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lfs_segment.c revision 1.100
      1  1.100        pk /*	$NetBSD: lfs_segment.c,v 1.100 2003/02/05 21:38:45 pk Exp $	*/
      2    1.2       cgd 
      3   1.15  perseant /*-
      4   1.58  perseant  * Copyright (c) 1999, 2000 The NetBSD Foundation, Inc.
      5   1.15  perseant  * All rights reserved.
      6   1.15  perseant  *
      7   1.15  perseant  * This code is derived from software contributed to The NetBSD Foundation
      8   1.15  perseant  * by Konrad E. Schroder <perseant (at) hhhh.org>.
      9   1.15  perseant  *
     10   1.15  perseant  * Redistribution and use in source and binary forms, with or without
     11   1.15  perseant  * modification, are permitted provided that the following conditions
     12   1.15  perseant  * are met:
     13   1.15  perseant  * 1. Redistributions of source code must retain the above copyright
     14   1.15  perseant  *    notice, this list of conditions and the following disclaimer.
     15   1.15  perseant  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.15  perseant  *    notice, this list of conditions and the following disclaimer in the
     17   1.15  perseant  *    documentation and/or other materials provided with the distribution.
     18   1.15  perseant  * 3. All advertising materials mentioning features or use of this software
     19   1.15  perseant  *    must display the following acknowledgement:
     20   1.15  perseant  *      This product includes software developed by the NetBSD
     21   1.15  perseant  *      Foundation, Inc. and its contributors.
     22   1.15  perseant  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23   1.15  perseant  *    contributors may be used to endorse or promote products derived
     24   1.15  perseant  *    from this software without specific prior written permission.
     25   1.15  perseant  *
     26   1.15  perseant  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27   1.15  perseant  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28   1.15  perseant  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29   1.15  perseant  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30   1.15  perseant  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31   1.15  perseant  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32   1.15  perseant  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33   1.15  perseant  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34   1.15  perseant  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35   1.15  perseant  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36   1.15  perseant  * POSSIBILITY OF SUCH DAMAGE.
     37   1.15  perseant  */
     38    1.1   mycroft /*
     39    1.1   mycroft  * Copyright (c) 1991, 1993
     40    1.1   mycroft  *	The Regents of the University of California.  All rights reserved.
     41    1.1   mycroft  *
     42    1.1   mycroft  * Redistribution and use in source and binary forms, with or without
     43    1.1   mycroft  * modification, are permitted provided that the following conditions
     44    1.1   mycroft  * are met:
     45    1.1   mycroft  * 1. Redistributions of source code must retain the above copyright
     46    1.1   mycroft  *    notice, this list of conditions and the following disclaimer.
     47    1.1   mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     48    1.1   mycroft  *    notice, this list of conditions and the following disclaimer in the
     49    1.1   mycroft  *    documentation and/or other materials provided with the distribution.
     50    1.1   mycroft  * 3. All advertising materials mentioning features or use of this software
     51    1.1   mycroft  *    must display the following acknowledgement:
     52    1.1   mycroft  *	This product includes software developed by the University of
     53    1.1   mycroft  *	California, Berkeley and its contributors.
     54    1.1   mycroft  * 4. Neither the name of the University nor the names of its contributors
     55    1.1   mycroft  *    may be used to endorse or promote products derived from this software
     56    1.1   mycroft  *    without specific prior written permission.
     57    1.1   mycroft  *
     58    1.1   mycroft  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     59    1.1   mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     60    1.1   mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     61    1.1   mycroft  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     62    1.1   mycroft  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     63    1.1   mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     64    1.1   mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     65    1.1   mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     66    1.1   mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     67    1.1   mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     68    1.1   mycroft  * SUCH DAMAGE.
     69    1.1   mycroft  *
     70   1.10      fvdl  *	@(#)lfs_segment.c	8.10 (Berkeley) 6/10/95
     71    1.1   mycroft  */
     72   1.72     lukem 
     73   1.72     lukem #include <sys/cdefs.h>
     74  1.100        pk __KERNEL_RCSID(0, "$NetBSD: lfs_segment.c,v 1.100 2003/02/05 21:38:45 pk Exp $");
     75    1.1   mycroft 
     76   1.16  perseant #define ivndebug(vp,str) printf("ino %d: %s\n",VTOI(vp)->i_number,(str))
     77   1.16  perseant 
     78   1.68       mrg #if defined(_KERNEL_OPT)
     79   1.30  perseant #include "opt_ddb.h"
     80   1.65  jdolecek #endif
     81   1.65  jdolecek 
     82    1.1   mycroft #include <sys/param.h>
     83    1.1   mycroft #include <sys/systm.h>
     84    1.1   mycroft #include <sys/namei.h>
     85    1.1   mycroft #include <sys/kernel.h>
     86    1.1   mycroft #include <sys/resourcevar.h>
     87    1.1   mycroft #include <sys/file.h>
     88    1.1   mycroft #include <sys/stat.h>
     89    1.1   mycroft #include <sys/buf.h>
     90    1.1   mycroft #include <sys/proc.h>
     91    1.1   mycroft #include <sys/vnode.h>
     92    1.1   mycroft #include <sys/malloc.h>
     93    1.1   mycroft #include <sys/mount.h>
     94    1.1   mycroft 
     95    1.1   mycroft #include <miscfs/specfs/specdev.h>
     96    1.1   mycroft #include <miscfs/fifofs/fifo.h>
     97    1.1   mycroft 
     98    1.1   mycroft #include <ufs/ufs/inode.h>
     99    1.1   mycroft #include <ufs/ufs/dir.h>
    100    1.1   mycroft #include <ufs/ufs/ufsmount.h>
    101    1.1   mycroft #include <ufs/ufs/ufs_extern.h>
    102    1.1   mycroft 
    103    1.1   mycroft #include <ufs/lfs/lfs.h>
    104    1.1   mycroft #include <ufs/lfs/lfs_extern.h>
    105    1.1   mycroft 
    106   1.79  perseant #include <uvm/uvm.h>
    107   1.74  perseant #include <uvm/uvm_extern.h>
    108   1.99   thorpej 
    109   1.99   thorpej MALLOC_DEFINE(M_SEGMENT, "LFS segment", "Segment for LFS");
    110   1.74  perseant 
    111   1.69  perseant extern int count_lock_queue(void);
    112   1.10      fvdl extern struct simplelock vnode_free_list_slock;		/* XXX */
    113    1.1   mycroft 
    114   1.79  perseant static void lfs_generic_callback(struct buf *, void (*)(struct buf *));
    115   1.79  perseant static void lfs_super_aiodone(struct buf *);
    116   1.79  perseant static void lfs_cluster_aiodone(struct buf *);
    117   1.74  perseant static void lfs_cluster_callback(struct buf *);
    118   1.74  perseant static struct buf **lookahead_pagemove(struct buf **, int, size_t *);
    119   1.74  perseant 
    120    1.1   mycroft /*
    121    1.1   mycroft  * Determine if it's OK to start a partial in this segment, or if we need
    122    1.1   mycroft  * to go on to a new segment.
    123    1.1   mycroft  */
    124    1.1   mycroft #define	LFS_PARTIAL_FITS(fs) \
    125   1.69  perseant 	((fs)->lfs_fsbpseg - ((fs)->lfs_offset - (fs)->lfs_curseg) > \
    126   1.69  perseant 	fragstofsb((fs), (fs)->lfs_frag))
    127    1.1   mycroft 
    128   1.69  perseant void	 lfs_callback(struct buf *);
    129   1.69  perseant int	 lfs_gather(struct lfs *, struct segment *,
    130   1.69  perseant 	     struct vnode *, int (*)(struct lfs *, struct buf *));
    131   1.69  perseant int	 lfs_gatherblock(struct segment *, struct buf *, int *);
    132   1.91      fvdl void	 lfs_iset(struct inode *, daddr_t, time_t);
    133   1.69  perseant int	 lfs_match_fake(struct lfs *, struct buf *);
    134   1.69  perseant int	 lfs_match_data(struct lfs *, struct buf *);
    135   1.69  perseant int	 lfs_match_dindir(struct lfs *, struct buf *);
    136   1.69  perseant int	 lfs_match_indir(struct lfs *, struct buf *);
    137   1.69  perseant int	 lfs_match_tindir(struct lfs *, struct buf *);
    138   1.69  perseant void	 lfs_newseg(struct lfs *);
    139   1.91      fvdl /* XXX ondisk32 */
    140   1.91      fvdl void	 lfs_shellsort(struct buf **, int32_t *, int);
    141   1.69  perseant void	 lfs_supercallback(struct buf *);
    142   1.69  perseant void	 lfs_updatemeta(struct segment *);
    143   1.69  perseant int	 lfs_vref(struct vnode *);
    144   1.69  perseant void	 lfs_vunref(struct vnode *);
    145   1.69  perseant void	 lfs_writefile(struct lfs *, struct segment *, struct vnode *);
    146   1.69  perseant int	 lfs_writeinode(struct lfs *, struct segment *, struct inode *);
    147   1.69  perseant int	 lfs_writeseg(struct lfs *, struct segment *);
    148   1.69  perseant void	 lfs_writesuper(struct lfs *, daddr_t);
    149   1.69  perseant int	 lfs_writevnodes(struct lfs *fs, struct mount *mp,
    150   1.69  perseant 	    struct segment *sp, int dirops);
    151    1.1   mycroft 
    152    1.1   mycroft int	lfs_allclean_wakeup;		/* Cleaner wakeup address. */
    153   1.15  perseant int	lfs_writeindir = 1;             /* whether to flush indir on non-ckp */
    154   1.25  perseant int	lfs_clean_vnhead = 0;		/* Allow freeing to head of vn list */
    155   1.32  perseant int	lfs_dirvcount = 0;		/* # active dirops */
    156    1.1   mycroft 
    157    1.1   mycroft /* Statistics Counters */
    158   1.15  perseant int lfs_dostats = 1;
    159    1.1   mycroft struct lfs_stats lfs_stats;
    160    1.1   mycroft 
    161   1.62  perseant extern int locked_queue_count;
    162   1.62  perseant extern long locked_queue_bytes;
    163   1.62  perseant 
    164    1.1   mycroft /* op values to lfs_writevnodes */
    165   1.15  perseant #define	VN_REG	        0
    166    1.1   mycroft #define	VN_DIROP	1
    167    1.1   mycroft #define	VN_EMPTY	2
    168   1.15  perseant #define VN_CLEAN        3
    169   1.15  perseant 
    170   1.15  perseant #define LFS_MAX_ACTIVE          10
    171   1.15  perseant 
    172   1.15  perseant /*
    173   1.15  perseant  * XXX KS - Set modification time on the Ifile, so the cleaner can
    174   1.15  perseant  * read the fs mod time off of it.  We don't set IN_UPDATE here,
    175   1.15  perseant  * since we don't really need this to be flushed to disk (and in any
    176   1.15  perseant  * case that wouldn't happen to the Ifile until we checkpoint).
    177   1.15  perseant  */
    178   1.15  perseant void
    179   1.69  perseant lfs_imtime(struct lfs *fs)
    180   1.15  perseant {
    181   1.15  perseant 	struct timespec ts;
    182   1.15  perseant 	struct inode *ip;
    183   1.15  perseant 
    184   1.15  perseant 	TIMEVAL_TO_TIMESPEC(&time, &ts);
    185   1.15  perseant 	ip = VTOI(fs->lfs_ivnode);
    186   1.15  perseant 	ip->i_ffs_mtime = ts.tv_sec;
    187   1.15  perseant 	ip->i_ffs_mtimensec = ts.tv_nsec;
    188   1.15  perseant }
    189    1.1   mycroft 
    190    1.1   mycroft /*
    191    1.1   mycroft  * Ifile and meta data blocks are not marked busy, so segment writes MUST be
    192    1.1   mycroft  * single threaded.  Currently, there are two paths into lfs_segwrite, sync()
    193    1.1   mycroft  * and getnewbuf().  They both mark the file system busy.  Lfs_vflush()
    194    1.1   mycroft  * explicitly marks the file system busy.  So lfs_segwrite is safe.  I think.
    195    1.1   mycroft  */
    196    1.1   mycroft 
    197   1.15  perseant #define SET_FLUSHING(fs,vp) (fs)->lfs_flushvp = (vp)
    198   1.15  perseant #define IS_FLUSHING(fs,vp)  ((fs)->lfs_flushvp == (vp))
    199   1.15  perseant #define CLR_FLUSHING(fs,vp) (fs)->lfs_flushvp = NULL
    200   1.15  perseant 
    201    1.1   mycroft int
    202   1.69  perseant lfs_vflush(struct vnode *vp)
    203    1.1   mycroft {
    204    1.1   mycroft 	struct inode *ip;
    205    1.1   mycroft 	struct lfs *fs;
    206    1.1   mycroft 	struct segment *sp;
    207   1.38  perseant 	struct buf *bp, *nbp, *tbp, *tnbp;
    208   1.30  perseant 	int error, s;
    209   1.19  perseant 
    210   1.22  perseant 	ip = VTOI(vp);
    211   1.22  perseant 	fs = VFSTOUFS(vp->v_mount)->um_lfs;
    212   1.22  perseant 
    213   1.73       chs 	if (ip->i_flag & IN_CLEANING) {
    214   1.19  perseant #ifdef DEBUG_LFS
    215   1.19  perseant 		ivndebug(vp,"vflush/in_cleaning");
    216   1.19  perseant #endif
    217   1.56  perseant 		LFS_CLR_UINO(ip, IN_CLEANING);
    218   1.56  perseant 		LFS_SET_UINO(ip, IN_MODIFIED);
    219   1.56  perseant 
    220   1.38  perseant 		/*
    221   1.38  perseant 		 * Toss any cleaning buffers that have real counterparts
    222   1.38  perseant 		 * to avoid losing new data
    223   1.38  perseant 		 */
    224   1.38  perseant 		s = splbio();
    225   1.75  perseant 		for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp; bp = nbp) {
    226   1.75  perseant 			nbp = LIST_NEXT(bp, b_vnbufs);
    227   1.73       chs 			if (bp->b_flags & B_CALL) {
    228   1.75  perseant 				for (tbp = LIST_FIRST(&vp->v_dirtyblkhd); tbp;
    229   1.73       chs 				    tbp = tnbp)
    230   1.38  perseant 				{
    231   1.75  perseant 					tnbp = LIST_NEXT(tbp, b_vnbufs);
    232   1.73       chs 					if (tbp->b_vp == bp->b_vp
    233   1.38  perseant 					   && tbp->b_lblkno == bp->b_lblkno
    234   1.38  perseant 					   && tbp != bp)
    235   1.38  perseant 					{
    236   1.69  perseant 						fs->lfs_avail += btofsb(fs, bp->b_bcount);
    237   1.62  perseant 						wakeup(&fs->lfs_avail);
    238   1.38  perseant 						lfs_freebuf(bp);
    239   1.69  perseant 						bp = NULL;
    240   1.69  perseant 						break;
    241   1.38  perseant 					}
    242   1.38  perseant 				}
    243   1.38  perseant 			}
    244   1.38  perseant 		}
    245   1.38  perseant 		splx(s);
    246   1.19  perseant 	}
    247   1.19  perseant 
    248   1.19  perseant 	/* If the node is being written, wait until that is done */
    249   1.74  perseant 	s = splbio();
    250   1.73       chs 	if (WRITEINPROG(vp)) {
    251   1.19  perseant #ifdef DEBUG_LFS
    252   1.19  perseant 		ivndebug(vp,"vflush/writeinprog");
    253   1.19  perseant #endif
    254   1.19  perseant 		tsleep(vp, PRIBIO+1, "lfs_vw", 0);
    255   1.19  perseant 	}
    256   1.74  perseant 	splx(s);
    257    1.1   mycroft 
    258   1.15  perseant 	/* Protect against VXLOCK deadlock in vinvalbuf() */
    259    1.1   mycroft 	lfs_seglock(fs, SEGM_SYNC);
    260   1.30  perseant 
    261   1.30  perseant 	/* If we're supposed to flush a freed inode, just toss it */
    262   1.30  perseant 	/* XXX - seglock, so these buffers can't be gathered, right? */
    263   1.73       chs 	if (ip->i_ffs_mode == 0) {
    264   1.30  perseant 		printf("lfs_vflush: ino %d is freed, not flushing\n",
    265   1.30  perseant 			ip->i_number);
    266   1.30  perseant 		s = splbio();
    267   1.75  perseant 		for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp; bp = nbp) {
    268   1.75  perseant 			nbp = LIST_NEXT(bp, b_vnbufs);
    269   1.62  perseant 			if (bp->b_flags & B_DELWRI) { /* XXX always true? */
    270   1.69  perseant 				fs->lfs_avail += btofsb(fs, bp->b_bcount);
    271   1.62  perseant 				wakeup(&fs->lfs_avail);
    272   1.62  perseant 			}
    273   1.30  perseant 			/* Copied from lfs_writeseg */
    274   1.30  perseant 			if (bp->b_flags & B_CALL) {
    275   1.30  perseant 				/* if B_CALL, it was created with newbuf */
    276   1.30  perseant 				lfs_freebuf(bp);
    277   1.69  perseant 				bp = NULL;
    278   1.30  perseant 			} else {
    279   1.30  perseant 				bremfree(bp);
    280   1.62  perseant 				LFS_UNLOCK_BUF(bp);
    281   1.30  perseant 				bp->b_flags &= ~(B_ERROR | B_READ | B_DELWRI |
    282   1.62  perseant                                          B_GATHERED);
    283   1.30  perseant 				bp->b_flags |= B_DONE;
    284   1.30  perseant 				reassignbuf(bp, vp);
    285   1.30  perseant 				brelse(bp);
    286   1.30  perseant 			}
    287   1.30  perseant 		}
    288   1.30  perseant 		splx(s);
    289   1.56  perseant 		LFS_CLR_UINO(ip, IN_CLEANING);
    290   1.56  perseant 		LFS_CLR_UINO(ip, IN_MODIFIED | IN_ACCESSED);
    291   1.47  perseant 		ip->i_flag &= ~IN_ALLMOD;
    292   1.30  perseant 		printf("lfs_vflush: done not flushing ino %d\n",
    293   1.30  perseant 			ip->i_number);
    294   1.30  perseant 		lfs_segunlock(fs);
    295   1.30  perseant 		return 0;
    296   1.30  perseant 	}
    297   1.30  perseant 
    298   1.15  perseant 	SET_FLUSHING(fs,vp);
    299   1.79  perseant 	if (fs->lfs_nactive > LFS_MAX_ACTIVE ||
    300   1.79  perseant 	    (fs->lfs_sp->seg_flags & SEGM_CKP)) {
    301   1.79  perseant 		error = lfs_segwrite(vp->v_mount, SEGM_CKP | SEGM_SYNC);
    302   1.15  perseant 		CLR_FLUSHING(fs,vp);
    303   1.15  perseant 		lfs_segunlock(fs);
    304   1.15  perseant 		return error;
    305   1.15  perseant 	}
    306    1.1   mycroft 	sp = fs->lfs_sp;
    307    1.1   mycroft 
    308   1.75  perseant 	if (LIST_FIRST(&vp->v_dirtyblkhd) == NULL) {
    309    1.1   mycroft 		lfs_writevnodes(fs, vp->v_mount, sp, VN_EMPTY);
    310   1.73       chs 	} else if ((ip->i_flag & IN_CLEANING) &&
    311   1.58  perseant 		  (fs->lfs_sp->seg_flags & SEGM_CLEAN)) {
    312   1.19  perseant #ifdef DEBUG_LFS
    313   1.19  perseant 		ivndebug(vp,"vflush/clean");
    314   1.19  perseant #endif
    315   1.19  perseant 		lfs_writevnodes(fs, vp->v_mount, sp, VN_CLEAN);
    316   1.74  perseant 	} else if (lfs_dostats) {
    317   1.75  perseant 		if (LIST_FIRST(&vp->v_dirtyblkhd) || (VTOI(vp)->i_flag & IN_ALLMOD))
    318   1.15  perseant 			++lfs_stats.vflush_invoked;
    319   1.15  perseant #ifdef DEBUG_LFS
    320   1.19  perseant 		ivndebug(vp,"vflush");
    321   1.15  perseant #endif
    322   1.15  perseant 	}
    323   1.15  perseant 
    324   1.19  perseant #ifdef DIAGNOSTIC
    325   1.21  perseant 	/* XXX KS This actually can happen right now, though it shouldn't(?) */
    326   1.73       chs 	if (vp->v_flag & VDIROP) {
    327   1.21  perseant 		printf("lfs_vflush: flushing VDIROP, this shouldn\'t be\n");
    328   1.21  perseant 		/* panic("VDIROP being flushed...this can\'t happen"); */
    329   1.19  perseant 	}
    330   1.73       chs 	if (vp->v_usecount < 0) {
    331   1.69  perseant 		printf("usecount=%ld\n", (long)vp->v_usecount);
    332   1.19  perseant 		panic("lfs_vflush: usecount<0");
    333   1.19  perseant 	}
    334   1.15  perseant #endif
    335    1.1   mycroft 
    336    1.1   mycroft 	do {
    337    1.1   mycroft 		do {
    338   1.75  perseant 			if (LIST_FIRST(&vp->v_dirtyblkhd) != NULL)
    339    1.1   mycroft 				lfs_writefile(fs, sp, vp);
    340    1.1   mycroft 		} while (lfs_writeinode(fs, sp, ip));
    341    1.1   mycroft 	} while (lfs_writeseg(fs, sp) && ip->i_number == LFS_IFILE_INUM);
    342   1.15  perseant 
    343   1.73       chs 	if (lfs_dostats) {
    344   1.15  perseant 		++lfs_stats.nwrites;
    345   1.15  perseant 		if (sp->seg_flags & SEGM_SYNC)
    346   1.15  perseant 			++lfs_stats.nsync_writes;
    347   1.15  perseant 		if (sp->seg_flags & SEGM_CKP)
    348   1.15  perseant 			++lfs_stats.ncheckpoints;
    349   1.15  perseant 	}
    350   1.74  perseant 	/*
    351   1.74  perseant 	 * If we were called from somewhere that has already held the seglock
    352   1.74  perseant 	 * (e.g., lfs_markv()), the lfs_segunlock will not wait for
    353   1.74  perseant 	 * the write to complete because we are still locked.
    354   1.74  perseant 	 * Since lfs_vflush() must return the vnode with no dirty buffers,
    355   1.74  perseant 	 * we must explicitly wait, if that is the case.
    356   1.74  perseant 	 *
    357   1.74  perseant 	 * We compare the iocount against 1, not 0, because it is
    358   1.74  perseant 	 * artificially incremented by lfs_seglock().
    359   1.74  perseant 	 */
    360   1.74  perseant 	if (fs->lfs_seglock > 1) {
    361   1.74  perseant 		while (fs->lfs_iocount > 1)
    362   1.74  perseant 			(void)tsleep(&fs->lfs_iocount, PRIBIO + 1,
    363   1.74  perseant 				     "lfs_vflush", 0);
    364   1.74  perseant 	}
    365   1.15  perseant 	lfs_segunlock(fs);
    366    1.1   mycroft 
    367   1.15  perseant 	CLR_FLUSHING(fs,vp);
    368    1.1   mycroft 	return (0);
    369    1.1   mycroft }
    370    1.1   mycroft 
    371   1.16  perseant #ifdef DEBUG_LFS_VERBOSE
    372   1.73       chs # define vndebug(vp,str) if (VTOI(vp)->i_flag & IN_CLEANING) printf("not writing ino %d because %s (op %d)\n",VTOI(vp)->i_number,(str),op)
    373   1.16  perseant #else
    374   1.16  perseant # define vndebug(vp,str)
    375   1.16  perseant #endif
    376   1.15  perseant 
    377   1.15  perseant int
    378   1.69  perseant lfs_writevnodes(struct lfs *fs, struct mount *mp, struct segment *sp, int op)
    379    1.1   mycroft {
    380    1.1   mycroft 	struct inode *ip;
    381   1.77  perseant 	struct vnode *vp, *nvp;
    382   1.73       chs 	int inodes_written = 0, only_cleaning;
    383    1.1   mycroft 
    384   1.15  perseant #ifndef LFS_NO_BACKVP_HACK
    385   1.15  perseant 	/* BEGIN HACK */
    386   1.75  perseant #define	VN_OFFSET	(((caddr_t)&LIST_NEXT(vp, v_mntvnodes)) - (caddr_t)vp)
    387   1.75  perseant #define	BACK_VP(VP)	((struct vnode *)(((caddr_t)(VP)->v_mntvnodes.le_prev) - VN_OFFSET))
    388   1.75  perseant #define	BEG_OF_VLIST	((struct vnode *)(((caddr_t)&(LIST_FIRST(&mp->mnt_vnodelist))) - VN_OFFSET))
    389   1.15  perseant 
    390   1.15  perseant 	/* Find last vnode. */
    391   1.75  perseant  loop:	for (vp = LIST_FIRST(&mp->mnt_vnodelist);
    392   1.75  perseant 	     vp && LIST_NEXT(vp, v_mntvnodes) != NULL;
    393   1.75  perseant 	     vp = LIST_NEXT(vp, v_mntvnodes));
    394   1.77  perseant 	for (; vp && vp != BEG_OF_VLIST; vp = nvp) {
    395   1.77  perseant 		nvp = BACK_VP(vp);
    396   1.15  perseant #else
    397   1.15  perseant 	loop:
    398   1.77  perseant 	for (vp = LIST_FIRST(&mp->mnt_vnodelist); vp; vp = nvp) {
    399   1.77  perseant 		nvp = LIST_NEXT(vp, v_mntvnodes);
    400   1.15  perseant #endif
    401    1.1   mycroft 		/*
    402    1.1   mycroft 		 * If the vnode that we are about to sync is no longer
    403    1.1   mycroft 		 * associated with this mount point, start over.
    404    1.1   mycroft 		 */
    405   1.58  perseant 		if (vp->v_mount != mp) {
    406   1.58  perseant 			printf("lfs_writevnodes: starting over\n");
    407    1.1   mycroft 			goto loop;
    408   1.58  perseant 		}
    409   1.85      yamt 
    410   1.85      yamt 		if (vp->v_type == VNON) {
    411   1.85      yamt 			continue;
    412   1.85      yamt 		}
    413    1.1   mycroft 
    414   1.15  perseant 		ip = VTOI(vp);
    415   1.15  perseant 		if ((op == VN_DIROP && !(vp->v_flag & VDIROP)) ||
    416   1.15  perseant 		    (op != VN_DIROP && op != VN_CLEAN && (vp->v_flag & VDIROP))) {
    417   1.15  perseant 			vndebug(vp,"dirop");
    418   1.15  perseant 			continue;
    419   1.15  perseant 		}
    420   1.15  perseant 
    421   1.75  perseant 		if (op == VN_EMPTY && LIST_FIRST(&vp->v_dirtyblkhd)) {
    422   1.15  perseant 			vndebug(vp,"empty");
    423   1.15  perseant 			continue;
    424   1.15  perseant 		}
    425    1.1   mycroft 
    426   1.73       chs 		if (op == VN_CLEAN && ip->i_number != LFS_IFILE_INUM
    427   1.38  perseant 		   && vp != fs->lfs_flushvp
    428   1.15  perseant 		   && !(ip->i_flag & IN_CLEANING)) {
    429   1.15  perseant 			vndebug(vp,"cleaning");
    430    1.1   mycroft 			continue;
    431   1.15  perseant 		}
    432    1.1   mycroft 
    433   1.15  perseant 		if (lfs_vref(vp)) {
    434   1.15  perseant 			vndebug(vp,"vref");
    435    1.1   mycroft 			continue;
    436   1.15  perseant 		}
    437    1.1   mycroft 
    438   1.23  perseant 		only_cleaning = 0;
    439    1.1   mycroft 		/*
    440   1.55  perseant 		 * Write the inode/file if dirty and it's not the IFILE.
    441    1.1   mycroft 		 */
    442   1.47  perseant 		if ((ip->i_flag & IN_ALLMOD) ||
    443   1.75  perseant 		     (LIST_FIRST(&vp->v_dirtyblkhd) != NULL))
    444   1.15  perseant 		{
    445   1.73       chs 			only_cleaning = ((ip->i_flag & IN_ALLMOD) == IN_CLEANING);
    446   1.20  perseant 
    447   1.73       chs 			if (ip->i_number != LFS_IFILE_INUM
    448   1.75  perseant 			   && LIST_FIRST(&vp->v_dirtyblkhd) != NULL)
    449   1.15  perseant 			{
    450    1.1   mycroft 				lfs_writefile(fs, sp, vp);
    451   1.15  perseant 			}
    452   1.75  perseant 			if (LIST_FIRST(&vp->v_dirtyblkhd) != NULL) {
    453   1.73       chs 				if (WRITEINPROG(vp)) {
    454   1.15  perseant #ifdef DEBUG_LFS
    455   1.16  perseant 					ivndebug(vp,"writevnodes/write2");
    456   1.15  perseant #endif
    457   1.73       chs 				} else if (!(ip->i_flag & IN_ALLMOD)) {
    458   1.15  perseant #ifdef DEBUG_LFS
    459   1.15  perseant 					printf("<%d>",ip->i_number);
    460   1.15  perseant #endif
    461   1.56  perseant 					LFS_SET_UINO(ip, IN_MODIFIED);
    462   1.15  perseant 				}
    463   1.15  perseant 			}
    464    1.1   mycroft 			(void) lfs_writeinode(fs, sp, ip);
    465   1.15  perseant 			inodes_written++;
    466   1.15  perseant 		}
    467   1.43  perseant 
    468   1.52  perseant 		if (lfs_clean_vnhead && only_cleaning)
    469   1.20  perseant 			lfs_vunref_head(vp);
    470   1.20  perseant 		else
    471   1.20  perseant 			lfs_vunref(vp);
    472    1.1   mycroft 	}
    473   1.15  perseant 	return inodes_written;
    474    1.1   mycroft }
    475    1.1   mycroft 
    476   1.69  perseant /*
    477   1.69  perseant  * Do a checkpoint.
    478   1.69  perseant  */
    479    1.1   mycroft int
    480   1.69  perseant lfs_segwrite(struct mount *mp, int flags)
    481    1.1   mycroft {
    482    1.1   mycroft 	struct buf *bp;
    483    1.1   mycroft 	struct inode *ip;
    484    1.1   mycroft 	struct lfs *fs;
    485    1.1   mycroft 	struct segment *sp;
    486    1.1   mycroft 	struct vnode *vp;
    487    1.1   mycroft 	SEGUSE *segusep;
    488   1.91      fvdl 	daddr_t ibno;
    489   1.61  perseant 	int do_ckp, did_ckp, error, i;
    490   1.15  perseant 	int writer_set = 0;
    491   1.61  perseant 	int dirty;
    492   1.74  perseant 	int redo;
    493   1.15  perseant 
    494    1.1   mycroft 	fs = VFSTOUFS(mp)->um_lfs;
    495    1.1   mycroft 
    496   1.53  perseant 	if (fs->lfs_ronly)
    497   1.53  perseant 		return EROFS;
    498   1.53  perseant 
    499   1.15  perseant 	lfs_imtime(fs);
    500   1.58  perseant 
    501   1.61  perseant 	/* printf("lfs_segwrite: ifile flags are 0x%lx\n",
    502   1.61  perseant 	       (long)(VTOI(fs->lfs_ivnode)->i_flag)); */
    503   1.61  perseant 
    504   1.58  perseant #if 0
    505   1.15  perseant 	/*
    506   1.58  perseant 	 * If we are not the cleaner, and there is no space available,
    507   1.58  perseant 	 * wait until cleaner writes.
    508   1.15  perseant 	 */
    509   1.73       chs 	if (!(flags & SEGM_CLEAN) && !(fs->lfs_seglock && fs->lfs_sp &&
    510   1.61  perseant 				      (fs->lfs_sp->seg_flags & SEGM_CLEAN)))
    511   1.15  perseant 	{
    512   1.58  perseant 		while (fs->lfs_avail <= 0) {
    513   1.61  perseant 			LFS_CLEANERINFO(cip, fs, bp);
    514   1.61  perseant 			LFS_SYNC_CLEANERINFO(cip, fs, bp, 0);
    515   1.61  perseant 
    516   1.58  perseant 			wakeup(&lfs_allclean_wakeup);
    517   1.58  perseant 			wakeup(&fs->lfs_nextseg);
    518   1.58  perseant 			error = tsleep(&fs->lfs_avail, PRIBIO + 1, "lfs_av2",
    519   1.58  perseant 				       0);
    520   1.58  perseant 			if (error) {
    521   1.58  perseant 				return (error);
    522   1.15  perseant 			}
    523   1.58  perseant 		}
    524   1.15  perseant 	}
    525   1.58  perseant #endif
    526    1.1   mycroft 	/*
    527    1.1   mycroft 	 * Allocate a segment structure and enough space to hold pointers to
    528    1.1   mycroft 	 * the maximum possible number of buffers which can be described in a
    529    1.1   mycroft 	 * single summary block.
    530    1.1   mycroft 	 */
    531   1.15  perseant 	do_ckp = (flags & SEGM_CKP) || fs->lfs_nactive > LFS_MAX_ACTIVE;
    532    1.1   mycroft 	lfs_seglock(fs, flags | (do_ckp ? SEGM_CKP : 0));
    533    1.1   mycroft 	sp = fs->lfs_sp;
    534    1.1   mycroft 
    535   1.15  perseant 	/*
    536   1.16  perseant 	 * If lfs_flushvp is non-NULL, we are called from lfs_vflush,
    537   1.16  perseant 	 * in which case we have to flush *all* buffers off of this vnode.
    538   1.37  perseant 	 * We don't care about other nodes, but write any non-dirop nodes
    539   1.37  perseant 	 * anyway in anticipation of another getnewvnode().
    540   1.37  perseant 	 *
    541   1.37  perseant 	 * If we're cleaning we only write cleaning and ifile blocks, and
    542   1.37  perseant 	 * no dirops, since otherwise we'd risk corruption in a crash.
    543   1.15  perseant 	 */
    544   1.73       chs 	if (sp->seg_flags & SEGM_CLEAN)
    545   1.15  perseant 		lfs_writevnodes(fs, mp, sp, VN_CLEAN);
    546   1.15  perseant 	else {
    547   1.15  perseant 		lfs_writevnodes(fs, mp, sp, VN_REG);
    548   1.73       chs 		if (!fs->lfs_dirops || !fs->lfs_flushvp) {
    549   1.73       chs 			while (fs->lfs_dirops)
    550   1.73       chs 				if ((error = tsleep(&fs->lfs_writer, PRIBIO + 1,
    551   1.38  perseant 						"lfs writer", 0)))
    552   1.38  perseant 				{
    553   1.69  perseant 					/* XXX why not segunlock? */
    554   1.38  perseant 					free(sp->bpp, M_SEGMENT);
    555   1.69  perseant 					sp->bpp = NULL;
    556   1.38  perseant 					free(sp, M_SEGMENT);
    557   1.69  perseant 					fs->lfs_sp = NULL;
    558   1.38  perseant 					return (error);
    559   1.38  perseant 				}
    560   1.38  perseant 			fs->lfs_writer++;
    561   1.73       chs 			writer_set = 1;
    562   1.38  perseant 			lfs_writevnodes(fs, mp, sp, VN_DIROP);
    563   1.38  perseant 			((SEGSUM *)(sp->segsum))->ss_flags &= ~(SS_CONT);
    564   1.38  perseant 		}
    565   1.15  perseant 	}
    566    1.1   mycroft 
    567    1.1   mycroft 	/*
    568    1.1   mycroft 	 * If we are doing a checkpoint, mark everything since the
    569    1.1   mycroft 	 * last checkpoint as no longer ACTIVE.
    570    1.1   mycroft 	 */
    571   1.15  perseant 	if (do_ckp) {
    572    1.1   mycroft 		for (ibno = fs->lfs_cleansz + fs->lfs_segtabsz;
    573    1.1   mycroft 		     --ibno >= fs->lfs_cleansz; ) {
    574   1.61  perseant 			dirty = 0;
    575   1.15  perseant 			if (bread(fs->lfs_ivnode, ibno, fs->lfs_bsize, NOCRED, &bp))
    576    1.1   mycroft 
    577   1.15  perseant 				panic("lfs_segwrite: ifile read");
    578    1.1   mycroft 			segusep = (SEGUSE *)bp->b_data;
    579   1.69  perseant 			for (i = fs->lfs_sepb; i--;) {
    580   1.61  perseant 				if (segusep->su_flags & SEGUSE_ACTIVE) {
    581   1.61  perseant 					segusep->su_flags &= ~SEGUSE_ACTIVE;
    582   1.61  perseant 					++dirty;
    583   1.61  perseant 				}
    584   1.69  perseant 				if (fs->lfs_version > 1)
    585   1.69  perseant 					++segusep;
    586   1.69  perseant 				else
    587   1.69  perseant 					segusep = (SEGUSE *)
    588   1.69  perseant 						((SEGUSE_V1 *)segusep + 1);
    589   1.61  perseant 			}
    590    1.1   mycroft 
    591   1.15  perseant 			/* But the current segment is still ACTIVE */
    592   1.51  perseant 			segusep = (SEGUSE *)bp->b_data;
    593   1.69  perseant 			if (dtosn(fs, fs->lfs_curseg) / fs->lfs_sepb ==
    594   1.61  perseant 			    (ibno-fs->lfs_cleansz)) {
    595   1.69  perseant 				if (fs->lfs_version > 1)
    596   1.69  perseant 					segusep[dtosn(fs, fs->lfs_curseg) %
    597   1.69  perseant 					     fs->lfs_sepb].su_flags |=
    598   1.69  perseant 						     SEGUSE_ACTIVE;
    599   1.69  perseant 				else
    600   1.69  perseant 					((SEGUSE *)
    601   1.69  perseant 					 ((SEGUSE_V1 *)(bp->b_data) +
    602   1.69  perseant 					  (dtosn(fs, fs->lfs_curseg) %
    603   1.69  perseant 					   fs->lfs_sepb)))->su_flags
    604   1.69  perseant 						   |= SEGUSE_ACTIVE;
    605   1.61  perseant 				--dirty;
    606   1.61  perseant 			}
    607   1.61  perseant 			if (dirty)
    608   1.74  perseant 				error = LFS_BWRITE_LOG(bp); /* Ifile */
    609   1.61  perseant 			else
    610   1.61  perseant 				brelse(bp);
    611    1.1   mycroft 		}
    612   1.15  perseant 	}
    613   1.61  perseant 
    614   1.61  perseant 	did_ckp = 0;
    615    1.1   mycroft 	if (do_ckp || fs->lfs_doifile) {
    616   1.63  perseant 		do {
    617   1.63  perseant 			vp = fs->lfs_ivnode;
    618   1.55  perseant 
    619   1.63  perseant 			vget(vp, LK_EXCLUSIVE | LK_CANRECURSE | LK_RETRY);
    620   1.74  perseant #ifdef DEBUG
    621   1.74  perseant 			LFS_ENTER_LOG("pretend", __FILE__, __LINE__, 0, 0);
    622   1.74  perseant #endif
    623   1.74  perseant 			fs->lfs_flags &= ~LFS_IFDIRTY;
    624   1.55  perseant 
    625   1.63  perseant 			ip = VTOI(vp);
    626   1.88      yamt 			if (LIST_FIRST(&vp->v_dirtyblkhd) != NULL)
    627   1.63  perseant 				lfs_writefile(fs, sp, vp);
    628   1.63  perseant 			if (ip->i_flag & IN_ALLMOD)
    629   1.63  perseant 				++did_ckp;
    630   1.74  perseant 			redo = lfs_writeinode(fs, sp, ip);
    631   1.84      yamt 
    632   1.63  perseant 			vput(vp);
    633   1.84      yamt 			/*
    634   1.84      yamt 			 * if we know we'll redo, no need to writeseg here.
    635   1.84      yamt 			 */
    636   1.84      yamt 			if (!(redo && do_ckp)) {
    637   1.84      yamt 				redo += lfs_writeseg(fs, sp);
    638   1.84      yamt 			}
    639   1.74  perseant 			redo += (fs->lfs_flags & LFS_IFDIRTY);
    640   1.74  perseant 		} while (redo && do_ckp);
    641   1.15  perseant 
    642   1.61  perseant 		/* The ifile should now be all clear */
    643   1.75  perseant 		if (do_ckp && LIST_FIRST(&vp->v_dirtyblkhd)) {
    644   1.74  perseant 			struct buf *bp;
    645   1.74  perseant 			int s, warned = 0, dopanic = 0;
    646   1.74  perseant 			s = splbio();
    647   1.75  perseant 			for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp; bp = LIST_NEXT(bp, b_vnbufs)) {
    648   1.74  perseant 				if (!(bp->b_flags & B_GATHERED)) {
    649   1.74  perseant 					if (!warned)
    650   1.74  perseant 						printf("lfs_segwrite: ifile still has dirty blocks?!\n");
    651   1.74  perseant 					++dopanic;
    652   1.74  perseant 					++warned;
    653   1.93      tron 					printf("bp=%p, lbn %" PRId64 ", "
    654   1.93      tron 						"flags 0x%lx\n",
    655   1.95    kleink 						bp, bp->b_lblkno,
    656   1.91      fvdl 						bp->b_flags);
    657   1.74  perseant 				}
    658   1.74  perseant 			}
    659   1.74  perseant 			if (dopanic)
    660   1.74  perseant 				panic("dirty blocks");
    661   1.74  perseant 			splx(s);
    662   1.74  perseant 		}
    663   1.61  perseant 		LFS_CLR_UINO(ip, IN_ALLMOD);
    664   1.15  perseant 	} else {
    665    1.1   mycroft 		(void) lfs_writeseg(fs, sp);
    666   1.15  perseant 	}
    667   1.15  perseant 
    668    1.1   mycroft 	/*
    669   1.15  perseant 	 * If the I/O count is non-zero, sleep until it reaches zero.
    670   1.15  perseant 	 * At the moment, the user's process hangs around so we can
    671   1.15  perseant 	 * sleep.
    672    1.1   mycroft 	 */
    673    1.1   mycroft 	fs->lfs_doifile = 0;
    674   1.73       chs 	if (writer_set && --fs->lfs_writer == 0)
    675   1.15  perseant 		wakeup(&fs->lfs_dirops);
    676   1.61  perseant 
    677   1.61  perseant 	/*
    678   1.61  perseant 	 * If we didn't write the Ifile, we didn't really do anything.
    679   1.61  perseant 	 * That means that (1) there is a checkpoint on disk and (2)
    680   1.61  perseant 	 * nothing has changed since it was written.
    681   1.61  perseant 	 *
    682   1.61  perseant 	 * Take the flags off of the segment so that lfs_segunlock
    683   1.61  perseant 	 * doesn't have to write the superblock either.
    684   1.61  perseant 	 */
    685   1.79  perseant 	if (do_ckp && !did_ckp) {
    686   1.79  perseant 		sp->seg_flags &= ~SEGM_CKP;
    687   1.73       chs 		/* if (do_ckp) printf("lfs_segwrite: no checkpoint\n"); */
    688   1.61  perseant 	}
    689   1.61  perseant 
    690   1.73       chs 	if (lfs_dostats) {
    691   1.15  perseant 		++lfs_stats.nwrites;
    692   1.15  perseant 		if (sp->seg_flags & SEGM_SYNC)
    693   1.15  perseant 			++lfs_stats.nsync_writes;
    694   1.15  perseant 		if (sp->seg_flags & SEGM_CKP)
    695   1.15  perseant 			++lfs_stats.ncheckpoints;
    696   1.15  perseant 	}
    697    1.1   mycroft 	lfs_segunlock(fs);
    698    1.1   mycroft 	return (0);
    699    1.1   mycroft }
    700    1.1   mycroft 
    701    1.1   mycroft /*
    702    1.1   mycroft  * Write the dirty blocks associated with a vnode.
    703    1.1   mycroft  */
    704    1.1   mycroft void
    705   1.69  perseant lfs_writefile(struct lfs *fs, struct segment *sp, struct vnode *vp)
    706    1.1   mycroft {
    707    1.1   mycroft 	struct buf *bp;
    708    1.1   mycroft 	struct finfo *fip;
    709   1.80  perseant 	struct inode *ip;
    710    1.1   mycroft 	IFILE *ifp;
    711   1.80  perseant 	int i, frag;
    712   1.15  perseant 
    713   1.80  perseant 	ip = VTOI(vp);
    714   1.80  perseant 
    715    1.1   mycroft 	if (sp->seg_bytes_left < fs->lfs_bsize ||
    716    1.1   mycroft 	    sp->sum_bytes_left < sizeof(struct finfo))
    717    1.1   mycroft 		(void) lfs_writeseg(fs, sp);
    718   1.15  perseant 
    719   1.98      yamt 	sp->sum_bytes_left -= FINFOSIZE;
    720    1.1   mycroft 	++((SEGSUM *)(sp->segsum))->ss_nfinfo;
    721    1.1   mycroft 
    722   1.73       chs 	if (vp->v_flag & VDIROP)
    723   1.15  perseant 		((SEGSUM *)(sp->segsum))->ss_flags |= (SS_DIROP|SS_CONT);
    724   1.15  perseant 
    725    1.1   mycroft 	fip = sp->fip;
    726    1.1   mycroft 	fip->fi_nblocks = 0;
    727   1.80  perseant 	fip->fi_ino = ip->i_number;
    728    1.1   mycroft 	LFS_IENTRY(ifp, fs, fip->fi_ino, bp);
    729    1.1   mycroft 	fip->fi_version = ifp->if_version;
    730    1.1   mycroft 	brelse(bp);
    731   1.15  perseant 
    732   1.74  perseant 	if (sp->seg_flags & SEGM_CLEAN) {
    733   1.38  perseant 		lfs_gather(fs, sp, vp, lfs_match_fake);
    734   1.38  perseant 		/*
    735   1.38  perseant 		 * For a file being flushed, we need to write *all* blocks.
    736   1.38  perseant 		 * This means writing the cleaning blocks first, and then
    737   1.38  perseant 		 * immediately following with any non-cleaning blocks.
    738   1.38  perseant 		 * The same is true of the Ifile since checkpoints assume
    739   1.38  perseant 		 * that all valid Ifile blocks are written.
    740   1.38  perseant 		 */
    741   1.80  perseant 	   	if (IS_FLUSHING(fs,vp) || vp == fs->lfs_ivnode)
    742   1.38  perseant 			lfs_gather(fs, sp, vp, lfs_match_data);
    743   1.38  perseant 	} else
    744   1.38  perseant 		lfs_gather(fs, sp, vp, lfs_match_data);
    745   1.38  perseant 
    746    1.1   mycroft 	/*
    747    1.1   mycroft 	 * It may not be necessary to write the meta-data blocks at this point,
    748    1.1   mycroft 	 * as the roll-forward recovery code should be able to reconstruct the
    749    1.1   mycroft 	 * list.
    750   1.15  perseant 	 *
    751   1.15  perseant 	 * We have to write them anyway, though, under two conditions: (1) the
    752   1.15  perseant 	 * vnode is being flushed (for reuse by vinvalbuf); or (2) we are
    753   1.15  perseant 	 * checkpointing.
    754   1.80  perseant 	 *
    755   1.80  perseant 	 * BUT if we are cleaning, we might have indirect blocks that refer to
    756   1.80  perseant 	 * new blocks not being written yet, in addition to fragments being
    757   1.80  perseant 	 * moved out of a cleaned segment.  If that is the case, don't
    758   1.80  perseant 	 * write the indirect blocks, or the finfo will have a small block
    759   1.80  perseant 	 * in the middle of it!
    760   1.80  perseant 	 * XXX in this case isn't the inode size wrong too?
    761    1.1   mycroft 	 */
    762   1.80  perseant 	frag = 0;
    763   1.80  perseant 	if (sp->seg_flags & SEGM_CLEAN) {
    764   1.80  perseant 		for (i = 0; i < NDADDR; i++)
    765   1.80  perseant 			if (ip->i_lfs_fragsize[i] > 0 &&
    766   1.80  perseant 			    ip->i_lfs_fragsize[i] < fs->lfs_bsize)
    767   1.80  perseant 				++frag;
    768   1.80  perseant 	}
    769   1.80  perseant #ifdef DIAGNOSTIC
    770   1.80  perseant 	if (frag > 1)
    771   1.80  perseant 		panic("lfs_writefile: more than one fragment!");
    772   1.80  perseant #endif
    773   1.80  perseant 	if (IS_FLUSHING(fs, vp) ||
    774   1.80  perseant 	    (frag == 0 && (lfs_writeindir || (sp->seg_flags & SEGM_CKP)))) {
    775   1.15  perseant 		lfs_gather(fs, sp, vp, lfs_match_indir);
    776   1.15  perseant 		lfs_gather(fs, sp, vp, lfs_match_dindir);
    777   1.15  perseant 		lfs_gather(fs, sp, vp, lfs_match_tindir);
    778   1.15  perseant 	}
    779    1.1   mycroft 	fip = sp->fip;
    780    1.1   mycroft 	if (fip->fi_nblocks != 0) {
    781   1.98      yamt 		sp->fip = (FINFO*)((caddr_t)fip + FINFOSIZE +
    782   1.98      yamt 				   sizeof(int32_t) * (fip->fi_nblocks));
    783    1.1   mycroft 		sp->start_lbp = &sp->fip->fi_blocks[0];
    784    1.1   mycroft 	} else {
    785   1.98      yamt 		sp->sum_bytes_left += FINFOSIZE;
    786    1.1   mycroft 		--((SEGSUM *)(sp->segsum))->ss_nfinfo;
    787    1.1   mycroft 	}
    788    1.1   mycroft }
    789    1.1   mycroft 
    790    1.1   mycroft int
    791   1.69  perseant lfs_writeinode(struct lfs *fs, struct segment *sp, struct inode *ip)
    792    1.1   mycroft {
    793    1.1   mycroft 	struct buf *bp, *ibp;
    794   1.53  perseant 	struct dinode *cdp;
    795    1.1   mycroft 	IFILE *ifp;
    796    1.1   mycroft 	SEGUSE *sup;
    797   1.91      fvdl 	daddr_t daddr;
    798   1.91      fvdl 	int32_t *daddrp;	/* XXX ondisk32 */
    799    1.1   mycroft 	ino_t ino;
    800   1.69  perseant 	int error, i, ndx, fsb = 0;
    801    1.1   mycroft 	int redo_ifile = 0;
    802    1.5   mycroft 	struct timespec ts;
    803   1.69  perseant 	int gotblk = 0;
    804   1.15  perseant 
    805   1.47  perseant 	if (!(ip->i_flag & IN_ALLMOD))
    806   1.73       chs 		return (0);
    807   1.15  perseant 
    808    1.1   mycroft 	/* Allocate a new inode block if necessary. */
    809   1.73       chs 	if ((ip->i_number != LFS_IFILE_INUM || sp->idp == NULL) && sp->ibp == NULL) {
    810    1.1   mycroft 		/* Allocate a new segment if necessary. */
    811   1.69  perseant 		if (sp->seg_bytes_left < fs->lfs_ibsize ||
    812   1.98      yamt 		    sp->sum_bytes_left < sizeof(int32_t))
    813    1.1   mycroft 			(void) lfs_writeseg(fs, sp);
    814    1.1   mycroft 
    815    1.1   mycroft 		/* Get next inode block. */
    816    1.1   mycroft 		daddr = fs->lfs_offset;
    817   1.69  perseant 		fs->lfs_offset += btofsb(fs, fs->lfs_ibsize);
    818    1.1   mycroft 		sp->ibp = *sp->cbpp++ =
    819   1.69  perseant 			getblk(VTOI(fs->lfs_ivnode)->i_devvp, fsbtodb(fs, daddr),
    820   1.69  perseant 			       fs->lfs_ibsize, 0, 0);
    821   1.24  perseant 		gotblk++;
    822   1.24  perseant 
    823    1.1   mycroft 		/* Zero out inode numbers */
    824    1.1   mycroft 		for (i = 0; i < INOPB(fs); ++i)
    825    1.1   mycroft 			((struct dinode *)sp->ibp->b_data)[i].di_inumber = 0;
    826   1.15  perseant 
    827    1.1   mycroft 		++sp->start_bpp;
    828   1.69  perseant 		fs->lfs_avail -= btofsb(fs, fs->lfs_ibsize);
    829    1.1   mycroft 		/* Set remaining space counters. */
    830   1.69  perseant 		sp->seg_bytes_left -= fs->lfs_ibsize;
    831   1.98      yamt 		sp->sum_bytes_left -= sizeof(int32_t);
    832   1.98      yamt 		ndx = fs->lfs_sumsize / sizeof(int32_t) -
    833   1.15  perseant 			sp->ninodes / INOPB(fs) - 1;
    834   1.98      yamt 		((int32_t *)(sp->segsum))[ndx] = daddr;
    835    1.1   mycroft 	}
    836   1.27  perseant 
    837    1.1   mycroft 	/* Update the inode times and copy the inode onto the inode page. */
    838    1.9        pk 	TIMEVAL_TO_TIMESPEC(&time, &ts);
    839   1.74  perseant 	/* XXX kludge --- don't redirty the ifile just to put times on it */
    840   1.74  perseant 	if (ip->i_number != LFS_IFILE_INUM)
    841   1.74  perseant 		LFS_ITIMES(ip, &ts, &ts, &ts);
    842   1.16  perseant 
    843   1.27  perseant 	/*
    844   1.27  perseant 	 * If this is the Ifile, and we've already written the Ifile in this
    845   1.27  perseant 	 * partial segment, just overwrite it (it's not on disk yet) and
    846   1.27  perseant 	 * continue.
    847   1.27  perseant 	 *
    848   1.27  perseant 	 * XXX we know that the bp that we get the second time around has
    849   1.27  perseant 	 * already been gathered.
    850   1.27  perseant 	 */
    851   1.73       chs 	if (ip->i_number == LFS_IFILE_INUM && sp->idp) {
    852   1.27  perseant 		*(sp->idp) = ip->i_din.ffs_din;
    853   1.80  perseant 		ip->i_lfs_osize = ip->i_ffs_size;
    854   1.27  perseant 		return 0;
    855   1.27  perseant 	}
    856   1.27  perseant 
    857    1.1   mycroft 	bp = sp->ibp;
    858   1.53  perseant 	cdp = ((struct dinode *)bp->b_data) + (sp->ninodes % INOPB(fs));
    859   1.53  perseant 	*cdp = ip->i_din.ffs_din;
    860   1.69  perseant #ifdef LFS_IFILE_FRAG_ADDRESSING
    861   1.69  perseant 	if (fs->lfs_version > 1)
    862   1.69  perseant 		fsb = (sp->ninodes % INOPB(fs)) / INOPF(fs);
    863   1.69  perseant #endif
    864   1.53  perseant 
    865   1.53  perseant 	/*
    866   1.53  perseant 	 * If we are cleaning, ensure that we don't write UNWRITTEN disk
    867   1.80  perseant 	 * addresses to disk; possibly revert the inode size.
    868   1.53  perseant 	 */
    869   1.53  perseant 	if (ip->i_lfs_effnblks != ip->i_ffs_blocks) {
    870   1.80  perseant 		cdp->di_size = ip->i_lfs_osize;
    871   1.55  perseant #ifdef DEBUG_LFS
    872   1.53  perseant 		printf("lfs_writeinode: cleansing ino %d (%d != %d)\n",
    873   1.53  perseant 		       ip->i_number, ip->i_lfs_effnblks, ip->i_ffs_blocks);
    874   1.55  perseant #endif
    875   1.53  perseant 		for (daddrp = cdp->di_db; daddrp < cdp->di_ib + NIADDR;
    876   1.53  perseant 		     daddrp++) {
    877   1.53  perseant 			if (*daddrp == UNWRITTEN) {
    878   1.54  perseant #ifdef DEBUG_LFS
    879   1.53  perseant 				printf("lfs_writeinode: wiping UNWRITTEN\n");
    880   1.53  perseant #endif
    881   1.53  perseant 				*daddrp = 0;
    882   1.53  perseant 			}
    883   1.53  perseant 		}
    884   1.80  perseant 	} else {
    885   1.80  perseant 		/* If all blocks are goig to disk, update the "size on disk" */
    886   1.80  perseant 		ip->i_lfs_osize = ip->i_ffs_size;
    887   1.53  perseant 	}
    888   1.27  perseant 
    889   1.73       chs 	if (ip->i_flag & IN_CLEANING)
    890   1.56  perseant 		LFS_CLR_UINO(ip, IN_CLEANING);
    891   1.55  perseant 	else {
    892   1.56  perseant 		/* XXX IN_ALLMOD */
    893   1.56  perseant 		LFS_CLR_UINO(ip, IN_ACCESSED | IN_ACCESS | IN_CHANGE |
    894   1.56  perseant 			     IN_UPDATE);
    895   1.56  perseant 		if (ip->i_lfs_effnblks == ip->i_ffs_blocks)
    896   1.56  perseant 			LFS_CLR_UINO(ip, IN_MODIFIED);
    897   1.63  perseant #ifdef DEBUG_LFS
    898   1.63  perseant 		else
    899   1.63  perseant 			printf("lfs_writeinode: ino %d: real blks=%d, "
    900   1.63  perseant 			       "eff=%d\n", ip->i_number, ip->i_ffs_blocks,
    901   1.63  perseant 			       ip->i_lfs_effnblks);
    902   1.63  perseant #endif
    903   1.55  perseant 	}
    904   1.55  perseant 
    905   1.73       chs 	if (ip->i_number == LFS_IFILE_INUM) /* We know sp->idp == NULL */
    906   1.53  perseant 		sp->idp = ((struct dinode *)bp->b_data) +
    907   1.53  perseant 			(sp->ninodes % INOPB(fs));
    908   1.73       chs 	if (gotblk) {
    909   1.62  perseant 		LFS_LOCK_BUF(bp);
    910   1.24  perseant 		brelse(bp);
    911   1.24  perseant 	}
    912   1.15  perseant 
    913    1.1   mycroft 	/* Increment inode count in segment summary block. */
    914    1.1   mycroft 	++((SEGSUM *)(sp->segsum))->ss_ninos;
    915   1.15  perseant 
    916    1.1   mycroft 	/* If this page is full, set flag to allocate a new page. */
    917    1.1   mycroft 	if (++sp->ninodes % INOPB(fs) == 0)
    918    1.1   mycroft 		sp->ibp = NULL;
    919   1.15  perseant 
    920    1.1   mycroft 	/*
    921    1.1   mycroft 	 * If updating the ifile, update the super-block.  Update the disk
    922    1.1   mycroft 	 * address and access times for this inode in the ifile.
    923    1.1   mycroft 	 */
    924    1.1   mycroft 	ino = ip->i_number;
    925    1.1   mycroft 	if (ino == LFS_IFILE_INUM) {
    926    1.1   mycroft 		daddr = fs->lfs_idaddr;
    927   1.69  perseant 		fs->lfs_idaddr = dbtofsb(fs, bp->b_blkno);
    928    1.1   mycroft 	} else {
    929    1.1   mycroft 		LFS_IENTRY(ifp, fs, ino, ibp);
    930    1.1   mycroft 		daddr = ifp->if_daddr;
    931   1.69  perseant 		ifp->if_daddr = dbtofsb(fs, bp->b_blkno) + fsb;
    932   1.30  perseant #ifdef LFS_DEBUG_NEXTFREE
    933   1.73       chs 		if (ino > 3 && ifp->if_nextfree) {
    934   1.30  perseant 			vprint("lfs_writeinode",ITOV(ip));
    935   1.30  perseant 			printf("lfs_writeinode: updating free ino %d\n",
    936   1.30  perseant 				ip->i_number);
    937   1.30  perseant 		}
    938   1.30  perseant #endif
    939   1.74  perseant 		error = LFS_BWRITE_LOG(ibp); /* Ifile */
    940    1.1   mycroft 	}
    941   1.15  perseant 
    942    1.1   mycroft 	/*
    943   1.60    toshii 	 * The inode's last address should not be in the current partial
    944   1.60    toshii 	 * segment, except under exceptional circumstances (lfs_writevnodes
    945   1.60    toshii 	 * had to start over, and in the meantime more blocks were written
    946   1.80  perseant 	 * to a vnode).  Both inodes will be accounted to this segment
    947   1.80  perseant 	 * in lfs_writeseg so we need to subtract the earlier version
    948   1.80  perseant 	 * here anyway.  The segment count can temporarily dip below
    949   1.80  perseant 	 * zero here; keep track of how many duplicates we have in
    950   1.80  perseant 	 * "dupino" so we don't panic below.
    951   1.60    toshii 	 */
    952   1.80  perseant 	if (daddr >= fs->lfs_lastpseg && daddr <= dbtofsb(fs, bp->b_blkno)) {
    953   1.80  perseant 		++sp->ndupino;
    954   1.49  perseant 		printf("lfs_writeinode: last inode addr in current pseg "
    955   1.91      fvdl 		       "(ino %d daddr 0x%llx) ndupino=%d\n", ino,
    956   1.91      fvdl 			(long long)daddr, sp->ndupino);
    957   1.80  perseant 	}
    958   1.80  perseant 	/*
    959   1.80  perseant 	 * Account the inode: it no longer belongs to its former segment,
    960   1.80  perseant 	 * though it will not belong to the new segment until that segment
    961   1.80  perseant 	 * is actually written.
    962   1.80  perseant 	 */
    963   1.49  perseant 	if (daddr != LFS_UNUSED_DADDR) {
    964   1.83      yamt 		u_int32_t oldsn = dtosn(fs, daddr);
    965    1.1   mycroft #ifdef DIAGNOSTIC
    966   1.83      yamt 		int ndupino = (sp->seg_number == oldsn) ? sp->ndupino : 0;
    967   1.83      yamt #endif
    968   1.83      yamt 		LFS_SEGENTRY(sup, fs, oldsn, bp);
    969   1.83      yamt #ifdef DIAGNOSTIC
    970   1.83      yamt 		if (sup->su_nbytes + DINODE_SIZE * ndupino < DINODE_SIZE) {
    971   1.53  perseant 			printf("lfs_writeinode: negative bytes "
    972   1.96      yamt 			       "(segment %" PRIu32 " short by %d, "
    973   1.96      yamt 			       "oldsn=%" PRIu32 ", cursn=%" PRIu32
    974   1.96      yamt 			       ", daddr=%" PRId64 ", su_nbytes=%u, "
    975   1.83      yamt 			       "ndupino=%d)\n",
    976   1.69  perseant 			       dtosn(fs, daddr),
    977   1.83      yamt 			       (int)DINODE_SIZE * (1 - sp->ndupino)
    978   1.83      yamt 				   - sup->su_nbytes,
    979   1.96      yamt 			       oldsn, sp->seg_number, daddr,
    980   1.83      yamt 			       (unsigned int)sup->su_nbytes,
    981   1.83      yamt 			       sp->ndupino);
    982   1.27  perseant 			panic("lfs_writeinode: negative bytes");
    983   1.27  perseant 			sup->su_nbytes = DINODE_SIZE;
    984    1.1   mycroft 		}
    985    1.1   mycroft #endif
    986   1.69  perseant #ifdef DEBUG_SU_NBYTES
    987   1.69  perseant 		printf("seg %d -= %d for ino %d inode\n",
    988   1.69  perseant 		       dtosn(fs, daddr), DINODE_SIZE, ino);
    989   1.69  perseant #endif
    990   1.13   thorpej 		sup->su_nbytes -= DINODE_SIZE;
    991    1.1   mycroft 		redo_ifile =
    992   1.15  perseant 			(ino == LFS_IFILE_INUM && !(bp->b_flags & B_GATHERED));
    993   1.74  perseant 		if (redo_ifile)
    994   1.74  perseant 			fs->lfs_flags |= LFS_IFDIRTY;
    995   1.74  perseant 		error = LFS_BWRITE_LOG(bp); /* Ifile */
    996    1.1   mycroft 	}
    997    1.1   mycroft 	return (redo_ifile);
    998    1.1   mycroft }
    999    1.1   mycroft 
   1000    1.1   mycroft int
   1001   1.69  perseant lfs_gatherblock(struct segment *sp, struct buf *bp, int *sptr)
   1002    1.1   mycroft {
   1003    1.1   mycroft 	struct lfs *fs;
   1004    1.1   mycroft 	int version;
   1005   1.15  perseant 
   1006    1.1   mycroft 	/*
   1007    1.1   mycroft 	 * If full, finish this segment.  We may be doing I/O, so
   1008    1.1   mycroft 	 * release and reacquire the splbio().
   1009    1.1   mycroft 	 */
   1010    1.1   mycroft #ifdef DIAGNOSTIC
   1011    1.1   mycroft 	if (sp->vp == NULL)
   1012    1.1   mycroft 		panic ("lfs_gatherblock: Null vp in segment");
   1013    1.1   mycroft #endif
   1014    1.1   mycroft 	fs = sp->fs;
   1015   1.98      yamt 	if (sp->sum_bytes_left < sizeof(int32_t) ||
   1016   1.10      fvdl 	    sp->seg_bytes_left < bp->b_bcount) {
   1017    1.1   mycroft 		if (sptr)
   1018    1.1   mycroft 			splx(*sptr);
   1019    1.1   mycroft 		lfs_updatemeta(sp);
   1020   1.15  perseant 
   1021    1.1   mycroft 		version = sp->fip->fi_version;
   1022    1.1   mycroft 		(void) lfs_writeseg(fs, sp);
   1023   1.15  perseant 
   1024    1.1   mycroft 		sp->fip->fi_version = version;
   1025    1.1   mycroft 		sp->fip->fi_ino = VTOI(sp->vp)->i_number;
   1026    1.1   mycroft 		/* Add the current file to the segment summary. */
   1027    1.1   mycroft 		++((SEGSUM *)(sp->segsum))->ss_nfinfo;
   1028   1.98      yamt 		sp->sum_bytes_left -= FINFOSIZE;
   1029   1.15  perseant 
   1030    1.1   mycroft 		if (sptr)
   1031    1.1   mycroft 			*sptr = splbio();
   1032   1.73       chs 		return (1);
   1033    1.1   mycroft 	}
   1034   1.15  perseant 
   1035   1.15  perseant #ifdef DEBUG
   1036   1.73       chs 	if (bp->b_flags & B_GATHERED) {
   1037   1.94    kleink 		printf("lfs_gatherblock: already gathered! Ino %d,"
   1038   1.94    kleink 		       " lbn %" PRId64 "\n",
   1039   1.15  perseant 		       sp->fip->fi_ino, bp->b_lblkno);
   1040   1.73       chs 		return (0);
   1041   1.15  perseant 	}
   1042   1.15  perseant #endif
   1043    1.1   mycroft 	/* Insert into the buffer list, update the FINFO block. */
   1044    1.1   mycroft 	bp->b_flags |= B_GATHERED;
   1045   1.74  perseant 	bp->b_flags &= ~B_DONE;
   1046   1.74  perseant 
   1047    1.1   mycroft 	*sp->cbpp++ = bp;
   1048    1.1   mycroft 	sp->fip->fi_blocks[sp->fip->fi_nblocks++] = bp->b_lblkno;
   1049   1.15  perseant 
   1050   1.98      yamt 	sp->sum_bytes_left -= sizeof(int32_t);
   1051   1.10      fvdl 	sp->seg_bytes_left -= bp->b_bcount;
   1052   1.73       chs 	return (0);
   1053    1.1   mycroft }
   1054    1.1   mycroft 
   1055   1.15  perseant int
   1056   1.69  perseant lfs_gather(struct lfs *fs, struct segment *sp, struct vnode *vp, int (*match)(struct lfs *, struct buf *))
   1057    1.1   mycroft {
   1058   1.77  perseant 	struct buf *bp, *nbp;
   1059   1.73       chs 	int s, count = 0;
   1060   1.15  perseant 
   1061    1.1   mycroft 	sp->vp = vp;
   1062    1.1   mycroft 	s = splbio();
   1063   1.15  perseant 
   1064   1.15  perseant #ifndef LFS_NO_BACKBUF_HACK
   1065   1.10      fvdl /* This is a hack to see if ordering the blocks in LFS makes a difference. */
   1066   1.75  perseant # define	BUF_OFFSET	(((caddr_t)&LIST_NEXT(bp, b_vnbufs)) - (caddr_t)bp)
   1067   1.75  perseant # define	BACK_BUF(BP)	((struct buf *)(((caddr_t)(BP)->b_vnbufs.le_prev) - BUF_OFFSET))
   1068   1.75  perseant # define	BEG_OF_LIST	((struct buf *)(((caddr_t)&LIST_FIRST(&vp->v_dirtyblkhd)) - BUF_OFFSET))
   1069   1.10      fvdl /* Find last buffer. */
   1070   1.75  perseant loop:	for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp && LIST_NEXT(bp, b_vnbufs) != NULL;
   1071   1.75  perseant 	    bp = LIST_NEXT(bp, b_vnbufs));
   1072   1.77  perseant 	for (; bp && bp != BEG_OF_LIST; bp = nbp) {
   1073   1.77  perseant 		nbp = BACK_BUF(bp);
   1074   1.77  perseant #else /* LFS_NO_BACKBUF_HACK */
   1075   1.77  perseant loop:	for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp; bp = nbp) {
   1076   1.77  perseant 		nbp = LIST_NEXT(bp, b_vnbufs);
   1077   1.15  perseant #endif /* LFS_NO_BACKBUF_HACK */
   1078   1.74  perseant 		if ((bp->b_flags & (B_BUSY|B_GATHERED)) || !match(fs, bp)) {
   1079   1.74  perseant #ifdef DEBUG_LFS
   1080   1.74  perseant 			if (vp == fs->lfs_ivnode && (bp->b_flags & (B_BUSY|B_GATHERED)) == B_BUSY)
   1081   1.96      yamt 				printf("(%" PRId64 ":%lx)", bp->b_lblkno, bp->b_flags);
   1082   1.74  perseant #endif
   1083    1.1   mycroft 			continue;
   1084   1.74  perseant 		}
   1085   1.73       chs 		if (vp->v_type == VBLK) {
   1086   1.30  perseant 			/* For block devices, just write the blocks. */
   1087   1.30  perseant 			/* XXX Do we really need to even do this? */
   1088   1.30  perseant #ifdef DEBUG_LFS
   1089   1.73       chs 			if (count == 0)
   1090   1.30  perseant 				printf("BLK(");
   1091   1.30  perseant 			printf(".");
   1092   1.30  perseant #endif
   1093   1.30  perseant 			/* Get the block before bwrite, so we don't corrupt the free list */
   1094   1.30  perseant 			bp->b_flags |= B_BUSY;
   1095   1.30  perseant 			bremfree(bp);
   1096   1.30  perseant 			bwrite(bp);
   1097   1.30  perseant 		} else {
   1098    1.1   mycroft #ifdef DIAGNOSTIC
   1099   1.73       chs 			if ((bp->b_flags & (B_CALL|B_INVAL)) == B_INVAL) {
   1100   1.93      tron 				printf("lfs_gather: lbn %" PRId64 " is "
   1101   1.93      tron 					"B_INVAL\n", bp->b_lblkno);
   1102   1.43  perseant 				VOP_PRINT(bp->b_vp);
   1103   1.43  perseant 			}
   1104   1.30  perseant 			if (!(bp->b_flags & B_DELWRI))
   1105   1.30  perseant 				panic("lfs_gather: bp not B_DELWRI");
   1106   1.30  perseant 			if (!(bp->b_flags & B_LOCKED)) {
   1107   1.93      tron 				printf("lfs_gather: lbn %" PRId64 " blk "
   1108   1.93      tron 					"%" PRId64 " not B_LOCKED\n",
   1109   1.93      tron 					bp->b_lblkno,
   1110   1.93      tron 					dbtofsb(fs, bp->b_blkno));
   1111   1.30  perseant 				VOP_PRINT(bp->b_vp);
   1112   1.30  perseant 				panic("lfs_gather: bp not B_LOCKED");
   1113   1.30  perseant 			}
   1114    1.1   mycroft #endif
   1115   1.30  perseant 			if (lfs_gatherblock(sp, bp, &s)) {
   1116   1.30  perseant 				goto loop;
   1117   1.30  perseant 			}
   1118   1.30  perseant 		}
   1119   1.15  perseant 		count++;
   1120    1.1   mycroft 	}
   1121    1.1   mycroft 	splx(s);
   1122   1.30  perseant #ifdef DEBUG_LFS
   1123   1.73       chs 	if (vp->v_type == VBLK && count)
   1124   1.30  perseant 		printf(")\n");
   1125   1.30  perseant #endif
   1126    1.1   mycroft 	lfs_updatemeta(sp);
   1127    1.1   mycroft 	sp->vp = NULL;
   1128   1.15  perseant 	return count;
   1129    1.1   mycroft }
   1130    1.1   mycroft 
   1131    1.1   mycroft /*
   1132    1.1   mycroft  * Update the metadata that points to the blocks listed in the FINFO
   1133    1.1   mycroft  * array.
   1134    1.1   mycroft  */
   1135    1.1   mycroft void
   1136   1.69  perseant lfs_updatemeta(struct segment *sp)
   1137    1.1   mycroft {
   1138    1.1   mycroft 	SEGUSE *sup;
   1139   1.80  perseant 	struct buf *bp, *sbp;
   1140    1.1   mycroft 	struct lfs *fs;
   1141    1.1   mycroft 	struct vnode *vp;
   1142    1.1   mycroft 	struct indir a[NIADDR + 2], *ap;
   1143    1.1   mycroft 	struct inode *ip;
   1144   1.91      fvdl 	daddr_t daddr, lbn, off;
   1145   1.43  perseant 	daddr_t ooff;
   1146   1.10      fvdl 	int error, i, nblocks, num;
   1147   1.80  perseant 	int bb, osize, obb;
   1148   1.15  perseant 
   1149    1.1   mycroft 	vp = sp->vp;
   1150    1.1   mycroft 	nblocks = &sp->fip->fi_blocks[sp->fip->fi_nblocks] - sp->start_lbp;
   1151   1.10      fvdl 	if (nblocks < 0)
   1152   1.82    provos 		panic("This is a bad thing");
   1153    1.1   mycroft 	if (vp == NULL || nblocks == 0)
   1154    1.1   mycroft 		return;
   1155   1.15  perseant 
   1156    1.1   mycroft 	/* Sort the blocks. */
   1157   1.15  perseant 	/*
   1158   1.15  perseant 	 * XXX KS - We have to sort even if the blocks come from the
   1159   1.15  perseant 	 * cleaner, because there might be other pending blocks on the
   1160   1.15  perseant 	 * same inode...and if we don't sort, and there are fragments
   1161   1.15  perseant 	 * present, blocks may be written in the wrong place.
   1162   1.15  perseant 	 */
   1163   1.15  perseant 	/* if (!(sp->seg_flags & SEGM_CLEAN)) */
   1164   1.15  perseant 	lfs_shellsort(sp->start_bpp, sp->start_lbp, nblocks);
   1165   1.15  perseant 
   1166    1.1   mycroft 	/*
   1167   1.10      fvdl 	 * Record the length of the last block in case it's a fragment.
   1168   1.10      fvdl 	 * If there are indirect blocks present, they sort last.  An
   1169   1.10      fvdl 	 * indirect block will be lfs_bsize and its presence indicates
   1170   1.10      fvdl 	 * that you cannot have fragments.
   1171   1.80  perseant 	 *
   1172   1.80  perseant 	 * XXX This last is a lie.  A cleaned fragment can coexist with
   1173   1.80  perseant 	 * XXX a later indirect block.  This will continue to be
   1174   1.80  perseant 	 * XXX true until lfs_markv is fixed to do everything with
   1175   1.80  perseant 	 * XXX fake blocks (including fake inodes and fake indirect blocks).
   1176   1.10      fvdl 	 */
   1177   1.10      fvdl 	sp->fip->fi_lastlength = sp->start_bpp[nblocks - 1]->b_bcount;
   1178   1.15  perseant 
   1179   1.10      fvdl 	/*
   1180    1.1   mycroft 	 * Assign disk addresses, and update references to the logical
   1181    1.1   mycroft 	 * block and the segment usage information.
   1182    1.1   mycroft 	 */
   1183    1.1   mycroft 	fs = sp->fs;
   1184    1.1   mycroft 	for (i = nblocks; i--; ++sp->start_bpp) {
   1185    1.1   mycroft 		lbn = *sp->start_lbp++;
   1186   1.80  perseant 		sbp = *sp->start_bpp;
   1187   1.15  perseant 
   1188   1.80  perseant 		sbp->b_blkno = fsbtodb(fs, fs->lfs_offset);
   1189   1.69  perseant 		off = fs->lfs_offset;
   1190   1.80  perseant 		if (sbp->b_blkno == sbp->b_lblkno) {
   1191   1.93      tron 			printf("lfs_updatemeta: ino %d blk %" PRId64
   1192   1.58  perseant 			       " has same lbn and daddr\n",
   1193   1.95    kleink 			       VTOI(vp)->i_number, off);
   1194   1.17  perseant 		}
   1195   1.80  perseant 
   1196   1.80  perseant 		/*
   1197   1.80  perseant 		 * If we write a frag in the wrong place, the cleaner won't
   1198   1.80  perseant 		 * be able to correctly identify its size later, and the
   1199   1.80  perseant 		 * segment will be uncleanable.  (Even worse, it will assume
   1200   1.80  perseant 		 * that the indirect block that actually ends the list
   1201   1.80  perseant 		 * is of a smaller size!)
   1202   1.80  perseant 		 */
   1203   1.80  perseant 		if (sbp->b_bcount < fs->lfs_bsize && i != 0)
   1204   1.82    provos 			panic("lfs_updatemeta: fragment is not last block");
   1205   1.80  perseant 
   1206   1.80  perseant 		bb = fragstofsb(fs, numfrags(fs, sbp->b_bcount));
   1207   1.53  perseant 		fs->lfs_offset += bb;
   1208    1.4  christos 		error = ufs_bmaparray(vp, lbn, &daddr, a, &num, NULL);
   1209   1.69  perseant 		if (daddr > 0)
   1210   1.69  perseant 			daddr = dbtofsb(fs, daddr);
   1211    1.4  christos 		if (error)
   1212    1.1   mycroft 			panic("lfs_updatemeta: ufs_bmaparray %d", error);
   1213    1.1   mycroft 		ip = VTOI(vp);
   1214    1.1   mycroft 		switch (num) {
   1215    1.1   mycroft 		case 0:
   1216   1.43  perseant 			ooff = ip->i_ffs_db[lbn];
   1217   1.55  perseant #ifdef DEBUG
   1218   1.55  perseant 			if (ooff == 0) {
   1219   1.53  perseant 				printf("lfs_updatemeta[1]: warning: writing "
   1220   1.94    kleink 					"ino %d lbn %" PRId64 " at 0x%" PRIx64
   1221   1.94    kleink 					", was 0x0\n", ip->i_number, lbn, off);
   1222   1.55  perseant 			}
   1223   1.43  perseant #endif
   1224   1.55  perseant 			if (ooff == UNWRITTEN)
   1225   1.55  perseant 				ip->i_ffs_blocks += bb;
   1226   1.80  perseant 			else {
   1227   1.80  perseant 				/* possible fragment truncation or extension */
   1228   1.80  perseant 				obb = btofsb(fs, ip->i_lfs_fragsize[lbn]);
   1229   1.80  perseant 				ip->i_ffs_blocks += (bb - obb);
   1230   1.80  perseant 			}
   1231   1.55  perseant 			ip->i_ffs_db[lbn] = off;
   1232    1.1   mycroft 			break;
   1233    1.1   mycroft 		case 1:
   1234   1.43  perseant 			ooff = ip->i_ffs_ib[a[0].in_off];
   1235   1.55  perseant #ifdef DEBUG
   1236   1.55  perseant 			if (ooff == 0) {
   1237   1.53  perseant 				printf("lfs_updatemeta[2]: warning: writing "
   1238   1.94    kleink 					"ino %d lbn %" PRId64 " at 0x%" PRIx64
   1239   1.94    kleink 					", was 0x0\n", ip->i_number, lbn, off);
   1240   1.55  perseant 			}
   1241   1.43  perseant #endif
   1242   1.55  perseant 			if (ooff == UNWRITTEN)
   1243   1.55  perseant 				ip->i_ffs_blocks += bb;
   1244   1.55  perseant 			ip->i_ffs_ib[a[0].in_off] = off;
   1245    1.1   mycroft 			break;
   1246    1.1   mycroft 		default:
   1247    1.1   mycroft 			ap = &a[num - 1];
   1248    1.1   mycroft 			if (bread(vp, ap->in_lbn, fs->lfs_bsize, NOCRED, &bp))
   1249   1.93      tron 				panic("lfs_updatemeta: bread bno %" PRId64,
   1250   1.95    kleink 				      ap->in_lbn);
   1251   1.43  perseant 
   1252   1.91      fvdl 			/* XXX ondisk32 */
   1253   1.91      fvdl 			ooff = ((int32_t *)bp->b_data)[ap->in_off];
   1254   1.55  perseant #if DEBUG
   1255   1.55  perseant 			if (ooff == 0) {
   1256   1.53  perseant 				printf("lfs_updatemeta[3]: warning: writing "
   1257   1.94    kleink 					"ino %d lbn %" PRId64 " at 0x%" PRIx64
   1258   1.94    kleink 					", was 0x0\n", ip->i_number, lbn, off);
   1259   1.55  perseant 			}
   1260   1.43  perseant #endif
   1261   1.55  perseant 			if (ooff == UNWRITTEN)
   1262   1.55  perseant 				ip->i_ffs_blocks += bb;
   1263   1.91      fvdl 			/* XXX ondisk32 */
   1264   1.91      fvdl 			((int32_t *)bp->b_data)[ap->in_off] = off;
   1265   1.58  perseant 			(void) VOP_BWRITE(bp);
   1266    1.1   mycroft 		}
   1267   1.55  perseant #ifdef DEBUG
   1268   1.49  perseant 		if (daddr >= fs->lfs_lastpseg && daddr <= off) {
   1269   1.93      tron 			printf("lfs_updatemeta: ino %d, lbn %" PRId64 ", "
   1270   1.94    kleink 				"addr = %" PRIx64 " in same pseg\n",
   1271   1.93      tron 				VTOI(sp->vp)->i_number, sbp->b_lblkno, daddr);
   1272   1.49  perseant 		}
   1273   1.55  perseant #endif
   1274   1.80  perseant 		/*
   1275   1.80  perseant 		 * Update segment usage information, based on old size
   1276   1.80  perseant 		 * and location.
   1277   1.80  perseant 		 */
   1278   1.49  perseant 		if (daddr > 0) {
   1279   1.83      yamt 			u_int32_t oldsn = dtosn(fs, daddr);
   1280   1.83      yamt #ifdef DIAGNOSTIC
   1281   1.83      yamt 			int ndupino = (sp->seg_number == oldsn) ?
   1282   1.83      yamt 			    sp->ndupino : 0;
   1283   1.83      yamt #endif
   1284   1.80  perseant 			if (lbn >= 0 && lbn < NDADDR)
   1285   1.80  perseant 				osize = ip->i_lfs_fragsize[lbn];
   1286   1.80  perseant 			else
   1287   1.80  perseant 				osize = fs->lfs_bsize;
   1288   1.83      yamt 			LFS_SEGENTRY(sup, fs, oldsn, bp);
   1289    1.1   mycroft #ifdef DIAGNOSTIC
   1290   1.83      yamt 			if (sup->su_nbytes + DINODE_SIZE * ndupino < osize) {
   1291   1.55  perseant 				printf("lfs_updatemeta: negative bytes "
   1292   1.96      yamt 				       "(segment %" PRIu32 " short by %d)\n",
   1293   1.69  perseant 				       dtosn(fs, daddr),
   1294   1.80  perseant 				       osize - sup->su_nbytes);
   1295   1.93      tron 				printf("lfs_updatemeta: ino %d, lbn %" PRId64
   1296   1.95    kleink 				       ", addr = 0x%" PRIx64 "\n",
   1297   1.92      tron 				       VTOI(sp->vp)->i_number, lbn, daddr);
   1298   1.83      yamt 				printf("lfs_updatemeta: ndupino=%d\n", ndupino);
   1299   1.27  perseant 				panic("lfs_updatemeta: negative bytes");
   1300   1.83      yamt 				sup->su_nbytes = osize;
   1301    1.1   mycroft 			}
   1302    1.1   mycroft #endif
   1303   1.69  perseant #ifdef DEBUG_SU_NBYTES
   1304   1.96      yamt 			printf("seg %" PRIu32 " -= %d for ino %d lbn %" PRId64
   1305   1.96      yamt 				" db 0x%" PRIx64 "\n",
   1306   1.93      tron 				dtosn(fs, daddr), osize,
   1307   1.93      tron 				VTOI(sp->vp)->i_number, lbn, daddr);
   1308   1.69  perseant #endif
   1309   1.80  perseant 			sup->su_nbytes -= osize;
   1310   1.74  perseant 			if (!(bp->b_flags & B_GATHERED))
   1311   1.74  perseant 				fs->lfs_flags |= LFS_IFDIRTY;
   1312   1.74  perseant 			error = LFS_BWRITE_LOG(bp); /* Ifile */
   1313    1.1   mycroft 		}
   1314   1.80  perseant 		/*
   1315   1.80  perseant 		 * Now that this block has a new address, and its old
   1316   1.80  perseant 		 * segment no longer owns it, we can forget about its
   1317   1.80  perseant 		 * old size.
   1318   1.80  perseant 		 */
   1319   1.80  perseant 		if (lbn >= 0 && lbn < NDADDR)
   1320   1.80  perseant 			ip->i_lfs_fragsize[lbn] = sbp->b_bcount;
   1321    1.1   mycroft 	}
   1322    1.1   mycroft }
   1323    1.1   mycroft 
   1324    1.1   mycroft /*
   1325    1.1   mycroft  * Start a new segment.
   1326    1.1   mycroft  */
   1327    1.1   mycroft int
   1328   1.69  perseant lfs_initseg(struct lfs *fs)
   1329    1.1   mycroft {
   1330    1.1   mycroft 	struct segment *sp;
   1331    1.1   mycroft 	SEGUSE *sup;
   1332    1.1   mycroft 	SEGSUM *ssp;
   1333   1.74  perseant 	struct buf *bp, *sbp;
   1334    1.1   mycroft 	int repeat;
   1335   1.15  perseant 
   1336    1.1   mycroft 	sp = fs->lfs_sp;
   1337   1.69  perseant 
   1338    1.1   mycroft 	repeat = 0;
   1339    1.1   mycroft 	/* Advance to the next segment. */
   1340    1.1   mycroft 	if (!LFS_PARTIAL_FITS(fs)) {
   1341   1.55  perseant 		/* lfs_avail eats the remaining space */
   1342   1.69  perseant 		fs->lfs_avail -= fs->lfs_fsbpseg - (fs->lfs_offset -
   1343   1.55  perseant 						   fs->lfs_curseg);
   1344    1.1   mycroft 		/* Wake up any cleaning procs waiting on this file system. */
   1345    1.1   mycroft 		wakeup(&lfs_allclean_wakeup);
   1346   1.10      fvdl 		wakeup(&fs->lfs_nextseg);
   1347    1.1   mycroft 		lfs_newseg(fs);
   1348    1.1   mycroft 		repeat = 1;
   1349    1.1   mycroft 		fs->lfs_offset = fs->lfs_curseg;
   1350   1.69  perseant 		sp->seg_number = dtosn(fs, fs->lfs_curseg);
   1351   1.69  perseant 		sp->seg_bytes_left = fsbtob(fs, fs->lfs_fsbpseg);
   1352    1.1   mycroft 		/*
   1353    1.1   mycroft 		 * If the segment contains a superblock, update the offset
   1354    1.1   mycroft 		 * and summary address to skip over it.
   1355    1.1   mycroft 		 */
   1356    1.1   mycroft 		LFS_SEGENTRY(sup, fs, sp->seg_number, bp);
   1357    1.1   mycroft 		if (sup->su_flags & SEGUSE_SUPERBLOCK) {
   1358   1.69  perseant 			fs->lfs_offset += btofsb(fs, LFS_SBPAD);
   1359    1.1   mycroft 			sp->seg_bytes_left -= LFS_SBPAD;
   1360    1.1   mycroft 		}
   1361    1.1   mycroft 		brelse(bp);
   1362   1.69  perseant 		/* Segment zero could also contain the labelpad */
   1363   1.69  perseant 		if (fs->lfs_version > 1 && sp->seg_number == 0 &&
   1364   1.69  perseant 		    fs->lfs_start < btofsb(fs, LFS_LABELPAD)) {
   1365   1.69  perseant 			fs->lfs_offset += btofsb(fs, LFS_LABELPAD) - fs->lfs_start;
   1366   1.69  perseant 			sp->seg_bytes_left -= LFS_LABELPAD - fsbtob(fs, fs->lfs_start);
   1367   1.69  perseant 		}
   1368    1.1   mycroft 	} else {
   1369   1.69  perseant 		sp->seg_number = dtosn(fs, fs->lfs_curseg);
   1370   1.69  perseant 		sp->seg_bytes_left = fsbtob(fs, fs->lfs_fsbpseg -
   1371   1.58  perseant 				      (fs->lfs_offset - fs->lfs_curseg));
   1372    1.1   mycroft 	}
   1373    1.1   mycroft 	fs->lfs_lastpseg = fs->lfs_offset;
   1374   1.15  perseant 
   1375    1.1   mycroft 	sp->fs = fs;
   1376    1.1   mycroft 	sp->ibp = NULL;
   1377   1.27  perseant 	sp->idp = NULL;
   1378    1.1   mycroft 	sp->ninodes = 0;
   1379   1.80  perseant 	sp->ndupino = 0;
   1380   1.69  perseant 
   1381    1.1   mycroft 	/* Get a new buffer for SEGSUM and enter it into the buffer list. */
   1382    1.1   mycroft 	sp->cbpp = sp->bpp;
   1383   1.74  perseant #ifdef LFS_MALLOC_SUMMARY
   1384   1.74  perseant 	sbp = *sp->cbpp = lfs_newbuf(fs, VTOI(fs->lfs_ivnode)->i_devvp,
   1385   1.74  perseant 				     fsbtodb(fs, fs->lfs_offset), fs->lfs_sumsize);
   1386   1.74  perseant   	sp->segsum = (*sp->cbpp)->b_data;
   1387   1.74  perseant #else
   1388   1.74  perseant 	sbp = *sp->cbpp = getblk(VTOI(fs->lfs_ivnode)->i_devvp,
   1389   1.74  perseant 				 fsbtodb(fs, fs->lfs_offset), NBPG, 0, 0);
   1390   1.74  perseant 	memset(sbp->b_data, 0x5a, NBPG);
   1391   1.74  perseant 	sp->segsum = (*sp->cbpp)->b_data + NBPG - fs->lfs_sumsize;
   1392   1.74  perseant #endif
   1393   1.69  perseant 	bzero(sp->segsum, fs->lfs_sumsize);
   1394    1.1   mycroft 	sp->start_bpp = ++sp->cbpp;
   1395   1.69  perseant 	fs->lfs_offset += btofsb(fs, fs->lfs_sumsize);
   1396   1.15  perseant 
   1397    1.1   mycroft 	/* Set point to SEGSUM, initialize it. */
   1398    1.1   mycroft 	ssp = sp->segsum;
   1399    1.1   mycroft 	ssp->ss_next = fs->lfs_nextseg;
   1400    1.1   mycroft 	ssp->ss_nfinfo = ssp->ss_ninos = 0;
   1401   1.10      fvdl 	ssp->ss_magic = SS_MAGIC;
   1402    1.1   mycroft 
   1403    1.1   mycroft 	/* Set pointer to first FINFO, initialize it. */
   1404   1.69  perseant 	sp->fip = (struct finfo *)((caddr_t)sp->segsum + SEGSUM_SIZE(fs));
   1405    1.1   mycroft 	sp->fip->fi_nblocks = 0;
   1406    1.1   mycroft 	sp->start_lbp = &sp->fip->fi_blocks[0];
   1407   1.10      fvdl 	sp->fip->fi_lastlength = 0;
   1408   1.15  perseant 
   1409   1.69  perseant 	sp->seg_bytes_left -= fs->lfs_sumsize;
   1410   1.69  perseant 	sp->sum_bytes_left = fs->lfs_sumsize - SEGSUM_SIZE(fs);
   1411   1.15  perseant 
   1412   1.74  perseant #ifndef LFS_MALLOC_SUMMARY
   1413   1.74  perseant 	LFS_LOCK_BUF(sbp);
   1414   1.74  perseant 	brelse(sbp);
   1415   1.74  perseant #endif
   1416   1.73       chs 	return (repeat);
   1417    1.1   mycroft }
   1418    1.1   mycroft 
   1419    1.1   mycroft /*
   1420    1.1   mycroft  * Return the next segment to write.
   1421    1.1   mycroft  */
   1422    1.1   mycroft void
   1423   1.69  perseant lfs_newseg(struct lfs *fs)
   1424    1.1   mycroft {
   1425    1.1   mycroft 	CLEANERINFO *cip;
   1426    1.1   mycroft 	SEGUSE *sup;
   1427    1.1   mycroft 	struct buf *bp;
   1428    1.1   mycroft 	int curseg, isdirty, sn;
   1429   1.15  perseant 
   1430   1.69  perseant 	LFS_SEGENTRY(sup, fs, dtosn(fs, fs->lfs_nextseg), bp);
   1431   1.69  perseant #ifdef DEBUG_SU_NBYTES
   1432   1.69  perseant 	printf("lfs_newseg: seg %d := 0 in newseg\n",   /* XXXDEBUG */
   1433   1.69  perseant 	       dtosn(fs, fs->lfs_nextseg)); /* XXXDEBUG */
   1434   1.69  perseant #endif
   1435   1.15  perseant 	sup->su_flags |= SEGUSE_DIRTY | SEGUSE_ACTIVE;
   1436    1.1   mycroft 	sup->su_nbytes = 0;
   1437    1.1   mycroft 	sup->su_nsums = 0;
   1438    1.1   mycroft 	sup->su_ninos = 0;
   1439   1.74  perseant 	(void) LFS_BWRITE_LOG(bp); /* Ifile */
   1440    1.1   mycroft 
   1441    1.1   mycroft 	LFS_CLEANERINFO(cip, fs, bp);
   1442    1.1   mycroft 	--cip->clean;
   1443    1.1   mycroft 	++cip->dirty;
   1444   1.15  perseant 	fs->lfs_nclean = cip->clean;
   1445   1.61  perseant 	LFS_SYNC_CLEANERINFO(cip, fs, bp, 1);
   1446   1.15  perseant 
   1447    1.1   mycroft 	fs->lfs_lastseg = fs->lfs_curseg;
   1448    1.1   mycroft 	fs->lfs_curseg = fs->lfs_nextseg;
   1449   1.69  perseant 	for (sn = curseg = dtosn(fs, fs->lfs_curseg) + fs->lfs_interleave;;) {
   1450    1.1   mycroft 		sn = (sn + 1) % fs->lfs_nseg;
   1451    1.1   mycroft 		if (sn == curseg)
   1452    1.1   mycroft 			panic("lfs_nextseg: no clean segments");
   1453    1.1   mycroft 		LFS_SEGENTRY(sup, fs, sn, bp);
   1454    1.1   mycroft 		isdirty = sup->su_flags & SEGUSE_DIRTY;
   1455    1.1   mycroft 		brelse(bp);
   1456    1.1   mycroft 		if (!isdirty)
   1457    1.1   mycroft 			break;
   1458    1.1   mycroft 	}
   1459   1.15  perseant 
   1460    1.1   mycroft 	++fs->lfs_nactive;
   1461   1.69  perseant 	fs->lfs_nextseg = sntod(fs, sn);
   1462   1.73       chs 	if (lfs_dostats) {
   1463   1.15  perseant 		++lfs_stats.segsused;
   1464   1.15  perseant 	}
   1465    1.1   mycroft }
   1466    1.1   mycroft 
   1467   1.74  perseant static struct buf **
   1468   1.74  perseant lookahead_pagemove(struct buf **bpp, int nblocks, size_t *size)
   1469   1.74  perseant {
   1470   1.74  perseant 	size_t maxsize;
   1471   1.74  perseant #ifndef LFS_NO_PAGEMOVE
   1472   1.74  perseant 	struct buf *bp;
   1473   1.74  perseant #endif
   1474   1.74  perseant 
   1475   1.74  perseant 	maxsize = *size;
   1476   1.74  perseant 	*size = 0;
   1477   1.74  perseant #ifdef LFS_NO_PAGEMOVE
   1478   1.74  perseant 	return bpp;
   1479   1.74  perseant #else
   1480   1.74  perseant 	while((bp = *bpp) != NULL && *size < maxsize && nblocks--) {
   1481   1.74  perseant 		if(bp->b_flags & B_CALL)
   1482   1.74  perseant 			return bpp;
   1483   1.74  perseant 		if(bp->b_bcount % NBPG)
   1484   1.74  perseant 			return bpp;
   1485   1.74  perseant 		*size += bp->b_bcount;
   1486   1.74  perseant 		++bpp;
   1487   1.74  perseant 	}
   1488   1.74  perseant 	return NULL;
   1489   1.74  perseant #endif
   1490   1.74  perseant }
   1491   1.74  perseant 
   1492   1.74  perseant #define BQUEUES 4 /* XXX */
   1493   1.74  perseant #define BQ_EMPTY 3 /* XXX */
   1494   1.74  perseant extern TAILQ_HEAD(bqueues, buf) bufqueues[BQUEUES];
   1495  1.100        pk extern struct simplelock bqueue_slock;
   1496   1.74  perseant 
   1497   1.74  perseant #define	BUFHASH(dvp, lbn)	\
   1498   1.74  perseant 	(&bufhashtbl[((long)(dvp) / sizeof(*(dvp)) + (int)(lbn)) & bufhash])
   1499   1.74  perseant extern LIST_HEAD(bufhashhdr, buf) invalhash;
   1500   1.74  perseant /*
   1501   1.74  perseant  * Insq/Remq for the buffer hash lists.
   1502   1.74  perseant  */
   1503   1.74  perseant #define	binshash(bp, dp)	LIST_INSERT_HEAD(dp, bp, b_hash)
   1504   1.74  perseant #define	bremhash(bp)		LIST_REMOVE(bp, b_hash)
   1505   1.74  perseant 
   1506   1.74  perseant static struct buf *
   1507   1.74  perseant lfs_newclusterbuf(struct lfs *fs, struct vnode *vp, daddr_t addr, int n)
   1508   1.74  perseant {
   1509   1.74  perseant 	struct lfs_cluster *cl;
   1510   1.74  perseant 	struct buf **bpp, *bp;
   1511   1.74  perseant 	int s;
   1512   1.74  perseant 
   1513   1.74  perseant 	cl = (struct lfs_cluster *)malloc(sizeof(*cl), M_SEGMENT, M_WAITOK);
   1514   1.74  perseant 	bpp = (struct buf **)malloc(n*sizeof(*bpp), M_SEGMENT, M_WAITOK);
   1515   1.79  perseant 	memset(cl, 0, sizeof(*cl));
   1516   1.74  perseant 	cl->fs = fs;
   1517   1.74  perseant 	cl->bpp = bpp;
   1518   1.74  perseant 	cl->bufcount = 0;
   1519   1.74  perseant 	cl->bufsize = 0;
   1520   1.74  perseant 
   1521   1.79  perseant 	/* If this segment is being written synchronously, note that */
   1522   1.79  perseant 	if (fs->lfs_sp->seg_flags & SEGM_SYNC) {
   1523   1.79  perseant 		cl->flags |= LFS_CL_SYNC;
   1524   1.79  perseant 		cl->seg = fs->lfs_sp;
   1525   1.79  perseant 		++cl->seg->seg_iocount;
   1526   1.79  perseant 		/* printf("+ %x => %d\n", cl->seg, cl->seg->seg_iocount); */
   1527   1.79  perseant 	}
   1528   1.79  perseant 
   1529   1.74  perseant 	/* Get an empty buffer header, or maybe one with something on it */
   1530   1.74  perseant 	s = splbio();
   1531  1.100        pk 	simple_lock(&bqueue_slock);
   1532   1.74  perseant 	if((bp = bufqueues[BQ_EMPTY].tqh_first) != NULL) {
   1533  1.100        pk 		simple_lock(&bp->b_interlock);
   1534   1.74  perseant 		bremfree(bp);
   1535   1.74  perseant 		/* clear out various other fields */
   1536   1.74  perseant 		bp->b_flags = B_BUSY;
   1537   1.74  perseant 		bp->b_dev = NODEV;
   1538   1.74  perseant 		bp->b_blkno = bp->b_lblkno = 0;
   1539   1.74  perseant 		bp->b_error = 0;
   1540   1.74  perseant 		bp->b_resid = 0;
   1541   1.74  perseant 		bp->b_bcount = 0;
   1542   1.74  perseant 
   1543   1.74  perseant 		/* nuke any credentials we were holding */
   1544   1.74  perseant 		/* XXXXXX */
   1545   1.74  perseant 
   1546   1.74  perseant 		bremhash(bp);
   1547   1.74  perseant 
   1548   1.74  perseant 		/* disassociate us from our vnode, if we had one... */
   1549   1.74  perseant 		if (bp->b_vp)
   1550   1.74  perseant 			brelvp(bp);
   1551   1.74  perseant 	}
   1552   1.74  perseant 	while (!bp)
   1553   1.74  perseant 		bp = getnewbuf(0, 0);
   1554   1.74  perseant 	bgetvp(vp, bp);
   1555   1.74  perseant 	binshash(bp,&invalhash);
   1556  1.100        pk 	simple_unlock(&bp->b_interlock);
   1557  1.100        pk 	simple_unlock(&bqueue_slock);
   1558   1.74  perseant 	splx(s);
   1559   1.74  perseant 	bp->b_bcount = 0;
   1560   1.74  perseant 	bp->b_blkno = bp->b_lblkno = addr;
   1561   1.74  perseant 
   1562   1.74  perseant 	bp->b_flags |= B_CALL;
   1563   1.74  perseant 	bp->b_iodone = lfs_cluster_callback;
   1564   1.74  perseant 	cl->saveaddr = bp->b_saveaddr; /* XXX is this ever used? */
   1565   1.74  perseant 	bp->b_saveaddr = (caddr_t)cl;
   1566   1.74  perseant 
   1567   1.74  perseant 	return bp;
   1568   1.74  perseant }
   1569   1.74  perseant 
   1570    1.1   mycroft int
   1571   1.69  perseant lfs_writeseg(struct lfs *fs, struct segment *sp)
   1572    1.1   mycroft {
   1573   1.74  perseant 	struct buf **bpp, *bp, *cbp, *newbp, **pmlastbpp;
   1574    1.1   mycroft 	SEGUSE *sup;
   1575    1.1   mycroft 	SEGSUM *ssp;
   1576    1.1   mycroft 	dev_t i_dev;
   1577   1.69  perseant 	char *datap, *dp;
   1578   1.70  jdolecek 	int do_again, i, nblocks, s;
   1579   1.70  jdolecek 	size_t el_size;
   1580   1.74  perseant  	struct lfs_cluster *cl;
   1581   1.69  perseant 	int (*strategy)(void *);
   1582    1.1   mycroft 	struct vop_strategy_args vop_strategy_a;
   1583    1.1   mycroft 	u_short ninos;
   1584   1.15  perseant 	struct vnode *devvp;
   1585    1.1   mycroft 	char *p;
   1586   1.69  perseant 	struct vnode *vp;
   1587   1.26  perseant 	struct inode *ip;
   1588   1.74  perseant 	size_t pmsize;
   1589   1.74  perseant 	int use_pagemove;
   1590   1.91      fvdl 	int32_t *daddrp;	/* XXX ondisk32 */
   1591   1.55  perseant 	int changed;
   1592   1.15  perseant #if defined(DEBUG) && defined(LFS_PROPELLER)
   1593   1.15  perseant 	static int propeller;
   1594   1.15  perseant 	char propstring[4] = "-\\|/";
   1595   1.15  perseant 
   1596   1.15  perseant 	printf("%c\b",propstring[propeller++]);
   1597   1.73       chs 	if (propeller == 4)
   1598   1.15  perseant 		propeller = 0;
   1599   1.15  perseant #endif
   1600   1.74  perseant 
   1601    1.1   mycroft 	/*
   1602    1.1   mycroft 	 * If there are no buffers other than the segment summary to write
   1603    1.1   mycroft 	 * and it is not a checkpoint, don't do anything.  On a checkpoint,
   1604    1.1   mycroft 	 * even if there aren't any buffers, you need to write the superblock.
   1605    1.1   mycroft 	 */
   1606    1.1   mycroft 	if ((nblocks = sp->cbpp - sp->bpp) == 1)
   1607    1.1   mycroft 		return (0);
   1608   1.15  perseant 
   1609   1.27  perseant 	i_dev = VTOI(fs->lfs_ivnode)->i_dev;
   1610   1.27  perseant 	devvp = VTOI(fs->lfs_ivnode)->i_devvp;
   1611   1.27  perseant 
   1612   1.10      fvdl 	/* Update the segment usage information. */
   1613   1.10      fvdl 	LFS_SEGENTRY(sup, fs, sp->seg_number, bp);
   1614   1.15  perseant 
   1615   1.10      fvdl 	/* Loop through all blocks, except the segment summary. */
   1616   1.27  perseant 	for (bpp = sp->bpp; ++bpp < sp->cbpp; ) {
   1617   1.73       chs 		if ((*bpp)->b_vp != devvp) {
   1618   1.27  perseant 			sup->su_nbytes += (*bpp)->b_bcount;
   1619   1.69  perseant #ifdef DEBUG_SU_NBYTES
   1620   1.96      yamt 		printf("seg %" PRIu32 " += %ld for ino %d lbn %" PRId64
   1621   1.96      yamt 		    " db 0x%" PRIx64 "\n", sp->seg_number, (*bpp)->b_bcount,
   1622   1.96      yamt 		    VTOI((*bpp)->b_vp)->i_number, (*bpp)->b_lblkno,
   1623   1.96      yamt 		    (*bpp)->b_blkno);
   1624   1.69  perseant #endif
   1625   1.69  perseant 		}
   1626   1.27  perseant 	}
   1627   1.15  perseant 
   1628    1.1   mycroft 	ssp = (SEGSUM *)sp->segsum;
   1629   1.15  perseant 
   1630    1.1   mycroft 	ninos = (ssp->ss_ninos + INOPB(fs) - 1) / INOPB(fs);
   1631   1.69  perseant #ifdef DEBUG_SU_NBYTES
   1632   1.69  perseant 	printf("seg %d += %d for %d inodes\n",   /* XXXDEBUG */
   1633   1.69  perseant 	       sp->seg_number, ssp->ss_ninos * DINODE_SIZE,
   1634   1.69  perseant 	       ssp->ss_ninos);
   1635   1.69  perseant #endif
   1636   1.27  perseant 	sup->su_nbytes += ssp->ss_ninos * DINODE_SIZE;
   1637   1.69  perseant 	/* sup->su_nbytes += fs->lfs_sumsize; */
   1638   1.69  perseant 	if (fs->lfs_version == 1)
   1639   1.69  perseant 		sup->su_olastmod = time.tv_sec;
   1640   1.69  perseant 	else
   1641   1.69  perseant 		sup->su_lastmod = time.tv_sec;
   1642    1.1   mycroft 	sup->su_ninos += ninos;
   1643    1.1   mycroft 	++sup->su_nsums;
   1644   1.69  perseant 	fs->lfs_dmeta += (btofsb(fs, fs->lfs_sumsize) + btofsb(fs, ninos *
   1645   1.69  perseant 							 fs->lfs_ibsize));
   1646   1.69  perseant 	fs->lfs_avail -= btofsb(fs, fs->lfs_sumsize);
   1647   1.15  perseant 
   1648    1.1   mycroft 	do_again = !(bp->b_flags & B_GATHERED);
   1649   1.74  perseant 	(void)LFS_BWRITE_LOG(bp); /* Ifile */
   1650    1.1   mycroft 	/*
   1651   1.53  perseant 	 * Mark blocks B_BUSY, to prevent then from being changed between
   1652   1.53  perseant 	 * the checksum computation and the actual write.
   1653   1.53  perseant 	 *
   1654   1.53  perseant 	 * If we are cleaning, check indirect blocks for UNWRITTEN, and if
   1655   1.53  perseant 	 * there are any, replace them with copies that have UNASSIGNED
   1656   1.53  perseant 	 * instead.
   1657   1.53  perseant 	 */
   1658   1.53  perseant 	for (bpp = sp->bpp, i = nblocks - 1; i--;) {
   1659   1.53  perseant 		++bpp;
   1660   1.73       chs 		if ((*bpp)->b_flags & B_CALL)
   1661   1.53  perseant 			continue;
   1662   1.53  perseant 		bp = *bpp;
   1663   1.53  perseant 	    again:
   1664   1.53  perseant 		s = splbio();
   1665   1.73       chs 		if (bp->b_flags & B_BUSY) {
   1666   1.53  perseant #ifdef DEBUG
   1667   1.93      tron 			printf("lfs_writeseg: avoiding potential data summary "
   1668   1.93      tron 			       "corruption for ino %d, lbn %" PRId64 "\n",
   1669   1.53  perseant 			       VTOI(bp->b_vp)->i_number, bp->b_lblkno);
   1670   1.53  perseant #endif
   1671   1.53  perseant 			bp->b_flags |= B_WANTED;
   1672   1.53  perseant 			tsleep(bp, (PRIBIO + 1), "lfs_writeseg", 0);
   1673   1.53  perseant 			splx(s);
   1674   1.53  perseant 			goto again;
   1675   1.53  perseant 		}
   1676   1.53  perseant 		bp->b_flags |= B_BUSY;
   1677   1.53  perseant 		splx(s);
   1678   1.53  perseant 		/* Check and replace indirect block UNWRITTEN bogosity */
   1679   1.73       chs 		if (bp->b_lblkno < 0 && bp->b_vp != devvp && bp->b_vp &&
   1680   1.53  perseant 		   VTOI(bp->b_vp)->i_ffs_blocks !=
   1681   1.53  perseant 		   VTOI(bp->b_vp)->i_lfs_effnblks) {
   1682   1.54  perseant #ifdef DEBUG_LFS
   1683   1.53  perseant 			printf("lfs_writeseg: cleansing ino %d (%d != %d)\n",
   1684   1.53  perseant 			       VTOI(bp->b_vp)->i_number,
   1685   1.53  perseant 			       VTOI(bp->b_vp)->i_lfs_effnblks,
   1686   1.53  perseant 			       VTOI(bp->b_vp)->i_ffs_blocks);
   1687   1.54  perseant #endif
   1688   1.53  perseant 			/* Make a copy we'll make changes to */
   1689   1.69  perseant 			newbp = lfs_newbuf(fs, bp->b_vp, bp->b_lblkno,
   1690   1.53  perseant 					   bp->b_bcount);
   1691   1.53  perseant 			newbp->b_blkno = bp->b_blkno;
   1692   1.53  perseant 			memcpy(newbp->b_data, bp->b_data,
   1693   1.53  perseant 			       newbp->b_bcount);
   1694   1.53  perseant 			*bpp = newbp;
   1695   1.53  perseant 
   1696   1.55  perseant 			changed = 0;
   1697   1.91      fvdl 			/* XXX ondisk32 */
   1698   1.91      fvdl 			for (daddrp = (int32_t *)(newbp->b_data);
   1699   1.91      fvdl 			     daddrp < (int32_t *)(newbp->b_data +
   1700   1.53  perseant 						  newbp->b_bcount); daddrp++) {
   1701   1.53  perseant 				if (*daddrp == UNWRITTEN) {
   1702   1.55  perseant 					++changed;
   1703   1.54  perseant #ifdef DEBUG_LFS
   1704   1.54  perseant 					printf("lfs_writeseg: replacing UNWRITTEN\n");
   1705   1.53  perseant #endif
   1706   1.53  perseant 					*daddrp = 0;
   1707   1.53  perseant 				}
   1708   1.53  perseant 			}
   1709   1.55  perseant 			/*
   1710   1.55  perseant 			 * Get rid of the old buffer.  Don't mark it clean,
   1711   1.55  perseant 			 * though, if it still has dirty data on it.
   1712   1.55  perseant 			 */
   1713   1.55  perseant 			if (changed) {
   1714   1.55  perseant 				bp->b_flags &= ~(B_ERROR | B_GATHERED);
   1715   1.69  perseant 				if (bp->b_flags & B_CALL) {
   1716   1.55  perseant 					lfs_freebuf(bp);
   1717   1.69  perseant 					bp = NULL;
   1718   1.69  perseant 				} else {
   1719   1.57  perseant 					/* Still on free list, leave it there */
   1720   1.57  perseant 					s = splbio();
   1721   1.57  perseant 					bp->b_flags &= ~B_BUSY;
   1722   1.57  perseant 					if (bp->b_flags & B_WANTED)
   1723   1.57  perseant 						wakeup(bp);
   1724   1.57  perseant 				 	splx(s);
   1725   1.62  perseant 					/*
   1726   1.62  perseant 					 * We have to re-decrement lfs_avail
   1727   1.62  perseant 					 * since this block is going to come
   1728   1.62  perseant 					 * back around to us in the next
   1729   1.62  perseant 					 * segment.
   1730   1.62  perseant 					 */
   1731   1.69  perseant 					fs->lfs_avail -= btofsb(fs, bp->b_bcount);
   1732   1.57  perseant 				}
   1733   1.55  perseant 			} else {
   1734   1.55  perseant 				bp->b_flags &= ~(B_ERROR | B_READ | B_DELWRI |
   1735   1.62  perseant 						 B_GATHERED);
   1736   1.69  perseant 				if (bp->b_flags & B_CALL) {
   1737   1.55  perseant 					lfs_freebuf(bp);
   1738   1.69  perseant 					bp = NULL;
   1739   1.69  perseant 				} else {
   1740   1.55  perseant 					bremfree(bp);
   1741   1.55  perseant 					bp->b_flags |= B_DONE;
   1742   1.78  perseant 					s = splbio();
   1743   1.55  perseant 					reassignbuf(bp, bp->b_vp);
   1744   1.78  perseant 					splx(s);
   1745   1.74  perseant 					LFS_UNLOCK_BUF(bp);
   1746   1.55  perseant 					brelse(bp);
   1747   1.55  perseant 				}
   1748   1.55  perseant 			}
   1749   1.69  perseant 
   1750   1.53  perseant 		}
   1751   1.53  perseant 	}
   1752   1.53  perseant 	/*
   1753    1.1   mycroft 	 * Compute checksum across data and then across summary; the first
   1754    1.1   mycroft 	 * block (the summary block) is skipped.  Set the create time here
   1755    1.1   mycroft 	 * so that it's guaranteed to be later than the inode mod times.
   1756    1.1   mycroft 	 *
   1757    1.1   mycroft 	 * XXX
   1758    1.1   mycroft 	 * Fix this to do it inline, instead of malloc/copy.
   1759    1.1   mycroft 	 */
   1760   1.69  perseant 	if (fs->lfs_version == 1)
   1761   1.69  perseant 		el_size = sizeof(u_long);
   1762   1.69  perseant 	else
   1763   1.69  perseant 		el_size = sizeof(u_int32_t);
   1764   1.69  perseant 	datap = dp = malloc(nblocks * el_size, M_SEGMENT, M_WAITOK);
   1765    1.1   mycroft 	for (bpp = sp->bpp, i = nblocks - 1; i--;) {
   1766   1.15  perseant 		if (((*++bpp)->b_flags & (B_CALL|B_INVAL)) == (B_CALL|B_INVAL)) {
   1767   1.69  perseant 			if (copyin((*bpp)->b_saveaddr, dp, el_size))
   1768   1.53  perseant 				panic("lfs_writeseg: copyin failed [1]: "
   1769   1.93      tron 				      "ino %d blk %" PRId64,
   1770   1.53  perseant 				      VTOI((*bpp)->b_vp)->i_number,
   1771   1.95    kleink 				      (*bpp)->b_lblkno);
   1772   1.53  perseant 		} else
   1773   1.69  perseant 			memcpy(dp, (*bpp)->b_data, el_size);
   1774   1.69  perseant 		dp += el_size;
   1775   1.69  perseant 	}
   1776   1.69  perseant 	if (fs->lfs_version == 1)
   1777   1.69  perseant 		ssp->ss_ocreate = time.tv_sec;
   1778   1.69  perseant 	else {
   1779   1.69  perseant 		ssp->ss_create = time.tv_sec;
   1780   1.69  perseant 		ssp->ss_serial = ++fs->lfs_serial;
   1781   1.69  perseant 		ssp->ss_ident  = fs->lfs_ident;
   1782    1.1   mycroft 	}
   1783   1.74  perseant #ifndef LFS_MALLOC_SUMMARY
   1784   1.74  perseant 	/* Set the summary block busy too */
   1785   1.74  perseant 	(*(sp->bpp))->b_flags |= B_BUSY;
   1786   1.74  perseant #endif
   1787   1.69  perseant 	ssp->ss_datasum = cksum(datap, (nblocks - 1) * el_size);
   1788    1.1   mycroft 	ssp->ss_sumsum =
   1789   1.69  perseant 	    cksum(&ssp->ss_datasum, fs->lfs_sumsize - sizeof(ssp->ss_sumsum));
   1790    1.1   mycroft 	free(datap, M_SEGMENT);
   1791   1.69  perseant 	datap = dp = NULL;
   1792   1.69  perseant #ifdef DIAGNOSTIC
   1793   1.69  perseant 	if (fs->lfs_bfree < btofsb(fs, ninos * fs->lfs_ibsize) + btofsb(fs, fs->lfs_sumsize))
   1794   1.69  perseant 		panic("lfs_writeseg: No diskspace for summary");
   1795   1.69  perseant #endif
   1796   1.69  perseant 	fs->lfs_bfree -= (btofsb(fs, ninos * fs->lfs_ibsize) +
   1797   1.69  perseant 			  btofsb(fs, fs->lfs_sumsize));
   1798    1.1   mycroft 
   1799   1.15  perseant 	strategy = devvp->v_op[VOFFSET(vop_strategy)];
   1800    1.1   mycroft 
   1801    1.1   mycroft 	/*
   1802   1.74  perseant   	 * When we simply write the blocks we lose a rotation for every block
   1803   1.74  perseant 	 * written.  To avoid this problem, we use pagemove to cluster
   1804   1.74  perseant 	 * the buffers into a chunk and write the chunk.  CHUNKSIZE is the
   1805   1.74  perseant   	 * largest size I/O devices can handle.
   1806   1.74  perseant   	 *
   1807   1.74  perseant 	 * XXX - right now MAXPHYS is only 64k; could it be larger?
   1808    1.1   mycroft 	 */
   1809   1.15  perseant 
   1810   1.15  perseant #define CHUNKSIZE MAXPHYS
   1811   1.15  perseant 
   1812   1.73       chs 	if (devvp == NULL)
   1813   1.15  perseant 		panic("devvp is NULL");
   1814   1.74  perseant 	for (bpp = sp->bpp, i = nblocks; i;) {
   1815   1.74  perseant 		cbp = lfs_newclusterbuf(fs, devvp, (*bpp)->b_blkno, i);
   1816   1.74  perseant 		cl = (struct lfs_cluster *)cbp->b_saveaddr;
   1817   1.74  perseant 
   1818    1.1   mycroft 		cbp->b_dev = i_dev;
   1819    1.1   mycroft 		cbp->b_flags |= B_ASYNC | B_BUSY;
   1820   1.10      fvdl 		cbp->b_bcount = 0;
   1821    1.1   mycroft 
   1822   1.74  perseant 		/*
   1823   1.74  perseant 		 * Find out if we can use pagemove to build the cluster,
   1824   1.74  perseant 		 * or if we are stuck using malloc/copy.  If this is the
   1825   1.74  perseant 		 * first cluster, set the shift flag (see below).
   1826   1.74  perseant 		 */
   1827   1.74  perseant 		pmsize = CHUNKSIZE;
   1828   1.74  perseant 		use_pagemove = 0;
   1829   1.74  perseant 		if(bpp == sp->bpp) {
   1830   1.74  perseant 			/* Summary blocks have to get special treatment */
   1831   1.74  perseant 			pmlastbpp = lookahead_pagemove(bpp + 1, i - 1, &pmsize);
   1832   1.74  perseant 			if(pmsize >= CHUNKSIZE - fs->lfs_sumsize ||
   1833   1.74  perseant 			   pmlastbpp == NULL) {
   1834   1.74  perseant 				use_pagemove = 1;
   1835   1.74  perseant 				cl->flags |= LFS_CL_SHIFT;
   1836   1.74  perseant 			} else {
   1837   1.74  perseant 				/*
   1838   1.74  perseant 				 * If we're not using pagemove, we have
   1839   1.74  perseant 				 * to copy the summary down to the bottom
   1840   1.74  perseant 				 * end of the block.
   1841   1.74  perseant 				 */
   1842   1.74  perseant #ifndef LFS_MALLOC_SUMMARY
   1843   1.74  perseant 				memcpy((*bpp)->b_data, (*bpp)->b_data +
   1844   1.74  perseant 				       NBPG - fs->lfs_sumsize,
   1845   1.74  perseant 				       fs->lfs_sumsize);
   1846   1.74  perseant #endif /* LFS_MALLOC_SUMMARY */
   1847   1.74  perseant 			}
   1848   1.74  perseant 		} else {
   1849   1.74  perseant 			pmlastbpp = lookahead_pagemove(bpp, i, &pmsize);
   1850   1.74  perseant 			if(pmsize >= CHUNKSIZE || pmlastbpp == NULL) {
   1851   1.74  perseant 				use_pagemove = 1;
   1852   1.74  perseant 			}
   1853   1.74  perseant 		}
   1854   1.74  perseant 		if(use_pagemove == 0) {
   1855   1.74  perseant 			cl->flags |= LFS_CL_MALLOC;
   1856   1.74  perseant 			cl->olddata = cbp->b_data;
   1857   1.74  perseant 			cbp->b_data = malloc(CHUNKSIZE, M_SEGMENT, M_WAITOK);
   1858   1.74  perseant 		}
   1859   1.74  perseant #if defined(DEBUG) && defined(DIAGNOSTIC)
   1860   1.74  perseant 		if(dtosn(fs, dbtofsb(fs, (*bpp)->b_blkno + btodb((*bpp)->b_bcount - 1))) !=
   1861   1.69  perseant 		   dtosn(fs, dbtofsb(fs, cbp->b_blkno))) {
   1862   1.96      yamt 			printf("block at %" PRId64 " (%" PRIu32 "), "
   1863   1.96      yamt 			       "cbp at %" PRId64 " (%" PRIu32 ")\n",
   1864   1.74  perseant 				(*bpp)->b_blkno, dtosn(fs, dbtofsb(fs, (*bpp)->b_blkno)),
   1865   1.74  perseant 			       cbp->b_blkno, dtosn(fs, dbtofsb(fs, cbp->b_blkno)));
   1866   1.17  perseant 			panic("lfs_writeseg: Segment overwrite");
   1867   1.17  perseant 		}
   1868   1.17  perseant #endif
   1869   1.17  perseant 
   1870   1.74  perseant 		/*
   1871   1.74  perseant 		 * Construct the cluster.
   1872   1.74  perseant 		 */
   1873   1.74  perseant 		while (fs->lfs_iocount >= LFS_THROTTLE) {
   1874   1.74  perseant #ifdef DEBUG_LFS
   1875   1.74  perseant 			printf("[%d]", fs->lfs_iocount);
   1876   1.74  perseant #endif
   1877   1.74  perseant 			tsleep(&fs->lfs_iocount, PRIBIO+1, "lfs_throttle", 0);
   1878   1.15  perseant 		}
   1879    1.1   mycroft 		++fs->lfs_iocount;
   1880   1.74  perseant 
   1881   1.15  perseant 		for (p = cbp->b_data; i && cbp->b_bcount < CHUNKSIZE; i--) {
   1882   1.10      fvdl 			bp = *bpp;
   1883   1.15  perseant 
   1884   1.15  perseant 			if (bp->b_bcount > (CHUNKSIZE - cbp->b_bcount))
   1885   1.10      fvdl 				break;
   1886   1.10      fvdl 
   1887    1.1   mycroft 			/*
   1888    1.1   mycroft 			 * Fake buffers from the cleaner are marked as B_INVAL.
   1889    1.1   mycroft 			 * We need to copy the data from user space rather than
   1890    1.1   mycroft 			 * from the buffer indicated.
   1891    1.1   mycroft 			 * XXX == what do I do on an error?
   1892    1.1   mycroft 			 */
   1893   1.15  perseant 			if ((bp->b_flags & (B_CALL|B_INVAL)) == (B_CALL|B_INVAL)) {
   1894    1.1   mycroft 				if (copyin(bp->b_saveaddr, p, bp->b_bcount))
   1895   1.15  perseant 					panic("lfs_writeseg: copyin failed [2]");
   1896   1.74  perseant 			} else if (use_pagemove) {
   1897   1.74  perseant 				pagemove(bp->b_data, p, bp->b_bcount);
   1898   1.74  perseant 				cbp->b_bufsize += bp->b_bcount;
   1899   1.74  perseant 				bp->b_bufsize -= bp->b_bcount;
   1900   1.74  perseant   			} else {
   1901    1.1   mycroft 				bcopy(bp->b_data, p, bp->b_bcount);
   1902   1.74  perseant 				/* printf("copy in %p\n", bp->b_data); */
   1903   1.74  perseant   			}
   1904   1.74  perseant 
   1905   1.74  perseant 			/*
   1906   1.74  perseant 			 * XXX If we are *not* shifting, the summary
   1907   1.74  perseant 			 * block is only fs->lfs_sumsize.  Otherwise,
   1908   1.74  perseant 			 * it is NBPG but shifted.
   1909   1.74  perseant 			 */
   1910   1.74  perseant 			if(bpp == sp->bpp && !(cl->flags & LFS_CL_SHIFT)) {
   1911   1.74  perseant 				p += fs->lfs_sumsize;
   1912   1.74  perseant 				cbp->b_bcount += fs->lfs_sumsize;
   1913   1.74  perseant 				cl->bufsize += fs->lfs_sumsize;
   1914    1.1   mycroft 			} else {
   1915   1.74  perseant 				p += bp->b_bcount;
   1916   1.74  perseant 				cbp->b_bcount += bp->b_bcount;
   1917   1.74  perseant 				cl->bufsize += bp->b_bcount;
   1918   1.15  perseant 			}
   1919   1.74  perseant 			bp->b_flags &= ~(B_ERROR | B_READ | B_DELWRI | B_DONE);
   1920   1.74  perseant 			cl->bpp[cl->bufcount++] = bp;
   1921   1.74  perseant 			vp = bp->b_vp;
   1922   1.79  perseant 			s = splbio();
   1923  1.100        pk 			V_INCR_NUMOUTPUT(vp);
   1924   1.79  perseant 			splx(s);
   1925   1.26  perseant 
   1926   1.74  perseant 			/*
   1927   1.74  perseant 			 * Although it cannot be freed for reuse before the
   1928   1.74  perseant 			 * cluster is written to disk, this buffer does not
   1929   1.74  perseant 			 * need to be held busy.  Therefore we unbusy it,
   1930   1.74  perseant 			 * while leaving it on the locked list.  It will
   1931   1.74  perseant 			 * be freed or requeued by the callback depending
   1932   1.74  perseant 			 * on whether it has had B_DELWRI set again in the
   1933   1.74  perseant 			 * meantime.
   1934   1.74  perseant 			 *
   1935   1.74  perseant 			 * If we are using pagemove, we have to hold the block
   1936   1.74  perseant 			 * busy to prevent its contents from changing before
   1937   1.74  perseant 			 * it hits the disk, and invalidating the checksum.
   1938   1.74  perseant 			 */
   1939   1.74  perseant 			bp->b_flags &= ~(B_DELWRI | B_READ | B_ERROR);
   1940   1.74  perseant #ifdef LFS_MNOBUSY
   1941   1.74  perseant 			if (cl->flags & LFS_CL_MALLOC) {
   1942   1.74  perseant 				if (!(bp->b_flags & B_CALL))
   1943   1.74  perseant 					brelse(bp); /* Still B_LOCKED */
   1944   1.74  perseant 			}
   1945   1.74  perseant #endif
   1946   1.26  perseant 			bpp++;
   1947   1.26  perseant 
   1948   1.26  perseant 			/*
   1949   1.26  perseant 			 * If this is the last block for this vnode, but
   1950   1.26  perseant 			 * there are other blocks on its dirty list,
   1951   1.26  perseant 			 * set IN_MODIFIED/IN_CLEANING depending on what
   1952   1.26  perseant 			 * sort of block.  Only do this for our mount point,
   1953   1.26  perseant 			 * not for, e.g., inode blocks that are attached to
   1954   1.26  perseant 			 * the devvp.
   1955   1.69  perseant 			 * XXX KS - Shouldn't we set *both* if both types
   1956   1.69  perseant 			 * of blocks are present (traverse the dirty list?)
   1957   1.26  perseant 			 */
   1958   1.79  perseant 			s = splbio();
   1959   1.73       chs 			if ((i == 1 ||
   1960   1.74  perseant 			     (i > 1 && vp && *bpp && (*bpp)->b_vp != vp)) &&
   1961   1.75  perseant 			    (bp = LIST_FIRST(&vp->v_dirtyblkhd)) != NULL &&
   1962   1.74  perseant 			    vp->v_mount == fs->lfs_ivnode->v_mount)
   1963   1.74  perseant   			{
   1964   1.69  perseant 				ip = VTOI(vp);
   1965   1.26  perseant #ifdef DEBUG_LFS
   1966   1.69  perseant 				printf("lfs_writeseg: marking ino %d\n",
   1967   1.69  perseant 				       ip->i_number);
   1968   1.26  perseant #endif
   1969   1.73       chs 				if (bp->b_flags & B_CALL)
   1970   1.56  perseant 					LFS_SET_UINO(ip, IN_CLEANING);
   1971   1.56  perseant 				else
   1972   1.56  perseant 					LFS_SET_UINO(ip, IN_MODIFIED);
   1973   1.26  perseant 			}
   1974   1.79  perseant 			splx(s);
   1975   1.69  perseant 			wakeup(vp);
   1976    1.1   mycroft 		}
   1977   1.79  perseant 		s = splbio();
   1978  1.100        pk 		V_INCR_NUMOUTPUT(cbp->b_vp);
   1979    1.1   mycroft 		splx(s);
   1980    1.1   mycroft 		/*
   1981   1.74  perseant 		 * In order to include the summary in a clustered block,
   1982   1.74  perseant 		 * it may be necessary to shift the block forward (since
   1983   1.74  perseant 		 * summary blocks are in generay smaller than can be
   1984   1.74  perseant 		 * addressed by pagemove().  After the write, the block
   1985   1.74  perseant 		 * will be corrected before disassembly.
   1986    1.1   mycroft 		 */
   1987   1.74  perseant 		if(cl->flags & LFS_CL_SHIFT) {
   1988   1.74  perseant 			cbp->b_data += (NBPG - fs->lfs_sumsize);
   1989   1.74  perseant 			cbp->b_bcount -= (NBPG - fs->lfs_sumsize);
   1990   1.74  perseant 		}
   1991    1.1   mycroft 		vop_strategy_a.a_desc = VDESC(vop_strategy);
   1992    1.1   mycroft 		vop_strategy_a.a_bp = cbp;
   1993    1.1   mycroft 		(strategy)(&vop_strategy_a);
   1994    1.1   mycroft 	}
   1995   1.74  perseant 
   1996   1.73       chs 	if (lfs_dostats) {
   1997   1.15  perseant 		++lfs_stats.psegwrites;
   1998   1.15  perseant 		lfs_stats.blocktot += nblocks - 1;
   1999   1.15  perseant 		if (fs->lfs_sp->seg_flags & SEGM_SYNC)
   2000   1.15  perseant 			++lfs_stats.psyncwrites;
   2001   1.15  perseant 		if (fs->lfs_sp->seg_flags & SEGM_CLEAN) {
   2002   1.15  perseant 			++lfs_stats.pcleanwrites;
   2003   1.15  perseant 			lfs_stats.cleanblocks += nblocks - 1;
   2004   1.15  perseant 		}
   2005    1.1   mycroft 	}
   2006    1.1   mycroft 	return (lfs_initseg(fs) || do_again);
   2007    1.1   mycroft }
   2008    1.1   mycroft 
   2009    1.1   mycroft void
   2010   1.69  perseant lfs_writesuper(struct lfs *fs, daddr_t daddr)
   2011    1.1   mycroft {
   2012    1.1   mycroft 	struct buf *bp;
   2013    1.1   mycroft 	dev_t i_dev;
   2014   1.69  perseant 	int (*strategy)(void *);
   2015    1.1   mycroft 	int s;
   2016    1.1   mycroft 	struct vop_strategy_args vop_strategy_a;
   2017    1.1   mycroft 
   2018   1.15  perseant 	/*
   2019   1.15  perseant 	 * If we can write one superblock while another is in
   2020   1.15  perseant 	 * progress, we risk not having a complete checkpoint if we crash.
   2021   1.15  perseant 	 * So, block here if a superblock write is in progress.
   2022   1.15  perseant 	 */
   2023   1.36  perseant 	s = splbio();
   2024   1.73       chs 	while (fs->lfs_sbactive) {
   2025   1.15  perseant 		tsleep(&fs->lfs_sbactive, PRIBIO+1, "lfs sb", 0);
   2026   1.15  perseant 	}
   2027   1.15  perseant 	fs->lfs_sbactive = daddr;
   2028   1.36  perseant 	splx(s);
   2029    1.1   mycroft 	i_dev = VTOI(fs->lfs_ivnode)->i_dev;
   2030    1.1   mycroft 	strategy = VTOI(fs->lfs_ivnode)->i_devvp->v_op[VOFFSET(vop_strategy)];
   2031    1.1   mycroft 
   2032   1.15  perseant 	/* Set timestamp of this version of the superblock */
   2033   1.69  perseant 	if (fs->lfs_version == 1)
   2034   1.69  perseant 		fs->lfs_otstamp = time.tv_sec;
   2035   1.15  perseant 	fs->lfs_tstamp = time.tv_sec;
   2036   1.15  perseant 
   2037    1.1   mycroft 	/* Checksum the superblock and copy it into a buffer. */
   2038   1.12        pk 	fs->lfs_cksum = lfs_sb_cksum(&(fs->lfs_dlfs));
   2039   1.69  perseant 	bp = lfs_newbuf(fs, VTOI(fs->lfs_ivnode)->i_devvp, fsbtodb(fs, daddr), LFS_SBPAD);
   2040   1.12        pk 	*(struct dlfs *)bp->b_data = fs->lfs_dlfs;
   2041   1.15  perseant 
   2042    1.1   mycroft 	bp->b_dev = i_dev;
   2043    1.1   mycroft 	bp->b_flags |= B_BUSY | B_CALL | B_ASYNC;
   2044    1.1   mycroft 	bp->b_flags &= ~(B_DONE | B_ERROR | B_READ | B_DELWRI);
   2045    1.1   mycroft 	bp->b_iodone = lfs_supercallback;
   2046   1.15  perseant 	/* XXX KS - same nasty hack as above */
   2047   1.15  perseant 	bp->b_saveaddr = (caddr_t)fs;
   2048   1.15  perseant 
   2049    1.1   mycroft 	vop_strategy_a.a_desc = VDESC(vop_strategy);
   2050    1.1   mycroft 	vop_strategy_a.a_bp = bp;
   2051    1.1   mycroft 	s = splbio();
   2052  1.100        pk 	V_INCR_NUMOUTPUT(bp->b_vp);
   2053   1.79  perseant 	splx(s);
   2054   1.52  perseant 	++fs->lfs_iocount;
   2055    1.1   mycroft 	(strategy)(&vop_strategy_a);
   2056    1.1   mycroft }
   2057    1.1   mycroft 
   2058    1.1   mycroft /*
   2059    1.1   mycroft  * Logical block number match routines used when traversing the dirty block
   2060    1.1   mycroft  * chain.
   2061    1.1   mycroft  */
   2062    1.1   mycroft int
   2063   1.69  perseant lfs_match_fake(struct lfs *fs, struct buf *bp)
   2064   1.15  perseant {
   2065   1.19  perseant 	return (bp->b_flags & B_CALL);
   2066   1.15  perseant }
   2067   1.15  perseant 
   2068   1.15  perseant int
   2069   1.69  perseant lfs_match_data(struct lfs *fs, struct buf *bp)
   2070    1.1   mycroft {
   2071    1.1   mycroft 	return (bp->b_lblkno >= 0);
   2072    1.1   mycroft }
   2073    1.1   mycroft 
   2074    1.1   mycroft int
   2075   1.69  perseant lfs_match_indir(struct lfs *fs, struct buf *bp)
   2076    1.1   mycroft {
   2077   1.91      fvdl 	daddr_t lbn;
   2078    1.1   mycroft 
   2079    1.1   mycroft 	lbn = bp->b_lblkno;
   2080    1.1   mycroft 	return (lbn < 0 && (-lbn - NDADDR) % NINDIR(fs) == 0);
   2081    1.1   mycroft }
   2082    1.1   mycroft 
   2083    1.1   mycroft int
   2084   1.69  perseant lfs_match_dindir(struct lfs *fs, struct buf *bp)
   2085    1.1   mycroft {
   2086   1.91      fvdl 	daddr_t lbn;
   2087    1.1   mycroft 
   2088    1.1   mycroft 	lbn = bp->b_lblkno;
   2089    1.1   mycroft 	return (lbn < 0 && (-lbn - NDADDR) % NINDIR(fs) == 1);
   2090    1.1   mycroft }
   2091    1.1   mycroft 
   2092    1.1   mycroft int
   2093   1.69  perseant lfs_match_tindir(struct lfs *fs, struct buf *bp)
   2094    1.1   mycroft {
   2095   1.91      fvdl 	daddr_t lbn;
   2096    1.1   mycroft 
   2097    1.1   mycroft 	lbn = bp->b_lblkno;
   2098    1.1   mycroft 	return (lbn < 0 && (-lbn - NDADDR) % NINDIR(fs) == 2);
   2099    1.1   mycroft }
   2100    1.1   mycroft 
   2101    1.1   mycroft /*
   2102   1.15  perseant  * XXX - The only buffers that are going to hit these functions are the
   2103   1.15  perseant  * segment write blocks, or the segment summaries, or the superblocks.
   2104   1.15  perseant  *
   2105   1.15  perseant  * All of the above are created by lfs_newbuf, and so do not need to be
   2106   1.15  perseant  * released via brelse.
   2107    1.1   mycroft  */
   2108    1.1   mycroft void
   2109   1.69  perseant lfs_callback(struct buf *bp)
   2110    1.1   mycroft {
   2111   1.74  perseant 	/* struct lfs *fs; */
   2112   1.74  perseant 	/* fs = (struct lfs *)bp->b_saveaddr; */
   2113   1.15  perseant 	lfs_freebuf(bp);
   2114    1.1   mycroft }
   2115    1.1   mycroft 
   2116   1.79  perseant static void
   2117   1.79  perseant lfs_super_aiodone(struct buf *bp)
   2118    1.1   mycroft {
   2119   1.15  perseant 	struct lfs *fs;
   2120   1.15  perseant 
   2121   1.15  perseant 	fs = (struct lfs *)bp->b_saveaddr;
   2122   1.45   thorpej 	fs->lfs_sbactive = 0;
   2123   1.15  perseant 	wakeup(&fs->lfs_sbactive);
   2124   1.52  perseant 	if (--fs->lfs_iocount < LFS_THROTTLE)
   2125   1.52  perseant 		wakeup(&fs->lfs_iocount);
   2126   1.15  perseant 	lfs_freebuf(bp);
   2127   1.74  perseant }
   2128   1.74  perseant 
   2129   1.74  perseant static void
   2130   1.79  perseant lfs_cluster_aiodone(struct buf *bp)
   2131   1.74  perseant {
   2132   1.74  perseant 	struct lfs_cluster *cl;
   2133   1.74  perseant 	struct lfs *fs;
   2134   1.74  perseant 	struct buf *tbp;
   2135   1.74  perseant 	struct vnode *vp;
   2136   1.79  perseant 	int s, error=0;
   2137   1.74  perseant 	char *cp;
   2138   1.74  perseant 	extern int locked_queue_count;
   2139   1.74  perseant 	extern long locked_queue_bytes;
   2140   1.74  perseant 
   2141   1.74  perseant 	if(bp->b_flags & B_ERROR)
   2142   1.74  perseant 		error = bp->b_error;
   2143   1.74  perseant 
   2144   1.74  perseant 	cl = (struct lfs_cluster *)bp->b_saveaddr;
   2145   1.74  perseant 	fs = cl->fs;
   2146   1.74  perseant 	bp->b_saveaddr = cl->saveaddr;
   2147   1.74  perseant 
   2148   1.74  perseant 	/* If shifted, shift back now */
   2149   1.74  perseant 	if(cl->flags & LFS_CL_SHIFT) {
   2150   1.74  perseant 		bp->b_data -= (NBPG - fs->lfs_sumsize);
   2151   1.74  perseant 		bp->b_bcount += (NBPG - fs->lfs_sumsize);
   2152   1.74  perseant 	}
   2153   1.74  perseant 
   2154   1.74  perseant 	cp = (char *)bp->b_data + cl->bufsize;
   2155   1.74  perseant 	/* Put the pages back, and release the buffer */
   2156   1.74  perseant 	while(cl->bufcount--) {
   2157   1.74  perseant 		tbp = cl->bpp[cl->bufcount];
   2158   1.74  perseant 		if(!(cl->flags & LFS_CL_MALLOC)) {
   2159   1.74  perseant 			cp -= tbp->b_bcount;
   2160   1.74  perseant 			printf("pm(%p,%p,%lx)",cp,tbp->b_data,tbp->b_bcount);
   2161   1.74  perseant 			pagemove(cp, tbp->b_data, tbp->b_bcount);
   2162   1.74  perseant 			bp->b_bufsize -= tbp->b_bcount;
   2163   1.74  perseant 			tbp->b_bufsize += tbp->b_bcount;
   2164   1.74  perseant 		}
   2165   1.74  perseant 		if(error) {
   2166   1.74  perseant 			tbp->b_flags |= B_ERROR;
   2167   1.74  perseant 			tbp->b_error = error;
   2168   1.74  perseant 		}
   2169   1.74  perseant 
   2170   1.74  perseant 		/*
   2171   1.74  perseant 		 * We're done with tbp.  If it has not been re-dirtied since
   2172   1.74  perseant 		 * the cluster was written, free it.  Otherwise, keep it on
   2173   1.74  perseant 		 * the locked list to be written again.
   2174   1.74  perseant 		 */
   2175   1.74  perseant 		if ((tbp->b_flags & (B_LOCKED | B_DELWRI)) == B_LOCKED)
   2176   1.74  perseant 			LFS_UNLOCK_BUF(tbp);
   2177   1.74  perseant 		tbp->b_flags &= ~B_GATHERED;
   2178   1.74  perseant 
   2179   1.74  perseant 		LFS_BCLEAN_LOG(fs, tbp);
   2180   1.74  perseant 
   2181   1.74  perseant 		vp = tbp->b_vp;
   2182   1.74  perseant 		/* Segment summary for a shifted cluster */
   2183   1.74  perseant 		if(!cl->bufcount && (cl->flags & LFS_CL_SHIFT))
   2184   1.74  perseant 			tbp->b_flags |= B_INVAL;
   2185   1.74  perseant 		if(!(tbp->b_flags & B_CALL)) {
   2186   1.74  perseant 			bremfree(tbp);
   2187   1.79  perseant 			s = splbio();
   2188   1.74  perseant 			if(vp)
   2189   1.74  perseant 				reassignbuf(tbp, vp);
   2190   1.79  perseant 			splx(s);
   2191   1.74  perseant 			tbp->b_flags |= B_ASYNC; /* for biodone */
   2192   1.74  perseant 		}
   2193   1.74  perseant #ifdef DIAGNOSTIC
   2194   1.74  perseant 		if (tbp->b_flags & B_DONE) {
   2195   1.74  perseant 			printf("blk %d biodone already (flags %lx)\n",
   2196   1.74  perseant 				cl->bufcount, (long)tbp->b_flags);
   2197   1.74  perseant 		}
   2198   1.74  perseant #endif
   2199   1.74  perseant 		if (tbp->b_flags & (B_BUSY | B_CALL)) {
   2200   1.74  perseant 			biodone(tbp);
   2201   1.74  perseant 		}
   2202   1.74  perseant 	}
   2203   1.74  perseant 
   2204   1.74  perseant 	/* Fix up the cluster buffer, and release it */
   2205   1.74  perseant 	if(!(cl->flags & LFS_CL_MALLOC) && bp->b_bufsize) {
   2206   1.74  perseant 		printf("PM(%p,%p,%lx)", (char *)bp->b_data + bp->b_bcount,
   2207   1.74  perseant 			 (char *)bp->b_data, bp->b_bufsize);
   2208   1.74  perseant 		pagemove((char *)bp->b_data + bp->b_bcount,
   2209   1.74  perseant 			 (char *)bp->b_data, bp->b_bufsize);
   2210   1.74  perseant 	}
   2211   1.74  perseant 	if(cl->flags & LFS_CL_MALLOC) {
   2212   1.74  perseant 		free(bp->b_data, M_SEGMENT);
   2213   1.74  perseant 		bp->b_data = cl->olddata;
   2214   1.74  perseant 	}
   2215   1.74  perseant 	bp->b_bcount = 0;
   2216   1.74  perseant 	bp->b_iodone = NULL;
   2217   1.74  perseant 	bp->b_flags &= ~B_DELWRI;
   2218   1.74  perseant 	bp->b_flags |= B_DONE;
   2219   1.79  perseant 	s = splbio();
   2220   1.74  perseant 	reassignbuf(bp, bp->b_vp);
   2221   1.79  perseant 	splx(s);
   2222   1.74  perseant 	brelse(bp);
   2223   1.74  perseant 
   2224   1.79  perseant 	/* Note i/o done */
   2225   1.79  perseant 	if (cl->flags & LFS_CL_SYNC) {
   2226   1.79  perseant 		if (--cl->seg->seg_iocount == 0)
   2227   1.79  perseant 			wakeup(&cl->seg->seg_iocount);
   2228   1.79  perseant 		/* printf("- %x => %d\n", cl->seg, cl->seg->seg_iocount); */
   2229   1.79  perseant 	}
   2230   1.74  perseant #ifdef DIAGNOSTIC
   2231   1.74  perseant 	if (fs->lfs_iocount == 0)
   2232   1.82    provos 		panic("lfs_cluster_aiodone: zero iocount");
   2233   1.74  perseant #endif
   2234   1.74  perseant 	if (--fs->lfs_iocount < LFS_THROTTLE)
   2235   1.74  perseant 		wakeup(&fs->lfs_iocount);
   2236   1.74  perseant #if 0
   2237   1.74  perseant 	if (fs->lfs_iocount == 0) {
   2238   1.74  perseant 		/*
   2239   1.74  perseant 		 * Vinvalbuf can move locked buffers off the locked queue
   2240   1.74  perseant 		 * and we have no way of knowing about this.  So, after
   2241   1.74  perseant 		 * doing a big write, we recalculate how many buffers are
   2242   1.74  perseant 		 * really still left on the locked queue.
   2243   1.74  perseant 		 */
   2244   1.74  perseant 		lfs_countlocked(&locked_queue_count, &locked_queue_bytes, "lfs_cluster_callback");
   2245   1.74  perseant 		wakeup(&locked_queue_count);
   2246   1.74  perseant 	}
   2247   1.74  perseant #endif
   2248   1.79  perseant 
   2249   1.79  perseant 	free(cl->bpp, M_SEGMENT);
   2250   1.79  perseant 	free(cl, M_SEGMENT);
   2251   1.79  perseant }
   2252   1.79  perseant 
   2253   1.79  perseant static void
   2254   1.79  perseant lfs_generic_callback(struct buf *bp, void (*aiodone)(struct buf *))
   2255   1.79  perseant {
   2256   1.79  perseant 	/* reset b_iodone for when this is a single-buf i/o. */
   2257   1.79  perseant 	bp->b_iodone = aiodone;
   2258   1.79  perseant 
   2259   1.79  perseant 	simple_lock(&uvm.aiodoned_lock);        /* locks uvm.aio_done */
   2260   1.79  perseant 	TAILQ_INSERT_TAIL(&uvm.aio_done, bp, b_freelist);
   2261   1.79  perseant 	wakeup(&uvm.aiodoned);
   2262   1.79  perseant 	simple_unlock(&uvm.aiodoned_lock);
   2263   1.79  perseant }
   2264   1.79  perseant 
   2265   1.79  perseant static void
   2266   1.79  perseant lfs_cluster_callback(struct buf *bp)
   2267   1.79  perseant {
   2268   1.79  perseant 	lfs_generic_callback(bp, lfs_cluster_aiodone);
   2269   1.79  perseant }
   2270   1.79  perseant 
   2271   1.79  perseant void
   2272   1.79  perseant lfs_supercallback(struct buf *bp)
   2273   1.79  perseant {
   2274   1.79  perseant 	lfs_generic_callback(bp, lfs_super_aiodone);
   2275    1.1   mycroft }
   2276    1.1   mycroft 
   2277    1.1   mycroft /*
   2278    1.1   mycroft  * Shellsort (diminishing increment sort) from Data Structures and
   2279    1.1   mycroft  * Algorithms, Aho, Hopcraft and Ullman, 1983 Edition, page 290;
   2280    1.1   mycroft  * see also Knuth Vol. 3, page 84.  The increments are selected from
   2281    1.1   mycroft  * formula (8), page 95.  Roughly O(N^3/2).
   2282    1.1   mycroft  */
   2283    1.1   mycroft /*
   2284    1.1   mycroft  * This is our own private copy of shellsort because we want to sort
   2285    1.1   mycroft  * two parallel arrays (the array of buffer pointers and the array of
   2286    1.1   mycroft  * logical block numbers) simultaneously.  Note that we cast the array
   2287    1.1   mycroft  * of logical block numbers to a unsigned in this routine so that the
   2288    1.1   mycroft  * negative block numbers (meta data blocks) sort AFTER the data blocks.
   2289    1.1   mycroft  */
   2290   1.15  perseant 
   2291    1.1   mycroft void
   2292   1.91      fvdl lfs_shellsort(struct buf **bp_array, int32_t *lb_array, int nmemb)
   2293    1.1   mycroft {
   2294    1.1   mycroft 	static int __rsshell_increments[] = { 4, 1, 0 };
   2295   1.42  augustss 	int incr, *incrp, t1, t2;
   2296    1.1   mycroft 	struct buf *bp_temp;
   2297    1.1   mycroft 	u_long lb_temp;
   2298    1.1   mycroft 
   2299    1.4  christos 	for (incrp = __rsshell_increments; (incr = *incrp++) != 0;)
   2300    1.1   mycroft 		for (t1 = incr; t1 < nmemb; ++t1)
   2301    1.1   mycroft 			for (t2 = t1 - incr; t2 >= 0;)
   2302    1.1   mycroft 				if (lb_array[t2] > lb_array[t2 + incr]) {
   2303    1.1   mycroft 					lb_temp = lb_array[t2];
   2304    1.1   mycroft 					lb_array[t2] = lb_array[t2 + incr];
   2305    1.1   mycroft 					lb_array[t2 + incr] = lb_temp;
   2306    1.1   mycroft 					bp_temp = bp_array[t2];
   2307    1.1   mycroft 					bp_array[t2] = bp_array[t2 + incr];
   2308    1.1   mycroft 					bp_array[t2 + incr] = bp_temp;
   2309    1.1   mycroft 					t2 -= incr;
   2310    1.1   mycroft 				} else
   2311    1.1   mycroft 					break;
   2312    1.1   mycroft }
   2313    1.1   mycroft 
   2314    1.1   mycroft /*
   2315    1.1   mycroft  * Check VXLOCK.  Return 1 if the vnode is locked.  Otherwise, vget it.
   2316    1.1   mycroft  */
   2317    1.4  christos int
   2318   1.69  perseant lfs_vref(struct vnode *vp)
   2319    1.1   mycroft {
   2320   1.15  perseant 	/*
   2321   1.15  perseant 	 * If we return 1 here during a flush, we risk vinvalbuf() not
   2322   1.15  perseant 	 * being able to flush all of the pages from this vnode, which
   2323   1.15  perseant 	 * will cause it to panic.  So, return 0 if a flush is in progress.
   2324   1.15  perseant 	 */
   2325   1.15  perseant 	if (vp->v_flag & VXLOCK) {
   2326   1.73       chs 		if (IS_FLUSHING(VTOI(vp)->i_lfs,vp)) {
   2327   1.15  perseant 			return 0;
   2328   1.15  perseant 		}
   2329   1.73       chs 		return (1);
   2330   1.15  perseant 	}
   2331    1.1   mycroft 	return (vget(vp, 0));
   2332    1.1   mycroft }
   2333    1.1   mycroft 
   2334   1.10      fvdl /*
   2335   1.10      fvdl  * This is vrele except that we do not want to VOP_INACTIVE this vnode. We
   2336   1.10      fvdl  * inline vrele here to avoid the vn_lock and VOP_INACTIVE call at the end.
   2337   1.10      fvdl  */
   2338    1.1   mycroft void
   2339   1.69  perseant lfs_vunref(struct vnode *vp)
   2340    1.1   mycroft {
   2341   1.17  perseant 	/*
   2342   1.17  perseant 	 * Analogous to lfs_vref, if the node is flushing, fake it.
   2343   1.17  perseant 	 */
   2344   1.73       chs 	if ((vp->v_flag & VXLOCK) && IS_FLUSHING(VTOI(vp)->i_lfs,vp)) {
   2345   1.17  perseant 		return;
   2346   1.17  perseant 	}
   2347   1.17  perseant 
   2348   1.10      fvdl 	simple_lock(&vp->v_interlock);
   2349   1.15  perseant #ifdef DIAGNOSTIC
   2350   1.73       chs 	if (vp->v_usecount <= 0) {
   2351   1.52  perseant 		printf("lfs_vunref: inum is %d\n", VTOI(vp)->i_number);
   2352   1.69  perseant 		printf("lfs_vunref: flags are 0x%lx\n", (u_long)vp->v_flag);
   2353   1.69  perseant 		printf("lfs_vunref: usecount = %ld\n", (long)vp->v_usecount);
   2354   1.15  perseant 		panic("lfs_vunref: v_usecount<0");
   2355   1.15  perseant 	}
   2356   1.15  perseant #endif
   2357   1.10      fvdl 	vp->v_usecount--;
   2358   1.10      fvdl 	if (vp->v_usecount > 0) {
   2359   1.15  perseant 		simple_unlock(&vp->v_interlock);
   2360   1.15  perseant 		return;
   2361   1.15  perseant 	}
   2362   1.15  perseant 	/*
   2363   1.10      fvdl 	 * insert at tail of LRU list
   2364    1.1   mycroft 	 */
   2365   1.10      fvdl 	simple_lock(&vnode_free_list_slock);
   2366   1.40  perseant 	if (vp->v_holdcnt > 0)
   2367   1.40  perseant 		TAILQ_INSERT_TAIL(&vnode_hold_list, vp, v_freelist);
   2368   1.40  perseant 	else
   2369   1.40  perseant 		TAILQ_INSERT_TAIL(&vnode_free_list, vp, v_freelist);
   2370   1.10      fvdl 	simple_unlock(&vnode_free_list_slock);
   2371   1.10      fvdl 	simple_unlock(&vp->v_interlock);
   2372    1.1   mycroft }
   2373   1.15  perseant 
   2374   1.15  perseant /*
   2375   1.15  perseant  * We use this when we have vnodes that were loaded in solely for cleaning.
   2376   1.15  perseant  * There is no reason to believe that these vnodes will be referenced again
   2377   1.15  perseant  * soon, since the cleaning process is unrelated to normal filesystem
   2378   1.15  perseant  * activity.  Putting cleaned vnodes at the tail of the list has the effect
   2379   1.15  perseant  * of flushing the vnode LRU.  So, put vnodes that were loaded only for
   2380   1.15  perseant  * cleaning at the head of the list, instead.
   2381   1.15  perseant  */
   2382   1.15  perseant void
   2383   1.69  perseant lfs_vunref_head(struct vnode *vp)
   2384   1.15  perseant {
   2385   1.15  perseant 	simple_lock(&vp->v_interlock);
   2386   1.15  perseant #ifdef DIAGNOSTIC
   2387   1.73       chs 	if (vp->v_usecount == 0) {
   2388   1.15  perseant 		panic("lfs_vunref: v_usecount<0");
   2389   1.15  perseant 	}
   2390   1.15  perseant #endif
   2391   1.15  perseant 	vp->v_usecount--;
   2392   1.15  perseant 	if (vp->v_usecount > 0) {
   2393   1.15  perseant 		simple_unlock(&vp->v_interlock);
   2394   1.15  perseant 		return;
   2395   1.15  perseant 	}
   2396   1.15  perseant 	/*
   2397   1.15  perseant 	 * insert at head of LRU list
   2398   1.15  perseant 	 */
   2399   1.15  perseant 	simple_lock(&vnode_free_list_slock);
   2400   1.77  perseant 	if (vp->v_holdcnt > 0)
   2401   1.77  perseant 		TAILQ_INSERT_TAIL(&vnode_hold_list, vp, v_freelist);
   2402   1.77  perseant 	else
   2403   1.77  perseant 		TAILQ_INSERT_HEAD(&vnode_free_list, vp, v_freelist);
   2404   1.15  perseant 	simple_unlock(&vnode_free_list_slock);
   2405   1.15  perseant 	simple_unlock(&vp->v_interlock);
   2406   1.15  perseant }
   2407   1.15  perseant 
   2408