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ulfs_bmap.c revision 1.5
      1 /*	$NetBSD: ulfs_bmap.c,v 1.5 2013/07/28 01:10:49 dholland Exp $	*/
      2 /*  from NetBSD: ufs_bmap.c,v 1.50 2013/01/22 09:39:18 dholland Exp  */
      3 
      4 /*
      5  * Copyright (c) 1989, 1991, 1993
      6  *	The Regents of the University of California.  All rights reserved.
      7  * (c) UNIX System Laboratories, Inc.
      8  * All or some portions of this file are derived from material licensed
      9  * to the University of California by American Telephone and Telegraph
     10  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     11  * the permission of UNIX System Laboratories, Inc.
     12  *
     13  * Redistribution and use in source and binary forms, with or without
     14  * modification, are permitted provided that the following conditions
     15  * are met:
     16  * 1. Redistributions of source code must retain the above copyright
     17  *    notice, this list of conditions and the following disclaimer.
     18  * 2. Redistributions in binary form must reproduce the above copyright
     19  *    notice, this list of conditions and the following disclaimer in the
     20  *    documentation and/or other materials provided with the distribution.
     21  * 3. Neither the name of the University nor the names of its contributors
     22  *    may be used to endorse or promote products derived from this software
     23  *    without specific prior written permission.
     24  *
     25  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     26  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     27  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     28  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     29  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     30  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     31  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     32  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     33  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     34  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     35  * SUCH DAMAGE.
     36  *
     37  *	@(#)ufs_bmap.c	8.8 (Berkeley) 8/11/95
     38  */
     39 
     40 #include <sys/cdefs.h>
     41 __KERNEL_RCSID(0, "$NetBSD: ulfs_bmap.c,v 1.5 2013/07/28 01:10:49 dholland Exp $");
     42 
     43 #include <sys/param.h>
     44 #include <sys/systm.h>
     45 #include <sys/stat.h>
     46 #include <sys/buf.h>
     47 #include <sys/proc.h>
     48 #include <sys/vnode.h>
     49 #include <sys/mount.h>
     50 #include <sys/resourcevar.h>
     51 #include <sys/trace.h>
     52 #include <sys/fstrans.h>
     53 
     54 #include <miscfs/specfs/specdev.h>
     55 
     56 #include <ufs/lfs/ulfs_inode.h>
     57 #include <ufs/lfs/ulfsmount.h>
     58 #include <ufs/lfs/ulfs_extern.h>
     59 #include <ufs/lfs/ulfs_bswap.h>
     60 
     61 static bool
     62 ulfs_issequential(const struct lfs *fs, daddr_t daddr0, daddr_t daddr1)
     63 {
     64 
     65 	/* for ulfs, blocks in a hole is not 'contiguous'. */
     66 	if (daddr0 == 0)
     67 		return false;
     68 
     69 	return (daddr0 + fs->um_seqinc == daddr1);
     70 }
     71 
     72 /*
     73  * Bmap converts the logical block number of a file to its physical block
     74  * number on the disk. The conversion is done by using the logical block
     75  * number to index into the array of block pointers described by the dinode.
     76  */
     77 int
     78 ulfs_bmap(void *v)
     79 {
     80 	struct vop_bmap_args /* {
     81 		struct vnode *a_vp;
     82 		daddr_t  a_bn;
     83 		struct vnode **a_vpp;
     84 		daddr_t *a_bnp;
     85 		int *a_runp;
     86 	} */ *ap = v;
     87 	int error;
     88 
     89 	/*
     90 	 * Check for underlying vnode requests and ensure that logical
     91 	 * to physical mapping is requested.
     92 	 */
     93 	if (ap->a_vpp != NULL)
     94 		*ap->a_vpp = VTOI(ap->a_vp)->i_devvp;
     95 	if (ap->a_bnp == NULL)
     96 		return (0);
     97 
     98 	fstrans_start(ap->a_vp->v_mount, FSTRANS_SHARED);
     99 	error = ulfs_bmaparray(ap->a_vp, ap->a_bn, ap->a_bnp, NULL, NULL,
    100 	    ap->a_runp, ulfs_issequential);
    101 	fstrans_done(ap->a_vp->v_mount);
    102 	return error;
    103 }
    104 
    105 /*
    106  * Indirect blocks are now on the vnode for the file.  They are given negative
    107  * logical block numbers.  Indirect blocks are addressed by the negative
    108  * address of the first data block to which they point.  Double indirect blocks
    109  * are addressed by one less than the address of the first indirect block to
    110  * which they point.  Triple indirect blocks are addressed by one less than
    111  * the address of the first double indirect block to which they point.
    112  *
    113  * ulfs_bmaparray does the bmap conversion, and if requested returns the
    114  * array of logical blocks which must be traversed to get to a block.
    115  * Each entry contains the offset into that block that gets you to the
    116  * next block and the disk address of the block (if it is assigned).
    117  */
    118 
    119 int
    120 ulfs_bmaparray(struct vnode *vp, daddr_t bn, daddr_t *bnp, struct indir *ap,
    121     int *nump, int *runp, ulfs_issequential_callback_t is_sequential)
    122 {
    123 	struct inode *ip;
    124 	struct buf *bp, *cbp;
    125 	struct ulfsmount *ump;
    126 	struct lfs *fs;
    127 	struct mount *mp;
    128 	struct indir a[ULFS_NIADDR + 1], *xap;
    129 	daddr_t daddr;
    130 	daddr_t metalbn;
    131 	int error, maxrun = 0, num;
    132 
    133 	ip = VTOI(vp);
    134 	mp = vp->v_mount;
    135 	ump = ip->i_ump;
    136 	fs = ip->i_lfs;
    137 #ifdef DIAGNOSTIC
    138 	if ((ap != NULL && nump == NULL) || (ap == NULL && nump != NULL))
    139 		panic("ulfs_bmaparray: invalid arguments");
    140 #endif
    141 
    142 	if (runp) {
    143 		/*
    144 		 * XXX
    145 		 * If MAXBSIZE is the largest transfer the disks can handle,
    146 		 * we probably want maxrun to be 1 block less so that we
    147 		 * don't create a block larger than the device can handle.
    148 		 */
    149 		*runp = 0;
    150 		maxrun = MAXPHYS / mp->mnt_stat.f_iosize - 1;
    151 	}
    152 
    153 	if (bn >= 0 && bn < ULFS_NDADDR) {
    154 		if (nump != NULL)
    155 			*nump = 0;
    156 		if (ump->um_fstype == ULFS1)
    157 			daddr = ulfs_rw32(ip->i_ffs1_db[bn],
    158 			    ULFS_MPNEEDSWAP(fs));
    159 		else
    160 			daddr = ulfs_rw64(ip->i_ffs2_db[bn],
    161 			    ULFS_MPNEEDSWAP(fs));
    162 		*bnp = blkptrtodb(fs, daddr);
    163 		/*
    164 		 * Since this is FFS independent code, we are out of
    165 		 * scope for the definitions of BLK_NOCOPY and
    166 		 * BLK_SNAP, but we do know that they will fall in
    167 		 * the range 1..um_seqinc, so we use that test and
    168 		 * return a request for a zeroed out buffer if attempts
    169 		 * are made to read a BLK_NOCOPY or BLK_SNAP block.
    170 		 */
    171 		if ((ip->i_flags & (SF_SNAPSHOT | SF_SNAPINVAL)) == SF_SNAPSHOT
    172 		    && daddr > 0 &&
    173 		    daddr < fs->um_seqinc) {
    174 			*bnp = -1;
    175 		} else if (*bnp == 0) {
    176 			if ((ip->i_flags & (SF_SNAPSHOT | SF_SNAPINVAL))
    177 			    == SF_SNAPSHOT) {
    178 				*bnp = blkptrtodb(fs, bn * fs->um_seqinc);
    179 			} else {
    180 				*bnp = -1;
    181 			}
    182 		} else if (runp) {
    183 			if (ump->um_fstype == ULFS1) {
    184 				for (++bn; bn < ULFS_NDADDR && *runp < maxrun &&
    185 				    is_sequential(fs,
    186 				        ulfs_rw32(ip->i_ffs1_db[bn - 1],
    187 				            ULFS_MPNEEDSWAP(fs)),
    188 				        ulfs_rw32(ip->i_ffs1_db[bn],
    189 				            ULFS_MPNEEDSWAP(fs)));
    190 				    ++bn, ++*runp);
    191 			} else {
    192 				for (++bn; bn < ULFS_NDADDR && *runp < maxrun &&
    193 				    is_sequential(fs,
    194 				        ulfs_rw64(ip->i_ffs2_db[bn - 1],
    195 				            ULFS_MPNEEDSWAP(fs)),
    196 				        ulfs_rw64(ip->i_ffs2_db[bn],
    197 				            ULFS_MPNEEDSWAP(fs)));
    198 				    ++bn, ++*runp);
    199 			}
    200 		}
    201 		return (0);
    202 	}
    203 
    204 	xap = ap == NULL ? a : ap;
    205 	if (!nump)
    206 		nump = &num;
    207 	if ((error = ulfs_getlbns(vp, bn, xap, nump)) != 0)
    208 		return (error);
    209 
    210 	num = *nump;
    211 
    212 	/* Get disk address out of indirect block array */
    213 	if (ump->um_fstype == ULFS1)
    214 		daddr = ulfs_rw32(ip->i_ffs1_ib[xap->in_off],
    215 		    ULFS_MPNEEDSWAP(fs));
    216 	else
    217 		daddr = ulfs_rw64(ip->i_ffs2_ib[xap->in_off],
    218 		    ULFS_MPNEEDSWAP(fs));
    219 
    220 	for (bp = NULL, ++xap; --num; ++xap) {
    221 		/*
    222 		 * Exit the loop if there is no disk address assigned yet and
    223 		 * the indirect block isn't in the cache, or if we were
    224 		 * looking for an indirect block and we've found it.
    225 		 */
    226 
    227 		metalbn = xap->in_lbn;
    228 		if (metalbn == bn)
    229 			break;
    230 		if (daddr == 0) {
    231 			mutex_enter(&bufcache_lock);
    232 			cbp = incore(vp, metalbn);
    233 			mutex_exit(&bufcache_lock);
    234 			if (cbp == NULL)
    235 				break;
    236 		}
    237 
    238 		/*
    239 		 * If we get here, we've either got the block in the cache
    240 		 * or we have a disk address for it, go fetch it.
    241 		 */
    242 		if (bp)
    243 			brelse(bp, 0);
    244 
    245 		xap->in_exists = 1;
    246 		bp = getblk(vp, metalbn, mp->mnt_stat.f_iosize, 0, 0);
    247 		if (bp == NULL) {
    248 
    249 			/*
    250 			 * getblk() above returns NULL only iff we are
    251 			 * pagedaemon.  See the implementation of getblk
    252 			 * for detail.
    253 			 */
    254 
    255 			return (ENOMEM);
    256 		}
    257 		if (bp->b_oflags & (BO_DONE | BO_DELWRI)) {
    258 			trace(TR_BREADHIT, pack(vp, size), metalbn);
    259 		}
    260 #ifdef DIAGNOSTIC
    261 		else if (!daddr)
    262 			panic("ulfs_bmaparray: indirect block not in cache");
    263 #endif
    264 		else {
    265 			trace(TR_BREADMISS, pack(vp, size), metalbn);
    266 			bp->b_blkno = blkptrtodb(fs, daddr);
    267 			bp->b_flags |= B_READ;
    268 			BIO_SETPRIO(bp, BPRIO_TIMECRITICAL);
    269 			VOP_STRATEGY(vp, bp);
    270 			curlwp->l_ru.ru_inblock++;	/* XXX */
    271 			if ((error = biowait(bp)) != 0) {
    272 				brelse(bp, 0);
    273 				return (error);
    274 			}
    275 		}
    276 		if (ump->um_fstype == ULFS1) {
    277 			daddr = ulfs_rw32(((u_int32_t *)bp->b_data)[xap->in_off],
    278 			    ULFS_MPNEEDSWAP(fs));
    279 			if (num == 1 && daddr && runp) {
    280 				for (bn = xap->in_off + 1;
    281 				    bn < MNINDIR(fs) && *runp < maxrun &&
    282 				    is_sequential(fs,
    283 				        ulfs_rw32(((int32_t *)bp->b_data)[bn-1],
    284 				            ULFS_MPNEEDSWAP(fs)),
    285 				        ulfs_rw32(((int32_t *)bp->b_data)[bn],
    286 				            ULFS_MPNEEDSWAP(fs)));
    287 				    ++bn, ++*runp);
    288 			}
    289 		} else {
    290 			daddr = ulfs_rw64(((u_int64_t *)bp->b_data)[xap->in_off],
    291 			    ULFS_MPNEEDSWAP(fs));
    292 			if (num == 1 && daddr && runp) {
    293 				for (bn = xap->in_off + 1;
    294 				    bn < MNINDIR(fs) && *runp < maxrun &&
    295 				    is_sequential(fs,
    296 				        ulfs_rw64(((int64_t *)bp->b_data)[bn-1],
    297 				            ULFS_MPNEEDSWAP(fs)),
    298 				        ulfs_rw64(((int64_t *)bp->b_data)[bn],
    299 				            ULFS_MPNEEDSWAP(fs)));
    300 				    ++bn, ++*runp);
    301 			}
    302 		}
    303 	}
    304 	if (bp)
    305 		brelse(bp, 0);
    306 
    307 	/*
    308 	 * Since this is FFS independent code, we are out of scope for the
    309 	 * definitions of BLK_NOCOPY and BLK_SNAP, but we do know that they
    310 	 * will fall in the range 1..um_seqinc, so we use that test and
    311 	 * return a request for a zeroed out buffer if attempts are made
    312 	 * to read a BLK_NOCOPY or BLK_SNAP block.
    313 	 */
    314 	if ((ip->i_flags & (SF_SNAPSHOT | SF_SNAPINVAL)) == SF_SNAPSHOT
    315 	    && daddr > 0 && daddr < fs->um_seqinc) {
    316 		*bnp = -1;
    317 		return (0);
    318 	}
    319 	*bnp = blkptrtodb(fs, daddr);
    320 	if (*bnp == 0) {
    321 		if ((ip->i_flags & (SF_SNAPSHOT | SF_SNAPINVAL))
    322 		    == SF_SNAPSHOT) {
    323 			*bnp = blkptrtodb(fs, bn * fs->um_seqinc);
    324 		} else {
    325 			*bnp = -1;
    326 		}
    327 	}
    328 	return (0);
    329 }
    330 
    331 /*
    332  * Create an array of logical block number/offset pairs which represent the
    333  * path of indirect blocks required to access a data block.  The first "pair"
    334  * contains the logical block number of the appropriate single, double or
    335  * triple indirect block and the offset into the inode indirect block array.
    336  * Note, the logical block number of the inode single/double/triple indirect
    337  * block appears twice in the array, once with the offset into the i_ffs1_ib and
    338  * once with the offset into the page itself.
    339  */
    340 int
    341 ulfs_getlbns(struct vnode *vp, daddr_t bn, struct indir *ap, int *nump)
    342 {
    343 	daddr_t metalbn, realbn;
    344 	struct ulfsmount *ump;
    345 	struct lfs *fs;
    346 	int64_t blockcnt;
    347 	int lbc;
    348 	int i, numlevels, off;
    349 
    350 	ump = VFSTOULFS(vp->v_mount);
    351 	fs = ump->um_lfs;
    352 	if (nump)
    353 		*nump = 0;
    354 	numlevels = 0;
    355 	realbn = bn;
    356 	if (bn < 0)
    357 		bn = -bn;
    358 	KASSERT(bn >= ULFS_NDADDR);
    359 
    360 	/*
    361 	 * Determine the number of levels of indirection.  After this loop
    362 	 * is done, blockcnt indicates the number of data blocks possible
    363 	 * at the given level of indirection, and ULFS_NIADDR - i is the number
    364 	 * of levels of indirection needed to locate the requested block.
    365 	 */
    366 
    367 	bn -= ULFS_NDADDR;
    368 	for (lbc = 0, i = ULFS_NIADDR;; i--, bn -= blockcnt) {
    369 		if (i == 0)
    370 			return (EFBIG);
    371 
    372 		lbc += fs->um_lognindir;
    373 		blockcnt = (int64_t)1 << lbc;
    374 
    375 		if (bn < blockcnt)
    376 			break;
    377 	}
    378 
    379 	/* Calculate the address of the first meta-block. */
    380 	metalbn = -((realbn >= 0 ? realbn : -realbn) - bn + ULFS_NIADDR - i);
    381 
    382 	/*
    383 	 * At each iteration, off is the offset into the bap array which is
    384 	 * an array of disk addresses at the current level of indirection.
    385 	 * The logical block number and the offset in that block are stored
    386 	 * into the argument array.
    387 	 */
    388 	ap->in_lbn = metalbn;
    389 	ap->in_off = off = ULFS_NIADDR - i;
    390 	ap->in_exists = 0;
    391 	ap++;
    392 	for (++numlevels; i <= ULFS_NIADDR; i++) {
    393 		/* If searching for a meta-data block, quit when found. */
    394 		if (metalbn == realbn)
    395 			break;
    396 
    397 		lbc -= fs->um_lognindir;
    398 		off = (bn >> lbc) & (MNINDIR(fs) - 1);
    399 
    400 		++numlevels;
    401 		ap->in_lbn = metalbn;
    402 		ap->in_off = off;
    403 		ap->in_exists = 0;
    404 		++ap;
    405 
    406 		metalbn -= -1 + ((int64_t)off << lbc);
    407 	}
    408 	if (nump)
    409 		*nump = numlevels;
    410 	return (0);
    411 }
    412