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lfs.h revision 1.2
      1  1.2      cgd /*	$NetBSD: lfs.h,v 1.2 1994/06/29 06:46:46 cgd Exp $	*/
      2  1.2      cgd 
      3  1.1  mycroft /*-
      4  1.1  mycroft  * Copyright (c) 1991, 1993
      5  1.1  mycroft  *	The Regents of the University of California.  All rights reserved.
      6  1.1  mycroft  *
      7  1.1  mycroft  * Redistribution and use in source and binary forms, with or without
      8  1.1  mycroft  * modification, are permitted provided that the following conditions
      9  1.1  mycroft  * are met:
     10  1.1  mycroft  * 1. Redistributions of source code must retain the above copyright
     11  1.1  mycroft  *    notice, this list of conditions and the following disclaimer.
     12  1.1  mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     13  1.1  mycroft  *    notice, this list of conditions and the following disclaimer in the
     14  1.1  mycroft  *    documentation and/or other materials provided with the distribution.
     15  1.1  mycroft  * 3. All advertising materials mentioning features or use of this software
     16  1.1  mycroft  *    must display the following acknowledgement:
     17  1.1  mycroft  *	This product includes software developed by the University of
     18  1.1  mycroft  *	California, Berkeley and its contributors.
     19  1.1  mycroft  * 4. Neither the name of the University nor the names of its contributors
     20  1.1  mycroft  *    may be used to endorse or promote products derived from this software
     21  1.1  mycroft  *    without specific prior written permission.
     22  1.1  mycroft  *
     23  1.1  mycroft  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24  1.1  mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25  1.1  mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26  1.1  mycroft  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27  1.1  mycroft  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28  1.1  mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29  1.1  mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30  1.1  mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31  1.1  mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32  1.1  mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33  1.1  mycroft  * SUCH DAMAGE.
     34  1.1  mycroft  *
     35  1.2      cgd  *	@(#)lfs.h	8.3 (Berkeley) 9/23/93
     36  1.1  mycroft  */
     37  1.1  mycroft 
     38  1.1  mycroft #define	LFS_LABELPAD	8192		/* LFS label size */
     39  1.1  mycroft #define	LFS_SBPAD	8192		/* LFS superblock size */
     40  1.1  mycroft 
     41  1.1  mycroft /*
     42  1.1  mycroft  * XXX
     43  1.1  mycroft  * This is a kluge and NEEDS to go away.
     44  1.1  mycroft  *
     45  1.1  mycroft  * Right now, ufs code handles most of the calls for directory operations
     46  1.1  mycroft  * such as create, mkdir, link, etc.  As a result VOP_UPDATE is being
     47  1.1  mycroft  * called with waitfor set (since ffs does these things synchronously).
     48  1.1  mycroft  * Since LFS does not want to do these synchronously, we treat the last
     49  1.1  mycroft  * argument to lfs_update as a set of flags.  If LFS_SYNC is set, then
     50  1.1  mycroft  * the update should be synchronous, if not, do it asynchronously.
     51  1.1  mycroft  * Unfortunately, this means that LFS won't work with NFS yet because
     52  1.1  mycroft  * NFS goes through paths that will make normal calls to ufs which will
     53  1.1  mycroft  * call lfs with a last argument of 1.
     54  1.1  mycroft  */
     55  1.1  mycroft #define	LFS_SYNC	0x02
     56  1.1  mycroft 
     57  1.1  mycroft /* On-disk and in-memory checkpoint segment usage structure. */
     58  1.1  mycroft typedef struct segusage SEGUSE;
     59  1.1  mycroft struct segusage {
     60  1.1  mycroft 	u_long	su_nbytes;		/* number of live bytes */
     61  1.1  mycroft 	u_long	su_lastmod;		/* SEGUSE last modified timestamp */
     62  1.1  mycroft 	u_short	su_nsums;		/* number of summaries in segment */
     63  1.1  mycroft 	u_short	su_ninos;		/* number of inode blocks in seg */
     64  1.1  mycroft #define	SEGUSE_ACTIVE		0x1	/* segment is currently being written */
     65  1.1  mycroft #define	SEGUSE_DIRTY		0x2	/* segment has data in it */
     66  1.1  mycroft #define	SEGUSE_SUPERBLOCK	0x4	/* segment contains a superblock */
     67  1.1  mycroft 	u_long	su_flags;
     68  1.1  mycroft };
     69  1.1  mycroft 
     70  1.1  mycroft #define	SEGUPB(fs)	(1 << (fs)->lfs_sushift)
     71  1.1  mycroft #define	SEGTABSIZE_SU(fs)						\
     72  1.1  mycroft 	(((fs)->lfs_nseg + SEGUPB(fs) - 1) >> (fs)->lfs_sushift)
     73  1.1  mycroft 
     74  1.1  mycroft /* On-disk file information.  One per file with data blocks in the segment. */
     75  1.1  mycroft typedef struct finfo FINFO;
     76  1.1  mycroft struct finfo {
     77  1.1  mycroft 	u_long	fi_nblocks;		/* number of blocks */
     78  1.1  mycroft 	u_long	fi_version;		/* version number */
     79  1.1  mycroft 	u_long	fi_ino;			/* inode number */
     80  1.1  mycroft 	long	fi_blocks[1];		/* array of logical block numbers */
     81  1.1  mycroft };
     82  1.1  mycroft 
     83  1.1  mycroft /* On-disk and in-memory super block. */
     84  1.1  mycroft struct lfs {
     85  1.1  mycroft #define	LFS_MAGIC	0x070162
     86  1.1  mycroft 	u_long	lfs_magic;		/* magic number */
     87  1.1  mycroft #define	LFS_VERSION	1
     88  1.1  mycroft 	u_long	lfs_version;		/* version number */
     89  1.1  mycroft 
     90  1.1  mycroft 	u_long	lfs_size;		/* number of blocks in fs */
     91  1.1  mycroft 	u_long	lfs_ssize;		/* number of blocks per segment */
     92  1.1  mycroft 	u_long	lfs_dsize;		/* number of disk blocks in fs */
     93  1.1  mycroft 	u_long	lfs_bsize;		/* file system block size */
     94  1.1  mycroft 	u_long	lfs_fsize;		/* size of frag blocks in fs */
     95  1.1  mycroft 	u_long	lfs_frag;		/* number of frags in a block in fs */
     96  1.1  mycroft 
     97  1.1  mycroft /* Checkpoint region. */
     98  1.1  mycroft 	ino_t	lfs_free;		/* start of the free list */
     99  1.1  mycroft 	u_long	lfs_bfree;		/* number of free disk blocks */
    100  1.1  mycroft 	u_long	lfs_nfiles;		/* number of allocated inodes */
    101  1.1  mycroft 	long	lfs_avail;		/* blocks available for writing */
    102  1.1  mycroft 	u_long  lfs_uinodes;		/* inodes in cache not yet on disk */
    103  1.1  mycroft 	daddr_t	lfs_idaddr;		/* inode file disk address */
    104  1.1  mycroft 	ino_t	lfs_ifile;		/* inode file inode number */
    105  1.1  mycroft 	daddr_t	lfs_lastseg;		/* address of last segment written */
    106  1.1  mycroft 	daddr_t	lfs_nextseg;		/* address of next segment to write */
    107  1.1  mycroft 	daddr_t	lfs_curseg;		/* current segment being written */
    108  1.1  mycroft 	daddr_t	lfs_offset;		/* offset in curseg for next partial */
    109  1.1  mycroft 	daddr_t	lfs_lastpseg;		/* address of last partial written */
    110  1.1  mycroft 	u_long	lfs_tstamp;		/* time stamp */
    111  1.1  mycroft 
    112  1.1  mycroft /* These are configuration parameters. */
    113  1.1  mycroft 	u_long	lfs_minfree;		/* minimum percentage of free blocks */
    114  1.1  mycroft 
    115  1.1  mycroft /* These fields can be computed from the others. */
    116  1.1  mycroft 	u_quad_t lfs_maxfilesize;	/* maximum representable file size */
    117  1.1  mycroft 	u_long	lfs_dbpseg;		/* disk blocks per segment */
    118  1.1  mycroft 	u_long	lfs_inopb;		/* inodes per block */
    119  1.1  mycroft 	u_long	lfs_ifpb;		/* IFILE entries per block */
    120  1.1  mycroft 	u_long	lfs_sepb;		/* SEGUSE entries per block */
    121  1.1  mycroft 	u_long	lfs_nindir;		/* indirect pointers per block */
    122  1.1  mycroft 	u_long	lfs_nseg;		/* number of segments */
    123  1.1  mycroft 	u_long	lfs_nspf;		/* number of sectors per fragment */
    124  1.1  mycroft 	u_long	lfs_cleansz;		/* cleaner info size in blocks */
    125  1.1  mycroft 	u_long	lfs_segtabsz;		/* segment table size in blocks */
    126  1.1  mycroft 
    127  1.1  mycroft 	u_long	lfs_segmask;		/* calculate offset within a segment */
    128  1.1  mycroft 	u_long	lfs_segshift;		/* fast mult/div for segments */
    129  1.1  mycroft 	u_long	lfs_bmask;		/* calc block offset from file offset */
    130  1.1  mycroft 	u_long	lfs_bshift;		/* calc block number from file offset */
    131  1.1  mycroft 	u_long	lfs_ffmask;		/* calc frag offset from file offset */
    132  1.1  mycroft 	u_long	lfs_ffshift;		/* fast mult/div for frag from file */
    133  1.1  mycroft 	u_long	lfs_fbmask;		/* calc frag offset from block offset */
    134  1.1  mycroft 	u_long	lfs_fbshift;		/* fast mult/div for frag from block */
    135  1.1  mycroft 	u_long	lfs_fsbtodb;		/* fsbtodb and dbtofsb shift constant */
    136  1.1  mycroft 	u_long	lfs_sushift;		/* fast mult/div for segusage table */
    137  1.1  mycroft 
    138  1.1  mycroft #define	LFS_MIN_SBINTERVAL	5	/* minimum superblock segment spacing */
    139  1.1  mycroft #define	LFS_MAXNUMSB		10	/* superblock disk offsets */
    140  1.1  mycroft 	daddr_t	lfs_sboffs[LFS_MAXNUMSB];
    141  1.1  mycroft 
    142  1.1  mycroft /* These fields are set at mount time and are meaningless on disk. */
    143  1.1  mycroft 	struct	segment *lfs_sp;	/* current segment being written */
    144  1.1  mycroft 	struct	vnode *lfs_ivnode;	/* vnode for the ifile */
    145  1.1  mycroft 	u_long	lfs_seglock;		/* single-thread the segment writer */
    146  1.1  mycroft 	pid_t	lfs_lockpid;		/* pid of lock holder */
    147  1.1  mycroft 	u_long	lfs_iocount;		/* number of ios pending */
    148  1.1  mycroft 	u_long	lfs_writer;		/* don't allow any dirops to start */
    149  1.1  mycroft 	u_long	lfs_dirops;		/* count of active directory ops */
    150  1.1  mycroft 	u_long	lfs_doifile;		/* Write ifile blocks on next write */
    151  1.1  mycroft 	u_long	lfs_nactive;		/* Number of segments since last ckp */
    152  1.1  mycroft 	u_char	lfs_fmod;		/* super block modified flag */
    153  1.1  mycroft 	u_char	lfs_clean;		/* file system is clean flag */
    154  1.1  mycroft 	u_char	lfs_ronly;		/* mounted read-only flag */
    155  1.1  mycroft 	u_char	lfs_flags;		/* currently unused flag */
    156  1.1  mycroft 	u_char	lfs_fsmnt[MNAMELEN];	/* name mounted on */
    157  1.1  mycroft 	u_char	pad[3];			/* long-align */
    158  1.1  mycroft 
    159  1.1  mycroft /* Checksum; valid on disk. */
    160  1.1  mycroft 	u_long	lfs_cksum;		/* checksum for superblock checking */
    161  1.1  mycroft 
    162  1.1  mycroft 	long	lfs_maxsymlinklen;	/* max length of an internal symlink */
    163  1.1  mycroft };
    164  1.1  mycroft 
    165  1.1  mycroft /*
    166  1.1  mycroft  * Inode 0 is the out-of-band inode number, inode 1 is the inode number for
    167  1.1  mycroft  * the IFILE, the root inode is 2 and the lost+found inode is 3.
    168  1.1  mycroft  */
    169  1.1  mycroft 
    170  1.1  mycroft /* Fixed inode numbers. */
    171  1.1  mycroft #define	LFS_UNUSED_INUM	0		/* out of band inode number */
    172  1.1  mycroft #define	LFS_IFILE_INUM	1		/* IFILE inode number */
    173  1.1  mycroft #define	LOSTFOUNDINO	3		/* lost+found inode number */
    174  1.1  mycroft #define	LFS_FIRST_INUM	4		/* first free inode number */
    175  1.1  mycroft 
    176  1.1  mycroft /* Address calculations for metadata located in the inode */
    177  1.1  mycroft #define	S_INDIR(fs)	-NDADDR
    178  1.1  mycroft #define	D_INDIR(fs)	(S_INDIR(fs) - NINDIR(fs) - 1)
    179  1.1  mycroft #define	T_INDIR(fs)	(D_INDIR(fs) - NINDIR(fs) * NINDIR(fs) - 1)
    180  1.1  mycroft 
    181  1.1  mycroft /* Unassigned disk address. */
    182  1.1  mycroft #define	UNASSIGNED	-1
    183  1.1  mycroft 
    184  1.1  mycroft /* Unused logical block number */
    185  1.1  mycroft #define LFS_UNUSED_LBN	-1
    186  1.1  mycroft 
    187  1.1  mycroft typedef struct ifile IFILE;
    188  1.1  mycroft struct ifile {
    189  1.1  mycroft 	u_long	if_version;		/* inode version number */
    190  1.1  mycroft #define	LFS_UNUSED_DADDR	0	/* out-of-band daddr */
    191  1.1  mycroft 	daddr_t	if_daddr;		/* inode disk address */
    192  1.1  mycroft 	ino_t	if_nextfree;		/* next-unallocated inode */
    193  1.1  mycroft };
    194  1.1  mycroft 
    195  1.1  mycroft /*
    196  1.1  mycroft  * Cleaner information structure.  This resides in the ifile and is used
    197  1.1  mycroft  * to pass information between the cleaner and the kernel.
    198  1.1  mycroft  */
    199  1.1  mycroft typedef struct _cleanerinfo {
    200  1.1  mycroft 	u_long	clean;			/* K: number of clean segments */
    201  1.1  mycroft 	u_long	dirty;			/* K: number of dirty segments */
    202  1.1  mycroft } CLEANERINFO;
    203  1.1  mycroft 
    204  1.1  mycroft #define	CLEANSIZE_SU(fs)						\
    205  1.1  mycroft 	((sizeof(CLEANERINFO) + (fs)->lfs_bsize - 1) >> (fs)->lfs_bshift)
    206  1.1  mycroft 
    207  1.1  mycroft /*
    208  1.1  mycroft  * All summary blocks are the same size, so we can always read a summary
    209  1.1  mycroft  * block easily from a segment.
    210  1.1  mycroft  */
    211  1.1  mycroft #define	LFS_SUMMARY_SIZE	512
    212  1.1  mycroft 
    213  1.1  mycroft /* On-disk segment summary information */
    214  1.1  mycroft typedef struct segsum SEGSUM;
    215  1.1  mycroft struct segsum {
    216  1.1  mycroft 	u_long	ss_sumsum;		/* check sum of summary block */
    217  1.1  mycroft 	u_long	ss_datasum;		/* check sum of data */
    218  1.1  mycroft 	daddr_t	ss_next;		/* next segment */
    219  1.1  mycroft 	u_long	ss_create;		/* creation time stamp */
    220  1.1  mycroft 	u_short	ss_nfinfo;		/* number of file info structures */
    221  1.1  mycroft 	u_short	ss_ninos;		/* number of inodes in summary */
    222  1.1  mycroft #define	SS_DIROP	0x01		/* segment begins a dirop */
    223  1.1  mycroft #define	SS_CONT		0x02		/* more partials to finish this write*/
    224  1.1  mycroft 	u_short	ss_flags;		/* used for directory operations */
    225  1.1  mycroft 	u_short	ss_pad;			/* extra space */
    226  1.1  mycroft 	/* FINFO's and inode daddr's... */
    227  1.1  mycroft };
    228  1.1  mycroft 
    229  1.1  mycroft /* NINDIR is the number of indirects in a file system block. */
    230  1.1  mycroft #define	NINDIR(fs)	((fs)->lfs_nindir)
    231  1.1  mycroft 
    232  1.1  mycroft /* INOPB is the number of inodes in a secondary storage block. */
    233  1.1  mycroft #define	INOPB(fs)	((fs)->lfs_inopb)
    234  1.1  mycroft 
    235  1.1  mycroft #define	blksize(fs)		((fs)->lfs_bsize)
    236  1.1  mycroft #define	blkoff(fs, loc)		((loc) & (fs)->lfs_bmask)
    237  1.1  mycroft #define	fsbtodb(fs, b)		((b) << (fs)->lfs_fsbtodb)
    238  1.1  mycroft #define	dbtofsb(fs, b)		((b) >> (fs)->lfs_fsbtodb)
    239  1.1  mycroft #define	lblkno(fs, loc)		((loc) >> (fs)->lfs_bshift)
    240  1.1  mycroft #define	lblktosize(fs, blk)	((blk) << (fs)->lfs_bshift)
    241  1.1  mycroft #define numfrags(fs, loc)	/* calculates (loc / fs->fs_fsize) */	\
    242  1.1  mycroft 	((loc) >> (fs)->lfs_bshift)
    243  1.1  mycroft 
    244  1.1  mycroft #define	datosn(fs, daddr)	/* disk address to segment number */	\
    245  1.1  mycroft 	(((daddr) - (fs)->lfs_sboffs[0]) / fsbtodb((fs), (fs)->lfs_ssize))
    246  1.1  mycroft #define sntoda(fs, sn) 		/* segment number to disk address */	\
    247  1.1  mycroft 	((daddr_t)((sn) * ((fs)->lfs_ssize << (fs)->lfs_fsbtodb) +	\
    248  1.1  mycroft 	    (fs)->lfs_sboffs[0]))
    249  1.1  mycroft 
    250  1.1  mycroft /* Read in the block with the cleaner info from the ifile. */
    251  1.1  mycroft #define LFS_CLEANERINFO(CP, F, BP) {					\
    252  1.1  mycroft 	VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS;			\
    253  1.1  mycroft 	if (bread((F)->lfs_ivnode,					\
    254  1.1  mycroft 	    (daddr_t)0, (F)->lfs_bsize, NOCRED, &(BP)))			\
    255  1.1  mycroft 		panic("lfs: ifile read");				\
    256  1.1  mycroft 	(CP) = (CLEANERINFO *)(BP)->b_data;				\
    257  1.1  mycroft }
    258  1.1  mycroft 
    259  1.1  mycroft /* Read in the block with a specific inode from the ifile. */
    260  1.1  mycroft #define	LFS_IENTRY(IP, F, IN, BP) {					\
    261  1.1  mycroft 	int _e;								\
    262  1.1  mycroft 	VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS;			\
    263  1.1  mycroft 	if (_e = bread((F)->lfs_ivnode,					\
    264  1.1  mycroft 	    (IN) / (F)->lfs_ifpb + (F)->lfs_cleansz + (F)->lfs_segtabsz,\
    265  1.1  mycroft 	    (F)->lfs_bsize, NOCRED, &(BP)))				\
    266  1.1  mycroft 		panic("lfs: ifile read %d", _e);			\
    267  1.1  mycroft 	(IP) = (IFILE *)(BP)->b_data + (IN) % (F)->lfs_ifpb;		\
    268  1.1  mycroft }
    269  1.1  mycroft 
    270  1.1  mycroft /* Read in the block with a specific segment usage entry from the ifile. */
    271  1.1  mycroft #define	LFS_SEGENTRY(SP, F, IN, BP) {					\
    272  1.1  mycroft 	int _e;								\
    273  1.1  mycroft 	VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS;			\
    274  1.1  mycroft 	if (_e = bread((F)->lfs_ivnode,					\
    275  1.1  mycroft 	    ((IN) >> (F)->lfs_sushift) + (F)->lfs_cleansz,		\
    276  1.1  mycroft 	    (F)->lfs_bsize, NOCRED, &(BP)))				\
    277  1.1  mycroft 		panic("lfs: ifile read: %d", _e);			\
    278  1.1  mycroft 	(SP) = (SEGUSE *)(BP)->b_data + ((IN) & (F)->lfs_sepb - 1);	\
    279  1.1  mycroft }
    280  1.1  mycroft 
    281  1.1  mycroft /*
    282  1.1  mycroft  * Determine if there is enough room currently available to write db
    283  1.1  mycroft  * disk blocks.  We need enough blocks for the new blocks, the current,
    284  1.1  mycroft  * inode blocks, a summary block, plus potentially the ifile inode and
    285  1.1  mycroft  * the segment usage table, plus an ifile page.
    286  1.1  mycroft  */
    287  1.1  mycroft #define LFS_FITS(fs, db)						\
    288  1.1  mycroft 	((long)((db + ((fs)->lfs_uinodes + INOPB((fs))) / INOPB((fs)) +	\
    289  1.1  mycroft 	fsbtodb(fs, 1) + LFS_SUMMARY_SIZE / DEV_BSIZE +			\
    290  1.1  mycroft 	(fs)->lfs_segtabsz)) < (fs)->lfs_avail)
    291  1.1  mycroft 
    292  1.1  mycroft /* Determine if a buffer belongs to the ifile */
    293  1.1  mycroft #define IS_IFILE(bp)	(VTOI(bp->b_vp)->i_number == LFS_IFILE_INUM)
    294  1.1  mycroft 
    295  1.1  mycroft /*
    296  1.1  mycroft  * Structures used by lfs_bmapv and lfs_markv to communicate information
    297  1.1  mycroft  * about inodes and data blocks.
    298  1.1  mycroft  */
    299  1.1  mycroft typedef struct block_info {
    300  1.1  mycroft 	ino_t	bi_inode;		/* inode # */
    301  1.1  mycroft 	daddr_t	bi_lbn;			/* logical block w/in file */
    302  1.1  mycroft 	daddr_t	bi_daddr;		/* disk address of block */
    303  1.1  mycroft 	time_t	bi_segcreate;		/* origin segment create time */
    304  1.1  mycroft 	int	bi_version;		/* file version number */
    305  1.1  mycroft 	void	*bi_bp;			/* data buffer */
    306  1.1  mycroft } BLOCK_INFO;
    307  1.1  mycroft 
    308  1.1  mycroft /* In-memory description of a segment about to be written. */
    309  1.1  mycroft struct segment {
    310  1.1  mycroft 	struct lfs	*fs;		/* file system pointer */
    311  1.1  mycroft 	struct buf	**bpp;		/* pointer to buffer array */
    312  1.1  mycroft 	struct buf	**cbpp;		/* pointer to next available bp */
    313  1.1  mycroft 	struct buf	**start_bpp;	/* pointer to first bp in this set */
    314  1.1  mycroft 	struct buf	*ibp;		/* buffer pointer to inode page */
    315  1.1  mycroft 	struct finfo	*fip;		/* current fileinfo pointer */
    316  1.1  mycroft 	struct vnode	*vp;		/* vnode being gathered */
    317  1.1  mycroft 	void	*segsum;		/* segment summary info */
    318  1.1  mycroft 	u_long	ninodes;		/* number of inodes in this segment */
    319  1.1  mycroft 	u_long	seg_bytes_left;		/* bytes left in segment */
    320  1.1  mycroft 	u_long	sum_bytes_left;		/* bytes left in summary block */
    321  1.1  mycroft 	u_long	seg_number;		/* number of this segment */
    322  1.1  mycroft 	daddr_t *start_lbp;		/* beginning lbn for this set */
    323  1.1  mycroft #define	SEGM_CKP	0x01		/* doing a checkpoint */
    324  1.1  mycroft #define	SEGM_CLEAN	0x02		/* cleaner call; don't sort */
    325  1.1  mycroft #define	SEGM_SYNC	0x04		/* wait for segment */
    326  1.1  mycroft 	u_long	seg_flags;		/* run-time flags for this segment */
    327  1.1  mycroft };
    328  1.1  mycroft 
    329  1.1  mycroft #define ISSPACE(F, BB, C)						\
    330  1.1  mycroft 	(((C)->cr_uid == 0 && (F)->lfs_bfree >= (BB)) ||		\
    331  1.1  mycroft 	((C)->cr_uid != 0 && IS_FREESPACE(F, BB)))
    332  1.1  mycroft 
    333  1.1  mycroft #define IS_FREESPACE(F, BB)						\
    334  1.1  mycroft 	((F)->lfs_bfree > ((F)->lfs_dsize * (F)->lfs_minfree / 100 + (BB)))
    335  1.1  mycroft 
    336  1.1  mycroft #define ISSPACE_XXX(F, BB)						\
    337  1.1  mycroft 	((F)->lfs_bfree >= (BB))
    338  1.1  mycroft 
    339  1.1  mycroft #define DOSTATS
    340  1.1  mycroft #ifdef DOSTATS
    341  1.1  mycroft /* Statistics Counters */
    342  1.1  mycroft struct lfs_stats {
    343  1.1  mycroft 	int	segsused;
    344  1.1  mycroft 	int	psegwrites;
    345  1.1  mycroft 	int	psyncwrites;
    346  1.1  mycroft 	int	pcleanwrites;
    347  1.1  mycroft 	int	blocktot;
    348  1.1  mycroft 	int	cleanblocks;
    349  1.1  mycroft 	int	ncheckpoints;
    350  1.1  mycroft 	int	nwrites;
    351  1.1  mycroft 	int	nsync_writes;
    352  1.1  mycroft 	int	wait_exceeded;
    353  1.1  mycroft 	int	write_exceeded;
    354  1.1  mycroft 	int	flush_invoked;
    355  1.1  mycroft };
    356  1.1  mycroft extern struct lfs_stats lfs_stats;
    357  1.1  mycroft #endif
    358