mkfs.c revision 1.70 1 1.70 atatat /* $NetBSD: mkfs.c,v 1.70 2003/05/02 03:26:11 atatat Exp $ */
2 1.19 cgd
3 1.1 cgd /*
4 1.68 fvdl * Copyright (c) 2002 Networks Associates Technology, Inc.
5 1.68 fvdl * All rights reserved.
6 1.68 fvdl *
7 1.68 fvdl * This software was developed for the FreeBSD Project by Marshall
8 1.68 fvdl * Kirk McKusick and Network Associates Laboratories, the Security
9 1.68 fvdl * Research Division of Network Associates, Inc. under DARPA/SPAWAR
10 1.68 fvdl * contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA CHATS
11 1.68 fvdl * research program
12 1.68 fvdl *
13 1.9 mycroft * Copyright (c) 1980, 1989, 1993
14 1.9 mycroft * The Regents of the University of California. All rights reserved.
15 1.1 cgd *
16 1.1 cgd * Redistribution and use in source and binary forms, with or without
17 1.1 cgd * modification, are permitted provided that the following conditions
18 1.1 cgd * are met:
19 1.1 cgd * 1. Redistributions of source code must retain the above copyright
20 1.1 cgd * notice, this list of conditions and the following disclaimer.
21 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
22 1.1 cgd * notice, this list of conditions and the following disclaimer in the
23 1.1 cgd * documentation and/or other materials provided with the distribution.
24 1.1 cgd * 3. All advertising materials mentioning features or use of this software
25 1.1 cgd * must display the following acknowledgement:
26 1.1 cgd * This product includes software developed by the University of
27 1.1 cgd * California, Berkeley and its contributors.
28 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
29 1.1 cgd * may be used to endorse or promote products derived from this software
30 1.1 cgd * without specific prior written permission.
31 1.1 cgd *
32 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
33 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
34 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
35 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
36 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
37 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
38 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
39 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
40 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
41 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
42 1.1 cgd * SUCH DAMAGE.
43 1.1 cgd */
44 1.1 cgd
45 1.26 christos #include <sys/cdefs.h>
46 1.1 cgd #ifndef lint
47 1.19 cgd #if 0
48 1.27 lukem static char sccsid[] = "@(#)mkfs.c 8.11 (Berkeley) 5/3/95";
49 1.19 cgd #else
50 1.70 atatat __RCSID("$NetBSD: mkfs.c,v 1.70 2003/05/02 03:26:11 atatat Exp $");
51 1.19 cgd #endif
52 1.1 cgd #endif /* not lint */
53 1.1 cgd
54 1.1 cgd #include <sys/param.h>
55 1.60 simonb #include <sys/mman.h>
56 1.1 cgd #include <sys/time.h>
57 1.1 cgd #include <sys/resource.h>
58 1.9 mycroft #include <ufs/ufs/dinode.h>
59 1.9 mycroft #include <ufs/ufs/dir.h>
60 1.30 bouyer #include <ufs/ufs/ufs_bswap.h>
61 1.9 mycroft #include <ufs/ffs/fs.h>
62 1.30 bouyer #include <ufs/ffs/ffs_extern.h>
63 1.1 cgd #include <sys/disklabel.h>
64 1.9 mycroft
65 1.60 simonb #include <err.h>
66 1.57 lukem #include <errno.h>
67 1.14 cgd #include <string.h>
68 1.14 cgd #include <unistd.h>
69 1.26 christos #include <stdlib.h>
70 1.14 cgd
71 1.9 mycroft #ifndef STANDALONE
72 1.9 mycroft #include <stdio.h>
73 1.9 mycroft #endif
74 1.40 simonb
75 1.40 simonb #include "extern.h"
76 1.1 cgd
77 1.68 fvdl union dinode {
78 1.68 fvdl struct ufs1_dinode dp1;
79 1.68 fvdl struct ufs2_dinode dp2;
80 1.68 fvdl };
81 1.68 fvdl
82 1.70 atatat static void initcg(int, const struct timeval *);
83 1.70 atatat static int fsinit(const struct timeval *, mode_t, uid_t, gid_t);
84 1.39 simonb static int makedir(struct direct *, int);
85 1.39 simonb static daddr_t alloc(int, int);
86 1.68 fvdl static void iput(union dinode *, ino_t);
87 1.39 simonb static void rdfs(daddr_t, int, void *);
88 1.39 simonb static void wtfs(daddr_t, int, void *);
89 1.39 simonb static int isblock(struct fs *, unsigned char *, int);
90 1.39 simonb static void clrblock(struct fs *, unsigned char *, int);
91 1.39 simonb static void setblock(struct fs *, unsigned char *, int);
92 1.68 fvdl static int ilog2(int);
93 1.61 lukem #ifdef MFS
94 1.60 simonb static void calc_memfree(void);
95 1.60 simonb static void *mkfs_malloc(size_t size);
96 1.61 lukem #endif
97 1.27 lukem
98 1.39 simonb static int count_digits(int);
99 1.36 wrstuden
100 1.1 cgd /*
101 1.1 cgd * make file system for cylinder-group style file systems
102 1.1 cgd */
103 1.60 simonb #define UMASK 0755
104 1.60 simonb #define POWEROF2(num) (((num) & ((num) - 1)) == 0)
105 1.1 cgd
106 1.1 cgd union {
107 1.1 cgd struct fs fs;
108 1.68 fvdl char pad[SBLOCKSIZE];
109 1.1 cgd } fsun;
110 1.1 cgd #define sblock fsun.fs
111 1.1 cgd struct csum *fscs;
112 1.1 cgd
113 1.1 cgd union {
114 1.1 cgd struct cg cg;
115 1.1 cgd char pad[MAXBSIZE];
116 1.1 cgd } cgun;
117 1.1 cgd #define acg cgun.cg
118 1.1 cgd
119 1.68 fvdl #define DIP(dp, field) \
120 1.68 fvdl ((sblock.fs_magic == FS_UFS1_MAGIC) ? \
121 1.68 fvdl (dp)->dp1.di_##field : (dp)->dp2.di_##field)
122 1.68 fvdl
123 1.68 fvdl char *iobuf;
124 1.68 fvdl int iobufsize;
125 1.1 cgd
126 1.30 bouyer char writebuf[MAXBSIZE];
127 1.30 bouyer
128 1.1 cgd int fsi, fso;
129 1.1 cgd
130 1.26 christos void
131 1.60 simonb mkfs(struct partition *pp, const char *fsys, int fi, int fo,
132 1.60 simonb mode_t mfsmode, uid_t mfsuid, gid_t mfsgid)
133 1.1 cgd {
134 1.68 fvdl int fragsperinode, optimalfpg, origdensity, minfpg, lastminfpg;
135 1.68 fvdl int32_t cylno, i, csfrags;
136 1.70 atatat struct timeval tv;
137 1.52 lukem long long sizepb;
138 1.34 wrstuden char *writebuf2; /* dynamic buffer */
139 1.36 wrstuden int nprintcols, printcolwidth;
140 1.1 cgd
141 1.1 cgd #ifndef STANDALONE
142 1.70 atatat gettimeofday(&tv, NULL);
143 1.1 cgd #endif
144 1.61 lukem #ifdef MFS
145 1.1 cgd if (mfs) {
146 1.60 simonb calc_memfree();
147 1.1 cgd if (fssize * sectorsize > memleft)
148 1.60 simonb fssize = memleft / sectorsize;
149 1.60 simonb if ((membase = mkfs_malloc(fssize * sectorsize)) == 0)
150 1.1 cgd exit(12);
151 1.1 cgd }
152 1.61 lukem #endif
153 1.1 cgd fsi = fi;
154 1.1 cgd fso = fo;
155 1.68 fvdl if (Oflag == 0) {
156 1.68 fvdl sblock.fs_old_inodefmt = FS_42INODEFMT;
157 1.9 mycroft sblock.fs_maxsymlinklen = 0;
158 1.68 fvdl sblock.fs_old_flags = 0;
159 1.9 mycroft } else {
160 1.68 fvdl sblock.fs_old_inodefmt = FS_44INODEFMT;
161 1.68 fvdl sblock.fs_maxsymlinklen = (Oflag == 1 ? MAXSYMLINKLEN_UFS1 :
162 1.68 fvdl MAXSYMLINKLEN_UFS2);
163 1.68 fvdl sblock.fs_old_flags = FS_FLAGS_UPDATED;
164 1.68 fvdl sblock.fs_flags = 0;
165 1.9 mycroft }
166 1.1 cgd /*
167 1.1 cgd * Validate the given file system size.
168 1.1 cgd * Verify that its last block can actually be accessed.
169 1.68 fvdl * Convert to file system fragment sized units.
170 1.1 cgd */
171 1.68 fvdl if (fssize <= 0) {
172 1.68 fvdl printf("preposterous size %lld\n", (long long)fssize);
173 1.68 fvdl exit(13);
174 1.68 fvdl }
175 1.1 cgd wtfs(fssize - 1, sectorsize, (char *)&sblock);
176 1.30 bouyer
177 1.65 dbj if (isappleufs) {
178 1.65 dbj struct appleufslabel appleufs;
179 1.70 atatat ffs_appleufs_set(&appleufs,appleufs_volname,tv.tv_sec);
180 1.65 dbj wtfs(APPLEUFS_LABEL_OFFSET/sectorsize,APPLEUFS_LABEL_SIZE,&appleufs);
181 1.65 dbj }
182 1.65 dbj
183 1.1 cgd /*
184 1.55 lukem * collect and verify the filesystem density info
185 1.55 lukem */
186 1.55 lukem sblock.fs_avgfilesize = avgfilesize;
187 1.55 lukem sblock.fs_avgfpdir = avgfpdir;
188 1.55 lukem if (sblock.fs_avgfilesize <= 0)
189 1.55 lukem printf("illegal expected average file size %d\n",
190 1.55 lukem sblock.fs_avgfilesize), exit(14);
191 1.55 lukem if (sblock.fs_avgfpdir <= 0)
192 1.55 lukem printf("illegal expected number of files per directory %d\n",
193 1.55 lukem sblock.fs_avgfpdir), exit(15);
194 1.1 cgd /*
195 1.1 cgd * collect and verify the block and fragment sizes
196 1.1 cgd */
197 1.1 cgd sblock.fs_bsize = bsize;
198 1.1 cgd sblock.fs_fsize = fsize;
199 1.1 cgd if (!POWEROF2(sblock.fs_bsize)) {
200 1.1 cgd printf("block size must be a power of 2, not %d\n",
201 1.1 cgd sblock.fs_bsize);
202 1.1 cgd exit(16);
203 1.1 cgd }
204 1.1 cgd if (!POWEROF2(sblock.fs_fsize)) {
205 1.1 cgd printf("fragment size must be a power of 2, not %d\n",
206 1.1 cgd sblock.fs_fsize);
207 1.1 cgd exit(17);
208 1.1 cgd }
209 1.1 cgd if (sblock.fs_fsize < sectorsize) {
210 1.1 cgd printf("fragment size %d is too small, minimum is %d\n",
211 1.1 cgd sblock.fs_fsize, sectorsize);
212 1.1 cgd exit(18);
213 1.1 cgd }
214 1.1 cgd if (sblock.fs_bsize < MINBSIZE) {
215 1.1 cgd printf("block size %d is too small, minimum is %d\n",
216 1.1 cgd sblock.fs_bsize, MINBSIZE);
217 1.58 lukem exit(19);
218 1.58 lukem }
219 1.58 lukem if (sblock.fs_bsize > MAXBSIZE) {
220 1.58 lukem printf("block size %d is too large, maximum is %d\n",
221 1.58 lukem sblock.fs_bsize, MAXBSIZE);
222 1.1 cgd exit(19);
223 1.1 cgd }
224 1.1 cgd if (sblock.fs_bsize < sblock.fs_fsize) {
225 1.1 cgd printf("block size (%d) cannot be smaller than fragment size (%d)\n",
226 1.1 cgd sblock.fs_bsize, sblock.fs_fsize);
227 1.1 cgd exit(20);
228 1.1 cgd }
229 1.68 fvdl
230 1.68 fvdl if (maxbsize < bsize || !POWEROF2(maxbsize)) {
231 1.68 fvdl sblock.fs_maxbsize = sblock.fs_bsize;
232 1.68 fvdl } else if (sblock.fs_maxbsize > FS_MAXCONTIG * sblock.fs_bsize) {
233 1.68 fvdl sblock.fs_maxbsize = FS_MAXCONTIG * sblock.fs_bsize;
234 1.68 fvdl } else {
235 1.68 fvdl sblock.fs_maxbsize = maxbsize;
236 1.68 fvdl }
237 1.68 fvdl sblock.fs_maxcontig = maxcontig;
238 1.68 fvdl if (sblock.fs_maxcontig < sblock.fs_maxbsize / sblock.fs_bsize) {
239 1.68 fvdl sblock.fs_maxcontig = sblock.fs_maxbsize / sblock.fs_bsize;
240 1.68 fvdl printf("Maxcontig raised to %d\n", sblock.fs_maxbsize);
241 1.68 fvdl }
242 1.68 fvdl if (sblock.fs_maxcontig > 1)
243 1.68 fvdl sblock.fs_contigsumsize = MIN(sblock.fs_maxcontig,FS_MAXCONTIG);
244 1.68 fvdl
245 1.1 cgd sblock.fs_bmask = ~(sblock.fs_bsize - 1);
246 1.1 cgd sblock.fs_fmask = ~(sblock.fs_fsize - 1);
247 1.9 mycroft sblock.fs_qbmask = ~sblock.fs_bmask;
248 1.9 mycroft sblock.fs_qfmask = ~sblock.fs_fmask;
249 1.1 cgd for (sblock.fs_bshift = 0, i = sblock.fs_bsize; i > 1; i >>= 1)
250 1.1 cgd sblock.fs_bshift++;
251 1.1 cgd for (sblock.fs_fshift = 0, i = sblock.fs_fsize; i > 1; i >>= 1)
252 1.1 cgd sblock.fs_fshift++;
253 1.1 cgd sblock.fs_frag = numfrags(&sblock, sblock.fs_bsize);
254 1.1 cgd for (sblock.fs_fragshift = 0, i = sblock.fs_frag; i > 1; i >>= 1)
255 1.1 cgd sblock.fs_fragshift++;
256 1.1 cgd if (sblock.fs_frag > MAXFRAG) {
257 1.30 bouyer printf("fragment size %d is too small, "
258 1.30 bouyer "minimum with block size %d is %d\n",
259 1.1 cgd sblock.fs_fsize, sblock.fs_bsize,
260 1.1 cgd sblock.fs_bsize / MAXFRAG);
261 1.1 cgd exit(21);
262 1.1 cgd }
263 1.68 fvdl sblock.fs_fsbtodb = ilog2(sblock.fs_fsize / sectorsize);
264 1.68 fvdl sblock.fs_size = fssize = dbtofsb(&sblock, fssize);
265 1.68 fvdl if (Oflag <= 1) {
266 1.68 fvdl sblock.fs_magic = FS_UFS1_MAGIC;
267 1.68 fvdl sblock.fs_sblockloc = SBLOCK_UFS1;
268 1.68 fvdl sblock.fs_nindir = sblock.fs_bsize / sizeof(int32_t);
269 1.68 fvdl sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs1_dinode);
270 1.68 fvdl sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
271 1.68 fvdl sizeof (int32_t));
272 1.68 fvdl sblock.fs_old_inodefmt = FS_44INODEFMT;
273 1.68 fvdl sblock.fs_old_cgoffset = 0;
274 1.68 fvdl sblock.fs_old_cgmask = 0xffffffff;
275 1.68 fvdl sblock.fs_old_size = sblock.fs_size;
276 1.68 fvdl sblock.fs_old_rotdelay = 0;
277 1.68 fvdl sblock.fs_old_rps = 60;
278 1.68 fvdl sblock.fs_old_nspf = sblock.fs_fsize / sectorsize;
279 1.68 fvdl sblock.fs_old_cpg = 1;
280 1.68 fvdl sblock.fs_old_interleave = 1;
281 1.68 fvdl sblock.fs_old_trackskew = 0;
282 1.68 fvdl sblock.fs_old_cpc = 0;
283 1.68 fvdl sblock.fs_old_postblformat = 1;
284 1.68 fvdl sblock.fs_old_nrpos = 1;
285 1.68 fvdl } else {
286 1.68 fvdl sblock.fs_magic = FS_UFS2_MAGIC;
287 1.68 fvdl sblock.fs_sblockloc = SBLOCK_UFS2;
288 1.68 fvdl sblock.fs_nindir = sblock.fs_bsize / sizeof(int64_t);
289 1.68 fvdl sblock.fs_inopb = sblock.fs_bsize / sizeof(struct ufs2_dinode);
290 1.68 fvdl sblock.fs_maxsymlinklen = ((NDADDR + NIADDR) *
291 1.68 fvdl sizeof (int64_t));
292 1.68 fvdl }
293 1.68 fvdl
294 1.1 cgd sblock.fs_sblkno =
295 1.68 fvdl roundup(howmany(sblock.fs_sblockloc + SBLOCKSIZE, sblock.fs_fsize),
296 1.68 fvdl sblock.fs_frag);
297 1.1 cgd sblock.fs_cblkno = (daddr_t)(sblock.fs_sblkno +
298 1.68 fvdl roundup(howmany(SBLOCKSIZE, sblock.fs_fsize), sblock.fs_frag));
299 1.1 cgd sblock.fs_iblkno = sblock.fs_cblkno + sblock.fs_frag;
300 1.9 mycroft sblock.fs_maxfilesize = sblock.fs_bsize * NDADDR - 1;
301 1.9 mycroft for (sizepb = sblock.fs_bsize, i = 0; i < NIADDR; i++) {
302 1.9 mycroft sizepb *= NINDIR(&sblock);
303 1.9 mycroft sblock.fs_maxfilesize += sizepb;
304 1.9 mycroft }
305 1.68 fvdl
306 1.1 cgd /*
307 1.68 fvdl * Calculate the number of blocks to put into each cylinder group.
308 1.68 fvdl *
309 1.68 fvdl * This algorithm selects the number of blocks per cylinder
310 1.68 fvdl * group. The first goal is to have at least enough data blocks
311 1.68 fvdl * in each cylinder group to meet the density requirement. Once
312 1.68 fvdl * this goal is achieved we try to expand to have at least
313 1.68 fvdl * MINCYLGRPS cylinder groups. Once this goal is achieved, we
314 1.68 fvdl * pack as many blocks into each cylinder group map as will fit.
315 1.68 fvdl *
316 1.68 fvdl * We start by calculating the smallest number of blocks that we
317 1.68 fvdl * can put into each cylinder group. If this is too big, we reduce
318 1.68 fvdl * the density until it fits.
319 1.68 fvdl */
320 1.68 fvdl origdensity = density;
321 1.68 fvdl for (;;) {
322 1.68 fvdl fragsperinode = MAX(numfrags(&sblock, density), 1);
323 1.68 fvdl minfpg = fragsperinode * INOPB(&sblock);
324 1.68 fvdl if (minfpg > sblock.fs_size)
325 1.68 fvdl minfpg = sblock.fs_size;
326 1.68 fvdl sblock.fs_ipg = INOPB(&sblock);
327 1.68 fvdl sblock.fs_fpg = roundup(sblock.fs_iblkno +
328 1.68 fvdl sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
329 1.68 fvdl if (sblock.fs_fpg < minfpg)
330 1.68 fvdl sblock.fs_fpg = minfpg;
331 1.68 fvdl sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
332 1.68 fvdl INOPB(&sblock));
333 1.68 fvdl sblock.fs_fpg = roundup(sblock.fs_iblkno +
334 1.68 fvdl sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
335 1.68 fvdl if (sblock.fs_fpg < minfpg)
336 1.68 fvdl sblock.fs_fpg = minfpg;
337 1.68 fvdl sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
338 1.68 fvdl INOPB(&sblock));
339 1.68 fvdl if (CGSIZE(&sblock) < (unsigned long)sblock.fs_bsize)
340 1.68 fvdl break;
341 1.68 fvdl density -= sblock.fs_fsize;
342 1.1 cgd }
343 1.68 fvdl if (density != origdensity)
344 1.68 fvdl printf("density reduced from %d to %d\n", origdensity, density);
345 1.1 cgd /*
346 1.68 fvdl * Start packing more blocks into the cylinder group until
347 1.68 fvdl * it cannot grow any larger, the number of cylinder groups
348 1.68 fvdl * drops below MINCYLGRPS, or we reach the size requested.
349 1.68 fvdl */
350 1.68 fvdl for ( ; sblock.fs_fpg < maxblkspercg; sblock.fs_fpg += sblock.fs_frag) {
351 1.68 fvdl sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
352 1.68 fvdl INOPB(&sblock));
353 1.68 fvdl if (sblock.fs_size / sblock.fs_fpg < MINCYLGRPS)
354 1.1 cgd break;
355 1.68 fvdl if (CGSIZE(&sblock) < (unsigned long)sblock.fs_bsize)
356 1.68 fvdl continue;
357 1.68 fvdl if (CGSIZE(&sblock) == (unsigned long)sblock.fs_bsize)
358 1.1 cgd break;
359 1.68 fvdl sblock.fs_fpg -= sblock.fs_frag;
360 1.68 fvdl sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
361 1.68 fvdl INOPB(&sblock));
362 1.68 fvdl break;
363 1.68 fvdl }
364 1.68 fvdl /*
365 1.68 fvdl * Check to be sure that the last cylinder group has enough blocks
366 1.68 fvdl * to be viable. If it is too small, reduce the number of blocks
367 1.68 fvdl * per cylinder group which will have the effect of moving more
368 1.68 fvdl * blocks into the last cylinder group.
369 1.68 fvdl */
370 1.68 fvdl optimalfpg = sblock.fs_fpg;
371 1.68 fvdl for (;;) {
372 1.68 fvdl sblock.fs_ncg = howmany(sblock.fs_size, sblock.fs_fpg);
373 1.68 fvdl lastminfpg = roundup(sblock.fs_iblkno +
374 1.68 fvdl sblock.fs_ipg / INOPF(&sblock), sblock.fs_frag);
375 1.68 fvdl if (sblock.fs_size < lastminfpg) {
376 1.68 fvdl printf("Filesystem size %lld < minimum size of %d\n",
377 1.68 fvdl (long long)sblock.fs_size, lastminfpg);
378 1.68 fvdl exit(28);
379 1.1 cgd }
380 1.68 fvdl if (sblock.fs_size % sblock.fs_fpg >= lastminfpg ||
381 1.68 fvdl sblock.fs_size % sblock.fs_fpg == 0)
382 1.68 fvdl break;
383 1.68 fvdl sblock.fs_fpg -= sblock.fs_frag;
384 1.68 fvdl sblock.fs_ipg = roundup(howmany(sblock.fs_fpg, fragsperinode),
385 1.68 fvdl INOPB(&sblock));
386 1.68 fvdl }
387 1.68 fvdl if (optimalfpg != sblock.fs_fpg)
388 1.68 fvdl printf("Reduced frags per cylinder group from %d to %d %s\n",
389 1.68 fvdl optimalfpg, sblock.fs_fpg, "to enlarge last cyl group");
390 1.1 cgd sblock.fs_cgsize = fragroundup(&sblock, CGSIZE(&sblock));
391 1.1 cgd sblock.fs_dblkno = sblock.fs_iblkno + sblock.fs_ipg / INOPF(&sblock);
392 1.68 fvdl if (Oflag <= 1) {
393 1.68 fvdl sblock.fs_old_spc = sblock.fs_fpg * sblock.fs_old_nspf;
394 1.68 fvdl sblock.fs_old_nsect = sblock.fs_old_spc;
395 1.68 fvdl sblock.fs_old_npsect = sblock.fs_old_spc;
396 1.68 fvdl sblock.fs_old_ncyl = sblock.fs_ncg;
397 1.1 cgd }
398 1.68 fvdl
399 1.1 cgd /*
400 1.1 cgd * fill in remaining fields of the super block
401 1.1 cgd */
402 1.1 cgd sblock.fs_csaddr = cgdmin(&sblock, 0);
403 1.1 cgd sblock.fs_cssize =
404 1.1 cgd fragroundup(&sblock, sblock.fs_ncg * sizeof(struct csum));
405 1.50 lukem fscs = (struct csum *)calloc(1, sblock.fs_cssize);
406 1.44 lukem if (fscs == NULL)
407 1.44 lukem exit(39);
408 1.68 fvdl sblock.fs_sbsize = fragroundup(&sblock, sizeof(struct fs));
409 1.68 fvdl if (sblock.fs_sbsize > SBLOCKSIZE)
410 1.68 fvdl sblock.fs_sbsize = SBLOCKSIZE;
411 1.1 cgd sblock.fs_minfree = minfree;
412 1.1 cgd sblock.fs_maxcontig = maxcontig;
413 1.1 cgd sblock.fs_maxbpg = maxbpg;
414 1.1 cgd sblock.fs_optim = opt;
415 1.1 cgd sblock.fs_cgrotor = 0;
416 1.68 fvdl sblock.fs_pendingblocks = 0;
417 1.68 fvdl sblock.fs_pendinginodes = 0;
418 1.1 cgd sblock.fs_cstotal.cs_ndir = 0;
419 1.1 cgd sblock.fs_cstotal.cs_nbfree = 0;
420 1.1 cgd sblock.fs_cstotal.cs_nifree = 0;
421 1.1 cgd sblock.fs_cstotal.cs_nffree = 0;
422 1.1 cgd sblock.fs_fmod = 0;
423 1.68 fvdl sblock.fs_ronly = 0;
424 1.68 fvdl sblock.fs_state = 0;
425 1.21 mycroft sblock.fs_clean = FS_ISCLEAN;
426 1.1 cgd sblock.fs_ronly = 0;
427 1.70 atatat sblock.fs_id[0] = (long)tv.tv_sec; /* XXXfvdl huh? */
428 1.68 fvdl sblock.fs_id[1] = random();
429 1.68 fvdl sblock.fs_fsmnt[0] = '\0';
430 1.68 fvdl csfrags = howmany(sblock.fs_cssize, sblock.fs_fsize);
431 1.68 fvdl sblock.fs_dsize = sblock.fs_size - sblock.fs_sblkno -
432 1.68 fvdl sblock.fs_ncg * (sblock.fs_dblkno - sblock.fs_sblkno);
433 1.68 fvdl sblock.fs_cstotal.cs_nbfree =
434 1.68 fvdl fragstoblks(&sblock, sblock.fs_dsize) -
435 1.68 fvdl howmany(csfrags, sblock.fs_frag);
436 1.68 fvdl sblock.fs_cstotal.cs_nffree =
437 1.68 fvdl fragnum(&sblock, sblock.fs_size) +
438 1.68 fvdl (fragnum(&sblock, csfrags) > 0 ?
439 1.68 fvdl sblock.fs_frag - fragnum(&sblock, csfrags) : 0);
440 1.68 fvdl sblock.fs_cstotal.cs_nifree = sblock.fs_ncg * sblock.fs_ipg - ROOTINO;
441 1.68 fvdl sblock.fs_cstotal.cs_ndir = 0;
442 1.68 fvdl sblock.fs_dsize -= csfrags;
443 1.70 atatat sblock.fs_time = tv.tv_sec;
444 1.68 fvdl if (Oflag <= 1) {
445 1.70 atatat sblock.fs_old_time = tv.tv_sec;
446 1.68 fvdl sblock.fs_old_dsize = sblock.fs_dsize;
447 1.68 fvdl sblock.fs_old_csaddr = sblock.fs_csaddr;
448 1.68 fvdl sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
449 1.68 fvdl sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
450 1.68 fvdl sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
451 1.68 fvdl sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
452 1.68 fvdl }
453 1.1 cgd /*
454 1.1 cgd * Dump out summary information about file system.
455 1.1 cgd */
456 1.1 cgd if (!mfs) {
457 1.60 simonb #define B2MBFACTOR (1 / (1024.0 * 1024.0))
458 1.68 fvdl printf("%s: %.1fMB (%lld sectors) block size %d, "
459 1.68 fvdl "fragment size %d\n",
460 1.68 fvdl fsys, (float)sblock.fs_size * sblock.fs_fsize * B2MBFACTOR,
461 1.68 fvdl (long long)fsbtodb(&sblock, sblock.fs_size),
462 1.68 fvdl sblock.fs_bsize, sblock.fs_fsize);
463 1.68 fvdl printf("\tusing %d cylinder groups of %.2fMB, %d blks, "
464 1.68 fvdl "%d inodes.\n",
465 1.68 fvdl sblock.fs_ncg,
466 1.9 mycroft (float)sblock.fs_fpg * sblock.fs_fsize * B2MBFACTOR,
467 1.68 fvdl sblock.fs_fpg / sblock.fs_frag, sblock.fs_ipg);
468 1.9 mycroft #undef B2MBFACTOR
469 1.1 cgd }
470 1.1 cgd /*
471 1.36 wrstuden * Now determine how wide each column will be, and calculate how
472 1.37 wrstuden * many columns will fit in a 76 char line. 76 is the width of the
473 1.37 wrstuden * subwindows in sysinst.
474 1.36 wrstuden */
475 1.36 wrstuden printcolwidth = count_digits(
476 1.36 wrstuden fsbtodb(&sblock, cgsblock(&sblock, sblock.fs_ncg -1)));
477 1.37 wrstuden nprintcols = 76 / (printcolwidth + 2);
478 1.68 fvdl
479 1.68 fvdl /*
480 1.68 fvdl * allocate space for superblock, cylinder group map, and
481 1.68 fvdl * two sets of inode blocks.
482 1.68 fvdl */
483 1.68 fvdl if (sblock.fs_bsize < SBLOCKSIZE)
484 1.68 fvdl iobufsize = SBLOCKSIZE + 3 * sblock.fs_bsize;
485 1.68 fvdl else
486 1.68 fvdl iobufsize = 4 * sblock.fs_bsize;
487 1.68 fvdl if ((iobuf = malloc(iobufsize)) == 0) {
488 1.68 fvdl printf("Cannot allocate I/O buffer\n");
489 1.68 fvdl exit(38);
490 1.68 fvdl }
491 1.68 fvdl memset(iobuf, 0, iobufsize);
492 1.36 wrstuden /*
493 1.68 fvdl * Make a copy of the superblock into the buffer that we will be
494 1.68 fvdl * writing out in each cylinder group.
495 1.1 cgd */
496 1.68 fvdl memcpy(writebuf, &sblock, sbsize);
497 1.68 fvdl if (needswap)
498 1.68 fvdl ffs_sb_swap(&sblock, (struct fs*)writebuf);
499 1.68 fvdl memcpy(iobuf, writebuf, SBLOCKSIZE);
500 1.68 fvdl
501 1.1 cgd if (!mfs)
502 1.1 cgd printf("super-block backups (for fsck -b #) at:");
503 1.1 cgd for (cylno = 0; cylno < sblock.fs_ncg; cylno++) {
504 1.70 atatat initcg(cylno, &tv);
505 1.1 cgd if (mfs)
506 1.1 cgd continue;
507 1.36 wrstuden if (cylno % nprintcols == 0)
508 1.1 cgd printf("\n");
509 1.66 fvdl printf(" %*lld,", printcolwidth,
510 1.66 fvdl (long long)fsbtodb(&sblock, cgsblock(&sblock, cylno)));
511 1.22 jtc fflush(stdout);
512 1.1 cgd }
513 1.1 cgd if (!mfs)
514 1.1 cgd printf("\n");
515 1.1 cgd if (Nflag && !mfs)
516 1.1 cgd exit(0);
517 1.68 fvdl
518 1.1 cgd /*
519 1.1 cgd * Now construct the initial file system,
520 1.1 cgd * then write out the super-block.
521 1.1 cgd */
522 1.70 atatat if (fsinit(&tv, mfsmode, mfsuid, mfsgid) == 0 && mfs)
523 1.60 simonb errx(1, "Error making filesystem");
524 1.70 atatat sblock.fs_time = tv.tv_sec;
525 1.68 fvdl if (Oflag <= 1) {
526 1.68 fvdl sblock.fs_old_cstotal.cs_ndir = sblock.fs_cstotal.cs_ndir;
527 1.68 fvdl sblock.fs_old_cstotal.cs_nbfree = sblock.fs_cstotal.cs_nbfree;
528 1.68 fvdl sblock.fs_old_cstotal.cs_nifree = sblock.fs_cstotal.cs_nifree;
529 1.68 fvdl sblock.fs_old_cstotal.cs_nffree = sblock.fs_cstotal.cs_nffree;
530 1.68 fvdl }
531 1.68 fvdl memcpy(writebuf, &sblock, sbsize);
532 1.30 bouyer if (needswap)
533 1.51 lukem ffs_sb_swap(&sblock, (struct fs*)writebuf);
534 1.68 fvdl wtfs(sblock.fs_sblockloc / sectorsize, sbsize, writebuf);
535 1.34 wrstuden
536 1.34 wrstuden /*
537 1.34 wrstuden * if we need to swap, create a buffer for the cylinder summaries
538 1.34 wrstuden * to get swapped to.
539 1.34 wrstuden */
540 1.34 wrstuden if (needswap) {
541 1.60 simonb if ((writebuf2 = malloc(sblock.fs_cssize)) == NULL)
542 1.34 wrstuden exit(12);
543 1.34 wrstuden ffs_csum_swap(fscs, (struct csum*)writebuf2, sblock.fs_cssize);
544 1.34 wrstuden } else
545 1.34 wrstuden writebuf2 = (char *)fscs;
546 1.34 wrstuden
547 1.30 bouyer for (i = 0; i < sblock.fs_cssize; i += sblock.fs_bsize)
548 1.30 bouyer wtfs(fsbtodb(&sblock, sblock.fs_csaddr + numfrags(&sblock, i)),
549 1.30 bouyer sblock.fs_cssize - i < sblock.fs_bsize ?
550 1.30 bouyer sblock.fs_cssize - i : sblock.fs_bsize,
551 1.34 wrstuden ((char *)writebuf2) + i);
552 1.34 wrstuden if (writebuf2 != (char *)fscs)
553 1.50 lukem free(writebuf2);
554 1.34 wrstuden
555 1.1 cgd /*
556 1.1 cgd * Update information about this partion in pack
557 1.1 cgd * label, to that it may be updated on disk.
558 1.1 cgd */
559 1.65 dbj if (isappleufs)
560 1.65 dbj pp->p_fstype = FS_APPLEUFS;
561 1.65 dbj else
562 1.65 dbj pp->p_fstype = FS_BSDFFS;
563 1.1 cgd pp->p_fsize = sblock.fs_fsize;
564 1.1 cgd pp->p_frag = sblock.fs_frag;
565 1.68 fvdl pp->p_cpg = sblock.fs_fpg;
566 1.1 cgd }
567 1.1 cgd
568 1.1 cgd /*
569 1.1 cgd * Initialize a cylinder group.
570 1.1 cgd */
571 1.26 christos void
572 1.70 atatat initcg(int cylno, const struct timeval *tv)
573 1.1 cgd {
574 1.68 fvdl daddr_t cbase, dmax;
575 1.68 fvdl int32_t i, j, d, dlower, dupper, blkno;
576 1.26 christos struct csum *cs;
577 1.68 fvdl struct ufs1_dinode *dp1;
578 1.68 fvdl struct ufs2_dinode *dp2;
579 1.68 fvdl int start;
580 1.1 cgd
581 1.1 cgd /*
582 1.1 cgd * Determine block bounds for cylinder group.
583 1.1 cgd * Allow space for super block summary information in first
584 1.1 cgd * cylinder group.
585 1.1 cgd */
586 1.1 cgd cbase = cgbase(&sblock, cylno);
587 1.1 cgd dmax = cbase + sblock.fs_fpg;
588 1.1 cgd if (dmax > sblock.fs_size)
589 1.1 cgd dmax = sblock.fs_size;
590 1.1 cgd dlower = cgsblock(&sblock, cylno) - cbase;
591 1.1 cgd dupper = cgdmin(&sblock, cylno) - cbase;
592 1.1 cgd if (cylno == 0)
593 1.1 cgd dupper += howmany(sblock.fs_cssize, sblock.fs_fsize);
594 1.1 cgd cs = fscs + cylno;
595 1.12 mycroft memset(&acg, 0, sblock.fs_cgsize);
596 1.70 atatat acg.cg_time = tv->tv_sec;
597 1.1 cgd acg.cg_magic = CG_MAGIC;
598 1.1 cgd acg.cg_cgx = cylno;
599 1.1 cgd acg.cg_niblk = sblock.fs_ipg;
600 1.68 fvdl acg.cg_initediblk = sblock.fs_ipg < 2 * INOPB(&sblock) ?
601 1.68 fvdl sblock.fs_ipg : 2 * INOPB(&sblock);
602 1.1 cgd acg.cg_ndblk = dmax - cbase;
603 1.9 mycroft if (sblock.fs_contigsumsize > 0)
604 1.62 mycroft acg.cg_nclusterblks = acg.cg_ndblk >> sblock.fs_fragshift;
605 1.68 fvdl start = &acg.cg_space[0] - (u_char *)(&acg.cg_firstfield);
606 1.68 fvdl if (Oflag == 2) {
607 1.68 fvdl acg.cg_iusedoff = start;
608 1.68 fvdl } else {
609 1.68 fvdl acg.cg_old_ncyl = sblock.fs_old_cpg;
610 1.68 fvdl acg.cg_old_time = acg.cg_time;
611 1.68 fvdl acg.cg_time = 0;
612 1.68 fvdl acg.cg_old_niblk = acg.cg_niblk;
613 1.68 fvdl acg.cg_niblk = 0;
614 1.68 fvdl acg.cg_initediblk = 0;
615 1.68 fvdl acg.cg_old_btotoff = start;
616 1.68 fvdl acg.cg_old_boff = acg.cg_old_btotoff +
617 1.68 fvdl sblock.fs_old_cpg * sizeof(int32_t);
618 1.68 fvdl acg.cg_iusedoff = acg.cg_old_boff +
619 1.68 fvdl sblock.fs_old_cpg * sizeof(u_int16_t);
620 1.68 fvdl }
621 1.68 fvdl acg.cg_freeoff = acg.cg_iusedoff + howmany(sblock.fs_ipg, CHAR_BIT);
622 1.9 mycroft if (sblock.fs_contigsumsize <= 0) {
623 1.9 mycroft acg.cg_nextfreeoff = acg.cg_freeoff +
624 1.68 fvdl howmany(sblock.fs_fpg, CHAR_BIT);
625 1.9 mycroft } else {
626 1.62 mycroft acg.cg_clustersumoff = acg.cg_freeoff +
627 1.68 fvdl howmany(sblock.fs_fpg, CHAR_BIT) - sizeof(int32_t);
628 1.65 dbj if (isappleufs) {
629 1.65 dbj /* Apple PR2216969 gives rationale for this change.
630 1.65 dbj * I believe they were mistaken, but we need to
631 1.67 grant * duplicate it for compatibility. -- dbj (at) NetBSD.org
632 1.65 dbj */
633 1.65 dbj acg.cg_clustersumoff += sizeof(int32_t);
634 1.65 dbj }
635 1.9 mycroft acg.cg_clustersumoff =
636 1.14 cgd roundup(acg.cg_clustersumoff, sizeof(int32_t));
637 1.9 mycroft acg.cg_clusteroff = acg.cg_clustersumoff +
638 1.14 cgd (sblock.fs_contigsumsize + 1) * sizeof(int32_t);
639 1.62 mycroft acg.cg_nextfreeoff = acg.cg_clusteroff +
640 1.68 fvdl howmany(fragstoblks(&sblock, sblock.fs_fpg), CHAR_BIT);
641 1.9 mycroft }
642 1.41 scw if (acg.cg_nextfreeoff > sblock.fs_cgsize) {
643 1.9 mycroft printf("Panic: cylinder group too big\n");
644 1.9 mycroft exit(37);
645 1.1 cgd }
646 1.1 cgd acg.cg_cs.cs_nifree += sblock.fs_ipg;
647 1.1 cgd if (cylno == 0)
648 1.1 cgd for (i = 0; i < ROOTINO; i++) {
649 1.30 bouyer setbit(cg_inosused(&acg, 0), i);
650 1.1 cgd acg.cg_cs.cs_nifree--;
651 1.1 cgd }
652 1.1 cgd if (cylno > 0) {
653 1.1 cgd /*
654 1.1 cgd * In cylno 0, beginning space is reserved
655 1.1 cgd * for boot and super blocks.
656 1.1 cgd */
657 1.68 fvdl for (d = 0, blkno = 0; d < dlower;) {
658 1.30 bouyer setblock(&sblock, cg_blksfree(&acg, 0), blkno);
659 1.9 mycroft if (sblock.fs_contigsumsize > 0)
660 1.30 bouyer setbit(cg_clustersfree(&acg, 0), blkno);
661 1.1 cgd acg.cg_cs.cs_nbfree++;
662 1.64 mycroft d += sblock.fs_frag;
663 1.64 mycroft blkno++;
664 1.1 cgd }
665 1.1 cgd }
666 1.62 mycroft if ((i = (dupper & (sblock.fs_frag - 1))) != 0) {
667 1.1 cgd acg.cg_frsum[sblock.fs_frag - i]++;
668 1.1 cgd for (d = dupper + sblock.fs_frag - i; dupper < d; dupper++) {
669 1.30 bouyer setbit(cg_blksfree(&acg, 0), dupper);
670 1.1 cgd acg.cg_cs.cs_nffree++;
671 1.1 cgd }
672 1.1 cgd }
673 1.64 mycroft for (d = dupper, blkno = dupper >> sblock.fs_fragshift;
674 1.68 fvdl d + sblock.fs_frag <= acg.cg_ndblk; ) {
675 1.30 bouyer setblock(&sblock, cg_blksfree(&acg, 0), blkno);
676 1.9 mycroft if (sblock.fs_contigsumsize > 0)
677 1.30 bouyer setbit(cg_clustersfree(&acg, 0), blkno);
678 1.1 cgd acg.cg_cs.cs_nbfree++;
679 1.1 cgd d += sblock.fs_frag;
680 1.64 mycroft blkno++;
681 1.1 cgd }
682 1.68 fvdl if (d < acg.cg_ndblk) {
683 1.68 fvdl acg.cg_frsum[acg.cg_ndblk - d]++;
684 1.68 fvdl for (; d < acg.cg_ndblk; d++) {
685 1.30 bouyer setbit(cg_blksfree(&acg, 0), d);
686 1.1 cgd acg.cg_cs.cs_nffree++;
687 1.1 cgd }
688 1.1 cgd }
689 1.9 mycroft if (sblock.fs_contigsumsize > 0) {
690 1.30 bouyer int32_t *sump = cg_clustersum(&acg, 0);
691 1.30 bouyer u_char *mapp = cg_clustersfree(&acg, 0);
692 1.9 mycroft int map = *mapp++;
693 1.9 mycroft int bit = 1;
694 1.9 mycroft int run = 0;
695 1.9 mycroft
696 1.9 mycroft for (i = 0; i < acg.cg_nclusterblks; i++) {
697 1.9 mycroft if ((map & bit) != 0) {
698 1.9 mycroft run++;
699 1.9 mycroft } else if (run != 0) {
700 1.9 mycroft if (run > sblock.fs_contigsumsize)
701 1.9 mycroft run = sblock.fs_contigsumsize;
702 1.9 mycroft sump[run]++;
703 1.9 mycroft run = 0;
704 1.9 mycroft }
705 1.68 fvdl if ((i & (CHAR_BIT - 1)) != (CHAR_BIT - 1)) {
706 1.9 mycroft bit <<= 1;
707 1.9 mycroft } else {
708 1.9 mycroft map = *mapp++;
709 1.9 mycroft bit = 1;
710 1.9 mycroft }
711 1.9 mycroft }
712 1.9 mycroft if (run != 0) {
713 1.9 mycroft if (run > sblock.fs_contigsumsize)
714 1.9 mycroft run = sblock.fs_contigsumsize;
715 1.9 mycroft sump[run]++;
716 1.9 mycroft }
717 1.9 mycroft }
718 1.1 cgd *cs = acg.cg_cs;
719 1.68 fvdl /*
720 1.68 fvdl * Write out the duplicate super block, the cylinder group map
721 1.68 fvdl * and two blocks worth of inodes in a single write.
722 1.68 fvdl */
723 1.68 fvdl start = sblock.fs_bsize > SBLOCKSIZE ? sblock.fs_bsize : SBLOCKSIZE;
724 1.68 fvdl memcpy(&iobuf[start], &acg, sblock.fs_cgsize);
725 1.30 bouyer if (needswap)
726 1.68 fvdl ffs_cg_swap(&acg, (struct cg*)&iobuf[start], &sblock);
727 1.68 fvdl start += sblock.fs_bsize;
728 1.68 fvdl dp1 = (struct ufs1_dinode *)(&iobuf[start]);
729 1.68 fvdl dp2 = (struct ufs2_dinode *)(&iobuf[start]);
730 1.68 fvdl for (i = 0; i < acg.cg_initediblk; i++) {
731 1.68 fvdl if (sblock.fs_magic == FS_UFS1_MAGIC) {
732 1.68 fvdl /* No need to swap, it'll stay random */
733 1.68 fvdl dp1->di_gen = random();
734 1.68 fvdl dp1++;
735 1.68 fvdl } else {
736 1.68 fvdl dp2->di_gen = random();
737 1.68 fvdl dp2++;
738 1.68 fvdl }
739 1.68 fvdl }
740 1.68 fvdl wtfs(fsbtodb(&sblock, cgsblock(&sblock, cylno)), iobufsize, iobuf);
741 1.68 fvdl /*
742 1.68 fvdl * For the old file system, we have to initialize all the inodes.
743 1.68 fvdl */
744 1.68 fvdl if (Oflag <= 1) {
745 1.68 fvdl for (i = 2 * sblock.fs_frag;
746 1.68 fvdl i < sblock.fs_ipg / INOPF(&sblock);
747 1.68 fvdl i += sblock.fs_frag) {
748 1.68 fvdl dp1 = (struct ufs1_dinode *)(&iobuf[start]);
749 1.68 fvdl for (j = 0; j < INOPB(&sblock); j++) {
750 1.68 fvdl dp1->di_gen = random();
751 1.68 fvdl dp1++;
752 1.68 fvdl }
753 1.68 fvdl wtfs(fsbtodb(&sblock, cgimin(&sblock, cylno) + i),
754 1.68 fvdl sblock.fs_bsize, &iobuf[start]);
755 1.68 fvdl }
756 1.68 fvdl }
757 1.1 cgd }
758 1.1 cgd
759 1.1 cgd /*
760 1.1 cgd * initialize the file system
761 1.1 cgd */
762 1.68 fvdl union dinode node;
763 1.1 cgd
764 1.1 cgd #ifdef LOSTDIR
765 1.60 simonb #define PREDEFDIR 3
766 1.1 cgd #else
767 1.60 simonb #define PREDEFDIR 2
768 1.1 cgd #endif
769 1.1 cgd
770 1.1 cgd struct direct root_dir[] = {
771 1.9 mycroft { ROOTINO, sizeof(struct direct), DT_DIR, 1, "." },
772 1.9 mycroft { ROOTINO, sizeof(struct direct), DT_DIR, 2, ".." },
773 1.9 mycroft #ifdef LOSTDIR
774 1.9 mycroft { LOSTFOUNDINO, sizeof(struct direct), DT_DIR, 10, "lost+found" },
775 1.9 mycroft #endif
776 1.9 mycroft };
777 1.9 mycroft struct odirect {
778 1.14 cgd u_int32_t d_ino;
779 1.14 cgd u_int16_t d_reclen;
780 1.14 cgd u_int16_t d_namlen;
781 1.9 mycroft u_char d_name[MAXNAMLEN + 1];
782 1.9 mycroft } oroot_dir[] = {
783 1.1 cgd { ROOTINO, sizeof(struct direct), 1, "." },
784 1.1 cgd { ROOTINO, sizeof(struct direct), 2, ".." },
785 1.1 cgd #ifdef LOSTDIR
786 1.1 cgd { LOSTFOUNDINO, sizeof(struct direct), 10, "lost+found" },
787 1.1 cgd #endif
788 1.1 cgd };
789 1.1 cgd #ifdef LOSTDIR
790 1.1 cgd struct direct lost_found_dir[] = {
791 1.9 mycroft { LOSTFOUNDINO, sizeof(struct direct), DT_DIR, 1, "." },
792 1.9 mycroft { ROOTINO, sizeof(struct direct), DT_DIR, 2, ".." },
793 1.9 mycroft { 0, DIRBLKSIZ, 0, 0, 0 },
794 1.9 mycroft };
795 1.9 mycroft struct odirect olost_found_dir[] = {
796 1.1 cgd { LOSTFOUNDINO, sizeof(struct direct), 1, "." },
797 1.1 cgd { ROOTINO, sizeof(struct direct), 2, ".." },
798 1.1 cgd { 0, DIRBLKSIZ, 0, 0 },
799 1.1 cgd };
800 1.1 cgd #endif
801 1.1 cgd char buf[MAXBSIZE];
802 1.39 simonb static void copy_dir(struct direct *, struct direct *);
803 1.1 cgd
804 1.60 simonb int
805 1.70 atatat fsinit(const struct timeval *tv, mode_t mfsmode, uid_t mfsuid, gid_t mfsgid)
806 1.1 cgd {
807 1.26 christos #ifdef LOSTDIR
808 1.1 cgd int i;
809 1.65 dbj int dirblksiz = DIRBLKSIZ;
810 1.65 dbj if (isappleufs)
811 1.65 dbj dirblksiz = APPLEUFS_DIRBLKSIZ;
812 1.26 christos #endif
813 1.1 cgd
814 1.1 cgd /*
815 1.1 cgd * initialize the node
816 1.1 cgd */
817 1.33 simonb memset(&node, 0, sizeof(node));
818 1.30 bouyer
819 1.1 cgd #ifdef LOSTDIR
820 1.1 cgd /*
821 1.1 cgd * create the lost+found directory
822 1.1 cgd */
823 1.68 fvdl if (Oflag == 0) {
824 1.9 mycroft (void)makedir((struct direct *)olost_found_dir, 2);
825 1.65 dbj for (i = dirblksiz; i < sblock.fs_bsize; i += dirblksiz)
826 1.30 bouyer copy_dir((struct direct*)&olost_found_dir[2],
827 1.30 bouyer (struct direct*)&buf[i]);
828 1.9 mycroft } else {
829 1.9 mycroft (void)makedir(lost_found_dir, 2);
830 1.65 dbj for (i = dirblksiz; i < sblock.fs_bsize; i += dirblksiz)
831 1.30 bouyer copy_dir(&lost_found_dir[2], (struct direct*)&buf[i]);
832 1.9 mycroft }
833 1.68 fvdl if (sblock.fs_magic == FS_UFS1_MAGIC) {
834 1.70 atatat node.dp1.di_atime = tv->tv_sec;
835 1.70 atatat node.dp1.di_atimensec = tv->tv_usec * 1000;
836 1.70 atatat node.dp1.di_mtime = tv->tv_sec;
837 1.70 atatat node.dp1.di_mtimensec = tv->tv_usec * 1000;
838 1.70 atatat node.dp1.di_ctime = tv->tv_sec;
839 1.70 atatat node.dp1.di_ctimensec = tv->tv_usec * 1000;
840 1.68 fvdl node.dp1.di_mode = IFDIR | UMASK;
841 1.68 fvdl node.dp1.di_nlink = 2;
842 1.68 fvdl node.dp1.di_size = sblock.fs_bsize;
843 1.68 fvdl node.dp1.di_db[0] = alloc(node.dp1.di_size, node.dp1.di_mode);
844 1.69 christos if (node.dp1.di_db[0] == 0)
845 1.69 christos return (0);
846 1.68 fvdl node.dp1.di_blocks = btodb(fragroundup(&sblock,
847 1.68 fvdl node.dp1.di_size));
848 1.68 fvdl node.dp1.di_uid = geteuid();
849 1.68 fvdl node.dp1.di_gid = getegid();
850 1.68 fvdl wtfs(fsbtodb(&sblock, node.dp1.di_db[0]), node.dp1.di_size,
851 1.68 fvdl buf);
852 1.68 fvdl } else {
853 1.70 atatat node.dp2.di_atime = tv->tv_sec;
854 1.70 atatat node.dp2.di_atimensec = tv->tv_usec * 1000;
855 1.70 atatat node.dp2.di_mtime = tv->tv_sec;
856 1.70 atatat node.dp2.di_mtimensec = tv->tv_usec * 1000;
857 1.70 atatat node.dp2.di_ctime = tv->tv_sec;
858 1.70 atatat node.dp2.di_ctimensec = tv->tv_usec * 1000;
859 1.70 atatat node.dp2.di_birthtime = tv->tv_sec;
860 1.70 atatat node.dp2.di_birthnsec = tv->tv_usec * 1000;
861 1.68 fvdl node.dp2.di_mode = IFDIR | UMASK;
862 1.68 fvdl node.dp2.di_nlink = 2;
863 1.68 fvdl node.dp2.di_size = sblock.fs_bsize;
864 1.68 fvdl node.dp2.di_db[0] = alloc(node.dp2.di_size, node.dp2.di_mode);
865 1.69 christos if (node.dp2.di_db[0] == 0)
866 1.69 christos return (0);
867 1.68 fvdl node.dp2.di_blocks = btodb(fragroundup(&sblock,
868 1.68 fvdl node.dp2.di_size));
869 1.68 fvdl node.dp2.di_uid = geteuid();
870 1.68 fvdl node.dp2.di_gid = getegid();
871 1.68 fvdl wtfs(fsbtodb(&sblock, node.dp2.di_db[0]), node.dp2.di_size,
872 1.68 fvdl buf);
873 1.68 fvdl }
874 1.1 cgd iput(&node, LOSTFOUNDINO);
875 1.1 cgd #endif
876 1.1 cgd /*
877 1.1 cgd * create the root directory
878 1.1 cgd */
879 1.68 fvdl if (Oflag <= 1) {
880 1.68 fvdl if (mfs) {
881 1.68 fvdl node.dp1.di_mode = IFDIR | mfsmode;
882 1.68 fvdl node.dp1.di_uid = mfsuid;
883 1.68 fvdl node.dp1.di_gid = mfsgid;
884 1.68 fvdl } else {
885 1.68 fvdl node.dp1.di_mode = IFDIR | UMASK;
886 1.68 fvdl node.dp1.di_uid = geteuid();
887 1.68 fvdl node.dp1.di_gid = getegid();
888 1.68 fvdl }
889 1.68 fvdl node.dp1.di_nlink = PREDEFDIR;
890 1.68 fvdl if (Oflag == 0)
891 1.68 fvdl node.dp1.di_size = makedir((struct direct *)oroot_dir,
892 1.68 fvdl PREDEFDIR);
893 1.68 fvdl else
894 1.68 fvdl node.dp1.di_size = makedir(root_dir, PREDEFDIR);
895 1.68 fvdl node.dp1.di_db[0] = alloc(sblock.fs_fsize, node.dp1.di_mode);
896 1.68 fvdl if (node.dp1.di_db[0] == 0)
897 1.68 fvdl return (0);
898 1.68 fvdl node.dp1.di_blocks = btodb(fragroundup(&sblock,
899 1.68 fvdl node.dp1.di_size));
900 1.68 fvdl wtfs(fsbtodb(&sblock, node.dp1.di_db[0]), sblock.fs_fsize, buf);
901 1.60 simonb } else {
902 1.68 fvdl if (mfs) {
903 1.68 fvdl node.dp2.di_mode = IFDIR | mfsmode;
904 1.68 fvdl node.dp2.di_uid = mfsuid;
905 1.68 fvdl node.dp2.di_gid = mfsgid;
906 1.68 fvdl } else {
907 1.68 fvdl node.dp2.di_mode = IFDIR | UMASK;
908 1.68 fvdl node.dp2.di_uid = geteuid();
909 1.68 fvdl node.dp2.di_gid = getegid();
910 1.68 fvdl }
911 1.70 atatat node.dp2.di_atime = tv->tv_sec;
912 1.70 atatat node.dp2.di_atimensec = tv->tv_usec * 1000;
913 1.70 atatat node.dp2.di_mtime = tv->tv_sec;
914 1.70 atatat node.dp2.di_mtimensec = tv->tv_usec * 1000;
915 1.70 atatat node.dp2.di_ctime = tv->tv_sec;
916 1.70 atatat node.dp2.di_ctimensec = tv->tv_usec * 1000;
917 1.70 atatat node.dp2.di_birthtime = tv->tv_sec;
918 1.70 atatat node.dp2.di_birthnsec = tv->tv_usec * 1000;
919 1.68 fvdl node.dp2.di_nlink = PREDEFDIR;
920 1.68 fvdl node.dp2.di_size = makedir(root_dir, PREDEFDIR);
921 1.68 fvdl node.dp2.di_db[0] = alloc(sblock.fs_fsize, node.dp2.di_mode);
922 1.68 fvdl if (node.dp2.di_db[0] == 0)
923 1.68 fvdl return (0);
924 1.68 fvdl node.dp2.di_blocks = btodb(fragroundup(&sblock,
925 1.68 fvdl node.dp2.di_size));
926 1.68 fvdl wtfs(fsbtodb(&sblock, node.dp2.di_db[0]), sblock.fs_fsize, buf);
927 1.68 fvdl }
928 1.1 cgd iput(&node, ROOTINO);
929 1.60 simonb return (1);
930 1.1 cgd }
931 1.1 cgd
932 1.1 cgd /*
933 1.1 cgd * construct a set of directory entries in "buf".
934 1.1 cgd * return size of directory.
935 1.1 cgd */
936 1.26 christos int
937 1.39 simonb makedir(struct direct *protodir, int entries)
938 1.1 cgd {
939 1.1 cgd char *cp;
940 1.1 cgd int i, spcleft;
941 1.65 dbj int dirblksiz = DIRBLKSIZ;
942 1.65 dbj if (isappleufs)
943 1.65 dbj dirblksiz = APPLEUFS_DIRBLKSIZ;
944 1.1 cgd
945 1.68 fvdl memset(buf, 0, DIRBLKSIZ);
946 1.65 dbj spcleft = dirblksiz;
947 1.1 cgd for (cp = buf, i = 0; i < entries - 1; i++) {
948 1.68 fvdl protodir[i].d_reclen = DIRSIZ(Oflag == 0, &protodir[i], 0);
949 1.30 bouyer copy_dir(&protodir[i], (struct direct*)cp);
950 1.1 cgd cp += protodir[i].d_reclen;
951 1.1 cgd spcleft -= protodir[i].d_reclen;
952 1.1 cgd }
953 1.1 cgd protodir[i].d_reclen = spcleft;
954 1.30 bouyer copy_dir(&protodir[i], (struct direct*)cp);
955 1.65 dbj return (dirblksiz);
956 1.1 cgd }
957 1.1 cgd
958 1.1 cgd /*
959 1.1 cgd * allocate a block or frag
960 1.1 cgd */
961 1.1 cgd daddr_t
962 1.39 simonb alloc(int size, int mode)
963 1.1 cgd {
964 1.1 cgd int i, frag;
965 1.9 mycroft daddr_t d, blkno;
966 1.1 cgd
967 1.26 christos rdfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
968 1.30 bouyer /* fs -> host byte order */
969 1.30 bouyer if (needswap)
970 1.68 fvdl ffs_cg_swap(&acg, &acg, &sblock);
971 1.1 cgd if (acg.cg_magic != CG_MAGIC) {
972 1.1 cgd printf("cg 0: bad magic number\n");
973 1.1 cgd return (0);
974 1.1 cgd }
975 1.1 cgd if (acg.cg_cs.cs_nbfree == 0) {
976 1.1 cgd printf("first cylinder group ran out of space\n");
977 1.1 cgd return (0);
978 1.1 cgd }
979 1.1 cgd for (d = 0; d < acg.cg_ndblk; d += sblock.fs_frag)
980 1.62 mycroft if (isblock(&sblock, cg_blksfree(&acg, 0),
981 1.62 mycroft d >> sblock.fs_fragshift))
982 1.1 cgd goto goth;
983 1.1 cgd printf("internal error: can't find block in cyl 0\n");
984 1.1 cgd return (0);
985 1.1 cgd goth:
986 1.9 mycroft blkno = fragstoblks(&sblock, d);
987 1.30 bouyer clrblock(&sblock, cg_blksfree(&acg, 0), blkno);
988 1.10 cgd if (sblock.fs_contigsumsize > 0)
989 1.30 bouyer clrbit(cg_clustersfree(&acg, 0), blkno);
990 1.1 cgd acg.cg_cs.cs_nbfree--;
991 1.1 cgd sblock.fs_cstotal.cs_nbfree--;
992 1.1 cgd fscs[0].cs_nbfree--;
993 1.1 cgd if (mode & IFDIR) {
994 1.1 cgd acg.cg_cs.cs_ndir++;
995 1.1 cgd sblock.fs_cstotal.cs_ndir++;
996 1.1 cgd fscs[0].cs_ndir++;
997 1.1 cgd }
998 1.1 cgd if (size != sblock.fs_bsize) {
999 1.1 cgd frag = howmany(size, sblock.fs_fsize);
1000 1.1 cgd fscs[0].cs_nffree += sblock.fs_frag - frag;
1001 1.1 cgd sblock.fs_cstotal.cs_nffree += sblock.fs_frag - frag;
1002 1.1 cgd acg.cg_cs.cs_nffree += sblock.fs_frag - frag;
1003 1.1 cgd acg.cg_frsum[sblock.fs_frag - frag]++;
1004 1.1 cgd for (i = frag; i < sblock.fs_frag; i++)
1005 1.30 bouyer setbit(cg_blksfree(&acg, 0), d + i);
1006 1.1 cgd }
1007 1.30 bouyer /* host -> fs byte order */
1008 1.30 bouyer if (needswap)
1009 1.68 fvdl ffs_cg_swap(&acg, &acg, &sblock);
1010 1.1 cgd wtfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize,
1011 1.1 cgd (char *)&acg);
1012 1.1 cgd return (d);
1013 1.1 cgd }
1014 1.1 cgd
1015 1.1 cgd /*
1016 1.1 cgd * Allocate an inode on the disk
1017 1.1 cgd */
1018 1.26 christos static void
1019 1.68 fvdl iput(union dinode *ip, ino_t ino)
1020 1.1 cgd {
1021 1.1 cgd daddr_t d;
1022 1.30 bouyer int c, i;
1023 1.68 fvdl struct ufs1_dinode *dp1;
1024 1.68 fvdl struct ufs2_dinode *dp2;
1025 1.1 cgd
1026 1.9 mycroft c = ino_to_cg(&sblock, ino);
1027 1.26 christos rdfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize, &acg);
1028 1.30 bouyer /* fs -> host byte order */
1029 1.30 bouyer if (needswap)
1030 1.68 fvdl ffs_cg_swap(&acg, &acg, &sblock);
1031 1.1 cgd if (acg.cg_magic != CG_MAGIC) {
1032 1.1 cgd printf("cg 0: bad magic number\n");
1033 1.1 cgd exit(31);
1034 1.1 cgd }
1035 1.1 cgd acg.cg_cs.cs_nifree--;
1036 1.30 bouyer setbit(cg_inosused(&acg, 0), ino);
1037 1.30 bouyer /* host -> fs byte order */
1038 1.30 bouyer if (needswap)
1039 1.68 fvdl ffs_cg_swap(&acg, &acg, &sblock);
1040 1.1 cgd wtfs(fsbtodb(&sblock, cgtod(&sblock, 0)), sblock.fs_cgsize,
1041 1.1 cgd (char *)&acg);
1042 1.1 cgd sblock.fs_cstotal.cs_nifree--;
1043 1.1 cgd fscs[0].cs_nifree--;
1044 1.1 cgd if (ino >= sblock.fs_ipg * sblock.fs_ncg) {
1045 1.1 cgd printf("fsinit: inode value out of range (%d).\n", ino);
1046 1.1 cgd exit(32);
1047 1.1 cgd }
1048 1.9 mycroft d = fsbtodb(&sblock, ino_to_fsba(&sblock, ino));
1049 1.68 fvdl rdfs(d, sblock.fs_bsize, (char *)iobuf);
1050 1.68 fvdl if (sblock.fs_magic == FS_UFS1_MAGIC) {
1051 1.68 fvdl dp1 = (struct ufs1_dinode *)iobuf;
1052 1.68 fvdl if (needswap) {
1053 1.68 fvdl ffs_dinode1_swap(&ip->dp1,
1054 1.68 fvdl &dp1[ino_to_fsbo(&sblock, ino)]);
1055 1.68 fvdl /* ffs_dinode1_swap() doesn't swap blocks addrs */
1056 1.68 fvdl for (i=0; i<NDADDR + NIADDR; i++)
1057 1.68 fvdl (&dp1[ino_to_fsbo(&sblock, ino)])->di_db[i] =
1058 1.68 fvdl bswap32(ip->dp1.di_db[i]);
1059 1.68 fvdl } else
1060 1.68 fvdl dp1[ino_to_fsbo(&sblock, ino)] = ip->dp1;
1061 1.68 fvdl } else {
1062 1.68 fvdl dp2 = (struct ufs2_dinode *)iobuf;
1063 1.68 fvdl if (needswap) {
1064 1.68 fvdl ffs_dinode2_swap(&ip->dp2,
1065 1.68 fvdl &dp2[ino_to_fsbo(&sblock, ino)]);
1066 1.68 fvdl for (i=0; i<NDADDR + NIADDR; i++)
1067 1.68 fvdl (&dp2[ino_to_fsbo(&sblock, ino)])->di_db[i] =
1068 1.68 fvdl bswap32(ip->dp2.di_db[i]);
1069 1.68 fvdl } else
1070 1.68 fvdl dp2[ino_to_fsbo(&sblock, ino)] = ip->dp2;
1071 1.68 fvdl }
1072 1.68 fvdl wtfs(d, sblock.fs_bsize, iobuf);
1073 1.1 cgd }
1074 1.1 cgd
1075 1.1 cgd /*
1076 1.1 cgd * read a block from the file system
1077 1.1 cgd */
1078 1.26 christos void
1079 1.39 simonb rdfs(daddr_t bno, int size, void *bf)
1080 1.1 cgd {
1081 1.1 cgd int n;
1082 1.18 cgd off_t offset;
1083 1.1 cgd
1084 1.61 lukem #ifdef MFS
1085 1.1 cgd if (mfs) {
1086 1.27 lukem memmove(bf, membase + bno * sectorsize, size);
1087 1.1 cgd return;
1088 1.1 cgd }
1089 1.61 lukem #endif
1090 1.18 cgd offset = bno;
1091 1.18 cgd offset *= sectorsize;
1092 1.18 cgd if (lseek(fsi, offset, SEEK_SET) < 0) {
1093 1.66 fvdl printf("rdfs: seek error for sector %lld: %s\n",
1094 1.66 fvdl (long long)bno, strerror(errno));
1095 1.1 cgd exit(33);
1096 1.1 cgd }
1097 1.1 cgd n = read(fsi, bf, size);
1098 1.9 mycroft if (n != size) {
1099 1.66 fvdl printf("rdfs: read error for sector %lld: %s\n",
1100 1.66 fvdl (long long)bno, strerror(errno));
1101 1.1 cgd exit(34);
1102 1.1 cgd }
1103 1.1 cgd }
1104 1.1 cgd
1105 1.1 cgd /*
1106 1.1 cgd * write a block to the file system
1107 1.1 cgd */
1108 1.26 christos void
1109 1.39 simonb wtfs(daddr_t bno, int size, void *bf)
1110 1.1 cgd {
1111 1.1 cgd int n;
1112 1.18 cgd off_t offset;
1113 1.1 cgd
1114 1.61 lukem #ifdef MFS
1115 1.1 cgd if (mfs) {
1116 1.27 lukem memmove(membase + bno * sectorsize, bf, size);
1117 1.1 cgd return;
1118 1.1 cgd }
1119 1.61 lukem #endif
1120 1.1 cgd if (Nflag)
1121 1.1 cgd return;
1122 1.18 cgd offset = bno;
1123 1.18 cgd offset *= sectorsize;
1124 1.18 cgd if (lseek(fso, offset, SEEK_SET) < 0) {
1125 1.66 fvdl printf("wtfs: seek error for sector %lld: %s\n",
1126 1.66 fvdl (long long)bno, strerror(errno));
1127 1.1 cgd exit(35);
1128 1.1 cgd }
1129 1.1 cgd n = write(fso, bf, size);
1130 1.9 mycroft if (n != size) {
1131 1.66 fvdl printf("wtfs: write error for sector %lld: %s\n",
1132 1.66 fvdl (long long)bno, strerror(errno));
1133 1.1 cgd exit(36);
1134 1.1 cgd }
1135 1.1 cgd }
1136 1.1 cgd
1137 1.1 cgd /*
1138 1.1 cgd * check if a block is available
1139 1.1 cgd */
1140 1.26 christos int
1141 1.39 simonb isblock(struct fs *fs, unsigned char *cp, int h)
1142 1.1 cgd {
1143 1.1 cgd unsigned char mask;
1144 1.1 cgd
1145 1.62 mycroft switch (fs->fs_fragshift) {
1146 1.62 mycroft case 3:
1147 1.1 cgd return (cp[h] == 0xff);
1148 1.62 mycroft case 2:
1149 1.1 cgd mask = 0x0f << ((h & 0x1) << 2);
1150 1.1 cgd return ((cp[h >> 1] & mask) == mask);
1151 1.62 mycroft case 1:
1152 1.1 cgd mask = 0x03 << ((h & 0x3) << 1);
1153 1.1 cgd return ((cp[h >> 2] & mask) == mask);
1154 1.62 mycroft case 0:
1155 1.1 cgd mask = 0x01 << (h & 0x7);
1156 1.1 cgd return ((cp[h >> 3] & mask) == mask);
1157 1.1 cgd default:
1158 1.1 cgd #ifdef STANDALONE
1159 1.62 mycroft printf("isblock bad fs_fragshift %d\n", fs->fs_fragshift);
1160 1.1 cgd #else
1161 1.62 mycroft fprintf(stderr, "isblock bad fs_fragshift %d\n",
1162 1.62 mycroft fs->fs_fragshift);
1163 1.1 cgd #endif
1164 1.1 cgd return (0);
1165 1.1 cgd }
1166 1.1 cgd }
1167 1.1 cgd
1168 1.1 cgd /*
1169 1.1 cgd * take a block out of the map
1170 1.1 cgd */
1171 1.26 christos void
1172 1.39 simonb clrblock(struct fs *fs, unsigned char *cp, int h)
1173 1.1 cgd {
1174 1.62 mycroft switch ((fs)->fs_fragshift) {
1175 1.62 mycroft case 3:
1176 1.1 cgd cp[h] = 0;
1177 1.1 cgd return;
1178 1.62 mycroft case 2:
1179 1.1 cgd cp[h >> 1] &= ~(0x0f << ((h & 0x1) << 2));
1180 1.1 cgd return;
1181 1.62 mycroft case 1:
1182 1.1 cgd cp[h >> 2] &= ~(0x03 << ((h & 0x3) << 1));
1183 1.1 cgd return;
1184 1.62 mycroft case 0:
1185 1.1 cgd cp[h >> 3] &= ~(0x01 << (h & 0x7));
1186 1.1 cgd return;
1187 1.1 cgd default:
1188 1.1 cgd #ifdef STANDALONE
1189 1.62 mycroft printf("clrblock bad fs_fragshift %d\n", fs->fs_fragshift);
1190 1.1 cgd #else
1191 1.62 mycroft fprintf(stderr, "clrblock bad fs_fragshift %d\n",
1192 1.62 mycroft fs->fs_fragshift);
1193 1.1 cgd #endif
1194 1.1 cgd return;
1195 1.1 cgd }
1196 1.1 cgd }
1197 1.1 cgd
1198 1.1 cgd /*
1199 1.1 cgd * put a block into the map
1200 1.1 cgd */
1201 1.26 christos void
1202 1.39 simonb setblock(struct fs *fs, unsigned char *cp, int h)
1203 1.1 cgd {
1204 1.62 mycroft switch (fs->fs_fragshift) {
1205 1.62 mycroft case 3:
1206 1.1 cgd cp[h] = 0xff;
1207 1.1 cgd return;
1208 1.62 mycroft case 2:
1209 1.1 cgd cp[h >> 1] |= (0x0f << ((h & 0x1) << 2));
1210 1.1 cgd return;
1211 1.62 mycroft case 1:
1212 1.1 cgd cp[h >> 2] |= (0x03 << ((h & 0x3) << 1));
1213 1.1 cgd return;
1214 1.62 mycroft case 0:
1215 1.1 cgd cp[h >> 3] |= (0x01 << (h & 0x7));
1216 1.1 cgd return;
1217 1.1 cgd default:
1218 1.1 cgd #ifdef STANDALONE
1219 1.62 mycroft printf("setblock bad fs_frag %d\n", fs->fs_fragshift);
1220 1.1 cgd #else
1221 1.62 mycroft fprintf(stderr, "setblock bad fs_fragshift %d\n",
1222 1.62 mycroft fs->fs_fragshift);
1223 1.1 cgd #endif
1224 1.1 cgd return;
1225 1.30 bouyer }
1226 1.30 bouyer }
1227 1.30 bouyer
1228 1.30 bouyer /* copy a direntry to a buffer, in fs byte order */
1229 1.30 bouyer static void
1230 1.39 simonb copy_dir(struct direct *dir, struct direct *dbuf)
1231 1.30 bouyer {
1232 1.68 fvdl memcpy(dbuf, dir, DIRSIZ(Oflag == 0, dir, 0));
1233 1.30 bouyer if (needswap) {
1234 1.30 bouyer dbuf->d_ino = bswap32(dir->d_ino);
1235 1.30 bouyer dbuf->d_reclen = bswap16(dir->d_reclen);
1236 1.68 fvdl if (Oflag == 0)
1237 1.30 bouyer ((struct odirect*)dbuf)->d_namlen =
1238 1.30 bouyer bswap16(((struct odirect*)dir)->d_namlen);
1239 1.1 cgd }
1240 1.36 wrstuden }
1241 1.36 wrstuden
1242 1.36 wrstuden /* Determine how many digits are needed to print a given integer */
1243 1.36 wrstuden static int
1244 1.39 simonb count_digits(int num)
1245 1.36 wrstuden {
1246 1.36 wrstuden int ndig;
1247 1.36 wrstuden
1248 1.36 wrstuden for(ndig = 1; num > 9; num /=10, ndig++);
1249 1.36 wrstuden
1250 1.36 wrstuden return (ndig);
1251 1.60 simonb }
1252 1.68 fvdl
1253 1.68 fvdl static int
1254 1.68 fvdl ilog2(int val)
1255 1.68 fvdl {
1256 1.68 fvdl u_int n;
1257 1.68 fvdl
1258 1.68 fvdl for (n = 0; n < sizeof(n) * CHAR_BIT; n++)
1259 1.68 fvdl if (1 << n == val)
1260 1.68 fvdl return (n);
1261 1.68 fvdl errx(1, "ilog2: %d is not a power of 2\n", val);
1262 1.68 fvdl }
1263 1.68 fvdl
1264 1.60 simonb
1265 1.61 lukem #ifdef MFS
1266 1.60 simonb /*
1267 1.60 simonb * XXX!
1268 1.60 simonb * Attempt to guess how much more space is available for process data. The
1269 1.60 simonb * heuristic we use is
1270 1.60 simonb *
1271 1.60 simonb * max_data_limit - (sbrk(0) - etext) - 128kB
1272 1.60 simonb *
1273 1.60 simonb * etext approximates that start address of the data segment, and the 128kB
1274 1.60 simonb * allows some slop for both segment gap between text and data, and for other
1275 1.60 simonb * (libc) malloc usage.
1276 1.60 simonb */
1277 1.60 simonb static void
1278 1.60 simonb calc_memfree(void)
1279 1.60 simonb {
1280 1.60 simonb extern char etext;
1281 1.60 simonb struct rlimit rlp;
1282 1.60 simonb u_long base;
1283 1.60 simonb
1284 1.60 simonb base = (u_long)sbrk(0) - (u_long)&etext;
1285 1.60 simonb if (getrlimit(RLIMIT_DATA, &rlp) < 0)
1286 1.60 simonb perror("getrlimit");
1287 1.60 simonb rlp.rlim_cur = rlp.rlim_max;
1288 1.60 simonb if (setrlimit(RLIMIT_DATA, &rlp) < 0)
1289 1.60 simonb perror("setrlimit");
1290 1.60 simonb memleft = rlp.rlim_max - base - (128 * 1024);
1291 1.60 simonb }
1292 1.60 simonb
1293 1.60 simonb /*
1294 1.60 simonb * Internal version of malloc that trims the requested size if not enough
1295 1.60 simonb * memory is available.
1296 1.60 simonb */
1297 1.60 simonb static void *
1298 1.60 simonb mkfs_malloc(size_t size)
1299 1.60 simonb {
1300 1.60 simonb u_long pgsz;
1301 1.60 simonb
1302 1.60 simonb if (size == 0)
1303 1.60 simonb return (NULL);
1304 1.60 simonb if (memleft == 0)
1305 1.60 simonb calc_memfree();
1306 1.60 simonb
1307 1.60 simonb pgsz = getpagesize() - 1;
1308 1.60 simonb size = (size + pgsz) &~ pgsz;
1309 1.60 simonb if (size > memleft)
1310 1.60 simonb size = memleft;
1311 1.60 simonb memleft -= size;
1312 1.60 simonb return (mmap(0, size, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
1313 1.60 simonb -1, 0));
1314 1.1 cgd }
1315 1.61 lukem #endif /* MFS */
1316