pass1.c revision 1.52 1 1.52 dholland /* $NetBSD: pass1.c,v 1.52 2013/06/19 17:51:25 dholland Exp $ */
2 1.13 cgd
3 1.1 cgd /*
4 1.7 mycroft * Copyright (c) 1980, 1986, 1993
5 1.7 mycroft * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * Redistribution and use in source and binary forms, with or without
8 1.1 cgd * modification, are permitted provided that the following conditions
9 1.1 cgd * are met:
10 1.1 cgd * 1. Redistributions of source code must retain the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer.
12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 cgd * notice, this list of conditions and the following disclaimer in the
14 1.1 cgd * documentation and/or other materials provided with the distribution.
15 1.29 agc * 3. Neither the name of the University nor the names of its contributors
16 1.1 cgd * may be used to endorse or promote products derived from this software
17 1.1 cgd * without specific prior written permission.
18 1.1 cgd *
19 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 cgd * SUCH DAMAGE.
30 1.1 cgd */
31 1.1 cgd
32 1.17 lukem #include <sys/cdefs.h>
33 1.1 cgd #ifndef lint
34 1.13 cgd #if 0
35 1.19 lukem static char sccsid[] = "@(#)pass1.c 8.6 (Berkeley) 4/28/95";
36 1.13 cgd #else
37 1.52 dholland __RCSID("$NetBSD: pass1.c,v 1.52 2013/06/19 17:51:25 dholland Exp $");
38 1.13 cgd #endif
39 1.1 cgd #endif /* not lint */
40 1.1 cgd
41 1.1 cgd #include <sys/param.h>
42 1.32 hannken #include <sys/stat.h>
43 1.6 cgd #include <sys/time.h>
44 1.19 lukem
45 1.7 mycroft #include <ufs/ufs/dinode.h>
46 1.7 mycroft #include <ufs/ufs/dir.h>
47 1.7 mycroft #include <ufs/ffs/fs.h>
48 1.27 fvdl #include <ufs/ufs/ufs_bswap.h>
49 1.27 fvdl #include <ufs/ffs/ffs_extern.h>
50 1.12 cgd
51 1.19 lukem #include <err.h>
52 1.20 lukem #include <stdio.h>
53 1.20 lukem #include <stdlib.h>
54 1.1 cgd #include <string.h>
55 1.12 cgd
56 1.1 cgd #include "fsck.h"
57 1.12 cgd #include "extern.h"
58 1.16 christos #include "fsutil.h"
59 1.44 christos #include "exitvalues.h"
60 1.1 cgd
61 1.26 fvdl static daddr_t badblk;
62 1.26 fvdl static daddr_t dupblk;
63 1.36 xtraeme static void checkinode(ino_t, struct inodesc *);
64 1.27 fvdl static ino_t lastino;
65 1.1 cgd
66 1.12 cgd void
67 1.35 xtraeme pass1(void)
68 1.1 cgd {
69 1.49 christos ino_t inumber, inosused, ninosused, ii;
70 1.45 christos size_t inospace;
71 1.27 fvdl int c;
72 1.27 fvdl daddr_t i, cgd;
73 1.1 cgd struct inodesc idesc;
74 1.27 fvdl struct cg *cgp = cgrp;
75 1.27 fvdl struct inostat *info;
76 1.27 fvdl uint8_t *cp;
77 1.1 cgd
78 1.1 cgd /*
79 1.1 cgd * Set file system reserved blocks in used block map.
80 1.1 cgd */
81 1.21 bouyer for (c = 0; c < sblock->fs_ncg; c++) {
82 1.21 bouyer cgd = cgdmin(sblock, c);
83 1.14 mycroft if (c == 0)
84 1.21 bouyer i = cgbase(sblock, c);
85 1.14 mycroft else
86 1.21 bouyer i = cgsblock(sblock, c);
87 1.1 cgd for (; i < cgd; i++)
88 1.1 cgd setbmap(i);
89 1.1 cgd }
90 1.21 bouyer i = sblock->fs_csaddr;
91 1.21 bouyer cgd = i + howmany(sblock->fs_cssize, sblock->fs_fsize);
92 1.14 mycroft for (; i < cgd; i++)
93 1.14 mycroft setbmap(i);
94 1.1 cgd /*
95 1.1 cgd * Find all allocated blocks.
96 1.1 cgd */
97 1.10 mycroft memset(&idesc, 0, sizeof(struct inodesc));
98 1.1 cgd idesc.id_func = pass1check;
99 1.1 cgd n_files = n_blks = 0;
100 1.21 bouyer for (c = 0; c < sblock->fs_ncg; c++) {
101 1.27 fvdl inumber = c * sblock->fs_ipg;
102 1.27 fvdl setinodebuf(inumber);
103 1.27 fvdl getblk(&cgblk, cgtod(sblock, c), sblock->fs_cgsize);
104 1.27 fvdl memcpy(cgp, cgblk.b_un.b_cg, sblock->fs_cgsize);
105 1.27 fvdl if((doswap && !needswap) || (!doswap && needswap))
106 1.27 fvdl ffs_cg_swap(cgblk.b_un.b_cg, cgp, sblock);
107 1.27 fvdl if (is_ufs2)
108 1.27 fvdl inosused = cgp->cg_initediblk;
109 1.27 fvdl else
110 1.27 fvdl inosused = sblock->fs_ipg;
111 1.24 lukem if (got_siginfo) {
112 1.50 riastrad fprintf(stderr,
113 1.50 riastrad "%s: phase 1: cyl group %d of %d (%d%%)\n",
114 1.24 lukem cdevname(), c, sblock->fs_ncg,
115 1.24 lukem c * 100 / sblock->fs_ncg);
116 1.24 lukem got_siginfo = 0;
117 1.24 lukem }
118 1.34 christos #ifdef PROGRESS
119 1.33 christos progress_bar(cdevname(), preen ? NULL : "phase 1",
120 1.33 christos c, sblock->fs_ncg);
121 1.34 christos #endif /* PROGRESS */
122 1.27 fvdl /*
123 1.27 fvdl * If we are using soft updates, then we can trust the
124 1.27 fvdl * cylinder group inode allocation maps to tell us which
125 1.27 fvdl * inodes are allocated. We will scan the used inode map
126 1.27 fvdl * to find the inodes that are really in use, and then
127 1.27 fvdl * read only those inodes in from disk.
128 1.27 fvdl */
129 1.27 fvdl if (preen && usedsoftdep) {
130 1.27 fvdl if (!cg_chkmagic(cgp, 0))
131 1.27 fvdl pfatal("CG %d: BAD MAGIC NUMBER\n", c);
132 1.27 fvdl cp = &cg_inosused(cgp, 0)[(inosused - 1) / CHAR_BIT];
133 1.27 fvdl for ( ; inosused > 0; inosused -= CHAR_BIT, cp--) {
134 1.27 fvdl if (*cp == 0)
135 1.27 fvdl continue;
136 1.27 fvdl for (i = 1 << (CHAR_BIT - 1); i > 0; i >>= 1) {
137 1.27 fvdl if (*cp & i)
138 1.27 fvdl break;
139 1.27 fvdl inosused--;
140 1.27 fvdl }
141 1.27 fvdl break;
142 1.27 fvdl }
143 1.42 christos #ifdef notdef
144 1.27 fvdl if (inosused < 0)
145 1.27 fvdl inosused = 0;
146 1.42 christos #endif
147 1.27 fvdl }
148 1.27 fvdl /*
149 1.27 fvdl * Allocate inoinfo structures for the allocated inodes.
150 1.27 fvdl */
151 1.27 fvdl inostathead[c].il_numalloced = inosused;
152 1.27 fvdl if (inosused == 0) {
153 1.27 fvdl inostathead[c].il_stat = 0;
154 1.27 fvdl continue;
155 1.27 fvdl }
156 1.45 christos inospace = inosused * sizeof(*info);
157 1.45 christos if (inospace / sizeof(*info) != inosused) {
158 1.45 christos pfatal("too many inodes %llu\n", (unsigned long long)
159 1.45 christos inosused);
160 1.45 christos exit(FSCK_EXIT_CHECK_FAILED);
161 1.45 christos }
162 1.45 christos info = malloc(inospace);
163 1.27 fvdl if (info == NULL) {
164 1.45 christos pfatal("cannot alloc %zu bytes for inoinfo\n",
165 1.45 christos inospace);
166 1.44 christos exit(FSCK_EXIT_CHECK_FAILED);
167 1.27 fvdl }
168 1.45 christos (void)memset(info, 0, inospace);
169 1.27 fvdl inostathead[c].il_stat = info;
170 1.27 fvdl /*
171 1.27 fvdl * Scan the allocated inodes.
172 1.27 fvdl */
173 1.49 christos for (ii = 0; ii < inosused; ii++, inumber++) {
174 1.51 dholland if (inumber < UFS_ROOTINO) {
175 1.27 fvdl (void)getnextinode(inumber);
176 1.1 cgd continue;
177 1.27 fvdl }
178 1.7 mycroft checkinode(inumber, &idesc);
179 1.7 mycroft }
180 1.27 fvdl lastino += 1;
181 1.49 christos if (inosused < (ino_t)sblock->fs_ipg || inumber == lastino)
182 1.27 fvdl continue;
183 1.27 fvdl /*
184 1.27 fvdl * If we were not able to determine in advance which inodes
185 1.27 fvdl * were in use, then reduce the size of the inoinfo structure
186 1.27 fvdl * to the size necessary to describe the inodes that we
187 1.27 fvdl * really found.
188 1.27 fvdl */
189 1.49 christos if (lastino < (c * (ino_t)sblock->fs_ipg))
190 1.45 christos ninosused = 0;
191 1.27 fvdl else
192 1.45 christos ninosused = lastino - (c * sblock->fs_ipg);
193 1.45 christos inostathead[c].il_numalloced = ninosused;
194 1.45 christos if (ninosused == 0) {
195 1.27 fvdl free(inostathead[c].il_stat);
196 1.27 fvdl inostathead[c].il_stat = 0;
197 1.27 fvdl continue;
198 1.27 fvdl }
199 1.45 christos if (ninosused != inosused) {
200 1.45 christos struct inostat *ninfo;
201 1.45 christos size_t ninospace = ninosused * sizeof(*ninfo);
202 1.45 christos if (ninospace / sizeof(*info) != ninosused) {
203 1.45 christos pfatal("too many inodes %llu\n",
204 1.45 christos (unsigned long long)ninosused);
205 1.45 christos exit(FSCK_EXIT_CHECK_FAILED);
206 1.45 christos }
207 1.46 christos ninfo = realloc(info, ninospace);
208 1.45 christos if (ninfo == NULL) {
209 1.45 christos pfatal("cannot realloc %zu bytes to %zu "
210 1.45 christos "for inoinfo\n", inospace, ninospace);
211 1.45 christos exit(FSCK_EXIT_CHECK_FAILED);
212 1.45 christos }
213 1.45 christos if (ninosused > inosused)
214 1.45 christos (void)memset(&ninfo[inosused], 0, ninospace - inospace);
215 1.45 christos inostathead[c].il_stat = ninfo;
216 1.27 fvdl }
217 1.7 mycroft }
218 1.34 christos #ifdef PROGRESS
219 1.43 apb if (!preen)
220 1.33 christos progress_done();
221 1.34 christos #endif /* PROGRESS */
222 1.7 mycroft freeinodebuf();
223 1.21 bouyer do_blkswap = 0; /* has been done */
224 1.7 mycroft }
225 1.7 mycroft
226 1.15 christos static void
227 1.35 xtraeme checkinode(ino_t inumber, struct inodesc *idesc)
228 1.7 mycroft {
229 1.27 fvdl union dinode *dp;
230 1.7 mycroft struct zlncnt *zlnp;
231 1.27 fvdl daddr_t ndb;
232 1.27 fvdl int j;
233 1.7 mycroft mode_t mode;
234 1.27 fvdl u_int64_t size, kernmaxfilesize;
235 1.27 fvdl int64_t blocks;
236 1.30 dbj char symbuf[MAXBSIZE];
237 1.27 fvdl struct inostat *info;
238 1.47 bouyer uid_t uid;
239 1.47 bouyer gid_t gid;
240 1.7 mycroft
241 1.7 mycroft dp = getnextinode(inumber);
242 1.27 fvdl info = inoinfo(inumber);
243 1.27 fvdl mode = iswap16(DIP(dp, mode)) & IFMT;
244 1.27 fvdl size = iswap64(DIP(dp, size));
245 1.47 bouyer uid = iswap32(DIP(dp, uid));
246 1.47 bouyer gid = iswap32(DIP(dp, gid));
247 1.7 mycroft if (mode == 0) {
248 1.27 fvdl if ((is_ufs2 &&
249 1.27 fvdl (memcmp(dp->dp2.di_db, ufs2_zino.di_db,
250 1.51 dholland UFS_NDADDR * sizeof(int64_t)) ||
251 1.27 fvdl memcmp(dp->dp2.di_ib, ufs2_zino.di_ib,
252 1.51 dholland UFS_NIADDR * sizeof(int64_t))))
253 1.27 fvdl ||
254 1.27 fvdl (!is_ufs2 &&
255 1.27 fvdl (memcmp(dp->dp1.di_db, ufs1_zino.di_db,
256 1.51 dholland UFS_NDADDR * sizeof(int32_t)) ||
257 1.27 fvdl memcmp(dp->dp1.di_ib, ufs1_zino.di_ib,
258 1.51 dholland UFS_NIADDR * sizeof(int32_t)))) ||
259 1.27 fvdl mode || size) {
260 1.39 christos pfatal("PARTIALLY ALLOCATED INODE I=%llu",
261 1.39 christos (unsigned long long)inumber);
262 1.1 cgd if (reply("CLEAR") == 1) {
263 1.1 cgd dp = ginode(inumber);
264 1.1 cgd clearinode(dp);
265 1.1 cgd inodirty();
266 1.21 bouyer } else
267 1.21 bouyer markclean = 0;
268 1.1 cgd }
269 1.27 fvdl info->ino_state = USTATE;
270 1.7 mycroft return;
271 1.7 mycroft }
272 1.7 mycroft lastino = inumber;
273 1.27 fvdl /* This should match the file size limit in ffs_mountfs(). */
274 1.27 fvdl if (is_ufs2)
275 1.27 fvdl kernmaxfilesize = sblock->fs_maxfilesize;
276 1.27 fvdl else
277 1.27 fvdl kernmaxfilesize = (u_int64_t)0x80000000 * sblock->fs_bsize - 1;
278 1.27 fvdl if (size > kernmaxfilesize || size + sblock->fs_bsize - 1 < size ||
279 1.52 dholland (mode == IFDIR && size > UFS_MAXDIRSIZE)) {
280 1.7 mycroft if (debug)
281 1.23 lukem printf("bad size %llu:",(unsigned long long)size);
282 1.7 mycroft goto unknown;
283 1.7 mycroft }
284 1.7 mycroft if (!preen && mode == IFMT && reply("HOLD BAD BLOCK") == 1) {
285 1.7 mycroft dp = ginode(inumber);
286 1.41 skrll DIP_SET(dp, size, iswap64(sblock->fs_fsize));
287 1.21 bouyer size = sblock->fs_fsize;
288 1.41 skrll DIP_SET(dp, mode, iswap16(IFREG|0600));
289 1.7 mycroft inodirty();
290 1.7 mycroft }
291 1.21 bouyer ndb = howmany(size, sblock->fs_bsize);
292 1.7 mycroft if (ndb < 0) {
293 1.7 mycroft if (debug)
294 1.27 fvdl printf("bad size %llu ndb %lld:",
295 1.27 fvdl (unsigned long long)size, (long long)ndb);
296 1.7 mycroft goto unknown;
297 1.7 mycroft }
298 1.7 mycroft if (mode == IFBLK || mode == IFCHR)
299 1.7 mycroft ndb++;
300 1.7 mycroft if (mode == IFLNK) {
301 1.7 mycroft /*
302 1.7 mycroft * Note that the old fastlink format always had di_blocks set
303 1.7 mycroft * to 0. Other than that we no longer use the `spare' field
304 1.7 mycroft * (which is now the extended uid) for sanity checking, the
305 1.7 mycroft * new format is the same as the old. We simply ignore the
306 1.7 mycroft * conversion altogether. - mycroft, 19MAY1994
307 1.7 mycroft */
308 1.27 fvdl if (!is_ufs2 && doinglevel2 &&
309 1.51 dholland size > 0 && size < UFS1_MAXSYMLINKLEN &&
310 1.27 fvdl DIP(dp, blocks) != 0) {
311 1.7 mycroft if (bread(fsreadfd, symbuf,
312 1.27 fvdl fsbtodb(sblock, iswap32(DIP(dp, db[0]))),
313 1.9 ws (long)secsize) != 0)
314 1.44 christos errexit("cannot read symlink");
315 1.7 mycroft if (debug) {
316 1.21 bouyer symbuf[size] = 0;
317 1.39 christos printf("convert symlink %llu(%s) "
318 1.39 christos "of size %lld\n",
319 1.39 christos (unsigned long long)inumber, symbuf,
320 1.21 bouyer (unsigned long long)size);
321 1.7 mycroft }
322 1.7 mycroft dp = ginode(inumber);
323 1.27 fvdl memmove(dp->dp1.di_db, symbuf, (long)size);
324 1.41 skrll DIP_SET(dp, blocks, 0);
325 1.7 mycroft inodirty();
326 1.7 mycroft }
327 1.7 mycroft /*
328 1.7 mycroft * Fake ndb value so direct/indirect block checks below
329 1.7 mycroft * will detect any garbage after symlink string.
330 1.7 mycroft */
331 1.31 dbj if ((sblock->fs_maxsymlinklen < 0) ||
332 1.49 christos (size < (uint64_t)sblock->fs_maxsymlinklen) ||
333 1.25 dbj (isappleufs && (size < APPLEUFS_MAXSYMLINKLEN)) ||
334 1.27 fvdl (sblock->fs_maxsymlinklen == 0 && DIP(dp, blocks) == 0)) {
335 1.27 fvdl if (is_ufs2)
336 1.27 fvdl ndb = howmany(size, sizeof(int64_t));
337 1.27 fvdl else
338 1.27 fvdl ndb = howmany(size, sizeof(int32_t));
339 1.51 dholland if (ndb > UFS_NDADDR) {
340 1.51 dholland j = ndb - UFS_NDADDR;
341 1.7 mycroft for (ndb = 1; j > 1; j--)
342 1.52 dholland ndb *= FFS_NINDIR(sblock);
343 1.51 dholland ndb += UFS_NDADDR;
344 1.7 mycroft }
345 1.7 mycroft }
346 1.7 mycroft }
347 1.51 dholland if (ndb < UFS_NDADDR) {
348 1.51 dholland for (j = ndb; j < UFS_NDADDR; j++)
349 1.27 fvdl if (DIP(dp, db[j]) != 0) {
350 1.27 fvdl if (debug) {
351 1.27 fvdl if (!is_ufs2)
352 1.27 fvdl printf("bad direct addr ix %d: %d [ndb %lld]\n",
353 1.27 fvdl j, iswap32(dp->dp1.di_db[j]),
354 1.27 fvdl (long long)ndb);
355 1.27 fvdl else
356 1.27 fvdl printf("bad direct addr ix %d: %lld [ndb %lld]\n",
357 1.28 he j, (long long)iswap64(dp->dp2.di_db[j]),
358 1.27 fvdl (long long)ndb);
359 1.27 fvdl }
360 1.27 fvdl goto unknown;
361 1.7 mycroft }
362 1.40 christos }
363 1.27 fvdl
364 1.51 dholland for (j = 0, ndb -= UFS_NDADDR; ndb > 0; j++)
365 1.52 dholland ndb /= FFS_NINDIR(sblock);
366 1.27 fvdl
367 1.51 dholland for (; j < UFS_NIADDR; j++)
368 1.27 fvdl if (DIP(dp, ib[j]) != 0) {
369 1.27 fvdl if (debug) {
370 1.27 fvdl if (!is_ufs2)
371 1.27 fvdl printf("bad indirect addr: %d\n",
372 1.27 fvdl iswap32(dp->dp1.di_ib[j]));
373 1.27 fvdl else
374 1.27 fvdl printf("bad indirect addr: %lld\n",
375 1.27 fvdl (long long)iswap64(dp->dp2.di_ib[j]));
376 1.27 fvdl }
377 1.27 fvdl goto unknown;
378 1.7 mycroft }
379 1.7 mycroft if (ftypeok(dp) == 0)
380 1.7 mycroft goto unknown;
381 1.7 mycroft n_files++;
382 1.27 fvdl info->ino_linkcnt = iswap16(DIP(dp, nlink));
383 1.27 fvdl if (info->ino_linkcnt <= 0) {
384 1.7 mycroft zlnp = (struct zlncnt *)malloc(sizeof *zlnp);
385 1.7 mycroft if (zlnp == NULL) {
386 1.21 bouyer markclean = 0;
387 1.7 mycroft pfatal("LINK COUNT TABLE OVERFLOW");
388 1.22 fvdl if (reply("CONTINUE") == 0) {
389 1.48 christos ckfini(1);
390 1.44 christos exit(FSCK_EXIT_CHECK_FAILED);
391 1.22 fvdl }
392 1.7 mycroft } else {
393 1.7 mycroft zlnp->zlncnt = inumber;
394 1.7 mycroft zlnp->next = zlnhead;
395 1.7 mycroft zlnhead = zlnp;
396 1.7 mycroft }
397 1.7 mycroft }
398 1.7 mycroft if (mode == IFDIR) {
399 1.21 bouyer if (size == 0)
400 1.27 fvdl info->ino_state = DCLEAR;
401 1.7 mycroft else
402 1.27 fvdl info->ino_state = DSTATE;
403 1.7 mycroft cacheino(dp, inumber);
404 1.27 fvdl countdirs++;
405 1.7 mycroft } else
406 1.27 fvdl info->ino_state = FSTATE;
407 1.27 fvdl info->ino_type = IFTODT(mode);
408 1.27 fvdl if (!is_ufs2 && doinglevel2 &&
409 1.27 fvdl (iswap16(dp->dp1.di_ouid) != (u_short)-1 ||
410 1.27 fvdl iswap16(dp->dp1.di_ogid) != (u_short)-1)) {
411 1.7 mycroft dp = ginode(inumber);
412 1.27 fvdl dp->dp1.di_uid = iswap32(iswap16(dp->dp1.di_ouid));
413 1.27 fvdl dp->dp1.di_ouid = iswap16(-1);
414 1.27 fvdl dp->dp1.di_gid = iswap32(iswap16(dp->dp1.di_ogid));
415 1.27 fvdl dp->dp1.di_ogid = iswap16(-1);
416 1.7 mycroft inodirty();
417 1.7 mycroft }
418 1.7 mycroft badblk = dupblk = 0;
419 1.7 mycroft idesc->id_number = inumber;
420 1.47 bouyer idesc->id_uid = iswap32(DIP(dp, uid));
421 1.47 bouyer idesc->id_gid = iswap32(DIP(dp, gid));
422 1.32 hannken if (iswap32(DIP(dp, flags)) & SF_SNAPSHOT)
423 1.32 hannken idesc->id_type = SNAP;
424 1.32 hannken else
425 1.32 hannken idesc->id_type = ADDR;
426 1.7 mycroft (void)ckinode(dp, idesc);
427 1.38 dbj #ifdef notyet
428 1.38 dbj if (is_ufs2 && iswap32(dp->dp2.di_extsize) > 0) {
429 1.38 dbj int ret, offset;
430 1.38 dbj idesc->id_type = ADDR;
431 1.38 dbj ndb = howmany(iswap32(dp->dp2.di_extsize), sblock->fs_bsize);
432 1.51 dholland for (j = 0; j < UFS_NXADDR; j++) {
433 1.38 dbj if (--ndb == 0 &&
434 1.38 dbj (offset = blkoff(sblock, iswap32(dp->dp2.di_extsize))) != 0)
435 1.38 dbj idesc->id_numfrags = numfrags(sblock,
436 1.38 dbj fragroundup(sblock, offset));
437 1.38 dbj else
438 1.38 dbj idesc->id_numfrags = sblock->fs_frag;
439 1.38 dbj if (dp->dp2.di_extb[j] == 0)
440 1.38 dbj continue;
441 1.38 dbj idesc->id_blkno = iswap64(dp->dp2.di_extb[j]);
442 1.38 dbj ret = (*idesc->id_func)(idesc);
443 1.38 dbj if (ret & STOP)
444 1.38 dbj break;
445 1.38 dbj }
446 1.38 dbj }
447 1.38 dbj #endif
448 1.21 bouyer idesc->id_entryno *= btodb(sblock->fs_fsize);
449 1.27 fvdl if (is_ufs2)
450 1.27 fvdl blocks = iswap64(dp->dp2.di_blocks);
451 1.27 fvdl else
452 1.27 fvdl blocks = iswap32(dp->dp1.di_blocks);
453 1.27 fvdl if (blocks != idesc->id_entryno) {
454 1.39 christos pwarn("INCORRECT BLOCK COUNT I=%llu (%lld should be %lld)",
455 1.39 christos (unsigned long long)inumber, (long long)blocks,
456 1.39 christos (long long)idesc->id_entryno);
457 1.7 mycroft if (preen)
458 1.7 mycroft printf(" (CORRECTED)\n");
459 1.21 bouyer else if (reply("CORRECT") == 0) {
460 1.21 bouyer markclean = 0;
461 1.7 mycroft return;
462 1.21 bouyer }
463 1.7 mycroft dp = ginode(inumber);
464 1.27 fvdl if (is_ufs2)
465 1.27 fvdl dp->dp2.di_blocks = iswap64(idesc->id_entryno);
466 1.27 fvdl else
467 1.27 fvdl dp->dp1.di_blocks = iswap32((int32_t)idesc->id_entryno);
468 1.7 mycroft inodirty();
469 1.7 mycroft }
470 1.47 bouyer if (idesc->id_type != SNAP)
471 1.47 bouyer update_uquot(inumber, idesc->id_uid, idesc->id_gid,
472 1.47 bouyer idesc->id_entryno, 1);
473 1.7 mycroft return;
474 1.7 mycroft unknown:
475 1.39 christos pfatal("UNKNOWN FILE TYPE I=%llu", (unsigned long long)inumber);
476 1.27 fvdl info->ino_state = FCLEAR;
477 1.7 mycroft if (reply("CLEAR") == 1) {
478 1.27 fvdl info->ino_state = USTATE;
479 1.7 mycroft dp = ginode(inumber);
480 1.7 mycroft clearinode(dp);
481 1.7 mycroft inodirty();
482 1.21 bouyer } else
483 1.21 bouyer markclean = 0;
484 1.1 cgd }
485 1.1 cgd
486 1.12 cgd int
487 1.35 xtraeme pass1check(struct inodesc *idesc)
488 1.1 cgd {
489 1.1 cgd int res = KEEPON;
490 1.1 cgd int anyout, nfrags;
491 1.26 fvdl daddr_t blkno = idesc->id_blkno;
492 1.17 lukem struct dups *dlp;
493 1.1 cgd struct dups *new;
494 1.1 cgd
495 1.32 hannken if (idesc->id_type == SNAP) {
496 1.32 hannken if (blkno == BLK_NOCOPY || blkno == BLK_SNAP)
497 1.32 hannken return (KEEPON);
498 1.32 hannken }
499 1.1 cgd if ((anyout = chkrange(blkno, idesc->id_numfrags)) != 0) {
500 1.1 cgd blkerror(idesc->id_number, "BAD", blkno);
501 1.1 cgd if (badblk++ >= MAXBAD) {
502 1.39 christos pwarn("EXCESSIVE BAD BLKS I=%llu",
503 1.39 christos (unsigned long long)idesc->id_number);
504 1.1 cgd if (preen)
505 1.1 cgd printf(" (SKIPPING)\n");
506 1.22 fvdl else if (reply("CONTINUE") == 0) {
507 1.22 fvdl markclean = 0;
508 1.48 christos ckfini(1);
509 1.44 christos exit(FSCK_EXIT_CHECK_FAILED);
510 1.22 fvdl }
511 1.1 cgd return (STOP);
512 1.1 cgd }
513 1.1 cgd }
514 1.1 cgd for (nfrags = idesc->id_numfrags; nfrags > 0; blkno++, nfrags--) {
515 1.1 cgd if (anyout && chkrange(blkno, 1)) {
516 1.1 cgd res = SKIP;
517 1.1 cgd } else if (!testbmap(blkno)) {
518 1.1 cgd n_blks++;
519 1.1 cgd setbmap(blkno);
520 1.1 cgd } else {
521 1.1 cgd blkerror(idesc->id_number, "DUP", blkno);
522 1.1 cgd if (dupblk++ >= MAXDUP) {
523 1.39 christos pwarn("EXCESSIVE DUP BLKS I=%llu",
524 1.39 christos (unsigned long long)idesc->id_number);
525 1.1 cgd if (preen)
526 1.1 cgd printf(" (SKIPPING)\n");
527 1.22 fvdl else if (reply("CONTINUE") == 0) {
528 1.22 fvdl markclean = 0;
529 1.48 christos ckfini(1);
530 1.44 christos exit(FSCK_EXIT_CHECK_FAILED);
531 1.22 fvdl }
532 1.1 cgd return (STOP);
533 1.1 cgd }
534 1.1 cgd new = (struct dups *)malloc(sizeof(struct dups));
535 1.1 cgd if (new == NULL) {
536 1.21 bouyer markclean = 0;
537 1.1 cgd pfatal("DUP TABLE OVERFLOW.");
538 1.22 fvdl if (reply("CONTINUE") == 0) {
539 1.22 fvdl markclean = 0;
540 1.48 christos ckfini(1);
541 1.44 christos exit(FSCK_EXIT_CHECK_FAILED);
542 1.22 fvdl }
543 1.1 cgd return (STOP);
544 1.1 cgd }
545 1.1 cgd new->dup = blkno;
546 1.1 cgd if (muldup == 0) {
547 1.1 cgd duplist = muldup = new;
548 1.1 cgd new->next = 0;
549 1.1 cgd } else {
550 1.1 cgd new->next = muldup->next;
551 1.1 cgd muldup->next = new;
552 1.1 cgd }
553 1.1 cgd for (dlp = duplist; dlp != muldup; dlp = dlp->next)
554 1.1 cgd if (dlp->dup == blkno)
555 1.1 cgd break;
556 1.1 cgd if (dlp == muldup && dlp->dup != blkno)
557 1.1 cgd muldup = new;
558 1.1 cgd }
559 1.1 cgd /*
560 1.1 cgd * count the number of blocks found in id_entryno
561 1.1 cgd */
562 1.1 cgd idesc->id_entryno++;
563 1.1 cgd }
564 1.1 cgd return (res);
565 1.1 cgd }
566