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lfs_cleanerd.c revision 1.3
      1  1.3  perseant /* $NetBSD: lfs_cleanerd.c,v 1.3 2006/04/05 20:29:40 perseant Exp $	 */
      2  1.1  perseant 
      3  1.1  perseant /*-
      4  1.1  perseant  * Copyright (c) 2005 The NetBSD Foundation, Inc.
      5  1.1  perseant  * All rights reserved.
      6  1.1  perseant  *
      7  1.1  perseant  * This code is derived from software contributed to The NetBSD Foundation
      8  1.1  perseant  * by Konrad E. Schroder <perseant (at) hhhh.org>.
      9  1.1  perseant  *
     10  1.1  perseant  * Redistribution and use in source and binary forms, with or without
     11  1.1  perseant  * modification, are permitted provided that the following conditions
     12  1.1  perseant  * are met:
     13  1.1  perseant  * 1. Redistributions of source code must retain the above copyright
     14  1.1  perseant  *    notice, this list of conditions and the following disclaimer.
     15  1.1  perseant  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.1  perseant  *    notice, this list of conditions and the following disclaimer in the
     17  1.1  perseant  *    documentation and/or other materials provided with the distribution.
     18  1.1  perseant  * 3. All advertising materials mentioning features or use of this software
     19  1.1  perseant  *    must display the following acknowledgement:
     20  1.1  perseant  *	This product includes software developed by the NetBSD
     21  1.1  perseant  *	Foundation, Inc. and its contributors.
     22  1.1  perseant  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23  1.1  perseant  *    contributors may be used to endorse or promote products derived
     24  1.1  perseant  *    from this software without specific prior written permission.
     25  1.1  perseant  *
     26  1.1  perseant  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27  1.1  perseant  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28  1.1  perseant  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29  1.1  perseant  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30  1.1  perseant  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31  1.1  perseant  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32  1.1  perseant  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33  1.1  perseant  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34  1.1  perseant  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35  1.1  perseant  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36  1.1  perseant  * POSSIBILITY OF SUCH DAMAGE.
     37  1.1  perseant  */
     38  1.1  perseant 
     39  1.1  perseant /*
     40  1.1  perseant  * The cleaner daemon for the NetBSD Log-structured File System.
     41  1.1  perseant  * Only tested for use with version 2 LFSs.
     42  1.1  perseant  */
     43  1.1  perseant 
     44  1.1  perseant #include <sys/syslog.h>
     45  1.1  perseant #include <sys/param.h>
     46  1.1  perseant #include <sys/mount.h>
     47  1.1  perseant #include <sys/stat.h>
     48  1.1  perseant #include <ufs/ufs/inode.h>
     49  1.1  perseant #include <ufs/lfs/lfs.h>
     50  1.1  perseant 
     51  1.1  perseant #include <assert.h>
     52  1.1  perseant #include <err.h>
     53  1.1  perseant #include <errno.h>
     54  1.1  perseant #include <fcntl.h>
     55  1.1  perseant #include <stdio.h>
     56  1.1  perseant #include <stdlib.h>
     57  1.1  perseant #include <string.h>
     58  1.1  perseant #include <unistd.h>
     59  1.1  perseant #include <time.h>
     60  1.1  perseant #include <util.h>
     61  1.1  perseant 
     62  1.1  perseant #include "bufcache.h"
     63  1.1  perseant #include "vnode.h"
     64  1.1  perseant #include "lfs_user.h"
     65  1.1  perseant #include "fdfs.h"
     66  1.1  perseant #include "cleaner.h"
     67  1.1  perseant 
     68  1.1  perseant /*
     69  1.1  perseant  * Global variables.
     70  1.1  perseant  */
     71  1.1  perseant /* XXX these top few should really be fs-specific */
     72  1.1  perseant int use_fs_idle;	/* Use fs idle rather than cpu idle time */
     73  1.1  perseant int use_bytes;		/* Use bytes written rather than segments cleaned */
     74  1.1  perseant int load_threshold;	/* How idle is idle (CPU idle) */
     75  1.1  perseant int atatime;		/* How many segments (bytes) to clean at a time */
     76  1.1  perseant 
     77  1.1  perseant int nfss;		/* Number of filesystems monitored by this cleanerd */
     78  1.1  perseant struct clfs **fsp;	/* Array of extended filesystem structures */
     79  1.1  perseant int segwait_timeout;	/* Time to wait in lfs_segwait() */
     80  1.1  perseant int do_quit;		/* Quit after one cleaning loop */
     81  1.1  perseant int do_coalesce;	/* Coalesce filesystem */
     82  1.1  perseant int do_small;		/* Use small writes through markv */
     83  1.1  perseant char *copylog_filename; /* File to use for fs debugging analysis */
     84  1.1  perseant int inval_segment;	/* Segment to invalidate */
     85  1.1  perseant int stat_report;	/* Report statistics for this period of cycles */
     86  1.1  perseant int debug;		/* Turn on debugging */
     87  1.1  perseant struct cleaner_stats {
     88  1.1  perseant 	double	util_tot;
     89  1.1  perseant 	double	util_sos;
     90  1.1  perseant 	off_t	bytes_read;
     91  1.1  perseant 	off_t	bytes_written;
     92  1.1  perseant 	off_t	segs_cleaned;
     93  1.1  perseant 	off_t	segs_empty;
     94  1.1  perseant 	off_t	segs_error;
     95  1.1  perseant } cleaner_stats;
     96  1.1  perseant 
     97  1.1  perseant extern u_int32_t cksum(void *, size_t);
     98  1.1  perseant extern u_int32_t lfs_sb_cksum(struct dlfs *);
     99  1.1  perseant extern u_int32_t lfs_cksum_part(void *, size_t, u_int32_t);
    100  1.1  perseant extern int ufs_getlbns(struct lfs *, struct uvnode *, daddr_t, struct indir *, int *);
    101  1.1  perseant 
    102  1.1  perseant /* Compat */
    103  1.1  perseant void pwarn(const char *unused, ...) { /* Does nothing */ };
    104  1.1  perseant 
    105  1.1  perseant /*
    106  1.1  perseant  * Log a message if debugging is turned on.
    107  1.1  perseant  */
    108  1.1  perseant void
    109  1.1  perseant dlog(char *fmt, ...)
    110  1.1  perseant {
    111  1.1  perseant 	va_list ap;
    112  1.1  perseant 
    113  1.1  perseant 	if (debug == 0)
    114  1.1  perseant 		return;
    115  1.1  perseant 
    116  1.1  perseant 	va_start(ap, fmt);
    117  1.1  perseant 	vsyslog(LOG_DEBUG, fmt, ap);
    118  1.1  perseant 	va_end(ap);
    119  1.1  perseant }
    120  1.1  perseant 
    121  1.1  perseant /*
    122  1.1  perseant  * Remove the specified filesystem from the list, due to its having
    123  1.1  perseant  * become unmounted or other error condition.
    124  1.1  perseant  */
    125  1.1  perseant void
    126  1.1  perseant handle_error(struct clfs **fsp, int n)
    127  1.1  perseant {
    128  1.1  perseant 	syslog(LOG_NOTICE, "%s: detaching cleaner", fsp[n]->lfs_fsmnt);
    129  1.1  perseant 	free(fsp[n]);
    130  1.1  perseant 	if (n != nfss - 1)
    131  1.1  perseant 		fsp[n] = fsp[nfss - 1];
    132  1.1  perseant 	--nfss;
    133  1.1  perseant }
    134  1.1  perseant 
    135  1.1  perseant /*
    136  1.1  perseant  * Reinitialize a filesystem if, e.g., its size changed.
    137  1.1  perseant  */
    138  1.1  perseant int
    139  1.1  perseant reinit_fs(struct clfs *fs)
    140  1.1  perseant {
    141  1.1  perseant 	char fsname[MNAMELEN];
    142  1.1  perseant 
    143  1.1  perseant 	strcpy(fsname, fs->lfs_fsmnt);
    144  1.1  perseant 	close(fs->clfs_ifilefd);
    145  1.1  perseant 	close(fs->clfs_devfd);
    146  1.1  perseant 	fd_reclaim(fs->clfs_devvp);
    147  1.1  perseant 	fd_reclaim(fs->lfs_ivnode);
    148  1.1  perseant 	free(fs->clfs_dev);
    149  1.1  perseant 	free(fs->clfs_segtab);
    150  1.1  perseant 	free(fs->clfs_segtabp);
    151  1.1  perseant 
    152  1.1  perseant 	return init_fs(fs, fsname);
    153  1.1  perseant }
    154  1.1  perseant 
    155  1.1  perseant #ifdef REPAIR_ZERO_FINFO
    156  1.1  perseant /*
    157  1.1  perseant  * Use fsck's lfs routines to load the Ifile from an unmounted fs.
    158  1.1  perseant  * We interpret "fsname" as the name of the raw disk device.
    159  1.1  perseant  */
    160  1.1  perseant int
    161  1.1  perseant init_unmounted_fs(struct clfs *fs, char *fsname)
    162  1.1  perseant {
    163  1.1  perseant 	struct lfs *disc_fs;
    164  1.1  perseant 	int i;
    165  1.1  perseant 
    166  1.1  perseant 	fs->clfs_dev = fsname;
    167  1.1  perseant 	if ((fs->clfs_devfd = open(fs->clfs_dev, O_RDWR)) < 0) {
    168  1.1  perseant 		syslog(LOG_ERR, "couldn't open device %s read/write",
    169  1.1  perseant 		       fs->clfs_dev);
    170  1.1  perseant 		return -1;
    171  1.1  perseant 	}
    172  1.1  perseant 
    173  1.1  perseant 	disc_fs = lfs_init(fs->clfs_devfd, 0, 0, 0, 0);
    174  1.1  perseant 
    175  1.1  perseant 	fs->lfs_dlfs = disc_fs->lfs_dlfs; /* Structure copy */
    176  1.1  perseant 	strncpy(fs->lfs_fsmnt, fsname, MNAMELEN);
    177  1.1  perseant 	fs->lfs_ivnode = (struct uvnode *)disc_fs->lfs_ivnode;
    178  1.1  perseant 	fs->clfs_devvp = fd_vget(fs->clfs_devfd, fs->lfs_fsize, fs->lfs_ssize,
    179  1.1  perseant 				 atatime);
    180  1.1  perseant 
    181  1.1  perseant 	/* Allocate and clear segtab */
    182  1.1  perseant 	fs->clfs_segtab = (struct clfs_seguse *)malloc(fs->lfs_nseg *
    183  1.1  perseant 						sizeof(*fs->clfs_segtab));
    184  1.1  perseant 	fs->clfs_segtabp = (struct clfs_seguse **)malloc(fs->lfs_nseg *
    185  1.1  perseant 						sizeof(*fs->clfs_segtabp));
    186  1.1  perseant 	for (i = 0; i < fs->lfs_nseg; i++) {
    187  1.1  perseant 		fs->clfs_segtabp[i] = &(fs->clfs_segtab[i]);
    188  1.1  perseant 		fs->clfs_segtab[i].flags = 0x0;
    189  1.1  perseant 	}
    190  1.1  perseant 	syslog(LOG_NOTICE, "%s: unmounted cleaner starting", fsname);
    191  1.1  perseant 
    192  1.1  perseant 	return 0;
    193  1.1  perseant }
    194  1.1  perseant #endif
    195  1.1  perseant 
    196  1.1  perseant /*
    197  1.1  perseant  * Set up the file descriptors, including the Ifile descriptor.
    198  1.1  perseant  * If we can't get the Ifile, this is not an LFS (or the kernel is
    199  1.1  perseant  * too old to support the fcntl).
    200  1.1  perseant  * XXX Merge this and init_unmounted_fs, switching on whether
    201  1.1  perseant  * XXX "fsname" is a dir or a char special device.  Should
    202  1.1  perseant  * XXX also be able to read unmounted devices out of fstab, the way
    203  1.1  perseant  * XXX fsck does.
    204  1.1  perseant  */
    205  1.1  perseant int
    206  1.1  perseant init_fs(struct clfs *fs, char *fsname)
    207  1.1  perseant {
    208  1.1  perseant 	struct statvfs sf;
    209  1.1  perseant 	int rootfd;
    210  1.1  perseant 	int i;
    211  1.1  perseant 
    212  1.1  perseant 	/*
    213  1.1  perseant 	 * Get the raw device from the block device.
    214  1.1  perseant 	 * XXX this is ugly.  Is there a way to discover the raw device
    215  1.1  perseant 	 * XXX for a given mount point?
    216  1.1  perseant 	 */
    217  1.1  perseant 	if (statvfs(fsname, &sf) < 0)
    218  1.1  perseant 		return -1;
    219  1.1  perseant 	fs->clfs_dev = malloc(strlen(sf.f_mntfromname) + 2);
    220  1.1  perseant 	sprintf(fs->clfs_dev, "/dev/r%s", sf.f_mntfromname + 5);
    221  1.1  perseant 	if ((fs->clfs_devfd = open(fs->clfs_dev, O_RDONLY)) < 0) {
    222  1.1  perseant 		syslog(LOG_ERR, "couldn't open device %s for reading",
    223  1.1  perseant 			fs->clfs_dev);
    224  1.1  perseant 		return -1;
    225  1.1  perseant 	}
    226  1.1  perseant 
    227  1.1  perseant 	/* Find the Ifile and open it */
    228  1.1  perseant 	if ((rootfd = open(fsname, O_RDONLY)) < 0)
    229  1.1  perseant 		return -2;
    230  1.1  perseant 	if (fcntl(rootfd, LFCNIFILEFH, &fs->clfs_ifilefh) < 0)
    231  1.1  perseant 		return -3;
    232  1.1  perseant 	if ((fs->clfs_ifilefd = fhopen(&fs->clfs_ifilefh, O_RDONLY)) < 0)
    233  1.1  perseant 		return -4;
    234  1.1  perseant 	close(rootfd);
    235  1.1  perseant 
    236  1.1  perseant 	/* Load in the superblock */
    237  1.1  perseant 	if (pread(fs->clfs_devfd, &(fs->lfs_dlfs), sizeof(struct dlfs),
    238  1.1  perseant 		  LFS_LABELPAD) < 0)
    239  1.1  perseant 		return -1;
    240  1.1  perseant 
    241  1.1  perseant 	/* If this is not a version 2 filesystem, complain and exit */
    242  1.1  perseant 	if (fs->lfs_version != 2) {
    243  1.1  perseant 		syslog(LOG_ERR, "%s: not a version 2 LFS", fsname);
    244  1.1  perseant 		return -1;
    245  1.1  perseant 	}
    246  1.1  perseant 
    247  1.1  perseant 	/* Assume fsname is the mounted name */
    248  1.1  perseant 	strncpy(fs->lfs_fsmnt, fsname, MNAMELEN);
    249  1.1  perseant 
    250  1.1  perseant 	/* Set up vnodes for Ifile and raw device */
    251  1.1  perseant 	fs->lfs_ivnode = fd_vget(fs->clfs_ifilefd, fs->lfs_bsize, 0, 0);
    252  1.1  perseant 	fs->clfs_devvp = fd_vget(fs->clfs_devfd, fs->lfs_fsize, fs->lfs_ssize,
    253  1.1  perseant 				 atatime);
    254  1.1  perseant 
    255  1.1  perseant 	/* Allocate and clear segtab */
    256  1.1  perseant 	fs->clfs_segtab = (struct clfs_seguse *)malloc(fs->lfs_nseg *
    257  1.1  perseant 						sizeof(*fs->clfs_segtab));
    258  1.1  perseant 	fs->clfs_segtabp = (struct clfs_seguse **)malloc(fs->lfs_nseg *
    259  1.1  perseant 						sizeof(*fs->clfs_segtabp));
    260  1.1  perseant 	for (i = 0; i < fs->lfs_nseg; i++) {
    261  1.1  perseant 		fs->clfs_segtabp[i] = &(fs->clfs_segtab[i]);
    262  1.1  perseant 		fs->clfs_segtab[i].flags = 0x0;
    263  1.1  perseant 	}
    264  1.1  perseant 
    265  1.1  perseant 	syslog(LOG_NOTICE, "%s: attaching cleaner", fsname);
    266  1.1  perseant 	return 0;
    267  1.1  perseant }
    268  1.1  perseant 
    269  1.1  perseant /*
    270  1.1  perseant  * Invalidate all the currently held Ifile blocks so they will be
    271  1.1  perseant  * reread when we clean.  Check the size while we're at it, and
    272  1.1  perseant  * resize the buffer cache if necessary.
    273  1.1  perseant  */
    274  1.1  perseant void
    275  1.1  perseant reload_ifile(struct clfs *fs)
    276  1.1  perseant {
    277  1.1  perseant 	struct ubuf *bp;
    278  1.1  perseant 	struct stat st;
    279  1.1  perseant 	int ohashmax;
    280  1.1  perseant 	extern int hashmax;
    281  1.1  perseant 
    282  1.2  christos 	while ((bp = LIST_FIRST(&fs->lfs_ivnode->v_dirtyblkhd)) != NULL) {
    283  1.1  perseant 		bremfree(bp);
    284  1.1  perseant 		buf_destroy(bp);
    285  1.1  perseant 	}
    286  1.2  christos 	while ((bp = LIST_FIRST(&fs->lfs_ivnode->v_cleanblkhd)) != NULL) {
    287  1.1  perseant 		bremfree(bp);
    288  1.1  perseant 		buf_destroy(bp);
    289  1.1  perseant 	}
    290  1.1  perseant 
    291  1.1  perseant 	/* If Ifile is larger than buffer cache, rehash */
    292  1.1  perseant 	fstat(fs->clfs_ifilefd, &st);
    293  1.1  perseant 	if (st.st_size / fs->lfs_bsize > hashmax) {
    294  1.1  perseant 		ohashmax = hashmax;
    295  1.1  perseant 		bufrehash(st.st_size / fs->lfs_bsize);
    296  1.1  perseant 		dlog("%s: resized buffer hash from %d to %d",
    297  1.1  perseant 		     fs->lfs_fsmnt, ohashmax, hashmax);
    298  1.1  perseant 	}
    299  1.1  perseant }
    300  1.1  perseant 
    301  1.1  perseant /*
    302  1.1  perseant  * Get IFILE entry for the given inode, store in ifpp.	The buffer
    303  1.1  perseant  * which contains that data is returned in bpp, and must be brelse()d
    304  1.1  perseant  * by the caller.
    305  1.1  perseant  */
    306  1.1  perseant void
    307  1.1  perseant lfs_ientry(IFILE **ifpp, struct clfs *fs, ino_t ino, struct ubuf **bpp)
    308  1.1  perseant {
    309  1.1  perseant 	int error;
    310  1.1  perseant 
    311  1.1  perseant 	error = bread(fs->lfs_ivnode, ino / fs->lfs_ifpb + fs->lfs_cleansz +
    312  1.1  perseant 		      fs->lfs_segtabsz, fs->lfs_bsize, NOCRED, bpp);
    313  1.1  perseant 	*ifpp = (IFILE *)(*bpp)->b_data + ino % fs->lfs_ifpb;
    314  1.1  perseant 	return;
    315  1.1  perseant }
    316  1.1  perseant 
    317  1.1  perseant #ifdef TEST_PATTERN
    318  1.1  perseant /*
    319  1.1  perseant  * Check ROOTINO for file data.	 The assumption is that we are running
    320  1.1  perseant  * the "twofiles" test with the rest of the filesystem empty.  Files
    321  1.1  perseant  * created by "twofiles" match the test pattern, but ROOTINO and the
    322  1.1  perseant  * executable itself (assumed to be inode 3) should not match.
    323  1.1  perseant  */
    324  1.1  perseant static void
    325  1.1  perseant check_test_pattern(BLOCK_INFO *bip)
    326  1.1  perseant {
    327  1.1  perseant 	int j;
    328  1.1  perseant 	unsigned char *cp = bip->bi_bp;
    329  1.1  perseant 
    330  1.1  perseant 	/* Check inode sanity */
    331  1.1  perseant 	if (bip->bi_lbn == LFS_UNUSED_LBN) {
    332  1.1  perseant 		assert(((struct ufs1_dinode *)bip->bi_bp)->di_inumber ==
    333  1.1  perseant 			bip->bi_inode);
    334  1.1  perseant 	}
    335  1.1  perseant 
    336  1.1  perseant 	/* These can have the test pattern and it's all good */
    337  1.1  perseant 	if (bip->bi_inode > 3)
    338  1.1  perseant 		return;
    339  1.1  perseant 
    340  1.1  perseant 	for (j = 0; j < bip->bi_size; j++) {
    341  1.1  perseant 		if (cp[j] != (j & 0xff))
    342  1.1  perseant 			break;
    343  1.1  perseant 	}
    344  1.1  perseant 	assert(j < bip->bi_size);
    345  1.1  perseant }
    346  1.1  perseant #endif /* TEST_PATTERN */
    347  1.1  perseant 
    348  1.1  perseant /*
    349  1.1  perseant  * Parse the partial segment at daddr, adding its information to
    350  1.1  perseant  * bip.	 Return the address of the next partial segment to read.
    351  1.1  perseant  */
    352  1.1  perseant int32_t
    353  1.1  perseant parse_pseg(struct clfs *fs, daddr_t daddr, BLOCK_INFO **bipp, int *bic)
    354  1.1  perseant {
    355  1.1  perseant 	SEGSUM *ssp;
    356  1.1  perseant 	IFILE *ifp;
    357  1.3  perseant 	BLOCK_INFO *bip, *nbip;
    358  1.1  perseant 	int32_t *iaddrp, idaddr, odaddr;
    359  1.1  perseant 	FINFO *fip;
    360  1.1  perseant 	struct ubuf *ifbp;
    361  1.1  perseant 	struct ufs1_dinode *dip;
    362  1.1  perseant 	u_int32_t ck, vers;
    363  1.1  perseant 	int fic, inoc, obic;
    364  1.1  perseant 	int i;
    365  1.1  perseant 	unsigned char *cp;
    366  1.1  perseant 
    367  1.1  perseant 	odaddr = daddr;
    368  1.1  perseant 	obic = *bic;
    369  1.1  perseant 	bip = *bipp;
    370  1.1  perseant 
    371  1.1  perseant 	/*
    372  1.1  perseant 	 * Retrieve the segment header, set up the SEGSUM pointer
    373  1.1  perseant 	 * as well as the first FINFO and inode address pointer.
    374  1.1  perseant 	 */
    375  1.1  perseant 	cp = fd_ptrget(fs->clfs_devvp, daddr);
    376  1.1  perseant 	ssp = (SEGSUM *)cp;
    377  1.1  perseant 	iaddrp = ((int32_t *)(cp + fs->lfs_bsize)) - 1;
    378  1.1  perseant 	fip = (FINFO *)(cp + sizeof(SEGSUM));
    379  1.1  perseant 
    380  1.1  perseant 	/*
    381  1.1  perseant 	 * Check segment header magic and checksum
    382  1.1  perseant 	 */
    383  1.1  perseant 	if (ssp->ss_magic != SS_MAGIC) {
    384  1.1  perseant 		syslog(LOG_WARNING, "%s: sumsum magic number bad at 0x%x:"
    385  1.1  perseant 		       " read 0x%x, expected 0x%x", fs->lfs_fsmnt,
    386  1.1  perseant 		       (int32_t)daddr, ssp->ss_magic, SS_MAGIC);
    387  1.1  perseant 		return 0x0;
    388  1.1  perseant 	}
    389  1.1  perseant 	ck = cksum(&ssp->ss_datasum, fs->lfs_sumsize - sizeof(ssp->ss_sumsum));
    390  1.1  perseant 	if (ck != ssp->ss_sumsum) {
    391  1.1  perseant 		syslog(LOG_WARNING, "%s: sumsum checksum mismatch at 0x%x:"
    392  1.1  perseant 		       " read 0x%x, computed 0x%x", fs->lfs_fsmnt,
    393  1.1  perseant 		       (int32_t)daddr, ssp->ss_sumsum, ck);
    394  1.1  perseant 		return 0x0;
    395  1.1  perseant 	}
    396  1.1  perseant 
    397  1.1  perseant 	/* Initialize data sum */
    398  1.1  perseant 	ck = 0;
    399  1.1  perseant 
    400  1.1  perseant 	/* Point daddr at next block after segment summary */
    401  1.1  perseant 	++daddr;
    402  1.1  perseant 
    403  1.1  perseant 	/*
    404  1.1  perseant 	 * Loop over file info and inode pointers.  We always move daddr
    405  1.1  perseant 	 * forward here because we are also computing the data checksum
    406  1.1  perseant 	 * as we go.
    407  1.1  perseant 	 */
    408  1.1  perseant 	fic = inoc = 0;
    409  1.1  perseant 	while (fic < ssp->ss_nfinfo || inoc < ssp->ss_ninos) {
    410  1.1  perseant 		/*
    411  1.3  perseant 		 * We must have either a file block or an inode block.
    412  1.3  perseant 		 * If we don't have either one, it's an error.
    413  1.3  perseant 		 */
    414  1.3  perseant 		if (fic >= ssp->ss_nfinfo && *iaddrp != daddr) {
    415  1.3  perseant 			syslog(LOG_WARNING, "%s: bad pseg at %x (seg %d)",
    416  1.3  perseant 			       fs->lfs_fsmnt, odaddr, dtosn(fs, odaddr));
    417  1.3  perseant 			*bipp = bip;
    418  1.3  perseant 			return 0x0;
    419  1.3  perseant 		}
    420  1.3  perseant 
    421  1.3  perseant 		/*
    422  1.1  perseant 		 * Note each inode from the inode blocks
    423  1.1  perseant 		 */
    424  1.1  perseant 		if (inoc < ssp->ss_ninos && *iaddrp == daddr) {
    425  1.1  perseant 			cp = fd_ptrget(fs->clfs_devvp, daddr);
    426  1.1  perseant 			ck = lfs_cksum_part(cp, sizeof(u_int32_t), ck);
    427  1.1  perseant 			dip = (struct ufs1_dinode *)cp;
    428  1.1  perseant 			for (i = 0; i < fs->lfs_inopb; i++) {
    429  1.1  perseant 				if (dip[i].di_inumber == 0)
    430  1.1  perseant 					break;
    431  1.1  perseant 
    432  1.1  perseant 				/*
    433  1.1  perseant 				 * Check currency before adding it
    434  1.1  perseant 				 */
    435  1.1  perseant #ifndef REPAIR_ZERO_FINFO
    436  1.1  perseant 				lfs_ientry(&ifp, fs, dip[i].di_inumber, &ifbp);
    437  1.1  perseant 				idaddr = ifp->if_daddr;
    438  1.1  perseant 				brelse(ifbp);
    439  1.1  perseant 				if (idaddr != daddr)
    440  1.1  perseant #endif
    441  1.1  perseant 					continue;
    442  1.1  perseant 
    443  1.1  perseant 				/*
    444  1.1  perseant 				 * A current inode.  Add it.
    445  1.1  perseant 				 */
    446  1.1  perseant 				++*bic;
    447  1.3  perseant 				nbip = (BLOCK_INFO *)realloc(bip, *bic *
    448  1.3  perseant 							     sizeof(*bip));
    449  1.3  perseant 				if (nbip)
    450  1.3  perseant 					bip = nbip;
    451  1.3  perseant 				else {
    452  1.3  perseant 					--*bic;
    453  1.3  perseant 					*bipp = bip;
    454  1.3  perseant 					return 0x0;
    455  1.3  perseant 				}
    456  1.1  perseant 				bip[*bic - 1].bi_inode = dip[i].di_inumber;
    457  1.1  perseant 				bip[*bic - 1].bi_lbn = LFS_UNUSED_LBN;
    458  1.1  perseant 				bip[*bic - 1].bi_daddr = daddr;
    459  1.1  perseant 				bip[*bic - 1].bi_segcreate = ssp->ss_create;
    460  1.1  perseant 				bip[*bic - 1].bi_version = dip[i].di_gen;
    461  1.1  perseant 				bip[*bic - 1].bi_bp = &(dip[i]);
    462  1.1  perseant 				bip[*bic - 1].bi_size = DINODE1_SIZE;
    463  1.1  perseant 			}
    464  1.1  perseant 			inoc += i;
    465  1.1  perseant 			daddr += btofsb(fs, fs->lfs_ibsize);
    466  1.1  perseant 			--iaddrp;
    467  1.1  perseant 			continue;
    468  1.1  perseant 		}
    469  1.1  perseant 
    470  1.1  perseant 		/*
    471  1.1  perseant 		 * Note each file block from the finfo blocks
    472  1.1  perseant 		 */
    473  1.1  perseant 		if (fic >= ssp->ss_nfinfo)
    474  1.1  perseant 			continue;
    475  1.1  perseant 
    476  1.1  perseant 		/* Count this finfo, whether or not we use it */
    477  1.1  perseant 		++fic;
    478  1.1  perseant 
    479  1.1  perseant 		/*
    480  1.1  perseant 		 * If this finfo has nblocks==0, it was written wrong.
    481  1.1  perseant 		 * Kernels with this problem always wrote this zero-sized
    482  1.1  perseant 		 * finfo last, so just ignore it.
    483  1.1  perseant 		 */
    484  1.1  perseant 		if (fip->fi_nblocks == 0) {
    485  1.1  perseant #ifdef REPAIR_ZERO_FINFO
    486  1.1  perseant 			struct ubuf *nbp;
    487  1.1  perseant 			SEGSUM *nssp;
    488  1.1  perseant 
    489  1.1  perseant 			syslog(LOG_WARNING, "fixing short FINFO at %x (seg %d)",
    490  1.1  perseant 			       odaddr, dtosn(fs, odaddr));
    491  1.1  perseant 			bread(fs->clfs_devvp, odaddr, fs->lfs_fsize, NOCRED, &nbp);
    492  1.1  perseant 			nssp = (SEGSUM *)nbp->b_data;
    493  1.1  perseant 			--nssp->ss_nfinfo;
    494  1.1  perseant 			nssp->ss_sumsum = cksum(&nssp->ss_datasum,
    495  1.1  perseant 				fs->lfs_sumsize - sizeof(nssp->ss_sumsum));
    496  1.1  perseant 			bwrite(nbp);
    497  1.1  perseant #endif
    498  1.1  perseant 			continue;
    499  1.1  perseant 		}
    500  1.1  perseant 
    501  1.1  perseant 		/*
    502  1.1  perseant 		 * Check currency before adding blocks
    503  1.1  perseant 		 */
    504  1.1  perseant #ifdef REPAIR_ZERO_FINFO
    505  1.1  perseant 		vers = -1;
    506  1.1  perseant #else
    507  1.1  perseant 		lfs_ientry(&ifp, fs, fip->fi_ino, &ifbp);
    508  1.1  perseant 		vers = ifp->if_version;
    509  1.1  perseant 		brelse(ifbp);
    510  1.1  perseant #endif
    511  1.1  perseant 		if (vers != fip->fi_version) {
    512  1.1  perseant 			size_t size;
    513  1.1  perseant 
    514  1.1  perseant 			/* Read all the blocks from the data summary */
    515  1.1  perseant 			for (i = 0; i < fip->fi_nblocks; i++) {
    516  1.1  perseant 				size = (i == fip->fi_nblocks - 1) ?
    517  1.1  perseant 					fip->fi_lastlength : fs->lfs_bsize;
    518  1.1  perseant 				cp = fd_ptrget(fs->clfs_devvp, daddr);
    519  1.1  perseant 				ck = lfs_cksum_part(cp, sizeof(u_int32_t), ck);
    520  1.1  perseant 				daddr += btofsb(fs, size);
    521  1.1  perseant 			}
    522  1.1  perseant 			fip = (FINFO *)(fip->fi_blocks + fip->fi_nblocks);
    523  1.1  perseant 			continue;
    524  1.1  perseant 		}
    525  1.1  perseant 
    526  1.1  perseant 		/* Add all the blocks from the finfos (current or not) */
    527  1.3  perseant 		nbip = (BLOCK_INFO *)realloc(bip, (*bic + fip->fi_nblocks) *
    528  1.3  perseant 					     sizeof(*bip));
    529  1.3  perseant 		if (nbip)
    530  1.3  perseant 			bip = nbip;
    531  1.3  perseant 		else {
    532  1.3  perseant 			*bipp = bip;
    533  1.3  perseant 			return 0x0;
    534  1.3  perseant 		}
    535  1.3  perseant 
    536  1.1  perseant 		for (i = 0; i < fip->fi_nblocks; i++) {
    537  1.1  perseant 			bip[*bic + i].bi_inode = fip->fi_ino;
    538  1.1  perseant 			bip[*bic + i].bi_lbn = fip->fi_blocks[i];
    539  1.1  perseant 			bip[*bic + i].bi_daddr = daddr;
    540  1.1  perseant 			bip[*bic + i].bi_segcreate = ssp->ss_create;
    541  1.1  perseant 			bip[*bic + i].bi_version = fip->fi_version;
    542  1.1  perseant 			bip[*bic + i].bi_size = (i == fip->fi_nblocks - 1) ?
    543  1.1  perseant 				fip->fi_lastlength : fs->lfs_bsize;
    544  1.1  perseant 			cp = fd_ptrget(fs->clfs_devvp, daddr);
    545  1.1  perseant 			ck = lfs_cksum_part(cp, sizeof(u_int32_t), ck);
    546  1.1  perseant 			bip[*bic + i].bi_bp = cp;
    547  1.1  perseant 			daddr += btofsb(fs, bip[*bic + i].bi_size);
    548  1.1  perseant 
    549  1.1  perseant #ifdef TEST_PATTERN
    550  1.1  perseant 			check_test_pattern(bip + *bic + i); /* XXXDEBUG */
    551  1.1  perseant #endif
    552  1.1  perseant 		}
    553  1.1  perseant 		*bic += fip->fi_nblocks;
    554  1.1  perseant 		fip = (FINFO *)(fip->fi_blocks + fip->fi_nblocks);
    555  1.1  perseant 	}
    556  1.1  perseant 
    557  1.1  perseant #ifndef REPAIR_ZERO_FINFO
    558  1.1  perseant 	if (ssp->ss_datasum != ck) {
    559  1.1  perseant 		syslog(LOG_WARNING, "%s: data checksum bad at 0x%x:"
    560  1.1  perseant 		       " read 0x%x, computed 0x%x", fs->lfs_fsmnt, odaddr,
    561  1.1  perseant 		       ssp->ss_datasum, ck);
    562  1.1  perseant 		*bic = obic;
    563  1.1  perseant 		return 0x0;
    564  1.1  perseant 	}
    565  1.1  perseant #endif
    566  1.1  perseant 
    567  1.1  perseant 	*bipp = bip;
    568  1.1  perseant 	return daddr;
    569  1.1  perseant }
    570  1.1  perseant 
    571  1.1  perseant static void
    572  1.1  perseant log_segment_read(struct clfs *fs, int sn)
    573  1.1  perseant {
    574  1.1  perseant         FILE *fp;
    575  1.1  perseant 	char *cp;
    576  1.1  perseant 
    577  1.1  perseant         /*
    578  1.1  perseant          * Write the segment read, and its contents, into a log file in
    579  1.1  perseant          * the current directory.  We don't need to log the location of
    580  1.1  perseant          * the segment, since that can be inferred from the segments up
    581  1.1  perseant 	 * to this point (ss_nextseg field of the previously written segment).
    582  1.1  perseant 	 *
    583  1.1  perseant 	 * We can use this info later to reconstruct the filesystem at any
    584  1.1  perseant 	 * given point in time for analysis, by replaying the log forward
    585  1.1  perseant 	 * indexed by the segment serial numbers; but it is not suitable
    586  1.1  perseant 	 * for everyday use since the copylog will be simply enormous.
    587  1.1  perseant          */
    588  1.1  perseant 	cp = fd_ptrget(fs->clfs_devvp, sntod(fs, sn));
    589  1.1  perseant 
    590  1.1  perseant         fp = fopen(copylog_filename, "ab");
    591  1.1  perseant         if (fp != NULL) {
    592  1.1  perseant                 if (fwrite(cp, (size_t)fs->lfs_ssize, 1, fp) < 0) {
    593  1.1  perseant                         perror("writing segment to copy log");
    594  1.1  perseant                 }
    595  1.1  perseant         }
    596  1.1  perseant         fclose(fp);
    597  1.1  perseant }
    598  1.1  perseant 
    599  1.1  perseant /*
    600  1.1  perseant  * Read a segment to populate the BLOCK_INFO structures.
    601  1.1  perseant  * Return the number of partial segments read and parsed.
    602  1.1  perseant  */
    603  1.1  perseant int
    604  1.1  perseant load_segment(struct clfs *fs, int sn, BLOCK_INFO **bipp, int *bic)
    605  1.1  perseant {
    606  1.1  perseant 	int32_t daddr;
    607  1.1  perseant 	int i, npseg;
    608  1.1  perseant 
    609  1.1  perseant 	daddr = sntod(fs, sn);
    610  1.1  perseant 	if (daddr < btofsb(fs, LFS_LABELPAD))
    611  1.1  perseant 		daddr = btofsb(fs, LFS_LABELPAD);
    612  1.1  perseant 	for (i = 0; i < LFS_MAXNUMSB; i++) {
    613  1.1  perseant 		if (fs->lfs_sboffs[i] == daddr) {
    614  1.1  perseant 			daddr += btofsb(fs, LFS_SBPAD);
    615  1.1  perseant 			break;
    616  1.1  perseant 		}
    617  1.1  perseant 	}
    618  1.1  perseant 
    619  1.1  perseant 	/* Preload the segment buffer */
    620  1.1  perseant 	if (fd_preload(fs->clfs_devvp, sntod(fs, sn)) < 0)
    621  1.1  perseant 		return -1;
    622  1.1  perseant 
    623  1.1  perseant 	if (copylog_filename)
    624  1.1  perseant 		log_segment_read(fs, sn);
    625  1.1  perseant 
    626  1.1  perseant 	/* Note bytes read for stats */
    627  1.1  perseant 	cleaner_stats.segs_cleaned++;
    628  1.1  perseant 	cleaner_stats.bytes_read += fs->lfs_ssize;
    629  1.1  perseant 	++fs->clfs_nactive;
    630  1.1  perseant 
    631  1.1  perseant 	npseg = 0;
    632  1.1  perseant 	while(dtosn(fs, daddr) == sn &&
    633  1.1  perseant 	      dtosn(fs, daddr + btofsb(fs, fs->lfs_bsize)) == sn) {
    634  1.1  perseant 		daddr = parse_pseg(fs, daddr, bipp, bic);
    635  1.1  perseant 		if (daddr == 0x0) {
    636  1.1  perseant 			++cleaner_stats.segs_error;
    637  1.1  perseant 			break;
    638  1.1  perseant 		}
    639  1.1  perseant 		++npseg;
    640  1.1  perseant 	}
    641  1.1  perseant 
    642  1.1  perseant 	return npseg;
    643  1.1  perseant }
    644  1.1  perseant 
    645  1.1  perseant void
    646  1.1  perseant calc_cb(struct clfs *fs, int sn, struct clfs_seguse *t)
    647  1.1  perseant {
    648  1.1  perseant 	time_t now;
    649  1.1  perseant 	int64_t age, benefit, cost;
    650  1.1  perseant 
    651  1.1  perseant 	time(&now);
    652  1.1  perseant 	age = (now < t->lastmod ? 0 : now - t->lastmod);
    653  1.1  perseant 
    654  1.1  perseant 	/* Under no circumstances clean active or already-clean segments */
    655  1.1  perseant 	if ((t->flags & SEGUSE_ACTIVE) || !(t->flags & SEGUSE_DIRTY)) {
    656  1.1  perseant 		t->priority = 0;
    657  1.1  perseant 		return;
    658  1.1  perseant 	}
    659  1.1  perseant 
    660  1.1  perseant 	/*
    661  1.1  perseant 	 * If the segment is empty, there is no reason to clean it.
    662  1.1  perseant 	 * Clear its error condition, if any, since we are never going to
    663  1.1  perseant 	 * try to parse this one.
    664  1.1  perseant 	 */
    665  1.1  perseant 	if (t->nbytes == 0) {
    666  1.1  perseant 		t->flags &= ~SEGUSE_ERROR; /* Strip error once empty */
    667  1.1  perseant 		t->priority = 0;
    668  1.1  perseant 		return;
    669  1.1  perseant 	}
    670  1.1  perseant 
    671  1.1  perseant 	if (t->flags & SEGUSE_ERROR) {	/* No good if not already empty */
    672  1.1  perseant 		/* No benefit */
    673  1.1  perseant 		t->priority = 0;
    674  1.1  perseant 		return;
    675  1.1  perseant 	}
    676  1.1  perseant 
    677  1.1  perseant 	if (t->nbytes < 0 || t->nbytes > fs->lfs_ssize) {
    678  1.1  perseant 		/* Another type of error */
    679  1.1  perseant 		syslog(LOG_WARNING, "segment %d: bad seguse count %d",
    680  1.1  perseant 		       sn, t->nbytes);
    681  1.1  perseant 		t->flags |= SEGUSE_ERROR;
    682  1.1  perseant 		t->priority = 0;
    683  1.1  perseant 		return;
    684  1.1  perseant 	}
    685  1.1  perseant 
    686  1.1  perseant 	/*
    687  1.1  perseant 	 * The non-degenerate case.  Use Rosenblum's cost-benefit algorithm.
    688  1.1  perseant 	 * Calculate the benefit from cleaning this segment (one segment,
    689  1.1  perseant 	 * minus fragmentation, dirty blocks and a segment summary block)
    690  1.1  perseant 	 * and weigh that against the cost (bytes read plus bytes written).
    691  1.1  perseant 	 * We count the summary headers as "dirty" to avoid cleaning very
    692  1.1  perseant 	 * old and very full segments.
    693  1.1  perseant 	 */
    694  1.1  perseant 	benefit = (int64_t)fs->lfs_ssize - t->nbytes -
    695  1.1  perseant 		  (t->nsums + 1) * fs->lfs_fsize;
    696  1.1  perseant 	if (fs->lfs_bsize > fs->lfs_fsize) /* fragmentation */
    697  1.1  perseant 		benefit -= fs->lfs_bsize;
    698  1.1  perseant 	if (benefit <= 0) {
    699  1.1  perseant 		t->priority = 0;
    700  1.1  perseant 		return;
    701  1.1  perseant 	}
    702  1.1  perseant 
    703  1.1  perseant 	cost = fs->lfs_ssize + t->nbytes;
    704  1.1  perseant 	t->priority = (256 * benefit * age) / cost;
    705  1.1  perseant 
    706  1.1  perseant 	return;
    707  1.1  perseant }
    708  1.1  perseant 
    709  1.1  perseant /*
    710  1.1  perseant  * Comparator for BLOCK_INFO structures.  Anything not in one of the segments
    711  1.1  perseant  * we're looking at sorts higher; after that we sort first by inode number
    712  1.1  perseant  * and then by block number (unsigned, i.e., negative sorts higher) *but*
    713  1.1  perseant  * sort inodes before data blocks.
    714  1.1  perseant  */
    715  1.1  perseant static int
    716  1.1  perseant bi_comparator(const void *va, const void *vb)
    717  1.1  perseant {
    718  1.1  perseant 	BLOCK_INFO *a, *b;
    719  1.1  perseant 
    720  1.1  perseant 	a = (BLOCK_INFO *)va;
    721  1.1  perseant 	b = (BLOCK_INFO *)vb;
    722  1.1  perseant 
    723  1.1  perseant 	/* Check for out-of-place block */
    724  1.1  perseant 	if (a->bi_segcreate == a->bi_daddr &&
    725  1.1  perseant 	    b->bi_segcreate != b->bi_daddr)
    726  1.1  perseant 		return -1;
    727  1.1  perseant 	if (a->bi_segcreate != a->bi_daddr &&
    728  1.1  perseant 	    b->bi_segcreate == b->bi_daddr)
    729  1.1  perseant 		return 1;
    730  1.1  perseant 	if (a->bi_size <= 0 && b->bi_size > 0)
    731  1.1  perseant 		return 1;
    732  1.1  perseant 	if (b->bi_size <= 0 && a->bi_size > 0)
    733  1.1  perseant 		return -1;
    734  1.1  perseant 
    735  1.1  perseant 	/* Check inode number */
    736  1.1  perseant 	if (a->bi_inode != b->bi_inode)
    737  1.1  perseant 		return a->bi_inode - b->bi_inode;
    738  1.1  perseant 
    739  1.1  perseant 	/* Check lbn */
    740  1.1  perseant 	if (a->bi_lbn == LFS_UNUSED_LBN) /* Inodes sort lower than blocks */
    741  1.1  perseant 		return -1;
    742  1.1  perseant 	if (b->bi_lbn == LFS_UNUSED_LBN)
    743  1.1  perseant 		return 1;
    744  1.1  perseant 	if ((u_int32_t)a->bi_lbn > (u_int32_t)b->bi_lbn)
    745  1.1  perseant 		return 1;
    746  1.1  perseant 	else
    747  1.1  perseant 		return -1;
    748  1.1  perseant }
    749  1.1  perseant 
    750  1.1  perseant /*
    751  1.1  perseant  * Comparator for sort_segments: cost-benefit equation.
    752  1.1  perseant  */
    753  1.1  perseant static int
    754  1.1  perseant cb_comparator(const void *va, const void *vb)
    755  1.1  perseant {
    756  1.1  perseant 	struct clfs_seguse *a, *b;
    757  1.1  perseant 
    758  1.1  perseant 	a = *(struct clfs_seguse **)va;
    759  1.1  perseant 	b = *(struct clfs_seguse **)vb;
    760  1.1  perseant 	return a->priority > b->priority ? -1 : 1;
    761  1.1  perseant }
    762  1.1  perseant 
    763  1.1  perseant void
    764  1.1  perseant toss_old_blocks(struct clfs *fs, BLOCK_INFO **bipp, int *bic)
    765  1.1  perseant {
    766  1.1  perseant 	int i, r;
    767  1.1  perseant 	BLOCK_INFO *bip = *bipp;
    768  1.1  perseant 	struct lfs_fcntl_markv /* {
    769  1.1  perseant 		BLOCK_INFO *blkiov;
    770  1.1  perseant 		int blkcnt;
    771  1.1  perseant 	} */ lim;
    772  1.1  perseant 
    773  1.3  perseant 	if (bic == 0 || bip == NULL)
    774  1.3  perseant 		return;
    775  1.3  perseant 
    776  1.1  perseant 	/*
    777  1.1  perseant 	 * Kludge: Store the disk address in segcreate so we know which
    778  1.1  perseant 	 * ones to toss.
    779  1.1  perseant 	 */
    780  1.1  perseant 	for (i = 0; i < *bic; i++)
    781  1.1  perseant 		bip[i].bi_segcreate = bip[i].bi_daddr;
    782  1.1  perseant 
    783  1.1  perseant 	/* Sort the blocks */
    784  1.1  perseant 	heapsort(bip, *bic, sizeof(BLOCK_INFO), bi_comparator);
    785  1.1  perseant 
    786  1.1  perseant 	/* Use bmapv to locate the blocks */
    787  1.1  perseant 	lim.blkiov = bip;
    788  1.1  perseant 	lim.blkcnt = *bic;
    789  1.1  perseant 	if ((r = fcntl(fs->clfs_ifilefd, LFCNBMAPV, &lim)) < 0) {
    790  1.1  perseant 		syslog(LOG_WARNING, "%s: bmapv returned %d (%m)",
    791  1.1  perseant 		       fs->lfs_fsmnt, r);
    792  1.1  perseant 		return;
    793  1.1  perseant 	}
    794  1.1  perseant 
    795  1.1  perseant 	/* Toss blocks not in this segment */
    796  1.1  perseant 	heapsort(bip, *bic, sizeof(BLOCK_INFO), bi_comparator);
    797  1.1  perseant 
    798  1.1  perseant 	/* Get rid of stale blocks */
    799  1.1  perseant 	for (i = 0; i < *bic; i++)
    800  1.1  perseant 		if (bip[i].bi_segcreate != bip[i].bi_daddr)
    801  1.1  perseant 			break;
    802  1.1  perseant 	*bic = i; /* XXX realloc bip? */
    803  1.1  perseant 	*bipp = bip;
    804  1.1  perseant 
    805  1.1  perseant 	return;
    806  1.1  perseant }
    807  1.1  perseant 
    808  1.1  perseant /*
    809  1.1  perseant  * Clean a segment and mark it invalid.
    810  1.1  perseant  */
    811  1.1  perseant int
    812  1.1  perseant invalidate_segment(struct clfs *fs, int sn)
    813  1.1  perseant {
    814  1.1  perseant 	BLOCK_INFO *bip;
    815  1.1  perseant 	int i, r, bic;
    816  1.1  perseant 	off_t nb;
    817  1.1  perseant 	double util;
    818  1.1  perseant 	struct lfs_fcntl_markv /* {
    819  1.1  perseant 		BLOCK_INFO *blkiov;
    820  1.1  perseant 		int blkcnt;
    821  1.1  perseant 	} */ lim;
    822  1.1  perseant 
    823  1.1  perseant 	dlog("%s: inval seg %d", fs->lfs_fsmnt, sn);
    824  1.1  perseant 
    825  1.1  perseant 	bip = NULL;
    826  1.1  perseant 	bic = 0;
    827  1.1  perseant 	fs->clfs_nactive = 0;
    828  1.1  perseant 	load_segment(fs, sn, &bip, &bic);
    829  1.1  perseant 	toss_old_blocks(fs, &bip, &bic);
    830  1.1  perseant 
    831  1.1  perseant 	/* Record statistics */
    832  1.1  perseant 	for (i = nb = 0; i < bic; i++)
    833  1.1  perseant 		nb += bip[i].bi_size;
    834  1.1  perseant 	util = ((double)nb) / (fs->clfs_nactive * fs->lfs_ssize);
    835  1.1  perseant 	cleaner_stats.util_tot += util;
    836  1.1  perseant 	cleaner_stats.util_sos += util * util;
    837  1.1  perseant 	cleaner_stats.bytes_written += nb;
    838  1.1  perseant 
    839  1.1  perseant 	/*
    840  1.1  perseant 	 * Use markv to move the blocks.
    841  1.1  perseant 	 */
    842  1.1  perseant 	lim.blkiov = bip;
    843  1.1  perseant 	lim.blkcnt = bic;
    844  1.1  perseant 	if ((r = fcntl(fs->clfs_ifilefd, LFCNMARKV, &lim)) < 0) {
    845  1.1  perseant 		syslog(LOG_WARNING, "%s: markv returned %d (%m) "
    846  1.1  perseant 		       "for seg %d", fs->lfs_fsmnt, r, sn);
    847  1.1  perseant 		return r;
    848  1.1  perseant 	}
    849  1.1  perseant 
    850  1.1  perseant 	/*
    851  1.1  perseant 	 * Finally call invalidate to invalidate the segment.
    852  1.1  perseant 	 */
    853  1.1  perseant 	if ((r = fcntl(fs->clfs_ifilefd, LFCNINVAL, &sn)) < 0) {
    854  1.1  perseant 		syslog(LOG_WARNING, "%s: inval returned %d (%m) "
    855  1.1  perseant 		       "for seg %d", fs->lfs_fsmnt, r, sn);
    856  1.1  perseant 		return r;
    857  1.1  perseant 	}
    858  1.1  perseant 
    859  1.1  perseant 	return 0;
    860  1.1  perseant }
    861  1.1  perseant 
    862  1.1  perseant /*
    863  1.1  perseant  * Check to see if the given ino/lbn pair is represented in the BLOCK_INFO
    864  1.1  perseant  * array we are sending to the kernel, or if the kernel will have to add it.
    865  1.1  perseant  * The kernel will only add each such pair once, though, so keep track of
    866  1.1  perseant  * previous requests in a separate "extra" BLOCK_INFO array.  Returns 1
    867  1.1  perseant  * if the block needs to be added, 0 if it is already represented.
    868  1.1  perseant  */
    869  1.1  perseant static int
    870  1.1  perseant check_or_add(ino_t ino, int32_t lbn, BLOCK_INFO *bip, int bic, BLOCK_INFO **ebipp, int *ebicp)
    871  1.1  perseant {
    872  1.1  perseant 	BLOCK_INFO *t, *ebip = *ebipp;
    873  1.1  perseant 	int ebic = *ebicp;
    874  1.1  perseant 	int k;
    875  1.1  perseant 
    876  1.1  perseant 	for (k = 0; k < bic; k++) {
    877  1.1  perseant 		if (bip[k].bi_inode != ino)
    878  1.1  perseant 			break;
    879  1.1  perseant 		if (bip[k].bi_lbn == lbn) {
    880  1.1  perseant 			return 0;
    881  1.1  perseant 		}
    882  1.1  perseant 	}
    883  1.1  perseant 
    884  1.1  perseant 	/* Look on the list of extra blocks, too */
    885  1.1  perseant 	for (k = 0; k < ebic; k++) {
    886  1.1  perseant 		if (ebip[k].bi_inode == ino && ebip[k].bi_lbn == lbn) {
    887  1.1  perseant 			return 0;
    888  1.1  perseant 		}
    889  1.1  perseant 	}
    890  1.1  perseant 
    891  1.1  perseant 	++ebic;
    892  1.1  perseant 	t = realloc(ebip, ebic * sizeof(BLOCK_INFO));
    893  1.1  perseant 	if (t == NULL)
    894  1.1  perseant 		return 1; /* Note *ebipc is not updated */
    895  1.1  perseant 
    896  1.1  perseant 	ebip = t;
    897  1.1  perseant 	ebip[ebic - 1].bi_inode = ino;
    898  1.1  perseant 	ebip[ebic - 1].bi_lbn = lbn;
    899  1.1  perseant 
    900  1.1  perseant 	*ebipp = ebip;
    901  1.1  perseant 	*ebicp = ebic;
    902  1.1  perseant 	return 1;
    903  1.1  perseant }
    904  1.1  perseant 
    905  1.1  perseant /*
    906  1.1  perseant  * Look for indirect blocks we will have to write which are not
    907  1.1  perseant  * contained in this collection of blocks.  This constitutes
    908  1.1  perseant  * a hidden cleaning cost, since we are unaware of it until we
    909  1.1  perseant  * have already read the segments.  Return the total cost, and fill
    910  1.1  perseant  * in *ifc with the part of that cost due to rewriting the Ifile.
    911  1.1  perseant  */
    912  1.1  perseant static off_t
    913  1.1  perseant check_hidden_cost(struct clfs *fs, BLOCK_INFO *bip, int bic, off_t *ifc)
    914  1.1  perseant {
    915  1.1  perseant 	int start;
    916  1.1  perseant 	struct indir in[NIADDR + 1];
    917  1.1  perseant 	int num;
    918  1.1  perseant 	int i, j, ebic;
    919  1.1  perseant 	BLOCK_INFO *ebip;
    920  1.1  perseant 	int32_t lbn;
    921  1.1  perseant 
    922  1.1  perseant 	start = 0;
    923  1.1  perseant 	ebip = NULL;
    924  1.1  perseant 	ebic = 0;
    925  1.1  perseant 	for (i = 0; i < bic; i++) {
    926  1.1  perseant 		if (i == 0 || bip[i].bi_inode != bip[start].bi_inode) {
    927  1.1  perseant 			start = i;
    928  1.1  perseant 			/*
    929  1.1  perseant 			 * Look for IFILE blocks, unless this is the Ifile.
    930  1.1  perseant 			 */
    931  1.1  perseant 			if (bip[i].bi_inode != fs->lfs_ifile) {
    932  1.1  perseant 				lbn = fs->lfs_cleansz + bip[i].bi_inode /
    933  1.1  perseant 							fs->lfs_ifpb;
    934  1.1  perseant 				*ifc += check_or_add(fs->lfs_ifile, lbn,
    935  1.1  perseant 						     bip, bic, &ebip, &ebic);
    936  1.1  perseant 			}
    937  1.1  perseant 		}
    938  1.1  perseant 		if (bip[i].bi_lbn == LFS_UNUSED_LBN)
    939  1.1  perseant 			continue;
    940  1.1  perseant 		ufs_getlbns((struct lfs *)fs, NULL, (daddr_t)bip[i].bi_lbn, in, &num);
    941  1.1  perseant 		for (j = 0; j < num; j++) {
    942  1.1  perseant 			check_or_add(bip[i].bi_inode, in[j].in_lbn,
    943  1.1  perseant 				     bip + start, bic - start, &ebip, &ebic);
    944  1.1  perseant 		}
    945  1.1  perseant 	}
    946  1.1  perseant 	return ebic;
    947  1.1  perseant }
    948  1.1  perseant 
    949  1.1  perseant /*
    950  1.1  perseant  * Select segments to clean, add blocks from these segments to a cleaning
    951  1.1  perseant  * list, and send this list through lfs_markv() to move them to new
    952  1.1  perseant  * locations on disk.
    953  1.1  perseant  */
    954  1.1  perseant int
    955  1.1  perseant clean_fs(struct clfs *fs, CLEANERINFO *cip)
    956  1.1  perseant {
    957  1.1  perseant 	int i, j, ngood, sn, bic, r;
    958  1.1  perseant 	struct ubuf *bp;
    959  1.1  perseant 	SEGUSE *sup;
    960  1.1  perseant 	static BLOCK_INFO *bip;
    961  1.1  perseant 	struct lfs_fcntl_markv /* {
    962  1.1  perseant 		BLOCK_INFO *blkiov;
    963  1.1  perseant 		int blkcnt;
    964  1.1  perseant 	} */ lim;
    965  1.1  perseant 	int mc;
    966  1.1  perseant 	BLOCK_INFO *mbip;
    967  1.1  perseant 	int inc;
    968  1.1  perseant 	off_t nb;
    969  1.1  perseant 	off_t goal;
    970  1.1  perseant 	off_t extra, if_extra;
    971  1.1  perseant 	double util;
    972  1.1  perseant 
    973  1.1  perseant 	/* Read the segment table into our private structure */
    974  1.1  perseant 	for (i = 0; i < fs->lfs_nseg; i+= fs->lfs_sepb) {
    975  1.1  perseant 		bread(fs->lfs_ivnode, fs->lfs_cleansz + i / fs->lfs_sepb,
    976  1.1  perseant 		      fs->lfs_bsize, NOCRED, &bp);
    977  1.1  perseant 		for (j = 0; j < fs->lfs_sepb && i + j < fs->lfs_nseg; j++) {
    978  1.1  perseant 			sup = ((SEGUSE *)bp->b_data) + j;
    979  1.1  perseant 			fs->clfs_segtab[i + j].nbytes  = sup->su_nbytes;
    980  1.1  perseant 			fs->clfs_segtab[i + j].nsums = sup->su_nsums;
    981  1.1  perseant 			fs->clfs_segtab[i + j].lastmod = sup->su_lastmod;
    982  1.1  perseant 			/* Keep error status but renew other flags */
    983  1.1  perseant 			fs->clfs_segtab[i + j].flags  &= SEGUSE_ERROR;
    984  1.1  perseant 			fs->clfs_segtab[i + j].flags  |= sup->su_flags;
    985  1.1  perseant 
    986  1.1  perseant 			/* Compute cost-benefit coefficient */
    987  1.1  perseant 			calc_cb(fs, i + j, fs->clfs_segtab + i + j);
    988  1.1  perseant 		}
    989  1.1  perseant 		brelse(bp);
    990  1.1  perseant 	}
    991  1.1  perseant 
    992  1.1  perseant 	/* Sort segments based on cleanliness, fulness, and condition */
    993  1.1  perseant 	heapsort(fs->clfs_segtabp, fs->lfs_nseg, sizeof(struct clfs_seguse *),
    994  1.1  perseant 		 cb_comparator);
    995  1.1  perseant 
    996  1.1  perseant 	/* If no segment is cleanable, just return */
    997  1.1  perseant 	if (fs->clfs_segtabp[0]->priority == 0) {
    998  1.1  perseant 		dlog("%s: no segment cleanable", fs->lfs_fsmnt);
    999  1.1  perseant 		return 0;
   1000  1.1  perseant 	}
   1001  1.1  perseant 
   1002  1.1  perseant 	/* Load some segments' blocks into bip */
   1003  1.1  perseant 	bic = 0;
   1004  1.1  perseant 	fs->clfs_nactive = 0;
   1005  1.1  perseant 	ngood = 0;
   1006  1.1  perseant 	if (use_bytes) {
   1007  1.1  perseant 		/* Set attainable goal */
   1008  1.1  perseant 		goal = fs->lfs_ssize * atatime;
   1009  1.1  perseant 		if (goal > (cip->clean - 1) * fs->lfs_ssize / 2)
   1010  1.1  perseant 			goal = MAX((cip->clean - 1) * fs->lfs_ssize,
   1011  1.1  perseant 				   fs->lfs_ssize) / 2;
   1012  1.1  perseant 
   1013  1.1  perseant 		dlog("%s: cleaning with goal %" PRId64 " bytes (%d segs clean)",
   1014  1.1  perseant 		       fs->lfs_fsmnt, goal, cip->clean);
   1015  1.1  perseant 		syslog(LOG_INFO, "%s: cleaning with goal %" PRId64 " bytes (%d segs clean)",
   1016  1.1  perseant 		       fs->lfs_fsmnt, goal, cip->clean);
   1017  1.1  perseant 		for (i = 0; i < fs->lfs_nseg &&
   1018  1.1  perseant 			     bic * fs->lfs_bsize < goal; i++) {
   1019  1.1  perseant 			if (fs->clfs_segtabp[i]->priority == 0)
   1020  1.1  perseant 				break;
   1021  1.1  perseant 			sn = (fs->clfs_segtabp[i] - fs->clfs_segtab);
   1022  1.1  perseant 			dlog("%s: add seg %d prio %" PRIu64
   1023  1.1  perseant 			     " containing %ld bytes",
   1024  1.1  perseant 			     fs->lfs_fsmnt, sn, fs->clfs_segtabp[i]->priority,
   1025  1.1  perseant 			     fs->clfs_segtabp[i]->nbytes);
   1026  1.1  perseant 			if ((r = load_segment(fs, sn, &bip, &bic)) > 0)
   1027  1.1  perseant 				++ngood;
   1028  1.1  perseant 			else
   1029  1.1  perseant 				fd_release(fs->clfs_devvp);
   1030  1.1  perseant 			toss_old_blocks(fs, &bip, &bic);
   1031  1.1  perseant 			if (r < 0)
   1032  1.1  perseant 				break;
   1033  1.1  perseant 		}
   1034  1.1  perseant 	} else {
   1035  1.1  perseant 		/* Set attainable goal */
   1036  1.1  perseant 		goal = atatime;
   1037  1.1  perseant 		if (goal > cip->clean - 1)
   1038  1.1  perseant 			goal = MAX(cip->clean - 1, 1);
   1039  1.1  perseant 
   1040  1.1  perseant 		dlog("%s: cleaning with goal %d segments (%d clean)",
   1041  1.1  perseant 		       fs->lfs_fsmnt, (int)goal, cip->clean);
   1042  1.1  perseant 		for (i = 0; i < fs->lfs_nseg && ngood < goal; i++) {
   1043  1.1  perseant 			if (fs->clfs_segtabp[i]->priority == 0)
   1044  1.1  perseant 				break;
   1045  1.1  perseant 			sn = (fs->clfs_segtabp[i] - fs->clfs_segtab);
   1046  1.1  perseant 			dlog("%s: add seg %d prio %" PRIu64,
   1047  1.1  perseant 			     fs->lfs_fsmnt, sn, fs->clfs_segtabp[i]->priority);
   1048  1.1  perseant 			if ((r = load_segment(fs, sn, &bip, &bic)) > 0)
   1049  1.1  perseant 				++ngood;
   1050  1.1  perseant 			else if (r < 0)
   1051  1.1  perseant 				break;
   1052  1.1  perseant 			else
   1053  1.1  perseant 				fd_release(fs->clfs_devvp);
   1054  1.1  perseant 		}
   1055  1.1  perseant 		toss_old_blocks(fs, &bip, &bic);
   1056  1.1  perseant 	}
   1057  1.1  perseant 
   1058  1.1  perseant 	/* If there is nothing to do, try again later. */
   1059  1.1  perseant 	if (bic == 0) {
   1060  1.3  perseant 		dlog("%s: no blocks to clean in %d cleanable segments",
   1061  1.3  perseant 		       fs->lfs_fsmnt, (int)ngood);
   1062  1.1  perseant 		fd_release_all(fs->clfs_devvp);
   1063  1.1  perseant 		return 0;
   1064  1.1  perseant 	}
   1065  1.1  perseant 
   1066  1.1  perseant 	/* Record statistics */
   1067  1.1  perseant 	for (i = nb = 0; i < bic; i++)
   1068  1.1  perseant 		nb += bip[i].bi_size;
   1069  1.1  perseant 	util = ((double)nb) / (fs->clfs_nactive * fs->lfs_ssize);
   1070  1.1  perseant 	cleaner_stats.util_tot += util;
   1071  1.1  perseant 	cleaner_stats.util_sos += util * util;
   1072  1.1  perseant 	cleaner_stats.bytes_written += nb;
   1073  1.1  perseant 
   1074  1.1  perseant 	/*
   1075  1.1  perseant 	 * Check out our blocks to see if there are hidden cleaning costs.
   1076  1.1  perseant 	 * If there are, we might be cleaning ourselves deeper into a hole
   1077  1.1  perseant 	 * rather than doing anything useful.
   1078  1.1  perseant 	 * XXX do something about this.
   1079  1.1  perseant 	 */
   1080  1.1  perseant 	if_extra = 0;
   1081  1.1  perseant 	extra = fs->lfs_bsize * (off_t)check_hidden_cost(fs, bip, bic, &if_extra);
   1082  1.1  perseant 	if_extra *= fs->lfs_bsize;
   1083  1.1  perseant 
   1084  1.1  perseant 	/*
   1085  1.1  perseant 	 * Use markv to move the blocks.
   1086  1.1  perseant 	 */
   1087  1.1  perseant 	if (do_small)
   1088  1.1  perseant 		inc = MAXPHYS / fs->lfs_bsize - 1;
   1089  1.1  perseant 	else
   1090  1.1  perseant 		inc = LFS_MARKV_MAXBLKCNT / 2;
   1091  1.1  perseant 	for (mc = 0, mbip = bip; mc < bic; mc += inc, mbip += inc) {
   1092  1.1  perseant 		lim.blkiov = mbip;
   1093  1.1  perseant 		lim.blkcnt = (bic - mc > inc ? inc : bic - mc);
   1094  1.1  perseant #ifdef TEST_PATTERN
   1095  1.1  perseant 		dlog("checking blocks %d-%d", mc, mc + lim.blkcnt - 1);
   1096  1.1  perseant 		for (i = 0; i < lim.blkcnt; i++) {
   1097  1.1  perseant 			check_test_pattern(mbip + i);
   1098  1.1  perseant 		}
   1099  1.1  perseant #endif /* TEST_PATTERN */
   1100  1.1  perseant 		dlog("sending blocks %d-%d", mc, mc + lim.blkcnt - 1);
   1101  1.1  perseant 		if ((r = fcntl(fs->clfs_ifilefd, LFCNMARKV, &lim)) < 0) {
   1102  1.1  perseant 			syslog(LOG_WARNING, "%s: markv returned %d (%m)",
   1103  1.1  perseant 			       fs->lfs_fsmnt, r);
   1104  1.1  perseant 			if (errno != EAGAIN && errno != ESHUTDOWN) {
   1105  1.1  perseant 				fd_release_all(fs->clfs_devvp);
   1106  1.1  perseant 				return r;
   1107  1.1  perseant 			}
   1108  1.1  perseant 		}
   1109  1.1  perseant 	}
   1110  1.1  perseant 
   1111  1.1  perseant 	/*
   1112  1.1  perseant 	 * Report progress (or lack thereof)
   1113  1.1  perseant 	 */
   1114  1.1  perseant 	syslog(LOG_INFO, "%s: wrote %" PRId64 " dirty + %"
   1115  1.1  perseant 	       PRId64 " supporting indirect + %"
   1116  1.1  perseant 	       PRId64 " supporting Ifile = %"
   1117  1.1  perseant 	       PRId64 " bytes to clean %d segs (%" PRId64 "%% recovery)",
   1118  1.1  perseant 	       fs->lfs_fsmnt, (int64_t)nb, (int64_t)(extra - if_extra),
   1119  1.3  perseant 	       (int64_t)if_extra, (int64_t)(nb + extra), ngood,
   1120  1.3  perseant 	       (ngood ? (int64_t)(100 - (100 * (nb + extra)) /
   1121  1.3  perseant 					 (ngood * fs->lfs_ssize)) :
   1122  1.3  perseant 		(int64_t)0));
   1123  1.1  perseant 	if (nb + extra >= ngood * fs->lfs_ssize)
   1124  1.1  perseant 		syslog(LOG_WARNING, "%s: cleaner not making forward progress",
   1125  1.1  perseant 		       fs->lfs_fsmnt);
   1126  1.1  perseant 
   1127  1.1  perseant 	/*
   1128  1.1  perseant 	 * Finally call reclaim to prompt cleaning of the segments.
   1129  1.1  perseant 	 */
   1130  1.1  perseant 	fcntl(fs->clfs_ifilefd, LFCNRECLAIM, NULL);
   1131  1.1  perseant 
   1132  1.1  perseant 	fd_release_all(fs->clfs_devvp);
   1133  1.1  perseant 	return 0;
   1134  1.1  perseant }
   1135  1.1  perseant 
   1136  1.1  perseant /*
   1137  1.1  perseant  * Read the cleanerinfo block and apply cleaning policy to determine whether
   1138  1.1  perseant  * the given filesystem needs to be cleaned.  Returns 1 if it does, 0 if it
   1139  1.1  perseant  * does not, or -1 on error.
   1140  1.1  perseant  */
   1141  1.1  perseant int
   1142  1.1  perseant needs_cleaning(struct clfs *fs, CLEANERINFO *cip)
   1143  1.1  perseant {
   1144  1.1  perseant 	struct ubuf *bp;
   1145  1.1  perseant 	struct stat st;
   1146  1.1  perseant 	daddr_t fsb_per_seg, max_free_segs;
   1147  1.1  perseant 	time_t now;
   1148  1.1  perseant 	double loadavg;
   1149  1.1  perseant 
   1150  1.1  perseant 	/* If this fs is "on hold", don't clean it. */
   1151  1.1  perseant 	if (fs->clfs_onhold)
   1152  1.1  perseant 		return 0;
   1153  1.1  perseant 
   1154  1.1  perseant 	/*
   1155  1.1  perseant 	 * Read the cleanerinfo block from the Ifile.  We don't want
   1156  1.1  perseant 	 * the cached information, so invalidate the buffer before
   1157  1.1  perseant 	 * handing it back.
   1158  1.1  perseant 	 */
   1159  1.1  perseant 	if (bread(fs->lfs_ivnode, 0, fs->lfs_bsize, NOCRED, &bp)) {
   1160  1.1  perseant 		syslog(LOG_ERR, "%s: can't read inode", fs->lfs_fsmnt);
   1161  1.1  perseant 		return -1;
   1162  1.1  perseant 	}
   1163  1.1  perseant 	*cip = *(CLEANERINFO *)bp->b_data; /* Structure copy */
   1164  1.1  perseant 	bp->b_flags |= B_INVAL;
   1165  1.1  perseant 	brelse(bp);
   1166  1.1  perseant 	cleaner_stats.bytes_read += fs->lfs_bsize;
   1167  1.1  perseant 
   1168  1.1  perseant 	/*
   1169  1.1  perseant 	 * If the number of segments changed under us, reinit.
   1170  1.1  perseant 	 * We don't have to start over from scratch, however,
   1171  1.1  perseant 	 * since we don't hold any buffers.
   1172  1.1  perseant 	 */
   1173  1.1  perseant 	if (fs->lfs_nseg != cip->clean + cip->dirty) {
   1174  1.1  perseant 		if (reinit_fs(fs) < 0) {
   1175  1.1  perseant 			/* The normal case for unmount */
   1176  1.1  perseant 			syslog(LOG_NOTICE, "%s: filesystem unmounted", fs->lfs_fsmnt);
   1177  1.1  perseant 			return -1;
   1178  1.1  perseant 		}
   1179  1.1  perseant 		syslog(LOG_NOTICE, "%s: nsegs changed", fs->lfs_fsmnt);
   1180  1.1  perseant 	}
   1181  1.1  perseant 
   1182  1.1  perseant 	/* Compute theoretical "free segments" maximum based on usage */
   1183  1.1  perseant 	fsb_per_seg = segtod(fs, 1);
   1184  1.1  perseant 	max_free_segs = MAX(cip->bfree, 0) / fsb_per_seg + fs->lfs_minfreeseg;
   1185  1.1  perseant 
   1186  1.1  perseant 	dlog("%s: bfree = %d, avail = %d, clean = %d/%d",
   1187  1.1  perseant 	     fs->lfs_fsmnt, cip->bfree, cip->avail, cip->clean, fs->lfs_nseg);
   1188  1.1  perseant 
   1189  1.1  perseant 	/* If the writer is waiting on us, clean it */
   1190  1.1  perseant 	if (cip->clean <= fs->lfs_minfreeseg)
   1191  1.1  perseant 		return 1;
   1192  1.1  perseant 
   1193  1.1  perseant 	/* If there are enough segments, don't clean it */
   1194  1.1  perseant 	if (cip->bfree - cip->avail <= fsb_per_seg &&
   1195  1.1  perseant 	    cip->avail > fsb_per_seg)
   1196  1.1  perseant 		return 0;
   1197  1.1  perseant 
   1198  1.1  perseant 	/* If we are in dire straits, clean it */
   1199  1.1  perseant 	if (cip->bfree - cip->avail > fsb_per_seg &&
   1200  1.1  perseant 	    cip->avail <= fsb_per_seg)
   1201  1.1  perseant 		return 1;
   1202  1.1  perseant 
   1203  1.1  perseant 	/* If under busy threshold, clean regardless of load */
   1204  1.1  perseant 	if (cip->clean < max_free_segs * BUSY_LIM)
   1205  1.1  perseant 		return 1;
   1206  1.1  perseant 
   1207  1.1  perseant 	/* Check busy status; clean if idle and under idle limit */
   1208  1.1  perseant 	if (use_fs_idle) {
   1209  1.1  perseant 		/* Filesystem idle */
   1210  1.1  perseant 		time(&now);
   1211  1.1  perseant 		if (fstat(fs->clfs_ifilefd, &st) < 0) {
   1212  1.1  perseant 			syslog(LOG_ERR, "%s: failed to stat ifile",
   1213  1.1  perseant 			       fs->lfs_fsmnt);
   1214  1.1  perseant 			return -1;
   1215  1.1  perseant 		}
   1216  1.1  perseant 		if (now - st.st_mtime > segwait_timeout &&
   1217  1.1  perseant 		    cip->clean < max_free_segs * IDLE_LIM)
   1218  1.1  perseant 			return 1;
   1219  1.1  perseant 	} else {
   1220  1.1  perseant 		/* CPU idle - use one-minute load avg */
   1221  1.1  perseant 		if (getloadavg(&loadavg, 1) == -1) {
   1222  1.1  perseant 			syslog(LOG_ERR, "%s: failed to get load avg",
   1223  1.1  perseant 			       fs->lfs_fsmnt);
   1224  1.1  perseant 			return -1;
   1225  1.1  perseant 		}
   1226  1.1  perseant 		if (loadavg < load_threshold &&
   1227  1.1  perseant 		    cip->clean < max_free_segs * IDLE_LIM)
   1228  1.1  perseant 			return 1;
   1229  1.1  perseant 	}
   1230  1.1  perseant 
   1231  1.1  perseant 	return 0;
   1232  1.1  perseant }
   1233  1.1  perseant 
   1234  1.1  perseant /*
   1235  1.1  perseant  * Report statistics.  If the signal was SIGUSR2, clear the statistics too.
   1236  1.1  perseant  * If the signal was SIGINT, exit.
   1237  1.1  perseant  */
   1238  1.1  perseant static void
   1239  1.1  perseant sig_report(int sig)
   1240  1.1  perseant {
   1241  1.1  perseant 	double avg = 0.0, stddev;
   1242  1.1  perseant 
   1243  1.1  perseant 	avg = cleaner_stats.util_tot / MAX(cleaner_stats.segs_cleaned, 1.0);
   1244  1.1  perseant 	stddev = cleaner_stats.util_sos / MAX(cleaner_stats.segs_cleaned -
   1245  1.1  perseant 					      avg * avg, 1.0);
   1246  1.1  perseant 	syslog(LOG_INFO, "bytes read:	     %" PRId64, cleaner_stats.bytes_read);
   1247  1.1  perseant 	syslog(LOG_INFO, "bytes written:     %" PRId64, cleaner_stats.bytes_written);
   1248  1.1  perseant 	syslog(LOG_INFO, "segments cleaned:  %" PRId64, cleaner_stats.segs_cleaned);
   1249  1.1  perseant #if 0
   1250  1.1  perseant 	/* "Empty segments" is meaningless, since the kernel handles those */
   1251  1.1  perseant 	syslog(LOG_INFO, "empty segments:    %" PRId64, cleaner_stats.segs_empty);
   1252  1.1  perseant #endif
   1253  1.1  perseant 	syslog(LOG_INFO, "error segments:    %" PRId64, cleaner_stats.segs_error);
   1254  1.1  perseant 	syslog(LOG_INFO, "utilization total: %g", cleaner_stats.util_tot);
   1255  1.1  perseant 	syslog(LOG_INFO, "utilization sos:   %g", cleaner_stats.util_sos);
   1256  1.1  perseant 	syslog(LOG_INFO, "utilization avg:   %4.2f", avg);
   1257  1.1  perseant 	syslog(LOG_INFO, "utilization sdev:  %9.6f", stddev);
   1258  1.1  perseant 
   1259  1.1  perseant 	if (debug)
   1260  1.1  perseant 		bufstats();
   1261  1.1  perseant 
   1262  1.1  perseant 	if (sig == SIGUSR2)
   1263  1.1  perseant 		memset(&cleaner_stats, 0, sizeof(cleaner_stats));
   1264  1.1  perseant 	if (sig == SIGINT)
   1265  1.1  perseant 		exit(0);
   1266  1.1  perseant }
   1267  1.1  perseant 
   1268  1.1  perseant static void
   1269  1.1  perseant sig_exit(int sig)
   1270  1.1  perseant {
   1271  1.1  perseant 	exit(0);
   1272  1.1  perseant }
   1273  1.1  perseant 
   1274  1.1  perseant static void
   1275  1.1  perseant usage(void)
   1276  1.1  perseant {
   1277  1.1  perseant 	errx(1, "usage: lfs_cleanerd [-bcdfmqs] [-i segnum] [-l load] "
   1278  1.1  perseant 	     "[-n nsegs] [-r report_freq] [-t timeout] fs_name ...");
   1279  1.1  perseant }
   1280  1.1  perseant 
   1281  1.1  perseant /*
   1282  1.1  perseant  * Main.
   1283  1.1  perseant  */
   1284  1.1  perseant int
   1285  1.1  perseant main(int argc, char **argv)
   1286  1.1  perseant {
   1287  1.1  perseant 	int i, opt, error, r, loopcount;
   1288  1.1  perseant 	struct timeval tv;
   1289  1.1  perseant 	CLEANERINFO ci;
   1290  1.1  perseant #ifndef USE_CLIENT_SERVER
   1291  1.1  perseant 	char *cp, *pidname;
   1292  1.1  perseant #endif
   1293  1.1  perseant 
   1294  1.1  perseant 	/*
   1295  1.1  perseant 	 * Set up defaults
   1296  1.1  perseant 	 */
   1297  1.1  perseant 	atatime	 = 1;
   1298  1.1  perseant 	segwait_timeout = 300; /* Five minutes */
   1299  1.1  perseant 	load_threshold	= 0.2;
   1300  1.1  perseant 	stat_report	= 0;
   1301  1.1  perseant 	inval_segment	= -1;
   1302  1.1  perseant 	copylog_filename = NULL;
   1303  1.1  perseant 
   1304  1.1  perseant 	/*
   1305  1.1  perseant 	 * Parse command-line arguments
   1306  1.1  perseant 	 */
   1307  1.1  perseant 	while ((opt = getopt(argc, argv, "bC:cdfi:l:mn:qr:st:")) != -1) {
   1308  1.1  perseant 		switch (opt) {
   1309  1.1  perseant 		    case 'b':	/* Use bytes written, not segments read */
   1310  1.1  perseant 			    use_bytes = 1;
   1311  1.1  perseant 			    break;
   1312  1.1  perseant 		    case 'C':	/* copy log */
   1313  1.1  perseant 			    copylog_filename = optarg;
   1314  1.1  perseant 			    break;
   1315  1.1  perseant 		    case 'c':	/* Coalesce files */
   1316  1.1  perseant 			    do_coalesce++;
   1317  1.1  perseant 			    break;
   1318  1.1  perseant 		    case 'd':	/* Debug mode. */
   1319  1.1  perseant 			    debug++;
   1320  1.1  perseant 			    break;
   1321  1.1  perseant 		    case 'f':	/* Use fs idle time rather than cpu idle */
   1322  1.1  perseant 			    use_fs_idle = 1;
   1323  1.1  perseant 			    break;
   1324  1.1  perseant 		    case 'i':	/* Invalidate this segment */
   1325  1.1  perseant 			    inval_segment = atoi(optarg);
   1326  1.1  perseant 			    break;
   1327  1.1  perseant 		    case 'l':	/* Load below which to clean */
   1328  1.1  perseant 			    load_threshold = atof(optarg);
   1329  1.1  perseant 			    break;
   1330  1.1  perseant 		    case 'm':	/* [compat only] */
   1331  1.1  perseant 			    break;
   1332  1.1  perseant 		    case 'n':	/* How many segs to clean at once */
   1333  1.1  perseant 			    atatime = atoi(optarg);
   1334  1.1  perseant 			    break;
   1335  1.1  perseant 		    case 'q':	/* Quit after one run */
   1336  1.1  perseant 			    do_quit = 1;
   1337  1.1  perseant 			    break;
   1338  1.1  perseant 		    case 'r':	/* Report every stat_report segments */
   1339  1.1  perseant 			    stat_report = atoi(optarg);
   1340  1.1  perseant 			    break;
   1341  1.1  perseant 		    case 's':	/* Small writes */
   1342  1.1  perseant 			    do_small = 1;
   1343  1.1  perseant 			    break;
   1344  1.1  perseant 		    case 't':	/* timeout */
   1345  1.1  perseant 			    segwait_timeout = atoi(optarg);
   1346  1.1  perseant 			    break;
   1347  1.1  perseant 		    default:
   1348  1.1  perseant 			    usage();
   1349  1.1  perseant 			    /* NOTREACHED */
   1350  1.1  perseant 		}
   1351  1.1  perseant 	}
   1352  1.1  perseant 	argc -= optind;
   1353  1.1  perseant 	argv += optind;
   1354  1.1  perseant 
   1355  1.1  perseant 	if (argc < 1)
   1356  1.1  perseant 		usage();
   1357  1.1  perseant 	if (inval_segment >= 0 && argc != 1) {
   1358  1.1  perseant 		errx(1, "lfs_cleanerd: may only specify one filesystem when "
   1359  1.1  perseant 		     "using -i flag");
   1360  1.1  perseant 	}
   1361  1.1  perseant 
   1362  1.1  perseant 	/*
   1363  1.1  perseant 	 * Set up daemon mode or verbose debug mode
   1364  1.1  perseant 	 */
   1365  1.1  perseant 	if (debug) {
   1366  1.1  perseant 		openlog("lfs_cleanerd", LOG_NDELAY | LOG_PID | LOG_PERROR,
   1367  1.1  perseant 			LOG_DAEMON);
   1368  1.1  perseant 		signal(SIGINT, sig_report);
   1369  1.1  perseant 	} else {
   1370  1.1  perseant 		if (daemon(0, 0) == -1)
   1371  1.1  perseant 			err(1, "lfs_cleanerd: couldn't become a daemon!");
   1372  1.1  perseant 		openlog("lfs_cleanerd", LOG_NDELAY | LOG_PID, LOG_DAEMON);
   1373  1.1  perseant 		signal(SIGINT, sig_exit);
   1374  1.1  perseant 	}
   1375  1.1  perseant 
   1376  1.1  perseant 	/*
   1377  1.1  perseant 	 * Look for an already-running master daemon.  If there is one,
   1378  1.1  perseant 	 * send it our filesystems to add to its list and exit.
   1379  1.1  perseant 	 * If there is none, become the master.
   1380  1.1  perseant 	 */
   1381  1.1  perseant #ifdef USE_CLIENT_SERVER
   1382  1.1  perseant 	try_to_become_master(argc, argv);
   1383  1.1  perseant #else
   1384  1.1  perseant 	/* XXX think about this */
   1385  1.1  perseant 	asprintf(&pidname, "lfs_cleanerd:m:%s", argv[0]);
   1386  1.1  perseant 	if (pidname == NULL) {
   1387  1.1  perseant 		syslog(LOG_ERR, "malloc failed: %m");
   1388  1.1  perseant 		exit(1);
   1389  1.1  perseant 	}
   1390  1.1  perseant 	for (cp = pidname; cp != NULL; cp = strchr(cp, '/'))
   1391  1.1  perseant 		*cp = '|';
   1392  1.1  perseant 	pidfile(pidname);
   1393  1.1  perseant #endif
   1394  1.1  perseant 
   1395  1.1  perseant 	/*
   1396  1.1  perseant 	 * Signals mean daemon should report its statistics
   1397  1.1  perseant 	 */
   1398  1.1  perseant 	memset(&cleaner_stats, 0, sizeof(cleaner_stats));
   1399  1.1  perseant 	signal(SIGUSR1, sig_report);
   1400  1.1  perseant 	signal(SIGUSR2, sig_report);
   1401  1.1  perseant 
   1402  1.1  perseant 	/*
   1403  1.1  perseant 	 * Start up buffer cache.  We only use this for the Ifile,
   1404  1.1  perseant 	 * and we will resize it if necessary, so it can start small.
   1405  1.1  perseant 	 */
   1406  1.1  perseant 	bufinit(4);
   1407  1.1  perseant 
   1408  1.1  perseant #ifdef REPAIR_ZERO_FINFO
   1409  1.1  perseant 	{
   1410  1.1  perseant 		BLOCK_INFO *bip = NULL;
   1411  1.1  perseant 		int bic = 0;
   1412  1.1  perseant 
   1413  1.1  perseant 		nfss = 1;
   1414  1.1  perseant 		fsp = (struct clfs **)malloc(sizeof(*fsp));
   1415  1.1  perseant 		fsp[0] = (struct clfs *)calloc(1, sizeof(**fsp));
   1416  1.1  perseant 
   1417  1.1  perseant 		if (init_unmounted_fs(fsp[0], argv[0]) < 0) {
   1418  1.1  perseant 			err(1, "init_unmounted_fs");
   1419  1.1  perseant 		}
   1420  1.1  perseant 		dlog("Filesystem has %d segments", fsp[0]->lfs_nseg);
   1421  1.1  perseant 		for (i = 0; i < fsp[0]->lfs_nseg; i++) {
   1422  1.1  perseant 			load_segment(fsp[0], i, &bip, &bic);
   1423  1.1  perseant 			bic = 0;
   1424  1.1  perseant 		}
   1425  1.1  perseant 		exit(0);
   1426  1.1  perseant 	}
   1427  1.1  perseant #endif
   1428  1.1  perseant 
   1429  1.1  perseant 	/*
   1430  1.1  perseant 	 * Initialize cleaning structures, open devices, etc.
   1431  1.1  perseant 	 */
   1432  1.1  perseant 	nfss = argc;
   1433  1.1  perseant 	fsp = (struct clfs **)malloc(nfss * sizeof(*fsp));
   1434  1.1  perseant 	for (i = 0; i < nfss; i++) {
   1435  1.1  perseant 		fsp[i] = (struct clfs *)calloc(1, sizeof(**fsp));
   1436  1.1  perseant 		if ((r = init_fs(fsp[i], argv[i])) < 0) {
   1437  1.1  perseant 			syslog(LOG_ERR, "%s: couldn't init: error code %d",
   1438  1.1  perseant 			       argv[i], r);
   1439  1.1  perseant 			handle_error(fsp, i);
   1440  1.1  perseant 			--i; /* Do the new #i over again */
   1441  1.1  perseant 		}
   1442  1.1  perseant 	}
   1443  1.1  perseant 
   1444  1.1  perseant 	/*
   1445  1.1  perseant 	 * If asked to coalesce, do so and exit.
   1446  1.1  perseant 	 */
   1447  1.1  perseant 	if (do_coalesce) {
   1448  1.1  perseant 		for (i = 0; i < nfss; i++)
   1449  1.1  perseant 			clean_all_inodes(fsp[i]);
   1450  1.1  perseant 		exit(0);
   1451  1.1  perseant 	}
   1452  1.1  perseant 
   1453  1.1  perseant 	/*
   1454  1.1  perseant 	 * If asked to invalidate a segment, do that and exit.
   1455  1.1  perseant 	 */
   1456  1.1  perseant 	if (inval_segment >= 0) {
   1457  1.1  perseant 		invalidate_segment(fsp[0], inval_segment);
   1458  1.1  perseant 		exit(0);
   1459  1.1  perseant 	}
   1460  1.1  perseant 
   1461  1.1  perseant 	/*
   1462  1.1  perseant 	 * Main cleaning loop.
   1463  1.1  perseant 	 */
   1464  1.1  perseant 	loopcount = 0;
   1465  1.1  perseant 	while (nfss > 0) {
   1466  1.1  perseant 		int cleaned_one;
   1467  1.1  perseant 		do {
   1468  1.1  perseant #ifdef USE_CLIENT_SERVER
   1469  1.1  perseant 			check_control_socket();
   1470  1.1  perseant #endif
   1471  1.1  perseant 			cleaned_one = 0;
   1472  1.1  perseant 			for (i = 0; i < nfss; i++) {
   1473  1.1  perseant 				if ((error = needs_cleaning(fsp[i], &ci)) < 0) {
   1474  1.1  perseant 					handle_error(fsp, i);
   1475  1.1  perseant 					continue;
   1476  1.1  perseant 				}
   1477  1.1  perseant 				if (error == 0) /* No need to clean */
   1478  1.1  perseant 					continue;
   1479  1.1  perseant 
   1480  1.1  perseant 				reload_ifile(fsp[i]);
   1481  1.1  perseant 				if (clean_fs(fsp[i], &ci) < 0) {
   1482  1.1  perseant 					handle_error(fsp, i);
   1483  1.1  perseant 					continue;
   1484  1.1  perseant 				}
   1485  1.1  perseant 				++cleaned_one;
   1486  1.1  perseant 			}
   1487  1.1  perseant 			++loopcount;
   1488  1.1  perseant 			if (stat_report && loopcount % stat_report == 0)
   1489  1.1  perseant 				sig_report(0);
   1490  1.1  perseant 			if (do_quit)
   1491  1.1  perseant 				exit(0);
   1492  1.1  perseant 		} while(cleaned_one);
   1493  1.1  perseant 		tv.tv_sec = segwait_timeout;
   1494  1.1  perseant 		tv.tv_usec = 0;
   1495  1.1  perseant 		fcntl(fsp[0]->clfs_ifilefd, LFCNSEGWAITALL, &tv);
   1496  1.1  perseant 	}
   1497  1.1  perseant 
   1498  1.1  perseant 	/* NOTREACHED */
   1499  1.1  perseant 	return 0;
   1500  1.1  perseant }
   1501