lfs_inode.c revision 1.17 1 1.17 dholland /* $NetBSD: lfs_inode.c,v 1.17 2013/06/08 23:37:37 dholland Exp $ */
2 1.1 perseant
3 1.1 perseant /*-
4 1.1 perseant * Copyright (c) 1980, 1991, 1993, 1994
5 1.1 perseant * The Regents of the University of California. All rights reserved.
6 1.1 perseant *
7 1.1 perseant * Redistribution and use in source and binary forms, with or without
8 1.1 perseant * modification, are permitted provided that the following conditions
9 1.1 perseant * are met:
10 1.1 perseant * 1. Redistributions of source code must retain the above copyright
11 1.1 perseant * notice, this list of conditions and the following disclaimer.
12 1.1 perseant * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 perseant * notice, this list of conditions and the following disclaimer in the
14 1.1 perseant * documentation and/or other materials provided with the distribution.
15 1.8 agc * 3. Neither the name of the University nor the names of its contributors
16 1.1 perseant * may be used to endorse or promote products derived from this software
17 1.1 perseant * without specific prior written permission.
18 1.1 perseant *
19 1.1 perseant * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.1 perseant * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 perseant * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 perseant * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.1 perseant * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 perseant * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 perseant * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 perseant * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 perseant * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 perseant * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 perseant * SUCH DAMAGE.
30 1.1 perseant */
31 1.1 perseant
32 1.1 perseant #include <sys/cdefs.h>
33 1.1 perseant #ifndef lint
34 1.14 lukem __COPYRIGHT("@(#) Copyright (c) 1980, 1991, 1993, 1994\
35 1.14 lukem The Regents of the University of California. All rights reserved.");
36 1.1 perseant #endif /* not lint */
37 1.1 perseant
38 1.1 perseant #ifndef lint
39 1.1 perseant #if 0
40 1.1 perseant static char sccsid[] = "@(#)main.c 8.6 (Berkeley) 5/1/95";
41 1.1 perseant #else
42 1.17 dholland __RCSID("$NetBSD: lfs_inode.c,v 1.17 2013/06/08 23:37:37 dholland Exp $");
43 1.1 perseant #endif
44 1.1 perseant #endif /* not lint */
45 1.1 perseant
46 1.1 perseant #include <sys/param.h>
47 1.1 perseant #include <sys/time.h>
48 1.1 perseant #include <sys/stat.h>
49 1.1 perseant #include <ufs/ufs/dinode.h>
50 1.1 perseant #include <sys/mount.h>
51 1.1 perseant #include <ufs/lfs/lfs.h>
52 1.1 perseant
53 1.1 perseant #include <protocols/dumprestore.h>
54 1.1 perseant
55 1.1 perseant #include <ctype.h>
56 1.1 perseant #include <errno.h>
57 1.12 perseant #include <fcntl.h>
58 1.1 perseant #include <fts.h>
59 1.1 perseant #include <stdio.h>
60 1.1 perseant #include <string.h>
61 1.1 perseant #include <unistd.h>
62 1.1 perseant
63 1.1 perseant #include "dump.h"
64 1.1 perseant
65 1.1 perseant #define MAXIFPB (MAXBSIZE / sizeof(IFILE))
66 1.1 perseant
67 1.1 perseant #define HASDUMPEDFILE 0x1
68 1.1 perseant #define HASSUBDIRS 0x2
69 1.1 perseant
70 1.1 perseant struct lfs *sblock;
71 1.1 perseant
72 1.7 fvdl int is_ufs2 = 0;
73 1.7 fvdl
74 1.1 perseant /*
75 1.1 perseant * Read the superblock from disk, and check its magic number.
76 1.1 perseant * Determine whether byte-swapping needs to be done on this filesystem.
77 1.1 perseant */
78 1.1 perseant int
79 1.4 lukem fs_read_sblock(char *superblock)
80 1.1 perseant {
81 1.15 christos union {
82 1.15 christos char tbuf[LFS_SBPAD];
83 1.15 christos struct lfs lfss;
84 1.15 christos } u;
85 1.15 christos
86 1.4 lukem int ns = 0;
87 1.3 perseant off_t sboff = LFS_LABELPAD;
88 1.1 perseant
89 1.4 lukem sblock = (struct lfs *)superblock;
90 1.3 perseant while(1) {
91 1.3 perseant rawread(sboff, (char *) sblock, LFS_SBPAD);
92 1.3 perseant if (sblock->lfs_magic != LFS_MAGIC) {
93 1.2 perseant #ifdef notyet
94 1.3 perseant if (sblock->lfs_magic == bswap32(LFS_MAGIC)) {
95 1.3 perseant lfs_sb_swap(sblock, sblock, 0);
96 1.4 lukem ns = 1;
97 1.3 perseant } else
98 1.1 perseant #endif
99 1.3 perseant quit("bad sblock magic number\n");
100 1.3 perseant }
101 1.12 perseant if (fsbtob(sblock, (off_t)sblock->lfs_sboffs[0]) != sboff) {
102 1.12 perseant sboff = fsbtob(sblock, (off_t)sblock->lfs_sboffs[0]);
103 1.3 perseant continue;
104 1.3 perseant }
105 1.3 perseant break;
106 1.3 perseant }
107 1.3 perseant
108 1.3 perseant /*
109 1.3 perseant * Read the secondary and take the older of the two
110 1.3 perseant */
111 1.15 christos rawread(fsbtob(sblock, (off_t)sblock->lfs_sboffs[1]), u.tbuf,
112 1.15 christos sizeof(u.tbuf));
113 1.3 perseant #ifdef notyet
114 1.4 lukem if (ns)
115 1.15 christos lfs_sb_swap(u.tbuf, u.tbuf, 0);
116 1.3 perseant #endif
117 1.15 christos if (u.lfss.lfs_magic != LFS_MAGIC) {
118 1.12 perseant msg("Warning: secondary superblock at 0x%" PRIx64 " bad magic\n",
119 1.12 perseant fsbtodb(sblock, (off_t)sblock->lfs_sboffs[1]));
120 1.3 perseant } else {
121 1.3 perseant if (sblock->lfs_version > 1) {
122 1.15 christos if (u.lfss.lfs_serial < sblock->lfs_serial) {
123 1.15 christos memcpy(sblock, u.tbuf, sizeof(u.tbuf));
124 1.12 perseant sboff = fsbtob(sblock, (off_t)sblock->lfs_sboffs[1]);
125 1.3 perseant }
126 1.3 perseant } else {
127 1.15 christos if (u.lfss.lfs_otstamp < sblock->lfs_otstamp) {
128 1.15 christos memcpy(sblock, u.tbuf, sizeof(u.tbuf));
129 1.12 perseant sboff = fsbtob(sblock, (off_t)sblock->lfs_sboffs[1]);
130 1.3 perseant }
131 1.3 perseant }
132 1.3 perseant }
133 1.3 perseant if (sboff != LFS_SBPAD) {
134 1.3 perseant msg("Using superblock at alternate location 0x%lx\n",
135 1.3 perseant (unsigned long)(btodb(sboff)));
136 1.1 perseant }
137 1.3 perseant
138 1.4 lukem return ns;
139 1.1 perseant }
140 1.1 perseant
141 1.1 perseant /*
142 1.1 perseant * Fill in the ufsi struct, as well as the maxino and dev_bsize global
143 1.1 perseant * variables.
144 1.1 perseant */
145 1.1 perseant struct ufsi *
146 1.1 perseant fs_parametrize(void)
147 1.1 perseant {
148 1.1 perseant static struct ufsi ufsi;
149 1.1 perseant
150 1.2 perseant spcl.c_flags = iswap32(iswap32(spcl.c_flags) | DR_NEWINODEFMT);
151 1.2 perseant
152 1.1 perseant ufsi.ufs_dsize = fsbtodb(sblock,sblock->lfs_size);
153 1.3 perseant if (sblock->lfs_version == 1)
154 1.3 perseant ufsi.ufs_dsize = sblock->lfs_size >> sblock->lfs_blktodb;
155 1.1 perseant ufsi.ufs_bsize = sblock->lfs_bsize;
156 1.1 perseant ufsi.ufs_bshift = sblock->lfs_bshift;
157 1.1 perseant ufsi.ufs_fsize = sblock->lfs_fsize;
158 1.1 perseant ufsi.ufs_frag = sblock->lfs_frag;
159 1.3 perseant ufsi.ufs_fsatoda = sblock->lfs_fsbtodb;
160 1.3 perseant if (sblock->lfs_version == 1)
161 1.3 perseant ufsi.ufs_fsatoda = 0;
162 1.1 perseant ufsi.ufs_nindir = sblock->lfs_nindir;
163 1.1 perseant ufsi.ufs_inopb = sblock->lfs_inopb;
164 1.1 perseant ufsi.ufs_maxsymlinklen = sblock->lfs_maxsymlinklen;
165 1.1 perseant ufsi.ufs_bmask = ~(sblock->lfs_bmask);
166 1.1 perseant ufsi.ufs_qbmask = sblock->lfs_bmask;
167 1.1 perseant ufsi.ufs_fmask = ~(sblock->lfs_ffmask);
168 1.1 perseant ufsi.ufs_qfmask = sblock->lfs_ffmask;
169 1.1 perseant
170 1.3 perseant dev_bsize = sblock->lfs_bsize >> sblock->lfs_blktodb;
171 1.1 perseant
172 1.1 perseant return &ufsi;
173 1.1 perseant }
174 1.1 perseant
175 1.1 perseant ino_t
176 1.1 perseant fs_maxino(void)
177 1.1 perseant {
178 1.7 fvdl return ((getino(sblock->lfs_ifile)->dp1.di_size
179 1.1 perseant - (sblock->lfs_cleansz + sblock->lfs_segtabsz)
180 1.1 perseant * sblock->lfs_bsize)
181 1.1 perseant / sblock->lfs_bsize) * sblock->lfs_ifpb - 1;
182 1.1 perseant }
183 1.1 perseant
184 1.7 fvdl void
185 1.7 fvdl fs_mapinodes(ino_t maxino, u_int64_t *tapesz, int *anydirskipped)
186 1.7 fvdl {
187 1.7 fvdl ino_t ino;
188 1.7 fvdl
189 1.17 dholland for (ino = ULFS_ROOTINO; ino < maxino; ino++)
190 1.7 fvdl mapfileino(ino, tapesz, anydirskipped);
191 1.7 fvdl }
192 1.7 fvdl
193 1.1 perseant /*
194 1.1 perseant * XXX KS - I know there's a better way to do this.
195 1.1 perseant */
196 1.17 dholland #define BASE_SINDIR (ULFS_NDADDR)
197 1.17 dholland #define BASE_DINDIR (ULFS_NDADDR+NINDIR(fs))
198 1.17 dholland #define BASE_TINDIR (ULFS_NDADDR+NINDIR(fs)+NINDIR(fs)*NINDIR(fs))
199 1.1 perseant
200 1.1 perseant #define D_UNITS (NINDIR(fs))
201 1.1 perseant #define T_UNITS (NINDIR(fs)*NINDIR(fs))
202 1.1 perseant
203 1.1 perseant static daddr_t
204 1.17 dholland lfs_bmap(struct lfs *fs, struct ulfs1_dinode *idinode, daddr_t lbn)
205 1.1 perseant {
206 1.11 lukem daddr_t residue, up;
207 1.1 perseant int off=0;
208 1.1 perseant char bp[MAXBSIZE];
209 1.11 lukem
210 1.11 lukem up = UNASSIGNED; /* XXXGCC -Wunitialized [sh3] */
211 1.1 perseant
212 1.3 perseant if(lbn > 0 && lbn > lblkno(fs, idinode->di_size)) {
213 1.1 perseant return UNASSIGNED;
214 1.1 perseant }
215 1.1 perseant /*
216 1.1 perseant * Indirect blocks: if it is a first-level indirect, pull its
217 1.1 perseant * address from the inode; otherwise, call ourselves to find the
218 1.1 perseant * address of the parent indirect block, and load that to find
219 1.1 perseant * the desired address.
220 1.1 perseant */
221 1.1 perseant if(lbn < 0) {
222 1.1 perseant lbn *= -1;
223 1.17 dholland if (lbn == ULFS_NDADDR) {
224 1.1 perseant /* printf("lbn %d: single indir base\n", -lbn); */
225 1.1 perseant return idinode->di_ib[0]; /* single indirect */
226 1.1 perseant } else if(lbn == BASE_DINDIR+1) {
227 1.1 perseant /* printf("lbn %d: double indir base\n", -lbn); */
228 1.1 perseant return idinode->di_ib[1]; /* double indirect */
229 1.1 perseant } else if(lbn == BASE_TINDIR+2) {
230 1.1 perseant /* printf("lbn %d: triple indir base\n", -lbn); */
231 1.1 perseant return idinode->di_ib[2]; /* triple indirect */
232 1.1 perseant }
233 1.1 perseant
234 1.1 perseant /*
235 1.1 perseant * Find the immediate parent. This is essentially finding the
236 1.1 perseant * residue of modulus, and then rounding accordingly.
237 1.1 perseant */
238 1.17 dholland residue = (lbn-ULFS_NDADDR) % NINDIR(fs);
239 1.1 perseant if(residue == 1) {
240 1.1 perseant /* Double indirect. Parent is the triple. */
241 1.1 perseant up = idinode->di_ib[2];
242 1.1 perseant off = (lbn-2-BASE_TINDIR)/(NINDIR(fs)*NINDIR(fs));
243 1.1 perseant if(up == UNASSIGNED || up == LFS_UNUSED_DADDR)
244 1.1 perseant return UNASSIGNED;
245 1.1 perseant /* printf("lbn %d: parent is the triple\n", -lbn); */
246 1.3 perseant bread(fsbtodb(sblock, up), bp, sblock->lfs_bsize);
247 1.6 fvdl /* XXX ondisk32 */
248 1.6 fvdl return (daddr_t)((int32_t *)bp)[off];
249 1.1 perseant } else /* residue == 0 */ {
250 1.1 perseant /* Single indirect. Two cases. */
251 1.1 perseant if(lbn < BASE_TINDIR) {
252 1.1 perseant /* Parent is the double, simple */
253 1.1 perseant up = -(BASE_DINDIR) - 1;
254 1.1 perseant off = (lbn-BASE_DINDIR) / D_UNITS;
255 1.1 perseant /* printf("lbn %d: parent is %d/%d\n", -lbn, up,off); */
256 1.1 perseant } else {
257 1.1 perseant /* Ancestor is the triple, more complex */
258 1.1 perseant up = ((lbn-BASE_TINDIR) / T_UNITS)
259 1.1 perseant * T_UNITS + BASE_TINDIR + 1;
260 1.1 perseant off = (lbn/D_UNITS) - (up/D_UNITS);
261 1.1 perseant up = -up;
262 1.1 perseant /* printf("lbn %d: parent is %d/%d\n", -lbn, up,off); */
263 1.1 perseant }
264 1.1 perseant }
265 1.1 perseant } else {
266 1.1 perseant /* Direct block. Its parent must be a single indirect. */
267 1.17 dholland if (lbn < ULFS_NDADDR)
268 1.1 perseant return idinode->di_db[lbn];
269 1.1 perseant else {
270 1.1 perseant /* Parent is an indirect block. */
271 1.17 dholland up = -(((lbn-ULFS_NDADDR) / D_UNITS) * D_UNITS + ULFS_NDADDR);
272 1.17 dholland off = (lbn-ULFS_NDADDR) % D_UNITS;
273 1.1 perseant /* printf("lbn %d: parent is %d/%d\n", lbn,up,off); */
274 1.1 perseant }
275 1.1 perseant }
276 1.1 perseant up = lfs_bmap(fs,idinode,up);
277 1.1 perseant if(up == UNASSIGNED || up == LFS_UNUSED_DADDR)
278 1.1 perseant return UNASSIGNED;
279 1.3 perseant bread(fsbtodb(sblock, up), bp, sblock->lfs_bsize);
280 1.6 fvdl /* XXX ondisk32 */
281 1.6 fvdl return (daddr_t)((int32_t *)bp)[off];
282 1.1 perseant }
283 1.1 perseant
284 1.1 perseant static struct ifile *
285 1.1 perseant lfs_ientry(ino_t ino)
286 1.1 perseant {
287 1.7 fvdl static struct ifile ifileblock[MAXIFPB];
288 1.7 fvdl static daddr_t ifblkno;
289 1.7 fvdl daddr_t lbn;
290 1.7 fvdl daddr_t blkno;
291 1.7 fvdl union dinode *dp;
292 1.17 dholland struct ulfs1_dinode *ldp;
293 1.1 perseant
294 1.7 fvdl lbn = ino/sblock->lfs_ifpb + sblock->lfs_cleansz + sblock->lfs_segtabsz;
295 1.7 fvdl dp = getino(sblock->lfs_ifile);
296 1.17 dholland /* XXX XXX this is horribly unsafe */
297 1.17 dholland ldp = (struct ulfs1_dinode *)dp;
298 1.17 dholland blkno = lfs_bmap(sblock, ldp ,lbn);
299 1.7 fvdl if (blkno != ifblkno)
300 1.7 fvdl bread(fsbtodb(sblock, blkno), (char *)ifileblock,
301 1.7 fvdl sblock->lfs_bsize);
302 1.7 fvdl return ifileblock + (ino % sblock->lfs_ifpb);
303 1.1 perseant }
304 1.1 perseant
305 1.1 perseant /* Search a block for a specific dinode. */
306 1.17 dholland static struct ulfs1_dinode *
307 1.17 dholland lfs_ifind(struct lfs *fs, ino_t ino, struct ulfs1_dinode *dip)
308 1.1 perseant {
309 1.9 perry int cnt;
310 1.1 perseant
311 1.1 perseant for(cnt=0;cnt<INOPB(fs);cnt++)
312 1.1 perseant if(dip[cnt].di_inumber == ino)
313 1.1 perseant return &(dip[cnt]);
314 1.1 perseant return NULL;
315 1.1 perseant }
316 1.1 perseant
317 1.7 fvdl union dinode *
318 1.9 perry getino(ino_t inum)
319 1.1 perseant {
320 1.1 perseant static daddr_t inoblkno;
321 1.1 perseant daddr_t blkno;
322 1.17 dholland static struct ulfs1_dinode inoblock[MAXBSIZE / sizeof (struct ulfs1_dinode)];
323 1.17 dholland static struct ulfs1_dinode ifile_dinode; /* XXX fill this in */
324 1.17 dholland static struct ulfs1_dinode empty_dinode; /* Always stays zeroed */
325 1.17 dholland struct ulfs1_dinode *dp;
326 1.1 perseant
327 1.1 perseant if(inum == sblock->lfs_ifile) {
328 1.1 perseant /* Load the ifile inode if not already */
329 1.17 dholland if(ifile_dinode.di_inumber == 0) {
330 1.1 perseant blkno = sblock->lfs_idaddr;
331 1.3 perseant bread(fsbtodb(sblock, blkno), (char *)inoblock,
332 1.3 perseant (int)sblock->lfs_bsize);
333 1.1 perseant dp = lfs_ifind(sblock, inum, inoblock);
334 1.1 perseant ifile_dinode = *dp; /* Structure copy */
335 1.1 perseant }
336 1.7 fvdl return (union dinode *)&ifile_dinode;
337 1.1 perseant }
338 1.1 perseant
339 1.1 perseant curino = inum;
340 1.1 perseant blkno = lfs_ientry(inum)->if_daddr;
341 1.1 perseant if(blkno == LFS_UNUSED_DADDR)
342 1.7 fvdl return (union dinode *)&empty_dinode;
343 1.1 perseant
344 1.1 perseant if(blkno != inoblkno) {
345 1.3 perseant bread(fsbtodb(sblock, blkno), (char *)inoblock,
346 1.3 perseant (int)sblock->lfs_bsize);
347 1.2 perseant #ifdef notyet
348 1.1 perseant if (needswap)
349 1.1 perseant for (i = 0; i < MAXINOPB; i++)
350 1.1 perseant ffs_dinode_swap(&inoblock[i], &inoblock[i]);
351 1.2 perseant #endif
352 1.1 perseant }
353 1.17 dholland /* XXX XXX: this cast is horribly unsafe */
354 1.7 fvdl return (union dinode *)lfs_ifind(sblock, inum, inoblock);
355 1.1 perseant }
356 1.12 perseant
357 1.12 perseant /*
358 1.12 perseant * Tell the filesystem not to overwrite any currently dirty segments
359 1.12 perseant * until we are finished. (It may still write into clean segments, of course,
360 1.12 perseant * since we're not using those.) This is only called when dump_lfs is called
361 1.12 perseant * with -X, i.e. we are working on a mounted filesystem.
362 1.12 perseant */
363 1.12 perseant static int root_fd = -1;
364 1.12 perseant char *wrap_mpname;
365 1.12 perseant
366 1.12 perseant int
367 1.12 perseant lfs_wrap_stop(char *mpname)
368 1.12 perseant {
369 1.12 perseant int waitfor = 0;
370 1.12 perseant
371 1.12 perseant root_fd = open(mpname, O_RDONLY, 0);
372 1.12 perseant if (root_fd < 0)
373 1.12 perseant return -1;
374 1.12 perseant wrap_mpname = mpname;
375 1.12 perseant fcntl(root_fd, LFCNREWIND, -1); /* Ignore return value */
376 1.12 perseant if (fcntl(root_fd, LFCNWRAPSTOP, &waitfor) < 0) {
377 1.12 perseant perror("LFCNWRAPSTOP");
378 1.12 perseant return -1;
379 1.12 perseant }
380 1.12 perseant msg("Disabled log wrap on %s\n", mpname);
381 1.12 perseant return 0;
382 1.12 perseant }
383 1.12 perseant
384 1.12 perseant /*
385 1.12 perseant * Allow the filesystem to continue normal operation.
386 1.12 perseant * This would happen anyway when we exit; we do it explicitly here
387 1.12 perseant * to show the message, for the user's benefit.
388 1.12 perseant */
389 1.12 perseant void
390 1.12 perseant lfs_wrap_go(void)
391 1.12 perseant {
392 1.12 perseant int waitfor = 0;
393 1.12 perseant
394 1.12 perseant if (root_fd < 0)
395 1.12 perseant return;
396 1.12 perseant
397 1.13 perseant fcntl(root_fd, LFCNWRAPGO, &waitfor);
398 1.12 perseant close(root_fd);
399 1.12 perseant root_fd = -1;
400 1.12 perseant msg("Re-enabled log wrap on %s\n", wrap_mpname);
401 1.12 perseant }
402