fs.h revision 1.40 1 /* $NetBSD: fs.h,v 1.40 2004/01/03 19:18:17 dbj Exp $ */
2
3 /*
4 * Copyright (c) 1982, 1986, 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 * @(#)fs.h 8.13 (Berkeley) 3/21/95
32 */
33
34 #ifndef _UFS_FFS_FS_H_
35 #define _UFS_FFS_FS_H_
36
37 /*
38 * Each disk drive contains some number of file systems.
39 * A file system consists of a number of cylinder groups.
40 * Each cylinder group has inodes and data.
41 *
42 * A file system is described by its super-block, which in turn
43 * describes the cylinder groups. The super-block is critical
44 * data and is replicated in each cylinder group to protect against
45 * catastrophic loss. This is done at `newfs' time and the critical
46 * super-block data does not change, so the copies need not be
47 * referenced further unless disaster strikes.
48 *
49 * For file system fs, the offsets of the various blocks of interest
50 * are given in the super block as:
51 * [fs->fs_sblkno] Super-block
52 * [fs->fs_cblkno] Cylinder group block
53 * [fs->fs_iblkno] Inode blocks
54 * [fs->fs_dblkno] Data blocks
55 * The beginning of cylinder group cg in fs, is given by
56 * the ``cgbase(fs, cg)'' macro.
57 *
58 * Depending on the architecture and the media, the superblock may
59 * reside in any one of four places. For tiny media where every block
60 * counts, it is placed at the very front of the partition. Historically,
61 * UFS1 placed it 8K from the front to leave room for the disk label and
62 * a small bootstrap. For UFS2 it got moved to 64K from the front to leave
63 * room for the disk label and a bigger bootstrap, and for really piggy
64 * systems we check at 256K from the front if the first three fail. In
65 * all cases the size of the superblock will be SBLOCKSIZE. All values are
66 * given in byte-offset form, so they do not imply a sector size. The
67 * SBLOCKSEARCH specifies the order in which the locations should be searched.
68 *
69 */
70 #define BBSIZE 8192
71 #define BBOFF ((off_t)(0))
72 #define BBLOCK ((daddr_t)(0))
73
74 #define SBLOCK_FLOPPY 0
75 #define SBLOCK_UFS1 8192
76 #define SBLOCK_UFS2 65536
77 #define SBLOCK_PIGGY 262144
78 #define SBLOCKSIZE 8192
79 #define SBLOCKSEARCH \
80 { SBLOCK_UFS2, SBLOCK_UFS1, SBLOCK_FLOPPY, SBLOCK_PIGGY, -1 }
81
82 /*
83 * Max number of fragments per block. This value is NOT tweakable.
84 */
85 #define MAXFRAG 8
86
87
88
89 /*
90 * Addresses stored in inodes are capable of addressing fragments
91 * of `blocks'. File system blocks of at most size MAXBSIZE can
92 * be optionally broken into 2, 4, or 8 pieces, each of which is
93 * addressable; these pieces may be DEV_BSIZE, or some multiple of
94 * a DEV_BSIZE unit.
95 *
96 * Large files consist of exclusively large data blocks. To avoid
97 * undue wasted disk space, the last data block of a small file may be
98 * allocated as only as many fragments of a large block as are
99 * necessary. The file system format retains only a single pointer
100 * to such a fragment, which is a piece of a single large block that
101 * has been divided. The size of such a fragment is determinable from
102 * information in the inode, using the ``blksize(fs, ip, lbn)'' macro.
103 *
104 * The file system records space availability at the fragment level;
105 * to determine block availability, aligned fragments are examined.
106 */
107
108 /*
109 * MINBSIZE is the smallest allowable block size.
110 * In order to insure that it is possible to create files of size
111 * 2^32 with only two levels of indirection, MINBSIZE is set to 4096.
112 * MINBSIZE must be big enough to hold a cylinder group block,
113 * thus changes to (struct cg) must keep its size within MINBSIZE.
114 * Note that super blocks are always of size SBSIZE,
115 * and that both SBSIZE and MAXBSIZE must be >= MINBSIZE.
116 */
117 #define MINBSIZE 4096
118
119 /*
120 * The path name on which the file system is mounted is maintained
121 * in fs_fsmnt. MAXMNTLEN defines the amount of space allocated in
122 * the super block for this name.
123 */
124 #define MAXMNTLEN 468
125
126 /*
127 * The volume name for this filesystem is maintained in fs_volname.
128 * MAXVOLLEN defines the length of the buffer allocated.
129 */
130 #define MAXVOLLEN 32
131
132 /*
133 * There is a 128-byte region in the superblock reserved for in-core
134 * pointers to summary information. Originally this included an array
135 * of pointers to blocks of struct csum; now there are just four
136 * pointers and the remaining space is padded with fs_ocsp[].
137 * NOCSPTRS determines the size of this padding. One pointer (fs_csp)
138 * is taken away to point to a contiguous array of struct csum for
139 * all cylinder groups; a second (fs_maxcluster) points to an array
140 * of cluster sizes that is computed as cylinder groups are inspected;
141 * the third (fs_contigdirs) points to an array that tracks the
142 * creation of new directories; and the fourth (fs_active) is used
143 * by snapshots.
144 */
145 #define NOCSPTRS ((128 / sizeof(void *)) - 4)
146
147 /*
148 * A summary of contiguous blocks of various sizes is maintained
149 * in each cylinder group. Normally this is set by the initial
150 * value of fs_maxcontig. To conserve space, a maximum summary size
151 * is set by FS_MAXCONTIG.
152 */
153 #define FS_MAXCONTIG 16
154
155 /*
156 * Unused value currently, FreeBSD compat.
157 */
158 #define FSMAXSNAP 20
159
160 /*
161 * MINFREE gives the minimum acceptable percentage of file system
162 * blocks which may be free. If the freelist drops below this level
163 * only the superuser may continue to allocate blocks. This may
164 * be set to 0 if no reserve of free blocks is deemed necessary,
165 * however throughput drops by fifty percent if the file system
166 * is run at between 95% and 100% full; thus the minimum default
167 * value of fs_minfree is 5%. However, to get good clustering
168 * performance, 10% is a better choice. hence we use 10% as our
169 * default value. With 10% free space, fragmentation is not a
170 * problem, so we choose to optimize for time.
171 */
172 #define MINFREE 5
173 #define DEFAULTOPT FS_OPTTIME
174
175 /*
176 * Grigoriy Orlov <gluk (at) ptci.ru> has done some extensive work to fine
177 * tune the layout preferences for directories within a filesystem.
178 * His algorithm can be tuned by adjusting the following parameters
179 * which tell the system the average file size and the average number
180 * of files per directory. These defaults are well selected for typical
181 * filesystems, but may need to be tuned for odd cases like filesystems
182 * being used for squid caches or news spools.
183 */
184 #define AVFILESIZ 16384 /* expected average file size */
185 #define AFPDIR 64 /* expected number of files per directory */
186
187 /*
188 * Per cylinder group information; summarized in blocks allocated
189 * from first cylinder group data blocks. These blocks have to be
190 * read in from fs_csaddr (size fs_cssize) in addition to the
191 * super block.
192 */
193 struct csum {
194 int32_t cs_ndir; /* number of directories */
195 int32_t cs_nbfree; /* number of free blocks */
196 int32_t cs_nifree; /* number of free inodes */
197 int32_t cs_nffree; /* number of free frags */
198 };
199
200 struct csum_total {
201 int64_t cs_ndir; /* number of directories */
202 int64_t cs_nbfree; /* number of free blocks */
203 int64_t cs_nifree; /* number of free inodes */
204 int64_t cs_nffree; /* number of free frags */
205 int64_t cs_spare[4]; /* future expansion */
206 };
207
208
209 /*
210 * Super block for an FFS file system in memory.
211 */
212 struct fs {
213 int32_t fs_firstfield; /* historic file system linked list, */
214 int32_t fs_unused_1; /* used for incore super blocks */
215 int32_t fs_sblkno; /* addr of super-block in filesys */
216 int32_t fs_cblkno; /* offset of cyl-block in filesys */
217 int32_t fs_iblkno; /* offset of inode-blocks in filesys */
218 int32_t fs_dblkno; /* offset of first data after cg */
219 int32_t fs_old_cgoffset; /* cylinder group offset in cylinder */
220 int32_t fs_old_cgmask; /* used to calc mod fs_ntrak */
221 int32_t fs_old_time; /* last time written */
222 int32_t fs_old_size; /* number of blocks in fs */
223 int32_t fs_old_dsize; /* number of data blocks in fs */
224 int32_t fs_ncg; /* number of cylinder groups */
225 int32_t fs_bsize; /* size of basic blocks in fs */
226 int32_t fs_fsize; /* size of frag blocks in fs */
227 int32_t fs_frag; /* number of frags in a block in fs */
228 /* these are configuration parameters */
229 int32_t fs_minfree; /* minimum percentage of free blocks */
230 int32_t fs_old_rotdelay; /* num of ms for optimal next block */
231 int32_t fs_old_rps; /* disk revolutions per second */
232 /* these fields can be computed from the others */
233 int32_t fs_bmask; /* ``blkoff'' calc of blk offsets */
234 int32_t fs_fmask; /* ``fragoff'' calc of frag offsets */
235 int32_t fs_bshift; /* ``lblkno'' calc of logical blkno */
236 int32_t fs_fshift; /* ``numfrags'' calc number of frags */
237 /* these are configuration parameters */
238 int32_t fs_maxcontig; /* max number of contiguous blks */
239 int32_t fs_maxbpg; /* max number of blks per cyl group */
240 /* these fields can be computed from the others */
241 int32_t fs_fragshift; /* block to frag shift */
242 int32_t fs_fsbtodb; /* fsbtodb and dbtofsb shift constant */
243 int32_t fs_sbsize; /* actual size of super block */
244 int32_t fs_spare1[2]; /* old fs_csmask */
245 /* old fs_csshift */
246 int32_t fs_nindir; /* value of NINDIR */
247 int32_t fs_inopb; /* value of INOPB */
248 int32_t fs_old_nspf; /* value of NSPF */
249 /* yet another configuration parameter */
250 int32_t fs_optim; /* optimization preference, see below */
251 /* these fields are derived from the hardware */
252 int32_t fs_old_npsect; /* # sectors/track including spares */
253 int32_t fs_old_interleave; /* hardware sector interleave */
254 int32_t fs_old_trackskew; /* sector 0 skew, per track */
255 /* fs_id takes the space of the unused fs_headswitch and fs_trkseek fields */
256 int32_t fs_id[2]; /* unique file system id */
257 /* sizes determined by number of cylinder groups and their sizes */
258 int32_t fs_old_csaddr; /* blk addr of cyl grp summary area */
259 int32_t fs_cssize; /* size of cyl grp summary area */
260 int32_t fs_cgsize; /* cylinder group size */
261 /* these fields are derived from the hardware */
262 int32_t fs_spare2; /* old fs_ntrak */
263 int32_t fs_old_nsect; /* sectors per track */
264 int32_t fs_old_spc; /* sectors per cylinder */
265 int32_t fs_old_ncyl; /* cylinders in file system */
266 int32_t fs_old_cpg; /* cylinders per group */
267 int32_t fs_ipg; /* inodes per group */
268 int32_t fs_fpg; /* blocks per group * fs_frag */
269 /* this data must be re-computed after crashes */
270 struct csum fs_old_cstotal; /* cylinder summary information */
271 /* these fields are cleared at mount time */
272 int8_t fs_fmod; /* super block modified flag */
273 int8_t fs_clean; /* file system is clean flag */
274 int8_t fs_ronly; /* mounted read-only flag */
275 uint8_t fs_old_flags; /* see FS_ flags below */
276 u_char fs_fsmnt[MAXMNTLEN]; /* name mounted on */
277 u_char fs_volname[MAXVOLLEN]; /* volume name */
278 uint64_t fs_swuid; /* system-wide uid */
279 int32_t fs_pad;
280 /* these fields retain the current block allocation info */
281 int32_t fs_cgrotor; /* last cg searched (UNUSED) */
282 void *fs_ocsp[NOCSPTRS]; /* padding; was list of fs_cs buffers */
283 u_int8_t *fs_contigdirs; /* # of contiguously allocated dirs */
284 struct csum *fs_csp; /* cg summary info buffer for fs_cs */
285 int32_t *fs_maxcluster; /* max cluster in each cyl group */
286 u_int *fs_active; /* used by snapshots to track fs */
287 int32_t fs_old_cpc; /* cyl per cycle in postbl */
288 int32_t fs_maxbsize; /* maximum blocking factor permitted */
289 int64_t fs_sparecon64[17]; /* old rotation block list head */
290 int64_t fs_sblockloc; /* byte offset of standard superblock */
291 struct csum_total fs_cstotal; /* cylinder summary information */
292 int64_t fs_time; /* last time written */
293 int64_t fs_size; /* number of blocks in fs */
294 int64_t fs_dsize; /* number of data blocks in fs */
295 int64_t fs_csaddr; /* blk addr of cyl grp summary area */
296 int64_t fs_pendingblocks; /* blocks in process of being freed */
297 int32_t fs_pendinginodes; /* inodes in process of being freed */
298 int32_t fs_snapinum[FSMAXSNAP];/* list of snapshot inode numbers */
299 int32_t fs_avgfilesize; /* expected average file size */
300 int32_t fs_avgfpdir; /* expected # of files per directory */
301 int32_t fs_save_cgsize; /* save real cg size to use fs_bsize */
302 int32_t fs_sparecon32[26]; /* reserved for future constants */
303 uint32_t fs_flags; /* see FS_ flags below */
304 int32_t fs_contigsumsize; /* size of cluster summary array */
305 int32_t fs_maxsymlinklen; /* max length of an internal symlink */
306 int32_t fs_old_inodefmt; /* format of on-disk inodes */
307 u_int64_t fs_maxfilesize; /* maximum representable file size */
308 int64_t fs_qbmask; /* ~fs_bmask for use with 64-bit size */
309 int64_t fs_qfmask; /* ~fs_fmask for use with 64-bit size */
310 int32_t fs_state; /* validate fs_clean field (UNUSED) */
311 int32_t fs_old_postblformat; /* format of positional layout tables */
312 int32_t fs_old_nrpos; /* number of rotational positions */
313 int32_t fs_spare5[2]; /* old fs_postbloff */
314 /* old fs_rotbloff */
315 int32_t fs_magic; /* magic number */
316 };
317
318 #define fs_old_postbloff fs_spare5[0]
319 #define fs_old_rotbloff fs_spare5[1]
320 #define fs_old_postbl_start fs_maxbsize
321 #define fs_old_headswitch fs_id[0]
322 #define fs_old_trkseek fs_id[1]
323 #define fs_old_csmask fs_spare1[0]
324 #define fs_old_csshift fs_spare1[1]
325
326 #define FS_42POSTBLFMT -1 /* 4.2BSD rotational table format */
327 #define FS_DYNAMICPOSTBLFMT 1 /* dynamic rotational table format */
328
329 #define old_fs_postbl(fs_, cylno, opostblsave) \
330 ((((fs_)->fs_old_postblformat == FS_42POSTBLFMT) || \
331 ((fs_)->fs_old_postbloff == offsetof(struct fs, fs_old_postbl_start))) \
332 ? ((int16_t *)(opostblsave) + (cylno) * (fs_)->fs_old_nrpos) \
333 : ((int16_t *)((uint8_t *)(fs_) + \
334 (fs_)->fs_old_postbloff) + (cylno) * (fs_)->fs_old_nrpos))
335 #define old_fs_rotbl(fs) \
336 (((fs)->fs_old_postblformat == FS_42POSTBLFMT) \
337 ? ((uint8_t *)(&(fs)->fs_magic+1)) \
338 : ((uint8_t *)((uint8_t *)(fs) + (fs)->fs_old_rotbloff)))
339
340 /*
341 * File system identification
342 */
343 #define FS_UFS1_MAGIC 0x011954 /* UFS1 fast file system magic number */
344 #define FS_UFS2_MAGIC 0x19540119 /* UFS2 fast file system magic number */
345 #define FS_UFS1_MAGIC_SWAPPED 0x54190100
346 #define FS_UFS2_MAGIC_SWAPPED 0x19015419
347 #define FS_OKAY 0x7c269d38 /* superblock checksum */
348 #define FS_42INODEFMT -1 /* 4.2BSD inode format */
349 #define FS_44INODEFMT 2 /* 4.4BSD inode format */
350
351 /*
352 * File system clean flags
353 */
354 #define FS_ISCLEAN 0x01
355 #define FS_WASCLEAN 0x02
356
357 /*
358 * Preference for optimization.
359 */
360 #define FS_OPTTIME 0 /* minimize allocation time */
361 #define FS_OPTSPACE 1 /* minimize disk fragmentation */
362
363 /*
364 * File system flags
365 */
366 #define FS_UNCLEAN 0x01 /* file system not clean at mount (unused) */
367 #define FS_DOSOFTDEP 0x02 /* file system using soft dependencies */
368 #define FS_NEEDSFSCK 0x04 /* needs sync fsck (FreeBSD compat, unused) */
369 #define FS_INDEXDIRS 0x08 /* kernel supports indexed directories */
370 #define FS_ACLS 0x10 /* file system has ACLs enabled */
371 #define FS_MULTILABEL 0x20 /* file system is MAC multi-label */
372 #define FS_FLAGS_UPDATED 0x80 /* flags have been moved to new location */
373
374 /*
375 * File system internal flags, also in fs_flags.
376 * (Pick highest number to avoid conflicts with others)
377 */
378 #define FS_SWAPPED 0x80000000 /* file system is endian swapped */
379 #define FS_INTERNAL 0x80000000 /* mask for internal flags */
380
381 /*
382 * The size of a cylinder group is calculated by CGSIZE. The maximum size
383 * is limited by the fact that cylinder groups are at most one block.
384 * Its size is derived from the size of the maps maintained in the
385 * cylinder group and the (struct cg) size.
386 */
387 #define CGSIZE_IF(fs, ipg, fpg) \
388 /* base cg */ (sizeof(struct cg) + sizeof(int32_t) + \
389 /* old btotoff */ (fs)->fs_old_cpg * sizeof(int32_t) + \
390 /* old boff */ (fs)->fs_old_cpg * sizeof(u_int16_t) + \
391 /* inode map */ howmany((ipg), NBBY) + \
392 /* block map */ howmany((fpg), NBBY) +\
393 /* if present */ ((fs)->fs_contigsumsize <= 0 ? 0 : \
394 /* cluster sum */ (fs)->fs_contigsumsize * sizeof(int32_t) + \
395 /* cluster map */ howmany(fragstoblks(fs, (fpg)), NBBY)))
396
397 #define CGSIZE(fs) CGSIZE_IF((fs), (fs)->fs_ipg, (fs)->fs_fpg)
398
399 /*
400 * The minimal number of cylinder groups that should be created.
401 */
402 #define MINCYLGRPS 4
403
404
405 /*
406 * Convert cylinder group to base address of its global summary info.
407 */
408 #define fs_cs(fs, indx) fs_csp[indx]
409
410 /*
411 * Cylinder group block for a file system.
412 */
413 #define CG_MAGIC 0x090255
414 struct cg {
415 int32_t cg_firstfield; /* historic cyl groups linked list */
416 int32_t cg_magic; /* magic number */
417 int32_t cg_old_time; /* time last written */
418 int32_t cg_cgx; /* we are the cgx'th cylinder group */
419 int16_t cg_old_ncyl; /* number of cyl's this cg */
420 int16_t cg_old_niblk; /* number of inode blocks this cg */
421 int32_t cg_ndblk; /* number of data blocks this cg */
422 struct csum cg_cs; /* cylinder summary information */
423 int32_t cg_rotor; /* position of last used block */
424 int32_t cg_frotor; /* position of last used frag */
425 int32_t cg_irotor; /* position of last used inode */
426 int32_t cg_frsum[MAXFRAG]; /* counts of available frags */
427 int32_t cg_old_btotoff; /* (int32) block totals per cylinder */
428 int32_t cg_old_boff; /* (u_int16) free block positions */
429 int32_t cg_iusedoff; /* (u_int8) used inode map */
430 int32_t cg_freeoff; /* (u_int8) free block map */
431 int32_t cg_nextfreeoff; /* (u_int8) next available space */
432 int32_t cg_clustersumoff; /* (u_int32) counts of avail clusters */
433 int32_t cg_clusteroff; /* (u_int8) free cluster map */
434 int32_t cg_nclusterblks; /* number of clusters this cg */
435 int32_t cg_niblk; /* number of inode blocks this cg */
436 int32_t cg_initediblk; /* last initialized inode */
437 int32_t cg_sparecon32[3]; /* reserved for future use */
438 int64_t cg_time; /* time last written */
439 int64_t cg_sparecon64[3]; /* reserved for future use */
440 u_int8_t cg_space[1]; /* space for cylinder group maps */
441 /* actually longer */
442 };
443
444 /*
445 * The following structure is defined
446 * for compatibility with old file systems.
447 */
448 struct ocg {
449 int32_t cg_firstfield; /* historic linked list of cyl groups */
450 int32_t cg_unused_1; /* used for incore cyl groups */
451 int32_t cg_time; /* time last written */
452 int32_t cg_cgx; /* we are the cgx'th cylinder group */
453 int16_t cg_ncyl; /* number of cyl's this cg */
454 int16_t cg_niblk; /* number of inode blocks this cg */
455 int32_t cg_ndblk; /* number of data blocks this cg */
456 struct csum cg_cs; /* cylinder summary information */
457 int32_t cg_rotor; /* position of last used block */
458 int32_t cg_frotor; /* position of last used frag */
459 int32_t cg_irotor; /* position of last used inode */
460 int32_t cg_frsum[8]; /* counts of available frags */
461 int32_t cg_btot[32]; /* block totals per cylinder */
462 int16_t cg_b[32][8]; /* positions of free blocks */
463 u_int8_t cg_iused[256]; /* used inode map */
464 int32_t cg_magic; /* magic number */
465 u_int8_t cg_free[1]; /* free block map */
466 /* actually longer */
467 };
468
469
470 /*
471 * Macros for access to cylinder group array structures.
472 */
473 #define old_cg_blktot_old(cgp, ns) \
474 (((struct ocg *)(cgp))->cg_btot)
475 #define old_cg_blks_old(fs, cgp, cylno, ns) \
476 (((struct ocg *)(cgp))->cg_b[cylno])
477
478 #define old_cg_blktot_new(cgp, ns) \
479 ((int32_t *)((u_int8_t *)(cgp) + \
480 ufs_rw32((cgp)->cg_old_btotoff, (ns))))
481 #define old_cg_blks_new(fs, cgp, cylno, ns) \
482 ((int16_t *)((u_int8_t *)(cgp) + \
483 ufs_rw32((cgp)->cg_old_boff, (ns))) + (cylno) * (fs)->fs_old_nrpos)
484
485 #define old_cg_blktot(cgp, ns) \
486 ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) ? \
487 old_cg_blktot_old(cgp, ns) : old_cg_blktot_new(cgp, ns))
488 #define old_cg_blks(fs, cgp, cylno, ns) \
489 ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) ? \
490 old_cg_blks_old(fs, cgp, cylno, ns) : old_cg_blks_new(fs, cgp, cylno, ns))
491
492 #define cg_inosused_new(cgp, ns) \
493 ((u_int8_t *)((u_int8_t *)(cgp) + \
494 ufs_rw32((cgp)->cg_iusedoff, (ns))))
495 #define cg_blksfree_new(cgp, ns) \
496 ((u_int8_t *)((u_int8_t *)(cgp) + \
497 ufs_rw32((cgp)->cg_freeoff, (ns))))
498 #define cg_chkmagic_new(cgp, ns) \
499 (ufs_rw32((cgp)->cg_magic, (ns)) == CG_MAGIC)
500
501 #define cg_inosused_old(cgp, ns) \
502 (((struct ocg *)(cgp))->cg_iused)
503 #define cg_blksfree_old(cgp, ns) \
504 (((struct ocg *)(cgp))->cg_free)
505 #define cg_chkmagic_old(cgp, ns) \
506 (ufs_rw32(((struct ocg *)(cgp))->cg_magic, (ns)) == CG_MAGIC)
507
508 #define cg_inosused(cgp, ns) \
509 ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) ? \
510 cg_inosused_old(cgp, ns) : cg_inosused_new(cgp, ns))
511 #define cg_blksfree(cgp, ns) \
512 ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) ? \
513 cg_blksfree_old(cgp, ns) : cg_blksfree_new(cgp, ns))
514 #define cg_chkmagic(cgp, ns) \
515 (cg_chkmagic_new(cgp, ns) || cg_chkmagic_old(cgp, ns))
516
517 #define cg_clustersfree(cgp, ns) \
518 ((u_int8_t *)((u_int8_t *)(cgp) + \
519 ufs_rw32((cgp)->cg_clusteroff, (ns))))
520 #define cg_clustersum(cgp, ns) \
521 ((int32_t *)((u_int8_t *)(cgp) + \
522 ufs_rw32((cgp)->cg_clustersumoff, (ns))))
523
524
525 /*
526 * Turn file system block numbers into disk block addresses.
527 * This maps file system blocks to device size blocks.
528 */
529 #define fsbtodb(fs, b) ((b) << (fs)->fs_fsbtodb)
530 #define dbtofsb(fs, b) ((b) >> (fs)->fs_fsbtodb)
531
532 /*
533 * Cylinder group macros to locate things in cylinder groups.
534 * They calc file system addresses of cylinder group data structures.
535 */
536 #define cgbase(fs, c) (((daddr_t)(fs)->fs_fpg) * (c))
537 #define cgstart_ufs1(fs, c) \
538 (cgbase(fs, c) + (fs)->fs_old_cgoffset * ((c) & ~((fs)->fs_old_cgmask)))
539 #define cgstart_ufs2(fs, c) cgbase((fs), (c))
540 #define cgstart(fs, c) ((fs)->fs_magic == FS_UFS2_MAGIC \
541 ? cgstart_ufs2((fs), (c)) : cgstart_ufs1((fs), (c)))
542 #define cgdmin(fs, c) (cgstart(fs, c) + (fs)->fs_dblkno) /* 1st data */
543 #define cgimin(fs, c) (cgstart(fs, c) + (fs)->fs_iblkno) /* inode blk */
544 #define cgsblock(fs, c) (cgstart(fs, c) + (fs)->fs_sblkno) /* super blk */
545 #define cgtod(fs, c) (cgstart(fs, c) + (fs)->fs_cblkno) /* cg block */
546
547 /*
548 * Macros for handling inode numbers:
549 * inode number to file system block offset.
550 * inode number to cylinder group number.
551 * inode number to file system block address.
552 */
553 #define ino_to_cg(fs, x) ((x) / (fs)->fs_ipg)
554 #define ino_to_fsba(fs, x) \
555 ((daddr_t)(cgimin(fs, ino_to_cg(fs, x)) + \
556 (blkstofrags((fs), (((x) % (fs)->fs_ipg) / INOPB(fs))))))
557 #define ino_to_fsbo(fs, x) ((x) % INOPB(fs))
558
559 /*
560 * Give cylinder group number for a file system block.
561 * Give cylinder group block number for a file system block.
562 */
563 #define dtog(fs, d) ((d) / (fs)->fs_fpg)
564 #define dtogd(fs, d) ((d) % (fs)->fs_fpg)
565
566 /*
567 * Extract the bits for a block from a map.
568 * Compute the cylinder and rotational position of a cyl block addr.
569 */
570 #define blkmap(fs, map, loc) \
571 (((map)[(loc) / NBBY] >> ((loc) % NBBY)) & (0xff >> (NBBY - (fs)->fs_frag)))
572 #define old_cbtocylno(fs, bno) \
573 (fsbtodb(fs, bno) / (fs)->fs_old_spc)
574 #define old_cbtorpos(fs, bno) \
575 ((fs)->fs_old_nrpos <= 1 ? 0 : \
576 (fsbtodb(fs, bno) % (fs)->fs_old_spc / (fs)->fs_old_nsect * (fs)->fs_old_trackskew + \
577 fsbtodb(fs, bno) % (fs)->fs_old_spc % (fs)->fs_old_nsect * (fs)->fs_old_interleave) % \
578 (fs)->fs_old_nsect * (fs)->fs_old_nrpos / (fs)->fs_old_npsect)
579
580 /*
581 * The following macros optimize certain frequently calculated
582 * quantities by using shifts and masks in place of divisions
583 * modulos and multiplications.
584 */
585 #define blkoff(fs, loc) /* calculates (loc % fs->fs_bsize) */ \
586 ((loc) & (fs)->fs_qbmask)
587 #define fragoff(fs, loc) /* calculates (loc % fs->fs_fsize) */ \
588 ((loc) & (fs)->fs_qfmask)
589 #define lfragtosize(fs, frag) /* calculates ((off_t)frag * fs->fs_fsize) */ \
590 (((off_t)(frag)) << (fs)->fs_fshift)
591 #define lblktosize(fs, blk) /* calculates ((off_t)blk * fs->fs_bsize) */ \
592 (((off_t)(blk)) << (fs)->fs_bshift)
593 #define lblkno(fs, loc) /* calculates (loc / fs->fs_bsize) */ \
594 ((loc) >> (fs)->fs_bshift)
595 #define numfrags(fs, loc) /* calculates (loc / fs->fs_fsize) */ \
596 ((loc) >> (fs)->fs_fshift)
597 #define blkroundup(fs, size) /* calculates roundup(size, fs->fs_bsize) */ \
598 (((size) + (fs)->fs_qbmask) & (fs)->fs_bmask)
599 #define fragroundup(fs, size) /* calculates roundup(size, fs->fs_fsize) */ \
600 (((size) + (fs)->fs_qfmask) & (fs)->fs_fmask)
601 #define fragstoblks(fs, frags) /* calculates (frags / fs->fs_frag) */ \
602 ((frags) >> (fs)->fs_fragshift)
603 #define blkstofrags(fs, blks) /* calculates (blks * fs->fs_frag) */ \
604 ((blks) << (fs)->fs_fragshift)
605 #define fragnum(fs, fsb) /* calculates (fsb % fs->fs_frag) */ \
606 ((fsb) & ((fs)->fs_frag - 1))
607 #define blknum(fs, fsb) /* calculates rounddown(fsb, fs->fs_frag) */ \
608 ((fsb) &~ ((fs)->fs_frag - 1))
609
610 /*
611 * Determine the number of available frags given a
612 * percentage to hold in reserve.
613 */
614 #define freespace(fs, percentreserved) \
615 (blkstofrags((fs), (fs)->fs_cstotal.cs_nbfree) + \
616 (fs)->fs_cstotal.cs_nffree - \
617 (((off_t)((fs)->fs_dsize)) * (percentreserved) / 100))
618
619 /*
620 * Determining the size of a file block in the file system.
621 */
622 #define blksize(fs, ip, lbn) \
623 (((lbn) >= NDADDR || (ip)->i_size >= lblktosize(fs, (lbn) + 1)) \
624 ? (fs)->fs_bsize \
625 : (fragroundup(fs, blkoff(fs, (ip)->i_size))))
626
627 #define sblksize(fs, size, lbn) \
628 (((lbn) >= NDADDR || (size) >= ((lbn) + 1) << (fs)->fs_bshift) \
629 ? (fs)->fs_bsize \
630 : (fragroundup(fs, blkoff(fs, (size)))))
631
632
633 /*
634 * Number of inodes in a secondary storage block/fragment.
635 */
636 #define INOPB(fs) ((fs)->fs_inopb)
637 #define INOPF(fs) ((fs)->fs_inopb >> (fs)->fs_fragshift)
638
639 /*
640 * Number of indirects in a file system block.
641 */
642 #define NINDIR(fs) ((fs)->fs_nindir)
643
644 /*
645 * Apple UFS Label:
646 * We check for this to decide to use APPLEUFS_DIRBLKSIZ
647 */
648 #define APPLEUFS_LABEL_MAGIC 0x4c41424c /* LABL */
649 #define APPLEUFS_LABEL_SIZE 1024
650 #define APPLEUFS_LABEL_OFFSET (BBSIZE - APPLEUFS_LABEL_SIZE) /* located at 7k */
651 #define APPLEUFS_LABEL_VERSION 1
652 #define APPLEUFS_MAX_LABEL_NAME 512
653
654 struct appleufslabel {
655 u_int32_t ul_magic;
656 u_int16_t ul_checksum;
657 u_int16_t ul_unused0;
658 u_int32_t ul_version;
659 u_int32_t ul_time;
660 u_int16_t ul_namelen;
661 u_char ul_name[APPLEUFS_MAX_LABEL_NAME]; /* Warning: may not be null terminated */
662 u_int16_t ul_unused1;
663 u_int64_t ul_uuid; /* Note this is only 4 byte aligned */
664 u_char ul_reserved[24];
665 u_char ul_unused[460];
666 } __attribute__((__packed__));
667
668
669 #endif /* !_UFS_FFS_FS_H_ */
670