dumplfs.c revision 1.34 1 /* $NetBSD: dumplfs.c,v 1.34 2006/09/01 19:57:41 perseant Exp $ */
2
3 /*-
4 * Copyright (c) 1991, 1993
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
32 #include <sys/cdefs.h>
33
34 #ifndef lint
35 __COPYRIGHT(
36 "@(#) Copyright (c) 1991, 1993\n\
37 The Regents of the University of California. All rights reserved.\n");
38 #endif /* not lint */
39
40 #ifndef lint
41 #if 0
42 static char sccsid[] = "@(#)dumplfs.c 8.5 (Berkeley) 5/24/95";
43 #else
44 __RCSID("$NetBSD: dumplfs.c,v 1.34 2006/09/01 19:57:41 perseant Exp $");
45 #endif
46 #endif /* not lint */
47
48 #include <sys/param.h>
49 #include <sys/ucred.h>
50 #include <sys/mount.h>
51 #include <sys/time.h>
52
53 #include <ufs/ufs/dinode.h>
54 #include <ufs/lfs/lfs.h>
55
56 #include <err.h>
57 #include <errno.h>
58 #include <fcntl.h>
59 #include <fstab.h>
60 #include <stdlib.h>
61 #include <stdio.h>
62 #include <string.h>
63 #include <unistd.h>
64 #include "extern.h"
65
66 static void addseg(char *);
67 static void dump_cleaner_info(struct lfs *, void *);
68 static void dump_dinode(struct ufs1_dinode *);
69 static void dump_ifile(int, struct lfs *, int, int, daddr_t);
70 static int dump_ipage_ifile(struct lfs *, int, char *, int);
71 static int dump_ipage_segusage(struct lfs *, int, char *, int);
72 static void dump_segment(int, int, daddr_t, struct lfs *, int);
73 static int dump_sum(int, struct lfs *, SEGSUM *, int, daddr_t);
74 static void dump_super(struct lfs *);
75 static void usage(void);
76
77 extern u_long cksum(void *, size_t);
78
79 typedef struct seglist SEGLIST;
80 struct seglist {
81 SEGLIST *next;
82 int num;
83 };
84 SEGLIST *seglist;
85
86 char *special;
87
88 /* Segment Usage formats */
89 #define print_suheader \
90 (void)printf("segnum\tflags\tnbytes\tninos\tnsums\tlastmod\n")
91
92 static inline void
93 print_suentry(int i, SEGUSE *sp, struct lfs *fs)
94 {
95 time_t t;
96 char flags[4] = " ";
97
98 if (sp->su_flags & SEGUSE_ACTIVE)
99 flags[0] = 'A';
100 if (sp->su_flags & SEGUSE_DIRTY)
101 flags[1] = 'D';
102 else
103 flags[1] = 'C';
104 if (sp->su_flags & SEGUSE_SUPERBLOCK)
105 flags[2] = 'S';
106
107 t = (fs->lfs_version == 1 ? sp->su_olastmod : sp->su_lastmod);
108
109 printf("%d\t%s\t%d\t%d\t%d\t%s", i, flags,
110 sp->su_nbytes, sp->su_ninos, sp->su_nsums,
111 ctime(&t));
112 }
113
114 /* Ifile formats */
115 #define print_iheader \
116 (void)printf("inum\tstatus\tversion\tdaddr\t\tfreeptr\n")
117
118 static inline void
119 print_ientry(int i, IFILE *ip)
120 {
121 if (ip->if_daddr == LFS_UNUSED_DADDR)
122 printf("%d\tFREE\t%d\t \t\t%llu\n", i, ip->if_version,
123 (unsigned long long)ip->if_nextfree);
124 else
125 printf("%d\tINUSE\t%d\t%8X\t%s\n",
126 i, ip->if_version, ip->if_daddr,
127 (ip->if_nextfree == LFS_ORPHAN_NEXTFREE ? "FFFFFFFF" : "-"));
128 }
129
130 #define fsbtobyte(fs, b) fsbtob((fs), (off_t)((b)))
131
132 int datasum_check = 0;
133
134 int
135 main(int argc, char **argv)
136 {
137 struct lfs lfs_sb1, lfs_sb2, *lfs_master;
138 daddr_t seg_addr, idaddr, sbdaddr;
139 int ch, do_allsb, do_ientries, do_segentries, fd, segnum;
140
141 do_allsb = 0;
142 do_ientries = 0;
143 do_segentries = 0;
144 idaddr = 0x0;
145 sbdaddr = 0x0;
146 while ((ch = getopt(argc, argv, "ab:diI:Ss:")) != -1)
147 switch(ch) {
148 case 'a': /* Dump all superblocks */
149 do_allsb = 1;
150 break;
151 case 'b': /* Use this superblock */
152 sbdaddr = strtol(optarg, NULL, 0);
153 break;
154 case 'd':
155 datasum_check = 1;
156 break;
157 case 'i': /* Dump ifile entries */
158 do_ientries = !do_ientries;
159 break;
160 case 'I': /* Use this ifile inode */
161 idaddr = strtol(optarg, NULL, 0);
162 break;
163 case 'S':
164 do_segentries = !do_segentries;
165 break;
166 case 's': /* Dump out these segments */
167 addseg(optarg);
168 break;
169 default:
170 usage();
171 }
172 argc -= optind;
173 argv += optind;
174
175 if (argc != 1)
176 usage();
177
178 special = argv[0];
179 if ((fd = open(special, O_RDONLY, 0)) < 0)
180 err(1, "%s", special);
181
182 if (sbdaddr == 0x0) {
183 /* Read the proto-superblock */
184 get(fd, LFS_LABELPAD, &(lfs_sb1.lfs_dlfs), sizeof(struct dlfs));
185
186 /* If that wasn't the real first sb, get the real first sb */
187 if (lfs_sb1.lfs_version > 1 &&
188 lfs_sb1.lfs_sboffs[0] > btofsb(&lfs_sb1, LFS_LABELPAD))
189 get(fd, fsbtob(&lfs_sb1, lfs_sb1.lfs_sboffs[0]),
190 &(lfs_sb1.lfs_dlfs), sizeof(struct dlfs));
191
192 /*
193 * Read the second superblock and figure out which check point is
194 * most up to date.
195 */
196 get(fd,
197 fsbtobyte(&lfs_sb1, lfs_sb1.lfs_sboffs[1]),
198 &(lfs_sb2.lfs_dlfs), sizeof(struct dlfs));
199
200 lfs_master = &lfs_sb1;
201 if (lfs_sb1.lfs_version > 1) {
202 if (lfs_sb1.lfs_serial > lfs_sb2.lfs_serial) {
203 lfs_master = &lfs_sb2;
204 sbdaddr = lfs_sb1.lfs_sboffs[1];
205 } else
206 sbdaddr = lfs_sb1.lfs_sboffs[0];
207 } else {
208 if (lfs_sb1.lfs_otstamp > lfs_sb2.lfs_otstamp) {
209 lfs_master = &lfs_sb2;
210 sbdaddr = lfs_sb1.lfs_sboffs[1];
211 } else
212 sbdaddr = lfs_sb1.lfs_sboffs[0];
213 }
214 } else {
215 /* Read the first superblock */
216 get(fd, dbtob((off_t)sbdaddr), &(lfs_sb1.lfs_dlfs),
217 sizeof(struct dlfs));
218 lfs_master = &lfs_sb1;
219 }
220
221 /* Compatibility */
222 if (lfs_master->lfs_version == 1) {
223 lfs_master->lfs_sumsize = LFS_V1_SUMMARY_SIZE;
224 lfs_master->lfs_ibsize = lfs_master->lfs_bsize;
225 lfs_master->lfs_start = lfs_master->lfs_sboffs[0];
226 lfs_master->lfs_tstamp = lfs_master->lfs_otstamp;
227 lfs_master->lfs_fsbtodb = 0;
228 }
229
230 (void)printf("Master Superblock at 0x%llx:\n", (long long)sbdaddr);
231 dump_super(lfs_master);
232
233 dump_ifile(fd, lfs_master, do_ientries, do_segentries, idaddr);
234
235 if (seglist != NULL)
236 for (; seglist != NULL; seglist = seglist->next) {
237 seg_addr = sntod(lfs_master, seglist->num);
238 dump_segment(fd, seglist->num, seg_addr, lfs_master,
239 do_allsb);
240 }
241 else
242 for (segnum = 0, seg_addr = sntod(lfs_master, 0);
243 segnum < lfs_master->lfs_nseg;
244 segnum++, seg_addr = sntod(lfs_master, segnum))
245 dump_segment(fd, segnum, seg_addr, lfs_master,
246 do_allsb);
247
248 (void)close(fd);
249 exit(0);
250 }
251
252 /*
253 * We are reading all the blocks of an inode and dumping out the ifile table.
254 * This code could be tighter, but this is a first pass at getting the stuff
255 * printed out rather than making this code incredibly efficient.
256 */
257 static void
258 dump_ifile(int fd, struct lfs *lfsp, int do_ientries, int do_segentries, daddr_t addr)
259 {
260 char *ipage;
261 struct ufs1_dinode *dip, *dpage;
262 /* XXX ondisk32 */
263 int32_t *addrp, *dindir, *iaddrp, *indir;
264 int block_limit, i, inum, j, nblocks, psize;
265
266 psize = lfsp->lfs_bsize;
267 if (!addr)
268 addr = lfsp->lfs_idaddr;
269
270 if (!(dpage = malloc(psize)))
271 err(1, "malloc");
272 get(fd, fsbtobyte(lfsp, addr), dpage, psize);
273
274 for (dip = dpage + INOPB(lfsp) - 1; dip >= dpage; --dip)
275 if (dip->di_inumber == LFS_IFILE_INUM)
276 break;
277
278 if (dip < dpage)
279 errx(1, "unable to locate ifile inode at disk address 0x%llx",
280 (long long)addr);
281
282 (void)printf("\nIFILE inode\n");
283 dump_dinode(dip);
284
285 (void)printf("\nIFILE contents\n");
286 nblocks = dip->di_size >> lfsp->lfs_bshift;
287 block_limit = MIN(nblocks, NDADDR);
288
289 /* Get the direct block */
290 if ((ipage = malloc(psize)) == NULL)
291 err(1, "malloc");
292 for (inum = 0, addrp = dip->di_db, i = 0; i < block_limit;
293 i++, addrp++) {
294 get(fd, fsbtobyte(lfsp, *addrp), ipage, psize);
295 if (i < lfsp->lfs_cleansz) {
296 dump_cleaner_info(lfsp, ipage);
297 if (do_segentries)
298 print_suheader;
299 continue;
300 }
301
302 if (i < (lfsp->lfs_segtabsz + lfsp->lfs_cleansz)) {
303 if (do_segentries)
304 inum = dump_ipage_segusage(lfsp, inum, ipage,
305 lfsp->lfs_sepb);
306 else
307 inum = (i < lfsp->lfs_segtabsz + lfsp->lfs_cleansz - 1);
308 if (!inum) {
309 if(!do_ientries)
310 goto e0;
311 else
312 print_iheader;
313 }
314 } else
315 inum = dump_ipage_ifile(lfsp, inum, ipage, lfsp->lfs_ifpb);
316 }
317
318 if (nblocks <= NDADDR)
319 goto e0;
320
321 /* Dump out blocks off of single indirect block */
322 if (!(indir = malloc(psize)))
323 err(1, "malloc");
324 get(fd, fsbtobyte(lfsp, dip->di_ib[0]), indir, psize);
325 block_limit = MIN(i + lfsp->lfs_nindir, nblocks);
326 for (addrp = indir; i < block_limit; i++, addrp++) {
327 if (*addrp == LFS_UNUSED_DADDR)
328 break;
329 get(fd, fsbtobyte(lfsp, *addrp), ipage, psize);
330 if (i < lfsp->lfs_cleansz) {
331 dump_cleaner_info(lfsp, ipage);
332 continue;
333 }
334
335 if (i < lfsp->lfs_segtabsz + lfsp->lfs_cleansz) {
336 if (do_segentries)
337 inum = dump_ipage_segusage(lfsp, inum, ipage,
338 lfsp->lfs_sepb);
339 else
340 inum = (i < lfsp->lfs_segtabsz + lfsp->lfs_cleansz - 1);
341 if (!inum) {
342 if(!do_ientries)
343 goto e1;
344 else
345 print_iheader;
346 }
347 } else
348 inum = dump_ipage_ifile(lfsp, inum, ipage, lfsp->lfs_ifpb);
349 }
350
351 if (nblocks <= lfsp->lfs_nindir * lfsp->lfs_ifpb)
352 goto e1;
353
354 /* Get the double indirect block */
355 if (!(dindir = malloc(psize)))
356 err(1, "malloc");
357 get(fd, fsbtobyte(lfsp, dip->di_ib[1]), dindir, psize);
358 for (iaddrp = dindir, j = 0; j < lfsp->lfs_nindir; j++, iaddrp++) {
359 if (*iaddrp == LFS_UNUSED_DADDR)
360 break;
361 get(fd, fsbtobyte(lfsp, *iaddrp), indir, psize);
362 block_limit = MIN(i + lfsp->lfs_nindir, nblocks);
363 for (addrp = indir; i < block_limit; i++, addrp++) {
364 if (*addrp == LFS_UNUSED_DADDR)
365 break;
366 get(fd, fsbtobyte(lfsp, *addrp), ipage, psize);
367 if (i < lfsp->lfs_cleansz) {
368 dump_cleaner_info(lfsp, ipage);
369 continue;
370 }
371
372 if (i < lfsp->lfs_segtabsz + lfsp->lfs_cleansz) {
373 if (do_segentries)
374 inum = dump_ipage_segusage(lfsp,
375 inum, ipage, lfsp->lfs_sepb);
376 else
377 inum = (i < lfsp->lfs_segtabsz +
378 lfsp->lfs_cleansz - 1);
379 if (!inum) {
380 if(!do_ientries)
381 goto e2;
382 else
383 print_iheader;
384 }
385 } else
386 inum = dump_ipage_ifile(lfsp, inum,
387 ipage, lfsp->lfs_ifpb);
388 }
389 }
390 e2: free(dindir);
391 e1: free(indir);
392 e0: free(dpage);
393 free(ipage);
394 }
395
396 static int
397 dump_ipage_ifile(struct lfs *lfsp, int i, char *pp, int tot)
398 {
399 char *ip;
400 int cnt, max, entsize;
401
402 if (lfsp->lfs_version == 1)
403 entsize = sizeof(IFILE_V1);
404 else
405 entsize = sizeof(IFILE);
406 max = i + tot;
407
408 for (ip = pp, cnt = i; cnt < max; cnt++, ip += entsize)
409 print_ientry(cnt, (IFILE *)ip);
410 return (max);
411 }
412
413 static int
414 dump_ipage_segusage(struct lfs *lfsp, int i, char *pp, int tot)
415 {
416 SEGUSE *sp;
417 int cnt, max;
418 struct seglist *slp;
419
420 max = i + tot;
421 for (sp = (SEGUSE *)pp, cnt = i;
422 cnt < lfsp->lfs_nseg && cnt < max; cnt++) {
423 if (seglist == NULL)
424 print_suentry(cnt, sp, lfsp);
425 else {
426 for (slp = seglist; slp != NULL; slp = slp->next)
427 if (cnt == slp->num) {
428 print_suentry(cnt, sp, lfsp);
429 break;
430 }
431 }
432 if (lfsp->lfs_version > 1)
433 ++sp;
434 else
435 sp = (SEGUSE *)((SEGUSE_V1 *)sp + 1);
436 }
437 if (max >= lfsp->lfs_nseg)
438 return (0);
439 else
440 return (max);
441 }
442
443 static void
444 dump_dinode(struct ufs1_dinode *dip)
445 {
446 int i;
447 time_t at, mt, ct;
448
449 at = dip->di_atime;
450 mt = dip->di_mtime;
451 ct = dip->di_ctime;
452
453 (void)printf(" %so%o\t%s%d\t%s%d\t%s%d\t%s%llu\n",
454 "mode ", dip->di_mode,
455 "nlink ", dip->di_nlink,
456 "uid ", dip->di_uid,
457 "gid ", dip->di_gid,
458 "size ", (long long)dip->di_size);
459 (void)printf(" %s%s %s%s %s%s",
460 "atime ", ctime(&at),
461 "mtime ", ctime(&mt),
462 "ctime ", ctime(&ct));
463 (void)printf(" inum %d\n", dip->di_inumber);
464 (void)printf(" Direct Addresses\n");
465 for (i = 0; i < NDADDR; i++) {
466 (void)printf("\t0x%x", dip->di_db[i]);
467 if ((i % 6) == 5)
468 (void)printf("\n");
469 }
470 for (i = 0; i < NIADDR; i++)
471 (void)printf("\t0x%x", dip->di_ib[i]);
472 (void)printf("\n");
473 }
474
475 static int
476 dump_sum(int fd, struct lfs *lfsp, SEGSUM *sp, int segnum, daddr_t addr)
477 {
478 FINFO *fp;
479 int32_t *dp, *idp;
480 int i, j, acc;
481 int ck;
482 int numbytes, numblocks;
483 char *datap;
484 struct ufs1_dinode *inop;
485 size_t el_size;
486 u_int32_t datasum;
487 time_t t;
488 char *buf;
489
490 if (sp->ss_magic != SS_MAGIC ||
491 sp->ss_sumsum != (ck = cksum(&sp->ss_datasum,
492 lfsp->lfs_sumsize - sizeof(sp->ss_sumsum)))) {
493 /* Don't print "corrupt" if we're just too close to the edge */
494 if (dtosn(lfsp, addr + fsbtodb(lfsp, 1)) ==
495 dtosn(lfsp, addr))
496 (void)printf("dumplfs: %s %d address 0x%llx\n",
497 "corrupt summary block; segment", segnum,
498 (long long)addr);
499 return -1;
500 }
501 if (lfsp->lfs_version > 1 && sp->ss_ident != lfsp->lfs_ident) {
502 (void)printf("dumplfs: %s %d address 0x%llx\n",
503 "summary from a former life; segment", segnum,
504 (long long)addr);
505 return -1;
506 }
507
508 (void)printf("Segment Summary Info at 0x%llx\n", (long long)addr);
509 (void)printf(" %s0x%x\t%s%d\t%s%d\t%s%c%c%c%c\n %s0x%x\t%s0x%x",
510 "next ", sp->ss_next,
511 "nfinfo ", sp->ss_nfinfo,
512 "ninos ", sp->ss_ninos,
513 "flags ", (sp->ss_flags & SS_DIROP) ? 'D' : '-',
514 (sp->ss_flags & SS_CONT) ? 'C' : '-',
515 (sp->ss_flags & SS_CLEAN) ? 'L' : '-',
516 (sp->ss_flags & SS_RFW) ? 'R' : '-',
517 "sumsum ", sp->ss_sumsum,
518 "datasum ", sp->ss_datasum );
519 if (lfsp->lfs_version == 1) {
520 t = sp->ss_ocreate;
521 (void)printf("\tcreate %s\n", ctime(&t));
522 } else {
523 t = sp->ss_create;
524 (void)printf("\tcreate %s", ctime(&t));
525 (void)printf(" roll_id %-8x", sp->ss_ident);
526 (void)printf(" serial %lld\n", (long long)sp->ss_serial);
527 }
528
529 /* Dump out inode disk addresses */
530 dp = (int32_t *)sp;
531 dp += lfsp->lfs_sumsize / sizeof(int32_t);
532 inop = malloc(lfsp->lfs_bsize);
533 printf(" Inode addresses:");
534 numbytes = 0;
535 numblocks = 0;
536 for (dp--, i = 0; i < sp->ss_ninos; dp--) {
537 ++numblocks;
538 numbytes += lfsp->lfs_ibsize; /* add bytes for inode block */
539 printf("\t0x%x {", *dp);
540 get(fd, fsbtobyte(lfsp, *dp), inop, lfsp->lfs_ibsize);
541 for (j = 0; i < sp->ss_ninos && j < INOPB(lfsp); j++, i++) {
542 if (j > 0)
543 (void)printf(", ");
544 (void)printf("%dv%d", inop[j].di_inumber, inop[j].di_gen);
545 }
546 (void)printf("}");
547 if (((i/INOPB(lfsp)) % 4) == 3)
548 (void)printf("\n");
549 }
550 free(inop);
551
552 printf("\n");
553
554 if (lfsp->lfs_version == 1)
555 fp = (FINFO *)((SEGSUM_V1 *)sp + 1);
556 else
557 fp = (FINFO *)(sp + 1);
558 for (i = 0; i < sp->ss_nfinfo; i++) {
559 (void)printf(" FINFO for inode: %d version %d nblocks %d lastlength %d\n",
560 fp->fi_ino, fp->fi_version, fp->fi_nblocks,
561 fp->fi_lastlength);
562 dp = &(fp->fi_blocks[0]);
563 numblocks += fp->fi_nblocks;
564 for (j = 0; j < fp->fi_nblocks; j++, dp++) {
565 (void)printf("\t%d", *dp);
566 if ((j % 8) == 7)
567 (void)printf("\n");
568 if (j == fp->fi_nblocks - 1)
569 numbytes += fp->fi_lastlength;
570 else
571 numbytes += lfsp->lfs_bsize;
572 }
573 if ((j % 8) != 0)
574 (void)printf("\n");
575 fp = (FINFO *)dp;
576 }
577
578 if (datasum_check == 0)
579 return (numbytes);
580
581 /*
582 * Now that we know the number of blocks, run back through and
583 * compute the data checksum. (A bad data checksum is not enough
584 * to prevent us from continuing, but it odes merit a warning.)
585 */
586 idp = (int32_t *)sp;
587 idp += lfsp->lfs_sumsize / sizeof(int32_t);
588 --idp;
589 if (lfsp->lfs_version == 1) {
590 fp = (FINFO *)((SEGSUM_V1 *)sp + 1);
591 el_size = sizeof(unsigned long);
592 } else {
593 fp = (FINFO *)(sp + 1);
594 el_size = sizeof(u_int32_t);
595 }
596 datap = (char *)malloc(el_size * numblocks);
597 memset(datap, 0, el_size * numblocks);
598 acc = 0;
599 addr += btofsb(lfsp, lfsp->lfs_sumsize);
600 buf = malloc(lfsp->lfs_bsize);
601 for (i = 0; i < sp->ss_nfinfo; i++) {
602 while (addr == *idp) {
603 get(fd, fsbtobyte(lfsp, addr), buf, lfsp->lfs_ibsize);
604 memcpy(datap + acc * el_size, buf, el_size);
605 addr += btofsb(lfsp, lfsp->lfs_ibsize);
606 --idp;
607 ++acc;
608 }
609 for (j = 0; j < fp->fi_nblocks; j++) {
610 get(fd, fsbtobyte(lfsp, addr), buf, lfsp->lfs_fsize);
611 memcpy(datap + acc * el_size, buf, el_size);
612 if (j == fp->fi_nblocks - 1)
613 addr += btofsb(lfsp, fp->fi_lastlength);
614 else
615 addr += btofsb(lfsp, lfsp->lfs_bsize);
616 ++acc;
617 }
618 fp = (FINFO *)&(fp->fi_blocks[fp->fi_nblocks]);
619 }
620 while (addr == *idp) {
621 get(fd, fsbtobyte(lfsp, addr), buf, lfsp->lfs_ibsize);
622 memcpy(datap + acc * el_size, buf, el_size);
623 addr += btofsb(lfsp, lfsp->lfs_ibsize);
624 --idp;
625 ++acc;
626 }
627 free(buf);
628 if (acc != numblocks)
629 printf("** counted %d blocks but should have been %d\n",
630 acc, numblocks);
631 datasum = cksum(datap, numblocks * el_size);
632 if (datasum != sp->ss_datasum)
633 printf("** computed datasum 0x%lx does not match given datasum 0x%lx\n", (unsigned long)datasum, (unsigned long)sp->ss_datasum);
634 free(datap);
635
636 return (numbytes);
637 }
638
639 static void
640 dump_segment(int fd, int segnum, daddr_t addr, struct lfs *lfsp, int dump_sb)
641 {
642 struct lfs lfs_sb, *sbp;
643 SEGSUM *sump;
644 char *sumblock;
645 int did_one, nbytes, sb;
646 off_t sum_offset;
647 daddr_t new_addr;
648
649 (void)printf("\nSEGMENT %lld (Disk Address 0x%llx)\n",
650 (long long)dtosn(lfsp, addr), (long long)addr);
651 sum_offset = fsbtobyte(lfsp, addr);
652 sumblock = malloc(lfsp->lfs_sumsize);
653
654 if (lfsp->lfs_version > 1 && segnum == 0) {
655 if (fsbtob(lfsp, lfsp->lfs_start) < LFS_LABELPAD) {
656 /* First segment eats the disklabel */
657 sum_offset += fragroundup(lfsp, LFS_LABELPAD) -
658 fsbtob(lfsp, lfsp->lfs_start);
659 addr += btofsb(lfsp, fragroundup(lfsp, LFS_LABELPAD)) -
660 lfsp->lfs_start;
661 printf("Disklabel at 0x0\n");
662 }
663 }
664
665 sb = 0;
666 did_one = 0;
667 do {
668 get(fd, sum_offset, sumblock, lfsp->lfs_sumsize);
669 sump = (SEGSUM *)sumblock;
670 if ((lfsp->lfs_version > 1 &&
671 sump->ss_ident != lfsp->lfs_ident) ||
672 sump->ss_sumsum != cksum (&sump->ss_datasum,
673 lfsp->lfs_sumsize - sizeof(sump->ss_sumsum))) {
674 sbp = (struct lfs *)sump;
675 if ((sb = (sbp->lfs_magic == LFS_MAGIC))) {
676 printf("Superblock at 0x%x\n",
677 (unsigned)btofsb(lfsp, sum_offset));
678 if (dump_sb) {
679 get(fd, sum_offset, &(lfs_sb.lfs_dlfs),
680 sizeof(struct dlfs));
681 dump_super(&lfs_sb);
682 }
683 if (lfsp->lfs_version > 1)
684 sum_offset += fragroundup(lfsp, LFS_SBPAD);
685 else
686 sum_offset += LFS_SBPAD;
687 } else if (did_one)
688 break;
689 else {
690 printf("Segment at 0x%llx empty or corrupt\n",
691 (long long)addr);
692 break;
693 }
694 } else {
695 nbytes = dump_sum(fd, lfsp, sump, segnum,
696 btofsb(lfsp, sum_offset));
697 if (nbytes >= 0)
698 sum_offset += lfsp->lfs_sumsize + nbytes;
699 else
700 sum_offset = 0;
701 did_one = 1;
702 }
703 /* If the segment ends right on a boundary, it still ends */
704 new_addr = btofsb(lfsp, sum_offset);
705 /* printf("end daddr = 0x%lx\n", (long)new_addr); */
706 if (dtosn(lfsp, new_addr) != dtosn(lfsp, addr))
707 break;
708 } while (sum_offset);
709
710 free(sumblock);
711 }
712
713 static void
714 dump_super(struct lfs *lfsp)
715 {
716 int i;
717
718 (void)printf(" %s0x%-8x %s0x%-8x %s%-10d\n",
719 "magic ", lfsp->lfs_magic,
720 "version ", lfsp->lfs_version,
721 "size ", lfsp->lfs_size);
722 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
723 "ssize ", lfsp->lfs_ssize,
724 "dsize ", lfsp->lfs_dsize,
725 "bsize ", lfsp->lfs_bsize);
726 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
727 "fsize ", lfsp->lfs_fsize,
728 "frag ", lfsp->lfs_frag,
729 "minfree ", lfsp->lfs_minfree);
730 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
731 "inopb ", lfsp->lfs_inopb,
732 "ifpb ", lfsp->lfs_ifpb,
733 "nindir ", lfsp->lfs_nindir);
734 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
735 "nseg ", lfsp->lfs_nseg,
736 "sepb ", lfsp->lfs_sepb,
737 "cleansz ", lfsp->lfs_cleansz);
738 (void)printf(" %s%-10d %s0x%-8x %s%-10d\n",
739 "segtabsz ", lfsp->lfs_segtabsz,
740 "segmask ", lfsp->lfs_segmask,
741 "segshift ", lfsp->lfs_segshift);
742 (void)printf(" %s0x%-8qx %s%-10d %s0x%-8qX\n",
743 "bmask ", (long long)lfsp->lfs_bmask,
744 "bshift ", lfsp->lfs_bshift,
745 "ffmask ", (long long)lfsp->lfs_ffmask);
746 (void)printf(" %s%-10d %s0x%-8qx %s%u\n",
747 "ffshift ", lfsp->lfs_ffshift,
748 "fbmask ", (long long)lfsp->lfs_fbmask,
749 "fbshift ", lfsp->lfs_fbshift);
750
751 (void)printf(" %s%-10d %s%-10d %s0x%-8x\n",
752 "sushift ", lfsp->lfs_sushift,
753 "fsbtodb ", lfsp->lfs_fsbtodb,
754 "cksum ", lfsp->lfs_cksum);
755 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
756 "nclean ", lfsp->lfs_nclean,
757 "dmeta ", lfsp->lfs_dmeta,
758 "minfreeseg ", lfsp->lfs_minfreeseg);
759 (void)printf(" %s0x%-8x %s%-9d %s%-10d\n",
760 "roll_id ", lfsp->lfs_ident,
761 "interleave ", lfsp->lfs_interleave,
762 "sumsize ", lfsp->lfs_sumsize);
763 (void)printf(" %s%-10d %s0x%-8qx\n",
764 "seg0addr ", lfsp->lfs_start,
765 "maxfilesize ", (long long)lfsp->lfs_maxfilesize);
766
767
768 (void)printf(" Superblock disk addresses:\n ");
769 for (i = 0; i < LFS_MAXNUMSB; i++) {
770 (void)printf(" 0x%-8x", lfsp->lfs_sboffs[i]);
771 if (i == (LFS_MAXNUMSB >> 1))
772 (void)printf("\n ");
773 }
774 (void)printf("\n");
775
776 (void)printf(" Checkpoint Info\n");
777 (void)printf(" %s%-10d %s0x%-8x %s%-10d\n",
778 "freehd ", lfsp->lfs_freehd,
779 "idaddr ", lfsp->lfs_idaddr,
780 "ifile ", lfsp->lfs_ifile);
781 (void)printf(" %s%-10d %s%-10d %s%-10d\n",
782 "uinodes ", lfsp->lfs_uinodes,
783 "bfree ", lfsp->lfs_bfree,
784 "avail ", lfsp->lfs_avail);
785 (void)printf(" %s%-10d %s0x%-8x %s0x%-8x\n",
786 "nfiles ", lfsp->lfs_nfiles,
787 "lastseg ", lfsp->lfs_lastseg,
788 "nextseg ", lfsp->lfs_nextseg);
789 (void)printf(" %s0x%-8x %s0x%-8x %s%-10lld\n",
790 "curseg ", lfsp->lfs_curseg,
791 "offset ", lfsp->lfs_offset,
792 "serial ", (long long)lfsp->lfs_serial);
793 (void)printf(" tstamp %s", ctime((time_t *)&lfsp->lfs_tstamp));
794 }
795
796 static void
797 addseg(char *arg)
798 {
799 SEGLIST *p;
800
801 if ((p = malloc(sizeof(SEGLIST))) == NULL)
802 err(1, "malloc");
803 p->next = seglist;
804 p->num = atoi(arg);
805 seglist = p;
806 }
807
808 static void
809 dump_cleaner_info(struct lfs *lfsp, void *ipage)
810 {
811 CLEANERINFO *cip;
812
813 cip = (CLEANERINFO *)ipage;
814 if (lfsp->lfs_version > 1) {
815 (void)printf("free_head %d\n", cip->free_head);
816 (void)printf("free_tail %d\n", cip->free_tail);
817 }
818 (void)printf("clean\t%d\tdirty\t%d\n",
819 cip->clean, cip->dirty);
820 (void)printf("bfree\t%d\tavail\t%d\n\n",
821 cip->bfree, cip->avail);
822 }
823
824 static void
825 usage(void)
826 {
827 (void)fprintf(stderr, "usage: dumplfs [-adiS] [-b blkno] [-I blkno] [-s segno] filesys|device\n");
828 exit(1);
829 }
830