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minixfs3.c revision 1.1.10.1
      1       1.1  christos /*	$NetBSD: minixfs3.c,v 1.1.10.1 2013/06/23 06:20:23 tls Exp $	*/
      2       1.1  christos 
      3       1.1  christos /*-
      4       1.1  christos  * Copyright (c) 2012
      5       1.1  christos  *	Vrije Universiteit, Amsterdam, The Netherlands. All rights reserved.
      6       1.1  christos  *
      7       1.1  christos  * Author: Evgeniy Ivanov (based on libsa/ext2fs.c).
      8       1.1  christos  *
      9       1.1  christos  * This code is derived from src/sys/lib/libsa/ext2fs.c contributed to
     10       1.1  christos  * The NetBSD Foundation, see copyrights below.
     11       1.1  christos  *
     12       1.1  christos  * Redistribution and use in source and binary forms, with or without
     13       1.1  christos  * modification, are permitted provided that the following conditions
     14       1.1  christos  * are met:
     15       1.1  christos  * 1. Redistributions of source code must retain the above copyright
     16       1.1  christos  *    notice, this list of conditions and the following disclaimer.
     17       1.1  christos  * 2. Redistributions in binary form must reproduce the above copyright
     18       1.1  christos  *    notice, this list of conditions and the following disclaimer in the
     19       1.1  christos  *    documentation and/or other materials provided with the distribution.
     20       1.1  christos  *
     21       1.1  christos  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS ``AS
     22       1.1  christos  * IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
     23       1.1  christos  * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     24       1.1  christos  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS BE
     25       1.1  christos  * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     26       1.1  christos  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     27       1.1  christos  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     28       1.1  christos  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     29       1.1  christos  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30       1.1  christos  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     31       1.1  christos  * POSSIBILITY OF SUCH DAMAGE.
     32       1.1  christos  */
     33       1.1  christos 
     34       1.1  christos /*
     35       1.1  christos  * Copyright (c) 1997 Manuel Bouyer.
     36       1.1  christos  *
     37       1.1  christos  * Redistribution and use in source and binary forms, with or without
     38       1.1  christos  * modification, are permitted provided that the following conditions
     39       1.1  christos  * are met:
     40       1.1  christos  * 1. Redistributions of source code must retain the above copyright
     41       1.1  christos  *    notice, this list of conditions and the following disclaimer.
     42       1.1  christos  * 2. Redistributions in binary form must reproduce the above copyright
     43       1.1  christos  *    notice, this list of conditions and the following disclaimer in the
     44       1.1  christos  *    documentation and/or other materials provided with the distribution.
     45       1.1  christos  *
     46       1.1  christos  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     47       1.1  christos  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     48       1.1  christos  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     49       1.1  christos  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     50       1.1  christos  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     51       1.1  christos  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     52       1.1  christos  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     53       1.1  christos  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     54       1.1  christos  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     55       1.1  christos  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     56       1.1  christos  */
     57       1.1  christos 
     58       1.1  christos /*-
     59       1.1  christos  * Copyright (c) 1993
     60       1.1  christos  *	The Regents of the University of California.  All rights reserved.
     61       1.1  christos  *
     62       1.1  christos  * This code is derived from software contributed to Berkeley by
     63       1.1  christos  * The Mach Operating System project at Carnegie-Mellon University.
     64       1.1  christos  *
     65       1.1  christos  * Redistribution and use in source and binary forms, with or without
     66       1.1  christos  * modification, are permitted provided that the following conditions
     67       1.1  christos  * are met:
     68       1.1  christos  * 1. Redistributions of source code must retain the above copyright
     69       1.1  christos  *    notice, this list of conditions and the following disclaimer.
     70       1.1  christos  * 2. Redistributions in binary form must reproduce the above copyright
     71       1.1  christos  *    notice, this list of conditions and the following disclaimer in the
     72       1.1  christos  *    documentation and/or other materials provided with the distribution.
     73       1.1  christos  * 3. Neither the name of the University nor the names of its contributors
     74       1.1  christos  *    may be used to endorse or promote products derived from this software
     75       1.1  christos  *    without specific prior written permission.
     76       1.1  christos  *
     77       1.1  christos  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     78       1.1  christos  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     79       1.1  christos  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     80       1.1  christos  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     81       1.1  christos  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     82       1.1  christos  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     83       1.1  christos  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     84       1.1  christos  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     85       1.1  christos  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     86       1.1  christos  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     87       1.1  christos  * SUCH DAMAGE.
     88       1.1  christos  *
     89       1.1  christos  *
     90       1.1  christos  * Copyright (c) 1990, 1991 Carnegie Mellon University
     91       1.1  christos  * All Rights Reserved.
     92       1.1  christos  *
     93       1.1  christos  * Author: David Golub
     94       1.1  christos  *
     95       1.1  christos  * Permission to use, copy, modify and distribute this software and its
     96       1.1  christos  * documentation is hereby granted, provided that both the copyright
     97       1.1  christos  * notice and this permission notice appear in all copies of the
     98       1.1  christos  * software, derivative works or modified versions, and any portions
     99       1.1  christos  * thereof, and that both notices appear in supporting documentation.
    100       1.1  christos  *
    101       1.1  christos  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
    102       1.1  christos  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
    103       1.1  christos  * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
    104       1.1  christos  *
    105       1.1  christos  * Carnegie Mellon requests users of this software to return to
    106       1.1  christos  *
    107       1.1  christos  *  Software Distribution Coordinator  or  Software.Distribution (at) CS.CMU.EDU
    108       1.1  christos  *  School of Computer Science
    109       1.1  christos  *  Carnegie Mellon University
    110       1.1  christos  *  Pittsburgh PA 15213-3890
    111       1.1  christos  *
    112       1.1  christos  * any improvements or extensions that they make and grant Carnegie the
    113       1.1  christos  * rights to redistribute these changes.
    114       1.1  christos  */
    115       1.1  christos 
    116       1.1  christos /*
    117       1.1  christos  *	Stand-alone file reading package for MFS file system.
    118       1.1  christos  */
    119       1.1  christos 
    120       1.1  christos #include <sys/param.h>
    121       1.1  christos #include <sys/time.h>
    122       1.1  christos #ifdef _STANDALONE
    123       1.1  christos #include <lib/libkern/libkern.h>
    124       1.1  christos #else
    125       1.1  christos #include <string.h>
    126       1.1  christos #endif
    127       1.1  christos 
    128       1.1  christos #include "stand.h"
    129       1.1  christos #include "minixfs3.h"
    130       1.1  christos 
    131       1.1  christos #if defined(LIBSA_FS_SINGLECOMPONENT) && !defined(LIBSA_NO_FS_SYMLINK)
    132       1.1  christos #define LIBSA_NO_FS_SYMLINK
    133       1.1  christos #endif
    134       1.1  christos 
    135       1.1  christos #if defined(LIBSA_NO_TWIDDLE)
    136       1.1  christos #define twiddle()
    137       1.1  christos #endif
    138       1.1  christos 
    139       1.1  christos typedef uint32_t	ino32_t;
    140       1.1  christos #ifndef FSBTODB
    141       1.1  christos #define FSBTODB(fs, indp) fsbtodb(fs, indp)
    142       1.1  christos #endif
    143       1.1  christos 
    144       1.1  christos /*
    145       1.1  christos  * To avoid having a lot of filesystem-block sized buffers lurking (which
    146       1.1  christos  * could be 32k) we only keep a few entries of the indirect block map.
    147       1.1  christos  * With 8k blocks, 2^8 blocks is ~500k so we reread the indirect block
    148       1.1  christos  * ~13 times pulling in a 6M kernel.
    149       1.1  christos  * The cache size must be smaller than the smallest filesystem block,
    150       1.1  christos  * so LN2_IND_CACHE_SZ <= 9 (UFS2 and 4k blocks).
    151       1.1  christos  */
    152       1.1  christos #define LN2_IND_CACHE_SZ	6
    153       1.1  christos #define IND_CACHE_SZ		(1 << LN2_IND_CACHE_SZ)
    154       1.1  christos #define IND_CACHE_MASK		(IND_CACHE_SZ - 1)
    155       1.1  christos 
    156       1.1  christos /*
    157       1.1  christos  * In-core open file.
    158       1.1  christos  */
    159       1.1  christos struct file {
    160       1.1  christos 	off_t		f_seekp;	/* seek pointer */
    161       1.1  christos 	struct mfs_sblock  *f_fs;	/* pointer to super-block */
    162       1.1  christos 	struct mfs_dinode  f_di;	/* copy of on-disk inode */
    163       1.1  christos 	uint		f_nishift;	/* for blocks in indirect block */
    164       1.1  christos 	block_t		f_ind_cache_block;
    165       1.1  christos 	block_t		f_ind_cache[IND_CACHE_SZ];
    166       1.1  christos 
    167       1.1  christos 	char		*f_buf;		/* buffer for data block */
    168       1.1  christos 	size_t		f_buf_size;	/* size of data block */
    169       1.1  christos 	daddr_t		f_buf_blkno;	/* block number of data block */
    170       1.1  christos };
    171       1.1  christos 
    172       1.1  christos #if defined(LIBSA_ENABLE_LS_OP)
    173       1.1  christos 
    174       1.1  christos #define NELEM(x) (sizeof (x) / sizeof(*x))
    175       1.1  christos 
    176       1.1  christos typedef struct entry_t entry_t;
    177       1.1  christos struct entry_t {
    178       1.1  christos 	entry_t	*e_next;
    179       1.1  christos 	ino32_t	e_ino;
    180       1.1  christos 	char	e_name[1];
    181       1.1  christos };
    182       1.1  christos 
    183       1.1  christos #endif /* LIBSA_ENABLE_LS_OP */
    184       1.1  christos 
    185       1.1  christos 
    186       1.1  christos static int read_inode(ino32_t, struct open_file *);
    187       1.1  christos static int block_map(struct open_file *, block_t, block_t *);
    188       1.1  christos static int buf_read_file(struct open_file *, void *, size_t *);
    189       1.1  christos static int search_directory(const char *, int, struct open_file *, ino32_t *);
    190       1.1  christos static int read_sblock(struct open_file *, struct mfs_sblock *);
    191       1.1  christos 
    192       1.1  christos /*
    193       1.1  christos  * Read a new inode into a file structure.
    194       1.1  christos  */
    195       1.1  christos static int
    196       1.1  christos read_inode(ino32_t inumber, struct open_file *f)
    197       1.1  christos {
    198       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    199       1.1  christos 	struct mfs_sblock *fs = fp->f_fs;
    200       1.1  christos 	char *buf;
    201       1.1  christos 	size_t rsize;
    202       1.1  christos 	int rc;
    203       1.1  christos 	daddr_t inode_sector;
    204       1.1  christos 	struct mfs_dinode *dip;
    205       1.1  christos 
    206       1.1  christos 	inode_sector = FSBTODB(fs, ino_to_fsba(fs, inumber));
    207       1.1  christos 
    208       1.1  christos 	/*
    209       1.1  christos 	 * Read inode and save it.
    210       1.1  christos 	 */
    211       1.1  christos 	buf = fp->f_buf;
    212       1.1  christos 	twiddle();
    213       1.1  christos 	rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ,
    214       1.1  christos 	    inode_sector, fs->mfs_block_size, buf, &rsize);
    215       1.1  christos 	if (rc)
    216       1.1  christos 		return rc;
    217       1.1  christos 	if (rsize != fs->mfs_block_size)
    218       1.1  christos 		return EIO;
    219       1.1  christos 
    220       1.1  christos 	dip = (struct mfs_dinode *)(buf +
    221       1.1  christos 	    INODE_SIZE * ino_to_fsbo(fs, inumber));
    222       1.1  christos 	mfs_iload(dip, &fp->f_di);
    223       1.1  christos 
    224       1.1  christos 	/*
    225       1.1  christos 	 * Clear out the old buffers
    226       1.1  christos 	 */
    227       1.1  christos 	fp->f_ind_cache_block = ~0;
    228       1.1  christos 	fp->f_buf_blkno = -1;
    229       1.1  christos 	return rc;
    230       1.1  christos }
    231       1.1  christos 
    232       1.1  christos /*
    233       1.1  christos  * Given an offset in a file, find the disk block number (not zone!)
    234       1.1  christos  * that contains that block.
    235       1.1  christos  */
    236       1.1  christos static int
    237       1.1  christos block_map(struct open_file *f, block_t file_block, block_t *disk_block_p)
    238       1.1  christos {
    239       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    240       1.1  christos 	struct mfs_sblock *fs = fp->f_fs;
    241       1.1  christos 	uint level;
    242       1.1  christos 	block_t ind_cache;
    243       1.1  christos 	block_t ind_block_num;
    244       1.1  christos 	zone_t zone;
    245       1.1  christos 	size_t rsize;
    246       1.1  christos 	int rc;
    247       1.1  christos 	int boff;
    248       1.1  christos 	int scale = fs->mfs_log_zone_size; /* for block-zone conversion */
    249       1.1  christos 	block_t *buf = (void *)fp->f_buf;
    250       1.1  christos 
    251       1.1  christos 	/*
    252       1.1  christos 	 * Index structure of an inode:
    253       1.1  christos 	 *
    254       1.1  christos 	 * mdi_blocks[0..NR_DZONES-1]
    255       1.1  christos 	 *			hold zone numbers for zones
    256       1.1  christos 	 *			0..NR_DZONES-1
    257       1.1  christos 	 *
    258       1.1  christos 	 * mdi_blocks[NR_DZONES+0]
    259       1.1  christos 	 *			block NDADDR+0 is the single indirect block
    260       1.1  christos 	 *			holds zone numbers for zones
    261  1.1.10.1       tls 	 *			NR_DZONES .. NR_DZONES + MFS_NINDIR(fs)-1
    262       1.1  christos 	 *
    263       1.1  christos 	 * mdi_blocks[NR_DZONES+1]
    264       1.1  christos 	 *			block NDADDR+1 is the double indirect block
    265       1.1  christos 	 *			holds zone numbers for INDEX blocks for zones
    266  1.1.10.1       tls 	 *			NR_DZONES + MFS_NINDIR(fs) ..
    267  1.1.10.1       tls 	 *			NR_TZONES + MFS_NINDIR(fs) + MFS_NINDIR(fs)**2 - 1
    268       1.1  christos 	 */
    269       1.1  christos 
    270       1.1  christos 	zone = file_block >> scale;
    271       1.1  christos 	boff = (int) (file_block - (zone << scale) ); /* relative blk in zone */
    272       1.1  christos 
    273       1.1  christos 	if (zone < NR_DZONES) {
    274       1.1  christos 		/* Direct zone */
    275       1.1  christos 		zone_t z = fs2h32(fp->f_di.mdi_zone[zone]);
    276       1.1  christos 		if (z == NO_ZONE) {
    277       1.1  christos 			*disk_block_p = NO_BLOCK;
    278       1.1  christos 			return 0;
    279       1.1  christos 		}
    280       1.1  christos 		*disk_block_p = (block_t) ((z << scale) + boff);
    281       1.1  christos 		return 0;
    282       1.1  christos 	}
    283       1.1  christos 
    284       1.1  christos 	zone -= NR_DZONES;
    285       1.1  christos 
    286       1.1  christos 	ind_cache = zone >> LN2_IND_CACHE_SZ;
    287       1.1  christos 	if (ind_cache == fp->f_ind_cache_block) {
    288       1.1  christos 		*disk_block_p =
    289       1.1  christos 		    fs2h32(fp->f_ind_cache[zone & IND_CACHE_MASK]);
    290       1.1  christos 		return 0;
    291       1.1  christos 	}
    292       1.1  christos 
    293       1.1  christos 	for (level = 0;;) {
    294       1.1  christos 		level += fp->f_nishift;
    295       1.1  christos 
    296       1.1  christos 		if (zone < (block_t)1 << level)
    297       1.1  christos 			break;
    298       1.1  christos 		if (level > NIADDR * fp->f_nishift)
    299       1.1  christos 			/* Zone number too high */
    300       1.1  christos 			return EFBIG;
    301       1.1  christos 		zone -= (block_t)1 << level;
    302       1.1  christos 	}
    303       1.1  christos 
    304       1.1  christos 	ind_block_num =
    305       1.1  christos 	    fs2h32(fp->f_di.mdi_zone[NR_DZONES + (level / fp->f_nishift - 1)]);
    306       1.1  christos 
    307       1.1  christos 	for (;;) {
    308       1.1  christos 		level -= fp->f_nishift;
    309       1.1  christos 		if (ind_block_num == 0) {
    310       1.1  christos 			*disk_block_p = NO_BLOCK;	/* missing */
    311       1.1  christos 			return 0;
    312       1.1  christos 		}
    313       1.1  christos 
    314       1.1  christos 		twiddle();
    315       1.1  christos 		/*
    316       1.1  christos 		 * If we were feeling brave, we could work out the number
    317       1.1  christos 		 * of the disk sector and read a single disk sector instead
    318       1.1  christos 		 * of a filesystem block.
    319       1.1  christos 		 * However we don't do this very often anyway...
    320       1.1  christos 		 */
    321       1.1  christos 		rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ,
    322       1.1  christos 			FSBTODB(fs, ind_block_num), fs->mfs_block_size,
    323       1.1  christos 			buf, &rsize);
    324       1.1  christos 		if (rc)
    325       1.1  christos 			return rc;
    326       1.1  christos 		if (rsize != fs->mfs_block_size)
    327       1.1  christos 			return EIO;
    328       1.1  christos 
    329       1.1  christos 		ind_block_num = fs2h32(buf[zone >> level]);
    330       1.1  christos 		if (level == 0)
    331       1.1  christos 			break;
    332       1.1  christos 		zone &= (1 << level) - 1;
    333       1.1  christos 	}
    334       1.1  christos 
    335       1.1  christos 	/* Save the part of the block that contains this sector */
    336       1.1  christos 	memcpy(fp->f_ind_cache, &buf[zone & ~IND_CACHE_MASK],
    337       1.1  christos 	    IND_CACHE_SZ * sizeof fp->f_ind_cache[0]);
    338       1.1  christos 	fp->f_ind_cache_block = ind_cache;
    339       1.1  christos 
    340       1.1  christos 	zone = (zone_t)ind_block_num;
    341       1.1  christos 	*disk_block_p = (block_t)((zone << scale) + boff);
    342       1.1  christos 	return 0;
    343       1.1  christos }
    344       1.1  christos 
    345       1.1  christos /*
    346       1.1  christos  * Read a portion of a file into an internal buffer.
    347       1.1  christos  * Return the location in the buffer and the amount in the buffer.
    348       1.1  christos  */
    349       1.1  christos static int
    350       1.1  christos buf_read_file(struct open_file *f, void *v, size_t *size_p)
    351       1.1  christos {
    352       1.1  christos 	char **buf_p = v;
    353       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    354       1.1  christos 	struct mfs_sblock *fs = fp->f_fs;
    355       1.1  christos 	long off;
    356       1.1  christos 	block_t file_block;
    357       1.1  christos 	block_t disk_block;
    358       1.1  christos 	size_t block_size;
    359       1.1  christos 	int rc;
    360       1.1  christos 
    361  1.1.10.1       tls 	off = mfs_blkoff(fs, fp->f_seekp);
    362       1.1  christos 	file_block = lblkno(fs, fp->f_seekp);
    363       1.1  christos 	block_size = fs->mfs_block_size;
    364       1.1  christos 
    365       1.1  christos 	if (file_block != fp->f_buf_blkno) {
    366       1.1  christos 		rc = block_map(f, file_block, &disk_block);
    367       1.1  christos 		if (rc)
    368       1.1  christos 			return rc;
    369       1.1  christos 
    370       1.1  christos 		if (disk_block == 0) {
    371       1.1  christos 			memset(fp->f_buf, 0, block_size);
    372       1.1  christos 			fp->f_buf_size = block_size;
    373       1.1  christos 		} else {
    374       1.1  christos 			twiddle();
    375       1.1  christos 			rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ,
    376       1.1  christos 				FSBTODB(fs, disk_block),
    377       1.1  christos 				block_size, fp->f_buf, &fp->f_buf_size);
    378       1.1  christos 			if (rc)
    379       1.1  christos 				return rc;
    380       1.1  christos 		}
    381       1.1  christos 
    382       1.1  christos 		fp->f_buf_blkno = file_block;
    383       1.1  christos 	}
    384       1.1  christos 
    385       1.1  christos 	/*
    386       1.1  christos 	 * Return address of byte in buffer corresponding to
    387       1.1  christos 	 * offset, and size of remainder of buffer after that
    388       1.1  christos 	 * byte.
    389       1.1  christos 	 */
    390       1.1  christos 	*buf_p = fp->f_buf + off;
    391       1.1  christos 	*size_p = block_size - off;
    392       1.1  christos 
    393       1.1  christos 	/*
    394       1.1  christos 	 * But truncate buffer at end of file.
    395       1.1  christos 	 */
    396       1.1  christos 	if (*size_p > fp->f_di.mdi_size - fp->f_seekp)
    397       1.1  christos 		*size_p = fp->f_di.mdi_size - fp->f_seekp;
    398       1.1  christos 
    399       1.1  christos 	return 0;
    400       1.1  christos }
    401       1.1  christos 
    402       1.1  christos /*
    403       1.1  christos  * Search a directory for a name and return its
    404       1.1  christos  * inode number.
    405       1.1  christos  */
    406       1.1  christos static int
    407       1.1  christos search_directory(const char *name, int length, struct open_file *f,
    408       1.1  christos 	ino32_t *inumber_p)
    409       1.1  christos {
    410       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    411       1.1  christos 	struct mfs_sblock *fs = fp->f_fs;
    412       1.1  christos 	struct mfs_direct *dp;
    413       1.1  christos 	struct mfs_direct *dbuf;
    414       1.1  christos 	size_t buf_size;
    415       1.1  christos 	int namlen;
    416       1.1  christos 	int rc;
    417       1.1  christos 
    418       1.1  christos 	fp->f_seekp = 0;
    419       1.1  christos 
    420       1.1  christos 	while (fp->f_seekp < (off_t)fp->f_di.mdi_size) {
    421       1.1  christos 		rc = buf_read_file(f, (void *)&dbuf, &buf_size);
    422       1.1  christos 		if (rc)
    423       1.1  christos 			return rc;
    424       1.1  christos 		if (buf_size == 0)
    425       1.1  christos 			return EIO;
    426       1.1  christos 
    427       1.1  christos 		/* XXX we assume, that buf_read_file reads an fs block and
    428       1.1  christos 		 * doesn't truncate buffer. Currently i_size in MFS doesn't
    429       1.1  christos 		 * the same as size of allocated blocks, it makes buf_read_file
    430       1.1  christos 		 * to truncate buf_size.
    431       1.1  christos 		 */
    432       1.1  christos 		if (buf_size < fs->mfs_block_size)
    433       1.1  christos 			buf_size = fs->mfs_block_size;
    434       1.1  christos 
    435       1.1  christos 		for (dp = dbuf; dp < &dbuf[NR_DIR_ENTRIES(fs)]; dp++) {
    436       1.1  christos 			char *cp;
    437       1.1  christos 			if (fs2h32(dp->mfsd_ino) == (ino32_t) 0)
    438       1.1  christos 				continue;
    439       1.1  christos 			/* Compute the length of the name */
    440       1.1  christos 			cp = memchr(dp->mfsd_name, '\0', sizeof(dp->mfsd_name));
    441       1.1  christos 			if (cp == NULL)
    442       1.1  christos 				namlen = sizeof(dp->mfsd_name);
    443       1.1  christos 			else
    444       1.1  christos 				namlen = cp - (dp->mfsd_name);
    445       1.1  christos 
    446       1.1  christos 			if (namlen == length &&
    447       1.1  christos 			    !memcmp(name, dp->mfsd_name, length)) {
    448       1.1  christos 				/* found entry */
    449       1.1  christos 				*inumber_p = fs2h32(dp->mfsd_ino);
    450       1.1  christos 				return 0;
    451       1.1  christos 			}
    452       1.1  christos 		}
    453       1.1  christos 		fp->f_seekp += buf_size;
    454       1.1  christos 	}
    455       1.1  christos 	return ENOENT;
    456       1.1  christos }
    457       1.1  christos 
    458       1.1  christos int
    459       1.1  christos read_sblock(struct open_file *f, struct mfs_sblock *fs)
    460       1.1  christos {
    461       1.1  christos 	static uint8_t sbbuf[MINBSIZE];
    462       1.1  christos 	size_t buf_size;
    463       1.1  christos 	int rc;
    464       1.1  christos 
    465       1.1  christos 	/* We must read amount multiple of sector size, hence we can't
    466       1.1  christos 	 * read SBSIZE and read MINBSIZE.
    467       1.1  christos 	 */
    468       1.1  christos 	if (SBSIZE > MINBSIZE)
    469       1.1  christos 		return EINVAL;
    470       1.1  christos 
    471       1.1  christos 	rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ,
    472       1.1  christos 	    SUPER_BLOCK_OFF / DEV_BSIZE, MINBSIZE, sbbuf, &buf_size);
    473       1.1  christos 	if (rc)
    474       1.1  christos 		return rc;
    475       1.1  christos 
    476       1.1  christos 	if (buf_size != MINBSIZE)
    477       1.1  christos 		return EIO;
    478       1.1  christos 
    479       1.1  christos 	mfs_sbload((void *)sbbuf, fs);
    480       1.1  christos 
    481       1.1  christos 	if (fs->mfs_magic != SUPER_MAGIC)
    482       1.1  christos 		return EINVAL;
    483       1.1  christos 	if (fs->mfs_block_size < MINBSIZE)
    484       1.1  christos 		return EINVAL;
    485       1.1  christos 	if ((fs->mfs_block_size % 512) != 0)
    486       1.1  christos 		return EINVAL;
    487       1.1  christos 	if (SBSIZE > fs->mfs_block_size)
    488       1.1  christos 		return EINVAL;
    489       1.1  christos 	if ((fs->mfs_block_size % INODE_SIZE) != 0)
    490       1.1  christos 		return EINVAL;
    491       1.1  christos 
    492       1.1  christos 	/* For even larger disks, a similar problem occurs with s_firstdatazone.
    493       1.1  christos 	 * If the on-disk field contains zero, we assume that the value was too
    494       1.1  christos 	 * large to fit, and compute it on the fly.
    495       1.1  christos 	 */
    496       1.1  christos 	if (fs->mfs_firstdatazone_old == 0) {
    497       1.1  christos 		block_t offset;
    498       1.1  christos 		offset = START_BLOCK + fs->mfs_imap_blocks + fs->mfs_zmap_blocks;
    499       1.1  christos 		offset += (fs->mfs_ninodes + fs->mfs_inodes_per_block - 1) /
    500       1.1  christos 				fs->mfs_inodes_per_block;
    501       1.1  christos 
    502       1.1  christos 		fs->mfs_firstdatazone =
    503       1.1  christos 			(offset + (1 << fs->mfs_log_zone_size) - 1) >>
    504       1.1  christos 				fs->mfs_log_zone_size;
    505       1.1  christos 	} else {
    506       1.1  christos 		fs->mfs_firstdatazone = (zone_t) fs->mfs_firstdatazone_old;
    507       1.1  christos 	}
    508       1.1  christos 
    509       1.1  christos 	if (fs->mfs_imap_blocks < 1 || fs->mfs_zmap_blocks < 1
    510       1.1  christos 			|| fs->mfs_ninodes < 1 || fs->mfs_zones < 1
    511       1.1  christos 			|| fs->mfs_firstdatazone <= 4
    512       1.1  christos 			|| fs->mfs_firstdatazone >= fs->mfs_zones
    513       1.1  christos 			|| (unsigned) fs->mfs_log_zone_size > 4)
    514       1.1  christos 		return EINVAL;
    515       1.1  christos 
    516       1.1  christos 	/* compute in-memory mfs_sblock values */
    517       1.1  christos 	fs->mfs_inodes_per_block = fs->mfs_block_size / INODE_SIZE;
    518       1.1  christos 
    519       1.1  christos 
    520       1.1  christos 	{
    521       1.1  christos 		int32_t mult = fs->mfs_block_size >> LOG_MINBSIZE;
    522       1.1  christos 		int ln2 = LOG_MINBSIZE;
    523       1.1  christos 
    524       1.1  christos 		for (; mult != 1; ln2++)
    525       1.1  christos 			mult >>= 1;
    526       1.1  christos 
    527       1.1  christos 		fs->mfs_bshift = ln2;
    528       1.1  christos 		/* XXX assume hw bsize = 512 */
    529       1.1  christos 		fs->mfs_fsbtodb = ln2 - LOG_MINBSIZE + 1;
    530       1.1  christos 	}
    531       1.1  christos 
    532       1.1  christos 	fs->mfs_qbmask = fs->mfs_block_size - 1;
    533       1.1  christos 	fs->mfs_bmask = ~fs->mfs_qbmask;
    534       1.1  christos 
    535       1.1  christos 	return 0;
    536       1.1  christos }
    537       1.1  christos 
    538       1.1  christos /*
    539       1.1  christos  * Open a file.
    540       1.1  christos  */
    541       1.1  christos __compactcall int
    542       1.1  christos minixfs3_open(const char *path, struct open_file *f)
    543       1.1  christos {
    544       1.1  christos #ifndef LIBSA_FS_SINGLECOMPONENT
    545       1.1  christos 	const char *cp, *ncp;
    546       1.1  christos 	int c;
    547       1.1  christos #endif
    548       1.1  christos 	ino32_t inumber;
    549       1.1  christos 	struct file *fp;
    550       1.1  christos 	struct mfs_sblock *fs;
    551       1.1  christos 	int rc;
    552       1.1  christos #ifndef LIBSA_NO_FS_SYMLINK
    553       1.1  christos 	ino32_t parent_inumber;
    554       1.1  christos 	int nlinks = 0;
    555       1.1  christos 	char namebuf[MAXPATHLEN+1];
    556       1.1  christos 	char *buf;
    557       1.1  christos #endif
    558       1.1  christos 
    559       1.1  christos 	/* allocate file system specific data structure */
    560       1.1  christos 	fp = alloc(sizeof(struct file));
    561       1.1  christos 	memset(fp, 0, sizeof(struct file));
    562       1.1  christos 	f->f_fsdata = (void *)fp;
    563       1.1  christos 
    564       1.1  christos 	/* allocate space and read super block */
    565       1.1  christos 	fs = alloc(sizeof(*fs));
    566       1.1  christos 	memset(fs, 0, sizeof(*fs));
    567       1.1  christos 	fp->f_fs = fs;
    568       1.1  christos 	twiddle();
    569       1.1  christos 
    570       1.1  christos 	rc = read_sblock(f, fs);
    571       1.1  christos 	if (rc)
    572       1.1  christos 		goto out;
    573       1.1  christos 
    574       1.1  christos 	/* alloc a block sized buffer used for all fs transfers */
    575       1.1  christos 	fp->f_buf = alloc(fs->mfs_block_size);
    576       1.1  christos 
    577       1.1  christos 	/*
    578       1.1  christos 	 * Calculate indirect block levels.
    579       1.1  christos 	 */
    580       1.1  christos 	{
    581       1.1  christos 		int32_t mult;
    582       1.1  christos 		int ln2;
    583       1.1  christos 
    584       1.1  christos 		/*
    585       1.1  christos 		 * We note that the number of indirect blocks is always
    586       1.1  christos 		 * a power of 2.  This lets us use shifts and masks instead
    587       1.1  christos 		 * of divide and remainder and avoinds pulling in the
    588       1.1  christos 		 * 64bit division routine into the boot code.
    589       1.1  christos 		 */
    590  1.1.10.1       tls 		mult = MFS_NINDIR(fs);
    591       1.1  christos #ifdef DEBUG
    592       1.1  christos 		if (!powerof2(mult)) {
    593       1.1  christos 			/* Hummm was't a power of 2 */
    594       1.1  christos 			rc = EINVAL;
    595       1.1  christos 			goto out;
    596       1.1  christos 		}
    597       1.1  christos #endif
    598       1.1  christos 		for (ln2 = 0; mult != 1; ln2++)
    599       1.1  christos 			mult >>= 1;
    600       1.1  christos 
    601       1.1  christos 		fp->f_nishift = ln2;
    602       1.1  christos 	}
    603       1.1  christos 
    604       1.1  christos 	inumber = ROOT_INODE;
    605       1.1  christos 	if ((rc = read_inode(inumber, f)) != 0)
    606       1.1  christos 		goto out;
    607       1.1  christos 
    608       1.1  christos #ifndef LIBSA_FS_SINGLECOMPONENT
    609       1.1  christos 	cp = path;
    610       1.1  christos 	while (*cp) {
    611       1.1  christos 
    612       1.1  christos 		/*
    613       1.1  christos 		 * Remove extra separators
    614       1.1  christos 		 */
    615       1.1  christos 		while (*cp == '/')
    616       1.1  christos 			cp++;
    617       1.1  christos 		if (*cp == '\0')
    618       1.1  christos 			break;
    619       1.1  christos 
    620       1.1  christos 		/*
    621       1.1  christos 		 * Check that current node is a directory.
    622       1.1  christos 		 */
    623       1.1  christos 		if ((fp->f_di.mdi_mode & I_TYPE) != I_DIRECTORY) {
    624       1.1  christos 			rc = ENOTDIR;
    625       1.1  christos 			goto out;
    626       1.1  christos 		}
    627       1.1  christos 
    628       1.1  christos 		/*
    629       1.1  christos 		 * Get next component of path name.
    630       1.1  christos 		 */
    631       1.1  christos 		ncp = cp;
    632       1.1  christos 		while ((c = *cp) != '\0' && c != '/')
    633       1.1  christos 			cp++;
    634       1.1  christos 
    635       1.1  christos 		/*
    636       1.1  christos 		 * Look up component in current directory.
    637       1.1  christos 		 * Save directory inumber in case we find a
    638       1.1  christos 		 * symbolic link.
    639       1.1  christos 		 */
    640       1.1  christos #ifndef LIBSA_NO_FS_SYMLINK
    641       1.1  christos 		parent_inumber = inumber;
    642       1.1  christos #endif
    643       1.1  christos 		rc = search_directory(ncp, cp - ncp, f, &inumber);
    644       1.1  christos 		if (rc)
    645       1.1  christos 			goto out;
    646       1.1  christos 
    647       1.1  christos 		/*
    648       1.1  christos 		 * Open next component.
    649       1.1  christos 		 */
    650       1.1  christos 		if ((rc = read_inode(inumber, f)) != 0)
    651       1.1  christos 			goto out;
    652       1.1  christos 
    653       1.1  christos #ifndef LIBSA_NO_FS_SYMLINK
    654       1.1  christos 		/*
    655       1.1  christos 		 * Check for symbolic link.
    656       1.1  christos 		 */
    657       1.1  christos 		if ((fp->f_di.mdi_mode & I_TYPE) == I_SYMBOLIC_LINK) {
    658       1.1  christos 			int link_len = fp->f_di.mdi_size;
    659       1.1  christos 			int len;
    660       1.1  christos 			size_t buf_size;
    661       1.1  christos 			block_t	disk_block;
    662       1.1  christos 
    663       1.1  christos 			len = strlen(cp);
    664       1.1  christos 
    665       1.1  christos 			if (link_len + len > MAXPATHLEN ||
    666       1.1  christos 			    ++nlinks > MAXSYMLINKS) {
    667       1.1  christos 				rc = ENOENT;
    668       1.1  christos 				goto out;
    669       1.1  christos 			}
    670       1.1  christos 
    671       1.1  christos 			memmove(&namebuf[link_len], cp, len + 1);
    672       1.1  christos 
    673       1.1  christos 			/*
    674       1.1  christos 			 * Read file for symbolic link
    675       1.1  christos 			 */
    676       1.1  christos 			buf = fp->f_buf;
    677       1.1  christos 			rc = block_map(f, (block_t)0, &disk_block);
    678       1.1  christos 			if (rc)
    679       1.1  christos 				goto out;
    680       1.1  christos 
    681       1.1  christos 			twiddle();
    682       1.1  christos 			rc = DEV_STRATEGY(f->f_dev)(f->f_devdata,
    683       1.1  christos 					F_READ, FSBTODB(fs, disk_block),
    684       1.1  christos 					fs->mfs_block_size, buf, &buf_size);
    685       1.1  christos 			if (rc)
    686       1.1  christos 				goto out;
    687       1.1  christos 
    688       1.1  christos 			memcpy(namebuf, buf, link_len);
    689       1.1  christos 
    690       1.1  christos 			/*
    691       1.1  christos 			 * If relative pathname, restart at parent directory.
    692       1.1  christos 			 * If absolute pathname, restart at root.
    693       1.1  christos 			 */
    694       1.1  christos 			cp = namebuf;
    695       1.1  christos 			if (*cp != '/')
    696       1.1  christos 				inumber = parent_inumber;
    697       1.1  christos 			else
    698       1.1  christos 				inumber = (ino32_t) ROOT_INODE;
    699       1.1  christos 
    700       1.1  christos 			if ((rc = read_inode(inumber, f)) != 0)
    701       1.1  christos 				goto out;
    702       1.1  christos 		}
    703       1.1  christos #endif	/* !LIBSA_NO_FS_SYMLINK */
    704       1.1  christos 	}
    705       1.1  christos 
    706       1.1  christos 	/*
    707       1.1  christos 	 * Found terminal component.
    708       1.1  christos 	 */
    709       1.1  christos 	rc = 0;
    710       1.1  christos 
    711       1.1  christos #else /* !LIBSA_FS_SINGLECOMPONENT */
    712       1.1  christos 
    713       1.1  christos 	/* look up component in the current (root) directory */
    714       1.1  christos 	rc = search_directory(path, strlen(path), f, &inumber);
    715       1.1  christos 	if (rc)
    716       1.1  christos 		goto out;
    717       1.1  christos 
    718       1.1  christos 	/* open it */
    719       1.1  christos 	rc = read_inode(inumber, f);
    720       1.1  christos 
    721       1.1  christos #endif /* !LIBSA_FS_SINGLECOMPONENT */
    722       1.1  christos 
    723       1.1  christos 	fp->f_seekp = 0;		/* reset seek pointer */
    724       1.1  christos 
    725       1.1  christos out:
    726       1.1  christos 	if (rc)
    727       1.1  christos 		minixfs3_close(f);
    728       1.1  christos 
    729       1.1  christos 	return rc;
    730       1.1  christos }
    731       1.1  christos 
    732       1.1  christos __compactcall int
    733       1.1  christos minixfs3_close(struct open_file *f)
    734       1.1  christos {
    735       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    736       1.1  christos 
    737       1.1  christos 	f->f_fsdata = NULL;
    738       1.1  christos 	if (fp == NULL)
    739       1.1  christos 		return 0;
    740       1.1  christos 
    741       1.1  christos 	if (fp->f_buf)
    742       1.1  christos 		dealloc(fp->f_buf, fp->f_fs->mfs_block_size);
    743       1.1  christos 	dealloc(fp->f_fs, sizeof(*fp->f_fs));
    744       1.1  christos 	dealloc(fp, sizeof(struct file));
    745       1.1  christos 	return 0;
    746       1.1  christos }
    747       1.1  christos 
    748       1.1  christos /*
    749       1.1  christos  * Copy a portion of a file into kernel memory.
    750       1.1  christos  * Cross block boundaries when necessary.
    751       1.1  christos  */
    752       1.1  christos __compactcall int
    753       1.1  christos minixfs3_read(struct open_file *f, void *start, size_t size, size_t *resid)
    754       1.1  christos {
    755       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    756       1.1  christos 	size_t csize;
    757       1.1  christos 	char *buf;
    758       1.1  christos 	size_t buf_size;
    759       1.1  christos 	int rc = 0;
    760       1.1  christos 	char *addr = start;
    761       1.1  christos 
    762       1.1  christos 	while (size != 0) {
    763       1.1  christos 		if (fp->f_seekp >= (off_t)fp->f_di.mdi_size)
    764       1.1  christos 			break;
    765       1.1  christos 
    766       1.1  christos 		rc = buf_read_file(f, &buf, &buf_size);
    767       1.1  christos 		if (rc)
    768       1.1  christos 			break;
    769       1.1  christos 
    770       1.1  christos 		csize = size;
    771       1.1  christos 		if (csize > buf_size)
    772       1.1  christos 			csize = buf_size;
    773       1.1  christos 
    774       1.1  christos 		memcpy(addr, buf, csize);
    775       1.1  christos 
    776       1.1  christos 		fp->f_seekp += csize;
    777       1.1  christos 		addr += csize;
    778       1.1  christos 		size -= csize;
    779       1.1  christos 	}
    780       1.1  christos 
    781       1.1  christos 	if (resid)
    782       1.1  christos 		*resid = size;
    783       1.1  christos 	return rc;
    784       1.1  christos }
    785       1.1  christos 
    786       1.1  christos /*
    787       1.1  christos  * Not implemented.
    788       1.1  christos  */
    789       1.1  christos #ifndef LIBSA_NO_FS_WRITE
    790       1.1  christos __compactcall int
    791       1.1  christos minixfs3_write(struct open_file *f, void *start, size_t size, size_t *resid)
    792       1.1  christos {
    793       1.1  christos 
    794       1.1  christos 	return EROFS;
    795       1.1  christos }
    796       1.1  christos #endif /* !LIBSA_NO_FS_WRITE */
    797       1.1  christos 
    798       1.1  christos #ifndef LIBSA_NO_FS_SEEK
    799       1.1  christos __compactcall off_t
    800       1.1  christos minixfs3_seek(struct open_file *f, off_t offset, int where)
    801       1.1  christos {
    802       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    803       1.1  christos 
    804       1.1  christos 	switch (where) {
    805       1.1  christos 	case SEEK_SET:
    806       1.1  christos 		fp->f_seekp = offset;
    807       1.1  christos 		break;
    808       1.1  christos 	case SEEK_CUR:
    809       1.1  christos 		fp->f_seekp += offset;
    810       1.1  christos 		break;
    811       1.1  christos 	case SEEK_END:
    812       1.1  christos 		fp->f_seekp = fp->f_di.mdi_size - offset;
    813       1.1  christos 		break;
    814       1.1  christos 	default:
    815       1.1  christos 		return -1;
    816       1.1  christos 	}
    817       1.1  christos 	return fp->f_seekp;
    818       1.1  christos }
    819       1.1  christos #endif /* !LIBSA_NO_FS_SEEK */
    820       1.1  christos 
    821       1.1  christos __compactcall int
    822       1.1  christos minixfs3_stat(struct open_file *f, struct stat *sb)
    823       1.1  christos {
    824       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    825       1.1  christos 
    826       1.1  christos 	/* only important stuff */
    827       1.1  christos 	memset(sb, 0, sizeof *sb);
    828       1.1  christos 	sb->st_mode = fp->f_di.mdi_mode;
    829       1.1  christos 	sb->st_uid = fp->f_di.mdi_uid;
    830       1.1  christos 	sb->st_gid = fp->f_di.mdi_gid;
    831       1.1  christos 	sb->st_size = fp->f_di.mdi_size;
    832       1.1  christos 	return 0;
    833       1.1  christos }
    834       1.1  christos 
    835       1.1  christos #if defined(LIBSA_ENABLE_LS_OP)
    836       1.1  christos __compactcall void
    837       1.1  christos minixfs3_ls(struct open_file *f, const char *pattern)
    838       1.1  christos {
    839       1.1  christos 	struct file *fp = (struct file *)f->f_fsdata;
    840       1.1  christos 	struct mfs_sblock *fs = fp->f_fs;
    841       1.1  christos 	struct mfs_direct *dp;
    842       1.1  christos 	struct mfs_direct *dbuf;
    843       1.1  christos 	size_t buf_size;
    844       1.1  christos 	entry_t	*names = 0, *n, **np;
    845       1.1  christos 
    846       1.1  christos 	fp->f_seekp = 0;
    847       1.1  christos 	while (fp->f_seekp < (off_t)fp->f_di.mdi_size) {
    848       1.1  christos 		int rc = buf_read_file(f, &dbuf, &buf_size);
    849       1.1  christos 		if (rc)
    850       1.1  christos 			goto out;
    851       1.1  christos 
    852       1.1  christos 		/* XXX we assume, that buf_read_file reads an fs block and
    853       1.1  christos 		 * doesn't truncate buffer. Currently i_size in MFS doesn't
    854       1.1  christos 		 * the same as size of allocated blocks, it makes buf_read_file
    855       1.1  christos 		 * to truncate buf_size.
    856       1.1  christos 		 */
    857       1.1  christos 		if (buf_size < fs->mfs_block_size)
    858       1.1  christos 			buf_size = fs->mfs_block_size;
    859       1.1  christos 
    860       1.1  christos 		for (dp = dbuf; dp < &dbuf[NR_DIR_ENTRIES(fs)]; dp++) {
    861       1.1  christos 			char *cp;
    862       1.1  christos 			int namlen;
    863       1.1  christos 
    864       1.1  christos 			if (fs2h32(dp->mfsd_ino) == 0)
    865       1.1  christos 				continue;
    866       1.1  christos 
    867       1.1  christos 			if (pattern && !fnmatch(dp->mfsd_name, pattern))
    868       1.1  christos 				continue;
    869       1.1  christos 
    870       1.1  christos 			/* Compute the length of the name,
    871       1.1  christos 			 * We don't use strlen and strcpy, because original MFS
    872       1.1  christos 			 * code doesn't.
    873       1.1  christos 			 */
    874       1.1  christos 			cp = memchr(dp->mfsd_name, '\0', sizeof(dp->mfsd_name));
    875       1.1  christos 			if (cp == NULL)
    876       1.1  christos 				namlen = sizeof(dp->mfsd_name);
    877       1.1  christos 			else
    878       1.1  christos 				namlen = cp - (dp->mfsd_name);
    879       1.1  christos 
    880       1.1  christos 			n = alloc(sizeof *n + namlen);
    881       1.1  christos 			if (!n) {
    882       1.1  christos 				printf("%d: %s\n",
    883       1.1  christos 					fs2h32(dp->mfsd_ino), dp->mfsd_name);
    884       1.1  christos 				continue;
    885       1.1  christos 			}
    886       1.1  christos 			n->e_ino = fs2h32(dp->mfsd_ino);
    887       1.1  christos 			strncpy(n->e_name, dp->mfsd_name, namlen);
    888       1.1  christos 			n->e_name[namlen] = '\0';
    889       1.1  christos 			for (np = &names; *np; np = &(*np)->e_next) {
    890       1.1  christos 				if (strcmp(n->e_name, (*np)->e_name) < 0)
    891       1.1  christos 					break;
    892       1.1  christos 			}
    893       1.1  christos 			n->e_next = *np;
    894       1.1  christos 			*np = n;
    895       1.1  christos 		}
    896       1.1  christos 		fp->f_seekp += buf_size;
    897       1.1  christos 	}
    898       1.1  christos 
    899       1.1  christos 	if (names) {
    900       1.1  christos 		entry_t *p_names = names;
    901       1.1  christos 		do {
    902       1.1  christos 			n = p_names;
    903       1.1  christos 			printf("%d: %s\n",
    904       1.1  christos 				n->e_ino, n->e_name);
    905       1.1  christos 			p_names = n->e_next;
    906       1.1  christos 		} while (p_names);
    907       1.1  christos 	} else {
    908       1.1  christos 		printf("not found\n");
    909       1.1  christos 	}
    910       1.1  christos out:
    911       1.1  christos 	if (names) {
    912       1.1  christos 		do {
    913       1.1  christos 			n = names;
    914       1.1  christos 			names = n->e_next;
    915       1.1  christos 			dealloc(n, 0);
    916       1.1  christos 		} while (names);
    917       1.1  christos 	}
    918       1.1  christos 	return;
    919       1.1  christos }
    920       1.1  christos #endif
    921       1.1  christos 
    922       1.1  christos /*
    923       1.1  christos  * byte swap functions for big endian machines
    924       1.1  christos  * (mfs is always little endian)
    925       1.1  christos  */
    926       1.1  christos 
    927       1.1  christos /* These functions are only needed if native byte order is not big endian */
    928       1.1  christos #if BYTE_ORDER == BIG_ENDIAN
    929       1.1  christos void
    930       1.1  christos minixfs3_sb_bswap(struct mfs_sblock *old, struct mfs_sblock *new)
    931       1.1  christos {
    932       1.1  christos 	new->mfs_ninodes	=	bswap32(old->mfs_ninodes);
    933       1.1  christos 	new->mfs_nzones		=	bswap16(old->mfs_nzones);
    934       1.1  christos 	new->mfs_imap_blocks	=	bswap16(old->mfs_imap_blocks);
    935       1.1  christos 	new->mfs_zmap_blocks	=	bswap16(old->mfs_zmap_blocks);
    936       1.1  christos 	new->mfs_firstdatazone_old =	bswap16(old->mfs_firstdatazone_old);
    937       1.1  christos 	new->mfs_log_zone_size	=	bswap16(old->mfs_log_zone_size);
    938       1.1  christos 	new->mfs_max_size	=	bswap32(old->mfs_max_size);
    939       1.1  christos 	new->mfs_zones		=	bswap32(old->mfs_zones);
    940       1.1  christos 	new->mfs_magic		=	bswap16(old->mfs_magic);
    941       1.1  christos 	new->mfs_block_size	=	bswap16(old->mfs_block_size);
    942       1.1  christos 	new->mfs_disk_version	=	old->mfs_disk_version;
    943       1.1  christos }
    944       1.1  christos 
    945       1.1  christos void minixfs3_i_bswap(struct mfs_dinode *old, struct mfs_dinode *new)
    946       1.1  christos {
    947       1.1  christos 	int i;
    948       1.1  christos 
    949       1.1  christos 	new->mdi_mode		=	bswap16(old->mdi_mode);
    950       1.1  christos 	new->mdi_nlinks		=	bswap16(old->mdi_nlinks);
    951       1.1  christos 	new->mdi_uid		=	bswap16(old->mdi_uid);
    952       1.1  christos 	new->mdi_gid		=	bswap16(old->mdi_gid);
    953       1.1  christos 	new->mdi_size		=	bswap32(old->mdi_size);
    954       1.1  christos 	new->mdi_atime		=	bswap32(old->mdi_atime);
    955       1.1  christos 	new->mdi_mtime		=	bswap32(old->mdi_mtime);
    956       1.1  christos 	new->mdi_ctime		=	bswap32(old->mdi_ctime);
    957       1.1  christos 
    958       1.1  christos 	/* We don't swap here, because indirects must be swapped later
    959       1.1  christos 	 * anyway, hence everything is done by block_map().
    960       1.1  christos 	 */
    961       1.1  christos 	for (i = 0; i < NR_TZONES; i++)
    962       1.1  christos 		new->mdi_zone[i] = old->mdi_zone[i];
    963       1.1  christos }
    964       1.1  christos #endif
    965