lfs_vfsops.c revision 1.215 1 1.215 perseant /* $NetBSD: lfs_vfsops.c,v 1.215 2006/07/06 22:14:18 perseant Exp $ */
2 1.2 cgd
3 1.26 perseant /*-
4 1.91 perseant * Copyright (c) 1999, 2000, 2001, 2002, 2003 The NetBSD Foundation, Inc.
5 1.26 perseant * All rights reserved.
6 1.26 perseant *
7 1.26 perseant * This code is derived from software contributed to The NetBSD Foundation
8 1.26 perseant * by Konrad E. Schroder <perseant (at) hhhh.org>.
9 1.26 perseant *
10 1.26 perseant * Redistribution and use in source and binary forms, with or without
11 1.26 perseant * modification, are permitted provided that the following conditions
12 1.26 perseant * are met:
13 1.26 perseant * 1. Redistributions of source code must retain the above copyright
14 1.26 perseant * notice, this list of conditions and the following disclaimer.
15 1.26 perseant * 2. Redistributions in binary form must reproduce the above copyright
16 1.26 perseant * notice, this list of conditions and the following disclaimer in the
17 1.26 perseant * documentation and/or other materials provided with the distribution.
18 1.26 perseant * 3. All advertising materials mentioning features or use of this software
19 1.26 perseant * must display the following acknowledgement:
20 1.96 perseant * This product includes software developed by the NetBSD
21 1.96 perseant * Foundation, Inc. and its contributors.
22 1.26 perseant * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.26 perseant * contributors may be used to endorse or promote products derived
24 1.26 perseant * from this software without specific prior written permission.
25 1.26 perseant *
26 1.26 perseant * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.26 perseant * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.26 perseant * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.26 perseant * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.26 perseant * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.26 perseant * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.26 perseant * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.26 perseant * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.26 perseant * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.26 perseant * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.26 perseant * POSSIBILITY OF SUCH DAMAGE.
37 1.26 perseant */
38 1.26 perseant /*-
39 1.1 mycroft * Copyright (c) 1989, 1991, 1993, 1994
40 1.1 mycroft * The Regents of the University of California. All rights reserved.
41 1.1 mycroft *
42 1.1 mycroft * Redistribution and use in source and binary forms, with or without
43 1.1 mycroft * modification, are permitted provided that the following conditions
44 1.1 mycroft * are met:
45 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
46 1.1 mycroft * notice, this list of conditions and the following disclaimer.
47 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
48 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
49 1.1 mycroft * documentation and/or other materials provided with the distribution.
50 1.130 agc * 3. Neither the name of the University nor the names of its contributors
51 1.1 mycroft * may be used to endorse or promote products derived from this software
52 1.1 mycroft * without specific prior written permission.
53 1.1 mycroft *
54 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
55 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
56 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
57 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
58 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
59 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
60 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
61 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
62 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
63 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
64 1.1 mycroft * SUCH DAMAGE.
65 1.1 mycroft *
66 1.16 fvdl * @(#)lfs_vfsops.c 8.20 (Berkeley) 6/10/95
67 1.1 mycroft */
68 1.69 lukem
69 1.69 lukem #include <sys/cdefs.h>
70 1.215 perseant __KERNEL_RCSID(0, "$NetBSD: lfs_vfsops.c,v 1.215 2006/07/06 22:14:18 perseant Exp $");
71 1.19 scottr
72 1.65 mrg #if defined(_KERNEL_OPT)
73 1.19 scottr #include "opt_quota.h"
74 1.20 scottr #endif
75 1.1 mycroft
76 1.1 mycroft #include <sys/param.h>
77 1.1 mycroft #include <sys/systm.h>
78 1.1 mycroft #include <sys/namei.h>
79 1.1 mycroft #include <sys/proc.h>
80 1.1 mycroft #include <sys/kernel.h>
81 1.1 mycroft #include <sys/vnode.h>
82 1.1 mycroft #include <sys/mount.h>
83 1.91 perseant #include <sys/kthread.h>
84 1.1 mycroft #include <sys/buf.h>
85 1.38 augustss #include <sys/device.h>
86 1.1 mycroft #include <sys/mbuf.h>
87 1.1 mycroft #include <sys/file.h>
88 1.1 mycroft #include <sys/disklabel.h>
89 1.1 mycroft #include <sys/ioctl.h>
90 1.1 mycroft #include <sys/errno.h>
91 1.1 mycroft #include <sys/malloc.h>
92 1.23 thorpej #include <sys/pool.h>
93 1.1 mycroft #include <sys/socket.h>
94 1.165 perseant #include <sys/syslog.h>
95 1.54 mrg #include <uvm/uvm_extern.h>
96 1.26 perseant #include <sys/sysctl.h>
97 1.80 gehenna #include <sys/conf.h>
98 1.210 elad #include <sys/kauth.h>
99 1.1 mycroft
100 1.1 mycroft #include <miscfs/specfs/specdev.h>
101 1.1 mycroft
102 1.1 mycroft #include <ufs/ufs/quota.h>
103 1.1 mycroft #include <ufs/ufs/inode.h>
104 1.1 mycroft #include <ufs/ufs/ufsmount.h>
105 1.1 mycroft #include <ufs/ufs/ufs_extern.h>
106 1.1 mycroft
107 1.91 perseant #include <uvm/uvm.h>
108 1.91 perseant #include <uvm/uvm_stat.h>
109 1.91 perseant #include <uvm/uvm_pager.h>
110 1.91 perseant #include <uvm/uvm_pdaemon.h>
111 1.91 perseant
112 1.1 mycroft #include <ufs/lfs/lfs.h>
113 1.1 mycroft #include <ufs/lfs/lfs_extern.h>
114 1.1 mycroft
115 1.91 perseant #include <miscfs/genfs/genfs.h>
116 1.91 perseant #include <miscfs/genfs/genfs_node.h>
117 1.128 yamt
118 1.91 perseant static int lfs_gop_write(struct vnode *, struct vm_page **, int, int);
119 1.117 yamt static boolean_t lfs_issequential_hole(const struct ufsmount *,
120 1.117 yamt daddr_t, daddr_t);
121 1.91 perseant
122 1.190 christos static int lfs_mountfs(struct vnode *, struct mount *, struct lwp *);
123 1.134 yamt static daddr_t check_segsum(struct lfs *, daddr_t, u_int64_t,
124 1.210 elad kauth_cred_t, int, int *, struct lwp *);
125 1.1 mycroft
126 1.63 jdolecek extern const struct vnodeopv_desc lfs_vnodeop_opv_desc;
127 1.63 jdolecek extern const struct vnodeopv_desc lfs_specop_opv_desc;
128 1.63 jdolecek extern const struct vnodeopv_desc lfs_fifoop_opv_desc;
129 1.91 perseant
130 1.101 yamt pid_t lfs_writer_daemon = 0;
131 1.91 perseant int lfs_do_flush = 0;
132 1.166 perseant int lfs_do_rfw = 0;
133 1.15 thorpej
134 1.63 jdolecek const struct vnodeopv_desc * const lfs_vnodeopv_descs[] = {
135 1.15 thorpej &lfs_vnodeop_opv_desc,
136 1.15 thorpej &lfs_specop_opv_desc,
137 1.15 thorpej &lfs_fifoop_opv_desc,
138 1.15 thorpej NULL,
139 1.15 thorpej };
140 1.15 thorpej
141 1.1 mycroft struct vfsops lfs_vfsops = {
142 1.1 mycroft MOUNT_LFS,
143 1.1 mycroft lfs_mount,
144 1.1 mycroft ufs_start,
145 1.1 mycroft lfs_unmount,
146 1.1 mycroft ufs_root,
147 1.1 mycroft ufs_quotactl,
148 1.147 christos lfs_statvfs,
149 1.1 mycroft lfs_sync,
150 1.1 mycroft lfs_vget,
151 1.1 mycroft lfs_fhtovp,
152 1.1 mycroft lfs_vptofh,
153 1.1 mycroft lfs_init,
154 1.67 chs lfs_reinit,
155 1.47 jdolecek lfs_done,
156 1.36 perseant lfs_mountroot,
157 1.152 hannken (int (*)(struct mount *, struct vnode *, struct timespec *)) eopnotsupp,
158 1.159 thorpej vfs_stdextattrctl,
159 1.15 thorpej lfs_vnodeopv_descs,
160 1.1 mycroft };
161 1.168 thorpej VFS_ATTACH(lfs_vfsops);
162 1.1 mycroft
163 1.183 yamt const struct genfs_ops lfs_genfsops = {
164 1.183 yamt .gop_size = lfs_gop_size,
165 1.183 yamt .gop_alloc = ufs_gop_alloc,
166 1.183 yamt .gop_write = lfs_gop_write,
167 1.184 yamt .gop_markupdate = ufs_gop_markupdate,
168 1.71 chs };
169 1.71 chs
170 1.188 yamt static const struct ufs_ops lfs_ufsops = {
171 1.188 yamt .uo_itimes = NULL,
172 1.189 yamt .uo_update = lfs_update,
173 1.189 yamt .uo_truncate = lfs_truncate,
174 1.189 yamt .uo_valloc = lfs_valloc,
175 1.189 yamt .uo_vfree = lfs_vfree,
176 1.189 yamt .uo_balloc = lfs_balloc,
177 1.188 yamt };
178 1.188 yamt
179 1.149 simonb /*
180 1.149 simonb * XXX Same structure as FFS inodes? Should we share a common pool?
181 1.149 simonb */
182 1.149 simonb POOL_INIT(lfs_inode_pool, sizeof(struct inode), 0, 0, 0, "lfsinopl",
183 1.149 simonb &pool_allocator_nointr);
184 1.149 simonb POOL_INIT(lfs_dinode_pool, sizeof(struct ufs1_dinode), 0, 0, 0, "lfsdinopl",
185 1.149 simonb &pool_allocator_nointr);
186 1.149 simonb POOL_INIT(lfs_inoext_pool, sizeof(struct lfs_inode_ext), 8, 0, 0, "lfsinoextpl",
187 1.149 simonb &pool_allocator_nointr);
188 1.163 perseant POOL_INIT(lfs_lbnentry_pool, sizeof(struct lbnentry), 0, 0, 0, "lfslbnpool",
189 1.163 perseant &pool_allocator_nointr);
190 1.91 perseant
191 1.91 perseant /*
192 1.91 perseant * The writer daemon. UVM keeps track of how many dirty pages we are holding
193 1.91 perseant * in lfs_subsys_pages; the daemon flushes the filesystem when this value
194 1.91 perseant * crosses the (user-defined) threshhold LFS_MAX_PAGES.
195 1.91 perseant */
196 1.91 perseant static void
197 1.91 perseant lfs_writerd(void *arg)
198 1.91 perseant {
199 1.91 perseant struct mount *mp, *nmp;
200 1.91 perseant struct lfs *fs;
201 1.170 perseant int loopcount;
202 1.91 perseant
203 1.91 perseant lfs_writer_daemon = curproc->p_pid;
204 1.91 perseant
205 1.126 yamt simple_lock(&lfs_subsys_lock);
206 1.91 perseant for (;;) {
207 1.176 perseant ltsleep(&lfs_writer_daemon, PVM | PNORELOCK, "lfswriter", hz/10,
208 1.126 yamt &lfs_subsys_lock);
209 1.91 perseant
210 1.91 perseant /*
211 1.91 perseant * Look through the list of LFSs to see if any of them
212 1.91 perseant * have requested pageouts.
213 1.91 perseant */
214 1.91 perseant simple_lock(&mountlist_slock);
215 1.124 yamt for (mp = CIRCLEQ_FIRST(&mountlist); mp != (void *)&mountlist;
216 1.91 perseant mp = nmp) {
217 1.91 perseant if (vfs_busy(mp, LK_NOWAIT, &mountlist_slock)) {
218 1.124 yamt nmp = CIRCLEQ_NEXT(mp, mnt_list);
219 1.91 perseant continue;
220 1.91 perseant }
221 1.91 perseant if (strncmp(&mp->mnt_stat.f_fstypename[0], MOUNT_LFS,
222 1.91 perseant MFSNAMELEN) == 0) {
223 1.123 yamt fs = VFSTOUFS(mp)->um_lfs;
224 1.169 perseant simple_lock(&fs->lfs_interlock);
225 1.200 perseant if (fs->lfs_pdflush) {
226 1.166 perseant DLOG((DLOG_FLUSH, "lfs_writerd: pdflush set\n"));
227 1.91 perseant fs->lfs_pdflush = 0;
228 1.91 perseant lfs_flush_fs(fs, 0);
229 1.200 perseant simple_unlock(&fs->lfs_interlock);
230 1.200 perseant } else if (!TAILQ_EMPTY(&fs->lfs_pchainhd)) {
231 1.200 perseant DLOG((DLOG_FLUSH, "lfs_writerd: pchain non-empty\n"));
232 1.200 perseant simple_unlock(&fs->lfs_interlock);
233 1.200 perseant lfs_writer_enter(fs, "wrdirop");
234 1.200 perseant lfs_flush_pchain(fs);
235 1.200 perseant lfs_writer_leave(fs);
236 1.201 perseant } else
237 1.201 perseant simple_unlock(&fs->lfs_interlock);
238 1.91 perseant }
239 1.91 perseant
240 1.91 perseant simple_lock(&mountlist_slock);
241 1.124 yamt nmp = CIRCLEQ_NEXT(mp, mnt_list);
242 1.91 perseant vfs_unbusy(mp);
243 1.91 perseant }
244 1.91 perseant simple_unlock(&mountlist_slock);
245 1.23 thorpej
246 1.91 perseant /*
247 1.91 perseant * If global state wants a flush, flush everything.
248 1.91 perseant */
249 1.125 yamt simple_lock(&lfs_subsys_lock);
250 1.170 perseant loopcount = 0;
251 1.176 perseant if (lfs_do_flush || locked_queue_count > LFS_MAX_BUFS ||
252 1.91 perseant locked_queue_bytes > LFS_MAX_BYTES ||
253 1.91 perseant lfs_subsys_pages > LFS_MAX_PAGES) {
254 1.91 perseant
255 1.91 perseant if (lfs_do_flush)
256 1.166 perseant DLOG((DLOG_FLUSH, "daemon: lfs_do_flush\n"));
257 1.91 perseant if (locked_queue_count > LFS_MAX_BUFS)
258 1.166 perseant DLOG((DLOG_FLUSH, "daemon: lqc = %d, max %d\n",
259 1.166 perseant locked_queue_count, LFS_MAX_BUFS));
260 1.91 perseant if (locked_queue_bytes > LFS_MAX_BYTES)
261 1.166 perseant DLOG((DLOG_FLUSH, "daemon: lqb = %ld, max %ld\n",
262 1.166 perseant locked_queue_bytes, LFS_MAX_BYTES));
263 1.164 perry if (lfs_subsys_pages > LFS_MAX_PAGES)
264 1.166 perseant DLOG((DLOG_FLUSH, "daemon: lssp = %d, max %d\n",
265 1.166 perseant lfs_subsys_pages, LFS_MAX_PAGES));
266 1.166 perseant
267 1.163 perseant lfs_flush(NULL, SEGM_WRITERD, 0);
268 1.91 perseant lfs_do_flush = 0;
269 1.91 perseant }
270 1.91 perseant }
271 1.91 perseant /* NOTREACHED */
272 1.91 perseant }
273 1.60 perseant
274 1.16 fvdl /*
275 1.16 fvdl * Initialize the filesystem, most work done by ufs_init.
276 1.16 fvdl */
277 1.16 fvdl void
278 1.16 fvdl lfs_init()
279 1.16 fvdl {
280 1.146 atatat #ifdef _LKM
281 1.146 atatat malloc_type_attach(M_SEGMENT);
282 1.150 atatat pool_init(&lfs_inode_pool, sizeof(struct inode), 0, 0, 0,
283 1.150 atatat "lfsinopl", &pool_allocator_nointr);
284 1.150 atatat pool_init(&lfs_dinode_pool, sizeof(struct ufs1_dinode), 0, 0, 0,
285 1.150 atatat "lfsdinopl", &pool_allocator_nointr);
286 1.150 atatat pool_init(&lfs_inoext_pool, sizeof(struct lfs_inode_ext), 8, 0, 0,
287 1.150 atatat "lfsinoextpl", &pool_allocator_nointr);
288 1.163 perseant pool_init(&lfs_lbnentry_pool, sizeof(struct lbnentry), 0, 0, 0,
289 1.163 perseant "lfslbnpool", &pool_allocator_nointr);
290 1.146 atatat #endif
291 1.16 fvdl ufs_init();
292 1.56 perseant
293 1.74 perseant #ifdef DEBUG
294 1.74 perseant memset(lfs_log, 0, sizeof(lfs_log));
295 1.74 perseant #endif
296 1.91 perseant simple_lock_init(&lfs_subsys_lock);
297 1.67 chs }
298 1.67 chs
299 1.67 chs void
300 1.67 chs lfs_reinit()
301 1.67 chs {
302 1.67 chs ufs_reinit();
303 1.47 jdolecek }
304 1.47 jdolecek
305 1.47 jdolecek void
306 1.47 jdolecek lfs_done()
307 1.47 jdolecek {
308 1.47 jdolecek ufs_done();
309 1.150 atatat #ifdef _LKM
310 1.47 jdolecek pool_destroy(&lfs_inode_pool);
311 1.144 oster pool_destroy(&lfs_dinode_pool);
312 1.106 perseant pool_destroy(&lfs_inoext_pool);
313 1.174 perseant pool_destroy(&lfs_lbnentry_pool);
314 1.146 atatat malloc_type_detach(M_SEGMENT);
315 1.146 atatat #endif
316 1.16 fvdl }
317 1.16 fvdl
318 1.16 fvdl /*
319 1.16 fvdl * Called by main() when ufs is going to be mounted as root.
320 1.16 fvdl */
321 1.1 mycroft int
322 1.1 mycroft lfs_mountroot()
323 1.1 mycroft {
324 1.16 fvdl extern struct vnode *rootvp;
325 1.16 fvdl struct mount *mp;
326 1.190 christos struct lwp *l = curlwp; /* XXX */
327 1.16 fvdl int error;
328 1.164 perry
329 1.193 thorpej if (device_class(root_device) != DV_DISK)
330 1.37 sommerfe return (ENODEV);
331 1.37 sommerfe
332 1.37 sommerfe if (rootdev == NODEV)
333 1.96 perseant return (ENODEV);
334 1.35 wrstuden if ((error = vfs_rootmountalloc(MOUNT_LFS, "root_device", &mp))) {
335 1.35 wrstuden vrele(rootvp);
336 1.16 fvdl return (error);
337 1.35 wrstuden }
338 1.190 christos if ((error = lfs_mountfs(rootvp, mp, l))) {
339 1.16 fvdl mp->mnt_op->vfs_refcount--;
340 1.16 fvdl vfs_unbusy(mp);
341 1.16 fvdl free(mp, M_MOUNT);
342 1.16 fvdl return (error);
343 1.16 fvdl }
344 1.16 fvdl simple_lock(&mountlist_slock);
345 1.16 fvdl CIRCLEQ_INSERT_TAIL(&mountlist, mp, mnt_list);
346 1.16 fvdl simple_unlock(&mountlist_slock);
347 1.190 christos (void)lfs_statvfs(mp, &mp->mnt_stat, l);
348 1.16 fvdl vfs_unbusy(mp);
349 1.154 pk setrootfstime((time_t)(VFSTOUFS(mp)->um_lfs->lfs_tstamp));
350 1.16 fvdl return (0);
351 1.1 mycroft }
352 1.1 mycroft
353 1.1 mycroft /*
354 1.1 mycroft * VFS Operations.
355 1.1 mycroft *
356 1.1 mycroft * mount system call
357 1.1 mycroft */
358 1.10 christos int
359 1.190 christos lfs_mount(struct mount *mp, const char *path, void *data, struct nameidata *ndp, struct lwp *l)
360 1.1 mycroft {
361 1.1 mycroft struct vnode *devvp;
362 1.1 mycroft struct ufs_args args;
363 1.10 christos struct ufsmount *ump = NULL;
364 1.48 augustss struct lfs *fs = NULL; /* LFS */
365 1.190 christos struct proc *p;
366 1.161 mycroft int error, update;
367 1.3 mycroft mode_t accessmode;
368 1.1 mycroft
369 1.190 christos p = l->l_proc;
370 1.81 christos if (mp->mnt_flag & MNT_GETARGS) {
371 1.81 christos ump = VFSTOUFS(mp);
372 1.81 christos if (ump == NULL)
373 1.81 christos return EIO;
374 1.81 christos args.fspec = NULL;
375 1.81 christos return copyout(&args, data, sizeof(args));
376 1.81 christos }
377 1.111 dsl error = copyin(data, &args, sizeof (struct ufs_args));
378 1.10 christos if (error)
379 1.1 mycroft return (error);
380 1.1 mycroft
381 1.161 mycroft update = mp->mnt_flag & MNT_UPDATE;
382 1.161 mycroft
383 1.162 mycroft /* Check arguments */
384 1.161 mycroft if (args.fspec != NULL) {
385 1.161 mycroft /*
386 1.161 mycroft * Look up the name and verify that it's sane.
387 1.161 mycroft */
388 1.190 christos NDINIT(ndp, LOOKUP, FOLLOW, UIO_USERSPACE, args.fspec, l);
389 1.161 mycroft if ((error = namei(ndp)) != 0)
390 1.161 mycroft return (error);
391 1.161 mycroft devvp = ndp->ni_vp;
392 1.161 mycroft
393 1.161 mycroft if (!update) {
394 1.3 mycroft /*
395 1.161 mycroft * Be sure this is a valid block device
396 1.3 mycroft */
397 1.161 mycroft if (devvp->v_type != VBLK)
398 1.161 mycroft error = ENOTBLK;
399 1.161 mycroft else if (bdevsw_lookup(devvp->v_rdev) == NULL)
400 1.161 mycroft error = ENXIO;
401 1.161 mycroft } else {
402 1.1 mycroft /*
403 1.161 mycroft * Be sure we're still naming the same device
404 1.161 mycroft * used for our initial mount
405 1.1 mycroft */
406 1.162 mycroft ump = VFSTOUFS(mp);
407 1.161 mycroft if (devvp != ump->um_devvp)
408 1.161 mycroft error = EINVAL;
409 1.1 mycroft }
410 1.162 mycroft } else {
411 1.162 mycroft if (!update) {
412 1.162 mycroft /* New mounts must have a filename for the device */
413 1.162 mycroft return (EINVAL);
414 1.162 mycroft } else {
415 1.162 mycroft /* Use the extant mount */
416 1.162 mycroft ump = VFSTOUFS(mp);
417 1.162 mycroft devvp = ump->um_devvp;
418 1.162 mycroft vref(devvp);
419 1.162 mycroft }
420 1.1 mycroft }
421 1.161 mycroft
422 1.162 mycroft
423 1.3 mycroft /*
424 1.3 mycroft * If mount by non-root, then verify that user has necessary
425 1.3 mycroft * permissions on the device.
426 1.3 mycroft */
427 1.210 elad if (error == 0 && kauth_cred_geteuid(p->p_cred) != 0) {
428 1.3 mycroft accessmode = VREAD;
429 1.161 mycroft if (update ?
430 1.161 mycroft (mp->mnt_iflag & IMNT_WANTRDWR) != 0 :
431 1.161 mycroft (mp->mnt_flag & MNT_RDONLY) == 0)
432 1.3 mycroft accessmode |= VWRITE;
433 1.16 fvdl vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
434 1.210 elad error = VOP_ACCESS(devvp, accessmode, p->p_cred, l);
435 1.16 fvdl VOP_UNLOCK(devvp, 0);
436 1.3 mycroft }
437 1.161 mycroft
438 1.1 mycroft if (error) {
439 1.1 mycroft vrele(devvp);
440 1.1 mycroft return (error);
441 1.1 mycroft }
442 1.161 mycroft
443 1.161 mycroft if (!update) {
444 1.161 mycroft int flags;
445 1.161 mycroft
446 1.161 mycroft /*
447 1.161 mycroft * Disallow multiple mounts of the same device.
448 1.161 mycroft * Disallow mounting of a device that is currently in use
449 1.161 mycroft * (except for root, which might share swap device for
450 1.161 mycroft * miniroot).
451 1.161 mycroft */
452 1.161 mycroft error = vfs_mountedon(devvp);
453 1.161 mycroft if (error)
454 1.161 mycroft goto fail;
455 1.161 mycroft if (vcount(devvp) > 1 && devvp != rootvp) {
456 1.161 mycroft error = EBUSY;
457 1.161 mycroft goto fail;
458 1.161 mycroft }
459 1.161 mycroft if (mp->mnt_flag & MNT_RDONLY)
460 1.161 mycroft flags = FREAD;
461 1.161 mycroft else
462 1.161 mycroft flags = FREAD|FWRITE;
463 1.190 christos error = VOP_OPEN(devvp, flags, FSCRED, l);
464 1.161 mycroft if (error)
465 1.161 mycroft goto fail;
466 1.190 christos error = lfs_mountfs(devvp, mp, l); /* LFS */
467 1.161 mycroft if (error) {
468 1.161 mycroft vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
469 1.190 christos (void)VOP_CLOSE(devvp, flags, NOCRED, l);
470 1.161 mycroft VOP_UNLOCK(devvp, 0);
471 1.161 mycroft goto fail;
472 1.161 mycroft }
473 1.161 mycroft
474 1.161 mycroft ump = VFSTOUFS(mp);
475 1.161 mycroft fs = ump->um_lfs;
476 1.161 mycroft } else {
477 1.161 mycroft /*
478 1.161 mycroft * Update the mount.
479 1.161 mycroft */
480 1.161 mycroft
481 1.161 mycroft /*
482 1.161 mycroft * The initial mount got a reference on this
483 1.161 mycroft * device, so drop the one obtained via
484 1.161 mycroft * namei(), above.
485 1.161 mycroft */
486 1.161 mycroft vrele(devvp);
487 1.161 mycroft
488 1.162 mycroft ump = VFSTOUFS(mp);
489 1.161 mycroft fs = ump->um_lfs;
490 1.161 mycroft if (fs->lfs_ronly && (mp->mnt_iflag & IMNT_WANTRDWR)) {
491 1.161 mycroft /*
492 1.198 perseant * Changing from read-only to read/write.
493 1.198 perseant * Note in the superblocks that we're writing.
494 1.161 mycroft */
495 1.161 mycroft fs->lfs_ronly = 0;
496 1.198 perseant if (fs->lfs_pflags & LFS_PF_CLEAN) {
497 1.198 perseant fs->lfs_pflags &= ~LFS_PF_CLEAN;
498 1.198 perseant lfs_writesuper(fs, fs->lfs_sboffs[0]);
499 1.198 perseant lfs_writesuper(fs, fs->lfs_sboffs[1]);
500 1.198 perseant }
501 1.161 mycroft }
502 1.187 jmmv if (args.fspec == NULL)
503 1.187 jmmv return EINVAL;
504 1.161 mycroft }
505 1.161 mycroft
506 1.179 perseant error = set_statvfs_info(path, UIO_USERSPACE, args.fspec,
507 1.190 christos UIO_USERSPACE, mp, l);
508 1.179 perseant if (error == 0)
509 1.179 perseant (void)strncpy(fs->lfs_fsmnt, mp->mnt_stat.f_mntonname,
510 1.179 perseant sizeof(fs->lfs_fsmnt));
511 1.179 perseant return error;
512 1.161 mycroft
513 1.161 mycroft fail:
514 1.161 mycroft vrele(devvp);
515 1.161 mycroft return (error);
516 1.1 mycroft }
517 1.1 mycroft
518 1.60 perseant /*
519 1.60 perseant * Roll-forward code.
520 1.60 perseant */
521 1.60 perseant
522 1.60 perseant /*
523 1.60 perseant * Load the appropriate indirect block, and change the appropriate pointer.
524 1.60 perseant * Mark the block dirty. Do segment and avail accounting.
525 1.60 perseant */
526 1.60 perseant static int
527 1.181 christos update_meta(struct lfs *fs, ino_t ino, int vers, daddr_t lbn,
528 1.190 christos daddr_t ndaddr, size_t size, struct lwp *l)
529 1.60 perseant {
530 1.60 perseant int error;
531 1.60 perseant struct vnode *vp;
532 1.60 perseant struct inode *ip;
533 1.166 perseant #ifdef DEBUG
534 1.140 yamt daddr_t odaddr;
535 1.140 yamt struct indir a[NIADDR];
536 1.140 yamt int num;
537 1.140 yamt int i;
538 1.166 perseant #endif /* DEBUG */
539 1.60 perseant struct buf *bp;
540 1.60 perseant SEGUSE *sup;
541 1.138 yamt
542 1.138 yamt KASSERT(lbn >= 0); /* no indirect blocks */
543 1.60 perseant
544 1.190 christos if ((error = lfs_rf_valloc(fs, ino, vers, l, &vp)) != 0) {
545 1.166 perseant DLOG((DLOG_RF, "update_meta: ino %d: lfs_rf_valloc"
546 1.166 perseant " returned %d\n", ino, error));
547 1.60 perseant return error;
548 1.60 perseant }
549 1.60 perseant
550 1.189 yamt if ((error = lfs_balloc(vp, (lbn << fs->lfs_bshift), size,
551 1.60 perseant NOCRED, 0, &bp)) != 0) {
552 1.60 perseant vput(vp);
553 1.60 perseant return (error);
554 1.60 perseant }
555 1.60 perseant /* No need to write, the block is already on disk */
556 1.60 perseant if (bp->b_flags & B_DELWRI) {
557 1.60 perseant LFS_UNLOCK_BUF(bp);
558 1.66 perseant fs->lfs_avail += btofsb(fs, bp->b_bcount);
559 1.60 perseant }
560 1.60 perseant bp->b_flags |= B_INVAL;
561 1.60 perseant brelse(bp);
562 1.60 perseant
563 1.60 perseant /*
564 1.60 perseant * Extend the file, if it is not large enough already.
565 1.60 perseant * XXX this is not exactly right, we don't know how much of the
566 1.60 perseant * XXX last block is actually used. We hope that an inode will
567 1.60 perseant * XXX appear later to give the correct size.
568 1.60 perseant */
569 1.60 perseant ip = VTOI(vp);
570 1.113 fvdl if (ip->i_size <= (lbn << fs->lfs_bshift)) {
571 1.138 yamt u_int64_t newsize;
572 1.138 yamt
573 1.60 perseant if (lbn < NDADDR)
574 1.138 yamt newsize = ip->i_ffs1_size = (lbn << fs->lfs_bshift) +
575 1.60 perseant (size - fs->lfs_fsize) + 1;
576 1.60 perseant else
577 1.138 yamt newsize = ip->i_ffs1_size = (lbn << fs->lfs_bshift) + 1;
578 1.138 yamt
579 1.138 yamt if (ip->i_size < newsize) {
580 1.138 yamt ip->i_size = newsize;
581 1.138 yamt /*
582 1.138 yamt * tell vm our new size for the case the inode won't
583 1.138 yamt * appear later.
584 1.138 yamt */
585 1.138 yamt uvm_vnp_setsize(vp, newsize);
586 1.138 yamt }
587 1.60 perseant }
588 1.60 perseant
589 1.140 yamt lfs_update_single(fs, NULL, vp, lbn, ndaddr, size);
590 1.138 yamt
591 1.66 perseant LFS_SEGENTRY(sup, fs, dtosn(fs, ndaddr), bp);
592 1.60 perseant sup->su_nbytes += size;
593 1.91 perseant LFS_WRITESEGENTRY(sup, fs, dtosn(fs, ndaddr), bp);
594 1.60 perseant
595 1.140 yamt /* differences here should be due to UNWRITTEN indirect blocks. */
596 1.140 yamt KASSERT((lblkno(fs, ip->i_size) > NDADDR &&
597 1.140 yamt ip->i_lfs_effnblks == ip->i_ffs1_blocks) ||
598 1.140 yamt ip->i_lfs_effnblks >= ip->i_ffs1_blocks);
599 1.60 perseant
600 1.166 perseant #ifdef DEBUG
601 1.60 perseant /* Now look again to make sure it worked */
602 1.117 yamt ufs_bmaparray(vp, lbn, &odaddr, &a[0], &num, NULL, NULL);
603 1.140 yamt for (i = num; i > 0; i--) {
604 1.140 yamt if (!a[i].in_exists)
605 1.140 yamt panic("update_meta: absent %d lv indirect block", i);
606 1.140 yamt }
607 1.66 perseant if (dbtofsb(fs, odaddr) != ndaddr)
608 1.166 perseant DLOG((DLOG_RF, "update_meta: failed setting ino %d lbn %"
609 1.166 perseant PRId64 " to %" PRId64 "\n", ino, lbn, ndaddr));
610 1.166 perseant #endif /* DEBUG */
611 1.60 perseant vput(vp);
612 1.60 perseant return 0;
613 1.60 perseant }
614 1.60 perseant
615 1.60 perseant static int
616 1.210 elad update_inoblk(struct lfs *fs, daddr_t offset, kauth_cred_t cred,
617 1.190 christos struct lwp *l)
618 1.60 perseant {
619 1.60 perseant struct vnode *devvp, *vp;
620 1.60 perseant struct inode *ip;
621 1.113 fvdl struct ufs1_dinode *dip;
622 1.60 perseant struct buf *dbp, *ibp;
623 1.60 perseant int error;
624 1.60 perseant daddr_t daddr;
625 1.60 perseant IFILE *ifp;
626 1.60 perseant SEGUSE *sup;
627 1.60 perseant
628 1.60 perseant devvp = VTOI(fs->lfs_ivnode)->i_devvp;
629 1.60 perseant
630 1.60 perseant /*
631 1.60 perseant * Get the inode, update times and perms.
632 1.60 perseant * DO NOT update disk blocks, we do that separately.
633 1.60 perseant */
634 1.66 perseant error = bread(devvp, fsbtodb(fs, offset), fs->lfs_ibsize, cred, &dbp);
635 1.60 perseant if (error) {
636 1.166 perseant DLOG((DLOG_RF, "update_inoblk: bread returned %d\n", error));
637 1.60 perseant return error;
638 1.60 perseant }
639 1.113 fvdl dip = ((struct ufs1_dinode *)(dbp->b_data)) + INOPB(fs);
640 1.113 fvdl while (--dip >= (struct ufs1_dinode *)dbp->b_data) {
641 1.70 chs if (dip->di_inumber > LFS_IFILE_INUM) {
642 1.60 perseant error = lfs_rf_valloc(fs, dip->di_inumber, dip->di_gen,
643 1.190 christos l, &vp);
644 1.60 perseant if (error) {
645 1.166 perseant DLOG((DLOG_RF, "update_inoblk: lfs_rf_valloc"
646 1.166 perseant " returned %d\n", error));
647 1.60 perseant continue;
648 1.60 perseant }
649 1.60 perseant ip = VTOI(vp);
650 1.113 fvdl if (dip->di_size != ip->i_size)
651 1.190 christos lfs_truncate(vp, dip->di_size, 0, NOCRED, l);
652 1.60 perseant /* Get mode, link count, size, and times */
653 1.164 perry memcpy(ip->i_din.ffs1_din, dip,
654 1.113 fvdl offsetof(struct ufs1_dinode, di_db[0]));
655 1.60 perseant
656 1.60 perseant /* Then the rest, except di_blocks */
657 1.113 fvdl ip->i_flags = ip->i_ffs1_flags = dip->di_flags;
658 1.113 fvdl ip->i_gen = ip->i_ffs1_gen = dip->di_gen;
659 1.113 fvdl ip->i_uid = ip->i_ffs1_uid = dip->di_uid;
660 1.113 fvdl ip->i_gid = ip->i_ffs1_gid = dip->di_gid;
661 1.113 fvdl
662 1.113 fvdl ip->i_mode = ip->i_ffs1_mode;
663 1.113 fvdl ip->i_nlink = ip->i_ffs_effnlink = ip->i_ffs1_nlink;
664 1.113 fvdl ip->i_size = ip->i_ffs1_size;
665 1.60 perseant
666 1.155 mycroft LFS_SET_UINO(ip, IN_CHANGE | IN_UPDATE);
667 1.60 perseant
668 1.60 perseant /* Re-initialize to get type right */
669 1.60 perseant ufs_vinit(vp->v_mount, lfs_specop_p, lfs_fifoop_p,
670 1.60 perseant &vp);
671 1.60 perseant vput(vp);
672 1.60 perseant
673 1.60 perseant /* Record change in location */
674 1.60 perseant LFS_IENTRY(ifp, fs, dip->di_inumber, ibp);
675 1.60 perseant daddr = ifp->if_daddr;
676 1.66 perseant ifp->if_daddr = dbtofsb(fs, dbp->b_blkno);
677 1.74 perseant error = LFS_BWRITE_LOG(ibp); /* Ifile */
678 1.60 perseant /* And do segment accounting */
679 1.66 perseant if (dtosn(fs, daddr) != dtosn(fs, dbtofsb(fs, dbp->b_blkno))) {
680 1.60 perseant if (daddr > 0) {
681 1.66 perseant LFS_SEGENTRY(sup, fs, dtosn(fs, daddr),
682 1.60 perseant ibp);
683 1.113 fvdl sup->su_nbytes -= sizeof (struct ufs1_dinode);
684 1.91 perseant LFS_WRITESEGENTRY(sup, fs,
685 1.91 perseant dtosn(fs, daddr),
686 1.91 perseant ibp);
687 1.60 perseant }
688 1.66 perseant LFS_SEGENTRY(sup, fs, dtosn(fs, dbtofsb(fs, dbp->b_blkno)),
689 1.60 perseant ibp);
690 1.113 fvdl sup->su_nbytes += sizeof (struct ufs1_dinode);
691 1.91 perseant LFS_WRITESEGENTRY(sup, fs,
692 1.96 perseant dtosn(fs, dbtofsb(fs, dbp->b_blkno)),
693 1.91 perseant ibp);
694 1.60 perseant }
695 1.60 perseant }
696 1.60 perseant }
697 1.60 perseant dbp->b_flags |= B_AGE;
698 1.60 perseant brelse(dbp);
699 1.60 perseant
700 1.60 perseant return 0;
701 1.60 perseant }
702 1.60 perseant
703 1.60 perseant #define CHECK_CKSUM 0x0001 /* Check the checksum to make sure it's valid */
704 1.60 perseant #define CHECK_UPDATE 0x0002 /* Update Ifile for new data blocks / inodes */
705 1.60 perseant
706 1.60 perseant static daddr_t
707 1.133 yamt check_segsum(struct lfs *fs, daddr_t offset, u_int64_t nextserial,
708 1.210 elad kauth_cred_t cred, int flags, int *pseg_flags, struct lwp *l)
709 1.60 perseant {
710 1.60 perseant struct vnode *devvp;
711 1.60 perseant struct buf *bp, *dbp;
712 1.136 christos int error, nblocks = 0, ninos, i, j; /* XXX: gcc */
713 1.60 perseant SEGSUM *ssp;
714 1.136 christos u_long *dp = NULL, *datap = NULL; /* XXX u_int32_t */
715 1.85 fvdl daddr_t oldoffset;
716 1.85 fvdl int32_t *iaddr; /* XXX ondisk32 */
717 1.60 perseant FINFO *fip;
718 1.60 perseant SEGUSE *sup;
719 1.60 perseant size_t size;
720 1.60 perseant
721 1.60 perseant devvp = VTOI(fs->lfs_ivnode)->i_devvp;
722 1.60 perseant /*
723 1.60 perseant * If the segment has a superblock and we're at the top
724 1.60 perseant * of the segment, skip the superblock.
725 1.60 perseant */
726 1.70 chs if (sntod(fs, dtosn(fs, offset)) == offset) {
727 1.164 perry LFS_SEGENTRY(sup, fs, dtosn(fs, offset), bp);
728 1.96 perseant if (sup->su_flags & SEGUSE_SUPERBLOCK)
729 1.66 perseant offset += btofsb(fs, LFS_SBPAD);
730 1.96 perseant brelse(bp);
731 1.60 perseant }
732 1.60 perseant
733 1.60 perseant /* Read in the segment summary */
734 1.132 yamt error = bread(devvp, fsbtodb(fs, offset), fs->lfs_sumsize, cred, &bp);
735 1.70 chs if (error)
736 1.60 perseant return -1;
737 1.164 perry
738 1.60 perseant /* Check summary checksum */
739 1.60 perseant ssp = (SEGSUM *)bp->b_data;
740 1.70 chs if (flags & CHECK_CKSUM) {
741 1.70 chs if (ssp->ss_sumsum != cksum(&ssp->ss_datasum,
742 1.66 perseant fs->lfs_sumsize -
743 1.60 perseant sizeof(ssp->ss_sumsum))) {
744 1.166 perseant DLOG((DLOG_RF, "Sumsum error at 0x%" PRIx64 "\n", offset));
745 1.60 perseant offset = -1;
746 1.60 perseant goto err1;
747 1.60 perseant }
748 1.60 perseant if (ssp->ss_nfinfo == 0 && ssp->ss_ninos == 0) {
749 1.166 perseant DLOG((DLOG_RF, "Empty pseg at 0x%" PRIx64 "\n", offset));
750 1.60 perseant offset = -1;
751 1.60 perseant goto err1;
752 1.60 perseant }
753 1.60 perseant if (ssp->ss_create < fs->lfs_tstamp) {
754 1.166 perseant DLOG((DLOG_RF, "Old data at 0x%" PRIx64 "\n", offset));
755 1.60 perseant offset = -1;
756 1.60 perseant goto err1;
757 1.60 perseant }
758 1.60 perseant }
759 1.66 perseant if (fs->lfs_version > 1) {
760 1.133 yamt if (ssp->ss_serial != nextserial) {
761 1.166 perseant DLOG((DLOG_RF, "Unexpected serial number at 0x%" PRIx64
762 1.166 perseant "\n", offset));
763 1.66 perseant offset = -1;
764 1.66 perseant goto err1;
765 1.66 perseant }
766 1.66 perseant if (ssp->ss_ident != fs->lfs_ident) {
767 1.166 perseant DLOG((DLOG_RF, "Incorrect fsid (0x%x vs 0x%x) at 0x%"
768 1.166 perseant PRIx64 "\n", ssp->ss_ident, fs->lfs_ident, offset));
769 1.66 perseant offset = -1;
770 1.66 perseant goto err1;
771 1.66 perseant }
772 1.66 perseant }
773 1.70 chs if (pseg_flags)
774 1.60 perseant *pseg_flags = ssp->ss_flags;
775 1.60 perseant oldoffset = offset;
776 1.66 perseant offset += btofsb(fs, fs->lfs_sumsize);
777 1.60 perseant
778 1.60 perseant ninos = howmany(ssp->ss_ninos, INOPB(fs));
779 1.85 fvdl /* XXX ondisk32 */
780 1.85 fvdl iaddr = (int32_t *)(bp->b_data + fs->lfs_sumsize - sizeof(int32_t));
781 1.70 chs if (flags & CHECK_CKSUM) {
782 1.60 perseant /* Count blocks */
783 1.60 perseant nblocks = 0;
784 1.66 perseant fip = (FINFO *)(bp->b_data + SEGSUM_SIZE(fs));
785 1.70 chs for (i = 0; i < ssp->ss_nfinfo; ++i) {
786 1.60 perseant nblocks += fip->fi_nblocks;
787 1.70 chs if (fip->fi_nblocks <= 0)
788 1.60 perseant break;
789 1.85 fvdl /* XXX ondisk32 */
790 1.90 yamt fip = (FINFO *)(((char *)fip) + FINFOSIZE +
791 1.90 yamt (fip->fi_nblocks * sizeof(int32_t)));
792 1.60 perseant }
793 1.60 perseant nblocks += ninos;
794 1.60 perseant /* Create the sum array */
795 1.60 perseant datap = dp = (u_long *)malloc(nblocks * sizeof(u_long),
796 1.60 perseant M_SEGMENT, M_WAITOK);
797 1.60 perseant }
798 1.60 perseant
799 1.60 perseant /* Handle individual blocks */
800 1.66 perseant fip = (FINFO *)(bp->b_data + SEGSUM_SIZE(fs));
801 1.70 chs for (i = 0; i < ssp->ss_nfinfo || ninos; ++i) {
802 1.60 perseant /* Inode block? */
803 1.70 chs if (ninos && *iaddr == offset) {
804 1.70 chs if (flags & CHECK_CKSUM) {
805 1.60 perseant /* Read in the head and add to the buffer */
806 1.66 perseant error = bread(devvp, fsbtodb(fs, offset), fs->lfs_bsize,
807 1.60 perseant cred, &dbp);
808 1.70 chs if (error) {
809 1.60 perseant offset = -1;
810 1.60 perseant goto err2;
811 1.60 perseant }
812 1.60 perseant (*dp++) = ((u_long *)(dbp->b_data))[0];
813 1.60 perseant dbp->b_flags |= B_AGE;
814 1.60 perseant brelse(dbp);
815 1.60 perseant }
816 1.70 chs if (flags & CHECK_UPDATE) {
817 1.190 christos if ((error = update_inoblk(fs, offset, cred, l))
818 1.60 perseant != 0) {
819 1.60 perseant offset = -1;
820 1.60 perseant goto err2;
821 1.60 perseant }
822 1.60 perseant }
823 1.66 perseant offset += btofsb(fs, fs->lfs_ibsize);
824 1.60 perseant --iaddr;
825 1.60 perseant --ninos;
826 1.60 perseant --i; /* compensate */
827 1.60 perseant continue;
828 1.60 perseant }
829 1.60 perseant size = fs->lfs_bsize;
830 1.70 chs for (j = 0; j < fip->fi_nblocks; ++j) {
831 1.60 perseant if (j == fip->fi_nblocks - 1)
832 1.60 perseant size = fip->fi_lastlength;
833 1.70 chs if (flags & CHECK_CKSUM) {
834 1.66 perseant error = bread(devvp, fsbtodb(fs, offset), size, cred, &dbp);
835 1.70 chs if (error) {
836 1.60 perseant offset = -1;
837 1.60 perseant goto err2;
838 1.60 perseant }
839 1.60 perseant (*dp++) = ((u_long *)(dbp->b_data))[0];
840 1.60 perseant dbp->b_flags |= B_AGE;
841 1.60 perseant brelse(dbp);
842 1.60 perseant }
843 1.60 perseant /* Account for and update any direct blocks */
844 1.70 chs if ((flags & CHECK_UPDATE) &&
845 1.60 perseant fip->fi_ino > LFS_IFILE_INUM &&
846 1.60 perseant fip->fi_blocks[j] >= 0) {
847 1.60 perseant update_meta(fs, fip->fi_ino, fip->fi_version,
848 1.190 christos fip->fi_blocks[j], offset, size, l);
849 1.60 perseant }
850 1.66 perseant offset += btofsb(fs, size);
851 1.60 perseant }
852 1.85 fvdl /* XXX ondisk32 */
853 1.90 yamt fip = (FINFO *)(((char *)fip) + FINFOSIZE
854 1.90 yamt + fip->fi_nblocks * sizeof(int32_t));
855 1.60 perseant }
856 1.60 perseant /* Checksum the array, compare */
857 1.70 chs if ((flags & CHECK_CKSUM) &&
858 1.60 perseant ssp->ss_datasum != cksum(datap, nblocks * sizeof(u_long)))
859 1.60 perseant {
860 1.166 perseant DLOG((DLOG_RF, "Datasum error at 0x%" PRIx64
861 1.166 perseant " (wanted %x got %x)\n",
862 1.166 perseant offset, ssp->ss_datasum, cksum(datap, nblocks *
863 1.166 perseant sizeof(u_long))));
864 1.60 perseant offset = -1;
865 1.60 perseant goto err2;
866 1.60 perseant }
867 1.60 perseant
868 1.60 perseant /* If we're at the end of the segment, move to the next */
869 1.70 chs if (dtosn(fs, offset + btofsb(fs, fs->lfs_sumsize + fs->lfs_bsize)) !=
870 1.66 perseant dtosn(fs, offset)) {
871 1.66 perseant if (dtosn(fs, offset) == dtosn(fs, ssp->ss_next)) {
872 1.60 perseant offset = -1;
873 1.60 perseant goto err2;
874 1.60 perseant }
875 1.60 perseant offset = ssp->ss_next;
876 1.166 perseant DLOG((DLOG_RF, "LFS roll forward: moving to offset 0x%" PRIx64
877 1.166 perseant " -> segment %d\n", offset, dtosn(fs,offset)));
878 1.60 perseant }
879 1.60 perseant
880 1.60 perseant if (flags & CHECK_UPDATE) {
881 1.60 perseant fs->lfs_avail -= (offset - oldoffset);
882 1.60 perseant /* Don't clog the buffer queue */
883 1.125 yamt simple_lock(&lfs_subsys_lock);
884 1.60 perseant if (locked_queue_count > LFS_MAX_BUFS ||
885 1.60 perseant locked_queue_bytes > LFS_MAX_BYTES) {
886 1.163 perseant lfs_flush(fs, SEGM_CKP, 0);
887 1.60 perseant }
888 1.125 yamt simple_unlock(&lfs_subsys_lock);
889 1.60 perseant }
890 1.60 perseant
891 1.60 perseant err2:
892 1.70 chs if (flags & CHECK_CKSUM)
893 1.60 perseant free(datap, M_SEGMENT);
894 1.60 perseant err1:
895 1.60 perseant bp->b_flags |= B_AGE;
896 1.60 perseant brelse(bp);
897 1.60 perseant
898 1.66 perseant /* XXX should we update the serial number even for bad psegs? */
899 1.66 perseant if ((flags & CHECK_UPDATE) && offset > 0 && fs->lfs_version > 1)
900 1.133 yamt fs->lfs_serial = nextserial;
901 1.60 perseant return offset;
902 1.60 perseant }
903 1.60 perseant
904 1.1 mycroft /*
905 1.1 mycroft * Common code for mount and mountroot
906 1.1 mycroft * LFS specific
907 1.1 mycroft */
908 1.1 mycroft int
909 1.190 christos lfs_mountfs(struct vnode *devvp, struct mount *mp, struct lwp *l)
910 1.1 mycroft {
911 1.60 perseant struct dlfs *tdfs, *dfs, *adfs;
912 1.48 augustss struct lfs *fs;
913 1.48 augustss struct ufsmount *ump;
914 1.1 mycroft struct vnode *vp;
915 1.28 perseant struct buf *bp, *abp;
916 1.1 mycroft struct partinfo dpart;
917 1.190 christos struct proc *p;
918 1.1 mycroft dev_t dev;
919 1.66 perseant int error, i, ronly, secsize, fsbsize;
920 1.210 elad kauth_cred_t cred;
921 1.59 perseant CLEANERINFO *cip;
922 1.96 perseant SEGUSE *sup;
923 1.66 perseant int flags, dirty, do_rollforward;
924 1.66 perseant daddr_t offset, oldoffset, lastgoodpseg, sb_addr;
925 1.60 perseant int sn, curseg;
926 1.1 mycroft
927 1.190 christos p = l ? l->l_proc : NULL;
928 1.210 elad cred = p ? p->p_cred : NOCRED;
929 1.161 mycroft
930 1.1 mycroft /*
931 1.1 mycroft * Flush out any old buffers remaining from a previous use.
932 1.1 mycroft */
933 1.161 mycroft vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
934 1.190 christos error = vinvalbuf(devvp, V_SAVE, cred, l, 0, 0);
935 1.161 mycroft VOP_UNLOCK(devvp, 0);
936 1.161 mycroft if (error)
937 1.1 mycroft return (error);
938 1.1 mycroft
939 1.1 mycroft ronly = (mp->mnt_flag & MNT_RDONLY) != 0;
940 1.190 christos if (VOP_IOCTL(devvp, DIOCGPART, &dpart, FREAD, cred, l) != 0)
941 1.66 perseant secsize = DEV_BSIZE;
942 1.29 mycroft else
943 1.66 perseant secsize = dpart.disklab->d_secsize;
944 1.1 mycroft
945 1.1 mycroft /* Don't free random space on error. */
946 1.1 mycroft bp = NULL;
947 1.50 perseant abp = NULL;
948 1.1 mycroft ump = NULL;
949 1.1 mycroft
950 1.66 perseant sb_addr = LFS_LABELPAD / secsize;
951 1.70 chs while (1) {
952 1.66 perseant /* Read in the superblock. */
953 1.66 perseant error = bread(devvp, sb_addr, LFS_SBPAD, cred, &bp);
954 1.66 perseant if (error)
955 1.66 perseant goto out;
956 1.66 perseant dfs = (struct dlfs *)bp->b_data;
957 1.1 mycroft
958 1.66 perseant /* Check the basics. */
959 1.163 perseant if (dfs->dlfs_magic != LFS_MAGIC || dfs->dlfs_bsize > MAXBSIZE ||
960 1.66 perseant dfs->dlfs_version > LFS_VERSION ||
961 1.66 perseant dfs->dlfs_bsize < sizeof(struct dlfs)) {
962 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: primary superblock sanity failed\n"));
963 1.66 perseant error = EINVAL; /* XXX needs translation */
964 1.66 perseant goto out;
965 1.66 perseant }
966 1.166 perseant if (dfs->dlfs_inodefmt > LFS_MAXINODEFMT) {
967 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: unknown inode format %d\n",
968 1.166 perseant dfs->dlfs_inodefmt));
969 1.166 perseant error = EINVAL;
970 1.166 perseant goto out;
971 1.166 perseant }
972 1.164 perry
973 1.164 perry if (dfs->dlfs_version == 1)
974 1.66 perseant fsbsize = secsize;
975 1.66 perseant else {
976 1.164 perry fsbsize = 1 << (dfs->dlfs_bshift - dfs->dlfs_blktodb +
977 1.66 perseant dfs->dlfs_fsbtodb);
978 1.66 perseant /*
979 1.66 perseant * Could be, if the frag size is large enough, that we
980 1.66 perseant * don't have the "real" primary superblock. If that's
981 1.66 perseant * the case, get the real one, and try again.
982 1.66 perseant */
983 1.66 perseant if (sb_addr != dfs->dlfs_sboffs[0] <<
984 1.96 perseant dfs->dlfs_fsbtodb) {
985 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: sb daddr"
986 1.166 perseant " 0x%llx is not right, trying 0x%llx\n",
987 1.166 perseant (long long)sb_addr,
988 1.166 perseant (long long)(dfs->dlfs_sboffs[0] <<
989 1.166 perseant dfs->dlfs_fsbtodb)));
990 1.164 perry sb_addr = dfs->dlfs_sboffs[0] <<
991 1.66 perseant dfs->dlfs_fsbtodb;
992 1.66 perseant brelse(bp);
993 1.66 perseant continue;
994 1.66 perseant }
995 1.66 perseant }
996 1.66 perseant break;
997 1.50 perseant }
998 1.50 perseant
999 1.26 perseant /*
1000 1.26 perseant * Check the second superblock to see which is newer; then mount
1001 1.96 perseant * using the older of the two. This is necessary to ensure that
1002 1.26 perseant * the filesystem is valid if it was not unmounted cleanly.
1003 1.26 perseant */
1004 1.60 perseant
1005 1.50 perseant if (dfs->dlfs_sboffs[1] &&
1006 1.66 perseant dfs->dlfs_sboffs[1] - LFS_LABELPAD / fsbsize > LFS_SBPAD / fsbsize)
1007 1.50 perseant {
1008 1.164 perry error = bread(devvp, dfs->dlfs_sboffs[1] * (fsbsize / secsize),
1009 1.66 perseant LFS_SBPAD, cred, &abp);
1010 1.50 perseant if (error)
1011 1.50 perseant goto out;
1012 1.50 perseant adfs = (struct dlfs *)abp->b_data;
1013 1.50 perseant
1014 1.66 perseant if (dfs->dlfs_version == 1) {
1015 1.66 perseant /* 1s resolution comparison */
1016 1.66 perseant if (adfs->dlfs_tstamp < dfs->dlfs_tstamp)
1017 1.66 perseant tdfs = adfs;
1018 1.66 perseant else
1019 1.66 perseant tdfs = dfs;
1020 1.66 perseant } else {
1021 1.66 perseant /* monotonic infinite-resolution comparison */
1022 1.66 perseant if (adfs->dlfs_serial < dfs->dlfs_serial)
1023 1.66 perseant tdfs = adfs;
1024 1.66 perseant else
1025 1.66 perseant tdfs = dfs;
1026 1.66 perseant }
1027 1.60 perseant
1028 1.60 perseant /* Check the basics. */
1029 1.60 perseant if (tdfs->dlfs_magic != LFS_MAGIC ||
1030 1.60 perseant tdfs->dlfs_bsize > MAXBSIZE ||
1031 1.96 perseant tdfs->dlfs_version > LFS_VERSION ||
1032 1.96 perseant tdfs->dlfs_bsize < sizeof(struct dlfs)) {
1033 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: alt superblock"
1034 1.166 perseant " sanity failed\n"));
1035 1.60 perseant error = EINVAL; /* XXX needs translation */
1036 1.60 perseant goto out;
1037 1.60 perseant }
1038 1.50 perseant } else {
1039 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: invalid alt superblock"
1040 1.166 perseant " daddr=0x%x\n", dfs->dlfs_sboffs[1]));
1041 1.50 perseant error = EINVAL;
1042 1.1 mycroft goto out;
1043 1.1 mycroft }
1044 1.1 mycroft
1045 1.1 mycroft /* Allocate the mount structure, copy the superblock into it. */
1046 1.84 yamt fs = malloc(sizeof(struct lfs), M_UFSMNT, M_WAITOK | M_ZERO);
1047 1.60 perseant memcpy(&fs->lfs_dlfs, tdfs, sizeof(struct dlfs));
1048 1.60 perseant
1049 1.66 perseant /* Compatibility */
1050 1.66 perseant if (fs->lfs_version < 2) {
1051 1.66 perseant fs->lfs_sumsize = LFS_V1_SUMMARY_SIZE;
1052 1.66 perseant fs->lfs_ibsize = fs->lfs_bsize;
1053 1.66 perseant fs->lfs_start = fs->lfs_sboffs[0];
1054 1.66 perseant fs->lfs_tstamp = fs->lfs_otstamp;
1055 1.66 perseant fs->lfs_fsbtodb = 0;
1056 1.66 perseant }
1057 1.207 perseant if (fs->lfs_resvseg == 0)
1058 1.207 perseant fs->lfs_resvseg = MIN(fs->lfs_minfreeseg - 1, \
1059 1.207 perseant MAX(MIN_RESV_SEGS, fs->lfs_minfreeseg / 2 + 1));
1060 1.66 perseant
1061 1.163 perseant /*
1062 1.163 perseant * If we aren't going to be able to write meaningfully to this
1063 1.163 perseant * filesystem, and were not mounted readonly, bomb out now.
1064 1.163 perseant */
1065 1.163 perseant if (fsbtob(fs, LFS_NRESERVE(fs)) > LFS_MAX_BYTES && !ronly) {
1066 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mount: to mount this filesystem read/write,"
1067 1.166 perseant " we need BUFPAGES >= %lld\n",
1068 1.166 perseant (long long)((bufmem_hiwater / bufmem_lowater) *
1069 1.166 perseant LFS_INVERSE_MAX_BYTES(
1070 1.166 perseant fsbtob(fs, LFS_NRESERVE(fs))) >> PAGE_SHIFT)));
1071 1.163 perseant free(fs, M_UFSMNT);
1072 1.163 perseant error = EFBIG; /* XXX needs translation */
1073 1.163 perseant goto out;
1074 1.163 perseant }
1075 1.164 perry
1076 1.60 perseant /* Before rolling forward, lock so vget will sleep for other procs */
1077 1.205 perseant if (p) {
1078 1.205 perseant fs->lfs_flags = LFS_NOTYET;
1079 1.205 perseant fs->lfs_rfpid = p->p_pid;
1080 1.205 perseant }
1081 1.60 perseant
1082 1.84 yamt ump = malloc(sizeof *ump, M_UFSMNT, M_WAITOK | M_ZERO);
1083 1.29 mycroft ump->um_lfs = fs;
1084 1.188 yamt ump->um_ops = &lfs_ufsops;
1085 1.113 fvdl ump->um_fstype = UFS1;
1086 1.60 perseant if (sizeof(struct lfs) < LFS_SBPAD) { /* XXX why? */
1087 1.1 mycroft bp->b_flags |= B_INVAL;
1088 1.60 perseant abp->b_flags |= B_INVAL;
1089 1.60 perseant }
1090 1.1 mycroft brelse(bp);
1091 1.1 mycroft bp = NULL;
1092 1.26 perseant brelse(abp);
1093 1.26 perseant abp = NULL;
1094 1.1 mycroft
1095 1.1 mycroft /* Set up the I/O information */
1096 1.66 perseant fs->lfs_devbsize = secsize;
1097 1.1 mycroft fs->lfs_iocount = 0;
1098 1.34 perseant fs->lfs_diropwait = 0;
1099 1.26 perseant fs->lfs_activesb = 0;
1100 1.57 perseant fs->lfs_uinodes = 0;
1101 1.58 perseant fs->lfs_ravail = 0;
1102 1.163 perseant fs->lfs_favail = 0;
1103 1.51 thorpej fs->lfs_sbactive = 0;
1104 1.1 mycroft
1105 1.1 mycroft /* Set up the ifile and lock aflags */
1106 1.1 mycroft fs->lfs_doifile = 0;
1107 1.1 mycroft fs->lfs_writer = 0;
1108 1.1 mycroft fs->lfs_dirops = 0;
1109 1.52 perseant fs->lfs_nadirop = 0;
1110 1.1 mycroft fs->lfs_seglock = 0;
1111 1.91 perseant fs->lfs_pdflush = 0;
1112 1.112 perseant fs->lfs_sleepers = 0;
1113 1.163 perseant fs->lfs_pages = 0;
1114 1.105 perseant simple_lock_init(&fs->lfs_interlock);
1115 1.78 perseant lockinit(&fs->lfs_fraglock, PINOD, "lfs_fraglock", 0, 0);
1116 1.177 perseant lockinit(&fs->lfs_iflock, PINOD, "lfs_iflock", 0, 0);
1117 1.1 mycroft
1118 1.1 mycroft /* Set the file system readonly/modify bits. */
1119 1.1 mycroft fs->lfs_ronly = ronly;
1120 1.1 mycroft if (ronly == 0)
1121 1.1 mycroft fs->lfs_fmod = 1;
1122 1.1 mycroft
1123 1.1 mycroft /* Initialize the mount structure. */
1124 1.1 mycroft dev = devvp->v_rdev;
1125 1.79 soren mp->mnt_data = ump;
1126 1.147 christos mp->mnt_stat.f_fsidx.__fsid_val[0] = (long)dev;
1127 1.147 christos mp->mnt_stat.f_fsidx.__fsid_val[1] = makefstype(MOUNT_LFS);
1128 1.147 christos mp->mnt_stat.f_fsid = mp->mnt_stat.f_fsidx.__fsid_val[0];
1129 1.186 christos mp->mnt_stat.f_namemax = LFS_MAXNAMLEN;
1130 1.49 perseant mp->mnt_stat.f_iosize = fs->lfs_bsize;
1131 1.1 mycroft mp->mnt_flag |= MNT_LOCAL;
1132 1.91 perseant mp->mnt_fs_bshift = fs->lfs_bshift;
1133 1.18 bouyer ump->um_flags = 0;
1134 1.1 mycroft ump->um_mountp = mp;
1135 1.1 mycroft ump->um_dev = dev;
1136 1.1 mycroft ump->um_devvp = devvp;
1137 1.66 perseant ump->um_bptrtodb = fs->lfs_fsbtodb;
1138 1.66 perseant ump->um_seqinc = fragstofsb(fs, fs->lfs_frag);
1139 1.1 mycroft ump->um_nindir = fs->lfs_nindir;
1140 1.61 chs ump->um_lognindir = ffs(fs->lfs_nindir) - 1;
1141 1.1 mycroft for (i = 0; i < MAXQUOTAS; i++)
1142 1.1 mycroft ump->um_quotas[i] = NULLVP;
1143 1.156 mycroft ump->um_maxsymlinklen = fs->lfs_maxsymlinklen;
1144 1.157 mycroft ump->um_dirblksiz = DIRBLKSIZ;
1145 1.156 mycroft ump->um_maxfilesize = fs->lfs_maxfilesize;
1146 1.158 mycroft if (ump->um_maxsymlinklen > 0)
1147 1.158 mycroft mp->mnt_iflag |= IMNT_DTYPE;
1148 1.44 fvdl devvp->v_specmountpoint = mp;
1149 1.1 mycroft
1150 1.91 perseant /* Set up reserved memory for pageout */
1151 1.91 perseant lfs_setup_resblks(fs);
1152 1.91 perseant /* Set up vdirop tailq */
1153 1.91 perseant TAILQ_INIT(&fs->lfs_dchainhd);
1154 1.91 perseant /* and paging tailq */
1155 1.91 perseant TAILQ_INIT(&fs->lfs_pchainhd);
1156 1.206 perseant /* and delayed segment accounting for truncation list */
1157 1.206 perseant LIST_INIT(&fs->lfs_segdhd);
1158 1.91 perseant
1159 1.1 mycroft /*
1160 1.1 mycroft * We use the ifile vnode for almost every operation. Instead of
1161 1.1 mycroft * retrieving it from the hash table each time we retrieve it here,
1162 1.1 mycroft * artificially increment the reference count and keep a pointer
1163 1.1 mycroft * to it in the incore copy of the superblock.
1164 1.1 mycroft */
1165 1.120 thorpej if ((error = VFS_VGET(mp, LFS_IFILE_INUM, &vp)) != 0) {
1166 1.166 perseant DLOG((DLOG_MOUNT, "lfs_mountfs: ifile vget failed, error=%d\n", error));
1167 1.1 mycroft goto out;
1168 1.66 perseant }
1169 1.1 mycroft fs->lfs_ivnode = vp;
1170 1.1 mycroft VREF(vp);
1171 1.30 perseant
1172 1.199 perseant /* Set up inode bitmap and order free list */
1173 1.199 perseant lfs_order_freelist(fs);
1174 1.199 perseant
1175 1.91 perseant /* Set up segment usage flags for the autocleaner. */
1176 1.102 perseant fs->lfs_nactive = 0;
1177 1.91 perseant fs->lfs_suflags = (u_int32_t **)malloc(2 * sizeof(u_int32_t *),
1178 1.91 perseant M_SEGMENT, M_WAITOK);
1179 1.91 perseant fs->lfs_suflags[0] = (u_int32_t *)malloc(fs->lfs_nseg * sizeof(u_int32_t),
1180 1.91 perseant M_SEGMENT, M_WAITOK);
1181 1.91 perseant fs->lfs_suflags[1] = (u_int32_t *)malloc(fs->lfs_nseg * sizeof(u_int32_t),
1182 1.91 perseant M_SEGMENT, M_WAITOK);
1183 1.91 perseant memset(fs->lfs_suflags[1], 0, fs->lfs_nseg * sizeof(u_int32_t));
1184 1.91 perseant for (i = 0; i < fs->lfs_nseg; i++) {
1185 1.102 perseant int changed;
1186 1.102 perseant
1187 1.91 perseant LFS_SEGENTRY(sup, fs, i, bp);
1188 1.102 perseant changed = 0;
1189 1.102 perseant if (!ronly) {
1190 1.102 perseant if (sup->su_nbytes == 0 &&
1191 1.102 perseant !(sup->su_flags & SEGUSE_EMPTY)) {
1192 1.102 perseant sup->su_flags |= SEGUSE_EMPTY;
1193 1.102 perseant ++changed;
1194 1.102 perseant } else if (!(sup->su_nbytes == 0) &&
1195 1.102 perseant (sup->su_flags & SEGUSE_EMPTY)) {
1196 1.102 perseant sup->su_flags &= ~SEGUSE_EMPTY;
1197 1.102 perseant ++changed;
1198 1.102 perseant }
1199 1.177 perseant if (sup->su_flags & (SEGUSE_ACTIVE|SEGUSE_INVAL)) {
1200 1.177 perseant sup->su_flags &= ~(SEGUSE_ACTIVE|SEGUSE_INVAL);
1201 1.102 perseant ++changed;
1202 1.102 perseant }
1203 1.102 perseant }
1204 1.102 perseant fs->lfs_suflags[0][i] = sup->su_flags;
1205 1.102 perseant if (changed)
1206 1.91 perseant LFS_WRITESEGENTRY(sup, fs, i, bp);
1207 1.102 perseant else
1208 1.91 perseant brelse(bp);
1209 1.91 perseant }
1210 1.91 perseant
1211 1.60 perseant /*
1212 1.60 perseant * Roll forward.
1213 1.66 perseant *
1214 1.166 perseant * We don't roll forward for v1 filesystems, because
1215 1.66 perseant * of the danger that the clock was turned back between the last
1216 1.66 perseant * checkpoint and crash. This would roll forward garbage.
1217 1.66 perseant *
1218 1.66 perseant * v2 filesystems don't have this problem because they use a
1219 1.66 perseant * monotonically increasing serial number instead of a timestamp.
1220 1.60 perseant */
1221 1.166 perseant do_rollforward = (!(fs->lfs_pflags & LFS_PF_CLEAN) &&
1222 1.205 perseant lfs_do_rfw && fs->lfs_version > 1 && p != NULL);
1223 1.66 perseant if (do_rollforward) {
1224 1.133 yamt u_int64_t nextserial;
1225 1.66 perseant /*
1226 1.66 perseant * Phase I: Find the address of the last good partial
1227 1.66 perseant * segment that was written after the checkpoint. Mark
1228 1.66 perseant * the segments in question dirty, so they won't be
1229 1.66 perseant * reallocated.
1230 1.66 perseant */
1231 1.66 perseant lastgoodpseg = oldoffset = offset = fs->lfs_offset;
1232 1.66 perseant flags = 0x0;
1233 1.166 perseant DLOG((DLOG_RF, "LFS roll forward phase 1: start at offset 0x%"
1234 1.166 perseant PRIx64 "\n", offset));
1235 1.66 perseant LFS_SEGENTRY(sup, fs, dtosn(fs, offset), bp);
1236 1.66 perseant if (!(sup->su_flags & SEGUSE_DIRTY))
1237 1.66 perseant --fs->lfs_nclean;
1238 1.66 perseant sup->su_flags |= SEGUSE_DIRTY;
1239 1.91 perseant LFS_WRITESEGENTRY(sup, fs, dtosn(fs, offset), bp);
1240 1.133 yamt nextserial = fs->lfs_serial + 1;
1241 1.133 yamt while ((offset = check_segsum(fs, offset, nextserial,
1242 1.190 christos cred, CHECK_CKSUM, &flags, l)) > 0) {
1243 1.133 yamt nextserial++;
1244 1.70 chs if (sntod(fs, oldoffset) != sntod(fs, offset)) {
1245 1.66 perseant LFS_SEGENTRY(sup, fs, dtosn(fs, oldoffset),
1246 1.164 perry bp);
1247 1.66 perseant if (!(sup->su_flags & SEGUSE_DIRTY))
1248 1.66 perseant --fs->lfs_nclean;
1249 1.66 perseant sup->su_flags |= SEGUSE_DIRTY;
1250 1.91 perseant LFS_WRITESEGENTRY(sup, fs, dtosn(fs, oldoffset),
1251 1.164 perry bp);
1252 1.66 perseant }
1253 1.60 perseant
1254 1.166 perseant DLOG((DLOG_RF, "LFS roll forward phase 1: offset=0x%"
1255 1.166 perseant PRIx64 "\n", offset));
1256 1.70 chs if (flags & SS_DIROP) {
1257 1.166 perseant DLOG((DLOG_RF, "lfs_mountfs: dirops at 0x%"
1258 1.166 perseant PRIx64 "\n", oldoffset));
1259 1.70 chs if (!(flags & SS_CONT))
1260 1.166 perseant DLOG((DLOG_RF, "lfs_mountfs: dirops end "
1261 1.166 perseant "at 0x%" PRIx64 "\n", oldoffset));
1262 1.66 perseant }
1263 1.70 chs if (!(flags & SS_CONT))
1264 1.66 perseant lastgoodpseg = offset;
1265 1.66 perseant oldoffset = offset;
1266 1.60 perseant }
1267 1.66 perseant if (flags & SS_CONT) {
1268 1.166 perseant DLOG((DLOG_RF, "LFS roll forward: warning: incomplete "
1269 1.166 perseant "dirops discarded\n"));
1270 1.66 perseant }
1271 1.166 perseant DLOG((DLOG_RF, "LFS roll forward phase 1: completed: "
1272 1.166 perseant "lastgoodpseg=0x%" PRIx64 "\n", lastgoodpseg));
1273 1.66 perseant oldoffset = fs->lfs_offset;
1274 1.66 perseant if (fs->lfs_offset != lastgoodpseg) {
1275 1.66 perseant /* Don't overwrite what we're trying to preserve */
1276 1.66 perseant offset = fs->lfs_offset;
1277 1.66 perseant fs->lfs_offset = lastgoodpseg;
1278 1.66 perseant fs->lfs_curseg = sntod(fs, dtosn(fs, fs->lfs_offset));
1279 1.66 perseant for (sn = curseg = dtosn(fs, fs->lfs_curseg);;) {
1280 1.66 perseant sn = (sn + 1) % fs->lfs_nseg;
1281 1.66 perseant if (sn == curseg)
1282 1.66 perseant panic("lfs_mountfs: no clean segments");
1283 1.66 perseant LFS_SEGENTRY(sup, fs, sn, bp);
1284 1.66 perseant dirty = (sup->su_flags & SEGUSE_DIRTY);
1285 1.66 perseant brelse(bp);
1286 1.66 perseant if (!dirty)
1287 1.66 perseant break;
1288 1.66 perseant }
1289 1.66 perseant fs->lfs_nextseg = sntod(fs, sn);
1290 1.60 perseant
1291 1.66 perseant /*
1292 1.66 perseant * Phase II: Roll forward from the first superblock.
1293 1.66 perseant */
1294 1.66 perseant while (offset != lastgoodpseg) {
1295 1.166 perseant DLOG((DLOG_RF, "LFS roll forward phase 2: 0x%"
1296 1.166 perseant PRIx64 "\n", offset));
1297 1.133 yamt offset = check_segsum(fs, offset,
1298 1.133 yamt fs->lfs_serial + 1, cred, CHECK_UPDATE,
1299 1.190 christos NULL, l);
1300 1.66 perseant }
1301 1.60 perseant
1302 1.66 perseant /*
1303 1.66 perseant * Finish: flush our changes to disk.
1304 1.66 perseant */
1305 1.66 perseant lfs_segwrite(mp, SEGM_CKP | SEGM_SYNC);
1306 1.166 perseant DLOG((DLOG_RF, "lfs_mountfs: roll forward ",
1307 1.166 perseant "recovered %lld blocks\n",
1308 1.166 perseant (long long)(lastgoodpseg - oldoffset)));
1309 1.66 perseant }
1310 1.166 perseant DLOG((DLOG_RF, "LFS roll forward complete\n"));
1311 1.66 perseant }
1312 1.66 perseant /* If writing, sb is not clean; record in case of immediate crash */
1313 1.66 perseant if (!fs->lfs_ronly) {
1314 1.66 perseant fs->lfs_pflags &= ~LFS_PF_CLEAN;
1315 1.66 perseant lfs_writesuper(fs, fs->lfs_sboffs[0]);
1316 1.112 perseant lfs_writesuper(fs, fs->lfs_sboffs[1]);
1317 1.66 perseant }
1318 1.164 perry
1319 1.60 perseant /* Allow vget now that roll-forward is complete */
1320 1.60 perseant fs->lfs_flags &= ~(LFS_NOTYET);
1321 1.60 perseant wakeup(&fs->lfs_flags);
1322 1.60 perseant
1323 1.30 perseant /*
1324 1.164 perry * Initialize the ifile cleaner info with information from
1325 1.59 perseant * the superblock.
1326 1.164 perry */
1327 1.59 perseant LFS_CLEANERINFO(cip, fs, bp);
1328 1.59 perseant cip->clean = fs->lfs_nclean;
1329 1.59 perseant cip->dirty = fs->lfs_nseg - fs->lfs_nclean;
1330 1.59 perseant cip->avail = fs->lfs_avail;
1331 1.59 perseant cip->bfree = fs->lfs_bfree;
1332 1.74 perseant (void) LFS_BWRITE_LOG(bp); /* Ifile */
1333 1.59 perseant
1334 1.59 perseant /*
1335 1.164 perry * Mark the current segment as ACTIVE, since we're going to
1336 1.30 perseant * be writing to it.
1337 1.30 perseant */
1338 1.164 perry LFS_SEGENTRY(sup, fs, dtosn(fs, fs->lfs_offset), bp);
1339 1.96 perseant sup->su_flags |= SEGUSE_DIRTY | SEGUSE_ACTIVE;
1340 1.102 perseant fs->lfs_nactive++;
1341 1.96 perseant LFS_WRITESEGENTRY(sup, fs, dtosn(fs, fs->lfs_offset), bp); /* Ifile */
1342 1.74 perseant
1343 1.74 perseant /* Now that roll-forward is done, unlock the Ifile */
1344 1.74 perseant vput(vp);
1345 1.74 perseant
1346 1.163 perseant /* Start the pagedaemon-anticipating daemon */
1347 1.163 perseant if (lfs_writer_daemon == 0 &&
1348 1.163 perseant kthread_create1(lfs_writerd, NULL, NULL, "lfs_writer") != 0)
1349 1.163 perseant panic("fork lfs_writer");
1350 1.163 perseant
1351 1.1 mycroft return (0);
1352 1.161 mycroft
1353 1.1 mycroft out:
1354 1.1 mycroft if (bp)
1355 1.1 mycroft brelse(bp);
1356 1.26 perseant if (abp)
1357 1.26 perseant brelse(abp);
1358 1.1 mycroft if (ump) {
1359 1.1 mycroft free(ump->um_lfs, M_UFSMNT);
1360 1.1 mycroft free(ump, M_UFSMNT);
1361 1.79 soren mp->mnt_data = NULL;
1362 1.1 mycroft }
1363 1.91 perseant
1364 1.1 mycroft return (error);
1365 1.1 mycroft }
1366 1.1 mycroft
1367 1.1 mycroft /*
1368 1.1 mycroft * unmount system call
1369 1.1 mycroft */
1370 1.10 christos int
1371 1.190 christos lfs_unmount(struct mount *mp, int mntflags, struct lwp *l)
1372 1.1 mycroft {
1373 1.48 augustss struct ufsmount *ump;
1374 1.48 augustss struct lfs *fs;
1375 1.77 perseant int error, flags, ronly;
1376 1.109 perseant int s;
1377 1.1 mycroft
1378 1.1 mycroft flags = 0;
1379 1.5 mycroft if (mntflags & MNT_FORCE)
1380 1.1 mycroft flags |= FORCECLOSE;
1381 1.1 mycroft
1382 1.1 mycroft ump = VFSTOUFS(mp);
1383 1.1 mycroft fs = ump->um_lfs;
1384 1.112 perseant
1385 1.196 perseant /* Two checkpoints */
1386 1.196 perseant lfs_segwrite(mp, SEGM_CKP | SEGM_SYNC);
1387 1.196 perseant lfs_segwrite(mp, SEGM_CKP | SEGM_SYNC);
1388 1.195 perseant
1389 1.112 perseant /* wake up the cleaner so it can die */
1390 1.214 perseant lfs_wakeup_cleaner(fs);
1391 1.112 perseant simple_lock(&fs->lfs_interlock);
1392 1.112 perseant while (fs->lfs_sleepers)
1393 1.112 perseant ltsleep(&fs->lfs_sleepers, PRIBIO + 1, "lfs_sleepers", 0,
1394 1.112 perseant &fs->lfs_interlock);
1395 1.112 perseant simple_unlock(&fs->lfs_interlock);
1396 1.112 perseant
1397 1.1 mycroft #ifdef QUOTA
1398 1.1 mycroft if (mp->mnt_flag & MNT_QUOTA) {
1399 1.11 pk int i;
1400 1.10 christos error = vflush(mp, fs->lfs_ivnode, SKIPSYSTEM|flags);
1401 1.10 christos if (error)
1402 1.1 mycroft return (error);
1403 1.1 mycroft for (i = 0; i < MAXQUOTAS; i++) {
1404 1.1 mycroft if (ump->um_quotas[i] == NULLVP)
1405 1.1 mycroft continue;
1406 1.190 christos quotaoff(l, mp, i);
1407 1.1 mycroft }
1408 1.1 mycroft /*
1409 1.1 mycroft * Here we fall through to vflush again to ensure
1410 1.1 mycroft * that we have gotten rid of all the system vnodes.
1411 1.1 mycroft */
1412 1.1 mycroft }
1413 1.1 mycroft #endif
1414 1.10 christos if ((error = vflush(mp, fs->lfs_ivnode, flags)) != 0)
1415 1.1 mycroft return (error);
1416 1.210 elad if ((error = VFS_SYNC(mp, 1, l->l_proc->p_cred, l)) != 0)
1417 1.1 mycroft return (error);
1418 1.109 perseant s = splbio();
1419 1.76 perseant if (LIST_FIRST(&fs->lfs_ivnode->v_dirtyblkhd))
1420 1.82 provos panic("lfs_unmount: still dirty blocks on ifile vnode");
1421 1.109 perseant splx(s);
1422 1.66 perseant
1423 1.109 perseant /* Explicitly write the superblock, to update serial and pflags */
1424 1.109 perseant fs->lfs_pflags |= LFS_PF_CLEAN;
1425 1.109 perseant lfs_writesuper(fs, fs->lfs_sboffs[0]);
1426 1.109 perseant lfs_writesuper(fs, fs->lfs_sboffs[1]);
1427 1.169 perseant simple_lock(&fs->lfs_interlock);
1428 1.109 perseant while (fs->lfs_iocount)
1429 1.169 perseant ltsleep(&fs->lfs_iocount, PRIBIO + 1, "lfs_umount", 0,
1430 1.169 perseant &fs->lfs_interlock);
1431 1.169 perseant simple_unlock(&fs->lfs_interlock);
1432 1.109 perseant
1433 1.66 perseant /* Finish with the Ifile, now that we're done with it */
1434 1.1 mycroft vrele(fs->lfs_ivnode);
1435 1.1 mycroft vgone(fs->lfs_ivnode);
1436 1.66 perseant
1437 1.1 mycroft ronly = !fs->lfs_ronly;
1438 1.40 enami if (ump->um_devvp->v_type != VBAD)
1439 1.44 fvdl ump->um_devvp->v_specmountpoint = NULL;
1440 1.39 wrstuden vn_lock(ump->um_devvp, LK_EXCLUSIVE | LK_RETRY);
1441 1.1 mycroft error = VOP_CLOSE(ump->um_devvp,
1442 1.190 christos ronly ? FREAD : FREAD|FWRITE, NOCRED, l);
1443 1.39 wrstuden vput(ump->um_devvp);
1444 1.26 perseant
1445 1.176 perseant /* Complain about page leakage */
1446 1.176 perseant if (fs->lfs_pages > 0)
1447 1.176 perseant printf("lfs_unmount: still claim %d pages (%d in subsystem)\n",
1448 1.176 perseant fs->lfs_pages, lfs_subsys_pages);
1449 1.176 perseant
1450 1.91 perseant /* Free per-mount data structures */
1451 1.202 perseant free(fs->lfs_ino_bitmap, M_SEGMENT);
1452 1.91 perseant free(fs->lfs_suflags[0], M_SEGMENT);
1453 1.91 perseant free(fs->lfs_suflags[1], M_SEGMENT);
1454 1.91 perseant free(fs->lfs_suflags, M_SEGMENT);
1455 1.91 perseant lfs_free_resblks(fs);
1456 1.1 mycroft free(fs, M_UFSMNT);
1457 1.1 mycroft free(ump, M_UFSMNT);
1458 1.91 perseant
1459 1.79 soren mp->mnt_data = NULL;
1460 1.1 mycroft mp->mnt_flag &= ~MNT_LOCAL;
1461 1.1 mycroft return (error);
1462 1.1 mycroft }
1463 1.1 mycroft
1464 1.1 mycroft /*
1465 1.1 mycroft * Get file system statistics.
1466 1.169 perseant *
1467 1.169 perseant * NB: We don't lock to access the superblock here, because it's not
1468 1.169 perseant * really that important if we get it wrong.
1469 1.1 mycroft */
1470 1.10 christos int
1471 1.190 christos lfs_statvfs(struct mount *mp, struct statvfs *sbp, struct lwp *l)
1472 1.1 mycroft {
1473 1.48 augustss struct lfs *fs;
1474 1.48 augustss struct ufsmount *ump;
1475 1.1 mycroft
1476 1.1 mycroft ump = VFSTOUFS(mp);
1477 1.1 mycroft fs = ump->um_lfs;
1478 1.1 mycroft if (fs->lfs_magic != LFS_MAGIC)
1479 1.147 christos panic("lfs_statvfs: magic");
1480 1.53 perseant
1481 1.147 christos sbp->f_bsize = fs->lfs_bsize;
1482 1.148 yamt sbp->f_frsize = fs->lfs_fsize;
1483 1.1 mycroft sbp->f_iosize = fs->lfs_bsize;
1484 1.194 tls sbp->f_blocks = fsbtofrags(fs, LFS_EST_NONMETA(fs) - VTOI(fs->lfs_ivnode)->i_lfs_effnblks);
1485 1.163 perseant
1486 1.66 perseant sbp->f_bfree = fsbtofrags(fs, LFS_EST_BFREE(fs));
1487 1.163 perseant KASSERT(sbp->f_bfree <= fs->lfs_dsize);
1488 1.163 perseant if (sbp->f_bfree < 0)
1489 1.163 perseant sbp->f_bfree = 0;
1490 1.163 perseant
1491 1.147 christos sbp->f_bresvd = fsbtofrags(fs, LFS_EST_RSVD(fs));
1492 1.147 christos if (sbp->f_bfree > sbp->f_bresvd)
1493 1.147 christos sbp->f_bavail = sbp->f_bfree - sbp->f_bresvd;
1494 1.147 christos else
1495 1.147 christos sbp->f_bavail = 0;
1496 1.164 perry
1497 1.66 perseant sbp->f_files = fs->lfs_bfree / btofsb(fs, fs->lfs_ibsize) * INOPB(fs);
1498 1.31 perseant sbp->f_ffree = sbp->f_files - fs->lfs_nfiles;
1499 1.147 christos sbp->f_favail = sbp->f_ffree;
1500 1.147 christos sbp->f_fresvd = 0;
1501 1.147 christos copy_statvfs_info(sbp, mp);
1502 1.1 mycroft return (0);
1503 1.1 mycroft }
1504 1.1 mycroft
1505 1.1 mycroft /*
1506 1.1 mycroft * Go through the disk queues to initiate sandbagged IO;
1507 1.1 mycroft * go through the inodes to write those that have been modified;
1508 1.1 mycroft * initiate the writing of the super block if it has been modified.
1509 1.1 mycroft *
1510 1.1 mycroft * Note: we are always called with the filesystem marked `MPBUSY'.
1511 1.1 mycroft */
1512 1.10 christos int
1513 1.210 elad lfs_sync(struct mount *mp, int waitfor, kauth_cred_t cred, struct lwp *l)
1514 1.1 mycroft {
1515 1.1 mycroft int error;
1516 1.26 perseant struct lfs *fs;
1517 1.26 perseant
1518 1.123 yamt fs = VFSTOUFS(mp)->um_lfs;
1519 1.56 perseant if (fs->lfs_ronly)
1520 1.56 perseant return 0;
1521 1.206 perseant
1522 1.206 perseant /* Snapshots should not hose the syncer */
1523 1.206 perseant /*
1524 1.206 perseant * XXX Sync can block here anyway, since we don't have a very
1525 1.206 perseant * XXX good idea of how much data is pending. If it's more
1526 1.206 perseant * XXX than a segment and lfs_nextseg is close to the end of
1527 1.206 perseant * XXX the log, we'll likely block.
1528 1.206 perseant */
1529 1.206 perseant simple_lock(&fs->lfs_interlock);
1530 1.206 perseant if (fs->lfs_nowrap && fs->lfs_nextseg < fs->lfs_curseg) {
1531 1.206 perseant simple_unlock(&fs->lfs_interlock);
1532 1.206 perseant return 0;
1533 1.206 perseant }
1534 1.206 perseant simple_unlock(&fs->lfs_interlock);
1535 1.206 perseant
1536 1.122 yamt lfs_writer_enter(fs, "lfs_dirops");
1537 1.1 mycroft
1538 1.1 mycroft /* All syncs must be checkpoints until roll-forward is implemented. */
1539 1.206 perseant DLOG((DLOG_FLUSH, "lfs_sync at 0x%x\n", fs->lfs_offset));
1540 1.1 mycroft error = lfs_segwrite(mp, SEGM_CKP | (waitfor ? SEGM_SYNC : 0));
1541 1.122 yamt lfs_writer_leave(fs);
1542 1.1 mycroft #ifdef QUOTA
1543 1.121 fvdl qsync(mp);
1544 1.1 mycroft #endif
1545 1.1 mycroft return (error);
1546 1.1 mycroft }
1547 1.1 mycroft
1548 1.26 perseant extern struct lock ufs_hashlock;
1549 1.26 perseant
1550 1.1 mycroft /*
1551 1.1 mycroft * Look up an LFS dinode number to find its incore vnode. If not already
1552 1.1 mycroft * in core, read it in from the specified device. Return the inode locked.
1553 1.1 mycroft * Detection and handling of mount points must be done by the calling routine.
1554 1.1 mycroft */
1555 1.1 mycroft int
1556 1.120 thorpej lfs_vget(struct mount *mp, ino_t ino, struct vnode **vpp)
1557 1.1 mycroft {
1558 1.48 augustss struct lfs *fs;
1559 1.113 fvdl struct ufs1_dinode *dip;
1560 1.48 augustss struct inode *ip;
1561 1.1 mycroft struct buf *bp;
1562 1.1 mycroft struct ifile *ifp;
1563 1.1 mycroft struct vnode *vp;
1564 1.1 mycroft struct ufsmount *ump;
1565 1.85 fvdl daddr_t daddr;
1566 1.1 mycroft dev_t dev;
1567 1.107 yamt int error, retries;
1568 1.26 perseant struct timespec ts;
1569 1.1 mycroft
1570 1.208 mrg memset(&ts, 0, sizeof ts); /* XXX gcc */
1571 1.208 mrg
1572 1.1 mycroft ump = VFSTOUFS(mp);
1573 1.1 mycroft dev = ump->um_dev;
1574 1.60 perseant fs = ump->um_lfs;
1575 1.60 perseant
1576 1.60 perseant /*
1577 1.60 perseant * If the filesystem is not completely mounted yet, suspend
1578 1.60 perseant * any access requests (wait for roll-forward to complete).
1579 1.60 perseant */
1580 1.169 perseant simple_lock(&fs->lfs_interlock);
1581 1.70 chs while ((fs->lfs_flags & LFS_NOTYET) && curproc->p_pid != fs->lfs_rfpid)
1582 1.169 perseant ltsleep(&fs->lfs_flags, PRIBIO+1, "lfs_notyet", 0,
1583 1.169 perseant &fs->lfs_interlock);
1584 1.169 perseant simple_unlock(&fs->lfs_interlock);
1585 1.26 perseant
1586 1.120 thorpej if ((*vpp = ufs_ihashget(dev, ino, LK_EXCLUSIVE)) != NULL)
1587 1.55 fvdl return (0);
1588 1.55 fvdl
1589 1.55 fvdl if ((error = getnewvnode(VT_LFS, mp, lfs_vnodeop_p, &vp)) != 0) {
1590 1.55 fvdl *vpp = NULL;
1591 1.55 fvdl return (error);
1592 1.55 fvdl }
1593 1.55 fvdl
1594 1.26 perseant do {
1595 1.120 thorpej if ((*vpp = ufs_ihashget(dev, ino, LK_EXCLUSIVE)) != NULL) {
1596 1.55 fvdl ungetnewvnode(vp);
1597 1.26 perseant return (0);
1598 1.55 fvdl }
1599 1.26 perseant } while (lockmgr(&ufs_hashlock, LK_EXCLUSIVE|LK_SLEEPFAIL, 0));
1600 1.1 mycroft
1601 1.1 mycroft /* Translate the inode number to a disk address. */
1602 1.1 mycroft if (ino == LFS_IFILE_INUM)
1603 1.1 mycroft daddr = fs->lfs_idaddr;
1604 1.1 mycroft else {
1605 1.60 perseant /* XXX bounds-check this too */
1606 1.1 mycroft LFS_IENTRY(ifp, fs, ino, bp);
1607 1.1 mycroft daddr = ifp->if_daddr;
1608 1.66 perseant if (fs->lfs_version > 1) {
1609 1.66 perseant ts.tv_sec = ifp->if_atime_sec;
1610 1.66 perseant ts.tv_nsec = ifp->if_atime_nsec;
1611 1.66 perseant }
1612 1.66 perseant
1613 1.1 mycroft brelse(bp);
1614 1.26 perseant if (daddr == LFS_UNUSED_DADDR) {
1615 1.60 perseant *vpp = NULLVP;
1616 1.60 perseant ungetnewvnode(vp);
1617 1.26 perseant lockmgr(&ufs_hashlock, LK_RELEASE, 0);
1618 1.1 mycroft return (ENOENT);
1619 1.26 perseant }
1620 1.1 mycroft }
1621 1.1 mycroft
1622 1.55 fvdl /* Allocate/init new vnode/inode. */
1623 1.55 fvdl lfs_vcreate(mp, ino, vp);
1624 1.1 mycroft
1625 1.1 mycroft /*
1626 1.1 mycroft * Put it onto its hash chain and lock it so that other requests for
1627 1.1 mycroft * this inode will block if they arrive while we are sleeping waiting
1628 1.1 mycroft * for old data structures to be purged or for the contents of the
1629 1.1 mycroft * disk portion of this inode to be read.
1630 1.1 mycroft */
1631 1.1 mycroft ip = VTOI(vp);
1632 1.1 mycroft ufs_ihashins(ip);
1633 1.26 perseant lockmgr(&ufs_hashlock, LK_RELEASE, 0);
1634 1.1 mycroft
1635 1.1 mycroft /*
1636 1.1 mycroft * XXX
1637 1.1 mycroft * This may not need to be here, logically it should go down with
1638 1.1 mycroft * the i_devvp initialization.
1639 1.1 mycroft * Ask Kirk.
1640 1.1 mycroft */
1641 1.1 mycroft ip->i_lfs = ump->um_lfs;
1642 1.1 mycroft
1643 1.1 mycroft /* Read in the disk contents for the inode, copy into the inode. */
1644 1.74 perseant retries = 0;
1645 1.74 perseant again:
1646 1.164 perry error = bread(ump->um_devvp, fsbtodb(fs, daddr),
1647 1.74 perseant (fs->lfs_version == 1 ? fs->lfs_bsize : fs->lfs_ibsize),
1648 1.66 perseant NOCRED, &bp);
1649 1.10 christos if (error) {
1650 1.1 mycroft /*
1651 1.1 mycroft * The inode does not contain anything useful, so it would
1652 1.1 mycroft * be misleading to leave it on its hash chain. With mode
1653 1.1 mycroft * still zero, it will be unlinked and returned to the free
1654 1.1 mycroft * list by vput().
1655 1.1 mycroft */
1656 1.1 mycroft vput(vp);
1657 1.1 mycroft brelse(bp);
1658 1.1 mycroft *vpp = NULL;
1659 1.1 mycroft return (error);
1660 1.1 mycroft }
1661 1.74 perseant
1662 1.74 perseant dip = lfs_ifind(fs, ino, bp);
1663 1.74 perseant if (dip == NULL) {
1664 1.74 perseant /* Assume write has not completed yet; try again */
1665 1.74 perseant bp->b_flags |= B_INVAL;
1666 1.74 perseant brelse(bp);
1667 1.74 perseant ++retries;
1668 1.74 perseant if (retries > LFS_IFIND_RETRIES) {
1669 1.74 perseant #ifdef DEBUG
1670 1.74 perseant /* If the seglock is held look at the bpp to see
1671 1.74 perseant what is there anyway */
1672 1.169 perseant simple_lock(&fs->lfs_interlock);
1673 1.74 perseant if (fs->lfs_seglock > 0) {
1674 1.74 perseant struct buf **bpp;
1675 1.113 fvdl struct ufs1_dinode *dp;
1676 1.74 perseant int i;
1677 1.74 perseant
1678 1.74 perseant for (bpp = fs->lfs_sp->bpp;
1679 1.74 perseant bpp != fs->lfs_sp->cbpp; ++bpp) {
1680 1.74 perseant if ((*bpp)->b_vp == fs->lfs_ivnode &&
1681 1.74 perseant bpp != fs->lfs_sp->bpp) {
1682 1.74 perseant /* Inode block */
1683 1.166 perseant printf("lfs_vget: block 0x%" PRIx64 ": ",
1684 1.166 perseant (*bpp)->b_blkno);
1685 1.113 fvdl dp = (struct ufs1_dinode *)(*bpp)->b_data;
1686 1.74 perseant for (i = 0; i < INOPB(fs); i++)
1687 1.74 perseant if (dp[i].di_u.inumber)
1688 1.74 perseant printf("%d ", dp[i].di_u.inumber);
1689 1.74 perseant printf("\n");
1690 1.74 perseant }
1691 1.74 perseant }
1692 1.74 perseant }
1693 1.169 perseant simple_unlock(&fs->lfs_interlock);
1694 1.166 perseant #endif /* DEBUG */
1695 1.74 perseant panic("lfs_vget: dinode not found");
1696 1.74 perseant }
1697 1.169 perseant simple_lock(&fs->lfs_interlock);
1698 1.169 perseant if (fs->lfs_iocount) {
1699 1.169 perseant DLOG((DLOG_VNODE, "lfs_vget: dinode %d not found, retrying...\n", ino));
1700 1.169 perseant (void)ltsleep(&fs->lfs_iocount, PRIBIO + 1,
1701 1.169 perseant "lfs ifind", 1, &fs->lfs_interlock);
1702 1.169 perseant } else
1703 1.169 perseant retries = LFS_IFIND_RETRIES;
1704 1.169 perseant simple_unlock(&fs->lfs_interlock);
1705 1.74 perseant goto again;
1706 1.74 perseant }
1707 1.113 fvdl *ip->i_din.ffs1_din = *dip;
1708 1.107 yamt brelse(bp);
1709 1.74 perseant
1710 1.66 perseant if (fs->lfs_version > 1) {
1711 1.113 fvdl ip->i_ffs1_atime = ts.tv_sec;
1712 1.113 fvdl ip->i_ffs1_atimensec = ts.tv_nsec;
1713 1.66 perseant }
1714 1.1 mycroft
1715 1.139 yamt lfs_vinit(mp, &vp);
1716 1.71 chs
1717 1.1 mycroft *vpp = vp;
1718 1.62 perseant
1719 1.107 yamt KASSERT(VOP_ISLOCKED(vp));
1720 1.26 perseant
1721 1.1 mycroft return (0);
1722 1.1 mycroft }
1723 1.1 mycroft
1724 1.1 mycroft /*
1725 1.1 mycroft * File handle to vnode
1726 1.1 mycroft */
1727 1.1 mycroft int
1728 1.120 thorpej lfs_fhtovp(struct mount *mp, struct fid *fhp, struct vnode **vpp)
1729 1.1 mycroft {
1730 1.115 perseant struct lfid *lfhp;
1731 1.115 perseant struct buf *bp;
1732 1.115 perseant IFILE *ifp;
1733 1.115 perseant int32_t daddr;
1734 1.115 perseant struct lfs *fs;
1735 1.115 perseant
1736 1.115 perseant lfhp = (struct lfid *)fhp;
1737 1.115 perseant if (lfhp->lfid_ino < LFS_IFILE_INUM)
1738 1.115 perseant return ESTALE;
1739 1.115 perseant
1740 1.115 perseant fs = VFSTOUFS(mp)->um_lfs;
1741 1.115 perseant if (lfhp->lfid_ident != fs->lfs_ident)
1742 1.115 perseant return ESTALE;
1743 1.115 perseant
1744 1.115 perseant if (lfhp->lfid_ino >
1745 1.115 perseant ((VTOI(fs->lfs_ivnode)->i_ffs1_size >> fs->lfs_bshift) -
1746 1.115 perseant fs->lfs_cleansz - fs->lfs_segtabsz) * fs->lfs_ifpb)
1747 1.115 perseant return ESTALE;
1748 1.115 perseant
1749 1.115 perseant if (ufs_ihashlookup(VFSTOUFS(mp)->um_dev, lfhp->lfid_ino) == NULLVP) {
1750 1.115 perseant LFS_IENTRY(ifp, fs, lfhp->lfid_ino, bp);
1751 1.115 perseant daddr = ifp->if_daddr;
1752 1.115 perseant brelse(bp);
1753 1.115 perseant if (daddr == LFS_UNUSED_DADDR)
1754 1.115 perseant return ESTALE;
1755 1.115 perseant }
1756 1.1 mycroft
1757 1.120 thorpej return (ufs_fhtovp(mp, &lfhp->lfid_ufid, vpp));
1758 1.1 mycroft }
1759 1.1 mycroft
1760 1.1 mycroft /*
1761 1.1 mycroft * Vnode pointer to File handle
1762 1.1 mycroft */
1763 1.1 mycroft /* ARGSUSED */
1764 1.10 christos int
1765 1.66 perseant lfs_vptofh(struct vnode *vp, struct fid *fhp)
1766 1.1 mycroft {
1767 1.48 augustss struct inode *ip;
1768 1.115 perseant struct lfid *lfhp;
1769 1.1 mycroft
1770 1.1 mycroft ip = VTOI(vp);
1771 1.115 perseant lfhp = (struct lfid *)fhp;
1772 1.115 perseant lfhp->lfid_len = sizeof(struct lfid);
1773 1.115 perseant lfhp->lfid_ino = ip->i_number;
1774 1.115 perseant lfhp->lfid_gen = ip->i_gen;
1775 1.115 perseant lfhp->lfid_ident = ip->i_lfs->lfs_ident;
1776 1.1 mycroft return (0);
1777 1.16 fvdl }
1778 1.16 fvdl
1779 1.141 atatat static int
1780 1.141 atatat sysctl_lfs_dostats(SYSCTLFN_ARGS)
1781 1.16 fvdl {
1782 1.26 perseant extern struct lfs_stats lfs_stats;
1783 1.141 atatat extern int lfs_dostats;
1784 1.26 perseant int error;
1785 1.26 perseant
1786 1.182 atatat error = sysctl_lookup(SYSCTLFN_CALL(rnode));
1787 1.141 atatat if (error || newp == NULL)
1788 1.141 atatat return (error);
1789 1.141 atatat
1790 1.141 atatat if (lfs_dostats == 0)
1791 1.166 perseant memset(&lfs_stats, 0, sizeof(lfs_stats));
1792 1.141 atatat
1793 1.141 atatat return (0);
1794 1.141 atatat }
1795 1.141 atatat
1796 1.166 perseant struct shortlong {
1797 1.181 christos const char *sname;
1798 1.181 christos const char *lname;
1799 1.166 perseant };
1800 1.166 perseant
1801 1.151 atatat SYSCTL_SETUP(sysctl_vfs_lfs_setup, "sysctl vfs.lfs subtree setup")
1802 1.141 atatat {
1803 1.166 perseant int i;
1804 1.163 perseant extern int lfs_writeindir, lfs_dostats, lfs_clean_vnhead,
1805 1.163 perseant lfs_fs_pagetrip;
1806 1.166 perseant #ifdef DEBUG
1807 1.166 perseant extern int lfs_debug_log_subsys[DLOG_MAX];
1808 1.166 perseant struct shortlong dlog_names[DLOG_MAX] = { /* Must match lfs.h ! */
1809 1.166 perseant { "rollforward", "Debug roll-forward code" },
1810 1.166 perseant { "alloc", "Debug inode allocation and free list" },
1811 1.166 perseant { "avail", "Debug space-available-now accounting" },
1812 1.166 perseant { "flush", "Debug flush triggers" },
1813 1.166 perseant { "lockedlist", "Debug locked list accounting" },
1814 1.166 perseant { "vnode_verbose", "Verbose per-vnode-written debugging" },
1815 1.166 perseant { "vnode", "Debug vnode use during segment write" },
1816 1.166 perseant { "segment", "Debug segment writing" },
1817 1.166 perseant { "seguse", "Debug segment used-bytes accounting" },
1818 1.166 perseant { "cleaner", "Debug cleaning routines" },
1819 1.166 perseant { "mount", "Debug mount/unmount routines" },
1820 1.166 perseant { "pagecache", "Debug UBC interactions" },
1821 1.166 perseant { "dirop", "Debug directory-operation accounting" },
1822 1.166 perseant { "malloc", "Debug private malloc accounting" },
1823 1.166 perseant };
1824 1.166 perseant #endif /* DEBUG */
1825 1.166 perseant struct shortlong stat_names[] = { /* Must match lfs.h! */
1826 1.166 perseant { "segsused", "Number of new segments allocated" },
1827 1.166 perseant { "psegwrites", "Number of partial-segment writes" },
1828 1.166 perseant { "psyncwrites", "Number of synchronous partial-segment"
1829 1.166 perseant " writes" },
1830 1.166 perseant { "pcleanwrites", "Number of partial-segment writes by the"
1831 1.166 perseant " cleaner" },
1832 1.166 perseant { "blocktot", "Number of blocks written" },
1833 1.166 perseant { "cleanblocks", "Number of blocks written by the cleaner" },
1834 1.166 perseant { "ncheckpoints", "Number of checkpoints made" },
1835 1.166 perseant { "nwrites", "Number of whole writes" },
1836 1.166 perseant { "nsync_writes", "Number of synchronous writes" },
1837 1.166 perseant { "wait_exceeded", "Number of times writer waited for"
1838 1.166 perseant " cleaner" },
1839 1.166 perseant { "write_exceeded", "Number of times writer invoked flush" },
1840 1.166 perseant { "flush_invoked", "Number of times flush was invoked" },
1841 1.166 perseant { "vflush_invoked", "Number of time vflush was called" },
1842 1.166 perseant { "clean_inlocked", "Number of vnodes skipped for VXLOCK" },
1843 1.166 perseant { "clean_vnlocked", "Number of vnodes skipped for vget failure" },
1844 1.180 perseant { "segs_reclaimed", "Number of segments reclaimed" },
1845 1.166 perseant };
1846 1.141 atatat
1847 1.145 atatat sysctl_createv(clog, 0, NULL, NULL,
1848 1.145 atatat CTLFLAG_PERMANENT,
1849 1.141 atatat CTLTYPE_NODE, "vfs", NULL,
1850 1.141 atatat NULL, 0, NULL, 0,
1851 1.141 atatat CTL_VFS, CTL_EOL);
1852 1.145 atatat sysctl_createv(clog, 0, NULL, NULL,
1853 1.145 atatat CTLFLAG_PERMANENT,
1854 1.151 atatat CTLTYPE_NODE, "lfs",
1855 1.151 atatat SYSCTL_DESCR("Log-structured file system"),
1856 1.141 atatat NULL, 0, NULL, 0,
1857 1.141 atatat CTL_VFS, 5, CTL_EOL);
1858 1.141 atatat /*
1859 1.141 atatat * XXX the "5" above could be dynamic, thereby eliminating one
1860 1.141 atatat * more instance of the "number to vfs" mapping problem, but
1861 1.166 perseant * "5" is the order as taken from sys/mount.h
1862 1.141 atatat */
1863 1.141 atatat
1864 1.145 atatat sysctl_createv(clog, 0, NULL, NULL,
1865 1.145 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1866 1.141 atatat CTLTYPE_INT, "flushindir", NULL,
1867 1.141 atatat NULL, 0, &lfs_writeindir, 0,
1868 1.141 atatat CTL_VFS, 5, LFS_WRITEINDIR, CTL_EOL);
1869 1.145 atatat sysctl_createv(clog, 0, NULL, NULL,
1870 1.145 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1871 1.141 atatat CTLTYPE_INT, "clean_vnhead", NULL,
1872 1.141 atatat NULL, 0, &lfs_clean_vnhead, 0,
1873 1.141 atatat CTL_VFS, 5, LFS_CLEAN_VNHEAD, CTL_EOL);
1874 1.145 atatat sysctl_createv(clog, 0, NULL, NULL,
1875 1.145 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1876 1.151 atatat CTLTYPE_INT, "dostats",
1877 1.151 atatat SYSCTL_DESCR("Maintain statistics on LFS operations"),
1878 1.141 atatat sysctl_lfs_dostats, 0, &lfs_dostats, 0,
1879 1.141 atatat CTL_VFS, 5, LFS_DOSTATS, CTL_EOL);
1880 1.163 perseant sysctl_createv(clog, 0, NULL, NULL,
1881 1.163 perseant CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1882 1.163 perseant CTLTYPE_INT, "pagetrip",
1883 1.166 perseant SYSCTL_DESCR("How many dirty pages in fs triggers"
1884 1.166 perseant " a flush"),
1885 1.166 perseant NULL, 0, &lfs_fs_pagetrip, 0,
1886 1.163 perseant CTL_VFS, 5, LFS_FS_PAGETRIP, CTL_EOL);
1887 1.166 perseant sysctl_createv(clog, 0, NULL, NULL,
1888 1.166 perseant CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1889 1.166 perseant CTLTYPE_INT, "rfw",
1890 1.166 perseant SYSCTL_DESCR("Use in-kernel roll-forward on mount"),
1891 1.166 perseant NULL, 0, &lfs_do_rfw, 0,
1892 1.166 perseant CTL_VFS, 5, LFS_DO_RFW, CTL_EOL);
1893 1.166 perseant
1894 1.166 perseant sysctl_createv(clog, 0, NULL, NULL,
1895 1.166 perseant CTLFLAG_PERMANENT,
1896 1.166 perseant CTLTYPE_NODE, "stats",
1897 1.166 perseant SYSCTL_DESCR("Debugging options"),
1898 1.166 perseant NULL, 0, NULL, 0,
1899 1.166 perseant CTL_VFS, 5, LFS_STATS, CTL_EOL);
1900 1.166 perseant for (i = 0; i < sizeof(struct lfs_stats) / sizeof(u_int); i++) {
1901 1.166 perseant sysctl_createv(clog, 0, NULL, NULL,
1902 1.166 perseant CTLFLAG_PERMANENT|CTLFLAG_READONLY,
1903 1.166 perseant CTLTYPE_INT, stat_names[i].sname,
1904 1.166 perseant SYSCTL_DESCR(stat_names[i].lname),
1905 1.166 perseant NULL, 0, &(((u_int *)&lfs_stats.segsused)[i]),
1906 1.166 perseant 0, CTL_VFS, 5, LFS_STATS, i, CTL_EOL);
1907 1.166 perseant }
1908 1.166 perseant
1909 1.166 perseant #ifdef DEBUG
1910 1.166 perseant sysctl_createv(clog, 0, NULL, NULL,
1911 1.166 perseant CTLFLAG_PERMANENT,
1912 1.166 perseant CTLTYPE_NODE, "debug",
1913 1.166 perseant SYSCTL_DESCR("Debugging options"),
1914 1.166 perseant NULL, 0, NULL, 0,
1915 1.166 perseant CTL_VFS, 5, LFS_DEBUGLOG, CTL_EOL);
1916 1.166 perseant for (i = 0; i < DLOG_MAX; i++) {
1917 1.166 perseant sysctl_createv(clog, 0, NULL, NULL,
1918 1.166 perseant CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1919 1.166 perseant CTLTYPE_INT, dlog_names[i].sname,
1920 1.166 perseant SYSCTL_DESCR(dlog_names[i].lname),
1921 1.166 perseant NULL, 0, &(lfs_debug_log_subsys[i]), 0,
1922 1.166 perseant CTL_VFS, 5, LFS_DEBUGLOG, i, CTL_EOL);
1923 1.166 perseant }
1924 1.166 perseant #endif
1925 1.1 mycroft }
1926 1.91 perseant
1927 1.131 yamt /*
1928 1.131 yamt * ufs_bmaparray callback function for writing.
1929 1.131 yamt *
1930 1.131 yamt * Since blocks will be written to the new segment anyway,
1931 1.131 yamt * we don't care about current daddr of them.
1932 1.131 yamt */
1933 1.117 yamt static boolean_t
1934 1.117 yamt lfs_issequential_hole(const struct ufsmount *ump,
1935 1.117 yamt daddr_t daddr0, daddr_t daddr1)
1936 1.117 yamt {
1937 1.163 perseant daddr0 = (daddr_t)((int32_t)daddr0); /* XXX ondisk32 */
1938 1.163 perseant daddr1 = (daddr_t)((int32_t)daddr1); /* XXX ondisk32 */
1939 1.127 yamt
1940 1.129 yamt KASSERT(daddr0 == UNWRITTEN ||
1941 1.129 yamt (0 <= daddr0 && daddr0 <= LFS_MAX_DADDR));
1942 1.129 yamt KASSERT(daddr1 == UNWRITTEN ||
1943 1.129 yamt (0 <= daddr1 && daddr1 <= LFS_MAX_DADDR));
1944 1.117 yamt
1945 1.117 yamt /* NOTE: all we want to know here is 'hole or not'. */
1946 1.131 yamt /* NOTE: UNASSIGNED is converted to 0 by ufs_bmaparray. */
1947 1.117 yamt
1948 1.117 yamt /*
1949 1.117 yamt * treat UNWRITTENs and all resident blocks as 'contiguous'
1950 1.117 yamt */
1951 1.117 yamt if (daddr0 != 0 && daddr1 != 0)
1952 1.117 yamt return TRUE;
1953 1.117 yamt
1954 1.117 yamt /*
1955 1.117 yamt * both are in hole?
1956 1.117 yamt */
1957 1.117 yamt if (daddr0 == 0 && daddr1 == 0)
1958 1.117 yamt return TRUE; /* all holes are 'contiguous' for us. */
1959 1.117 yamt
1960 1.117 yamt return FALSE;
1961 1.117 yamt }
1962 1.117 yamt
1963 1.91 perseant /*
1964 1.91 perseant * lfs_gop_write functions exactly like genfs_gop_write, except that
1965 1.91 perseant * (1) it requires the seglock to be held by its caller, and sp->fip
1966 1.91 perseant * to be properly initialized (it will return without re-initializing
1967 1.91 perseant * sp->fip, and without calling lfs_writeseg).
1968 1.91 perseant * (2) it uses the remaining space in the segment, rather than VOP_BMAP,
1969 1.91 perseant * to determine how large a block it can write at once (though it does
1970 1.91 perseant * still use VOP_BMAP to find holes in the file);
1971 1.91 perseant * (3) it calls lfs_gatherblock instead of VOP_STRATEGY on its blocks
1972 1.91 perseant * (leaving lfs_writeseg to deal with the cluster blocks, so we might
1973 1.91 perseant * now have clusters of clusters, ick.)
1974 1.91 perseant */
1975 1.91 perseant static int
1976 1.91 perseant lfs_gop_write(struct vnode *vp, struct vm_page **pgs, int npages, int flags)
1977 1.91 perseant {
1978 1.204 christos int i, s, error, run, haveeof = 0;
1979 1.137 simonb int fs_bshift;
1980 1.91 perseant vaddr_t kva;
1981 1.170 perseant off_t eof, offset, startoffset = 0;
1982 1.91 perseant size_t bytes, iobytes, skipbytes;
1983 1.91 perseant daddr_t lbn, blkno;
1984 1.91 perseant struct vm_page *pg;
1985 1.91 perseant struct buf *mbp, *bp;
1986 1.117 yamt struct vnode *devvp = VTOI(vp)->i_devvp;
1987 1.91 perseant struct inode *ip = VTOI(vp);
1988 1.91 perseant struct lfs *fs = ip->i_lfs;
1989 1.91 perseant struct segment *sp = fs->lfs_sp;
1990 1.91 perseant UVMHIST_FUNC("lfs_gop_write"); UVMHIST_CALLED(ubchist);
1991 1.91 perseant
1992 1.169 perseant ASSERT_SEGLOCK(fs);
1993 1.169 perseant
1994 1.91 perseant /* The Ifile lives in the buffer cache */
1995 1.153 yamt KASSERT(vp != fs->lfs_ivnode);
1996 1.91 perseant
1997 1.209 perseant /*
1998 1.209 perseant * We don't want to fill the disk before the cleaner has a chance
1999 1.209 perseant * to make room for us. If we're in danger of doing that, fail
2000 1.209 perseant * with EAGAIN. The caller will have to notice this, unlock
2001 1.209 perseant * so the cleaner can run, relock and try again.
2002 1.209 perseant *
2003 1.209 perseant * We must write everything, however, if our vnode is being
2004 1.209 perseant * reclaimed.
2005 1.209 perseant */
2006 1.209 perseant if (LFS_STARVED_FOR_SEGS(fs) && vp != fs->lfs_flushvp)
2007 1.209 perseant goto tryagain;
2008 1.195 perseant
2009 1.91 perseant /*
2010 1.91 perseant * Sometimes things slip past the filters in lfs_putpages,
2011 1.91 perseant * and the pagedaemon tries to write pages---problem is
2012 1.91 perseant * that the pagedaemon never acquires the segment lock.
2013 1.91 perseant *
2014 1.163 perseant * Alternatively, pages that were clean when we called
2015 1.163 perseant * genfs_putpages may have become dirty in the meantime. In this
2016 1.163 perseant * case the segment header is not properly set up for blocks
2017 1.163 perseant * to be added to it.
2018 1.163 perseant *
2019 1.91 perseant * Unbusy and unclean the pages, and put them on the ACTIVE
2020 1.91 perseant * queue under the hypothesis that they couldn't have got here
2021 1.91 perseant * unless they were modified *quite* recently.
2022 1.91 perseant *
2023 1.91 perseant * XXXUBC that last statement is an oversimplification of course.
2024 1.91 perseant */
2025 1.169 perseant if (!LFS_SEGLOCK_HELD(fs) ||
2026 1.167 simonb (ip->i_lfs_iflags & LFSI_NO_GOP_WRITE) ||
2027 1.167 simonb (pgs[0]->offset & fs->lfs_bmask) != 0) {
2028 1.167 simonb goto tryagain;
2029 1.91 perseant }
2030 1.91 perseant
2031 1.91 perseant UVMHIST_LOG(ubchist, "vp %p pgs %p npages %d flags 0x%x",
2032 1.91 perseant vp, pgs, npages, flags);
2033 1.91 perseant
2034 1.197 yamt GOP_SIZE(vp, vp->v_size, &eof, 0);
2035 1.204 christos haveeof = 1;
2036 1.91 perseant
2037 1.137 simonb if (vp->v_type == VREG)
2038 1.91 perseant fs_bshift = vp->v_mount->mnt_fs_bshift;
2039 1.137 simonb else
2040 1.91 perseant fs_bshift = DEV_BSHIFT;
2041 1.91 perseant error = 0;
2042 1.91 perseant pg = pgs[0];
2043 1.91 perseant startoffset = pg->offset;
2044 1.195 perseant KASSERT(eof >= 0);
2045 1.170 perseant if (startoffset >= eof) {
2046 1.170 perseant goto tryagain;
2047 1.170 perseant } else
2048 1.170 perseant bytes = MIN(npages << PAGE_SHIFT, eof - startoffset);
2049 1.91 perseant skipbytes = 0;
2050 1.91 perseant
2051 1.170 perseant KASSERT(bytes != 0);
2052 1.91 perseant
2053 1.91 perseant /* Swap PG_DELWRI for PG_PAGEOUT */
2054 1.91 perseant for (i = 0; i < npages; i++)
2055 1.91 perseant if (pgs[i]->flags & PG_DELWRI) {
2056 1.91 perseant KASSERT(!(pgs[i]->flags & PG_PAGEOUT));
2057 1.91 perseant pgs[i]->flags &= ~PG_DELWRI;
2058 1.91 perseant pgs[i]->flags |= PG_PAGEOUT;
2059 1.91 perseant uvmexp.paging++;
2060 1.94 yamt uvm_lock_pageq();
2061 1.94 yamt uvm_pageunwire(pgs[i]);
2062 1.94 yamt uvm_unlock_pageq();
2063 1.91 perseant }
2064 1.91 perseant
2065 1.91 perseant /*
2066 1.91 perseant * Check to make sure we're starting on a block boundary.
2067 1.91 perseant * We'll check later to make sure we always write entire
2068 1.91 perseant * blocks (or fragments).
2069 1.91 perseant */
2070 1.91 perseant if (startoffset & fs->lfs_bmask)
2071 1.91 perseant printf("%" PRId64 " & %" PRId64 " = %" PRId64 "\n",
2072 1.166 perseant startoffset, fs->lfs_bmask,
2073 1.166 perseant startoffset & fs->lfs_bmask);
2074 1.91 perseant KASSERT((startoffset & fs->lfs_bmask) == 0);
2075 1.91 perseant if (bytes & fs->lfs_ffmask) {
2076 1.91 perseant printf("lfs_gop_write: asked to write %ld bytes\n", (long)bytes);
2077 1.91 perseant panic("lfs_gop_write: non-integer blocks");
2078 1.91 perseant }
2079 1.91 perseant
2080 1.163 perseant /*
2081 1.170 perseant * We could deadlock here on pager_map with UVMPAGER_MAPIN_WAITOK.
2082 1.170 perseant * If we would, write what we have and try again. If we don't
2083 1.170 perseant * have anything to write, we'll have to sleep.
2084 1.170 perseant */
2085 1.171 perseant if ((kva = uvm_pagermapin(pgs, npages, UVMPAGER_MAPIN_WRITE |
2086 1.170 perseant (((SEGSUM *)(sp->segsum))->ss_nfinfo < 1 ?
2087 1.170 perseant UVMPAGER_MAPIN_WAITOK : 0))) == 0x0) {
2088 1.170 perseant DLOG((DLOG_PAGE, "lfs_gop_write: forcing write\n"));
2089 1.171 perseant #if 0
2090 1.171 perseant " with nfinfo=%d at offset 0x%x\n",
2091 1.171 perseant (int)((SEGSUM *)(sp->segsum))->ss_nfinfo,
2092 1.171 perseant (unsigned)fs->lfs_offset));
2093 1.171 perseant #endif
2094 1.212 perseant lfs_updatemeta(sp);
2095 1.212 perseant lfs_release_finfo(fs);
2096 1.170 perseant (void) lfs_writeseg(fs, sp);
2097 1.170 perseant
2098 1.213 perseant lfs_acquire_finfo(fs, ip->i_number, ip->i_gen);
2099 1.170 perseant
2100 1.171 perseant /*
2101 1.171 perseant * Having given up all of the pager_map we were holding,
2102 1.171 perseant * we can now wait for aiodoned to reclaim it for us
2103 1.171 perseant * without fear of deadlock.
2104 1.171 perseant */
2105 1.171 perseant kva = uvm_pagermapin(pgs, npages, UVMPAGER_MAPIN_WRITE |
2106 1.171 perseant UVMPAGER_MAPIN_WAITOK);
2107 1.170 perseant }
2108 1.91 perseant
2109 1.91 perseant s = splbio();
2110 1.91 perseant simple_lock(&global_v_numoutput_slock);
2111 1.91 perseant vp->v_numoutput += 2; /* one for biodone, one for aiodone */
2112 1.91 perseant simple_unlock(&global_v_numoutput_slock);
2113 1.91 perseant splx(s);
2114 1.91 perseant
2115 1.191 yamt mbp = getiobuf();
2116 1.91 perseant UVMHIST_LOG(ubchist, "vp %p mbp %p num now %d bytes 0x%x",
2117 1.91 perseant vp, mbp, vp->v_numoutput, bytes);
2118 1.91 perseant mbp->b_bufsize = npages << PAGE_SHIFT;
2119 1.91 perseant mbp->b_data = (void *)kva;
2120 1.91 perseant mbp->b_resid = mbp->b_bcount = bytes;
2121 1.91 perseant mbp->b_flags = B_BUSY|B_WRITE|B_AGE|B_CALL;
2122 1.91 perseant mbp->b_iodone = uvm_aio_biodone;
2123 1.91 perseant mbp->b_vp = vp;
2124 1.91 perseant
2125 1.91 perseant bp = NULL;
2126 1.91 perseant for (offset = startoffset;
2127 1.91 perseant bytes > 0;
2128 1.91 perseant offset += iobytes, bytes -= iobytes) {
2129 1.91 perseant lbn = offset >> fs_bshift;
2130 1.117 yamt error = ufs_bmaparray(vp, lbn, &blkno, NULL, NULL, &run,
2131 1.117 yamt lfs_issequential_hole);
2132 1.91 perseant if (error) {
2133 1.117 yamt UVMHIST_LOG(ubchist, "ufs_bmaparray() -> %d",
2134 1.117 yamt error,0,0,0);
2135 1.91 perseant skipbytes += bytes;
2136 1.91 perseant bytes = 0;
2137 1.91 perseant break;
2138 1.91 perseant }
2139 1.91 perseant
2140 1.116 perseant iobytes = MIN((((off_t)lbn + 1 + run) << fs_bshift) - offset,
2141 1.116 perseant bytes);
2142 1.91 perseant if (blkno == (daddr_t)-1) {
2143 1.91 perseant skipbytes += iobytes;
2144 1.91 perseant continue;
2145 1.91 perseant }
2146 1.91 perseant
2147 1.91 perseant /*
2148 1.91 perseant * Discover how much we can really pack into this buffer.
2149 1.91 perseant */
2150 1.91 perseant /* If no room in the current segment, finish it up */
2151 1.91 perseant if (sp->sum_bytes_left < sizeof(int32_t) ||
2152 1.97 perseant sp->seg_bytes_left < (1 << fs->lfs_bshift)) {
2153 1.181 christos int vers;
2154 1.91 perseant
2155 1.91 perseant lfs_updatemeta(sp);
2156 1.181 christos vers = sp->fip->fi_version;
2157 1.212 perseant lfs_release_finfo(fs);
2158 1.91 perseant (void) lfs_writeseg(fs, sp);
2159 1.164 perry
2160 1.212 perseant lfs_acquire_finfo(fs, ip->i_number, vers);
2161 1.91 perseant }
2162 1.97 perseant /* Check both for space in segment and space in segsum */
2163 1.97 perseant iobytes = MIN(iobytes, (sp->seg_bytes_left >> fs_bshift)
2164 1.97 perseant << fs_bshift);
2165 1.97 perseant iobytes = MIN(iobytes, (sp->sum_bytes_left / sizeof(int32_t))
2166 1.97 perseant << fs_bshift);
2167 1.91 perseant KASSERT(iobytes > 0);
2168 1.91 perseant
2169 1.91 perseant /* if it's really one i/o, don't make a second buf */
2170 1.91 perseant if (offset == startoffset && iobytes == bytes) {
2171 1.91 perseant bp = mbp;
2172 1.91 perseant /* correct overcount if there is no second buffer */
2173 1.91 perseant s = splbio();
2174 1.91 perseant simple_lock(&global_v_numoutput_slock);
2175 1.91 perseant --vp->v_numoutput;
2176 1.91 perseant simple_unlock(&global_v_numoutput_slock);
2177 1.91 perseant splx(s);
2178 1.91 perseant } else {
2179 1.191 yamt bp = getiobuf();
2180 1.91 perseant UVMHIST_LOG(ubchist, "vp %p bp %p num now %d",
2181 1.91 perseant vp, bp, vp->v_numoutput, 0);
2182 1.91 perseant bp->b_data = (char *)kva +
2183 1.91 perseant (vaddr_t)(offset - pg->offset);
2184 1.91 perseant bp->b_resid = bp->b_bcount = iobytes;
2185 1.91 perseant bp->b_flags = B_BUSY|B_WRITE|B_CALL;
2186 1.91 perseant bp->b_iodone = uvm_aio_biodone1;
2187 1.91 perseant }
2188 1.91 perseant
2189 1.91 perseant /* XXX This is silly ... is this necessary? */
2190 1.91 perseant bp->b_vp = NULL;
2191 1.91 perseant s = splbio();
2192 1.91 perseant bgetvp(vp, bp);
2193 1.91 perseant splx(s);
2194 1.91 perseant
2195 1.91 perseant bp->b_lblkno = lblkno(fs, offset);
2196 1.91 perseant bp->b_private = mbp;
2197 1.91 perseant if (devvp->v_type == VBLK) {
2198 1.91 perseant bp->b_dev = devvp->v_rdev;
2199 1.91 perseant }
2200 1.91 perseant VOP_BWRITE(bp);
2201 1.110 perseant while (lfs_gatherblock(sp, bp, NULL))
2202 1.111 dsl continue;
2203 1.91 perseant }
2204 1.91 perseant
2205 1.91 perseant if (skipbytes) {
2206 1.91 perseant UVMHIST_LOG(ubchist, "skipbytes %d", skipbytes, 0,0,0);
2207 1.91 perseant s = splbio();
2208 1.91 perseant if (error) {
2209 1.91 perseant mbp->b_flags |= B_ERROR;
2210 1.91 perseant mbp->b_error = error;
2211 1.91 perseant }
2212 1.91 perseant mbp->b_resid -= skipbytes;
2213 1.91 perseant if (mbp->b_resid == 0) {
2214 1.91 perseant biodone(mbp);
2215 1.91 perseant }
2216 1.91 perseant splx(s);
2217 1.91 perseant }
2218 1.91 perseant UVMHIST_LOG(ubchist, "returning 0", 0,0,0,0);
2219 1.91 perseant return (0);
2220 1.163 perseant
2221 1.163 perseant tryagain:
2222 1.167 simonb /*
2223 1.167 simonb * We can't write the pages, for whatever reason.
2224 1.167 simonb * Clean up after ourselves, and make the caller try again.
2225 1.167 simonb */
2226 1.167 simonb simple_lock(&vp->v_interlock);
2227 1.166 perseant
2228 1.166 perseant /* Tell why we're here, if we know */
2229 1.167 simonb if (ip->i_lfs_iflags & LFSI_NO_GOP_WRITE)
2230 1.167 simonb DLOG((DLOG_PAGE, "lfs_gop_write: clean pages dirtied\n"));
2231 1.167 simonb else if ((pgs[0]->offset & fs->lfs_bmask) != 0)
2232 1.166 perseant DLOG((DLOG_PAGE, "lfs_gop_write: not on block boundary\n"));
2233 1.204 christos else if (haveeof && startoffset >= eof)
2234 1.170 perseant DLOG((DLOG_PAGE, "lfs_gop_write: ino %d start 0x%" PRIx64
2235 1.170 perseant " eof 0x%" PRIx64 " npages=%d\n", VTOI(vp)->i_number,
2236 1.170 perseant pgs[0]->offset, eof, npages));
2237 1.195 perseant else if (LFS_STARVED_FOR_SEGS(fs))
2238 1.195 perseant DLOG((DLOG_PAGE, "lfs_gop_write: avail too low\n"));
2239 1.167 simonb else
2240 1.167 simonb DLOG((DLOG_PAGE, "lfs_gop_write: seglock not held\n"));
2241 1.166 perseant
2242 1.167 simonb uvm_lock_pageq();
2243 1.167 simonb for (i = 0; i < npages; i++) {
2244 1.167 simonb pg = pgs[i];
2245 1.167 simonb
2246 1.167 simonb if (pg->flags & PG_PAGEOUT)
2247 1.167 simonb uvmexp.paging--;
2248 1.167 simonb if (pg->flags & PG_DELWRI) {
2249 1.167 simonb uvm_pageunwire(pg);
2250 1.167 simonb }
2251 1.167 simonb uvm_pageactivate(pg);
2252 1.167 simonb pg->flags &= ~(PG_CLEAN|PG_DELWRI|PG_PAGEOUT|PG_RELEASED);
2253 1.195 perseant DLOG((DLOG_PAGE, "pg[%d] = %p (vp %p off %" PRIx64 ")\n", i, pg,
2254 1.195 perseant vp, pg->offset));
2255 1.167 simonb DLOG((DLOG_PAGE, "pg[%d]->flags = %x\n", i, pg->flags));
2256 1.166 perseant DLOG((DLOG_PAGE, "pg[%d]->pqflags = %x\n", i, pg->pqflags));
2257 1.167 simonb DLOG((DLOG_PAGE, "pg[%d]->uanon = %p\n", i, pg->uanon));
2258 1.167 simonb DLOG((DLOG_PAGE, "pg[%d]->uobject = %p\n", i, pg->uobject));
2259 1.167 simonb DLOG((DLOG_PAGE, "pg[%d]->wire_count = %d\n", i,
2260 1.166 perseant pg->wire_count));
2261 1.167 simonb DLOG((DLOG_PAGE, "pg[%d]->loan_count = %d\n", i,
2262 1.166 perseant pg->loan_count));
2263 1.167 simonb }
2264 1.167 simonb /* uvm_pageunbusy takes care of PG_BUSY, PG_WANTED */
2265 1.167 simonb uvm_page_unbusy(pgs, npages);
2266 1.167 simonb uvm_unlock_pageq();
2267 1.167 simonb simple_unlock(&vp->v_interlock);
2268 1.167 simonb return EAGAIN;
2269 1.107 yamt }
2270 1.107 yamt
2271 1.107 yamt /*
2272 1.107 yamt * finish vnode/inode initialization.
2273 1.107 yamt * used by lfs_vget and lfs_fastvget.
2274 1.107 yamt */
2275 1.107 yamt void
2276 1.139 yamt lfs_vinit(struct mount *mp, struct vnode **vpp)
2277 1.107 yamt {
2278 1.139 yamt struct vnode *vp = *vpp;
2279 1.107 yamt struct inode *ip = VTOI(vp);
2280 1.107 yamt struct ufsmount *ump = VFSTOUFS(mp);
2281 1.107 yamt int i;
2282 1.107 yamt
2283 1.113 fvdl ip->i_mode = ip->i_ffs1_mode;
2284 1.113 fvdl ip->i_ffs_effnlink = ip->i_nlink = ip->i_ffs1_nlink;
2285 1.113 fvdl ip->i_lfs_osize = ip->i_size = ip->i_ffs1_size;
2286 1.113 fvdl ip->i_flags = ip->i_ffs1_flags;
2287 1.113 fvdl ip->i_gen = ip->i_ffs1_gen;
2288 1.113 fvdl ip->i_uid = ip->i_ffs1_uid;
2289 1.113 fvdl ip->i_gid = ip->i_ffs1_gid;
2290 1.113 fvdl
2291 1.113 fvdl ip->i_lfs_effnblks = ip->i_ffs1_blocks;
2292 1.107 yamt
2293 1.107 yamt /*
2294 1.107 yamt * Initialize the vnode from the inode, check for aliases. In all
2295 1.107 yamt * cases re-init ip, the underlying vnode/inode may have changed.
2296 1.107 yamt */
2297 1.107 yamt ufs_vinit(mp, lfs_specop_p, lfs_fifoop_p, &vp);
2298 1.163 perseant ip = VTOI(vp);
2299 1.107 yamt
2300 1.107 yamt memset(ip->i_lfs_fragsize, 0, NDADDR * sizeof(*ip->i_lfs_fragsize));
2301 1.156 mycroft if (vp->v_type != VLNK || ip->i_size >= ip->i_ump->um_maxsymlinklen) {
2302 1.107 yamt struct lfs *fs = ump->um_lfs;
2303 1.108 yamt #ifdef DEBUG
2304 1.113 fvdl for (i = (ip->i_size + fs->lfs_bsize - 1) >> fs->lfs_bshift;
2305 1.107 yamt i < NDADDR; i++) {
2306 1.163 perseant if ((vp->v_type == VBLK || vp->v_type == VCHR) &&
2307 1.163 perseant i == 0)
2308 1.163 perseant continue;
2309 1.113 fvdl if (ip->i_ffs1_db[i] != 0) {
2310 1.107 yamt inconsistent:
2311 1.113 fvdl lfs_dump_dinode(ip->i_din.ffs1_din);
2312 1.107 yamt panic("inconsistent inode");
2313 1.107 yamt }
2314 1.107 yamt }
2315 1.107 yamt for ( ; i < NDADDR + NIADDR; i++) {
2316 1.113 fvdl if (ip->i_ffs1_ib[i - NDADDR] != 0) {
2317 1.107 yamt goto inconsistent;
2318 1.107 yamt }
2319 1.107 yamt }
2320 1.108 yamt #endif /* DEBUG */
2321 1.107 yamt for (i = 0; i < NDADDR; i++)
2322 1.113 fvdl if (ip->i_ffs1_db[i] != 0)
2323 1.107 yamt ip->i_lfs_fragsize[i] = blksize(fs, ip, i);
2324 1.107 yamt }
2325 1.107 yamt
2326 1.166 perseant #ifdef DIAGNOSTIC
2327 1.107 yamt if (vp->v_type == VNON) {
2328 1.166 perseant # ifdef DEBUG
2329 1.113 fvdl lfs_dump_dinode(ip->i_din.ffs1_din);
2330 1.166 perseant # endif
2331 1.185 christos panic("lfs_vinit: ino %llu is type VNON! (ifmt=%o)\n",
2332 1.185 christos (unsigned long long)ip->i_number,
2333 1.185 christos (ip->i_mode & IFMT) >> 12);
2334 1.107 yamt }
2335 1.166 perseant #endif /* DIAGNOSTIC */
2336 1.107 yamt
2337 1.107 yamt /*
2338 1.107 yamt * Finish inode initialization now that aliasing has been resolved.
2339 1.107 yamt */
2340 1.107 yamt
2341 1.107 yamt ip->i_devvp = ump->um_devvp;
2342 1.107 yamt VREF(ip->i_devvp);
2343 1.107 yamt genfs_node_init(vp, &lfs_genfsops);
2344 1.113 fvdl uvm_vnp_setsize(vp, ip->i_size);
2345 1.139 yamt
2346 1.172 perseant /* Initialize hiblk from file size */
2347 1.172 perseant ip->i_lfs_hiblk = lblkno(ip->i_lfs, ip->i_size + ip->i_lfs->lfs_bsize - 1) - 1;
2348 1.172 perseant
2349 1.139 yamt *vpp = vp;
2350 1.91 perseant }
2351 1.165 perseant
2352 1.165 perseant /*
2353 1.177 perseant * Resize the filesystem to contain the specified number of segments.
2354 1.177 perseant */
2355 1.177 perseant int
2356 1.177 perseant lfs_resize_fs(struct lfs *fs, int newnsegs)
2357 1.177 perseant {
2358 1.177 perseant SEGUSE *sup;
2359 1.177 perseant struct buf *bp, *obp;
2360 1.177 perseant daddr_t olast, nlast, ilast, noff, start, end;
2361 1.177 perseant struct vnode *ivp;
2362 1.177 perseant struct inode *ip;
2363 1.177 perseant int error, badnews, inc, oldnsegs;
2364 1.177 perseant int sbbytes, csbbytes, gain, cgain;
2365 1.177 perseant int i;
2366 1.177 perseant
2367 1.177 perseant /* Only support v2 and up */
2368 1.177 perseant if (fs->lfs_version < 2)
2369 1.177 perseant return EOPNOTSUPP;
2370 1.177 perseant
2371 1.177 perseant /* If we're doing nothing, do it fast */
2372 1.177 perseant oldnsegs = fs->lfs_nseg;
2373 1.177 perseant if (newnsegs == oldnsegs)
2374 1.177 perseant return 0;
2375 1.177 perseant
2376 1.177 perseant /* We always have to have two superblocks */
2377 1.177 perseant if (newnsegs <= dtosn(fs, fs->lfs_sboffs[1]))
2378 1.177 perseant return EFBIG;
2379 1.177 perseant
2380 1.177 perseant ivp = fs->lfs_ivnode;
2381 1.177 perseant ip = VTOI(ivp);
2382 1.177 perseant error = 0;
2383 1.177 perseant
2384 1.177 perseant /* Take the segment lock so no one else calls lfs_newseg() */
2385 1.177 perseant lfs_seglock(fs, SEGM_PROT);
2386 1.177 perseant
2387 1.177 perseant /*
2388 1.177 perseant * Make sure the segments we're going to be losing, if any,
2389 1.177 perseant * are in fact empty. We hold the seglock, so their status
2390 1.177 perseant * cannot change underneath us. Count the superblocks we lose,
2391 1.177 perseant * while we're at it.
2392 1.177 perseant */
2393 1.177 perseant sbbytes = csbbytes = 0;
2394 1.177 perseant cgain = 0;
2395 1.177 perseant for (i = newnsegs; i < oldnsegs; i++) {
2396 1.177 perseant LFS_SEGENTRY(sup, fs, i, bp);
2397 1.177 perseant badnews = sup->su_nbytes || !(sup->su_flags & SEGUSE_INVAL);
2398 1.177 perseant if (sup->su_flags & SEGUSE_SUPERBLOCK)
2399 1.177 perseant sbbytes += LFS_SBPAD;
2400 1.177 perseant if (!(sup->su_flags & SEGUSE_DIRTY)) {
2401 1.177 perseant ++cgain;
2402 1.177 perseant if (sup->su_flags & SEGUSE_SUPERBLOCK)
2403 1.177 perseant csbbytes += LFS_SBPAD;
2404 1.177 perseant }
2405 1.177 perseant brelse(bp);
2406 1.177 perseant if (badnews) {
2407 1.177 perseant error = EBUSY;
2408 1.177 perseant goto out;
2409 1.177 perseant }
2410 1.177 perseant }
2411 1.177 perseant
2412 1.177 perseant /* Note old and new segment table endpoints, and old ifile size */
2413 1.177 perseant olast = fs->lfs_cleansz + fs->lfs_segtabsz;
2414 1.177 perseant nlast = howmany(newnsegs, fs->lfs_sepb) + fs->lfs_cleansz;
2415 1.177 perseant ilast = ivp->v_size >> fs->lfs_bshift;
2416 1.177 perseant noff = nlast - olast;
2417 1.177 perseant
2418 1.177 perseant /*
2419 1.177 perseant * Make sure no one can use the Ifile while we change it around.
2420 1.177 perseant * Even after taking the iflock we need to make sure no one still
2421 1.177 perseant * is holding Ifile buffers, so we get each one, to drain them.
2422 1.177 perseant * (XXX this could be done better.)
2423 1.177 perseant */
2424 1.177 perseant simple_lock(&fs->lfs_interlock);
2425 1.177 perseant lockmgr(&fs->lfs_iflock, LK_EXCLUSIVE, &fs->lfs_interlock);
2426 1.177 perseant simple_unlock(&fs->lfs_interlock);
2427 1.177 perseant vn_lock(ivp, LK_EXCLUSIVE | LK_RETRY);
2428 1.177 perseant for (i = 0; i < ilast; i++) {
2429 1.177 perseant bread(ivp, i, fs->lfs_bsize, NOCRED, &bp);
2430 1.177 perseant brelse(bp);
2431 1.177 perseant }
2432 1.177 perseant
2433 1.177 perseant /* Allocate new Ifile blocks */
2434 1.177 perseant for (i = ilast; i < ilast + noff; i++) {
2435 1.189 yamt if (lfs_balloc(ivp, i * fs->lfs_bsize, fs->lfs_bsize, NOCRED, 0,
2436 1.177 perseant &bp) != 0)
2437 1.177 perseant panic("balloc extending ifile");
2438 1.177 perseant memset(bp->b_data, 0, fs->lfs_bsize);
2439 1.177 perseant VOP_BWRITE(bp);
2440 1.177 perseant }
2441 1.177 perseant
2442 1.177 perseant /* Register new ifile size */
2443 1.177 perseant ip->i_size += noff * fs->lfs_bsize;
2444 1.177 perseant ip->i_ffs1_size = ip->i_size;
2445 1.177 perseant uvm_vnp_setsize(ivp, ip->i_size);
2446 1.177 perseant
2447 1.177 perseant /* Copy the inode table to its new position */
2448 1.177 perseant if (noff != 0) {
2449 1.177 perseant if (noff < 0) {
2450 1.177 perseant start = nlast;
2451 1.177 perseant end = ilast + noff;
2452 1.177 perseant inc = 1;
2453 1.177 perseant } else {
2454 1.177 perseant start = ilast + noff - 1;
2455 1.177 perseant end = nlast - 1;
2456 1.177 perseant inc = -1;
2457 1.177 perseant }
2458 1.177 perseant for (i = start; i != end; i += inc) {
2459 1.177 perseant if (bread(ivp, i, fs->lfs_bsize, NOCRED, &bp) != 0)
2460 1.177 perseant panic("resize: bread dst blk failed");
2461 1.177 perseant if (bread(ivp, i - noff, fs->lfs_bsize, NOCRED, &obp))
2462 1.177 perseant panic("resize: bread src blk failed");
2463 1.177 perseant memcpy(bp->b_data, obp->b_data, fs->lfs_bsize);
2464 1.177 perseant VOP_BWRITE(bp);
2465 1.177 perseant brelse(obp);
2466 1.177 perseant }
2467 1.177 perseant }
2468 1.177 perseant
2469 1.177 perseant /* If we are expanding, write the new empty SEGUSE entries */
2470 1.177 perseant if (newnsegs > oldnsegs) {
2471 1.177 perseant for (i = oldnsegs; i < newnsegs; i++) {
2472 1.177 perseant if ((error = bread(ivp, i / fs->lfs_sepb +
2473 1.177 perseant fs->lfs_cleansz,
2474 1.177 perseant fs->lfs_bsize, NOCRED, &bp)) != 0)
2475 1.177 perseant panic("lfs: ifile read: %d", error);
2476 1.177 perseant while ((i + 1) % fs->lfs_sepb && i < newnsegs) {
2477 1.177 perseant sup = &((SEGUSE *)bp->b_data)[i % fs->lfs_sepb];
2478 1.177 perseant memset(sup, 0, sizeof(*sup));
2479 1.177 perseant i++;
2480 1.177 perseant }
2481 1.177 perseant VOP_BWRITE(bp);
2482 1.177 perseant }
2483 1.177 perseant }
2484 1.177 perseant
2485 1.177 perseant /* Zero out unused superblock offsets */
2486 1.177 perseant for (i = 2; i < LFS_MAXNUMSB; i++)
2487 1.177 perseant if (dtosn(fs, fs->lfs_sboffs[i]) >= newnsegs)
2488 1.177 perseant fs->lfs_sboffs[i] = 0x0;
2489 1.177 perseant
2490 1.177 perseant /*
2491 1.177 perseant * Correct superblock entries that depend on fs size.
2492 1.177 perseant * The computations of these are as follows:
2493 1.177 perseant *
2494 1.177 perseant * size = segtod(fs, nseg)
2495 1.177 perseant * dsize = segtod(fs, nseg - minfreeseg) - btofsb(#super * LFS_SBPAD)
2496 1.177 perseant * bfree = dsize - btofsb(fs, bsize * nseg / 2) - blocks_actually_used
2497 1.177 perseant * avail = segtod(fs, nclean) - btofsb(#clean_super * LFS_SBPAD)
2498 1.177 perseant * + (segtod(fs, 1) - (offset - curseg))
2499 1.177 perseant * - segtod(fs, minfreeseg - (minfreeseg / 2))
2500 1.177 perseant *
2501 1.177 perseant * XXX - we should probably adjust minfreeseg as well.
2502 1.177 perseant */
2503 1.177 perseant gain = (newnsegs - oldnsegs);
2504 1.177 perseant fs->lfs_nseg = newnsegs;
2505 1.177 perseant fs->lfs_segtabsz = nlast - fs->lfs_cleansz;
2506 1.177 perseant fs->lfs_size += gain * btofsb(fs, fs->lfs_ssize);
2507 1.177 perseant fs->lfs_dsize += gain * btofsb(fs, fs->lfs_ssize) - btofsb(fs, sbbytes);
2508 1.177 perseant fs->lfs_bfree += gain * btofsb(fs, fs->lfs_ssize) - btofsb(fs, sbbytes)
2509 1.177 perseant - gain * btofsb(fs, fs->lfs_bsize / 2);
2510 1.177 perseant if (gain > 0) {
2511 1.177 perseant fs->lfs_nclean += gain;
2512 1.177 perseant fs->lfs_avail += gain * btofsb(fs, fs->lfs_ssize);
2513 1.177 perseant } else {
2514 1.177 perseant fs->lfs_nclean -= cgain;
2515 1.177 perseant fs->lfs_avail -= cgain * btofsb(fs, fs->lfs_ssize) -
2516 1.177 perseant btofsb(fs, csbbytes);
2517 1.177 perseant }
2518 1.177 perseant
2519 1.177 perseant /* Resize segment flag cache */
2520 1.177 perseant fs->lfs_suflags[0] = (u_int32_t *)realloc(fs->lfs_suflags[0],
2521 1.177 perseant fs->lfs_nseg * sizeof(u_int32_t),
2522 1.177 perseant M_SEGMENT, M_WAITOK);
2523 1.215 perseant fs->lfs_suflags[1] = (u_int32_t *)realloc(fs->lfs_suflags[1],
2524 1.177 perseant fs->lfs_nseg * sizeof(u_int32_t),
2525 1.177 perseant M_SEGMENT, M_WAITOK);
2526 1.177 perseant for (i = oldnsegs; i < newnsegs; i++)
2527 1.177 perseant fs->lfs_suflags[0][i] = fs->lfs_suflags[1][i] = 0x0;
2528 1.177 perseant
2529 1.177 perseant /* Truncate Ifile if necessary */
2530 1.177 perseant if (noff < 0)
2531 1.189 yamt lfs_truncate(ivp, ivp->v_size + (noff << fs->lfs_bshift), 0,
2532 1.190 christos NOCRED, curlwp);
2533 1.177 perseant
2534 1.177 perseant /* Update cleaner info so the cleaner can die */
2535 1.177 perseant bread(ivp, 0, fs->lfs_bsize, NOCRED, &bp);
2536 1.177 perseant ((CLEANERINFO *)bp->b_data)->clean = fs->lfs_nclean;
2537 1.177 perseant ((CLEANERINFO *)bp->b_data)->dirty = fs->lfs_nseg - fs->lfs_nclean;
2538 1.177 perseant VOP_BWRITE(bp);
2539 1.177 perseant
2540 1.177 perseant /* Let Ifile accesses proceed */
2541 1.177 perseant VOP_UNLOCK(ivp, 0);
2542 1.177 perseant simple_lock(&fs->lfs_interlock);
2543 1.177 perseant lockmgr(&fs->lfs_iflock, LK_RELEASE, &fs->lfs_interlock);
2544 1.177 perseant simple_unlock(&fs->lfs_interlock);
2545 1.177 perseant
2546 1.177 perseant out:
2547 1.177 perseant lfs_segunlock(fs);
2548 1.177 perseant return error;
2549 1.177 perseant }
2550