vfs_mount.c revision 1.40.2.5 1 1.40.2.5 pgoyette /* $NetBSD: vfs_mount.c,v 1.40.2.5 2017/03/20 06:57:48 pgoyette Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.2 rmind * Copyright (c) 1997-2011 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 #include <sys/cdefs.h>
70 1.40.2.5 pgoyette __KERNEL_RCSID(0, "$NetBSD: vfs_mount.c,v 1.40.2.5 2017/03/20 06:57:48 pgoyette Exp $");
71 1.1 rmind
72 1.1 rmind #include <sys/param.h>
73 1.1 rmind #include <sys/kernel.h>
74 1.1 rmind
75 1.1 rmind #include <sys/atomic.h>
76 1.1 rmind #include <sys/buf.h>
77 1.1 rmind #include <sys/conf.h>
78 1.1 rmind #include <sys/fcntl.h>
79 1.1 rmind #include <sys/filedesc.h>
80 1.1 rmind #include <sys/device.h>
81 1.1 rmind #include <sys/kauth.h>
82 1.1 rmind #include <sys/kmem.h>
83 1.1 rmind #include <sys/module.h>
84 1.1 rmind #include <sys/mount.h>
85 1.40.2.5 pgoyette #include <sys/fstrans.h>
86 1.1 rmind #include <sys/namei.h>
87 1.14 gson #include <sys/extattr.h>
88 1.1 rmind #include <sys/syscallargs.h>
89 1.1 rmind #include <sys/sysctl.h>
90 1.1 rmind #include <sys/systm.h>
91 1.5 dsl #include <sys/vfs_syscalls.h>
92 1.40.2.3 pgoyette #include <sys/vnode_impl.h>
93 1.1 rmind
94 1.1 rmind #include <miscfs/genfs/genfs.h>
95 1.1 rmind #include <miscfs/specfs/specdev.h>
96 1.1 rmind
97 1.40.2.5 pgoyette static struct vnode *vfs_vnode_iterator_next1(struct vnode_iterator *,
98 1.40.2.5 pgoyette bool (*)(void *, struct vnode *), void *, bool);
99 1.40.2.5 pgoyette
100 1.33 pooka /* Root filesystem. */
101 1.1 rmind vnode_t * rootvnode;
102 1.1 rmind
103 1.1 rmind /* Mounted filesystem list. */
104 1.1 rmind struct mntlist mountlist;
105 1.1 rmind kmutex_t mountlist_lock;
106 1.40.2.5 pgoyette int vnode_offset_next_by_mount /* XXX: ugly hack for pstat.c */
107 1.40.2.5 pgoyette = offsetof(vnode_impl_t, vi_mntvnodes.tqe_next);
108 1.1 rmind
109 1.1 rmind kmutex_t mntvnode_lock;
110 1.1 rmind kmutex_t vfs_list_lock;
111 1.1 rmind
112 1.1 rmind static specificdata_domain_t mount_specificdata_domain;
113 1.1 rmind static kmutex_t mntid_lock;
114 1.1 rmind
115 1.1 rmind static kmutex_t mountgen_lock;
116 1.1 rmind static uint64_t mountgen;
117 1.1 rmind
118 1.1 rmind void
119 1.1 rmind vfs_mount_sysinit(void)
120 1.1 rmind {
121 1.1 rmind
122 1.24 christos TAILQ_INIT(&mountlist);
123 1.1 rmind mutex_init(&mountlist_lock, MUTEX_DEFAULT, IPL_NONE);
124 1.1 rmind mutex_init(&mntvnode_lock, MUTEX_DEFAULT, IPL_NONE);
125 1.1 rmind mutex_init(&vfs_list_lock, MUTEX_DEFAULT, IPL_NONE);
126 1.1 rmind
127 1.1 rmind mount_specificdata_domain = specificdata_domain_create();
128 1.1 rmind mutex_init(&mntid_lock, MUTEX_DEFAULT, IPL_NONE);
129 1.1 rmind mutex_init(&mountgen_lock, MUTEX_DEFAULT, IPL_NONE);
130 1.1 rmind mountgen = 0;
131 1.1 rmind }
132 1.1 rmind
133 1.1 rmind struct mount *
134 1.1 rmind vfs_mountalloc(struct vfsops *vfsops, vnode_t *vp)
135 1.1 rmind {
136 1.1 rmind struct mount *mp;
137 1.22 martin int error __diagused;
138 1.1 rmind
139 1.1 rmind mp = kmem_zalloc(sizeof(*mp), KM_SLEEP);
140 1.1 rmind if (mp == NULL)
141 1.1 rmind return NULL;
142 1.1 rmind
143 1.1 rmind mp->mnt_op = vfsops;
144 1.1 rmind mp->mnt_refcnt = 1;
145 1.1 rmind TAILQ_INIT(&mp->mnt_vnodelist);
146 1.18 mlelstv mutex_init(&mp->mnt_unmounting, MUTEX_DEFAULT, IPL_NONE);
147 1.1 rmind mutex_init(&mp->mnt_renamelock, MUTEX_DEFAULT, IPL_NONE);
148 1.1 rmind mutex_init(&mp->mnt_updating, MUTEX_DEFAULT, IPL_NONE);
149 1.1 rmind error = vfs_busy(mp, NULL);
150 1.1 rmind KASSERT(error == 0);
151 1.1 rmind mp->mnt_vnodecovered = vp;
152 1.1 rmind mount_initspecific(mp);
153 1.1 rmind
154 1.1 rmind mutex_enter(&mountgen_lock);
155 1.1 rmind mp->mnt_gen = mountgen++;
156 1.1 rmind mutex_exit(&mountgen_lock);
157 1.1 rmind
158 1.1 rmind return mp;
159 1.1 rmind }
160 1.1 rmind
161 1.1 rmind /*
162 1.1 rmind * vfs_rootmountalloc: lookup a filesystem type, and if found allocate and
163 1.1 rmind * initialize a mount structure for it.
164 1.1 rmind *
165 1.1 rmind * Devname is usually updated by mount(8) after booting.
166 1.1 rmind */
167 1.1 rmind int
168 1.1 rmind vfs_rootmountalloc(const char *fstypename, const char *devname,
169 1.1 rmind struct mount **mpp)
170 1.1 rmind {
171 1.1 rmind struct vfsops *vfsp = NULL;
172 1.1 rmind struct mount *mp;
173 1.1 rmind
174 1.1 rmind mutex_enter(&vfs_list_lock);
175 1.1 rmind LIST_FOREACH(vfsp, &vfs_list, vfs_list)
176 1.1 rmind if (!strncmp(vfsp->vfs_name, fstypename,
177 1.1 rmind sizeof(mp->mnt_stat.f_fstypename)))
178 1.1 rmind break;
179 1.1 rmind if (vfsp == NULL) {
180 1.1 rmind mutex_exit(&vfs_list_lock);
181 1.1 rmind return (ENODEV);
182 1.1 rmind }
183 1.1 rmind vfsp->vfs_refcount++;
184 1.1 rmind mutex_exit(&vfs_list_lock);
185 1.1 rmind
186 1.1 rmind if ((mp = vfs_mountalloc(vfsp, NULL)) == NULL)
187 1.1 rmind return ENOMEM;
188 1.1 rmind mp->mnt_flag = MNT_RDONLY;
189 1.1 rmind (void)strlcpy(mp->mnt_stat.f_fstypename, vfsp->vfs_name,
190 1.1 rmind sizeof(mp->mnt_stat.f_fstypename));
191 1.1 rmind mp->mnt_stat.f_mntonname[0] = '/';
192 1.1 rmind mp->mnt_stat.f_mntonname[1] = '\0';
193 1.1 rmind mp->mnt_stat.f_mntfromname[sizeof(mp->mnt_stat.f_mntfromname) - 1] =
194 1.1 rmind '\0';
195 1.1 rmind (void)copystr(devname, mp->mnt_stat.f_mntfromname,
196 1.1 rmind sizeof(mp->mnt_stat.f_mntfromname) - 1, 0);
197 1.1 rmind *mpp = mp;
198 1.1 rmind return 0;
199 1.1 rmind }
200 1.1 rmind
201 1.1 rmind /*
202 1.1 rmind * vfs_getnewfsid: get a new unique fsid.
203 1.1 rmind */
204 1.1 rmind void
205 1.1 rmind vfs_getnewfsid(struct mount *mp)
206 1.1 rmind {
207 1.1 rmind static u_short xxxfs_mntid;
208 1.1 rmind fsid_t tfsid;
209 1.1 rmind int mtype;
210 1.1 rmind
211 1.1 rmind mutex_enter(&mntid_lock);
212 1.1 rmind mtype = makefstype(mp->mnt_op->vfs_name);
213 1.1 rmind mp->mnt_stat.f_fsidx.__fsid_val[0] = makedev(mtype, 0);
214 1.1 rmind mp->mnt_stat.f_fsidx.__fsid_val[1] = mtype;
215 1.1 rmind mp->mnt_stat.f_fsid = mp->mnt_stat.f_fsidx.__fsid_val[0];
216 1.1 rmind if (xxxfs_mntid == 0)
217 1.1 rmind ++xxxfs_mntid;
218 1.1 rmind tfsid.__fsid_val[0] = makedev(mtype & 0xff, xxxfs_mntid);
219 1.1 rmind tfsid.__fsid_val[1] = mtype;
220 1.24 christos if (!TAILQ_EMPTY(&mountlist)) {
221 1.1 rmind while (vfs_getvfs(&tfsid)) {
222 1.1 rmind tfsid.__fsid_val[0]++;
223 1.1 rmind xxxfs_mntid++;
224 1.1 rmind }
225 1.1 rmind }
226 1.1 rmind mp->mnt_stat.f_fsidx.__fsid_val[0] = tfsid.__fsid_val[0];
227 1.1 rmind mp->mnt_stat.f_fsid = mp->mnt_stat.f_fsidx.__fsid_val[0];
228 1.1 rmind mutex_exit(&mntid_lock);
229 1.1 rmind }
230 1.1 rmind
231 1.1 rmind /*
232 1.1 rmind * Lookup a mount point by filesystem identifier.
233 1.1 rmind *
234 1.1 rmind * XXX Needs to add a reference to the mount point.
235 1.1 rmind */
236 1.1 rmind struct mount *
237 1.1 rmind vfs_getvfs(fsid_t *fsid)
238 1.1 rmind {
239 1.1 rmind struct mount *mp;
240 1.1 rmind
241 1.1 rmind mutex_enter(&mountlist_lock);
242 1.24 christos TAILQ_FOREACH(mp, &mountlist, mnt_list) {
243 1.1 rmind if (mp->mnt_stat.f_fsidx.__fsid_val[0] == fsid->__fsid_val[0] &&
244 1.1 rmind mp->mnt_stat.f_fsidx.__fsid_val[1] == fsid->__fsid_val[1]) {
245 1.1 rmind mutex_exit(&mountlist_lock);
246 1.1 rmind return (mp);
247 1.1 rmind }
248 1.1 rmind }
249 1.1 rmind mutex_exit(&mountlist_lock);
250 1.1 rmind return NULL;
251 1.1 rmind }
252 1.1 rmind
253 1.1 rmind /*
254 1.1 rmind * Drop a reference to a mount structure, freeing if the last reference.
255 1.1 rmind */
256 1.1 rmind void
257 1.1 rmind vfs_destroy(struct mount *mp)
258 1.1 rmind {
259 1.1 rmind
260 1.1 rmind if (__predict_true((int)atomic_dec_uint_nv(&mp->mnt_refcnt) > 0)) {
261 1.1 rmind return;
262 1.1 rmind }
263 1.1 rmind
264 1.1 rmind /*
265 1.1 rmind * Nothing else has visibility of the mount: we can now
266 1.1 rmind * free the data structures.
267 1.1 rmind */
268 1.1 rmind KASSERT(mp->mnt_refcnt == 0);
269 1.1 rmind specificdata_fini(mount_specificdata_domain, &mp->mnt_specdataref);
270 1.18 mlelstv mutex_destroy(&mp->mnt_unmounting);
271 1.1 rmind mutex_destroy(&mp->mnt_updating);
272 1.1 rmind mutex_destroy(&mp->mnt_renamelock);
273 1.1 rmind if (mp->mnt_op != NULL) {
274 1.1 rmind vfs_delref(mp->mnt_op);
275 1.1 rmind }
276 1.1 rmind kmem_free(mp, sizeof(*mp));
277 1.1 rmind }
278 1.1 rmind
279 1.1 rmind /*
280 1.1 rmind * Mark a mount point as busy, and gain a new reference to it. Used to
281 1.1 rmind * prevent the file system from being unmounted during critical sections.
282 1.1 rmind *
283 1.18 mlelstv * vfs_busy can be called multiple times and by multiple threads
284 1.18 mlelstv * and must be accompanied by the same number of vfs_unbusy calls.
285 1.18 mlelstv *
286 1.1 rmind * => The caller must hold a pre-existing reference to the mount.
287 1.1 rmind * => Will fail if the file system is being unmounted, or is unmounted.
288 1.1 rmind */
289 1.1 rmind int
290 1.1 rmind vfs_busy(struct mount *mp, struct mount **nextp)
291 1.1 rmind {
292 1.1 rmind
293 1.1 rmind KASSERT(mp->mnt_refcnt > 0);
294 1.1 rmind
295 1.18 mlelstv mutex_enter(&mp->mnt_unmounting);
296 1.1 rmind if (__predict_false((mp->mnt_iflag & IMNT_GONE) != 0)) {
297 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
298 1.1 rmind if (nextp != NULL) {
299 1.1 rmind KASSERT(mutex_owned(&mountlist_lock));
300 1.24 christos *nextp = TAILQ_NEXT(mp, mnt_list);
301 1.1 rmind }
302 1.1 rmind return ENOENT;
303 1.1 rmind }
304 1.18 mlelstv ++mp->mnt_busynest;
305 1.18 mlelstv KASSERT(mp->mnt_busynest != 0);
306 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
307 1.1 rmind if (nextp != NULL) {
308 1.1 rmind mutex_exit(&mountlist_lock);
309 1.1 rmind }
310 1.1 rmind atomic_inc_uint(&mp->mnt_refcnt);
311 1.1 rmind return 0;
312 1.1 rmind }
313 1.1 rmind
314 1.1 rmind /*
315 1.1 rmind * Unbusy a busy filesystem.
316 1.1 rmind *
317 1.18 mlelstv * Every successful vfs_busy() call must be undone by a vfs_unbusy() call.
318 1.18 mlelstv *
319 1.1 rmind * => If keepref is true, preserve reference added by vfs_busy().
320 1.1 rmind * => If nextp != NULL, acquire mountlist_lock.
321 1.1 rmind */
322 1.1 rmind void
323 1.1 rmind vfs_unbusy(struct mount *mp, bool keepref, struct mount **nextp)
324 1.1 rmind {
325 1.1 rmind
326 1.1 rmind KASSERT(mp->mnt_refcnt > 0);
327 1.1 rmind
328 1.1 rmind if (nextp != NULL) {
329 1.1 rmind mutex_enter(&mountlist_lock);
330 1.1 rmind }
331 1.18 mlelstv mutex_enter(&mp->mnt_unmounting);
332 1.18 mlelstv KASSERT(mp->mnt_busynest != 0);
333 1.18 mlelstv mp->mnt_busynest--;
334 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
335 1.1 rmind if (!keepref) {
336 1.1 rmind vfs_destroy(mp);
337 1.1 rmind }
338 1.1 rmind if (nextp != NULL) {
339 1.1 rmind KASSERT(mutex_owned(&mountlist_lock));
340 1.24 christos *nextp = TAILQ_NEXT(mp, mnt_list);
341 1.1 rmind }
342 1.1 rmind }
343 1.1 rmind
344 1.27 hannken struct vnode_iterator {
345 1.40.2.5 pgoyette vnode_impl_t vi_vnode;
346 1.40 msaitoh };
347 1.27 hannken
348 1.27 hannken void
349 1.40.2.5 pgoyette vfs_vnode_iterator_init(struct mount *mp, struct vnode_iterator **vnip)
350 1.27 hannken {
351 1.40.2.5 pgoyette vnode_t *vp;
352 1.40.2.5 pgoyette vnode_impl_t *vip;
353 1.27 hannken
354 1.38 hannken vp = vnalloc_marker(mp);
355 1.40.2.5 pgoyette vip = VNODE_TO_VIMPL(vp);
356 1.27 hannken
357 1.27 hannken mutex_enter(&mntvnode_lock);
358 1.40.2.5 pgoyette TAILQ_INSERT_HEAD(&mp->mnt_vnodelist, vip, vi_mntvnodes);
359 1.27 hannken vp->v_usecount = 1;
360 1.27 hannken mutex_exit(&mntvnode_lock);
361 1.27 hannken
362 1.40.2.5 pgoyette *vnip = (struct vnode_iterator *)vip;
363 1.27 hannken }
364 1.27 hannken
365 1.27 hannken void
366 1.40.2.5 pgoyette vfs_vnode_iterator_destroy(struct vnode_iterator *vni)
367 1.27 hannken {
368 1.40.2.5 pgoyette vnode_impl_t *mvip = &vni->vi_vnode;
369 1.40.2.5 pgoyette vnode_t *mvp = VIMPL_TO_VNODE(mvip);
370 1.27 hannken
371 1.27 hannken mutex_enter(&mntvnode_lock);
372 1.38 hannken KASSERT(vnis_marker(mvp));
373 1.32 hannken if (mvp->v_usecount != 0) {
374 1.40.2.5 pgoyette TAILQ_REMOVE(&mvp->v_mount->mnt_vnodelist, mvip, vi_mntvnodes);
375 1.32 hannken mvp->v_usecount = 0;
376 1.32 hannken }
377 1.27 hannken mutex_exit(&mntvnode_lock);
378 1.38 hannken vnfree_marker(mvp);
379 1.27 hannken }
380 1.27 hannken
381 1.40.2.5 pgoyette static struct vnode *
382 1.40.2.5 pgoyette vfs_vnode_iterator_next1(struct vnode_iterator *vni,
383 1.40.2.5 pgoyette bool (*f)(void *, struct vnode *), void *cl, bool do_wait)
384 1.27 hannken {
385 1.40.2.5 pgoyette vnode_impl_t *mvip = &vni->vi_vnode;
386 1.40.2.5 pgoyette struct mount *mp = VIMPL_TO_VNODE(mvip)->v_mount;
387 1.40.2.5 pgoyette vnode_t *vp;
388 1.40.2.5 pgoyette vnode_impl_t *vip;
389 1.27 hannken int error;
390 1.27 hannken
391 1.40.2.5 pgoyette KASSERT(vnis_marker(VIMPL_TO_VNODE(mvip)));
392 1.27 hannken
393 1.27 hannken do {
394 1.27 hannken mutex_enter(&mntvnode_lock);
395 1.40.2.5 pgoyette vip = TAILQ_NEXT(mvip, vi_mntvnodes);
396 1.40.2.5 pgoyette TAILQ_REMOVE(&mp->mnt_vnodelist, mvip, vi_mntvnodes);
397 1.40.2.5 pgoyette VIMPL_TO_VNODE(mvip)->v_usecount = 0;
398 1.29 christos again:
399 1.40.2.5 pgoyette vp = VIMPL_TO_VNODE(vip);
400 1.27 hannken if (vp == NULL) {
401 1.27 hannken mutex_exit(&mntvnode_lock);
402 1.29 christos return NULL;
403 1.27 hannken }
404 1.27 hannken mutex_enter(vp->v_interlock);
405 1.38 hannken if (vnis_marker(vp) ||
406 1.40.2.5 pgoyette vdead_check(vp, (do_wait ? 0 : VDEAD_NOWAIT)) ||
407 1.37 hannken (f && !(*f)(cl, vp))) {
408 1.27 hannken mutex_exit(vp->v_interlock);
409 1.40.2.5 pgoyette vip = TAILQ_NEXT(vip, vi_mntvnodes);
410 1.29 christos goto again;
411 1.27 hannken }
412 1.27 hannken
413 1.40.2.5 pgoyette TAILQ_INSERT_AFTER(&mp->mnt_vnodelist, vip, mvip, vi_mntvnodes);
414 1.40.2.5 pgoyette VIMPL_TO_VNODE(mvip)->v_usecount = 1;
415 1.27 hannken mutex_exit(&mntvnode_lock);
416 1.40.2.4 pgoyette error = vcache_vget(vp);
417 1.27 hannken KASSERT(error == 0 || error == ENOENT);
418 1.27 hannken } while (error != 0);
419 1.27 hannken
420 1.29 christos return vp;
421 1.27 hannken }
422 1.27 hannken
423 1.40.2.5 pgoyette struct vnode *
424 1.40.2.5 pgoyette vfs_vnode_iterator_next(struct vnode_iterator *vni,
425 1.40.2.5 pgoyette bool (*f)(void *, struct vnode *), void *cl)
426 1.40.2.5 pgoyette {
427 1.40.2.5 pgoyette
428 1.40.2.5 pgoyette return vfs_vnode_iterator_next1(vni, f, cl, false);
429 1.40.2.5 pgoyette }
430 1.40.2.5 pgoyette
431 1.1 rmind /*
432 1.1 rmind * Move a vnode from one mount queue to another.
433 1.1 rmind */
434 1.1 rmind void
435 1.1 rmind vfs_insmntque(vnode_t *vp, struct mount *mp)
436 1.1 rmind {
437 1.40.2.5 pgoyette vnode_impl_t *vip = VNODE_TO_VIMPL(vp);
438 1.1 rmind struct mount *omp;
439 1.1 rmind
440 1.4 rmind KASSERT(mp == NULL || (mp->mnt_iflag & IMNT_UNMOUNT) == 0 ||
441 1.4 rmind vp->v_tag == VT_VFS);
442 1.1 rmind
443 1.1 rmind mutex_enter(&mntvnode_lock);
444 1.1 rmind /*
445 1.1 rmind * Delete from old mount point vnode list, if on one.
446 1.1 rmind */
447 1.1 rmind if ((omp = vp->v_mount) != NULL)
448 1.40.2.5 pgoyette TAILQ_REMOVE(&vp->v_mount->mnt_vnodelist, vip, vi_mntvnodes);
449 1.1 rmind /*
450 1.1 rmind * Insert into list of vnodes for the new mount point, if
451 1.1 rmind * available. The caller must take a reference on the mount
452 1.1 rmind * structure and donate to the vnode.
453 1.1 rmind */
454 1.1 rmind if ((vp->v_mount = mp) != NULL)
455 1.40.2.5 pgoyette TAILQ_INSERT_TAIL(&mp->mnt_vnodelist, vip, vi_mntvnodes);
456 1.1 rmind mutex_exit(&mntvnode_lock);
457 1.1 rmind
458 1.1 rmind if (omp != NULL) {
459 1.1 rmind /* Release reference to old mount. */
460 1.1 rmind vfs_destroy(omp);
461 1.1 rmind }
462 1.1 rmind }
463 1.1 rmind
464 1.1 rmind /*
465 1.1 rmind * Remove any vnodes in the vnode table belonging to mount point mp.
466 1.1 rmind *
467 1.1 rmind * If FORCECLOSE is not specified, there should not be any active ones,
468 1.1 rmind * return error if any are found (nb: this is a user error, not a
469 1.1 rmind * system error). If FORCECLOSE is specified, detach any active vnodes
470 1.1 rmind * that are found.
471 1.1 rmind *
472 1.1 rmind * If WRITECLOSE is set, only flush out regular file vnodes open for
473 1.1 rmind * writing.
474 1.1 rmind *
475 1.1 rmind * SKIPSYSTEM causes any vnodes marked VV_SYSTEM to be skipped.
476 1.1 rmind */
477 1.1 rmind #ifdef DEBUG
478 1.1 rmind int busyprt = 0; /* print out busy vnodes */
479 1.1 rmind struct ctldebug debug1 = { "busyprt", &busyprt };
480 1.1 rmind #endif
481 1.1 rmind
482 1.40.2.5 pgoyette static vnode_t *
483 1.40.2.5 pgoyette vflushnext(struct vnode_iterator *marker, int *when)
484 1.40.2.5 pgoyette {
485 1.40.2.5 pgoyette if (hardclock_ticks > *when) {
486 1.40.2.5 pgoyette yield();
487 1.40.2.5 pgoyette *when = hardclock_ticks + hz / 10;
488 1.40.2.5 pgoyette }
489 1.40.2.5 pgoyette return vfs_vnode_iterator_next1(marker, NULL, NULL, true);
490 1.40.2.5 pgoyette }
491 1.29 christos
492 1.40.2.5 pgoyette /*
493 1.40.2.5 pgoyette * Flush one vnode. Referenced on entry, unreferenced on return.
494 1.40.2.5 pgoyette */
495 1.40.2.5 pgoyette static int
496 1.40.2.5 pgoyette vflush_one(vnode_t *vp, vnode_t *skipvp, int flags)
497 1.29 christos {
498 1.40.2.5 pgoyette int error;
499 1.40.2.5 pgoyette struct vattr vattr;
500 1.40.2.5 pgoyette
501 1.40.2.5 pgoyette if (vp == skipvp ||
502 1.40.2.5 pgoyette ((flags & SKIPSYSTEM) && (vp->v_vflag & VV_SYSTEM))) {
503 1.40.2.5 pgoyette vrele(vp);
504 1.40.2.5 pgoyette return 0;
505 1.40.2.5 pgoyette }
506 1.29 christos /*
507 1.40.2.5 pgoyette * If WRITECLOSE is set, only flush out regular file
508 1.40.2.5 pgoyette * vnodes open for writing or open and unlinked.
509 1.29 christos */
510 1.40.2.5 pgoyette if ((flags & WRITECLOSE)) {
511 1.40.2.5 pgoyette if (vp->v_type != VREG) {
512 1.40.2.5 pgoyette vrele(vp);
513 1.40.2.5 pgoyette return 0;
514 1.40.2.5 pgoyette }
515 1.40.2.5 pgoyette error = vn_lock(vp, LK_EXCLUSIVE);
516 1.40.2.5 pgoyette if (error) {
517 1.40.2.5 pgoyette KASSERT(error == ENOENT);
518 1.40.2.5 pgoyette vrele(vp);
519 1.40.2.5 pgoyette return 0;
520 1.40.2.5 pgoyette }
521 1.40.2.5 pgoyette error = VOP_FSYNC(vp, curlwp->l_cred, FSYNC_WAIT, 0, 0);
522 1.40.2.5 pgoyette if (error == 0)
523 1.40.2.5 pgoyette error = VOP_GETATTR(vp, &vattr, curlwp->l_cred);
524 1.40.2.5 pgoyette VOP_UNLOCK(vp);
525 1.40.2.5 pgoyette if (error) {
526 1.40.2.5 pgoyette vrele(vp);
527 1.40.2.5 pgoyette return error;
528 1.40.2.5 pgoyette }
529 1.40.2.5 pgoyette if (vp->v_writecount == 0 && vattr.va_nlink > 0) {
530 1.40.2.5 pgoyette vrele(vp);
531 1.40.2.5 pgoyette return 0;
532 1.40.2.5 pgoyette }
533 1.40.2.5 pgoyette }
534 1.29 christos /*
535 1.40.2.5 pgoyette * First try to recycle the vnode.
536 1.29 christos */
537 1.40.2.5 pgoyette if (vrecycle(vp))
538 1.40.2.5 pgoyette return 0;
539 1.29 christos /*
540 1.40.2.5 pgoyette * If FORCECLOSE is set, forcibly close the vnode.
541 1.29 christos */
542 1.40.2.5 pgoyette if (flags & FORCECLOSE) {
543 1.40.2.5 pgoyette vgone(vp);
544 1.40.2.5 pgoyette return 0;
545 1.29 christos }
546 1.40.2.5 pgoyette vrele(vp);
547 1.40.2.5 pgoyette return EBUSY;
548 1.29 christos }
549 1.29 christos
550 1.1 rmind int
551 1.1 rmind vflush(struct mount *mp, vnode_t *skipvp, int flags)
552 1.1 rmind {
553 1.27 hannken vnode_t *vp;
554 1.27 hannken struct vnode_iterator *marker;
555 1.40.2.5 pgoyette int busy, error, when, retries = 2;
556 1.1 rmind
557 1.40.2.5 pgoyette do {
558 1.40.2.5 pgoyette busy = error = when = 0;
559 1.29 christos
560 1.27 hannken /*
561 1.40.2.5 pgoyette * First, flush out any vnode references from the
562 1.40.2.5 pgoyette * deferred vrele list.
563 1.27 hannken */
564 1.40.2.5 pgoyette vfs_drainvnodes();
565 1.40.2.5 pgoyette
566 1.40.2.5 pgoyette vfs_vnode_iterator_init(mp, &marker);
567 1.40.2.5 pgoyette
568 1.40.2.5 pgoyette while ((vp = vflushnext(marker, &when)) != NULL) {
569 1.40.2.5 pgoyette error = vflush_one(vp, skipvp, flags);
570 1.40.2.5 pgoyette if (error == EBUSY) {
571 1.40.2.5 pgoyette error = 0;
572 1.40.2.5 pgoyette busy++;
573 1.1 rmind #ifdef DEBUG
574 1.40.2.5 pgoyette if (busyprt && retries == 0)
575 1.40.2.5 pgoyette vprint("vflush: busy vnode", vp);
576 1.1 rmind #endif
577 1.40.2.5 pgoyette } else if (error != 0) {
578 1.40.2.5 pgoyette break;
579 1.40.2.5 pgoyette }
580 1.37 hannken }
581 1.40.2.5 pgoyette
582 1.40.2.5 pgoyette vfs_vnode_iterator_destroy(marker);
583 1.40.2.5 pgoyette } while (error == 0 && busy > 0 && retries-- > 0);
584 1.40.2.5 pgoyette
585 1.40.2.5 pgoyette if (error)
586 1.40.2.5 pgoyette return error;
587 1.40.2.5 pgoyette if (busy)
588 1.40.2.5 pgoyette return EBUSY;
589 1.40.2.5 pgoyette return 0;
590 1.1 rmind }
591 1.1 rmind
592 1.1 rmind /*
593 1.1 rmind * Mount a file system.
594 1.1 rmind */
595 1.1 rmind
596 1.1 rmind /*
597 1.1 rmind * Scan all active processes to see if any of them have a current or root
598 1.1 rmind * directory onto which the new filesystem has just been mounted. If so,
599 1.1 rmind * replace them with the new mount point.
600 1.1 rmind */
601 1.1 rmind static void
602 1.1 rmind mount_checkdirs(vnode_t *olddp)
603 1.1 rmind {
604 1.1 rmind vnode_t *newdp, *rele1, *rele2;
605 1.1 rmind struct cwdinfo *cwdi;
606 1.1 rmind struct proc *p;
607 1.1 rmind bool retry;
608 1.1 rmind
609 1.1 rmind if (olddp->v_usecount == 1) {
610 1.1 rmind return;
611 1.1 rmind }
612 1.1 rmind if (VFS_ROOT(olddp->v_mountedhere, &newdp))
613 1.1 rmind panic("mount: lost mount");
614 1.1 rmind
615 1.1 rmind do {
616 1.1 rmind retry = false;
617 1.1 rmind mutex_enter(proc_lock);
618 1.1 rmind PROCLIST_FOREACH(p, &allproc) {
619 1.1 rmind if ((cwdi = p->p_cwdi) == NULL)
620 1.1 rmind continue;
621 1.1 rmind /*
622 1.1 rmind * Cannot change to the old directory any more,
623 1.1 rmind * so even if we see a stale value it is not a
624 1.1 rmind * problem.
625 1.1 rmind */
626 1.1 rmind if (cwdi->cwdi_cdir != olddp &&
627 1.1 rmind cwdi->cwdi_rdir != olddp)
628 1.1 rmind continue;
629 1.1 rmind retry = true;
630 1.1 rmind rele1 = NULL;
631 1.1 rmind rele2 = NULL;
632 1.1 rmind atomic_inc_uint(&cwdi->cwdi_refcnt);
633 1.1 rmind mutex_exit(proc_lock);
634 1.1 rmind rw_enter(&cwdi->cwdi_lock, RW_WRITER);
635 1.1 rmind if (cwdi->cwdi_cdir == olddp) {
636 1.1 rmind rele1 = cwdi->cwdi_cdir;
637 1.1 rmind vref(newdp);
638 1.1 rmind cwdi->cwdi_cdir = newdp;
639 1.1 rmind }
640 1.1 rmind if (cwdi->cwdi_rdir == olddp) {
641 1.1 rmind rele2 = cwdi->cwdi_rdir;
642 1.1 rmind vref(newdp);
643 1.1 rmind cwdi->cwdi_rdir = newdp;
644 1.1 rmind }
645 1.1 rmind rw_exit(&cwdi->cwdi_lock);
646 1.1 rmind cwdfree(cwdi);
647 1.1 rmind if (rele1 != NULL)
648 1.1 rmind vrele(rele1);
649 1.1 rmind if (rele2 != NULL)
650 1.1 rmind vrele(rele2);
651 1.1 rmind mutex_enter(proc_lock);
652 1.1 rmind break;
653 1.1 rmind }
654 1.1 rmind mutex_exit(proc_lock);
655 1.1 rmind } while (retry);
656 1.1 rmind
657 1.1 rmind if (rootvnode == olddp) {
658 1.1 rmind vrele(rootvnode);
659 1.1 rmind vref(newdp);
660 1.1 rmind rootvnode = newdp;
661 1.1 rmind }
662 1.1 rmind vput(newdp);
663 1.1 rmind }
664 1.1 rmind
665 1.31 manu /*
666 1.31 manu * Start extended attributes
667 1.31 manu */
668 1.31 manu static int
669 1.31 manu start_extattr(struct mount *mp)
670 1.31 manu {
671 1.31 manu int error;
672 1.31 manu
673 1.31 manu error = VFS_EXTATTRCTL(mp, EXTATTR_CMD_START, NULL, 0, NULL);
674 1.31 manu if (error)
675 1.31 manu printf("%s: failed to start extattr: error = %d\n",
676 1.31 manu mp->mnt_stat.f_mntonname, error);
677 1.31 manu
678 1.31 manu return error;
679 1.31 manu }
680 1.31 manu
681 1.1 rmind int
682 1.1 rmind mount_domount(struct lwp *l, vnode_t **vpp, struct vfsops *vfsops,
683 1.1 rmind const char *path, int flags, void *data, size_t *data_len)
684 1.1 rmind {
685 1.1 rmind vnode_t *vp = *vpp;
686 1.1 rmind struct mount *mp;
687 1.1 rmind struct pathbuf *pb;
688 1.1 rmind struct nameidata nd;
689 1.1 rmind int error;
690 1.1 rmind
691 1.1 rmind error = kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_MOUNT,
692 1.1 rmind KAUTH_REQ_SYSTEM_MOUNT_NEW, vp, KAUTH_ARG(flags), data);
693 1.1 rmind if (error) {
694 1.1 rmind vfs_delref(vfsops);
695 1.1 rmind return error;
696 1.1 rmind }
697 1.1 rmind
698 1.1 rmind /* Cannot make a non-dir a mount-point (from here anyway). */
699 1.1 rmind if (vp->v_type != VDIR) {
700 1.1 rmind vfs_delref(vfsops);
701 1.1 rmind return ENOTDIR;
702 1.1 rmind }
703 1.1 rmind
704 1.1 rmind if (flags & MNT_EXPORTED) {
705 1.1 rmind vfs_delref(vfsops);
706 1.1 rmind return EINVAL;
707 1.1 rmind }
708 1.1 rmind
709 1.1 rmind if ((mp = vfs_mountalloc(vfsops, vp)) == NULL) {
710 1.1 rmind vfs_delref(vfsops);
711 1.1 rmind return ENOMEM;
712 1.1 rmind }
713 1.1 rmind
714 1.1 rmind mp->mnt_stat.f_owner = kauth_cred_geteuid(l->l_cred);
715 1.1 rmind
716 1.1 rmind /*
717 1.1 rmind * The underlying file system may refuse the mount for
718 1.1 rmind * various reasons. Allow the user to force it to happen.
719 1.1 rmind *
720 1.1 rmind * Set the mount level flags.
721 1.1 rmind */
722 1.12 christos mp->mnt_flag = flags & (MNT_BASIC_FLAGS | MNT_FORCE | MNT_IGNORE);
723 1.1 rmind
724 1.1 rmind mutex_enter(&mp->mnt_updating);
725 1.1 rmind error = VFS_MOUNT(mp, path, data, data_len);
726 1.1 rmind mp->mnt_flag &= ~MNT_OP_FLAGS;
727 1.1 rmind
728 1.1 rmind if (error != 0)
729 1.1 rmind goto err_unmounted;
730 1.1 rmind
731 1.40.2.5 pgoyette if (mp->mnt_lower == NULL) {
732 1.40.2.5 pgoyette error = fstrans_mount(mp);
733 1.40.2.5 pgoyette if (error)
734 1.40.2.5 pgoyette goto err_mounted;
735 1.40.2.5 pgoyette }
736 1.40.2.5 pgoyette
737 1.1 rmind /*
738 1.1 rmind * Validate and prepare the mount point.
739 1.1 rmind */
740 1.1 rmind error = pathbuf_copyin(path, &pb);
741 1.1 rmind if (error != 0) {
742 1.1 rmind goto err_mounted;
743 1.1 rmind }
744 1.1 rmind NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF | TRYEMULROOT, pb);
745 1.1 rmind error = namei(&nd);
746 1.1 rmind pathbuf_destroy(pb);
747 1.1 rmind if (error != 0) {
748 1.1 rmind goto err_mounted;
749 1.1 rmind }
750 1.1 rmind if (nd.ni_vp != vp) {
751 1.1 rmind vput(nd.ni_vp);
752 1.1 rmind error = EINVAL;
753 1.1 rmind goto err_mounted;
754 1.1 rmind }
755 1.1 rmind if (vp->v_mountedhere != NULL) {
756 1.1 rmind vput(nd.ni_vp);
757 1.1 rmind error = EBUSY;
758 1.1 rmind goto err_mounted;
759 1.1 rmind }
760 1.1 rmind error = vinvalbuf(vp, V_SAVE, l->l_cred, l, 0, 0);
761 1.1 rmind if (error != 0) {
762 1.1 rmind vput(nd.ni_vp);
763 1.1 rmind goto err_mounted;
764 1.1 rmind }
765 1.1 rmind
766 1.1 rmind /*
767 1.1 rmind * Put the new filesystem on the mount list after root.
768 1.1 rmind */
769 1.1 rmind cache_purge(vp);
770 1.1 rmind mp->mnt_iflag &= ~IMNT_WANTRDWR;
771 1.1 rmind
772 1.1 rmind mutex_enter(&mountlist_lock);
773 1.24 christos TAILQ_INSERT_TAIL(&mountlist, mp, mnt_list);
774 1.1 rmind mutex_exit(&mountlist_lock);
775 1.1 rmind if ((mp->mnt_flag & (MNT_RDONLY | MNT_ASYNC)) == 0)
776 1.35 hannken vfs_syncer_add_to_worklist(mp);
777 1.35 hannken vp->v_mountedhere = mp;
778 1.1 rmind vput(nd.ni_vp);
779 1.1 rmind
780 1.1 rmind mount_checkdirs(vp);
781 1.1 rmind mutex_exit(&mp->mnt_updating);
782 1.1 rmind
783 1.1 rmind /* Hold an additional reference to the mount across VFS_START(). */
784 1.1 rmind vfs_unbusy(mp, true, NULL);
785 1.1 rmind (void) VFS_STATVFS(mp, &mp->mnt_stat);
786 1.1 rmind error = VFS_START(mp, 0);
787 1.14 gson if (error) {
788 1.1 rmind vrele(vp);
789 1.31 manu } else if (flags & MNT_EXTATTR) {
790 1.31 manu (void)start_extattr(mp);
791 1.31 manu }
792 1.1 rmind /* Drop reference held for VFS_START(). */
793 1.1 rmind vfs_destroy(mp);
794 1.1 rmind *vpp = NULL;
795 1.1 rmind return error;
796 1.1 rmind
797 1.1 rmind err_mounted:
798 1.1 rmind if (VFS_UNMOUNT(mp, MNT_FORCE) != 0)
799 1.1 rmind panic("Unmounting fresh file system failed");
800 1.1 rmind
801 1.1 rmind err_unmounted:
802 1.1 rmind vp->v_mountedhere = NULL;
803 1.1 rmind mutex_exit(&mp->mnt_updating);
804 1.40.2.5 pgoyette fstrans_unmount(mp);
805 1.1 rmind vfs_unbusy(mp, false, NULL);
806 1.1 rmind vfs_destroy(mp);
807 1.1 rmind
808 1.1 rmind return error;
809 1.1 rmind }
810 1.1 rmind
811 1.1 rmind /*
812 1.1 rmind * Do the actual file system unmount. File system is assumed to have
813 1.1 rmind * been locked by the caller.
814 1.1 rmind *
815 1.1 rmind * => Caller hold reference to the mount, explicitly for dounmount().
816 1.1 rmind */
817 1.1 rmind int
818 1.1 rmind dounmount(struct mount *mp, int flags, struct lwp *l)
819 1.1 rmind {
820 1.40.2.5 pgoyette struct mount *cmp;
821 1.1 rmind vnode_t *coveredvp;
822 1.31 manu int error, async, used_syncer, used_extattr;
823 1.1 rmind
824 1.1 rmind #if NVERIEXEC > 0
825 1.1 rmind error = veriexec_unmountchk(mp);
826 1.1 rmind if (error)
827 1.1 rmind return (error);
828 1.1 rmind #endif /* NVERIEXEC > 0 */
829 1.1 rmind
830 1.1 rmind /*
831 1.40.2.5 pgoyette * No unmount below layered mounts.
832 1.40.2.5 pgoyette */
833 1.40.2.5 pgoyette mutex_enter(&mountlist_lock);
834 1.40.2.5 pgoyette TAILQ_FOREACH(cmp, &mountlist, mnt_list) {
835 1.40.2.5 pgoyette if (cmp->mnt_lower == mp) {
836 1.40.2.5 pgoyette mutex_exit(&mountlist_lock);
837 1.40.2.5 pgoyette return EBUSY;
838 1.40.2.5 pgoyette }
839 1.40.2.5 pgoyette }
840 1.40.2.5 pgoyette mutex_exit(&mountlist_lock);
841 1.40.2.5 pgoyette
842 1.40.2.5 pgoyette /*
843 1.1 rmind * XXX Freeze syncer. Must do this before locking the
844 1.1 rmind * mount point. See dounmount() for details.
845 1.1 rmind */
846 1.1 rmind mutex_enter(&syncer_mutex);
847 1.18 mlelstv
848 1.18 mlelstv /*
849 1.18 mlelstv * Abort unmount attempt when the filesystem is in use
850 1.18 mlelstv */
851 1.18 mlelstv mutex_enter(&mp->mnt_unmounting);
852 1.18 mlelstv if (mp->mnt_busynest != 0) {
853 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
854 1.18 mlelstv mutex_exit(&syncer_mutex);
855 1.18 mlelstv return EBUSY;
856 1.18 mlelstv }
857 1.18 mlelstv
858 1.18 mlelstv /*
859 1.18 mlelstv * Abort unmount attempt when the filesystem is not mounted
860 1.18 mlelstv */
861 1.1 rmind if ((mp->mnt_iflag & IMNT_GONE) != 0) {
862 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
863 1.1 rmind mutex_exit(&syncer_mutex);
864 1.1 rmind return ENOENT;
865 1.1 rmind }
866 1.1 rmind
867 1.35 hannken used_syncer = (mp->mnt_iflag & IMNT_ONWORKLIST) != 0;
868 1.31 manu used_extattr = mp->mnt_flag & MNT_EXTATTR;
869 1.1 rmind
870 1.1 rmind /*
871 1.1 rmind * XXX Syncer must be frozen when we get here. This should really
872 1.1 rmind * be done on a per-mountpoint basis, but the syncer doesn't work
873 1.1 rmind * like that.
874 1.1 rmind *
875 1.1 rmind * The caller of dounmount() must acquire syncer_mutex because
876 1.1 rmind * the syncer itself acquires locks in syncer_mutex -> vfs_busy
877 1.1 rmind * order, and we must preserve that order to avoid deadlock.
878 1.1 rmind *
879 1.1 rmind * So, if the file system did not use the syncer, now is
880 1.1 rmind * the time to release the syncer_mutex.
881 1.1 rmind */
882 1.1 rmind if (used_syncer == 0) {
883 1.1 rmind mutex_exit(&syncer_mutex);
884 1.1 rmind }
885 1.1 rmind mp->mnt_iflag |= IMNT_UNMOUNT;
886 1.18 mlelstv mutex_enter(&mp->mnt_updating);
887 1.1 rmind async = mp->mnt_flag & MNT_ASYNC;
888 1.1 rmind mp->mnt_flag &= ~MNT_ASYNC;
889 1.1 rmind cache_purgevfs(mp); /* remove cache entries for this file sys */
890 1.35 hannken if (used_syncer)
891 1.35 hannken vfs_syncer_remove_from_worklist(mp);
892 1.1 rmind error = 0;
893 1.36 manu if (((mp->mnt_flag & MNT_RDONLY) == 0) && ((flags & MNT_FORCE) == 0)) {
894 1.1 rmind error = VFS_SYNC(mp, MNT_WAIT, l->l_cred);
895 1.1 rmind }
896 1.1 rmind if (error == 0 || (flags & MNT_FORCE)) {
897 1.1 rmind error = VFS_UNMOUNT(mp, flags);
898 1.1 rmind }
899 1.1 rmind if (error) {
900 1.18 mlelstv mp->mnt_iflag &= ~IMNT_UNMOUNT;
901 1.18 mlelstv mutex_exit(&mp->mnt_unmounting);
902 1.1 rmind if ((mp->mnt_flag & (MNT_RDONLY | MNT_ASYNC)) == 0)
903 1.35 hannken vfs_syncer_add_to_worklist(mp);
904 1.1 rmind mp->mnt_flag |= async;
905 1.18 mlelstv mutex_exit(&mp->mnt_updating);
906 1.1 rmind if (used_syncer)
907 1.1 rmind mutex_exit(&syncer_mutex);
908 1.31 manu if (used_extattr) {
909 1.31 manu if (start_extattr(mp) != 0)
910 1.31 manu mp->mnt_flag &= ~MNT_EXTATTR;
911 1.31 manu else
912 1.31 manu mp->mnt_flag |= MNT_EXTATTR;
913 1.31 manu }
914 1.1 rmind return (error);
915 1.1 rmind }
916 1.18 mlelstv mutex_exit(&mp->mnt_updating);
917 1.19 mlelstv
918 1.19 mlelstv /*
919 1.19 mlelstv * release mnt_umounting lock here, because other code calls
920 1.19 mlelstv * vfs_busy() while holding the mountlist_lock.
921 1.19 mlelstv *
922 1.19 mlelstv * mark filesystem as gone to prevent further umounts
923 1.19 mlelstv * after mnt_umounting lock is gone, this also prevents
924 1.19 mlelstv * vfs_busy() from succeeding.
925 1.19 mlelstv */
926 1.19 mlelstv mp->mnt_iflag |= IMNT_GONE;
927 1.19 mlelstv mutex_exit(&mp->mnt_unmounting);
928 1.19 mlelstv
929 1.20 hannken if ((coveredvp = mp->mnt_vnodecovered) != NULLVP) {
930 1.20 hannken vn_lock(coveredvp, LK_EXCLUSIVE | LK_RETRY);
931 1.20 hannken coveredvp->v_mountedhere = NULL;
932 1.20 hannken VOP_UNLOCK(coveredvp);
933 1.20 hannken }
934 1.1 rmind mutex_enter(&mountlist_lock);
935 1.24 christos TAILQ_REMOVE(&mountlist, mp, mnt_list);
936 1.1 rmind mutex_exit(&mountlist_lock);
937 1.25 christos if (TAILQ_FIRST(&mp->mnt_vnodelist) != NULL)
938 1.1 rmind panic("unmount: dangling vnode");
939 1.1 rmind if (used_syncer)
940 1.1 rmind mutex_exit(&syncer_mutex);
941 1.1 rmind vfs_hooks_unmount(mp);
942 1.19 mlelstv
943 1.40.2.5 pgoyette fstrans_unmount(mp);
944 1.1 rmind vfs_destroy(mp); /* reference from mount() */
945 1.1 rmind if (coveredvp != NULLVP) {
946 1.1 rmind vrele(coveredvp);
947 1.1 rmind }
948 1.1 rmind return (0);
949 1.1 rmind }
950 1.1 rmind
951 1.1 rmind /*
952 1.1 rmind * Unmount all file systems.
953 1.1 rmind * We traverse the list in reverse order under the assumption that doing so
954 1.1 rmind * will avoid needing to worry about dependencies.
955 1.1 rmind */
956 1.1 rmind bool
957 1.1 rmind vfs_unmountall(struct lwp *l)
958 1.1 rmind {
959 1.1 rmind
960 1.16 pooka printf("unmounting file systems...\n");
961 1.1 rmind return vfs_unmountall1(l, true, true);
962 1.1 rmind }
963 1.1 rmind
964 1.1 rmind static void
965 1.1 rmind vfs_unmount_print(struct mount *mp, const char *pfx)
966 1.1 rmind {
967 1.1 rmind
968 1.1 rmind aprint_verbose("%sunmounted %s on %s type %s\n", pfx,
969 1.1 rmind mp->mnt_stat.f_mntfromname, mp->mnt_stat.f_mntonname,
970 1.1 rmind mp->mnt_stat.f_fstypename);
971 1.1 rmind }
972 1.1 rmind
973 1.1 rmind bool
974 1.1 rmind vfs_unmount_forceone(struct lwp *l)
975 1.1 rmind {
976 1.1 rmind struct mount *mp, *nmp;
977 1.1 rmind int error;
978 1.1 rmind
979 1.1 rmind nmp = NULL;
980 1.1 rmind
981 1.24 christos TAILQ_FOREACH_REVERSE(mp, &mountlist, mntlist, mnt_list) {
982 1.1 rmind if (nmp == NULL || mp->mnt_gen > nmp->mnt_gen) {
983 1.1 rmind nmp = mp;
984 1.1 rmind }
985 1.1 rmind }
986 1.1 rmind if (nmp == NULL) {
987 1.1 rmind return false;
988 1.1 rmind }
989 1.1 rmind
990 1.1 rmind #ifdef DEBUG
991 1.16 pooka printf("forcefully unmounting %s (%s)...\n",
992 1.1 rmind nmp->mnt_stat.f_mntonname, nmp->mnt_stat.f_mntfromname);
993 1.1 rmind #endif
994 1.1 rmind atomic_inc_uint(&nmp->mnt_refcnt);
995 1.1 rmind if ((error = dounmount(nmp, MNT_FORCE, l)) == 0) {
996 1.1 rmind vfs_unmount_print(nmp, "forcefully ");
997 1.1 rmind return true;
998 1.1 rmind } else {
999 1.1 rmind vfs_destroy(nmp);
1000 1.1 rmind }
1001 1.1 rmind
1002 1.1 rmind #ifdef DEBUG
1003 1.1 rmind printf("forceful unmount of %s failed with error %d\n",
1004 1.1 rmind nmp->mnt_stat.f_mntonname, error);
1005 1.1 rmind #endif
1006 1.1 rmind
1007 1.1 rmind return false;
1008 1.1 rmind }
1009 1.1 rmind
1010 1.1 rmind bool
1011 1.1 rmind vfs_unmountall1(struct lwp *l, bool force, bool verbose)
1012 1.1 rmind {
1013 1.1 rmind struct mount *mp, *nmp;
1014 1.1 rmind bool any_error = false, progress = false;
1015 1.1 rmind int error;
1016 1.1 rmind
1017 1.24 christos TAILQ_FOREACH_REVERSE_SAFE(mp, &mountlist, mntlist, mnt_list, nmp) {
1018 1.1 rmind #ifdef DEBUG
1019 1.16 pooka printf("unmounting %p %s (%s)...\n",
1020 1.1 rmind (void *)mp, mp->mnt_stat.f_mntonname,
1021 1.1 rmind mp->mnt_stat.f_mntfromname);
1022 1.1 rmind #endif
1023 1.1 rmind atomic_inc_uint(&mp->mnt_refcnt);
1024 1.1 rmind if ((error = dounmount(mp, force ? MNT_FORCE : 0, l)) == 0) {
1025 1.1 rmind vfs_unmount_print(mp, "");
1026 1.1 rmind progress = true;
1027 1.1 rmind } else {
1028 1.1 rmind vfs_destroy(mp);
1029 1.1 rmind if (verbose) {
1030 1.1 rmind printf("unmount of %s failed with error %d\n",
1031 1.1 rmind mp->mnt_stat.f_mntonname, error);
1032 1.1 rmind }
1033 1.1 rmind any_error = true;
1034 1.1 rmind }
1035 1.1 rmind }
1036 1.1 rmind if (verbose) {
1037 1.16 pooka printf("unmounting done\n");
1038 1.1 rmind }
1039 1.1 rmind if (any_error && verbose) {
1040 1.1 rmind printf("WARNING: some file systems would not unmount\n");
1041 1.1 rmind }
1042 1.1 rmind return progress;
1043 1.1 rmind }
1044 1.1 rmind
1045 1.1 rmind void
1046 1.1 rmind vfs_sync_all(struct lwp *l)
1047 1.1 rmind {
1048 1.1 rmind printf("syncing disks... ");
1049 1.1 rmind
1050 1.1 rmind /* remove user processes from run queue */
1051 1.1 rmind suspendsched();
1052 1.1 rmind (void)spl0();
1053 1.1 rmind
1054 1.1 rmind /* avoid coming back this way again if we panic. */
1055 1.1 rmind doing_shutdown = 1;
1056 1.1 rmind
1057 1.5 dsl do_sys_sync(l);
1058 1.1 rmind
1059 1.1 rmind /* Wait for sync to finish. */
1060 1.1 rmind if (buf_syncwait() != 0) {
1061 1.1 rmind #if defined(DDB) && defined(DEBUG_HALT_BUSY)
1062 1.1 rmind Debugger();
1063 1.1 rmind #endif
1064 1.1 rmind printf("giving up\n");
1065 1.1 rmind return;
1066 1.1 rmind } else
1067 1.1 rmind printf("done\n");
1068 1.1 rmind }
1069 1.1 rmind
1070 1.3 rmind /*
1071 1.3 rmind * Sync and unmount file systems before shutting down.
1072 1.3 rmind */
1073 1.3 rmind void
1074 1.3 rmind vfs_shutdown(void)
1075 1.1 rmind {
1076 1.3 rmind lwp_t *l = curlwp;
1077 1.1 rmind
1078 1.1 rmind vfs_sync_all(l);
1079 1.1 rmind
1080 1.1 rmind /*
1081 1.3 rmind * If we have paniced - do not make the situation potentially
1082 1.1 rmind * worse by unmounting the file systems.
1083 1.1 rmind */
1084 1.3 rmind if (panicstr != NULL) {
1085 1.1 rmind return;
1086 1.3 rmind }
1087 1.1 rmind
1088 1.1 rmind /* Unmount file systems. */
1089 1.1 rmind vfs_unmountall(l);
1090 1.1 rmind }
1091 1.1 rmind
1092 1.1 rmind /*
1093 1.1 rmind * Print a list of supported file system types (used by vfs_mountroot)
1094 1.1 rmind */
1095 1.1 rmind static void
1096 1.1 rmind vfs_print_fstypes(void)
1097 1.1 rmind {
1098 1.1 rmind struct vfsops *v;
1099 1.1 rmind int cnt = 0;
1100 1.1 rmind
1101 1.1 rmind mutex_enter(&vfs_list_lock);
1102 1.1 rmind LIST_FOREACH(v, &vfs_list, vfs_list)
1103 1.1 rmind ++cnt;
1104 1.1 rmind mutex_exit(&vfs_list_lock);
1105 1.1 rmind
1106 1.1 rmind if (cnt == 0) {
1107 1.1 rmind printf("WARNING: No file system modules have been loaded.\n");
1108 1.1 rmind return;
1109 1.1 rmind }
1110 1.1 rmind
1111 1.1 rmind printf("Supported file systems:");
1112 1.1 rmind mutex_enter(&vfs_list_lock);
1113 1.1 rmind LIST_FOREACH(v, &vfs_list, vfs_list) {
1114 1.1 rmind printf(" %s", v->vfs_name);
1115 1.1 rmind }
1116 1.1 rmind mutex_exit(&vfs_list_lock);
1117 1.1 rmind printf("\n");
1118 1.1 rmind }
1119 1.1 rmind
1120 1.1 rmind /*
1121 1.1 rmind * Mount the root file system. If the operator didn't specify a
1122 1.1 rmind * file system to use, try all possible file systems until one
1123 1.1 rmind * succeeds.
1124 1.1 rmind */
1125 1.1 rmind int
1126 1.1 rmind vfs_mountroot(void)
1127 1.1 rmind {
1128 1.1 rmind struct vfsops *v;
1129 1.1 rmind int error = ENODEV;
1130 1.1 rmind
1131 1.1 rmind if (root_device == NULL)
1132 1.1 rmind panic("vfs_mountroot: root device unknown");
1133 1.1 rmind
1134 1.1 rmind switch (device_class(root_device)) {
1135 1.1 rmind case DV_IFNET:
1136 1.1 rmind if (rootdev != NODEV)
1137 1.1 rmind panic("vfs_mountroot: rootdev set for DV_IFNET "
1138 1.1 rmind "(0x%llx -> %llu,%llu)",
1139 1.1 rmind (unsigned long long)rootdev,
1140 1.1 rmind (unsigned long long)major(rootdev),
1141 1.1 rmind (unsigned long long)minor(rootdev));
1142 1.1 rmind break;
1143 1.1 rmind
1144 1.1 rmind case DV_DISK:
1145 1.1 rmind if (rootdev == NODEV)
1146 1.1 rmind panic("vfs_mountroot: rootdev not set for DV_DISK");
1147 1.1 rmind if (bdevvp(rootdev, &rootvp))
1148 1.1 rmind panic("vfs_mountroot: can't get vnode for rootdev");
1149 1.1 rmind error = VOP_OPEN(rootvp, FREAD, FSCRED);
1150 1.1 rmind if (error) {
1151 1.1 rmind printf("vfs_mountroot: can't open root device\n");
1152 1.1 rmind return (error);
1153 1.1 rmind }
1154 1.1 rmind break;
1155 1.1 rmind
1156 1.1 rmind case DV_VIRTUAL:
1157 1.1 rmind break;
1158 1.1 rmind
1159 1.1 rmind default:
1160 1.1 rmind printf("%s: inappropriate for root file system\n",
1161 1.1 rmind device_xname(root_device));
1162 1.1 rmind return (ENODEV);
1163 1.1 rmind }
1164 1.1 rmind
1165 1.1 rmind /*
1166 1.1 rmind * If user specified a root fs type, use it. Make sure the
1167 1.1 rmind * specified type exists and has a mount_root()
1168 1.1 rmind */
1169 1.1 rmind if (strcmp(rootfstype, ROOT_FSTYPE_ANY) != 0) {
1170 1.1 rmind v = vfs_getopsbyname(rootfstype);
1171 1.1 rmind error = EFTYPE;
1172 1.1 rmind if (v != NULL) {
1173 1.1 rmind if (v->vfs_mountroot != NULL) {
1174 1.1 rmind error = (v->vfs_mountroot)();
1175 1.1 rmind }
1176 1.1 rmind v->vfs_refcount--;
1177 1.1 rmind }
1178 1.1 rmind goto done;
1179 1.1 rmind }
1180 1.1 rmind
1181 1.1 rmind /*
1182 1.1 rmind * Try each file system currently configured into the kernel.
1183 1.1 rmind */
1184 1.1 rmind mutex_enter(&vfs_list_lock);
1185 1.1 rmind LIST_FOREACH(v, &vfs_list, vfs_list) {
1186 1.1 rmind if (v->vfs_mountroot == NULL)
1187 1.1 rmind continue;
1188 1.1 rmind #ifdef DEBUG
1189 1.1 rmind aprint_normal("mountroot: trying %s...\n", v->vfs_name);
1190 1.1 rmind #endif
1191 1.1 rmind v->vfs_refcount++;
1192 1.1 rmind mutex_exit(&vfs_list_lock);
1193 1.1 rmind error = (*v->vfs_mountroot)();
1194 1.1 rmind mutex_enter(&vfs_list_lock);
1195 1.1 rmind v->vfs_refcount--;
1196 1.1 rmind if (!error) {
1197 1.1 rmind aprint_normal("root file system type: %s\n",
1198 1.1 rmind v->vfs_name);
1199 1.1 rmind break;
1200 1.1 rmind }
1201 1.1 rmind }
1202 1.1 rmind mutex_exit(&vfs_list_lock);
1203 1.1 rmind
1204 1.1 rmind if (v == NULL) {
1205 1.1 rmind vfs_print_fstypes();
1206 1.1 rmind printf("no file system for %s", device_xname(root_device));
1207 1.1 rmind if (device_class(root_device) == DV_DISK)
1208 1.1 rmind printf(" (dev 0x%llx)", (unsigned long long)rootdev);
1209 1.1 rmind printf("\n");
1210 1.1 rmind error = EFTYPE;
1211 1.1 rmind }
1212 1.1 rmind
1213 1.1 rmind done:
1214 1.1 rmind if (error && device_class(root_device) == DV_DISK) {
1215 1.1 rmind VOP_CLOSE(rootvp, FREAD, FSCRED);
1216 1.1 rmind vrele(rootvp);
1217 1.1 rmind }
1218 1.1 rmind if (error == 0) {
1219 1.24 christos struct mount *mp;
1220 1.1 rmind extern struct cwdinfo cwdi0;
1221 1.1 rmind
1222 1.24 christos mp = TAILQ_FIRST(&mountlist);
1223 1.24 christos mp->mnt_flag |= MNT_ROOTFS;
1224 1.24 christos mp->mnt_op->vfs_refcount++;
1225 1.40.2.5 pgoyette error = fstrans_mount(mp);
1226 1.40.2.5 pgoyette KASSERT(error == 0);
1227 1.1 rmind
1228 1.1 rmind /*
1229 1.1 rmind * Get the vnode for '/'. Set cwdi0.cwdi_cdir to
1230 1.1 rmind * reference it.
1231 1.1 rmind */
1232 1.24 christos error = VFS_ROOT(mp, &rootvnode);
1233 1.1 rmind if (error)
1234 1.1 rmind panic("cannot find root vnode, error=%d", error);
1235 1.1 rmind cwdi0.cwdi_cdir = rootvnode;
1236 1.1 rmind vref(cwdi0.cwdi_cdir);
1237 1.1 rmind VOP_UNLOCK(rootvnode);
1238 1.1 rmind cwdi0.cwdi_rdir = NULL;
1239 1.1 rmind
1240 1.1 rmind /*
1241 1.1 rmind * Now that root is mounted, we can fixup initproc's CWD
1242 1.1 rmind * info. All other processes are kthreads, which merely
1243 1.1 rmind * share proc0's CWD info.
1244 1.1 rmind */
1245 1.1 rmind initproc->p_cwdi->cwdi_cdir = rootvnode;
1246 1.1 rmind vref(initproc->p_cwdi->cwdi_cdir);
1247 1.1 rmind initproc->p_cwdi->cwdi_rdir = NULL;
1248 1.1 rmind /*
1249 1.1 rmind * Enable loading of modules from the filesystem
1250 1.1 rmind */
1251 1.1 rmind module_load_vfs_init();
1252 1.1 rmind
1253 1.1 rmind }
1254 1.1 rmind return (error);
1255 1.1 rmind }
1256 1.1 rmind
1257 1.1 rmind /*
1258 1.1 rmind * mount_specific_key_create --
1259 1.1 rmind * Create a key for subsystem mount-specific data.
1260 1.1 rmind */
1261 1.1 rmind int
1262 1.1 rmind mount_specific_key_create(specificdata_key_t *keyp, specificdata_dtor_t dtor)
1263 1.1 rmind {
1264 1.1 rmind
1265 1.1 rmind return specificdata_key_create(mount_specificdata_domain, keyp, dtor);
1266 1.1 rmind }
1267 1.1 rmind
1268 1.1 rmind /*
1269 1.1 rmind * mount_specific_key_delete --
1270 1.1 rmind * Delete a key for subsystem mount-specific data.
1271 1.1 rmind */
1272 1.1 rmind void
1273 1.1 rmind mount_specific_key_delete(specificdata_key_t key)
1274 1.1 rmind {
1275 1.1 rmind
1276 1.1 rmind specificdata_key_delete(mount_specificdata_domain, key);
1277 1.1 rmind }
1278 1.1 rmind
1279 1.1 rmind /*
1280 1.1 rmind * mount_initspecific --
1281 1.1 rmind * Initialize a mount's specificdata container.
1282 1.1 rmind */
1283 1.1 rmind void
1284 1.1 rmind mount_initspecific(struct mount *mp)
1285 1.1 rmind {
1286 1.22 martin int error __diagused;
1287 1.1 rmind
1288 1.1 rmind error = specificdata_init(mount_specificdata_domain,
1289 1.1 rmind &mp->mnt_specdataref);
1290 1.1 rmind KASSERT(error == 0);
1291 1.1 rmind }
1292 1.1 rmind
1293 1.1 rmind /*
1294 1.1 rmind * mount_finispecific --
1295 1.1 rmind * Finalize a mount's specificdata container.
1296 1.1 rmind */
1297 1.1 rmind void
1298 1.1 rmind mount_finispecific(struct mount *mp)
1299 1.1 rmind {
1300 1.1 rmind
1301 1.1 rmind specificdata_fini(mount_specificdata_domain, &mp->mnt_specdataref);
1302 1.1 rmind }
1303 1.1 rmind
1304 1.1 rmind /*
1305 1.1 rmind * mount_getspecific --
1306 1.1 rmind * Return mount-specific data corresponding to the specified key.
1307 1.1 rmind */
1308 1.1 rmind void *
1309 1.1 rmind mount_getspecific(struct mount *mp, specificdata_key_t key)
1310 1.1 rmind {
1311 1.1 rmind
1312 1.1 rmind return specificdata_getspecific(mount_specificdata_domain,
1313 1.1 rmind &mp->mnt_specdataref, key);
1314 1.1 rmind }
1315 1.1 rmind
1316 1.1 rmind /*
1317 1.1 rmind * mount_setspecific --
1318 1.1 rmind * Set mount-specific data corresponding to the specified key.
1319 1.1 rmind */
1320 1.1 rmind void
1321 1.1 rmind mount_setspecific(struct mount *mp, specificdata_key_t key, void *data)
1322 1.1 rmind {
1323 1.1 rmind
1324 1.1 rmind specificdata_setspecific(mount_specificdata_domain,
1325 1.1 rmind &mp->mnt_specdataref, key, data);
1326 1.1 rmind }
1327 1.1 rmind
1328 1.1 rmind /*
1329 1.1 rmind * Check to see if a filesystem is mounted on a block device.
1330 1.1 rmind */
1331 1.1 rmind int
1332 1.1 rmind vfs_mountedon(vnode_t *vp)
1333 1.1 rmind {
1334 1.1 rmind vnode_t *vq;
1335 1.1 rmind int error = 0;
1336 1.1 rmind
1337 1.1 rmind if (vp->v_type != VBLK)
1338 1.1 rmind return ENOTBLK;
1339 1.21 hannken if (spec_node_getmountedfs(vp) != NULL)
1340 1.17 hannken return EBUSY;
1341 1.17 hannken if (spec_node_lookup_by_dev(vp->v_type, vp->v_rdev, &vq) == 0) {
1342 1.21 hannken if (spec_node_getmountedfs(vq) != NULL)
1343 1.1 rmind error = EBUSY;
1344 1.17 hannken vrele(vq);
1345 1.1 rmind }
1346 1.17 hannken
1347 1.17 hannken return error;
1348 1.1 rmind }
1349 1.1 rmind
1350 1.1 rmind /*
1351 1.1 rmind * Check if a device pointed to by vp is mounted.
1352 1.1 rmind *
1353 1.1 rmind * Returns:
1354 1.1 rmind * EINVAL if it's not a disk
1355 1.1 rmind * EBUSY if it's a disk and mounted
1356 1.1 rmind * 0 if it's a disk and not mounted
1357 1.1 rmind */
1358 1.1 rmind int
1359 1.1 rmind rawdev_mounted(vnode_t *vp, vnode_t **bvpp)
1360 1.1 rmind {
1361 1.1 rmind vnode_t *bvp;
1362 1.1 rmind dev_t dev;
1363 1.40.2.2 pgoyette int d_type, ret;
1364 1.40.2.1 pgoyette const struct cdevsw *cdev = NULL;
1365 1.40.2.1 pgoyette const struct bdevsw *bdev = NULL;
1366 1.1 rmind
1367 1.1 rmind bvp = NULL;
1368 1.1 rmind d_type = D_OTHER;
1369 1.1 rmind
1370 1.1 rmind if (iskmemvp(vp))
1371 1.1 rmind return EINVAL;
1372 1.1 rmind
1373 1.1 rmind switch (vp->v_type) {
1374 1.1 rmind case VCHR: {
1375 1.7 christos dev = vp->v_rdev;
1376 1.40.2.1 pgoyette cdev = cdevsw_lookup_acquire(dev);
1377 1.1 rmind if (cdev != NULL) {
1378 1.1 rmind dev_t blkdev;
1379 1.1 rmind
1380 1.1 rmind blkdev = devsw_chr2blk(dev);
1381 1.1 rmind if (blkdev != NODEV) {
1382 1.1 rmind if (vfinddev(blkdev, VBLK, &bvp) != 0) {
1383 1.1 rmind d_type = (cdev->d_flag & D_TYPEMASK);
1384 1.1 rmind /* XXX: what if bvp disappears? */
1385 1.1 rmind vrele(bvp);
1386 1.1 rmind }
1387 1.1 rmind }
1388 1.1 rmind }
1389 1.1 rmind break;
1390 1.1 rmind }
1391 1.1 rmind
1392 1.1 rmind case VBLK: {
1393 1.7 christos dev = vp->v_rdev;
1394 1.40.2.1 pgoyette bdev = bdevsw_lookup_acquire(dev);
1395 1.1 rmind if (bdev != NULL)
1396 1.1 rmind d_type = (bdev->d_flag & D_TYPEMASK);
1397 1.1 rmind bvp = vp;
1398 1.1 rmind
1399 1.1 rmind break;
1400 1.1 rmind }
1401 1.1 rmind
1402 1.1 rmind default:
1403 1.1 rmind break;
1404 1.1 rmind }
1405 1.1 rmind
1406 1.40.2.2 pgoyette if (d_type != D_DISK) {
1407 1.40.2.2 pgoyette ret = EINVAL;
1408 1.40.2.2 pgoyette goto out;
1409 1.40.2.2 pgoyette }
1410 1.1 rmind
1411 1.1 rmind if (bvpp != NULL)
1412 1.1 rmind *bvpp = bvp;
1413 1.1 rmind
1414 1.1 rmind /*
1415 1.1 rmind * XXX: This is bogus. We should be failing the request
1416 1.1 rmind * XXX: not only if this specific slice is mounted, but
1417 1.1 rmind * XXX: if it's on a disk with any other mounted slice.
1418 1.1 rmind */
1419 1.40.2.2 pgoyette if (vfs_mountedon(bvp) != 0)
1420 1.40.2.2 pgoyette ret = EBUSY;
1421 1.40.2.2 pgoyette else
1422 1.40.2.2 pgoyette ret = 0;
1423 1.40.2.1 pgoyette
1424 1.40.2.2 pgoyette out:
1425 1.40.2.1 pgoyette if (bdev != NULL)
1426 1.40.2.1 pgoyette bdevsw_release(bdev);
1427 1.40.2.1 pgoyette if (cdev != NULL)
1428 1.40.2.1 pgoyette cdevsw_release(cdev);
1429 1.1 rmind
1430 1.40.2.2 pgoyette return ret;
1431 1.1 rmind }
1432 1.1 rmind
1433 1.1 rmind /*
1434 1.1 rmind * Make a 'unique' number from a mount type name.
1435 1.1 rmind */
1436 1.1 rmind long
1437 1.1 rmind makefstype(const char *type)
1438 1.1 rmind {
1439 1.1 rmind long rv;
1440 1.1 rmind
1441 1.1 rmind for (rv = 0; *type; type++) {
1442 1.1 rmind rv <<= 2;
1443 1.1 rmind rv ^= *type;
1444 1.1 rmind }
1445 1.1 rmind return rv;
1446 1.1 rmind }
1447 1.24 christos
1448 1.24 christos void
1449 1.24 christos mountlist_append(struct mount *mp)
1450 1.24 christos {
1451 1.24 christos mutex_enter(&mountlist_lock);
1452 1.24 christos TAILQ_INSERT_TAIL(&mountlist, mp, mnt_list);
1453 1.24 christos mutex_exit(&mountlist_lock);
1454 1.24 christos }
1455