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fs.h revision 1.27
      1  1.27      wiz /*	$NetBSD: fs.h,v 1.27 2002/11/04 16:59:37 wiz Exp $	*/
      2   1.2      cgd 
      3   1.1  mycroft /*
      4   1.1  mycroft  * Copyright (c) 1982, 1986, 1993
      5   1.1  mycroft  *	The Regents of the University of California.  All rights reserved.
      6   1.1  mycroft  *
      7   1.1  mycroft  * Redistribution and use in source and binary forms, with or without
      8   1.1  mycroft  * modification, are permitted provided that the following conditions
      9   1.1  mycroft  * are met:
     10   1.1  mycroft  * 1. Redistributions of source code must retain the above copyright
     11   1.1  mycroft  *    notice, this list of conditions and the following disclaimer.
     12   1.1  mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1  mycroft  *    notice, this list of conditions and the following disclaimer in the
     14   1.1  mycroft  *    documentation and/or other materials provided with the distribution.
     15   1.1  mycroft  * 3. All advertising materials mentioning features or use of this software
     16   1.1  mycroft  *    must display the following acknowledgement:
     17   1.1  mycroft  *	This product includes software developed by the University of
     18   1.1  mycroft  *	California, Berkeley and its contributors.
     19   1.1  mycroft  * 4. Neither the name of the University nor the names of its contributors
     20   1.1  mycroft  *    may be used to endorse or promote products derived from this software
     21   1.1  mycroft  *    without specific prior written permission.
     22   1.1  mycroft  *
     23   1.1  mycroft  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24   1.1  mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25   1.1  mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26   1.1  mycroft  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27   1.1  mycroft  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28   1.1  mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29   1.1  mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30   1.1  mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31   1.1  mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32   1.1  mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33   1.1  mycroft  * SUCH DAMAGE.
     34   1.1  mycroft  *
     35   1.8     fvdl  *	@(#)fs.h	8.13 (Berkeley) 3/21/95
     36   1.1  mycroft  */
     37   1.1  mycroft 
     38  1.14    lukem #ifndef	_UFS_FFS_FS_H_
     39  1.14    lukem #define	_UFS_FFS_FS_H_
     40  1.14    lukem 
     41   1.1  mycroft /*
     42   1.1  mycroft  * Each disk drive contains some number of file systems.
     43   1.1  mycroft  * A file system consists of a number of cylinder groups.
     44   1.1  mycroft  * Each cylinder group has inodes and data.
     45   1.1  mycroft  *
     46   1.1  mycroft  * A file system is described by its super-block, which in turn
     47   1.1  mycroft  * describes the cylinder groups.  The super-block is critical
     48   1.1  mycroft  * data and is replicated in each cylinder group to protect against
     49   1.1  mycroft  * catastrophic loss.  This is done at `newfs' time and the critical
     50   1.1  mycroft  * super-block data does not change, so the copies need not be
     51   1.1  mycroft  * referenced further unless disaster strikes.
     52   1.1  mycroft  *
     53   1.1  mycroft  * For file system fs, the offsets of the various blocks of interest
     54   1.1  mycroft  * are given in the super block as:
     55   1.1  mycroft  *	[fs->fs_sblkno]		Super-block
     56   1.1  mycroft  *	[fs->fs_cblkno]		Cylinder group block
     57   1.1  mycroft  *	[fs->fs_iblkno]		Inode blocks
     58   1.1  mycroft  *	[fs->fs_dblkno]		Data blocks
     59   1.1  mycroft  * The beginning of cylinder group cg in fs, is given by
     60   1.1  mycroft  * the ``cgbase(fs, cg)'' macro.
     61   1.1  mycroft  *
     62   1.1  mycroft  * The first boot and super blocks are given in absolute disk addresses.
     63   1.1  mycroft  * The byte-offset forms are preferred, as they don't imply a sector size.
     64   1.1  mycroft  */
     65  1.15    lukem #define	BBSIZE		8192
     66  1.15    lukem #define	SBSIZE		8192
     67   1.1  mycroft #define	BBOFF		((off_t)(0))
     68   1.1  mycroft #define	SBOFF		((off_t)(BBOFF + BBSIZE))
     69   1.8     fvdl #define	BBLOCK		((ufs_daddr_t)(0))
     70   1.8     fvdl #define	SBLOCK		((ufs_daddr_t)(BBLOCK + BBSIZE / DEV_BSIZE))
     71   1.1  mycroft 
     72   1.1  mycroft /*
     73   1.1  mycroft  * Addresses stored in inodes are capable of addressing fragments
     74  1.15    lukem  * of `blocks'. File system blocks of at most size MAXBSIZE can
     75   1.1  mycroft  * be optionally broken into 2, 4, or 8 pieces, each of which is
     76  1.15    lukem  * addressable; these pieces may be DEV_BSIZE, or some multiple of
     77   1.1  mycroft  * a DEV_BSIZE unit.
     78   1.1  mycroft  *
     79   1.1  mycroft  * Large files consist of exclusively large data blocks.  To avoid
     80   1.1  mycroft  * undue wasted disk space, the last data block of a small file may be
     81   1.1  mycroft  * allocated as only as many fragments of a large block as are
     82   1.1  mycroft  * necessary.  The file system format retains only a single pointer
     83   1.1  mycroft  * to such a fragment, which is a piece of a single large block that
     84   1.1  mycroft  * has been divided.  The size of such a fragment is determinable from
     85   1.1  mycroft  * information in the inode, using the ``blksize(fs, ip, lbn)'' macro.
     86   1.1  mycroft  *
     87   1.1  mycroft  * The file system records space availability at the fragment level;
     88   1.1  mycroft  * to determine block availability, aligned fragments are examined.
     89   1.1  mycroft  */
     90   1.1  mycroft 
     91   1.1  mycroft /*
     92   1.4  mycroft  * MINBSIZE is the smallest allowable block size.
     93   1.4  mycroft  * In order to insure that it is possible to create files of size
     94   1.4  mycroft  * 2^32 with only two levels of indirection, MINBSIZE is set to 4096.
     95   1.4  mycroft  * MINBSIZE must be big enough to hold a cylinder group block,
     96   1.4  mycroft  * thus changes to (struct cg) must keep its size within MINBSIZE.
     97   1.4  mycroft  * Note that super blocks are always of size SBSIZE,
     98   1.1  mycroft  * and that both SBSIZE and MAXBSIZE must be >= MINBSIZE.
     99   1.1  mycroft  */
    100  1.15    lukem #define	MINBSIZE	4096
    101   1.1  mycroft 
    102   1.1  mycroft /*
    103   1.4  mycroft  * The path name on which the file system is mounted is maintained
    104   1.4  mycroft  * in fs_fsmnt. MAXMNTLEN defines the amount of space allocated in
    105   1.4  mycroft  * the super block for this name.
    106   1.3      cgd  */
    107  1.15    lukem #define	MAXMNTLEN	512
    108   1.3      cgd 
    109   1.3      cgd /*
    110  1.18    lukem  * There is a 128-byte region in the superblock reserved for in-core
    111  1.18    lukem  * pointers to summary information. Originally this included an array
    112  1.20    lukem  * of pointers to blocks of struct csum; now there are just three
    113  1.18    lukem  * pointers and the remaining space is padded with fs_ocsp[].
    114  1.18    lukem  * NOCSPTRS determines the size of this padding. One pointer (fs_csp)
    115  1.18    lukem  * is taken away to point to a contiguous array of struct csum for
    116  1.18    lukem  * all cylinder groups; a second (fs_maxcluster) points to an array
    117  1.20    lukem  * of cluster sizes that is computed as cylinder groups are inspected;
    118  1.20    lukem  * and the third points to an array that tracks the creation of new
    119  1.20    lukem  * directories.
    120   1.1  mycroft  */
    121  1.20    lukem #define	NOCSPTRS	((128 / sizeof(void *)) - 3)
    122   1.1  mycroft 
    123   1.1  mycroft /*
    124   1.1  mycroft  * A summary of contiguous blocks of various sizes is maintained
    125   1.1  mycroft  * in each cylinder group. Normally this is set by the initial
    126   1.1  mycroft  * value of fs_maxcontig. To conserve space, a maximum summary size
    127   1.1  mycroft  * is set by FS_MAXCONTIG.
    128   1.1  mycroft  */
    129  1.15    lukem #define	FS_MAXCONTIG	16
    130   1.1  mycroft 
    131   1.1  mycroft /*
    132   1.1  mycroft  * MINFREE gives the minimum acceptable percentage of file system
    133   1.1  mycroft  * blocks which may be free. If the freelist drops below this level
    134   1.1  mycroft  * only the superuser may continue to allocate blocks. This may
    135   1.1  mycroft  * be set to 0 if no reserve of free blocks is deemed necessary,
    136   1.1  mycroft  * however throughput drops by fifty percent if the file system
    137   1.1  mycroft  * is run at between 95% and 100% full; thus the minimum default
    138   1.1  mycroft  * value of fs_minfree is 5%. However, to get good clustering
    139   1.1  mycroft  * performance, 10% is a better choice. hence we use 10% as our
    140   1.1  mycroft  * default value. With 10% free space, fragmentation is not a
    141   1.1  mycroft  * problem, so we choose to optimize for time.
    142   1.1  mycroft  */
    143  1.15    lukem #define	MINFREE		5
    144  1.15    lukem #define	DEFAULTOPT	FS_OPTTIME
    145   1.1  mycroft 
    146   1.1  mycroft /*
    147  1.20    lukem  * Grigoriy Orlov <gluk (at) ptci.ru> has done some extensive work to fine
    148  1.20    lukem  * tune the layout preferences for directories within a filesystem.
    149  1.20    lukem  * His algorithm can be tuned by adjusting the following parameters
    150  1.20    lukem  * which tell the system the average file size and the average number
    151  1.20    lukem  * of files per directory. These defaults are well selected for typical
    152  1.20    lukem  * filesystems, but may need to be tuned for odd cases like filesystems
    153  1.27      wiz  * being used for squid caches or news spools.
    154  1.20    lukem  */
    155  1.20    lukem #define	AVFILESIZ	16384	/* expected average file size */
    156  1.20    lukem #define	AFPDIR		64	/* expected number of files per directory */
    157  1.20    lukem 
    158  1.20    lukem /*
    159   1.1  mycroft  * Per cylinder group information; summarized in blocks allocated
    160   1.1  mycroft  * from first cylinder group data blocks.  These blocks have to be
    161   1.1  mycroft  * read in from fs_csaddr (size fs_cssize) in addition to the
    162   1.1  mycroft  * super block.
    163   1.1  mycroft  */
    164   1.1  mycroft struct csum {
    165   1.4  mycroft 	int32_t	cs_ndir;		/* number of directories */
    166   1.4  mycroft 	int32_t	cs_nbfree;		/* number of free blocks */
    167   1.4  mycroft 	int32_t	cs_nifree;		/* number of free inodes */
    168   1.4  mycroft 	int32_t	cs_nffree;		/* number of free frags */
    169   1.1  mycroft };
    170   1.1  mycroft 
    171   1.1  mycroft /*
    172   1.9   bouyer  * Super block for an FFS file system in memory.
    173   1.1  mycroft  */
    174   1.1  mycroft struct fs {
    175   1.4  mycroft 	int32_t	 fs_firstfield;		/* historic file system linked list, */
    176   1.4  mycroft 	int32_t	 fs_unused_1;		/*     used for incore super blocks */
    177   1.8     fvdl 	ufs_daddr_t fs_sblkno;		/* addr of super-block in filesys */
    178   1.8     fvdl 	ufs_daddr_t fs_cblkno;		/* offset of cyl-block in filesys */
    179   1.8     fvdl 	ufs_daddr_t fs_iblkno;		/* offset of inode-blocks in filesys */
    180   1.8     fvdl 	ufs_daddr_t fs_dblkno;		/* offset of first data after cg */
    181   1.4  mycroft 	int32_t	 fs_cgoffset;		/* cylinder group offset in cylinder */
    182   1.4  mycroft 	int32_t	 fs_cgmask;		/* used to calc mod fs_ntrak */
    183  1.13      eeh 	int32_t	 fs_time;		/* last time written */
    184   1.4  mycroft 	int32_t	 fs_size;		/* number of blocks in fs */
    185   1.4  mycroft 	int32_t	 fs_dsize;		/* number of data blocks in fs */
    186   1.4  mycroft 	int32_t	 fs_ncg;		/* number of cylinder groups */
    187   1.4  mycroft 	int32_t	 fs_bsize;		/* size of basic blocks in fs */
    188   1.4  mycroft 	int32_t	 fs_fsize;		/* size of frag blocks in fs */
    189   1.4  mycroft 	int32_t	 fs_frag;		/* number of frags in a block in fs */
    190   1.1  mycroft /* these are configuration parameters */
    191   1.4  mycroft 	int32_t	 fs_minfree;		/* minimum percentage of free blocks */
    192   1.4  mycroft 	int32_t	 fs_rotdelay;		/* num of ms for optimal next block */
    193   1.4  mycroft 	int32_t	 fs_rps;		/* disk revolutions per second */
    194   1.1  mycroft /* these fields can be computed from the others */
    195   1.4  mycroft 	int32_t	 fs_bmask;		/* ``blkoff'' calc of blk offsets */
    196   1.4  mycroft 	int32_t	 fs_fmask;		/* ``fragoff'' calc of frag offsets */
    197   1.4  mycroft 	int32_t	 fs_bshift;		/* ``lblkno'' calc of logical blkno */
    198   1.4  mycroft 	int32_t	 fs_fshift;		/* ``numfrags'' calc number of frags */
    199   1.1  mycroft /* these are configuration parameters */
    200   1.4  mycroft 	int32_t	 fs_maxcontig;		/* max number of contiguous blks */
    201   1.4  mycroft 	int32_t	 fs_maxbpg;		/* max number of blks per cyl group */
    202   1.1  mycroft /* these fields can be computed from the others */
    203   1.4  mycroft 	int32_t	 fs_fragshift;		/* block to frag shift */
    204   1.4  mycroft 	int32_t	 fs_fsbtodb;		/* fsbtodb and dbtofsb shift constant */
    205   1.4  mycroft 	int32_t	 fs_sbsize;		/* actual size of super block */
    206  1.18    lukem 	int32_t	 fs_csmask;		/* csum block offset (now unused) */
    207  1.18    lukem 	int32_t	 fs_csshift;		/* csum block number (now unused) */
    208   1.4  mycroft 	int32_t	 fs_nindir;		/* value of NINDIR */
    209   1.4  mycroft 	int32_t	 fs_inopb;		/* value of INOPB */
    210   1.4  mycroft 	int32_t	 fs_nspf;		/* value of NSPF */
    211   1.1  mycroft /* yet another configuration parameter */
    212   1.4  mycroft 	int32_t	 fs_optim;		/* optimization preference, see below */
    213   1.1  mycroft /* these fields are derived from the hardware */
    214   1.4  mycroft 	int32_t	 fs_npsect;		/* # sectors/track including spares */
    215   1.4  mycroft 	int32_t	 fs_interleave;		/* hardware sector interleave */
    216   1.4  mycroft 	int32_t	 fs_trackskew;		/* sector 0 skew, per track */
    217  1.16    lukem /* fs_id takes the space of the unused fs_headswitch and fs_trkseek fields */
    218  1.16    lukem 	int32_t	 fs_id[2];		/* unique file system id */
    219   1.1  mycroft /* sizes determined by number of cylinder groups and their sizes */
    220   1.8     fvdl 	ufs_daddr_t  fs_csaddr;		/* blk addr of cyl grp summary area */
    221   1.4  mycroft 	int32_t	 fs_cssize;		/* size of cyl grp summary area */
    222   1.4  mycroft 	int32_t	 fs_cgsize;		/* cylinder group size */
    223   1.1  mycroft /* these fields are derived from the hardware */
    224   1.4  mycroft 	int32_t	 fs_ntrak;		/* tracks per cylinder */
    225   1.4  mycroft 	int32_t	 fs_nsect;		/* sectors per track */
    226   1.4  mycroft 	int32_t	 fs_spc;		/* sectors per cylinder */
    227   1.1  mycroft /* this comes from the disk driver partitioning */
    228   1.4  mycroft 	int32_t	 fs_ncyl;		/* cylinders in file system */
    229   1.1  mycroft /* these fields can be computed from the others */
    230   1.4  mycroft 	int32_t	 fs_cpg;		/* cylinders per group */
    231   1.4  mycroft 	int32_t	 fs_ipg;		/* inodes per group */
    232   1.4  mycroft 	int32_t	 fs_fpg;		/* blocks per group * fs_frag */
    233   1.1  mycroft /* this data must be re-computed after crashes */
    234   1.5  mycroft 	struct	csum fs_cstotal;	/* cylinder summary information */
    235   1.1  mycroft /* these fields are cleared at mount time */
    236   1.4  mycroft 	int8_t	 fs_fmod;		/* super block modified flag */
    237   1.4  mycroft 	int8_t	 fs_clean;		/* file system is clean flag */
    238   1.4  mycroft 	int8_t	 fs_ronly;		/* mounted read-only flag */
    239  1.12     fvdl 	int8_t	 fs_flags;		/* see FS_ flags below */
    240   1.4  mycroft 	u_char	 fs_fsmnt[MAXMNTLEN];	/* name mounted on */
    241   1.1  mycroft /* these fields retain the current block allocation info */
    242  1.21    lukem 	int32_t	 fs_cgrotor;		/* last cg searched (UNUSED) */
    243  1.18    lukem 	void 	*fs_ocsp[NOCSPTRS];	/* padding; was list of fs_cs buffers */
    244  1.20    lukem 	u_int16_t *fs_contigdirs;	/* # of contiguously allocated dirs */
    245  1.18    lukem 	struct csum *fs_csp;		/* cg summary info buffer for fs_cs */
    246  1.20    lukem 	int32_t	*fs_maxcluster;		/* max cluster in each cyl group */
    247   1.4  mycroft 	int32_t	 fs_cpc;		/* cyl per cycle in postbl */
    248   1.4  mycroft 	int16_t	 fs_opostbl[16][8];	/* old rotation block list head */
    249  1.20    lukem 	int32_t	 fs_snapinum[20];	/* RESERVED for snapshot inode nums */
    250  1.20    lukem 	int32_t	 fs_avgfilesize;	/* expected average file size */
    251  1.20    lukem 	int32_t	 fs_avgfpdir;		/* expected # of files per directory */
    252  1.22     fvdl 	int32_t	 fs_sparecon[26];	/* RESERVED for future constants */
    253  1.22     fvdl 	int32_t  fs_pendingblocks;	/* blocks in process of being freed */
    254  1.22     fvdl 	int32_t  fs_pendinginodes;	/* inodes in process of being freed */
    255  1.15    lukem 	int32_t	 fs_contigsumsize;	/* size of cluster summary array */
    256   1.4  mycroft 	int32_t	 fs_maxsymlinklen;	/* max length of an internal symlink */
    257   1.4  mycroft 	int32_t	 fs_inodefmt;		/* format of on-disk inodes */
    258   1.3      cgd 	u_int64_t fs_maxfilesize;	/* maximum representable file size */
    259  1.18    lukem 	int64_t	 fs_qbmask;		/* ~fs_bmask for use with 64-bit size */
    260  1.18    lukem 	int64_t	 fs_qfmask;		/* ~fs_fmask for use with 64-bit size */
    261  1.14    lukem 	int32_t	 fs_state;		/* validate fs_clean field (UNUSED) */
    262   1.4  mycroft 	int32_t	 fs_postblformat;	/* format of positional layout tables */
    263   1.4  mycroft 	int32_t	 fs_nrpos;		/* number of rotational positions */
    264   1.4  mycroft 	int32_t	 fs_postbloff;		/* (u_int16) rotation block list head */
    265   1.4  mycroft 	int32_t	 fs_rotbloff;		/* (u_int8) blocks for each rotation */
    266   1.4  mycroft 	int32_t	 fs_magic;		/* magic number */
    267   1.3      cgd 	u_int8_t fs_space[1];		/* list of blocks for each rotation */
    268   1.1  mycroft /* actually longer */
    269   1.1  mycroft };
    270   1.3      cgd 
    271   1.1  mycroft /*
    272  1.15    lukem  * File system identification
    273   1.1  mycroft  */
    274  1.15    lukem #define	FS_MAGIC	0x011954	/* the fast file system magic number */
    275   1.1  mycroft #define	FS_OKAY		0x7c269d38	/* superblock checksum */
    276  1.15    lukem #define	FS_42INODEFMT	-1		/* 4.2BSD inode format */
    277  1.15    lukem #define	FS_44INODEFMT	2		/* 4.4BSD inode format */
    278   1.6  mycroft 
    279   1.6  mycroft /*
    280  1.15    lukem  * File system clean flags
    281   1.6  mycroft  */
    282   1.6  mycroft #define	FS_ISCLEAN	0x01
    283   1.6  mycroft #define	FS_WASCLEAN	0x02
    284   1.6  mycroft 
    285   1.1  mycroft /*
    286   1.1  mycroft  * Preference for optimization.
    287   1.1  mycroft  */
    288  1.15    lukem #define	FS_OPTTIME	0	/* minimize allocation time */
    289  1.15    lukem #define	FS_OPTSPACE	1	/* minimize disk fragmentation */
    290   1.1  mycroft 
    291   1.1  mycroft /*
    292  1.15    lukem  * File system flags
    293  1.12     fvdl  */
    294  1.15    lukem #define	FS_UNCLEAN	0x01	/* file system not clean at mount (unused) */
    295  1.15    lukem #define	FS_DOSOFTDEP	0x02	/* file system using soft dependencies */
    296  1.12     fvdl 
    297  1.12     fvdl /*
    298  1.15    lukem  * File system internal flags, also in fs_flags.
    299  1.15    lukem  * (Pick highest number to avoid conflicts with others)
    300  1.12     fvdl  */
    301  1.15    lukem #define	FS_SWAPPED	0x80	/* file system is endian swapped */
    302  1.15    lukem #define	FS_INTERNAL	0x80	/* mask for internal flags */
    303  1.12     fvdl 
    304  1.12     fvdl /*
    305   1.1  mycroft  * Rotational layout table format types
    306   1.1  mycroft  */
    307  1.15    lukem #define	FS_42POSTBLFMT		-1	/* 4.2BSD rotational table format */
    308  1.15    lukem #define	FS_DYNAMICPOSTBLFMT	1	/* dynamic rotational table format */
    309   1.1  mycroft /*
    310   1.1  mycroft  * Macros for access to superblock array structures
    311   1.1  mycroft  */
    312  1.15    lukem #define	fs_postbl(fs, cylno) \
    313   1.1  mycroft     (((fs)->fs_postblformat == FS_42POSTBLFMT) \
    314   1.4  mycroft     ? ((fs)->fs_opostbl[cylno]) \
    315   1.4  mycroft     : ((int16_t *)((u_int8_t *)(fs) + \
    316   1.4  mycroft 	(fs)->fs_postbloff) + (cylno) * (fs)->fs_nrpos))
    317  1.15    lukem #define	fs_rotbl(fs) \
    318   1.1  mycroft     (((fs)->fs_postblformat == FS_42POSTBLFMT) \
    319   1.1  mycroft     ? ((fs)->fs_space) \
    320   1.4  mycroft     : ((u_int8_t *)((u_int8_t *)(fs) + (fs)->fs_rotbloff)))
    321   1.1  mycroft 
    322   1.1  mycroft /*
    323   1.1  mycroft  * The size of a cylinder group is calculated by CGSIZE. The maximum size
    324   1.4  mycroft  * is limited by the fact that cylinder groups are at most one block.
    325   1.4  mycroft  * Its size is derived from the size of the maps maintained in the
    326   1.4  mycroft  * cylinder group and the (struct cg) size.
    327   1.1  mycroft  */
    328  1.15    lukem #define	CGSIZE(fs) \
    329   1.3      cgd     /* base cg */	(sizeof(struct cg) + sizeof(int32_t) + \
    330   1.3      cgd     /* blktot size */	(fs)->fs_cpg * sizeof(int32_t) + \
    331   1.3      cgd     /* blks size */	(fs)->fs_cpg * (fs)->fs_nrpos * sizeof(int16_t) + \
    332   1.1  mycroft     /* inode map */	howmany((fs)->fs_ipg, NBBY) + \
    333   1.1  mycroft     /* block map */	howmany((fs)->fs_cpg * (fs)->fs_spc / NSPF(fs), NBBY) +\
    334   1.1  mycroft     /* if present */	((fs)->fs_contigsumsize <= 0 ? 0 : \
    335   1.3      cgd     /* cluster sum */	(fs)->fs_contigsumsize * sizeof(int32_t) + \
    336   1.1  mycroft     /* cluster map */	howmany((fs)->fs_cpg * (fs)->fs_spc / NSPB(fs), NBBY)))
    337   1.1  mycroft 
    338   1.1  mycroft /*
    339   1.1  mycroft  * Convert cylinder group to base address of its global summary info.
    340   1.1  mycroft  */
    341  1.18    lukem #define	fs_cs(fs, indx)	fs_csp[indx]
    342   1.1  mycroft 
    343   1.1  mycroft /*
    344   1.1  mycroft  * Cylinder group block for a file system.
    345   1.1  mycroft  */
    346   1.1  mycroft #define	CG_MAGIC	0x090255
    347   1.4  mycroft struct cg {
    348   1.4  mycroft 	int32_t	 cg_firstfield;		/* historic cyl groups linked list */
    349   1.4  mycroft 	int32_t	 cg_magic;		/* magic number */
    350  1.13      eeh 	int32_t	 cg_time;		/* time last written */
    351   1.4  mycroft 	int32_t	 cg_cgx;		/* we are the cgx'th cylinder group */
    352   1.4  mycroft 	int16_t	 cg_ncyl;		/* number of cyl's this cg */
    353   1.4  mycroft 	int16_t	 cg_niblk;		/* number of inode blocks this cg */
    354   1.4  mycroft 	int32_t	 cg_ndblk;		/* number of data blocks this cg */
    355   1.5  mycroft 	struct	csum cg_cs;		/* cylinder summary information */
    356   1.4  mycroft 	int32_t	 cg_rotor;		/* position of last used block */
    357   1.4  mycroft 	int32_t	 cg_frotor;		/* position of last used frag */
    358   1.4  mycroft 	int32_t	 cg_irotor;		/* position of last used inode */
    359   1.4  mycroft 	int32_t	 cg_frsum[MAXFRAG];	/* counts of available frags */
    360   1.4  mycroft 	int32_t	 cg_btotoff;		/* (int32) block totals per cylinder */
    361   1.4  mycroft 	int32_t	 cg_boff;		/* (u_int16) free block positions */
    362   1.4  mycroft 	int32_t	 cg_iusedoff;		/* (u_int8) used inode map */
    363   1.4  mycroft 	int32_t	 cg_freeoff;		/* (u_int8) free block map */
    364   1.4  mycroft 	int32_t	 cg_nextfreeoff;	/* (u_int8) next available space */
    365   1.4  mycroft 	int32_t	 cg_clustersumoff;	/* (u_int32) counts of avail clusters */
    366   1.4  mycroft 	int32_t	 cg_clusteroff;		/* (u_int8) free cluster map */
    367   1.4  mycroft 	int32_t	 cg_nclusterblks;	/* number of clusters this cg */
    368   1.4  mycroft 	int32_t	 cg_sparecon[13];	/* reserved for future use */
    369   1.3      cgd 	u_int8_t cg_space[1];		/* space for cylinder group maps */
    370   1.1  mycroft /* actually longer */
    371   1.1  mycroft };
    372   1.3      cgd 
    373   1.1  mycroft /*
    374   1.1  mycroft  * Macros for access to cylinder group array structures
    375   1.1  mycroft  */
    376  1.15    lukem #define	cg_blktot(cgp, ns) \
    377   1.9   bouyer     ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) \
    378   1.1  mycroft     ? (((struct ocg *)(cgp))->cg_btot) \
    379   1.9   bouyer     : ((int32_t *)((u_int8_t *)(cgp) + \
    380   1.9   bouyer 	ufs_rw32((cgp)->cg_btotoff, (ns)))))
    381  1.15    lukem #define	cg_blks(fs, cgp, cylno, ns) \
    382   1.9   bouyer     ((ufs_rw32((cgp)->cg_magic, ns) != CG_MAGIC) \
    383   1.1  mycroft     ? (((struct ocg *)(cgp))->cg_b[cylno]) \
    384   1.4  mycroft     : ((int16_t *)((u_int8_t *)(cgp) + \
    385   1.9   bouyer 	ufs_rw32((cgp)->cg_boff, (ns))) + \
    386   1.9   bouyer 	(cylno) * (fs)->fs_nrpos))
    387  1.15    lukem #define	cg_inosused(cgp, ns) \
    388   1.9   bouyer     ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) \
    389   1.1  mycroft     ? (((struct ocg *)(cgp))->cg_iused) \
    390   1.9   bouyer     : ((u_int8_t *)((u_int8_t *)(cgp) + \
    391   1.9   bouyer 	ufs_rw32((cgp)->cg_iusedoff, (ns)))))
    392  1.15    lukem #define	cg_blksfree(cgp, ns) \
    393   1.9   bouyer     ((ufs_rw32((cgp)->cg_magic, (ns)) != CG_MAGIC) \
    394   1.1  mycroft     ? (((struct ocg *)(cgp))->cg_free) \
    395   1.9   bouyer     : ((u_int8_t *)((u_int8_t *)(cgp) + \
    396   1.9   bouyer 	ufs_rw32((cgp)->cg_freeoff, (ns)))))
    397  1.15    lukem #define	cg_chkmagic(cgp, ns) \
    398   1.9   bouyer     (ufs_rw32((cgp)->cg_magic, (ns)) == CG_MAGIC || \
    399   1.9   bouyer 	ufs_rw32(((struct ocg *)(cgp))->cg_magic, (ns)) == \
    400   1.9   bouyer 	CG_MAGIC)
    401  1.15    lukem #define	cg_clustersfree(cgp, ns) \
    402   1.9   bouyer     ((u_int8_t *)((u_int8_t *)(cgp) + \
    403   1.9   bouyer 	ufs_rw32((cgp)->cg_clusteroff, (ns))))
    404  1.15    lukem #define	cg_clustersum(cgp, ns) \
    405   1.9   bouyer     ((int32_t *)((u_int8_t *)(cgp) + \
    406   1.9   bouyer 	ufs_rw32((cgp)->cg_clustersumoff, (ns))))
    407   1.1  mycroft 
    408   1.1  mycroft /*
    409   1.1  mycroft  * The following structure is defined
    410   1.1  mycroft  * for compatibility with old file systems.
    411   1.1  mycroft  */
    412   1.4  mycroft struct ocg {
    413   1.4  mycroft 	int32_t	 cg_firstfield;		/* historic linked list of cyl groups */
    414   1.4  mycroft 	int32_t	 cg_unused_1;		/*     used for incore cyl groups */
    415  1.13      eeh 	int32_t	 cg_time;		/* time last written */
    416   1.4  mycroft 	int32_t	 cg_cgx;		/* we are the cgx'th cylinder group */
    417   1.4  mycroft 	int16_t	 cg_ncyl;		/* number of cyl's this cg */
    418   1.4  mycroft 	int16_t	 cg_niblk;		/* number of inode blocks this cg */
    419   1.4  mycroft 	int32_t	 cg_ndblk;		/* number of data blocks this cg */
    420   1.5  mycroft 	struct	csum cg_cs;		/* cylinder summary information */
    421   1.4  mycroft 	int32_t	 cg_rotor;		/* position of last used block */
    422   1.4  mycroft 	int32_t	 cg_frotor;		/* position of last used frag */
    423   1.4  mycroft 	int32_t	 cg_irotor;		/* position of last used inode */
    424   1.4  mycroft 	int32_t	 cg_frsum[8];		/* counts of available frags */
    425   1.4  mycroft 	int32_t	 cg_btot[32];		/* block totals per cylinder */
    426   1.4  mycroft 	int16_t	 cg_b[32][8];		/* positions of free blocks */
    427   1.4  mycroft 	u_int8_t cg_iused[256];		/* used inode map */
    428   1.4  mycroft 	int32_t	 cg_magic;		/* magic number */
    429   1.3      cgd 	u_int8_t cg_free[1];		/* free block map */
    430   1.1  mycroft /* actually longer */
    431   1.1  mycroft };
    432   1.1  mycroft 
    433   1.1  mycroft /*
    434   1.1  mycroft  * Turn file system block numbers into disk block addresses.
    435   1.1  mycroft  * This maps file system blocks to device size blocks.
    436   1.1  mycroft  */
    437  1.15    lukem #define	fsbtodb(fs, b)	((b) << (fs)->fs_fsbtodb)
    438   1.1  mycroft #define	dbtofsb(fs, b)	((b) >> (fs)->fs_fsbtodb)
    439   1.1  mycroft 
    440   1.1  mycroft /*
    441   1.1  mycroft  * Cylinder group macros to locate things in cylinder groups.
    442   1.1  mycroft  * They calc file system addresses of cylinder group data structures.
    443   1.1  mycroft  */
    444   1.8     fvdl #define	cgbase(fs, c)	((ufs_daddr_t)((fs)->fs_fpg * (c)))
    445   1.1  mycroft #define	cgdmin(fs, c)	(cgstart(fs, c) + (fs)->fs_dblkno)	/* 1st data */
    446   1.1  mycroft #define	cgimin(fs, c)	(cgstart(fs, c) + (fs)->fs_iblkno)	/* inode blk */
    447   1.1  mycroft #define	cgsblock(fs, c)	(cgstart(fs, c) + (fs)->fs_sblkno)	/* super blk */
    448   1.1  mycroft #define	cgtod(fs, c)	(cgstart(fs, c) + (fs)->fs_cblkno)	/* cg block */
    449  1.15    lukem #define	cgstart(fs, c)							\
    450   1.1  mycroft 	(cgbase(fs, c) + (fs)->fs_cgoffset * ((c) & ~((fs)->fs_cgmask)))
    451   1.1  mycroft 
    452   1.1  mycroft /*
    453   1.1  mycroft  * Macros for handling inode numbers:
    454   1.1  mycroft  *     inode number to file system block offset.
    455   1.1  mycroft  *     inode number to cylinder group number.
    456   1.1  mycroft  *     inode number to file system block address.
    457   1.1  mycroft  */
    458   1.1  mycroft #define	ino_to_cg(fs, x)	((x) / (fs)->fs_ipg)
    459   1.1  mycroft #define	ino_to_fsba(fs, x)						\
    460   1.8     fvdl 	((ufs_daddr_t)(cgimin(fs, ino_to_cg(fs, x)) +			\
    461   1.1  mycroft 	    (blkstofrags((fs), (((x) % (fs)->fs_ipg) / INOPB(fs))))))
    462   1.1  mycroft #define	ino_to_fsbo(fs, x)	((x) % INOPB(fs))
    463   1.1  mycroft 
    464   1.1  mycroft /*
    465   1.1  mycroft  * Give cylinder group number for a file system block.
    466   1.1  mycroft  * Give cylinder group block number for a file system block.
    467   1.1  mycroft  */
    468   1.1  mycroft #define	dtog(fs, d)	((d) / (fs)->fs_fpg)
    469   1.1  mycroft #define	dtogd(fs, d)	((d) % (fs)->fs_fpg)
    470   1.1  mycroft 
    471   1.1  mycroft /*
    472   1.1  mycroft  * Extract the bits for a block from a map.
    473   1.1  mycroft  * Compute the cylinder and rotational position of a cyl block addr.
    474   1.1  mycroft  */
    475  1.15    lukem #define	blkmap(fs, map, loc) \
    476   1.1  mycroft     (((map)[(loc) / NBBY] >> ((loc) % NBBY)) & (0xff >> (NBBY - (fs)->fs_frag)))
    477  1.15    lukem #define	cbtocylno(fs, bno) \
    478  1.24  mycroft     (fsbtodb(fs, bno) / (fs)->fs_spc)
    479  1.15    lukem #define	cbtorpos(fs, bno) \
    480  1.25  mycroft     ((fs)->fs_nrpos <= 1 ? 0 : \
    481  1.25  mycroft      (fsbtodb(fs, bno) % (fs)->fs_spc / (fs)->fs_nsect * (fs)->fs_trackskew + \
    482  1.24  mycroft       fsbtodb(fs, bno) % (fs)->fs_spc % (fs)->fs_nsect * (fs)->fs_interleave) % \
    483   1.1  mycroft      (fs)->fs_nsect * (fs)->fs_nrpos / (fs)->fs_npsect)
    484   1.1  mycroft 
    485   1.1  mycroft /*
    486   1.1  mycroft  * The following macros optimize certain frequently calculated
    487   1.1  mycroft  * quantities by using shifts and masks in place of divisions
    488   1.1  mycroft  * modulos and multiplications.
    489   1.1  mycroft  */
    490  1.15    lukem #define	blkoff(fs, loc)		/* calculates (loc % fs->fs_bsize) */ \
    491   1.1  mycroft 	((loc) & (fs)->fs_qbmask)
    492  1.15    lukem #define	fragoff(fs, loc)	/* calculates (loc % fs->fs_fsize) */ \
    493   1.1  mycroft 	((loc) & (fs)->fs_qfmask)
    494  1.17    lukem #define	lblktosize(fs, blk)	/* calculates ((off_t)blk * fs->fs_bsize) */ \
    495  1.17    lukem 	((off_t)(blk) << (fs)->fs_bshift)
    496  1.15    lukem #define	lblkno(fs, loc)		/* calculates (loc / fs->fs_bsize) */ \
    497   1.1  mycroft 	((loc) >> (fs)->fs_bshift)
    498  1.15    lukem #define	numfrags(fs, loc)	/* calculates (loc / fs->fs_fsize) */ \
    499   1.1  mycroft 	((loc) >> (fs)->fs_fshift)
    500  1.15    lukem #define	blkroundup(fs, size)	/* calculates roundup(size, fs->fs_bsize) */ \
    501   1.1  mycroft 	(((size) + (fs)->fs_qbmask) & (fs)->fs_bmask)
    502  1.15    lukem #define	fragroundup(fs, size)	/* calculates roundup(size, fs->fs_fsize) */ \
    503   1.1  mycroft 	(((size) + (fs)->fs_qfmask) & (fs)->fs_fmask)
    504  1.15    lukem #define	fragstoblks(fs, frags)	/* calculates (frags / fs->fs_frag) */ \
    505   1.1  mycroft 	((frags) >> (fs)->fs_fragshift)
    506  1.15    lukem #define	blkstofrags(fs, blks)	/* calculates (blks * fs->fs_frag) */ \
    507   1.1  mycroft 	((blks) << (fs)->fs_fragshift)
    508  1.15    lukem #define	fragnum(fs, fsb)	/* calculates (fsb % fs->fs_frag) */ \
    509   1.1  mycroft 	((fsb) & ((fs)->fs_frag - 1))
    510  1.15    lukem #define	blknum(fs, fsb)		/* calculates rounddown(fsb, fs->fs_frag) */ \
    511   1.1  mycroft 	((fsb) &~ ((fs)->fs_frag - 1))
    512   1.1  mycroft 
    513   1.1  mycroft /*
    514   1.1  mycroft  * Determine the number of available frags given a
    515   1.3      cgd  * percentage to hold in reserve.
    516   1.1  mycroft  */
    517  1.15    lukem #define	freespace(fs, percentreserved) \
    518   1.1  mycroft 	(blkstofrags((fs), (fs)->fs_cstotal.cs_nbfree) + \
    519  1.17    lukem 	(fs)->fs_cstotal.cs_nffree - \
    520  1.17    lukem 	((off_t)((fs)->fs_dsize) * (percentreserved) / 100))
    521   1.1  mycroft 
    522   1.4  mycroft /*
    523   1.4  mycroft  * Determining the size of a file block in the file system.
    524   1.4  mycroft  */
    525  1.15    lukem #define	blksize(fs, ip, lbn) \
    526  1.17    lukem 	(((lbn) >= NDADDR || (ip)->i_ffs_size >= lblktosize(fs, (lbn) + 1)) \
    527   1.1  mycroft 	    ? (fs)->fs_bsize \
    528   1.7   bouyer 	    : (fragroundup(fs, blkoff(fs, (ip)->i_ffs_size))))
    529  1.15    lukem #define	dblksize(fs, dip, lbn) \
    530  1.17    lukem 	(((lbn) >= NDADDR || (dip)->di_size >= lblktosize(fs, (lbn) + 1)) \
    531   1.1  mycroft 	    ? (fs)->fs_bsize \
    532   1.1  mycroft 	    : (fragroundup(fs, blkoff(fs, (dip)->di_size))))
    533   1.1  mycroft 
    534   1.4  mycroft /*
    535   1.4  mycroft  * Number of disk sectors per block/fragment; assumes DEV_BSIZE byte
    536   1.4  mycroft  * sector size.
    537   1.4  mycroft  */
    538   1.1  mycroft #define	NSPB(fs)	((fs)->fs_nspf << (fs)->fs_fragshift)
    539   1.1  mycroft #define	NSPF(fs)	((fs)->fs_nspf)
    540   1.1  mycroft 
    541   1.4  mycroft /*
    542   1.4  mycroft  * Number of inodes in a secondary storage block/fragment.
    543   1.4  mycroft  */
    544   1.1  mycroft #define	INOPB(fs)	((fs)->fs_inopb)
    545   1.1  mycroft #define	INOPF(fs)	((fs)->fs_inopb >> (fs)->fs_fragshift)
    546   1.1  mycroft 
    547   1.4  mycroft /*
    548   1.4  mycroft  * Number of indirects in a file system block.
    549   1.4  mycroft  */
    550   1.1  mycroft #define	NINDIR(fs)	((fs)->fs_nindir)
    551  1.26      dbj 
    552  1.26      dbj /*
    553  1.26      dbj  * Apple UFS Label:
    554  1.26      dbj  *  We check for this to decide to use APPLEUFS_DIRBLKSIZ
    555  1.26      dbj  */
    556  1.26      dbj #define APPLEUFS_LABEL_MAGIC		0x4c41424c /* LABL */
    557  1.26      dbj #define APPLEUFS_LABEL_SIZE		1024
    558  1.26      dbj #define APPLEUFS_LABEL_OFFSET	(BBSIZE - APPLEUFS_LABEL_SIZE) /* located at 7k */
    559  1.26      dbj #define APPLEUFS_LABEL_VERSION	1
    560  1.26      dbj #define APPLEUFS_MAX_LABEL_NAME	512
    561  1.26      dbj 
    562  1.26      dbj struct appleufslabel {
    563  1.26      dbj 	u_int32_t	ul_magic;
    564  1.26      dbj 	u_int16_t	ul_checksum;
    565  1.26      dbj 	u_int32_t	ul_version;
    566  1.26      dbj 	u_int32_t	ul_time;
    567  1.26      dbj 	u_int16_t	ul_namelen;
    568  1.26      dbj 	u_char	ul_name[APPLEUFS_MAX_LABEL_NAME];
    569  1.26      dbj 	u_char	ul_reserved[32];
    570  1.26      dbj 	u_char	ul_unused[460];
    571  1.26      dbj };
    572  1.26      dbj 
    573  1.14    lukem 
    574  1.14    lukem #endif /* !_UFS_FFS_FS_H_ */
    575