ext2fs_vfsops.c revision 1.154 1 /* $NetBSD: ext2fs_vfsops.c,v 1.154 2010/01/31 10:36:20 mlelstv Exp $ */
2
3 /*
4 * Copyright (c) 1989, 1991, 1993, 1994
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. Neither the name of the University nor the names of its contributors
16 * may be used to endorse or promote products derived from this software
17 * without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 *
31 * @(#)ffs_vfsops.c 8.14 (Berkeley) 11/28/94
32 * Modified for ext2fs by Manuel Bouyer.
33 */
34
35 /*
36 * Copyright (c) 1997 Manuel Bouyer.
37 *
38 * Redistribution and use in source and binary forms, with or without
39 * modification, are permitted provided that the following conditions
40 * are met:
41 * 1. Redistributions of source code must retain the above copyright
42 * notice, this list of conditions and the following disclaimer.
43 * 2. Redistributions in binary form must reproduce the above copyright
44 * notice, this list of conditions and the following disclaimer in the
45 * documentation and/or other materials provided with the distribution.
46 *
47 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
48 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
49 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
50 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
51 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
52 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
53 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
54 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
55 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
56 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
57 *
58 * @(#)ffs_vfsops.c 8.14 (Berkeley) 11/28/94
59 * Modified for ext2fs by Manuel Bouyer.
60 */
61
62 #include <sys/cdefs.h>
63 __KERNEL_RCSID(0, "$NetBSD: ext2fs_vfsops.c,v 1.154 2010/01/31 10:36:20 mlelstv Exp $");
64
65 #if defined(_KERNEL_OPT)
66 #include "opt_compat_netbsd.h"
67 #endif
68
69 #include <sys/param.h>
70 #include <sys/systm.h>
71 #include <sys/sysctl.h>
72 #include <sys/namei.h>
73 #include <sys/proc.h>
74 #include <sys/kernel.h>
75 #include <sys/vnode.h>
76 #include <sys/socket.h>
77 #include <sys/mount.h>
78 #include <sys/buf.h>
79 #include <sys/device.h>
80 #include <sys/mbuf.h>
81 #include <sys/file.h>
82 #include <sys/disklabel.h>
83 #include <sys/ioctl.h>
84 #include <sys/errno.h>
85 #include <sys/malloc.h>
86 #include <sys/pool.h>
87 #include <sys/lock.h>
88 #include <sys/conf.h>
89 #include <sys/kauth.h>
90 #include <sys/module.h>
91
92 #include <miscfs/genfs/genfs.h>
93 #include <miscfs/specfs/specdev.h>
94
95 #include <ufs/ufs/quota.h>
96 #include <ufs/ufs/ufsmount.h>
97 #include <ufs/ufs/inode.h>
98 #include <ufs/ufs/dir.h>
99 #include <ufs/ufs/ufs_extern.h>
100
101 #include <ufs/ext2fs/ext2fs.h>
102 #include <ufs/ext2fs/ext2fs_dir.h>
103 #include <ufs/ext2fs/ext2fs_extern.h>
104
105 MODULE(MODULE_CLASS_VFS, ext2fs, "ffs");
106
107 int ext2fs_sbupdate(struct ufsmount *, int);
108 static int ext2fs_checksb(struct ext2fs *, int);
109
110 static struct sysctllog *ext2fs_sysctl_log;
111
112 extern const struct vnodeopv_desc ext2fs_vnodeop_opv_desc;
113 extern const struct vnodeopv_desc ext2fs_specop_opv_desc;
114 extern const struct vnodeopv_desc ext2fs_fifoop_opv_desc;
115
116 const struct vnodeopv_desc * const ext2fs_vnodeopv_descs[] = {
117 &ext2fs_vnodeop_opv_desc,
118 &ext2fs_specop_opv_desc,
119 &ext2fs_fifoop_opv_desc,
120 NULL,
121 };
122
123 struct vfsops ext2fs_vfsops = {
124 MOUNT_EXT2FS,
125 sizeof (struct ufs_args),
126 ext2fs_mount,
127 ufs_start,
128 ext2fs_unmount,
129 ufs_root,
130 ufs_quotactl,
131 ext2fs_statvfs,
132 ext2fs_sync,
133 ext2fs_vget,
134 ext2fs_fhtovp,
135 ext2fs_vptofh,
136 ext2fs_init,
137 ext2fs_reinit,
138 ext2fs_done,
139 ext2fs_mountroot,
140 (int (*)(struct mount *, struct vnode *, struct timespec *)) eopnotsupp,
141 vfs_stdextattrctl,
142 (void *)eopnotsupp, /* vfs_suspendctl */
143 genfs_renamelock_enter,
144 genfs_renamelock_exit,
145 (void *)eopnotsupp,
146 ext2fs_vnodeopv_descs,
147 0,
148 { NULL, NULL },
149 };
150
151 static const struct genfs_ops ext2fs_genfsops = {
152 .gop_size = genfs_size,
153 .gop_alloc = ext2fs_gop_alloc,
154 .gop_write = genfs_gop_write,
155 .gop_markupdate = ufs_gop_markupdate,
156 };
157
158 static const struct ufs_ops ext2fs_ufsops = {
159 .uo_itimes = ext2fs_itimes,
160 .uo_update = ext2fs_update,
161 .uo_vfree = ext2fs_vfree,
162 .uo_unmark_vnode = (void (*)(vnode_t *))nullop,
163 };
164
165 /* Fill in the inode uid/gid from ext2 halves. */
166 void
167 ext2fs_set_inode_guid(struct inode *ip)
168 {
169
170 ip->i_gid = ip->i_e2fs_gid;
171 ip->i_uid = ip->i_e2fs_uid;
172 if (ip->i_e2fs->e2fs.e2fs_rev > E2FS_REV0) {
173 ip->i_gid |= ip->i_e2fs_gid_high << 16;
174 ip->i_uid |= ip->i_e2fs_uid_high << 16;
175 }
176 }
177
178 static int
179 ext2fs_modcmd(modcmd_t cmd, void *arg)
180 {
181 int error;
182
183 switch (cmd) {
184 case MODULE_CMD_INIT:
185 error = vfs_attach(&ext2fs_vfsops);
186 if (error != 0)
187 break;
188 sysctl_createv(&ext2fs_sysctl_log, 0, NULL, NULL,
189 CTLFLAG_PERMANENT,
190 CTLTYPE_NODE, "vfs", NULL,
191 NULL, 0, NULL, 0,
192 CTL_VFS, CTL_EOL);
193 sysctl_createv(&ext2fs_sysctl_log, 0, NULL, NULL,
194 CTLFLAG_PERMANENT,
195 CTLTYPE_NODE, "ext2fs",
196 SYSCTL_DESCR("Linux EXT2FS file system"),
197 NULL, 0, NULL, 0,
198 CTL_VFS, 17, CTL_EOL);
199 /*
200 * XXX the "17" above could be dynamic, thereby eliminating
201 * one more instance of the "number to vfs" mapping problem,
202 * but "17" is the order as taken from sys/mount.h
203 */
204 break;
205 case MODULE_CMD_FINI:
206 error = vfs_detach(&ext2fs_vfsops);
207 if (error != 0)
208 break;
209 sysctl_teardown(&ext2fs_sysctl_log);
210 break;
211 default:
212 error = ENOTTY;
213 break;
214 }
215
216 return (error);
217 }
218
219 /*
220 * XXX Same structure as FFS inodes? Should we share a common pool?
221 */
222 struct pool ext2fs_inode_pool;
223 struct pool ext2fs_dinode_pool;
224
225 extern u_long ext2gennumber;
226
227 void
228 ext2fs_init(void)
229 {
230
231 pool_init(&ext2fs_inode_pool, sizeof(struct inode), 0, 0, 0,
232 "ext2fsinopl", &pool_allocator_nointr, IPL_NONE);
233 pool_init(&ext2fs_dinode_pool, sizeof(struct ext2fs_dinode), 0, 0, 0,
234 "ext2dinopl", &pool_allocator_nointr, IPL_NONE);
235 ufs_init();
236 }
237
238 void
239 ext2fs_reinit(void)
240 {
241 ufs_reinit();
242 }
243
244 void
245 ext2fs_done(void)
246 {
247
248 ufs_done();
249 pool_destroy(&ext2fs_inode_pool);
250 pool_destroy(&ext2fs_dinode_pool);
251 }
252
253 /*
254 * Called by main() when ext2fs is going to be mounted as root.
255 *
256 * Name is updated by mount(8) after booting.
257 */
258 #define ROOTNAME "root_device"
259
260 int
261 ext2fs_mountroot(void)
262 {
263 extern struct vnode *rootvp;
264 struct m_ext2fs *fs;
265 struct mount *mp;
266 struct ufsmount *ump;
267 int error;
268
269 if (device_class(root_device) != DV_DISK)
270 return (ENODEV);
271
272 if ((error = vfs_rootmountalloc(MOUNT_EXT2FS, "root_device", &mp))) {
273 vrele(rootvp);
274 return (error);
275 }
276
277 if ((error = ext2fs_mountfs(rootvp, mp)) != 0) {
278 vfs_unbusy(mp, false, NULL);
279 vfs_destroy(mp);
280 return (error);
281 }
282 mutex_enter(&mountlist_lock);
283 CIRCLEQ_INSERT_TAIL(&mountlist, mp, mnt_list);
284 mutex_exit(&mountlist_lock);
285 ump = VFSTOUFS(mp);
286 fs = ump->um_e2fs;
287 memset(fs->e2fs_fsmnt, 0, sizeof(fs->e2fs_fsmnt));
288 (void) copystr(mp->mnt_stat.f_mntonname, fs->e2fs_fsmnt,
289 sizeof(fs->e2fs_fsmnt) - 1, 0);
290 if (fs->e2fs.e2fs_rev > E2FS_REV0) {
291 memset(fs->e2fs.e2fs_fsmnt, 0, sizeof(fs->e2fs.e2fs_fsmnt));
292 (void) copystr(mp->mnt_stat.f_mntonname, fs->e2fs.e2fs_fsmnt,
293 sizeof(fs->e2fs.e2fs_fsmnt) - 1, 0);
294 }
295 (void)ext2fs_statvfs(mp, &mp->mnt_stat);
296 vfs_unbusy(mp, false, NULL);
297 setrootfstime((time_t)fs->e2fs.e2fs_wtime);
298 return (0);
299 }
300
301 /*
302 * VFS Operations.
303 *
304 * mount system call
305 */
306 int
307 ext2fs_mount(struct mount *mp, const char *path, void *data, size_t *data_len)
308 {
309 struct lwp *l = curlwp;
310 struct vnode *devvp;
311 struct ufs_args *args = data;
312 struct ufsmount *ump = NULL;
313 struct m_ext2fs *fs;
314 size_t size;
315 int error = 0, flags, update;
316 mode_t accessmode;
317
318 if (*data_len < sizeof *args)
319 return EINVAL;
320
321 if (mp->mnt_flag & MNT_GETARGS) {
322 ump = VFSTOUFS(mp);
323 if (ump == NULL)
324 return EIO;
325 memset(args, 0, sizeof *args);
326 args->fspec = NULL;
327 *data_len = sizeof *args;
328 return 0;
329 }
330
331 update = mp->mnt_flag & MNT_UPDATE;
332
333 /* Check arguments */
334 if (args->fspec != NULL) {
335 /*
336 * Look up the name and verify that it's sane.
337 */
338 error = namei_simple_user(args->fspec,
339 NSM_FOLLOW_NOEMULROOT, &devvp);
340 if (error != 0)
341 return (error);
342
343 if (!update) {
344 /*
345 * Be sure this is a valid block device
346 */
347 if (devvp->v_type != VBLK)
348 error = ENOTBLK;
349 else if (bdevsw_lookup(devvp->v_rdev) == NULL)
350 error = ENXIO;
351 } else {
352 /*
353 * Be sure we're still naming the same device
354 * used for our initial mount
355 */
356 ump = VFSTOUFS(mp);
357 if (devvp != ump->um_devvp) {
358 if (devvp->v_rdev != ump->um_devvp->v_rdev)
359 error = EINVAL;
360 else {
361 vrele(devvp);
362 devvp = ump->um_devvp;
363 vref(devvp);
364 }
365 }
366 }
367 } else {
368 if (!update) {
369 /* New mounts must have a filename for the device */
370 return (EINVAL);
371 } else {
372 ump = VFSTOUFS(mp);
373 devvp = ump->um_devvp;
374 vref(devvp);
375 }
376 }
377
378 /*
379 * If mount by non-root, then verify that user has necessary
380 * permissions on the device.
381 *
382 * Permission to update a mount is checked higher, so here we presume
383 * updating the mount is okay (for example, as far as securelevel goes)
384 * which leaves us with the normal check.
385 */
386 if (error == 0) {
387 accessmode = VREAD;
388 if (update ?
389 (mp->mnt_iflag & IMNT_WANTRDWR) != 0 :
390 (mp->mnt_flag & MNT_RDONLY) == 0)
391 accessmode |= VWRITE;
392 vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
393 error = genfs_can_mount(devvp, accessmode, l->l_cred);
394 VOP_UNLOCK(devvp, 0);
395 }
396
397 if (error) {
398 vrele(devvp);
399 return (error);
400 }
401
402 if (!update) {
403 int xflags;
404
405 if (mp->mnt_flag & MNT_RDONLY)
406 xflags = FREAD;
407 else
408 xflags = FREAD|FWRITE;
409 error = VOP_OPEN(devvp, xflags, FSCRED);
410 if (error)
411 goto fail;
412 error = ext2fs_mountfs(devvp, mp);
413 if (error) {
414 vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
415 (void)VOP_CLOSE(devvp, xflags, NOCRED);
416 VOP_UNLOCK(devvp, 0);
417 goto fail;
418 }
419
420 ump = VFSTOUFS(mp);
421 fs = ump->um_e2fs;
422 } else {
423 /*
424 * Update the mount.
425 */
426
427 /*
428 * The initial mount got a reference on this
429 * device, so drop the one obtained via
430 * namei(), above.
431 */
432 vrele(devvp);
433
434 ump = VFSTOUFS(mp);
435 fs = ump->um_e2fs;
436 if (fs->e2fs_ronly == 0 && (mp->mnt_flag & MNT_RDONLY)) {
437 /*
438 * Changing from r/w to r/o
439 */
440 flags = WRITECLOSE;
441 if (mp->mnt_flag & MNT_FORCE)
442 flags |= FORCECLOSE;
443 error = ext2fs_flushfiles(mp, flags);
444 if (error == 0 &&
445 ext2fs_cgupdate(ump, MNT_WAIT) == 0 &&
446 (fs->e2fs.e2fs_state & E2FS_ERRORS) == 0) {
447 fs->e2fs.e2fs_state = E2FS_ISCLEAN;
448 (void) ext2fs_sbupdate(ump, MNT_WAIT);
449 }
450 if (error)
451 return (error);
452 fs->e2fs_ronly = 1;
453 }
454
455 if (mp->mnt_flag & MNT_RELOAD) {
456 error = ext2fs_reload(mp, l->l_cred, l);
457 if (error)
458 return (error);
459 }
460
461 if (fs->e2fs_ronly && (mp->mnt_iflag & IMNT_WANTRDWR)) {
462 /*
463 * Changing from read-only to read/write
464 */
465 fs->e2fs_ronly = 0;
466 if (fs->e2fs.e2fs_state == E2FS_ISCLEAN)
467 fs->e2fs.e2fs_state = 0;
468 else
469 fs->e2fs.e2fs_state = E2FS_ERRORS;
470 fs->e2fs_fmod = 1;
471 }
472 if (args->fspec == NULL)
473 return 0;
474 }
475
476 error = set_statvfs_info(path, UIO_USERSPACE, args->fspec,
477 UIO_USERSPACE, mp->mnt_op->vfs_name, mp, l);
478 (void) copystr(mp->mnt_stat.f_mntonname, fs->e2fs_fsmnt,
479 sizeof(fs->e2fs_fsmnt) - 1, &size);
480 memset(fs->e2fs_fsmnt + size, 0, sizeof(fs->e2fs_fsmnt) - size);
481 if (fs->e2fs.e2fs_rev > E2FS_REV0) {
482 (void) copystr(mp->mnt_stat.f_mntonname, fs->e2fs.e2fs_fsmnt,
483 sizeof(fs->e2fs.e2fs_fsmnt) - 1, &size);
484 memset(fs->e2fs.e2fs_fsmnt, 0,
485 sizeof(fs->e2fs.e2fs_fsmnt) - size);
486 }
487 if (fs->e2fs_fmod != 0) { /* XXX */
488 fs->e2fs_fmod = 0;
489 if (fs->e2fs.e2fs_state == 0)
490 fs->e2fs.e2fs_wtime = time_second;
491 else
492 printf("%s: file system not clean; please fsck(8)\n",
493 mp->mnt_stat.f_mntfromname);
494 (void) ext2fs_cgupdate(ump, MNT_WAIT);
495 }
496 return (error);
497
498 fail:
499 vrele(devvp);
500 return (error);
501 }
502
503 /*
504 * Reload all incore data for a filesystem (used after running fsck on
505 * the root filesystem and finding things to fix). The filesystem must
506 * be mounted read-only.
507 *
508 * Things to do to update the mount:
509 * 1) invalidate all cached meta-data.
510 * 2) re-read superblock from disk.
511 * 3) re-read summary information from disk.
512 * 4) invalidate all inactive vnodes.
513 * 5) invalidate all cached file data.
514 * 6) re-read inode data for all active vnodes.
515 */
516 int
517 ext2fs_reload(struct mount *mp, kauth_cred_t cred, struct lwp *l)
518 {
519 struct vnode *vp, *mvp, *devvp;
520 struct inode *ip;
521 struct buf *bp;
522 struct m_ext2fs *fs;
523 struct ext2fs *newfs;
524 int i, error;
525 uint64_t numsecs;
526 unsigned secsize;
527 void *cp;
528 struct ufsmount *ump;
529
530 if ((mp->mnt_flag & MNT_RDONLY) == 0)
531 return (EINVAL);
532
533 ump = VFSTOUFS(mp);
534 /*
535 * Step 1: invalidate all cached meta-data.
536 */
537 devvp = ump->um_devvp;
538 vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
539 error = vinvalbuf(devvp, 0, cred, l, 0, 0);
540 VOP_UNLOCK(devvp, 0);
541 if (error)
542 panic("ext2fs_reload: dirty1");
543 /*
544 * Step 2: re-read superblock from disk.
545 */
546 error = getdisksize(devvp, &numsecs, &secsize);
547 if (error) {
548 brelse(bp, 0);
549 return (error);
550 }
551 error = bread(devvp, (daddr_t)(SBOFF / secsize), SBSIZE, NOCRED, 0, &bp);
552 if (error) {
553 brelse(bp, 0);
554 return (error);
555 }
556 newfs = (struct ext2fs *)bp->b_data;
557 error = ext2fs_checksb(newfs, (mp->mnt_flag & MNT_RDONLY) != 0);
558 if (error) {
559 brelse(bp, 0);
560 return (error);
561 }
562
563 fs = ump->um_e2fs;
564 /*
565 * copy in new superblock, and compute in-memory values
566 */
567 e2fs_sbload(newfs, &fs->e2fs);
568 fs->e2fs_ncg =
569 howmany(fs->e2fs.e2fs_bcount - fs->e2fs.e2fs_first_dblock,
570 fs->e2fs.e2fs_bpg);
571 /* XXX assume hw bsize = 512 */
572 fs->e2fs_fsbtodb = fs->e2fs.e2fs_log_bsize + 1;
573 fs->e2fs_bsize = MINBSIZE << fs->e2fs.e2fs_log_bsize;
574 fs->e2fs_bshift = LOG_MINBSIZE + fs->e2fs.e2fs_log_bsize;
575 fs->e2fs_qbmask = fs->e2fs_bsize - 1;
576 fs->e2fs_bmask = ~fs->e2fs_qbmask;
577 fs->e2fs_ngdb =
578 howmany(fs->e2fs_ncg, fs->e2fs_bsize / sizeof(struct ext2_gd));
579 fs->e2fs_ipb = fs->e2fs_bsize / EXT2_DINODE_SIZE(fs);
580 fs->e2fs_itpg = fs->e2fs.e2fs_ipg / fs->e2fs_ipb;
581 brelse(bp, 0);
582
583 /*
584 * Step 3: re-read summary information from disk.
585 */
586
587 for (i = 0; i < fs->e2fs_ngdb; i++) {
588 error = bread(devvp ,
589 fsbtodb(fs, fs->e2fs.e2fs_first_dblock +
590 1 /* superblock */ + i),
591 fs->e2fs_bsize, NOCRED, 0, &bp);
592 if (error) {
593 brelse(bp, 0);
594 return (error);
595 }
596 e2fs_cgload((struct ext2_gd *)bp->b_data,
597 &fs->e2fs_gd[i * fs->e2fs_bsize / sizeof(struct ext2_gd)],
598 fs->e2fs_bsize);
599 brelse(bp, 0);
600 }
601
602 /* Allocate a marker vnode. */
603 if ((mvp = vnalloc(mp)) == NULL)
604 return ENOMEM;
605 /*
606 * NOTE: not using the TAILQ_FOREACH here since in this loop vgone()
607 * and vclean() can be called indirectly
608 */
609 mutex_enter(&mntvnode_lock);
610 loop:
611 for (vp = TAILQ_FIRST(&mp->mnt_vnodelist); vp; vp = vunmark(mvp)) {
612 vmark(mvp, vp);
613 if (vp->v_mount != mp || vismarker(vp))
614 continue;
615 /*
616 * Step 4: invalidate all inactive vnodes.
617 */
618 if (vrecycle(vp, &mntvnode_lock, l)) {
619 mutex_enter(&mntvnode_lock);
620 (void)vunmark(mvp);
621 goto loop;
622 }
623 /*
624 * Step 5: invalidate all cached file data.
625 */
626 mutex_enter(&vp->v_interlock);
627 mutex_exit(&mntvnode_lock);
628 if (vget(vp, LK_EXCLUSIVE | LK_INTERLOCK)) {
629 mutex_enter(&mntvnode_lock);
630 (void)vunmark(mvp);
631 goto loop;
632 }
633 if (vinvalbuf(vp, 0, cred, l, 0, 0))
634 panic("ext2fs_reload: dirty2");
635 /*
636 * Step 6: re-read inode data for all active vnodes.
637 */
638 ip = VTOI(vp);
639 error = bread(devvp, fsbtodb(fs, ino_to_fsba(fs, ip->i_number)),
640 (int)fs->e2fs_bsize, NOCRED, 0, &bp);
641 if (error) {
642 vput(vp);
643 mutex_enter(&mntvnode_lock);
644 (void)vunmark(mvp);
645 break;
646 }
647 cp = (char *)bp->b_data +
648 (ino_to_fsbo(fs, ip->i_number) * EXT2_DINODE_SIZE(fs));
649 e2fs_iload((struct ext2fs_dinode *)cp, ip->i_din.e2fs_din);
650 ext2fs_set_inode_guid(ip);
651 brelse(bp, 0);
652 vput(vp);
653 mutex_enter(&mntvnode_lock);
654 }
655 mutex_exit(&mntvnode_lock);
656 vnfree(mvp);
657 return (error);
658 }
659
660 /*
661 * Common code for mount and mountroot
662 */
663 int
664 ext2fs_mountfs(struct vnode *devvp, struct mount *mp)
665 {
666 struct lwp *l = curlwp;
667 struct ufsmount *ump;
668 struct buf *bp;
669 struct ext2fs *fs;
670 struct m_ext2fs *m_fs;
671 dev_t dev;
672 int error, i, ronly;
673 uint64_t numsecs;
674 unsigned secsize;
675 kauth_cred_t cred;
676 struct proc *p;
677
678 dev = devvp->v_rdev;
679 p = l ? l->l_proc : NULL;
680 cred = l ? l->l_cred : NOCRED;
681
682 /* Flush out any old buffers remaining from a previous use. */
683 vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
684 error = vinvalbuf(devvp, V_SAVE, cred, l, 0, 0);
685 VOP_UNLOCK(devvp, 0);
686 if (error)
687 return (error);
688
689 ronly = (mp->mnt_flag & MNT_RDONLY) != 0;
690 error = getdisksize(devvp, &numsecs, &secsize);
691 if (error)
692 return (error);
693
694 bp = NULL;
695 ump = NULL;
696
697 #ifdef DEBUG_EXT2
698 printf("ext2 sb size: %d\n", sizeof(struct ext2fs));
699 #endif
700 error = bread(devvp, (SBOFF / secsize), SBSIZE, cred, 0, &bp);
701 if (error)
702 goto out;
703 fs = (struct ext2fs *)bp->b_data;
704 error = ext2fs_checksb(fs, ronly);
705 if (error)
706 goto out;
707 ump = malloc(sizeof(*ump), M_UFSMNT, M_WAITOK);
708 memset(ump, 0, sizeof(*ump));
709 ump->um_fstype = UFS1;
710 ump->um_ops = &ext2fs_ufsops;
711 ump->um_e2fs = malloc(sizeof(struct m_ext2fs), M_UFSMNT, M_WAITOK);
712 memset(ump->um_e2fs, 0, sizeof(struct m_ext2fs));
713 e2fs_sbload((struct ext2fs *)bp->b_data, &ump->um_e2fs->e2fs);
714 brelse(bp, 0);
715 bp = NULL;
716 m_fs = ump->um_e2fs;
717 m_fs->e2fs_ronly = ronly;
718
719 #ifdef DEBUG_EXT2
720 printf("ext2 ino size %d\n", EXT2_DINODE_SIZE(m_fs));
721 #endif
722 if (ronly == 0) {
723 if (m_fs->e2fs.e2fs_state == E2FS_ISCLEAN)
724 m_fs->e2fs.e2fs_state = 0;
725 else
726 m_fs->e2fs.e2fs_state = E2FS_ERRORS;
727 m_fs->e2fs_fmod = 1;
728 }
729
730 /* compute dynamic sb infos */
731 m_fs->e2fs_ncg =
732 howmany(m_fs->e2fs.e2fs_bcount - m_fs->e2fs.e2fs_first_dblock,
733 m_fs->e2fs.e2fs_bpg);
734 /* XXX assume hw bsize = 512 */
735 m_fs->e2fs_fsbtodb = m_fs->e2fs.e2fs_log_bsize + 1;
736 m_fs->e2fs_bsize = MINBSIZE << m_fs->e2fs.e2fs_log_bsize;
737 m_fs->e2fs_bshift = LOG_MINBSIZE + m_fs->e2fs.e2fs_log_bsize;
738 m_fs->e2fs_qbmask = m_fs->e2fs_bsize - 1;
739 m_fs->e2fs_bmask = ~m_fs->e2fs_qbmask;
740 m_fs->e2fs_ngdb =
741 howmany(m_fs->e2fs_ncg, m_fs->e2fs_bsize / sizeof(struct ext2_gd));
742 m_fs->e2fs_ipb = m_fs->e2fs_bsize / EXT2_DINODE_SIZE(m_fs);
743 m_fs->e2fs_itpg = m_fs->e2fs.e2fs_ipg / m_fs->e2fs_ipb;
744
745 m_fs->e2fs_gd = malloc(m_fs->e2fs_ngdb * m_fs->e2fs_bsize,
746 M_UFSMNT, M_WAITOK);
747 for (i = 0; i < m_fs->e2fs_ngdb; i++) {
748 error = bread(devvp ,
749 fsbtodb(m_fs, m_fs->e2fs.e2fs_first_dblock +
750 1 /* superblock */ + i),
751 m_fs->e2fs_bsize, NOCRED, 0, &bp);
752 if (error) {
753 free(m_fs->e2fs_gd, M_UFSMNT);
754 goto out;
755 }
756 e2fs_cgload((struct ext2_gd *)bp->b_data,
757 &m_fs->e2fs_gd[
758 i * m_fs->e2fs_bsize / sizeof(struct ext2_gd)],
759 m_fs->e2fs_bsize);
760 brelse(bp, 0);
761 bp = NULL;
762 }
763
764 mp->mnt_data = ump;
765 mp->mnt_stat.f_fsidx.__fsid_val[0] = (long)dev;
766 mp->mnt_stat.f_fsidx.__fsid_val[1] = makefstype(MOUNT_EXT2FS);
767 mp->mnt_stat.f_fsid = mp->mnt_stat.f_fsidx.__fsid_val[0];
768 mp->mnt_stat.f_namemax = EXT2FS_MAXNAMLEN;
769 mp->mnt_flag |= MNT_LOCAL;
770 mp->mnt_dev_bshift = DEV_BSHIFT; /* XXX */
771 mp->mnt_fs_bshift = m_fs->e2fs_bshift;
772 mp->mnt_iflag |= IMNT_DTYPE;
773 ump->um_flags = 0;
774 ump->um_mountp = mp;
775 ump->um_dev = dev;
776 ump->um_devvp = devvp;
777 ump->um_nindir = NINDIR(m_fs);
778 ump->um_lognindir = ffs(NINDIR(m_fs)) - 1;
779 ump->um_bptrtodb = m_fs->e2fs_fsbtodb;
780 ump->um_seqinc = 1; /* no frags */
781 ump->um_maxsymlinklen = EXT2_MAXSYMLINKLEN;
782 ump->um_dirblksiz = m_fs->e2fs_bsize;
783 ump->um_maxfilesize = ((uint64_t)0x80000000 * m_fs->e2fs_bsize - 1);
784 devvp->v_specmountpoint = mp;
785 return (0);
786
787 out:
788 KASSERT(bp != NULL);
789 brelse(bp, 0);
790 if (ump) {
791 free(ump->um_e2fs, M_UFSMNT);
792 free(ump, M_UFSMNT);
793 mp->mnt_data = NULL;
794 }
795 return (error);
796 }
797
798 /*
799 * unmount system call
800 */
801 int
802 ext2fs_unmount(struct mount *mp, int mntflags)
803 {
804 struct ufsmount *ump;
805 struct m_ext2fs *fs;
806 int error, flags;
807
808 flags = 0;
809 if (mntflags & MNT_FORCE)
810 flags |= FORCECLOSE;
811 if ((error = ext2fs_flushfiles(mp, flags)) != 0)
812 return (error);
813 ump = VFSTOUFS(mp);
814 fs = ump->um_e2fs;
815 if (fs->e2fs_ronly == 0 &&
816 ext2fs_cgupdate(ump, MNT_WAIT) == 0 &&
817 (fs->e2fs.e2fs_state & E2FS_ERRORS) == 0) {
818 fs->e2fs.e2fs_state = E2FS_ISCLEAN;
819 (void) ext2fs_sbupdate(ump, MNT_WAIT);
820 }
821 if (ump->um_devvp->v_type != VBAD)
822 ump->um_devvp->v_specmountpoint = NULL;
823 vn_lock(ump->um_devvp, LK_EXCLUSIVE | LK_RETRY);
824 error = VOP_CLOSE(ump->um_devvp, fs->e2fs_ronly ? FREAD : FREAD|FWRITE,
825 NOCRED);
826 vput(ump->um_devvp);
827 free(fs->e2fs_gd, M_UFSMNT);
828 free(fs, M_UFSMNT);
829 free(ump, M_UFSMNT);
830 mp->mnt_data = NULL;
831 mp->mnt_flag &= ~MNT_LOCAL;
832 return (error);
833 }
834
835 /*
836 * Flush out all the files in a filesystem.
837 */
838 int
839 ext2fs_flushfiles(struct mount *mp, int flags)
840 {
841 extern int doforce;
842 int error;
843
844 if (!doforce)
845 flags &= ~FORCECLOSE;
846 error = vflush(mp, NULLVP, flags);
847 return (error);
848 }
849
850 /*
851 * Get file system statistics.
852 */
853 int
854 ext2fs_statvfs(struct mount *mp, struct statvfs *sbp)
855 {
856 struct ufsmount *ump;
857 struct m_ext2fs *fs;
858 uint32_t overhead, overhead_per_group, ngdb;
859 int i, ngroups;
860
861 ump = VFSTOUFS(mp);
862 fs = ump->um_e2fs;
863 if (fs->e2fs.e2fs_magic != E2FS_MAGIC)
864 panic("ext2fs_statvfs");
865
866 /*
867 * Compute the overhead (FS structures)
868 */
869 overhead_per_group =
870 1 /* block bitmap */ +
871 1 /* inode bitmap */ +
872 fs->e2fs_itpg;
873 overhead = fs->e2fs.e2fs_first_dblock +
874 fs->e2fs_ncg * overhead_per_group;
875 if (fs->e2fs.e2fs_rev > E2FS_REV0 &&
876 fs->e2fs.e2fs_features_rocompat & EXT2F_ROCOMPAT_SPARSESUPER) {
877 for (i = 0, ngroups = 0; i < fs->e2fs_ncg; i++) {
878 if (cg_has_sb(i))
879 ngroups++;
880 }
881 } else {
882 ngroups = fs->e2fs_ncg;
883 }
884 ngdb = fs->e2fs_ngdb;
885 if (fs->e2fs.e2fs_rev > E2FS_REV0 &&
886 fs->e2fs.e2fs_features_compat & EXT2F_COMPAT_RESIZE)
887 ngdb += fs->e2fs.e2fs_reserved_ngdb;
888 overhead += ngroups * (1 /* superblock */ + ngdb);
889
890 sbp->f_bsize = fs->e2fs_bsize;
891 sbp->f_frsize = MINBSIZE << fs->e2fs.e2fs_fsize;
892 sbp->f_iosize = fs->e2fs_bsize;
893 sbp->f_blocks = fs->e2fs.e2fs_bcount - overhead;
894 sbp->f_bfree = fs->e2fs.e2fs_fbcount;
895 sbp->f_bresvd = fs->e2fs.e2fs_rbcount;
896 if (sbp->f_bfree > sbp->f_bresvd)
897 sbp->f_bavail = sbp->f_bfree - sbp->f_bresvd;
898 else
899 sbp->f_bavail = 0;
900 sbp->f_files = fs->e2fs.e2fs_icount;
901 sbp->f_ffree = fs->e2fs.e2fs_ficount;
902 sbp->f_favail = fs->e2fs.e2fs_ficount;
903 sbp->f_fresvd = 0;
904 copy_statvfs_info(sbp, mp);
905 return (0);
906 }
907
908 /*
909 * Go through the disk queues to initiate sandbagged IO;
910 * go through the inodes to write those that have been modified;
911 * initiate the writing of the super block if it has been modified.
912 *
913 * Note: we are always called with the filesystem marked `MPBUSY'.
914 */
915 int
916 ext2fs_sync(struct mount *mp, int waitfor, kauth_cred_t cred)
917 {
918 struct vnode *vp, *mvp;
919 struct inode *ip;
920 struct ufsmount *ump = VFSTOUFS(mp);
921 struct m_ext2fs *fs;
922 int error, allerror = 0;
923
924 fs = ump->um_e2fs;
925 if (fs->e2fs_fmod != 0 && fs->e2fs_ronly != 0) { /* XXX */
926 printf("fs = %s\n", fs->e2fs_fsmnt);
927 panic("update: rofs mod");
928 }
929
930 /* Allocate a marker vnode. */
931 if ((mvp = vnalloc(mp)) == NULL)
932 return (ENOMEM);
933
934 /*
935 * Write back each (modified) inode.
936 */
937 mutex_enter(&mntvnode_lock);
938 loop:
939 /*
940 * NOTE: not using the TAILQ_FOREACH here since in this loop vgone()
941 * and vclean() can be called indirectly
942 */
943 for (vp = TAILQ_FIRST(&mp->mnt_vnodelist); vp; vp = vunmark(mvp)) {
944 vmark(mvp, vp);
945 if (vp->v_mount != mp || vismarker(vp))
946 continue;
947 mutex_enter(&vp->v_interlock);
948 ip = VTOI(vp);
949 if (ip == NULL || (vp->v_iflag & (VI_XLOCK|VI_CLEAN)) != 0 ||
950 vp->v_type == VNON ||
951 ((ip->i_flag &
952 (IN_CHANGE | IN_UPDATE | IN_MODIFIED)) == 0 &&
953 LIST_EMPTY(&vp->v_dirtyblkhd) &&
954 UVM_OBJ_IS_CLEAN(&vp->v_uobj)))
955 {
956 mutex_exit(&vp->v_interlock);
957 continue;
958 }
959 mutex_exit(&mntvnode_lock);
960 error = vget(vp, LK_EXCLUSIVE | LK_NOWAIT | LK_INTERLOCK);
961 if (error) {
962 mutex_enter(&mntvnode_lock);
963 if (error == ENOENT) {
964 mutex_enter(&mntvnode_lock);
965 (void)vunmark(mvp);
966 goto loop;
967 }
968 continue;
969 }
970 if (vp->v_type == VREG && waitfor == MNT_LAZY)
971 error = ext2fs_update(vp, NULL, NULL, 0);
972 else
973 error = VOP_FSYNC(vp, cred,
974 waitfor == MNT_WAIT ? FSYNC_WAIT : 0, 0, 0);
975 if (error)
976 allerror = error;
977 vput(vp);
978 mutex_enter(&mntvnode_lock);
979 }
980 mutex_exit(&mntvnode_lock);
981 vnfree(mvp);
982 /*
983 * Force stale file system control information to be flushed.
984 */
985 if (waitfor != MNT_LAZY) {
986 vn_lock(ump->um_devvp, LK_EXCLUSIVE | LK_RETRY);
987 if ((error = VOP_FSYNC(ump->um_devvp, cred,
988 waitfor == MNT_WAIT ? FSYNC_WAIT : 0, 0, 0)) != 0)
989 allerror = error;
990 VOP_UNLOCK(ump->um_devvp, 0);
991 }
992 /*
993 * Write back modified superblock.
994 */
995 if (fs->e2fs_fmod != 0) {
996 fs->e2fs_fmod = 0;
997 fs->e2fs.e2fs_wtime = time_second;
998 if ((error = ext2fs_cgupdate(ump, waitfor)))
999 allerror = error;
1000 }
1001 return (allerror);
1002 }
1003
1004 /*
1005 * Look up a EXT2FS dinode number to find its incore vnode, otherwise read it
1006 * in from disk. If it is in core, wait for the lock bit to clear, then
1007 * return the inode locked. Detection and handling of mount points must be
1008 * done by the calling routine.
1009 */
1010 int
1011 ext2fs_vget(struct mount *mp, ino_t ino, struct vnode **vpp)
1012 {
1013 struct m_ext2fs *fs;
1014 struct inode *ip;
1015 struct ufsmount *ump;
1016 struct buf *bp;
1017 struct vnode *vp;
1018 dev_t dev;
1019 int error;
1020 void *cp;
1021
1022 ump = VFSTOUFS(mp);
1023 dev = ump->um_dev;
1024 retry:
1025 if ((*vpp = ufs_ihashget(dev, ino, LK_EXCLUSIVE)) != NULL)
1026 return (0);
1027
1028 /* Allocate a new vnode/inode. */
1029 if ((error = getnewvnode(VT_EXT2FS, mp, ext2fs_vnodeop_p, &vp)) != 0) {
1030 *vpp = NULL;
1031 return (error);
1032 }
1033 ip = pool_get(&ext2fs_inode_pool, PR_WAITOK);
1034
1035 mutex_enter(&ufs_hashlock);
1036 if ((*vpp = ufs_ihashget(dev, ino, 0)) != NULL) {
1037 mutex_exit(&ufs_hashlock);
1038 ungetnewvnode(vp);
1039 pool_put(&ext2fs_inode_pool, ip);
1040 goto retry;
1041 }
1042
1043 vp->v_vflag |= VV_LOCKSWORK;
1044
1045 memset(ip, 0, sizeof(struct inode));
1046 vp->v_data = ip;
1047 ip->i_vnode = vp;
1048 ip->i_ump = ump;
1049 ip->i_e2fs = fs = ump->um_e2fs;
1050 ip->i_dev = dev;
1051 ip->i_number = ino;
1052 ip->i_e2fs_last_lblk = 0;
1053 ip->i_e2fs_last_blk = 0;
1054 genfs_node_init(vp, &ext2fs_genfsops);
1055
1056 /*
1057 * Put it onto its hash chain and lock it so that other requests for
1058 * this inode will block if they arrive while we are sleeping waiting
1059 * for old data structures to be purged or for the contents of the
1060 * disk portion of this inode to be read.
1061 */
1062
1063 ufs_ihashins(ip);
1064 mutex_exit(&ufs_hashlock);
1065
1066 /* Read in the disk contents for the inode, copy into the inode. */
1067 error = bread(ump->um_devvp, fsbtodb(fs, ino_to_fsba(fs, ino)),
1068 (int)fs->e2fs_bsize, NOCRED, 0, &bp);
1069 if (error) {
1070
1071 /*
1072 * The inode does not contain anything useful, so it would
1073 * be misleading to leave it on its hash chain. With mode
1074 * still zero, it will be unlinked and returned to the free
1075 * list by vput().
1076 */
1077
1078 vput(vp);
1079 brelse(bp, 0);
1080 *vpp = NULL;
1081 return (error);
1082 }
1083 cp = (char *)bp->b_data + (ino_to_fsbo(fs, ino) * EXT2_DINODE_SIZE(fs));
1084 ip->i_din.e2fs_din = pool_get(&ext2fs_dinode_pool, PR_WAITOK);
1085 e2fs_iload((struct ext2fs_dinode *)cp, ip->i_din.e2fs_din);
1086 ext2fs_set_inode_guid(ip);
1087 brelse(bp, 0);
1088
1089 /* If the inode was deleted, reset all fields */
1090 if (ip->i_e2fs_dtime != 0) {
1091 ip->i_e2fs_mode = ip->i_e2fs_nblock = 0;
1092 (void)ext2fs_setsize(ip, 0);
1093 memset(ip->i_e2fs_blocks, 0, sizeof(ip->i_e2fs_blocks));
1094 }
1095
1096 /*
1097 * Initialize the vnode from the inode, check for aliases.
1098 */
1099
1100 error = ext2fs_vinit(mp, ext2fs_specop_p, ext2fs_fifoop_p, &vp);
1101 if (error) {
1102 vput(vp);
1103 *vpp = NULL;
1104 return (error);
1105 }
1106 /*
1107 * Finish inode initialization now that aliasing has been resolved.
1108 */
1109
1110 ip->i_devvp = ump->um_devvp;
1111 vref(ip->i_devvp);
1112
1113 /*
1114 * Set up a generation number for this inode if it does not
1115 * already have one. This should only happen on old filesystems.
1116 */
1117
1118 if (ip->i_e2fs_gen == 0) {
1119 if (++ext2gennumber < (u_long)time_second)
1120 ext2gennumber = time_second;
1121 ip->i_e2fs_gen = ext2gennumber;
1122 if ((vp->v_mount->mnt_flag & MNT_RDONLY) == 0)
1123 ip->i_flag |= IN_MODIFIED;
1124 }
1125 uvm_vnp_setsize(vp, ext2fs_size(ip));
1126 *vpp = vp;
1127 return (0);
1128 }
1129
1130 /*
1131 * File handle to vnode
1132 *
1133 * Have to be really careful about stale file handles:
1134 * - check that the inode number is valid
1135 * - call ext2fs_vget() to get the locked inode
1136 * - check for an unallocated inode (i_mode == 0)
1137 */
1138 int
1139 ext2fs_fhtovp(struct mount *mp, struct fid *fhp, struct vnode **vpp)
1140 {
1141 struct inode *ip;
1142 struct vnode *nvp;
1143 int error;
1144 struct ufid ufh;
1145 struct m_ext2fs *fs;
1146
1147 if (fhp->fid_len != sizeof(struct ufid))
1148 return EINVAL;
1149
1150 memcpy(&ufh, fhp, sizeof(struct ufid));
1151 fs = VFSTOUFS(mp)->um_e2fs;
1152 if ((ufh.ufid_ino < EXT2_FIRSTINO && ufh.ufid_ino != EXT2_ROOTINO) ||
1153 ufh.ufid_ino >= fs->e2fs_ncg * fs->e2fs.e2fs_ipg)
1154 return (ESTALE);
1155
1156 if ((error = VFS_VGET(mp, ufh.ufid_ino, &nvp)) != 0) {
1157 *vpp = NULLVP;
1158 return (error);
1159 }
1160 ip = VTOI(nvp);
1161 if (ip->i_e2fs_mode == 0 || ip->i_e2fs_dtime != 0 ||
1162 ip->i_e2fs_gen != ufh.ufid_gen) {
1163 vput(nvp);
1164 *vpp = NULLVP;
1165 return (ESTALE);
1166 }
1167 *vpp = nvp;
1168 return (0);
1169 }
1170
1171 /*
1172 * Vnode pointer to File handle
1173 */
1174 /* ARGSUSED */
1175 int
1176 ext2fs_vptofh(struct vnode *vp, struct fid *fhp, size_t *fh_size)
1177 {
1178 struct inode *ip;
1179 struct ufid ufh;
1180
1181 if (*fh_size < sizeof(struct ufid)) {
1182 *fh_size = sizeof(struct ufid);
1183 return E2BIG;
1184 }
1185 *fh_size = sizeof(struct ufid);
1186
1187 ip = VTOI(vp);
1188 memset(&ufh, 0, sizeof(ufh));
1189 ufh.ufid_len = sizeof(struct ufid);
1190 ufh.ufid_ino = ip->i_number;
1191 ufh.ufid_gen = ip->i_e2fs_gen;
1192 memcpy(fhp, &ufh, sizeof(ufh));
1193 return (0);
1194 }
1195
1196 /*
1197 * Write a superblock and associated information back to disk.
1198 */
1199 int
1200 ext2fs_sbupdate(struct ufsmount *mp, int waitfor)
1201 {
1202 struct m_ext2fs *fs = mp->um_e2fs;
1203 struct buf *bp;
1204 int error = 0;
1205
1206 bp = getblk(mp->um_devvp, SBLOCK, SBSIZE, 0, 0);
1207 e2fs_sbsave(&fs->e2fs, (struct ext2fs*)bp->b_data);
1208 if (waitfor == MNT_WAIT)
1209 error = bwrite(bp);
1210 else
1211 bawrite(bp);
1212 return (error);
1213 }
1214
1215 int
1216 ext2fs_cgupdate(struct ufsmount *mp, int waitfor)
1217 {
1218 struct m_ext2fs *fs = mp->um_e2fs;
1219 struct buf *bp;
1220 int i, error = 0, allerror = 0;
1221
1222 allerror = ext2fs_sbupdate(mp, waitfor);
1223 for (i = 0; i < fs->e2fs_ngdb; i++) {
1224 bp = getblk(mp->um_devvp, fsbtodb(fs,
1225 fs->e2fs.e2fs_first_dblock +
1226 1 /* superblock */ + i), fs->e2fs_bsize, 0, 0);
1227 e2fs_cgsave(&fs->e2fs_gd[
1228 i * fs->e2fs_bsize / sizeof(struct ext2_gd)],
1229 (struct ext2_gd *)bp->b_data, fs->e2fs_bsize);
1230 if (waitfor == MNT_WAIT)
1231 error = bwrite(bp);
1232 else
1233 bawrite(bp);
1234 }
1235
1236 if (!allerror && error)
1237 allerror = error;
1238 return (allerror);
1239 }
1240
1241 static int
1242 ext2fs_checksb(struct ext2fs *fs, int ronly)
1243 {
1244
1245 if (fs2h16(fs->e2fs_magic) != E2FS_MAGIC) {
1246 return (EINVAL); /* XXX needs translation */
1247 }
1248 if (fs2h32(fs->e2fs_rev) > E2FS_REV1) {
1249 #ifdef DIAGNOSTIC
1250 printf("Ext2 fs: unsupported revision number: %x\n",
1251 fs2h32(fs->e2fs_rev));
1252 #endif
1253 return (EINVAL); /* XXX needs translation */
1254 }
1255 if (fs2h32(fs->e2fs_log_bsize) > 2) { /* block size = 1024|2048|4096 */
1256 #ifdef DIAGNOSTIC
1257 printf("Ext2 fs: bad block size: %d "
1258 "(expected <= 2 for ext2 fs)\n",
1259 fs2h32(fs->e2fs_log_bsize));
1260 #endif
1261 return (EINVAL); /* XXX needs translation */
1262 }
1263 if (fs2h32(fs->e2fs_rev) > E2FS_REV0) {
1264 if (fs2h32(fs->e2fs_first_ino) != EXT2_FIRSTINO) {
1265 printf("Ext2 fs: unsupported first inode position\n");
1266 return (EINVAL); /* XXX needs translation */
1267 }
1268 if (fs2h32(fs->e2fs_features_incompat) &
1269 ~EXT2F_INCOMPAT_SUPP) {
1270 printf("Ext2 fs: unsupported optional feature\n");
1271 return (EINVAL); /* XXX needs translation */
1272 }
1273 if (!ronly && fs2h32(fs->e2fs_features_rocompat) &
1274 ~EXT2F_ROCOMPAT_SUPP) {
1275 return (EROFS); /* XXX needs translation */
1276 }
1277 }
1278 return (0);
1279 }
1280