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lfs.c revision 1.71.2.1
      1  1.71.2.1  pgoyette /* $NetBSD: lfs.c,v 1.71.2.1 2016/11/04 14:48:55 pgoyette Exp $ */
      2       1.1  perseant /*-
      3       1.1  perseant  * Copyright (c) 2003 The NetBSD Foundation, Inc.
      4       1.1  perseant  * All rights reserved.
      5       1.1  perseant  *
      6       1.1  perseant  * This code is derived from software contributed to The NetBSD Foundation
      7       1.1  perseant  * by Konrad E. Schroder <perseant (at) hhhh.org>.
      8       1.1  perseant  *
      9       1.1  perseant  * Redistribution and use in source and binary forms, with or without
     10       1.1  perseant  * modification, are permitted provided that the following conditions
     11       1.1  perseant  * are met:
     12       1.1  perseant  * 1. Redistributions of source code must retain the above copyright
     13       1.1  perseant  *    notice, this list of conditions and the following disclaimer.
     14       1.1  perseant  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1  perseant  *    notice, this list of conditions and the following disclaimer in the
     16       1.1  perseant  *    documentation and/or other materials provided with the distribution.
     17       1.1  perseant  *
     18       1.1  perseant  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     19       1.1  perseant  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     20       1.1  perseant  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     21       1.1  perseant  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     22       1.1  perseant  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     23       1.1  perseant  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     24       1.1  perseant  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     25       1.1  perseant  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     26       1.1  perseant  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     27       1.1  perseant  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     28       1.1  perseant  * POSSIBILITY OF SUCH DAMAGE.
     29       1.1  perseant  */
     30       1.1  perseant /*
     31       1.1  perseant  * Copyright (c) 1989, 1991, 1993
     32       1.1  perseant  *	The Regents of the University of California.  All rights reserved.
     33       1.1  perseant  * (c) UNIX System Laboratories, Inc.
     34       1.1  perseant  * All or some portions of this file are derived from material licensed
     35       1.1  perseant  * to the University of California by American Telephone and Telegraph
     36       1.1  perseant  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     37       1.1  perseant  * the permission of UNIX System Laboratories, Inc.
     38       1.1  perseant  *
     39       1.1  perseant  * Redistribution and use in source and binary forms, with or without
     40       1.1  perseant  * modification, are permitted provided that the following conditions
     41       1.1  perseant  * are met:
     42       1.1  perseant  * 1. Redistributions of source code must retain the above copyright
     43       1.1  perseant  *    notice, this list of conditions and the following disclaimer.
     44       1.1  perseant  * 2. Redistributions in binary form must reproduce the above copyright
     45       1.1  perseant  *    notice, this list of conditions and the following disclaimer in the
     46       1.1  perseant  *    documentation and/or other materials provided with the distribution.
     47       1.7       agc  * 3. Neither the name of the University nor the names of its contributors
     48       1.1  perseant  *    may be used to endorse or promote products derived from this software
     49       1.1  perseant  *    without specific prior written permission.
     50       1.1  perseant  *
     51       1.1  perseant  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     52       1.1  perseant  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     53       1.1  perseant  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     54       1.1  perseant  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     55       1.1  perseant  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     56       1.1  perseant  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     57       1.1  perseant  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     58       1.1  perseant  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     59       1.1  perseant  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     60       1.1  perseant  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     61       1.1  perseant  * SUCH DAMAGE.
     62       1.1  perseant  *
     63       1.1  perseant  *	@(#)ufs_bmap.c	8.8 (Berkeley) 8/11/95
     64       1.1  perseant  */
     65       1.1  perseant 
     66       1.1  perseant 
     67       1.1  perseant #include <sys/types.h>
     68       1.1  perseant #include <sys/param.h>
     69       1.1  perseant #include <sys/time.h>
     70       1.1  perseant #include <sys/buf.h>
     71       1.1  perseant #include <sys/mount.h>
     72       1.1  perseant 
     73      1.38  dholland #define vnode uvnode
     74       1.1  perseant #include <ufs/lfs/lfs.h>
     75      1.49  dholland #include <ufs/lfs/lfs_inode.h>
     76      1.48  dholland #include <ufs/lfs/lfs_accessors.h>
     77       1.1  perseant #undef vnode
     78       1.1  perseant 
     79       1.1  perseant #include <assert.h>
     80       1.1  perseant #include <err.h>
     81       1.1  perseant #include <errno.h>
     82       1.1  perseant #include <stdarg.h>
     83      1.70  riastrad #include <stdbool.h>
     84       1.1  perseant #include <stdio.h>
     85       1.1  perseant #include <stdlib.h>
     86       1.1  perseant #include <string.h>
     87       1.1  perseant #include <unistd.h>
     88      1.26  christos #include <util.h>
     89       1.1  perseant 
     90       1.1  perseant #include "bufcache.h"
     91       1.1  perseant #include "vnode.h"
     92      1.17  christos #include "lfs_user.h"
     93       1.1  perseant #include "segwrite.h"
     94      1.31     pooka #include "kernelops.h"
     95       1.1  perseant 
     96       1.1  perseant #define panic call_panic
     97       1.1  perseant 
     98       1.1  perseant extern u_int32_t cksum(void *, size_t);
     99      1.52  dholland extern u_int32_t lfs_sb_cksum(struct lfs *);
    100       1.8  perseant extern void pwarn(const char *, ...);
    101       1.1  perseant 
    102       1.1  perseant extern struct uvnodelst vnodelist;
    103      1.10  perseant extern struct uvnodelst getvnodelist[VNODE_HASH_MAX];
    104       1.1  perseant extern int nvnodes;
    105       1.1  perseant 
    106      1.33   mlelstv long dev_bsize = DEV_BSIZE;
    107      1.32   mlelstv 
    108      1.24  perseant static int
    109      1.24  perseant lfs_fragextend(struct uvnode *, int, int, daddr_t, struct ubuf **);
    110      1.24  perseant 
    111       1.1  perseant int fsdirty = 0;
    112      1.43  dholland void (*panic_func)(int, const char *, va_list) = my_vpanic;
    113       1.1  perseant 
    114       1.1  perseant /*
    115       1.1  perseant  * LFS buffer and uvnode operations
    116       1.1  perseant  */
    117       1.1  perseant 
    118       1.1  perseant int
    119       1.1  perseant lfs_vop_strategy(struct ubuf * bp)
    120       1.1  perseant {
    121       1.1  perseant 	int count;
    122       1.1  perseant 
    123       1.1  perseant 	if (bp->b_flags & B_READ) {
    124      1.31     pooka 		count = kops.ko_pread(bp->b_vp->v_fd, bp->b_data, bp->b_bcount,
    125      1.32   mlelstv 		    bp->b_blkno * dev_bsize);
    126       1.1  perseant 		if (count == bp->b_bcount)
    127       1.1  perseant 			bp->b_flags |= B_DONE;
    128       1.1  perseant 	} else {
    129      1.31     pooka 		count = kops.ko_pwrite(bp->b_vp->v_fd, bp->b_data, bp->b_bcount,
    130      1.32   mlelstv 		    bp->b_blkno * dev_bsize);
    131       1.1  perseant 		if (count == 0) {
    132      1.23  christos 			perror("pwrite");
    133       1.1  perseant 			return -1;
    134       1.1  perseant 		}
    135       1.1  perseant 		bp->b_flags &= ~B_DELWRI;
    136       1.1  perseant 		reassignbuf(bp, bp->b_vp);
    137       1.1  perseant 	}
    138       1.1  perseant 	return 0;
    139       1.1  perseant }
    140       1.1  perseant 
    141       1.1  perseant int
    142       1.1  perseant lfs_vop_bwrite(struct ubuf * bp)
    143       1.1  perseant {
    144       1.1  perseant 	struct lfs *fs;
    145       1.1  perseant 
    146       1.1  perseant 	fs = bp->b_vp->v_fs;
    147       1.1  perseant 	if (!(bp->b_flags & B_DELWRI)) {
    148      1.46  dholland 		lfs_sb_subavail(fs, lfs_btofsb(fs, bp->b_bcount));
    149       1.1  perseant 	}
    150       1.1  perseant 	bp->b_flags |= B_DELWRI | B_LOCKED;
    151       1.1  perseant 	reassignbuf(bp, bp->b_vp);
    152      1.27        ad 	brelse(bp, 0);
    153       1.1  perseant 	return 0;
    154       1.1  perseant }
    155       1.1  perseant 
    156       1.1  perseant /*
    157      1.37  dholland  * ulfs_bmaparray does the bmap conversion, and if requested returns the
    158       1.1  perseant  * array of logical blocks which must be traversed to get to a block.
    159       1.1  perseant  * Each entry contains the offset into that block that gets you to the
    160       1.1  perseant  * next block and the disk address of the block (if it is assigned).
    161       1.1  perseant  */
    162       1.1  perseant int
    163      1.37  dholland ulfs_bmaparray(struct lfs * fs, struct uvnode * vp, daddr_t bn, daddr_t * bnp, struct indir * ap, int *nump)
    164       1.1  perseant {
    165       1.1  perseant 	struct inode *ip;
    166       1.1  perseant 	struct ubuf *bp;
    167      1.37  dholland 	struct indir a[ULFS_NIADDR + 1], *xap;
    168       1.1  perseant 	daddr_t daddr;
    169       1.1  perseant 	daddr_t metalbn;
    170       1.1  perseant 	int error, num;
    171       1.1  perseant 
    172       1.1  perseant 	ip = VTOI(vp);
    173       1.1  perseant 
    174      1.37  dholland 	if (bn >= 0 && bn < ULFS_NDADDR) {
    175       1.1  perseant 		if (nump != NULL)
    176       1.1  perseant 			*nump = 0;
    177      1.58  dholland 		*bnp = LFS_FSBTODB(fs, lfs_dino_getdb(fs, ip->i_din, bn));
    178       1.1  perseant 		if (*bnp == 0)
    179       1.1  perseant 			*bnp = -1;
    180       1.1  perseant 		return (0);
    181       1.1  perseant 	}
    182       1.1  perseant 	xap = ap == NULL ? a : ap;
    183       1.1  perseant 	if (!nump)
    184       1.1  perseant 		nump = &num;
    185      1.37  dholland 	if ((error = ulfs_getlbns(fs, vp, bn, xap, nump)) != 0)
    186       1.1  perseant 		return (error);
    187       1.1  perseant 
    188       1.1  perseant 	num = *nump;
    189       1.1  perseant 
    190       1.1  perseant 	/* Get disk address out of indirect block array */
    191      1.58  dholland 	daddr = lfs_dino_getib(fs, ip->i_din, xap->in_off);
    192       1.1  perseant 
    193       1.1  perseant 	for (bp = NULL, ++xap; --num; ++xap) {
    194       1.1  perseant 		/* Exit the loop if there is no disk address assigned yet and
    195       1.1  perseant 		 * the indirect block isn't in the cache, or if we were
    196       1.1  perseant 		 * looking for an indirect block and we've found it. */
    197       1.1  perseant 
    198       1.1  perseant 		metalbn = xap->in_lbn;
    199       1.1  perseant 		if ((daddr == 0 && !incore(vp, metalbn)) || metalbn == bn)
    200       1.1  perseant 			break;
    201       1.1  perseant 		/*
    202       1.1  perseant 		 * If we get here, we've either got the block in the cache
    203       1.1  perseant 		 * or we have a disk address for it, go fetch it.
    204       1.1  perseant 		 */
    205       1.1  perseant 		if (bp)
    206      1.27        ad 			brelse(bp, 0);
    207       1.1  perseant 
    208       1.1  perseant 		xap->in_exists = 1;
    209      1.46  dholland 		bp = getblk(vp, metalbn, lfs_sb_getbsize(fs));
    210       1.1  perseant 
    211       1.1  perseant 		if (!(bp->b_flags & (B_DONE | B_DELWRI))) {
    212      1.40  christos 			bp->b_blkno = LFS_FSBTODB(fs, daddr);
    213       1.1  perseant 			bp->b_flags |= B_READ;
    214       1.1  perseant 			VOP_STRATEGY(bp);
    215       1.1  perseant 		}
    216      1.63  dholland 		daddr = lfs_iblock_get(fs, bp->b_data, xap->in_off);
    217       1.1  perseant 	}
    218       1.1  perseant 	if (bp)
    219      1.27        ad 		brelse(bp, 0);
    220       1.1  perseant 
    221      1.63  dholland 	daddr = LFS_FSBTODB(fs, daddr);
    222       1.1  perseant 	*bnp = daddr == 0 ? -1 : daddr;
    223       1.1  perseant 	return (0);
    224       1.1  perseant }
    225       1.1  perseant 
    226       1.1  perseant /*
    227       1.1  perseant  * Create an array of logical block number/offset pairs which represent the
    228       1.1  perseant  * path of indirect blocks required to access a data block.  The first "pair"
    229       1.1  perseant  * contains the logical block number of the appropriate single, double or
    230       1.1  perseant  * triple indirect block and the offset into the inode indirect block array.
    231       1.1  perseant  * Note, the logical block number of the inode single/double/triple indirect
    232      1.58  dholland  * block appears twice in the array, once with the offset into di_ib and
    233       1.1  perseant  * once with the offset into the page itself.
    234       1.1  perseant  */
    235       1.1  perseant int
    236      1.37  dholland ulfs_getlbns(struct lfs * fs, struct uvnode * vp, daddr_t bn, struct indir * ap, int *nump)
    237       1.1  perseant {
    238       1.1  perseant 	daddr_t metalbn, realbn;
    239       1.1  perseant 	int64_t blockcnt;
    240       1.1  perseant 	int lbc;
    241       1.1  perseant 	int i, numlevels, off;
    242       1.1  perseant 	int lognindir, indir;
    243       1.1  perseant 
    244      1.19       jmc 	metalbn = 0;    /* XXXGCC -Wuninitialized [sh3] */
    245      1.19       jmc 
    246       1.1  perseant 	if (nump)
    247       1.1  perseant 		*nump = 0;
    248       1.1  perseant 	numlevels = 0;
    249       1.1  perseant 	realbn = bn;
    250       1.1  perseant 	if (bn < 0)
    251       1.1  perseant 		bn = -bn;
    252       1.1  perseant 
    253       1.1  perseant 	lognindir = -1;
    254      1.47  dholland 	for (indir = lfs_sb_getnindir(fs); indir; indir >>= 1)
    255       1.1  perseant 		++lognindir;
    256       1.1  perseant 
    257       1.1  perseant 	/* Determine the number of levels of indirection.  After this loop is
    258       1.1  perseant 	 * done, blockcnt indicates the number of data blocks possible at the
    259      1.37  dholland 	 * given level of indirection, and ULFS_NIADDR - i is the number of levels
    260       1.1  perseant 	 * of indirection needed to locate the requested block. */
    261       1.1  perseant 
    262      1.37  dholland 	bn -= ULFS_NDADDR;
    263      1.37  dholland 	for (lbc = 0, i = ULFS_NIADDR;; i--, bn -= blockcnt) {
    264       1.1  perseant 		if (i == 0)
    265       1.1  perseant 			return (EFBIG);
    266       1.1  perseant 
    267       1.1  perseant 		lbc += lognindir;
    268       1.1  perseant 		blockcnt = (int64_t) 1 << lbc;
    269       1.1  perseant 
    270       1.1  perseant 		if (bn < blockcnt)
    271       1.1  perseant 			break;
    272       1.1  perseant 	}
    273       1.1  perseant 
    274       1.1  perseant 	/* Calculate the address of the first meta-block. */
    275      1.37  dholland 	metalbn = -((realbn >= 0 ? realbn : -realbn) - bn + ULFS_NIADDR - i);
    276       1.1  perseant 
    277       1.1  perseant 	/* At each iteration, off is the offset into the bap array which is an
    278       1.1  perseant 	 * array of disk addresses at the current level of indirection. The
    279       1.1  perseant 	 * logical block number and the offset in that block are stored into
    280       1.1  perseant 	 * the argument array. */
    281       1.1  perseant 	ap->in_lbn = metalbn;
    282      1.37  dholland 	ap->in_off = off = ULFS_NIADDR - i;
    283       1.1  perseant 	ap->in_exists = 0;
    284       1.1  perseant 	ap++;
    285      1.37  dholland 	for (++numlevels; i <= ULFS_NIADDR; i++) {
    286       1.1  perseant 		/* If searching for a meta-data block, quit when found. */
    287       1.1  perseant 		if (metalbn == realbn)
    288       1.1  perseant 			break;
    289       1.1  perseant 
    290       1.1  perseant 		lbc -= lognindir;
    291      1.71  dholland 		/*blockcnt = (int64_t) 1 << lbc;*/
    292      1.47  dholland 		off = (bn >> lbc) & (lfs_sb_getnindir(fs) - 1);
    293       1.1  perseant 
    294       1.1  perseant 		++numlevels;
    295       1.1  perseant 		ap->in_lbn = metalbn;
    296       1.1  perseant 		ap->in_off = off;
    297       1.1  perseant 		ap->in_exists = 0;
    298       1.1  perseant 		++ap;
    299       1.1  perseant 
    300       1.1  perseant 		metalbn -= -1 + (off << lbc);
    301       1.1  perseant 	}
    302       1.1  perseant 	if (nump)
    303       1.1  perseant 		*nump = numlevels;
    304       1.1  perseant 	return (0);
    305       1.1  perseant }
    306       1.1  perseant 
    307       1.1  perseant int
    308       1.1  perseant lfs_vop_bmap(struct uvnode * vp, daddr_t lbn, daddr_t * daddrp)
    309       1.1  perseant {
    310      1.37  dholland 	return ulfs_bmaparray(vp->v_fs, vp, lbn, daddrp, NULL, NULL);
    311       1.1  perseant }
    312       1.1  perseant 
    313       1.1  perseant /* Search a block for a specific dinode. */
    314      1.56  dholland union lfs_dinode *
    315      1.56  dholland lfs_ifind(struct lfs *fs, ino_t ino, struct ubuf *bp)
    316       1.1  perseant {
    317      1.56  dholland 	union lfs_dinode *ldip;
    318      1.56  dholland 	unsigned i, num;
    319       1.1  perseant 
    320      1.56  dholland 	num = LFS_INOPB(fs);
    321       1.1  perseant 
    322       1.1  perseant 	/*
    323       1.1  perseant 	 * Read the inode block backwards, since later versions of the
    324       1.1  perseant 	 * inode will supercede earlier ones.  Though it is unlikely, it is
    325       1.1  perseant 	 * possible that the same inode will appear in the same inode block.
    326       1.1  perseant 	 */
    327      1.56  dholland 	for (i = num; i-- > 0; ) {
    328      1.56  dholland 		ldip = DINO_IN_BLOCK(fs, bp->b_data, i);
    329      1.56  dholland 		if (lfs_dino_getinumber(fs, ldip) == ino)
    330       1.1  perseant 			return (ldip);
    331      1.56  dholland 	}
    332       1.1  perseant 	return NULL;
    333       1.1  perseant }
    334       1.1  perseant 
    335       1.1  perseant /*
    336       1.1  perseant  * lfs_raw_vget makes us a new vnode from the inode at the given disk address.
    337       1.1  perseant  * XXX it currently loses atime information.
    338       1.1  perseant  */
    339       1.1  perseant struct uvnode *
    340      1.61  dholland lfs_raw_vget(struct lfs * fs, ino_t ino, int fd, daddr_t daddr)
    341       1.1  perseant {
    342       1.1  perseant 	struct uvnode *vp;
    343       1.1  perseant 	struct inode *ip;
    344      1.56  dholland 	union lfs_dinode *dip;
    345       1.1  perseant 	struct ubuf *bp;
    346      1.10  perseant 	int i, hash;
    347       1.1  perseant 
    348      1.26  christos 	vp = ecalloc(1, sizeof(*vp));
    349       1.1  perseant 	vp->v_fd = fd;
    350       1.1  perseant 	vp->v_fs = fs;
    351       1.1  perseant 	vp->v_usecount = 0;
    352       1.1  perseant 	vp->v_strategy_op = lfs_vop_strategy;
    353       1.1  perseant 	vp->v_bwrite_op = lfs_vop_bwrite;
    354       1.1  perseant 	vp->v_bmap_op = lfs_vop_bmap;
    355       1.5      yamt 	LIST_INIT(&vp->v_cleanblkhd);
    356       1.5      yamt 	LIST_INIT(&vp->v_dirtyblkhd);
    357       1.1  perseant 
    358      1.26  christos 	ip = ecalloc(1, sizeof(*ip));
    359      1.26  christos 
    360      1.57  dholland 	ip->i_din = dip = ecalloc(1, sizeof(*dip));
    361       1.2      fvdl 
    362       1.1  perseant 	/* Initialize the inode -- from lfs_vcreate. */
    363      1.26  christos 	ip->inode_ext.lfs = ecalloc(1, sizeof(*ip->inode_ext.lfs));
    364       1.1  perseant 	vp->v_data = ip;
    365       1.1  perseant 	/* ip->i_vnode = vp; */
    366       1.1  perseant 	ip->i_number = ino;
    367       1.1  perseant 	ip->i_lockf = 0;
    368       1.1  perseant 	ip->i_lfs_effnblks = 0;
    369       1.1  perseant 	ip->i_flag = 0;
    370       1.1  perseant 
    371       1.1  perseant 	/* Load inode block and find inode */
    372       1.8  perseant 	if (daddr > 0) {
    373      1.47  dholland 		bread(fs->lfs_devvp, LFS_FSBTODB(fs, daddr), lfs_sb_getibsize(fs),
    374      1.44    chopps 		    0, &bp);
    375       1.8  perseant 		bp->b_flags |= B_AGE;
    376       1.8  perseant 		dip = lfs_ifind(fs, ino, bp);
    377       1.8  perseant 		if (dip == NULL) {
    378      1.27        ad 			brelse(bp, 0);
    379  1.71.2.1  pgoyette 			free(ip->i_din);
    380  1.71.2.1  pgoyette 			free(ip->inode_ext.lfs);
    381       1.8  perseant 			free(ip);
    382       1.8  perseant 			free(vp);
    383       1.8  perseant 			return NULL;
    384       1.8  perseant 		}
    385      1.57  dholland 		lfs_copy_dinode(fs, ip->i_din, dip);
    386      1.27        ad 		brelse(bp, 0);
    387       1.1  perseant 	}
    388       1.1  perseant 	ip->i_number = ino;
    389       1.9  perseant 	/* ip->i_devvp = fs->lfs_devvp; */
    390       1.1  perseant 	ip->i_lfs = fs;
    391       1.1  perseant 
    392      1.58  dholland 	ip->i_lfs_effnblks = lfs_dino_getblocks(fs, ip->i_din);
    393      1.58  dholland 	ip->i_lfs_osize = lfs_dino_getsize(fs, ip->i_din);
    394       1.1  perseant #if 0
    395      1.58  dholland 	if (lfs_sb_getversion(fs) > 1) {
    396      1.58  dholland 		lfs_dino_setatime(fs, ip->i_din, ts.tv_sec);
    397      1.58  dholland 		lfs_dino_setatimensec(fs, ip->i_din, ts.tv_nsec);
    398       1.1  perseant 	}
    399       1.1  perseant #endif
    400       1.1  perseant 
    401      1.37  dholland 	memset(ip->i_lfs_fragsize, 0, ULFS_NDADDR * sizeof(*ip->i_lfs_fragsize));
    402      1.37  dholland 	for (i = 0; i < ULFS_NDADDR; i++)
    403      1.58  dholland 		if (lfs_dino_getdb(fs, ip->i_din, i) != 0)
    404      1.40  christos 			ip->i_lfs_fragsize[i] = lfs_blksize(fs, ip, i);
    405       1.6      yamt 
    406       1.6      yamt 	++nvnodes;
    407      1.11    martin 	hash = ((int)(intptr_t)fs + ino) & (VNODE_HASH_MAX - 1);
    408      1.10  perseant 	LIST_INSERT_HEAD(&getvnodelist[hash], vp, v_getvnodes);
    409       1.6      yamt 	LIST_INSERT_HEAD(&vnodelist, vp, v_mntvnodes);
    410       1.1  perseant 
    411       1.1  perseant 	return vp;
    412       1.1  perseant }
    413       1.1  perseant 
    414       1.1  perseant static struct uvnode *
    415       1.1  perseant lfs_vget(void *vfs, ino_t ino)
    416       1.1  perseant {
    417       1.1  perseant 	struct lfs *fs = (struct lfs *)vfs;
    418      1.61  dholland 	daddr_t daddr;
    419       1.1  perseant 	struct ubuf *bp;
    420       1.1  perseant 	IFILE *ifp;
    421       1.1  perseant 
    422       1.1  perseant 	LFS_IENTRY(ifp, fs, ino, bp);
    423      1.53  dholland 	daddr = lfs_if_getdaddr(fs, ifp);
    424      1.27        ad 	brelse(bp, 0);
    425      1.47  dholland 	if (daddr <= 0 || lfs_dtosn(fs, daddr) >= lfs_sb_getnseg(fs))
    426       1.1  perseant 		return NULL;
    427       1.1  perseant 	return lfs_raw_vget(fs, ino, fs->lfs_ivnode->v_fd, daddr);
    428       1.1  perseant }
    429       1.1  perseant 
    430      1.59  dholland /*
    431      1.59  dholland  * Check superblock magic number and checksum.
    432      1.59  dholland  * Sets lfs_is64 and lfs_dobyteswap.
    433      1.59  dholland  */
    434       1.1  perseant static int
    435       1.1  perseant check_sb(struct lfs *fs)
    436       1.1  perseant {
    437       1.1  perseant 	u_int32_t checksum;
    438      1.52  dholland 	u_int32_t magic;
    439       1.1  perseant 
    440      1.52  dholland 	/* we can read the magic out of either the 32-bit or 64-bit dlfs */
    441      1.52  dholland 	magic = fs->lfs_dlfs_u.u_32.dlfs_magic;
    442      1.52  dholland 
    443      1.69  dholland 	switch (magic) {
    444      1.69  dholland 	    case LFS_MAGIC:
    445      1.69  dholland 		fs->lfs_is64 = false;
    446      1.69  dholland 		fs->lfs_dobyteswap = false;
    447      1.69  dholland 		break;
    448      1.69  dholland 	    case LFS_MAGIC_SWAPPED:
    449      1.69  dholland 		fs->lfs_is64 = false;
    450      1.69  dholland 		fs->lfs_dobyteswap = true;
    451      1.69  dholland 		break;
    452      1.69  dholland 	    case LFS64_MAGIC:
    453      1.69  dholland 		fs->lfs_is64 = true;
    454      1.69  dholland 		fs->lfs_dobyteswap = false;
    455      1.69  dholland 		break;
    456      1.69  dholland 	    case LFS64_MAGIC_SWAPPED:
    457      1.69  dholland 		fs->lfs_is64 = true;
    458      1.69  dholland 		fs->lfs_dobyteswap = true;
    459      1.69  dholland 		break;
    460      1.69  dholland 	    default:
    461       1.1  perseant 		printf("Superblock magic number (0x%lx) does not match "
    462      1.52  dholland 		       "expected 0x%lx\n", (unsigned long) magic,
    463       1.1  perseant 		       (unsigned long) LFS_MAGIC);
    464       1.1  perseant 		return 1;
    465       1.1  perseant 	}
    466      1.59  dholland 
    467       1.1  perseant 	/* checksum */
    468      1.52  dholland 	checksum = lfs_sb_cksum(fs);
    469      1.47  dholland 	if (lfs_sb_getcksum(fs) != checksum) {
    470       1.1  perseant 		printf("Superblock checksum (%lx) does not match computed checksum (%lx)\n",
    471      1.47  dholland 		    (unsigned long) lfs_sb_getcksum(fs), (unsigned long) checksum);
    472       1.1  perseant 		return 1;
    473       1.1  perseant 	}
    474       1.1  perseant 	return 0;
    475       1.1  perseant }
    476       1.1  perseant 
    477       1.1  perseant /* Initialize LFS library; load superblocks and choose which to use. */
    478       1.1  perseant struct lfs *
    479       1.8  perseant lfs_init(int devfd, daddr_t sblkno, daddr_t idaddr, int dummy_read, int debug)
    480       1.1  perseant {
    481       1.1  perseant 	struct uvnode *devvp;
    482       1.1  perseant 	struct ubuf *bp;
    483       1.1  perseant 	int tryalt;
    484       1.1  perseant 	struct lfs *fs, *altfs;
    485       1.1  perseant 
    486       1.1  perseant 	vfs_init();
    487       1.1  perseant 
    488      1.26  christos 	devvp = ecalloc(1, sizeof(*devvp));
    489       1.1  perseant 	devvp->v_fs = NULL;
    490       1.1  perseant 	devvp->v_fd = devfd;
    491       1.1  perseant 	devvp->v_strategy_op = raw_vop_strategy;
    492       1.1  perseant 	devvp->v_bwrite_op = raw_vop_bwrite;
    493       1.1  perseant 	devvp->v_bmap_op = raw_vop_bmap;
    494       1.5      yamt 	LIST_INIT(&devvp->v_cleanblkhd);
    495       1.5      yamt 	LIST_INIT(&devvp->v_dirtyblkhd);
    496       1.1  perseant 
    497       1.1  perseant 	tryalt = 0;
    498       1.8  perseant 	if (dummy_read) {
    499       1.8  perseant 		if (sblkno == 0)
    500      1.32   mlelstv 			sblkno = LFS_LABELPAD / dev_bsize;
    501      1.26  christos 		fs = ecalloc(1, sizeof(*fs));
    502       1.9  perseant 		fs->lfs_devvp = devvp;
    503       1.8  perseant 	} else {
    504       1.8  perseant 		if (sblkno == 0) {
    505      1.32   mlelstv 			sblkno = LFS_LABELPAD / dev_bsize;
    506       1.8  perseant 			tryalt = 1;
    507       1.8  perseant 		} else if (debug) {
    508       1.8  perseant 			printf("No -b flag given, not attempting to verify checkpoint\n");
    509       1.8  perseant 		}
    510      1.32   mlelstv 
    511      1.32   mlelstv 		dev_bsize = DEV_BSIZE;
    512      1.32   mlelstv 
    513      1.44    chopps 		(void)bread(devvp, sblkno, LFS_SBPAD, 0, &bp);
    514      1.26  christos 		fs = ecalloc(1, sizeof(*fs));
    515      1.52  dholland 		__CTASSERT(sizeof(struct dlfs) == sizeof(struct dlfs64));
    516      1.52  dholland 		memcpy(&fs->lfs_dlfs_u, bp->b_data, sizeof(struct dlfs));
    517       1.9  perseant 		fs->lfs_devvp = devvp;
    518       1.1  perseant 		bp->b_flags |= B_INVAL;
    519      1.27        ad 		brelse(bp, 0);
    520      1.32   mlelstv 
    521      1.47  dholland 		dev_bsize = lfs_sb_getfsize(fs) >> lfs_sb_getfsbtodb(fs);
    522       1.8  perseant 
    523       1.8  perseant 		if (tryalt) {
    524      1.47  dholland 			(void)bread(devvp, LFS_FSBTODB(fs, lfs_sb_getsboff(fs, 1)),
    525      1.44    chopps 		    	LFS_SBPAD, 0, &bp);
    526      1.26  christos 			altfs = ecalloc(1, sizeof(*altfs));
    527      1.52  dholland 			memcpy(&altfs->lfs_dlfs_u, bp->b_data,
    528      1.52  dholland 			       sizeof(struct dlfs));
    529       1.9  perseant 			altfs->lfs_devvp = devvp;
    530       1.8  perseant 			bp->b_flags |= B_INVAL;
    531      1.27        ad 			brelse(bp, 0);
    532       1.8  perseant 
    533      1.46  dholland 			if (check_sb(fs) || lfs_sb_getidaddr(fs) <= 0) {
    534       1.1  perseant 				if (debug)
    535       1.8  perseant 					printf("Primary superblock is no good, using first alternate\n");
    536       1.8  perseant 				free(fs);
    537       1.8  perseant 				fs = altfs;
    538       1.1  perseant 			} else {
    539       1.8  perseant 				/* If both superblocks check out, try verification */
    540       1.8  perseant 				if (check_sb(altfs)) {
    541       1.8  perseant 					if (debug)
    542       1.8  perseant 						printf("First alternate superblock is no good, using primary\n");
    543       1.1  perseant 					free(altfs);
    544       1.1  perseant 				} else {
    545       1.8  perseant 					if (lfs_verify(fs, altfs, devvp, debug) == fs) {
    546       1.8  perseant 						free(altfs);
    547       1.8  perseant 					} else {
    548       1.8  perseant 						free(fs);
    549       1.8  perseant 						fs = altfs;
    550       1.8  perseant 					}
    551       1.1  perseant 				}
    552       1.1  perseant 			}
    553       1.1  perseant 		}
    554       1.8  perseant 		if (check_sb(fs)) {
    555       1.8  perseant 			free(fs);
    556       1.8  perseant 			return NULL;
    557       1.8  perseant 		}
    558       1.1  perseant 	}
    559       1.8  perseant 
    560       1.1  perseant 	/* Compatibility */
    561      1.51  dholland 	if (lfs_sb_getversion(fs) < 2) {
    562      1.47  dholland 		lfs_sb_setsumsize(fs, LFS_V1_SUMMARY_SIZE);
    563      1.47  dholland 		lfs_sb_setibsize(fs, lfs_sb_getbsize(fs));
    564      1.47  dholland 		lfs_sb_sets0addr(fs, lfs_sb_getsboff(fs, 0));
    565      1.46  dholland 		lfs_sb_settstamp(fs, lfs_sb_getotstamp(fs));
    566      1.47  dholland 		lfs_sb_setfsbtodb(fs, 0);
    567       1.1  perseant 	}
    568       1.8  perseant 
    569       1.8  perseant 	if (!dummy_read) {
    570      1.26  christos 		fs->lfs_suflags = emalloc(2 * sizeof(u_int32_t *));
    571      1.47  dholland 		fs->lfs_suflags[0] = emalloc(lfs_sb_getnseg(fs) * sizeof(u_int32_t));
    572      1.47  dholland 		fs->lfs_suflags[1] = emalloc(lfs_sb_getnseg(fs) * sizeof(u_int32_t));
    573       1.8  perseant 	}
    574       1.1  perseant 
    575       1.1  perseant 	if (idaddr == 0)
    576      1.46  dholland 		idaddr = lfs_sb_getidaddr(fs);
    577      1.10  perseant 	else
    578      1.46  dholland 		lfs_sb_setidaddr(fs, idaddr);
    579       1.8  perseant 	/* NB: If dummy_read!=0, idaddr==0 here so we get a fake inode. */
    580      1.60  dholland 	fs->lfs_ivnode = lfs_raw_vget(fs, LFS_IFILE_INUM,
    581      1.46  dholland 		devvp->v_fd, idaddr);
    582      1.21  perseant 	if (fs->lfs_ivnode == NULL)
    583      1.21  perseant 		return NULL;
    584       1.1  perseant 
    585       1.1  perseant 	register_vget((void *)fs, lfs_vget);
    586       1.1  perseant 
    587       1.1  perseant 	return fs;
    588       1.1  perseant }
    589       1.1  perseant 
    590       1.1  perseant /*
    591       1.1  perseant  * Check partial segment validity between fs->lfs_offset and the given goal.
    592      1.12  perseant  *
    593      1.12  perseant  * If goal == 0, just keep on going until the segments stop making sense,
    594      1.12  perseant  * and return the address of the last valid partial segment.
    595      1.12  perseant  *
    596      1.12  perseant  * If goal != 0, return the address of the first partial segment that failed,
    597      1.12  perseant  * or "goal" if we reached it without failure (the partial segment *at* goal
    598      1.12  perseant  * need not be valid).
    599       1.1  perseant  */
    600      1.62  dholland daddr_t
    601      1.62  dholland try_verify(struct lfs *osb, struct uvnode *devvp, daddr_t goal, int debug)
    602       1.1  perseant {
    603      1.62  dholland 	daddr_t daddr, odaddr;
    604       1.1  perseant 	SEGSUM *sp;
    605      1.25  perseant 	int i, bc, hitclean;
    606       1.1  perseant 	struct ubuf *bp;
    607      1.62  dholland 	daddr_t nodirop_daddr;
    608       1.1  perseant 	u_int64_t serial;
    609       1.1  perseant 
    610      1.25  perseant 	bc = 0;
    611      1.25  perseant 	hitclean = 0;
    612      1.12  perseant 	odaddr = -1;
    613      1.46  dholland 	daddr = lfs_sb_getoffset(osb);
    614       1.1  perseant 	nodirop_daddr = daddr;
    615      1.46  dholland 	serial = lfs_sb_getserial(osb);
    616       1.1  perseant 	while (daddr != goal) {
    617      1.24  perseant 		/*
    618      1.24  perseant 		 * Don't mistakenly read a superblock, if there is one here.
    619      1.24  perseant 		 */
    620      1.40  christos 		if (lfs_sntod(osb, lfs_dtosn(osb, daddr)) == daddr) {
    621      1.47  dholland 			if (daddr == lfs_sb_gets0addr(osb))
    622      1.40  christos 				daddr += lfs_btofsb(osb, LFS_LABELPAD);
    623      1.24  perseant 			for (i = 0; i < LFS_MAXNUMSB; i++) {
    624      1.62  dholland 				/* XXX dholland 20150828 I think this is wrong */
    625      1.47  dholland 				if (lfs_sb_getsboff(osb, i) < daddr)
    626      1.24  perseant 					break;
    627      1.47  dholland 				if (lfs_sb_getsboff(osb, i) == daddr)
    628      1.40  christos 					daddr += lfs_btofsb(osb, LFS_SBPAD);
    629      1.24  perseant 			}
    630      1.24  perseant 		}
    631      1.24  perseant 
    632       1.1  perseant 		/* Read in summary block */
    633      1.47  dholland 		bread(devvp, LFS_FSBTODB(osb, daddr), lfs_sb_getsumsize(osb),
    634      1.44    chopps 		    0, &bp);
    635       1.1  perseant 		sp = (SEGSUM *)bp->b_data;
    636       1.1  perseant 
    637       1.1  perseant 		/*
    638      1.24  perseant 		 * Check for a valid segment summary belonging to our fs.
    639       1.1  perseant 		 */
    640      1.54  dholland 		if (lfs_ss_getmagic(osb, sp) != SS_MAGIC ||
    641      1.54  dholland 		    lfs_ss_getident(osb, sp) != lfs_sb_getident(osb) ||
    642      1.54  dholland 		    lfs_ss_getserial(osb, sp) < serial ||	/* XXX strengthen this */
    643      1.54  dholland 		    lfs_ss_getsumsum(osb, sp) !=
    644      1.54  dholland 		            cksum((char *)sp + lfs_ss_getsumstart(osb),
    645      1.54  dholland 				  lfs_sb_getsumsize(osb) - lfs_ss_getsumstart(osb))) {
    646      1.27        ad 			brelse(bp, 0);
    647      1.24  perseant 			if (debug) {
    648      1.54  dholland 				if (lfs_ss_getmagic(osb, sp) != SS_MAGIC)
    649      1.47  dholland 					pwarn("pseg at 0x%jx: "
    650      1.24  perseant 					      "wrong magic number\n",
    651      1.47  dholland 					      (uintmax_t)daddr);
    652      1.54  dholland 				else if (lfs_ss_getident(osb, sp) != lfs_sb_getident(osb))
    653      1.47  dholland 					pwarn("pseg at 0x%jx: "
    654      1.47  dholland 					      "expected ident %jx, got %jx\n",
    655      1.47  dholland 					      (uintmax_t)daddr,
    656      1.54  dholland 					      (uintmax_t)lfs_ss_getident(osb, sp),
    657      1.47  dholland 					      (uintmax_t)lfs_sb_getident(osb));
    658      1.54  dholland 				else if (lfs_ss_getserial(osb, sp) >= serial)
    659      1.47  dholland 					pwarn("pseg at 0x%jx: "
    660      1.47  dholland 					      "serial %d < %d\n",
    661      1.47  dholland 					      (uintmax_t)daddr,
    662      1.54  dholland 					      (int)lfs_ss_getserial(osb, sp), (int)serial);
    663      1.24  perseant 				else
    664      1.47  dholland 					pwarn("pseg at 0x%jx: "
    665      1.24  perseant 					      "summary checksum wrong\n",
    666      1.47  dholland 					      (uintmax_t)daddr);
    667       1.1  perseant 			}
    668       1.1  perseant 			break;
    669       1.1  perseant 		}
    670      1.54  dholland 		if (debug && lfs_ss_getserial(osb, sp) != serial)
    671      1.25  perseant 			pwarn("warning, serial=%d ss_serial=%d\n",
    672      1.54  dholland 				(int)serial, (int)lfs_ss_getserial(osb, sp));
    673       1.1  perseant 		++serial;
    674       1.1  perseant 		bc = check_summary(osb, sp, daddr, debug, devvp, NULL);
    675       1.1  perseant 		if (bc == 0) {
    676      1.27        ad 			brelse(bp, 0);
    677       1.1  perseant 			break;
    678       1.1  perseant 		}
    679      1.24  perseant 		if (debug)
    680      1.50  dholland 			pwarn("summary good: 0x%x/%d\n", (uintmax_t)daddr,
    681      1.54  dholland 			      (int)lfs_ss_getserial(osb, sp));
    682       1.1  perseant 		assert (bc > 0);
    683       1.1  perseant 		odaddr = daddr;
    684      1.47  dholland 		daddr += lfs_btofsb(osb, lfs_sb_getsumsize(osb) + bc);
    685      1.40  christos 		if (lfs_dtosn(osb, odaddr) != lfs_dtosn(osb, daddr) ||
    686      1.40  christos 		    lfs_dtosn(osb, daddr) != lfs_dtosn(osb, daddr +
    687      1.47  dholland 			lfs_btofsb(osb, lfs_sb_getsumsize(osb) + lfs_sb_getbsize(osb)) - 1)) {
    688      1.54  dholland 			daddr = lfs_ss_getnext(osb, sp);
    689       1.1  perseant 		}
    690      1.24  perseant 
    691      1.24  perseant 		/*
    692      1.24  perseant 		 * Check for the beginning and ending of a sequence of
    693      1.25  perseant 		 * dirops.  Writes from the cleaner never involve new
    694      1.25  perseant 		 * information, and are always checkpoints; so don't try
    695      1.25  perseant 		 * to roll forward through them.  Likewise, psegs written
    696      1.25  perseant 		 * by a previous roll-forward attempt are not interesting.
    697      1.24  perseant 		 */
    698      1.54  dholland 		if (lfs_ss_getflags(osb, sp) & (SS_CLEAN | SS_RFW))
    699      1.25  perseant 			hitclean = 1;
    700      1.54  dholland 		if (hitclean == 0 && (lfs_ss_getflags(osb, sp) & SS_CONT) == 0)
    701       1.1  perseant 			nodirop_daddr = daddr;
    702      1.24  perseant 
    703      1.27        ad 		brelse(bp, 0);
    704       1.1  perseant 	}
    705       1.1  perseant 
    706       1.1  perseant 	if (goal == 0)
    707       1.1  perseant 		return nodirop_daddr;
    708       1.1  perseant 	else
    709       1.1  perseant 		return daddr;
    710       1.1  perseant }
    711       1.1  perseant 
    712       1.1  perseant /* Use try_verify to check whether the newer superblock is valid. */
    713       1.1  perseant struct lfs *
    714       1.1  perseant lfs_verify(struct lfs *sb0, struct lfs *sb1, struct uvnode *devvp, int debug)
    715       1.1  perseant {
    716      1.62  dholland 	daddr_t daddr;
    717       1.1  perseant 	struct lfs *osb, *nsb;
    718       1.1  perseant 
    719       1.1  perseant 	/*
    720       1.1  perseant 	 * Verify the checkpoint of the newer superblock,
    721       1.1  perseant 	 * if the timestamp/serial number of the two superblocks is
    722       1.1  perseant 	 * different.
    723       1.1  perseant 	 */
    724       1.1  perseant 
    725      1.14     lukem 	osb = NULL;
    726       1.1  perseant 	if (debug)
    727      1.46  dholland 		pwarn("sb0 %ju, sb1 %ju",
    728      1.46  dholland 		      (uintmax_t) lfs_sb_getserial(sb0),
    729      1.46  dholland 		      (uintmax_t) lfs_sb_getserial(sb1));
    730       1.1  perseant 
    731      1.51  dholland 	if ((lfs_sb_getversion(sb0) == 1 &&
    732      1.46  dholland 		lfs_sb_getotstamp(sb0) != lfs_sb_getotstamp(sb1)) ||
    733      1.51  dholland 	    (lfs_sb_getversion(sb0) > 1 &&
    734      1.46  dholland 		lfs_sb_getserial(sb0) != lfs_sb_getserial(sb1))) {
    735      1.51  dholland 		if (lfs_sb_getversion(sb0) == 1) {
    736      1.46  dholland 			if (lfs_sb_getotstamp(sb0) > lfs_sb_getotstamp(sb1)) {
    737       1.1  perseant 				osb = sb1;
    738       1.1  perseant 				nsb = sb0;
    739       1.1  perseant 			} else {
    740       1.1  perseant 				osb = sb0;
    741       1.1  perseant 				nsb = sb1;
    742       1.1  perseant 			}
    743       1.1  perseant 		} else {
    744      1.46  dholland 			if (lfs_sb_getserial(sb0) > lfs_sb_getserial(sb1)) {
    745       1.1  perseant 				osb = sb1;
    746       1.1  perseant 				nsb = sb0;
    747       1.1  perseant 			} else {
    748       1.1  perseant 				osb = sb0;
    749       1.1  perseant 				nsb = sb1;
    750       1.1  perseant 			}
    751       1.1  perseant 		}
    752       1.1  perseant 		if (debug) {
    753       1.1  perseant 			printf("Attempting to verify newer checkpoint...");
    754       1.1  perseant 			fflush(stdout);
    755       1.1  perseant 		}
    756      1.46  dholland 		daddr = try_verify(osb, devvp, lfs_sb_getoffset(nsb), debug);
    757       1.1  perseant 
    758       1.1  perseant 		if (debug)
    759       1.1  perseant 			printf("done.\n");
    760      1.46  dholland 		if (daddr == lfs_sb_getoffset(nsb)) {
    761      1.46  dholland 			pwarn("** Newer checkpoint verified; recovered %jd seconds of data\n",
    762      1.46  dholland 			    (intmax_t)(lfs_sb_gettstamp(nsb) - lfs_sb_gettstamp(osb)));
    763       1.1  perseant 			sbdirty();
    764       1.1  perseant 		} else {
    765      1.46  dholland 			pwarn("** Newer checkpoint invalid; lost %jd seconds of data\n", (intmax_t)(lfs_sb_gettstamp(nsb) - lfs_sb_gettstamp(osb)));
    766       1.1  perseant 		}
    767      1.46  dholland 		return (daddr == lfs_sb_getoffset(nsb) ? nsb : osb);
    768       1.1  perseant 	}
    769       1.1  perseant 	/* Nothing to check */
    770       1.1  perseant 	return osb;
    771       1.1  perseant }
    772       1.1  perseant 
    773       1.1  perseant /* Verify a partial-segment summary; return the number of bytes on disk. */
    774       1.1  perseant int
    775      1.62  dholland check_summary(struct lfs *fs, SEGSUM *sp, daddr_t pseg_addr, int debug,
    776      1.62  dholland 	      struct uvnode *devvp, void (func(daddr_t, FINFO *)))
    777       1.1  perseant {
    778       1.1  perseant 	FINFO *fp;
    779       1.1  perseant 	int bc;			/* Bytes in partial segment */
    780       1.1  perseant 	int nblocks;
    781      1.62  dholland 	daddr_t daddr;
    782      1.64  dholland 	IINFO *iibase, *iip;
    783       1.1  perseant 	struct ubuf *bp;
    784       1.1  perseant 	int i, j, k, datac, len;
    785      1.66  dholland 	lfs_checkword *datap;
    786       1.1  perseant 	u_int32_t ccksum;
    787       1.1  perseant 
    788       1.1  perseant 	/* We've already checked the sumsum, just do the data bounds and sum */
    789       1.1  perseant 
    790       1.1  perseant 	/* Count the blocks. */
    791      1.54  dholland 	nblocks = howmany(lfs_ss_getninos(fs, sp), LFS_INOPB(fs));
    792      1.51  dholland 	bc = nblocks << (lfs_sb_getversion(fs) > 1 ? lfs_sb_getffshift(fs) : lfs_sb_getbshift(fs));
    793       1.1  perseant 	assert(bc >= 0);
    794       1.1  perseant 
    795      1.54  dholland 	fp = SEGSUM_FINFOBASE(fs, sp);
    796      1.54  dholland 	for (i = 0; i < lfs_ss_getnfinfo(fs, sp); i++) {
    797      1.55  dholland 		nblocks += lfs_fi_getnblocks(fs, fp);
    798      1.55  dholland 		bc += lfs_fi_getlastlength(fs, fp) + ((lfs_fi_getnblocks(fs, fp) - 1)
    799      1.47  dholland 					   << lfs_sb_getbshift(fs));
    800       1.1  perseant 		assert(bc >= 0);
    801      1.54  dholland 		fp = NEXT_FINFO(fs, fp);
    802      1.47  dholland 		if (((char *)fp) - (char *)sp > lfs_sb_getsumsize(fs))
    803      1.24  perseant 			return 0;
    804       1.1  perseant 	}
    805      1.26  christos 	datap = emalloc(nblocks * sizeof(*datap));
    806       1.1  perseant 	datac = 0;
    807       1.1  perseant 
    808      1.64  dholland 	iibase = SEGSUM_IINFOSTART(fs, sp);
    809       1.1  perseant 
    810      1.64  dholland 	iip = iibase;
    811      1.47  dholland 	daddr = pseg_addr + lfs_btofsb(fs, lfs_sb_getsumsize(fs));
    812      1.68  dholland 	fp = SEGSUM_FINFOBASE(fs, sp);
    813       1.1  perseant 	for (i = 0, j = 0;
    814      1.54  dholland 	     i < lfs_ss_getnfinfo(fs, sp) || j < howmany(lfs_ss_getninos(fs, sp), LFS_INOPB(fs)); i++) {
    815      1.64  dholland 		if (i >= lfs_ss_getnfinfo(fs, sp) && lfs_ii_getblock(fs, iip) != daddr) {
    816      1.62  dholland 			pwarn("Not enough inode blocks in pseg at 0x%jx: "
    817      1.62  dholland 			      "found %d, wanted %d\n",
    818      1.54  dholland 			      pseg_addr, j, howmany(lfs_ss_getninos(fs, sp),
    819      1.54  dholland 						    LFS_INOPB(fs)));
    820       1.1  perseant 			if (debug)
    821      1.64  dholland 				pwarn("iip=0x%jx, daddr=0x%jx\n",
    822      1.64  dholland 				    (uintmax_t)lfs_ii_getblock(fs, iip),
    823      1.64  dholland 				    (intmax_t)daddr);
    824       1.1  perseant 			break;
    825       1.1  perseant 		}
    826      1.64  dholland 		while (j < howmany(lfs_ss_getninos(fs, sp), LFS_INOPB(fs)) && lfs_ii_getblock(fs, iip) == daddr) {
    827      1.47  dholland 			bread(devvp, LFS_FSBTODB(fs, daddr), lfs_sb_getibsize(fs),
    828      1.44    chopps 			    0, &bp);
    829      1.66  dholland 			datap[datac++] = ((lfs_checkword *)bp->b_data)[0];
    830      1.27        ad 			brelse(bp, 0);
    831       1.1  perseant 
    832       1.1  perseant 			++j;
    833      1.47  dholland 			daddr += lfs_btofsb(fs, lfs_sb_getibsize(fs));
    834      1.64  dholland 			iip = NEXTLOWER_IINFO(fs, iip);
    835       1.1  perseant 		}
    836      1.54  dholland 		if (i < lfs_ss_getnfinfo(fs, sp)) {
    837       1.1  perseant 			if (func)
    838       1.1  perseant 				func(daddr, fp);
    839      1.55  dholland 			for (k = 0; k < lfs_fi_getnblocks(fs, fp); k++) {
    840      1.55  dholland 				len = (k == lfs_fi_getnblocks(fs, fp) - 1 ?
    841      1.55  dholland 				       lfs_fi_getlastlength(fs, fp)
    842      1.46  dholland 				       : lfs_sb_getbsize(fs));
    843      1.40  christos 				bread(devvp, LFS_FSBTODB(fs, daddr), len,
    844      1.44    chopps 				    0, &bp);
    845      1.66  dholland 				datap[datac++] = ((lfs_checkword *)bp->b_data)[0];
    846      1.27        ad 				brelse(bp, 0);
    847      1.40  christos 				daddr += lfs_btofsb(fs, len);
    848       1.1  perseant 			}
    849      1.54  dholland 			fp = NEXT_FINFO(fs, fp);
    850       1.1  perseant 		}
    851       1.1  perseant 	}
    852       1.1  perseant 
    853       1.1  perseant 	if (datac != nblocks) {
    854      1.50  dholland 		pwarn("Partial segment at 0x%jx expected %d blocks counted %d\n",
    855      1.50  dholland 		    (intmax_t)pseg_addr, nblocks, datac);
    856       1.1  perseant 	}
    857      1.66  dholland 	ccksum = cksum(datap, nblocks * sizeof(datap[0]));
    858       1.1  perseant 	/* Check the data checksum */
    859      1.54  dholland 	if (ccksum != lfs_ss_getdatasum(fs, sp)) {
    860      1.50  dholland 		pwarn("Partial segment at 0x%jx data checksum"
    861       1.1  perseant 		      " mismatch: given 0x%x, computed 0x%x\n",
    862      1.54  dholland 		      (uintmax_t)pseg_addr, lfs_ss_getdatasum(fs, sp), ccksum);
    863       1.1  perseant 		free(datap);
    864       1.1  perseant 		return 0;
    865       1.1  perseant 	}
    866       1.1  perseant 	free(datap);
    867       1.1  perseant 	assert(bc >= 0);
    868       1.1  perseant 	return bc;
    869       1.1  perseant }
    870       1.1  perseant 
    871       1.1  perseant /* print message and exit */
    872       1.1  perseant void
    873      1.43  dholland my_vpanic(int fatal, const char *fmt, va_list ap)
    874      1.43  dholland {
    875      1.43  dholland         (void) vprintf(fmt, ap);
    876      1.43  dholland 	exit(8);
    877      1.43  dholland }
    878      1.43  dholland 
    879      1.43  dholland void
    880       1.1  perseant call_panic(const char *fmt, ...)
    881       1.1  perseant {
    882       1.1  perseant 	va_list ap;
    883       1.1  perseant 
    884       1.1  perseant 	va_start(ap, fmt);
    885      1.43  dholland         panic_func(1, fmt, ap);
    886       1.1  perseant 	va_end(ap);
    887       1.1  perseant }
    888      1.16  perseant 
    889      1.16  perseant /* Allocate a new inode. */
    890      1.16  perseant struct uvnode *
    891      1.16  perseant lfs_valloc(struct lfs *fs, ino_t ino)
    892      1.16  perseant {
    893      1.16  perseant 	struct ubuf *bp, *cbp;
    894      1.53  dholland 	IFILE *ifp;
    895      1.16  perseant 	ino_t new_ino;
    896      1.16  perseant 	int error;
    897      1.16  perseant 	CLEANERINFO *cip;
    898      1.16  perseant 
    899      1.16  perseant 	/* Get the head of the freelist. */
    900      1.16  perseant 	LFS_GET_HEADFREE(fs, cip, cbp, &new_ino);
    901      1.16  perseant 
    902      1.16  perseant 	/*
    903      1.16  perseant 	 * Remove the inode from the free list and write the new start
    904      1.16  perseant 	 * of the free list into the superblock.
    905      1.16  perseant 	 */
    906      1.16  perseant 	LFS_IENTRY(ifp, fs, new_ino, bp);
    907      1.53  dholland 	if (lfs_if_getdaddr(fs, ifp) != LFS_UNUSED_DADDR)
    908      1.16  perseant 		panic("lfs_valloc: inuse inode %d on the free list", new_ino);
    909      1.53  dholland 	LFS_PUT_HEADFREE(fs, cip, cbp, lfs_if_getnextfree(fs, ifp));
    910      1.16  perseant 
    911      1.27        ad 	brelse(bp, 0);
    912      1.16  perseant 
    913      1.16  perseant 	/* Extend IFILE so that the next lfs_valloc will succeed. */
    914      1.46  dholland 	if (lfs_sb_getfreehd(fs) == LFS_UNUSED_INUM) {
    915      1.16  perseant 		if ((error = extend_ifile(fs)) != 0) {
    916      1.16  perseant 			LFS_PUT_HEADFREE(fs, cip, cbp, new_ino);
    917      1.16  perseant 			return NULL;
    918      1.16  perseant 		}
    919      1.16  perseant 	}
    920      1.16  perseant 
    921      1.16  perseant 	/* Set superblock modified bit and increment file count. */
    922      1.16  perseant         sbdirty();
    923      1.46  dholland 	lfs_sb_addnfiles(fs, 1);
    924      1.16  perseant 
    925      1.16  perseant         return lfs_raw_vget(fs, ino, fs->lfs_devvp->v_fd, 0x0);
    926      1.16  perseant }
    927      1.16  perseant 
    928      1.24  perseant #ifdef IN_FSCK_LFS
    929      1.24  perseant void reset_maxino(ino_t);
    930      1.24  perseant #endif
    931      1.24  perseant 
    932      1.16  perseant /*
    933      1.16  perseant  * Add a new block to the Ifile, to accommodate future file creations.
    934      1.16  perseant  */
    935      1.16  perseant int
    936      1.16  perseant extend_ifile(struct lfs *fs)
    937      1.16  perseant {
    938      1.16  perseant 	struct uvnode *vp;
    939      1.16  perseant 	struct inode *ip;
    940      1.53  dholland 	IFILE64 *ifp64;
    941      1.53  dholland 	IFILE32 *ifp32;
    942      1.16  perseant 	IFILE_V1 *ifp_v1;
    943      1.16  perseant 	struct ubuf *bp, *cbp;
    944      1.16  perseant 	daddr_t i, blkno, max;
    945      1.16  perseant 	ino_t oldlast;
    946      1.16  perseant 	CLEANERINFO *cip;
    947      1.16  perseant 
    948      1.16  perseant 	vp = fs->lfs_ivnode;
    949      1.16  perseant 	ip = VTOI(vp);
    950      1.58  dholland 	blkno = lfs_lblkno(fs, lfs_dino_getsize(fs, ip->i_din));
    951      1.16  perseant 
    952      1.58  dholland 	lfs_balloc(vp, lfs_dino_getsize(fs, ip->i_din), lfs_sb_getbsize(fs), &bp);
    953      1.58  dholland 	lfs_dino_setsize(fs, ip->i_din,
    954      1.58  dholland 	    lfs_dino_getsize(fs, ip->i_din) + lfs_sb_getbsize(fs));
    955      1.24  perseant 	ip->i_flag |= IN_MODIFIED;
    956      1.16  perseant 
    957      1.46  dholland 	i = (blkno - lfs_sb_getsegtabsz(fs) - lfs_sb_getcleansz(fs)) *
    958      1.46  dholland 		lfs_sb_getifpb(fs);
    959      1.16  perseant 	LFS_GET_HEADFREE(fs, cip, cbp, &oldlast);
    960      1.16  perseant 	LFS_PUT_HEADFREE(fs, cip, cbp, i);
    961      1.46  dholland 	max = i + lfs_sb_getifpb(fs);
    962      1.46  dholland 	lfs_sb_subbfree(fs, lfs_btofsb(fs, lfs_sb_getbsize(fs)));
    963      1.16  perseant 
    964      1.53  dholland 	if (fs->lfs_is64) {
    965      1.53  dholland 		for (ifp64 = (IFILE64 *)bp->b_data; i < max; ++ifp64) {
    966      1.53  dholland 			ifp64->if_version = 1;
    967      1.53  dholland 			ifp64->if_daddr = LFS_UNUSED_DADDR;
    968      1.53  dholland 			ifp64->if_nextfree = ++i;
    969      1.53  dholland 		}
    970      1.53  dholland 		ifp64--;
    971      1.53  dholland 		ifp64->if_nextfree = oldlast;
    972      1.53  dholland 	} else if (lfs_sb_getversion(fs) > 1) {
    973      1.53  dholland 		for (ifp32 = (IFILE32 *)bp->b_data; i < max; ++ifp32) {
    974      1.53  dholland 			ifp32->if_version = 1;
    975      1.53  dholland 			ifp32->if_daddr = LFS_UNUSED_DADDR;
    976      1.53  dholland 			ifp32->if_nextfree = ++i;
    977      1.53  dholland 		}
    978      1.53  dholland 		ifp32--;
    979      1.53  dholland 		ifp32->if_nextfree = oldlast;
    980      1.53  dholland 	} else {
    981      1.16  perseant 		for (ifp_v1 = (IFILE_V1 *)bp->b_data; i < max; ++ifp_v1) {
    982      1.16  perseant 			ifp_v1->if_version = 1;
    983      1.16  perseant 			ifp_v1->if_daddr = LFS_UNUSED_DADDR;
    984      1.16  perseant 			ifp_v1->if_nextfree = ++i;
    985      1.16  perseant 		}
    986      1.16  perseant 		ifp_v1--;
    987      1.16  perseant 		ifp_v1->if_nextfree = oldlast;
    988      1.16  perseant 	}
    989      1.16  perseant 	LFS_PUT_TAILFREE(fs, cip, cbp, max - 1);
    990      1.16  perseant 
    991      1.16  perseant 	LFS_BWRITE_LOG(bp);
    992      1.16  perseant 
    993      1.24  perseant #ifdef IN_FSCK_LFS
    994      1.58  dholland 	reset_maxino(((lfs_dino_getsize(fs, ip->i_din) >> lfs_sb_getbshift(fs))
    995      1.46  dholland 		      - lfs_sb_getsegtabsz(fs)
    996      1.46  dholland 		      - lfs_sb_getcleansz(fs)) * lfs_sb_getifpb(fs));
    997      1.24  perseant #endif
    998      1.16  perseant 	return 0;
    999      1.16  perseant }
   1000      1.16  perseant 
   1001      1.24  perseant /*
   1002      1.24  perseant  * Allocate a block, and to inode and filesystem block accounting for it
   1003      1.24  perseant  * and for any indirect blocks the may need to be created in order for
   1004      1.24  perseant  * this block to be created.
   1005      1.24  perseant  *
   1006      1.24  perseant  * Blocks which have never been accounted for (i.e., which "do not exist")
   1007      1.37  dholland  * have disk address 0, which is translated by ulfs_bmap to the special value
   1008      1.37  dholland  * UNASSIGNED == -1, as in the historical ULFS.
   1009      1.24  perseant  *
   1010      1.24  perseant  * Blocks which have been accounted for but which have not yet been written
   1011      1.24  perseant  * to disk are given the new special disk address UNWRITTEN == -2, so that
   1012      1.24  perseant  * they can be differentiated from completely new blocks.
   1013      1.24  perseant  */
   1014      1.24  perseant int
   1015      1.24  perseant lfs_balloc(struct uvnode *vp, off_t startoffset, int iosize, struct ubuf **bpp)
   1016      1.24  perseant {
   1017      1.24  perseant 	int offset;
   1018      1.24  perseant 	daddr_t daddr, idaddr;
   1019      1.24  perseant 	struct ubuf *ibp, *bp;
   1020      1.24  perseant 	struct inode *ip;
   1021      1.24  perseant 	struct lfs *fs;
   1022      1.37  dholland 	struct indir indirs[ULFS_NIADDR+2], *idp;
   1023      1.24  perseant 	daddr_t	lbn, lastblock;
   1024      1.32   mlelstv 	int bcount;
   1025      1.24  perseant 	int error, frags, i, nsize, osize, num;
   1026      1.24  perseant 
   1027      1.24  perseant 	ip = VTOI(vp);
   1028      1.24  perseant 	fs = ip->i_lfs;
   1029      1.40  christos 	offset = lfs_blkoff(fs, startoffset);
   1030      1.40  christos 	lbn = lfs_lblkno(fs, startoffset);
   1031      1.24  perseant 
   1032      1.24  perseant 	/*
   1033      1.24  perseant 	 * Three cases: it's a block beyond the end of file, it's a block in
   1034      1.24  perseant 	 * the file that may or may not have been assigned a disk address or
   1035      1.24  perseant 	 * we're writing an entire block.
   1036      1.24  perseant 	 *
   1037      1.24  perseant 	 * Note, if the daddr is UNWRITTEN, the block already exists in
   1038      1.24  perseant 	 * the cache (it was read or written earlier).	If so, make sure
   1039      1.24  perseant 	 * we don't count it as a new block or zero out its contents. If
   1040      1.24  perseant 	 * it did not, make sure we allocate any necessary indirect
   1041      1.24  perseant 	 * blocks.
   1042      1.24  perseant 	 *
   1043      1.24  perseant 	 * If we are writing a block beyond the end of the file, we need to
   1044      1.24  perseant 	 * check if the old last block was a fragment.	If it was, we need
   1045      1.24  perseant 	 * to rewrite it.
   1046      1.24  perseant 	 */
   1047      1.24  perseant 
   1048      1.24  perseant 	if (bpp)
   1049      1.24  perseant 		*bpp = NULL;
   1050      1.24  perseant 
   1051      1.24  perseant 	/* Check for block beyond end of file and fragment extension needed. */
   1052      1.58  dholland 	lastblock = lfs_lblkno(fs, lfs_dino_getsize(fs, ip->i_din));
   1053      1.37  dholland 	if (lastblock < ULFS_NDADDR && lastblock < lbn) {
   1054      1.40  christos 		osize = lfs_blksize(fs, ip, lastblock);
   1055      1.46  dholland 		if (osize < lfs_sb_getbsize(fs) && osize > 0) {
   1056      1.46  dholland 			if ((error = lfs_fragextend(vp, osize, lfs_sb_getbsize(fs),
   1057      1.24  perseant 						    lastblock,
   1058      1.24  perseant 						    (bpp ? &bp : NULL))))
   1059      1.24  perseant 				return (error);
   1060      1.58  dholland 			lfs_dino_setsize(fs, ip->i_din, (lastblock + 1) * lfs_sb_getbsize(fs));
   1061      1.24  perseant 			ip->i_flag |= IN_CHANGE | IN_UPDATE;
   1062      1.24  perseant 			if (bpp)
   1063      1.24  perseant 				(void) VOP_BWRITE(bp);
   1064      1.24  perseant 		}
   1065      1.24  perseant 	}
   1066      1.24  perseant 
   1067      1.24  perseant 	/*
   1068      1.24  perseant 	 * If the block we are writing is a direct block, it's the last
   1069      1.24  perseant 	 * block in the file, and offset + iosize is less than a full
   1070      1.24  perseant 	 * block, we can write one or more fragments.  There are two cases:
   1071      1.24  perseant 	 * the block is brand new and we should allocate it the correct
   1072      1.24  perseant 	 * size or it already exists and contains some fragments and
   1073      1.24  perseant 	 * may need to extend it.
   1074      1.24  perseant 	 */
   1075      1.58  dholland 	if (lbn < ULFS_NDADDR && lfs_lblkno(fs, lfs_dino_getsize(fs, ip->i_din)) <= lbn) {
   1076      1.40  christos 		osize = lfs_blksize(fs, ip, lbn);
   1077      1.40  christos 		nsize = lfs_fragroundup(fs, offset + iosize);
   1078      1.58  dholland 		if (lfs_lblktosize(fs, lbn) >= lfs_dino_getsize(fs, ip->i_din)) {
   1079      1.24  perseant 			/* Brand new block or fragment */
   1080      1.40  christos 			frags = lfs_numfrags(fs, nsize);
   1081      1.24  perseant 			if (bpp) {
   1082      1.24  perseant 				*bpp = bp = getblk(vp, lbn, nsize);
   1083      1.24  perseant 				bp->b_blkno = UNWRITTEN;
   1084      1.24  perseant 			}
   1085      1.32   mlelstv 			ip->i_lfs_effnblks += frags;
   1086      1.46  dholland 			lfs_sb_subbfree(fs, frags);
   1087      1.58  dholland 			lfs_dino_setdb(fs, ip->i_din, lbn, UNWRITTEN);
   1088      1.24  perseant 		} else {
   1089      1.24  perseant 			if (nsize <= osize) {
   1090      1.24  perseant 				/* No need to extend */
   1091      1.29   hannken 				if (bpp && (error = bread(vp, lbn, osize,
   1092      1.44    chopps 				    0, &bp)))
   1093      1.24  perseant 					return error;
   1094      1.24  perseant 			} else {
   1095      1.24  perseant 				/* Extend existing block */
   1096      1.24  perseant 				if ((error =
   1097      1.24  perseant 				     lfs_fragextend(vp, osize, nsize, lbn,
   1098      1.24  perseant 						    (bpp ? &bp : NULL))))
   1099      1.24  perseant 					return error;
   1100      1.24  perseant 			}
   1101      1.24  perseant 			if (bpp)
   1102      1.24  perseant 				*bpp = bp;
   1103      1.24  perseant 		}
   1104      1.24  perseant 		return 0;
   1105      1.24  perseant 	}
   1106      1.24  perseant 
   1107      1.37  dholland 	error = ulfs_bmaparray(fs, vp, lbn, &daddr, &indirs[0], &num);
   1108      1.24  perseant 	if (error)
   1109      1.24  perseant 		return (error);
   1110      1.24  perseant 
   1111      1.24  perseant 	/*
   1112      1.24  perseant 	 * Do byte accounting all at once, so we can gracefully fail *before*
   1113      1.24  perseant 	 * we start assigning blocks.
   1114      1.24  perseant 	 */
   1115      1.40  christos         frags = LFS_FSBTODB(fs, 1); /* frags = VFSTOULFS(vp->v_mount)->um_seqinc; */
   1116      1.24  perseant 	bcount = 0;
   1117      1.24  perseant 	if (daddr == UNASSIGNED) {
   1118      1.32   mlelstv 		bcount = frags;
   1119      1.24  perseant 	}
   1120      1.24  perseant 	for (i = 1; i < num; ++i) {
   1121      1.24  perseant 		if (!indirs[i].in_exists) {
   1122      1.32   mlelstv 			bcount += frags;
   1123      1.24  perseant 		}
   1124      1.24  perseant 	}
   1125      1.46  dholland 	lfs_sb_subbfree(fs, bcount);
   1126      1.24  perseant 	ip->i_lfs_effnblks += bcount;
   1127      1.24  perseant 
   1128      1.24  perseant 	if (daddr == UNASSIGNED) {
   1129      1.58  dholland 		if (num > 0 && lfs_dino_getib(fs, ip->i_din, indirs[0].in_off) == 0) {
   1130      1.58  dholland 			lfs_dino_setib(fs, ip->i_din, indirs[0].in_off,
   1131      1.58  dholland 				       UNWRITTEN);
   1132      1.24  perseant 		}
   1133      1.24  perseant 
   1134      1.24  perseant 		/*
   1135      1.24  perseant 		 * Create new indirect blocks if necessary
   1136      1.24  perseant 		 */
   1137      1.24  perseant 		if (num > 1) {
   1138      1.58  dholland 			idaddr = lfs_dino_getib(fs, ip->i_din, indirs[0].in_off);
   1139      1.24  perseant 			for (i = 1; i < num; ++i) {
   1140      1.24  perseant 				ibp = getblk(vp, indirs[i].in_lbn,
   1141      1.46  dholland 				    lfs_sb_getbsize(fs));
   1142      1.24  perseant 				if (!indirs[i].in_exists) {
   1143      1.24  perseant 					memset(ibp->b_data, 0, ibp->b_bufsize);
   1144      1.24  perseant 					ibp->b_blkno = UNWRITTEN;
   1145      1.24  perseant 				} else if (!(ibp->b_flags & (B_DELWRI | B_DONE))) {
   1146      1.40  christos 					ibp->b_blkno = LFS_FSBTODB(fs, idaddr);
   1147      1.24  perseant 					ibp->b_flags |= B_READ;
   1148      1.24  perseant 					VOP_STRATEGY(ibp);
   1149      1.24  perseant 				}
   1150      1.24  perseant 				/*
   1151      1.24  perseant 				 * This block exists, but the next one may not.
   1152      1.24  perseant 				 * If that is the case mark it UNWRITTEN to
   1153      1.24  perseant                                  * keep the accounting straight.
   1154      1.24  perseant 				 */
   1155      1.65  dholland 				if (lfs_iblock_get(fs, ibp->b_data,
   1156      1.65  dholland 						indirs[i].in_off) == 0)
   1157      1.65  dholland 					lfs_iblock_set(fs, ibp->b_data,
   1158      1.65  dholland 						indirs[i].in_off, UNWRITTEN);
   1159      1.65  dholland 				idaddr = lfs_iblock_get(fs, ibp->b_data,
   1160      1.65  dholland 						indirs[i].in_off);
   1161      1.24  perseant 				if ((error = VOP_BWRITE(ibp)))
   1162      1.24  perseant 					return error;
   1163      1.24  perseant 			}
   1164      1.24  perseant 		}
   1165      1.24  perseant 	}
   1166      1.24  perseant 
   1167      1.24  perseant 
   1168      1.24  perseant 	/*
   1169      1.24  perseant 	 * Get the existing block from the cache, if requested.
   1170      1.24  perseant 	 */
   1171      1.24  perseant 	if (bpp)
   1172      1.40  christos 		*bpp = bp = getblk(vp, lbn, lfs_blksize(fs, ip, lbn));
   1173      1.24  perseant 
   1174      1.24  perseant 	/*
   1175      1.24  perseant 	 * The block we are writing may be a brand new block
   1176      1.24  perseant 	 * in which case we need to do accounting.
   1177      1.24  perseant 	 *
   1178      1.37  dholland 	 * We can tell a truly new block because ulfs_bmaparray will say
   1179      1.24  perseant 	 * it is UNASSIGNED.  Once we allocate it we will assign it the
   1180      1.24  perseant 	 * disk address UNWRITTEN.
   1181      1.24  perseant 	 */
   1182      1.24  perseant 	if (daddr == UNASSIGNED) {
   1183      1.24  perseant 		if (bpp) {
   1184      1.24  perseant 			/* Note the new address */
   1185      1.24  perseant 			bp->b_blkno = UNWRITTEN;
   1186      1.24  perseant 		}
   1187      1.24  perseant 
   1188      1.24  perseant 		switch (num) {
   1189      1.24  perseant 		    case 0:
   1190      1.58  dholland 			lfs_dino_setdb(fs, ip->i_din, lbn, UNWRITTEN);
   1191      1.24  perseant 			break;
   1192      1.24  perseant 		    case 1:
   1193      1.58  dholland 			lfs_dino_setib(fs, ip->i_din, indirs[0].in_off,
   1194      1.58  dholland 				       UNWRITTEN);
   1195      1.24  perseant 			break;
   1196      1.24  perseant 		    default:
   1197      1.24  perseant 			idp = &indirs[num - 1];
   1198      1.46  dholland 			if (bread(vp, idp->in_lbn, lfs_sb_getbsize(fs), 0, &ibp))
   1199      1.24  perseant 				panic("lfs_balloc: bread bno %lld",
   1200      1.24  perseant 				    (long long)idp->in_lbn);
   1201      1.58  dholland 			lfs_iblock_set(fs, ibp->b_data, idp->in_off,
   1202      1.58  dholland 				       UNWRITTEN);
   1203      1.24  perseant 			VOP_BWRITE(ibp);
   1204      1.24  perseant 		}
   1205      1.24  perseant 	} else if (bpp && !(bp->b_flags & (B_DONE|B_DELWRI))) {
   1206      1.24  perseant 		/*
   1207      1.24  perseant 		 * Not a brand new block, also not in the cache;
   1208      1.24  perseant 		 * read it in from disk.
   1209      1.24  perseant 		 */
   1210      1.46  dholland 		if (iosize == lfs_sb_getbsize(fs))
   1211      1.24  perseant 			/* Optimization: I/O is unnecessary. */
   1212      1.24  perseant 			bp->b_blkno = daddr;
   1213      1.24  perseant 		else {
   1214      1.24  perseant 			/*
   1215      1.24  perseant 			 * We need to read the block to preserve the
   1216      1.24  perseant 			 * existing bytes.
   1217      1.24  perseant 			 */
   1218      1.24  perseant 			bp->b_blkno = daddr;
   1219      1.24  perseant 			bp->b_flags |= B_READ;
   1220      1.24  perseant 			VOP_STRATEGY(bp);
   1221      1.24  perseant 			return 0;
   1222      1.24  perseant 		}
   1223      1.24  perseant 	}
   1224      1.24  perseant 
   1225      1.24  perseant 	return (0);
   1226      1.24  perseant }
   1227      1.24  perseant 
   1228      1.24  perseant int
   1229      1.24  perseant lfs_fragextend(struct uvnode *vp, int osize, int nsize, daddr_t lbn,
   1230      1.24  perseant                struct ubuf **bpp)
   1231      1.24  perseant {
   1232      1.24  perseant 	struct inode *ip;
   1233      1.24  perseant 	struct lfs *fs;
   1234      1.32   mlelstv 	int frags;
   1235      1.24  perseant 	int error;
   1236      1.24  perseant 
   1237      1.24  perseant 	ip = VTOI(vp);
   1238      1.24  perseant 	fs = ip->i_lfs;
   1239      1.40  christos 	frags = (long)lfs_numfrags(fs, nsize - osize);
   1240      1.24  perseant 	error = 0;
   1241      1.24  perseant 
   1242      1.24  perseant 	/*
   1243      1.24  perseant 	 * If we are not asked to actually return the block, all we need
   1244      1.24  perseant 	 * to do is allocate space for it.  UBC will handle dirtying the
   1245      1.24  perseant 	 * appropriate things and making sure it all goes to disk.
   1246      1.24  perseant 	 * Don't bother to read in that case.
   1247      1.24  perseant 	 */
   1248      1.44    chopps 	if (bpp && (error = bread(vp, lbn, osize, 0, bpp))) {
   1249      1.27        ad 		brelse(*bpp, 0);
   1250      1.24  perseant 		goto out;
   1251      1.24  perseant 	}
   1252      1.24  perseant 
   1253      1.46  dholland 	lfs_sb_subbfree(fs, frags);
   1254      1.32   mlelstv 	ip->i_lfs_effnblks += frags;
   1255      1.24  perseant 	ip->i_flag |= IN_CHANGE | IN_UPDATE;
   1256      1.24  perseant 
   1257      1.24  perseant 	if (bpp) {
   1258      1.26  christos 		(*bpp)->b_data = erealloc((*bpp)->b_data, nsize);
   1259      1.26  christos 		(void)memset((*bpp)->b_data + osize, 0, nsize - osize);
   1260      1.24  perseant 	}
   1261      1.24  perseant 
   1262      1.24  perseant     out:
   1263      1.24  perseant 	return (error);
   1264      1.24  perseant }
   1265