ffs.c revision 1.15.2.2 1 1.15.2.2 tron /* $NetBSD: ffs.c,v 1.15.2.2 2006/11/09 22:51:09 tron Exp $ */
2 1.1 lukem
3 1.1 lukem /*-
4 1.1 lukem * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.1 lukem * All rights reserved.
6 1.1 lukem *
7 1.1 lukem * This code is derived from software contributed to The NetBSD Foundation
8 1.1 lukem * by Matt Fredette.
9 1.1 lukem *
10 1.1 lukem * Redistribution and use in source and binary forms, with or without
11 1.1 lukem * modification, are permitted provided that the following conditions
12 1.1 lukem * are met:
13 1.1 lukem * 1. Redistributions of source code must retain the above copyright
14 1.1 lukem * notice, this list of conditions and the following disclaimer.
15 1.1 lukem * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 lukem * notice, this list of conditions and the following disclaimer in the
17 1.1 lukem * documentation and/or other materials provided with the distribution.
18 1.1 lukem * 3. All advertising materials mentioning features or use of this software
19 1.1 lukem * must display the following acknowledgement:
20 1.1 lukem * This product includes software developed by the NetBSD
21 1.1 lukem * Foundation, Inc. and its contributors.
22 1.1 lukem * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 lukem * contributors may be used to endorse or promote products derived
24 1.1 lukem * from this software without specific prior written permission.
25 1.1 lukem *
26 1.1 lukem * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 lukem * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 lukem * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 lukem * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 lukem * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 lukem * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 lukem * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 lukem * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 lukem * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 lukem * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 lukem * POSSIBILITY OF SUCH DAMAGE.
37 1.1 lukem */
38 1.1 lukem
39 1.15 jmc #if HAVE_NBTOOL_CONFIG_H
40 1.15 jmc #include "nbtool_config.h"
41 1.15 jmc #endif
42 1.15 jmc
43 1.1 lukem #include <sys/cdefs.h>
44 1.1 lukem #if defined(__RCSID) && !defined(__lint)
45 1.15.2.2 tron __RCSID("$NetBSD: ffs.c,v 1.15.2.2 2006/11/09 22:51:09 tron Exp $");
46 1.1 lukem #endif /* !__lint */
47 1.1 lukem
48 1.1 lukem #include <sys/param.h>
49 1.15 jmc
50 1.15 jmc #if !HAVE_NBTOOL_CONFIG_H
51 1.1 lukem #include <sys/mount.h>
52 1.15 jmc #endif
53 1.1 lukem
54 1.1 lukem #include <assert.h>
55 1.1 lukem #include <err.h>
56 1.1 lukem #include <errno.h>
57 1.1 lukem #include <fcntl.h>
58 1.1 lukem #include <stdarg.h>
59 1.1 lukem #include <stdio.h>
60 1.1 lukem #include <stdlib.h>
61 1.1 lukem #include <string.h>
62 1.1 lukem #include <unistd.h>
63 1.1 lukem
64 1.1 lukem #include "installboot.h"
65 1.1 lukem
66 1.15.2.2 tron /* From <dev/raidframe/raidframevar.h> */
67 1.15.2.2 tron #define RF_PROTECTED_SECTORS 64L
68 1.15.2.1 tron
69 1.1 lukem #undef DIRBLKSIZ
70 1.1 lukem
71 1.1 lukem #include <ufs/ufs/dinode.h>
72 1.1 lukem #include <ufs/ufs/dir.h>
73 1.1 lukem #include <ufs/ffs/fs.h>
74 1.1 lukem #include <ufs/ffs/ffs_extern.h>
75 1.1 lukem #include <ufs/ufs/ufs_bswap.h>
76 1.1 lukem
77 1.15.2.1 tron static int ffs_match_common(ib_params *, off_t);
78 1.8 fvdl static int ffs_read_disk_block(ib_params *, uint64_t, int, char *);
79 1.8 fvdl static int ffs_find_disk_blocks_ufs1(ib_params *, ino_t,
80 1.8 fvdl int (*)(ib_params *, void *, uint64_t, uint32_t), void *);
81 1.8 fvdl static int ffs_find_disk_blocks_ufs2(ib_params *, ino_t,
82 1.8 fvdl int (*)(ib_params *, void *, uint64_t, uint32_t), void *);
83 1.8 fvdl static int ffs_findstage2_ino(ib_params *, void *, uint64_t, uint32_t);
84 1.8 fvdl static int ffs_findstage2_blocks(ib_params *, void *, uint64_t, uint32_t);
85 1.8 fvdl
86 1.8 fvdl static int is_ufs2;
87 1.5 lukem
88 1.5 lukem
89 1.1 lukem /* This reads a disk block from the filesystem. */
90 1.1 lukem static int
91 1.8 fvdl ffs_read_disk_block(ib_params *params, uint64_t blkno, int size, char *blk)
92 1.1 lukem {
93 1.1 lukem int rv;
94 1.1 lukem
95 1.2 lukem assert(params != NULL);
96 1.2 lukem assert(blk != NULL);
97 1.1 lukem assert(params->filesystem != NULL);
98 1.1 lukem assert(params->fsfd != -1);
99 1.9 he assert(blkno >= 0);
100 1.1 lukem assert(size > 0);
101 1.1 lukem assert(blk != NULL);
102 1.1 lukem
103 1.1 lukem rv = pread(params->fsfd, blk, size, blkno * DEV_BSIZE);
104 1.1 lukem if (rv == -1) {
105 1.10 he warn("Reading block %llu in `%s'",
106 1.10 he (unsigned long long)blkno, params->filesystem);
107 1.1 lukem return (0);
108 1.1 lukem } else if (rv != size) {
109 1.10 he warnx("Reading block %llu in `%s': short read",
110 1.10 he (unsigned long long)blkno, params->filesystem);
111 1.1 lukem return (0);
112 1.1 lukem }
113 1.1 lukem
114 1.1 lukem return (1);
115 1.1 lukem }
116 1.1 lukem
117 1.1 lukem /*
118 1.1 lukem * This iterates over the data blocks belonging to an inode,
119 1.1 lukem * making a callback each iteration with the disk block number
120 1.1 lukem * and the size.
121 1.1 lukem */
122 1.1 lukem static int
123 1.8 fvdl ffs_find_disk_blocks_ufs1(ib_params *params, ino_t ino,
124 1.8 fvdl int (*callback)(ib_params *, void *, uint64_t, uint32_t),
125 1.1 lukem void *state)
126 1.1 lukem {
127 1.8 fvdl char sbbuf[SBLOCKSIZE];
128 1.1 lukem struct fs *fs;
129 1.1 lukem char inodebuf[MAXBSIZE];
130 1.8 fvdl struct ufs1_dinode *inode;
131 1.1 lukem int level_i;
132 1.8 fvdl int32_t blk, lblk, nblk;
133 1.1 lukem int rv;
134 1.1 lukem #define LEVELS 4
135 1.1 lukem struct {
136 1.7 fvdl int32_t *blknums;
137 1.1 lukem unsigned long blkcount;
138 1.1 lukem char diskbuf[MAXBSIZE];
139 1.1 lukem } level[LEVELS];
140 1.1 lukem
141 1.2 lukem assert(params != NULL);
142 1.5 lukem assert(params->fstype != NULL);
143 1.2 lukem assert(callback != NULL);
144 1.2 lukem assert(state != NULL);
145 1.2 lukem
146 1.1 lukem /* Read the superblock. */
147 1.11 he if (!ffs_read_disk_block(params, params->fstype->sblockloc, SBLOCKSIZE,
148 1.8 fvdl sbbuf))
149 1.1 lukem return (0);
150 1.1 lukem fs = (struct fs *)sbbuf;
151 1.5 lukem if (params->fstype->needswap)
152 1.1 lukem ffs_sb_swap(fs, fs);
153 1.1 lukem
154 1.1 lukem if (fs->fs_inopb <= 0) {
155 1.1 lukem warnx("Bad inopb %d in superblock in `%s'",
156 1.1 lukem fs->fs_inopb, params->filesystem);
157 1.1 lukem return (0);
158 1.1 lukem }
159 1.1 lukem
160 1.1 lukem /* Read the inode. */
161 1.15.2.1 tron if (! ffs_read_disk_block(params,
162 1.15.2.1 tron fsbtodb(fs, ino_to_fsba(fs, ino)) + params->fstype->offset,
163 1.1 lukem fs->fs_bsize, inodebuf))
164 1.1 lukem return (0);
165 1.8 fvdl inode = (struct ufs1_dinode *)inodebuf;
166 1.1 lukem inode += ino_to_fsbo(fs, ino);
167 1.5 lukem if (params->fstype->needswap)
168 1.8 fvdl ffs_dinode1_swap(inode, inode);
169 1.1 lukem
170 1.1 lukem /* Get the block count and initialize for our block walk. */
171 1.1 lukem nblk = howmany(inode->di_size, fs->fs_bsize);
172 1.1 lukem lblk = 0;
173 1.1 lukem level_i = 0;
174 1.1 lukem level[0].blknums = &inode->di_db[0];
175 1.1 lukem level[0].blkcount = NDADDR;
176 1.1 lukem level[1].blknums = &inode->di_ib[0];
177 1.1 lukem level[1].blkcount = 1;
178 1.1 lukem level[2].blknums = &inode->di_ib[1];
179 1.1 lukem level[2].blkcount = 1;
180 1.1 lukem level[3].blknums = &inode->di_ib[2];
181 1.1 lukem level[3].blkcount = 1;
182 1.1 lukem
183 1.1 lukem /* Walk the data blocks. */
184 1.1 lukem while (nblk > 0) {
185 1.1 lukem
186 1.1 lukem /*
187 1.1 lukem * If there are no more blocks at this indirection
188 1.1 lukem * level, move up one indirection level and loop.
189 1.1 lukem */
190 1.1 lukem if (level[level_i].blkcount == 0) {
191 1.1 lukem if (++level_i == LEVELS)
192 1.1 lukem break;
193 1.1 lukem continue;
194 1.1 lukem }
195 1.1 lukem
196 1.1 lukem /* Get the next block at this level. */
197 1.1 lukem blk = *(level[level_i].blknums++);
198 1.1 lukem level[level_i].blkcount--;
199 1.5 lukem if (params->fstype->needswap)
200 1.1 lukem blk = bswap32(blk);
201 1.1 lukem
202 1.1 lukem #if 0
203 1.1 lukem fprintf(stderr, "ino %lu blk %lu level %d\n", ino, blk,
204 1.1 lukem level_i);
205 1.1 lukem #endif
206 1.1 lukem
207 1.1 lukem /*
208 1.1 lukem * If we're not at the direct level, descend one
209 1.1 lukem * level, read in that level's new block list,
210 1.1 lukem * and loop.
211 1.1 lukem */
212 1.1 lukem if (level_i > 0) {
213 1.1 lukem level_i--;
214 1.1 lukem if (blk == 0)
215 1.1 lukem memset(level[level_i].diskbuf, 0, MAXBSIZE);
216 1.1 lukem else if (! ffs_read_disk_block(params,
217 1.15.2.1 tron fsbtodb(fs, blk) + params->fstype->offset,
218 1.1 lukem fs->fs_bsize, level[level_i].diskbuf))
219 1.1 lukem return (0);
220 1.7 fvdl /* XXX ondisk32 */
221 1.1 lukem level[level_i].blknums =
222 1.7 fvdl (int32_t *)level[level_i].diskbuf;
223 1.1 lukem level[level_i].blkcount = NINDIR(fs);
224 1.1 lukem continue;
225 1.1 lukem }
226 1.1 lukem
227 1.1 lukem /* blk is the next direct level block. */
228 1.1 lukem #if 0
229 1.1 lukem fprintf(stderr, "ino %lu db %lu blksize %lu\n", ino,
230 1.8 fvdl fsbtodb(fs, blk), sblksize(fs, inode->di_size, lblk));
231 1.8 fvdl #endif
232 1.8 fvdl rv = (*callback)(params, state,
233 1.15.2.1 tron fsbtodb(fs, blk) + params->fstype->offset,
234 1.15.2.1 tron sblksize(fs, inode->di_size, lblk));
235 1.8 fvdl lblk++;
236 1.8 fvdl nblk--;
237 1.8 fvdl if (rv != 1)
238 1.8 fvdl return (rv);
239 1.8 fvdl }
240 1.8 fvdl
241 1.8 fvdl if (nblk != 0) {
242 1.8 fvdl warnx("Inode %d in `%s' ran out of blocks?", ino,
243 1.8 fvdl params->filesystem);
244 1.8 fvdl return (0);
245 1.8 fvdl }
246 1.8 fvdl
247 1.8 fvdl return (1);
248 1.8 fvdl }
249 1.8 fvdl
250 1.8 fvdl /*
251 1.8 fvdl * This iterates over the data blocks belonging to an inode,
252 1.8 fvdl * making a callback each iteration with the disk block number
253 1.8 fvdl * and the size.
254 1.8 fvdl */
255 1.8 fvdl static int
256 1.8 fvdl ffs_find_disk_blocks_ufs2(ib_params *params, ino_t ino,
257 1.8 fvdl int (*callback)(ib_params *, void *, uint64_t, uint32_t),
258 1.8 fvdl void *state)
259 1.8 fvdl {
260 1.8 fvdl char sbbuf[SBLOCKSIZE];
261 1.8 fvdl struct fs *fs;
262 1.8 fvdl char inodebuf[MAXBSIZE];
263 1.8 fvdl struct ufs2_dinode *inode;
264 1.8 fvdl int level_i;
265 1.8 fvdl int64_t blk, lblk, nblk;
266 1.8 fvdl int rv;
267 1.8 fvdl #define LEVELS 4
268 1.8 fvdl struct {
269 1.8 fvdl int64_t *blknums;
270 1.8 fvdl unsigned long blkcount;
271 1.8 fvdl char diskbuf[MAXBSIZE];
272 1.8 fvdl } level[LEVELS];
273 1.8 fvdl
274 1.8 fvdl assert(params != NULL);
275 1.8 fvdl assert(params->fstype != NULL);
276 1.8 fvdl assert(callback != NULL);
277 1.8 fvdl assert(state != NULL);
278 1.8 fvdl
279 1.8 fvdl /* Read the superblock. */
280 1.11 he if (!ffs_read_disk_block(params, params->fstype->sblockloc, SBLOCKSIZE,
281 1.8 fvdl sbbuf))
282 1.8 fvdl return (0);
283 1.8 fvdl fs = (struct fs *)sbbuf;
284 1.8 fvdl if (params->fstype->needswap)
285 1.8 fvdl ffs_sb_swap(fs, fs);
286 1.8 fvdl
287 1.8 fvdl if (fs->fs_inopb <= 0) {
288 1.8 fvdl warnx("Bad inopb %d in superblock in `%s'",
289 1.8 fvdl fs->fs_inopb, params->filesystem);
290 1.8 fvdl return (0);
291 1.8 fvdl }
292 1.8 fvdl
293 1.8 fvdl /* Read the inode. */
294 1.8 fvdl if (! ffs_read_disk_block(params, fsbtodb(fs, ino_to_fsba(fs, ino)),
295 1.8 fvdl fs->fs_bsize, inodebuf))
296 1.8 fvdl return (0);
297 1.8 fvdl inode = (struct ufs2_dinode *)inodebuf;
298 1.8 fvdl inode += ino_to_fsbo(fs, ino);
299 1.8 fvdl if (params->fstype->needswap)
300 1.8 fvdl ffs_dinode2_swap(inode, inode);
301 1.8 fvdl
302 1.8 fvdl /* Get the block count and initialize for our block walk. */
303 1.8 fvdl nblk = howmany(inode->di_size, fs->fs_bsize);
304 1.8 fvdl lblk = 0;
305 1.8 fvdl level_i = 0;
306 1.8 fvdl level[0].blknums = &inode->di_db[0];
307 1.8 fvdl level[0].blkcount = NDADDR;
308 1.8 fvdl level[1].blknums = &inode->di_ib[0];
309 1.8 fvdl level[1].blkcount = 1;
310 1.8 fvdl level[2].blknums = &inode->di_ib[1];
311 1.8 fvdl level[2].blkcount = 1;
312 1.8 fvdl level[3].blknums = &inode->di_ib[2];
313 1.8 fvdl level[3].blkcount = 1;
314 1.8 fvdl
315 1.8 fvdl /* Walk the data blocks. */
316 1.8 fvdl while (nblk > 0) {
317 1.8 fvdl
318 1.8 fvdl /*
319 1.8 fvdl * If there are no more blocks at this indirection
320 1.8 fvdl * level, move up one indirection level and loop.
321 1.8 fvdl */
322 1.8 fvdl if (level[level_i].blkcount == 0) {
323 1.8 fvdl if (++level_i == LEVELS)
324 1.8 fvdl break;
325 1.8 fvdl continue;
326 1.8 fvdl }
327 1.8 fvdl
328 1.8 fvdl /* Get the next block at this level. */
329 1.8 fvdl blk = *(level[level_i].blknums++);
330 1.8 fvdl level[level_i].blkcount--;
331 1.8 fvdl if (params->fstype->needswap)
332 1.8 fvdl blk = bswap64(blk);
333 1.8 fvdl
334 1.8 fvdl #if 0
335 1.8 fvdl fprintf(stderr, "ino %lu blk %llu level %d\n", ino,
336 1.8 fvdl (unsigned long long)blk, level_i);
337 1.8 fvdl #endif
338 1.8 fvdl
339 1.8 fvdl /*
340 1.8 fvdl * If we're not at the direct level, descend one
341 1.8 fvdl * level, read in that level's new block list,
342 1.8 fvdl * and loop.
343 1.8 fvdl */
344 1.8 fvdl if (level_i > 0) {
345 1.8 fvdl level_i--;
346 1.8 fvdl if (blk == 0)
347 1.8 fvdl memset(level[level_i].diskbuf, 0, MAXBSIZE);
348 1.8 fvdl else if (! ffs_read_disk_block(params,
349 1.8 fvdl fsbtodb(fs, blk),
350 1.8 fvdl fs->fs_bsize, level[level_i].diskbuf))
351 1.8 fvdl return (0);
352 1.8 fvdl level[level_i].blknums =
353 1.8 fvdl (int64_t *)level[level_i].diskbuf;
354 1.8 fvdl level[level_i].blkcount = NINDIR(fs);
355 1.8 fvdl continue;
356 1.8 fvdl }
357 1.8 fvdl
358 1.8 fvdl /* blk is the next direct level block. */
359 1.8 fvdl #if 0
360 1.8 fvdl fprintf(stderr, "ino %lu db %llu blksize %lu\n", ino,
361 1.8 fvdl fsbtodb(fs, blk), sblksize(fs, inode->di_size, lblk));
362 1.1 lukem #endif
363 1.1 lukem rv = (*callback)(params, state,
364 1.8 fvdl fsbtodb(fs, blk), sblksize(fs, inode->di_size, lblk));
365 1.1 lukem lblk++;
366 1.1 lukem nblk--;
367 1.1 lukem if (rv != 1)
368 1.1 lukem return (rv);
369 1.1 lukem }
370 1.1 lukem
371 1.1 lukem if (nblk != 0) {
372 1.1 lukem warnx("Inode %d in `%s' ran out of blocks?", ino,
373 1.1 lukem params->filesystem);
374 1.1 lukem return (0);
375 1.1 lukem }
376 1.1 lukem
377 1.1 lukem return (1);
378 1.1 lukem }
379 1.1 lukem
380 1.1 lukem /*
381 1.1 lukem * This callback reads a block of the root directory,
382 1.1 lukem * searches for an entry for the secondary bootstrap,
383 1.1 lukem * and saves the inode number if one is found.
384 1.1 lukem */
385 1.1 lukem static int
386 1.1 lukem ffs_findstage2_ino(ib_params *params, void *_ino,
387 1.8 fvdl uint64_t blk, uint32_t blksize)
388 1.1 lukem {
389 1.1 lukem char dirbuf[MAXBSIZE];
390 1.1 lukem struct direct *de, *ede;
391 1.1 lukem uint32_t ino;
392 1.1 lukem
393 1.2 lukem assert(params != NULL);
394 1.5 lukem assert(params->fstype != NULL);
395 1.3 lukem assert(params->stage2 != NULL);
396 1.2 lukem assert(_ino != NULL);
397 1.2 lukem
398 1.1 lukem /* Skip directory holes. */
399 1.1 lukem if (blk == 0)
400 1.1 lukem return (1);
401 1.1 lukem
402 1.1 lukem /* Read the directory block. */
403 1.1 lukem if (! ffs_read_disk_block(params, blk, blksize, dirbuf))
404 1.1 lukem return (0);
405 1.1 lukem
406 1.1 lukem /* Loop over the directory entries. */
407 1.1 lukem de = (struct direct *)&dirbuf[0];
408 1.1 lukem ede = (struct direct *)&dirbuf[blksize];
409 1.1 lukem while (de < ede) {
410 1.1 lukem ino = de->d_ino;
411 1.5 lukem if (params->fstype->needswap) {
412 1.1 lukem ino = bswap32(ino);
413 1.1 lukem de->d_reclen = bswap16(de->d_reclen);
414 1.1 lukem }
415 1.1 lukem if (ino != 0 && strcmp(de->d_name, params->stage2) == 0) {
416 1.1 lukem *((uint32_t *)_ino) = ino;
417 1.1 lukem return (2);
418 1.1 lukem }
419 1.4 pk if (de->d_reclen == 0)
420 1.4 pk break;
421 1.1 lukem de = (struct direct *)((char *)de + de->d_reclen);
422 1.1 lukem }
423 1.1 lukem
424 1.1 lukem return (1);
425 1.1 lukem }
426 1.1 lukem
427 1.1 lukem struct findblks_state {
428 1.1 lukem uint32_t maxblk;
429 1.1 lukem uint32_t nblk;
430 1.1 lukem ib_block *blocks;
431 1.1 lukem };
432 1.1 lukem
433 1.1 lukem /* This callback records the blocks of the secondary bootstrap. */
434 1.1 lukem static int
435 1.1 lukem ffs_findstage2_blocks(ib_params *params, void *_state,
436 1.8 fvdl uint64_t blk, uint32_t blksize)
437 1.1 lukem {
438 1.1 lukem struct findblks_state *state = _state;
439 1.1 lukem
440 1.2 lukem assert(params != NULL);
441 1.3 lukem assert(params->stage2 != NULL);
442 1.2 lukem assert(_state != NULL);
443 1.2 lukem
444 1.1 lukem if (state->nblk == state->maxblk) {
445 1.6 lukem warnx("Secondary bootstrap `%s' has too many blocks (max %d)",
446 1.6 lukem params->stage2, state->maxblk);
447 1.1 lukem return (0);
448 1.1 lukem }
449 1.1 lukem state->blocks[state->nblk].block = blk;
450 1.1 lukem state->blocks[state->nblk].blocksize = blksize;
451 1.1 lukem state->nblk++;
452 1.1 lukem return (1);
453 1.1 lukem }
454 1.1 lukem
455 1.5 lukem /*
456 1.13 lukem * publicly visible functions
457 1.5 lukem */
458 1.1 lukem
459 1.8 fvdl static off_t sblock_try[] = SBLOCKSEARCH;
460 1.8 fvdl
461 1.1 lukem int
462 1.1 lukem ffs_match(ib_params *params)
463 1.1 lukem {
464 1.15.2.1 tron return ffs_match_common(params, (off_t) 0);
465 1.15.2.1 tron }
466 1.15.2.1 tron
467 1.15.2.1 tron int
468 1.15.2.1 tron raid_match(ib_params *params)
469 1.15.2.1 tron {
470 1.15.2.1 tron /* XXX Assumes 512 bytes / sector */
471 1.15.2.1 tron if (DEV_BSIZE != 512) {
472 1.15.2.1 tron warnx("Media is %d bytes/sector."
473 1.15.2.1 tron " RAID is only supported on 512 bytes/sector media.",
474 1.15.2.1 tron DEV_BSIZE);
475 1.15.2.1 tron return 0;
476 1.15.2.1 tron }
477 1.15.2.1 tron return ffs_match_common(params, (off_t) RF_PROTECTED_SECTORS);
478 1.15.2.1 tron }
479 1.15.2.1 tron
480 1.15.2.1 tron int
481 1.15.2.1 tron ffs_match_common(ib_params *params, off_t offset)
482 1.15.2.1 tron {
483 1.8 fvdl char sbbuf[SBLOCKSIZE];
484 1.1 lukem struct fs *fs;
485 1.8 fvdl int i;
486 1.8 fvdl off_t loc;
487 1.1 lukem
488 1.2 lukem assert(params != NULL);
489 1.5 lukem assert(params->fstype != NULL);
490 1.2 lukem
491 1.1 lukem fs = (struct fs *)sbbuf;
492 1.8 fvdl for (i = 0; sblock_try[i] != -1; i++) {
493 1.15.2.1 tron loc = sblock_try[i] / DEV_BSIZE + offset;
494 1.8 fvdl if (!ffs_read_disk_block(params, loc, SBLOCKSIZE, sbbuf))
495 1.8 fvdl continue;
496 1.8 fvdl switch (fs->fs_magic) {
497 1.8 fvdl case FS_UFS2_MAGIC:
498 1.8 fvdl is_ufs2 = 1;
499 1.8 fvdl /* FALLTHROUGH */
500 1.8 fvdl case FS_UFS1_MAGIC:
501 1.8 fvdl params->fstype->needswap = 0;
502 1.8 fvdl params->fstype->blocksize = fs->fs_bsize;
503 1.8 fvdl params->fstype->sblockloc = loc;
504 1.15.2.1 tron params->fstype->offset = offset;
505 1.14 dsl break;
506 1.8 fvdl case FS_UFS2_MAGIC_SWAPPED:
507 1.8 fvdl is_ufs2 = 1;
508 1.8 fvdl /* FALLTHROUGH */
509 1.8 fvdl case FS_UFS1_MAGIC_SWAPPED:
510 1.8 fvdl params->fstype->needswap = 1;
511 1.8 fvdl params->fstype->blocksize = bswap32(fs->fs_bsize);
512 1.8 fvdl params->fstype->sblockloc = loc;
513 1.15.2.1 tron params->fstype->offset = offset;
514 1.14 dsl break;
515 1.8 fvdl default:
516 1.8 fvdl continue;
517 1.8 fvdl }
518 1.14 dsl if (!is_ufs2 && sblock_try[i] == SBLOCK_UFS2)
519 1.14 dsl continue;
520 1.14 dsl return 1;
521 1.5 lukem }
522 1.1 lukem
523 1.8 fvdl return (0);
524 1.1 lukem }
525 1.1 lukem
526 1.1 lukem int
527 1.1 lukem ffs_findstage2(ib_params *params, uint32_t *maxblk, ib_block *blocks)
528 1.1 lukem {
529 1.1 lukem int rv;
530 1.1 lukem uint32_t ino;
531 1.1 lukem struct findblks_state state;
532 1.1 lukem
533 1.2 lukem assert(params != NULL);
534 1.2 lukem assert(params->stage2 != NULL);
535 1.2 lukem assert(maxblk != NULL);
536 1.2 lukem assert(blocks != NULL);
537 1.5 lukem
538 1.5 lukem if (params->flags & IB_STAGE2START)
539 1.5 lukem return (hardcode_stage2(params, maxblk, blocks));
540 1.1 lukem
541 1.1 lukem /* The secondary bootstrap must be clearly in /. */
542 1.1 lukem if (params->stage2[0] == '/')
543 1.1 lukem params->stage2++;
544 1.1 lukem if (strchr(params->stage2, '/') != NULL) {
545 1.1 lukem warnx("The secondary bootstrap `%s' must be in /",
546 1.1 lukem params->stage2);
547 1.1 lukem return (0);
548 1.1 lukem }
549 1.1 lukem
550 1.1 lukem /* Get the inode number of the secondary bootstrap. */
551 1.8 fvdl if (is_ufs2)
552 1.8 fvdl rv = ffs_find_disk_blocks_ufs2(params, ROOTINO,
553 1.8 fvdl ffs_findstage2_ino, &ino);
554 1.8 fvdl else
555 1.8 fvdl rv = ffs_find_disk_blocks_ufs1(params, ROOTINO,
556 1.8 fvdl ffs_findstage2_ino, &ino);
557 1.6 lukem if (rv != 2) {
558 1.6 lukem warnx("Could not find secondary bootstrap `%s' in `%s'",
559 1.6 lukem params->stage2, params->filesystem);
560 1.1 lukem return (0);
561 1.6 lukem }
562 1.1 lukem
563 1.1 lukem /* Record the disk blocks of the secondary bootstrap. */
564 1.1 lukem state.maxblk = *maxblk;
565 1.1 lukem state.nblk = 0;
566 1.1 lukem state.blocks = blocks;
567 1.8 fvdl if (is_ufs2)
568 1.8 fvdl rv = ffs_find_disk_blocks_ufs2(params, ino,
569 1.8 fvdl ffs_findstage2_blocks, &state);
570 1.12 dsl else
571 1.8 fvdl rv = ffs_find_disk_blocks_ufs1(params, ino,
572 1.8 fvdl ffs_findstage2_blocks, &state);
573 1.6 lukem if (! rv) {
574 1.1 lukem return (0);
575 1.6 lukem }
576 1.1 lukem
577 1.1 lukem *maxblk = state.nblk;
578 1.1 lukem return (1);
579 1.1 lukem }
580