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mkfs.c revision 1.86
      1  1.86       dsl /*	$NetBSD: mkfs.c,v 1.86 2004/03/07 12:26:38 dsl Exp $	*/
      2  1.71       agc 
      3  1.71       agc /*
      4  1.71       agc  * Copyright (c) 1980, 1989, 1993
      5  1.71       agc  *	The Regents of the University of California.  All rights reserved.
      6  1.71       agc  *
      7  1.71       agc  * Redistribution and use in source and binary forms, with or without
      8  1.71       agc  * modification, are permitted provided that the following conditions
      9  1.71       agc  * are met:
     10  1.71       agc  * 1. Redistributions of source code must retain the above copyright
     11  1.71       agc  *    notice, this list of conditions and the following disclaimer.
     12  1.71       agc  * 2. Redistributions in binary form must reproduce the above copyright
     13  1.71       agc  *    notice, this list of conditions and the following disclaimer in the
     14  1.71       agc  *    documentation and/or other materials provided with the distribution.
     15  1.71       agc  * 3. Neither the name of the University nor the names of its contributors
     16  1.71       agc  *    may be used to endorse or promote products derived from this software
     17  1.71       agc  *    without specific prior written permission.
     18  1.71       agc  *
     19  1.71       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     20  1.71       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21  1.71       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22  1.71       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     23  1.71       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24  1.71       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25  1.71       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26  1.71       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27  1.71       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28  1.71       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29  1.71       agc  * SUCH DAMAGE.
     30  1.71       agc  */
     31  1.19       cgd 
     32   1.1       cgd /*
     33  1.68      fvdl  * Copyright (c) 2002 Networks Associates Technology, Inc.
     34  1.68      fvdl  * All rights reserved.
     35  1.68      fvdl  *
     36  1.68      fvdl  * This software was developed for the FreeBSD Project by Marshall
     37  1.68      fvdl  * Kirk McKusick and Network Associates Laboratories, the Security
     38  1.68      fvdl  * Research Division of Network Associates, Inc. under DARPA/SPAWAR
     39  1.68      fvdl  * contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA CHATS
     40  1.68      fvdl  * research program
     41  1.68      fvdl  *
     42   1.1       cgd  * Redistribution and use in source and binary forms, with or without
     43   1.1       cgd  * modification, are permitted provided that the following conditions
     44   1.1       cgd  * are met:
     45   1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     46   1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     47   1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     48   1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     49   1.1       cgd  *    documentation and/or other materials provided with the distribution.
     50   1.1       cgd  * 3. All advertising materials mentioning features or use of this software
     51   1.1       cgd  *    must display the following acknowledgement:
     52   1.1       cgd  *	This product includes software developed by the University of
     53   1.1       cgd  *	California, Berkeley and its contributors.
     54   1.1       cgd  * 4. Neither the name of the University nor the names of its contributors
     55   1.1       cgd  *    may be used to endorse or promote products derived from this software
     56   1.1       cgd  *    without specific prior written permission.
     57   1.1       cgd  *
     58   1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     59   1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     60   1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     61   1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     62   1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     63   1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     64   1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     65   1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     66   1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     67   1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     68   1.1       cgd  * SUCH DAMAGE.
     69   1.1       cgd  */
     70   1.1       cgd 
     71  1.26  christos #include <sys/cdefs.h>
     72   1.1       cgd #ifndef lint
     73  1.19       cgd #if 0
     74  1.27     lukem static char sccsid[] = "@(#)mkfs.c	8.11 (Berkeley) 5/3/95";
     75  1.19       cgd #else
     76  1.86       dsl __RCSID("$NetBSD: mkfs.c,v 1.86 2004/03/07 12:26:38 dsl Exp $");
     77  1.19       cgd #endif
     78   1.1       cgd #endif /* not lint */
     79   1.1       cgd 
     80   1.1       cgd #include <sys/param.h>
     81  1.60    simonb #include <sys/mman.h>
     82   1.1       cgd #include <sys/time.h>
     83   1.1       cgd #include <sys/resource.h>
     84   1.9   mycroft #include <ufs/ufs/dinode.h>
     85   1.9   mycroft #include <ufs/ufs/dir.h>
     86  1.30    bouyer #include <ufs/ufs/ufs_bswap.h>
     87   1.9   mycroft #include <ufs/ffs/fs.h>
     88  1.30    bouyer #include <ufs/ffs/ffs_extern.h>
     89   1.1       cgd #include <sys/disklabel.h>
     90   1.9   mycroft 
     91  1.60    simonb #include <err.h>
     92  1.57     lukem #include <errno.h>
     93  1.14       cgd #include <string.h>
     94  1.14       cgd #include <unistd.h>
     95  1.26  christos #include <stdlib.h>
     96  1.80       dsl #include <stddef.h>
     97  1.14       cgd 
     98   1.9   mycroft #ifndef STANDALONE
     99   1.9   mycroft #include <stdio.h>
    100   1.9   mycroft #endif
    101  1.40    simonb 
    102  1.40    simonb #include "extern.h"
    103   1.1       cgd 
    104  1.68      fvdl union dinode {
    105  1.68      fvdl 	struct ufs1_dinode dp1;
    106  1.68      fvdl 	struct ufs2_dinode dp2;
    107  1.68      fvdl };
    108  1.68      fvdl 
    109  1.70    atatat static void initcg(int, const struct timeval *);
    110  1.70    atatat static int fsinit(const struct timeval *, mode_t, uid_t, gid_t);
    111  1.39    simonb static int makedir(struct direct *, int);
    112  1.39    simonb static daddr_t alloc(int, int);
    113  1.68      fvdl static void iput(union dinode *, ino_t);
    114  1.39    simonb static void rdfs(daddr_t, int, void *);
    115  1.39    simonb static void wtfs(daddr_t, int, void *);
    116  1.39    simonb static int isblock(struct fs *, unsigned char *, int);
    117  1.39    simonb static void clrblock(struct fs *, unsigned char *, int);
    118  1.39    simonb static void setblock(struct fs *, unsigned char *, int);
    119  1.68      fvdl static int ilog2(int);
    120  1.80       dsl static void zap_old_sblock(int);
    121  1.61     lukem #ifdef MFS
    122  1.60    simonb static void calc_memfree(void);
    123  1.60    simonb static void *mkfs_malloc(size_t size);
    124  1.61     lukem #endif
    125  1.27     lukem 
    126  1.72       dsl static int count_digits(uint64_t);
    127  1.36  wrstuden 
    128   1.1       cgd /*
    129   1.1       cgd  * make file system for cylinder-group style file systems
    130   1.1       cgd  */
    131  1.60    simonb #define	UMASK		0755
    132  1.60    simonb #define	POWEROF2(num)	(((num) & ((num) - 1)) == 0)
    133   1.1       cgd 
    134   1.1       cgd union {
    135   1.1       cgd 	struct fs fs;
    136  1.68      fvdl 	char pad[SBLOCKSIZE];
    137   1.1       cgd } fsun;
    138   1.1       cgd #define	sblock	fsun.fs
    139  1.73       dsl 
    140  1.73       dsl struct	csum *fscs_0;		/* first block of cylinder summaries */
    141  1.73       dsl struct	csum *fscs_next;	/* place for next summary */
    142  1.73       dsl struct	csum *fscs_end;		/* end of summary buffer */
    143  1.73       dsl struct	csum *fscs_reset;	/* place for next summary after write */
    144  1.73       dsl uint	fs_csaddr;		/* fragment number to write to */
    145   1.1       cgd 
    146   1.1       cgd union {
    147   1.1       cgd 	struct cg cg;
    148   1.1       cgd 	char pad[MAXBSIZE];
    149   1.1       cgd } cgun;
    150   1.1       cgd #define	acg	cgun.cg
    151   1.1       cgd 
    152  1.68      fvdl #define DIP(dp, field) \
    153  1.68      fvdl 	((sblock.fs_magic == FS_UFS1_MAGIC) ? \
    154  1.68      fvdl 	(dp)->dp1.di_##field : (dp)->dp2.di_##field)
    155  1.68      fvdl 
    156  1.68      fvdl char *iobuf;
    157  1.68      fvdl int iobufsize;
    158   1.1       cgd 
    159   1.1       cgd int	fsi, fso;
    160   1.1       cgd 
    161  1.26  christos void
    162  1.60    simonb mkfs(struct partition *pp, const char *fsys, int fi, int fo,
    163  1.60    simonb     mode_t mfsmode, uid_t mfsuid, gid_t mfsgid)
    164   1.1       cgd {
    165  1.74       dsl 	uint fragsperinodeblk, ncg;
    166  1.74       dsl 	uint cgzero;
    167  1.74       dsl 	uint64_t inodeblks, cgall;
    168  1.68      fvdl 	int32_t cylno, i, csfrags;
    169  1.70    atatat 	struct timeval tv;
    170  1.52     lukem 	long long sizepb;
    171  1.36  wrstuden 	int nprintcols, printcolwidth;
    172   1.1       cgd 
    173   1.1       cgd #ifndef STANDALONE
    174  1.70    atatat 	gettimeofday(&tv, NULL);
    175   1.1       cgd #endif
    176  1.61     lukem #ifdef MFS
    177  1.86       dsl 	if (mfs && !Nflag) {
    178  1.60    simonb 		calc_memfree();
    179   1.1       cgd 		if (fssize * sectorsize > memleft)
    180  1.60    simonb 			fssize = memleft / sectorsize;
    181  1.60    simonb 		if ((membase = mkfs_malloc(fssize * sectorsize)) == 0)
    182   1.1       cgd 			exit(12);
    183   1.1       cgd 	}
    184  1.61     lukem #endif
    185   1.1       cgd 	fsi = fi;
    186   1.1       cgd 	fso = fo;
    187  1.68      fvdl 	if (Oflag == 0) {
    188  1.68      fvdl 		sblock.fs_old_inodefmt = FS_42INODEFMT;
    189   1.9   mycroft 		sblock.fs_maxsymlinklen = 0;
    190  1.68      fvdl 		sblock.fs_old_flags = 0;
    191   1.9   mycroft 	} else {
    192  1.68      fvdl 		sblock.fs_old_inodefmt = FS_44INODEFMT;
    193  1.68      fvdl 		sblock.fs_maxsymlinklen = (Oflag == 1 ? MAXSYMLINKLEN_UFS1 :
    194  1.68      fvdl 		    MAXSYMLINKLEN_UFS2);
    195  1.68      fvdl 		sblock.fs_old_flags = FS_FLAGS_UPDATED;
    196  1.68      fvdl 		sblock.fs_flags = 0;
    197   1.9   mycroft 	}
    198  1.65       dbj 
    199   1.1       cgd 	/*
    200  1.55     lukem 	 * collect and verify the filesystem density info
    201  1.55     lukem 	 */
    202  1.55     lukem 	sblock.fs_avgfilesize = avgfilesize;
    203  1.55     lukem 	sblock.fs_avgfpdir = avgfpdir;
    204  1.72       dsl 	if (sblock.fs_avgfilesize <= 0) {
    205  1.55     lukem 		printf("illegal expected average file size %d\n",
    206  1.72       dsl 		    sblock.fs_avgfilesize);
    207  1.72       dsl 		exit(14);
    208  1.72       dsl 	}
    209  1.72       dsl 	if (sblock.fs_avgfpdir <= 0) {
    210  1.55     lukem 		printf("illegal expected number of files per directory %d\n",
    211  1.72       dsl 		    sblock.fs_avgfpdir);
    212  1.72       dsl 		exit(15);
    213  1.72       dsl 	}
    214   1.1       cgd 	/*
    215   1.1       cgd 	 * collect and verify the block and fragment sizes
    216   1.1       cgd 	 */
    217   1.1       cgd 	sblock.fs_bsize = bsize;
    218   1.1       cgd 	sblock.fs_fsize = fsize;
    219   1.1       cgd 	if (!POWEROF2(sblock.fs_bsize)) {
    220   1.1       cgd 		printf("block size must be a power of 2, not %d\n",
    221   1.1       cgd 		    sblock.fs_bsize);
    222   1.1       cgd 		exit(16);
    223   1.1       cgd 	}
    224   1.1       cgd 	if (!POWEROF2(sblock.fs_fsize)) {
    225   1.1       cgd 		printf("fragment size must be a power of 2, not %d\n",
    226   1.1       cgd 		    sblock.fs_fsize);
    227   1.1       cgd 		exit(17);
    228   1.1       cgd 	}
    229   1.1       cgd 	if (sblock.fs_fsize < sectorsize) {
    230   1.1       cgd 		printf("fragment size %d is too small, minimum is %d\n",
    231   1.1       cgd 		    sblock.fs_fsize, sectorsize);
    232   1.1       cgd 		exit(18);
    233   1.1       cgd 	}
    234   1.1       cgd 	if (sblock.fs_bsize < MINBSIZE) {
    235   1.1       cgd 		printf("block size %d is too small, minimum is %d\n",
    236   1.1       cgd 		    sblock.fs_bsize, MINBSIZE);
    237  1.58     lukem 		exit(19);
    238  1.58     lukem 	}
    239  1.58     lukem 	if (sblock.fs_bsize > MAXBSIZE) {
    240  1.58     lukem 		printf("block size %d is too large, maximum is %d\n",
    241  1.58     lukem 		    sblock.fs_bsize, MAXBSIZE);
    242   1.1       cgd 		exit(19);
    243   1.1       cgd 	}
    244   1.1       cgd 	if (sblock.fs_bsize < sblock.fs_fsize) {
    245   1.1       cgd 		printf("block size (%d) cannot be smaller than fragment size (%d)\n",
    246   1.1       cgd 		    sblock.fs_bsize, sblock.fs_fsize);
    247   1.1       cgd 		exit(20);
    248   1.1       cgd 	}
    249  1.68      fvdl 
    250  1.68      fvdl 	if (maxbsize < bsize || !POWEROF2(maxbsize)) {
    251  1.68      fvdl 		sblock.fs_maxbsize = sblock.fs_bsize;
    252  1.68      fvdl 	} else if (sblock.fs_maxbsize > FS_MAXCONTIG * sblock.fs_bsize) {
    253  1.68      fvdl 		sblock.fs_maxbsize = FS_MAXCONTIG * sblock.fs_bsize;
    254  1.68      fvdl 	} else {
    255  1.68      fvdl 		sblock.fs_maxbsize = maxbsize;
    256  1.68      fvdl 	}
    257  1.68      fvdl 	sblock.fs_maxcontig = maxcontig;
    258  1.68      fvdl 	if (sblock.fs_maxcontig < sblock.fs_maxbsize / sblock.fs_bsize) {
    259  1.68      fvdl 		sblock.fs_maxcontig = sblock.fs_maxbsize / sblock.fs_bsize;
    260  1.68      fvdl 		printf("Maxcontig raised to %d\n", sblock.fs_maxbsize);
    261  1.68      fvdl 	}
    262  1.68      fvdl 	if (sblock.fs_maxcontig > 1)
    263  1.68      fvdl 		sblock.fs_contigsumsize = MIN(sblock.fs_maxcontig,FS_MAXCONTIG);
    264  1.68      fvdl 
    265   1.1       cgd 	sblock.fs_bmask = ~(sblock.fs_bsize - 1);
    266   1.1       cgd 	sblock.fs_fmask = ~(sblock.fs_fsize - 1);
    267   1.9   mycroft 	sblock.fs_qbmask = ~sblock.fs_bmask;
    268   1.9   mycroft 	sblock.fs_qfmask = ~sblock.fs_fmask;
    269   1.1       cgd 	for (sblock.fs_bshift = 0, i = sblock.fs_bsize; i > 1; i >>= 1)
    270   1.1       cgd 		sblock.fs_bshift++;
    271   1.1       cgd 	for (sblock.fs_fshift = 0, i = sblock.fs_fsize; i > 1; i >>= 1)
    272   1.1       cgd 		sblock.fs_fshift++;
    273   1.1       cgd 	sblock.fs_frag = numfrags(&sblock, sblock.fs_bsize);
    274   1.1       cgd 	for (sblock.fs_fragshift = 0, i = sblock.fs_frag; i > 1; i >>= 1)
    275   1.1       cgd 		sblock.fs_fragshift++;
    276   1.1       cgd 	if (sblock.fs_frag > MAXFRAG) {
    277  1.30    bouyer 		printf("fragment size %d is too small, "
    278  1.30    bouyer 			"minimum with block size %d is %d\n",
    279   1.1       cgd 		    sblock.fs_fsize, sblock.fs_bsize,
    280   1.1       cgd 		    sblock.fs_bsize / MAXFRAG);
    281   1.1       cgd 		exit(21);
    282   1.1       cgd 	}
    283  1.68      fvdl 	sblock.fs_fsbtodb = ilog2(sblock.fs_fsize / sectorsize);
    284  1.74       dsl 	sblock.fs_size = dbtofsb(&sblock, fssize);
    285  1.68      fvdl 	if (Oflag <= 1) {
    286  1.72       dsl 		if (sblock.fs_size >= 1ull << 31) {
    287  1.72       dsl 			printf("Too many fragments (0x%" PRIx64
    288  1.72       dsl 			    ") for a UFS1 filesystem\n", sblock.fs_size);
    289  1.72       dsl 			exit(22);
    290  1.72       dsl 		}
    291  1.68      fvdl 		sblock.fs_magic = FS_UFS1_MAGIC;
    292  1.68      fvdl 		sblock.fs_sblockloc = SBLOCK_UFS1;
    293  1.68      fvdl 		sblock.fs_nindir = sblock.fs_bsize / sizeof(int32_t);
    294  1.68      fvdl 		sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs1_dinode);
    295  1.68      fvdl 		sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
    296  1.68      fvdl 		    sizeof (int32_t));
    297  1.68      fvdl 		sblock.fs_old_inodefmt = FS_44INODEFMT;
    298  1.68      fvdl 		sblock.fs_old_cgoffset = 0;
    299  1.68      fvdl 		sblock.fs_old_cgmask = 0xffffffff;
    300  1.68      fvdl 		sblock.fs_old_size = sblock.fs_size;
    301  1.68      fvdl 		sblock.fs_old_rotdelay = 0;
    302  1.68      fvdl 		sblock.fs_old_rps = 60;
    303  1.68      fvdl 		sblock.fs_old_nspf = sblock.fs_fsize / sectorsize;
    304  1.68      fvdl 		sblock.fs_old_cpg = 1;
    305  1.68      fvdl 		sblock.fs_old_interleave = 1;
    306  1.68      fvdl 		sblock.fs_old_trackskew = 0;
    307  1.68      fvdl 		sblock.fs_old_cpc = 0;
    308  1.72       dsl 		sblock.fs_old_postblformat = FS_DYNAMICPOSTBLFMT;
    309  1.68      fvdl 		sblock.fs_old_nrpos = 1;
    310  1.68      fvdl 	} else {
    311  1.68      fvdl 		sblock.fs_magic = FS_UFS2_MAGIC;
    312  1.68      fvdl 		sblock.fs_sblockloc = SBLOCK_UFS2;
    313  1.68      fvdl 		sblock.fs_nindir = sblock.fs_bsize / sizeof(int64_t);
    314  1.68      fvdl 		sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs2_dinode);
    315  1.68      fvdl 		sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
    316  1.68      fvdl 		    sizeof (int64_t));
    317  1.68      fvdl 	}
    318  1.68      fvdl 
    319   1.1       cgd 	sblock.fs_sblkno =
    320  1.68      fvdl 	    roundup(howmany(sblock.fs_sblockloc + SBLOCKSIZE, sblock.fs_fsize),
    321  1.68      fvdl 		sblock.fs_frag);
    322   1.1       cgd 	sblock.fs_cblkno = (daddr_t)(sblock.fs_sblkno +
    323  1.68      fvdl 	    roundup(howmany(SBLOCKSIZE, sblock.fs_fsize), sblock.fs_frag));
    324   1.1       cgd 	sblock.fs_iblkno = sblock.fs_cblkno + sblock.fs_frag;
    325   1.9   mycroft 	sblock.fs_maxfilesize = sblock.fs_bsize * NDADDR - 1;
    326   1.9   mycroft 	for (sizepb = sblock.fs_bsize, i = 0; i < NIADDR; i++) {
    327   1.9   mycroft 		sizepb *= NINDIR(&sblock);
    328   1.9   mycroft 		sblock.fs_maxfilesize += sizepb;
    329   1.9   mycroft 	}
    330  1.68      fvdl 
    331   1.1       cgd 	/*
    332  1.68      fvdl 	 * Calculate the number of blocks to put into each cylinder group.
    333  1.68      fvdl 	 *
    334  1.74       dsl 	 * The cylinder group size is limited because the data structure
    335  1.74       dsl 	 * must fit into a single block.
    336  1.74       dsl 	 * We try to have as few cylinder groups as possible, with a proviso
    337  1.74       dsl 	 * that we create at least MINCYLGRPS (==4) except for small
    338  1.74       dsl 	 * filesystems.
    339  1.68      fvdl 	 *
    340  1.74       dsl 	 * This algorithm works out how many blocks of inodes would be
    341  1.74       dsl 	 * needed to fill the entire volume at the specified density.
    342  1.74       dsl 	 * It then looks at how big the 'cylinder block' would have to
    343  1.74       dsl 	 * be and, assuming that it is linearly related to the number
    344  1.74       dsl 	 * of inodes and blocks how many cylinder groups are needed to
    345  1.74       dsl 	 * keep the cylinder block below the filesystem block size.
    346  1.74       dsl 	 *
    347  1.74       dsl 	 * The cylinder groups are then all created with the average size.
    348  1.74       dsl 	 *
    349  1.74       dsl 	 * Space taken by the red tape on cylinder groups other than the
    350  1.74       dsl 	 * first is ignored.
    351  1.68      fvdl 	 */
    352  1.74       dsl 
    353  1.74       dsl 	/* There must be space for 1 inode block and 2 data blocks */
    354  1.74       dsl 	if (sblock.fs_size < sblock.fs_iblkno + 3 * sblock.fs_frag) {
    355  1.74       dsl 		printf("Filesystem size %lld < minimum size of %d\n",
    356  1.74       dsl 		    (long long)sblock.fs_size, sblock.fs_iblkno + 3 * sblock.fs_frag);
    357  1.74       dsl 		exit(23);
    358   1.1       cgd 	}
    359  1.81       dsl 	if (num_inodes != 0)
    360  1.81       dsl 		inodeblks = howmany(num_inodes, INOPB(&sblock));
    361  1.81       dsl 	else {
    362  1.81       dsl 		/*
    363  1.81       dsl 		 * Calculate 'per inode block' so we can allocate less than
    364  1.81       dsl 		 * 1 fragment per inode - useful for /dev.
    365  1.81       dsl 		 */
    366  1.81       dsl 		fragsperinodeblk = MAX(numfrags(&sblock,
    367  1.81       dsl 					density * INOPB(&sblock)), 1);
    368  1.81       dsl 		inodeblks = (sblock.fs_size - sblock.fs_iblkno) /
    369  1.81       dsl 			(sblock.fs_frag + fragsperinodeblk);
    370  1.81       dsl 	}
    371  1.74       dsl 	if (inodeblks == 0)
    372  1.74       dsl 		inodeblks = 1;
    373  1.81       dsl 	/* Ensure that there are at least 2 data blocks (or we fail below) */
    374  1.81       dsl 	if (inodeblks > (sblock.fs_size - sblock.fs_iblkno)/sblock.fs_frag - 2)
    375  1.81       dsl 		inodeblks = (sblock.fs_size-sblock.fs_iblkno)/sblock.fs_frag-2;
    376  1.74       dsl 	/* Even UFS2 limits number of inodes to 2^31 (fs_ipg is int32_t) */
    377  1.74       dsl 	if (inodeblks * INOPB(&sblock) >= 1ull << 31)
    378  1.74       dsl 		inodeblks = ((1ull << 31) - NBBY) / INOPB(&sblock);
    379  1.74       dsl 	/*
    380  1.74       dsl 	 * See what would happen if we tried to use 1 cylinder group.
    381  1.74       dsl 	 * Assume space linear, so work out number of cylinder groups needed.
    382  1.74       dsl 	 * Subtract one from the allowed size to compensate for rounding
    383  1.74       dsl 	 * a number of bits up to a complete byte.
    384  1.68      fvdl 	 */
    385  1.74       dsl 	cgzero = CGSIZE_IF(&sblock, 0, 0);
    386  1.74       dsl 	cgall = CGSIZE_IF(&sblock, inodeblks * INOPB(&sblock), sblock.fs_size);
    387  1.74       dsl 	ncg = howmany(cgall - cgzero, sblock.fs_bsize - cgzero - 1);
    388  1.74       dsl 	if (ncg < MINCYLGRPS) {
    389  1.74       dsl 		/*
    390  1.74       dsl 		 * We would like to allocate MINCLYGRPS cylinder groups,
    391  1.74       dsl 		 * but for small file sytems (especially ones with a lot
    392  1.74       dsl 		 * of inodes) this is not desirable (or possible).
    393  1.74       dsl 		 */
    394  1.74       dsl 		i = sblock.fs_size / 2 / (sblock.fs_iblkno +
    395  1.74       dsl 						inodeblks * sblock.fs_frag);
    396  1.74       dsl 		if (i > ncg)
    397  1.74       dsl 			ncg = i;
    398  1.74       dsl 		if (ncg > MINCYLGRPS)
    399  1.74       dsl 			ncg = MINCYLGRPS;
    400  1.74       dsl 		if (ncg > inodeblks)
    401  1.74       dsl 			ncg = inodeblks;
    402  1.68      fvdl 	}
    403  1.68      fvdl 	/*
    404  1.74       dsl 	 * Put an equal number of blocks in each cylinder group.
    405  1.74       dsl 	 * Round up so we don't have more fragments in the last CG than
    406  1.74       dsl 	 * the earlier ones (does that matter?), but kill a block if the
    407  1.74       dsl 	 * CGSIZE becomes too big (only happens if there are a lot of CGs).
    408  1.68      fvdl 	 */
    409  1.74       dsl 	sblock.fs_fpg = roundup(howmany(sblock.fs_size, ncg), sblock.fs_frag);
    410  1.74       dsl 	i = CGSIZE_IF(&sblock, inodeblks * INOPB(&sblock) / ncg, sblock.fs_fpg);
    411  1.74       dsl 	if (i > sblock.fs_bsize)
    412  1.74       dsl 		sblock.fs_fpg -= (i - sblock.fs_bsize) * NBBY;
    413  1.74       dsl 	/* ... and recalculate how many cylinder groups we now need */
    414  1.74       dsl 	ncg = howmany(sblock.fs_size, sblock.fs_fpg);
    415  1.74       dsl 	inodeblks /= ncg;
    416  1.74       dsl 	if (inodeblks == 0)
    417  1.74       dsl 		inodeblks = 1;
    418  1.74       dsl 	sblock.fs_ipg = inodeblks * INOPB(&sblock);
    419  1.74       dsl 	/* Sanity check on our sums... */
    420  1.74       dsl 	if (CGSIZE(&sblock) > sblock.fs_bsize) {
    421  1.74       dsl 		printf("CGSIZE miscalculated %d > %d\n",
    422  1.74       dsl 		    (int)CGSIZE(&sblock), sblock.fs_bsize);
    423  1.74       dsl 		exit(24);
    424  1.74       dsl 	}
    425  1.74       dsl 	/* Check that the last cylinder group has enough space for the inodes */
    426  1.74       dsl 	i = sblock.fs_size - sblock.fs_fpg * (ncg - 1ull);
    427  1.74       dsl 	if (i < sblock.fs_iblkno + inodeblks * sblock.fs_frag) {
    428  1.74       dsl 		/*
    429  1.74       dsl 		 * Since we make all the cylinder groups the same size, the
    430  1.74       dsl 		 * last will only be small if there are a large number of
    431  1.74       dsl 		 * cylinder groups. If we pull even a fragment from each
    432  1.74       dsl 		 * of the other groups then the last CG will be overfull.
    433  1.74       dsl 		 * So we just kill the last CG.
    434  1.74       dsl 		 */
    435  1.74       dsl 		ncg--;
    436  1.74       dsl 		sblock.fs_size -= i;
    437  1.74       dsl 	}
    438  1.74       dsl 	sblock.fs_ncg = ncg;
    439  1.74       dsl 
    440   1.1       cgd 	sblock.fs_cgsize = fragroundup(&sblock, CGSIZE(&sblock));
    441   1.1       cgd 	sblock.fs_dblkno = sblock.fs_iblkno + sblock.fs_ipg / INOPF(&sblock);
    442  1.68      fvdl 	if (Oflag <= 1) {
    443  1.68      fvdl 		sblock.fs_old_spc = sblock.fs_fpg * sblock.fs_old_nspf;
    444  1.68      fvdl 		sblock.fs_old_nsect = sblock.fs_old_spc;
    445  1.68      fvdl 		sblock.fs_old_npsect = sblock.fs_old_spc;
    446  1.68      fvdl 		sblock.fs_old_ncyl = sblock.fs_ncg;
    447   1.1       cgd 	}
    448  1.68      fvdl 
    449   1.1       cgd 	/*
    450  1.73       dsl 	 * Cylinder group summary information for each cylinder is written
    451  1.73       dsl 	 * into the first cylinder group.
    452  1.73       dsl 	 * Write this fragment by fragment, but doing the first CG last
    453  1.73       dsl 	 * (after we've taken stuff off for the structure itself and the
    454  1.73       dsl 	 * root directory.
    455   1.1       cgd 	 */
    456   1.1       cgd 	sblock.fs_csaddr = cgdmin(&sblock, 0);
    457   1.1       cgd 	sblock.fs_cssize =
    458   1.1       cgd 	    fragroundup(&sblock, sblock.fs_ncg * sizeof(struct csum));
    459  1.73       dsl 	if (512 % sizeof *fscs_0)
    460  1.73       dsl 		errx(1, "cylinder group summary doesn't fit in sectors");
    461  1.73       dsl 	fscs_0 = calloc(1, 2 * sblock.fs_fsize);
    462  1.73       dsl 	if (fscs_0 == NULL)
    463  1.44     lukem 		exit(39);
    464  1.73       dsl 	fs_csaddr = sblock.fs_csaddr;
    465  1.73       dsl 	fscs_next = fscs_0;
    466  1.73       dsl 	fscs_end = (void *)((char *)fscs_0 + 2 * sblock.fs_fsize);
    467  1.73       dsl 	fscs_reset = (void *)((char *)fscs_0 + sblock.fs_fsize);
    468  1.73       dsl 	/*
    469  1.73       dsl 	 * fill in remaining fields of the super block
    470  1.73       dsl 	 */
    471  1.68      fvdl 	sblock.fs_sbsize = fragroundup(&sblock, sizeof(struct fs));
    472  1.68      fvdl 	if (sblock.fs_sbsize > SBLOCKSIZE)
    473  1.68      fvdl 		sblock.fs_sbsize = SBLOCKSIZE;
    474   1.1       cgd 	sblock.fs_minfree = minfree;
    475   1.1       cgd 	sblock.fs_maxcontig = maxcontig;
    476   1.1       cgd 	sblock.fs_maxbpg = maxbpg;
    477   1.1       cgd 	sblock.fs_optim = opt;
    478   1.1       cgd 	sblock.fs_cgrotor = 0;
    479  1.68      fvdl 	sblock.fs_pendingblocks = 0;
    480  1.68      fvdl 	sblock.fs_pendinginodes = 0;
    481   1.1       cgd 	sblock.fs_cstotal.cs_ndir = 0;
    482   1.1       cgd 	sblock.fs_cstotal.cs_nbfree = 0;
    483   1.1       cgd 	sblock.fs_cstotal.cs_nifree = 0;
    484   1.1       cgd 	sblock.fs_cstotal.cs_nffree = 0;
    485   1.1       cgd 	sblock.fs_fmod = 0;
    486  1.68      fvdl 	sblock.fs_ronly = 0;
    487  1.68      fvdl 	sblock.fs_state = 0;
    488  1.21   mycroft 	sblock.fs_clean = FS_ISCLEAN;
    489   1.1       cgd 	sblock.fs_ronly = 0;
    490  1.70    atatat 	sblock.fs_id[0] = (long)tv.tv_sec;	/* XXXfvdl huh? */
    491  1.78    itojun 	sblock.fs_id[1] = arc4random() & INT32_MAX;
    492  1.68      fvdl 	sblock.fs_fsmnt[0] = '\0';
    493  1.68      fvdl 	csfrags = howmany(sblock.fs_cssize, sblock.fs_fsize);
    494  1.68      fvdl 	sblock.fs_dsize = sblock.fs_size - sblock.fs_sblkno -
    495  1.68      fvdl 	    sblock.fs_ncg * (sblock.fs_dblkno - sblock.fs_sblkno);
    496  1.68      fvdl 	sblock.fs_cstotal.cs_nbfree =
    497  1.68      fvdl 	    fragstoblks(&sblock, sblock.fs_dsize) -
    498  1.68      fvdl 	    howmany(csfrags, sblock.fs_frag);
    499  1.68      fvdl 	sblock.fs_cstotal.cs_nffree =
    500  1.68      fvdl 	    fragnum(&sblock, sblock.fs_size) +
    501  1.68      fvdl 	    (fragnum(&sblock, csfrags) > 0 ?
    502  1.68      fvdl 	    sblock.fs_frag - fragnum(&sblock, csfrags) : 0);
    503  1.68      fvdl 	sblock.fs_cstotal.cs_nifree = sblock.fs_ncg * sblock.fs_ipg - ROOTINO;
    504  1.68      fvdl 	sblock.fs_cstotal.cs_ndir = 0;
    505  1.68      fvdl 	sblock.fs_dsize -= csfrags;
    506  1.70    atatat 	sblock.fs_time = tv.tv_sec;
    507  1.68      fvdl 	if (Oflag <= 1) {
    508  1.70    atatat 		sblock.fs_old_time = tv.tv_sec;
    509  1.68      fvdl 		sblock.fs_old_dsize = sblock.fs_dsize;
    510  1.68      fvdl 		sblock.fs_old_csaddr = sblock.fs_csaddr;
    511  1.68      fvdl 		sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
    512  1.68      fvdl 		sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
    513  1.68      fvdl 		sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
    514  1.68      fvdl 		sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
    515  1.68      fvdl 	}
    516   1.1       cgd 	/*
    517   1.1       cgd 	 * Dump out summary information about file system.
    518   1.1       cgd 	 */
    519  1.86       dsl 	if (!mfs || Nflag) {
    520  1.60    simonb #define	B2MBFACTOR (1 / (1024.0 * 1024.0))
    521  1.68      fvdl 		printf("%s: %.1fMB (%lld sectors) block size %d, "
    522  1.68      fvdl 		       "fragment size %d\n",
    523  1.68      fvdl 		    fsys, (float)sblock.fs_size * sblock.fs_fsize * B2MBFACTOR,
    524  1.68      fvdl 		    (long long)fsbtodb(&sblock, sblock.fs_size),
    525  1.68      fvdl 		    sblock.fs_bsize, sblock.fs_fsize);
    526  1.68      fvdl 		printf("\tusing %d cylinder groups of %.2fMB, %d blks, "
    527  1.68      fvdl 		       "%d inodes.\n",
    528  1.68      fvdl 		    sblock.fs_ncg,
    529   1.9   mycroft 		    (float)sblock.fs_fpg * sblock.fs_fsize * B2MBFACTOR,
    530  1.68      fvdl 		    sblock.fs_fpg / sblock.fs_frag, sblock.fs_ipg);
    531   1.9   mycroft #undef B2MBFACTOR
    532   1.1       cgd 	}
    533   1.1       cgd 	/*
    534  1.36  wrstuden 	 * Now determine how wide each column will be, and calculate how
    535  1.72       dsl 	 * many columns will fit in a 80 char line.
    536  1.36  wrstuden 	 */
    537  1.36  wrstuden 	printcolwidth = count_digits(
    538  1.36  wrstuden 			fsbtodb(&sblock, cgsblock(&sblock, sblock.fs_ncg -1)));
    539  1.72       dsl 	nprintcols = 80 / (printcolwidth + 2);
    540  1.68      fvdl 
    541  1.68      fvdl 	/*
    542  1.68      fvdl 	 * allocate space for superblock, cylinder group map, and
    543  1.68      fvdl 	 * two sets of inode blocks.
    544  1.68      fvdl 	 */
    545  1.68      fvdl 	if (sblock.fs_bsize < SBLOCKSIZE)
    546  1.68      fvdl 		iobufsize = SBLOCKSIZE + 3 * sblock.fs_bsize;
    547  1.68      fvdl 	else
    548  1.68      fvdl 		iobufsize = 4 * sblock.fs_bsize;
    549  1.68      fvdl 	if ((iobuf = malloc(iobufsize)) == 0) {
    550  1.68      fvdl 		printf("Cannot allocate I/O buffer\n");
    551  1.68      fvdl 		exit(38);
    552  1.68      fvdl 	}
    553  1.68      fvdl 	memset(iobuf, 0, iobufsize);
    554  1.80       dsl 
    555  1.80       dsl 	/*
    556  1.80       dsl 	 * We now start writing to the filesystem
    557  1.80       dsl 	 */
    558  1.80       dsl 
    559  1.80       dsl 	/*
    560  1.80       dsl 	 * Validate the given file system size.
    561  1.80       dsl 	 * Verify that its last block can actually be accessed.
    562  1.80       dsl 	 * Convert to file system fragment sized units.
    563  1.80       dsl 	 */
    564  1.80       dsl 	if (fssize <= 0) {
    565  1.80       dsl 		printf("preposterous size %lld\n", (long long)fssize);
    566  1.80       dsl 		exit(13);
    567  1.80       dsl 	}
    568  1.80       dsl 	wtfs(fssize - 1, sectorsize, iobuf);
    569  1.80       dsl 
    570  1.80       dsl 	/*
    571  1.80       dsl 	 * Ensure there is nothing that looks like a filesystem
    572  1.80       dsl 	 * superbock anywhere other than where ours will be.
    573  1.80       dsl 	 * If fsck finds the wrong one all hell breaks loose!
    574  1.80       dsl 	 */
    575  1.80       dsl 	for (i = 0; ; i++) {
    576  1.80       dsl 		static const int sblocklist[] = SBLOCKSEARCH;
    577  1.80       dsl 		int sblkoff = sblocklist[i];
    578  1.80       dsl 		int sz;
    579  1.80       dsl 		if (sblkoff == -1)
    580  1.80       dsl 			break;
    581  1.80       dsl 		/* Remove main superblock */
    582  1.80       dsl 		zap_old_sblock(sblkoff);
    583  1.80       dsl 		/* and all possible locations for the first alternate */
    584  1.80       dsl 		sblkoff += SBLOCKSIZE;
    585  1.80       dsl 		for (sz = SBLOCKSIZE; sz <= 0x10000; sz <<= 1)
    586  1.80       dsl 			zap_old_sblock(roundup(sblkoff, sz));
    587  1.80       dsl 	}
    588  1.80       dsl 
    589  1.80       dsl 	if (isappleufs) {
    590  1.80       dsl 		struct appleufslabel appleufs;
    591  1.85       dbj 		ffs_appleufs_set(&appleufs, appleufs_volname, tv.tv_sec, 0);
    592  1.80       dsl 		wtfs(APPLEUFS_LABEL_OFFSET/sectorsize, APPLEUFS_LABEL_SIZE,
    593  1.80       dsl 		    &appleufs);
    594  1.85       dbj 	} else {
    595  1.85       dbj 		struct appleufslabel appleufs;
    596  1.85       dbj 		/* Look for and zap any existing valid apple ufs labels */
    597  1.85       dbj 		rdfs(APPLEUFS_LABEL_OFFSET/sectorsize, APPLEUFS_LABEL_SIZE,
    598  1.85       dbj 		    &appleufs);
    599  1.85       dbj 		if (ffs_appleufs_validate(fsys, &appleufs, NULL) == 0) {
    600  1.85       dbj 			memset(&appleufs, 0, sizeof(appleufs));
    601  1.85       dbj 			wtfs(APPLEUFS_LABEL_OFFSET/sectorsize, APPLEUFS_LABEL_SIZE,
    602  1.85       dbj 			    &appleufs);
    603  1.85       dbj 		}
    604  1.80       dsl 	}
    605  1.80       dsl 
    606  1.36  wrstuden 	/*
    607  1.68      fvdl 	 * Make a copy of the superblock into the buffer that we will be
    608  1.68      fvdl 	 * writing out in each cylinder group.
    609   1.1       cgd 	 */
    610  1.76       dsl 	memcpy(iobuf, &sblock, sizeof sblock);
    611  1.68      fvdl 	if (needswap)
    612  1.76       dsl 		ffs_sb_swap(&sblock, (struct fs *)iobuf);
    613  1.68      fvdl 
    614  1.86       dsl 	if (!mfs || Nflag)
    615   1.1       cgd 		printf("super-block backups (for fsck -b #) at:");
    616   1.1       cgd 	for (cylno = 0; cylno < sblock.fs_ncg; cylno++) {
    617  1.70    atatat 		initcg(cylno, &tv);
    618  1.86       dsl 		if (mfs && !Nflag)
    619   1.1       cgd 			continue;
    620  1.36  wrstuden 		if (cylno % nprintcols == 0)
    621   1.1       cgd 			printf("\n");
    622  1.66      fvdl 		printf(" %*lld,", printcolwidth,
    623  1.66      fvdl 			(long long)fsbtodb(&sblock, cgsblock(&sblock, cylno)));
    624  1.22       jtc 		fflush(stdout);
    625   1.1       cgd 	}
    626  1.86       dsl 	if (!mfs || Nflag)
    627   1.1       cgd 		printf("\n");
    628  1.86       dsl 	if (Nflag)
    629   1.1       cgd 		exit(0);
    630  1.68      fvdl 
    631   1.1       cgd 	/*
    632   1.1       cgd 	 * Now construct the initial file system,
    633   1.1       cgd 	 */
    634  1.70    atatat 	if (fsinit(&tv, mfsmode, mfsuid, mfsgid) == 0 && mfs)
    635  1.60    simonb 		errx(1, "Error making filesystem");
    636  1.70    atatat 	sblock.fs_time = tv.tv_sec;
    637  1.68      fvdl 	if (Oflag <= 1) {
    638  1.68      fvdl 		sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
    639  1.68      fvdl 		sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
    640  1.68      fvdl 		sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
    641  1.68      fvdl 		sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
    642  1.68      fvdl 	}
    643  1.76       dsl 	/*
    644  1.76       dsl 	 * Write out the super-block and zeros until the first cg info
    645  1.76       dsl 	 */
    646  1.76       dsl 	memset(iobuf, 0, iobufsize);
    647  1.76       dsl         memcpy(iobuf, &sblock, sizeof sblock);
    648  1.30    bouyer 	if (needswap)
    649  1.76       dsl 		ffs_sb_swap(&sblock, (struct fs *)iobuf);
    650  1.76       dsl         wtfs(sblock.fs_sblockloc / sectorsize,
    651  1.76       dsl 	    cgsblock(&sblock, 0) * sblock.fs_fsize - sblock.fs_sblockloc,
    652  1.76       dsl 	    iobuf);
    653  1.34  wrstuden 
    654  1.73       dsl 	/* Write out first and last cylinder summary sectors */
    655  1.73       dsl 	if (needswap)
    656  1.73       dsl 		ffs_csum_swap(fscs_0, fscs_0, sblock.fs_fsize);
    657  1.73       dsl 	wtfs(fsbtodb(&sblock, sblock.fs_csaddr), sblock.fs_fsize, fscs_0);
    658  1.73       dsl 
    659  1.73       dsl 	if (fscs_next > fscs_reset) {
    660  1.73       dsl 		if (needswap)
    661  1.73       dsl 			ffs_csum_swap(fscs_reset, fscs_reset, sblock.fs_fsize);
    662  1.73       dsl 		fs_csaddr++;
    663  1.73       dsl 		wtfs(fsbtodb(&sblock, fs_csaddr), sblock.fs_fsize, fscs_reset);
    664  1.73       dsl 	}
    665  1.34  wrstuden 
    666   1.1       cgd 	/*
    667   1.1       cgd 	 * Update information about this partion in pack
    668   1.1       cgd 	 * label, to that it may be updated on disk.
    669   1.1       cgd 	 */
    670  1.83       dsl 	if (pp == NULL)
    671  1.83       dsl 		return;
    672  1.65       dbj 	if (isappleufs)
    673  1.65       dbj 		pp->p_fstype = FS_APPLEUFS;
    674  1.65       dbj 	else
    675  1.65       dbj 		pp->p_fstype = FS_BSDFFS;
    676   1.1       cgd 	pp->p_fsize = sblock.fs_fsize;
    677   1.1       cgd 	pp->p_frag = sblock.fs_frag;
    678  1.68      fvdl 	pp->p_cpg = sblock.fs_fpg;
    679   1.1       cgd }
    680   1.1       cgd 
    681   1.1       cgd /*
    682   1.1       cgd  * Initialize a cylinder group.
    683   1.1       cgd  */
    684  1.26  christos void
    685  1.70    atatat initcg(int cylno, const struct timeval *tv)
    686   1.1       cgd {
    687  1.68      fvdl 	daddr_t cbase, dmax;
    688  1.68      fvdl 	int32_t i, j, d, dlower, dupper, blkno;
    689  1.68      fvdl 	struct ufs1_dinode *dp1;
    690  1.68      fvdl 	struct ufs2_dinode *dp2;
    691  1.68      fvdl 	int start;
    692   1.1       cgd 
    693   1.1       cgd 	/*
    694   1.1       cgd 	 * Determine block bounds for cylinder group.
    695   1.1       cgd 	 * Allow space for super block summary information in first
    696   1.1       cgd 	 * cylinder group.
    697   1.1       cgd 	 */
    698   1.1       cgd 	cbase = cgbase(&sblock, cylno);
    699   1.1       cgd 	dmax = cbase + sblock.fs_fpg;
    700   1.1       cgd 	if (dmax > sblock.fs_size)
    701   1.1       cgd 		dmax = sblock.fs_size;
    702   1.1       cgd 	dlower = cgsblock(&sblock, cylno) - cbase;
    703   1.1       cgd 	dupper = cgdmin(&sblock, cylno) - cbase;
    704  1.72       dsl 	if (cylno == 0) {
    705   1.1       cgd 		dupper += howmany(sblock.fs_cssize, sblock.fs_fsize);
    706  1.72       dsl 		if (dupper >= cgstart(&sblock, cylno + 1)) {
    707  1.72       dsl 			printf("\rToo many cylinder groups to fit summary "
    708  1.72       dsl 				"information into first cylinder group\n");
    709  1.72       dsl 			exit(40);
    710  1.72       dsl 		}
    711  1.72       dsl 	}
    712  1.12   mycroft 	memset(&acg, 0, sblock.fs_cgsize);
    713   1.1       cgd 	acg.cg_magic = CG_MAGIC;
    714   1.1       cgd 	acg.cg_cgx = cylno;
    715   1.1       cgd 	acg.cg_ndblk = dmax - cbase;
    716   1.9   mycroft 	if (sblock.fs_contigsumsize > 0)
    717  1.62   mycroft 		acg.cg_nclusterblks = acg.cg_ndblk >> sblock.fs_fragshift;
    718  1.68      fvdl 	start = &acg.cg_space[0] - (u_char *)(&acg.cg_firstfield);
    719  1.68      fvdl 	if (Oflag == 2) {
    720  1.75       dsl 		acg.cg_time = tv->tv_sec;
    721  1.75       dsl 		acg.cg_niblk = sblock.fs_ipg;
    722  1.75       dsl 		acg.cg_initediblk = sblock.fs_ipg < 2 * INOPB(&sblock) ?
    723  1.75       dsl 		    sblock.fs_ipg : 2 * INOPB(&sblock);
    724  1.68      fvdl 		acg.cg_iusedoff = start;
    725  1.68      fvdl 	} else {
    726  1.68      fvdl 		acg.cg_old_ncyl = sblock.fs_old_cpg;
    727  1.75       dsl 		acg.cg_old_time = tv->tv_sec;
    728  1.75       dsl 		acg.cg_old_niblk = sblock.fs_ipg;
    729  1.68      fvdl 		acg.cg_old_btotoff = start;
    730  1.68      fvdl 		acg.cg_old_boff = acg.cg_old_btotoff +
    731  1.68      fvdl 		    sblock.fs_old_cpg * sizeof(int32_t);
    732  1.68      fvdl 		acg.cg_iusedoff = acg.cg_old_boff +
    733  1.68      fvdl 		    sblock.fs_old_cpg * sizeof(u_int16_t);
    734  1.68      fvdl 	}
    735  1.68      fvdl 	acg.cg_freeoff = acg.cg_iusedoff + howmany(sblock.fs_ipg, CHAR_BIT);
    736   1.9   mycroft 	if (sblock.fs_contigsumsize <= 0) {
    737   1.9   mycroft 		acg.cg_nextfreeoff = acg.cg_freeoff +
    738  1.68      fvdl 		   howmany(sblock.fs_fpg, CHAR_BIT);
    739   1.9   mycroft 	} else {
    740  1.62   mycroft 		acg.cg_clustersumoff = acg.cg_freeoff +
    741  1.68      fvdl 		    howmany(sblock.fs_fpg, CHAR_BIT) - sizeof(int32_t);
    742  1.65       dbj 		if (isappleufs) {
    743  1.65       dbj 			/* Apple PR2216969 gives rationale for this change.
    744  1.65       dbj 			 * I believe they were mistaken, but we need to
    745  1.67     grant 			 * duplicate it for compatibility.  -- dbj (at) NetBSD.org
    746  1.65       dbj 			 */
    747  1.65       dbj 			acg.cg_clustersumoff += sizeof(int32_t);
    748  1.65       dbj 		}
    749   1.9   mycroft 		acg.cg_clustersumoff =
    750  1.14       cgd 		    roundup(acg.cg_clustersumoff, sizeof(int32_t));
    751   1.9   mycroft 		acg.cg_clusteroff = acg.cg_clustersumoff +
    752  1.14       cgd 		    (sblock.fs_contigsumsize + 1) * sizeof(int32_t);
    753  1.62   mycroft 		acg.cg_nextfreeoff = acg.cg_clusteroff +
    754  1.68      fvdl 		    howmany(fragstoblks(&sblock, sblock.fs_fpg), CHAR_BIT);
    755   1.9   mycroft 	}
    756  1.41       scw 	if (acg.cg_nextfreeoff > sblock.fs_cgsize) {
    757   1.9   mycroft 		printf("Panic: cylinder group too big\n");
    758   1.9   mycroft 		exit(37);
    759   1.1       cgd 	}
    760   1.1       cgd 	acg.cg_cs.cs_nifree += sblock.fs_ipg;
    761   1.1       cgd 	if (cylno == 0)
    762   1.1       cgd 		for (i = 0; i < ROOTINO; i++) {
    763  1.30    bouyer 			setbit(cg_inosused(&acg, 0), i);
    764   1.1       cgd 			acg.cg_cs.cs_nifree--;
    765   1.1       cgd 		}
    766   1.1       cgd 	if (cylno > 0) {
    767   1.1       cgd 		/*
    768   1.1       cgd 		 * In cylno 0, beginning space is reserved
    769   1.1       cgd 		 * for boot and super blocks.
    770   1.1       cgd 		 */
    771  1.68      fvdl 		for (d = 0, blkno = 0; d < dlower;) {
    772  1.30    bouyer 			setblock(&sblock, cg_blksfree(&acg, 0), blkno);
    773   1.9   mycroft 			if (sblock.fs_contigsumsize > 0)
    774  1.30    bouyer 				setbit(cg_clustersfree(&acg, 0), blkno);
    775   1.1       cgd 			acg.cg_cs.cs_nbfree++;
    776  1.64   mycroft 			d += sblock.fs_frag;
    777  1.64   mycroft 			blkno++;
    778   1.1       cgd 		}
    779   1.1       cgd 	}
    780  1.62   mycroft 	if ((i = (dupper & (sblock.fs_frag - 1))) != 0) {
    781   1.1       cgd 		acg.cg_frsum[sblock.fs_frag - i]++;
    782   1.1       cgd 		for (d = dupper + sblock.fs_frag - i; dupper < d; dupper++) {
    783  1.30    bouyer 			setbit(cg_blksfree(&acg, 0), dupper);
    784   1.1       cgd 			acg.cg_cs.cs_nffree++;
    785   1.1       cgd 		}
    786   1.1       cgd 	}
    787  1.64   mycroft 	for (d = dupper, blkno = dupper >> sblock.fs_fragshift;
    788  1.68      fvdl 	     d + sblock.fs_frag <= acg.cg_ndblk; ) {
    789  1.30    bouyer 		setblock(&sblock, cg_blksfree(&acg, 0), blkno);
    790   1.9   mycroft 		if (sblock.fs_contigsumsize > 0)
    791  1.30    bouyer 			setbit(cg_clustersfree(&acg, 0), blkno);
    792   1.1       cgd 		acg.cg_cs.cs_nbfree++;
    793   1.1       cgd 		d += sblock.fs_frag;
    794  1.64   mycroft 		blkno++;
    795   1.1       cgd 	}
    796  1.68      fvdl 	if (d < acg.cg_ndblk) {
    797  1.68      fvdl 		acg.cg_frsum[acg.cg_ndblk - d]++;
    798  1.68      fvdl 		for (; d < acg.cg_ndblk; d++) {
    799  1.30    bouyer 			setbit(cg_blksfree(&acg, 0), d);
    800   1.1       cgd 			acg.cg_cs.cs_nffree++;
    801   1.1       cgd 		}
    802   1.1       cgd 	}
    803   1.9   mycroft 	if (sblock.fs_contigsumsize > 0) {
    804  1.30    bouyer 		int32_t *sump = cg_clustersum(&acg, 0);
    805  1.30    bouyer 		u_char *mapp = cg_clustersfree(&acg, 0);
    806   1.9   mycroft 		int map = *mapp++;
    807   1.9   mycroft 		int bit = 1;
    808   1.9   mycroft 		int run = 0;
    809   1.9   mycroft 
    810   1.9   mycroft 		for (i = 0; i < acg.cg_nclusterblks; i++) {
    811   1.9   mycroft 			if ((map & bit) != 0) {
    812   1.9   mycroft 				run++;
    813   1.9   mycroft 			} else if (run != 0) {
    814   1.9   mycroft 				if (run > sblock.fs_contigsumsize)
    815   1.9   mycroft 					run = sblock.fs_contigsumsize;
    816   1.9   mycroft 				sump[run]++;
    817   1.9   mycroft 				run = 0;
    818   1.9   mycroft 			}
    819  1.68      fvdl 			if ((i & (CHAR_BIT - 1)) != (CHAR_BIT - 1)) {
    820   1.9   mycroft 				bit <<= 1;
    821   1.9   mycroft 			} else {
    822   1.9   mycroft 				map = *mapp++;
    823   1.9   mycroft 				bit = 1;
    824   1.9   mycroft 			}
    825   1.9   mycroft 		}
    826   1.9   mycroft 		if (run != 0) {
    827   1.9   mycroft 			if (run > sblock.fs_contigsumsize)
    828   1.9   mycroft 				run = sblock.fs_contigsumsize;
    829   1.9   mycroft 			sump[run]++;
    830   1.9   mycroft 		}
    831   1.9   mycroft 	}
    832  1.73       dsl 	*fscs_next++ = acg.cg_cs;
    833  1.73       dsl 	if (fscs_next == fscs_end) {
    834  1.73       dsl 		if (needswap)
    835  1.73       dsl 			ffs_csum_swap(fscs_reset, fscs_reset, sblock.fs_fsize);
    836  1.73       dsl 		fs_csaddr++;
    837  1.73       dsl 		wtfs(fsbtodb(&sblock, fs_csaddr), sblock.fs_fsize, fscs_reset);
    838  1.73       dsl 		fscs_next = fscs_reset;
    839  1.73       dsl 		memset(fscs_next, 0, sblock.fs_fsize);
    840  1.73       dsl 	}
    841  1.68      fvdl 	/*
    842  1.68      fvdl 	 * Write out the duplicate super block, the cylinder group map
    843  1.68      fvdl 	 * and two blocks worth of inodes in a single write.
    844  1.68      fvdl 	 */
    845  1.68      fvdl 	start = sblock.fs_bsize > SBLOCKSIZE ? sblock.fs_bsize : SBLOCKSIZE;
    846  1.68      fvdl 	memcpy(&iobuf[start], &acg, sblock.fs_cgsize);
    847  1.30    bouyer 	if (needswap)
    848  1.68      fvdl 		ffs_cg_swap(&acg, (struct cg*)&iobuf[start], &sblock);
    849  1.68      fvdl 	start += sblock.fs_bsize;
    850  1.68      fvdl 	dp1 = (struct ufs1_dinode *)(&iobuf[start]);
    851  1.68      fvdl 	dp2 = (struct ufs2_dinode *)(&iobuf[start]);
    852  1.75       dsl 	for (i = MIN(sblock.fs_ipg, 2) * INOPB(&sblock); i != 0; i--) {
    853  1.68      fvdl 		if (sblock.fs_magic == FS_UFS1_MAGIC) {
    854  1.68      fvdl 			/* No need to swap, it'll stay random */
    855  1.78    itojun 			dp1->di_gen = arc4random() & INT32_MAX;
    856  1.68      fvdl 			dp1++;
    857  1.68      fvdl 		} else {
    858  1.78    itojun 			dp2->di_gen = arc4random() & INT32_MAX;
    859  1.68      fvdl 			dp2++;
    860  1.68      fvdl 		}
    861  1.68      fvdl 	}
    862  1.68      fvdl 	wtfs(fsbtodb(&sblock, cgsblock(&sblock, cylno)), iobufsize, iobuf);
    863  1.68      fvdl 	/*
    864  1.68      fvdl 	 * For the old file system, we have to initialize all the inodes.
    865  1.68      fvdl 	 */
    866  1.68      fvdl 	if (Oflag <= 1) {
    867  1.68      fvdl 		for (i = 2 * sblock.fs_frag;
    868  1.68      fvdl 		     i < sblock.fs_ipg / INOPF(&sblock);
    869  1.68      fvdl 		     i += sblock.fs_frag) {
    870  1.68      fvdl 			dp1 = (struct ufs1_dinode *)(&iobuf[start]);
    871  1.68      fvdl 			for (j = 0; j < INOPB(&sblock); j++) {
    872  1.78    itojun 				dp1->di_gen = arc4random() & INT32_MAX;
    873  1.68      fvdl 				dp1++;
    874  1.68      fvdl 			}
    875  1.68      fvdl 			wtfs(fsbtodb(&sblock, cgimin(&sblock, cylno) + i),
    876  1.68      fvdl 			    sblock.fs_bsize, &iobuf[start]);
    877  1.68      fvdl 		}
    878  1.68      fvdl 	}
    879   1.1       cgd }
    880   1.1       cgd 
    881   1.1       cgd /*
    882   1.1       cgd  * initialize the file system
    883   1.1       cgd  */
    884   1.1       cgd 
    885   1.1       cgd #ifdef LOSTDIR
    886  1.60    simonb #define	PREDEFDIR 3
    887   1.1       cgd #else
    888  1.60    simonb #define	PREDEFDIR 2
    889   1.1       cgd #endif
    890   1.1       cgd 
    891   1.1       cgd struct direct root_dir[] = {
    892   1.9   mycroft 	{ ROOTINO, sizeof(struct direct), DT_DIR, 1, "." },
    893   1.9   mycroft 	{ ROOTINO, sizeof(struct direct), DT_DIR, 2, ".." },
    894   1.9   mycroft #ifdef LOSTDIR
    895   1.9   mycroft 	{ LOSTFOUNDINO, sizeof(struct direct), DT_DIR, 10, "lost+found" },
    896   1.9   mycroft #endif
    897   1.9   mycroft };
    898   1.9   mycroft struct odirect {
    899  1.14       cgd 	u_int32_t d_ino;
    900  1.14       cgd 	u_int16_t d_reclen;
    901  1.14       cgd 	u_int16_t d_namlen;
    902   1.9   mycroft 	u_char	d_name[MAXNAMLEN + 1];
    903   1.9   mycroft } oroot_dir[] = {
    904   1.1       cgd 	{ ROOTINO, sizeof(struct direct), 1, "." },
    905   1.1       cgd 	{ ROOTINO, sizeof(struct direct), 2, ".." },
    906   1.1       cgd #ifdef LOSTDIR
    907   1.1       cgd 	{ LOSTFOUNDINO, sizeof(struct direct), 10, "lost+found" },
    908   1.1       cgd #endif
    909   1.1       cgd };
    910   1.1       cgd #ifdef LOSTDIR
    911   1.1       cgd struct direct lost_found_dir[] = {
    912   1.9   mycroft 	{ LOSTFOUNDINO, sizeof(struct direct), DT_DIR, 1, "." },
    913   1.9   mycroft 	{ ROOTINO, sizeof(struct direct), DT_DIR, 2, ".." },
    914   1.9   mycroft 	{ 0, DIRBLKSIZ, 0, 0, 0 },
    915   1.9   mycroft };
    916   1.9   mycroft struct odirect olost_found_dir[] = {
    917   1.1       cgd 	{ LOSTFOUNDINO, sizeof(struct direct), 1, "." },
    918   1.1       cgd 	{ ROOTINO, sizeof(struct direct), 2, ".." },
    919   1.1       cgd 	{ 0, DIRBLKSIZ, 0, 0 },
    920   1.1       cgd };
    921   1.1       cgd #endif
    922   1.1       cgd char buf[MAXBSIZE];
    923  1.39    simonb static void copy_dir(struct direct *, struct direct *);
    924   1.1       cgd 
    925  1.60    simonb int
    926  1.70    atatat fsinit(const struct timeval *tv, mode_t mfsmode, uid_t mfsuid, gid_t mfsgid)
    927   1.1       cgd {
    928  1.75       dsl 	union dinode node;
    929  1.26  christos #ifdef LOSTDIR
    930   1.1       cgd 	int i;
    931  1.65       dbj 	int dirblksiz = DIRBLKSIZ;
    932  1.65       dbj 	if (isappleufs)
    933  1.65       dbj 		dirblksiz = APPLEUFS_DIRBLKSIZ;
    934  1.26  christos #endif
    935   1.1       cgd 
    936   1.1       cgd 	/*
    937   1.1       cgd 	 * initialize the node
    938   1.1       cgd 	 */
    939  1.30    bouyer 
    940   1.1       cgd #ifdef LOSTDIR
    941   1.1       cgd 	/*
    942   1.1       cgd 	 * create the lost+found directory
    943   1.1       cgd 	 */
    944  1.75       dsl 	memset(&node, 0, sizeof(node));
    945  1.68      fvdl 	if (Oflag == 0) {
    946   1.9   mycroft 		(void)makedir((struct direct *)olost_found_dir, 2);
    947  1.65       dbj 		for (i = dirblksiz; i < sblock.fs_bsize; i += dirblksiz)
    948  1.30    bouyer 			copy_dir((struct direct*)&olost_found_dir[2],
    949  1.30    bouyer 				(struct direct*)&buf[i]);
    950   1.9   mycroft 	} else {
    951   1.9   mycroft 		(void)makedir(lost_found_dir, 2);
    952  1.65       dbj 		for (i = dirblksiz; i < sblock.fs_bsize; i += dirblksiz)
    953  1.30    bouyer 			copy_dir(&lost_found_dir[2], (struct direct*)&buf[i]);
    954   1.9   mycroft 	}
    955  1.68      fvdl 	if (sblock.fs_magic == FS_UFS1_MAGIC) {
    956  1.70    atatat 		node.dp1.di_atime = tv->tv_sec;
    957  1.70    atatat 		node.dp1.di_atimensec = tv->tv_usec * 1000;
    958  1.70    atatat 		node.dp1.di_mtime = tv->tv_sec;
    959  1.70    atatat 		node.dp1.di_mtimensec = tv->tv_usec * 1000;
    960  1.70    atatat 		node.dp1.di_ctime = tv->tv_sec;
    961  1.70    atatat 		node.dp1.di_ctimensec = tv->tv_usec * 1000;
    962  1.68      fvdl 		node.dp1.di_mode = IFDIR | UMASK;
    963  1.68      fvdl 		node.dp1.di_nlink = 2;
    964  1.68      fvdl 		node.dp1.di_size = sblock.fs_bsize;
    965  1.68      fvdl 		node.dp1.di_db[0] = alloc(node.dp1.di_size, node.dp1.di_mode);
    966  1.69  christos 		if (node.dp1.di_db[0] == 0)
    967  1.69  christos 			return (0);
    968  1.68      fvdl 		node.dp1.di_blocks = btodb(fragroundup(&sblock,
    969  1.68      fvdl 		    node.dp1.di_size));
    970  1.68      fvdl 		node.dp1.di_uid = geteuid();
    971  1.68      fvdl 		node.dp1.di_gid = getegid();
    972  1.68      fvdl 		wtfs(fsbtodb(&sblock, node.dp1.di_db[0]), node.dp1.di_size,
    973  1.68      fvdl 		    buf);
    974  1.68      fvdl 	} else {
    975  1.70    atatat 		node.dp2.di_atime = tv->tv_sec;
    976  1.70    atatat 		node.dp2.di_atimensec = tv->tv_usec * 1000;
    977  1.70    atatat 		node.dp2.di_mtime = tv->tv_sec;
    978  1.70    atatat 		node.dp2.di_mtimensec = tv->tv_usec * 1000;
    979  1.70    atatat 		node.dp2.di_ctime = tv->tv_sec;
    980  1.70    atatat 		node.dp2.di_ctimensec = tv->tv_usec * 1000;
    981  1.70    atatat 		node.dp2.di_birthtime = tv->tv_sec;
    982  1.70    atatat 		node.dp2.di_birthnsec = tv->tv_usec * 1000;
    983  1.68      fvdl 		node.dp2.di_mode = IFDIR | UMASK;
    984  1.68      fvdl 		node.dp2.di_nlink = 2;
    985  1.68      fvdl 		node.dp2.di_size = sblock.fs_bsize;
    986  1.68      fvdl 		node.dp2.di_db[0] = alloc(node.dp2.di_size, node.dp2.di_mode);
    987  1.69  christos 		if (node.dp2.di_db[0] == 0)
    988  1.69  christos 			return (0);
    989  1.68      fvdl 		node.dp2.di_blocks = btodb(fragroundup(&sblock,
    990  1.68      fvdl 		    node.dp2.di_size));
    991  1.68      fvdl 		node.dp2.di_uid = geteuid();
    992  1.68      fvdl 		node.dp2.di_gid = getegid();
    993  1.68      fvdl 		wtfs(fsbtodb(&sblock, node.dp2.di_db[0]), node.dp2.di_size,
    994  1.68      fvdl 		    buf);
    995  1.68      fvdl 	}
    996   1.1       cgd 	iput(&node, LOSTFOUNDINO);
    997   1.1       cgd #endif
    998   1.1       cgd 	/*
    999   1.1       cgd 	 * create the root directory
   1000   1.1       cgd 	 */
   1001  1.75       dsl 	memset(&node, 0, sizeof(node));
   1002  1.68      fvdl 	if (Oflag <= 1) {
   1003  1.68      fvdl 		if (mfs) {
   1004  1.68      fvdl 			node.dp1.di_mode = IFDIR | mfsmode;
   1005  1.68      fvdl 			node.dp1.di_uid = mfsuid;
   1006  1.68      fvdl 			node.dp1.di_gid = mfsgid;
   1007  1.68      fvdl 		} else {
   1008  1.68      fvdl 			node.dp1.di_mode = IFDIR | UMASK;
   1009  1.68      fvdl 			node.dp1.di_uid = geteuid();
   1010  1.68      fvdl 			node.dp1.di_gid = getegid();
   1011  1.68      fvdl 		}
   1012  1.68      fvdl 		node.dp1.di_nlink = PREDEFDIR;
   1013  1.68      fvdl 		if (Oflag == 0)
   1014  1.68      fvdl 			node.dp1.di_size = makedir((struct direct *)oroot_dir,
   1015  1.68      fvdl 			    PREDEFDIR);
   1016  1.68      fvdl 		else
   1017  1.68      fvdl 			node.dp1.di_size = makedir(root_dir, PREDEFDIR);
   1018  1.68      fvdl 		node.dp1.di_db[0] = alloc(sblock.fs_fsize, node.dp1.di_mode);
   1019  1.68      fvdl 		if (node.dp1.di_db[0] == 0)
   1020  1.68      fvdl 			return (0);
   1021  1.68      fvdl 		node.dp1.di_blocks = btodb(fragroundup(&sblock,
   1022  1.68      fvdl 		    node.dp1.di_size));
   1023  1.68      fvdl 		wtfs(fsbtodb(&sblock, node.dp1.di_db[0]), sblock.fs_fsize, buf);
   1024  1.60    simonb 	} else {
   1025  1.68      fvdl 		if (mfs) {
   1026  1.68      fvdl 			node.dp2.di_mode = IFDIR | mfsmode;
   1027  1.68      fvdl 			node.dp2.di_uid = mfsuid;
   1028  1.68      fvdl 			node.dp2.di_gid = mfsgid;
   1029  1.68      fvdl 		} else {
   1030  1.68      fvdl 			node.dp2.di_mode = IFDIR | UMASK;
   1031  1.68      fvdl 			node.dp2.di_uid = geteuid();
   1032  1.68      fvdl 			node.dp2.di_gid = getegid();
   1033  1.68      fvdl 		}
   1034  1.70    atatat 		node.dp2.di_atime = tv->tv_sec;
   1035  1.70    atatat 		node.dp2.di_atimensec = tv->tv_usec * 1000;
   1036  1.70    atatat 		node.dp2.di_mtime = tv->tv_sec;
   1037  1.70    atatat 		node.dp2.di_mtimensec = tv->tv_usec * 1000;
   1038  1.70    atatat 		node.dp2.di_ctime = tv->tv_sec;
   1039  1.70    atatat 		node.dp2.di_ctimensec = tv->tv_usec * 1000;
   1040  1.70    atatat 		node.dp2.di_birthtime = tv->tv_sec;
   1041  1.70    atatat 		node.dp2.di_birthnsec = tv->tv_usec * 1000;
   1042  1.68      fvdl 		node.dp2.di_nlink = PREDEFDIR;
   1043  1.68      fvdl 		node.dp2.di_size = makedir(root_dir, PREDEFDIR);
   1044  1.68      fvdl 		node.dp2.di_db[0] = alloc(sblock.fs_fsize, node.dp2.di_mode);
   1045  1.68      fvdl 		if (node.dp2.di_db[0] == 0)
   1046  1.68      fvdl 			return (0);
   1047  1.68      fvdl 		node.dp2.di_blocks = btodb(fragroundup(&sblock,
   1048  1.68      fvdl 		    node.dp2.di_size));
   1049  1.68      fvdl 		wtfs(fsbtodb(&sblock, node.dp2.di_db[0]), sblock.fs_fsize, buf);
   1050  1.68      fvdl 	}
   1051   1.1       cgd 	iput(&node, ROOTINO);
   1052  1.60    simonb 	return (1);
   1053   1.1       cgd }
   1054   1.1       cgd 
   1055   1.1       cgd /*
   1056   1.1       cgd  * construct a set of directory entries in "buf".
   1057   1.1       cgd  * return size of directory.
   1058   1.1       cgd  */
   1059  1.26  christos int
   1060  1.39    simonb makedir(struct direct *protodir, int entries)
   1061   1.1       cgd {
   1062   1.1       cgd 	char *cp;
   1063   1.1       cgd 	int i, spcleft;
   1064  1.65       dbj 	int dirblksiz = DIRBLKSIZ;
   1065  1.65       dbj 	if (isappleufs)
   1066  1.65       dbj 		dirblksiz = APPLEUFS_DIRBLKSIZ;
   1067   1.1       cgd 
   1068  1.68      fvdl 	memset(buf, 0, DIRBLKSIZ);
   1069  1.65       dbj 	spcleft = dirblksiz;
   1070   1.1       cgd 	for (cp = buf, i = 0; i < entries - 1; i++) {
   1071  1.68      fvdl 		protodir[i].d_reclen = DIRSIZ(Oflag == 0, &protodir[i], 0);
   1072  1.30    bouyer 		copy_dir(&protodir[i], (struct direct*)cp);
   1073   1.1       cgd 		cp += protodir[i].d_reclen;
   1074   1.1       cgd 		spcleft -= protodir[i].d_reclen;
   1075   1.1       cgd 	}
   1076   1.1       cgd 	protodir[i].d_reclen = spcleft;
   1077  1.30    bouyer 	copy_dir(&protodir[i], (struct direct*)cp);
   1078  1.65       dbj 	return (dirblksiz);
   1079   1.1       cgd }
   1080   1.1       cgd 
   1081   1.1       cgd /*
   1082   1.1       cgd  * allocate a block or frag
   1083   1.1       cgd  */
   1084   1.1       cgd daddr_t
   1085  1.39    simonb alloc(int size, int mode)
   1086   1.1       cgd {
   1087   1.1       cgd 	int i, frag;
   1088   1.9   mycroft 	daddr_t d, blkno;
   1089   1.1       cgd 
   1090  1.26  christos 	rdfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
   1091  1.30    bouyer 	/* fs -> host byte order */
   1092  1.30    bouyer 	if (needswap)
   1093  1.68      fvdl 		ffs_cg_swap(&acg, &acg, &sblock);
   1094   1.1       cgd 	if (acg.cg_magic != CG_MAGIC) {
   1095   1.1       cgd 		printf("cg 0: bad magic number\n");
   1096   1.1       cgd 		return (0);
   1097   1.1       cgd 	}
   1098   1.1       cgd 	if (acg.cg_cs.cs_nbfree == 0) {
   1099   1.1       cgd 		printf("first cylinder group ran out of space\n");
   1100   1.1       cgd 		return (0);
   1101   1.1       cgd 	}
   1102   1.1       cgd 	for (d = 0; d < acg.cg_ndblk; d += sblock.fs_frag)
   1103  1.62   mycroft 		if (isblock(&sblock, cg_blksfree(&acg, 0),
   1104  1.62   mycroft 		    d >> sblock.fs_fragshift))
   1105   1.1       cgd 			goto goth;
   1106   1.1       cgd 	printf("internal error: can't find block in cyl 0\n");
   1107   1.1       cgd 	return (0);
   1108   1.1       cgd goth:
   1109   1.9   mycroft 	blkno = fragstoblks(&sblock, d);
   1110  1.30    bouyer 	clrblock(&sblock, cg_blksfree(&acg, 0), blkno);
   1111  1.10       cgd 	if (sblock.fs_contigsumsize > 0)
   1112  1.30    bouyer 		clrbit(cg_clustersfree(&acg, 0), blkno);
   1113   1.1       cgd 	acg.cg_cs.cs_nbfree--;
   1114   1.1       cgd 	sblock.fs_cstotal.cs_nbfree--;
   1115  1.73       dsl 	fscs_0->cs_nbfree--;
   1116   1.1       cgd 	if (mode & IFDIR) {
   1117   1.1       cgd 		acg.cg_cs.cs_ndir++;
   1118   1.1       cgd 		sblock.fs_cstotal.cs_ndir++;
   1119  1.73       dsl 		fscs_0->cs_ndir++;
   1120   1.1       cgd 	}
   1121   1.1       cgd 	if (size != sblock.fs_bsize) {
   1122   1.1       cgd 		frag = howmany(size, sblock.fs_fsize);
   1123  1.73       dsl 		fscs_0->cs_nffree += sblock.fs_frag - frag;
   1124   1.1       cgd 		sblock.fs_cstotal.cs_nffree += sblock.fs_frag - frag;
   1125   1.1       cgd 		acg.cg_cs.cs_nffree += sblock.fs_frag - frag;
   1126   1.1       cgd 		acg.cg_frsum[sblock.fs_frag - frag]++;
   1127   1.1       cgd 		for (i = frag; i < sblock.fs_frag; i++)
   1128  1.30    bouyer 			setbit(cg_blksfree(&acg, 0), d + i);
   1129   1.1       cgd 	}
   1130  1.30    bouyer 	/* host -> fs byte order */
   1131  1.30    bouyer 	if (needswap)
   1132  1.68      fvdl 		ffs_cg_swap(&acg, &acg, &sblock);
   1133  1.72       dsl 	wtfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
   1134   1.1       cgd 	return (d);
   1135   1.1       cgd }
   1136   1.1       cgd 
   1137   1.1       cgd /*
   1138   1.1       cgd  * Allocate an inode on the disk
   1139   1.1       cgd  */
   1140  1.26  christos static void
   1141  1.68      fvdl iput(union dinode *ip, ino_t ino)
   1142   1.1       cgd {
   1143   1.1       cgd 	daddr_t d;
   1144  1.30    bouyer 	int c, i;
   1145  1.68      fvdl 	struct ufs1_dinode *dp1;
   1146  1.68      fvdl 	struct ufs2_dinode *dp2;
   1147   1.1       cgd 
   1148   1.9   mycroft 	c = ino_to_cg(&sblock, ino);
   1149  1.26  christos 	rdfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
   1150  1.30    bouyer 	/* fs -> host byte order */
   1151  1.30    bouyer 	if (needswap)
   1152  1.68      fvdl 		ffs_cg_swap(&acg, &acg, &sblock);
   1153   1.1       cgd 	if (acg.cg_magic != CG_MAGIC) {
   1154   1.1       cgd 		printf("cg 0: bad magic number\n");
   1155   1.1       cgd 		exit(31);
   1156   1.1       cgd 	}
   1157   1.1       cgd 	acg.cg_cs.cs_nifree--;
   1158  1.30    bouyer 	setbit(cg_inosused(&acg, 0), ino);
   1159  1.30    bouyer 	/* host -> fs byte order */
   1160  1.30    bouyer 	if (needswap)
   1161  1.68      fvdl 		ffs_cg_swap(&acg, &acg, &sblock);
   1162  1.72       dsl 	wtfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
   1163   1.1       cgd 	sblock.fs_cstotal.cs_nifree--;
   1164  1.73       dsl 	fscs_0->cs_nifree--;
   1165   1.1       cgd 	if (ino >= sblock.fs_ipg * sblock.fs_ncg) {
   1166   1.1       cgd 		printf("fsinit: inode value out of range (%d).\n", ino);
   1167   1.1       cgd 		exit(32);
   1168   1.1       cgd 	}
   1169   1.9   mycroft 	d = fsbtodb(&sblock, ino_to_fsba(&sblock, ino));
   1170  1.68      fvdl 	rdfs(d, sblock.fs_bsize, (char *)iobuf);
   1171  1.68      fvdl 	if (sblock.fs_magic == FS_UFS1_MAGIC) {
   1172  1.68      fvdl 		dp1 = (struct ufs1_dinode *)iobuf;
   1173  1.75       dsl 		dp1 += ino_to_fsbo(&sblock, ino);
   1174  1.68      fvdl 		if (needswap) {
   1175  1.75       dsl 			ffs_dinode1_swap(&ip->dp1, dp1);
   1176  1.68      fvdl 			/* ffs_dinode1_swap() doesn't swap blocks addrs */
   1177  1.68      fvdl 			for (i=0; i<NDADDR + NIADDR; i++)
   1178  1.75       dsl 			    dp1->di_db[i] = bswap32(ip->dp1.di_db[i]);
   1179  1.68      fvdl 		} else
   1180  1.75       dsl 			*dp1 = ip->dp1;
   1181  1.79    itojun 		dp1->di_gen = arc4random() & INT32_MAX;
   1182  1.68      fvdl 	} else {
   1183  1.68      fvdl 		dp2 = (struct ufs2_dinode *)iobuf;
   1184  1.75       dsl 		dp2 += ino_to_fsbo(&sblock, ino);
   1185  1.68      fvdl 		if (needswap) {
   1186  1.75       dsl 			ffs_dinode2_swap(&ip->dp2, dp2);
   1187  1.68      fvdl 			for (i=0; i<NDADDR + NIADDR; i++)
   1188  1.75       dsl 			    dp2->di_db[i] = bswap32(ip->dp2.di_db[i]);
   1189  1.68      fvdl 		} else
   1190  1.75       dsl 			*dp2 = ip->dp2;
   1191  1.79    itojun 		dp2->di_gen = arc4random() & INT32_MAX;
   1192  1.68      fvdl 	}
   1193  1.68      fvdl 	wtfs(d, sblock.fs_bsize, iobuf);
   1194   1.1       cgd }
   1195   1.1       cgd 
   1196   1.1       cgd /*
   1197   1.1       cgd  * read a block from the file system
   1198   1.1       cgd  */
   1199  1.26  christos void
   1200  1.39    simonb rdfs(daddr_t bno, int size, void *bf)
   1201   1.1       cgd {
   1202   1.1       cgd 	int n;
   1203  1.18       cgd 	off_t offset;
   1204   1.1       cgd 
   1205  1.61     lukem #ifdef MFS
   1206   1.1       cgd 	if (mfs) {
   1207  1.86       dsl 		if (Nflag)
   1208  1.86       dsl 			memset(bf, 0, size);
   1209  1.86       dsl 		else
   1210  1.86       dsl 			memmove(bf, membase + bno * sectorsize, size);
   1211   1.1       cgd 		return;
   1212   1.1       cgd 	}
   1213  1.61     lukem #endif
   1214  1.18       cgd 	offset = bno;
   1215  1.72       dsl 	n = pread(fsi, bf, size, offset * sectorsize);
   1216   1.9   mycroft 	if (n != size) {
   1217  1.66      fvdl 		printf("rdfs: read error for sector %lld: %s\n",
   1218  1.66      fvdl 		    (long long)bno, strerror(errno));
   1219   1.1       cgd 		exit(34);
   1220   1.1       cgd 	}
   1221   1.1       cgd }
   1222   1.1       cgd 
   1223   1.1       cgd /*
   1224   1.1       cgd  * write a block to the file system
   1225   1.1       cgd  */
   1226  1.26  christos void
   1227  1.39    simonb wtfs(daddr_t bno, int size, void *bf)
   1228   1.1       cgd {
   1229   1.1       cgd 	int n;
   1230  1.18       cgd 	off_t offset;
   1231   1.1       cgd 
   1232  1.86       dsl 	if (Nflag)
   1233  1.86       dsl 		return;
   1234  1.61     lukem #ifdef MFS
   1235   1.1       cgd 	if (mfs) {
   1236  1.27     lukem 		memmove(membase + bno * sectorsize, bf, size);
   1237   1.1       cgd 		return;
   1238   1.1       cgd 	}
   1239  1.61     lukem #endif
   1240  1.18       cgd 	offset = bno;
   1241  1.72       dsl 	n = pwrite(fso, bf, size, offset * sectorsize);
   1242   1.9   mycroft 	if (n != size) {
   1243  1.66      fvdl 		printf("wtfs: write error for sector %lld: %s\n",
   1244  1.66      fvdl 		    (long long)bno, strerror(errno));
   1245   1.1       cgd 		exit(36);
   1246   1.1       cgd 	}
   1247   1.1       cgd }
   1248   1.1       cgd 
   1249   1.1       cgd /*
   1250   1.1       cgd  * check if a block is available
   1251   1.1       cgd  */
   1252  1.26  christos int
   1253  1.39    simonb isblock(struct fs *fs, unsigned char *cp, int h)
   1254   1.1       cgd {
   1255   1.1       cgd 	unsigned char mask;
   1256   1.1       cgd 
   1257  1.62   mycroft 	switch (fs->fs_fragshift) {
   1258  1.62   mycroft 	case 3:
   1259   1.1       cgd 		return (cp[h] == 0xff);
   1260  1.62   mycroft 	case 2:
   1261   1.1       cgd 		mask = 0x0f << ((h & 0x1) << 2);
   1262   1.1       cgd 		return ((cp[h >> 1] & mask) == mask);
   1263  1.62   mycroft 	case 1:
   1264   1.1       cgd 		mask = 0x03 << ((h & 0x3) << 1);
   1265   1.1       cgd 		return ((cp[h >> 2] & mask) == mask);
   1266  1.62   mycroft 	case 0:
   1267   1.1       cgd 		mask = 0x01 << (h & 0x7);
   1268   1.1       cgd 		return ((cp[h >> 3] & mask) == mask);
   1269   1.1       cgd 	default:
   1270   1.1       cgd #ifdef STANDALONE
   1271  1.62   mycroft 		printf("isblock bad fs_fragshift %d\n", fs->fs_fragshift);
   1272   1.1       cgd #else
   1273  1.62   mycroft 		fprintf(stderr, "isblock bad fs_fragshift %d\n",
   1274  1.62   mycroft 		    fs->fs_fragshift);
   1275   1.1       cgd #endif
   1276   1.1       cgd 		return (0);
   1277   1.1       cgd 	}
   1278   1.1       cgd }
   1279   1.1       cgd 
   1280   1.1       cgd /*
   1281   1.1       cgd  * take a block out of the map
   1282   1.1       cgd  */
   1283  1.26  christos void
   1284  1.39    simonb clrblock(struct fs *fs, unsigned char *cp, int h)
   1285   1.1       cgd {
   1286  1.62   mycroft 	switch ((fs)->fs_fragshift) {
   1287  1.62   mycroft 	case 3:
   1288   1.1       cgd 		cp[h] = 0;
   1289   1.1       cgd 		return;
   1290  1.62   mycroft 	case 2:
   1291   1.1       cgd 		cp[h >> 1] &= ~(0x0f << ((h & 0x1) << 2));
   1292   1.1       cgd 		return;
   1293  1.62   mycroft 	case 1:
   1294   1.1       cgd 		cp[h >> 2] &= ~(0x03 << ((h & 0x3) << 1));
   1295   1.1       cgd 		return;
   1296  1.62   mycroft 	case 0:
   1297   1.1       cgd 		cp[h >> 3] &= ~(0x01 << (h & 0x7));
   1298   1.1       cgd 		return;
   1299   1.1       cgd 	default:
   1300   1.1       cgd #ifdef STANDALONE
   1301  1.62   mycroft 		printf("clrblock bad fs_fragshift %d\n", fs->fs_fragshift);
   1302   1.1       cgd #else
   1303  1.62   mycroft 		fprintf(stderr, "clrblock bad fs_fragshift %d\n",
   1304  1.62   mycroft 		    fs->fs_fragshift);
   1305   1.1       cgd #endif
   1306   1.1       cgd 		return;
   1307   1.1       cgd 	}
   1308   1.1       cgd }
   1309   1.1       cgd 
   1310   1.1       cgd /*
   1311   1.1       cgd  * put a block into the map
   1312   1.1       cgd  */
   1313  1.26  christos void
   1314  1.39    simonb setblock(struct fs *fs, unsigned char *cp, int h)
   1315   1.1       cgd {
   1316  1.62   mycroft 	switch (fs->fs_fragshift) {
   1317  1.62   mycroft 	case 3:
   1318   1.1       cgd 		cp[h] = 0xff;
   1319   1.1       cgd 		return;
   1320  1.62   mycroft 	case 2:
   1321   1.1       cgd 		cp[h >> 1] |= (0x0f << ((h & 0x1) << 2));
   1322   1.1       cgd 		return;
   1323  1.62   mycroft 	case 1:
   1324   1.1       cgd 		cp[h >> 2] |= (0x03 << ((h & 0x3) << 1));
   1325   1.1       cgd 		return;
   1326  1.62   mycroft 	case 0:
   1327   1.1       cgd 		cp[h >> 3] |= (0x01 << (h & 0x7));
   1328   1.1       cgd 		return;
   1329   1.1       cgd 	default:
   1330   1.1       cgd #ifdef STANDALONE
   1331  1.62   mycroft 		printf("setblock bad fs_frag %d\n", fs->fs_fragshift);
   1332   1.1       cgd #else
   1333  1.62   mycroft 		fprintf(stderr, "setblock bad fs_fragshift %d\n",
   1334  1.62   mycroft 		    fs->fs_fragshift);
   1335   1.1       cgd #endif
   1336   1.1       cgd 		return;
   1337  1.30    bouyer 	}
   1338  1.30    bouyer }
   1339  1.30    bouyer 
   1340  1.30    bouyer /* copy a direntry to a buffer, in fs byte order */
   1341  1.30    bouyer static void
   1342  1.39    simonb copy_dir(struct direct *dir, struct direct *dbuf)
   1343  1.30    bouyer {
   1344  1.68      fvdl 	memcpy(dbuf, dir, DIRSIZ(Oflag == 0, dir, 0));
   1345  1.30    bouyer 	if (needswap) {
   1346  1.30    bouyer 		dbuf->d_ino = bswap32(dir->d_ino);
   1347  1.30    bouyer 		dbuf->d_reclen = bswap16(dir->d_reclen);
   1348  1.68      fvdl 		if (Oflag == 0)
   1349  1.30    bouyer 			((struct odirect*)dbuf)->d_namlen =
   1350  1.30    bouyer 				bswap16(((struct odirect*)dir)->d_namlen);
   1351   1.1       cgd 	}
   1352  1.36  wrstuden }
   1353  1.36  wrstuden 
   1354  1.36  wrstuden /* Determine how many digits are needed to print a given integer */
   1355  1.36  wrstuden static int
   1356  1.72       dsl count_digits(uint64_t num)
   1357  1.36  wrstuden {
   1358  1.36  wrstuden 	int ndig;
   1359  1.36  wrstuden 
   1360  1.72       dsl 	for (ndig = 1; num > 9; num /= 10, ndig++);
   1361  1.36  wrstuden 
   1362  1.36  wrstuden 	return (ndig);
   1363  1.60    simonb }
   1364  1.68      fvdl 
   1365  1.68      fvdl static int
   1366  1.68      fvdl ilog2(int val)
   1367  1.68      fvdl {
   1368  1.68      fvdl 	u_int n;
   1369  1.68      fvdl 
   1370  1.68      fvdl 	for (n = 0; n < sizeof(n) * CHAR_BIT; n++)
   1371  1.68      fvdl 		if (1 << n == val)
   1372  1.68      fvdl 			return (n);
   1373  1.68      fvdl 	errx(1, "ilog2: %d is not a power of 2\n", val);
   1374  1.80       dsl }
   1375  1.80       dsl 
   1376  1.80       dsl static void
   1377  1.80       dsl zap_old_sblock(int sblkoff)
   1378  1.80       dsl {
   1379  1.80       dsl 	static int cg0_data;
   1380  1.80       dsl 	uint32_t oldfs[SBLOCKSIZE / 4];
   1381  1.80       dsl 	static const struct fsm {
   1382  1.80       dsl 		uint32_t	offset;
   1383  1.80       dsl 		uint32_t	magic;
   1384  1.80       dsl 		uint32_t	mask;
   1385  1.80       dsl 	} fs_magics[] = {
   1386  1.80       dsl 		{offsetof(struct fs, fs_magic)/4, FS_UFS1_MAGIC, ~0u},
   1387  1.80       dsl 		{offsetof(struct fs, fs_magic)/4, FS_UFS2_MAGIC, ~0u},
   1388  1.80       dsl 		{0, 0x70162, ~0u},		/* LFS_MAGIC */
   1389  1.80       dsl 		{14, 0xef53, 0xffff},		/* EXT2FS (little) */
   1390  1.80       dsl 		{14, 0xef530000, 0xffff0000},	/* EXT2FS (big) */
   1391  1.80       dsl 		{~0u},
   1392  1.80       dsl 	};
   1393  1.80       dsl 	const struct fsm *fsm;
   1394  1.81       dsl 
   1395  1.81       dsl 	if (Nflag)
   1396  1.84     lukem 		return;
   1397  1.84     lukem 
   1398  1.84     lukem 	if (sblkoff == 0)	/* Why did UFS2 add support for this?  sigh. */
   1399  1.81       dsl 		return;
   1400  1.80       dsl 
   1401  1.80       dsl 	if (cg0_data == 0)
   1402  1.80       dsl 		/* For FFSv1 this could include all the inodes. */
   1403  1.80       dsl 		cg0_data = cgsblock(&sblock, 0) * sblock.fs_fsize + iobufsize;
   1404  1.80       dsl 
   1405  1.80       dsl 	/* Ignore anything that is beyond our filesystem */
   1406  1.80       dsl 	if ((sblkoff + SBLOCKSIZE)/sectorsize >= fssize)
   1407  1.80       dsl 		return;
   1408  1.80       dsl 	/* Zero anything inside our filesystem... */
   1409  1.80       dsl 	if (sblkoff >= sblock.fs_sblockloc) {
   1410  1.80       dsl 		/* ...unless we will write that area anyway */
   1411  1.80       dsl 		if (sblkoff >= cg0_data)
   1412  1.82     enami 			wtfs(sblkoff / sectorsize,
   1413  1.82     enami 			    roundup(sizeof sblock, sectorsize), iobuf);
   1414  1.80       dsl 		return;
   1415  1.80       dsl 	}
   1416  1.80       dsl 
   1417  1.80       dsl 	/* The sector might contain boot code, so we must validate it */
   1418  1.80       dsl 	rdfs(sblkoff/sectorsize, sizeof oldfs, &oldfs);
   1419  1.80       dsl 	for (fsm = fs_magics; ; fsm++) {
   1420  1.80       dsl 		uint32_t v;
   1421  1.80       dsl 		if (fsm->mask == 0)
   1422  1.80       dsl 			return;
   1423  1.80       dsl 		v = oldfs[fsm->offset];
   1424  1.80       dsl 		if ((v & fsm->mask) == fsm->magic ||
   1425  1.80       dsl 		    (bswap32(v) & fsm->mask) == fsm->magic)
   1426  1.80       dsl 			break;
   1427  1.80       dsl 	}
   1428  1.80       dsl 
   1429  1.80       dsl 	/* Just zap the magic number */
   1430  1.80       dsl 	oldfs[fsm->offset] = 0;
   1431  1.80       dsl 	wtfs(sblkoff/sectorsize, sizeof oldfs, &oldfs);
   1432  1.68      fvdl }
   1433  1.68      fvdl 
   1434  1.60    simonb 
   1435  1.61     lukem #ifdef MFS
   1436  1.60    simonb /*
   1437  1.60    simonb  * XXX!
   1438  1.60    simonb  * Attempt to guess how much more space is available for process data.  The
   1439  1.60    simonb  * heuristic we use is
   1440  1.60    simonb  *
   1441  1.60    simonb  *	max_data_limit - (sbrk(0) - etext) - 128kB
   1442  1.60    simonb  *
   1443  1.60    simonb  * etext approximates that start address of the data segment, and the 128kB
   1444  1.60    simonb  * allows some slop for both segment gap between text and data, and for other
   1445  1.60    simonb  * (libc) malloc usage.
   1446  1.60    simonb  */
   1447  1.60    simonb static void
   1448  1.60    simonb calc_memfree(void)
   1449  1.60    simonb {
   1450  1.60    simonb 	extern char etext;
   1451  1.60    simonb 	struct rlimit rlp;
   1452  1.60    simonb 	u_long base;
   1453  1.60    simonb 
   1454  1.60    simonb 	base = (u_long)sbrk(0) - (u_long)&etext;
   1455  1.60    simonb 	if (getrlimit(RLIMIT_DATA, &rlp) < 0)
   1456  1.60    simonb 		perror("getrlimit");
   1457  1.60    simonb 	rlp.rlim_cur = rlp.rlim_max;
   1458  1.60    simonb 	if (setrlimit(RLIMIT_DATA, &rlp) < 0)
   1459  1.60    simonb 		perror("setrlimit");
   1460  1.60    simonb 	memleft = rlp.rlim_max - base - (128 * 1024);
   1461  1.60    simonb }
   1462  1.60    simonb 
   1463  1.60    simonb /*
   1464  1.60    simonb  * Internal version of malloc that trims the requested size if not enough
   1465  1.60    simonb  * memory is available.
   1466  1.60    simonb  */
   1467  1.60    simonb static void *
   1468  1.60    simonb mkfs_malloc(size_t size)
   1469  1.60    simonb {
   1470  1.60    simonb 	u_long pgsz;
   1471  1.60    simonb 
   1472  1.60    simonb 	if (size == 0)
   1473  1.60    simonb 		return (NULL);
   1474  1.60    simonb 	if (memleft == 0)
   1475  1.60    simonb 		calc_memfree();
   1476  1.60    simonb 
   1477  1.60    simonb 	pgsz = getpagesize() - 1;
   1478  1.60    simonb 	size = (size + pgsz) &~ pgsz;
   1479  1.60    simonb 	if (size > memleft)
   1480  1.60    simonb 		size = memleft;
   1481  1.60    simonb 	memleft -= size;
   1482  1.60    simonb 	return (mmap(0, size, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
   1483  1.60    simonb 	    -1, 0));
   1484   1.1       cgd }
   1485  1.61     lukem #endif	/* MFS */
   1486