Annotation of Net2/ufs/fs.h, revision 1.1.1.2

1.1       root        1: /*
                      2:  * Copyright (c) 1982, 1986 Regents of the University of California.
                      3:  * All rights reserved.
                      4:  *
                      5:  * Redistribution and use in source and binary forms, with or without
                      6:  * modification, are permitted provided that the following conditions
                      7:  * are met:
                      8:  * 1. Redistributions of source code must retain the above copyright
                      9:  *    notice, this list of conditions and the following disclaimer.
                     10:  * 2. Redistributions in binary form must reproduce the above copyright
                     11:  *    notice, this list of conditions and the following disclaimer in the
                     12:  *    documentation and/or other materials provided with the distribution.
                     13:  * 3. All advertising materials mentioning features or use of this software
                     14:  *    must display the following acknowledgement:
                     15:  *     This product includes software developed by the University of
                     16:  *     California, Berkeley and its contributors.
                     17:  * 4. Neither the name of the University nor the names of its contributors
                     18:  *    may be used to endorse or promote products derived from this software
                     19:  *    without specific prior written permission.
                     20:  *
                     21:  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
                     22:  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
                     23:  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
                     24:  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
                     25:  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
                     26:  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
                     27:  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
                     28:  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
                     29:  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
                     30:  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
                     31:  * SUCH DAMAGE.
                     32:  *
1.1.1.2 ! root       33:  *     from: @(#)fs.h  7.12 (Berkeley) 5/8/91
        !            34:  *     fs.h,v 1.3 1993/05/20 03:53:22 cgd Exp
1.1       root       35:  */
                     36: 
1.1.1.2 ! root       37: #ifndef _UFS_FS_H_
        !            38: #define _UFS_FS_H_
        !            39: 
1.1       root       40: /*
                     41:  * Each disk drive contains some number of file systems.
                     42:  * A file system consists of a number of cylinder groups.
                     43:  * Each cylinder group has inodes and data.
                     44:  *
                     45:  * A file system is described by its super-block, which in turn
                     46:  * describes the cylinder groups.  The super-block is critical
                     47:  * data and is replicated in each cylinder group to protect against
                     48:  * catastrophic loss.  This is done at `newfs' time and the critical
                     49:  * super-block data does not change, so the copies need not be
                     50:  * referenced further unless disaster strikes.
                     51:  *
                     52:  * For file system fs, the offsets of the various blocks of interest
                     53:  * are given in the super block as:
                     54:  *     [fs->fs_sblkno]         Super-block
                     55:  *     [fs->fs_cblkno]         Cylinder group block
                     56:  *     [fs->fs_iblkno]         Inode blocks
                     57:  *     [fs->fs_dblkno]         Data blocks
                     58:  * The beginning of cylinder group cg in fs, is given by
                     59:  * the ``cgbase(fs, cg)'' macro.
                     60:  *
                     61:  * The first boot and super blocks are given in absolute disk addresses.
                     62:  * The byte-offset forms are preferred, as they don't imply a sector size.
                     63:  */
                     64: #define BBSIZE         8192
                     65: #define SBSIZE         8192
                     66: #define        BBOFF           ((off_t)(0))
                     67: #define        SBOFF           ((off_t)(BBOFF + BBSIZE))
                     68: #define        BBLOCK          ((daddr_t)(0))
                     69: #define        SBLOCK          ((daddr_t)(BBLOCK + BBSIZE / DEV_BSIZE))
                     70: 
                     71: /*
                     72:  * Addresses stored in inodes are capable of addressing fragments
                     73:  * of `blocks'. File system blocks of at most size MAXBSIZE can 
                     74:  * be optionally broken into 2, 4, or 8 pieces, each of which is
                     75:  * addressible; these pieces may be DEV_BSIZE, or some multiple of
                     76:  * a DEV_BSIZE unit.
                     77:  *
                     78:  * Large files consist of exclusively large data blocks.  To avoid
                     79:  * undue wasted disk space, the last data block of a small file may be
                     80:  * allocated as only as many fragments of a large block as are
                     81:  * necessary.  The file system format retains only a single pointer
                     82:  * to such a fragment, which is a piece of a single large block that
                     83:  * has been divided.  The size of such a fragment is determinable from
                     84:  * information in the inode, using the ``blksize(fs, ip, lbn)'' macro.
                     85:  *
                     86:  * The file system records space availability at the fragment level;
                     87:  * to determine block availability, aligned fragments are examined.
                     88:  *
                     89:  * The root inode is the root of the file system.
                     90:  * Inode 0 can't be used for normal purposes and
                     91:  * historically bad blocks were linked to inode 1,
                     92:  * thus the root inode is 2. (inode 1 is no longer used for
                     93:  * this purpose, however numerous dump tapes make this
                     94:  * assumption, so we are stuck with it)
                     95:  */
                     96: #define        ROOTINO         ((ino_t)2)
                     97: 
                     98: /*
                     99:  * MINBSIZE is the smallest allowable block size.
                    100:  * In order to insure that it is possible to create files of size
                    101:  * 2^32 with only two levels of indirection, MINBSIZE is set to 4096.
                    102:  * MINBSIZE must be big enough to hold a cylinder group block,
                    103:  * thus changes to (struct cg) must keep its size within MINBSIZE.
                    104:  * Note that super blocks are always of size SBSIZE,
                    105:  * and that both SBSIZE and MAXBSIZE must be >= MINBSIZE.
                    106:  */
                    107: #define MINBSIZE       4096
                    108: 
                    109: /*
                    110:  * The path name on which the file system is mounted is maintained
                    111:  * in fs_fsmnt. MAXMNTLEN defines the amount of space allocated in 
                    112:  * the super block for this name.
                    113:  * The limit on the amount of summary information per file system
                    114:  * is defined by MAXCSBUFS. It is currently parameterized for a
                    115:  * maximum of two million cylinders.
                    116:  */
                    117: #define MAXMNTLEN 512
                    118: #define MAXCSBUFS 32
                    119: 
                    120: /*
                    121:  * Per cylinder group information; summarized in blocks allocated
                    122:  * from first cylinder group data blocks.  These blocks have to be
                    123:  * read in from fs_csaddr (size fs_cssize) in addition to the
                    124:  * super block.
                    125:  *
                    126:  * N.B. sizeof(struct csum) must be a power of two in order for
                    127:  * the ``fs_cs'' macro to work (see below).
                    128:  */
                    129: struct csum {
                    130:        long    cs_ndir;        /* number of directories */
                    131:        long    cs_nbfree;      /* number of free blocks */
                    132:        long    cs_nifree;      /* number of free inodes */
                    133:        long    cs_nffree;      /* number of free frags */
                    134: };
                    135: 
                    136: /*
                    137:  * Super block for a file system.
                    138:  */
                    139: #define        FS_MAGIC        0x011954
                    140: #define        FSOKAY          0x7c269d38
                    141: struct fs
                    142: {
                    143:        struct  fs *fs_link;            /* linked list of file systems */
                    144:        struct  fs *fs_rlink;           /*     used for incore super blocks */
                    145:        daddr_t fs_sblkno;              /* addr of super-block in filesys */
                    146:        daddr_t fs_cblkno;              /* offset of cyl-block in filesys */
                    147:        daddr_t fs_iblkno;              /* offset of inode-blocks in filesys */
                    148:        daddr_t fs_dblkno;              /* offset of first data after cg */
                    149:        long    fs_cgoffset;            /* cylinder group offset in cylinder */
                    150:        long    fs_cgmask;              /* used to calc mod fs_ntrak */
                    151:        time_t  fs_time;                /* last time written */
                    152:        long    fs_size;                /* number of blocks in fs */
                    153:        long    fs_dsize;               /* number of data blocks in fs */
                    154:        long    fs_ncg;                 /* number of cylinder groups */
                    155:        long    fs_bsize;               /* size of basic blocks in fs */
                    156:        long    fs_fsize;               /* size of frag blocks in fs */
                    157:        long    fs_frag;                /* number of frags in a block in fs */
                    158: /* these are configuration parameters */
                    159:        long    fs_minfree;             /* minimum percentage of free blocks */
                    160:        long    fs_rotdelay;            /* num of ms for optimal next block */
                    161:        long    fs_rps;                 /* disk revolutions per second */
                    162: /* these fields can be computed from the others */
                    163:        long    fs_bmask;               /* ``blkoff'' calc of blk offsets */
                    164:        long    fs_fmask;               /* ``fragoff'' calc of frag offsets */
                    165:        long    fs_bshift;              /* ``lblkno'' calc of logical blkno */
                    166:        long    fs_fshift;              /* ``numfrags'' calc number of frags */
                    167: /* these are configuration parameters */
                    168:        long    fs_maxcontig;           /* max number of contiguous blks */
                    169:        long    fs_maxbpg;              /* max number of blks per cyl group */
                    170: /* these fields can be computed from the others */
                    171:        long    fs_fragshift;           /* block to frag shift */
                    172:        long    fs_fsbtodb;             /* fsbtodb and dbtofsb shift constant */
                    173:        long    fs_sbsize;              /* actual size of super block */
                    174:        long    fs_csmask;              /* csum block offset */
                    175:        long    fs_csshift;             /* csum block number */
                    176:        long    fs_nindir;              /* value of NINDIR */
                    177:        long    fs_inopb;               /* value of INOPB */
                    178:        long    fs_nspf;                /* value of NSPF */
                    179: /* yet another configuration parameter */
                    180:        long    fs_optim;               /* optimization preference, see below */
                    181: /* these fields are derived from the hardware */
                    182:        long    fs_npsect;              /* # sectors/track including spares */
                    183:        long    fs_interleave;          /* hardware sector interleave */
                    184:        long    fs_trackskew;           /* sector 0 skew, per track */
                    185:        long    fs_headswitch;          /* head switch time, usec */
                    186:        long    fs_trkseek;             /* track-to-track seek, usec */
                    187: /* sizes determined by number of cylinder groups and their sizes */
                    188:        daddr_t fs_csaddr;              /* blk addr of cyl grp summary area */
                    189:        long    fs_cssize;              /* size of cyl grp summary area */
                    190:        long    fs_cgsize;              /* cylinder group size */
                    191: /* these fields are derived from the hardware */
                    192:        long    fs_ntrak;               /* tracks per cylinder */
                    193:        long    fs_nsect;               /* sectors per track */
                    194:        long    fs_spc;                 /* sectors per cylinder */
                    195: /* this comes from the disk driver partitioning */
                    196:        long    fs_ncyl;                /* cylinders in file system */
                    197: /* these fields can be computed from the others */
                    198:        long    fs_cpg;                 /* cylinders per group */
                    199:        long    fs_ipg;                 /* inodes per group */
                    200:        long    fs_fpg;                 /* blocks per group * fs_frag */
                    201: /* this data must be re-computed after crashes */
                    202:        struct  csum fs_cstotal;        /* cylinder summary information */
                    203: /* these fields are cleared at mount time */
                    204:        char    fs_fmod;                /* super block modified flag */
                    205:        char    fs_clean;               /* file system is clean flag */
                    206:        char    fs_ronly;               /* mounted read-only flag */
                    207:        char    fs_flags;               /* currently unused flag */
                    208:        char    fs_fsmnt[MAXMNTLEN];    /* name mounted on */
                    209: /* these fields retain the current block allocation info */
                    210:        long    fs_cgrotor;             /* last cg searched */
                    211:        struct  csum *fs_csp[MAXCSBUFS];/* list of fs_cs info buffers */
                    212:        long    fs_cpc;                 /* cyl per cycle in postbl */
                    213:        short   fs_opostbl[16][8];      /* old rotation block list head */
                    214:        long    fs_sparecon[55];        /* reserved for future constants */
                    215:        long    fs_state;               /* validate fs_clean field */
                    216:        quad    fs_qbmask;              /* ~fs_bmask - for use with quad size */
                    217:        quad    fs_qfmask;              /* ~fs_fmask - for use with quad size */
                    218:        long    fs_postblformat;        /* format of positional layout tables */
                    219:        long    fs_nrpos;               /* number of rotaional positions */
                    220:        long    fs_postbloff;           /* (short) rotation block list head */
                    221:        long    fs_rotbloff;            /* (u_char) blocks for each rotation */
                    222:        long    fs_magic;               /* magic number */
                    223:        u_char  fs_space[1];            /* list of blocks for each rotation */
                    224: /* actually longer */
                    225: };
                    226: /*
                    227:  * Preference for optimization.
                    228:  */
                    229: #define FS_OPTTIME     0       /* minimize allocation time */
                    230: #define FS_OPTSPACE    1       /* minimize disk fragmentation */
                    231: 
                    232: /*
                    233:  * Rotational layout table format types
                    234:  */
                    235: #define FS_42POSTBLFMT         -1      /* 4.2BSD rotational table format */
                    236: #define FS_DYNAMICPOSTBLFMT    1       /* dynamic rotational table format */
                    237: /*
                    238:  * Macros for access to superblock array structures
                    239:  */
                    240: #define fs_postbl(fs, cylno) \
                    241:     (((fs)->fs_postblformat == FS_42POSTBLFMT) \
                    242:     ? ((fs)->fs_opostbl[cylno]) \
                    243:     : ((short *)((char *)(fs) + (fs)->fs_postbloff) + (cylno) * (fs)->fs_nrpos))
                    244: #define fs_rotbl(fs) \
                    245:     (((fs)->fs_postblformat == FS_42POSTBLFMT) \
                    246:     ? ((fs)->fs_space) \
                    247:     : ((u_char *)((char *)(fs) + (fs)->fs_rotbloff)))
                    248: 
                    249: /*
                    250:  * Convert cylinder group to base address of its global summary info.
                    251:  *
                    252:  * N.B. This macro assumes that sizeof(struct csum) is a power of two.
                    253:  */
                    254: #define fs_cs(fs, indx) \
                    255:        fs_csp[(indx) >> (fs)->fs_csshift][(indx) & ~(fs)->fs_csmask]
                    256: 
                    257: /*
                    258:  * Cylinder group block for a file system.
                    259:  */
                    260: #define        CG_MAGIC        0x090255
                    261: struct cg {
                    262:        struct  cg *cg_link;            /* linked list of cyl groups */
                    263:        long    cg_magic;               /* magic number */
                    264:        time_t  cg_time;                /* time last written */
                    265:        long    cg_cgx;                 /* we are the cgx'th cylinder group */
                    266:        short   cg_ncyl;                /* number of cyl's this cg */
                    267:        short   cg_niblk;               /* number of inode blocks this cg */
                    268:        long    cg_ndblk;               /* number of data blocks this cg */
                    269:        struct  csum cg_cs;             /* cylinder summary information */
                    270:        long    cg_rotor;               /* position of last used block */
                    271:        long    cg_frotor;              /* position of last used frag */
                    272:        long    cg_irotor;              /* position of last used inode */
                    273:        long    cg_frsum[MAXFRAG];      /* counts of available frags */
                    274:        long    cg_btotoff;             /* (long) block totals per cylinder */
                    275:        long    cg_boff;                /* (short) free block positions */
                    276:        long    cg_iusedoff;            /* (char) used inode map */
                    277:        long    cg_freeoff;             /* (u_char) free block map */
                    278:        long    cg_nextfreeoff;         /* (u_char) next available space */
                    279:        long    cg_sparecon[16];        /* reserved for future use */
                    280:        u_char  cg_space[1];            /* space for cylinder group maps */
                    281: /* actually longer */
                    282: };
                    283: /*
                    284:  * Macros for access to cylinder group array structures
                    285:  */
                    286: #define cg_blktot(cgp) \
                    287:     (((cgp)->cg_magic != CG_MAGIC) \
                    288:     ? (((struct ocg *)(cgp))->cg_btot) \
                    289:     : ((long *)((char *)(cgp) + (cgp)->cg_btotoff)))
                    290: #define cg_blks(fs, cgp, cylno) \
                    291:     (((cgp)->cg_magic != CG_MAGIC) \
                    292:     ? (((struct ocg *)(cgp))->cg_b[cylno]) \
                    293:     : ((short *)((char *)(cgp) + (cgp)->cg_boff) + (cylno) * (fs)->fs_nrpos))
                    294: #define cg_inosused(cgp) \
                    295:     (((cgp)->cg_magic != CG_MAGIC) \
                    296:     ? (((struct ocg *)(cgp))->cg_iused) \
                    297:     : ((char *)((char *)(cgp) + (cgp)->cg_iusedoff)))
                    298: #define cg_blksfree(cgp) \
                    299:     (((cgp)->cg_magic != CG_MAGIC) \
                    300:     ? (((struct ocg *)(cgp))->cg_free) \
                    301:     : ((u_char *)((char *)(cgp) + (cgp)->cg_freeoff)))
                    302: #define cg_chkmagic(cgp) \
                    303:     ((cgp)->cg_magic == CG_MAGIC || ((struct ocg *)(cgp))->cg_magic == CG_MAGIC)
                    304: 
                    305: /*
                    306:  * The following structure is defined
                    307:  * for compatibility with old file systems.
                    308:  */
                    309: struct ocg {
                    310:        struct  ocg *cg_link;           /* linked list of cyl groups */
                    311:        struct  ocg *cg_rlink;          /*     used for incore cyl groups */
                    312:        time_t  cg_time;                /* time last written */
                    313:        long    cg_cgx;                 /* we are the cgx'th cylinder group */
                    314:        short   cg_ncyl;                /* number of cyl's this cg */
                    315:        short   cg_niblk;               /* number of inode blocks this cg */
                    316:        long    cg_ndblk;               /* number of data blocks this cg */
                    317:        struct  csum cg_cs;             /* cylinder summary information */
                    318:        long    cg_rotor;               /* position of last used block */
                    319:        long    cg_frotor;              /* position of last used frag */
                    320:        long    cg_irotor;              /* position of last used inode */
                    321:        long    cg_frsum[8];            /* counts of available frags */
                    322:        long    cg_btot[32];            /* block totals per cylinder */
                    323:        short   cg_b[32][8];            /* positions of free blocks */
                    324:        char    cg_iused[256];          /* used inode map */
                    325:        long    cg_magic;               /* magic number */
                    326:        u_char  cg_free[1];             /* free block map */
                    327: /* actually longer */
                    328: };
                    329: 
                    330: /*
                    331:  * Turn file system block numbers into disk block addresses.
                    332:  * This maps file system blocks to device size blocks.
                    333:  */
                    334: #define fsbtodb(fs, b) ((b) << (fs)->fs_fsbtodb)
                    335: #define        dbtofsb(fs, b)  ((b) >> (fs)->fs_fsbtodb)
                    336: 
                    337: /*
                    338:  * Cylinder group macros to locate things in cylinder groups.
                    339:  * They calc file system addresses of cylinder group data structures.
                    340:  */
                    341: #define        cgbase(fs, c)   ((daddr_t)((fs)->fs_fpg * (c)))
                    342: #define cgstart(fs, c) \
                    343:        (cgbase(fs, c) + (fs)->fs_cgoffset * ((c) & ~((fs)->fs_cgmask)))
                    344: #define        cgsblock(fs, c) (cgstart(fs, c) + (fs)->fs_sblkno)      /* super blk */
                    345: #define        cgtod(fs, c)    (cgstart(fs, c) + (fs)->fs_cblkno)      /* cg block */
                    346: #define        cgimin(fs, c)   (cgstart(fs, c) + (fs)->fs_iblkno)      /* inode blk */
                    347: #define        cgdmin(fs, c)   (cgstart(fs, c) + (fs)->fs_dblkno)      /* 1st data */
                    348: 
                    349: /*
                    350:  * Macros for handling inode numbers:
                    351:  *     inode number to file system block offset.
                    352:  *     inode number to cylinder group number.
                    353:  *     inode number to file system block address.
                    354:  */
                    355: #define        itoo(fs, x)     ((x) % INOPB(fs))
                    356: #define        itog(fs, x)     ((x) / (fs)->fs_ipg)
                    357: #define        itod(fs, x) \
                    358:        ((daddr_t)(cgimin(fs, itog(fs, x)) + \
                    359:        (blkstofrags((fs), (((x) % (fs)->fs_ipg) / INOPB(fs))))))
                    360: 
                    361: /*
                    362:  * Give cylinder group number for a file system block.
                    363:  * Give cylinder group block number for a file system block.
                    364:  */
                    365: #define        dtog(fs, d)     ((d) / (fs)->fs_fpg)
                    366: #define        dtogd(fs, d)    ((d) % (fs)->fs_fpg)
                    367: 
                    368: /*
                    369:  * Extract the bits for a block from a map.
                    370:  * Compute the cylinder and rotational position of a cyl block addr.
                    371:  */
                    372: #define blkmap(fs, map, loc) \
                    373:     (((map)[(loc) / NBBY] >> ((loc) % NBBY)) & (0xff >> (NBBY - (fs)->fs_frag)))
                    374: #define cbtocylno(fs, bno) \
                    375:     ((bno) * NSPF(fs) / (fs)->fs_spc)
                    376: #define cbtorpos(fs, bno) \
                    377:     (((bno) * NSPF(fs) % (fs)->fs_spc / (fs)->fs_nsect * (fs)->fs_trackskew + \
                    378:      (bno) * NSPF(fs) % (fs)->fs_spc % (fs)->fs_nsect * (fs)->fs_interleave) % \
                    379:      (fs)->fs_nsect * (fs)->fs_nrpos / (fs)->fs_npsect)
                    380: 
                    381: /*
                    382:  * The following macros optimize certain frequently calculated
                    383:  * quantities by using shifts and masks in place of divisions
                    384:  * modulos and multiplications.
                    385:  */
                    386: #define blkoff(fs, loc)                /* calculates (loc % fs->fs_bsize) */ \
                    387:        ((loc) & ~(fs)->fs_bmask)
                    388: #define fragoff(fs, loc)       /* calculates (loc % fs->fs_fsize) */ \
                    389:        ((loc) & ~(fs)->fs_fmask)
                    390: #define lblktosize(fs, blk)    /* calculates (blk * fs->fs_bsize) */ \
                    391:        ((blk) << (fs)->fs_bshift)
                    392: #define lblkno(fs, loc)                /* calculates (loc / fs->fs_bsize) */ \
                    393:        ((loc) >> (fs)->fs_bshift)
                    394: #define numfrags(fs, loc)      /* calculates (loc / fs->fs_fsize) */ \
                    395:        ((loc) >> (fs)->fs_fshift)
                    396: #define blkroundup(fs, size)   /* calculates roundup(size, fs->fs_bsize) */ \
                    397:        (((size) + (fs)->fs_bsize - 1) & (fs)->fs_bmask)
                    398: #define fragroundup(fs, size)  /* calculates roundup(size, fs->fs_fsize) */ \
                    399:        (((size) + (fs)->fs_fsize - 1) & (fs)->fs_fmask)
                    400: #define fragstoblks(fs, frags) /* calculates (frags / fs->fs_frag) */ \
                    401:        ((frags) >> (fs)->fs_fragshift)
                    402: #define blkstofrags(fs, blks)  /* calculates (blks * fs->fs_frag) */ \
                    403:        ((blks) << (fs)->fs_fragshift)
                    404: #define fragnum(fs, fsb)       /* calculates (fsb % fs->fs_frag) */ \
                    405:        ((fsb) & ((fs)->fs_frag - 1))
                    406: #define blknum(fs, fsb)                /* calculates rounddown(fsb, fs->fs_frag) */ \
                    407:        ((fsb) &~ ((fs)->fs_frag - 1))
                    408: 
                    409: /*
                    410:  * Determine the number of available frags given a
                    411:  * percentage to hold in reserve
                    412:  */
                    413: #define freespace(fs, percentreserved) \
                    414:        (blkstofrags((fs), (fs)->fs_cstotal.cs_nbfree) + \
                    415:        (fs)->fs_cstotal.cs_nffree - ((fs)->fs_dsize * (percentreserved) / 100))
                    416: 
                    417: /*
                    418:  * Determining the size of a file block in the file system.
                    419:  */
                    420: #define blksize(fs, ip, lbn) \
                    421:        (((lbn) >= NDADDR || (ip)->i_size >= ((lbn) + 1) << (fs)->fs_bshift) \
                    422:            ? (fs)->fs_bsize \
                    423:            : (fragroundup(fs, blkoff(fs, (ip)->i_size))))
                    424: #define dblksize(fs, dip, lbn) \
                    425:        (((lbn) >= NDADDR || (dip)->di_size >= ((lbn) + 1) << (fs)->fs_bshift) \
                    426:            ? (fs)->fs_bsize \
                    427:            : (fragroundup(fs, blkoff(fs, (dip)->di_size))))
                    428: 
                    429: /*
                    430:  * Number of disk sectors per block; assumes DEV_BSIZE byte sector size.
                    431:  */
                    432: #define        NSPB(fs)        ((fs)->fs_nspf << (fs)->fs_fragshift)
                    433: #define        NSPF(fs)        ((fs)->fs_nspf)
                    434: 
                    435: /*
                    436:  * INOPB is the number of inodes in a secondary storage block.
                    437:  */
                    438: #define        INOPB(fs)       ((fs)->fs_inopb)
                    439: #define        INOPF(fs)       ((fs)->fs_inopb >> (fs)->fs_fragshift)
                    440: 
                    441: /*
                    442:  * NINDIR is the number of indirects in a file system block.
                    443:  */
                    444: #define        NINDIR(fs)      ((fs)->fs_nindir)
1.1.1.2 ! root      445: 
        !           446: #endif /* !_UFS_FS_H_ */

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