123394Smckusick /* 263371Sbostic * Copyright (c) 1982, 1986, 1989, 1993 363371Sbostic * The Regents of the University of California. All rights reserved. 423394Smckusick * 544536Sbostic * %sccs.include.redist.c% 634432Sbostic * 7*67392Smkm * @(#)ffs_alloc.c 8.9 (Berkeley) 06/15/94 823394Smckusick */ 94359Smckusick 1051469Sbostic #include <sys/param.h> 1151469Sbostic #include <sys/systm.h> 1251469Sbostic #include <sys/buf.h> 1351469Sbostic #include <sys/proc.h> 1451469Sbostic #include <sys/vnode.h> 1554653Smckusick #include <sys/mount.h> 1651469Sbostic #include <sys/kernel.h> 1751469Sbostic #include <sys/syslog.h> 184359Smckusick 1953317Smckusick #include <vm/vm.h> 2053317Smckusick 2151469Sbostic #include <ufs/ufs/quota.h> 2251469Sbostic #include <ufs/ufs/inode.h> 2347571Skarels 2451469Sbostic #include <ufs/ffs/fs.h> 2551469Sbostic #include <ufs/ffs/ffs_extern.h> 264359Smckusick 2751469Sbostic extern u_long nextgennumber; 2851469Sbostic 2951469Sbostic static daddr_t ffs_alloccg __P((struct inode *, int, daddr_t, int)); 3051469Sbostic static daddr_t ffs_alloccgblk __P((struct fs *, struct cg *, daddr_t)); 3165999Smckusick static daddr_t ffs_clusteralloc __P((struct inode *, int, daddr_t, int)); 3251469Sbostic static ino_t ffs_dirpref __P((struct fs *)); 3351469Sbostic static daddr_t ffs_fragextend __P((struct inode *, int, long, int, int)); 3451469Sbostic static void ffs_fserr __P((struct fs *, u_int, char *)); 3551469Sbostic static u_long ffs_hashalloc 3651469Sbostic __P((struct inode *, int, long, int, u_long (*)())); 3764603Sbostic static ino_t ffs_nodealloccg __P((struct inode *, int, daddr_t, int)); 3851469Sbostic static daddr_t ffs_mapsearch __P((struct fs *, struct cg *, daddr_t, int)); 3951469Sbostic 405375Smckusic /* 415375Smckusic * Allocate a block in the file system. 425375Smckusic * 435375Smckusic * The size of the requested block is given, which must be some 445375Smckusic * multiple of fs_fsize and <= fs_bsize. 455375Smckusic * A preference may be optionally specified. If a preference is given 465375Smckusic * the following hierarchy is used to allocate a block: 475375Smckusic * 1) allocate the requested block. 485375Smckusic * 2) allocate a rotationally optimal block in the same cylinder. 495375Smckusic * 3) allocate a block in the same cylinder group. 505375Smckusic * 4) quadradically rehash into other cylinder groups, until an 515375Smckusic * available block is located. 525375Smckusic * If no block preference is given the following heirarchy is used 535375Smckusic * to allocate a block: 545375Smckusic * 1) allocate a block in the cylinder group that contains the 555375Smckusic * inode for the file. 565375Smckusic * 2) quadradically rehash into other cylinder groups, until an 575375Smckusic * available block is located. 585375Smckusic */ 5953244Smckusick ffs_alloc(ip, lbn, bpref, size, cred, bnp) 604463Smckusic register struct inode *ip; 6139678Smckusick daddr_t lbn, bpref; 624359Smckusick int size; 6353244Smckusick struct ucred *cred; 6439678Smckusick daddr_t *bnp; 654359Smckusick { 6665468Sbostic register struct fs *fs; 674359Smckusick daddr_t bno; 6837735Smckusick int cg, error; 694359Smckusick 7039678Smckusick *bnp = 0; 715965Smckusic fs = ip->i_fs; 7253244Smckusick #ifdef DIAGNOSTIC 7364508Sbostic if ((u_int)size > fs->fs_bsize || fragoff(fs, size) != 0) { 746716Smckusick printf("dev = 0x%x, bsize = %d, size = %d, fs = %s\n", 756716Smckusick ip->i_dev, fs->fs_bsize, size, fs->fs_fsmnt); 7651469Sbostic panic("ffs_alloc: bad size"); 776716Smckusick } 7853244Smckusick if (cred == NOCRED) 7953244Smckusick panic("ffs_alloc: missing credential\n"); 8053244Smckusick #endif /* DIAGNOSTIC */ 815322Smckusic if (size == fs->fs_bsize && fs->fs_cstotal.cs_nbfree == 0) 824359Smckusick goto nospace; 8341309Smckusick if (cred->cr_uid != 0 && freespace(fs, fs->fs_minfree) <= 0) 844792Smckusic goto nospace; 857650Ssam #ifdef QUOTA 8641309Smckusick if (error = chkdq(ip, (long)btodb(size), cred, 0)) 8737735Smckusick return (error); 887483Skre #endif 894948Smckusic if (bpref >= fs->fs_size) 904948Smckusic bpref = 0; 914359Smckusick if (bpref == 0) 9264603Sbostic cg = ino_to_cg(fs, ip->i_number); 934359Smckusick else 945377Smckusic cg = dtog(fs, bpref); 9551469Sbostic bno = (daddr_t)ffs_hashalloc(ip, cg, (long)bpref, size, 9651469Sbostic (u_long (*)())ffs_alloccg); 9739678Smckusick if (bno > 0) { 9839678Smckusick ip->i_blocks += btodb(size); 9964603Sbostic ip->i_flag |= IN_CHANGE | IN_UPDATE; 10039678Smckusick *bnp = bno; 10139678Smckusick return (0); 10239678Smckusick } 10345173Smckusick #ifdef QUOTA 10445173Smckusick /* 10545173Smckusick * Restore user's disk quota because allocation failed. 10645173Smckusick */ 10745173Smckusick (void) chkdq(ip, (long)-btodb(size), cred, FORCE); 10845173Smckusick #endif 1094359Smckusick nospace: 11051469Sbostic ffs_fserr(fs, cred->cr_uid, "file system full"); 1114359Smckusick uprintf("\n%s: write failed, file system is full\n", fs->fs_fsmnt); 11237735Smckusick return (ENOSPC); 1134359Smckusick } 1144359Smckusick 1155375Smckusic /* 1165375Smckusic * Reallocate a fragment to a bigger size 1175375Smckusic * 1185375Smckusic * The number and size of the old block is given, and a preference 1195375Smckusic * and new size is also specified. The allocator attempts to extend 1205375Smckusic * the original block. Failing that, the regular block allocator is 1215375Smckusic * invoked to get an appropriate block. 1225375Smckusic */ 12353244Smckusick ffs_realloccg(ip, lbprev, bpref, osize, nsize, cred, bpp) 1245965Smckusic register struct inode *ip; 12553059Smckusick daddr_t lbprev; 12639678Smckusick daddr_t bpref; 1274426Smckusic int osize, nsize; 12853244Smckusick struct ucred *cred; 12937735Smckusick struct buf **bpp; 1304426Smckusic { 1314426Smckusic register struct fs *fs; 13265468Sbostic struct buf *bp; 13345719Smckusick int cg, request, error; 13445719Smckusick daddr_t bprev, bno; 1354426Smckusic 13637735Smckusick *bpp = 0; 1375965Smckusic fs = ip->i_fs; 13853244Smckusick #ifdef DIAGNOSTIC 13964508Sbostic if ((u_int)osize > fs->fs_bsize || fragoff(fs, osize) != 0 || 14064508Sbostic (u_int)nsize > fs->fs_bsize || fragoff(fs, nsize) != 0) { 14151469Sbostic printf( 14251469Sbostic "dev = 0x%x, bsize = %d, osize = %d, nsize = %d, fs = %s\n", 1436716Smckusick ip->i_dev, fs->fs_bsize, osize, nsize, fs->fs_fsmnt); 14451469Sbostic panic("ffs_realloccg: bad size"); 1456716Smckusick } 14653244Smckusick if (cred == NOCRED) 14753244Smckusick panic("ffs_realloccg: missing credential\n"); 14853244Smckusick #endif /* DIAGNOSTIC */ 14941309Smckusick if (cred->cr_uid != 0 && freespace(fs, fs->fs_minfree) <= 0) 1504792Smckusic goto nospace; 15139678Smckusick if ((bprev = ip->i_db[lbprev]) == 0) { 1526716Smckusick printf("dev = 0x%x, bsize = %d, bprev = %d, fs = %s\n", 1536716Smckusick ip->i_dev, fs->fs_bsize, bprev, fs->fs_fsmnt); 15451469Sbostic panic("ffs_realloccg: bad bprev"); 1556716Smckusick } 15639678Smckusick /* 15739678Smckusick * Allocate the extra space in the buffer. 15839678Smckusick */ 15939678Smckusick if (error = bread(ITOV(ip), lbprev, osize, NOCRED, &bp)) { 16039678Smckusick brelse(bp); 16139678Smckusick return (error); 16239678Smckusick } 16345173Smckusick #ifdef QUOTA 16445173Smckusick if (error = chkdq(ip, (long)btodb(nsize - osize), cred, 0)) { 16545173Smckusick brelse(bp); 16645173Smckusick return (error); 16745173Smckusick } 16845173Smckusick #endif 16939678Smckusick /* 17039678Smckusick * Check for extension in the existing location. 17139678Smckusick */ 1726294Smckusick cg = dtog(fs, bprev); 17351469Sbostic if (bno = ffs_fragextend(ip, cg, (long)bprev, osize, nsize)) { 17439887Smckusick if (bp->b_blkno != fsbtodb(fs, bno)) 17539678Smckusick panic("bad blockno"); 17639762Smckusick ip->i_blocks += btodb(nsize - osize); 17764603Sbostic ip->i_flag |= IN_CHANGE | IN_UPDATE; 17848948Smckusick allocbuf(bp, nsize); 17948948Smckusick bp->b_flags |= B_DONE; 18064508Sbostic bzero((char *)bp->b_data + osize, (u_int)nsize - osize); 18137735Smckusick *bpp = bp; 18237735Smckusick return (0); 1834463Smckusic } 18439678Smckusick /* 18539678Smckusick * Allocate a new disk location. 18639678Smckusick */ 1874948Smckusic if (bpref >= fs->fs_size) 1884948Smckusic bpref = 0; 18926253Skarels switch ((int)fs->fs_optim) { 19025256Smckusick case FS_OPTSPACE: 19125256Smckusick /* 19225256Smckusick * Allocate an exact sized fragment. Although this makes 19325256Smckusick * best use of space, we will waste time relocating it if 19425256Smckusick * the file continues to grow. If the fragmentation is 19525256Smckusick * less than half of the minimum free reserve, we choose 19625256Smckusick * to begin optimizing for time. 19725256Smckusick */ 19824698Smckusick request = nsize; 19925256Smckusick if (fs->fs_minfree < 5 || 20025256Smckusick fs->fs_cstotal.cs_nffree > 20125256Smckusick fs->fs_dsize * fs->fs_minfree / (2 * 100)) 20225256Smckusick break; 20325256Smckusick log(LOG_NOTICE, "%s: optimization changed from SPACE to TIME\n", 20425256Smckusick fs->fs_fsmnt); 20525256Smckusick fs->fs_optim = FS_OPTTIME; 20625256Smckusick break; 20725256Smckusick case FS_OPTTIME: 20825256Smckusick /* 20951469Sbostic * At this point we have discovered a file that is trying to 21051469Sbostic * grow a small fragment to a larger fragment. To save time, 21151469Sbostic * we allocate a full sized block, then free the unused portion. 21251469Sbostic * If the file continues to grow, the `ffs_fragextend' call 21351469Sbostic * above will be able to grow it in place without further 21451469Sbostic * copying. If aberrant programs cause disk fragmentation to 21551469Sbostic * grow within 2% of the free reserve, we choose to begin 21651469Sbostic * optimizing for space. 21725256Smckusick */ 21824698Smckusick request = fs->fs_bsize; 21925256Smckusick if (fs->fs_cstotal.cs_nffree < 22025256Smckusick fs->fs_dsize * (fs->fs_minfree - 2) / 100) 22125256Smckusick break; 22225256Smckusick log(LOG_NOTICE, "%s: optimization changed from TIME to SPACE\n", 22325256Smckusick fs->fs_fsmnt); 22425256Smckusick fs->fs_optim = FS_OPTSPACE; 22525256Smckusick break; 22625256Smckusick default: 22725256Smckusick printf("dev = 0x%x, optim = %d, fs = %s\n", 22825256Smckusick ip->i_dev, fs->fs_optim, fs->fs_fsmnt); 22951469Sbostic panic("ffs_realloccg: bad optim"); 23025256Smckusick /* NOTREACHED */ 23125256Smckusick } 23251469Sbostic bno = (daddr_t)ffs_hashalloc(ip, cg, (long)bpref, request, 23351469Sbostic (u_long (*)())ffs_alloccg); 2346567Smckusic if (bno > 0) { 23545719Smckusick bp->b_blkno = fsbtodb(fs, bno); 23645719Smckusick (void) vnode_pager_uncache(ITOV(ip)); 23753059Smckusick ffs_blkfree(ip, bprev, (long)osize); 23824698Smckusick if (nsize < request) 23951469Sbostic ffs_blkfree(ip, bno + numfrags(fs, nsize), 24053059Smckusick (long)(request - nsize)); 24112643Ssam ip->i_blocks += btodb(nsize - osize); 24264603Sbostic ip->i_flag |= IN_CHANGE | IN_UPDATE; 24348948Smckusick allocbuf(bp, nsize); 24448948Smckusick bp->b_flags |= B_DONE; 24564508Sbostic bzero((char *)bp->b_data + osize, (u_int)nsize - osize); 24637735Smckusick *bpp = bp; 24737735Smckusick return (0); 2484463Smckusic } 24945173Smckusick #ifdef QUOTA 25045173Smckusick /* 25145173Smckusick * Restore user's disk quota because allocation failed. 25245173Smckusick */ 25345173Smckusick (void) chkdq(ip, (long)-btodb(nsize - osize), cred, FORCE); 25445173Smckusick #endif 25539678Smckusick brelse(bp); 2564792Smckusic nospace: 2574463Smckusic /* 2584463Smckusic * no space available 2594463Smckusic */ 26051469Sbostic ffs_fserr(fs, cred->cr_uid, "file system full"); 2614426Smckusic uprintf("\n%s: write failed, file system is full\n", fs->fs_fsmnt); 26237735Smckusick return (ENOSPC); 2634426Smckusic } 2644426Smckusic 2655375Smckusic /* 26665999Smckusick * Reallocate a sequence of blocks into a contiguous sequence of blocks. 26765999Smckusick * 26865999Smckusick * The vnode and an array of buffer pointers for a range of sequential 26965999Smckusick * logical blocks to be made contiguous is given. The allocator attempts 27065999Smckusick * to find a range of sequential blocks starting as close as possible to 27165999Smckusick * an fs_rotdelay offset from the end of the allocation for the logical 27265999Smckusick * block immediately preceeding the current range. If successful, the 27365999Smckusick * physical block numbers in the buffer pointers and in the inode are 27465999Smckusick * changed to reflect the new allocation. If unsuccessful, the allocation 27565999Smckusick * is left unchanged. The success in doing the reallocation is returned. 27665999Smckusick * Note that the error return is not reflected back to the user. Rather 27765999Smckusick * the previous block allocation will be used. 27865999Smckusick */ 27966176Smckusick #include <sys/sysctl.h> 28066176Smckusick int doasyncfree = 1; 281*67392Smkm #ifdef DEBUG 28266176Smckusick struct ctldebug debug14 = { "doasyncfree", &doasyncfree }; 283*67392Smkm #endif 284*67392Smkm 28565999Smckusick int 28665999Smckusick ffs_reallocblks(ap) 28765999Smckusick struct vop_reallocblks_args /* { 28865999Smckusick struct vnode *a_vp; 28965999Smckusick struct cluster_save *a_buflist; 29065999Smckusick } */ *ap; 29165999Smckusick { 29265999Smckusick struct fs *fs; 29365999Smckusick struct inode *ip; 29465999Smckusick struct vnode *vp; 29565999Smckusick struct buf *sbp, *ebp; 29665999Smckusick daddr_t *bap, *sbap, *ebap; 29765999Smckusick struct cluster_save *buflist; 29865999Smckusick daddr_t start_lbn, end_lbn, soff, eoff, newblk, blkno; 29965999Smckusick struct indir start_ap[NIADDR + 1], end_ap[NIADDR + 1], *idp; 30065999Smckusick int i, len, start_lvl, end_lvl, pref, ssize; 30165999Smckusick 30265999Smckusick vp = ap->a_vp; 30365999Smckusick ip = VTOI(vp); 30465999Smckusick fs = ip->i_fs; 30565999Smckusick if (fs->fs_contigsumsize <= 0) 30665999Smckusick return (ENOSPC); 30765999Smckusick buflist = ap->a_buflist; 30865999Smckusick len = buflist->bs_nchildren; 30965999Smckusick start_lbn = buflist->bs_children[0]->b_lblkno; 31065999Smckusick end_lbn = start_lbn + len - 1; 31165999Smckusick #ifdef DIAGNOSTIC 31265999Smckusick for (i = 1; i < len; i++) 31365999Smckusick if (buflist->bs_children[i]->b_lblkno != start_lbn + i) 31465999Smckusick panic("ffs_reallocblks: non-cluster"); 31565999Smckusick #endif 31665999Smckusick /* 31765999Smckusick * If the latest allocation is in a new cylinder group, assume that 31865999Smckusick * the filesystem has decided to move and do not force it back to 31965999Smckusick * the previous cylinder group. 32065999Smckusick */ 32165999Smckusick if (dtog(fs, dbtofsb(fs, buflist->bs_children[0]->b_blkno)) != 32265999Smckusick dtog(fs, dbtofsb(fs, buflist->bs_children[len - 1]->b_blkno))) 32365999Smckusick return (ENOSPC); 32465999Smckusick if (ufs_getlbns(vp, start_lbn, start_ap, &start_lvl) || 32565999Smckusick ufs_getlbns(vp, end_lbn, end_ap, &end_lvl)) 32665999Smckusick return (ENOSPC); 32765999Smckusick /* 32865999Smckusick * Get the starting offset and block map for the first block. 32965999Smckusick */ 33065999Smckusick if (start_lvl == 0) { 33165999Smckusick sbap = &ip->i_db[0]; 33265999Smckusick soff = start_lbn; 33365999Smckusick } else { 33465999Smckusick idp = &start_ap[start_lvl - 1]; 33565999Smckusick if (bread(vp, idp->in_lbn, (int)fs->fs_bsize, NOCRED, &sbp)) { 33665999Smckusick brelse(sbp); 33765999Smckusick return (ENOSPC); 33865999Smckusick } 33965999Smckusick sbap = (daddr_t *)sbp->b_data; 34065999Smckusick soff = idp->in_off; 34165999Smckusick } 34265999Smckusick /* 34365999Smckusick * Find the preferred location for the cluster. 34465999Smckusick */ 34565999Smckusick pref = ffs_blkpref(ip, start_lbn, soff, sbap); 34665999Smckusick /* 34765999Smckusick * If the block range spans two block maps, get the second map. 34865999Smckusick */ 34966086Smckusick if (end_lvl == 0 || (idp = &end_ap[end_lvl - 1])->in_off + 1 >= len) { 35065999Smckusick ssize = len; 35165999Smckusick } else { 35266086Smckusick #ifdef DIAGNOSTIC 35366086Smckusick if (start_ap[start_lvl-1].in_lbn == idp->in_lbn) 35466086Smckusick panic("ffs_reallocblk: start == end"); 35566086Smckusick #endif 35665999Smckusick ssize = len - (idp->in_off + 1); 35765999Smckusick if (bread(vp, idp->in_lbn, (int)fs->fs_bsize, NOCRED, &ebp)) 35865999Smckusick goto fail; 35965999Smckusick ebap = (daddr_t *)ebp->b_data; 36065999Smckusick } 36165999Smckusick /* 36265999Smckusick * Search the block map looking for an allocation of the desired size. 36365999Smckusick */ 36465999Smckusick if ((newblk = (daddr_t)ffs_hashalloc(ip, dtog(fs, pref), (long)pref, 36565999Smckusick len, (u_long (*)())ffs_clusteralloc)) == 0) 36665999Smckusick goto fail; 36765999Smckusick /* 36865999Smckusick * We have found a new contiguous block. 36965999Smckusick * 37065999Smckusick * First we have to replace the old block pointers with the new 37165999Smckusick * block pointers in the inode and indirect blocks associated 37265999Smckusick * with the file. 37365999Smckusick */ 37465999Smckusick blkno = newblk; 37565999Smckusick for (bap = &sbap[soff], i = 0; i < len; i++, blkno += fs->fs_frag) { 37665999Smckusick if (i == ssize) 37765999Smckusick bap = ebap; 37865999Smckusick #ifdef DIAGNOSTIC 37965999Smckusick if (buflist->bs_children[i]->b_blkno != fsbtodb(fs, *bap)) 38065999Smckusick panic("ffs_reallocblks: alloc mismatch"); 38165999Smckusick #endif 38265999Smckusick *bap++ = blkno; 38365999Smckusick } 38465999Smckusick /* 38565999Smckusick * Next we must write out the modified inode and indirect blocks. 38666176Smckusick * For strict correctness, the writes should be synchronous since 38766176Smckusick * the old block values may have been written to disk. In practise 38866176Smckusick * they are almost never written, but if we are concerned about 38966176Smckusick * strict correctness, the `doasyncfree' flag should be set to zero. 39065999Smckusick * 39166176Smckusick * The test on `doasyncfree' should be changed to test a flag 39266176Smckusick * that shows whether the associated buffers and inodes have 39366176Smckusick * been written. The flag should be set when the cluster is 39466176Smckusick * started and cleared whenever the buffer or inode is flushed. 39566176Smckusick * We can then check below to see if it is set, and do the 39666176Smckusick * synchronous write only when it has been cleared. 39765999Smckusick */ 39865999Smckusick if (sbap != &ip->i_db[0]) { 39966176Smckusick if (doasyncfree) 40066176Smckusick bdwrite(sbp); 40166176Smckusick else 40266176Smckusick bwrite(sbp); 40365999Smckusick } else { 40465999Smckusick ip->i_flag |= IN_CHANGE | IN_UPDATE; 40566176Smckusick if (!doasyncfree) 40666176Smckusick VOP_UPDATE(vp, &time, &time, MNT_WAIT); 40765999Smckusick } 40865999Smckusick if (ssize < len) 40966176Smckusick if (doasyncfree) 41066176Smckusick bdwrite(ebp); 41166176Smckusick else 41266176Smckusick bwrite(ebp); 41365999Smckusick /* 41465999Smckusick * Last, free the old blocks and assign the new blocks to the buffers. 41565999Smckusick */ 41665999Smckusick for (blkno = newblk, i = 0; i < len; i++, blkno += fs->fs_frag) { 41765999Smckusick ffs_blkfree(ip, dbtofsb(fs, buflist->bs_children[i]->b_blkno), 41865999Smckusick fs->fs_bsize); 41965999Smckusick buflist->bs_children[i]->b_blkno = fsbtodb(fs, blkno); 42065999Smckusick } 42165999Smckusick return (0); 42265999Smckusick 42365999Smckusick fail: 42465999Smckusick if (ssize < len) 42565999Smckusick brelse(ebp); 42665999Smckusick if (sbap != &ip->i_db[0]) 42765999Smckusick brelse(sbp); 42865999Smckusick return (ENOSPC); 42965999Smckusick } 43065999Smckusick 43165999Smckusick /* 4325375Smckusic * Allocate an inode in the file system. 4335375Smckusic * 43451469Sbostic * If allocating a directory, use ffs_dirpref to select the inode. 43551469Sbostic * If allocating in a directory, the following hierarchy is followed: 43651469Sbostic * 1) allocate the preferred inode. 4375375Smckusic * 2) allocate an inode in the same cylinder group. 4385375Smckusic * 3) quadradically rehash into other cylinder groups, until an 4395375Smckusic * available inode is located. 4405375Smckusic * If no inode preference is given the following heirarchy is used 4415375Smckusic * to allocate an inode: 4425375Smckusic * 1) allocate an inode in cylinder group 0. 4435375Smckusic * 2) quadradically rehash into other cylinder groups, until an 4445375Smckusic * available inode is located. 4455375Smckusic */ 44654653Smckusick ffs_valloc(ap) 44754653Smckusick struct vop_valloc_args /* { 44854653Smckusick struct vnode *a_pvp; 44954653Smckusick int a_mode; 45054653Smckusick struct ucred *a_cred; 45154653Smckusick struct vnode **a_vpp; 45254653Smckusick } */ *ap; 4534359Smckusick { 45453865Sheideman register struct vnode *pvp = ap->a_pvp; 45551541Smckusick register struct inode *pip; 4564359Smckusick register struct fs *fs; 4574359Smckusick register struct inode *ip; 45854653Smckusick mode_t mode = ap->a_mode; 45951469Sbostic ino_t ino, ipref; 46037735Smckusick int cg, error; 4614359Smckusick 46253583Sheideman *ap->a_vpp = NULL; 46353865Sheideman pip = VTOI(pvp); 4645965Smckusic fs = pip->i_fs; 4654792Smckusic if (fs->fs_cstotal.cs_nifree == 0) 4664359Smckusick goto noinodes; 46751469Sbostic 46854653Smckusick if ((mode & IFMT) == IFDIR) 46951541Smckusick ipref = ffs_dirpref(fs); 47051469Sbostic else 47151469Sbostic ipref = pip->i_number; 4724948Smckusic if (ipref >= fs->fs_ncg * fs->fs_ipg) 4734948Smckusic ipref = 0; 47464603Sbostic cg = ino_to_cg(fs, ipref); 47564603Sbostic ino = (ino_t)ffs_hashalloc(pip, cg, (long)ipref, mode, ffs_nodealloccg); 4764359Smckusick if (ino == 0) 4774359Smckusick goto noinodes; 47854653Smckusick error = VFS_VGET(pvp->v_mount, ino, ap->a_vpp); 47937735Smckusick if (error) { 48054653Smckusick VOP_VFREE(pvp, ino, mode); 48137735Smckusick return (error); 4824359Smckusick } 48353583Sheideman ip = VTOI(*ap->a_vpp); 4846716Smckusick if (ip->i_mode) { 48554653Smckusick printf("mode = 0%o, inum = %d, fs = %s\n", 4866716Smckusick ip->i_mode, ip->i_number, fs->fs_fsmnt); 48751541Smckusick panic("ffs_valloc: dup alloc"); 4886716Smckusick } 48912643Ssam if (ip->i_blocks) { /* XXX */ 49012643Ssam printf("free inode %s/%d had %d blocks\n", 49112643Ssam fs->fs_fsmnt, ino, ip->i_blocks); 49212643Ssam ip->i_blocks = 0; 49312643Ssam } 49439516Smckusick ip->i_flags = 0; 49538255Smckusick /* 49638255Smckusick * Set up a new generation number for this inode. 49738255Smckusick */ 49838255Smckusick if (++nextgennumber < (u_long)time.tv_sec) 49938255Smckusick nextgennumber = time.tv_sec; 50038255Smckusick ip->i_gen = nextgennumber; 50137735Smckusick return (0); 5024359Smckusick noinodes: 50353583Sheideman ffs_fserr(fs, ap->a_cred->cr_uid, "out of inodes"); 5046294Smckusick uprintf("\n%s: create/symlink failed, no inodes free\n", fs->fs_fsmnt); 50537735Smckusick return (ENOSPC); 5064359Smckusick } 5074359Smckusick 5084651Smckusic /* 5095375Smckusic * Find a cylinder to place a directory. 5105375Smckusic * 5115375Smckusic * The policy implemented by this algorithm is to select from 5125375Smckusic * among those cylinder groups with above the average number of 5135375Smckusic * free inodes, the one with the smallest number of directories. 5144651Smckusic */ 51551469Sbostic static ino_t 51651469Sbostic ffs_dirpref(fs) 5175965Smckusic register struct fs *fs; 5184359Smckusick { 5194651Smckusic int cg, minndir, mincg, avgifree; 5204359Smckusick 5214792Smckusic avgifree = fs->fs_cstotal.cs_nifree / fs->fs_ncg; 5224651Smckusic minndir = fs->fs_ipg; 5234359Smckusick mincg = 0; 5244651Smckusic for (cg = 0; cg < fs->fs_ncg; cg++) 5255322Smckusic if (fs->fs_cs(fs, cg).cs_ndir < minndir && 5265322Smckusic fs->fs_cs(fs, cg).cs_nifree >= avgifree) { 5274359Smckusick mincg = cg; 5285322Smckusic minndir = fs->fs_cs(fs, cg).cs_ndir; 5294359Smckusick } 5309163Ssam return ((ino_t)(fs->fs_ipg * mincg)); 5314359Smckusick } 5324359Smckusick 5334651Smckusic /* 5349163Ssam * Select the desired position for the next block in a file. The file is 5359163Ssam * logically divided into sections. The first section is composed of the 5369163Ssam * direct blocks. Each additional section contains fs_maxbpg blocks. 5379163Ssam * 5389163Ssam * If no blocks have been allocated in the first section, the policy is to 5399163Ssam * request a block in the same cylinder group as the inode that describes 5409163Ssam * the file. If no blocks have been allocated in any other section, the 5419163Ssam * policy is to place the section in a cylinder group with a greater than 5429163Ssam * average number of free blocks. An appropriate cylinder group is found 54317696Smckusick * by using a rotor that sweeps the cylinder groups. When a new group of 54417696Smckusick * blocks is needed, the sweep begins in the cylinder group following the 54517696Smckusick * cylinder group from which the previous allocation was made. The sweep 54617696Smckusick * continues until a cylinder group with greater than the average number 54717696Smckusick * of free blocks is found. If the allocation is for the first block in an 54817696Smckusick * indirect block, the information on the previous allocation is unavailable; 54917696Smckusick * here a best guess is made based upon the logical block number being 55017696Smckusick * allocated. 5519163Ssam * 5529163Ssam * If a section is already partially allocated, the policy is to 5539163Ssam * contiguously allocate fs_maxcontig blocks. The end of one of these 5549163Ssam * contiguous blocks and the beginning of the next is physically separated 5559163Ssam * so that the disk head will be in transit between them for at least 5569163Ssam * fs_rotdelay milliseconds. This is to allow time for the processor to 5579163Ssam * schedule another I/O transfer. 5584651Smckusic */ 5595212Smckusic daddr_t 56051469Sbostic ffs_blkpref(ip, lbn, indx, bap) 5619163Ssam struct inode *ip; 5629163Ssam daddr_t lbn; 5639163Ssam int indx; 5649163Ssam daddr_t *bap; 5659163Ssam { 5665965Smckusic register struct fs *fs; 56717696Smckusick register int cg; 56817696Smckusick int avgbfree, startcg; 5699163Ssam daddr_t nextblk; 5704651Smckusic 5719163Ssam fs = ip->i_fs; 5729163Ssam if (indx % fs->fs_maxbpg == 0 || bap[indx - 1] == 0) { 5739163Ssam if (lbn < NDADDR) { 57464603Sbostic cg = ino_to_cg(fs, ip->i_number); 5755322Smckusic return (fs->fs_fpg * cg + fs->fs_frag); 5764651Smckusic } 5779163Ssam /* 5789163Ssam * Find a cylinder with greater than average number of 5799163Ssam * unused data blocks. 5809163Ssam */ 58117696Smckusick if (indx == 0 || bap[indx - 1] == 0) 58264603Sbostic startcg = 58364603Sbostic ino_to_cg(fs, ip->i_number) + lbn / fs->fs_maxbpg; 58417696Smckusick else 58517696Smckusick startcg = dtog(fs, bap[indx - 1]) + 1; 58617696Smckusick startcg %= fs->fs_ncg; 5879163Ssam avgbfree = fs->fs_cstotal.cs_nbfree / fs->fs_ncg; 58817696Smckusick for (cg = startcg; cg < fs->fs_ncg; cg++) 5899163Ssam if (fs->fs_cs(fs, cg).cs_nbfree >= avgbfree) { 5909163Ssam fs->fs_cgrotor = cg; 5919163Ssam return (fs->fs_fpg * cg + fs->fs_frag); 5929163Ssam } 59317696Smckusick for (cg = 0; cg <= startcg; cg++) 5949163Ssam if (fs->fs_cs(fs, cg).cs_nbfree >= avgbfree) { 5959163Ssam fs->fs_cgrotor = cg; 5969163Ssam return (fs->fs_fpg * cg + fs->fs_frag); 5979163Ssam } 5989163Ssam return (NULL); 5999163Ssam } 6009163Ssam /* 6019163Ssam * One or more previous blocks have been laid out. If less 6029163Ssam * than fs_maxcontig previous blocks are contiguous, the 6039163Ssam * next block is requested contiguously, otherwise it is 6049163Ssam * requested rotationally delayed by fs_rotdelay milliseconds. 6059163Ssam */ 6069163Ssam nextblk = bap[indx - 1] + fs->fs_frag; 60756665Smargo if (indx < fs->fs_maxcontig || bap[indx - fs->fs_maxcontig] + 60856665Smargo blkstofrags(fs, fs->fs_maxcontig) != nextblk) 6099163Ssam return (nextblk); 6109163Ssam if (fs->fs_rotdelay != 0) 6119163Ssam /* 6129163Ssam * Here we convert ms of delay to frags as: 6139163Ssam * (frags) = (ms) * (rev/sec) * (sect/rev) / 6149163Ssam * ((sect/frag) * (ms/sec)) 6159163Ssam * then round up to the next block. 6169163Ssam */ 6179163Ssam nextblk += roundup(fs->fs_rotdelay * fs->fs_rps * fs->fs_nsect / 6189163Ssam (NSPF(fs) * 1000), fs->fs_frag); 6199163Ssam return (nextblk); 6204651Smckusic } 6214651Smckusic 6225375Smckusic /* 6235375Smckusic * Implement the cylinder overflow algorithm. 6245375Smckusic * 6255375Smckusic * The policy implemented by this algorithm is: 6265375Smckusic * 1) allocate the block in its requested cylinder group. 6275375Smckusic * 2) quadradically rehash on the cylinder group number. 6285375Smckusic * 3) brute force search for a free block. 6295375Smckusic */ 6305212Smckusic /*VARARGS5*/ 63151469Sbostic static u_long 63251469Sbostic ffs_hashalloc(ip, cg, pref, size, allocator) 6335965Smckusic struct inode *ip; 6344359Smckusick int cg; 6354359Smckusick long pref; 6364359Smckusick int size; /* size for data blocks, mode for inodes */ 6375212Smckusic u_long (*allocator)(); 6384359Smckusick { 6395965Smckusic register struct fs *fs; 6404359Smckusick long result; 6414359Smckusick int i, icg = cg; 6424359Smckusick 6435965Smckusic fs = ip->i_fs; 6444359Smckusick /* 6454359Smckusick * 1: preferred cylinder group 6464359Smckusick */ 6475965Smckusic result = (*allocator)(ip, cg, pref, size); 6484359Smckusick if (result) 6494359Smckusick return (result); 6504359Smckusick /* 6514359Smckusick * 2: quadratic rehash 6524359Smckusick */ 6534359Smckusick for (i = 1; i < fs->fs_ncg; i *= 2) { 6544359Smckusick cg += i; 6554359Smckusick if (cg >= fs->fs_ncg) 6564359Smckusick cg -= fs->fs_ncg; 6575965Smckusic result = (*allocator)(ip, cg, 0, size); 6584359Smckusick if (result) 6594359Smckusick return (result); 6604359Smckusick } 6614359Smckusick /* 6624359Smckusick * 3: brute force search 66310847Ssam * Note that we start at i == 2, since 0 was checked initially, 66410847Ssam * and 1 is always checked in the quadratic rehash. 6654359Smckusick */ 66610848Smckusick cg = (icg + 2) % fs->fs_ncg; 66710847Ssam for (i = 2; i < fs->fs_ncg; i++) { 6685965Smckusic result = (*allocator)(ip, cg, 0, size); 6694359Smckusick if (result) 6704359Smckusick return (result); 6714359Smckusick cg++; 6724359Smckusick if (cg == fs->fs_ncg) 6734359Smckusick cg = 0; 6744359Smckusick } 6756294Smckusick return (NULL); 6764359Smckusick } 6774359Smckusick 6785375Smckusic /* 6795375Smckusic * Determine whether a fragment can be extended. 6805375Smckusic * 6815375Smckusic * Check to see if the necessary fragments are available, and 6825375Smckusic * if they are, allocate them. 6835375Smckusic */ 68451469Sbostic static daddr_t 68551469Sbostic ffs_fragextend(ip, cg, bprev, osize, nsize) 6865965Smckusic struct inode *ip; 6874426Smckusic int cg; 6884463Smckusic long bprev; 6894426Smckusic int osize, nsize; 6904426Smckusic { 6915965Smckusic register struct fs *fs; 6924463Smckusic register struct cg *cgp; 69337735Smckusick struct buf *bp; 6944463Smckusic long bno; 6954463Smckusic int frags, bbase; 69637735Smckusick int i, error; 6974426Smckusic 6985965Smckusic fs = ip->i_fs; 69917224Smckusick if (fs->fs_cs(fs, cg).cs_nffree < numfrags(fs, nsize - osize)) 7006531Smckusick return (NULL); 7015960Smckusic frags = numfrags(fs, nsize); 70217224Smckusick bbase = fragnum(fs, bprev); 70317224Smckusick if (bbase > fragnum(fs, (bprev + frags - 1))) { 70430749Skarels /* cannot extend across a block boundary */ 7056294Smckusick return (NULL); 7064463Smckusic } 70737735Smckusick error = bread(ip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), 70838776Smckusick (int)fs->fs_cgsize, NOCRED, &bp); 70937735Smckusick if (error) { 71037735Smckusick brelse(bp); 71137735Smckusick return (NULL); 71237735Smckusick } 71364508Sbostic cgp = (struct cg *)bp->b_data; 71437735Smckusick if (!cg_chkmagic(cgp)) { 7155960Smckusic brelse(bp); 7166294Smckusick return (NULL); 7175960Smckusic } 7188105Sroot cgp->cg_time = time.tv_sec; 7195377Smckusic bno = dtogd(fs, bprev); 7205960Smckusic for (i = numfrags(fs, osize); i < frags; i++) 72134143Smckusick if (isclr(cg_blksfree(cgp), bno + i)) { 7225361Smckusic brelse(bp); 7236294Smckusick return (NULL); 7245361Smckusic } 7255361Smckusic /* 7265361Smckusic * the current fragment can be extended 7275361Smckusic * deduct the count on fragment being extended into 7285361Smckusic * increase the count on the remaining fragment (if any) 7295361Smckusic * allocate the extended piece 7305361Smckusic */ 7315361Smckusic for (i = frags; i < fs->fs_frag - bbase; i++) 73234143Smckusick if (isclr(cg_blksfree(cgp), bno + i)) 7334463Smckusic break; 7345960Smckusic cgp->cg_frsum[i - numfrags(fs, osize)]--; 7355361Smckusic if (i != frags) 7365361Smckusic cgp->cg_frsum[i - frags]++; 7375960Smckusic for (i = numfrags(fs, osize); i < frags; i++) { 73834143Smckusick clrbit(cg_blksfree(cgp), bno + i); 7395361Smckusic cgp->cg_cs.cs_nffree--; 7405361Smckusic fs->fs_cstotal.cs_nffree--; 7415361Smckusic fs->fs_cs(fs, cg).cs_nffree--; 7424463Smckusic } 74350893Smckusick fs->fs_fmod = 1; 7445361Smckusic bdwrite(bp); 7455361Smckusic return (bprev); 7464426Smckusic } 7474426Smckusic 7485375Smckusic /* 7495375Smckusic * Determine whether a block can be allocated. 7505375Smckusic * 75164603Sbostic * Check to see if a block of the appropriate size is available, 7525375Smckusic * and if it is, allocate it. 7535375Smckusic */ 75451779Smarc static daddr_t 75551469Sbostic ffs_alloccg(ip, cg, bpref, size) 7565965Smckusic struct inode *ip; 7574359Smckusick int cg; 7584359Smckusick daddr_t bpref; 7594359Smckusick int size; 7604359Smckusick { 7615965Smckusic register struct fs *fs; 7624463Smckusic register struct cg *cgp; 76337735Smckusick struct buf *bp; 7644463Smckusic register int i; 76537735Smckusick int error, bno, frags, allocsiz; 7664359Smckusick 7675965Smckusic fs = ip->i_fs; 7685322Smckusic if (fs->fs_cs(fs, cg).cs_nbfree == 0 && size == fs->fs_bsize) 7696294Smckusick return (NULL); 77037735Smckusick error = bread(ip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), 77138776Smckusick (int)fs->fs_cgsize, NOCRED, &bp); 77237735Smckusick if (error) { 77337735Smckusick brelse(bp); 77437735Smckusick return (NULL); 77537735Smckusick } 77664508Sbostic cgp = (struct cg *)bp->b_data; 77737735Smckusick if (!cg_chkmagic(cgp) || 77815950Smckusick (cgp->cg_cs.cs_nbfree == 0 && size == fs->fs_bsize)) { 7795960Smckusic brelse(bp); 7806294Smckusick return (NULL); 7815960Smckusic } 7828105Sroot cgp->cg_time = time.tv_sec; 7835322Smckusic if (size == fs->fs_bsize) { 78451469Sbostic bno = ffs_alloccgblk(fs, cgp, bpref); 7854463Smckusic bdwrite(bp); 7864463Smckusic return (bno); 7874463Smckusic } 7884463Smckusic /* 7894463Smckusic * check to see if any fragments are already available 7904463Smckusic * allocsiz is the size which will be allocated, hacking 7914463Smckusic * it down to a smaller size if necessary 7924463Smckusic */ 7935960Smckusic frags = numfrags(fs, size); 7945322Smckusic for (allocsiz = frags; allocsiz < fs->fs_frag; allocsiz++) 7954463Smckusic if (cgp->cg_frsum[allocsiz] != 0) 7964463Smckusic break; 7975322Smckusic if (allocsiz == fs->fs_frag) { 7984463Smckusic /* 7994463Smckusic * no fragments were available, so a block will be 8004463Smckusic * allocated, and hacked up 8014463Smckusic */ 8024792Smckusic if (cgp->cg_cs.cs_nbfree == 0) { 8034463Smckusic brelse(bp); 8046294Smckusick return (NULL); 8054463Smckusic } 80651469Sbostic bno = ffs_alloccgblk(fs, cgp, bpref); 8075377Smckusic bpref = dtogd(fs, bno); 8085322Smckusic for (i = frags; i < fs->fs_frag; i++) 80934143Smckusick setbit(cg_blksfree(cgp), bpref + i); 8105322Smckusic i = fs->fs_frag - frags; 8114792Smckusic cgp->cg_cs.cs_nffree += i; 8124792Smckusic fs->fs_cstotal.cs_nffree += i; 8135322Smckusic fs->fs_cs(fs, cg).cs_nffree += i; 81450893Smckusick fs->fs_fmod = 1; 8154463Smckusic cgp->cg_frsum[i]++; 8164463Smckusic bdwrite(bp); 8174463Smckusic return (bno); 8184463Smckusic } 81951469Sbostic bno = ffs_mapsearch(fs, cgp, bpref, allocsiz); 82015950Smckusick if (bno < 0) { 82115950Smckusick brelse(bp); 8226294Smckusick return (NULL); 82315950Smckusick } 8244463Smckusic for (i = 0; i < frags; i++) 82534143Smckusick clrbit(cg_blksfree(cgp), bno + i); 8264792Smckusic cgp->cg_cs.cs_nffree -= frags; 8274792Smckusic fs->fs_cstotal.cs_nffree -= frags; 8285322Smckusic fs->fs_cs(fs, cg).cs_nffree -= frags; 82950893Smckusick fs->fs_fmod = 1; 8304463Smckusic cgp->cg_frsum[allocsiz]--; 8314463Smckusic if (frags != allocsiz) 8324463Smckusic cgp->cg_frsum[allocsiz - frags]++; 8334463Smckusic bdwrite(bp); 8344463Smckusic return (cg * fs->fs_fpg + bno); 8354463Smckusic } 8364463Smckusic 8375375Smckusic /* 8385375Smckusic * Allocate a block in a cylinder group. 8395375Smckusic * 8405375Smckusic * This algorithm implements the following policy: 8415375Smckusic * 1) allocate the requested block. 8425375Smckusic * 2) allocate a rotationally optimal block in the same cylinder. 8435375Smckusic * 3) allocate the next available block on the block rotor for the 8445375Smckusic * specified cylinder group. 8455375Smckusic * Note that this routine only allocates fs_bsize blocks; these 8465375Smckusic * blocks may be fragmented by the routine that allocates them. 8475375Smckusic */ 84851469Sbostic static daddr_t 84951469Sbostic ffs_alloccgblk(fs, cgp, bpref) 8505965Smckusic register struct fs *fs; 8514463Smckusic register struct cg *cgp; 8524463Smckusic daddr_t bpref; 8534463Smckusic { 85465999Smckusick daddr_t bno, blkno; 8556294Smckusick int cylno, pos, delta; 8564651Smckusic short *cylbp; 8575361Smckusic register int i; 8584463Smckusic 85965999Smckusick if (bpref == 0 || dtog(fs, bpref) != cgp->cg_cgx) { 8604651Smckusic bpref = cgp->cg_rotor; 8615361Smckusic goto norot; 8625361Smckusic } 86317224Smckusick bpref = blknum(fs, bpref); 8645377Smckusic bpref = dtogd(fs, bpref); 8655361Smckusic /* 8665361Smckusic * if the requested block is available, use it 8675361Smckusic */ 86851469Sbostic if (ffs_isblock(fs, cg_blksfree(cgp), fragstoblks(fs, bpref))) { 8695361Smckusic bno = bpref; 8705361Smckusic goto gotit; 8715361Smckusic } 8725361Smckusic /* 8735361Smckusic * check for a block available on the same cylinder 8745361Smckusic */ 8755361Smckusic cylno = cbtocylno(fs, bpref); 87634143Smckusick if (cg_blktot(cgp)[cylno] == 0) 8775375Smckusic goto norot; 8785375Smckusic if (fs->fs_cpc == 0) { 8795375Smckusic /* 88057000Smckusick * Block layout information is not available. 88157000Smckusick * Leaving bpref unchanged means we take the 88257000Smckusick * next available free block following the one 88357000Smckusick * we just allocated. Hopefully this will at 88457000Smckusick * least hit a track cache on drives of unknown 88557000Smckusick * geometry (e.g. SCSI). 8865375Smckusic */ 8875375Smckusic goto norot; 8885375Smckusic } 8895375Smckusic /* 8905361Smckusic * check the summary information to see if a block is 8915361Smckusic * available in the requested cylinder starting at the 8929163Ssam * requested rotational position and proceeding around. 8935361Smckusic */ 89434143Smckusick cylbp = cg_blks(fs, cgp, cylno); 8959163Ssam pos = cbtorpos(fs, bpref); 89634143Smckusick for (i = pos; i < fs->fs_nrpos; i++) 8975361Smckusic if (cylbp[i] > 0) 8985361Smckusic break; 89934143Smckusick if (i == fs->fs_nrpos) 9005361Smckusic for (i = 0; i < pos; i++) 9015361Smckusic if (cylbp[i] > 0) 9025361Smckusic break; 9035361Smckusic if (cylbp[i] > 0) { 9044651Smckusic /* 9055361Smckusic * found a rotational position, now find the actual 9065361Smckusic * block. A panic if none is actually there. 9074651Smckusic */ 9085361Smckusic pos = cylno % fs->fs_cpc; 9095361Smckusic bno = (cylno - pos) * fs->fs_spc / NSPB(fs); 91034143Smckusick if (fs_postbl(fs, pos)[i] == -1) { 9116716Smckusick printf("pos = %d, i = %d, fs = %s\n", 9126716Smckusick pos, i, fs->fs_fsmnt); 91351469Sbostic panic("ffs_alloccgblk: cyl groups corrupted"); 9146716Smckusick } 91534143Smckusick for (i = fs_postbl(fs, pos)[i];; ) { 91651469Sbostic if (ffs_isblock(fs, cg_blksfree(cgp), bno + i)) { 91711638Ssam bno = blkstofrags(fs, (bno + i)); 9185361Smckusic goto gotit; 9195361Smckusic } 92034143Smckusick delta = fs_rotbl(fs)[i]; 92134143Smckusick if (delta <= 0 || 92234143Smckusick delta + i > fragstoblks(fs, fs->fs_fpg)) 9234651Smckusic break; 9246294Smckusick i += delta; 9254651Smckusic } 9266716Smckusick printf("pos = %d, i = %d, fs = %s\n", pos, i, fs->fs_fsmnt); 92751469Sbostic panic("ffs_alloccgblk: can't find blk in cyl"); 9284359Smckusick } 9295361Smckusic norot: 9305361Smckusic /* 9315361Smckusic * no blocks in the requested cylinder, so take next 9325361Smckusic * available one in this cylinder group. 9335361Smckusic */ 93451469Sbostic bno = ffs_mapsearch(fs, cgp, bpref, (int)fs->fs_frag); 9356567Smckusic if (bno < 0) 9366294Smckusick return (NULL); 9374651Smckusic cgp->cg_rotor = bno; 9384359Smckusick gotit: 93965999Smckusick blkno = fragstoblks(fs, bno); 94065999Smckusick ffs_clrblock(fs, cg_blksfree(cgp), (long)blkno); 94165999Smckusick ffs_clusteracct(fs, cgp, blkno, -1); 9424792Smckusic cgp->cg_cs.cs_nbfree--; 9434792Smckusic fs->fs_cstotal.cs_nbfree--; 9445322Smckusic fs->fs_cs(fs, cgp->cg_cgx).cs_nbfree--; 9455375Smckusic cylno = cbtocylno(fs, bno); 94634143Smckusick cg_blks(fs, cgp, cylno)[cbtorpos(fs, bno)]--; 94734143Smckusick cg_blktot(cgp)[cylno]--; 94850893Smckusick fs->fs_fmod = 1; 9494651Smckusic return (cgp->cg_cgx * fs->fs_fpg + bno); 9504359Smckusick } 95134143Smckusick 9525375Smckusic /* 95365999Smckusick * Determine whether a cluster can be allocated. 95465999Smckusick * 95565999Smckusick * We do not currently check for optimal rotational layout if there 95665999Smckusick * are multiple choices in the same cylinder group. Instead we just 95765999Smckusick * take the first one that we find following bpref. 95865999Smckusick */ 95965999Smckusick static daddr_t 96065999Smckusick ffs_clusteralloc(ip, cg, bpref, len) 96165999Smckusick struct inode *ip; 96265999Smckusick int cg; 96365999Smckusick daddr_t bpref; 96465999Smckusick int len; 96565999Smckusick { 96665999Smckusick register struct fs *fs; 96765999Smckusick register struct cg *cgp; 96865999Smckusick struct buf *bp; 96965999Smckusick int i, run, bno, bit, map; 97065999Smckusick u_char *mapp; 97165999Smckusick 97265999Smckusick fs = ip->i_fs; 97365999Smckusick if (fs->fs_cs(fs, cg).cs_nbfree < len) 97465999Smckusick return (NULL); 97565999Smckusick if (bread(ip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), (int)fs->fs_cgsize, 97665999Smckusick NOCRED, &bp)) 97765999Smckusick goto fail; 97865999Smckusick cgp = (struct cg *)bp->b_data; 97965999Smckusick if (!cg_chkmagic(cgp)) 98065999Smckusick goto fail; 98165999Smckusick /* 98265999Smckusick * Check to see if a cluster of the needed size (or bigger) is 98365999Smckusick * available in this cylinder group. 98465999Smckusick */ 98565999Smckusick for (i = len; i <= fs->fs_contigsumsize; i++) 98665999Smckusick if (cg_clustersum(cgp)[i] > 0) 98765999Smckusick break; 98865999Smckusick if (i > fs->fs_contigsumsize) 98965999Smckusick goto fail; 99065999Smckusick /* 99165999Smckusick * Search the cluster map to find a big enough cluster. 99265999Smckusick * We take the first one that we find, even if it is larger 99365999Smckusick * than we need as we prefer to get one close to the previous 99465999Smckusick * block allocation. We do not search before the current 99565999Smckusick * preference point as we do not want to allocate a block 99665999Smckusick * that is allocated before the previous one (as we will 99765999Smckusick * then have to wait for another pass of the elevator 99865999Smckusick * algorithm before it will be read). We prefer to fail and 99965999Smckusick * be recalled to try an allocation in the next cylinder group. 100065999Smckusick */ 100165999Smckusick if (dtog(fs, bpref) != cg) 100265999Smckusick bpref = 0; 100365999Smckusick else 100465999Smckusick bpref = fragstoblks(fs, dtogd(fs, blknum(fs, bpref))); 100565999Smckusick mapp = &cg_clustersfree(cgp)[bpref / NBBY]; 100665999Smckusick map = *mapp++; 100765999Smckusick bit = 1 << (bpref % NBBY); 100865999Smckusick for (run = 0, i = bpref; i < cgp->cg_nclusterblks; i++) { 100965999Smckusick if ((map & bit) == 0) { 101065999Smckusick run = 0; 101165999Smckusick } else { 101265999Smckusick run++; 101365999Smckusick if (run == len) 101465999Smckusick break; 101565999Smckusick } 101665999Smckusick if ((i & (NBBY - 1)) != (NBBY - 1)) { 101765999Smckusick bit <<= 1; 101865999Smckusick } else { 101965999Smckusick map = *mapp++; 102065999Smckusick bit = 1; 102165999Smckusick } 102265999Smckusick } 102365999Smckusick if (i == cgp->cg_nclusterblks) 102465999Smckusick goto fail; 102565999Smckusick /* 102665999Smckusick * Allocate the cluster that we have found. 102765999Smckusick */ 102865999Smckusick bno = cg * fs->fs_fpg + blkstofrags(fs, i - run + 1); 102965999Smckusick len = blkstofrags(fs, len); 103065999Smckusick for (i = 0; i < len; i += fs->fs_frag) 103165999Smckusick if (ffs_alloccgblk(fs, cgp, bno + i) != bno + i) 103265999Smckusick panic("ffs_clusteralloc: lost block"); 103365999Smckusick brelse(bp); 103465999Smckusick return (bno); 103565999Smckusick 103665999Smckusick fail: 103765999Smckusick brelse(bp); 103865999Smckusick return (0); 103965999Smckusick } 104065999Smckusick 104165999Smckusick /* 10425375Smckusic * Determine whether an inode can be allocated. 10435375Smckusic * 10445375Smckusic * Check to see if an inode is available, and if it is, 10455375Smckusic * allocate it using the following policy: 10465375Smckusic * 1) allocate the requested inode. 10475375Smckusic * 2) allocate the next available inode after the requested 10485375Smckusic * inode in the specified cylinder group. 10495375Smckusic */ 105051469Sbostic static ino_t 105164603Sbostic ffs_nodealloccg(ip, cg, ipref, mode) 10525965Smckusic struct inode *ip; 10534359Smckusick int cg; 10544359Smckusick daddr_t ipref; 10554359Smckusick int mode; 10564359Smckusick { 10575965Smckusic register struct fs *fs; 10584463Smckusic register struct cg *cgp; 105916784Smckusick struct buf *bp; 106037735Smckusick int error, start, len, loc, map, i; 10614359Smckusick 10625965Smckusic fs = ip->i_fs; 10635322Smckusic if (fs->fs_cs(fs, cg).cs_nifree == 0) 10646294Smckusick return (NULL); 106537735Smckusick error = bread(ip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), 106638776Smckusick (int)fs->fs_cgsize, NOCRED, &bp); 106737735Smckusick if (error) { 106837735Smckusick brelse(bp); 106937735Smckusick return (NULL); 107037735Smckusick } 107164508Sbostic cgp = (struct cg *)bp->b_data; 107237735Smckusick if (!cg_chkmagic(cgp) || cgp->cg_cs.cs_nifree == 0) { 10735960Smckusic brelse(bp); 10746294Smckusick return (NULL); 10755960Smckusic } 10768105Sroot cgp->cg_time = time.tv_sec; 10774359Smckusick if (ipref) { 10784359Smckusick ipref %= fs->fs_ipg; 107934143Smckusick if (isclr(cg_inosused(cgp), ipref)) 10804359Smckusick goto gotit; 108116784Smckusick } 108216784Smckusick start = cgp->cg_irotor / NBBY; 108316784Smckusick len = howmany(fs->fs_ipg - cgp->cg_irotor, NBBY); 108434143Smckusick loc = skpc(0xff, len, &cg_inosused(cgp)[start]); 108516784Smckusick if (loc == 0) { 108617697Smckusick len = start + 1; 108717697Smckusick start = 0; 108834143Smckusick loc = skpc(0xff, len, &cg_inosused(cgp)[0]); 108917697Smckusick if (loc == 0) { 109065718Sbostic printf("cg = %d, irotor = %d, fs = %s\n", 109117697Smckusick cg, cgp->cg_irotor, fs->fs_fsmnt); 109264603Sbostic panic("ffs_nodealloccg: map corrupted"); 109317697Smckusick /* NOTREACHED */ 109417697Smckusick } 109516784Smckusick } 109616784Smckusick i = start + len - loc; 109734143Smckusick map = cg_inosused(cgp)[i]; 109816784Smckusick ipref = i * NBBY; 109916784Smckusick for (i = 1; i < (1 << NBBY); i <<= 1, ipref++) { 110016784Smckusick if ((map & i) == 0) { 11014359Smckusick cgp->cg_irotor = ipref; 11024359Smckusick goto gotit; 11034359Smckusick } 11044359Smckusick } 110516784Smckusick printf("fs = %s\n", fs->fs_fsmnt); 110664603Sbostic panic("ffs_nodealloccg: block not in map"); 110716784Smckusick /* NOTREACHED */ 11084359Smckusick gotit: 110934143Smckusick setbit(cg_inosused(cgp), ipref); 11104792Smckusic cgp->cg_cs.cs_nifree--; 11114792Smckusic fs->fs_cstotal.cs_nifree--; 11125322Smckusic fs->fs_cs(fs, cg).cs_nifree--; 111350893Smckusick fs->fs_fmod = 1; 11144359Smckusick if ((mode & IFMT) == IFDIR) { 11154792Smckusic cgp->cg_cs.cs_ndir++; 11164792Smckusic fs->fs_cstotal.cs_ndir++; 11175322Smckusic fs->fs_cs(fs, cg).cs_ndir++; 11184359Smckusick } 11194359Smckusick bdwrite(bp); 11204359Smckusick return (cg * fs->fs_ipg + ipref); 11214359Smckusick } 11224359Smckusick 11235375Smckusic /* 11245375Smckusic * Free a block or fragment. 11255375Smckusic * 11265375Smckusic * The specified block or fragment is placed back in the 11275375Smckusic * free map. If a fragment is deallocated, a possible 11285375Smckusic * block reassembly is checked. 11295375Smckusic */ 113051469Sbostic ffs_blkfree(ip, bno, size) 11315965Smckusic register struct inode *ip; 11324359Smckusick daddr_t bno; 113353059Smckusick long size; 11344359Smckusick { 11354359Smckusick register struct fs *fs; 11364359Smckusick register struct cg *cgp; 113737735Smckusick struct buf *bp; 113865999Smckusick daddr_t blkno; 113965999Smckusick int i, error, cg, blk, frags, bbase; 11404359Smckusick 11415965Smckusic fs = ip->i_fs; 114264508Sbostic if ((u_int)size > fs->fs_bsize || fragoff(fs, size) != 0) { 11436716Smckusick printf("dev = 0x%x, bsize = %d, size = %d, fs = %s\n", 11446716Smckusick ip->i_dev, fs->fs_bsize, size, fs->fs_fsmnt); 114531402Smckusick panic("blkfree: bad size"); 11466716Smckusick } 11475377Smckusic cg = dtog(fs, bno); 114864508Sbostic if ((u_int)bno >= fs->fs_size) { 11496567Smckusic printf("bad block %d, ino %d\n", bno, ip->i_number); 115053244Smckusick ffs_fserr(fs, ip->i_uid, "bad block"); 11514359Smckusick return; 11526567Smckusic } 115337735Smckusick error = bread(ip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), 115438776Smckusick (int)fs->fs_cgsize, NOCRED, &bp); 115537735Smckusick if (error) { 115637735Smckusick brelse(bp); 115737735Smckusick return; 115837735Smckusick } 115964508Sbostic cgp = (struct cg *)bp->b_data; 116037735Smckusick if (!cg_chkmagic(cgp)) { 11615960Smckusic brelse(bp); 11624359Smckusick return; 11635960Smckusic } 11648105Sroot cgp->cg_time = time.tv_sec; 11655377Smckusic bno = dtogd(fs, bno); 11665322Smckusic if (size == fs->fs_bsize) { 116765999Smckusick blkno = fragstoblks(fs, bno); 116865999Smckusick if (ffs_isblock(fs, cg_blksfree(cgp), blkno)) { 11696716Smckusick printf("dev = 0x%x, block = %d, fs = %s\n", 11706716Smckusick ip->i_dev, bno, fs->fs_fsmnt); 117131402Smckusick panic("blkfree: freeing free block"); 11726567Smckusic } 117365999Smckusick ffs_setblock(fs, cg_blksfree(cgp), blkno); 117465999Smckusick ffs_clusteracct(fs, cgp, blkno, 1); 11754792Smckusic cgp->cg_cs.cs_nbfree++; 11764792Smckusic fs->fs_cstotal.cs_nbfree++; 11775322Smckusic fs->fs_cs(fs, cg).cs_nbfree++; 11785375Smckusic i = cbtocylno(fs, bno); 117934143Smckusick cg_blks(fs, cgp, i)[cbtorpos(fs, bno)]++; 118034143Smckusick cg_blktot(cgp)[i]++; 11814426Smckusic } else { 118217224Smckusick bbase = bno - fragnum(fs, bno); 11834463Smckusic /* 11844463Smckusic * decrement the counts associated with the old frags 11854463Smckusic */ 118634143Smckusick blk = blkmap(fs, cg_blksfree(cgp), bbase); 118751469Sbostic ffs_fragacct(fs, blk, cgp->cg_frsum, -1); 11884463Smckusic /* 11894463Smckusic * deallocate the fragment 11904463Smckusic */ 11915960Smckusic frags = numfrags(fs, size); 11924463Smckusic for (i = 0; i < frags; i++) { 119334143Smckusick if (isset(cg_blksfree(cgp), bno + i)) { 11946716Smckusick printf("dev = 0x%x, block = %d, fs = %s\n", 11956716Smckusick ip->i_dev, bno + i, fs->fs_fsmnt); 119631402Smckusick panic("blkfree: freeing free frag"); 11976716Smckusick } 119834143Smckusick setbit(cg_blksfree(cgp), bno + i); 11994426Smckusic } 12006294Smckusick cgp->cg_cs.cs_nffree += i; 12016294Smckusick fs->fs_cstotal.cs_nffree += i; 12026294Smckusick fs->fs_cs(fs, cg).cs_nffree += i; 12034463Smckusic /* 12044463Smckusic * add back in counts associated with the new frags 12054463Smckusic */ 120634143Smckusick blk = blkmap(fs, cg_blksfree(cgp), bbase); 120751469Sbostic ffs_fragacct(fs, blk, cgp->cg_frsum, 1); 12084463Smckusic /* 12094463Smckusic * if a complete block has been reassembled, account for it 12104463Smckusic */ 121165999Smckusick blkno = fragstoblks(fs, bbase); 121265999Smckusick if (ffs_isblock(fs, cg_blksfree(cgp), blkno)) { 12135322Smckusic cgp->cg_cs.cs_nffree -= fs->fs_frag; 12145322Smckusic fs->fs_cstotal.cs_nffree -= fs->fs_frag; 12155322Smckusic fs->fs_cs(fs, cg).cs_nffree -= fs->fs_frag; 121665999Smckusick ffs_clusteracct(fs, cgp, blkno, 1); 12174792Smckusic cgp->cg_cs.cs_nbfree++; 12184792Smckusic fs->fs_cstotal.cs_nbfree++; 12195322Smckusic fs->fs_cs(fs, cg).cs_nbfree++; 12205375Smckusic i = cbtocylno(fs, bbase); 122134143Smckusick cg_blks(fs, cgp, i)[cbtorpos(fs, bbase)]++; 122234143Smckusick cg_blktot(cgp)[i]++; 12234426Smckusic } 12244426Smckusic } 122550893Smckusick fs->fs_fmod = 1; 12264359Smckusick bdwrite(bp); 12274359Smckusick } 12284359Smckusick 12295375Smckusic /* 12305375Smckusic * Free an inode. 12315375Smckusic * 12325375Smckusic * The specified inode is placed back in the free map. 12335375Smckusic */ 123453577Sheideman int 123554653Smckusick ffs_vfree(ap) 123654653Smckusick struct vop_vfree_args /* { 123754653Smckusick struct vnode *a_pvp; 123854653Smckusick ino_t a_ino; 123954653Smckusick int a_mode; 124054653Smckusick } */ *ap; 12414359Smckusick { 12424359Smckusick register struct fs *fs; 12434359Smckusick register struct cg *cgp; 124451541Smckusick register struct inode *pip; 124554653Smckusick ino_t ino = ap->a_ino; 124637735Smckusick struct buf *bp; 124737735Smckusick int error, cg; 12484359Smckusick 124953583Sheideman pip = VTOI(ap->a_pvp); 125051469Sbostic fs = pip->i_fs; 125154653Smckusick if ((u_int)ino >= fs->fs_ipg * fs->fs_ncg) 125254653Smckusick panic("ifree: range: dev = 0x%x, ino = %d, fs = %s\n", 125354653Smckusick pip->i_dev, ino, fs->fs_fsmnt); 125464603Sbostic cg = ino_to_cg(fs, ino); 125551469Sbostic error = bread(pip->i_devvp, fsbtodb(fs, cgtod(fs, cg)), 125638776Smckusick (int)fs->fs_cgsize, NOCRED, &bp); 125737735Smckusick if (error) { 125837735Smckusick brelse(bp); 125953577Sheideman return (0); 126037735Smckusick } 126164508Sbostic cgp = (struct cg *)bp->b_data; 126237735Smckusick if (!cg_chkmagic(cgp)) { 12635960Smckusic brelse(bp); 126453577Sheideman return (0); 12655960Smckusic } 12668105Sroot cgp->cg_time = time.tv_sec; 126754653Smckusick ino %= fs->fs_ipg; 126854653Smckusick if (isclr(cg_inosused(cgp), ino)) { 126954653Smckusick printf("dev = 0x%x, ino = %d, fs = %s\n", 127054653Smckusick pip->i_dev, ino, fs->fs_fsmnt); 127148057Smckusick if (fs->fs_ronly == 0) 127248057Smckusick panic("ifree: freeing free inode"); 12736716Smckusick } 127454653Smckusick clrbit(cg_inosused(cgp), ino); 127554653Smckusick if (ino < cgp->cg_irotor) 127654653Smckusick cgp->cg_irotor = ino; 12774792Smckusic cgp->cg_cs.cs_nifree++; 12784792Smckusic fs->fs_cstotal.cs_nifree++; 12795322Smckusic fs->fs_cs(fs, cg).cs_nifree++; 128053583Sheideman if ((ap->a_mode & IFMT) == IFDIR) { 12814792Smckusic cgp->cg_cs.cs_ndir--; 12824792Smckusic fs->fs_cstotal.cs_ndir--; 12835322Smckusic fs->fs_cs(fs, cg).cs_ndir--; 12844359Smckusick } 128550893Smckusick fs->fs_fmod = 1; 12864359Smckusick bdwrite(bp); 128753577Sheideman return (0); 12884359Smckusick } 12894359Smckusick 12904463Smckusic /* 12915375Smckusic * Find a block of the specified size in the specified cylinder group. 12925375Smckusic * 12934651Smckusic * It is a panic if a request is made to find a block if none are 12944651Smckusic * available. 12954651Smckusic */ 129651469Sbostic static daddr_t 129751469Sbostic ffs_mapsearch(fs, cgp, bpref, allocsiz) 12984651Smckusic register struct fs *fs; 12994651Smckusic register struct cg *cgp; 13004651Smckusic daddr_t bpref; 13014651Smckusic int allocsiz; 13024651Smckusic { 13034651Smckusic daddr_t bno; 13044651Smckusic int start, len, loc, i; 13054651Smckusic int blk, field, subfield, pos; 13064651Smckusic 13074651Smckusic /* 13084651Smckusic * find the fragment by searching through the free block 13094651Smckusic * map for an appropriate bit pattern 13104651Smckusic */ 13114651Smckusic if (bpref) 13125377Smckusic start = dtogd(fs, bpref) / NBBY; 13134651Smckusic else 13144651Smckusic start = cgp->cg_frotor / NBBY; 13155398Smckusic len = howmany(fs->fs_fpg, NBBY) - start; 131664508Sbostic loc = scanc((u_int)len, (u_char *)&cg_blksfree(cgp)[start], 131734476Smckusick (u_char *)fragtbl[fs->fs_frag], 131834476Smckusick (u_char)(1 << (allocsiz - 1 + (fs->fs_frag % NBBY)))); 13194651Smckusic if (loc == 0) { 13206531Smckusick len = start + 1; 13216531Smckusick start = 0; 132264508Sbostic loc = scanc((u_int)len, (u_char *)&cg_blksfree(cgp)[0], 132334476Smckusick (u_char *)fragtbl[fs->fs_frag], 132434476Smckusick (u_char)(1 << (allocsiz - 1 + (fs->fs_frag % NBBY)))); 132516784Smckusick if (loc == 0) { 132616784Smckusick printf("start = %d, len = %d, fs = %s\n", 132716784Smckusick start, len, fs->fs_fsmnt); 132851469Sbostic panic("ffs_alloccg: map corrupted"); 132917697Smckusick /* NOTREACHED */ 133016784Smckusick } 13314651Smckusic } 13324651Smckusic bno = (start + len - loc) * NBBY; 13334651Smckusic cgp->cg_frotor = bno; 13344651Smckusic /* 13354651Smckusic * found the byte in the map 13364651Smckusic * sift through the bits to find the selected frag 13374651Smckusic */ 13386294Smckusick for (i = bno + NBBY; bno < i; bno += fs->fs_frag) { 133934143Smckusick blk = blkmap(fs, cg_blksfree(cgp), bno); 13404651Smckusic blk <<= 1; 13414651Smckusic field = around[allocsiz]; 13424651Smckusic subfield = inside[allocsiz]; 13435322Smckusic for (pos = 0; pos <= fs->fs_frag - allocsiz; pos++) { 13446294Smckusick if ((blk & field) == subfield) 13456294Smckusick return (bno + pos); 13464651Smckusic field <<= 1; 13474651Smckusic subfield <<= 1; 13484651Smckusic } 13494651Smckusic } 13506716Smckusick printf("bno = %d, fs = %s\n", bno, fs->fs_fsmnt); 135151469Sbostic panic("ffs_alloccg: block not in map"); 13526531Smckusick return (-1); 13534651Smckusic } 13544651Smckusic 13554651Smckusic /* 135665999Smckusick * Update the cluster map because of an allocation or free. 135765999Smckusick * 135865999Smckusick * Cnt == 1 means free; cnt == -1 means allocating. 135965999Smckusick */ 136065999Smckusick ffs_clusteracct(fs, cgp, blkno, cnt) 136165999Smckusick struct fs *fs; 136265999Smckusick struct cg *cgp; 136365999Smckusick daddr_t blkno; 136465999Smckusick int cnt; 136565999Smckusick { 136665999Smckusick long *sump; 136765999Smckusick u_char *freemapp, *mapp; 136865999Smckusick int i, start, end, forw, back, map, bit; 136965999Smckusick 137065999Smckusick if (fs->fs_contigsumsize <= 0) 137165999Smckusick return; 137265999Smckusick freemapp = cg_clustersfree(cgp); 137365999Smckusick sump = cg_clustersum(cgp); 137465999Smckusick /* 137565999Smckusick * Allocate or clear the actual block. 137665999Smckusick */ 137765999Smckusick if (cnt > 0) 137865999Smckusick setbit(freemapp, blkno); 137965999Smckusick else 138065999Smckusick clrbit(freemapp, blkno); 138165999Smckusick /* 138265999Smckusick * Find the size of the cluster going forward. 138365999Smckusick */ 138465999Smckusick start = blkno + 1; 138565999Smckusick end = start + fs->fs_contigsumsize; 138665999Smckusick if (end >= cgp->cg_nclusterblks) 138765999Smckusick end = cgp->cg_nclusterblks; 138865999Smckusick mapp = &freemapp[start / NBBY]; 138965999Smckusick map = *mapp++; 139065999Smckusick bit = 1 << (start % NBBY); 139165999Smckusick for (i = start; i < end; i++) { 139265999Smckusick if ((map & bit) == 0) 139365999Smckusick break; 139465999Smckusick if ((i & (NBBY - 1)) != (NBBY - 1)) { 139565999Smckusick bit <<= 1; 139665999Smckusick } else { 139765999Smckusick map = *mapp++; 139865999Smckusick bit = 1; 139965999Smckusick } 140065999Smckusick } 140165999Smckusick forw = i - start; 140265999Smckusick /* 140365999Smckusick * Find the size of the cluster going backward. 140465999Smckusick */ 140565999Smckusick start = blkno - 1; 140665999Smckusick end = start - fs->fs_contigsumsize; 140765999Smckusick if (end < 0) 140865999Smckusick end = -1; 140965999Smckusick mapp = &freemapp[start / NBBY]; 141065999Smckusick map = *mapp--; 141165999Smckusick bit = 1 << (start % NBBY); 141265999Smckusick for (i = start; i > end; i--) { 141365999Smckusick if ((map & bit) == 0) 141465999Smckusick break; 141565999Smckusick if ((i & (NBBY - 1)) != 0) { 141665999Smckusick bit >>= 1; 141765999Smckusick } else { 141865999Smckusick map = *mapp--; 141965999Smckusick bit = 1 << (NBBY - 1); 142065999Smckusick } 142165999Smckusick } 142265999Smckusick back = start - i; 142365999Smckusick /* 142465999Smckusick * Account for old cluster and the possibly new forward and 142565999Smckusick * back clusters. 142665999Smckusick */ 142765999Smckusick i = back + forw + 1; 142865999Smckusick if (i > fs->fs_contigsumsize) 142965999Smckusick i = fs->fs_contigsumsize; 143065999Smckusick sump[i] += cnt; 143165999Smckusick if (back > 0) 143265999Smckusick sump[back] -= cnt; 143365999Smckusick if (forw > 0) 143465999Smckusick sump[forw] -= cnt; 143565999Smckusick } 143665999Smckusick 143765999Smckusick /* 14385375Smckusic * Fserr prints the name of a file system with an error diagnostic. 14395375Smckusic * 14405375Smckusic * The form of the error message is: 14414359Smckusick * fs: error message 14424359Smckusick */ 144351469Sbostic static void 144451469Sbostic ffs_fserr(fs, uid, cp) 14454359Smckusick struct fs *fs; 144651469Sbostic u_int uid; 14474359Smckusick char *cp; 14484359Smckusick { 14494359Smckusick 145042318Smckusick log(LOG_ERR, "uid %d on %s: %s\n", uid, fs->fs_fsmnt, cp); 14514359Smckusick } 1452