vfs_cache.c revision 1.89 1 1.89 rmind /* $NetBSD: vfs_cache.c,v 1.89 2012/07/22 00:53:18 rmind Exp $ */
2 1.73 ad
3 1.73 ad /*-
4 1.73 ad * Copyright (c) 2008 The NetBSD Foundation, Inc.
5 1.73 ad * All rights reserved.
6 1.73 ad *
7 1.73 ad * Redistribution and use in source and binary forms, with or without
8 1.73 ad * modification, are permitted provided that the following conditions
9 1.73 ad * are met:
10 1.73 ad * 1. Redistributions of source code must retain the above copyright
11 1.73 ad * notice, this list of conditions and the following disclaimer.
12 1.73 ad * 2. Redistributions in binary form must reproduce the above copyright
13 1.73 ad * notice, this list of conditions and the following disclaimer in the
14 1.73 ad * documentation and/or other materials provided with the distribution.
15 1.73 ad *
16 1.73 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
17 1.73 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.73 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.73 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
20 1.73 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 1.73 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 1.73 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 1.73 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 1.73 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 1.73 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26 1.73 ad * POSSIBILITY OF SUCH DAMAGE.
27 1.73 ad */
28 1.6 cgd
29 1.1 cgd /*
30 1.5 mycroft * Copyright (c) 1989, 1993
31 1.5 mycroft * The Regents of the University of California. All rights reserved.
32 1.1 cgd *
33 1.1 cgd * Redistribution and use in source and binary forms, with or without
34 1.1 cgd * modification, are permitted provided that the following conditions
35 1.1 cgd * are met:
36 1.1 cgd * 1. Redistributions of source code must retain the above copyright
37 1.1 cgd * notice, this list of conditions and the following disclaimer.
38 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
39 1.1 cgd * notice, this list of conditions and the following disclaimer in the
40 1.1 cgd * documentation and/or other materials provided with the distribution.
41 1.51 agc * 3. Neither the name of the University nor the names of its contributors
42 1.1 cgd * may be used to endorse or promote products derived from this software
43 1.1 cgd * without specific prior written permission.
44 1.1 cgd *
45 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
46 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
47 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
48 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
49 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
50 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
51 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
52 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
53 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
54 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
55 1.1 cgd * SUCH DAMAGE.
56 1.1 cgd *
57 1.10 mycroft * @(#)vfs_cache.c 8.3 (Berkeley) 8/22/94
58 1.1 cgd */
59 1.32 lukem
60 1.32 lukem #include <sys/cdefs.h>
61 1.89 rmind __KERNEL_RCSID(0, "$NetBSD: vfs_cache.c,v 1.89 2012/07/22 00:53:18 rmind Exp $");
62 1.1 cgd
63 1.28 chs #include "opt_ddb.h"
64 1.29 fvdl #include "opt_revcache.h"
65 1.28 chs
66 1.4 mycroft #include <sys/param.h>
67 1.4 mycroft #include <sys/systm.h>
68 1.4 mycroft #include <sys/time.h>
69 1.4 mycroft #include <sys/mount.h>
70 1.4 mycroft #include <sys/vnode.h>
71 1.4 mycroft #include <sys/namei.h>
72 1.4 mycroft #include <sys/errno.h>
73 1.18 thorpej #include <sys/pool.h>
74 1.68 ad #include <sys/mutex.h>
75 1.73 ad #include <sys/atomic.h>
76 1.73 ad #include <sys/kthread.h>
77 1.73 ad #include <sys/kernel.h>
78 1.73 ad #include <sys/cpu.h>
79 1.73 ad #include <sys/evcnt.h>
80 1.1 cgd
81 1.66 christos #define NAMECACHE_ENTER_REVERSE
82 1.1 cgd /*
83 1.1 cgd * Name caching works as follows:
84 1.1 cgd *
85 1.1 cgd * Names found by directory scans are retained in a cache
86 1.1 cgd * for future reference. It is managed LRU, so frequently
87 1.1 cgd * used names will hang around. Cache is indexed by hash value
88 1.20 jdolecek * obtained from (dvp, name) where dvp refers to the directory
89 1.1 cgd * containing name.
90 1.1 cgd *
91 1.1 cgd * For simplicity (and economy of storage), names longer than
92 1.1 cgd * a maximum length of NCHNAMLEN are not cached; they occur
93 1.1 cgd * infrequently in any case, and are almost never of interest.
94 1.1 cgd *
95 1.1 cgd * Upon reaching the last segment of a path, if the reference
96 1.1 cgd * is for DELETE, or NOCACHE is set (rewrite), and the
97 1.1 cgd * name is located in the cache, it will be dropped.
98 1.20 jdolecek * The entry is dropped also when it was not possible to lock
99 1.20 jdolecek * the cached vnode, either because vget() failed or the generation
100 1.20 jdolecek * number has changed while waiting for the lock.
101 1.1 cgd */
102 1.1 cgd
103 1.1 cgd /*
104 1.77 ad * Per-cpu namecache data.
105 1.77 ad */
106 1.77 ad struct nchcpu {
107 1.77 ad kmutex_t cpu_lock;
108 1.77 ad struct nchstats cpu_stats;
109 1.77 ad };
110 1.77 ad
111 1.77 ad /*
112 1.1 cgd * Structures associated with name cacheing.
113 1.1 cgd */
114 1.89 rmind
115 1.89 rmind static kmutex_t *namecache_lock __read_mostly;
116 1.89 rmind static pool_cache_t namecache_cache __read_mostly;
117 1.89 rmind static TAILQ_HEAD(, namecache) nclruhead __cacheline_aligned;
118 1.89 rmind
119 1.89 rmind static LIST_HEAD(nchashhead, namecache) *nchashtbl __read_mostly;
120 1.89 rmind static u_long nchash __read_mostly;
121 1.89 rmind
122 1.49 yamt #define NCHASH(cnp, dvp) \
123 1.49 yamt (((cnp)->cn_hash ^ ((uintptr_t)(dvp) >> 3)) & nchash)
124 1.19 sommerfe
125 1.89 rmind static LIST_HEAD(ncvhashhead, namecache) *ncvhashtbl __read_mostly;
126 1.89 rmind static u_long ncvhash __read_mostly;
127 1.89 rmind
128 1.48 yamt #define NCVHASH(vp) (((uintptr_t)(vp) >> 3) & ncvhash)
129 1.19 sommerfe
130 1.89 rmind /* Number of cache entries allocated. */
131 1.89 rmind static long numcache __cacheline_aligned;
132 1.73 ad
133 1.89 rmind /* Garbage collection queue and number of entries pending in it. */
134 1.89 rmind static void *cache_gcqueue;
135 1.89 rmind static u_int cache_gcpend;
136 1.89 rmind
137 1.89 rmind /* Cache effectiveness statistics. */
138 1.89 rmind struct nchstats nchstats __cacheline_aligned;
139 1.77 ad #define COUNT(c,x) (c.x++)
140 1.38 thorpej
141 1.89 rmind static const int cache_lowat = 95;
142 1.89 rmind static const int cache_hiwat = 98;
143 1.89 rmind static const int cache_hottime = 5; /* number of seconds */
144 1.89 rmind static int doingcache = 1; /* 1 => enable the cache */
145 1.1 cgd
146 1.73 ad static struct evcnt cache_ev_scan;
147 1.73 ad static struct evcnt cache_ev_gc;
148 1.73 ad static struct evcnt cache_ev_over;
149 1.73 ad static struct evcnt cache_ev_under;
150 1.73 ad static struct evcnt cache_ev_forced;
151 1.73 ad
152 1.73 ad static void cache_invalidate(struct namecache *);
153 1.89 rmind static struct namecache *cache_lookup_entry(
154 1.55 yamt const struct vnode *, const struct componentname *);
155 1.73 ad static void cache_thread(void *);
156 1.73 ad static void cache_invalidate(struct namecache *);
157 1.73 ad static void cache_disassociate(struct namecache *);
158 1.73 ad static void cache_reclaim(void);
159 1.73 ad static int cache_ctor(void *, void *, int);
160 1.73 ad static void cache_dtor(void *, void *);
161 1.46 yamt
162 1.73 ad /*
163 1.73 ad * Invalidate a cache entry and enqueue it for garbage collection.
164 1.73 ad */
165 1.46 yamt static void
166 1.73 ad cache_invalidate(struct namecache *ncp)
167 1.46 yamt {
168 1.73 ad void *head;
169 1.46 yamt
170 1.73 ad KASSERT(mutex_owned(&ncp->nc_lock));
171 1.46 yamt
172 1.73 ad if (ncp->nc_dvp != NULL) {
173 1.73 ad ncp->nc_vp = NULL;
174 1.73 ad ncp->nc_dvp = NULL;
175 1.73 ad do {
176 1.73 ad head = cache_gcqueue;
177 1.73 ad ncp->nc_gcqueue = head;
178 1.73 ad } while (atomic_cas_ptr(&cache_gcqueue, head, ncp) != head);
179 1.73 ad atomic_inc_uint(&cache_gcpend);
180 1.73 ad }
181 1.73 ad }
182 1.46 yamt
183 1.73 ad /*
184 1.73 ad * Disassociate a namecache entry from any vnodes it is attached to,
185 1.73 ad * and remove from the global LRU list.
186 1.73 ad */
187 1.73 ad static void
188 1.73 ad cache_disassociate(struct namecache *ncp)
189 1.73 ad {
190 1.73 ad
191 1.73 ad KASSERT(mutex_owned(namecache_lock));
192 1.73 ad KASSERT(ncp->nc_dvp == NULL);
193 1.73 ad
194 1.73 ad if (ncp->nc_lru.tqe_prev != NULL) {
195 1.73 ad TAILQ_REMOVE(&nclruhead, ncp, nc_lru);
196 1.73 ad ncp->nc_lru.tqe_prev = NULL;
197 1.46 yamt }
198 1.46 yamt if (ncp->nc_vhash.le_prev != NULL) {
199 1.46 yamt LIST_REMOVE(ncp, nc_vhash);
200 1.46 yamt ncp->nc_vhash.le_prev = NULL;
201 1.46 yamt }
202 1.46 yamt if (ncp->nc_vlist.le_prev != NULL) {
203 1.46 yamt LIST_REMOVE(ncp, nc_vlist);
204 1.46 yamt ncp->nc_vlist.le_prev = NULL;
205 1.46 yamt }
206 1.46 yamt if (ncp->nc_dvlist.le_prev != NULL) {
207 1.46 yamt LIST_REMOVE(ncp, nc_dvlist);
208 1.46 yamt ncp->nc_dvlist.le_prev = NULL;
209 1.46 yamt }
210 1.46 yamt }
211 1.46 yamt
212 1.73 ad /*
213 1.73 ad * Lock all CPUs to prevent any cache lookup activity. Conceptually,
214 1.73 ad * this locks out all "readers".
215 1.73 ad */
216 1.46 yamt static void
217 1.73 ad cache_lock_cpus(void)
218 1.46 yamt {
219 1.73 ad CPU_INFO_ITERATOR cii;
220 1.73 ad struct cpu_info *ci;
221 1.77 ad struct nchcpu *cpup;
222 1.77 ad long *s, *d, *m;
223 1.46 yamt
224 1.73 ad for (CPU_INFO_FOREACH(cii, ci)) {
225 1.77 ad cpup = ci->ci_data.cpu_nch;
226 1.77 ad mutex_enter(&cpup->cpu_lock);
227 1.77 ad
228 1.77 ad /* Collate statistics. */
229 1.77 ad d = (long *)&nchstats;
230 1.77 ad s = (long *)&cpup->cpu_stats;
231 1.77 ad m = s + sizeof(nchstats) / sizeof(long);
232 1.77 ad for (; s < m; s++, d++) {
233 1.77 ad *d += *s;
234 1.77 ad *s = 0;
235 1.77 ad }
236 1.73 ad }
237 1.46 yamt }
238 1.46 yamt
239 1.73 ad /*
240 1.73 ad * Release all CPU locks.
241 1.73 ad */
242 1.73 ad static void
243 1.73 ad cache_unlock_cpus(void)
244 1.73 ad {
245 1.73 ad CPU_INFO_ITERATOR cii;
246 1.73 ad struct cpu_info *ci;
247 1.77 ad struct nchcpu *cpup;
248 1.73 ad
249 1.73 ad for (CPU_INFO_FOREACH(cii, ci)) {
250 1.77 ad cpup = ci->ci_data.cpu_nch;
251 1.77 ad mutex_exit(&cpup->cpu_lock);
252 1.73 ad }
253 1.73 ad }
254 1.73 ad
255 1.73 ad /*
256 1.73 ad * Find a single cache entry and return it locked. 'namecache_lock' or
257 1.73 ad * at least one of the per-CPU locks must be held.
258 1.73 ad */
259 1.73 ad static struct namecache *
260 1.55 yamt cache_lookup_entry(const struct vnode *dvp, const struct componentname *cnp)
261 1.55 yamt {
262 1.55 yamt struct nchashhead *ncpp;
263 1.55 yamt struct namecache *ncp;
264 1.55 yamt
265 1.84 yamt KASSERT(dvp != NULL);
266 1.55 yamt ncpp = &nchashtbl[NCHASH(cnp, dvp)];
267 1.55 yamt
268 1.55 yamt LIST_FOREACH(ncp, ncpp, nc_hash) {
269 1.73 ad if (ncp->nc_dvp != dvp ||
270 1.73 ad ncp->nc_nlen != cnp->cn_namelen ||
271 1.73 ad memcmp(ncp->nc_name, cnp->cn_nameptr, (u_int)ncp->nc_nlen))
272 1.73 ad continue;
273 1.73 ad mutex_enter(&ncp->nc_lock);
274 1.77 ad if (__predict_true(ncp->nc_dvp == dvp)) {
275 1.73 ad ncp->nc_hittime = hardclock_ticks;
276 1.73 ad return ncp;
277 1.73 ad }
278 1.73 ad /* Raced: entry has been nullified. */
279 1.73 ad mutex_exit(&ncp->nc_lock);
280 1.55 yamt }
281 1.55 yamt
282 1.73 ad return NULL;
283 1.55 yamt }
284 1.55 yamt
285 1.1 cgd /*
286 1.1 cgd * Look for a the name in the cache. We don't do this
287 1.1 cgd * if the segment name is long, simply so the cache can avoid
288 1.1 cgd * holding long names (which would either waste space, or
289 1.1 cgd * add greatly to the complexity).
290 1.1 cgd *
291 1.1 cgd * Lookup is called with ni_dvp pointing to the directory to search,
292 1.1 cgd * ni_ptr pointing to the name of the entry being sought, ni_namelen
293 1.1 cgd * tells the length of the name, and ni_hash contains a hash of
294 1.20 jdolecek * the name. If the lookup succeeds, the vnode is locked, stored in ni_vp
295 1.20 jdolecek * and a status of zero is returned. If the locking fails for whatever
296 1.20 jdolecek * reason, the vnode is unlocked and the error is returned to caller.
297 1.20 jdolecek * If the lookup determines that the name does not exist (negative cacheing),
298 1.20 jdolecek * a status of ENOENT is returned. If the lookup fails, a status of -1
299 1.20 jdolecek * is returned.
300 1.1 cgd */
301 1.5 mycroft int
302 1.34 enami cache_lookup(struct vnode *dvp, struct vnode **vpp, struct componentname *cnp)
303 1.1 cgd {
304 1.23 augustss struct namecache *ncp;
305 1.20 jdolecek struct vnode *vp;
306 1.77 ad struct nchcpu *cpup;
307 1.36 thorpej int error;
308 1.1 cgd
309 1.77 ad if (__predict_false(!doingcache)) {
310 1.8 cgd cnp->cn_flags &= ~MAKEENTRY;
311 1.34 enami *vpp = NULL;
312 1.77 ad return -1;
313 1.8 cgd }
314 1.39 pk
315 1.77 ad cpup = curcpu()->ci_data.cpu_nch;
316 1.77 ad mutex_enter(&cpup->cpu_lock);
317 1.77 ad if (__predict_false(cnp->cn_namelen > NCHNAMLEN)) {
318 1.77 ad COUNT(cpup->cpu_stats, ncs_long);
319 1.5 mycroft cnp->cn_flags &= ~MAKEENTRY;
320 1.77 ad mutex_exit(&cpup->cpu_lock);
321 1.77 ad *vpp = NULL;
322 1.77 ad return -1;
323 1.1 cgd }
324 1.55 yamt ncp = cache_lookup_entry(dvp, cnp);
325 1.77 ad if (__predict_false(ncp == NULL)) {
326 1.77 ad COUNT(cpup->cpu_stats, ncs_miss);
327 1.77 ad mutex_exit(&cpup->cpu_lock);
328 1.77 ad *vpp = NULL;
329 1.77 ad return -1;
330 1.1 cgd }
331 1.9 mycroft if ((cnp->cn_flags & MAKEENTRY) == 0) {
332 1.77 ad COUNT(cpup->cpu_stats, ncs_badhits);
333 1.77 ad /*
334 1.77 ad * Last component and we are renaming or deleting,
335 1.77 ad * the cache entry is invalid, or otherwise don't
336 1.77 ad * want cache entry to exist.
337 1.77 ad */
338 1.77 ad cache_invalidate(ncp);
339 1.77 ad mutex_exit(&ncp->nc_lock);
340 1.77 ad mutex_exit(&cpup->cpu_lock);
341 1.77 ad *vpp = NULL;
342 1.77 ad return -1;
343 1.1 cgd } else if (ncp->nc_vp == NULL) {
344 1.11 mycroft /*
345 1.11 mycroft * Restore the ISWHITEOUT flag saved earlier.
346 1.11 mycroft */
347 1.79 yamt KASSERT((ncp->nc_flags & ~ISWHITEOUT) == 0);
348 1.50 yamt cnp->cn_flags |= ncp->nc_flags;
349 1.77 ad if (__predict_true(cnp->cn_nameiop != CREATE ||
350 1.77 ad (cnp->cn_flags & ISLASTCN) == 0)) {
351 1.77 ad COUNT(cpup->cpu_stats, ncs_neghits);
352 1.73 ad mutex_exit(&ncp->nc_lock);
353 1.77 ad mutex_exit(&cpup->cpu_lock);
354 1.77 ad return ENOENT;
355 1.20 jdolecek } else {
356 1.77 ad COUNT(cpup->cpu_stats, ncs_badhits);
357 1.77 ad /*
358 1.77 ad * Last component and we are renaming or
359 1.77 ad * deleting, the cache entry is invalid,
360 1.77 ad * or otherwise don't want cache entry to
361 1.77 ad * exist.
362 1.77 ad */
363 1.77 ad cache_invalidate(ncp);
364 1.77 ad mutex_exit(&ncp->nc_lock);
365 1.77 ad mutex_exit(&cpup->cpu_lock);
366 1.77 ad *vpp = NULL;
367 1.77 ad return -1;
368 1.20 jdolecek }
369 1.20 jdolecek }
370 1.20 jdolecek
371 1.20 jdolecek vp = ncp->nc_vp;
372 1.77 ad if (vtryget(vp)) {
373 1.77 ad mutex_exit(&ncp->nc_lock);
374 1.77 ad mutex_exit(&cpup->cpu_lock);
375 1.77 ad } else {
376 1.88 rmind mutex_enter(vp->v_interlock);
377 1.77 ad mutex_exit(&ncp->nc_lock);
378 1.77 ad mutex_exit(&cpup->cpu_lock);
379 1.87 hannken error = vget(vp, LK_NOWAIT);
380 1.77 ad if (error) {
381 1.77 ad KASSERT(error == EBUSY);
382 1.77 ad /*
383 1.77 ad * This vnode is being cleaned out.
384 1.77 ad * XXX badhits?
385 1.77 ad */
386 1.77 ad COUNT(cpup->cpu_stats, ncs_falsehits);
387 1.77 ad *vpp = NULL;
388 1.77 ad return -1;
389 1.77 ad }
390 1.77 ad }
391 1.39 pk
392 1.52 yamt #ifdef DEBUG
393 1.52 yamt /*
394 1.73 ad * since we released nb->nb_lock,
395 1.52 yamt * we can't use this pointer any more.
396 1.52 yamt */
397 1.52 yamt ncp = NULL;
398 1.52 yamt #endif /* DEBUG */
399 1.52 yamt
400 1.20 jdolecek if (vp == dvp) { /* lookup on "." */
401 1.20 jdolecek error = 0;
402 1.20 jdolecek } else if (cnp->cn_flags & ISDOTDOT) {
403 1.85 hannken VOP_UNLOCK(dvp);
404 1.60 yamt error = vn_lock(vp, LK_EXCLUSIVE);
405 1.67 chs vn_lock(dvp, LK_EXCLUSIVE | LK_RETRY);
406 1.1 cgd } else {
407 1.60 yamt error = vn_lock(vp, LK_EXCLUSIVE);
408 1.20 jdolecek }
409 1.20 jdolecek
410 1.20 jdolecek /*
411 1.54 yamt * Check that the lock succeeded.
412 1.20 jdolecek */
413 1.47 yamt if (error) {
414 1.70 ad /* Unlocked, but only for stats. */
415 1.77 ad COUNT(cpup->cpu_stats, ncs_badhits);
416 1.78 pooka vrele(vp);
417 1.31 chs *vpp = NULL;
418 1.77 ad return -1;
419 1.20 jdolecek }
420 1.20 jdolecek
421 1.70 ad /* Unlocked, but only for stats. */
422 1.77 ad COUNT(cpup->cpu_stats, ncs_goodhits);
423 1.20 jdolecek *vpp = vp;
424 1.77 ad return 0;
425 1.1 cgd }
426 1.1 cgd
427 1.61 yamt int
428 1.61 yamt cache_lookup_raw(struct vnode *dvp, struct vnode **vpp,
429 1.61 yamt struct componentname *cnp)
430 1.61 yamt {
431 1.61 yamt struct namecache *ncp;
432 1.61 yamt struct vnode *vp;
433 1.77 ad struct nchcpu *cpup;
434 1.61 yamt int error;
435 1.61 yamt
436 1.77 ad if (__predict_false(!doingcache)) {
437 1.61 yamt cnp->cn_flags &= ~MAKEENTRY;
438 1.61 yamt *vpp = NULL;
439 1.61 yamt return (-1);
440 1.61 yamt }
441 1.61 yamt
442 1.77 ad cpup = curcpu()->ci_data.cpu_nch;
443 1.77 ad mutex_enter(&cpup->cpu_lock);
444 1.77 ad if (__predict_false(cnp->cn_namelen > NCHNAMLEN)) {
445 1.77 ad COUNT(cpup->cpu_stats, ncs_long);
446 1.61 yamt cnp->cn_flags &= ~MAKEENTRY;
447 1.77 ad mutex_exit(&cpup->cpu_lock);
448 1.77 ad *vpp = NULL;
449 1.77 ad return -1;
450 1.61 yamt }
451 1.61 yamt ncp = cache_lookup_entry(dvp, cnp);
452 1.77 ad if (__predict_false(ncp == NULL)) {
453 1.77 ad COUNT(cpup->cpu_stats, ncs_miss);
454 1.77 ad mutex_exit(&cpup->cpu_lock);
455 1.77 ad *vpp = NULL;
456 1.77 ad return -1;
457 1.61 yamt }
458 1.61 yamt vp = ncp->nc_vp;
459 1.61 yamt if (vp == NULL) {
460 1.61 yamt /*
461 1.61 yamt * Restore the ISWHITEOUT flag saved earlier.
462 1.61 yamt */
463 1.79 yamt KASSERT((ncp->nc_flags & ~ISWHITEOUT) == 0);
464 1.61 yamt cnp->cn_flags |= ncp->nc_flags;
465 1.77 ad COUNT(cpup->cpu_stats, ncs_neghits);
466 1.73 ad mutex_exit(&ncp->nc_lock);
467 1.77 ad mutex_exit(&cpup->cpu_lock);
468 1.77 ad return ENOENT;
469 1.61 yamt }
470 1.77 ad if (vtryget(vp)) {
471 1.77 ad mutex_exit(&ncp->nc_lock);
472 1.77 ad mutex_exit(&cpup->cpu_lock);
473 1.77 ad } else {
474 1.88 rmind mutex_enter(vp->v_interlock);
475 1.77 ad mutex_exit(&ncp->nc_lock);
476 1.77 ad mutex_exit(&cpup->cpu_lock);
477 1.87 hannken error = vget(vp, LK_NOWAIT);
478 1.77 ad if (error) {
479 1.77 ad KASSERT(error == EBUSY);
480 1.77 ad /*
481 1.77 ad * This vnode is being cleaned out.
482 1.77 ad * XXX badhits?
483 1.77 ad */
484 1.77 ad COUNT(cpup->cpu_stats, ncs_falsehits);
485 1.77 ad *vpp = NULL;
486 1.77 ad return -1;
487 1.77 ad }
488 1.61 yamt }
489 1.61 yamt
490 1.80 yamt /* Unlocked, but only for stats. */
491 1.80 yamt COUNT(cpup->cpu_stats, ncs_goodhits); /* XXX can be "badhits" */
492 1.61 yamt *vpp = vp;
493 1.61 yamt return 0;
494 1.61 yamt }
495 1.61 yamt
496 1.1 cgd /*
497 1.19 sommerfe * Scan cache looking for name of directory entry pointing at vp.
498 1.19 sommerfe *
499 1.86 hannken * If the lookup succeeds the vnode is referenced and stored in dvpp.
500 1.19 sommerfe *
501 1.19 sommerfe * If bufp is non-NULL, also place the name in the buffer which starts
502 1.19 sommerfe * at bufp, immediately before *bpp, and move bpp backwards to point
503 1.19 sommerfe * at the start of it. (Yes, this is a little baroque, but it's done
504 1.19 sommerfe * this way to cater to the whims of getcwd).
505 1.19 sommerfe *
506 1.19 sommerfe * Returns 0 on success, -1 on cache miss, positive errno on failure.
507 1.19 sommerfe */
508 1.19 sommerfe int
509 1.34 enami cache_revlookup(struct vnode *vp, struct vnode **dvpp, char **bpp, char *bufp)
510 1.19 sommerfe {
511 1.19 sommerfe struct namecache *ncp;
512 1.19 sommerfe struct vnode *dvp;
513 1.19 sommerfe struct ncvhashhead *nvcpp;
514 1.34 enami char *bp;
515 1.86 hannken int error, nlen;
516 1.34 enami
517 1.19 sommerfe if (!doingcache)
518 1.19 sommerfe goto out;
519 1.19 sommerfe
520 1.30 chs nvcpp = &ncvhashtbl[NCVHASH(vp)];
521 1.19 sommerfe
522 1.73 ad mutex_enter(namecache_lock);
523 1.27 chs LIST_FOREACH(ncp, nvcpp, nc_vhash) {
524 1.73 ad mutex_enter(&ncp->nc_lock);
525 1.34 enami if (ncp->nc_vp == vp &&
526 1.34 enami (dvp = ncp->nc_dvp) != NULL &&
527 1.47 yamt dvp != vp) { /* avoid pesky . entries.. */
528 1.34 enami
529 1.19 sommerfe #ifdef DIAGNOSTIC
530 1.34 enami if (ncp->nc_nlen == 1 &&
531 1.34 enami ncp->nc_name[0] == '.')
532 1.19 sommerfe panic("cache_revlookup: found entry for .");
533 1.19 sommerfe
534 1.34 enami if (ncp->nc_nlen == 2 &&
535 1.34 enami ncp->nc_name[0] == '.' &&
536 1.34 enami ncp->nc_name[1] == '.')
537 1.19 sommerfe panic("cache_revlookup: found entry for ..");
538 1.19 sommerfe #endif
539 1.77 ad COUNT(nchstats, ncs_revhits);
540 1.86 hannken nlen = ncp->nc_nlen;
541 1.19 sommerfe
542 1.19 sommerfe if (bufp) {
543 1.19 sommerfe bp = *bpp;
544 1.86 hannken bp -= nlen;
545 1.19 sommerfe if (bp <= bufp) {
546 1.34 enami *dvpp = NULL;
547 1.73 ad mutex_exit(&ncp->nc_lock);
548 1.73 ad mutex_exit(namecache_lock);
549 1.34 enami return (ERANGE);
550 1.19 sommerfe }
551 1.86 hannken memcpy(bp, ncp->nc_name, nlen);
552 1.19 sommerfe *bpp = bp;
553 1.19 sommerfe }
554 1.34 enami
555 1.86 hannken if (vtryget(dvp)) {
556 1.86 hannken mutex_exit(&ncp->nc_lock);
557 1.86 hannken mutex_exit(namecache_lock);
558 1.86 hannken } else {
559 1.88 rmind mutex_enter(dvp->v_interlock);
560 1.86 hannken mutex_exit(&ncp->nc_lock);
561 1.86 hannken mutex_exit(namecache_lock);
562 1.87 hannken error = vget(dvp, LK_NOWAIT);
563 1.86 hannken if (error) {
564 1.86 hannken KASSERT(error == EBUSY);
565 1.86 hannken if (bufp)
566 1.86 hannken (*bpp) += nlen;
567 1.86 hannken *dvpp = NULL;
568 1.86 hannken return -1;
569 1.86 hannken }
570 1.86 hannken }
571 1.19 sommerfe *dvpp = dvp;
572 1.34 enami return (0);
573 1.19 sommerfe }
574 1.73 ad mutex_exit(&ncp->nc_lock);
575 1.19 sommerfe }
576 1.77 ad COUNT(nchstats, ncs_revmiss);
577 1.73 ad mutex_exit(namecache_lock);
578 1.19 sommerfe out:
579 1.34 enami *dvpp = NULL;
580 1.34 enami return (-1);
581 1.19 sommerfe }
582 1.19 sommerfe
583 1.19 sommerfe /*
584 1.1 cgd * Add an entry to the cache
585 1.1 cgd */
586 1.13 christos void
587 1.34 enami cache_enter(struct vnode *dvp, struct vnode *vp, struct componentname *cnp)
588 1.1 cgd {
589 1.23 augustss struct namecache *ncp;
590 1.59 yamt struct namecache *oncp;
591 1.23 augustss struct nchashhead *ncpp;
592 1.23 augustss struct ncvhashhead *nvcpp;
593 1.1 cgd
594 1.89 rmind /* First, check whether we can/should add a cache entry. */
595 1.89 rmind if ((cnp->cn_flags & MAKEENTRY) == 0 ||
596 1.89 rmind __predict_false(cnp->cn_namelen > NCHNAMLEN || !doingcache)) {
597 1.1 cgd return;
598 1.89 rmind }
599 1.58 yamt
600 1.73 ad if (numcache > desiredvnodes) {
601 1.73 ad mutex_enter(namecache_lock);
602 1.73 ad cache_ev_forced.ev_count++;
603 1.73 ad cache_reclaim();
604 1.73 ad mutex_exit(namecache_lock);
605 1.39 pk }
606 1.57 pk
607 1.73 ad ncp = pool_cache_get(namecache_cache, PR_WAITOK);
608 1.73 ad mutex_enter(namecache_lock);
609 1.73 ad numcache++;
610 1.73 ad
611 1.59 yamt /*
612 1.59 yamt * Concurrent lookups in the same directory may race for a
613 1.59 yamt * cache entry. if there's a duplicated entry, free it.
614 1.59 yamt */
615 1.59 yamt oncp = cache_lookup_entry(dvp, cnp);
616 1.59 yamt if (oncp) {
617 1.73 ad cache_invalidate(oncp);
618 1.73 ad mutex_exit(&oncp->nc_lock);
619 1.59 yamt }
620 1.59 yamt
621 1.34 enami /* Grab the vnode we just found. */
622 1.73 ad mutex_enter(&ncp->nc_lock);
623 1.5 mycroft ncp->nc_vp = vp;
624 1.73 ad ncp->nc_flags = 0;
625 1.73 ad ncp->nc_hittime = 0;
626 1.73 ad ncp->nc_gcqueue = NULL;
627 1.47 yamt if (vp == NULL) {
628 1.11 mycroft /*
629 1.11 mycroft * For negative hits, save the ISWHITEOUT flag so we can
630 1.11 mycroft * restore it later when the cache entry is used again.
631 1.11 mycroft */
632 1.50 yamt ncp->nc_flags = cnp->cn_flags & ISWHITEOUT;
633 1.11 mycroft }
634 1.89 rmind
635 1.34 enami /* Fill in cache info. */
636 1.5 mycroft ncp->nc_dvp = dvp;
637 1.46 yamt LIST_INSERT_HEAD(&dvp->v_dnclist, ncp, nc_dvlist);
638 1.46 yamt if (vp)
639 1.46 yamt LIST_INSERT_HEAD(&vp->v_nclist, ncp, nc_vlist);
640 1.73 ad else {
641 1.73 ad ncp->nc_vlist.le_prev = NULL;
642 1.73 ad ncp->nc_vlist.le_next = NULL;
643 1.73 ad }
644 1.89 rmind KASSERT(cnp->cn_namelen <= NCHNAMLEN);
645 1.5 mycroft ncp->nc_nlen = cnp->cn_namelen;
646 1.89 rmind memcpy(ncp->nc_name, cnp->cn_nameptr, (unsigned)ncp->nc_nlen);
647 1.73 ad TAILQ_INSERT_TAIL(&nclruhead, ncp, nc_lru);
648 1.30 chs ncpp = &nchashtbl[NCHASH(cnp, dvp)];
649 1.73 ad
650 1.73 ad /*
651 1.73 ad * Flush updates before making visible in table. No need for a
652 1.73 ad * memory barrier on the other side: to see modifications the
653 1.73 ad * list must be followed, meaning a dependent pointer load.
654 1.74 ad * The below is LIST_INSERT_HEAD() inlined, with the memory
655 1.74 ad * barrier included in the correct place.
656 1.73 ad */
657 1.74 ad if ((ncp->nc_hash.le_next = ncpp->lh_first) != NULL)
658 1.74 ad ncpp->lh_first->nc_hash.le_prev = &ncp->nc_hash.le_next;
659 1.74 ad ncp->nc_hash.le_prev = &ncpp->lh_first;
660 1.73 ad membar_producer();
661 1.74 ad ncpp->lh_first = ncp;
662 1.19 sommerfe
663 1.34 enami ncp->nc_vhash.le_prev = NULL;
664 1.34 enami ncp->nc_vhash.le_next = NULL;
665 1.34 enami
666 1.19 sommerfe /*
667 1.19 sommerfe * Create reverse-cache entries (used in getcwd) for directories.
668 1.66 christos * (and in linux procfs exe node)
669 1.19 sommerfe */
670 1.33 enami if (vp != NULL &&
671 1.33 enami vp != dvp &&
672 1.29 fvdl #ifndef NAMECACHE_ENTER_REVERSE
673 1.33 enami vp->v_type == VDIR &&
674 1.29 fvdl #endif
675 1.33 enami (ncp->nc_nlen > 2 ||
676 1.33 enami (ncp->nc_nlen > 1 && ncp->nc_name[1] != '.') ||
677 1.33 enami (/* ncp->nc_nlen > 0 && */ ncp->nc_name[0] != '.'))) {
678 1.30 chs nvcpp = &ncvhashtbl[NCVHASH(vp)];
679 1.19 sommerfe LIST_INSERT_HEAD(nvcpp, ncp, nc_vhash);
680 1.19 sommerfe }
681 1.73 ad mutex_exit(&ncp->nc_lock);
682 1.73 ad mutex_exit(namecache_lock);
683 1.1 cgd }
684 1.1 cgd
685 1.1 cgd /*
686 1.1 cgd * Name cache initialization, from vfs_init() when we are booting
687 1.1 cgd */
688 1.13 christos void
689 1.34 enami nchinit(void)
690 1.1 cgd {
691 1.73 ad int error;
692 1.1 cgd
693 1.89 rmind TAILQ_INIT(&nclruhead);
694 1.73 ad namecache_cache = pool_cache_init(sizeof(struct namecache),
695 1.73 ad coherency_unit, 0, 0, "ncache", NULL, IPL_NONE, cache_ctor,
696 1.73 ad cache_dtor, NULL);
697 1.71 ad KASSERT(namecache_cache != NULL);
698 1.71 ad
699 1.73 ad namecache_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
700 1.73 ad
701 1.76 ad nchashtbl = hashinit(desiredvnodes, HASH_LIST, true, &nchash);
702 1.26 ad ncvhashtbl =
703 1.29 fvdl #ifdef NAMECACHE_ENTER_REVERSE
704 1.76 ad hashinit(desiredvnodes, HASH_LIST, true, &ncvhash);
705 1.29 fvdl #else
706 1.76 ad hashinit(desiredvnodes/8, HASH_LIST, true, &ncvhash);
707 1.29 fvdl #endif
708 1.73 ad
709 1.73 ad error = kthread_create(PRI_VM, KTHREAD_MPSAFE, NULL, cache_thread,
710 1.73 ad NULL, NULL, "cachegc");
711 1.73 ad if (error != 0)
712 1.73 ad panic("nchinit %d", error);
713 1.73 ad
714 1.73 ad evcnt_attach_dynamic(&cache_ev_scan, EVCNT_TYPE_MISC, NULL,
715 1.73 ad "namecache", "entries scanned");
716 1.73 ad evcnt_attach_dynamic(&cache_ev_gc, EVCNT_TYPE_MISC, NULL,
717 1.73 ad "namecache", "entries collected");
718 1.73 ad evcnt_attach_dynamic(&cache_ev_over, EVCNT_TYPE_MISC, NULL,
719 1.73 ad "namecache", "over scan target");
720 1.73 ad evcnt_attach_dynamic(&cache_ev_under, EVCNT_TYPE_MISC, NULL,
721 1.73 ad "namecache", "under scan target");
722 1.73 ad evcnt_attach_dynamic(&cache_ev_forced, EVCNT_TYPE_MISC, NULL,
723 1.73 ad "namecache", "forced reclaims");
724 1.73 ad }
725 1.73 ad
726 1.73 ad static int
727 1.73 ad cache_ctor(void *arg, void *obj, int flag)
728 1.73 ad {
729 1.73 ad struct namecache *ncp;
730 1.73 ad
731 1.73 ad ncp = obj;
732 1.73 ad mutex_init(&ncp->nc_lock, MUTEX_DEFAULT, IPL_NONE);
733 1.73 ad
734 1.73 ad return 0;
735 1.73 ad }
736 1.73 ad
737 1.73 ad static void
738 1.73 ad cache_dtor(void *arg, void *obj)
739 1.73 ad {
740 1.73 ad struct namecache *ncp;
741 1.73 ad
742 1.73 ad ncp = obj;
743 1.73 ad mutex_destroy(&ncp->nc_lock);
744 1.73 ad }
745 1.73 ad
746 1.73 ad /*
747 1.73 ad * Called once for each CPU in the system as attached.
748 1.73 ad */
749 1.73 ad void
750 1.73 ad cache_cpu_init(struct cpu_info *ci)
751 1.73 ad {
752 1.77 ad struct nchcpu *cpup;
753 1.77 ad size_t sz;
754 1.73 ad
755 1.77 ad sz = roundup2(sizeof(*cpup), coherency_unit) + coherency_unit;
756 1.77 ad cpup = kmem_zalloc(sz, KM_SLEEP);
757 1.77 ad cpup = (void *)roundup2((uintptr_t)cpup, coherency_unit);
758 1.77 ad mutex_init(&cpup->cpu_lock, MUTEX_DEFAULT, IPL_NONE);
759 1.77 ad ci->ci_data.cpu_nch = cpup;
760 1.30 chs }
761 1.30 chs
762 1.30 chs /*
763 1.30 chs * Name cache reinitialization, for when the maximum number of vnodes increases.
764 1.30 chs */
765 1.30 chs void
766 1.34 enami nchreinit(void)
767 1.30 chs {
768 1.30 chs struct namecache *ncp;
769 1.30 chs struct nchashhead *oldhash1, *hash1;
770 1.30 chs struct ncvhashhead *oldhash2, *hash2;
771 1.36 thorpej u_long i, oldmask1, oldmask2, mask1, mask2;
772 1.30 chs
773 1.76 ad hash1 = hashinit(desiredvnodes, HASH_LIST, true, &mask1);
774 1.30 chs hash2 =
775 1.30 chs #ifdef NAMECACHE_ENTER_REVERSE
776 1.76 ad hashinit(desiredvnodes, HASH_LIST, true, &mask2);
777 1.30 chs #else
778 1.76 ad hashinit(desiredvnodes/8, HASH_LIST, true, &mask2);
779 1.30 chs #endif
780 1.73 ad mutex_enter(namecache_lock);
781 1.73 ad cache_lock_cpus();
782 1.30 chs oldhash1 = nchashtbl;
783 1.30 chs oldmask1 = nchash;
784 1.30 chs nchashtbl = hash1;
785 1.30 chs nchash = mask1;
786 1.30 chs oldhash2 = ncvhashtbl;
787 1.30 chs oldmask2 = ncvhash;
788 1.30 chs ncvhashtbl = hash2;
789 1.30 chs ncvhash = mask2;
790 1.30 chs for (i = 0; i <= oldmask1; i++) {
791 1.30 chs while ((ncp = LIST_FIRST(&oldhash1[i])) != NULL) {
792 1.30 chs LIST_REMOVE(ncp, nc_hash);
793 1.30 chs ncp->nc_hash.le_prev = NULL;
794 1.30 chs }
795 1.30 chs }
796 1.30 chs for (i = 0; i <= oldmask2; i++) {
797 1.30 chs while ((ncp = LIST_FIRST(&oldhash2[i])) != NULL) {
798 1.30 chs LIST_REMOVE(ncp, nc_vhash);
799 1.30 chs ncp->nc_vhash.le_prev = NULL;
800 1.30 chs }
801 1.30 chs }
802 1.73 ad cache_unlock_cpus();
803 1.73 ad mutex_exit(namecache_lock);
804 1.76 ad hashdone(oldhash1, HASH_LIST, oldmask1);
805 1.76 ad hashdone(oldhash2, HASH_LIST, oldmask2);
806 1.1 cgd }
807 1.1 cgd
808 1.1 cgd /*
809 1.1 cgd * Cache flush, a particular vnode; called when a vnode is renamed to
810 1.1 cgd * hide entries that would now be invalid
811 1.1 cgd */
812 1.13 christos void
813 1.55 yamt cache_purge1(struct vnode *vp, const struct componentname *cnp, int flags)
814 1.1 cgd {
815 1.46 yamt struct namecache *ncp, *ncnext;
816 1.1 cgd
817 1.73 ad mutex_enter(namecache_lock);
818 1.55 yamt if (flags & PURGE_PARENTS) {
819 1.55 yamt for (ncp = LIST_FIRST(&vp->v_nclist); ncp != NULL;
820 1.55 yamt ncp = ncnext) {
821 1.55 yamt ncnext = LIST_NEXT(ncp, nc_vlist);
822 1.73 ad mutex_enter(&ncp->nc_lock);
823 1.73 ad cache_invalidate(ncp);
824 1.73 ad mutex_exit(&ncp->nc_lock);
825 1.73 ad cache_disassociate(ncp);
826 1.55 yamt }
827 1.55 yamt }
828 1.55 yamt if (flags & PURGE_CHILDREN) {
829 1.55 yamt for (ncp = LIST_FIRST(&vp->v_dnclist); ncp != NULL;
830 1.55 yamt ncp = ncnext) {
831 1.55 yamt ncnext = LIST_NEXT(ncp, nc_dvlist);
832 1.73 ad mutex_enter(&ncp->nc_lock);
833 1.73 ad cache_invalidate(ncp);
834 1.73 ad mutex_exit(&ncp->nc_lock);
835 1.73 ad cache_disassociate(ncp);
836 1.55 yamt }
837 1.46 yamt }
838 1.55 yamt if (cnp != NULL) {
839 1.55 yamt ncp = cache_lookup_entry(vp, cnp);
840 1.55 yamt if (ncp) {
841 1.73 ad cache_invalidate(ncp);
842 1.83 yamt mutex_exit(&ncp->nc_lock);
843 1.73 ad cache_disassociate(ncp);
844 1.55 yamt }
845 1.46 yamt }
846 1.73 ad mutex_exit(namecache_lock);
847 1.1 cgd }
848 1.1 cgd
849 1.1 cgd /*
850 1.1 cgd * Cache flush, a whole filesystem; called when filesys is umounted to
851 1.27 chs * remove entries that would now be invalid.
852 1.1 cgd */
853 1.13 christos void
854 1.34 enami cache_purgevfs(struct mount *mp)
855 1.1 cgd {
856 1.23 augustss struct namecache *ncp, *nxtcp;
857 1.1 cgd
858 1.73 ad mutex_enter(namecache_lock);
859 1.73 ad for (ncp = TAILQ_FIRST(&nclruhead); ncp != NULL; ncp = nxtcp) {
860 1.73 ad nxtcp = TAILQ_NEXT(ncp, nc_lru);
861 1.73 ad mutex_enter(&ncp->nc_lock);
862 1.73 ad if (ncp->nc_dvp != NULL && ncp->nc_dvp->v_mount == mp) {
863 1.73 ad /* Free the resources we had. */
864 1.73 ad cache_invalidate(ncp);
865 1.73 ad cache_disassociate(ncp);
866 1.73 ad }
867 1.73 ad mutex_exit(&ncp->nc_lock);
868 1.73 ad }
869 1.73 ad cache_reclaim();
870 1.73 ad mutex_exit(namecache_lock);
871 1.73 ad }
872 1.73 ad
873 1.73 ad /*
874 1.73 ad * Scan global list invalidating entries until we meet a preset target.
875 1.73 ad * Prefer to invalidate entries that have not scored a hit within
876 1.73 ad * cache_hottime seconds. We sort the LRU list only for this routine's
877 1.73 ad * benefit.
878 1.73 ad */
879 1.73 ad static void
880 1.73 ad cache_prune(int incache, int target)
881 1.73 ad {
882 1.73 ad struct namecache *ncp, *nxtcp, *sentinel;
883 1.73 ad int items, recent, tryharder;
884 1.73 ad
885 1.73 ad KASSERT(mutex_owned(namecache_lock));
886 1.73 ad
887 1.73 ad items = 0;
888 1.73 ad tryharder = 0;
889 1.73 ad recent = hardclock_ticks - hz * cache_hottime;
890 1.73 ad sentinel = NULL;
891 1.27 chs for (ncp = TAILQ_FIRST(&nclruhead); ncp != NULL; ncp = nxtcp) {
892 1.73 ad if (incache <= target)
893 1.73 ad break;
894 1.73 ad items++;
895 1.27 chs nxtcp = TAILQ_NEXT(ncp, nc_lru);
896 1.73 ad if (ncp->nc_dvp == NULL)
897 1.1 cgd continue;
898 1.73 ad if (ncp == sentinel) {
899 1.73 ad /*
900 1.73 ad * If we looped back on ourself, then ignore
901 1.73 ad * recent entries and purge whatever we find.
902 1.73 ad */
903 1.73 ad tryharder = 1;
904 1.5 mycroft }
905 1.81 yamt if (!tryharder && (ncp->nc_hittime - recent) > 0) {
906 1.73 ad if (sentinel == NULL)
907 1.73 ad sentinel = ncp;
908 1.73 ad TAILQ_REMOVE(&nclruhead, ncp, nc_lru);
909 1.73 ad TAILQ_INSERT_TAIL(&nclruhead, ncp, nc_lru);
910 1.73 ad continue;
911 1.73 ad }
912 1.73 ad mutex_enter(&ncp->nc_lock);
913 1.73 ad if (ncp->nc_dvp != NULL) {
914 1.73 ad cache_invalidate(ncp);
915 1.73 ad cache_disassociate(ncp);
916 1.73 ad incache--;
917 1.73 ad }
918 1.73 ad mutex_exit(&ncp->nc_lock);
919 1.73 ad }
920 1.73 ad cache_ev_scan.ev_count += items;
921 1.73 ad }
922 1.73 ad
923 1.73 ad /*
924 1.73 ad * Collect dead cache entries from all CPUs and garbage collect.
925 1.73 ad */
926 1.73 ad static void
927 1.73 ad cache_reclaim(void)
928 1.73 ad {
929 1.73 ad struct namecache *ncp, *next;
930 1.73 ad int items;
931 1.73 ad
932 1.73 ad KASSERT(mutex_owned(namecache_lock));
933 1.73 ad
934 1.73 ad /*
935 1.73 ad * If the number of extant entries not awaiting garbage collection
936 1.73 ad * exceeds the high water mark, then reclaim stale entries until we
937 1.73 ad * reach our low water mark.
938 1.73 ad */
939 1.73 ad items = numcache - cache_gcpend;
940 1.73 ad if (items > (uint64_t)desiredvnodes * cache_hiwat / 100) {
941 1.73 ad cache_prune(items, (int)((uint64_t)desiredvnodes *
942 1.73 ad cache_lowat / 100));
943 1.73 ad cache_ev_over.ev_count++;
944 1.73 ad } else
945 1.73 ad cache_ev_under.ev_count++;
946 1.73 ad
947 1.73 ad /*
948 1.73 ad * Stop forward lookup activity on all CPUs and garbage collect dead
949 1.73 ad * entries.
950 1.73 ad */
951 1.73 ad cache_lock_cpus();
952 1.73 ad ncp = cache_gcqueue;
953 1.73 ad cache_gcqueue = NULL;
954 1.73 ad items = cache_gcpend;
955 1.73 ad cache_gcpend = 0;
956 1.73 ad while (ncp != NULL) {
957 1.73 ad next = ncp->nc_gcqueue;
958 1.73 ad cache_disassociate(ncp);
959 1.73 ad KASSERT(ncp->nc_dvp == NULL);
960 1.73 ad if (ncp->nc_hash.le_prev != NULL) {
961 1.73 ad LIST_REMOVE(ncp, nc_hash);
962 1.73 ad ncp->nc_hash.le_prev = NULL;
963 1.73 ad }
964 1.73 ad pool_cache_put(namecache_cache, ncp);
965 1.73 ad ncp = next;
966 1.73 ad }
967 1.73 ad cache_unlock_cpus();
968 1.73 ad numcache -= items;
969 1.73 ad cache_ev_gc.ev_count += items;
970 1.73 ad }
971 1.73 ad
972 1.73 ad /*
973 1.73 ad * Cache maintainence thread, awakening once per second to:
974 1.73 ad *
975 1.73 ad * => keep number of entries below the high water mark
976 1.73 ad * => sort pseudo-LRU list
977 1.73 ad * => garbage collect dead entries
978 1.73 ad */
979 1.73 ad static void
980 1.73 ad cache_thread(void *arg)
981 1.73 ad {
982 1.73 ad
983 1.73 ad mutex_enter(namecache_lock);
984 1.73 ad for (;;) {
985 1.73 ad cache_reclaim();
986 1.73 ad kpause("cachegc", false, hz, namecache_lock);
987 1.1 cgd }
988 1.1 cgd }
989 1.19 sommerfe
990 1.28 chs #ifdef DDB
991 1.28 chs void
992 1.28 chs namecache_print(struct vnode *vp, void (*pr)(const char *, ...))
993 1.28 chs {
994 1.28 chs struct vnode *dvp = NULL;
995 1.28 chs struct namecache *ncp;
996 1.28 chs
997 1.28 chs TAILQ_FOREACH(ncp, &nclruhead, nc_lru) {
998 1.73 ad if (ncp->nc_vp == vp && ncp->nc_dvp != NULL) {
999 1.28 chs (*pr)("name %.*s\n", ncp->nc_nlen, ncp->nc_name);
1000 1.28 chs dvp = ncp->nc_dvp;
1001 1.28 chs }
1002 1.28 chs }
1003 1.28 chs if (dvp == NULL) {
1004 1.28 chs (*pr)("name not found\n");
1005 1.28 chs return;
1006 1.28 chs }
1007 1.28 chs vp = dvp;
1008 1.28 chs TAILQ_FOREACH(ncp, &nclruhead, nc_lru) {
1009 1.47 yamt if (ncp->nc_vp == vp) {
1010 1.28 chs (*pr)("parent %.*s\n", ncp->nc_nlen, ncp->nc_name);
1011 1.28 chs }
1012 1.28 chs }
1013 1.28 chs }
1014 1.28 chs #endif
1015