ffs_vfsops.c revision 1.44 1 1.44 thorpej /* $NetBSD: ffs_vfsops.c,v 1.44 1998/10/23 00:31:29 thorpej Exp $ */
2 1.4 cgd
3 1.1 mycroft /*
4 1.1 mycroft * Copyright (c) 1989, 1991, 1993, 1994
5 1.1 mycroft * The Regents of the University of California. All rights reserved.
6 1.1 mycroft *
7 1.1 mycroft * Redistribution and use in source and binary forms, with or without
8 1.1 mycroft * modification, are permitted provided that the following conditions
9 1.1 mycroft * are met:
10 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
11 1.1 mycroft * notice, this list of conditions and the following disclaimer.
12 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
14 1.1 mycroft * documentation and/or other materials provided with the distribution.
15 1.1 mycroft * 3. All advertising materials mentioning features or use of this software
16 1.1 mycroft * must display the following acknowledgement:
17 1.1 mycroft * This product includes software developed by the University of
18 1.1 mycroft * California, Berkeley and its contributors.
19 1.1 mycroft * 4. Neither the name of the University nor the names of its contributors
20 1.1 mycroft * may be used to endorse or promote products derived from this software
21 1.1 mycroft * without specific prior written permission.
22 1.1 mycroft *
23 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 mycroft * SUCH DAMAGE.
34 1.1 mycroft *
35 1.33 fvdl * @(#)ffs_vfsops.c 8.31 (Berkeley) 5/20/95
36 1.1 mycroft */
37 1.36 scottr
38 1.37 scottr #if defined(_KERNEL) && !defined(_LKM)
39 1.36 scottr #include "opt_quota.h"
40 1.41 jonathan #include "opt_compat_netbsd.h"
41 1.37 scottr #endif
42 1.1 mycroft
43 1.1 mycroft #include <sys/param.h>
44 1.1 mycroft #include <sys/systm.h>
45 1.1 mycroft #include <sys/namei.h>
46 1.1 mycroft #include <sys/proc.h>
47 1.1 mycroft #include <sys/kernel.h>
48 1.1 mycroft #include <sys/vnode.h>
49 1.1 mycroft #include <sys/socket.h>
50 1.1 mycroft #include <sys/mount.h>
51 1.1 mycroft #include <sys/buf.h>
52 1.23 thorpej #include <sys/device.h>
53 1.1 mycroft #include <sys/mbuf.h>
54 1.1 mycroft #include <sys/file.h>
55 1.1 mycroft #include <sys/disklabel.h>
56 1.1 mycroft #include <sys/ioctl.h>
57 1.1 mycroft #include <sys/errno.h>
58 1.1 mycroft #include <sys/malloc.h>
59 1.43 thorpej #include <sys/pool.h>
60 1.29 fvdl #include <sys/lock.h>
61 1.33 fvdl #include <vm/vm.h>
62 1.33 fvdl #include <sys/sysctl.h>
63 1.1 mycroft
64 1.1 mycroft #include <miscfs/specfs/specdev.h>
65 1.1 mycroft
66 1.1 mycroft #include <ufs/ufs/quota.h>
67 1.1 mycroft #include <ufs/ufs/ufsmount.h>
68 1.1 mycroft #include <ufs/ufs/inode.h>
69 1.25 bouyer #include <ufs/ufs/dir.h>
70 1.1 mycroft #include <ufs/ufs/ufs_extern.h>
71 1.34 bouyer #include <ufs/ufs/ufs_bswap.h>
72 1.1 mycroft
73 1.1 mycroft #include <ufs/ffs/fs.h>
74 1.1 mycroft #include <ufs/ffs/ffs_extern.h>
75 1.1 mycroft
76 1.29 fvdl extern struct lock ufs_hashlock;
77 1.29 fvdl
78 1.1 mycroft int ffs_sbupdate __P((struct ufsmount *, int));
79 1.1 mycroft
80 1.32 thorpej extern struct vnodeopv_desc ffs_vnodeop_opv_desc;
81 1.32 thorpej extern struct vnodeopv_desc ffs_specop_opv_desc;
82 1.32 thorpej extern struct vnodeopv_desc ffs_fifoop_opv_desc;
83 1.32 thorpej
84 1.32 thorpej struct vnodeopv_desc *ffs_vnodeopv_descs[] = {
85 1.32 thorpej &ffs_vnodeop_opv_desc,
86 1.32 thorpej &ffs_specop_opv_desc,
87 1.32 thorpej &ffs_fifoop_opv_desc,
88 1.32 thorpej NULL,
89 1.32 thorpej };
90 1.32 thorpej
91 1.17 mycroft struct vfsops ffs_vfsops = {
92 1.17 mycroft MOUNT_FFS,
93 1.1 mycroft ffs_mount,
94 1.1 mycroft ufs_start,
95 1.1 mycroft ffs_unmount,
96 1.1 mycroft ufs_root,
97 1.1 mycroft ufs_quotactl,
98 1.1 mycroft ffs_statfs,
99 1.1 mycroft ffs_sync,
100 1.1 mycroft ffs_vget,
101 1.1 mycroft ffs_fhtovp,
102 1.1 mycroft ffs_vptofh,
103 1.1 mycroft ffs_init,
104 1.33 fvdl ffs_sysctl,
105 1.23 thorpej ffs_mountroot,
106 1.32 thorpej ffs_vnodeopv_descs,
107 1.1 mycroft };
108 1.1 mycroft
109 1.43 thorpej struct pool ffs_inode_pool;
110 1.43 thorpej
111 1.1 mycroft /*
112 1.33 fvdl * Called by main() when ffs is going to be mounted as root.
113 1.1 mycroft */
114 1.1 mycroft
115 1.19 christos int
116 1.1 mycroft ffs_mountroot()
117 1.1 mycroft {
118 1.1 mycroft extern struct vnode *rootvp;
119 1.33 fvdl struct fs *fs;
120 1.33 fvdl struct mount *mp;
121 1.1 mycroft struct proc *p = curproc; /* XXX */
122 1.1 mycroft struct ufsmount *ump;
123 1.1 mycroft int error;
124 1.23 thorpej
125 1.23 thorpej if (root_device->dv_class != DV_DISK)
126 1.23 thorpej return (ENODEV);
127 1.23 thorpej
128 1.1 mycroft /*
129 1.26 mrg * Get vnodes for rootdev.
130 1.1 mycroft */
131 1.26 mrg if (bdevvp(rootdev, &rootvp))
132 1.1 mycroft panic("ffs_mountroot: can't setup bdevvp's");
133 1.1 mycroft
134 1.33 fvdl if ((error = vfs_rootmountalloc(MOUNT_FFS, "root_device", &mp)))
135 1.33 fvdl return (error);
136 1.19 christos if ((error = ffs_mountfs(rootvp, mp, p)) != 0) {
137 1.33 fvdl mp->mnt_op->vfs_refcount--;
138 1.33 fvdl vfs_unbusy(mp);
139 1.1 mycroft free(mp, M_MOUNT);
140 1.1 mycroft return (error);
141 1.1 mycroft }
142 1.33 fvdl simple_lock(&mountlist_slock);
143 1.11 mycroft CIRCLEQ_INSERT_TAIL(&mountlist, mp, mnt_list);
144 1.33 fvdl simple_unlock(&mountlist_slock);
145 1.1 mycroft ump = VFSTOUFS(mp);
146 1.1 mycroft fs = ump->um_fs;
147 1.42 perry memset(fs->fs_fsmnt, 0, sizeof(fs->fs_fsmnt));
148 1.33 fvdl (void)copystr(mp->mnt_stat.f_mntonname, fs->fs_fsmnt, MNAMELEN - 1, 0);
149 1.1 mycroft (void)ffs_statfs(mp, &mp->mnt_stat, p);
150 1.33 fvdl vfs_unbusy(mp);
151 1.1 mycroft inittodr(fs->fs_time);
152 1.1 mycroft return (0);
153 1.1 mycroft }
154 1.1 mycroft
155 1.1 mycroft /*
156 1.1 mycroft * VFS Operations.
157 1.1 mycroft *
158 1.1 mycroft * mount system call
159 1.1 mycroft */
160 1.1 mycroft int
161 1.1 mycroft ffs_mount(mp, path, data, ndp, p)
162 1.1 mycroft register struct mount *mp;
163 1.22 cgd const char *path;
164 1.22 cgd void *data;
165 1.1 mycroft struct nameidata *ndp;
166 1.1 mycroft struct proc *p;
167 1.1 mycroft {
168 1.1 mycroft struct vnode *devvp;
169 1.1 mycroft struct ufs_args args;
170 1.19 christos struct ufsmount *ump = NULL;
171 1.1 mycroft register struct fs *fs;
172 1.14 mycroft size_t size;
173 1.1 mycroft int error, flags;
174 1.9 mycroft mode_t accessmode;
175 1.1 mycroft
176 1.19 christos error = copyin(data, (caddr_t)&args, sizeof (struct ufs_args));
177 1.19 christos if (error)
178 1.1 mycroft return (error);
179 1.1 mycroft /*
180 1.1 mycroft * If updating, check whether changing from read-only to
181 1.1 mycroft * read/write; if there is no device name, that's all we do.
182 1.1 mycroft */
183 1.1 mycroft if (mp->mnt_flag & MNT_UPDATE) {
184 1.1 mycroft ump = VFSTOUFS(mp);
185 1.1 mycroft fs = ump->um_fs;
186 1.1 mycroft if (fs->fs_ronly == 0 && (mp->mnt_flag & MNT_RDONLY)) {
187 1.1 mycroft flags = WRITECLOSE;
188 1.1 mycroft if (mp->mnt_flag & MNT_FORCE)
189 1.1 mycroft flags |= FORCECLOSE;
190 1.1 mycroft error = ffs_flushfiles(mp, flags, p);
191 1.15 mycroft if (error == 0 &&
192 1.15 mycroft ffs_cgupdate(ump, MNT_WAIT) == 0 &&
193 1.15 mycroft fs->fs_clean & FS_WASCLEAN) {
194 1.15 mycroft fs->fs_clean = FS_ISCLEAN;
195 1.15 mycroft (void) ffs_sbupdate(ump, MNT_WAIT);
196 1.15 mycroft }
197 1.15 mycroft if (error)
198 1.15 mycroft return (error);
199 1.15 mycroft fs->fs_ronly = 1;
200 1.1 mycroft }
201 1.15 mycroft if (mp->mnt_flag & MNT_RELOAD) {
202 1.1 mycroft error = ffs_reload(mp, ndp->ni_cnd.cn_cred, p);
203 1.15 mycroft if (error)
204 1.15 mycroft return (error);
205 1.15 mycroft }
206 1.9 mycroft if (fs->fs_ronly && (mp->mnt_flag & MNT_WANTRDWR)) {
207 1.9 mycroft /*
208 1.9 mycroft * If upgrade to read-write by non-root, then verify
209 1.9 mycroft * that user has necessary permissions on the device.
210 1.9 mycroft */
211 1.9 mycroft if (p->p_ucred->cr_uid != 0) {
212 1.9 mycroft devvp = ump->um_devvp;
213 1.33 fvdl vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
214 1.19 christos error = VOP_ACCESS(devvp, VREAD | VWRITE,
215 1.19 christos p->p_ucred, p);
216 1.33 fvdl VOP_UNLOCK(devvp, 0);
217 1.33 fvdl if (error)
218 1.9 mycroft return (error);
219 1.9 mycroft }
220 1.1 mycroft fs->fs_ronly = 0;
221 1.15 mycroft fs->fs_clean <<= 1;
222 1.15 mycroft fs->fs_fmod = 1;
223 1.9 mycroft }
224 1.1 mycroft if (args.fspec == 0) {
225 1.1 mycroft /*
226 1.1 mycroft * Process export requests.
227 1.1 mycroft */
228 1.1 mycroft return (vfs_export(mp, &ump->um_export, &args.export));
229 1.1 mycroft }
230 1.1 mycroft }
231 1.1 mycroft /*
232 1.1 mycroft * Not an update, or updating the name: look up the name
233 1.1 mycroft * and verify that it refers to a sensible block device.
234 1.1 mycroft */
235 1.1 mycroft NDINIT(ndp, LOOKUP, FOLLOW, UIO_USERSPACE, args.fspec, p);
236 1.19 christos if ((error = namei(ndp)) != 0)
237 1.1 mycroft return (error);
238 1.1 mycroft devvp = ndp->ni_vp;
239 1.1 mycroft
240 1.1 mycroft if (devvp->v_type != VBLK) {
241 1.1 mycroft vrele(devvp);
242 1.1 mycroft return (ENOTBLK);
243 1.1 mycroft }
244 1.1 mycroft if (major(devvp->v_rdev) >= nblkdev) {
245 1.1 mycroft vrele(devvp);
246 1.1 mycroft return (ENXIO);
247 1.1 mycroft }
248 1.9 mycroft /*
249 1.9 mycroft * If mount by non-root, then verify that user has necessary
250 1.9 mycroft * permissions on the device.
251 1.9 mycroft */
252 1.9 mycroft if (p->p_ucred->cr_uid != 0) {
253 1.9 mycroft accessmode = VREAD;
254 1.9 mycroft if ((mp->mnt_flag & MNT_RDONLY) == 0)
255 1.9 mycroft accessmode |= VWRITE;
256 1.33 fvdl vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
257 1.19 christos error = VOP_ACCESS(devvp, accessmode, p->p_ucred, p);
258 1.33 fvdl VOP_UNLOCK(devvp, 0);
259 1.19 christos if (error) {
260 1.33 fvdl vrele(devvp);
261 1.9 mycroft return (error);
262 1.9 mycroft }
263 1.9 mycroft }
264 1.1 mycroft if ((mp->mnt_flag & MNT_UPDATE) == 0)
265 1.1 mycroft error = ffs_mountfs(devvp, mp, p);
266 1.1 mycroft else {
267 1.1 mycroft if (devvp != ump->um_devvp)
268 1.1 mycroft error = EINVAL; /* needs translation */
269 1.1 mycroft else
270 1.1 mycroft vrele(devvp);
271 1.1 mycroft }
272 1.1 mycroft if (error) {
273 1.1 mycroft vrele(devvp);
274 1.1 mycroft return (error);
275 1.1 mycroft }
276 1.1 mycroft ump = VFSTOUFS(mp);
277 1.1 mycroft fs = ump->um_fs;
278 1.1 mycroft (void) copyinstr(path, fs->fs_fsmnt, sizeof(fs->fs_fsmnt) - 1, &size);
279 1.42 perry memset(fs->fs_fsmnt + size, 0, sizeof(fs->fs_fsmnt) - size);
280 1.42 perry memcpy(mp->mnt_stat.f_mntonname, fs->fs_fsmnt, MNAMELEN);
281 1.1 mycroft (void) copyinstr(args.fspec, mp->mnt_stat.f_mntfromname, MNAMELEN - 1,
282 1.1 mycroft &size);
283 1.42 perry memset(mp->mnt_stat.f_mntfromname + size, 0, MNAMELEN - size);
284 1.15 mycroft if (fs->fs_fmod != 0) { /* XXX */
285 1.15 mycroft fs->fs_fmod = 0;
286 1.15 mycroft if (fs->fs_clean & FS_WASCLEAN)
287 1.15 mycroft fs->fs_time = time.tv_sec;
288 1.15 mycroft else
289 1.34 bouyer printf("%s: file system not clean (fs_flags=%x); please fsck(8)\n",
290 1.34 bouyer mp->mnt_stat.f_mntfromname, fs->fs_clean);
291 1.15 mycroft (void) ffs_cgupdate(ump, MNT_WAIT);
292 1.15 mycroft }
293 1.1 mycroft return (0);
294 1.1 mycroft }
295 1.1 mycroft
296 1.1 mycroft /*
297 1.1 mycroft * Reload all incore data for a filesystem (used after running fsck on
298 1.1 mycroft * the root filesystem and finding things to fix). The filesystem must
299 1.1 mycroft * be mounted read-only.
300 1.1 mycroft *
301 1.1 mycroft * Things to do to update the mount:
302 1.1 mycroft * 1) invalidate all cached meta-data.
303 1.1 mycroft * 2) re-read superblock from disk.
304 1.1 mycroft * 3) re-read summary information from disk.
305 1.1 mycroft * 4) invalidate all inactive vnodes.
306 1.1 mycroft * 5) invalidate all cached file data.
307 1.1 mycroft * 6) re-read inode data for all active vnodes.
308 1.1 mycroft */
309 1.19 christos int
310 1.1 mycroft ffs_reload(mountp, cred, p)
311 1.1 mycroft register struct mount *mountp;
312 1.1 mycroft struct ucred *cred;
313 1.1 mycroft struct proc *p;
314 1.1 mycroft {
315 1.1 mycroft register struct vnode *vp, *nvp, *devvp;
316 1.1 mycroft struct inode *ip;
317 1.1 mycroft struct buf *bp;
318 1.18 cgd struct fs *fs, *newfs;
319 1.1 mycroft struct partinfo dpart;
320 1.1 mycroft int i, blks, size, error;
321 1.18 cgd int32_t *lp;
322 1.44 thorpej caddr_t cp;
323 1.1 mycroft
324 1.1 mycroft if ((mountp->mnt_flag & MNT_RDONLY) == 0)
325 1.1 mycroft return (EINVAL);
326 1.1 mycroft /*
327 1.1 mycroft * Step 1: invalidate all cached meta-data.
328 1.1 mycroft */
329 1.1 mycroft devvp = VFSTOUFS(mountp)->um_devvp;
330 1.1 mycroft if (vinvalbuf(devvp, 0, cred, p, 0, 0))
331 1.1 mycroft panic("ffs_reload: dirty1");
332 1.1 mycroft /*
333 1.1 mycroft * Step 2: re-read superblock from disk.
334 1.1 mycroft */
335 1.1 mycroft if (VOP_IOCTL(devvp, DIOCGPART, (caddr_t)&dpart, FREAD, NOCRED, p) != 0)
336 1.1 mycroft size = DEV_BSIZE;
337 1.1 mycroft else
338 1.1 mycroft size = dpart.disklab->d_secsize;
339 1.33 fvdl error = bread(devvp, (ufs_daddr_t)(SBOFF / size), SBSIZE, NOCRED, &bp);
340 1.19 christos if (error)
341 1.1 mycroft return (error);
342 1.34 bouyer fs = VFSTOUFS(mountp)->um_fs;
343 1.34 bouyer newfs = malloc(fs->fs_sbsize, M_UFSMNT, M_WAITOK);
344 1.42 perry memcpy(newfs, bp->b_data, fs->fs_sbsize);
345 1.34 bouyer #ifdef FFS_EI
346 1.34 bouyer if (VFSTOUFS(mountp)->um_flags & UFS_NEEDSWAP)
347 1.34 bouyer ffs_sb_swap((struct fs*)bp->b_data, newfs, 0);
348 1.34 bouyer #endif
349 1.18 cgd if (newfs->fs_magic != FS_MAGIC || newfs->fs_bsize > MAXBSIZE ||
350 1.18 cgd newfs->fs_bsize < sizeof(struct fs)) {
351 1.1 mycroft brelse(bp);
352 1.34 bouyer free(newfs, M_UFSMNT);
353 1.1 mycroft return (EIO); /* XXX needs translation */
354 1.1 mycroft }
355 1.18 cgd /*
356 1.18 cgd * Copy pointer fields back into superblock before copying in XXX
357 1.18 cgd * new superblock. These should really be in the ufsmount. XXX
358 1.18 cgd * Note that important parameters (eg fs_ncg) are unchanged.
359 1.18 cgd */
360 1.42 perry memcpy(&newfs->fs_csp[0], &fs->fs_csp[0], sizeof(fs->fs_csp));
361 1.18 cgd newfs->fs_maxcluster = fs->fs_maxcluster;
362 1.42 perry memcpy(fs, newfs, (u_int)fs->fs_sbsize);
363 1.1 mycroft if (fs->fs_sbsize < SBSIZE)
364 1.1 mycroft bp->b_flags |= B_INVAL;
365 1.1 mycroft brelse(bp);
366 1.34 bouyer free(newfs, M_UFSMNT);
367 1.3 mycroft mountp->mnt_maxsymlinklen = fs->fs_maxsymlinklen;
368 1.1 mycroft ffs_oldfscompat(fs);
369 1.1 mycroft /*
370 1.1 mycroft * Step 3: re-read summary information from disk.
371 1.1 mycroft */
372 1.1 mycroft blks = howmany(fs->fs_cssize, fs->fs_fsize);
373 1.1 mycroft for (i = 0; i < blks; i += fs->fs_frag) {
374 1.1 mycroft size = fs->fs_bsize;
375 1.1 mycroft if (i + fs->fs_frag > blks)
376 1.1 mycroft size = (blks - i) * fs->fs_fsize;
377 1.19 christos error = bread(devvp, fsbtodb(fs, fs->fs_csaddr + i), size,
378 1.19 christos NOCRED, &bp);
379 1.19 christos if (error)
380 1.1 mycroft return (error);
381 1.34 bouyer #ifdef FFS_EI
382 1.34 bouyer if (UFS_MPNEEDSWAP(mountp))
383 1.34 bouyer ffs_csum_swap((struct csum*)bp->b_data,
384 1.38 kleink (struct csum*)fs->fs_csp[fragstoblks(fs, i)], size);
385 1.34 bouyer else
386 1.34 bouyer #endif
387 1.42 perry memcpy(fs->fs_csp[fragstoblks(fs, i)], bp->b_data,
388 1.38 kleink (size_t)size);
389 1.1 mycroft brelse(bp);
390 1.1 mycroft }
391 1.18 cgd /*
392 1.18 cgd * We no longer know anything about clusters per cylinder group.
393 1.18 cgd */
394 1.18 cgd if (fs->fs_contigsumsize > 0) {
395 1.18 cgd lp = fs->fs_maxcluster;
396 1.18 cgd for (i = 0; i < fs->fs_ncg; i++)
397 1.18 cgd *lp++ = fs->fs_contigsumsize;
398 1.18 cgd }
399 1.18 cgd
400 1.1 mycroft loop:
401 1.33 fvdl simple_lock(&mntvnode_slock);
402 1.1 mycroft for (vp = mountp->mnt_vnodelist.lh_first; vp != NULL; vp = nvp) {
403 1.33 fvdl if (vp->v_mount != mountp) {
404 1.33 fvdl simple_unlock(&mntvnode_slock);
405 1.33 fvdl goto loop;
406 1.33 fvdl }
407 1.1 mycroft nvp = vp->v_mntvnodes.le_next;
408 1.1 mycroft /*
409 1.1 mycroft * Step 4: invalidate all inactive vnodes.
410 1.1 mycroft */
411 1.33 fvdl if (vrecycle(vp, &mntvnode_slock, p))
412 1.33 fvdl goto loop;
413 1.1 mycroft /*
414 1.1 mycroft * Step 5: invalidate all cached file data.
415 1.1 mycroft */
416 1.33 fvdl simple_lock(&vp->v_interlock);
417 1.33 fvdl simple_unlock(&mntvnode_slock);
418 1.33 fvdl if (vget(vp, LK_EXCLUSIVE | LK_INTERLOCK))
419 1.1 mycroft goto loop;
420 1.1 mycroft if (vinvalbuf(vp, 0, cred, p, 0, 0))
421 1.1 mycroft panic("ffs_reload: dirty2");
422 1.1 mycroft /*
423 1.1 mycroft * Step 6: re-read inode data for all active vnodes.
424 1.1 mycroft */
425 1.1 mycroft ip = VTOI(vp);
426 1.19 christos error = bread(devvp, fsbtodb(fs, ino_to_fsba(fs, ip->i_number)),
427 1.19 christos (int)fs->fs_bsize, NOCRED, &bp);
428 1.19 christos if (error) {
429 1.1 mycroft vput(vp);
430 1.1 mycroft return (error);
431 1.1 mycroft }
432 1.44 thorpej cp = (caddr_t)bp->b_data +
433 1.44 thorpej (ino_to_fsbo(fs, ip->i_number) * DINODE_SIZE);
434 1.34 bouyer #ifdef FFS_EI
435 1.34 bouyer if (UFS_MPNEEDSWAP(mountp))
436 1.44 thorpej ffs_dinode_swap((struct dinode *)cp,
437 1.44 thorpej &ip->i_din.ffs_din);
438 1.34 bouyer else
439 1.34 bouyer #endif
440 1.44 thorpej memcpy(&ip->i_din.ffs_din, cp, DINODE_SIZE);
441 1.1 mycroft brelse(bp);
442 1.1 mycroft vput(vp);
443 1.33 fvdl simple_lock(&mntvnode_slock);
444 1.1 mycroft }
445 1.33 fvdl simple_unlock(&mntvnode_slock);
446 1.1 mycroft return (0);
447 1.1 mycroft }
448 1.1 mycroft
449 1.1 mycroft /*
450 1.1 mycroft * Common code for mount and mountroot
451 1.1 mycroft */
452 1.1 mycroft int
453 1.1 mycroft ffs_mountfs(devvp, mp, p)
454 1.1 mycroft register struct vnode *devvp;
455 1.1 mycroft struct mount *mp;
456 1.1 mycroft struct proc *p;
457 1.1 mycroft {
458 1.34 bouyer struct ufsmount *ump;
459 1.1 mycroft struct buf *bp;
460 1.34 bouyer struct fs *fs;
461 1.9 mycroft dev_t dev;
462 1.1 mycroft struct partinfo dpart;
463 1.1 mycroft caddr_t base, space;
464 1.1 mycroft int blks;
465 1.34 bouyer int error, i, size, ronly, needswap;
466 1.9 mycroft int32_t *lp;
467 1.9 mycroft struct ucred *cred;
468 1.1 mycroft extern struct vnode *rootvp;
469 1.9 mycroft u_int64_t maxfilesize; /* XXX */
470 1.34 bouyer u_int32_t sbsize;
471 1.1 mycroft
472 1.9 mycroft dev = devvp->v_rdev;
473 1.9 mycroft cred = p ? p->p_ucred : NOCRED;
474 1.1 mycroft /*
475 1.1 mycroft * Disallow multiple mounts of the same device.
476 1.1 mycroft * Disallow mounting of a device that is currently in use
477 1.1 mycroft * (except for root, which might share swap device for miniroot).
478 1.1 mycroft * Flush out any old buffers remaining from a previous use.
479 1.1 mycroft */
480 1.19 christos if ((error = vfs_mountedon(devvp)) != 0)
481 1.1 mycroft return (error);
482 1.1 mycroft if (vcount(devvp) > 1 && devvp != rootvp)
483 1.1 mycroft return (EBUSY);
484 1.19 christos if ((error = vinvalbuf(devvp, V_SAVE, cred, p, 0, 0)) != 0)
485 1.1 mycroft return (error);
486 1.1 mycroft
487 1.1 mycroft ronly = (mp->mnt_flag & MNT_RDONLY) != 0;
488 1.19 christos error = VOP_OPEN(devvp, ronly ? FREAD : FREAD|FWRITE, FSCRED, p);
489 1.19 christos if (error)
490 1.1 mycroft return (error);
491 1.9 mycroft if (VOP_IOCTL(devvp, DIOCGPART, (caddr_t)&dpart, FREAD, cred, p) != 0)
492 1.1 mycroft size = DEV_BSIZE;
493 1.1 mycroft else
494 1.1 mycroft size = dpart.disklab->d_secsize;
495 1.1 mycroft
496 1.1 mycroft bp = NULL;
497 1.1 mycroft ump = NULL;
498 1.33 fvdl error = bread(devvp, (ufs_daddr_t)(SBOFF / size), SBSIZE, cred, &bp);
499 1.19 christos if (error)
500 1.1 mycroft goto out;
501 1.34 bouyer
502 1.34 bouyer fs = (struct fs*)bp->b_data;
503 1.34 bouyer if (fs->fs_magic == FS_MAGIC) {
504 1.34 bouyer needswap = 0;
505 1.34 bouyer sbsize = fs->fs_sbsize;
506 1.34 bouyer #ifdef FFS_EI
507 1.34 bouyer } else if (fs->fs_magic == bswap32(FS_MAGIC)) {
508 1.34 bouyer needswap = 1;
509 1.34 bouyer sbsize = bswap32(fs->fs_sbsize);
510 1.34 bouyer #endif
511 1.34 bouyer } else {
512 1.34 bouyer error = EINVAL;
513 1.34 bouyer goto out;
514 1.34 bouyer
515 1.34 bouyer }
516 1.34 bouyer
517 1.34 bouyer fs = malloc((u_long)sbsize, M_UFSMNT, M_WAITOK);
518 1.42 perry memcpy(fs, bp->b_data, sbsize);
519 1.34 bouyer #ifdef FFS_EI
520 1.34 bouyer if (needswap)
521 1.34 bouyer ffs_sb_swap((struct fs*)bp->b_data, fs, 0);
522 1.34 bouyer #endif
523 1.34 bouyer
524 1.1 mycroft if (fs->fs_magic != FS_MAGIC || fs->fs_bsize > MAXBSIZE ||
525 1.1 mycroft fs->fs_bsize < sizeof(struct fs)) {
526 1.1 mycroft error = EINVAL; /* XXX needs translation */
527 1.34 bouyer goto out2;
528 1.1 mycroft }
529 1.1 mycroft /* XXX updating 4.2 FFS superblocks trashes rotational layout tables */
530 1.1 mycroft if (fs->fs_postblformat == FS_42POSTBLFMT && !ronly) {
531 1.1 mycroft error = EROFS; /* XXX what should be returned? */
532 1.34 bouyer goto out2;
533 1.1 mycroft }
534 1.1 mycroft ump = malloc(sizeof *ump, M_UFSMNT, M_WAITOK);
535 1.42 perry memset((caddr_t)ump, 0, sizeof *ump);
536 1.34 bouyer ump->um_fs = fs;
537 1.1 mycroft if (fs->fs_sbsize < SBSIZE)
538 1.1 mycroft bp->b_flags |= B_INVAL;
539 1.1 mycroft brelse(bp);
540 1.1 mycroft bp = NULL;
541 1.1 mycroft fs->fs_ronly = ronly;
542 1.15 mycroft if (ronly == 0) {
543 1.15 mycroft fs->fs_clean <<= 1;
544 1.1 mycroft fs->fs_fmod = 1;
545 1.15 mycroft }
546 1.9 mycroft size = fs->fs_cssize;
547 1.9 mycroft blks = howmany(size, fs->fs_fsize);
548 1.9 mycroft if (fs->fs_contigsumsize > 0)
549 1.9 mycroft size += fs->fs_ncg * sizeof(int32_t);
550 1.9 mycroft base = space = malloc((u_long)size, M_UFSMNT, M_WAITOK);
551 1.1 mycroft for (i = 0; i < blks; i += fs->fs_frag) {
552 1.1 mycroft size = fs->fs_bsize;
553 1.1 mycroft if (i + fs->fs_frag > blks)
554 1.1 mycroft size = (blks - i) * fs->fs_fsize;
555 1.19 christos error = bread(devvp, fsbtodb(fs, fs->fs_csaddr + i), size,
556 1.19 christos cred, &bp);
557 1.19 christos if (error) {
558 1.1 mycroft free(base, M_UFSMNT);
559 1.34 bouyer goto out2;
560 1.1 mycroft }
561 1.34 bouyer #ifdef FFS_EI
562 1.34 bouyer if (needswap)
563 1.34 bouyer ffs_csum_swap((struct csum*)bp->b_data,
564 1.34 bouyer (struct csum*)space, size);
565 1.34 bouyer else
566 1.34 bouyer #endif
567 1.42 perry memcpy(space, bp->b_data, (u_int)size);
568 1.34 bouyer
569 1.1 mycroft fs->fs_csp[fragstoblks(fs, i)] = (struct csum *)space;
570 1.1 mycroft space += size;
571 1.1 mycroft brelse(bp);
572 1.1 mycroft bp = NULL;
573 1.1 mycroft }
574 1.9 mycroft if (fs->fs_contigsumsize > 0) {
575 1.9 mycroft fs->fs_maxcluster = lp = (int32_t *)space;
576 1.9 mycroft for (i = 0; i < fs->fs_ncg; i++)
577 1.9 mycroft *lp++ = fs->fs_contigsumsize;
578 1.9 mycroft }
579 1.1 mycroft mp->mnt_data = (qaddr_t)ump;
580 1.1 mycroft mp->mnt_stat.f_fsid.val[0] = (long)dev;
581 1.17 mycroft mp->mnt_stat.f_fsid.val[1] = makefstype(MOUNT_FFS);
582 1.1 mycroft mp->mnt_maxsymlinklen = fs->fs_maxsymlinklen;
583 1.1 mycroft mp->mnt_flag |= MNT_LOCAL;
584 1.34 bouyer #ifdef FFS_EI
585 1.34 bouyer if (needswap)
586 1.34 bouyer ump->um_flags |= UFS_NEEDSWAP;
587 1.34 bouyer #endif
588 1.1 mycroft ump->um_mountp = mp;
589 1.1 mycroft ump->um_dev = dev;
590 1.1 mycroft ump->um_devvp = devvp;
591 1.1 mycroft ump->um_nindir = fs->fs_nindir;
592 1.1 mycroft ump->um_bptrtodb = fs->fs_fsbtodb;
593 1.1 mycroft ump->um_seqinc = fs->fs_frag;
594 1.1 mycroft for (i = 0; i < MAXQUOTAS; i++)
595 1.1 mycroft ump->um_quotas[i] = NULLVP;
596 1.1 mycroft devvp->v_specflags |= SI_MOUNTEDON;
597 1.1 mycroft ffs_oldfscompat(fs);
598 1.9 mycroft ump->um_savedmaxfilesize = fs->fs_maxfilesize; /* XXX */
599 1.9 mycroft maxfilesize = (u_int64_t)0x80000000 * fs->fs_bsize - 1; /* XXX */
600 1.9 mycroft if (fs->fs_maxfilesize > maxfilesize) /* XXX */
601 1.9 mycroft fs->fs_maxfilesize = maxfilesize; /* XXX */
602 1.1 mycroft return (0);
603 1.34 bouyer out2:
604 1.34 bouyer free(fs, M_UFSMNT);
605 1.1 mycroft out:
606 1.1 mycroft if (bp)
607 1.1 mycroft brelse(bp);
608 1.9 mycroft (void)VOP_CLOSE(devvp, ronly ? FREAD : FREAD|FWRITE, cred, p);
609 1.1 mycroft if (ump) {
610 1.1 mycroft free(ump, M_UFSMNT);
611 1.1 mycroft mp->mnt_data = (qaddr_t)0;
612 1.1 mycroft }
613 1.1 mycroft return (error);
614 1.1 mycroft }
615 1.1 mycroft
616 1.1 mycroft /*
617 1.1 mycroft * Sanity checks for old file systems.
618 1.1 mycroft *
619 1.1 mycroft * XXX - goes away some day.
620 1.1 mycroft */
621 1.19 christos int
622 1.1 mycroft ffs_oldfscompat(fs)
623 1.1 mycroft struct fs *fs;
624 1.1 mycroft {
625 1.1 mycroft int i;
626 1.1 mycroft
627 1.1 mycroft fs->fs_npsect = max(fs->fs_npsect, fs->fs_nsect); /* XXX */
628 1.1 mycroft fs->fs_interleave = max(fs->fs_interleave, 1); /* XXX */
629 1.1 mycroft if (fs->fs_postblformat == FS_42POSTBLFMT) /* XXX */
630 1.1 mycroft fs->fs_nrpos = 8; /* XXX */
631 1.1 mycroft if (fs->fs_inodefmt < FS_44INODEFMT) { /* XXX */
632 1.5 mycroft u_int64_t sizepb = fs->fs_bsize; /* XXX */
633 1.1 mycroft /* XXX */
634 1.1 mycroft fs->fs_maxfilesize = fs->fs_bsize * NDADDR - 1; /* XXX */
635 1.1 mycroft for (i = 0; i < NIADDR; i++) { /* XXX */
636 1.1 mycroft sizepb *= NINDIR(fs); /* XXX */
637 1.1 mycroft fs->fs_maxfilesize += sizepb; /* XXX */
638 1.1 mycroft } /* XXX */
639 1.1 mycroft fs->fs_qbmask = ~fs->fs_bmask; /* XXX */
640 1.1 mycroft fs->fs_qfmask = ~fs->fs_fmask; /* XXX */
641 1.1 mycroft } /* XXX */
642 1.1 mycroft return (0);
643 1.1 mycroft }
644 1.1 mycroft
645 1.1 mycroft /*
646 1.1 mycroft * unmount system call
647 1.1 mycroft */
648 1.1 mycroft int
649 1.1 mycroft ffs_unmount(mp, mntflags, p)
650 1.1 mycroft struct mount *mp;
651 1.1 mycroft int mntflags;
652 1.1 mycroft struct proc *p;
653 1.1 mycroft {
654 1.1 mycroft register struct ufsmount *ump;
655 1.1 mycroft register struct fs *fs;
656 1.9 mycroft int error, flags;
657 1.1 mycroft
658 1.1 mycroft flags = 0;
659 1.11 mycroft if (mntflags & MNT_FORCE)
660 1.1 mycroft flags |= FORCECLOSE;
661 1.19 christos if ((error = ffs_flushfiles(mp, flags, p)) != 0)
662 1.1 mycroft return (error);
663 1.1 mycroft ump = VFSTOUFS(mp);
664 1.1 mycroft fs = ump->um_fs;
665 1.15 mycroft if (fs->fs_ronly == 0 &&
666 1.15 mycroft ffs_cgupdate(ump, MNT_WAIT) == 0 &&
667 1.15 mycroft fs->fs_clean & FS_WASCLEAN) {
668 1.15 mycroft fs->fs_clean = FS_ISCLEAN;
669 1.15 mycroft (void) ffs_sbupdate(ump, MNT_WAIT);
670 1.15 mycroft }
671 1.1 mycroft ump->um_devvp->v_specflags &= ~SI_MOUNTEDON;
672 1.9 mycroft error = VOP_CLOSE(ump->um_devvp, fs->fs_ronly ? FREAD : FREAD|FWRITE,
673 1.1 mycroft NOCRED, p);
674 1.1 mycroft vrele(ump->um_devvp);
675 1.1 mycroft free(fs->fs_csp[0], M_UFSMNT);
676 1.1 mycroft free(fs, M_UFSMNT);
677 1.1 mycroft free(ump, M_UFSMNT);
678 1.1 mycroft mp->mnt_data = (qaddr_t)0;
679 1.1 mycroft mp->mnt_flag &= ~MNT_LOCAL;
680 1.1 mycroft return (error);
681 1.1 mycroft }
682 1.1 mycroft
683 1.1 mycroft /*
684 1.1 mycroft * Flush out all the files in a filesystem.
685 1.1 mycroft */
686 1.19 christos int
687 1.1 mycroft ffs_flushfiles(mp, flags, p)
688 1.1 mycroft register struct mount *mp;
689 1.1 mycroft int flags;
690 1.1 mycroft struct proc *p;
691 1.1 mycroft {
692 1.1 mycroft extern int doforce;
693 1.1 mycroft register struct ufsmount *ump;
694 1.19 christos int error;
695 1.1 mycroft
696 1.1 mycroft if (!doforce)
697 1.1 mycroft flags &= ~FORCECLOSE;
698 1.1 mycroft ump = VFSTOUFS(mp);
699 1.1 mycroft #ifdef QUOTA
700 1.1 mycroft if (mp->mnt_flag & MNT_QUOTA) {
701 1.19 christos int i;
702 1.19 christos if ((error = vflush(mp, NULLVP, SKIPSYSTEM|flags)) != 0)
703 1.1 mycroft return (error);
704 1.1 mycroft for (i = 0; i < MAXQUOTAS; i++) {
705 1.1 mycroft if (ump->um_quotas[i] == NULLVP)
706 1.1 mycroft continue;
707 1.1 mycroft quotaoff(p, mp, i);
708 1.1 mycroft }
709 1.1 mycroft /*
710 1.1 mycroft * Here we fall through to vflush again to ensure
711 1.1 mycroft * that we have gotten rid of all the system vnodes.
712 1.1 mycroft */
713 1.1 mycroft }
714 1.1 mycroft #endif
715 1.1 mycroft error = vflush(mp, NULLVP, flags);
716 1.1 mycroft return (error);
717 1.1 mycroft }
718 1.1 mycroft
719 1.1 mycroft /*
720 1.1 mycroft * Get file system statistics.
721 1.1 mycroft */
722 1.1 mycroft int
723 1.1 mycroft ffs_statfs(mp, sbp, p)
724 1.1 mycroft struct mount *mp;
725 1.1 mycroft register struct statfs *sbp;
726 1.1 mycroft struct proc *p;
727 1.1 mycroft {
728 1.1 mycroft register struct ufsmount *ump;
729 1.1 mycroft register struct fs *fs;
730 1.1 mycroft
731 1.1 mycroft ump = VFSTOUFS(mp);
732 1.1 mycroft fs = ump->um_fs;
733 1.1 mycroft if (fs->fs_magic != FS_MAGIC)
734 1.1 mycroft panic("ffs_statfs");
735 1.1 mycroft #ifdef COMPAT_09
736 1.1 mycroft sbp->f_type = 1;
737 1.1 mycroft #else
738 1.1 mycroft sbp->f_type = 0;
739 1.1 mycroft #endif
740 1.1 mycroft sbp->f_bsize = fs->fs_fsize;
741 1.1 mycroft sbp->f_iosize = fs->fs_bsize;
742 1.1 mycroft sbp->f_blocks = fs->fs_dsize;
743 1.1 mycroft sbp->f_bfree = fs->fs_cstotal.cs_nbfree * fs->fs_frag +
744 1.1 mycroft fs->fs_cstotal.cs_nffree;
745 1.31 mjacob sbp->f_bavail = (long) (((u_int64_t) fs->fs_dsize * (u_int64_t)
746 1.38 kleink (100 - fs->fs_minfree) / (u_int64_t) 100) -
747 1.38 kleink (u_int64_t) (fs->fs_dsize - sbp->f_bfree));
748 1.1 mycroft sbp->f_files = fs->fs_ncg * fs->fs_ipg - ROOTINO;
749 1.1 mycroft sbp->f_ffree = fs->fs_cstotal.cs_nifree;
750 1.1 mycroft if (sbp != &mp->mnt_stat) {
751 1.42 perry memcpy(sbp->f_mntonname, mp->mnt_stat.f_mntonname, MNAMELEN);
752 1.42 perry memcpy(sbp->f_mntfromname, mp->mnt_stat.f_mntfromname, MNAMELEN);
753 1.1 mycroft }
754 1.12 mycroft strncpy(sbp->f_fstypename, mp->mnt_op->vfs_name, MFSNAMELEN);
755 1.1 mycroft return (0);
756 1.1 mycroft }
757 1.1 mycroft
758 1.1 mycroft /*
759 1.1 mycroft * Go through the disk queues to initiate sandbagged IO;
760 1.1 mycroft * go through the inodes to write those that have been modified;
761 1.1 mycroft * initiate the writing of the super block if it has been modified.
762 1.1 mycroft *
763 1.1 mycroft * Note: we are always called with the filesystem marked `MPBUSY'.
764 1.1 mycroft */
765 1.1 mycroft int
766 1.1 mycroft ffs_sync(mp, waitfor, cred, p)
767 1.1 mycroft struct mount *mp;
768 1.1 mycroft int waitfor;
769 1.1 mycroft struct ucred *cred;
770 1.1 mycroft struct proc *p;
771 1.1 mycroft {
772 1.33 fvdl struct vnode *vp, *nvp;
773 1.33 fvdl struct inode *ip;
774 1.33 fvdl struct ufsmount *ump = VFSTOUFS(mp);
775 1.33 fvdl struct fs *fs;
776 1.1 mycroft int error, allerror = 0;
777 1.1 mycroft
778 1.1 mycroft fs = ump->um_fs;
779 1.33 fvdl if (fs->fs_fmod != 0 && fs->fs_ronly != 0) { /* XXX */
780 1.33 fvdl printf("fs = %s\n", fs->fs_fsmnt);
781 1.33 fvdl panic("update: rofs mod");
782 1.1 mycroft }
783 1.1 mycroft /*
784 1.1 mycroft * Write back each (modified) inode.
785 1.1 mycroft */
786 1.33 fvdl simple_lock(&mntvnode_slock);
787 1.1 mycroft loop:
788 1.33 fvdl for (vp = mp->mnt_vnodelist.lh_first; vp != NULL; vp = nvp) {
789 1.1 mycroft /*
790 1.1 mycroft * If the vnode that we are about to sync is no longer
791 1.1 mycroft * associated with this mount point, start over.
792 1.1 mycroft */
793 1.1 mycroft if (vp->v_mount != mp)
794 1.1 mycroft goto loop;
795 1.33 fvdl simple_lock(&vp->v_interlock);
796 1.33 fvdl nvp = vp->v_mntvnodes.le_next;
797 1.1 mycroft ip = VTOI(vp);
798 1.1 mycroft if ((ip->i_flag &
799 1.1 mycroft (IN_ACCESS | IN_CHANGE | IN_MODIFIED | IN_UPDATE)) == 0 &&
800 1.33 fvdl vp->v_dirtyblkhd.lh_first == NULL) {
801 1.33 fvdl simple_unlock(&vp->v_interlock);
802 1.33 fvdl continue;
803 1.33 fvdl }
804 1.33 fvdl simple_unlock(&mntvnode_slock);
805 1.33 fvdl error = vget(vp, LK_EXCLUSIVE | LK_NOWAIT | LK_INTERLOCK);
806 1.33 fvdl if (error) {
807 1.33 fvdl simple_lock(&mntvnode_slock);
808 1.33 fvdl if (error == ENOENT)
809 1.33 fvdl goto loop;
810 1.1 mycroft continue;
811 1.33 fvdl }
812 1.35 kleink if ((error = VOP_FSYNC(vp, cred,
813 1.35 kleink waitfor == MNT_WAIT ? FSYNC_WAIT : 0, p)) != 0)
814 1.1 mycroft allerror = error;
815 1.1 mycroft vput(vp);
816 1.33 fvdl simple_lock(&mntvnode_slock);
817 1.1 mycroft }
818 1.33 fvdl simple_unlock(&mntvnode_slock);
819 1.1 mycroft /*
820 1.1 mycroft * Force stale file system control information to be flushed.
821 1.1 mycroft */
822 1.35 kleink if ((error = VOP_FSYNC(ump->um_devvp, cred,
823 1.35 kleink waitfor == MNT_WAIT ? FSYNC_WAIT : 0, p)) != 0)
824 1.1 mycroft allerror = error;
825 1.1 mycroft #ifdef QUOTA
826 1.1 mycroft qsync(mp);
827 1.1 mycroft #endif
828 1.33 fvdl /*
829 1.33 fvdl * Write back modified superblock.
830 1.33 fvdl */
831 1.33 fvdl if (fs->fs_fmod != 0) {
832 1.33 fvdl fs->fs_fmod = 0;
833 1.33 fvdl fs->fs_time = time.tv_sec;
834 1.33 fvdl allerror = ffs_cgupdate(ump, waitfor);
835 1.33 fvdl }
836 1.1 mycroft return (allerror);
837 1.1 mycroft }
838 1.1 mycroft
839 1.1 mycroft /*
840 1.1 mycroft * Look up a FFS dinode number to find its incore vnode, otherwise read it
841 1.1 mycroft * in from disk. If it is in core, wait for the lock bit to clear, then
842 1.1 mycroft * return the inode locked. Detection and handling of mount points must be
843 1.1 mycroft * done by the calling routine.
844 1.1 mycroft */
845 1.1 mycroft int
846 1.1 mycroft ffs_vget(mp, ino, vpp)
847 1.1 mycroft struct mount *mp;
848 1.1 mycroft ino_t ino;
849 1.1 mycroft struct vnode **vpp;
850 1.1 mycroft {
851 1.33 fvdl struct fs *fs;
852 1.33 fvdl struct inode *ip;
853 1.1 mycroft struct ufsmount *ump;
854 1.1 mycroft struct buf *bp;
855 1.1 mycroft struct vnode *vp;
856 1.1 mycroft dev_t dev;
857 1.43 thorpej int error;
858 1.44 thorpej caddr_t cp;
859 1.1 mycroft
860 1.1 mycroft ump = VFSTOUFS(mp);
861 1.1 mycroft dev = ump->um_dev;
862 1.29 fvdl do {
863 1.29 fvdl if ((*vpp = ufs_ihashget(dev, ino)) != NULL)
864 1.29 fvdl return (0);
865 1.33 fvdl } while (lockmgr(&ufs_hashlock, LK_EXCLUSIVE|LK_SLEEPFAIL, 0));
866 1.1 mycroft
867 1.1 mycroft /* Allocate a new vnode/inode. */
868 1.19 christos if ((error = getnewvnode(VT_UFS, mp, ffs_vnodeop_p, &vp)) != 0) {
869 1.1 mycroft *vpp = NULL;
870 1.33 fvdl lockmgr(&ufs_hashlock, LK_RELEASE, 0);
871 1.1 mycroft return (error);
872 1.1 mycroft }
873 1.43 thorpej /*
874 1.43 thorpej * XXX MFS ends up here, too, to allocate an inode. Should we
875 1.43 thorpej * XXX create another pool for MFS inodes?
876 1.43 thorpej */
877 1.43 thorpej ip = pool_get(&ffs_inode_pool, PR_WAITOK);
878 1.42 perry memset((caddr_t)ip, 0, sizeof(struct inode));
879 1.33 fvdl lockinit(&ip->i_lock, PINOD, "inode", 0, 0);
880 1.1 mycroft vp->v_data = ip;
881 1.1 mycroft ip->i_vnode = vp;
882 1.1 mycroft ip->i_fs = fs = ump->um_fs;
883 1.1 mycroft ip->i_dev = dev;
884 1.1 mycroft ip->i_number = ino;
885 1.1 mycroft #ifdef QUOTA
886 1.19 christos {
887 1.19 christos int i;
888 1.19 christos
889 1.19 christos for (i = 0; i < MAXQUOTAS; i++)
890 1.19 christos ip->i_dquot[i] = NODQUOT;
891 1.19 christos }
892 1.1 mycroft #endif
893 1.1 mycroft /*
894 1.1 mycroft * Put it onto its hash chain and lock it so that other requests for
895 1.1 mycroft * this inode will block if they arrive while we are sleeping waiting
896 1.1 mycroft * for old data structures to be purged or for the contents of the
897 1.1 mycroft * disk portion of this inode to be read.
898 1.1 mycroft */
899 1.1 mycroft ufs_ihashins(ip);
900 1.33 fvdl lockmgr(&ufs_hashlock, LK_RELEASE, 0);
901 1.1 mycroft
902 1.1 mycroft /* Read in the disk contents for the inode, copy into the inode. */
903 1.19 christos error = bread(ump->um_devvp, fsbtodb(fs, ino_to_fsba(fs, ino)),
904 1.19 christos (int)fs->fs_bsize, NOCRED, &bp);
905 1.19 christos if (error) {
906 1.1 mycroft /*
907 1.1 mycroft * The inode does not contain anything useful, so it would
908 1.1 mycroft * be misleading to leave it on its hash chain. With mode
909 1.1 mycroft * still zero, it will be unlinked and returned to the free
910 1.1 mycroft * list by vput().
911 1.1 mycroft */
912 1.1 mycroft vput(vp);
913 1.1 mycroft brelse(bp);
914 1.1 mycroft *vpp = NULL;
915 1.1 mycroft return (error);
916 1.1 mycroft }
917 1.44 thorpej cp = (caddr_t)bp->b_data + (ino_to_fsbo(fs, ino) * DINODE_SIZE);
918 1.34 bouyer #ifdef FFS_EI
919 1.34 bouyer if (UFS_MPNEEDSWAP(mp))
920 1.44 thorpej ffs_dinode_swap((struct dinode *)cp, &ip->i_din.ffs_din);
921 1.34 bouyer else
922 1.34 bouyer #endif
923 1.44 thorpej memcpy(&ip->i_din.ffs_din, cp, DINODE_SIZE);
924 1.1 mycroft brelse(bp);
925 1.1 mycroft
926 1.1 mycroft /*
927 1.1 mycroft * Initialize the vnode from the inode, check for aliases.
928 1.1 mycroft * Note that the underlying vnode may have changed.
929 1.1 mycroft */
930 1.40 sommerfe error = ufs_vinit(mp, ffs_specop_p, ffs_fifoop_p, &vp);
931 1.19 christos if (error) {
932 1.1 mycroft vput(vp);
933 1.1 mycroft *vpp = NULL;
934 1.1 mycroft return (error);
935 1.1 mycroft }
936 1.1 mycroft /*
937 1.1 mycroft * Finish inode initialization now that aliasing has been resolved.
938 1.1 mycroft */
939 1.1 mycroft ip->i_devvp = ump->um_devvp;
940 1.1 mycroft VREF(ip->i_devvp);
941 1.1 mycroft /*
942 1.1 mycroft * Ensure that uid and gid are correct. This is a temporary
943 1.1 mycroft * fix until fsck has been changed to do the update.
944 1.1 mycroft */
945 1.38 kleink if (fs->fs_inodefmt < FS_44INODEFMT) { /* XXX */
946 1.38 kleink ip->i_ffs_uid = ip->i_din.ffs_din.di_ouid; /* XXX */
947 1.38 kleink ip->i_ffs_gid = ip->i_din.ffs_din.di_ogid; /* XXX */
948 1.38 kleink } /* XXX */
949 1.1 mycroft
950 1.1 mycroft *vpp = vp;
951 1.1 mycroft return (0);
952 1.1 mycroft }
953 1.1 mycroft
954 1.1 mycroft /*
955 1.1 mycroft * File handle to vnode
956 1.1 mycroft *
957 1.1 mycroft * Have to be really careful about stale file handles:
958 1.1 mycroft * - check that the inode number is valid
959 1.1 mycroft * - call ffs_vget() to get the locked inode
960 1.1 mycroft * - check for an unallocated inode (i_mode == 0)
961 1.1 mycroft * - check that the given client host has export rights and return
962 1.1 mycroft * those rights via. exflagsp and credanonp
963 1.1 mycroft */
964 1.1 mycroft int
965 1.1 mycroft ffs_fhtovp(mp, fhp, nam, vpp, exflagsp, credanonp)
966 1.1 mycroft register struct mount *mp;
967 1.1 mycroft struct fid *fhp;
968 1.1 mycroft struct mbuf *nam;
969 1.1 mycroft struct vnode **vpp;
970 1.1 mycroft int *exflagsp;
971 1.1 mycroft struct ucred **credanonp;
972 1.1 mycroft {
973 1.1 mycroft register struct ufid *ufhp;
974 1.1 mycroft struct fs *fs;
975 1.1 mycroft
976 1.1 mycroft ufhp = (struct ufid *)fhp;
977 1.1 mycroft fs = VFSTOUFS(mp)->um_fs;
978 1.1 mycroft if (ufhp->ufid_ino < ROOTINO ||
979 1.1 mycroft ufhp->ufid_ino >= fs->fs_ncg * fs->fs_ipg)
980 1.1 mycroft return (ESTALE);
981 1.1 mycroft return (ufs_check_export(mp, ufhp, nam, vpp, exflagsp, credanonp));
982 1.1 mycroft }
983 1.1 mycroft
984 1.1 mycroft /*
985 1.1 mycroft * Vnode pointer to File handle
986 1.1 mycroft */
987 1.1 mycroft /* ARGSUSED */
988 1.19 christos int
989 1.1 mycroft ffs_vptofh(vp, fhp)
990 1.1 mycroft struct vnode *vp;
991 1.1 mycroft struct fid *fhp;
992 1.1 mycroft {
993 1.1 mycroft register struct inode *ip;
994 1.1 mycroft register struct ufid *ufhp;
995 1.1 mycroft
996 1.1 mycroft ip = VTOI(vp);
997 1.1 mycroft ufhp = (struct ufid *)fhp;
998 1.1 mycroft ufhp->ufid_len = sizeof(struct ufid);
999 1.1 mycroft ufhp->ufid_ino = ip->i_number;
1000 1.25 bouyer ufhp->ufid_gen = ip->i_ffs_gen;
1001 1.1 mycroft return (0);
1002 1.33 fvdl }
1003 1.33 fvdl
1004 1.33 fvdl void
1005 1.33 fvdl ffs_init()
1006 1.33 fvdl {
1007 1.33 fvdl ufs_init();
1008 1.43 thorpej
1009 1.43 thorpej pool_init(&ffs_inode_pool, sizeof(struct inode), 0, 0, 0, "ffsinopl",
1010 1.43 thorpej 0, pool_page_alloc_nointr, pool_page_free_nointr, M_FFSNODE);
1011 1.33 fvdl }
1012 1.33 fvdl
1013 1.33 fvdl int
1014 1.33 fvdl ffs_sysctl(name, namelen, oldp, oldlenp, newp, newlen, p)
1015 1.33 fvdl int *name;
1016 1.33 fvdl u_int namelen;
1017 1.33 fvdl void *oldp;
1018 1.33 fvdl size_t *oldlenp;
1019 1.33 fvdl void *newp;
1020 1.33 fvdl size_t newlen;
1021 1.33 fvdl struct proc *p;
1022 1.33 fvdl {
1023 1.33 fvdl extern int doclusterread, doclusterwrite, doreallocblks, doasyncfree;
1024 1.33 fvdl
1025 1.33 fvdl /* all sysctl names at this level are terminal */
1026 1.33 fvdl if (namelen != 1)
1027 1.33 fvdl return (ENOTDIR); /* overloaded */
1028 1.33 fvdl
1029 1.33 fvdl switch (name[0]) {
1030 1.33 fvdl case FFS_CLUSTERREAD:
1031 1.33 fvdl return (sysctl_int(oldp, oldlenp, newp, newlen,
1032 1.33 fvdl &doclusterread));
1033 1.33 fvdl case FFS_CLUSTERWRITE:
1034 1.33 fvdl return (sysctl_int(oldp, oldlenp, newp, newlen,
1035 1.33 fvdl &doclusterwrite));
1036 1.33 fvdl case FFS_REALLOCBLKS:
1037 1.33 fvdl return (sysctl_int(oldp, oldlenp, newp, newlen,
1038 1.33 fvdl &doreallocblks));
1039 1.33 fvdl case FFS_ASYNCFREE:
1040 1.33 fvdl return (sysctl_int(oldp, oldlenp, newp, newlen, &doasyncfree));
1041 1.33 fvdl default:
1042 1.33 fvdl return (EOPNOTSUPP);
1043 1.33 fvdl }
1044 1.33 fvdl /* NOTREACHED */
1045 1.1 mycroft }
1046 1.1 mycroft
1047 1.1 mycroft /*
1048 1.1 mycroft * Write a superblock and associated information back to disk.
1049 1.1 mycroft */
1050 1.1 mycroft int
1051 1.1 mycroft ffs_sbupdate(mp, waitfor)
1052 1.1 mycroft struct ufsmount *mp;
1053 1.1 mycroft int waitfor;
1054 1.1 mycroft {
1055 1.34 bouyer register struct fs *fs = mp->um_fs;
1056 1.1 mycroft register struct buf *bp;
1057 1.15 mycroft int i, error = 0;
1058 1.34 bouyer int32_t saved_nrpos = fs->fs_nrpos;
1059 1.34 bouyer int64_t saved_qbmask = fs->fs_qbmask;
1060 1.34 bouyer int64_t saved_qfmask = fs->fs_qfmask;
1061 1.34 bouyer u_int64_t saved_maxfilesize = fs->fs_maxfilesize;
1062 1.1 mycroft
1063 1.1 mycroft /* Restore compatibility to old file systems. XXX */
1064 1.1 mycroft if (fs->fs_postblformat == FS_42POSTBLFMT) /* XXX */
1065 1.34 bouyer fs->fs_nrpos = -1; /* XXX */
1066 1.1 mycroft if (fs->fs_inodefmt < FS_44INODEFMT) { /* XXX */
1067 1.5 mycroft int32_t *lp, tmp; /* XXX */
1068 1.1 mycroft /* XXX */
1069 1.38 kleink lp = (int32_t *)&fs->fs_qbmask; /* XXX nuke qfmask too */
1070 1.1 mycroft tmp = lp[4]; /* XXX */
1071 1.1 mycroft for (i = 4; i > 0; i--) /* XXX */
1072 1.1 mycroft lp[i] = lp[i-1]; /* XXX */
1073 1.1 mycroft lp[0] = tmp; /* XXX */
1074 1.1 mycroft } /* XXX */
1075 1.34 bouyer fs->fs_maxfilesize = mp->um_savedmaxfilesize; /* XXX */
1076 1.34 bouyer
1077 1.34 bouyer bp = getblk(mp->um_devvp, SBOFF >> (fs->fs_fshift - fs->fs_fsbtodb),
1078 1.34 bouyer (int)fs->fs_sbsize, 0, 0);
1079 1.42 perry memcpy(bp->b_data, fs, fs->fs_sbsize);
1080 1.34 bouyer #ifdef FFS_EI
1081 1.34 bouyer if (mp->um_flags & UFS_NEEDSWAP)
1082 1.34 bouyer ffs_sb_swap(fs, (struct fs*)bp->b_data, 1);
1083 1.34 bouyer #endif
1084 1.34 bouyer
1085 1.34 bouyer fs->fs_nrpos = saved_nrpos; /* XXX */
1086 1.34 bouyer fs->fs_qbmask = saved_qbmask; /* XXX */
1087 1.34 bouyer fs->fs_qfmask = saved_qfmask; /* XXX */
1088 1.34 bouyer fs->fs_maxfilesize = saved_maxfilesize; /* XXX */
1089 1.34 bouyer
1090 1.1 mycroft if (waitfor == MNT_WAIT)
1091 1.1 mycroft error = bwrite(bp);
1092 1.1 mycroft else
1093 1.1 mycroft bawrite(bp);
1094 1.15 mycroft return (error);
1095 1.15 mycroft }
1096 1.15 mycroft
1097 1.15 mycroft int
1098 1.15 mycroft ffs_cgupdate(mp, waitfor)
1099 1.15 mycroft struct ufsmount *mp;
1100 1.15 mycroft int waitfor;
1101 1.15 mycroft {
1102 1.15 mycroft register struct fs *fs = mp->um_fs;
1103 1.15 mycroft register struct buf *bp;
1104 1.15 mycroft int blks;
1105 1.15 mycroft caddr_t space;
1106 1.15 mycroft int i, size, error = 0, allerror = 0;
1107 1.15 mycroft
1108 1.15 mycroft allerror = ffs_sbupdate(mp, waitfor);
1109 1.1 mycroft blks = howmany(fs->fs_cssize, fs->fs_fsize);
1110 1.1 mycroft space = (caddr_t)fs->fs_csp[0];
1111 1.1 mycroft for (i = 0; i < blks; i += fs->fs_frag) {
1112 1.1 mycroft size = fs->fs_bsize;
1113 1.1 mycroft if (i + fs->fs_frag > blks)
1114 1.1 mycroft size = (blks - i) * fs->fs_fsize;
1115 1.1 mycroft bp = getblk(mp->um_devvp, fsbtodb(fs, fs->fs_csaddr + i),
1116 1.1 mycroft size, 0, 0);
1117 1.34 bouyer #ifdef FFS_EI
1118 1.34 bouyer if (mp->um_flags & UFS_NEEDSWAP)
1119 1.34 bouyer ffs_csum_swap((struct csum*)space,
1120 1.38 kleink (struct csum*)bp->b_data, size);
1121 1.34 bouyer else
1122 1.34 bouyer #endif
1123 1.42 perry memcpy(bp->b_data, space, (u_int)size);
1124 1.1 mycroft space += size;
1125 1.1 mycroft if (waitfor == MNT_WAIT)
1126 1.1 mycroft error = bwrite(bp);
1127 1.1 mycroft else
1128 1.1 mycroft bawrite(bp);
1129 1.1 mycroft }
1130 1.15 mycroft if (!allerror && error)
1131 1.15 mycroft allerror = error;
1132 1.15 mycroft return (allerror);
1133 1.1 mycroft }
1134