xref: /csrg-svn/sys/ufs/lfs/lfs_alloc.c (revision 7650)
1*7650Ssam /*	lfs_alloc.c	2.10	82/08/03	*/
24359Smckusick 
34359Smckusick #include "../h/param.h"
44359Smckusick #include "../h/systm.h"
54359Smckusick #include "../h/mount.h"
64359Smckusick #include "../h/fs.h"
74359Smckusick #include "../h/conf.h"
84359Smckusick #include "../h/buf.h"
94359Smckusick #include "../h/inode.h"
106567Smckusic #include "../h/dir.h"
114359Smckusick #include "../h/user.h"
127483Skre #include "../h/quota.h"
134359Smckusick 
145212Smckusic extern u_long		hashalloc();
155212Smckusic extern ino_t		ialloccg();
164651Smckusic extern daddr_t		alloccg();
174651Smckusic extern daddr_t		alloccgblk();
184651Smckusic extern daddr_t		fragextend();
194651Smckusic extern daddr_t		blkpref();
204651Smckusic extern daddr_t		mapsearch();
214607Smckusic extern int		inside[], around[];
225322Smckusic extern unsigned char	*fragtbl[];
234359Smckusick 
245375Smckusic /*
255375Smckusic  * Allocate a block in the file system.
265375Smckusic  *
275375Smckusic  * The size of the requested block is given, which must be some
285375Smckusic  * multiple of fs_fsize and <= fs_bsize.
295375Smckusic  * A preference may be optionally specified. If a preference is given
305375Smckusic  * the following hierarchy is used to allocate a block:
315375Smckusic  *   1) allocate the requested block.
325375Smckusic  *   2) allocate a rotationally optimal block in the same cylinder.
335375Smckusic  *   3) allocate a block in the same cylinder group.
345375Smckusic  *   4) quadradically rehash into other cylinder groups, until an
355375Smckusic  *      available block is located.
365375Smckusic  * If no block preference is given the following heirarchy is used
375375Smckusic  * to allocate a block:
385375Smckusic  *   1) allocate a block in the cylinder group that contains the
395375Smckusic  *      inode for the file.
405375Smckusic  *   2) quadradically rehash into other cylinder groups, until an
415375Smckusic  *      available block is located.
425375Smckusic  */
434359Smckusick struct buf *
445965Smckusic alloc(ip, bpref, size)
454463Smckusic 	register struct inode *ip;
464359Smckusick 	daddr_t bpref;
474359Smckusick 	int size;
484359Smckusick {
494359Smckusick 	daddr_t bno;
504359Smckusick 	register struct fs *fs;
514463Smckusic 	register struct buf *bp;
524359Smckusick 	int cg;
534359Smckusick 
545965Smckusic 	fs = ip->i_fs;
556716Smckusick 	if ((unsigned)size > fs->fs_bsize || fragoff(fs, size) != 0) {
566716Smckusick 		printf("dev = 0x%x, bsize = %d, size = %d, fs = %s\n",
576716Smckusick 		    ip->i_dev, fs->fs_bsize, size, fs->fs_fsmnt);
584463Smckusic 		panic("alloc: bad size");
596716Smckusick 	}
605322Smckusic 	if (size == fs->fs_bsize && fs->fs_cstotal.cs_nbfree == 0)
614359Smckusick 		goto nospace;
624792Smckusic 	if (u.u_uid != 0 &&
635322Smckusic 	    fs->fs_cstotal.cs_nbfree * fs->fs_frag + fs->fs_cstotal.cs_nffree <
645322Smckusic 	      fs->fs_dsize * fs->fs_minfree / 100)
654792Smckusic 		goto nospace;
66*7650Ssam #ifdef QUOTA
677483Skre 	if (chkdq(ip, (long)((unsigned)size/DEV_BSIZE), 0))
687483Skre 		return(NULL);
697483Skre #endif
704948Smckusic 	if (bpref >= fs->fs_size)
714948Smckusic 		bpref = 0;
724359Smckusick 	if (bpref == 0)
735377Smckusic 		cg = itog(fs, ip->i_number);
744359Smckusick 	else
755377Smckusic 		cg = dtog(fs, bpref);
765965Smckusic 	bno = (daddr_t)hashalloc(ip, cg, (long)bpref, size, alloccg);
776567Smckusic 	if (bno <= 0)
784359Smckusick 		goto nospace;
795965Smckusic 	bp = getblk(ip->i_dev, fsbtodb(fs, bno), size);
804359Smckusick 	clrbuf(bp);
814359Smckusick 	return (bp);
824359Smckusick nospace:
834359Smckusick 	fserr(fs, "file system full");
844359Smckusick 	uprintf("\n%s: write failed, file system is full\n", fs->fs_fsmnt);
854359Smckusick 	u.u_error = ENOSPC;
864359Smckusick 	return (NULL);
874359Smckusick }
884359Smckusick 
895375Smckusic /*
905375Smckusic  * Reallocate a fragment to a bigger size
915375Smckusic  *
925375Smckusic  * The number and size of the old block is given, and a preference
935375Smckusic  * and new size is also specified. The allocator attempts to extend
945375Smckusic  * the original block. Failing that, the regular block allocator is
955375Smckusic  * invoked to get an appropriate block.
965375Smckusic  */
974426Smckusic struct buf *
985965Smckusic realloccg(ip, bprev, bpref, osize, nsize)
995965Smckusic 	register struct inode *ip;
1004651Smckusic 	daddr_t bprev, bpref;
1014426Smckusic 	int osize, nsize;
1024426Smckusic {
1034426Smckusic 	daddr_t bno;
1044426Smckusic 	register struct fs *fs;
1054463Smckusic 	register struct buf *bp, *obp;
1064426Smckusic 	int cg;
1074426Smckusic 
1085965Smckusic 	fs = ip->i_fs;
1095960Smckusic 	if ((unsigned)osize > fs->fs_bsize || fragoff(fs, osize) != 0 ||
1106716Smckusick 	    (unsigned)nsize > fs->fs_bsize || fragoff(fs, nsize) != 0) {
1116716Smckusick 		printf("dev = 0x%x, bsize = %d, osize = %d, nsize = %d, fs = %s\n",
1126716Smckusick 		    ip->i_dev, fs->fs_bsize, osize, nsize, fs->fs_fsmnt);
1134463Smckusic 		panic("realloccg: bad size");
1146716Smckusick 	}
1154792Smckusic 	if (u.u_uid != 0 &&
1165322Smckusic 	    fs->fs_cstotal.cs_nbfree * fs->fs_frag + fs->fs_cstotal.cs_nffree <
1175322Smckusic 	      fs->fs_dsize * fs->fs_minfree / 100)
1184792Smckusic 		goto nospace;
1196716Smckusick 	if (bprev == 0) {
1206716Smckusick 		printf("dev = 0x%x, bsize = %d, bprev = %d, fs = %s\n",
1216716Smckusick 		    ip->i_dev, fs->fs_bsize, bprev, fs->fs_fsmnt);
1224463Smckusic 		panic("realloccg: bad bprev");
1236716Smckusick 	}
124*7650Ssam #ifdef QUOTA
1257483Skre 	if (chkdq(ip, (long)((unsigned)(nsize-osize)/DEV_BSIZE), 0))
1267483Skre 		return(NULL);
1277483Skre #endif
1286294Smckusick 	cg = dtog(fs, bprev);
1295965Smckusic 	bno = fragextend(ip, cg, (long)bprev, osize, nsize);
1304463Smckusic 	if (bno != 0) {
1317187Sroot 		do {
1327187Sroot 			bp = bread(ip->i_dev, fsbtodb(fs, bno), osize);
1337187Sroot 			if (bp->b_flags & B_ERROR) {
1347187Sroot 				brelse(bp);
1357187Sroot 				return (NULL);
1367187Sroot 			}
1377187Sroot 		} while (brealloc(bp, nsize) == 0);
1387187Sroot 		bp->b_flags |= B_DONE;
1397437Sroot 		bzero(bp->b_un.b_addr + osize, nsize - osize);
1404463Smckusic 		return (bp);
1414463Smckusic 	}
1424948Smckusic 	if (bpref >= fs->fs_size)
1434948Smckusic 		bpref = 0;
1445965Smckusic 	bno = (daddr_t)hashalloc(ip, cg, (long)bpref, nsize, alloccg);
1456567Smckusic 	if (bno > 0) {
1465965Smckusic 		obp = bread(ip->i_dev, fsbtodb(fs, bprev), osize);
1475960Smckusic 		if (obp->b_flags & B_ERROR) {
1485960Smckusic 			brelse(obp);
1496294Smckusick 			return (NULL);
1505960Smckusic 		}
1515965Smckusic 		bp = getblk(ip->i_dev, fsbtodb(fs, bno), nsize);
1526567Smckusic 		bcopy(obp->b_un.b_addr, bp->b_un.b_addr, osize);
1537437Sroot 		bzero(bp->b_un.b_addr + osize, nsize - osize);
1544463Smckusic 		brelse(obp);
1555965Smckusic 		fre(ip, bprev, (off_t)osize);
1566294Smckusick 		return (bp);
1574463Smckusic 	}
1584792Smckusic nospace:
1594463Smckusic 	/*
1604463Smckusic 	 * no space available
1614463Smckusic 	 */
1624426Smckusic 	fserr(fs, "file system full");
1634426Smckusic 	uprintf("\n%s: write failed, file system is full\n", fs->fs_fsmnt);
1644426Smckusic 	u.u_error = ENOSPC;
1654426Smckusic 	return (NULL);
1664426Smckusic }
1674426Smckusic 
1685375Smckusic /*
1695375Smckusic  * Allocate an inode in the file system.
1705375Smckusic  *
1715375Smckusic  * A preference may be optionally specified. If a preference is given
1725375Smckusic  * the following hierarchy is used to allocate an inode:
1735375Smckusic  *   1) allocate the requested inode.
1745375Smckusic  *   2) allocate an inode in the same cylinder group.
1755375Smckusic  *   3) quadradically rehash into other cylinder groups, until an
1765375Smckusic  *      available inode is located.
1775375Smckusic  * If no inode preference is given the following heirarchy is used
1785375Smckusic  * to allocate an inode:
1795375Smckusic  *   1) allocate an inode in cylinder group 0.
1805375Smckusic  *   2) quadradically rehash into other cylinder groups, until an
1815375Smckusic  *      available inode is located.
1825375Smckusic  */
1834359Smckusick struct inode *
1845965Smckusic ialloc(pip, ipref, mode)
1855965Smckusic 	register struct inode *pip;
1864359Smckusick 	ino_t ipref;
1874359Smckusick 	int mode;
1884359Smckusick {
1895212Smckusic 	ino_t ino;
1904359Smckusick 	register struct fs *fs;
1914359Smckusick 	register struct inode *ip;
1924359Smckusick 	int cg;
1934359Smckusick 
1945965Smckusic 	fs = pip->i_fs;
1954792Smckusic 	if (fs->fs_cstotal.cs_nifree == 0)
1964359Smckusick 		goto noinodes;
197*7650Ssam #ifdef QUOTA
1987483Skre 	if (chkiq(pip->i_dev, NULL, u.u_uid, 0))
1997483Skre 		return(NULL);
2007483Skre #endif
2014948Smckusic 	if (ipref >= fs->fs_ncg * fs->fs_ipg)
2024948Smckusic 		ipref = 0;
2035377Smckusic 	cg = itog(fs, ipref);
2045965Smckusic 	ino = (ino_t)hashalloc(pip, cg, (long)ipref, mode, ialloccg);
2054359Smckusick 	if (ino == 0)
2064359Smckusick 		goto noinodes;
2075965Smckusic 	ip = iget(pip->i_dev, pip->i_fs, ino);
2084359Smckusick 	if (ip == NULL) {
2095965Smckusic 		ifree(ip, ino, 0);
2104359Smckusick 		return (NULL);
2114359Smckusick 	}
2126716Smckusick 	if (ip->i_mode) {
2136716Smckusick 		printf("mode = 0%o, inum = %d, fs = %s\n",
2146716Smckusick 		    ip->i_mode, ip->i_number, fs->fs_fsmnt);
2154359Smckusick 		panic("ialloc: dup alloc");
2166716Smckusick 	}
2174359Smckusick 	return (ip);
2184359Smckusick noinodes:
2194359Smckusick 	fserr(fs, "out of inodes");
2206294Smckusick 	uprintf("\n%s: create/symlink failed, no inodes free\n", fs->fs_fsmnt);
2214359Smckusick 	u.u_error = ENOSPC;
2224359Smckusick 	return (NULL);
2234359Smckusick }
2244359Smckusick 
2254651Smckusic /*
2265375Smckusic  * Find a cylinder to place a directory.
2275375Smckusic  *
2285375Smckusic  * The policy implemented by this algorithm is to select from
2295375Smckusic  * among those cylinder groups with above the average number of
2305375Smckusic  * free inodes, the one with the smallest number of directories.
2314651Smckusic  */
2325965Smckusic dirpref(fs)
2335965Smckusic 	register struct fs *fs;
2344359Smckusick {
2354651Smckusic 	int cg, minndir, mincg, avgifree;
2364359Smckusick 
2374792Smckusic 	avgifree = fs->fs_cstotal.cs_nifree / fs->fs_ncg;
2384651Smckusic 	minndir = fs->fs_ipg;
2394359Smckusick 	mincg = 0;
2404651Smckusic 	for (cg = 0; cg < fs->fs_ncg; cg++)
2415322Smckusic 		if (fs->fs_cs(fs, cg).cs_ndir < minndir &&
2425322Smckusic 		    fs->fs_cs(fs, cg).cs_nifree >= avgifree) {
2434359Smckusick 			mincg = cg;
2445322Smckusic 			minndir = fs->fs_cs(fs, cg).cs_ndir;
2454359Smckusick 		}
2464359Smckusick 	return (fs->fs_ipg * mincg);
2474359Smckusick }
2484359Smckusick 
2494651Smckusic /*
2505375Smckusic  * Select a cylinder to place a large block of data.
2515375Smckusic  *
2525375Smckusic  * The policy implemented by this algorithm is to maintain a
2535375Smckusic  * rotor that sweeps the cylinder groups. When a block is
2545375Smckusic  * needed, the rotor is advanced until a cylinder group with
2555375Smckusic  * greater than the average number of free blocks is found.
2564651Smckusic  */
2575212Smckusic daddr_t
2585965Smckusic blkpref(fs)
2595965Smckusic 	register struct fs *fs;
2604651Smckusic {
2614651Smckusic 	int cg, avgbfree;
2624651Smckusic 
2634792Smckusic 	avgbfree = fs->fs_cstotal.cs_nbfree / fs->fs_ncg;
2644651Smckusic 	for (cg = fs->fs_cgrotor + 1; cg < fs->fs_ncg; cg++)
2655322Smckusic 		if (fs->fs_cs(fs, cg).cs_nbfree >= avgbfree) {
2664651Smckusic 			fs->fs_cgrotor = cg;
2675322Smckusic 			return (fs->fs_fpg * cg + fs->fs_frag);
2684651Smckusic 		}
2694651Smckusic 	for (cg = 0; cg <= fs->fs_cgrotor; cg++)
2705322Smckusic 		if (fs->fs_cs(fs, cg).cs_nbfree >= avgbfree) {
2714651Smckusic 			fs->fs_cgrotor = cg;
2725322Smckusic 			return (fs->fs_fpg * cg + fs->fs_frag);
2734651Smckusic 		}
2746294Smckusick 	return (NULL);
2754651Smckusic }
2764651Smckusic 
2775375Smckusic /*
2785375Smckusic  * Implement the cylinder overflow algorithm.
2795375Smckusic  *
2805375Smckusic  * The policy implemented by this algorithm is:
2815375Smckusic  *   1) allocate the block in its requested cylinder group.
2825375Smckusic  *   2) quadradically rehash on the cylinder group number.
2835375Smckusic  *   3) brute force search for a free block.
2845375Smckusic  */
2855212Smckusic /*VARARGS5*/
2865212Smckusic u_long
2875965Smckusic hashalloc(ip, cg, pref, size, allocator)
2885965Smckusic 	struct inode *ip;
2894359Smckusick 	int cg;
2904359Smckusick 	long pref;
2914359Smckusick 	int size;	/* size for data blocks, mode for inodes */
2925212Smckusic 	u_long (*allocator)();
2934359Smckusick {
2945965Smckusic 	register struct fs *fs;
2954359Smckusick 	long result;
2964359Smckusick 	int i, icg = cg;
2974359Smckusick 
2985965Smckusic 	fs = ip->i_fs;
2994359Smckusick 	/*
3004359Smckusick 	 * 1: preferred cylinder group
3014359Smckusick 	 */
3025965Smckusic 	result = (*allocator)(ip, cg, pref, size);
3034359Smckusick 	if (result)
3044359Smckusick 		return (result);
3054359Smckusick 	/*
3064359Smckusick 	 * 2: quadratic rehash
3074359Smckusick 	 */
3084359Smckusick 	for (i = 1; i < fs->fs_ncg; i *= 2) {
3094359Smckusick 		cg += i;
3104359Smckusick 		if (cg >= fs->fs_ncg)
3114359Smckusick 			cg -= fs->fs_ncg;
3125965Smckusic 		result = (*allocator)(ip, cg, 0, size);
3134359Smckusick 		if (result)
3144359Smckusick 			return (result);
3154359Smckusick 	}
3164359Smckusick 	/*
3174359Smckusick 	 * 3: brute force search
3184359Smckusick 	 */
3194359Smckusick 	cg = icg;
3204359Smckusick 	for (i = 0; i < fs->fs_ncg; i++) {
3215965Smckusic 		result = (*allocator)(ip, cg, 0, size);
3224359Smckusick 		if (result)
3234359Smckusick 			return (result);
3244359Smckusick 		cg++;
3254359Smckusick 		if (cg == fs->fs_ncg)
3264359Smckusick 			cg = 0;
3274359Smckusick 	}
3286294Smckusick 	return (NULL);
3294359Smckusick }
3304359Smckusick 
3315375Smckusic /*
3325375Smckusic  * Determine whether a fragment can be extended.
3335375Smckusic  *
3345375Smckusic  * Check to see if the necessary fragments are available, and
3355375Smckusic  * if they are, allocate them.
3365375Smckusic  */
3374359Smckusick daddr_t
3385965Smckusic fragextend(ip, cg, bprev, osize, nsize)
3395965Smckusic 	struct inode *ip;
3404426Smckusic 	int cg;
3414463Smckusic 	long bprev;
3424426Smckusic 	int osize, nsize;
3434426Smckusic {
3445965Smckusic 	register struct fs *fs;
3454463Smckusic 	register struct buf *bp;
3464463Smckusic 	register struct cg *cgp;
3474463Smckusic 	long bno;
3484463Smckusic 	int frags, bbase;
3494426Smckusic 	int i;
3504426Smckusic 
3515965Smckusic 	fs = ip->i_fs;
3526531Smckusick 	if (fs->fs_cs(fs, cg).cs_nffree < nsize - osize)
3536531Smckusick 		return (NULL);
3545960Smckusic 	frags = numfrags(fs, nsize);
3555960Smckusic 	bbase = fragoff(fs, bprev);
3565322Smckusic 	if (bbase > (bprev + frags - 1) % fs->fs_frag) {
3574463Smckusic 		/* cannot extend across a block boundry */
3586294Smckusick 		return (NULL);
3594463Smckusic 	}
3605965Smckusic 	bp = bread(ip->i_dev, fsbtodb(fs, cgtod(fs, cg)), fs->fs_bsize);
3616531Smckusick 	cgp = bp->b_un.b_cg;
3626531Smckusick 	if (bp->b_flags & B_ERROR || cgp->cg_magic != CG_MAGIC) {
3635960Smckusic 		brelse(bp);
3646294Smckusick 		return (NULL);
3655960Smckusic 	}
3667116Smckusick 	cgp->cg_time = time;
3675377Smckusic 	bno = dtogd(fs, bprev);
3685960Smckusic 	for (i = numfrags(fs, osize); i < frags; i++)
3695361Smckusic 		if (isclr(cgp->cg_free, bno + i)) {
3705361Smckusic 			brelse(bp);
3716294Smckusick 			return (NULL);
3725361Smckusic 		}
3735361Smckusic 	/*
3745361Smckusic 	 * the current fragment can be extended
3755361Smckusic 	 * deduct the count on fragment being extended into
3765361Smckusic 	 * increase the count on the remaining fragment (if any)
3775361Smckusic 	 * allocate the extended piece
3785361Smckusic 	 */
3795361Smckusic 	for (i = frags; i < fs->fs_frag - bbase; i++)
3804463Smckusic 		if (isclr(cgp->cg_free, bno + i))
3814463Smckusic 			break;
3825960Smckusic 	cgp->cg_frsum[i - numfrags(fs, osize)]--;
3835361Smckusic 	if (i != frags)
3845361Smckusic 		cgp->cg_frsum[i - frags]++;
3855960Smckusic 	for (i = numfrags(fs, osize); i < frags; i++) {
3865361Smckusic 		clrbit(cgp->cg_free, bno + i);
3875361Smckusic 		cgp->cg_cs.cs_nffree--;
3885361Smckusic 		fs->fs_cstotal.cs_nffree--;
3895361Smckusic 		fs->fs_cs(fs, cg).cs_nffree--;
3904463Smckusic 	}
3915361Smckusic 	fs->fs_fmod++;
3925361Smckusic 	bdwrite(bp);
3935361Smckusic 	return (bprev);
3944426Smckusic }
3954426Smckusic 
3965375Smckusic /*
3975375Smckusic  * Determine whether a block can be allocated.
3985375Smckusic  *
3995375Smckusic  * Check to see if a block of the apprpriate size is available,
4005375Smckusic  * and if it is, allocate it.
4015375Smckusic  */
4024426Smckusic daddr_t
4035965Smckusic alloccg(ip, cg, bpref, size)
4045965Smckusic 	struct inode *ip;
4054359Smckusick 	int cg;
4064359Smckusick 	daddr_t bpref;
4074359Smckusick 	int size;
4084359Smckusick {
4095965Smckusic 	register struct fs *fs;
4104463Smckusic 	register struct buf *bp;
4114463Smckusic 	register struct cg *cgp;
4124463Smckusic 	int bno, frags;
4134463Smckusic 	int allocsiz;
4144463Smckusic 	register int i;
4154359Smckusick 
4165965Smckusic 	fs = ip->i_fs;
4175322Smckusic 	if (fs->fs_cs(fs, cg).cs_nbfree == 0 && size == fs->fs_bsize)
4186294Smckusick 		return (NULL);
4195965Smckusic 	bp = bread(ip->i_dev, fsbtodb(fs, cgtod(fs, cg)), fs->fs_bsize);
4206531Smckusick 	cgp = bp->b_un.b_cg;
4216531Smckusick 	if (bp->b_flags & B_ERROR || cgp->cg_magic != CG_MAGIC) {
4225960Smckusic 		brelse(bp);
4236294Smckusick 		return (NULL);
4245960Smckusic 	}
4257116Smckusick 	cgp->cg_time = time;
4265322Smckusic 	if (size == fs->fs_bsize) {
4275212Smckusic 		bno = alloccgblk(fs, cgp, bpref);
4284463Smckusic 		bdwrite(bp);
4294463Smckusic 		return (bno);
4304463Smckusic 	}
4314463Smckusic 	/*
4324463Smckusic 	 * check to see if any fragments are already available
4334463Smckusic 	 * allocsiz is the size which will be allocated, hacking
4344463Smckusic 	 * it down to a smaller size if necessary
4354463Smckusic 	 */
4365960Smckusic 	frags = numfrags(fs, size);
4375322Smckusic 	for (allocsiz = frags; allocsiz < fs->fs_frag; allocsiz++)
4384463Smckusic 		if (cgp->cg_frsum[allocsiz] != 0)
4394463Smckusic 			break;
4405322Smckusic 	if (allocsiz == fs->fs_frag) {
4414463Smckusic 		/*
4424463Smckusic 		 * no fragments were available, so a block will be
4434463Smckusic 		 * allocated, and hacked up
4444463Smckusic 		 */
4454792Smckusic 		if (cgp->cg_cs.cs_nbfree == 0) {
4464463Smckusic 			brelse(bp);
4476294Smckusick 			return (NULL);
4484463Smckusic 		}
4495212Smckusic 		bno = alloccgblk(fs, cgp, bpref);
4505377Smckusic 		bpref = dtogd(fs, bno);
4515322Smckusic 		for (i = frags; i < fs->fs_frag; i++)
4524463Smckusic 			setbit(cgp->cg_free, bpref + i);
4535322Smckusic 		i = fs->fs_frag - frags;
4544792Smckusic 		cgp->cg_cs.cs_nffree += i;
4554792Smckusic 		fs->fs_cstotal.cs_nffree += i;
4565322Smckusic 		fs->fs_cs(fs, cg).cs_nffree += i;
4574463Smckusic 		cgp->cg_frsum[i]++;
4584463Smckusic 		bdwrite(bp);
4594463Smckusic 		return (bno);
4604463Smckusic 	}
4614651Smckusic 	bno = mapsearch(fs, cgp, bpref, allocsiz);
4626567Smckusic 	if (bno < 0)
4636294Smckusick 		return (NULL);
4644463Smckusic 	for (i = 0; i < frags; i++)
4654463Smckusic 		clrbit(cgp->cg_free, bno + i);
4664792Smckusic 	cgp->cg_cs.cs_nffree -= frags;
4674792Smckusic 	fs->fs_cstotal.cs_nffree -= frags;
4685322Smckusic 	fs->fs_cs(fs, cg).cs_nffree -= frags;
4694463Smckusic 	cgp->cg_frsum[allocsiz]--;
4704463Smckusic 	if (frags != allocsiz)
4714463Smckusic 		cgp->cg_frsum[allocsiz - frags]++;
4724463Smckusic 	bdwrite(bp);
4734463Smckusic 	return (cg * fs->fs_fpg + bno);
4744463Smckusic }
4754463Smckusic 
4765375Smckusic /*
4775375Smckusic  * Allocate a block in a cylinder group.
4785375Smckusic  *
4795375Smckusic  * This algorithm implements the following policy:
4805375Smckusic  *   1) allocate the requested block.
4815375Smckusic  *   2) allocate a rotationally optimal block in the same cylinder.
4825375Smckusic  *   3) allocate the next available block on the block rotor for the
4835375Smckusic  *      specified cylinder group.
4845375Smckusic  * Note that this routine only allocates fs_bsize blocks; these
4855375Smckusic  * blocks may be fragmented by the routine that allocates them.
4865375Smckusic  */
4874463Smckusic daddr_t
4885212Smckusic alloccgblk(fs, cgp, bpref)
4895965Smckusic 	register struct fs *fs;
4904463Smckusic 	register struct cg *cgp;
4914463Smckusic 	daddr_t bpref;
4924463Smckusic {
4934651Smckusic 	daddr_t bno;
4946294Smckusick 	int cylno, pos, delta;
4954651Smckusic 	short *cylbp;
4965361Smckusic 	register int i;
4974463Smckusic 
4984651Smckusic 	if (bpref == 0) {
4994651Smckusic 		bpref = cgp->cg_rotor;
5005361Smckusic 		goto norot;
5015361Smckusic 	}
5025361Smckusic 	bpref &= ~(fs->fs_frag - 1);
5035377Smckusic 	bpref = dtogd(fs, bpref);
5045361Smckusic 	/*
5055361Smckusic 	 * if the requested block is available, use it
5065361Smckusic 	 */
5077187Sroot /*
5087187Sroot  * disallow sequential layout.
5097187Sroot  *
5105361Smckusic 	if (isblock(fs, cgp->cg_free, bpref/fs->fs_frag)) {
5115361Smckusic 		bno = bpref;
5125361Smckusic 		goto gotit;
5135361Smckusic 	}
5147187Sroot  */
5155361Smckusic 	/*
5165361Smckusic 	 * check for a block available on the same cylinder
5175361Smckusic 	 */
5185361Smckusic 	cylno = cbtocylno(fs, bpref);
5195375Smckusic 	if (cgp->cg_btot[cylno] == 0)
5205375Smckusic 		goto norot;
5215375Smckusic 	if (fs->fs_cpc == 0) {
5225375Smckusic 		/*
5235375Smckusic 		 * block layout info is not available, so just have
5245375Smckusic 		 * to take any block in this cylinder.
5255375Smckusic 		 */
5265375Smckusic 		bpref = howmany(fs->fs_spc * cylno, NSPF(fs));
5275375Smckusic 		goto norot;
5285375Smckusic 	}
5295375Smckusic 	/*
5305375Smckusic 	 * find a block that is rotationally optimal
5315375Smckusic 	 */
5325361Smckusic 	cylbp = cgp->cg_b[cylno];
5335361Smckusic 	if (fs->fs_rotdelay == 0) {
5345361Smckusic 		pos = cbtorpos(fs, bpref);
5354651Smckusic 	} else {
5364651Smckusic 		/*
5375361Smckusic 		 * here we convert ms of delay to frags as:
5385361Smckusic 		 * (frags) = (ms) * (rev/sec) * (sect/rev) /
5395361Smckusic 		 *	((sect/frag) * (ms/sec))
5405361Smckusic 		 * then round up to the next rotational position
5414651Smckusic 		 */
5425361Smckusic 		bpref += fs->fs_rotdelay * fs->fs_rps * fs->fs_nsect /
5435361Smckusic 		    (NSPF(fs) * 1000);
5445361Smckusic 		pos = cbtorpos(fs, bpref);
5455361Smckusic 		pos = (pos + 1) % NRPOS;
5465361Smckusic 	}
5475361Smckusic 	/*
5485361Smckusic 	 * check the summary information to see if a block is
5495361Smckusic 	 * available in the requested cylinder starting at the
5505361Smckusic 	 * optimal rotational position and proceeding around.
5515361Smckusic 	 */
5525361Smckusic 	for (i = pos; i < NRPOS; i++)
5535361Smckusic 		if (cylbp[i] > 0)
5545361Smckusic 			break;
5555361Smckusic 	if (i == NRPOS)
5565361Smckusic 		for (i = 0; i < pos; i++)
5575361Smckusic 			if (cylbp[i] > 0)
5585361Smckusic 				break;
5595361Smckusic 	if (cylbp[i] > 0) {
5604651Smckusic 		/*
5615361Smckusic 		 * found a rotational position, now find the actual
5625361Smckusic 		 * block. A panic if none is actually there.
5634651Smckusic 		 */
5645361Smckusic 		pos = cylno % fs->fs_cpc;
5655361Smckusic 		bno = (cylno - pos) * fs->fs_spc / NSPB(fs);
5666716Smckusick 		if (fs->fs_postbl[pos][i] == -1) {
5676716Smckusick 			printf("pos = %d, i = %d, fs = %s\n",
5686716Smckusick 			    pos, i, fs->fs_fsmnt);
5695361Smckusic 			panic("alloccgblk: cyl groups corrupted");
5706716Smckusick 		}
5716294Smckusick 		for (i = fs->fs_postbl[pos][i];; ) {
5725361Smckusic 			if (isblock(fs, cgp->cg_free, bno + i)) {
5735361Smckusic 				bno = (bno + i) * fs->fs_frag;
5745361Smckusic 				goto gotit;
5755361Smckusic 			}
5766294Smckusick 			delta = fs->fs_rotbl[i];
5776294Smckusick 			if (delta <= 0 || delta > MAXBPC - i)
5784651Smckusic 				break;
5796294Smckusick 			i += delta;
5804651Smckusic 		}
5816716Smckusick 		printf("pos = %d, i = %d, fs = %s\n", pos, i, fs->fs_fsmnt);
5825361Smckusic 		panic("alloccgblk: can't find blk in cyl");
5834359Smckusick 	}
5845361Smckusic norot:
5855361Smckusic 	/*
5865361Smckusic 	 * no blocks in the requested cylinder, so take next
5875361Smckusic 	 * available one in this cylinder group.
5885361Smckusic 	 */
5895322Smckusic 	bno = mapsearch(fs, cgp, bpref, fs->fs_frag);
5906567Smckusic 	if (bno < 0)
5916294Smckusick 		return (NULL);
5924651Smckusic 	cgp->cg_rotor = bno;
5934359Smckusick gotit:
5945322Smckusic 	clrblock(fs, cgp->cg_free, bno/fs->fs_frag);
5954792Smckusic 	cgp->cg_cs.cs_nbfree--;
5964792Smckusic 	fs->fs_cstotal.cs_nbfree--;
5975322Smckusic 	fs->fs_cs(fs, cgp->cg_cgx).cs_nbfree--;
5985375Smckusic 	cylno = cbtocylno(fs, bno);
5995375Smckusic 	cgp->cg_b[cylno][cbtorpos(fs, bno)]--;
6005375Smckusic 	cgp->cg_btot[cylno]--;
6014359Smckusick 	fs->fs_fmod++;
6024651Smckusic 	return (cgp->cg_cgx * fs->fs_fpg + bno);
6034359Smckusick }
6044359Smckusick 
6055375Smckusic /*
6065375Smckusic  * Determine whether an inode can be allocated.
6075375Smckusic  *
6085375Smckusic  * Check to see if an inode is available, and if it is,
6095375Smckusic  * allocate it using the following policy:
6105375Smckusic  *   1) allocate the requested inode.
6115375Smckusic  *   2) allocate the next available inode after the requested
6125375Smckusic  *      inode in the specified cylinder group.
6135375Smckusic  */
6145212Smckusic ino_t
6155965Smckusic ialloccg(ip, cg, ipref, mode)
6165965Smckusic 	struct inode *ip;
6174359Smckusick 	int cg;
6184359Smckusick 	daddr_t ipref;
6194359Smckusick 	int mode;
6204359Smckusick {
6215965Smckusic 	register struct fs *fs;
6224463Smckusic 	register struct buf *bp;
6234463Smckusic 	register struct cg *cgp;
6244359Smckusick 	int i;
6254359Smckusick 
6265965Smckusic 	fs = ip->i_fs;
6275322Smckusic 	if (fs->fs_cs(fs, cg).cs_nifree == 0)
6286294Smckusick 		return (NULL);
6295965Smckusic 	bp = bread(ip->i_dev, fsbtodb(fs, cgtod(fs, cg)), fs->fs_bsize);
6306531Smckusick 	cgp = bp->b_un.b_cg;
6316531Smckusick 	if (bp->b_flags & B_ERROR || cgp->cg_magic != CG_MAGIC) {
6325960Smckusic 		brelse(bp);
6336294Smckusick 		return (NULL);
6345960Smckusic 	}
6357116Smckusick 	cgp->cg_time = time;
6364359Smckusick 	if (ipref) {
6374359Smckusick 		ipref %= fs->fs_ipg;
6384359Smckusick 		if (isclr(cgp->cg_iused, ipref))
6394359Smckusick 			goto gotit;
6404359Smckusick 	} else
6414359Smckusick 		ipref = cgp->cg_irotor;
6424359Smckusick 	for (i = 0; i < fs->fs_ipg; i++) {
6434359Smckusick 		ipref++;
6444359Smckusick 		if (ipref >= fs->fs_ipg)
6454359Smckusick 			ipref = 0;
6464359Smckusick 		if (isclr(cgp->cg_iused, ipref)) {
6474359Smckusick 			cgp->cg_irotor = ipref;
6484359Smckusick 			goto gotit;
6494359Smckusick 		}
6504359Smckusick 	}
6514359Smckusick 	brelse(bp);
6526294Smckusick 	return (NULL);
6534359Smckusick gotit:
6544359Smckusick 	setbit(cgp->cg_iused, ipref);
6554792Smckusic 	cgp->cg_cs.cs_nifree--;
6564792Smckusic 	fs->fs_cstotal.cs_nifree--;
6575322Smckusic 	fs->fs_cs(fs, cg).cs_nifree--;
6584359Smckusick 	fs->fs_fmod++;
6594359Smckusick 	if ((mode & IFMT) == IFDIR) {
6604792Smckusic 		cgp->cg_cs.cs_ndir++;
6614792Smckusic 		fs->fs_cstotal.cs_ndir++;
6625322Smckusic 		fs->fs_cs(fs, cg).cs_ndir++;
6634359Smckusick 	}
6644359Smckusick 	bdwrite(bp);
6654359Smckusick 	return (cg * fs->fs_ipg + ipref);
6664359Smckusick }
6674359Smckusick 
6685375Smckusic /*
6695375Smckusic  * Free a block or fragment.
6705375Smckusic  *
6715375Smckusic  * The specified block or fragment is placed back in the
6725375Smckusic  * free map. If a fragment is deallocated, a possible
6735375Smckusic  * block reassembly is checked.
6745375Smckusic  */
6755965Smckusic fre(ip, bno, size)
6765965Smckusic 	register struct inode *ip;
6774359Smckusick 	daddr_t bno;
6785212Smckusic 	off_t size;
6794359Smckusick {
6804359Smckusick 	register struct fs *fs;
6814359Smckusick 	register struct cg *cgp;
6824359Smckusick 	register struct buf *bp;
6834463Smckusic 	int cg, blk, frags, bbase;
6844463Smckusic 	register int i;
6854359Smckusick 
6865965Smckusic 	fs = ip->i_fs;
6876716Smckusick 	if ((unsigned)size > fs->fs_bsize || fragoff(fs, size) != 0) {
6886716Smckusick 		printf("dev = 0x%x, bsize = %d, size = %d, fs = %s\n",
6896716Smckusick 		    ip->i_dev, fs->fs_bsize, size, fs->fs_fsmnt);
6904426Smckusic 		panic("free: bad size");
6916716Smckusick 	}
6925377Smckusic 	cg = dtog(fs, bno);
6936567Smckusic 	if (badblock(fs, bno)) {
6946567Smckusic 		printf("bad block %d, ino %d\n", bno, ip->i_number);
6954359Smckusick 		return;
6966567Smckusic 	}
6975965Smckusic 	bp = bread(ip->i_dev, fsbtodb(fs, cgtod(fs, cg)), fs->fs_bsize);
6986531Smckusick 	cgp = bp->b_un.b_cg;
6996531Smckusick 	if (bp->b_flags & B_ERROR || cgp->cg_magic != CG_MAGIC) {
7005960Smckusic 		brelse(bp);
7014359Smckusick 		return;
7025960Smckusic 	}
7037116Smckusick 	cgp->cg_time = time;
7045377Smckusic 	bno = dtogd(fs, bno);
7055322Smckusic 	if (size == fs->fs_bsize) {
7066567Smckusic 		if (isblock(fs, cgp->cg_free, bno/fs->fs_frag)) {
7076716Smckusick 			printf("dev = 0x%x, block = %d, fs = %s\n",
7086716Smckusick 			    ip->i_dev, bno, fs->fs_fsmnt);
7094426Smckusic 			panic("free: freeing free block");
7106567Smckusic 		}
7115322Smckusic 		setblock(fs, cgp->cg_free, bno/fs->fs_frag);
7124792Smckusic 		cgp->cg_cs.cs_nbfree++;
7134792Smckusic 		fs->fs_cstotal.cs_nbfree++;
7145322Smckusic 		fs->fs_cs(fs, cg).cs_nbfree++;
7155375Smckusic 		i = cbtocylno(fs, bno);
7165375Smckusic 		cgp->cg_b[i][cbtorpos(fs, bno)]++;
7175375Smckusic 		cgp->cg_btot[i]++;
7184426Smckusic 	} else {
7195322Smckusic 		bbase = bno - (bno % fs->fs_frag);
7204463Smckusic 		/*
7214463Smckusic 		 * decrement the counts associated with the old frags
7224463Smckusic 		 */
7236294Smckusick 		blk = blkmap(fs, cgp->cg_free, bbase);
7245322Smckusic 		fragacct(fs, blk, cgp->cg_frsum, -1);
7254463Smckusic 		/*
7264463Smckusic 		 * deallocate the fragment
7274463Smckusic 		 */
7285960Smckusic 		frags = numfrags(fs, size);
7294463Smckusic 		for (i = 0; i < frags; i++) {
7306716Smckusick 			if (isset(cgp->cg_free, bno + i)) {
7316716Smckusick 				printf("dev = 0x%x, block = %d, fs = %s\n",
7326716Smckusick 				    ip->i_dev, bno + i, fs->fs_fsmnt);
7334426Smckusic 				panic("free: freeing free frag");
7346716Smckusick 			}
7354426Smckusic 			setbit(cgp->cg_free, bno + i);
7364426Smckusic 		}
7376294Smckusick 		cgp->cg_cs.cs_nffree += i;
7386294Smckusick 		fs->fs_cstotal.cs_nffree += i;
7396294Smckusick 		fs->fs_cs(fs, cg).cs_nffree += i;
7404463Smckusic 		/*
7414463Smckusic 		 * add back in counts associated with the new frags
7424463Smckusic 		 */
7436294Smckusick 		blk = blkmap(fs, cgp->cg_free, bbase);
7445322Smckusic 		fragacct(fs, blk, cgp->cg_frsum, 1);
7454463Smckusic 		/*
7464463Smckusic 		 * if a complete block has been reassembled, account for it
7474463Smckusic 		 */
7485322Smckusic 		if (isblock(fs, cgp->cg_free, bbase / fs->fs_frag)) {
7495322Smckusic 			cgp->cg_cs.cs_nffree -= fs->fs_frag;
7505322Smckusic 			fs->fs_cstotal.cs_nffree -= fs->fs_frag;
7515322Smckusic 			fs->fs_cs(fs, cg).cs_nffree -= fs->fs_frag;
7524792Smckusic 			cgp->cg_cs.cs_nbfree++;
7534792Smckusic 			fs->fs_cstotal.cs_nbfree++;
7545322Smckusic 			fs->fs_cs(fs, cg).cs_nbfree++;
7555375Smckusic 			i = cbtocylno(fs, bbase);
7565375Smckusic 			cgp->cg_b[i][cbtorpos(fs, bbase)]++;
7575375Smckusic 			cgp->cg_btot[i]++;
7584426Smckusic 		}
7594426Smckusic 	}
7604359Smckusick 	fs->fs_fmod++;
7614359Smckusick 	bdwrite(bp);
7624359Smckusick }
7634359Smckusick 
7645375Smckusic /*
7655375Smckusic  * Free an inode.
7665375Smckusic  *
7675375Smckusic  * The specified inode is placed back in the free map.
7685375Smckusic  */
7695965Smckusic ifree(ip, ino, mode)
7705965Smckusic 	struct inode *ip;
7714359Smckusick 	ino_t ino;
7724359Smckusick 	int mode;
7734359Smckusick {
7744359Smckusick 	register struct fs *fs;
7754359Smckusick 	register struct cg *cgp;
7764359Smckusick 	register struct buf *bp;
7774359Smckusick 	int cg;
7784359Smckusick 
7795965Smckusic 	fs = ip->i_fs;
7806716Smckusick 	if ((unsigned)ino >= fs->fs_ipg*fs->fs_ncg) {
7816716Smckusick 		printf("dev = 0x%x, ino = %d, fs = %s\n",
7826716Smckusick 		    ip->i_dev, ino, fs->fs_fsmnt);
7834359Smckusick 		panic("ifree: range");
7846716Smckusick 	}
7855377Smckusic 	cg = itog(fs, ino);
7865965Smckusic 	bp = bread(ip->i_dev, fsbtodb(fs, cgtod(fs, cg)), fs->fs_bsize);
7876531Smckusick 	cgp = bp->b_un.b_cg;
7886531Smckusick 	if (bp->b_flags & B_ERROR || cgp->cg_magic != CG_MAGIC) {
7895960Smckusic 		brelse(bp);
7904359Smckusick 		return;
7915960Smckusic 	}
7927116Smckusick 	cgp->cg_time = time;
7934359Smckusick 	ino %= fs->fs_ipg;
7946716Smckusick 	if (isclr(cgp->cg_iused, ino)) {
7956716Smckusick 		printf("dev = 0x%x, ino = %d, fs = %s\n",
7966716Smckusick 		    ip->i_dev, ino, fs->fs_fsmnt);
7974359Smckusick 		panic("ifree: freeing free inode");
7986716Smckusick 	}
7994359Smckusick 	clrbit(cgp->cg_iused, ino);
8004792Smckusic 	cgp->cg_cs.cs_nifree++;
8014792Smckusic 	fs->fs_cstotal.cs_nifree++;
8025322Smckusic 	fs->fs_cs(fs, cg).cs_nifree++;
8034359Smckusick 	if ((mode & IFMT) == IFDIR) {
8044792Smckusic 		cgp->cg_cs.cs_ndir--;
8054792Smckusic 		fs->fs_cstotal.cs_ndir--;
8065322Smckusic 		fs->fs_cs(fs, cg).cs_ndir--;
8074359Smckusick 	}
8084359Smckusick 	fs->fs_fmod++;
8094359Smckusick 	bdwrite(bp);
8104359Smckusick }
8114359Smckusick 
8124463Smckusic /*
8135375Smckusic  * Find a block of the specified size in the specified cylinder group.
8145375Smckusic  *
8154651Smckusic  * It is a panic if a request is made to find a block if none are
8164651Smckusic  * available.
8174651Smckusic  */
8184651Smckusic daddr_t
8194651Smckusic mapsearch(fs, cgp, bpref, allocsiz)
8204651Smckusic 	register struct fs *fs;
8214651Smckusic 	register struct cg *cgp;
8224651Smckusic 	daddr_t bpref;
8234651Smckusic 	int allocsiz;
8244651Smckusic {
8254651Smckusic 	daddr_t bno;
8264651Smckusic 	int start, len, loc, i;
8274651Smckusic 	int blk, field, subfield, pos;
8284651Smckusic 
8294651Smckusic 	/*
8304651Smckusic 	 * find the fragment by searching through the free block
8314651Smckusic 	 * map for an appropriate bit pattern
8324651Smckusic 	 */
8334651Smckusic 	if (bpref)
8345377Smckusic 		start = dtogd(fs, bpref) / NBBY;
8354651Smckusic 	else
8364651Smckusic 		start = cgp->cg_frotor / NBBY;
8375398Smckusic 	len = howmany(fs->fs_fpg, NBBY) - start;
8385322Smckusic 	loc = scanc(len, &cgp->cg_free[start], fragtbl[fs->fs_frag],
8396292Smckusick 		1 << (allocsiz - 1 + (fs->fs_frag % NBBY)));
8404651Smckusic 	if (loc == 0) {
8416531Smckusick 		len = start + 1;
8426531Smckusick 		start = 0;
8435322Smckusic 		loc = scanc(len, &cgp->cg_free[start], fragtbl[fs->fs_frag],
8446292Smckusick 			1 << (allocsiz - 1 + (fs->fs_frag % NBBY)));
8454651Smckusic 		if (loc == 0) {
8466716Smckusick 			printf("start = %d, len = %d, fs = %s\n",
8476716Smckusick 			    start, len, fs->fs_fsmnt);
8484651Smckusic 			panic("alloccg: map corrupted");
8496531Smckusick 			return (-1);
8504651Smckusic 		}
8514651Smckusic 	}
8524651Smckusic 	bno = (start + len - loc) * NBBY;
8534651Smckusic 	cgp->cg_frotor = bno;
8544651Smckusic 	/*
8554651Smckusic 	 * found the byte in the map
8564651Smckusic 	 * sift through the bits to find the selected frag
8574651Smckusic 	 */
8586294Smckusick 	for (i = bno + NBBY; bno < i; bno += fs->fs_frag) {
8596294Smckusick 		blk = blkmap(fs, cgp->cg_free, bno);
8604651Smckusic 		blk <<= 1;
8614651Smckusic 		field = around[allocsiz];
8624651Smckusic 		subfield = inside[allocsiz];
8635322Smckusic 		for (pos = 0; pos <= fs->fs_frag - allocsiz; pos++) {
8646294Smckusick 			if ((blk & field) == subfield)
8656294Smckusick 				return (bno + pos);
8664651Smckusic 			field <<= 1;
8674651Smckusic 			subfield <<= 1;
8684651Smckusic 		}
8694651Smckusic 	}
8706716Smckusick 	printf("bno = %d, fs = %s\n", bno, fs->fs_fsmnt);
8714651Smckusic 	panic("alloccg: block not in map");
8726531Smckusick 	return (-1);
8734651Smckusic }
8744651Smckusic 
8754651Smckusic /*
8765375Smckusic  * Update the frsum fields to reflect addition or deletion
8775375Smckusic  * of some frags.
8784463Smckusic  */
8795322Smckusic fragacct(fs, fragmap, fraglist, cnt)
8805322Smckusic 	struct fs *fs;
8814472Smckusic 	int fragmap;
8824792Smckusic 	long fraglist[];
8834463Smckusic 	int cnt;
8844463Smckusic {
8854463Smckusic 	int inblk;
8864463Smckusic 	register int field, subfield;
8874463Smckusic 	register int siz, pos;
8884463Smckusic 
8895322Smckusic 	inblk = (int)(fragtbl[fs->fs_frag][fragmap]) << 1;
8904463Smckusic 	fragmap <<= 1;
8915322Smckusic 	for (siz = 1; siz < fs->fs_frag; siz++) {
8926292Smckusick 		if ((inblk & (1 << (siz + (fs->fs_frag % NBBY)))) == 0)
8934463Smckusic 			continue;
8944463Smckusic 		field = around[siz];
8954463Smckusic 		subfield = inside[siz];
8965322Smckusic 		for (pos = siz; pos <= fs->fs_frag; pos++) {
8974463Smckusic 			if ((fragmap & field) == subfield) {
8984463Smckusic 				fraglist[siz] += cnt;
8994463Smckusic 				pos += siz;
9004463Smckusic 				field <<= siz;
9014463Smckusic 				subfield <<= siz;
9024463Smckusic 			}
9034463Smckusic 			field <<= 1;
9044463Smckusic 			subfield <<= 1;
9054463Smckusic 		}
9064463Smckusic 	}
9074463Smckusic }
9084463Smckusic 
9095375Smckusic /*
9105375Smckusic  * Check that a specified block number is in range.
9115375Smckusic  */
9124359Smckusick badblock(fs, bn)
9134359Smckusick 	register struct fs *fs;
9144359Smckusick 	daddr_t bn;
9154359Smckusick {
9164359Smckusick 
9176531Smckusick 	if ((unsigned)bn >= fs->fs_size) {
9186567Smckusic 		printf("bad block %d, ", bn);
9194359Smckusick 		fserr(fs, "bad block");
9204359Smckusick 		return (1);
9214359Smckusick 	}
9224359Smckusick 	return (0);
9234359Smckusick }
9244359Smckusick 
9254359Smckusick /*
9265375Smckusic  * Getfs maps a device number into a pointer to the incore super block.
9274359Smckusick  *
9285375Smckusic  * The algorithm is a linear search through the mount table. A
9295375Smckusic  * consistency check of the super block magic number is performed.
9305375Smckusic  *
9314359Smckusick  * panic: no fs -- the device is not mounted.
9324359Smckusick  *	this "cannot happen"
9334359Smckusick  */
9344359Smckusick struct fs *
9354359Smckusick getfs(dev)
9364359Smckusick 	dev_t dev;
9374359Smckusick {
9384359Smckusick 	register struct mount *mp;
9394359Smckusick 	register struct fs *fs;
9404359Smckusick 
9416294Smckusick 	for (mp = &mount[0]; mp < &mount[NMOUNT]; mp++) {
9426294Smckusick 		if (mp->m_bufp == NULL || mp->m_dev != dev)
9436294Smckusick 			continue;
9446294Smckusick 		fs = mp->m_bufp->b_un.b_fs;
9456716Smckusick 		if (fs->fs_magic != FS_MAGIC) {
9466716Smckusick 			printf("dev = 0x%x, fs = %s\n", dev, fs->fs_fsmnt);
9476294Smckusick 			panic("getfs: bad magic");
9486716Smckusick 		}
9496294Smckusick 		return (fs);
9506294Smckusick 	}
9516716Smckusick 	printf("dev = 0x%x\n", dev);
9524359Smckusick 	panic("getfs: no fs");
9534359Smckusick 	return (NULL);
9544359Smckusick }
9554359Smckusick 
9564359Smckusick /*
9575375Smckusic  * Fserr prints the name of a file system with an error diagnostic.
9585375Smckusic  *
9595375Smckusic  * The form of the error message is:
9604359Smckusick  *	fs: error message
9614359Smckusick  */
9624359Smckusick fserr(fs, cp)
9634359Smckusick 	struct fs *fs;
9644359Smckusick 	char *cp;
9654359Smckusick {
9664359Smckusick 
9674359Smckusick 	printf("%s: %s\n", fs->fs_fsmnt, cp);
9684359Smckusick }
9694359Smckusick 
9704359Smckusick /*
9714359Smckusick  * Getfsx returns the index in the file system
9724359Smckusick  * table of the specified device.  The swap device
9734359Smckusick  * is also assigned a pseudo-index.  The index may
9744359Smckusick  * be used as a compressed indication of the location
9754359Smckusick  * of a block, recording
9764359Smckusick  *	<getfsx(dev),blkno>
9774359Smckusick  * rather than
9784359Smckusick  *	<dev, blkno>
9794359Smckusick  * provided the information need remain valid only
9804359Smckusick  * as long as the file system is mounted.
9814359Smckusick  */
9824359Smckusick getfsx(dev)
9834359Smckusick 	dev_t dev;
9844359Smckusick {
9854359Smckusick 	register struct mount *mp;
9864359Smckusick 
9874359Smckusick 	if (dev == swapdev)
9884359Smckusick 		return (MSWAPX);
9894359Smckusick 	for(mp = &mount[0]; mp < &mount[NMOUNT]; mp++)
9904359Smckusick 		if (mp->m_dev == dev)
9914359Smckusick 			return (mp - &mount[0]);
9924359Smckusick 	return (-1);
9934359Smckusick }
9944359Smckusick 
9954359Smckusick /*
9964359Smckusick  * Update is the internal name of 'sync'.  It goes through the disk
9974359Smckusick  * queues to initiate sandbagged IO; goes through the inodes to write
9985375Smckusic  * modified nodes; and it goes through the mount table to initiate
9995375Smckusic  * the writing of the modified super blocks.
10004359Smckusick  */
10016294Smckusick update(flag)
10026294Smckusick 	int flag;
10034359Smckusick {
10044359Smckusick 	register struct inode *ip;
10054359Smckusick 	register struct mount *mp;
10064359Smckusick 	register struct buf *bp;
10074359Smckusick 	struct fs *fs;
10084651Smckusic 	int i, blks;
10094359Smckusick 
10104359Smckusick 	if (updlock)
10114359Smckusick 		return;
10124359Smckusick 	updlock++;
10134359Smckusick 	/*
10144359Smckusick 	 * Write back modified superblocks.
10154359Smckusick 	 * Consistency check that the superblock
10164359Smckusick 	 * of each file system is still in the buffer cache.
10174359Smckusick 	 */
10186294Smckusick 	for (mp = &mount[0]; mp < &mount[NMOUNT]; mp++) {
10196294Smckusick 		if (mp->m_bufp == NULL)
10206294Smckusick 			continue;
10216294Smckusick 		fs = mp->m_bufp->b_un.b_fs;
10226294Smckusick 		if (fs->fs_fmod == 0)
10236294Smckusick 			continue;
10247187Sroot 		if (fs->fs_ronly != 0) {		/* ### */
10256716Smckusick 			printf("fs = %s\n", fs->fs_fsmnt);
10266294Smckusick 			panic("update: rofs mod");
10276716Smckusick 		}
10286294Smckusick 		fs->fs_fmod = 0;
10296310Smckusick 		fs->fs_time = time;
10307187Sroot 		sbupdate(mp);
10316294Smckusick 	}
10324359Smckusick 	/*
10334359Smckusick 	 * Write back each (modified) inode.
10344359Smckusick 	 */
10356294Smckusick 	for (ip = inode; ip < inodeNINODE; ip++) {
10366294Smckusick 		if ((ip->i_flag & ILOCK) != 0 || ip->i_count == 0)
10376294Smckusick 			continue;
10386294Smckusick 		ip->i_flag |= ILOCK;
10396294Smckusick 		ip->i_count++;
10406310Smckusick 		iupdat(ip, &time, &time, 0);
10416294Smckusick 		iput(ip);
10426294Smckusick 	}
10434359Smckusick 	updlock = 0;
10444359Smckusick 	/*
10454359Smckusick 	 * Force stale buffer cache information to be flushed,
10464359Smckusick 	 * for all devices.
10474359Smckusick 	 */
10484359Smckusick 	bflush(NODEV);
10494359Smckusick }
10505322Smckusic 
10515322Smckusic /*
10525375Smckusic  * block operations
10535375Smckusic  *
10545375Smckusic  * check if a block is available
10555322Smckusic  */
10565322Smckusic isblock(fs, cp, h)
10575322Smckusic 	struct fs *fs;
10585322Smckusic 	unsigned char *cp;
10595322Smckusic 	int h;
10605322Smckusic {
10615322Smckusic 	unsigned char mask;
10625322Smckusic 
10635322Smckusic 	switch (fs->fs_frag) {
10645322Smckusic 	case 8:
10655322Smckusic 		return (cp[h] == 0xff);
10665322Smckusic 	case 4:
10675322Smckusic 		mask = 0x0f << ((h & 0x1) << 2);
10685322Smckusic 		return ((cp[h >> 1] & mask) == mask);
10695322Smckusic 	case 2:
10705322Smckusic 		mask = 0x03 << ((h & 0x3) << 1);
10715322Smckusic 		return ((cp[h >> 2] & mask) == mask);
10725322Smckusic 	case 1:
10735322Smckusic 		mask = 0x01 << (h & 0x7);
10745322Smckusic 		return ((cp[h >> 3] & mask) == mask);
10755322Smckusic 	default:
10766294Smckusick 		panic("isblock");
10776294Smckusick 		return (NULL);
10785322Smckusic 	}
10795322Smckusic }
10805375Smckusic 
10815375Smckusic /*
10825375Smckusic  * take a block out of the map
10835375Smckusic  */
10845322Smckusic clrblock(fs, cp, h)
10855322Smckusic 	struct fs *fs;
10865322Smckusic 	unsigned char *cp;
10875322Smckusic 	int h;
10885322Smckusic {
10895322Smckusic 	switch ((fs)->fs_frag) {
10905322Smckusic 	case 8:
10915322Smckusic 		cp[h] = 0;
10925322Smckusic 		return;
10935322Smckusic 	case 4:
10945322Smckusic 		cp[h >> 1] &= ~(0x0f << ((h & 0x1) << 2));
10955322Smckusic 		return;
10965322Smckusic 	case 2:
10975322Smckusic 		cp[h >> 2] &= ~(0x03 << ((h & 0x3) << 1));
10985322Smckusic 		return;
10995322Smckusic 	case 1:
11005322Smckusic 		cp[h >> 3] &= ~(0x01 << (h & 0x7));
11015322Smckusic 		return;
11025322Smckusic 	default:
11036294Smckusick 		panic("clrblock");
11045322Smckusic 		return;
11055322Smckusic 	}
11065322Smckusic }
11075375Smckusic 
11085375Smckusic /*
11095375Smckusic  * put a block into the map
11105375Smckusic  */
11115322Smckusic setblock(fs, cp, h)
11125322Smckusic 	struct fs *fs;
11135322Smckusic 	unsigned char *cp;
11145322Smckusic 	int h;
11155322Smckusic {
11165322Smckusic 	switch (fs->fs_frag) {
11175322Smckusic 	case 8:
11185322Smckusic 		cp[h] = 0xff;
11195322Smckusic 		return;
11205322Smckusic 	case 4:
11215322Smckusic 		cp[h >> 1] |= (0x0f << ((h & 0x1) << 2));
11225322Smckusic 		return;
11235322Smckusic 	case 2:
11245322Smckusic 		cp[h >> 2] |= (0x03 << ((h & 0x3) << 1));
11255322Smckusic 		return;
11265322Smckusic 	case 1:
11275322Smckusic 		cp[h >> 3] |= (0x01 << (h & 0x7));
11285322Smckusic 		return;
11295322Smckusic 	default:
11306294Smckusick 		panic("setblock");
11315322Smckusic 		return;
11325322Smckusic 	}
11335322Smckusic }
1134