.1 reinoud dirh_e->offset = offset;
339 1.1 reinoud dirh_e->d_namlen = 0; /* not relevant */
340 1.1 reinoud dirh_e->entry_size = entry_size;
341 1.1 reinoud
342 1.1 reinoud /* XXX it might be preferable to append them at the tail */
343 1.1 reinoud LIST_INSERT_HEAD(&dirh->free_entries, dirh_e, next);
344 1.1 reinoud dirh->size += sizeof(struct dirhash_entry);
345 1.1 reinoud dirhashsize += sizeof(struct dirhash_entry);
346 1.1 reinoud }
347 1.1 reinoud
348 1.1 reinoud
349 1.1 reinoud void
350 1.1 reinoud dirhash_remove(struct dirhash *dirh, struct dirent *dirent,
351 1.1 reinoud uint64_t offset, uint32_t entry_size)
352 1.1 reinoud {
353 1.1 reinoud struct dirhash_entry *dirh_e;
354 1.1 reinoud uint32_t hashvalue, hashline;
355 1.1 reinoud
356 1.1 reinoud DPRINTF(("dirhash remove %"PRIu64", %d for `%*.*s`\n",
357 1.1 reinoud offset, entry_size,
358 1.1 reinoud dirent->d_namlen, dirent->d_namlen, dirent->d_name));
359 1.1 reinoud
360 1.1 reinoud /* make sure we have a dirhash to work on */
361 1.1 reinoud KASSERT(dirh);
362 1.1 reinoud KASSERT(dirh->refcnt > 0);
363 1.1 reinoud
364 1.1 reinoud /* calculate our hash */
365 1.5 reinoud hashvalue = hash32_strn(dirent->d_name, dirent->d_namlen, HASH32_STR_INIT);
366 1.1 reinoud hashline = hashvalue & DIRHASH_HASHMASK;
367 1.1 reinoud
368 1.1 reinoud /* lookup entry */
369 1.1 reinoud LIST_FOREACH(dirh_e, &dirh->entries[hashline], next) {
370 1.1 reinoud /* check for hash collision */
371 1.1 reinoud if (dirh_e->hashvalue != hashvalue)
372 1.1 reinoud continue;
373 1.1 reinoud if (dirh_e->offset != offset)
374 1.1 reinoud continue;
375 1.1 reinoud
376 1.1 reinoud /* got it! */
377 1.1 reinoud KASSERT(dirh_e->d_namlen == dirent->d_namlen);
378 1.1 reinoud KASSERT(dirh_e->entry_size == entry_size);
379 1.1 reinoud LIST_REMOVE(dirh_e, next);
380 1.5 reinoud dirh->size -= sizeof(struct dirhash_entry);
381 1.1 reinoud dirhashsize -= sizeof(struct dirhash_entry);
382 1.1 reinoud
383 1.1 reinoud dirhash_enter_freed(dirh, offset, entry_size);
384 1.1 reinoud return;
385 1.1 reinoud }
386 1.1 reinoud
387 1.1 reinoud /* not found! */
388 1.1 reinoud panic("dirhash_remove couldn't find entry in hash table\n");
389 1.1 reinoud }
390 1.1 reinoud
391 1.1 reinoud
392 1.5 reinoud /*
393 1.5 reinoud * BUGALERT: don't use result longer than needed, never past the node lock.
394 1.5 reinoud * Call with NULL *result initially and it will return nonzero if again.
395 1.5 reinoud */
396 1.1 reinoud int
397 1.1 reinoud dirhash_lookup(struct dirhash *dirh, const char *d_name, int d_namlen,
398 1.1 reinoud struct dirhash_entry **result)
399 1.1 reinoud {
400 1.1 reinoud struct dirhash_entry *dirh_e;
401 1.1 reinoud uint32_t hashvalue, hashline;
402 1.1 reinoud
403 1.1 reinoud /* make sure we have a dirhash to work on */
404 1.1 reinoud KASSERT(dirh);
405 1.1 reinoud KASSERT(dirh->refcnt > 0);
406 1.1 reinoud
407 1.1 reinoud /* start where we were */
408 1.1 reinoud if (*result) {
409 1.1 reinoud dirh_e = *result;
410 1.1 reinoud
411 1.1 reinoud /* retrieve information to avoid recalculation and advance */
412 1.1 reinoud hashvalue = dirh_e->hashvalue;
413 1.1 reinoud dirh_e = LIST_NEXT(*result, next);
414 1.1 reinoud } else {
415 1.1 reinoud /* calculate our hash and lookup all entries in hashline */
416 1.5 reinoud hashvalue = hash32_strn(d_name, d_namlen, HASH32_STR_INIT);
417 1.1 reinoud hashline = hashvalue & DIRHASH_HASHMASK;
418 1.1 reinoud dirh_e = LIST_FIRST(&dirh->entries[hashline]);
419 1.1 reinoud }
420 1.1 reinoud
421 1.1 reinoud for (; dirh_e; dirh_e = LIST_NEXT(dirh_e, next)) {
422 1.1 reinoud /* check for hash collision */
423 1.1 reinoud if (dirh_e->hashvalue != hashvalue)
424 1.1 reinoud continue;
425 1.1 reinoud if (dirh_e->d_namlen != d_namlen)
426 1.1 reinoud continue;
427 1.1 reinoud /* might have an entry in the cache */
428 1.1 reinoud *result = dirh_e;
429 1.1 reinoud return 1;
430 1.1 reinoud }
431 1.1 reinoud
432 1.1 reinoud *result = NULL;
433 1.1 reinoud return 0;
434 1.1 reinoud }
435 1.1 reinoud
436 1.1 reinoud
437 1.5 reinoud /*
438 1.5 reinoud * BUGALERT: don't use result longer than needed, never past the node lock.
439 1.5 reinoud * Call with NULL *result initially and it will return nonzero if again.
440 1.5 reinoud */
441 1.5 reinoud
442 1.1 reinoud int
443 1.1 reinoud dirhash_lookup_freed(struct dirhash *dirh, uint32_t min_entrysize,
444 1.1 reinoud struct dirhash_entry **result)
445 1.1 reinoud {
446 1.1 reinoud struct dirhash_entry *dirh_e;
447 1.1 reinoud
448 1.1 reinoud /* make sure we have a dirhash to work on */
449 1.1 reinoud KASSERT(dirh);
450 1.1 reinoud KASSERT(dirh->refcnt > 0);
451 1.1 reinoud
452 1.1 reinoud /* start where we were */
453 1.1 reinoud if (*result) {
454 1.1 reinoud dirh_e = LIST_NEXT(*result, next);
455 1.1 reinoud } else {
456 1.1 reinoud /* lookup all entries that match */
457 1.1 reinoud dirh_e = LIST_FIRST(&dirh->free_entries);
458 1.1 reinoud }
459 1.1 reinoud
460 1.1 reinoud for (; dirh_e; dirh_e = LIST_NEXT(dirh_e, next)) {
461 1.1 reinoud /* check for minimum size */
462 1.1 reinoud if (dirh_e->entry_size < min_entrysize)
463 1.1 reinoud continue;
464 1.1 reinoud /* might be a candidate */
465 1.1 reinoud *result = dirh_e;
466 1.1 reinoud return 1;
467 1.1 reinoud }
468 1.1 reinoud
469 1.1 reinoud *result = NULL;
470 1.1 reinoud return 0;
471 1.1 reinoud }
472