fsck.h revision 1.38 1 /* $NetBSD: fsck.h,v 1.38 2004/05/25 14:54:56 hannken Exp $ */
2
3 /*
4 * Copyright (c) 1980, 1986, 1993
5 * The Regents of the University of California. All rights reserved.
6 *
7 *
8 * This software was developed for the FreeBSD Project by Marshall
9 * Kirk McKusick and Network Associates Laboratories, the Security
10 * Research Division of Network Associates, Inc. under DARPA/SPAWAR
11 * contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA CHATS
12 * research program
13 *
14 * Redistribution and use in source and binary forms, with or without
15 * modification, are permitted provided that the following conditions
16 * are met:
17 * 1. Redistributions of source code must retain the above copyright
18 * notice, this list of conditions and the following disclaimer.
19 * 2. Redistributions in binary form must reproduce the above copyright
20 * notice, this list of conditions and the following disclaimer in the
21 * documentation and/or other materials provided with the distribution.
22 * 3. Neither the name of the University nor the names of its contributors
23 * may be used to endorse or promote products derived from this software
24 * without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
27 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
28 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
30 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
31 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
32 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 * SUCH DAMAGE.
37 *
38 * @(#)fsck.h 8.4 (Berkeley) 5/9/95
39 */
40
41 #include <stdio.h>
42 #include <machine/bswap.h>
43
44 #define MAXDUP 10 /* limit on dup blks (per inode) */
45 #define MAXBAD 10 /* limit on bad blks (per inode) */
46 #define MAXBUFSPACE 40*1024 /* maximum space to allocate to buffers */
47 #define INOBUFSIZE 56*1024 /* size of buffer to read inodes in pass1 */
48
49 union dinode {
50 struct ufs1_dinode dp1;
51 struct ufs2_dinode dp2;
52 };
53 #define DIP(dp, field) \
54 (is_ufs2 ? (dp)->dp2.di_##field : (dp)->dp1.di_##field)
55
56 #ifndef BUFSIZ
57 #define BUFSIZ 1024
58 #endif
59
60 /*
61 * Each inode on the filesystem is described by the following structure.
62 * The linkcnt is initially set to the value in the inode. Each time it
63 * is found during the descent in passes 2, 3, and 4 the count is
64 * decremented. Any inodes whose count is non-zero after pass 4 needs to
65 * have its link count adjusted by the value remaining in ino_linkcnt.
66 */
67 struct inostat {
68 char ino_state; /* state of inode, see below */
69 char ino_type; /* type of inode */
70 short ino_linkcnt; /* number of links not found */
71 };
72 /*
73 * Inode states.
74 */
75 #define USTATE 01 /* inode not allocated */
76 #define FSTATE 02 /* inode is file */
77 #define DSTATE 03 /* inode is directory */
78 #define DFOUND 04 /* directory found during descent */
79 #define DCLEAR 05 /* directory is to be cleared */
80 #define FCLEAR 06 /* file is to be cleared */
81 #define DMARK 07 /* used in propagate()'s traversal algorithm */
82
83 /*
84 * Inode state information is contained on per cylinder group lists
85 * which are described by the following structure.
86 */
87 struct inostatlist {
88 long il_numalloced; /* number of inodes allocated in this cg */
89 struct inostat *il_stat;/* inostat info for this cylinder group */
90 } *inostathead;
91
92
93 /*
94 * buffer cache structure.
95 */
96 struct bufarea {
97 struct bufarea *b_next; /* free list queue */
98 struct bufarea *b_prev; /* free list queue */
99 daddr_t b_bno;
100 int b_size;
101 int b_errs;
102 int b_flags;
103 union {
104 char *b_buf; /* buffer space */
105 int32_t *b_indir1; /* indirect block */
106 int64_t *b_indir2; /* indirect block */
107 struct fs *b_fs; /* super block */
108 struct cg *b_cg; /* cylinder group */
109 struct ufs1_dinode *b_dinode1; /* UFS1 inode block */
110 struct ufs2_dinode *b_dinode2; /* UFS2 inode block */
111 struct appleufslabel *b_appleufs; /* Apple UFS volume label */
112 } b_un;
113 char b_dirty;
114 };
115
116 #define IBLK(bp, i) \
117 (is_ufs2 ? (bp)->b_un.b_indir2[i] : (bp)->b_un.b_indir1[i])
118
119
120 #define B_INUSE 1
121
122 #define MINBUFS 5 /* minimum number of buffers required */
123 struct bufarea bufhead; /* head of list of other blks in filesys */
124 struct bufarea sblk; /* file system superblock */
125 struct bufarea asblk; /* file system superblock */
126 struct bufarea cgblk; /* cylinder group blocks */
127 struct bufarea appleufsblk; /* Apple UFS volume label */
128 struct bufarea *pdirbp; /* current directory contents */
129 struct bufarea *pbp; /* current inode block */
130
131 #define dirty(bp) (bp)->b_dirty = 1
132 #define initbarea(bp) \
133 (bp)->b_dirty = 0; \
134 (bp)->b_bno = (daddr_t)-1; \
135 (bp)->b_flags = 0;
136
137 struct fs *sblock;
138 struct fs *altsblock;
139 struct cg *cgrp;
140 struct fs *sblocksave;
141 #define sbdirty() \
142 do { \
143 memmove(sblk.b_un.b_fs, sblock, SBLOCKSIZE); \
144 sb_oldfscompat_write(sblk.b_un.b_fs, sblocksave); \
145 if (needswap) \
146 ffs_sb_swap(sblk.b_un.b_fs, sblk.b_un.b_fs); \
147 sblk.b_dirty = 1; \
148 } while (0)
149 #define cgdirty() do {copyback_cg(&cgblk); cgblk.b_dirty = 1;} while (0)
150
151 #define appleufsdirty() \
152 do { \
153 appleufsblk.b_un.b_appleufs->ul_checksum = 0; \
154 appleufsblk.b_un.b_appleufs->ul_checksum = \
155 ffs_appleufs_cksum(appleufsblk.b_un.b_appleufs); \
156 appleufsblk.b_dirty = 1; \
157 } while (0)
158
159 enum fixstate {DONTKNOW, NOFIX, FIX, IGNORE};
160
161 struct inodesc {
162 enum fixstate id_fix; /* policy on fixing errors */
163 int (*id_func) /* function to be applied to blocks of inode */
164 __P((struct inodesc *));
165 ino_t id_number; /* inode number described */
166 ino_t id_parent; /* for DATA nodes, their parent */
167 daddr_t id_blkno; /* current block number being examined */
168 int id_numfrags; /* number of frags contained in block */
169 int64_t id_filesize; /* for DATA nodes, the size of the directory */
170 int id_loc; /* for DATA nodes, current location in dir */
171 int64_t id_entryno; /* for DATA nodes, current entry number */
172 struct direct *id_dirp; /* for DATA nodes, ptr to current entry */
173 char *id_name; /* for DATA nodes, name to find or enter */
174 char id_type; /* type of descriptor, DATA or ADDR */
175 };
176 /* file types */
177 #define DATA 1
178 #define SNAP 2
179 #define ADDR 3
180
181 /*
182 * Linked list of duplicate blocks.
183 *
184 * The list is composed of two parts. The first part of the
185 * list (from duplist through the node pointed to by muldup)
186 * contains a single copy of each duplicate block that has been
187 * found. The second part of the list (from muldup to the end)
188 * contains duplicate blocks that have been found more than once.
189 * To check if a block has been found as a duplicate it is only
190 * necessary to search from duplist through muldup. To find the
191 * total number of times that a block has been found as a duplicate
192 * the entire list must be searched for occurrences of the block
193 * in question. The following diagram shows a sample list where
194 * w (found twice), x (found once), y (found three times), and z
195 * (found once) are duplicate block numbers:
196 *
197 * w -> y -> x -> z -> y -> w -> y
198 * ^ ^
199 * | |
200 * duplist muldup
201 */
202 struct dups {
203 struct dups *next;
204 daddr_t dup;
205 };
206 struct dups *duplist; /* head of dup list */
207 struct dups *muldup; /* end of unique duplicate dup block numbers */
208
209 /*
210 * Linked list of inodes with zero link counts.
211 */
212 struct zlncnt {
213 struct zlncnt *next;
214 ino_t zlncnt;
215 };
216 struct zlncnt *zlnhead; /* head of zero link count list */
217
218 /*
219 * Inode cache data structures.
220 */
221 struct inoinfo {
222 struct inoinfo *i_nexthash; /* next entry in hash chain */
223 struct inoinfo *i_child, *i_sibling, *i_parentp;
224 ino_t i_number; /* inode number of this entry */
225 ino_t i_parent; /* inode number of parent */
226 ino_t i_dotdot; /* inode number of `..' */
227 size_t i_isize; /* size of inode */
228 u_int i_numblks; /* size of block array in bytes */
229 int64_t i_blks[1]; /* actually longer */
230 } **inphead, **inpsort;
231 long numdirs, dirhash, listmax, inplast;
232
233 long dev_bsize; /* computed value of DEV_BSIZE */
234 long secsize; /* actual disk sector size */
235 char nflag; /* assume a no response */
236 char yflag; /* assume a yes response */
237 int bflag; /* location of alternate super block */
238 int debug; /* output debugging info */
239 int cvtlevel; /* convert to newer file system format */
240 int doinglevel1; /* converting to new cylinder group format */
241 int doinglevel2; /* converting to new inode format */
242 int newinofmt; /* filesystem has new inode format */
243 char usedsoftdep; /* just fix soft dependency inconsistencies */
244 int preen; /* just fix normal inconsistencies */
245 int quiet; /* Don't print anything if clean */
246 int forceimage; /* file system is an image file */
247 int doswap; /* convert byte order */
248 int needswap; /* need to convert byte order in memory */
249 int is_ufs2; /* we're dealing with an UFS2 filesystem */
250 int do_blkswap; /* need to do block addr byteswap */
251 int do_dirswap; /* need to do dir entry byteswap */
252 int endian; /* endian coversion */
253 int markclean; /* mark file system clean when done */
254 char havesb; /* superblock has been read */
255 char skipclean; /* skip clean file systems if preening */
256 int fsmodified; /* 1 => write done to file system */
257 int fsreadfd; /* file descriptor for reading file system */
258 int fswritefd; /* file descriptor for writing file system */
259 int rerun; /* rerun fsck. Only used in non-preen mode */
260 char resolved; /* cleared if unresolved changes => not clean */
261 int isappleufs; /* filesystem is Apple UFS */
262
263 daddr_t maxfsblock; /* number of blocks in the file system */
264 char *blockmap; /* ptr to primary blk allocation map */
265 ino_t maxino; /* number of inodes in file system */
266
267 int dirblksiz;
268
269 extern ino_t lfdir; /* lost & found directory inode number */
270 extern char *lfname; /* lost & found directory name */
271 extern int lfmode; /* lost & found directory creation mode */
272
273 daddr_t n_blks; /* number of blocks in use */
274 ino_t n_files; /* number of files in use */
275
276 long countdirs;
277
278 int got_siginfo; /* received a SIGINFO */
279
280 #define clearinode(dp) \
281 do { \
282 if (is_ufs2) \
283 (dp)->dp2 = ufs2_zino; \
284 else \
285 (dp)->dp1 = ufs1_zino; \
286 } while (0)
287
288 struct ufs1_dinode ufs1_zino;
289 struct ufs2_dinode ufs2_zino;
290
291 #define setbmap(blkno) setbit(blockmap, blkno)
292 #define testbmap(blkno) isset(blockmap, blkno)
293 #define clrbmap(blkno) clrbit(blockmap, blkno)
294
295 #define STOP 0x01
296 #define SKIP 0x02
297 #define KEEPON 0x04
298 #define ALTERED 0x08
299 #define FOUND 0x10
300
301 #define EEXIT 8 /* Standard error exit. */
302
303 /* some inline functs to help the byte-swapping mess */
304 static __inline u_int16_t iswap16 __P((u_int16_t));
305 static __inline u_int32_t iswap32 __P((u_int32_t));
306 static __inline u_int64_t iswap64 __P((u_int64_t));
307
308 static __inline u_int16_t iswap16(x)
309 u_int16_t x;
310 {
311 if (needswap)
312 return bswap16(x);
313 else return x;
314 }
315
316 static __inline u_int32_t iswap32(x)
317 u_int32_t x;
318 {
319 if (needswap)
320 return bswap32(x);
321 else return x;
322 }
323
324 static __inline u_int64_t iswap64(x)
325 u_int64_t x;
326 {
327 if (needswap)
328 return bswap64(x);
329 else return x;
330 }
331
332
333