fsutil.c revision 263629
1/*
2 * Copyright (c) 1980, 1986, 1993
3 *	The Regents of the University of California.  All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 * 4. Neither the name of the University nor the names of its contributors
14 *    may be used to endorse or promote products derived from this software
15 *    without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 */
29
30#if 0
31#ifndef lint
32static const char sccsid[] = "@(#)utilities.c	8.6 (Berkeley) 5/19/95";
33#endif /* not lint */
34#endif
35#include <sys/cdefs.h>
36__FBSDID("$FreeBSD: stable/10/sbin/fsck_ffs/fsutil.c 263629 2014-03-22 11:43:35Z mckusick $");
37
38#include <sys/param.h>
39#include <sys/time.h>
40#include <sys/types.h>
41#include <sys/sysctl.h>
42#include <sys/disk.h>
43#include <sys/disklabel.h>
44#include <sys/ioctl.h>
45#include <sys/stat.h>
46
47#include <ufs/ufs/dinode.h>
48#include <ufs/ufs/dir.h>
49#include <ufs/ffs/fs.h>
50
51#include <err.h>
52#include <errno.h>
53#include <string.h>
54#include <ctype.h>
55#include <fstab.h>
56#include <stdint.h>
57#include <stdio.h>
58#include <stdlib.h>
59#include <time.h>
60#include <unistd.h>
61
62#include "fsck.h"
63
64static void slowio_start(void);
65static void slowio_end(void);
66static void printIOstats(void);
67
68static long diskreads, totaldiskreads, totalreads; /* Disk cache statistics */
69static struct timespec startpass, finishpass;
70struct timeval slowio_starttime;
71int slowio_delay_usec = 10000;	/* Initial IO delay for background fsck */
72int slowio_pollcnt;
73static struct bufarea cgblk;	/* backup buffer for cylinder group blocks */
74static TAILQ_HEAD(buflist, bufarea) bufhead;	/* head of buffer cache list */
75static int numbufs;				/* size of buffer cache */
76static char *buftype[BT_NUMBUFTYPES] = BT_NAMES;
77static struct bufarea *cgbufs;	/* header for cylinder group cache */
78static int flushtries;		/* number of tries to reclaim memory */
79
80void
81fsutilinit(void)
82{
83	diskreads = totaldiskreads = totalreads = 0;
84	bzero(&startpass, sizeof(struct timespec));
85	bzero(&finishpass, sizeof(struct timespec));
86	bzero(&slowio_starttime, sizeof(struct timeval));
87	slowio_delay_usec = 10000;
88	slowio_pollcnt = 0;
89	bzero(&cgblk, sizeof(struct bufarea));
90	TAILQ_INIT(&bufhead);
91	numbufs = 0;
92	/* buftype ? */
93	cgbufs = NULL;
94	flushtries = 0;
95}
96
97int
98ftypeok(union dinode *dp)
99{
100	switch (DIP(dp, di_mode) & IFMT) {
101
102	case IFDIR:
103	case IFREG:
104	case IFBLK:
105	case IFCHR:
106	case IFLNK:
107	case IFSOCK:
108	case IFIFO:
109		return (1);
110
111	default:
112		if (debug)
113			printf("bad file type 0%o\n", DIP(dp, di_mode));
114		return (0);
115	}
116}
117
118int
119reply(const char *question)
120{
121	int persevere;
122	char c;
123
124	if (preen)
125		pfatal("INTERNAL ERROR: GOT TO reply()");
126	persevere = !strcmp(question, "CONTINUE");
127	printf("\n");
128	if (!persevere && (nflag || (fswritefd < 0 && bkgrdflag == 0))) {
129		printf("%s? no\n\n", question);
130		resolved = 0;
131		return (0);
132	}
133	if (yflag || (persevere && nflag)) {
134		printf("%s? yes\n\n", question);
135		return (1);
136	}
137	do	{
138		printf("%s? [yn] ", question);
139		(void) fflush(stdout);
140		c = getc(stdin);
141		while (c != '\n' && getc(stdin) != '\n') {
142			if (feof(stdin)) {
143				resolved = 0;
144				return (0);
145			}
146		}
147	} while (c != 'y' && c != 'Y' && c != 'n' && c != 'N');
148	printf("\n");
149	if (c == 'y' || c == 'Y')
150		return (1);
151	resolved = 0;
152	return (0);
153}
154
155/*
156 * Look up state information for an inode.
157 */
158struct inostat *
159inoinfo(ino_t inum)
160{
161	static struct inostat unallocated = { USTATE, 0, 0 };
162	struct inostatlist *ilp;
163	int iloff;
164
165	if (inum > maxino)
166		errx(EEXIT, "inoinfo: inumber %ju out of range",
167		    (uintmax_t)inum);
168	ilp = &inostathead[inum / sblock.fs_ipg];
169	iloff = inum % sblock.fs_ipg;
170	if (iloff >= ilp->il_numalloced)
171		return (&unallocated);
172	return (&ilp->il_stat[iloff]);
173}
174
175/*
176 * Malloc buffers and set up cache.
177 */
178void
179bufinit(void)
180{
181	struct bufarea *bp;
182	long bufcnt, i;
183	char *bufp;
184
185	pbp = pdirbp = (struct bufarea *)0;
186	bufp = Malloc((unsigned int)sblock.fs_bsize);
187	if (bufp == 0)
188		errx(EEXIT, "cannot allocate buffer pool");
189	cgblk.b_un.b_buf = bufp;
190	initbarea(&cgblk, BT_CYLGRP);
191	TAILQ_INIT(&bufhead);
192	bufcnt = MAXBUFS;
193	if (bufcnt < MINBUFS)
194		bufcnt = MINBUFS;
195	for (i = 0; i < bufcnt; i++) {
196		bp = (struct bufarea *)Malloc(sizeof(struct bufarea));
197		bufp = Malloc((unsigned int)sblock.fs_bsize);
198		if (bp == NULL || bufp == NULL) {
199			if (i >= MINBUFS)
200				break;
201			errx(EEXIT, "cannot allocate buffer pool");
202		}
203		bp->b_un.b_buf = bufp;
204		TAILQ_INSERT_HEAD(&bufhead, bp, b_list);
205		initbarea(bp, BT_UNKNOWN);
206	}
207	numbufs = i;	/* save number of buffers */
208	for (i = 0; i < BT_NUMBUFTYPES; i++) {
209		readtime[i].tv_sec = totalreadtime[i].tv_sec = 0;
210		readtime[i].tv_nsec = totalreadtime[i].tv_nsec = 0;
211		readcnt[i] = totalreadcnt[i] = 0;
212	}
213}
214
215/*
216 * Manage cylinder group buffers.
217 */
218static struct bufarea *cgbufs;	/* header for cylinder group cache */
219static int flushtries;		/* number of tries to reclaim memory */
220
221struct bufarea *
222cgget(int cg)
223{
224	struct bufarea *cgbp;
225	struct cg *cgp;
226
227	if (cgbufs == NULL) {
228		cgbufs = calloc(sblock.fs_ncg, sizeof(struct bufarea));
229		if (cgbufs == NULL)
230			errx(EEXIT, "cannot allocate cylinder group buffers");
231	}
232	cgbp = &cgbufs[cg];
233	if (cgbp->b_un.b_cg != NULL)
234		return (cgbp);
235	cgp = NULL;
236	if (flushtries == 0)
237		cgp = malloc((unsigned int)sblock.fs_cgsize);
238	if (cgp == NULL) {
239		getblk(&cgblk, cgtod(&sblock, cg), sblock.fs_cgsize);
240		return (&cgblk);
241	}
242	cgbp->b_un.b_cg = cgp;
243	initbarea(cgbp, BT_CYLGRP);
244	getblk(cgbp, cgtod(&sblock, cg), sblock.fs_cgsize);
245	return (cgbp);
246}
247
248/*
249 * Attempt to flush a cylinder group cache entry.
250 * Return whether the flush was successful.
251 */
252int
253flushentry(void)
254{
255	struct bufarea *cgbp;
256
257	if (flushtries == sblock.fs_ncg || cgbufs == NULL)
258		return (0);
259	cgbp = &cgbufs[flushtries++];
260	if (cgbp->b_un.b_cg == NULL)
261		return (0);
262	flush(fswritefd, cgbp);
263	free(cgbp->b_un.b_buf);
264	cgbp->b_un.b_buf = NULL;
265	return (1);
266}
267
268/*
269 * Manage a cache of directory blocks.
270 */
271struct bufarea *
272getdatablk(ufs2_daddr_t blkno, long size, int type)
273{
274	struct bufarea *bp;
275
276	TAILQ_FOREACH(bp, &bufhead, b_list)
277		if (bp->b_bno == fsbtodb(&sblock, blkno))
278			goto foundit;
279	TAILQ_FOREACH_REVERSE(bp, &bufhead, buflist, b_list)
280		if ((bp->b_flags & B_INUSE) == 0)
281			break;
282	if (bp == NULL)
283		errx(EEXIT, "deadlocked buffer pool");
284	bp->b_type = type;
285	getblk(bp, blkno, size);
286	/* fall through */
287foundit:
288	if (debug && bp->b_type != type)
289		printf("Buffer type changed from %s to %s\n",
290		    buftype[bp->b_type], buftype[type]);
291	TAILQ_REMOVE(&bufhead, bp, b_list);
292	TAILQ_INSERT_HEAD(&bufhead, bp, b_list);
293	bp->b_flags |= B_INUSE;
294	return (bp);
295}
296
297/*
298 * Timespec operations (from <sys/time.h>).
299 */
300#define	timespecsub(vvp, uvp)						\
301	do {								\
302		(vvp)->tv_sec -= (uvp)->tv_sec;				\
303		(vvp)->tv_nsec -= (uvp)->tv_nsec;			\
304		if ((vvp)->tv_nsec < 0) {				\
305			(vvp)->tv_sec--;				\
306			(vvp)->tv_nsec += 1000000000;			\
307		}							\
308	} while (0)
309#define	timespecadd(vvp, uvp)						\
310	do {								\
311		(vvp)->tv_sec += (uvp)->tv_sec;				\
312		(vvp)->tv_nsec += (uvp)->tv_nsec;			\
313		if ((vvp)->tv_nsec >= 1000000000) {			\
314			(vvp)->tv_sec++;				\
315			(vvp)->tv_nsec -= 1000000000;			\
316		}							\
317	} while (0)
318
319void
320getblk(struct bufarea *bp, ufs2_daddr_t blk, long size)
321{
322	ufs2_daddr_t dblk;
323	struct timespec start, finish;
324
325	dblk = fsbtodb(&sblock, blk);
326	if (bp->b_bno == dblk) {
327		totalreads++;
328	} else {
329		flush(fswritefd, bp);
330		if (debug) {
331			readcnt[bp->b_type]++;
332			clock_gettime(CLOCK_REALTIME_PRECISE, &start);
333		}
334		bp->b_errs = blread(fsreadfd, bp->b_un.b_buf, dblk, size);
335		if (debug) {
336			clock_gettime(CLOCK_REALTIME_PRECISE, &finish);
337			timespecsub(&finish, &start);
338			timespecadd(&readtime[bp->b_type], &finish);
339		}
340		bp->b_bno = dblk;
341		bp->b_size = size;
342	}
343}
344
345void
346flush(int fd, struct bufarea *bp)
347{
348	int i, j;
349
350	if (!bp->b_dirty)
351		return;
352	bp->b_dirty = 0;
353	if (fswritefd < 0) {
354		pfatal("WRITING IN READ_ONLY MODE.\n");
355		return;
356	}
357	if (bp->b_errs != 0)
358		pfatal("WRITING %sZERO'ED BLOCK %lld TO DISK\n",
359		    (bp->b_errs == bp->b_size / dev_bsize) ? "" : "PARTIALLY ",
360		    (long long)bp->b_bno);
361	bp->b_errs = 0;
362	blwrite(fd, bp->b_un.b_buf, bp->b_bno, bp->b_size);
363	if (bp != &sblk)
364		return;
365	for (i = 0, j = 0; i < sblock.fs_cssize; i += sblock.fs_bsize, j++) {
366		blwrite(fswritefd, (char *)sblock.fs_csp + i,
367		    fsbtodb(&sblock, sblock.fs_csaddr + j * sblock.fs_frag),
368		    sblock.fs_cssize - i < sblock.fs_bsize ?
369		    sblock.fs_cssize - i : sblock.fs_bsize);
370	}
371}
372
373void
374rwerror(const char *mesg, ufs2_daddr_t blk)
375{
376
377	if (bkgrdcheck)
378		exit(EEXIT);
379	if (preen == 0)
380		printf("\n");
381	pfatal("CANNOT %s: %ld", mesg, (long)blk);
382	if (reply("CONTINUE") == 0)
383		exit(EEXIT);
384}
385
386void
387ckfini(int markclean)
388{
389	struct bufarea *bp, *nbp;
390	int ofsmodified, cnt;
391
392	if (bkgrdflag) {
393		unlink(snapname);
394		if ((!(sblock.fs_flags & FS_UNCLEAN)) != markclean) {
395			cmd.value = FS_UNCLEAN;
396			cmd.size = markclean ? -1 : 1;
397			if (sysctlbyname("vfs.ffs.setflags", 0, 0,
398			    &cmd, sizeof cmd) == -1)
399				rwerror("SET FILE SYSTEM FLAGS", FS_UNCLEAN);
400			if (!preen) {
401				printf("\n***** FILE SYSTEM MARKED %s *****\n",
402				    markclean ? "CLEAN" : "DIRTY");
403				if (!markclean)
404					rerun = 1;
405			}
406		} else if (!preen && !markclean) {
407			printf("\n***** FILE SYSTEM STILL DIRTY *****\n");
408			rerun = 1;
409		}
410	}
411	if (debug && totalreads > 0)
412		printf("cache with %d buffers missed %ld of %ld (%d%%)\n",
413		    numbufs, totaldiskreads, totalreads,
414		    (int)(totaldiskreads * 100 / totalreads));
415	if (fswritefd < 0) {
416		(void)close(fsreadfd);
417		return;
418	}
419	flush(fswritefd, &sblk);
420	if (havesb && cursnapshot == 0 && sblock.fs_magic == FS_UFS2_MAGIC &&
421	    sblk.b_bno != sblock.fs_sblockloc / dev_bsize &&
422	    !preen && reply("UPDATE STANDARD SUPERBLOCK")) {
423		sblk.b_bno = sblock.fs_sblockloc / dev_bsize;
424		sbdirty();
425		flush(fswritefd, &sblk);
426	}
427	flush(fswritefd, &cgblk);
428	free(cgblk.b_un.b_buf);
429	cnt = 0;
430	TAILQ_FOREACH_REVERSE_SAFE(bp, &bufhead, buflist, b_list, nbp) {
431		TAILQ_REMOVE(&bufhead, bp, b_list);
432		cnt++;
433		flush(fswritefd, bp);
434		free(bp->b_un.b_buf);
435		free((char *)bp);
436	}
437	if (numbufs != cnt)
438		errx(EEXIT, "panic: lost %d buffers", numbufs - cnt);
439	if (cgbufs != NULL) {
440		for (cnt = 0; cnt < sblock.fs_ncg; cnt++) {
441			if (cgbufs[cnt].b_un.b_cg == NULL)
442				continue;
443			flush(fswritefd, &cgbufs[cnt]);
444			free(cgbufs[cnt].b_un.b_cg);
445		}
446		free(cgbufs);
447	}
448	pbp = pdirbp = (struct bufarea *)0;
449	if (cursnapshot == 0 && sblock.fs_clean != markclean) {
450		if ((sblock.fs_clean = markclean) != 0) {
451			sblock.fs_flags &= ~(FS_UNCLEAN | FS_NEEDSFSCK);
452			sblock.fs_pendingblocks = 0;
453			sblock.fs_pendinginodes = 0;
454		}
455		sbdirty();
456		ofsmodified = fsmodified;
457		flush(fswritefd, &sblk);
458		fsmodified = ofsmodified;
459		if (!preen) {
460			printf("\n***** FILE SYSTEM MARKED %s *****\n",
461			    markclean ? "CLEAN" : "DIRTY");
462			if (!markclean)
463				rerun = 1;
464		}
465	} else if (!preen) {
466		if (markclean) {
467			printf("\n***** FILE SYSTEM IS CLEAN *****\n");
468		} else {
469			printf("\n***** FILE SYSTEM STILL DIRTY *****\n");
470			rerun = 1;
471		}
472	}
473	(void)close(fsreadfd);
474	(void)close(fswritefd);
475}
476
477/*
478 * Print out I/O statistics.
479 */
480void
481IOstats(char *what)
482{
483	int i;
484
485	if (debug == 0)
486		return;
487	if (diskreads == 0) {
488		printf("%s: no I/O\n\n", what);
489		return;
490	}
491	if (startpass.tv_sec == 0)
492		startpass = startprog;
493	printf("%s: I/O statistics\n", what);
494	printIOstats();
495	totaldiskreads += diskreads;
496	diskreads = 0;
497	for (i = 0; i < BT_NUMBUFTYPES; i++) {
498		timespecadd(&totalreadtime[i], &readtime[i]);
499		totalreadcnt[i] += readcnt[i];
500		readtime[i].tv_sec = readtime[i].tv_nsec = 0;
501		readcnt[i] = 0;
502	}
503	clock_gettime(CLOCK_REALTIME_PRECISE, &startpass);
504}
505
506void
507finalIOstats(void)
508{
509	int i;
510
511	if (debug == 0)
512		return;
513	printf("Final I/O statistics\n");
514	totaldiskreads += diskreads;
515	diskreads = totaldiskreads;
516	startpass = startprog;
517	for (i = 0; i < BT_NUMBUFTYPES; i++) {
518		timespecadd(&totalreadtime[i], &readtime[i]);
519		totalreadcnt[i] += readcnt[i];
520		readtime[i] = totalreadtime[i];
521		readcnt[i] = totalreadcnt[i];
522	}
523	printIOstats();
524}
525
526static void printIOstats(void)
527{
528	long long msec, totalmsec;
529	int i;
530
531	clock_gettime(CLOCK_REALTIME_PRECISE, &finishpass);
532	timespecsub(&finishpass, &startpass);
533	printf("Running time: %jd.%03ld sec\n",
534		(intmax_t)finishpass.tv_sec, finishpass.tv_nsec / 1000000);
535	printf("buffer reads by type:\n");
536	for (totalmsec = 0, i = 0; i < BT_NUMBUFTYPES; i++)
537		totalmsec += readtime[i].tv_sec * 1000 +
538		    readtime[i].tv_nsec / 1000000;
539	if (totalmsec == 0)
540		totalmsec = 1;
541	for (i = 0; i < BT_NUMBUFTYPES; i++) {
542		if (readcnt[i] == 0)
543			continue;
544		msec =
545		    readtime[i].tv_sec * 1000 + readtime[i].tv_nsec / 1000000;
546		printf("%21s:%8ld %2ld.%ld%% %4jd.%03ld sec %2lld.%lld%%\n",
547		    buftype[i], readcnt[i], readcnt[i] * 100 / diskreads,
548		    (readcnt[i] * 1000 / diskreads) % 10,
549		    (intmax_t)readtime[i].tv_sec, readtime[i].tv_nsec / 1000000,
550		    msec * 100 / totalmsec, (msec * 1000 / totalmsec) % 10);
551	}
552	printf("\n");
553}
554
555int
556blread(int fd, char *buf, ufs2_daddr_t blk, long size)
557{
558	char *cp;
559	int i, errs;
560	off_t offset;
561
562	offset = blk;
563	offset *= dev_bsize;
564	if (bkgrdflag)
565		slowio_start();
566	totalreads++;
567	diskreads++;
568	if (lseek(fd, offset, 0) < 0)
569		rwerror("SEEK BLK", blk);
570	else if (read(fd, buf, (int)size) == size) {
571		if (bkgrdflag)
572			slowio_end();
573		return (0);
574	}
575
576	/*
577	 * This is handled specially here instead of in rwerror because
578	 * rwerror is used for all sorts of errors, not just true read/write
579	 * errors.  It should be refactored and fixed.
580	 */
581	if (surrender) {
582		pfatal("CANNOT READ_BLK: %ld", (long)blk);
583		errx(EEXIT, "ABORTING DUE TO READ ERRORS");
584	} else
585		rwerror("READ BLK", blk);
586
587	if (lseek(fd, offset, 0) < 0)
588		rwerror("SEEK BLK", blk);
589	errs = 0;
590	memset(buf, 0, (size_t)size);
591	printf("THE FOLLOWING DISK SECTORS COULD NOT BE READ:");
592	for (cp = buf, i = 0; i < size; i += secsize, cp += secsize) {
593		if (read(fd, cp, (int)secsize) != secsize) {
594			(void)lseek(fd, offset + i + secsize, 0);
595			if (secsize != dev_bsize && dev_bsize != 1)
596				printf(" %jd (%jd),",
597				    (intmax_t)(blk * dev_bsize + i) / secsize,
598				    (intmax_t)blk + i / dev_bsize);
599			else
600				printf(" %jd,", (intmax_t)blk + i / dev_bsize);
601			errs++;
602		}
603	}
604	printf("\n");
605	if (errs)
606		resolved = 0;
607	return (errs);
608}
609
610void
611blwrite(int fd, char *buf, ufs2_daddr_t blk, ssize_t size)
612{
613	int i;
614	char *cp;
615	off_t offset;
616
617	if (fd < 0)
618		return;
619	offset = blk;
620	offset *= dev_bsize;
621	if (lseek(fd, offset, 0) < 0)
622		rwerror("SEEK BLK", blk);
623	else if (write(fd, buf, size) == size) {
624		fsmodified = 1;
625		return;
626	}
627	resolved = 0;
628	rwerror("WRITE BLK", blk);
629	if (lseek(fd, offset, 0) < 0)
630		rwerror("SEEK BLK", blk);
631	printf("THE FOLLOWING SECTORS COULD NOT BE WRITTEN:");
632	for (cp = buf, i = 0; i < size; i += dev_bsize, cp += dev_bsize)
633		if (write(fd, cp, dev_bsize) != dev_bsize) {
634			(void)lseek(fd, offset + i + dev_bsize, 0);
635			printf(" %jd,", (intmax_t)blk + i / dev_bsize);
636		}
637	printf("\n");
638	return;
639}
640
641void
642blerase(int fd, ufs2_daddr_t blk, long size)
643{
644	off_t ioarg[2];
645
646	if (fd < 0)
647		return;
648	ioarg[0] = blk * dev_bsize;
649	ioarg[1] = size;
650	ioctl(fd, DIOCGDELETE, ioarg);
651	/* we don't really care if we succeed or not */
652	return;
653}
654
655/*
656 * Fill a contiguous region with all-zeroes.  Note ZEROBUFSIZE is by
657 * definition a multiple of dev_bsize.
658 */
659void
660blzero(int fd, ufs2_daddr_t blk, long size)
661{
662	static char *zero;
663	off_t offset, len;
664
665	if (fd < 0)
666		return;
667	if (zero == NULL) {
668		zero = calloc(ZEROBUFSIZE, 1);
669		if (zero == NULL)
670			errx(EEXIT, "cannot allocate buffer pool");
671	}
672	offset = blk * dev_bsize;
673	if (lseek(fd, offset, 0) < 0)
674		rwerror("SEEK BLK", blk);
675	while (size > 0) {
676		len = size > ZEROBUFSIZE ? ZEROBUFSIZE : size;
677		if (write(fd, zero, len) != len)
678			rwerror("WRITE BLK", blk);
679		blk += len / dev_bsize;
680		size -= len;
681	}
682}
683
684/*
685 * Verify cylinder group's magic number and other parameters.  If the
686 * test fails, offer an option to rebuild the whole cylinder group.
687 */
688int
689check_cgmagic(int cg, struct bufarea *cgbp)
690{
691	struct cg *cgp = cgbp->b_un.b_cg;
692
693	/*
694	 * Extended cylinder group checks.
695	 */
696	if (cg_chkmagic(cgp) &&
697	    ((sblock.fs_magic == FS_UFS1_MAGIC &&
698	      cgp->cg_old_niblk == sblock.fs_ipg &&
699	      cgp->cg_ndblk <= sblock.fs_fpg &&
700	      cgp->cg_old_ncyl <= sblock.fs_old_cpg) ||
701	     (sblock.fs_magic == FS_UFS2_MAGIC &&
702	      cgp->cg_niblk == sblock.fs_ipg &&
703	      cgp->cg_ndblk <= sblock.fs_fpg &&
704	      cgp->cg_initediblk <= sblock.fs_ipg))) {
705		return (1);
706	}
707	pfatal("CYLINDER GROUP %d: BAD MAGIC NUMBER", cg);
708	if (!reply("REBUILD CYLINDER GROUP")) {
709		printf("YOU WILL NEED TO RERUN FSCK.\n");
710		rerun = 1;
711		return (1);
712	}
713	/*
714	 * Zero out the cylinder group and then initialize critical fields.
715	 * Bit maps and summaries will be recalculated by later passes.
716	 */
717	memset(cgp, 0, (size_t)sblock.fs_cgsize);
718	cgp->cg_magic = CG_MAGIC;
719	cgp->cg_cgx = cg;
720	cgp->cg_niblk = sblock.fs_ipg;
721	cgp->cg_initediblk = sblock.fs_ipg < 2 * INOPB(&sblock) ?
722	    sblock.fs_ipg : 2 * INOPB(&sblock);
723	if (cgbase(&sblock, cg) + sblock.fs_fpg < sblock.fs_size)
724		cgp->cg_ndblk = sblock.fs_fpg;
725	else
726		cgp->cg_ndblk = sblock.fs_size - cgbase(&sblock, cg);
727	cgp->cg_iusedoff = &cgp->cg_space[0] - (u_char *)(&cgp->cg_firstfield);
728	if (sblock.fs_magic == FS_UFS1_MAGIC) {
729		cgp->cg_niblk = 0;
730		cgp->cg_initediblk = 0;
731		cgp->cg_old_ncyl = sblock.fs_old_cpg;
732		cgp->cg_old_niblk = sblock.fs_ipg;
733		cgp->cg_old_btotoff = cgp->cg_iusedoff;
734		cgp->cg_old_boff = cgp->cg_old_btotoff +
735		    sblock.fs_old_cpg * sizeof(int32_t);
736		cgp->cg_iusedoff = cgp->cg_old_boff +
737		    sblock.fs_old_cpg * sizeof(u_int16_t);
738	}
739	cgp->cg_freeoff = cgp->cg_iusedoff + howmany(sblock.fs_ipg, CHAR_BIT);
740	cgp->cg_nextfreeoff = cgp->cg_freeoff + howmany(sblock.fs_fpg,CHAR_BIT);
741	if (sblock.fs_contigsumsize > 0) {
742		cgp->cg_nclusterblks = cgp->cg_ndblk / sblock.fs_frag;
743		cgp->cg_clustersumoff =
744		    roundup(cgp->cg_nextfreeoff, sizeof(u_int32_t));
745		cgp->cg_clustersumoff -= sizeof(u_int32_t);
746		cgp->cg_clusteroff = cgp->cg_clustersumoff +
747		    (sblock.fs_contigsumsize + 1) * sizeof(u_int32_t);
748		cgp->cg_nextfreeoff = cgp->cg_clusteroff +
749		    howmany(fragstoblks(&sblock, sblock.fs_fpg), CHAR_BIT);
750	}
751	dirty(cgbp);
752	return (0);
753}
754
755/*
756 * allocate a data block with the specified number of fragments
757 */
758ufs2_daddr_t
759allocblk(long frags)
760{
761	int i, j, k, cg, baseblk;
762	struct bufarea *cgbp;
763	struct cg *cgp;
764
765	if (frags <= 0 || frags > sblock.fs_frag)
766		return (0);
767	for (i = 0; i < maxfsblock - sblock.fs_frag; i += sblock.fs_frag) {
768		for (j = 0; j <= sblock.fs_frag - frags; j++) {
769			if (testbmap(i + j))
770				continue;
771			for (k = 1; k < frags; k++)
772				if (testbmap(i + j + k))
773					break;
774			if (k < frags) {
775				j += k;
776				continue;
777			}
778			cg = dtog(&sblock, i + j);
779			cgbp = cgget(cg);
780			cgp = cgbp->b_un.b_cg;
781			if (!check_cgmagic(cg, cgbp))
782				return (0);
783			baseblk = dtogd(&sblock, i + j);
784			for (k = 0; k < frags; k++) {
785				setbmap(i + j + k);
786				clrbit(cg_blksfree(cgp), baseblk + k);
787			}
788			n_blks += frags;
789			if (frags == sblock.fs_frag)
790				cgp->cg_cs.cs_nbfree--;
791			else
792				cgp->cg_cs.cs_nffree -= frags;
793			dirty(cgbp);
794			return (i + j);
795		}
796	}
797	return (0);
798}
799
800/*
801 * Free a previously allocated block
802 */
803void
804freeblk(ufs2_daddr_t blkno, long frags)
805{
806	struct inodesc idesc;
807
808	idesc.id_blkno = blkno;
809	idesc.id_numfrags = frags;
810	(void)pass4check(&idesc);
811}
812
813/* Slow down IO so as to leave some disk bandwidth for other processes */
814void
815slowio_start()
816{
817
818	/* Delay one in every 8 operations */
819	slowio_pollcnt = (slowio_pollcnt + 1) & 7;
820	if (slowio_pollcnt == 0) {
821		gettimeofday(&slowio_starttime, NULL);
822	}
823}
824
825void
826slowio_end()
827{
828	struct timeval tv;
829	int delay_usec;
830
831	if (slowio_pollcnt != 0)
832		return;
833
834	/* Update the slowdown interval. */
835	gettimeofday(&tv, NULL);
836	delay_usec = (tv.tv_sec - slowio_starttime.tv_sec) * 1000000 +
837	    (tv.tv_usec - slowio_starttime.tv_usec);
838	if (delay_usec < 64)
839		delay_usec = 64;
840	if (delay_usec > 2500000)
841		delay_usec = 2500000;
842	slowio_delay_usec = (slowio_delay_usec * 63 + delay_usec) >> 6;
843	/* delay by 8 times the average IO delay */
844	if (slowio_delay_usec > 64)
845		usleep(slowio_delay_usec * 8);
846}
847
848/*
849 * Find a pathname
850 */
851void
852getpathname(char *namebuf, ino_t curdir, ino_t ino)
853{
854	int len;
855	char *cp;
856	struct inodesc idesc;
857	static int busy = 0;
858
859	if (curdir == ino && ino == ROOTINO) {
860		(void)strcpy(namebuf, "/");
861		return;
862	}
863	if (busy || !INO_IS_DVALID(curdir)) {
864		(void)strcpy(namebuf, "?");
865		return;
866	}
867	busy = 1;
868	memset(&idesc, 0, sizeof(struct inodesc));
869	idesc.id_type = DATA;
870	idesc.id_fix = IGNORE;
871	cp = &namebuf[MAXPATHLEN - 1];
872	*cp = '\0';
873	if (curdir != ino) {
874		idesc.id_parent = curdir;
875		goto namelookup;
876	}
877	while (ino != ROOTINO) {
878		idesc.id_number = ino;
879		idesc.id_func = findino;
880		idesc.id_name = strdup("..");
881		if ((ckinode(ginode(ino), &idesc) & FOUND) == 0)
882			break;
883	namelookup:
884		idesc.id_number = idesc.id_parent;
885		idesc.id_parent = ino;
886		idesc.id_func = findname;
887		idesc.id_name = namebuf;
888		if ((ckinode(ginode(idesc.id_number), &idesc)&FOUND) == 0)
889			break;
890		len = strlen(namebuf);
891		cp -= len;
892		memmove(cp, namebuf, (size_t)len);
893		*--cp = '/';
894		if (cp < &namebuf[MAXNAMLEN])
895			break;
896		ino = idesc.id_number;
897	}
898	busy = 0;
899	if (ino != ROOTINO)
900		*--cp = '?';
901	memmove(namebuf, cp, (size_t)(&namebuf[MAXPATHLEN] - cp));
902}
903
904void
905catch(int sig __unused)
906{
907
908	ckfini(0);
909	exit(12);
910}
911
912/*
913 * When preening, allow a single quit to signal
914 * a special exit after file system checks complete
915 * so that reboot sequence may be interrupted.
916 */
917void
918catchquit(int sig __unused)
919{
920	printf("returning to single-user after file system check\n");
921	returntosingle = 1;
922	(void)signal(SIGQUIT, SIG_DFL);
923}
924
925/*
926 * determine whether an inode should be fixed.
927 */
928int
929dofix(struct inodesc *idesc, const char *msg)
930{
931
932	switch (idesc->id_fix) {
933
934	case DONTKNOW:
935		if (idesc->id_type == DATA)
936			direrror(idesc->id_number, msg);
937		else
938			pwarn("%s", msg);
939		if (preen) {
940			printf(" (SALVAGED)\n");
941			idesc->id_fix = FIX;
942			return (ALTERED);
943		}
944		if (reply("SALVAGE") == 0) {
945			idesc->id_fix = NOFIX;
946			return (0);
947		}
948		idesc->id_fix = FIX;
949		return (ALTERED);
950
951	case FIX:
952		return (ALTERED);
953
954	case NOFIX:
955	case IGNORE:
956		return (0);
957
958	default:
959		errx(EEXIT, "UNKNOWN INODESC FIX MODE %d", idesc->id_fix);
960	}
961	/* NOTREACHED */
962	return (0);
963}
964
965#include <stdarg.h>
966
967/*
968 * An unexpected inconsistency occurred.
969 * Die if preening or file system is running with soft dependency protocol,
970 * otherwise just print message and continue.
971 */
972void
973pfatal(const char *fmt, ...)
974{
975	va_list ap;
976	va_start(ap, fmt);
977	if (!preen) {
978		(void)vfprintf(stdout, fmt, ap);
979		va_end(ap);
980		if (usedsoftdep)
981			(void)fprintf(stdout,
982			    "\nUNEXPECTED SOFT UPDATE INCONSISTENCY\n");
983		/*
984		 * Force foreground fsck to clean up inconsistency.
985		 */
986		if (bkgrdflag) {
987			cmd.value = FS_NEEDSFSCK;
988			cmd.size = 1;
989			if (sysctlbyname("vfs.ffs.setflags", 0, 0,
990			    &cmd, sizeof cmd) == -1)
991				pwarn("CANNOT SET FS_NEEDSFSCK FLAG\n");
992			fprintf(stdout, "CANNOT RUN IN BACKGROUND\n");
993			ckfini(0);
994			exit(EEXIT);
995		}
996		return;
997	}
998	if (cdevname == NULL)
999		cdevname = strdup("fsck");
1000	(void)fprintf(stdout, "%s: ", cdevname);
1001	(void)vfprintf(stdout, fmt, ap);
1002	(void)fprintf(stdout,
1003	    "\n%s: UNEXPECTED%sINCONSISTENCY; RUN fsck MANUALLY.\n",
1004	    cdevname, usedsoftdep ? " SOFT UPDATE " : " ");
1005	/*
1006	 * Force foreground fsck to clean up inconsistency.
1007	 */
1008	if (bkgrdflag) {
1009		cmd.value = FS_NEEDSFSCK;
1010		cmd.size = 1;
1011		if (sysctlbyname("vfs.ffs.setflags", 0, 0,
1012		    &cmd, sizeof cmd) == -1)
1013			pwarn("CANNOT SET FS_NEEDSFSCK FLAG\n");
1014	}
1015	ckfini(0);
1016	exit(EEXIT);
1017}
1018
1019/*
1020 * Pwarn just prints a message when not preening or running soft dependency
1021 * protocol, or a warning (preceded by filename) when preening.
1022 */
1023void
1024pwarn(const char *fmt, ...)
1025{
1026	va_list ap;
1027	va_start(ap, fmt);
1028	if (preen)
1029		(void)fprintf(stdout, "%s: ", cdevname);
1030	(void)vfprintf(stdout, fmt, ap);
1031	va_end(ap);
1032}
1033
1034/*
1035 * Stub for routines from kernel.
1036 */
1037void
1038panic(const char *fmt, ...)
1039{
1040	va_list ap;
1041	va_start(ap, fmt);
1042	pfatal("INTERNAL INCONSISTENCY:");
1043	(void)vfprintf(stdout, fmt, ap);
1044	va_end(ap);
1045	exit(EEXIT);
1046}
1047