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rcache.c revision 1.22
      1  1.22    martin /*	$NetBSD: rcache.c,v 1.22 2008/04/28 20:23:08 martin Exp $	*/
      2   1.1    bouyer 
      3   1.1    bouyer /*-
      4   1.1    bouyer  * Copyright (c) 1999 The NetBSD Foundation, Inc.
      5   1.1    bouyer  * All rights reserved.
      6   1.1    bouyer  *
      7   1.1    bouyer  * This code is derived from software contributed to The NetBSD Foundation
      8  1.10     lukem  * by Martin J. Laubach <mjl (at) emsi.priv.at> and
      9   1.1    bouyer  *    Manuel Bouyer <Manuel.Bouyer (at) lip6.fr>.
     10   1.1    bouyer  *
     11   1.1    bouyer  * Redistribution and use in source and binary forms, with or without
     12   1.1    bouyer  * modification, are permitted provided that the following conditions
     13   1.1    bouyer  * are met:
     14   1.1    bouyer  * 1. Redistributions of source code must retain the above copyright
     15   1.1    bouyer  *    notice, this list of conditions and the following disclaimer.
     16   1.1    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1    bouyer  *    notice, this list of conditions and the following disclaimer in the
     18   1.1    bouyer  *    documentation and/or other materials provided with the distribution.
     19   1.1    bouyer  *
     20   1.1    bouyer  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.1    bouyer  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.1    bouyer  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23  1.10     lukem  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.1    bouyer  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.1    bouyer  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.1    bouyer  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.1    bouyer  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.1    bouyer  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.1    bouyer  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.1    bouyer  * POSSIBILITY OF SUCH DAMAGE.
     31   1.1    bouyer  */
     32  1.11     lukem 
     33  1.11     lukem #include <sys/cdefs.h>
     34  1.11     lukem #ifndef lint
     35  1.22    martin __RCSID("$NetBSD: rcache.c,v 1.22 2008/04/28 20:23:08 martin Exp $");
     36  1.11     lukem #endif /* not lint */
     37  1.11     lukem 
     38   1.1    bouyer #include <sys/types.h>
     39   1.1    bouyer #include <sys/uio.h>
     40   1.1    bouyer #include <sys/mman.h>
     41   1.1    bouyer #include <sys/param.h>
     42   1.1    bouyer #include <sys/sysctl.h>
     43   1.1    bouyer #include <ufs/ufs/dinode.h>
     44   1.1    bouyer 
     45   1.1    bouyer #include <stdio.h>
     46   1.1    bouyer #include <stdlib.h>
     47   1.1    bouyer #include <unistd.h>
     48   1.1    bouyer #include <fcntl.h>
     49   1.1    bouyer #include <errno.h>
     50   1.1    bouyer #include <string.h>
     51   1.1    bouyer 
     52   1.1    bouyer #include "dump.h"
     53   1.1    bouyer 
     54   1.1    bouyer /*-----------------------------------------------------------------------*/
     55   1.1    bouyer #define MAXCACHEBUFS	512	/* max 512 buffers */
     56   1.1    bouyer #define MAXMEMPART	6	/* max 15% of the user mem */
     57   1.1    bouyer 
     58   1.1    bouyer /*-----------------------------------------------------------------------*/
     59  1.13   hannken union cdesc {
     60  1.13   hannken 	volatile size_t cd_count;
     61  1.13   hannken 	struct {
     62  1.13   hannken 		volatile daddr_t blkstart;
     63  1.14     enami 		volatile daddr_t blkend;	/* start + nblksread */
     64  1.13   hannken 		volatile daddr_t blocksRead;
     65  1.13   hannken 		volatile size_t time;
     66   1.1    bouyer #ifdef DIAGNOSTICS
     67  1.13   hannken 		volatile pid_t owner;
     68   1.1    bouyer #endif
     69  1.13   hannken 	} desc;
     70  1.13   hannken #define cd_blkstart	desc.blkstart
     71  1.13   hannken #define cd_blkend	desc.blkend
     72  1.13   hannken #define cd_blocksRead	desc.blocksRead
     73  1.13   hannken #define cd_time		desc.time
     74  1.13   hannken #define cd_owner	desc.owner
     75   1.1    bouyer };
     76   1.1    bouyer 
     77   1.6     lukem static int findlru(void);
     78   1.1    bouyer 
     79   1.1    bouyer static void *shareBuffer = NULL;
     80  1.13   hannken static union cdesc *cheader;
     81  1.13   hannken static union cdesc *cdesc;
     82   1.1    bouyer static char *cdata;
     83   1.1    bouyer static int cachebufs;
     84   1.1    bouyer static int nblksread;
     85   1.1    bouyer 
     86   1.1    bouyer #ifdef STATS
     87   1.1    bouyer static int nreads;
     88   1.1    bouyer static int nphysread;
     89   1.1    bouyer static int64_t readsize;
     90   1.1    bouyer static int64_t physreadsize;
     91   1.1    bouyer #endif
     92   1.1    bouyer 
     93  1.16     enami #define	CSIZE		(nblksread << dev_bshift)	/* cache buf size */
     94  1.16     enami #define	CDATA(desc)	(cdata + ((desc) - cdesc) * CSIZE)
     95   1.1    bouyer 
     96  1.10     lukem void
     97   1.6     lukem initcache(int cachesize, int readblksize)
     98   1.1    bouyer {
     99   1.1    bouyer 	size_t len;
    100  1.14     enami 	size_t sharedSize;
    101   1.1    bouyer 
    102  1.15     enami 	/* Convert read block size in terms of filesystem block size */
    103  1.14     enami 	nblksread = howmany(readblksize, ufsib->ufs_bsize);
    104  1.15     enami 
    105  1.15     enami 	/* Then, convert it in terms of device block size */
    106  1.15     enami 	nblksread <<= ufsib->ufs_bshift - dev_bshift;
    107  1.15     enami 
    108  1.14     enami 	if (cachesize == -1) {	/* Compute from memory available */
    109  1.21    simonb 		uint64_t usermem;
    110  1.21    simonb 		int mib[2] = { CTL_HW, HW_USERMEM64 };
    111  1.10     lukem 
    112   1.1    bouyer 		len = sizeof(usermem);
    113   1.1    bouyer 		if (sysctl(mib, 2, &usermem, &len, NULL, 0) < 0) {
    114  1.14     enami 			msg("sysctl(hw.usermem) failed: %s\n",
    115  1.14     enami 			    strerror(errno));
    116   1.1    bouyer 			return;
    117   1.1    bouyer 		}
    118  1.16     enami 		cachebufs = (usermem / MAXMEMPART) / CSIZE;
    119   1.1    bouyer 	} else {		/* User specified */
    120   1.1    bouyer 		cachebufs = cachesize;
    121   1.1    bouyer 	}
    122  1.10     lukem 
    123  1.14     enami 	if (cachebufs) {	/* Don't allocate if zero --> no caching */
    124   1.1    bouyer 		if (cachebufs > MAXCACHEBUFS)
    125   1.1    bouyer 			cachebufs = MAXCACHEBUFS;
    126   1.1    bouyer 
    127  1.13   hannken 		sharedSize = sizeof(union cdesc) +
    128  1.13   hannken 	   	    sizeof(union cdesc) * cachebufs +
    129  1.16     enami 	   	    cachebufs * CSIZE;
    130  1.10     lukem #ifdef STATS
    131   1.1    bouyer 		fprintf(stderr, "Using %d buffers (%d bytes)\n", cachebufs,
    132   1.1    bouyer 	   	    sharedSize);
    133   1.1    bouyer #endif
    134   1.1    bouyer 		shareBuffer = mmap(NULL, sharedSize, PROT_READ | PROT_WRITE,
    135   1.1    bouyer 	   	    MAP_ANON | MAP_SHARED, -1, 0);
    136  1.14     enami 		if (shareBuffer == MAP_FAILED) {
    137   1.1    bouyer 			msg("can't mmap shared memory for buffer: %s\n",
    138   1.1    bouyer 			    strerror(errno));
    139   1.1    bouyer 			return;
    140   1.1    bouyer 		}
    141   1.1    bouyer 		cheader = shareBuffer;
    142  1.13   hannken 		cdesc = (union cdesc *) (((char *) shareBuffer) +
    143  1.13   hannken 		    sizeof(union cdesc));
    144  1.13   hannken 		cdata = ((char *) shareBuffer) + sizeof(union cdesc) +
    145  1.13   hannken 	   	    sizeof(union cdesc) * cachebufs;
    146   1.1    bouyer 
    147   1.1    bouyer 		memset(shareBuffer, '\0', sharedSize);
    148   1.1    bouyer 	}
    149   1.1    bouyer }
    150   1.1    bouyer 
    151   1.6     lukem /*
    152   1.6     lukem  * Find the cache buffer descriptor that shows the minimal access time
    153   1.6     lukem  */
    154  1.10     lukem static int
    155   1.6     lukem findlru(void)
    156   1.1    bouyer {
    157   1.8     lukem 	int	i;
    158  1.13   hannken 	size_t	minTime = cdesc[0].cd_time;
    159   1.8     lukem 	int	minIdx = 0;
    160   1.1    bouyer 
    161   1.1    bouyer 	for (i = 0; i < cachebufs; i++) {
    162  1.13   hannken 		if (cdesc[i].cd_time < minTime) {
    163   1.1    bouyer 			minIdx = i;
    164  1.13   hannken 			minTime = cdesc[i].cd_time;
    165   1.1    bouyer 		}
    166   1.1    bouyer 	}
    167   1.1    bouyer 
    168   1.1    bouyer 	return minIdx;
    169   1.1    bouyer }
    170   1.6     lukem 
    171   1.1    bouyer /*
    172   1.1    bouyer  * Read data directly from disk, with smart error handling.
    173   1.1    bouyer  * Try to recover from hard errors by reading in sector sized pieces.
    174   1.1    bouyer  * Error recovery is attempted at most BREADEMAX times before seeking
    175   1.1    bouyer  * consent from the operator to continue.
    176   1.1    bouyer  */
    177   1.1    bouyer 
    178   1.1    bouyer static int breaderrors = 0;
    179   1.1    bouyer #define BREADEMAX 32
    180   1.1    bouyer 
    181  1.10     lukem void
    182   1.6     lukem rawread(daddr_t blkno, char *buf, int size)
    183   1.1    bouyer {
    184   1.1    bouyer 	int cnt, i;
    185  1.14     enami 
    186   1.1    bouyer #ifdef STATS
    187   1.1    bouyer 	nphysread++;
    188   1.1    bouyer 	physreadsize += size;
    189   1.1    bouyer #endif
    190   1.1    bouyer 
    191  1.14     enami loop:
    192  1.18     enami 	if (lseek(diskfd, ((off_t) blkno << dev_bshift), SEEK_SET) == -1) {
    193   1.1    bouyer 		msg("rawread: lseek fails\n");
    194   1.1    bouyer 		goto err;
    195   1.1    bouyer 	}
    196  1.14     enami 	if ((cnt = read(diskfd, buf, size)) == size)
    197   1.1    bouyer 		return;
    198  1.16     enami 	if (blkno + (size >> dev_bshift) > ufsib->ufs_dsize) {
    199   1.7     lukem 		/*
    200   1.7     lukem 		 * Trying to read the final fragment.
    201   1.7     lukem 		 *
    202   1.7     lukem 		 * NB - dump only works in TP_BSIZE blocks, hence
    203   1.7     lukem 		 * rounds `dev_bsize' fragments up to TP_BSIZE pieces.
    204   1.7     lukem 		 * It should be smarter about not actually trying to
    205   1.7     lukem 		 * read more than it can get, but for the time being
    206   1.7     lukem 		 * we punt and scale back the read only when it gets
    207   1.7     lukem 		 * us into trouble. (mkm 9/25/83)
    208   1.7     lukem 		 */
    209   1.7     lukem 		size -= dev_bsize;
    210   1.7     lukem 		goto loop;
    211   1.7     lukem 	}
    212   1.1    bouyer 	if (cnt == -1)
    213  1.12      fvdl 		msg("read error from %s: %s: [block %lld]: count=%d\n",
    214  1.14     enami 		    disk, strerror(errno), (long long)blkno, size);
    215   1.1    bouyer 	else
    216  1.14     enami 		msg("short read error from %s: [block %lld]: "
    217  1.14     enami 		    "count=%d, got=%d\n",
    218  1.14     enami 		    disk, (long long)blkno, size, cnt);
    219   1.1    bouyer err:
    220   1.1    bouyer 	if (++breaderrors > BREADEMAX) {
    221   1.5    briggs 		msg("More than %d block read errors from %s\n",
    222  1.14     enami 		    BREADEMAX, disk);
    223   1.1    bouyer 		broadcast("DUMP IS AILING!\n");
    224   1.1    bouyer 		msg("This is an unrecoverable error.\n");
    225  1.14     enami 		if (!query("Do you want to attempt to continue?")) {
    226   1.1    bouyer 			dumpabort(0);
    227   1.1    bouyer 			/*NOTREACHED*/
    228   1.1    bouyer 		} else
    229   1.1    bouyer 			breaderrors = 0;
    230   1.1    bouyer 	}
    231   1.1    bouyer 	/*
    232   1.1    bouyer 	 * Zero buffer, then try to read each sector of buffer separately.
    233   1.1    bouyer 	 */
    234   1.1    bouyer 	memset(buf, 0, size);
    235   1.1    bouyer 	for (i = 0; i < size; i += dev_bsize, buf += dev_bsize, blkno++) {
    236  1.14     enami 		if (lseek(diskfd, ((off_t)blkno << dev_bshift),
    237  1.18     enami 		    SEEK_SET) == -1) {
    238   1.1    bouyer 			msg("rawread: lseek2 fails: %s!\n",
    239   1.1    bouyer 			    strerror(errno));
    240   1.1    bouyer 			continue;
    241   1.1    bouyer 		}
    242   1.1    bouyer 		if ((cnt = read(diskfd, buf, (int)dev_bsize)) == dev_bsize)
    243   1.1    bouyer 			continue;
    244   1.1    bouyer 		if (cnt == -1) {
    245  1.14     enami 			msg("read error from %s: %s: [sector %lld]: "
    246  1.19     enami 			    "count=%ld\n", disk, strerror(errno),
    247  1.19     enami 			    (long long)blkno, dev_bsize);
    248   1.1    bouyer 			continue;
    249   1.1    bouyer 		}
    250  1.14     enami 		msg("short read error from %s: [sector %lld]: "
    251  1.14     enami 		    "count=%ld, got=%d\n",
    252  1.12      fvdl 		    disk, (long long)blkno, dev_bsize, cnt);
    253   1.1    bouyer 	}
    254   1.1    bouyer }
    255   1.1    bouyer 
    256  1.10     lukem void
    257   1.6     lukem bread(daddr_t blkno, char *buf, int size)
    258   1.1    bouyer {
    259  1.16     enami 	int	osize = size, idx;
    260   1.1    bouyer 	daddr_t oblkno = blkno;
    261   1.1    bouyer 	char   *obuf = buf;
    262  1.14     enami 	daddr_t numBlocks = howmany(size, dev_bsize);
    263   1.1    bouyer 
    264   1.1    bouyer #ifdef STATS
    265   1.1    bouyer 	nreads++;
    266   1.1    bouyer 	readsize += size;
    267   1.1    bouyer #endif
    268   1.1    bouyer 
    269   1.1    bouyer 	if (!shareBuffer) {
    270   1.1    bouyer 		rawread(blkno, buf, size);
    271   1.1    bouyer 		return;
    272   1.1    bouyer 	}
    273   1.1    bouyer 
    274   1.1    bouyer 	if (flock(diskfd, LOCK_EX)) {
    275   1.1    bouyer 		msg("flock(LOCK_EX) failed: %s\n",
    276   1.1    bouyer 		    strerror(errno));
    277   1.1    bouyer 		rawread(blkno, buf, size);
    278   1.1    bouyer 		return;
    279   1.1    bouyer 	}
    280   1.1    bouyer 
    281   1.1    bouyer retry:
    282  1.16     enami 	idx = 0;
    283  1.16     enami 	while (size > 0) {
    284   1.8     lukem 		int	i;
    285  1.10     lukem 
    286   1.1    bouyer 		for (i = 0; i < cachebufs; i++) {
    287  1.16     enami 			union cdesc *curr = &cdesc[(i + idx) % cachebufs];
    288   1.1    bouyer 
    289   1.1    bouyer #ifdef DIAGNOSTICS
    290  1.13   hannken 			if (curr->cd_owner) {
    291   1.1    bouyer 				fprintf(stderr, "Owner is set (%d, me=%d), can"
    292  1.13   hannken 				    "not happen.\n", curr->cd_owner, getpid());
    293   1.1    bouyer 			}
    294   1.1    bouyer #endif
    295   1.1    bouyer 
    296  1.13   hannken 			if (curr->cd_blkend == 0)
    297   1.1    bouyer 				continue;
    298   1.1    bouyer 			/*
    299   1.1    bouyer 			 * If we find a bit of the read in the buffers,
    300   1.1    bouyer 			 * now compute how many blocks we can copy,
    301   1.1    bouyer 			 * copy them out, adjust blkno, buf and size,
    302   1.1    bouyer 			 * and restart
    303   1.1    bouyer 			 */
    304  1.13   hannken 			if (curr->cd_blkstart <= blkno &&
    305  1.13   hannken 			    blkno < curr->cd_blkend) {
    306   1.1    bouyer 				/* Number of data blocks to be copied */
    307   1.6     lukem 				int toCopy = MIN(size,
    308  1.16     enami 				    (curr->cd_blkend - blkno) << dev_bshift);
    309   1.1    bouyer #ifdef DIAGNOSTICS
    310  1.16     enami 				if (toCopy <= 0 || toCopy > CSIZE) {
    311   1.1    bouyer 					fprintf(stderr, "toCopy %d !\n",
    312   1.1    bouyer 					    toCopy);
    313   1.1    bouyer 					dumpabort(0);
    314   1.1    bouyer 				}
    315  1.16     enami 				if (CDATA(curr) +
    316  1.16     enami 				    ((blkno - curr->cd_blkstart) <<
    317  1.17     enami 				    dev_bshift) < CDATA(curr) ||
    318  1.16     enami 			   	    CDATA(curr) +
    319  1.16     enami 				    ((blkno - curr->cd_blkstart) <<
    320  1.17     enami 			   	    dev_bshift) > CDATA(curr) + CSIZE) {
    321   1.1    bouyer 					fprintf(stderr, "%p < %p !!!\n",
    322  1.16     enami 				   	   CDATA(curr) + ((blkno -
    323  1.16     enami 					   curr->cd_blkstart) << dev_bshift),
    324  1.16     enami 					   CDATA(curr));
    325  1.16     enami 					fprintf(stderr,
    326  1.16     enami 					    "cdesc[i].cd_blkstart %lld "
    327  1.16     enami 					    "blkno %lld dev_bsize %ld\n",
    328  1.16     enami 				   	    (long long)curr->cd_blkstart,
    329  1.16     enami 					    (long long)blkno,
    330  1.16     enami 					    dev_bsize);
    331   1.1    bouyer 					dumpabort(0);
    332   1.1    bouyer 				}
    333   1.1    bouyer #endif
    334  1.16     enami 				memcpy(buf, CDATA(curr) +
    335  1.17     enami 				    ((blkno - curr->cd_blkstart) <<
    336  1.17     enami 				    dev_bshift),
    337   1.1    bouyer 			   	    toCopy);
    338   1.1    bouyer 
    339   1.1    bouyer 				buf 	+= toCopy;
    340   1.1    bouyer 				size 	-= toCopy;
    341  1.14     enami 				blkno 	+= howmany(toCopy, dev_bsize);
    342  1.14     enami 				numBlocks -= howmany(toCopy, dev_bsize);
    343   1.1    bouyer 
    344  1.13   hannken 				curr->cd_time = cheader->cd_count++;
    345   1.1    bouyer 
    346   1.1    bouyer 				/*
    347   1.1    bouyer 				 * If all data of a cache block have been
    348   1.1    bouyer 				 * read, chances are good no more reads
    349   1.1    bouyer 				 * will occur, so expire the cache immediately
    350   1.1    bouyer 				 */
    351   1.1    bouyer 
    352  1.13   hannken 				curr->cd_blocksRead +=
    353  1.14     enami 				    howmany(toCopy, dev_bsize);
    354  1.13   hannken 				if (curr->cd_blocksRead >= nblksread)
    355  1.13   hannken 					curr->cd_time = 0;
    356   1.1    bouyer 
    357   1.1    bouyer 				goto retry;
    358   1.1    bouyer 			}
    359   1.1    bouyer 		}
    360   1.1    bouyer 
    361   1.1    bouyer 		/* No more to do? */
    362   1.1    bouyer 		if (size == 0)
    363   1.1    bouyer 			break;
    364   1.9     lukem 
    365   1.1    bouyer 		/*
    366   1.1    bouyer 		 * This does actually not happen if fs blocks are not greater
    367   1.1    bouyer 		 * than nblksread.
    368   1.1    bouyer 		 */
    369   1.9     lukem 		if (numBlocks > nblksread || blkno >= ufsib->ufs_dsize) {
    370   1.1    bouyer 			rawread(oblkno, obuf, osize);
    371   1.1    bouyer 			break;
    372   1.1    bouyer 		} else {
    373   1.8     lukem 			ssize_t	rsize;
    374   1.8     lukem 			daddr_t	blockBlkNo;
    375   1.1    bouyer 
    376   1.1    bouyer 			blockBlkNo = (blkno / nblksread) * nblksread;
    377   1.1    bouyer 			idx = findlru();
    378   1.6     lukem 			rsize = MIN(nblksread,
    379  1.16     enami 			    ufsib->ufs_dsize - blockBlkNo) << dev_bshift;
    380   1.3  perseant 
    381   1.1    bouyer #ifdef DIAGNOSTICS
    382  1.13   hannken 			if (cdesc[idx].cd_owner)
    383   1.1    bouyer 				fprintf(stderr, "Owner is set (%d, me=%d), can"
    384  1.13   hannken 				    "not happen(2).\n", cdesc[idx].cd_owner,
    385   1.1    bouyer 				    getpid());
    386  1.13   hannken 			cdesc[idx].cd_owner = getpid();
    387   1.1    bouyer #endif
    388  1.13   hannken 			cdesc[idx].cd_time = cheader->cd_count++;
    389  1.13   hannken 			cdesc[idx].cd_blkstart = blockBlkNo;
    390  1.16     enami 			cdesc[idx].cd_blkend = 0;
    391  1.13   hannken 			cdesc[idx].cd_blocksRead = 0;
    392   1.1    bouyer 
    393  1.14     enami 			if (lseek(diskfd, ((off_t) blockBlkNo << dev_bshift),
    394  1.18     enami 			    SEEK_SET) == -1) {
    395   1.1    bouyer 				msg("readBlocks: lseek fails: %s\n",
    396   1.1    bouyer 				    strerror(errno));
    397   1.1    bouyer 				rsize = -1;
    398   1.1    bouyer 			} else {
    399  1.16     enami 				rsize = read(diskfd,
    400  1.16     enami 				    CDATA(&cdesc[idx]), rsize);
    401   1.1    bouyer 				if (rsize < 0) {
    402   1.1    bouyer 					msg("readBlocks: read fails: %s\n",
    403   1.1    bouyer 					    strerror(errno));
    404   1.1    bouyer 				}
    405   1.1    bouyer 			}
    406   1.1    bouyer 
    407   1.1    bouyer 			/* On errors, panic, punt, try to read without
    408   1.1    bouyer 			 * cache and let raw read routine do the rest.
    409   1.1    bouyer 			 */
    410   1.1    bouyer 
    411   1.1    bouyer 			if (rsize <= 0) {
    412   1.1    bouyer 				rawread(oblkno, obuf, osize);
    413   1.1    bouyer #ifdef DIAGNOSTICS
    414  1.13   hannken 				if (cdesc[idx].cd_owner != getpid())
    415   1.1    bouyer 					fprintf(stderr, "Owner changed from "
    416   1.1    bouyer 					    "%d to %d, can't happen\n",
    417  1.13   hannken 					    getpid(), cdesc[idx].cd_owner);
    418  1.13   hannken 				cdesc[idx].cd_owner = 0;
    419   1.1    bouyer #endif
    420   1.1    bouyer 				break;
    421   1.1    bouyer 			}
    422   1.1    bouyer 
    423   1.1    bouyer 			/* On short read, just note the fact and go on */
    424  1.13   hannken 			cdesc[idx].cd_blkend = blockBlkNo + rsize / dev_bsize;
    425   1.1    bouyer 
    426   1.1    bouyer #ifdef STATS
    427   1.1    bouyer 			nphysread++;
    428   1.1    bouyer 			physreadsize += rsize;
    429   1.1    bouyer #endif
    430   1.1    bouyer #ifdef DIAGNOSTICS
    431  1.13   hannken 			if (cdesc[idx].cd_owner != getpid())
    432   1.1    bouyer 				fprintf(stderr, "Owner changed from "
    433   1.1    bouyer 				    "%d to %d, can't happen\n",
    434  1.13   hannken 				    getpid(), cdesc[idx].cd_owner);
    435  1.13   hannken 			cdesc[idx].cd_owner = 0;
    436   1.1    bouyer #endif
    437   1.1    bouyer 			/*
    438   1.1    bouyer 			 * We swapped some of data in, let the loop fetch
    439   1.1    bouyer 			 * them from cache
    440   1.1    bouyer 			 */
    441   1.1    bouyer 		}
    442   1.1    bouyer 	}
    443  1.10     lukem 
    444   1.1    bouyer 	if (flock(diskfd, LOCK_UN))
    445   1.1    bouyer 		msg("flock(LOCK_UN) failed: %s\n",
    446   1.1    bouyer 		    strerror(errno));
    447   1.1    bouyer }
    448   1.1    bouyer 
    449   1.1    bouyer void
    450   1.6     lukem printcachestats(void)
    451   1.1    bouyer {
    452  1.14     enami 
    453   1.1    bouyer #ifdef STATS
    454   1.1    bouyer 	fprintf(stderr, "Pid %d: %d reads (%u bytes) "
    455   1.1    bouyer 	    "%d physical reads (%u bytes) %d%% hits, %d%% overhead\n",
    456   1.1    bouyer 	    getpid(), nreads, (u_int) readsize, nphysread,
    457   1.1    bouyer 	    (u_int) physreadsize, (nreads - nphysread) * 100 / nreads,
    458   1.1    bouyer 	    (int) (((physreadsize - readsize) * 100) / readsize));
    459   1.1    bouyer #endif
    460   1.1    bouyer }
    461