vfs_vnode.c revision 1.151 1 1.151 riastrad /* $NetBSD: vfs_vnode.c,v 1.151 2023/11/22 13:19:50 riastradh Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.111 ad * Copyright (c) 1997-2011, 2019, 2020 The NetBSD Foundation, Inc.
5 1.1 rmind * All rights reserved.
6 1.1 rmind *
7 1.1 rmind * This code is derived from software contributed to The NetBSD Foundation
8 1.1 rmind * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.1 rmind * NASA Ames Research Center, by Charles M. Hannum, and by Andrew Doran.
10 1.1 rmind *
11 1.1 rmind * Redistribution and use in source and binary forms, with or without
12 1.1 rmind * modification, are permitted provided that the following conditions
13 1.1 rmind * are met:
14 1.1 rmind * 1. Redistributions of source code must retain the above copyright
15 1.1 rmind * notice, this list of conditions and the following disclaimer.
16 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 rmind * notice, this list of conditions and the following disclaimer in the
18 1.1 rmind * documentation and/or other materials provided with the distribution.
19 1.1 rmind *
20 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.1 rmind * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 rmind * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 rmind * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.1 rmind * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 rmind * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 rmind * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 rmind * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 rmind * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 rmind * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 rmind * POSSIBILITY OF SUCH DAMAGE.
31 1.1 rmind */
32 1.1 rmind
33 1.1 rmind /*
34 1.1 rmind * Copyright (c) 1989, 1993
35 1.1 rmind * The Regents of the University of California. All rights reserved.
36 1.1 rmind * (c) UNIX System Laboratories, Inc.
37 1.1 rmind * All or some portions of this file are derived from material licensed
38 1.1 rmind * to the University of California by American Telephone and Telegraph
39 1.1 rmind * Co. or Unix System Laboratories, Inc. and are reproduced herein with
40 1.1 rmind * the permission of UNIX System Laboratories, Inc.
41 1.1 rmind *
42 1.1 rmind * Redistribution and use in source and binary forms, with or without
43 1.1 rmind * modification, are permitted provided that the following conditions
44 1.1 rmind * are met:
45 1.1 rmind * 1. Redistributions of source code must retain the above copyright
46 1.1 rmind * notice, this list of conditions and the following disclaimer.
47 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
48 1.1 rmind * notice, this list of conditions and the following disclaimer in the
49 1.1 rmind * documentation and/or other materials provided with the distribution.
50 1.1 rmind * 3. Neither the name of the University nor the names of its contributors
51 1.1 rmind * may be used to endorse or promote products derived from this software
52 1.1 rmind * without specific prior written permission.
53 1.1 rmind *
54 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
55 1.1 rmind * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
56 1.1 rmind * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
57 1.1 rmind * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
58 1.1 rmind * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
59 1.1 rmind * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
60 1.1 rmind * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
61 1.1 rmind * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
62 1.1 rmind * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
63 1.1 rmind * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
64 1.1 rmind * SUCH DAMAGE.
65 1.1 rmind *
66 1.1 rmind * @(#)vfs_subr.c 8.13 (Berkeley) 4/18/94
67 1.1 rmind */
68 1.1 rmind
69 1.1 rmind /*
70 1.8 rmind * The vnode cache subsystem.
71 1.1 rmind *
72 1.8 rmind * Life-cycle
73 1.1 rmind *
74 1.8 rmind * Normally, there are two points where new vnodes are created:
75 1.8 rmind * VOP_CREATE(9) and VOP_LOOKUP(9). The life-cycle of a vnode
76 1.8 rmind * starts in one of the following ways:
77 1.8 rmind *
78 1.45 hannken * - Allocation, via vcache_get(9) or vcache_new(9).
79 1.66 hannken * - Reclamation of inactive vnode, via vcache_vget(9).
80 1.8 rmind *
81 1.16 rmind * Recycle from a free list, via getnewvnode(9) -> getcleanvnode(9)
82 1.16 rmind * was another, traditional way. Currently, only the draining thread
83 1.16 rmind * recycles the vnodes. This behaviour might be revisited.
84 1.16 rmind *
85 1.8 rmind * The life-cycle ends when the last reference is dropped, usually
86 1.8 rmind * in VOP_REMOVE(9). In such case, VOP_INACTIVE(9) is called to inform
87 1.8 rmind * the file system that vnode is inactive. Via this call, file system
88 1.16 rmind * indicates whether vnode can be recycled (usually, it checks its own
89 1.16 rmind * references, e.g. count of links, whether the file was removed).
90 1.8 rmind *
91 1.8 rmind * Depending on indication, vnode can be put into a free list (cache),
92 1.54 hannken * or cleaned via vcache_reclaim, which calls VOP_RECLAIM(9) to
93 1.54 hannken * disassociate underlying file system from the vnode, and finally
94 1.54 hannken * destroyed.
95 1.8 rmind *
96 1.52 hannken * Vnode state
97 1.52 hannken *
98 1.52 hannken * Vnode is always in one of six states:
99 1.52 hannken * - MARKER This is a marker vnode to help list traversal. It
100 1.52 hannken * will never change its state.
101 1.52 hannken * - LOADING Vnode is associating underlying file system and not
102 1.52 hannken * yet ready to use.
103 1.94 hannken * - LOADED Vnode has associated underlying file system and is
104 1.52 hannken * ready to use.
105 1.52 hannken * - BLOCKED Vnode is active but cannot get new references.
106 1.52 hannken * - RECLAIMING Vnode is disassociating from the underlying file
107 1.52 hannken * system.
108 1.52 hannken * - RECLAIMED Vnode has disassociated from underlying file system
109 1.52 hannken * and is dead.
110 1.52 hannken *
111 1.52 hannken * Valid state changes are:
112 1.94 hannken * LOADING -> LOADED
113 1.52 hannken * Vnode has been initialised in vcache_get() or
114 1.52 hannken * vcache_new() and is ready to use.
115 1.123 ad * BLOCKED -> RECLAIMING
116 1.52 hannken * Vnode starts disassociation from underlying file
117 1.54 hannken * system in vcache_reclaim().
118 1.52 hannken * RECLAIMING -> RECLAIMED
119 1.52 hannken * Vnode finished disassociation from underlying file
120 1.54 hannken * system in vcache_reclaim().
121 1.94 hannken * LOADED -> BLOCKED
122 1.52 hannken * Either vcache_rekey*() is changing the vnode key or
123 1.52 hannken * vrelel() is about to call VOP_INACTIVE().
124 1.94 hannken * BLOCKED -> LOADED
125 1.52 hannken * The block condition is over.
126 1.52 hannken * LOADING -> RECLAIMED
127 1.52 hannken * Either vcache_get() or vcache_new() failed to
128 1.52 hannken * associate the underlying file system or vcache_rekey*()
129 1.52 hannken * drops a vnode used as placeholder.
130 1.52 hannken *
131 1.52 hannken * Of these states LOADING, BLOCKED and RECLAIMING are intermediate
132 1.52 hannken * and it is possible to wait for state change.
133 1.52 hannken *
134 1.52 hannken * State is protected with v_interlock with one exception:
135 1.69 hannken * to change from LOADING both v_interlock and vcache_lock must be held
136 1.52 hannken * so it is possible to check "state == LOADING" without holding
137 1.52 hannken * v_interlock. See vcache_get() for details.
138 1.52 hannken *
139 1.8 rmind * Reference counting
140 1.8 rmind *
141 1.8 rmind * Vnode is considered active, if reference count (vnode_t::v_usecount)
142 1.8 rmind * is non-zero. It is maintained using: vref(9) and vrele(9), as well
143 1.8 rmind * as vput(9), routines. Common points holding references are e.g.
144 1.146 riastrad * file openings, current working directory, mount points, etc.
145 1.8 rmind *
146 1.123 ad * v_usecount is adjusted with atomic operations, however to change
147 1.123 ad * from a non-zero value to zero the interlock must also be held.
148 1.1 rmind */
149 1.1 rmind
150 1.1 rmind #include <sys/cdefs.h>
151 1.151 riastrad __KERNEL_RCSID(0, "$NetBSD: vfs_vnode.c,v 1.151 2023/11/22 13:19:50 riastradh Exp $");
152 1.108 ad
153 1.109 ad #ifdef _KERNEL_OPT
154 1.108 ad #include "opt_pax.h"
155 1.109 ad #endif
156 1.1 rmind
157 1.1 rmind #include <sys/param.h>
158 1.1 rmind #include <sys/kernel.h>
159 1.1 rmind
160 1.1 rmind #include <sys/atomic.h>
161 1.1 rmind #include <sys/buf.h>
162 1.1 rmind #include <sys/conf.h>
163 1.1 rmind #include <sys/device.h>
164 1.36 hannken #include <sys/hash.h>
165 1.1 rmind #include <sys/kauth.h>
166 1.1 rmind #include <sys/kmem.h>
167 1.1 rmind #include <sys/kthread.h>
168 1.1 rmind #include <sys/module.h>
169 1.1 rmind #include <sys/mount.h>
170 1.1 rmind #include <sys/namei.h>
171 1.108 ad #include <sys/pax.h>
172 1.1 rmind #include <sys/syscallargs.h>
173 1.1 rmind #include <sys/sysctl.h>
174 1.1 rmind #include <sys/systm.h>
175 1.58 hannken #include <sys/vnode_impl.h>
176 1.1 rmind #include <sys/wapbl.h>
177 1.24 hannken #include <sys/fstrans.h>
178 1.1 rmind
179 1.146 riastrad #include <miscfs/deadfs/deadfs.h>
180 1.147 riastrad #include <miscfs/specfs/specdev.h>
181 1.146 riastrad
182 1.1 rmind #include <uvm/uvm.h>
183 1.1 rmind #include <uvm/uvm_readahead.h>
184 1.104 ad #include <uvm/uvm_stat.h>
185 1.1 rmind
186 1.23 hannken /* Flags to vrelel. */
187 1.104 ad #define VRELEL_ASYNC 0x0001 /* Always defer to vrele thread. */
188 1.104 ad
189 1.104 ad #define LRU_VRELE 0
190 1.104 ad #define LRU_FREE 1
191 1.104 ad #define LRU_HOLD 2
192 1.104 ad #define LRU_COUNT 3
193 1.1 rmind
194 1.16 rmind /*
195 1.63 hannken * There are three lru lists: one holds vnodes waiting for async release,
196 1.104 ad * one is for vnodes which have no buffer/page references and one for those
197 1.104 ad * which do (i.e. v_holdcnt is non-zero). We put the lists into a single,
198 1.104 ad * private cache line as vnodes migrate between them while under the same
199 1.104 ad * lock (vdrain_lock).
200 1.63 hannken */
201 1.104 ad u_int numvnodes __cacheline_aligned;
202 1.104 ad static vnodelst_t lru_list[LRU_COUNT] __cacheline_aligned;
203 1.63 hannken static kmutex_t vdrain_lock __cacheline_aligned;
204 1.104 ad static kcondvar_t vdrain_cv;
205 1.63 hannken static int vdrain_gen;
206 1.63 hannken static kcondvar_t vdrain_gen_cv;
207 1.63 hannken static bool vdrain_retry;
208 1.63 hannken static lwp_t * vdrain_lwp;
209 1.57 hannken SLIST_HEAD(hashhead, vnode_impl);
210 1.69 hannken static kmutex_t vcache_lock __cacheline_aligned;
211 1.104 ad static kcondvar_t vcache_cv;
212 1.69 hannken static u_int vcache_hashsize;
213 1.69 hannken static u_long vcache_hashmask;
214 1.104 ad static struct hashhead *vcache_hashtab;
215 1.69 hannken static pool_cache_t vcache_pool;
216 1.63 hannken static void lru_requeue(vnode_t *, vnodelst_t *);
217 1.63 hannken static vnodelst_t * lru_which(vnode_t *);
218 1.63 hannken static vnode_impl_t * vcache_alloc(void);
219 1.79 hannken static void vcache_dealloc(vnode_impl_t *);
220 1.57 hannken static void vcache_free(vnode_impl_t *);
221 1.36 hannken static void vcache_init(void);
222 1.36 hannken static void vcache_reinit(void);
223 1.54 hannken static void vcache_reclaim(vnode_t *);
224 1.107 ad static void vrelel(vnode_t *, int, int);
225 1.12 hannken static void vdrain_thread(void *);
226 1.11 christos static void vnpanic(vnode_t *, const char *, ...)
227 1.18 christos __printflike(2, 3);
228 1.1 rmind
229 1.1 rmind /* Routines having to do with the management of the vnode table. */
230 1.1 rmind
231 1.120 ad /*
232 1.123 ad * The high bit of v_usecount is a gate for vcache_tryvget(). It's set
233 1.123 ad * only when the vnode state is LOADED.
234 1.132 hannken * The next bit of v_usecount is a flag for vrelel(). It's set
235 1.132 hannken * from vcache_vget() and vcache_tryvget() whenever the operation succeeds.
236 1.123 ad */
237 1.132 hannken #define VUSECOUNT_MASK 0x3fffffff
238 1.123 ad #define VUSECOUNT_GATE 0x80000000
239 1.132 hannken #define VUSECOUNT_VGET 0x40000000
240 1.123 ad
241 1.123 ad /*
242 1.120 ad * Return the current usecount of a vnode.
243 1.120 ad */
244 1.120 ad inline int
245 1.120 ad vrefcnt(struct vnode *vp)
246 1.120 ad {
247 1.120 ad
248 1.123 ad return atomic_load_relaxed(&vp->v_usecount) & VUSECOUNT_MASK;
249 1.120 ad }
250 1.120 ad
251 1.51 hannken /* Vnode state operations and diagnostics. */
252 1.51 hannken
253 1.51 hannken #if defined(DIAGNOSTIC)
254 1.51 hannken
255 1.94 hannken #define VSTATE_VALID(state) \
256 1.94 hannken ((state) != VS_ACTIVE && (state) != VS_MARKER)
257 1.51 hannken #define VSTATE_GET(vp) \
258 1.51 hannken vstate_assert_get((vp), __func__, __LINE__)
259 1.51 hannken #define VSTATE_CHANGE(vp, from, to) \
260 1.51 hannken vstate_assert_change((vp), (from), (to), __func__, __LINE__)
261 1.51 hannken #define VSTATE_WAIT_STABLE(vp) \
262 1.51 hannken vstate_assert_wait_stable((vp), __func__, __LINE__)
263 1.51 hannken
264 1.94 hannken void
265 1.99 joerg _vstate_assert(vnode_t *vp, enum vnode_state state, const char *func, int line,
266 1.99 joerg bool has_lock)
267 1.51 hannken {
268 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
269 1.120 ad int refcnt = vrefcnt(vp);
270 1.51 hannken
271 1.99 joerg if (!has_lock) {
272 1.148 riastrad enum vnode_state vstate = atomic_load_relaxed(&vip->vi_state);
273 1.148 riastrad
274 1.120 ad if (state == VS_ACTIVE && refcnt > 0 &&
275 1.148 riastrad (vstate == VS_LOADED || vstate == VS_BLOCKED))
276 1.99 joerg return;
277 1.148 riastrad if (vstate == state)
278 1.99 joerg return;
279 1.99 joerg mutex_enter((vp)->v_interlock);
280 1.99 joerg }
281 1.99 joerg
282 1.51 hannken KASSERTMSG(mutex_owned(vp->v_interlock), "at %s:%d", func, line);
283 1.51 hannken
284 1.120 ad if ((state == VS_ACTIVE && refcnt > 0 &&
285 1.99 joerg (vip->vi_state == VS_LOADED || vip->vi_state == VS_BLOCKED)) ||
286 1.99 joerg vip->vi_state == state) {
287 1.99 joerg if (!has_lock)
288 1.99 joerg mutex_exit((vp)->v_interlock);
289 1.94 hannken return;
290 1.99 joerg }
291 1.94 hannken vnpanic(vp, "state is %s, usecount %d, expected %s at %s:%d",
292 1.120 ad vstate_name(vip->vi_state), refcnt,
293 1.94 hannken vstate_name(state), func, line);
294 1.51 hannken }
295 1.51 hannken
296 1.57 hannken static enum vnode_state
297 1.51 hannken vstate_assert_get(vnode_t *vp, const char *func, int line)
298 1.51 hannken {
299 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
300 1.51 hannken
301 1.51 hannken KASSERTMSG(mutex_owned(vp->v_interlock), "at %s:%d", func, line);
302 1.94 hannken if (! VSTATE_VALID(vip->vi_state))
303 1.51 hannken vnpanic(vp, "state is %s at %s:%d",
304 1.70 hannken vstate_name(vip->vi_state), func, line);
305 1.51 hannken
306 1.70 hannken return vip->vi_state;
307 1.51 hannken }
308 1.51 hannken
309 1.52 hannken static void
310 1.51 hannken vstate_assert_wait_stable(vnode_t *vp, const char *func, int line)
311 1.51 hannken {
312 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
313 1.51 hannken
314 1.51 hannken KASSERTMSG(mutex_owned(vp->v_interlock), "at %s:%d", func, line);
315 1.94 hannken if (! VSTATE_VALID(vip->vi_state))
316 1.51 hannken vnpanic(vp, "state is %s at %s:%d",
317 1.70 hannken vstate_name(vip->vi_state), func, line);
318 1.51 hannken
319 1.94 hannken while (vip->vi_state != VS_LOADED && vip->vi_state != VS_RECLAIMED)
320 1.51 hannken cv_wait(&vp->v_cv, vp->v_interlock);
321 1.51 hannken
322 1.94 hannken if (! VSTATE_VALID(vip->vi_state))
323 1.51 hannken vnpanic(vp, "state is %s at %s:%d",
324 1.70 hannken vstate_name(vip->vi_state), func, line);
325 1.51 hannken }
326 1.51 hannken
327 1.52 hannken static void
328 1.57 hannken vstate_assert_change(vnode_t *vp, enum vnode_state from, enum vnode_state to,
329 1.51 hannken const char *func, int line)
330 1.51 hannken {
331 1.123 ad bool gated = (atomic_load_relaxed(&vp->v_usecount) & VUSECOUNT_GATE);
332 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
333 1.51 hannken
334 1.51 hannken KASSERTMSG(mutex_owned(vp->v_interlock), "at %s:%d", func, line);
335 1.57 hannken if (from == VS_LOADING)
336 1.69 hannken KASSERTMSG(mutex_owned(&vcache_lock), "at %s:%d", func, line);
337 1.51 hannken
338 1.94 hannken if (! VSTATE_VALID(from))
339 1.51 hannken vnpanic(vp, "from is %s at %s:%d",
340 1.51 hannken vstate_name(from), func, line);
341 1.94 hannken if (! VSTATE_VALID(to))
342 1.51 hannken vnpanic(vp, "to is %s at %s:%d",
343 1.51 hannken vstate_name(to), func, line);
344 1.70 hannken if (vip->vi_state != from)
345 1.51 hannken vnpanic(vp, "from is %s, expected %s at %s:%d\n",
346 1.70 hannken vstate_name(vip->vi_state), vstate_name(from), func, line);
347 1.123 ad if ((from == VS_LOADED) != gated)
348 1.123 ad vnpanic(vp, "state is %s, gate %d does not match at %s:%d\n",
349 1.123 ad vstate_name(vip->vi_state), gated, func, line);
350 1.123 ad
351 1.136 riastrad /* Open/close the gate for vcache_tryvget(). */
352 1.136 riastrad if (to == VS_LOADED) {
353 1.142 riastrad membar_release();
354 1.123 ad atomic_or_uint(&vp->v_usecount, VUSECOUNT_GATE);
355 1.136 riastrad } else {
356 1.123 ad atomic_and_uint(&vp->v_usecount, ~VUSECOUNT_GATE);
357 1.136 riastrad }
358 1.51 hannken
359 1.148 riastrad atomic_store_relaxed(&vip->vi_state, to);
360 1.57 hannken if (from == VS_LOADING)
361 1.69 hannken cv_broadcast(&vcache_cv);
362 1.94 hannken if (to == VS_LOADED || to == VS_RECLAIMED)
363 1.51 hannken cv_broadcast(&vp->v_cv);
364 1.51 hannken }
365 1.51 hannken
366 1.51 hannken #else /* defined(DIAGNOSTIC) */
367 1.51 hannken
368 1.51 hannken #define VSTATE_GET(vp) \
369 1.57 hannken (VNODE_TO_VIMPL((vp))->vi_state)
370 1.51 hannken #define VSTATE_CHANGE(vp, from, to) \
371 1.51 hannken vstate_change((vp), (from), (to))
372 1.51 hannken #define VSTATE_WAIT_STABLE(vp) \
373 1.51 hannken vstate_wait_stable((vp))
374 1.94 hannken void
375 1.100 joerg _vstate_assert(vnode_t *vp, enum vnode_state state, const char *func, int line,
376 1.100 joerg bool has_lock)
377 1.94 hannken {
378 1.94 hannken
379 1.94 hannken }
380 1.51 hannken
381 1.52 hannken static void
382 1.51 hannken vstate_wait_stable(vnode_t *vp)
383 1.51 hannken {
384 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
385 1.51 hannken
386 1.94 hannken while (vip->vi_state != VS_LOADED && vip->vi_state != VS_RECLAIMED)
387 1.51 hannken cv_wait(&vp->v_cv, vp->v_interlock);
388 1.51 hannken }
389 1.51 hannken
390 1.52 hannken static void
391 1.57 hannken vstate_change(vnode_t *vp, enum vnode_state from, enum vnode_state to)
392 1.51 hannken {
393 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
394 1.51 hannken
395 1.142 riastrad /* Open/close the gate for vcache_tryvget(). */
396 1.136 riastrad if (to == VS_LOADED) {
397 1.142 riastrad membar_release();
398 1.123 ad atomic_or_uint(&vp->v_usecount, VUSECOUNT_GATE);
399 1.136 riastrad } else {
400 1.123 ad atomic_and_uint(&vp->v_usecount, ~VUSECOUNT_GATE);
401 1.136 riastrad }
402 1.123 ad
403 1.148 riastrad atomic_store_relaxed(&vip->vi_state, to);
404 1.57 hannken if (from == VS_LOADING)
405 1.69 hannken cv_broadcast(&vcache_cv);
406 1.94 hannken if (to == VS_LOADED || to == VS_RECLAIMED)
407 1.51 hannken cv_broadcast(&vp->v_cv);
408 1.51 hannken }
409 1.51 hannken
410 1.51 hannken #endif /* defined(DIAGNOSTIC) */
411 1.51 hannken
412 1.1 rmind void
413 1.1 rmind vfs_vnode_sysinit(void)
414 1.1 rmind {
415 1.104 ad int error __diagused, i;
416 1.1 rmind
417 1.44 hannken dead_rootmount = vfs_mountalloc(&dead_vfsops, NULL);
418 1.44 hannken KASSERT(dead_rootmount != NULL);
419 1.103 hannken dead_rootmount->mnt_iflag |= IMNT_MPSAFE;
420 1.31 hannken
421 1.63 hannken mutex_init(&vdrain_lock, MUTEX_DEFAULT, IPL_NONE);
422 1.104 ad for (i = 0; i < LRU_COUNT; i++) {
423 1.104 ad TAILQ_INIT(&lru_list[i]);
424 1.104 ad }
425 1.36 hannken vcache_init();
426 1.36 hannken
427 1.12 hannken cv_init(&vdrain_cv, "vdrain");
428 1.63 hannken cv_init(&vdrain_gen_cv, "vdrainwt");
429 1.12 hannken error = kthread_create(PRI_VM, KTHREAD_MPSAFE, NULL, vdrain_thread,
430 1.63 hannken NULL, &vdrain_lwp, "vdrain");
431 1.47 riastrad KASSERTMSG((error == 0), "kthread_create(vdrain) failed: %d", error);
432 1.1 rmind }
433 1.1 rmind
434 1.1 rmind /*
435 1.48 hannken * Allocate a new marker vnode.
436 1.48 hannken */
437 1.48 hannken vnode_t *
438 1.48 hannken vnalloc_marker(struct mount *mp)
439 1.48 hannken {
440 1.70 hannken vnode_impl_t *vip;
441 1.50 hannken vnode_t *vp;
442 1.50 hannken
443 1.70 hannken vip = pool_cache_get(vcache_pool, PR_WAITOK);
444 1.70 hannken memset(vip, 0, sizeof(*vip));
445 1.70 hannken vp = VIMPL_TO_VNODE(vip);
446 1.111 ad uvm_obj_init(&vp->v_uobj, &uvm_vnodeops, true, 1);
447 1.50 hannken vp->v_mount = mp;
448 1.50 hannken vp->v_type = VBAD;
449 1.111 ad vp->v_interlock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
450 1.144 thorpej klist_init(&vip->vi_klist.vk_klist);
451 1.144 thorpej vp->v_klist = &vip->vi_klist;
452 1.70 hannken vip->vi_state = VS_MARKER;
453 1.48 hannken
454 1.50 hannken return vp;
455 1.48 hannken }
456 1.48 hannken
457 1.48 hannken /*
458 1.48 hannken * Free a marker vnode.
459 1.48 hannken */
460 1.48 hannken void
461 1.48 hannken vnfree_marker(vnode_t *vp)
462 1.48 hannken {
463 1.70 hannken vnode_impl_t *vip;
464 1.48 hannken
465 1.70 hannken vip = VNODE_TO_VIMPL(vp);
466 1.70 hannken KASSERT(vip->vi_state == VS_MARKER);
467 1.111 ad mutex_obj_free(vp->v_interlock);
468 1.50 hannken uvm_obj_destroy(&vp->v_uobj, true);
469 1.144 thorpej klist_fini(&vip->vi_klist.vk_klist);
470 1.70 hannken pool_cache_put(vcache_pool, vip);
471 1.48 hannken }
472 1.48 hannken
473 1.48 hannken /*
474 1.48 hannken * Test a vnode for being a marker vnode.
475 1.48 hannken */
476 1.48 hannken bool
477 1.48 hannken vnis_marker(vnode_t *vp)
478 1.48 hannken {
479 1.48 hannken
480 1.57 hannken return (VNODE_TO_VIMPL(vp)->vi_state == VS_MARKER);
481 1.48 hannken }
482 1.48 hannken
483 1.48 hannken /*
484 1.63 hannken * Return the lru list this node should be on.
485 1.63 hannken */
486 1.63 hannken static vnodelst_t *
487 1.63 hannken lru_which(vnode_t *vp)
488 1.63 hannken {
489 1.63 hannken
490 1.63 hannken KASSERT(mutex_owned(vp->v_interlock));
491 1.63 hannken
492 1.63 hannken if (vp->v_holdcnt > 0)
493 1.104 ad return &lru_list[LRU_HOLD];
494 1.63 hannken else
495 1.104 ad return &lru_list[LRU_FREE];
496 1.63 hannken }
497 1.63 hannken
498 1.63 hannken /*
499 1.63 hannken * Put vnode to end of given list.
500 1.63 hannken * Both the current and the new list may be NULL, used on vnode alloc/free.
501 1.63 hannken * Adjust numvnodes and signal vdrain thread if there is work.
502 1.63 hannken */
503 1.63 hannken static void
504 1.63 hannken lru_requeue(vnode_t *vp, vnodelst_t *listhd)
505 1.63 hannken {
506 1.70 hannken vnode_impl_t *vip;
507 1.104 ad int d;
508 1.104 ad
509 1.104 ad /*
510 1.104 ad * If the vnode is on the correct list, and was put there recently,
511 1.104 ad * then leave it be, thus avoiding huge cache and lock contention.
512 1.104 ad */
513 1.104 ad vip = VNODE_TO_VIMPL(vp);
514 1.104 ad if (listhd == vip->vi_lrulisthd &&
515 1.119 maxv (getticks() - vip->vi_lrulisttm) < hz) {
516 1.104 ad return;
517 1.104 ad }
518 1.63 hannken
519 1.63 hannken mutex_enter(&vdrain_lock);
520 1.104 ad d = 0;
521 1.70 hannken if (vip->vi_lrulisthd != NULL)
522 1.70 hannken TAILQ_REMOVE(vip->vi_lrulisthd, vip, vi_lrulist);
523 1.63 hannken else
524 1.104 ad d++;
525 1.70 hannken vip->vi_lrulisthd = listhd;
526 1.119 maxv vip->vi_lrulisttm = getticks();
527 1.70 hannken if (vip->vi_lrulisthd != NULL)
528 1.70 hannken TAILQ_INSERT_TAIL(vip->vi_lrulisthd, vip, vi_lrulist);
529 1.63 hannken else
530 1.104 ad d--;
531 1.104 ad if (d != 0) {
532 1.104 ad /*
533 1.104 ad * Looks strange? This is not a bug. Don't store
534 1.104 ad * numvnodes unless there is a change - avoid false
535 1.104 ad * sharing on MP.
536 1.104 ad */
537 1.104 ad numvnodes += d;
538 1.104 ad }
539 1.121 hannken if ((d > 0 && numvnodes > desiredvnodes) ||
540 1.121 hannken listhd == &lru_list[LRU_VRELE])
541 1.121 hannken cv_signal(&vdrain_cv);
542 1.150 hannken if (d > 0 && numvnodes > desiredvnodes + desiredvnodes / 16)
543 1.151 riastrad kpause("vnfull", false, MAX(1, mstohz(10)), &vdrain_lock);
544 1.63 hannken mutex_exit(&vdrain_lock);
545 1.63 hannken }
546 1.63 hannken
547 1.63 hannken /*
548 1.75 hannken * Release deferred vrele vnodes for this mount.
549 1.75 hannken * Called with file system suspended.
550 1.75 hannken */
551 1.75 hannken void
552 1.75 hannken vrele_flush(struct mount *mp)
553 1.75 hannken {
554 1.75 hannken vnode_impl_t *vip, *marker;
555 1.104 ad vnode_t *vp;
556 1.122 hannken int when = 0;
557 1.75 hannken
558 1.75 hannken KASSERT(fstrans_is_owner(mp));
559 1.75 hannken
560 1.75 hannken marker = VNODE_TO_VIMPL(vnalloc_marker(NULL));
561 1.75 hannken
562 1.75 hannken mutex_enter(&vdrain_lock);
563 1.104 ad TAILQ_INSERT_HEAD(&lru_list[LRU_VRELE], marker, vi_lrulist);
564 1.75 hannken
565 1.75 hannken while ((vip = TAILQ_NEXT(marker, vi_lrulist))) {
566 1.104 ad TAILQ_REMOVE(&lru_list[LRU_VRELE], marker, vi_lrulist);
567 1.104 ad TAILQ_INSERT_AFTER(&lru_list[LRU_VRELE], vip, marker,
568 1.104 ad vi_lrulist);
569 1.104 ad vp = VIMPL_TO_VNODE(vip);
570 1.104 ad if (vnis_marker(vp))
571 1.75 hannken continue;
572 1.75 hannken
573 1.104 ad KASSERT(vip->vi_lrulisthd == &lru_list[LRU_VRELE]);
574 1.75 hannken TAILQ_REMOVE(vip->vi_lrulisthd, vip, vi_lrulist);
575 1.104 ad vip->vi_lrulisthd = &lru_list[LRU_HOLD];
576 1.119 maxv vip->vi_lrulisttm = getticks();
577 1.75 hannken TAILQ_INSERT_TAIL(vip->vi_lrulisthd, vip, vi_lrulist);
578 1.75 hannken mutex_exit(&vdrain_lock);
579 1.75 hannken
580 1.107 ad vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
581 1.104 ad mutex_enter(vp->v_interlock);
582 1.107 ad vrelel(vp, 0, LK_EXCLUSIVE);
583 1.75 hannken
584 1.122 hannken if (getticks() > when) {
585 1.122 hannken yield();
586 1.122 hannken when = getticks() + hz / 10;
587 1.122 hannken }
588 1.122 hannken
589 1.75 hannken mutex_enter(&vdrain_lock);
590 1.75 hannken }
591 1.75 hannken
592 1.104 ad TAILQ_REMOVE(&lru_list[LRU_VRELE], marker, vi_lrulist);
593 1.75 hannken mutex_exit(&vdrain_lock);
594 1.75 hannken
595 1.75 hannken vnfree_marker(VIMPL_TO_VNODE(marker));
596 1.75 hannken }
597 1.75 hannken
598 1.75 hannken /*
599 1.63 hannken * Reclaim a cached vnode. Used from vdrain_thread only.
600 1.1 rmind */
601 1.63 hannken static __inline void
602 1.63 hannken vdrain_remove(vnode_t *vp)
603 1.1 rmind {
604 1.24 hannken struct mount *mp;
605 1.1 rmind
606 1.63 hannken KASSERT(mutex_owned(&vdrain_lock));
607 1.24 hannken
608 1.63 hannken /* Probe usecount (unlocked). */
609 1.120 ad if (vrefcnt(vp) > 0)
610 1.63 hannken return;
611 1.63 hannken /* Try v_interlock -- we lock the wrong direction! */
612 1.63 hannken if (!mutex_tryenter(vp->v_interlock))
613 1.63 hannken return;
614 1.63 hannken /* Probe usecount and state. */
615 1.120 ad if (vrefcnt(vp) > 0 || VSTATE_GET(vp) != VS_LOADED) {
616 1.63 hannken mutex_exit(vp->v_interlock);
617 1.63 hannken return;
618 1.1 rmind }
619 1.63 hannken mp = vp->v_mount;
620 1.96 hannken if (fstrans_start_nowait(mp) != 0) {
621 1.63 hannken mutex_exit(vp->v_interlock);
622 1.63 hannken return;
623 1.1 rmind }
624 1.63 hannken vdrain_retry = true;
625 1.63 hannken mutex_exit(&vdrain_lock);
626 1.1 rmind
627 1.66 hannken if (vcache_vget(vp) == 0) {
628 1.78 hannken if (!vrecycle(vp)) {
629 1.107 ad vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
630 1.78 hannken mutex_enter(vp->v_interlock);
631 1.107 ad vrelel(vp, 0, LK_EXCLUSIVE);
632 1.78 hannken }
633 1.60 hannken }
634 1.24 hannken fstrans_done(mp);
635 1.12 hannken
636 1.63 hannken mutex_enter(&vdrain_lock);
637 1.1 rmind }
638 1.1 rmind
639 1.1 rmind /*
640 1.63 hannken * Release a cached vnode. Used from vdrain_thread only.
641 1.12 hannken */
642 1.63 hannken static __inline void
643 1.63 hannken vdrain_vrele(vnode_t *vp)
644 1.12 hannken {
645 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
646 1.63 hannken struct mount *mp;
647 1.12 hannken
648 1.63 hannken KASSERT(mutex_owned(&vdrain_lock));
649 1.12 hannken
650 1.63 hannken mp = vp->v_mount;
651 1.96 hannken if (fstrans_start_nowait(mp) != 0)
652 1.63 hannken return;
653 1.63 hannken
654 1.64 hannken /*
655 1.64 hannken * First remove the vnode from the vrele list.
656 1.64 hannken * Put it on the last lru list, the last vrele()
657 1.64 hannken * will put it back onto the right list before
658 1.120 ad * its usecount reaches zero.
659 1.64 hannken */
660 1.104 ad KASSERT(vip->vi_lrulisthd == &lru_list[LRU_VRELE]);
661 1.70 hannken TAILQ_REMOVE(vip->vi_lrulisthd, vip, vi_lrulist);
662 1.104 ad vip->vi_lrulisthd = &lru_list[LRU_HOLD];
663 1.119 maxv vip->vi_lrulisttm = getticks();
664 1.70 hannken TAILQ_INSERT_TAIL(vip->vi_lrulisthd, vip, vi_lrulist);
665 1.63 hannken
666 1.63 hannken vdrain_retry = true;
667 1.63 hannken mutex_exit(&vdrain_lock);
668 1.63 hannken
669 1.107 ad vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
670 1.64 hannken mutex_enter(vp->v_interlock);
671 1.107 ad vrelel(vp, 0, LK_EXCLUSIVE);
672 1.63 hannken fstrans_done(mp);
673 1.63 hannken
674 1.63 hannken mutex_enter(&vdrain_lock);
675 1.12 hannken }
676 1.12 hannken
677 1.12 hannken /*
678 1.63 hannken * Helper thread to keep the number of vnodes below desiredvnodes
679 1.63 hannken * and release vnodes from asynchronous vrele.
680 1.1 rmind */
681 1.63 hannken static void
682 1.63 hannken vdrain_thread(void *cookie)
683 1.1 rmind {
684 1.63 hannken int i;
685 1.63 hannken u_int target;
686 1.70 hannken vnode_impl_t *vip, *marker;
687 1.63 hannken
688 1.63 hannken marker = VNODE_TO_VIMPL(vnalloc_marker(NULL));
689 1.63 hannken
690 1.63 hannken mutex_enter(&vdrain_lock);
691 1.63 hannken
692 1.63 hannken for (;;) {
693 1.63 hannken vdrain_retry = false;
694 1.150 hannken target = desiredvnodes - desiredvnodes / 16;
695 1.1 rmind
696 1.104 ad for (i = 0; i < LRU_COUNT; i++) {
697 1.104 ad TAILQ_INSERT_HEAD(&lru_list[i], marker, vi_lrulist);
698 1.70 hannken while ((vip = TAILQ_NEXT(marker, vi_lrulist))) {
699 1.104 ad TAILQ_REMOVE(&lru_list[i], marker, vi_lrulist);
700 1.104 ad TAILQ_INSERT_AFTER(&lru_list[i], vip, marker,
701 1.63 hannken vi_lrulist);
702 1.75 hannken if (vnis_marker(VIMPL_TO_VNODE(vip)))
703 1.75 hannken continue;
704 1.104 ad if (i == LRU_VRELE)
705 1.70 hannken vdrain_vrele(VIMPL_TO_VNODE(vip));
706 1.63 hannken else if (numvnodes < target)
707 1.63 hannken break;
708 1.63 hannken else
709 1.70 hannken vdrain_remove(VIMPL_TO_VNODE(vip));
710 1.63 hannken }
711 1.104 ad TAILQ_REMOVE(&lru_list[i], marker, vi_lrulist);
712 1.63 hannken }
713 1.1 rmind
714 1.63 hannken if (vdrain_retry) {
715 1.121 hannken kpause("vdrainrt", false, 1, &vdrain_lock);
716 1.63 hannken } else {
717 1.63 hannken vdrain_gen++;
718 1.63 hannken cv_broadcast(&vdrain_gen_cv);
719 1.63 hannken cv_wait(&vdrain_cv, &vdrain_lock);
720 1.63 hannken }
721 1.1 rmind }
722 1.1 rmind }
723 1.1 rmind
724 1.1 rmind /*
725 1.112 ad * Try to drop reference on a vnode. Abort if we are releasing the
726 1.112 ad * last reference. Note: this _must_ succeed if not the last reference.
727 1.112 ad */
728 1.112 ad static bool
729 1.112 ad vtryrele(vnode_t *vp)
730 1.112 ad {
731 1.112 ad u_int use, next;
732 1.112 ad
733 1.142 riastrad membar_release();
734 1.112 ad for (use = atomic_load_relaxed(&vp->v_usecount);; use = next) {
735 1.123 ad if (__predict_false((use & VUSECOUNT_MASK) == 1)) {
736 1.112 ad return false;
737 1.112 ad }
738 1.123 ad KASSERT((use & VUSECOUNT_MASK) > 1);
739 1.112 ad next = atomic_cas_uint(&vp->v_usecount, use, use - 1);
740 1.112 ad if (__predict_true(next == use)) {
741 1.112 ad return true;
742 1.112 ad }
743 1.112 ad }
744 1.112 ad }
745 1.112 ad
746 1.112 ad /*
747 1.4 rmind * vput: unlock and release the reference.
748 1.1 rmind */
749 1.1 rmind void
750 1.1 rmind vput(vnode_t *vp)
751 1.1 rmind {
752 1.107 ad int lktype;
753 1.1 rmind
754 1.112 ad /*
755 1.120 ad * Do an unlocked check of the usecount. If it looks like we're not
756 1.112 ad * about to drop the last reference, then unlock the vnode and try
757 1.112 ad * to drop the reference. If it ends up being the last reference
758 1.112 ad * after all, vrelel() can fix it all up. Most of the time this
759 1.112 ad * will all go to plan.
760 1.112 ad */
761 1.120 ad if (vrefcnt(vp) > 1) {
762 1.112 ad VOP_UNLOCK(vp);
763 1.112 ad if (vtryrele(vp)) {
764 1.112 ad return;
765 1.112 ad }
766 1.112 ad lktype = LK_NONE;
767 1.107 ad } else {
768 1.107 ad lktype = VOP_ISLOCKED(vp);
769 1.107 ad KASSERT(lktype != LK_NONE);
770 1.107 ad }
771 1.107 ad mutex_enter(vp->v_interlock);
772 1.107 ad vrelel(vp, 0, lktype);
773 1.1 rmind }
774 1.1 rmind
775 1.1 rmind /*
776 1.1 rmind * Vnode release. If reference count drops to zero, call inactive
777 1.1 rmind * routine and either return to freelist or free to the pool.
778 1.1 rmind */
779 1.23 hannken static void
780 1.107 ad vrelel(vnode_t *vp, int flags, int lktype)
781 1.1 rmind {
782 1.104 ad const bool async = ((flags & VRELEL_ASYNC) != 0);
783 1.133 hannken bool recycle, defer, objlock_held;
784 1.132 hannken u_int use, next;
785 1.1 rmind int error;
786 1.1 rmind
787 1.133 hannken objlock_held = false;
788 1.133 hannken
789 1.132 hannken retry:
790 1.9 rmind KASSERT(mutex_owned(vp->v_interlock));
791 1.1 rmind
792 1.1 rmind if (__predict_false(vp->v_op == dead_vnodeop_p &&
793 1.57 hannken VSTATE_GET(vp) != VS_RECLAIMED)) {
794 1.11 christos vnpanic(vp, "dead but not clean");
795 1.1 rmind }
796 1.1 rmind
797 1.1 rmind /*
798 1.132 hannken * If not the last reference, just unlock and drop the reference count.
799 1.132 hannken *
800 1.132 hannken * Otherwise make sure we pass a point in time where we hold the
801 1.132 hannken * last reference with VGET flag unset.
802 1.1 rmind */
803 1.132 hannken for (use = atomic_load_relaxed(&vp->v_usecount);; use = next) {
804 1.132 hannken if (__predict_false((use & VUSECOUNT_MASK) > 1)) {
805 1.134 hannken if (objlock_held) {
806 1.134 hannken objlock_held = false;
807 1.134 hannken rw_exit(vp->v_uobj.vmobjlock);
808 1.134 hannken }
809 1.132 hannken if (lktype != LK_NONE) {
810 1.132 hannken mutex_exit(vp->v_interlock);
811 1.132 hannken lktype = LK_NONE;
812 1.132 hannken VOP_UNLOCK(vp);
813 1.132 hannken mutex_enter(vp->v_interlock);
814 1.132 hannken }
815 1.132 hannken if (vtryrele(vp)) {
816 1.132 hannken mutex_exit(vp->v_interlock);
817 1.132 hannken return;
818 1.132 hannken }
819 1.132 hannken next = atomic_load_relaxed(&vp->v_usecount);
820 1.132 hannken continue;
821 1.132 hannken }
822 1.132 hannken KASSERT((use & VUSECOUNT_MASK) == 1);
823 1.132 hannken next = use & ~VUSECOUNT_VGET;
824 1.132 hannken if (next != use) {
825 1.132 hannken next = atomic_cas_uint(&vp->v_usecount, use, next);
826 1.132 hannken }
827 1.132 hannken if (__predict_true(next == use)) {
828 1.132 hannken break;
829 1.107 ad }
830 1.1 rmind }
831 1.142 riastrad membar_acquire();
832 1.120 ad if (vrefcnt(vp) <= 0 || vp->v_writecount != 0) {
833 1.11 christos vnpanic(vp, "%s: bad ref count", __func__);
834 1.1 rmind }
835 1.1 rmind
836 1.15 hannken #ifdef DIAGNOSTIC
837 1.15 hannken if ((vp->v_type == VBLK || vp->v_type == VCHR) &&
838 1.15 hannken vp->v_specnode != NULL && vp->v_specnode->sn_opencnt != 0) {
839 1.15 hannken vprint("vrelel: missing VOP_CLOSE()", vp);
840 1.15 hannken }
841 1.15 hannken #endif
842 1.15 hannken
843 1.1 rmind /*
844 1.131 hannken * If already clean there is no need to lock, defer or
845 1.131 hannken * deactivate this node.
846 1.131 hannken */
847 1.131 hannken if (VSTATE_GET(vp) == VS_RECLAIMED) {
848 1.134 hannken if (objlock_held) {
849 1.134 hannken objlock_held = false;
850 1.134 hannken rw_exit(vp->v_uobj.vmobjlock);
851 1.134 hannken }
852 1.131 hannken if (lktype != LK_NONE) {
853 1.131 hannken mutex_exit(vp->v_interlock);
854 1.131 hannken lktype = LK_NONE;
855 1.131 hannken VOP_UNLOCK(vp);
856 1.131 hannken mutex_enter(vp->v_interlock);
857 1.131 hannken }
858 1.131 hannken goto out;
859 1.131 hannken }
860 1.131 hannken
861 1.131 hannken /*
862 1.79 hannken * First try to get the vnode locked for VOP_INACTIVE().
863 1.79 hannken * Defer vnode release to vdrain_thread if caller requests
864 1.79 hannken * it explicitly, is the pagedaemon or the lock failed.
865 1.1 rmind */
866 1.107 ad defer = false;
867 1.79 hannken if ((curlwp == uvm.pagedaemon_lwp) || async) {
868 1.79 hannken defer = true;
869 1.107 ad } else if (lktype == LK_SHARED) {
870 1.107 ad /* Excellent chance of getting, if the last ref. */
871 1.131 hannken error = vn_lock(vp, LK_UPGRADE | LK_RETRY | LK_NOWAIT);
872 1.107 ad if (error != 0) {
873 1.107 ad defer = true;
874 1.107 ad } else {
875 1.107 ad lktype = LK_EXCLUSIVE;
876 1.107 ad }
877 1.107 ad } else if (lktype == LK_NONE) {
878 1.107 ad /* Excellent chance of getting, if the last ref. */
879 1.131 hannken error = vn_lock(vp, LK_EXCLUSIVE | LK_RETRY | LK_NOWAIT);
880 1.107 ad if (error != 0) {
881 1.107 ad defer = true;
882 1.107 ad } else {
883 1.107 ad lktype = LK_EXCLUSIVE;
884 1.107 ad }
885 1.79 hannken }
886 1.79 hannken KASSERT(mutex_owned(vp->v_interlock));
887 1.79 hannken if (defer) {
888 1.1 rmind /*
889 1.79 hannken * Defer reclaim to the kthread; it's not safe to
890 1.79 hannken * clean it here. We donate it our last reference.
891 1.1 rmind */
892 1.107 ad if (lktype != LK_NONE) {
893 1.134 hannken mutex_exit(vp->v_interlock);
894 1.107 ad VOP_UNLOCK(vp);
895 1.134 hannken mutex_enter(vp->v_interlock);
896 1.107 ad }
897 1.104 ad lru_requeue(vp, &lru_list[LRU_VRELE]);
898 1.79 hannken mutex_exit(vp->v_interlock);
899 1.79 hannken return;
900 1.79 hannken }
901 1.107 ad KASSERT(lktype == LK_EXCLUSIVE);
902 1.30 hannken
903 1.135 hannken /* If the node gained another reference, retry. */
904 1.135 hannken use = atomic_load_relaxed(&vp->v_usecount);
905 1.137 hannken if ((use & VUSECOUNT_VGET) != 0) {
906 1.135 hannken goto retry;
907 1.135 hannken }
908 1.137 hannken KASSERT((use & VUSECOUNT_MASK) == 1);
909 1.135 hannken
910 1.133 hannken if ((vp->v_iflag & (VI_TEXT|VI_EXECMAP|VI_WRMAP)) != 0 ||
911 1.133 hannken (vp->v_vflag & VV_MAPPED) != 0) {
912 1.133 hannken /* Take care of space accounting. */
913 1.133 hannken if (!objlock_held) {
914 1.133 hannken objlock_held = true;
915 1.133 hannken if (!rw_tryenter(vp->v_uobj.vmobjlock, RW_WRITER)) {
916 1.133 hannken mutex_exit(vp->v_interlock);
917 1.133 hannken rw_enter(vp->v_uobj.vmobjlock, RW_WRITER);
918 1.133 hannken mutex_enter(vp->v_interlock);
919 1.133 hannken goto retry;
920 1.133 hannken }
921 1.133 hannken }
922 1.133 hannken if ((vp->v_iflag & VI_EXECMAP) != 0) {
923 1.133 hannken cpu_count(CPU_COUNT_EXECPAGES, -vp->v_uobj.uo_npages);
924 1.133 hannken }
925 1.133 hannken vp->v_iflag &= ~(VI_TEXT|VI_EXECMAP|VI_WRMAP);
926 1.133 hannken vp->v_vflag &= ~VV_MAPPED;
927 1.133 hannken }
928 1.133 hannken if (objlock_held) {
929 1.133 hannken objlock_held = false;
930 1.133 hannken rw_exit(vp->v_uobj.vmobjlock);
931 1.133 hannken }
932 1.133 hannken
933 1.79 hannken /*
934 1.131 hannken * Deactivate the vnode, but preserve our reference across
935 1.131 hannken * the call to VOP_INACTIVE().
936 1.131 hannken *
937 1.131 hannken * If VOP_INACTIVE() indicates that the file has been
938 1.131 hannken * deleted, then recycle the vnode.
939 1.131 hannken *
940 1.131 hannken * Note that VOP_INACTIVE() will not drop the vnode lock.
941 1.79 hannken */
942 1.131 hannken mutex_exit(vp->v_interlock);
943 1.131 hannken recycle = false;
944 1.131 hannken VOP_INACTIVE(vp, &recycle);
945 1.133 hannken if (!recycle) {
946 1.133 hannken lktype = LK_NONE;
947 1.133 hannken VOP_UNLOCK(vp);
948 1.133 hannken }
949 1.131 hannken mutex_enter(vp->v_interlock);
950 1.131 hannken
951 1.132 hannken /*
952 1.132 hannken * Block new references then check again to see if a
953 1.132 hannken * new reference was acquired in the meantime. If
954 1.132 hannken * it was, restore the vnode state and try again.
955 1.132 hannken */
956 1.132 hannken if (recycle) {
957 1.132 hannken VSTATE_CHANGE(vp, VS_LOADED, VS_BLOCKED);
958 1.132 hannken use = atomic_load_relaxed(&vp->v_usecount);
959 1.137 hannken if ((use & VUSECOUNT_VGET) != 0) {
960 1.132 hannken VSTATE_CHANGE(vp, VS_BLOCKED, VS_LOADED);
961 1.132 hannken goto retry;
962 1.131 hannken }
963 1.137 hannken KASSERT((use & VUSECOUNT_MASK) == 1);
964 1.132 hannken }
965 1.1 rmind
966 1.131 hannken /*
967 1.133 hannken * Recycle the vnode if the file is now unused (unlinked).
968 1.131 hannken */
969 1.131 hannken if (recycle) {
970 1.131 hannken VSTATE_ASSERT(vp, VS_BLOCKED);
971 1.133 hannken KASSERT(lktype == LK_EXCLUSIVE);
972 1.131 hannken /* vcache_reclaim drops the lock. */
973 1.132 hannken lktype = LK_NONE;
974 1.131 hannken vcache_reclaim(vp);
975 1.1 rmind }
976 1.131 hannken KASSERT(vrefcnt(vp) > 0);
977 1.133 hannken KASSERT(lktype == LK_NONE);
978 1.1 rmind
979 1.131 hannken out:
980 1.132 hannken for (use = atomic_load_relaxed(&vp->v_usecount);; use = next) {
981 1.132 hannken if (__predict_false((use & VUSECOUNT_VGET) != 0 &&
982 1.132 hannken (use & VUSECOUNT_MASK) == 1)) {
983 1.132 hannken /* Gained and released another reference, retry. */
984 1.132 hannken goto retry;
985 1.132 hannken }
986 1.132 hannken next = atomic_cas_uint(&vp->v_usecount, use, use - 1);
987 1.132 hannken if (__predict_true(next == use)) {
988 1.132 hannken if (__predict_false((use & VUSECOUNT_MASK) != 1)) {
989 1.132 hannken /* Gained another reference. */
990 1.132 hannken mutex_exit(vp->v_interlock);
991 1.132 hannken return;
992 1.132 hannken }
993 1.132 hannken break;
994 1.132 hannken }
995 1.1 rmind }
996 1.142 riastrad membar_acquire();
997 1.1 rmind
998 1.67 hannken if (VSTATE_GET(vp) == VS_RECLAIMED && vp->v_holdcnt == 0) {
999 1.1 rmind /*
1000 1.1 rmind * It's clean so destroy it. It isn't referenced
1001 1.1 rmind * anywhere since it has been reclaimed.
1002 1.1 rmind */
1003 1.57 hannken vcache_free(VNODE_TO_VIMPL(vp));
1004 1.1 rmind } else {
1005 1.1 rmind /*
1006 1.1 rmind * Otherwise, put it back onto the freelist. It
1007 1.1 rmind * can't be destroyed while still associated with
1008 1.1 rmind * a file system.
1009 1.1 rmind */
1010 1.63 hannken lru_requeue(vp, lru_which(vp));
1011 1.9 rmind mutex_exit(vp->v_interlock);
1012 1.1 rmind }
1013 1.1 rmind }
1014 1.1 rmind
1015 1.1 rmind void
1016 1.1 rmind vrele(vnode_t *vp)
1017 1.1 rmind {
1018 1.1 rmind
1019 1.112 ad if (vtryrele(vp)) {
1020 1.112 ad return;
1021 1.112 ad }
1022 1.9 rmind mutex_enter(vp->v_interlock);
1023 1.107 ad vrelel(vp, 0, LK_NONE);
1024 1.1 rmind }
1025 1.1 rmind
1026 1.1 rmind /*
1027 1.1 rmind * Asynchronous vnode release, vnode is released in different context.
1028 1.1 rmind */
1029 1.1 rmind void
1030 1.1 rmind vrele_async(vnode_t *vp)
1031 1.1 rmind {
1032 1.1 rmind
1033 1.112 ad if (vtryrele(vp)) {
1034 1.112 ad return;
1035 1.112 ad }
1036 1.9 rmind mutex_enter(vp->v_interlock);
1037 1.107 ad vrelel(vp, VRELEL_ASYNC, LK_NONE);
1038 1.1 rmind }
1039 1.1 rmind
1040 1.1 rmind /*
1041 1.1 rmind * Vnode reference, where a reference is already held by some other
1042 1.1 rmind * object (for example, a file structure).
1043 1.112 ad *
1044 1.123 ad * NB: lockless code sequences may rely on this not blocking.
1045 1.1 rmind */
1046 1.1 rmind void
1047 1.1 rmind vref(vnode_t *vp)
1048 1.1 rmind {
1049 1.1 rmind
1050 1.120 ad KASSERT(vrefcnt(vp) > 0);
1051 1.1 rmind
1052 1.112 ad atomic_inc_uint(&vp->v_usecount);
1053 1.1 rmind }
1054 1.1 rmind
1055 1.1 rmind /*
1056 1.1 rmind * Page or buffer structure gets a reference.
1057 1.1 rmind * Called with v_interlock held.
1058 1.1 rmind */
1059 1.1 rmind void
1060 1.1 rmind vholdl(vnode_t *vp)
1061 1.1 rmind {
1062 1.1 rmind
1063 1.9 rmind KASSERT(mutex_owned(vp->v_interlock));
1064 1.1 rmind
1065 1.120 ad if (vp->v_holdcnt++ == 0 && vrefcnt(vp) == 0)
1066 1.63 hannken lru_requeue(vp, lru_which(vp));
1067 1.1 rmind }
1068 1.1 rmind
1069 1.1 rmind /*
1070 1.112 ad * Page or buffer structure gets a reference.
1071 1.112 ad */
1072 1.112 ad void
1073 1.112 ad vhold(vnode_t *vp)
1074 1.112 ad {
1075 1.112 ad
1076 1.112 ad mutex_enter(vp->v_interlock);
1077 1.112 ad vholdl(vp);
1078 1.112 ad mutex_exit(vp->v_interlock);
1079 1.112 ad }
1080 1.112 ad
1081 1.112 ad /*
1082 1.1 rmind * Page or buffer structure frees a reference.
1083 1.1 rmind * Called with v_interlock held.
1084 1.1 rmind */
1085 1.1 rmind void
1086 1.1 rmind holdrelel(vnode_t *vp)
1087 1.1 rmind {
1088 1.1 rmind
1089 1.9 rmind KASSERT(mutex_owned(vp->v_interlock));
1090 1.1 rmind
1091 1.1 rmind if (vp->v_holdcnt <= 0) {
1092 1.11 christos vnpanic(vp, "%s: holdcnt vp %p", __func__, vp);
1093 1.1 rmind }
1094 1.1 rmind
1095 1.1 rmind vp->v_holdcnt--;
1096 1.120 ad if (vp->v_holdcnt == 0 && vrefcnt(vp) == 0)
1097 1.63 hannken lru_requeue(vp, lru_which(vp));
1098 1.1 rmind }
1099 1.1 rmind
1100 1.1 rmind /*
1101 1.112 ad * Page or buffer structure frees a reference.
1102 1.112 ad */
1103 1.112 ad void
1104 1.112 ad holdrele(vnode_t *vp)
1105 1.112 ad {
1106 1.112 ad
1107 1.112 ad mutex_enter(vp->v_interlock);
1108 1.112 ad holdrelel(vp);
1109 1.112 ad mutex_exit(vp->v_interlock);
1110 1.112 ad }
1111 1.112 ad
1112 1.112 ad /*
1113 1.33 hannken * Recycle an unused vnode if caller holds the last reference.
1114 1.1 rmind */
1115 1.33 hannken bool
1116 1.33 hannken vrecycle(vnode_t *vp)
1117 1.1 rmind {
1118 1.60 hannken int error __diagused;
1119 1.46 hannken
1120 1.33 hannken mutex_enter(vp->v_interlock);
1121 1.33 hannken
1122 1.123 ad /* If the vnode is already clean we're done. */
1123 1.60 hannken VSTATE_WAIT_STABLE(vp);
1124 1.94 hannken if (VSTATE_GET(vp) != VS_LOADED) {
1125 1.60 hannken VSTATE_ASSERT(vp, VS_RECLAIMED);
1126 1.107 ad vrelel(vp, 0, LK_NONE);
1127 1.60 hannken return true;
1128 1.60 hannken }
1129 1.60 hannken
1130 1.60 hannken /* Prevent further references until the vnode is locked. */
1131 1.94 hannken VSTATE_CHANGE(vp, VS_LOADED, VS_BLOCKED);
1132 1.123 ad
1133 1.123 ad /* Make sure we hold the last reference. */
1134 1.123 ad if (vrefcnt(vp) != 1) {
1135 1.123 ad VSTATE_CHANGE(vp, VS_BLOCKED, VS_LOADED);
1136 1.123 ad mutex_exit(vp->v_interlock);
1137 1.123 ad return false;
1138 1.123 ad }
1139 1.123 ad
1140 1.60 hannken mutex_exit(vp->v_interlock);
1141 1.60 hannken
1142 1.73 hannken /*
1143 1.73 hannken * On a leaf file system this lock will always succeed as we hold
1144 1.73 hannken * the last reference and prevent further references.
1145 1.73 hannken * On layered file systems waiting for the lock would open a can of
1146 1.73 hannken * deadlocks as the lower vnodes may have other active references.
1147 1.73 hannken */
1148 1.76 hannken error = vn_lock(vp, LK_EXCLUSIVE | LK_RETRY | LK_NOWAIT);
1149 1.60 hannken
1150 1.60 hannken mutex_enter(vp->v_interlock);
1151 1.73 hannken if (error) {
1152 1.123 ad VSTATE_CHANGE(vp, VS_BLOCKED, VS_LOADED);
1153 1.73 hannken mutex_exit(vp->v_interlock);
1154 1.73 hannken return false;
1155 1.73 hannken }
1156 1.73 hannken
1157 1.120 ad KASSERT(vrefcnt(vp) == 1);
1158 1.54 hannken vcache_reclaim(vp);
1159 1.107 ad vrelel(vp, 0, LK_NONE);
1160 1.60 hannken
1161 1.33 hannken return true;
1162 1.1 rmind }
1163 1.1 rmind
1164 1.1 rmind /*
1165 1.92 hannken * Helper for vrevoke() to propagate suspension from lastmp
1166 1.92 hannken * to thismp. Both args may be NULL.
1167 1.92 hannken * Returns the currently suspended file system or NULL.
1168 1.92 hannken */
1169 1.92 hannken static struct mount *
1170 1.92 hannken vrevoke_suspend_next(struct mount *lastmp, struct mount *thismp)
1171 1.92 hannken {
1172 1.92 hannken int error;
1173 1.92 hannken
1174 1.92 hannken if (lastmp == thismp)
1175 1.92 hannken return thismp;
1176 1.92 hannken
1177 1.92 hannken if (lastmp != NULL)
1178 1.92 hannken vfs_resume(lastmp);
1179 1.92 hannken
1180 1.92 hannken if (thismp == NULL)
1181 1.92 hannken return NULL;
1182 1.92 hannken
1183 1.92 hannken do {
1184 1.92 hannken error = vfs_suspend(thismp, 0);
1185 1.92 hannken } while (error == EINTR || error == ERESTART);
1186 1.92 hannken
1187 1.92 hannken if (error == 0)
1188 1.92 hannken return thismp;
1189 1.92 hannken
1190 1.129 hannken KASSERT(error == EOPNOTSUPP || error == ENOENT);
1191 1.92 hannken return NULL;
1192 1.92 hannken }
1193 1.92 hannken
1194 1.92 hannken /*
1195 1.1 rmind * Eliminate all activity associated with the requested vnode
1196 1.1 rmind * and with all vnodes aliased to the requested vnode.
1197 1.1 rmind */
1198 1.1 rmind void
1199 1.1 rmind vrevoke(vnode_t *vp)
1200 1.1 rmind {
1201 1.88 hannken struct mount *mp;
1202 1.19 hannken vnode_t *vq;
1203 1.1 rmind enum vtype type;
1204 1.1 rmind dev_t dev;
1205 1.1 rmind
1206 1.120 ad KASSERT(vrefcnt(vp) > 0);
1207 1.1 rmind
1208 1.92 hannken mp = vrevoke_suspend_next(NULL, vp->v_mount);
1209 1.88 hannken
1210 1.9 rmind mutex_enter(vp->v_interlock);
1211 1.52 hannken VSTATE_WAIT_STABLE(vp);
1212 1.57 hannken if (VSTATE_GET(vp) == VS_RECLAIMED) {
1213 1.9 rmind mutex_exit(vp->v_interlock);
1214 1.1 rmind } else if (vp->v_type != VBLK && vp->v_type != VCHR) {
1215 1.112 ad atomic_inc_uint(&vp->v_usecount);
1216 1.29 christos mutex_exit(vp->v_interlock);
1217 1.29 christos vgone(vp);
1218 1.1 rmind } else {
1219 1.1 rmind dev = vp->v_rdev;
1220 1.1 rmind type = vp->v_type;
1221 1.9 rmind mutex_exit(vp->v_interlock);
1222 1.1 rmind
1223 1.140 riastrad while (spec_node_lookup_by_dev(type, dev, VDEAD_NOWAIT, &vq)
1224 1.140 riastrad == 0) {
1225 1.92 hannken mp = vrevoke_suspend_next(mp, vq->v_mount);
1226 1.88 hannken vgone(vq);
1227 1.88 hannken }
1228 1.1 rmind }
1229 1.92 hannken vrevoke_suspend_next(mp, NULL);
1230 1.1 rmind }
1231 1.1 rmind
1232 1.1 rmind /*
1233 1.1 rmind * Eliminate all activity associated with a vnode in preparation for
1234 1.1 rmind * reuse. Drops a reference from the vnode.
1235 1.1 rmind */
1236 1.1 rmind void
1237 1.1 rmind vgone(vnode_t *vp)
1238 1.1 rmind {
1239 1.107 ad int lktype;
1240 1.1 rmind
1241 1.103 hannken KASSERT(vp->v_mount == dead_rootmount || fstrans_is_owner(vp->v_mount));
1242 1.93 hannken
1243 1.76 hannken vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
1244 1.107 ad lktype = LK_EXCLUSIVE;
1245 1.9 rmind mutex_enter(vp->v_interlock);
1246 1.76 hannken VSTATE_WAIT_STABLE(vp);
1247 1.146 riastrad if (VSTATE_GET(vp) == VS_LOADED) {
1248 1.123 ad VSTATE_CHANGE(vp, VS_LOADED, VS_BLOCKED);
1249 1.76 hannken vcache_reclaim(vp);
1250 1.107 ad lktype = LK_NONE;
1251 1.107 ad }
1252 1.76 hannken VSTATE_ASSERT(vp, VS_RECLAIMED);
1253 1.107 ad vrelel(vp, 0, lktype);
1254 1.1 rmind }
1255 1.1 rmind
1256 1.36 hannken static inline uint32_t
1257 1.36 hannken vcache_hash(const struct vcache_key *key)
1258 1.36 hannken {
1259 1.36 hannken uint32_t hash = HASH32_BUF_INIT;
1260 1.36 hannken
1261 1.97 hannken KASSERT(key->vk_key_len > 0);
1262 1.97 hannken
1263 1.36 hannken hash = hash32_buf(&key->vk_mount, sizeof(struct mount *), hash);
1264 1.36 hannken hash = hash32_buf(key->vk_key, key->vk_key_len, hash);
1265 1.36 hannken return hash;
1266 1.36 hannken }
1267 1.36 hannken
1268 1.127 simonb static int
1269 1.127 simonb vcache_stats(struct hashstat_sysctl *hs, bool fill)
1270 1.127 simonb {
1271 1.127 simonb vnode_impl_t *vip;
1272 1.127 simonb uint64_t chain;
1273 1.127 simonb
1274 1.127 simonb strlcpy(hs->hash_name, "vcache", sizeof(hs->hash_name));
1275 1.127 simonb strlcpy(hs->hash_desc, "vnode cache hash", sizeof(hs->hash_desc));
1276 1.127 simonb if (!fill)
1277 1.127 simonb return 0;
1278 1.127 simonb
1279 1.127 simonb hs->hash_size = vcache_hashmask + 1;
1280 1.127 simonb
1281 1.127 simonb for (size_t i = 0; i < hs->hash_size; i++) {
1282 1.127 simonb chain = 0;
1283 1.127 simonb mutex_enter(&vcache_lock);
1284 1.127 simonb SLIST_FOREACH(vip, &vcache_hashtab[i], vi_hash) {
1285 1.127 simonb chain++;
1286 1.127 simonb }
1287 1.127 simonb mutex_exit(&vcache_lock);
1288 1.127 simonb if (chain > 0) {
1289 1.127 simonb hs->hash_used++;
1290 1.127 simonb hs->hash_items += chain;
1291 1.127 simonb if (chain > hs->hash_maxchain)
1292 1.127 simonb hs->hash_maxchain = chain;
1293 1.127 simonb }
1294 1.127 simonb preempt_point();
1295 1.127 simonb }
1296 1.127 simonb
1297 1.127 simonb return 0;
1298 1.127 simonb }
1299 1.127 simonb
1300 1.36 hannken static void
1301 1.36 hannken vcache_init(void)
1302 1.36 hannken {
1303 1.36 hannken
1304 1.112 ad vcache_pool = pool_cache_init(sizeof(vnode_impl_t), coherency_unit,
1305 1.112 ad 0, 0, "vcachepl", NULL, IPL_NONE, NULL, NULL, NULL);
1306 1.69 hannken KASSERT(vcache_pool != NULL);
1307 1.69 hannken mutex_init(&vcache_lock, MUTEX_DEFAULT, IPL_NONE);
1308 1.69 hannken cv_init(&vcache_cv, "vcache");
1309 1.69 hannken vcache_hashsize = desiredvnodes;
1310 1.69 hannken vcache_hashtab = hashinit(desiredvnodes, HASH_SLIST, true,
1311 1.69 hannken &vcache_hashmask);
1312 1.127 simonb hashstat_register("vcache", vcache_stats);
1313 1.36 hannken }
1314 1.36 hannken
1315 1.36 hannken static void
1316 1.36 hannken vcache_reinit(void)
1317 1.36 hannken {
1318 1.36 hannken int i;
1319 1.36 hannken uint32_t hash;
1320 1.36 hannken u_long oldmask, newmask;
1321 1.36 hannken struct hashhead *oldtab, *newtab;
1322 1.70 hannken vnode_impl_t *vip;
1323 1.36 hannken
1324 1.36 hannken newtab = hashinit(desiredvnodes, HASH_SLIST, true, &newmask);
1325 1.69 hannken mutex_enter(&vcache_lock);
1326 1.69 hannken oldtab = vcache_hashtab;
1327 1.69 hannken oldmask = vcache_hashmask;
1328 1.69 hannken vcache_hashsize = desiredvnodes;
1329 1.69 hannken vcache_hashtab = newtab;
1330 1.69 hannken vcache_hashmask = newmask;
1331 1.36 hannken for (i = 0; i <= oldmask; i++) {
1332 1.70 hannken while ((vip = SLIST_FIRST(&oldtab[i])) != NULL) {
1333 1.70 hannken SLIST_REMOVE(&oldtab[i], vip, vnode_impl, vi_hash);
1334 1.70 hannken hash = vcache_hash(&vip->vi_key);
1335 1.69 hannken SLIST_INSERT_HEAD(&newtab[hash & vcache_hashmask],
1336 1.70 hannken vip, vi_hash);
1337 1.36 hannken }
1338 1.36 hannken }
1339 1.69 hannken mutex_exit(&vcache_lock);
1340 1.36 hannken hashdone(oldtab, HASH_SLIST, oldmask);
1341 1.36 hannken }
1342 1.36 hannken
1343 1.57 hannken static inline vnode_impl_t *
1344 1.36 hannken vcache_hash_lookup(const struct vcache_key *key, uint32_t hash)
1345 1.36 hannken {
1346 1.36 hannken struct hashhead *hashp;
1347 1.70 hannken vnode_impl_t *vip;
1348 1.36 hannken
1349 1.69 hannken KASSERT(mutex_owned(&vcache_lock));
1350 1.36 hannken
1351 1.69 hannken hashp = &vcache_hashtab[hash & vcache_hashmask];
1352 1.70 hannken SLIST_FOREACH(vip, hashp, vi_hash) {
1353 1.70 hannken if (key->vk_mount != vip->vi_key.vk_mount)
1354 1.36 hannken continue;
1355 1.70 hannken if (key->vk_key_len != vip->vi_key.vk_key_len)
1356 1.36 hannken continue;
1357 1.70 hannken if (memcmp(key->vk_key, vip->vi_key.vk_key, key->vk_key_len))
1358 1.36 hannken continue;
1359 1.70 hannken return vip;
1360 1.36 hannken }
1361 1.36 hannken return NULL;
1362 1.36 hannken }
1363 1.36 hannken
1364 1.36 hannken /*
1365 1.50 hannken * Allocate a new, uninitialized vcache node.
1366 1.50 hannken */
1367 1.57 hannken static vnode_impl_t *
1368 1.50 hannken vcache_alloc(void)
1369 1.50 hannken {
1370 1.70 hannken vnode_impl_t *vip;
1371 1.50 hannken vnode_t *vp;
1372 1.50 hannken
1373 1.70 hannken vip = pool_cache_get(vcache_pool, PR_WAITOK);
1374 1.111 ad vp = VIMPL_TO_VNODE(vip);
1375 1.70 hannken memset(vip, 0, sizeof(*vip));
1376 1.50 hannken
1377 1.112 ad rw_init(&vip->vi_lock);
1378 1.111 ad vp->v_interlock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
1379 1.111 ad
1380 1.111 ad uvm_obj_init(&vp->v_uobj, &uvm_vnodeops, true, 1);
1381 1.144 thorpej klist_init(&vip->vi_klist.vk_klist);
1382 1.144 thorpej vp->v_klist = &vip->vi_klist;
1383 1.50 hannken cv_init(&vp->v_cv, "vnode");
1384 1.114 ad cache_vnode_init(vp);
1385 1.50 hannken
1386 1.50 hannken vp->v_usecount = 1;
1387 1.50 hannken vp->v_type = VNON;
1388 1.50 hannken vp->v_size = vp->v_writesize = VSIZENOTSET;
1389 1.50 hannken
1390 1.70 hannken vip->vi_state = VS_LOADING;
1391 1.51 hannken
1392 1.104 ad lru_requeue(vp, &lru_list[LRU_FREE]);
1393 1.63 hannken
1394 1.70 hannken return vip;
1395 1.50 hannken }
1396 1.50 hannken
1397 1.50 hannken /*
1398 1.79 hannken * Deallocate a vcache node in state VS_LOADING.
1399 1.79 hannken *
1400 1.79 hannken * vcache_lock held on entry and released on return.
1401 1.79 hannken */
1402 1.79 hannken static void
1403 1.79 hannken vcache_dealloc(vnode_impl_t *vip)
1404 1.79 hannken {
1405 1.79 hannken vnode_t *vp;
1406 1.79 hannken
1407 1.79 hannken KASSERT(mutex_owned(&vcache_lock));
1408 1.79 hannken
1409 1.79 hannken vp = VIMPL_TO_VNODE(vip);
1410 1.102 hannken vfs_ref(dead_rootmount);
1411 1.102 hannken vfs_insmntque(vp, dead_rootmount);
1412 1.79 hannken mutex_enter(vp->v_interlock);
1413 1.79 hannken vp->v_op = dead_vnodeop_p;
1414 1.79 hannken VSTATE_CHANGE(vp, VS_LOADING, VS_RECLAIMED);
1415 1.79 hannken mutex_exit(&vcache_lock);
1416 1.107 ad vrelel(vp, 0, LK_NONE);
1417 1.79 hannken }
1418 1.79 hannken
1419 1.79 hannken /*
1420 1.50 hannken * Free an unused, unreferenced vcache node.
1421 1.67 hannken * v_interlock locked on entry.
1422 1.50 hannken */
1423 1.50 hannken static void
1424 1.70 hannken vcache_free(vnode_impl_t *vip)
1425 1.50 hannken {
1426 1.50 hannken vnode_t *vp;
1427 1.50 hannken
1428 1.70 hannken vp = VIMPL_TO_VNODE(vip);
1429 1.67 hannken KASSERT(mutex_owned(vp->v_interlock));
1430 1.50 hannken
1431 1.120 ad KASSERT(vrefcnt(vp) == 0);
1432 1.67 hannken KASSERT(vp->v_holdcnt == 0);
1433 1.67 hannken KASSERT(vp->v_writecount == 0);
1434 1.67 hannken lru_requeue(vp, NULL);
1435 1.67 hannken mutex_exit(vp->v_interlock);
1436 1.67 hannken
1437 1.67 hannken vfs_insmntque(vp, NULL);
1438 1.67 hannken if (vp->v_type == VBLK || vp->v_type == VCHR)
1439 1.67 hannken spec_node_destroy(vp);
1440 1.50 hannken
1441 1.111 ad mutex_obj_free(vp->v_interlock);
1442 1.112 ad rw_destroy(&vip->vi_lock);
1443 1.50 hannken uvm_obj_destroy(&vp->v_uobj, true);
1444 1.145 thorpej KASSERT(vp->v_klist == &vip->vi_klist);
1445 1.144 thorpej klist_fini(&vip->vi_klist.vk_klist);
1446 1.50 hannken cv_destroy(&vp->v_cv);
1447 1.114 ad cache_vnode_fini(vp);
1448 1.70 hannken pool_cache_put(vcache_pool, vip);
1449 1.50 hannken }
1450 1.50 hannken
1451 1.50 hannken /*
1452 1.66 hannken * Try to get an initial reference on this cached vnode.
1453 1.123 ad * Returns zero on success or EBUSY if the vnode state is not LOADED.
1454 1.66 hannken *
1455 1.123 ad * NB: lockless code sequences may rely on this not blocking.
1456 1.66 hannken */
1457 1.66 hannken int
1458 1.66 hannken vcache_tryvget(vnode_t *vp)
1459 1.66 hannken {
1460 1.123 ad u_int use, next;
1461 1.66 hannken
1462 1.123 ad for (use = atomic_load_relaxed(&vp->v_usecount);; use = next) {
1463 1.123 ad if (__predict_false((use & VUSECOUNT_GATE) == 0)) {
1464 1.123 ad return EBUSY;
1465 1.123 ad }
1466 1.132 hannken next = atomic_cas_uint(&vp->v_usecount,
1467 1.132 hannken use, (use + 1) | VUSECOUNT_VGET);
1468 1.123 ad if (__predict_true(next == use)) {
1469 1.142 riastrad membar_acquire();
1470 1.123 ad return 0;
1471 1.123 ad }
1472 1.123 ad }
1473 1.66 hannken }
1474 1.66 hannken
1475 1.66 hannken /*
1476 1.66 hannken * Try to get an initial reference on this cached vnode.
1477 1.66 hannken * Returns zero on success and ENOENT if the vnode has been reclaimed.
1478 1.66 hannken * Will wait for the vnode state to be stable.
1479 1.66 hannken *
1480 1.66 hannken * v_interlock locked on entry and unlocked on exit.
1481 1.66 hannken */
1482 1.66 hannken int
1483 1.66 hannken vcache_vget(vnode_t *vp)
1484 1.66 hannken {
1485 1.132 hannken int error;
1486 1.66 hannken
1487 1.66 hannken KASSERT(mutex_owned(vp->v_interlock));
1488 1.66 hannken
1489 1.67 hannken /* Increment hold count to prevent vnode from disappearing. */
1490 1.67 hannken vp->v_holdcnt++;
1491 1.67 hannken VSTATE_WAIT_STABLE(vp);
1492 1.67 hannken vp->v_holdcnt--;
1493 1.66 hannken
1494 1.67 hannken /* If this was the last reference to a reclaimed vnode free it now. */
1495 1.67 hannken if (__predict_false(VSTATE_GET(vp) == VS_RECLAIMED)) {
1496 1.120 ad if (vp->v_holdcnt == 0 && vrefcnt(vp) == 0)
1497 1.67 hannken vcache_free(VNODE_TO_VIMPL(vp));
1498 1.67 hannken else
1499 1.67 hannken mutex_exit(vp->v_interlock);
1500 1.66 hannken return ENOENT;
1501 1.66 hannken }
1502 1.94 hannken VSTATE_ASSERT(vp, VS_LOADED);
1503 1.132 hannken error = vcache_tryvget(vp);
1504 1.132 hannken KASSERT(error == 0);
1505 1.66 hannken mutex_exit(vp->v_interlock);
1506 1.66 hannken
1507 1.66 hannken return 0;
1508 1.66 hannken }
1509 1.66 hannken
1510 1.66 hannken /*
1511 1.36 hannken * Get a vnode / fs node pair by key and return it referenced through vpp.
1512 1.36 hannken */
1513 1.36 hannken int
1514 1.36 hannken vcache_get(struct mount *mp, const void *key, size_t key_len,
1515 1.36 hannken struct vnode **vpp)
1516 1.36 hannken {
1517 1.36 hannken int error;
1518 1.36 hannken uint32_t hash;
1519 1.36 hannken const void *new_key;
1520 1.36 hannken struct vnode *vp;
1521 1.36 hannken struct vcache_key vcache_key;
1522 1.70 hannken vnode_impl_t *vip, *new_vip;
1523 1.36 hannken
1524 1.36 hannken new_key = NULL;
1525 1.36 hannken *vpp = NULL;
1526 1.36 hannken
1527 1.36 hannken vcache_key.vk_mount = mp;
1528 1.36 hannken vcache_key.vk_key = key;
1529 1.36 hannken vcache_key.vk_key_len = key_len;
1530 1.36 hannken hash = vcache_hash(&vcache_key);
1531 1.36 hannken
1532 1.36 hannken again:
1533 1.69 hannken mutex_enter(&vcache_lock);
1534 1.70 hannken vip = vcache_hash_lookup(&vcache_key, hash);
1535 1.36 hannken
1536 1.36 hannken /* If found, take a reference or retry. */
1537 1.70 hannken if (__predict_true(vip != NULL)) {
1538 1.52 hannken /*
1539 1.52 hannken * If the vnode is loading we cannot take the v_interlock
1540 1.52 hannken * here as it might change during load (see uvm_obj_setlock()).
1541 1.69 hannken * As changing state from VS_LOADING requires both vcache_lock
1542 1.69 hannken * and v_interlock it is safe to test with vcache_lock held.
1543 1.52 hannken *
1544 1.57 hannken * Wait for vnodes changing state from VS_LOADING and retry.
1545 1.52 hannken */
1546 1.70 hannken if (__predict_false(vip->vi_state == VS_LOADING)) {
1547 1.69 hannken cv_wait(&vcache_cv, &vcache_lock);
1548 1.69 hannken mutex_exit(&vcache_lock);
1549 1.52 hannken goto again;
1550 1.52 hannken }
1551 1.70 hannken vp = VIMPL_TO_VNODE(vip);
1552 1.36 hannken mutex_enter(vp->v_interlock);
1553 1.69 hannken mutex_exit(&vcache_lock);
1554 1.66 hannken error = vcache_vget(vp);
1555 1.36 hannken if (error == ENOENT)
1556 1.36 hannken goto again;
1557 1.36 hannken if (error == 0)
1558 1.36 hannken *vpp = vp;
1559 1.36 hannken KASSERT((error != 0) == (*vpp == NULL));
1560 1.36 hannken return error;
1561 1.36 hannken }
1562 1.69 hannken mutex_exit(&vcache_lock);
1563 1.36 hannken
1564 1.36 hannken /* Allocate and initialize a new vcache / vnode pair. */
1565 1.87 hannken error = vfs_busy(mp);
1566 1.36 hannken if (error)
1567 1.36 hannken return error;
1568 1.70 hannken new_vip = vcache_alloc();
1569 1.70 hannken new_vip->vi_key = vcache_key;
1570 1.70 hannken vp = VIMPL_TO_VNODE(new_vip);
1571 1.69 hannken mutex_enter(&vcache_lock);
1572 1.70 hannken vip = vcache_hash_lookup(&vcache_key, hash);
1573 1.70 hannken if (vip == NULL) {
1574 1.69 hannken SLIST_INSERT_HEAD(&vcache_hashtab[hash & vcache_hashmask],
1575 1.70 hannken new_vip, vi_hash);
1576 1.70 hannken vip = new_vip;
1577 1.36 hannken }
1578 1.36 hannken
1579 1.36 hannken /* If another thread beat us inserting this node, retry. */
1580 1.70 hannken if (vip != new_vip) {
1581 1.79 hannken vcache_dealloc(new_vip);
1582 1.87 hannken vfs_unbusy(mp);
1583 1.36 hannken goto again;
1584 1.36 hannken }
1585 1.69 hannken mutex_exit(&vcache_lock);
1586 1.36 hannken
1587 1.57 hannken /* Load the fs node. Exclusive as new_node is VS_LOADING. */
1588 1.36 hannken error = VFS_LOADVNODE(mp, vp, key, key_len, &new_key);
1589 1.36 hannken if (error) {
1590 1.69 hannken mutex_enter(&vcache_lock);
1591 1.69 hannken SLIST_REMOVE(&vcache_hashtab[hash & vcache_hashmask],
1592 1.70 hannken new_vip, vnode_impl, vi_hash);
1593 1.79 hannken vcache_dealloc(new_vip);
1594 1.87 hannken vfs_unbusy(mp);
1595 1.36 hannken KASSERT(*vpp == NULL);
1596 1.36 hannken return error;
1597 1.36 hannken }
1598 1.36 hannken KASSERT(new_key != NULL);
1599 1.36 hannken KASSERT(memcmp(key, new_key, key_len) == 0);
1600 1.36 hannken KASSERT(vp->v_op != NULL);
1601 1.36 hannken vfs_insmntque(vp, mp);
1602 1.36 hannken if ((mp->mnt_iflag & IMNT_MPSAFE) != 0)
1603 1.36 hannken vp->v_vflag |= VV_MPSAFE;
1604 1.87 hannken vfs_ref(mp);
1605 1.87 hannken vfs_unbusy(mp);
1606 1.36 hannken
1607 1.36 hannken /* Finished loading, finalize node. */
1608 1.69 hannken mutex_enter(&vcache_lock);
1609 1.70 hannken new_vip->vi_key.vk_key = new_key;
1610 1.39 hannken mutex_enter(vp->v_interlock);
1611 1.94 hannken VSTATE_CHANGE(vp, VS_LOADING, VS_LOADED);
1612 1.39 hannken mutex_exit(vp->v_interlock);
1613 1.69 hannken mutex_exit(&vcache_lock);
1614 1.36 hannken *vpp = vp;
1615 1.36 hannken return 0;
1616 1.36 hannken }
1617 1.36 hannken
1618 1.36 hannken /*
1619 1.40 hannken * Create a new vnode / fs node pair and return it referenced through vpp.
1620 1.40 hannken */
1621 1.40 hannken int
1622 1.40 hannken vcache_new(struct mount *mp, struct vnode *dvp, struct vattr *vap,
1623 1.101 hannken kauth_cred_t cred, void *extra, struct vnode **vpp)
1624 1.40 hannken {
1625 1.40 hannken int error;
1626 1.40 hannken uint32_t hash;
1627 1.70 hannken struct vnode *vp, *ovp;
1628 1.70 hannken vnode_impl_t *vip, *ovip;
1629 1.40 hannken
1630 1.40 hannken *vpp = NULL;
1631 1.40 hannken
1632 1.40 hannken /* Allocate and initialize a new vcache / vnode pair. */
1633 1.87 hannken error = vfs_busy(mp);
1634 1.40 hannken if (error)
1635 1.40 hannken return error;
1636 1.70 hannken vip = vcache_alloc();
1637 1.70 hannken vip->vi_key.vk_mount = mp;
1638 1.70 hannken vp = VIMPL_TO_VNODE(vip);
1639 1.40 hannken
1640 1.40 hannken /* Create and load the fs node. */
1641 1.101 hannken error = VFS_NEWVNODE(mp, dvp, vp, vap, cred, extra,
1642 1.70 hannken &vip->vi_key.vk_key_len, &vip->vi_key.vk_key);
1643 1.40 hannken if (error) {
1644 1.69 hannken mutex_enter(&vcache_lock);
1645 1.79 hannken vcache_dealloc(vip);
1646 1.87 hannken vfs_unbusy(mp);
1647 1.40 hannken KASSERT(*vpp == NULL);
1648 1.40 hannken return error;
1649 1.40 hannken }
1650 1.40 hannken KASSERT(vp->v_op != NULL);
1651 1.97 hannken KASSERT((vip->vi_key.vk_key_len == 0) == (mp == dead_rootmount));
1652 1.97 hannken if (vip->vi_key.vk_key_len > 0) {
1653 1.97 hannken KASSERT(vip->vi_key.vk_key != NULL);
1654 1.97 hannken hash = vcache_hash(&vip->vi_key);
1655 1.40 hannken
1656 1.97 hannken /*
1657 1.97 hannken * Wait for previous instance to be reclaimed,
1658 1.97 hannken * then insert new node.
1659 1.97 hannken */
1660 1.97 hannken mutex_enter(&vcache_lock);
1661 1.97 hannken while ((ovip = vcache_hash_lookup(&vip->vi_key, hash))) {
1662 1.97 hannken ovp = VIMPL_TO_VNODE(ovip);
1663 1.97 hannken mutex_enter(ovp->v_interlock);
1664 1.97 hannken mutex_exit(&vcache_lock);
1665 1.97 hannken error = vcache_vget(ovp);
1666 1.97 hannken KASSERT(error == ENOENT);
1667 1.97 hannken mutex_enter(&vcache_lock);
1668 1.97 hannken }
1669 1.97 hannken SLIST_INSERT_HEAD(&vcache_hashtab[hash & vcache_hashmask],
1670 1.97 hannken vip, vi_hash);
1671 1.69 hannken mutex_exit(&vcache_lock);
1672 1.40 hannken }
1673 1.40 hannken vfs_insmntque(vp, mp);
1674 1.40 hannken if ((mp->mnt_iflag & IMNT_MPSAFE) != 0)
1675 1.40 hannken vp->v_vflag |= VV_MPSAFE;
1676 1.87 hannken vfs_ref(mp);
1677 1.87 hannken vfs_unbusy(mp);
1678 1.40 hannken
1679 1.40 hannken /* Finished loading, finalize node. */
1680 1.69 hannken mutex_enter(&vcache_lock);
1681 1.52 hannken mutex_enter(vp->v_interlock);
1682 1.94 hannken VSTATE_CHANGE(vp, VS_LOADING, VS_LOADED);
1683 1.69 hannken mutex_exit(&vcache_lock);
1684 1.40 hannken mutex_exit(vp->v_interlock);
1685 1.40 hannken *vpp = vp;
1686 1.40 hannken return 0;
1687 1.40 hannken }
1688 1.40 hannken
1689 1.40 hannken /*
1690 1.65 hannken * Prepare key change: update old cache nodes key and lock new cache node.
1691 1.37 hannken * Return an error if the new node already exists.
1692 1.37 hannken */
1693 1.37 hannken int
1694 1.37 hannken vcache_rekey_enter(struct mount *mp, struct vnode *vp,
1695 1.37 hannken const void *old_key, size_t old_key_len,
1696 1.37 hannken const void *new_key, size_t new_key_len)
1697 1.37 hannken {
1698 1.37 hannken uint32_t old_hash, new_hash;
1699 1.37 hannken struct vcache_key old_vcache_key, new_vcache_key;
1700 1.70 hannken vnode_impl_t *vip, *new_vip;
1701 1.37 hannken
1702 1.37 hannken old_vcache_key.vk_mount = mp;
1703 1.37 hannken old_vcache_key.vk_key = old_key;
1704 1.37 hannken old_vcache_key.vk_key_len = old_key_len;
1705 1.37 hannken old_hash = vcache_hash(&old_vcache_key);
1706 1.37 hannken
1707 1.37 hannken new_vcache_key.vk_mount = mp;
1708 1.37 hannken new_vcache_key.vk_key = new_key;
1709 1.37 hannken new_vcache_key.vk_key_len = new_key_len;
1710 1.37 hannken new_hash = vcache_hash(&new_vcache_key);
1711 1.37 hannken
1712 1.70 hannken new_vip = vcache_alloc();
1713 1.70 hannken new_vip->vi_key = new_vcache_key;
1714 1.37 hannken
1715 1.52 hannken /* Insert locked new node used as placeholder. */
1716 1.69 hannken mutex_enter(&vcache_lock);
1717 1.70 hannken vip = vcache_hash_lookup(&new_vcache_key, new_hash);
1718 1.70 hannken if (vip != NULL) {
1719 1.79 hannken vcache_dealloc(new_vip);
1720 1.37 hannken return EEXIST;
1721 1.37 hannken }
1722 1.69 hannken SLIST_INSERT_HEAD(&vcache_hashtab[new_hash & vcache_hashmask],
1723 1.70 hannken new_vip, vi_hash);
1724 1.49 hannken
1725 1.65 hannken /* Replace old nodes key with the temporary copy. */
1726 1.70 hannken vip = vcache_hash_lookup(&old_vcache_key, old_hash);
1727 1.70 hannken KASSERT(vip != NULL);
1728 1.70 hannken KASSERT(VIMPL_TO_VNODE(vip) == vp);
1729 1.70 hannken KASSERT(vip->vi_key.vk_key != old_vcache_key.vk_key);
1730 1.70 hannken vip->vi_key = old_vcache_key;
1731 1.69 hannken mutex_exit(&vcache_lock);
1732 1.37 hannken return 0;
1733 1.37 hannken }
1734 1.37 hannken
1735 1.37 hannken /*
1736 1.65 hannken * Key change complete: update old node and remove placeholder.
1737 1.37 hannken */
1738 1.37 hannken void
1739 1.37 hannken vcache_rekey_exit(struct mount *mp, struct vnode *vp,
1740 1.37 hannken const void *old_key, size_t old_key_len,
1741 1.37 hannken const void *new_key, size_t new_key_len)
1742 1.37 hannken {
1743 1.37 hannken uint32_t old_hash, new_hash;
1744 1.37 hannken struct vcache_key old_vcache_key, new_vcache_key;
1745 1.70 hannken vnode_impl_t *vip, *new_vip;
1746 1.70 hannken struct vnode *new_vp;
1747 1.37 hannken
1748 1.37 hannken old_vcache_key.vk_mount = mp;
1749 1.37 hannken old_vcache_key.vk_key = old_key;
1750 1.37 hannken old_vcache_key.vk_key_len = old_key_len;
1751 1.37 hannken old_hash = vcache_hash(&old_vcache_key);
1752 1.37 hannken
1753 1.37 hannken new_vcache_key.vk_mount = mp;
1754 1.37 hannken new_vcache_key.vk_key = new_key;
1755 1.37 hannken new_vcache_key.vk_key_len = new_key_len;
1756 1.37 hannken new_hash = vcache_hash(&new_vcache_key);
1757 1.37 hannken
1758 1.69 hannken mutex_enter(&vcache_lock);
1759 1.49 hannken
1760 1.49 hannken /* Lookup old and new node. */
1761 1.70 hannken vip = vcache_hash_lookup(&old_vcache_key, old_hash);
1762 1.70 hannken KASSERT(vip != NULL);
1763 1.70 hannken KASSERT(VIMPL_TO_VNODE(vip) == vp);
1764 1.70 hannken
1765 1.70 hannken new_vip = vcache_hash_lookup(&new_vcache_key, new_hash);
1766 1.70 hannken KASSERT(new_vip != NULL);
1767 1.70 hannken KASSERT(new_vip->vi_key.vk_key_len == new_key_len);
1768 1.70 hannken new_vp = VIMPL_TO_VNODE(new_vip);
1769 1.70 hannken mutex_enter(new_vp->v_interlock);
1770 1.70 hannken VSTATE_ASSERT(VIMPL_TO_VNODE(new_vip), VS_LOADING);
1771 1.79 hannken mutex_exit(new_vp->v_interlock);
1772 1.49 hannken
1773 1.49 hannken /* Rekey old node and put it onto its new hashlist. */
1774 1.70 hannken vip->vi_key = new_vcache_key;
1775 1.49 hannken if (old_hash != new_hash) {
1776 1.69 hannken SLIST_REMOVE(&vcache_hashtab[old_hash & vcache_hashmask],
1777 1.70 hannken vip, vnode_impl, vi_hash);
1778 1.69 hannken SLIST_INSERT_HEAD(&vcache_hashtab[new_hash & vcache_hashmask],
1779 1.70 hannken vip, vi_hash);
1780 1.49 hannken }
1781 1.49 hannken
1782 1.49 hannken /* Remove new node used as placeholder. */
1783 1.69 hannken SLIST_REMOVE(&vcache_hashtab[new_hash & vcache_hashmask],
1784 1.70 hannken new_vip, vnode_impl, vi_hash);
1785 1.79 hannken vcache_dealloc(new_vip);
1786 1.37 hannken }
1787 1.37 hannken
1788 1.37 hannken /*
1789 1.54 hannken * Disassociate the underlying file system from a vnode.
1790 1.54 hannken *
1791 1.54 hannken * Must be called with vnode locked and will return unlocked.
1792 1.54 hannken * Must be called with the interlock held, and will return with it held.
1793 1.54 hannken */
1794 1.54 hannken static void
1795 1.54 hannken vcache_reclaim(vnode_t *vp)
1796 1.54 hannken {
1797 1.54 hannken lwp_t *l = curlwp;
1798 1.70 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
1799 1.74 hannken struct mount *mp = vp->v_mount;
1800 1.55 hannken uint32_t hash;
1801 1.55 hannken uint8_t temp_buf[64], *temp_key;
1802 1.55 hannken size_t temp_key_len;
1803 1.141 riastrad bool recycle;
1804 1.54 hannken int error;
1805 1.54 hannken
1806 1.139 hannken KASSERT(VOP_ISLOCKED(vp) == LK_EXCLUSIVE);
1807 1.54 hannken KASSERT(mutex_owned(vp->v_interlock));
1808 1.120 ad KASSERT(vrefcnt(vp) != 0);
1809 1.54 hannken
1810 1.70 hannken temp_key_len = vip->vi_key.vk_key_len;
1811 1.54 hannken /*
1812 1.54 hannken * Prevent the vnode from being recycled or brought into use
1813 1.54 hannken * while we clean it out.
1814 1.54 hannken */
1815 1.123 ad VSTATE_CHANGE(vp, VS_BLOCKED, VS_RECLAIMING);
1816 1.145 thorpej
1817 1.145 thorpej /*
1818 1.145 thorpej * Send NOTE_REVOKE now, before we call VOP_RECLAIM(),
1819 1.145 thorpej * because VOP_RECLAIM() could cause vp->v_klist to
1820 1.145 thorpej * become invalid. Don't check for interest in NOTE_REVOKE
1821 1.145 thorpej * here; it's always posted because it sets EV_EOF.
1822 1.145 thorpej *
1823 1.145 thorpej * Once it's been posted, reset vp->v_klist to point to
1824 1.145 thorpej * our own local storage, in case we were sharing with
1825 1.145 thorpej * someone else.
1826 1.145 thorpej */
1827 1.145 thorpej KNOTE(&vp->v_klist->vk_klist, NOTE_REVOKE);
1828 1.145 thorpej vp->v_klist = &vip->vi_klist;
1829 1.111 ad mutex_exit(vp->v_interlock);
1830 1.111 ad
1831 1.111 ad rw_enter(vp->v_uobj.vmobjlock, RW_WRITER);
1832 1.111 ad mutex_enter(vp->v_interlock);
1833 1.125 ad if ((vp->v_iflag & VI_EXECMAP) != 0) {
1834 1.105 ad cpu_count(CPU_COUNT_EXECPAGES, -vp->v_uobj.uo_npages);
1835 1.54 hannken }
1836 1.54 hannken vp->v_iflag &= ~(VI_TEXT|VI_EXECMAP);
1837 1.116 ad vp->v_iflag |= VI_DEADCHECK; /* for genfs_getpages() */
1838 1.54 hannken mutex_exit(vp->v_interlock);
1839 1.111 ad rw_exit(vp->v_uobj.vmobjlock);
1840 1.54 hannken
1841 1.114 ad /*
1842 1.114 ad * With vnode state set to reclaiming, purge name cache immediately
1843 1.114 ad * to prevent new handles on vnode, and wait for existing threads
1844 1.114 ad * trying to get a handle to notice VS_RECLAIMED status and abort.
1845 1.114 ad */
1846 1.114 ad cache_purge(vp);
1847 1.114 ad
1848 1.55 hannken /* Replace the vnode key with a temporary copy. */
1849 1.70 hannken if (vip->vi_key.vk_key_len > sizeof(temp_buf)) {
1850 1.55 hannken temp_key = kmem_alloc(temp_key_len, KM_SLEEP);
1851 1.55 hannken } else {
1852 1.55 hannken temp_key = temp_buf;
1853 1.55 hannken }
1854 1.97 hannken if (vip->vi_key.vk_key_len > 0) {
1855 1.97 hannken mutex_enter(&vcache_lock);
1856 1.97 hannken memcpy(temp_key, vip->vi_key.vk_key, temp_key_len);
1857 1.97 hannken vip->vi_key.vk_key = temp_key;
1858 1.97 hannken mutex_exit(&vcache_lock);
1859 1.97 hannken }
1860 1.55 hannken
1861 1.96 hannken fstrans_start(mp);
1862 1.74 hannken
1863 1.54 hannken /*
1864 1.54 hannken * Clean out any cached data associated with the vnode.
1865 1.54 hannken */
1866 1.54 hannken error = vinvalbuf(vp, V_SAVE, NOCRED, l, 0, 0);
1867 1.54 hannken if (error != 0) {
1868 1.54 hannken if (wapbl_vphaswapbl(vp))
1869 1.54 hannken WAPBL_DISCARD(wapbl_vptomp(vp));
1870 1.54 hannken error = vinvalbuf(vp, 0, NOCRED, l, 0, 0);
1871 1.54 hannken }
1872 1.54 hannken KASSERTMSG((error == 0), "vinvalbuf failed: %d", error);
1873 1.54 hannken KASSERT((vp->v_iflag & VI_ONWORKLST) == 0);
1874 1.141 riastrad if (vp->v_type == VBLK || vp->v_type == VCHR) {
1875 1.54 hannken spec_node_revoke(vp);
1876 1.54 hannken }
1877 1.54 hannken
1878 1.60 hannken /*
1879 1.60 hannken * Disassociate the underlying file system from the vnode.
1880 1.90 riastrad * VOP_INACTIVE leaves the vnode locked; VOP_RECLAIM unlocks
1881 1.90 riastrad * the vnode, and may destroy the vnode so that VOP_UNLOCK
1882 1.90 riastrad * would no longer function.
1883 1.60 hannken */
1884 1.60 hannken VOP_INACTIVE(vp, &recycle);
1885 1.139 hannken KASSERT(VOP_ISLOCKED(vp) == LK_EXCLUSIVE);
1886 1.54 hannken if (VOP_RECLAIM(vp)) {
1887 1.54 hannken vnpanic(vp, "%s: cannot reclaim", __func__);
1888 1.54 hannken }
1889 1.54 hannken
1890 1.54 hannken KASSERT(vp->v_data == NULL);
1891 1.113 ad KASSERT((vp->v_iflag & VI_PAGES) == 0);
1892 1.54 hannken
1893 1.54 hannken if (vp->v_type == VREG && vp->v_ractx != NULL) {
1894 1.54 hannken uvm_ra_freectx(vp->v_ractx);
1895 1.54 hannken vp->v_ractx = NULL;
1896 1.54 hannken }
1897 1.54 hannken
1898 1.97 hannken if (vip->vi_key.vk_key_len > 0) {
1899 1.55 hannken /* Remove from vnode cache. */
1900 1.97 hannken hash = vcache_hash(&vip->vi_key);
1901 1.97 hannken mutex_enter(&vcache_lock);
1902 1.97 hannken KASSERT(vip == vcache_hash_lookup(&vip->vi_key, hash));
1903 1.97 hannken SLIST_REMOVE(&vcache_hashtab[hash & vcache_hashmask],
1904 1.97 hannken vip, vnode_impl, vi_hash);
1905 1.97 hannken mutex_exit(&vcache_lock);
1906 1.97 hannken }
1907 1.55 hannken if (temp_key != temp_buf)
1908 1.55 hannken kmem_free(temp_key, temp_key_len);
1909 1.55 hannken
1910 1.54 hannken /* Done with purge, notify sleepers of the grim news. */
1911 1.54 hannken mutex_enter(vp->v_interlock);
1912 1.54 hannken vp->v_op = dead_vnodeop_p;
1913 1.57 hannken VSTATE_CHANGE(vp, VS_RECLAIMING, VS_RECLAIMED);
1914 1.54 hannken vp->v_tag = VT_NON;
1915 1.80 hannken mutex_exit(vp->v_interlock);
1916 1.54 hannken
1917 1.80 hannken /*
1918 1.80 hannken * Move to dead mount. Must be after changing the operations
1919 1.80 hannken * vector as vnode operations enter the mount before using the
1920 1.80 hannken * operations vector. See sys/kern/vnode_if.c.
1921 1.80 hannken */
1922 1.80 hannken vp->v_vflag &= ~VV_ROOT;
1923 1.86 hannken vfs_ref(dead_rootmount);
1924 1.80 hannken vfs_insmntque(vp, dead_rootmount);
1925 1.80 hannken
1926 1.110 ad #ifdef PAX_SEGVGUARD
1927 1.110 ad pax_segvguard_cleanup(vp);
1928 1.110 ad #endif /* PAX_SEGVGUARD */
1929 1.110 ad
1930 1.80 hannken mutex_enter(vp->v_interlock);
1931 1.74 hannken fstrans_done(mp);
1932 1.54 hannken KASSERT((vp->v_iflag & VI_ONWORKLST) == 0);
1933 1.54 hannken }
1934 1.54 hannken
1935 1.54 hannken /*
1936 1.98 hannken * Disassociate the underlying file system from an open device vnode
1937 1.98 hannken * and make it anonymous.
1938 1.98 hannken *
1939 1.98 hannken * Vnode unlocked on entry, drops a reference to the vnode.
1940 1.98 hannken */
1941 1.98 hannken void
1942 1.98 hannken vcache_make_anon(vnode_t *vp)
1943 1.98 hannken {
1944 1.98 hannken vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
1945 1.98 hannken uint32_t hash;
1946 1.98 hannken bool recycle;
1947 1.98 hannken
1948 1.98 hannken KASSERT(vp->v_type == VBLK || vp->v_type == VCHR);
1949 1.103 hannken KASSERT(vp->v_mount == dead_rootmount || fstrans_is_owner(vp->v_mount));
1950 1.98 hannken VSTATE_ASSERT_UNLOCKED(vp, VS_ACTIVE);
1951 1.98 hannken
1952 1.98 hannken /* Remove from vnode cache. */
1953 1.98 hannken hash = vcache_hash(&vip->vi_key);
1954 1.98 hannken mutex_enter(&vcache_lock);
1955 1.98 hannken KASSERT(vip == vcache_hash_lookup(&vip->vi_key, hash));
1956 1.98 hannken SLIST_REMOVE(&vcache_hashtab[hash & vcache_hashmask],
1957 1.98 hannken vip, vnode_impl, vi_hash);
1958 1.98 hannken vip->vi_key.vk_mount = dead_rootmount;
1959 1.98 hannken vip->vi_key.vk_key_len = 0;
1960 1.98 hannken vip->vi_key.vk_key = NULL;
1961 1.98 hannken mutex_exit(&vcache_lock);
1962 1.98 hannken
1963 1.98 hannken /*
1964 1.98 hannken * Disassociate the underlying file system from the vnode.
1965 1.98 hannken * VOP_INACTIVE leaves the vnode locked; VOP_RECLAIM unlocks
1966 1.98 hannken * the vnode, and may destroy the vnode so that VOP_UNLOCK
1967 1.98 hannken * would no longer function.
1968 1.98 hannken */
1969 1.98 hannken if (vn_lock(vp, LK_EXCLUSIVE)) {
1970 1.98 hannken vnpanic(vp, "%s: cannot lock", __func__);
1971 1.98 hannken }
1972 1.98 hannken VOP_INACTIVE(vp, &recycle);
1973 1.139 hannken KASSERT(VOP_ISLOCKED(vp) == LK_EXCLUSIVE);
1974 1.98 hannken if (VOP_RECLAIM(vp)) {
1975 1.98 hannken vnpanic(vp, "%s: cannot reclaim", __func__);
1976 1.98 hannken }
1977 1.98 hannken
1978 1.98 hannken /* Purge name cache. */
1979 1.98 hannken cache_purge(vp);
1980 1.98 hannken
1981 1.98 hannken /* Done with purge, change operations vector. */
1982 1.98 hannken mutex_enter(vp->v_interlock);
1983 1.98 hannken vp->v_op = spec_vnodeop_p;
1984 1.139 hannken vp->v_vflag |= VV_MPSAFE;
1985 1.98 hannken mutex_exit(vp->v_interlock);
1986 1.98 hannken
1987 1.98 hannken /*
1988 1.98 hannken * Move to dead mount. Must be after changing the operations
1989 1.98 hannken * vector as vnode operations enter the mount before using the
1990 1.98 hannken * operations vector. See sys/kern/vnode_if.c.
1991 1.98 hannken */
1992 1.98 hannken vfs_ref(dead_rootmount);
1993 1.98 hannken vfs_insmntque(vp, dead_rootmount);
1994 1.98 hannken
1995 1.98 hannken vrele(vp);
1996 1.98 hannken }
1997 1.98 hannken
1998 1.98 hannken /*
1999 1.1 rmind * Update outstanding I/O count and do wakeup if requested.
2000 1.1 rmind */
2001 1.1 rmind void
2002 1.1 rmind vwakeup(struct buf *bp)
2003 1.1 rmind {
2004 1.1 rmind vnode_t *vp;
2005 1.1 rmind
2006 1.1 rmind if ((vp = bp->b_vp) == NULL)
2007 1.1 rmind return;
2008 1.1 rmind
2009 1.9 rmind KASSERT(bp->b_objlock == vp->v_interlock);
2010 1.1 rmind KASSERT(mutex_owned(bp->b_objlock));
2011 1.1 rmind
2012 1.1 rmind if (--vp->v_numoutput < 0)
2013 1.11 christos vnpanic(vp, "%s: neg numoutput, vp %p", __func__, vp);
2014 1.1 rmind if (vp->v_numoutput == 0)
2015 1.1 rmind cv_broadcast(&vp->v_cv);
2016 1.1 rmind }
2017 1.1 rmind
2018 1.1 rmind /*
2019 1.35 hannken * Test a vnode for being or becoming dead. Returns one of:
2020 1.35 hannken * EBUSY: vnode is becoming dead, with "flags == VDEAD_NOWAIT" only.
2021 1.35 hannken * ENOENT: vnode is dead.
2022 1.35 hannken * 0: otherwise.
2023 1.35 hannken *
2024 1.35 hannken * Whenever this function returns a non-zero value all future
2025 1.35 hannken * calls will also return a non-zero value.
2026 1.35 hannken */
2027 1.35 hannken int
2028 1.35 hannken vdead_check(struct vnode *vp, int flags)
2029 1.35 hannken {
2030 1.35 hannken
2031 1.35 hannken KASSERT(mutex_owned(vp->v_interlock));
2032 1.35 hannken
2033 1.52 hannken if (! ISSET(flags, VDEAD_NOWAIT))
2034 1.52 hannken VSTATE_WAIT_STABLE(vp);
2035 1.1 rmind
2036 1.57 hannken if (VSTATE_GET(vp) == VS_RECLAIMING) {
2037 1.52 hannken KASSERT(ISSET(flags, VDEAD_NOWAIT));
2038 1.52 hannken return EBUSY;
2039 1.57 hannken } else if (VSTATE_GET(vp) == VS_RECLAIMED) {
2040 1.52 hannken return ENOENT;
2041 1.52 hannken }
2042 1.1 rmind
2043 1.52 hannken return 0;
2044 1.1 rmind }
2045 1.1 rmind
2046 1.1 rmind int
2047 1.61 hannken vfs_drainvnodes(void)
2048 1.1 rmind {
2049 1.63 hannken int i, gen;
2050 1.61 hannken
2051 1.63 hannken mutex_enter(&vdrain_lock);
2052 1.63 hannken for (i = 0; i < 2; i++) {
2053 1.63 hannken gen = vdrain_gen;
2054 1.63 hannken while (gen == vdrain_gen) {
2055 1.63 hannken cv_broadcast(&vdrain_cv);
2056 1.63 hannken cv_wait(&vdrain_gen_cv, &vdrain_lock);
2057 1.63 hannken }
2058 1.61 hannken }
2059 1.63 hannken mutex_exit(&vdrain_lock);
2060 1.12 hannken
2061 1.63 hannken if (numvnodes >= desiredvnodes)
2062 1.63 hannken return EBUSY;
2063 1.12 hannken
2064 1.69 hannken if (vcache_hashsize != desiredvnodes)
2065 1.61 hannken vcache_reinit();
2066 1.36 hannken
2067 1.1 rmind return 0;
2068 1.1 rmind }
2069 1.1 rmind
2070 1.1 rmind void
2071 1.11 christos vnpanic(vnode_t *vp, const char *fmt, ...)
2072 1.1 rmind {
2073 1.11 christos va_list ap;
2074 1.11 christos
2075 1.1 rmind #ifdef DIAGNOSTIC
2076 1.1 rmind vprint(NULL, vp);
2077 1.1 rmind #endif
2078 1.11 christos va_start(ap, fmt);
2079 1.11 christos vpanic(fmt, ap);
2080 1.11 christos va_end(ap);
2081 1.1 rmind }
2082 1.111 ad
2083 1.111 ad void
2084 1.111 ad vshareilock(vnode_t *tvp, vnode_t *fvp)
2085 1.111 ad {
2086 1.111 ad kmutex_t *oldlock;
2087 1.111 ad
2088 1.111 ad oldlock = tvp->v_interlock;
2089 1.111 ad mutex_obj_hold(fvp->v_interlock);
2090 1.111 ad tvp->v_interlock = fvp->v_interlock;
2091 1.111 ad mutex_obj_free(oldlock);
2092 1.111 ad }
2093 1.144 thorpej
2094 1.144 thorpej void
2095 1.144 thorpej vshareklist(vnode_t *tvp, vnode_t *fvp)
2096 1.144 thorpej {
2097 1.144 thorpej /*
2098 1.144 thorpej * If two vnodes share klist state, they must also share
2099 1.144 thorpej * an interlock.
2100 1.144 thorpej */
2101 1.144 thorpej KASSERT(tvp->v_interlock == fvp->v_interlock);
2102 1.144 thorpej
2103 1.144 thorpej /*
2104 1.144 thorpej * We make the following assumptions:
2105 1.144 thorpej *
2106 1.144 thorpej * ==> Some other synchronization is happening outside of
2107 1.144 thorpej * our view to make this safe.
2108 1.144 thorpej *
2109 1.144 thorpej * ==> That the "to" vnode will have the necessary references
2110 1.144 thorpej * on the "from" vnode so that the storage for the klist
2111 1.144 thorpej * won't be yanked out from beneath us (the vnode_impl).
2112 1.144 thorpej *
2113 1.144 thorpej * ==> If "from" is also sharing, we then assume that "from"
2114 1.144 thorpej * has the necessary references, and so on.
2115 1.144 thorpej */
2116 1.144 thorpej tvp->v_klist = fvp->v_klist;
2117 1.144 thorpej }
2118