mkfs.c revision 301879
1230426Skib/*	$NetBSD: mkfs.c,v 1.20 2004/06/24 22:30:13 lukem Exp $	*/
2230426Skib
3230426Skib/*
4230426Skib * Copyright (c) 2002 Networks Associates Technology, Inc.
5230426Skib * All rights reserved.
6230426Skib *
7230426Skib * This software was developed for the FreeBSD Project by Marshall
8230426Skib * Kirk McKusick and Network Associates Laboratories, the Security
9230426Skib * Research Division of Network Associates, Inc. under DARPA/SPAWAR
10230426Skib * contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA CHATS
11230426Skib * research program
12230426Skib *
13230426Skib * Copyright (c) 1980, 1989, 1993
14230426Skib *	The Regents of the University of California.  All rights reserved.
15230426Skib *
16230426Skib * Redistribution and use in source and binary forms, with or without
17230426Skib * modification, are permitted provided that the following conditions
18230426Skib * are met:
19230426Skib * 1. Redistributions of source code must retain the above copyright
20230426Skib *    notice, this list of conditions and the following disclaimer.
21230426Skib * 2. Redistributions in binary form must reproduce the above copyright
22230426Skib *    notice, this list of conditions and the following disclaimer in the
23230426Skib *    documentation and/or other materials provided with the distribution.
24230426Skib * 3. Neither the name of the University nor the names of its contributors
25230426Skib *    may be used to endorse or promote products derived from this software
26230426Skib *    without specific prior written permission.
27230426Skib *
28230426Skib * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29230426Skib * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30230426Skib * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31230426Skib * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32230426Skib * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33230426Skib * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34230426Skib * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35230426Skib * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36230426Skib * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37230426Skib * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38230426Skib * SUCH DAMAGE.
39284919Skib */
40284919Skib
41230426Skib#include <sys/cdefs.h>
42230426Skib__FBSDID("$FreeBSD: head/usr.sbin/makefs/ffs/mkfs.c 301879 2016-06-14 14:03:28Z emaste $");
43284919Skib
44284919Skib#include <sys/param.h>
45230426Skib#include <sys/time.h>
46331735Skib#include <sys/resource.h>
47331735Skib
48331735Skib#include <stdio.h>
49331735Skib#include <stdlib.h>
50331735Skib#include <string.h>
51331735Skib#include <unistd.h>
52331735Skib#include <errno.h>
53230426Skib
54230426Skib#include "makefs.h"
55230426Skib#include "ffs.h"
56274817Sjhb
57331735Skib#include <ufs/ufs/dinode.h>
58331735Skib#include <ufs/ffs/fs.h>
59331735Skib
60230426Skib#include "ffs/ufs_bswap.h"
61230426Skib#include "ffs/ufs_inode.h"
62230426Skib#include "ffs/ffs_extern.h"
63230426Skib#include "ffs/newfs_extern.h"
64230426Skib
65230426Skib#ifndef BBSIZE
66230426Skib#define	BBSIZE	8192			/* size of boot area, with label */
67274817Sjhb#endif
68238669Skib
69230426Skibstatic void initcg(int, time_t, const fsinfo_t *);
70230426Skibstatic int ilog2(int);
71230426Skib
72230426Skibstatic int count_digits(int);
73230426Skib
74274817Sjhb/*
75230426Skib * make file system for cylinder-group style file systems
76230426Skib */
77230426Skib#define	UMASK		0755
78230426Skib#define	POWEROF2(num)	(((num) & ((num) - 1)) == 0)
79230426Skib
80230426Skibunion {
81238669Skib	struct fs fs;
82238669Skib	char pad[SBLOCKSIZE];
83230426Skib} fsun;
84238669Skib#define	sblock	fsun.fs
85230426Skibstruct	csum *fscs;
86230426Skib
87230426Skibunion {
88274817Sjhb	struct cg cg;
89331735Skib	char pad[FFS_MAXBSIZE];
90331735Skib} cgun;
91331735Skib#define	acg	cgun.cg
92331735Skib
93331735Skibchar *iobuf;
94331735Skibint iobufsize;
95331735Skib
96331735Skibchar writebuf[FFS_MAXBSIZE];
97331735Skib
98331735Skibstatic int     Oflag;	   /* format as an 4.3BSD file system */
99331735Skibstatic int64_t fssize;	   /* file system size */
100331735Skibstatic int     sectorsize;	   /* bytes/sector */
101331735Skibstatic int     fsize;	   /* fragment size */
102331735Skibstatic int     bsize;	   /* block size */
103331735Skibstatic int     maxbsize;   /* maximum clustering */
104331735Skibstatic int     maxblkspercg;
105331735Skibstatic int     minfree;	   /* free space threshold */
106331735Skibstatic int     opt;		   /* optimization preference (space or time) */
107331735Skibstatic int     density;	   /* number of bytes per inode */
108331735Skibstatic int     maxcontig;	   /* max contiguous blocks to allocate */
109331735Skibstatic int     maxbpg;	   /* maximum blocks per file in a cyl group */
110274817Sjhbstatic int     bbsize;	   /* boot block size */
111274817Sjhbstatic int     sbsize;	   /* superblock size */
112274817Sjhbstatic int     avgfilesize;	   /* expected average file size */
113274817Sjhbstatic int     avgfpdir;	   /* expected number of files per directory */
114274817Sjhb
115274817Sjhbstruct fs *
116274817Sjhbffs_mkfs(const char *fsys, const fsinfo_t *fsopts, time_t tstamp)
117274817Sjhb{
118274817Sjhb	int fragsperinode, optimalfpg, origdensity, minfpg, lastminfpg;
119274817Sjhb	int32_t cylno, i, csfrags;
120278976Sjhb	long long sizepb;
121278976Sjhb	void *space;
122274817Sjhb	int size, blks;
123274817Sjhb	int nprintcols, printcolwidth;
124274817Sjhb	ffs_opt_t	*ffs_opts = fsopts->fs_specific;
125274817Sjhb
126274817Sjhb	Oflag =		ffs_opts->version;
127274817Sjhb	fssize =        fsopts->size / fsopts->sectorsize;
128274817Sjhb	sectorsize =    fsopts->sectorsize;
129274817Sjhb	fsize =         ffs_opts->fsize;
130274817Sjhb	bsize =         ffs_opts->bsize;
131274817Sjhb	maxbsize =      ffs_opts->maxbsize;
132274817Sjhb	maxblkspercg =  ffs_opts->maxblkspercg;
133274817Sjhb	minfree =       ffs_opts->minfree;
134230426Skib	opt =           ffs_opts->optimization;
135230426Skib	density =       ffs_opts->density;
136230426Skib	maxcontig =     ffs_opts->maxcontig;
137230426Skib	maxbpg =        ffs_opts->maxbpg;
138230426Skib	avgfilesize =   ffs_opts->avgfilesize;
139230426Skib	avgfpdir =      ffs_opts->avgfpdir;
140230426Skib	bbsize =        BBSIZE;
141230426Skib	sbsize =        SBLOCKSIZE;
142284919Skib
143284919Skib	strlcpy(sblock.fs_volname, ffs_opts->label, sizeof(sblock.fs_volname));
144284919Skib
145323431Skib	if (Oflag == 0) {
146284919Skib		sblock.fs_old_inodefmt = FS_42INODEFMT;
147323431Skib		sblock.fs_maxsymlinklen = 0;
148323431Skib		sblock.fs_old_flags = 0;
149284919Skib	} else {
150323431Skib		sblock.fs_old_inodefmt = FS_44INODEFMT;
151284919Skib		sblock.fs_maxsymlinklen = (Oflag == 1 ? MAXSYMLINKLEN_UFS1 :
152284919Skib		    MAXSYMLINKLEN_UFS2);
153323431Skib		sblock.fs_old_flags = FS_FLAGS_UPDATED;
154284919Skib		sblock.fs_flags = 0;
155284919Skib	}
156284919Skib	/*
157284919Skib	 * Validate the given file system size.
158230426Skib	 * Verify that its last block can actually be accessed.
159230426Skib	 * Convert to file system fragment sized units.
160230426Skib	 */
161230426Skib	if (fssize <= 0) {
162230426Skib		printf("preposterous size %lld\n", (long long)fssize);
163230426Skib		exit(13);
164230426Skib	}
165230426Skib	ffs_wtfs(fssize - 1, sectorsize, (char *)&sblock, fsopts);
166323431Skib
167284919Skib	/*
168230426Skib	 * collect and verify the filesystem density info
169230426Skib	 */
170230426Skib	sblock.fs_avgfilesize = avgfilesize;
171230426Skib	sblock.fs_avgfpdir = avgfpdir;
172238669Skib	if (sblock.fs_avgfilesize <= 0)
173230426Skib		printf("illegal expected average file size %d\n",
174230426Skib		    sblock.fs_avgfilesize), exit(14);
175230426Skib	if (sblock.fs_avgfpdir <= 0)
176230426Skib		printf("illegal expected number of files per directory %d\n",
177230426Skib		    sblock.fs_avgfpdir), exit(15);
178238669Skib	/*
179230426Skib	 * collect and verify the block and fragment sizes
180230426Skib	 */
181230426Skib	sblock.fs_bsize = bsize;
182230426Skib	sblock.fs_fsize = fsize;
183230426Skib	if (!POWEROF2(sblock.fs_bsize)) {
184274817Sjhb		printf("block size must be a power of 2, not %d\n",
185274817Sjhb		    sblock.fs_bsize);
186274817Sjhb		exit(16);
187274817Sjhb	}
188274817Sjhb	if (!POWEROF2(sblock.fs_fsize)) {
189274817Sjhb		printf("fragment size must be a power of 2, not %d\n",
190230426Skib		    sblock.fs_fsize);
191230426Skib		exit(17);
192284919Skib	}
193284919Skib	if (sblock.fs_fsize < sectorsize) {
194284919Skib		printf("fragment size %d is too small, minimum is %d\n",
195284919Skib		    sblock.fs_fsize, sectorsize);
196284919Skib		exit(18);
197284919Skib	}
198323431Skib	if (sblock.fs_bsize < MINBSIZE) {
199323431Skib		printf("block size %d is too small, minimum is %d\n",
200323431Skib		    sblock.fs_bsize, MINBSIZE);
201323431Skib		exit(19);
202284919Skib	}
203284919Skib	if (sblock.fs_bsize > FFS_MAXBSIZE) {
204284919Skib		printf("block size %d is too large, maximum is %d\n",
205284919Skib		    sblock.fs_bsize, FFS_MAXBSIZE);
206284919Skib		exit(19);
207284919Skib	}
208284919Skib	if (sblock.fs_bsize < sblock.fs_fsize) {
209284919Skib		printf("block size (%d) cannot be smaller than fragment size (%d)\n",
210284919Skib		    sblock.fs_bsize, sblock.fs_fsize);
211284919Skib		exit(20);
212284919Skib	}
213284919Skib
214284919Skib	if (maxbsize < bsize || !POWEROF2(maxbsize)) {
215284919Skib		sblock.fs_maxbsize = sblock.fs_bsize;
216284919Skib		printf("Extent size set to %d\n", sblock.fs_maxbsize);
217230426Skib	} else if (sblock.fs_maxbsize > FS_MAXCONTIG * sblock.fs_bsize) {
218230426Skib		sblock.fs_maxbsize = FS_MAXCONTIG * sblock.fs_bsize;
219230426Skib		printf("Extent size reduced to %d\n", sblock.fs_maxbsize);
220230426Skib	} else {
221230426Skib		sblock.fs_maxbsize = maxbsize;
222230426Skib	}
223230426Skib	sblock.fs_maxcontig = maxcontig;
224230426Skib	if (sblock.fs_maxcontig < sblock.fs_maxbsize / sblock.fs_bsize) {
225230426Skib		sblock.fs_maxcontig = sblock.fs_maxbsize / sblock.fs_bsize;
226230426Skib		printf("Maxcontig raised to %d\n", sblock.fs_maxbsize);
227230426Skib	}
228230426Skib
229284919Skib	if (sblock.fs_maxcontig > 1)
230323431Skib		sblock.fs_contigsumsize = MIN(sblock.fs_maxcontig,FS_MAXCONTIG);
231230426Skib
232230426Skib	sblock.fs_bmask = ~(sblock.fs_bsize - 1);
233230426Skib	sblock.fs_fmask = ~(sblock.fs_fsize - 1);
234230426Skib	sblock.fs_qbmask = ~sblock.fs_bmask;
235230426Skib	sblock.fs_qfmask = ~sblock.fs_fmask;
236230426Skib	for (sblock.fs_bshift = 0, i = sblock.fs_bsize; i > 1; i >>= 1)
237230426Skib		sblock.fs_bshift++;
238274817Sjhb	for (sblock.fs_fshift = 0, i = sblock.fs_fsize; i > 1; i >>= 1)
239232520Stijl		sblock.fs_fshift++;
240274817Sjhb	sblock.fs_frag = numfrags(&sblock, sblock.fs_bsize);
241232520Stijl	for (sblock.fs_fragshift = 0, i = sblock.fs_frag; i > 1; i >>= 1)
242274817Sjhb		sblock.fs_fragshift++;
243232520Stijl	if (sblock.fs_frag > MAXFRAG) {
244230426Skib		printf("fragment size %d is too small, "
245274817Sjhb			"minimum with block size %d is %d\n",
246274817Sjhb		    sblock.fs_fsize, sblock.fs_bsize,
247274817Sjhb		    sblock.fs_bsize / MAXFRAG);
248230426Skib		exit(21);
249230426Skib	}
250230426Skib	sblock.fs_fsbtodb = ilog2(sblock.fs_fsize / sectorsize);
251230426Skib	sblock.fs_size = sblock.fs_providersize = fssize =
252230426Skib	    dbtofsb(&sblock, fssize);
253284919Skib
254284919Skib	if (Oflag <= 1) {
255323431Skib		sblock.fs_magic = FS_UFS1_MAGIC;
256323431Skib		sblock.fs_sblockloc = SBLOCK_UFS1;
257323431Skib		sblock.fs_nindir = sblock.fs_bsize / sizeof(ufs1_daddr_t);
258323431Skib		sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs1_dinode);
259284919Skib		sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
260284919Skib		    sizeof (ufs1_daddr_t));
261284919Skib		sblock.fs_old_inodefmt = FS_44INODEFMT;
262284919Skib		sblock.fs_old_cgoffset = 0;
263284919Skib		sblock.fs_old_cgmask = 0xffffffff;
264284919Skib		sblock.fs_old_size = sblock.fs_size;
265284919Skib		sblock.fs_old_rotdelay = 0;
266284919Skib		sblock.fs_old_rps = 60;
267285011Skib		sblock.fs_old_nspf = sblock.fs_fsize / sectorsize;
268284919Skib		sblock.fs_old_cpg = 1;
269284919Skib		sblock.fs_old_interleave = 1;
270284919Skib		sblock.fs_old_trackskew = 0;
271284919Skib		sblock.fs_old_cpc = 0;
272284919Skib		sblock.fs_old_postblformat = 1;
273284919Skib		sblock.fs_old_nrpos = 1;
274230426Skib	} else {
275230426Skib		sblock.fs_magic = FS_UFS2_MAGIC;
276230426Skib		sblock.fs_sblockloc = SBLOCK_UFS2;
277230426Skib		sblock.fs_nindir = sblock.fs_bsize / sizeof(ufs2_daddr_t);
278230426Skib		sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs2_dinode);
279230426Skib		sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
280230426Skib		    sizeof (ufs2_daddr_t));
281	}
282
283	sblock.fs_sblkno =
284	    roundup(howmany(sblock.fs_sblockloc + SBLOCKSIZE, sblock.fs_fsize),
285		sblock.fs_frag);
286	sblock.fs_cblkno = (daddr_t)(sblock.fs_sblkno +
287	    roundup(howmany(SBLOCKSIZE, sblock.fs_fsize), sblock.fs_frag));
288	sblock.fs_iblkno = sblock.fs_cblkno + sblock.fs_frag;
289	sblock.fs_maxfilesize = sblock.fs_bsize * NDADDR - 1;
290	for (sizepb = sblock.fs_bsize, i = 0; i < NIADDR; i++) {
291		sizepb *= NINDIR(&sblock);
292		sblock.fs_maxfilesize += sizepb;
293	}
294
295	/*
296	 * Calculate the number of blocks to put into each cylinder group.
297	 *
298	 * This algorithm selects the number of blocks per cylinder
299	 * group. The first goal is to have at least enough data blocks
300	 * in each cylinder group to meet the density requirement. Once
301	 * this goal is achieved we try to expand to have at least
302	 * 1 cylinder group. Once this goal is achieved, we pack as
303	 * many blocks into each cylinder group map as will fit.
304	 *
305	 * We start by calculating the smallest number of blocks that we
306	 * can put into each cylinder group. If this is too big, we reduce
307	 * the density until it fits.
308	 */
309	origdensity = density;
310	for (;;) {
311		fragsperinode = MAX(numfrags(&sblock, density), 1);
312		minfpg = fragsperinode * INOPB(&sblock);
313		if (minfpg > sblock.fs_size)
314			minfpg = sblock.fs_size;
315		sblock.fs_ipg = INOPB(&sblock);
316		sblock.fs_fpg = roundup(sblock.fs_iblkno +
317		    sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
318		if (sblock.fs_fpg < minfpg)
319			sblock.fs_fpg = minfpg;
320		sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
321		    INOPB(&sblock));
322		sblock.fs_fpg = roundup(sblock.fs_iblkno +
323		    sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
324		if (sblock.fs_fpg < minfpg)
325			sblock.fs_fpg = minfpg;
326		sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
327		    INOPB(&sblock));
328		if (CGSIZE(&sblock) < (unsigned long)sblock.fs_bsize)
329			break;
330		density -= sblock.fs_fsize;
331	}
332	if (density != origdensity)
333		printf("density reduced from %d to %d\n", origdensity, density);
334
335	if (maxblkspercg <= 0 || maxblkspercg >= fssize)
336		maxblkspercg = fssize - 1;
337	/*
338	 * Start packing more blocks into the cylinder group until
339	 * it cannot grow any larger, the number of cylinder groups
340	 * drops below 1, or we reach the size requested.
341	 */
342	for ( ; sblock.fs_fpg < maxblkspercg; sblock.fs_fpg += sblock.fs_frag) {
343		sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
344		    INOPB(&sblock));
345		if (sblock.fs_size / sblock.fs_fpg < 1)
346			break;
347		if (CGSIZE(&sblock) < (unsigned long)sblock.fs_bsize)
348			continue;
349		if (CGSIZE(&sblock) == (unsigned long)sblock.fs_bsize)
350			break;
351		sblock.fs_fpg -= sblock.fs_frag;
352		sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
353		    INOPB(&sblock));
354		break;
355	}
356	/*
357	 * Check to be sure that the last cylinder group has enough blocks
358	 * to be viable. If it is too small, reduce the number of blocks
359	 * per cylinder group which will have the effect of moving more
360	 * blocks into the last cylinder group.
361	 */
362	optimalfpg = sblock.fs_fpg;
363	for (;;) {
364		sblock.fs_ncg = howmany(sblock.fs_size, sblock.fs_fpg);
365		lastminfpg = roundup(sblock.fs_iblkno +
366		    sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
367		if (sblock.fs_size < lastminfpg) {
368			printf("Filesystem size %lld < minimum size of %d\n",
369			    (long long)sblock.fs_size, lastminfpg);
370			exit(28);
371		}
372		if (sblock.fs_size % sblock.fs_fpg >= lastminfpg ||
373		    sblock.fs_size % sblock.fs_fpg == 0)
374			break;
375		sblock.fs_fpg -= sblock.fs_frag;
376		sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
377		    INOPB(&sblock));
378	}
379	if (optimalfpg != sblock.fs_fpg)
380		printf("Reduced frags per cylinder group from %d to %d %s\n",
381		   optimalfpg, sblock.fs_fpg, "to enlarge last cyl group");
382	sblock.fs_cgsize = fragroundup(&sblock, CGSIZE(&sblock));
383	sblock.fs_dblkno = sblock.fs_iblkno + sblock.fs_ipg / INOPF(&sblock);
384	if (Oflag <= 1) {
385		sblock.fs_old_spc = sblock.fs_fpg * sblock.fs_old_nspf;
386		sblock.fs_old_nsect = sblock.fs_old_spc;
387		sblock.fs_old_npsect = sblock.fs_old_spc;
388		sblock.fs_old_ncyl = sblock.fs_ncg;
389	}
390
391	/*
392	 * fill in remaining fields of the super block
393	 */
394	sblock.fs_csaddr = cgdmin(&sblock, 0);
395	sblock.fs_cssize =
396	    fragroundup(&sblock, sblock.fs_ncg * sizeof(struct csum));
397
398	/*
399	 * Setup memory for temporary in-core cylgroup summaries.
400	 * Cribbed from ffs_mountfs().
401	 */
402	size = sblock.fs_cssize;
403	blks = howmany(size, sblock.fs_fsize);
404	if (sblock.fs_contigsumsize > 0)
405		size += sblock.fs_ncg * sizeof(int32_t);
406	if ((space = (char *)calloc(1, size)) == NULL)
407		err(1, "memory allocation error for cg summaries");
408	sblock.fs_csp = space;
409	space = (char *)space + sblock.fs_cssize;
410	if (sblock.fs_contigsumsize > 0) {
411		int32_t *lp;
412
413		sblock.fs_maxcluster = lp = space;
414		for (i = 0; i < sblock.fs_ncg; i++)
415		*lp++ = sblock.fs_contigsumsize;
416	}
417
418	sblock.fs_sbsize = fragroundup(&sblock, sizeof(struct fs));
419	if (sblock.fs_sbsize > SBLOCKSIZE)
420		sblock.fs_sbsize = SBLOCKSIZE;
421	sblock.fs_minfree = minfree;
422	sblock.fs_maxcontig = maxcontig;
423	sblock.fs_maxbpg = maxbpg;
424	sblock.fs_optim = opt;
425	sblock.fs_cgrotor = 0;
426	sblock.fs_pendingblocks = 0;
427	sblock.fs_pendinginodes = 0;
428	sblock.fs_cstotal.cs_ndir = 0;
429	sblock.fs_cstotal.cs_nbfree = 0;
430	sblock.fs_cstotal.cs_nifree = 0;
431	sblock.fs_cstotal.cs_nffree = 0;
432	sblock.fs_fmod = 0;
433	sblock.fs_ronly = 0;
434	sblock.fs_state = 0;
435	sblock.fs_clean = FS_ISCLEAN;
436	sblock.fs_ronly = 0;
437	sblock.fs_id[0] = tstamp;
438	sblock.fs_id[1] = random();
439	sblock.fs_fsmnt[0] = '\0';
440	csfrags = howmany(sblock.fs_cssize, sblock.fs_fsize);
441	sblock.fs_dsize = sblock.fs_size - sblock.fs_sblkno -
442	    sblock.fs_ncg * (sblock.fs_dblkno - sblock.fs_sblkno);
443	sblock.fs_cstotal.cs_nbfree =
444	    fragstoblks(&sblock, sblock.fs_dsize) -
445	    howmany(csfrags, sblock.fs_frag);
446	sblock.fs_cstotal.cs_nffree =
447	    fragnum(&sblock, sblock.fs_size) +
448	    (fragnum(&sblock, csfrags) > 0 ?
449	    sblock.fs_frag - fragnum(&sblock, csfrags) : 0);
450	sblock.fs_cstotal.cs_nifree = sblock.fs_ncg * sblock.fs_ipg - ROOTINO;
451	sblock.fs_cstotal.cs_ndir = 0;
452	sblock.fs_dsize -= csfrags;
453	sblock.fs_time = tstamp;
454	if (Oflag <= 1) {
455		sblock.fs_old_time = tstamp;
456		sblock.fs_old_dsize = sblock.fs_dsize;
457		sblock.fs_old_csaddr = sblock.fs_csaddr;
458		sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
459		sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
460		sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
461		sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
462	}
463	/*
464	 * Dump out summary information about file system.
465	 */
466#define	B2MBFACTOR (1 / (1024.0 * 1024.0))
467	printf("%s: %.1fMB (%lld sectors) block size %d, "
468	       "fragment size %d\n",
469	    fsys, (float)sblock.fs_size * sblock.fs_fsize * B2MBFACTOR,
470	    (long long)fsbtodb(&sblock, sblock.fs_size),
471	    sblock.fs_bsize, sblock.fs_fsize);
472	printf("\tusing %d cylinder groups of %.2fMB, %d blks, "
473	       "%d inodes.\n",
474	    sblock.fs_ncg,
475	    (float)sblock.fs_fpg * sblock.fs_fsize * B2MBFACTOR,
476	    sblock.fs_fpg / sblock.fs_frag, sblock.fs_ipg);
477#undef B2MBFACTOR
478	/*
479	 * Now determine how wide each column will be, and calculate how
480	 * many columns will fit in a 76 char line. 76 is the width of the
481	 * subwindows in sysinst.
482	 */
483	printcolwidth = count_digits(
484			fsbtodb(&sblock, cgsblock(&sblock, sblock.fs_ncg -1)));
485	nprintcols = 76 / (printcolwidth + 2);
486
487	/*
488	 * allocate space for superblock, cylinder group map, and
489	 * two sets of inode blocks.
490	 */
491	if (sblock.fs_bsize < SBLOCKSIZE)
492		iobufsize = SBLOCKSIZE + 3 * sblock.fs_bsize;
493	else
494		iobufsize = 4 * sblock.fs_bsize;
495	if ((iobuf = malloc(iobufsize)) == NULL) {
496		printf("Cannot allocate I/O buffer\n");
497		exit(38);
498	}
499	memset(iobuf, 0, iobufsize);
500	/*
501	 * Make a copy of the superblock into the buffer that we will be
502	 * writing out in each cylinder group.
503	 */
504	memcpy(writebuf, &sblock, sbsize);
505	if (fsopts->needswap)
506		ffs_sb_swap(&sblock, (struct fs*)writebuf);
507	memcpy(iobuf, writebuf, SBLOCKSIZE);
508
509	printf("super-block backups (for fsck -b #) at:");
510	for (cylno = 0; cylno < sblock.fs_ncg; cylno++) {
511		initcg(cylno, tstamp, fsopts);
512		if (cylno % nprintcols == 0)
513			printf("\n");
514		printf(" %*lld,", printcolwidth,
515			(long long)fsbtodb(&sblock, cgsblock(&sblock, cylno)));
516		fflush(stdout);
517	}
518	printf("\n");
519
520	/*
521	 * Now construct the initial file system,
522	 * then write out the super-block.
523	 */
524	sblock.fs_time = tstamp;
525	if (Oflag <= 1) {
526		sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
527		sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
528		sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
529		sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
530	}
531	if (fsopts->needswap)
532		sblock.fs_flags |= FS_SWAPPED;
533	ffs_write_superblock(&sblock, fsopts);
534	return (&sblock);
535}
536
537/*
538 * Write out the superblock and its duplicates,
539 * and the cylinder group summaries
540 */
541void
542ffs_write_superblock(struct fs *fs, const fsinfo_t *fsopts)
543{
544	int cylno, size, blks, i, saveflag;
545	void *space;
546	char *wrbuf;
547
548	saveflag = fs->fs_flags & FS_INTERNAL;
549	fs->fs_flags &= ~FS_INTERNAL;
550
551        memcpy(writebuf, &sblock, sbsize);
552	if (fsopts->needswap)
553		ffs_sb_swap(fs, (struct fs*)writebuf);
554	ffs_wtfs(fs->fs_sblockloc / sectorsize, sbsize, writebuf, fsopts);
555
556	/* Write out the duplicate super blocks */
557	for (cylno = 0; cylno < fs->fs_ncg; cylno++)
558		ffs_wtfs(fsbtodb(fs, cgsblock(fs, cylno)),
559		    sbsize, writebuf, fsopts);
560
561	/* Write out the cylinder group summaries */
562	size = fs->fs_cssize;
563	blks = howmany(size, fs->fs_fsize);
564	space = (void *)fs->fs_csp;
565	if ((wrbuf = malloc(size)) == NULL)
566		err(1, "ffs_write_superblock: malloc %d", size);
567	for (i = 0; i < blks; i+= fs->fs_frag) {
568		size = fs->fs_bsize;
569		if (i + fs->fs_frag > blks)
570			size = (blks - i) * fs->fs_fsize;
571		if (fsopts->needswap)
572			ffs_csum_swap((struct csum *)space,
573			    (struct csum *)wrbuf, size);
574		else
575			memcpy(wrbuf, space, (u_int)size);
576		ffs_wtfs(fsbtodb(fs, fs->fs_csaddr + i), size, wrbuf, fsopts);
577		space = (char *)space + size;
578	}
579	free(wrbuf);
580	fs->fs_flags |= saveflag;
581}
582
583/*
584 * Initialize a cylinder group.
585 */
586static void
587initcg(int cylno, time_t utime, const fsinfo_t *fsopts)
588{
589	daddr_t cbase, dmax;
590	int32_t i, j, d, dlower, dupper, blkno;
591	struct ufs1_dinode *dp1;
592	struct ufs2_dinode *dp2;
593	int start;
594
595	/*
596	 * Determine block bounds for cylinder group.
597	 * Allow space for super block summary information in first
598	 * cylinder group.
599	 */
600	cbase = cgbase(&sblock, cylno);
601	dmax = cbase + sblock.fs_fpg;
602	if (dmax > sblock.fs_size)
603		dmax = sblock.fs_size;
604	dlower = cgsblock(&sblock, cylno) - cbase;
605	dupper = cgdmin(&sblock, cylno) - cbase;
606	if (cylno == 0)
607		dupper += howmany(sblock.fs_cssize, sblock.fs_fsize);
608	memset(&acg, 0, sblock.fs_cgsize);
609	acg.cg_time = utime;
610	acg.cg_magic = CG_MAGIC;
611	acg.cg_cgx = cylno;
612	acg.cg_niblk = sblock.fs_ipg;
613	acg.cg_initediblk = MIN(sblock.fs_ipg, 2 * INOPB(&sblock));
614	acg.cg_ndblk = dmax - cbase;
615	if (sblock.fs_contigsumsize > 0)
616		acg.cg_nclusterblks = acg.cg_ndblk >> sblock.fs_fragshift;
617	start = &acg.cg_space[0] - (u_char *)(&acg.cg_firstfield);
618	if (Oflag == 2) {
619		acg.cg_iusedoff = start;
620	} else {
621		if (cylno == sblock.fs_ncg - 1)
622			acg.cg_old_ncyl = howmany(acg.cg_ndblk,
623			    sblock.fs_fpg / sblock.fs_old_cpg);
624		else
625			acg.cg_old_ncyl = sblock.fs_old_cpg;
626		acg.cg_old_time = acg.cg_time;
627		acg.cg_time = 0;
628		acg.cg_old_niblk = acg.cg_niblk;
629		acg.cg_niblk = 0;
630		acg.cg_initediblk = 0;
631		acg.cg_old_btotoff = start;
632		acg.cg_old_boff = acg.cg_old_btotoff +
633		    sblock.fs_old_cpg * sizeof(int32_t);
634		acg.cg_iusedoff = acg.cg_old_boff +
635		    sblock.fs_old_cpg * sizeof(u_int16_t);
636	}
637	acg.cg_freeoff = acg.cg_iusedoff + howmany(sblock.fs_ipg, CHAR_BIT);
638	if (sblock.fs_contigsumsize <= 0) {
639		acg.cg_nextfreeoff = acg.cg_freeoff +
640		   howmany(sblock.fs_fpg, CHAR_BIT);
641	} else {
642		acg.cg_clustersumoff = acg.cg_freeoff +
643		    howmany(sblock.fs_fpg, CHAR_BIT) - sizeof(int32_t);
644		acg.cg_clustersumoff =
645		    roundup(acg.cg_clustersumoff, sizeof(int32_t));
646		acg.cg_clusteroff = acg.cg_clustersumoff +
647		    (sblock.fs_contigsumsize + 1) * sizeof(int32_t);
648		acg.cg_nextfreeoff = acg.cg_clusteroff +
649		    howmany(fragstoblks(&sblock, sblock.fs_fpg), CHAR_BIT);
650	}
651	if (acg.cg_nextfreeoff > sblock.fs_cgsize) {
652		printf("Panic: cylinder group too big\n");
653		exit(37);
654	}
655	acg.cg_cs.cs_nifree += sblock.fs_ipg;
656	if (cylno == 0)
657		for (i = 0; i < ROOTINO; i++) {
658			setbit(cg_inosused_swap(&acg, 0), i);
659			acg.cg_cs.cs_nifree--;
660		}
661	if (cylno > 0) {
662		/*
663		 * In cylno 0, beginning space is reserved
664		 * for boot and super blocks.
665		 */
666		for (d = 0, blkno = 0; d < dlower;) {
667			ffs_setblock(&sblock, cg_blksfree_swap(&acg, 0), blkno);
668			if (sblock.fs_contigsumsize > 0)
669				setbit(cg_clustersfree_swap(&acg, 0), blkno);
670			acg.cg_cs.cs_nbfree++;
671			d += sblock.fs_frag;
672			blkno++;
673		}
674	}
675	if ((i = (dupper & (sblock.fs_frag - 1))) != 0) {
676		acg.cg_frsum[sblock.fs_frag - i]++;
677		for (d = dupper + sblock.fs_frag - i; dupper < d; dupper++) {
678			setbit(cg_blksfree_swap(&acg, 0), dupper);
679			acg.cg_cs.cs_nffree++;
680		}
681	}
682	for (d = dupper, blkno = dupper >> sblock.fs_fragshift;
683	     d + sblock.fs_frag <= acg.cg_ndblk; ) {
684		ffs_setblock(&sblock, cg_blksfree_swap(&acg, 0), blkno);
685		if (sblock.fs_contigsumsize > 0)
686			setbit(cg_clustersfree_swap(&acg, 0), blkno);
687		acg.cg_cs.cs_nbfree++;
688		d += sblock.fs_frag;
689		blkno++;
690	}
691	if (d < acg.cg_ndblk) {
692		acg.cg_frsum[acg.cg_ndblk - d]++;
693		for (; d < acg.cg_ndblk; d++) {
694			setbit(cg_blksfree_swap(&acg, 0), d);
695			acg.cg_cs.cs_nffree++;
696		}
697	}
698	if (sblock.fs_contigsumsize > 0) {
699		int32_t *sump = cg_clustersum_swap(&acg, 0);
700		u_char *mapp = cg_clustersfree_swap(&acg, 0);
701		int map = *mapp++;
702		int bit = 1;
703		int run = 0;
704
705		for (i = 0; i < acg.cg_nclusterblks; i++) {
706			if ((map & bit) != 0) {
707				run++;
708			} else if (run != 0) {
709				if (run > sblock.fs_contigsumsize)
710					run = sblock.fs_contigsumsize;
711				sump[run]++;
712				run = 0;
713			}
714			if ((i & (CHAR_BIT - 1)) != (CHAR_BIT - 1)) {
715				bit <<= 1;
716			} else {
717				map = *mapp++;
718				bit = 1;
719			}
720		}
721		if (run != 0) {
722			if (run > sblock.fs_contigsumsize)
723				run = sblock.fs_contigsumsize;
724			sump[run]++;
725		}
726	}
727	sblock.fs_cs(&sblock, cylno) = acg.cg_cs;
728	/*
729	 * Write out the duplicate super block, the cylinder group map
730	 * and two blocks worth of inodes in a single write.
731	 */
732	start = MAX(sblock.fs_bsize, SBLOCKSIZE);
733	memcpy(&iobuf[start], &acg, sblock.fs_cgsize);
734	if (fsopts->needswap)
735		ffs_cg_swap(&acg, (struct cg*)&iobuf[start], &sblock);
736	start += sblock.fs_bsize;
737	dp1 = (struct ufs1_dinode *)(&iobuf[start]);
738	dp2 = (struct ufs2_dinode *)(&iobuf[start]);
739	for (i = 0; i < acg.cg_initediblk; i++) {
740		if (sblock.fs_magic == FS_UFS1_MAGIC) {
741			/* No need to swap, it'll stay random */
742			dp1->di_gen = random();
743			dp1++;
744		} else {
745			dp2->di_gen = random();
746			dp2++;
747		}
748	}
749	ffs_wtfs(fsbtodb(&sblock, cgsblock(&sblock, cylno)), iobufsize, iobuf,
750	    fsopts);
751	/*
752	 * For the old file system, we have to initialize all the inodes.
753	 */
754	if (Oflag <= 1) {
755		for (i = 2 * sblock.fs_frag;
756		     i < sblock.fs_ipg / INOPF(&sblock);
757		     i += sblock.fs_frag) {
758			dp1 = (struct ufs1_dinode *)(&iobuf[start]);
759			for (j = 0; j < INOPB(&sblock); j++) {
760				dp1->di_gen = random();
761				dp1++;
762			}
763			ffs_wtfs(fsbtodb(&sblock, cgimin(&sblock, cylno) + i),
764			    sblock.fs_bsize, &iobuf[start], fsopts);
765		}
766	}
767}
768
769/*
770 * read a block from the file system
771 */
772void
773ffs_rdfs(daddr_t bno, int size, void *bf, const fsinfo_t *fsopts)
774{
775	int n;
776	off_t offset;
777
778	offset = bno;
779	offset *= fsopts->sectorsize;
780	if (lseek(fsopts->fd, offset, SEEK_SET) < 0)
781		err(1, "ffs_rdfs: seek error for sector %lld: %s\n",
782		    (long long)bno, strerror(errno));
783	n = read(fsopts->fd, bf, size);
784	if (n == -1) {
785		abort();
786		err(1, "ffs_rdfs: read error bno %lld size %d", (long long)bno,
787		    size);
788	}
789	else if (n != size)
790		errx(1, "ffs_rdfs: read error for sector %lld: %s\n",
791		    (long long)bno, strerror(errno));
792}
793
794/*
795 * write a block to the file system
796 */
797void
798ffs_wtfs(daddr_t bno, int size, void *bf, const fsinfo_t *fsopts)
799{
800	int n;
801	off_t offset;
802
803	offset = bno;
804	offset *= fsopts->sectorsize;
805	if (lseek(fsopts->fd, offset, SEEK_SET) < 0)
806		err(1, "wtfs: seek error for sector %lld: %s\n",
807		    (long long)bno, strerror(errno));
808	n = write(fsopts->fd, bf, size);
809	if (n == -1)
810		err(1, "wtfs: write error for sector %lld: %s\n",
811		    (long long)bno, strerror(errno));
812	else if (n != size)
813		errx(1, "wtfs: write error for sector %lld: %s\n",
814		    (long long)bno, strerror(errno));
815}
816
817
818/* Determine how many digits are needed to print a given integer */
819static int
820count_digits(int num)
821{
822	int ndig;
823
824	for(ndig = 1; num > 9; num /=10, ndig++);
825
826	return (ndig);
827}
828
829static int
830ilog2(int val)
831{
832	u_int n;
833
834	for (n = 0; n < sizeof(n) * CHAR_BIT; n++)
835		if (1 << n == val)
836			return (n);
837	errx(1, "ilog2: %d is not a power of 2\n", val);
838}
839