source: mainline/uspace/app/mkmfs/mkmfs.c@ db71e2a

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since db71e2a was 0395a7b, checked in by Maurizio Lombardi <m.lombardi85@…>, 12 years ago

mkmfs: fix zone bitmap initialization.

  • Property mode set to 100644
File size: 19.0 KB
Line 
1/*
2 * Copyright (c) 2011 Maurizio Lombardi
3 * 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 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup fs
30 * @{
31 */
32
33/**
34 * @file mkmfs.c
35 * @brief Tool for creating new Minix file systems.
36 *
37 */
38
39#include <stdio.h>
40#include <stdlib.h>
41#include <block.h>
42#include <unistd.h>
43#include <errno.h>
44#include <sys/typefmt.h>
45#include <inttypes.h>
46#include <getopt.h>
47#include <mem.h>
48#include <str.h>
49#include <time.h>
50#include <minix.h>
51
52#define NAME "mkmfs"
53
54#define FREE 0
55#define USED 1
56
57#define UPPER(n, size) (((n) / (size)) + (((n) % (size)) != 0))
58#define NEXT_DENTRY(p, dirsize) (p += (dirsize))
59
60typedef enum {
61 HELP_SHORT,
62 HELP_LONG
63} help_level_t;
64
65/* Generic MFS superblock */
66struct mfs_sb_info {
67 uint64_t n_inodes;
68 uint64_t n_zones;
69 aoff64_t dev_nblocks;
70 unsigned long ibmap_blocks;
71 unsigned long zbmap_blocks;
72 unsigned long first_data_zone;
73 unsigned long itable_size;
74 int log2_zone_size;
75 int ino_per_block;
76 int dirsize;
77 uint32_t max_file_size;
78 uint16_t magic;
79 uint32_t block_size;
80 int fs_version;
81 bool longnames;
82};
83
84static void help_cmd_mkmfs(help_level_t level);
85static bool is_power_of_two(uint32_t n);
86static int init_superblock(struct mfs_sb_info *sb);
87static int write_superblock(const struct mfs_sb_info *sbi);
88static int write_superblock3(const struct mfs_sb_info *sbi);
89static int init_bitmaps(const struct mfs_sb_info *sb);
90static int init_inode_table(const struct mfs_sb_info *sb);
91static int make_root_ino(const struct mfs_sb_info *sb);
92static int make_root_ino2(const struct mfs_sb_info *sb);
93static void mark_bmap(uint32_t *bmap, int idx, int v);
94static int insert_dentries(const struct mfs_sb_info *sb);
95
96static inline int write_block(aoff64_t off, size_t size, const void *data);
97
98static service_id_t service_id;
99static int shift;
100
101static struct option const long_options[] = {
102 { "help", no_argument, 0, 'h' },
103 { "long-names", no_argument, 0, 'l' },
104 { "block-size", required_argument, 0, 'b' },
105 { "inodes", required_argument, 0, 'i' },
106 { NULL, no_argument, 0, '1' },
107 { NULL, no_argument, 0, '2' },
108 { 0, 0, 0, 0 }
109};
110
111int main (int argc, char **argv)
112{
113 int rc, c, opt_ind;
114 char *device_name;
115 size_t devblock_size;
116
117 struct mfs_sb_info sb;
118
119 /* Default is MinixFS V3 */
120 sb.magic = MFS_MAGIC_V3;
121 sb.fs_version = 3;
122
123 /* Default block size is 4Kb */
124 sb.block_size = MFS_MAX_BLOCKSIZE;
125 sb.dirsize = MFS3_DIRSIZE;
126 sb.n_inodes = 0;
127 sb.longnames = false;
128 sb.ino_per_block = V3_INODES_PER_BLOCK(MFS_MAX_BLOCKSIZE);
129
130 if (argc == 1) {
131 help_cmd_mkmfs(HELP_SHORT);
132 printf("Incorrect number of arguments, try `mkmfs --help'\n");
133 exit(0);
134 }
135
136 for (c = 0, optind = 0, opt_ind = 0; c != -1;) {
137 c = getopt_long(argc, argv, "lh12b:i:",
138 long_options, &opt_ind);
139 switch (c) {
140 case 'h':
141 help_cmd_mkmfs(HELP_LONG);
142 exit(0);
143 case '1':
144 sb.magic = MFS_MAGIC_V1;
145 sb.block_size = MFS_BLOCKSIZE;
146 sb.fs_version = 1;
147 sb.ino_per_block = V1_INODES_PER_BLOCK;
148 sb.dirsize = MFS_DIRSIZE;
149 break;
150 case '2':
151 sb.magic = MFS_MAGIC_V2;
152 sb.block_size = MFS_BLOCKSIZE;
153 sb.fs_version = 2;
154 sb.ino_per_block = V2_INODES_PER_BLOCK;
155 sb.dirsize = MFS_DIRSIZE;
156 break;
157 case 'b':
158 sb.block_size = (uint32_t) strtol(optarg, NULL, 10);
159 break;
160 case 'i':
161 sb.n_inodes = (uint64_t) strtol(optarg, NULL, 10);
162 break;
163 case 'l':
164 sb.longnames = true;
165 sb.dirsize = MFSL_DIRSIZE;
166 break;
167 }
168 }
169
170 if (sb.block_size < MFS_MIN_BLOCKSIZE ||
171 sb.block_size > MFS_MAX_BLOCKSIZE) {
172 printf(NAME ":Error! Invalid block size.\n");
173 exit(0);
174 } else if (!is_power_of_two(sb.block_size)) {
175 /* Block size must be a power of 2. */
176 printf(NAME ":Error! Invalid block size.\n");
177 exit(0);
178 } else if (sb.block_size > MFS_BLOCKSIZE &&
179 sb.fs_version != 3) {
180 printf(NAME ":Error! Block size > 1024 is "
181 "supported by V3 filesystem only.\n");
182 exit(0);
183 } else if (sb.fs_version == 3 && sb.longnames) {
184 printf(NAME ":Error! Long filenames are supported "
185 "by V1/V2 filesystem only.\n");
186 exit(0);
187 }
188
189 if (sb.block_size == MFS_MIN_BLOCKSIZE)
190 shift = 1;
191 else if (sb.block_size == MFS_MAX_BLOCKSIZE)
192 shift = 3;
193 else
194 shift = 2;
195
196 argv += optind;
197
198 device_name = argv[0];
199
200 if (!device_name) {
201 help_cmd_mkmfs(HELP_LONG);
202 exit(0);
203 }
204
205 rc = loc_service_get_id(device_name, &service_id, 0);
206 if (rc != EOK) {
207 printf(NAME ": Error resolving device `%s'.\n", device_name);
208 return 2;
209 }
210
211 rc = block_init(EXCHANGE_SERIALIZE, service_id, 2048);
212 if (rc != EOK) {
213 printf(NAME ": Error initializing libblock.\n");
214 return 2;
215 }
216
217 rc = block_get_bsize(service_id, &devblock_size);
218 if (rc != EOK) {
219 printf(NAME ": Error determining device block size.\n");
220 return 2;
221 }
222
223 rc = block_get_nblocks(service_id, &sb.dev_nblocks);
224 if (rc != EOK) {
225 printf(NAME ": Warning, failed to obtain "
226 "block device size.\n");
227 } else {
228 printf(NAME ": Block device has %" PRIuOFF64 " blocks.\n",
229 sb.dev_nblocks);
230 }
231
232 if (devblock_size != 512) {
233 printf(NAME ": Error. Device block size is not 512 bytes.\n");
234 return 2;
235 }
236
237 /* Minimum block size is 1 Kb */
238 sb.dev_nblocks /= 2;
239
240 printf(NAME ": Creating Minix file system on device\n");
241 printf(NAME ": Writing superblock\n");
242
243 /* Initialize superblock */
244 if (init_superblock(&sb) != EOK) {
245 printf(NAME ": Error. Superblock initialization failed\n");
246 return 2;
247 }
248
249 printf(NAME ": Initializing bitmaps\n");
250
251 /* Initialize bitmaps */
252 if (init_bitmaps(&sb) != EOK) {
253 printf(NAME ": Error. Bitmaps initialization failed\n");
254 return 2;
255 }
256
257 printf(NAME ": Initializing the inode table\n");
258
259 /* Init inode table */
260 if (init_inode_table(&sb) != EOK) {
261 printf(NAME ": Error. Inode table initialization failed\n");
262 return 2;
263 }
264
265 printf(NAME ": Creating the root directory inode\n");
266
267 /* Make the root inode */
268 if (sb.fs_version == 1)
269 rc = make_root_ino(&sb);
270 else
271 rc = make_root_ino2(&sb);
272
273 if (rc != EOK) {
274 printf(NAME ": Error. Root inode initialization failed\n");
275 return 2;
276 }
277
278 /* Insert directory entries . and .. */
279 if (insert_dentries(&sb) != EOK) {
280 printf(NAME ": Error. Root directory initialization failed\n");
281 return 2;
282 }
283
284 block_fini(service_id);
285
286 return 0;
287}
288
289/**Inserts the '.' and '..' directory entries in the root directory.
290 *
291 * @param sb Pointer to the superblock structure.
292 *
293 * @return EOK on success or a negative error code.
294 */
295static int insert_dentries(const struct mfs_sb_info *sb)
296{
297 void *root_block;
298 uint8_t *dentry_ptr;
299 int rc;
300 const long root_dblock = sb->first_data_zone;
301
302 root_block = malloc(sb->block_size);
303 memset(root_block, 0x00, sb->block_size);
304
305 if (!root_block)
306 return ENOMEM;
307
308 dentry_ptr = root_block;
309
310 if (sb->fs_version != 3) {
311 /* Directory entries for V1/V2 filesystem */
312 struct mfs_dentry *dentry = root_block;
313
314 dentry->d_inum = MFS_ROOT_INO;
315 memcpy(dentry->d_name, ".\0", 2);
316
317 dentry = (struct mfs_dentry *) NEXT_DENTRY(dentry_ptr,
318 sb->dirsize);
319
320 dentry->d_inum = MFS_ROOT_INO;
321 memcpy(dentry->d_name, "..\0", 3);
322 } else {
323 /* Directory entries for V3 filesystem */
324 struct mfs3_dentry *dentry = root_block;
325
326 dentry->d_inum = MFS_ROOT_INO;
327 memcpy(dentry->d_name, ".\0", 2);
328
329 dentry = (struct mfs3_dentry *) NEXT_DENTRY(dentry_ptr,
330 sb->dirsize);
331
332 dentry->d_inum = MFS_ROOT_INO;
333 memcpy(dentry->d_name, "..\0", 3);
334 }
335
336 rc = write_block(root_dblock, 1, root_block);
337
338 free(root_block);
339 return rc;
340}
341
342/**Initialize the inode table.
343 *
344 * @param sb Pointer to the superblock structure.
345 *
346 * @return EOK on success or a negative error code.
347 */
348static int init_inode_table(const struct mfs_sb_info *sb)
349{
350 unsigned int i;
351 uint8_t *itable_buf;
352 int rc;
353
354 long itable_off = sb->zbmap_blocks + sb->ibmap_blocks + 2;
355 unsigned long itable_size = sb->itable_size;
356
357 itable_buf = malloc(sb->block_size);
358
359 if (!itable_buf)
360 return ENOMEM;
361
362 memset(itable_buf, 0x00, sb->block_size);
363
364 for (i = 0; i < itable_size; ++i, ++itable_off) {
365 rc = write_block(itable_off, 1, itable_buf);
366
367 if (rc != EOK)
368 break;
369 }
370
371 free(itable_buf);
372 return rc;
373}
374
375/**Initialize a V1 root inode.
376 *
377 * @param sb Ponter to the superblock structure.
378 *
379 * @return EOK on success or a negative error code.
380 */
381static int make_root_ino(const struct mfs_sb_info *sb)
382{
383 struct mfs_inode *ino_buf;
384 int rc;
385
386 const long itable_off = sb->zbmap_blocks + sb->ibmap_blocks + 2;
387
388 const time_t sec = time(NULL);
389
390 ino_buf = malloc(MFS_BLOCKSIZE);
391
392 if (!ino_buf)
393 return ENOMEM;
394
395 memset(ino_buf, 0x00, MFS_BLOCKSIZE);
396
397 ino_buf[MFS_ROOT_INO - 1].i_mode = S_IFDIR;
398 ino_buf[MFS_ROOT_INO - 1].i_uid = 0;
399 ino_buf[MFS_ROOT_INO - 1].i_gid = 0;
400 ino_buf[MFS_ROOT_INO - 1].i_size = (sb->longnames ? MFSL_DIRSIZE :
401 MFS_DIRSIZE) * 2;
402 ino_buf[MFS_ROOT_INO - 1].i_mtime = sec;
403 ino_buf[MFS_ROOT_INO - 1].i_nlinks = 2;
404 ino_buf[MFS_ROOT_INO - 1].i_dzone[0] = sb->first_data_zone;
405
406 rc = write_block(itable_off, 1, ino_buf);
407
408 free(ino_buf);
409 return rc;
410}
411
412/**Initialize a Minix V2 root inode on disk, also valid for V3 filesystem.
413 *
414 * @param sb Pointer to the superblock structure.
415 *
416 * @return EOK on success or a negative error code.
417 */
418static int make_root_ino2(const struct mfs_sb_info *sb)
419{
420 struct mfs2_inode *ino_buf;
421 int rc;
422
423 /* Compute offset of the first inode table block */
424 const long itable_off = sb->zbmap_blocks + sb->ibmap_blocks + 2;
425
426 const time_t sec = time(NULL);
427
428 ino_buf = malloc(sb->block_size);
429
430 if (!ino_buf)
431 return ENOMEM;
432
433 memset(ino_buf, 0x00, sb->block_size);
434
435 ino_buf[MFS_ROOT_INO - 1].i_mode = S_IFDIR;
436 ino_buf[MFS_ROOT_INO - 1].i_uid = 0;
437 ino_buf[MFS_ROOT_INO - 1].i_gid = 0;
438 ino_buf[MFS_ROOT_INO - 1].i_size = MFS3_DIRSIZE * 2;
439 ino_buf[MFS_ROOT_INO - 1].i_mtime = sec;
440 ino_buf[MFS_ROOT_INO - 1].i_atime = sec;
441 ino_buf[MFS_ROOT_INO - 1].i_ctime = sec;
442 ino_buf[MFS_ROOT_INO - 1].i_nlinks = 2;
443 ino_buf[MFS_ROOT_INO - 1].i_dzone[0] = sb->first_data_zone;
444
445 rc = write_block(itable_off, 1, ino_buf);
446
447 free(ino_buf);
448 return rc;
449}
450
451/**Initialize the superblock structure on disk.
452 *
453 * @param sb Pointer to the superblock structure.
454 *
455 * @return EOK on success or a negative error code.
456 */
457static int init_superblock(struct mfs_sb_info *sb)
458{
459 aoff64_t inodes;
460 unsigned long ind;
461 unsigned long ind2;
462 unsigned long zones;
463 int rc;
464
465 if (sb->longnames)
466 sb->magic = sb->fs_version == 1 ? MFS_MAGIC_V1L :
467 MFS_MAGIC_V2L;
468
469 /* Compute the number of zones on disk */
470
471 if (sb->fs_version == 1) {
472 /* Valid only for MFS V1 */
473 sb->n_zones = sb->dev_nblocks > UINT16_MAX ?
474 UINT16_MAX : sb->dev_nblocks;
475 ind = MFS_BLOCKSIZE / sizeof(uint16_t);
476 ind2 = ind * ind;
477 sb->max_file_size = (V1_NR_DIRECT_ZONES + ind + ind2) *
478 MFS_BLOCKSIZE;
479 } else {
480 /*Valid for MFS V2/V3*/
481 size_t ptrsize;
482 if (sb->fs_version == 2)
483 ptrsize = sizeof(uint16_t);
484 else
485 ptrsize = sizeof(uint32_t);
486
487 ind = sb->block_size / ptrsize;
488 ind2 = ind * ind;
489 zones = V2_NR_DIRECT_ZONES + ind + ind2;
490 sb->max_file_size = zones * sb->block_size;
491 sb->n_zones = sb->dev_nblocks > UINT32_MAX ?
492 UINT32_MAX : sb->dev_nblocks;
493
494 if (sb->fs_version == 3) {
495 if(INT32_MAX / sb->block_size < zones)
496 sb->max_file_size = INT32_MAX;
497 sb->ino_per_block = V3_INODES_PER_BLOCK(sb->block_size);
498 sb->n_zones /= (sb->block_size / MFS_MIN_BLOCKSIZE);
499 }
500 }
501
502 /* Round up the number of inodes to fill block size */
503 if (sb->n_inodes == 0)
504 inodes = sb->dev_nblocks / 3;
505 else
506 inodes = sb->n_inodes;
507
508 if (inodes % sb->ino_per_block)
509 inodes = ((inodes / sb->ino_per_block) + 1) *
510 sb->ino_per_block;
511
512 if (sb->fs_version < 3)
513 sb->n_inodes = inodes > UINT16_MAX ? UINT16_MAX : inodes;
514 else
515 sb->n_inodes = inodes > UINT32_MAX ? UINT32_MAX : inodes;
516
517 /* Compute inode bitmap size in blocks */
518 sb->ibmap_blocks = UPPER(sb->n_inodes, sb->block_size * 8);
519
520 /* Compute inode table size */
521 sb->itable_size = sb->n_inodes / sb->ino_per_block;
522
523 /* Compute zone bitmap size in blocks */
524 sb->zbmap_blocks = UPPER(sb->n_zones, sb->block_size * 8);
525
526 /* Compute first data zone position */
527 sb->first_data_zone = 2 + sb->itable_size +
528 sb->zbmap_blocks + sb->ibmap_blocks;
529
530 /* Set log2 of zone to block ratio to zero */
531 sb->log2_zone_size = 0;
532
533 /* Check for errors */
534 if (sb->first_data_zone >= sb->n_zones) {
535 printf(NAME ": Error! Insufficient disk space");
536 return ENOMEM;
537 }
538
539 /* Superblock is now ready to be written on disk */
540 printf(NAME ": %d block size\n", sb->block_size);
541 printf(NAME ": %d inodes\n", (uint32_t) sb->n_inodes);
542 printf(NAME ": %d zones\n", (uint32_t) sb->n_zones);
543 printf(NAME ": inode table blocks = %ld\n", sb->itable_size);
544 printf(NAME ": inode bitmap blocks = %ld\n", sb->ibmap_blocks);
545 printf(NAME ": zone bitmap blocks = %ld\n", sb->zbmap_blocks);
546 printf(NAME ": first data zone = %d\n", (uint32_t)sb->first_data_zone);
547 printf(NAME ": max file size = %u\n", sb->max_file_size);
548 printf(NAME ": long fnames = %s\n", sb->longnames ? "Yes" : "No");
549
550 if (sb->fs_version == 3)
551 rc = write_superblock3(sb);
552 else
553 rc = write_superblock(sb);
554
555 return rc;
556}
557
558/**Write the V1/V2 superblock on disk.
559 *
560 * @param sbi Pointer to the superblock structure to write on disk.
561 *
562 * @return EOK on success or a negative error code.
563 */
564static int write_superblock(const struct mfs_sb_info *sbi)
565{
566 struct mfs_superblock *sb;
567 int rc;
568
569 sb = malloc(MFS_SUPERBLOCK_SIZE);;
570
571 if (!sb)
572 return ENOMEM;
573
574 sb->s_ninodes = (uint16_t) sbi->n_inodes;
575 sb->s_nzones = (uint16_t) sbi->n_zones;
576 sb->s_nzones2 = (uint32_t) sbi->n_zones;
577 sb->s_ibmap_blocks = (uint16_t) sbi->ibmap_blocks;
578 sb->s_zbmap_blocks = (uint16_t) sbi->zbmap_blocks;
579 sb->s_first_data_zone = (uint16_t) sbi->first_data_zone;
580 sb->s_log2_zone_size = sbi->log2_zone_size;
581 sb->s_max_file_size = sbi->max_file_size;
582 sb->s_magic = sbi->magic;
583 sb->s_state = MFS_VALID_FS;
584
585 rc = write_block(MFS_SUPERBLOCK, 1, sb);
586 free(sb);
587
588 return rc;
589}
590
591/**Write the V3s superblock on disk.
592 *
593 * @param sbi Pointer to the superblock structure to write on disk.
594 *
595 * @return EOK on success or a negative error code.
596 */
597static int write_superblock3(const struct mfs_sb_info *sbi)
598{
599 struct mfs3_superblock *sb;
600 int rc;
601
602 sb = malloc(MFS_SUPERBLOCK_SIZE);
603
604 if (!sb)
605 return ENOMEM;
606
607 sb->s_ninodes = (uint32_t) sbi->n_inodes;
608 sb->s_nzones = (uint32_t) sbi->n_zones;
609 sb->s_ibmap_blocks = (uint16_t) sbi->ibmap_blocks;
610 sb->s_zbmap_blocks = (uint16_t) sbi->zbmap_blocks;
611 sb->s_first_data_zone = (uint16_t) sbi->first_data_zone;
612 sb->s_log2_zone_size = sbi->log2_zone_size;
613 sb->s_max_file_size = sbi->max_file_size;
614 sb->s_magic = sbi->magic;
615 sb->s_block_size = sbi->block_size;
616 sb->s_disk_version = 3;
617
618 rc = block_write_direct(service_id, MFS_SUPERBLOCK << 1, 1 << 1, sb);
619 free(sb);
620
621 return rc;
622}
623
624/**Initialize the inode and block bitmaps on disk.
625 *
626 * @param sb Pointer to the superblock structure.
627 *
628 * @return EOK on success or a negative error code.
629 */
630static int init_bitmaps(const struct mfs_sb_info *sb)
631{
632 uint32_t *ibmap_buf, *zbmap_buf;
633 uint8_t *ibmap_buf8, *zbmap_buf8;
634 const unsigned int ibmap_nblocks = sb->ibmap_blocks;
635 const unsigned int zbmap_nblocks = sb->zbmap_blocks;
636 unsigned int i;
637 int rc;
638
639 ibmap_buf = malloc(ibmap_nblocks * sb->block_size);
640 zbmap_buf = malloc(zbmap_nblocks * sb->block_size);
641
642 if (!ibmap_buf || !zbmap_buf)
643 return ENOMEM;
644
645 memset(ibmap_buf, 0xFF, ibmap_nblocks * sb->block_size);
646 memset(zbmap_buf, 0xFF, zbmap_nblocks * sb->block_size);
647
648 for (i = 2; i < sb->n_inodes + 1; ++i)
649 mark_bmap(ibmap_buf, i, FREE);
650
651 for (i = 2; i < sb->n_zones - sb->first_data_zone; ++i)
652 mark_bmap(zbmap_buf, i, FREE);
653
654 ibmap_buf8 = (uint8_t *) ibmap_buf;
655 zbmap_buf8 = (uint8_t *) zbmap_buf;
656
657 int start_block = 2;
658
659 for (i = 0; i < ibmap_nblocks; ++i) {
660 if ((rc = write_block(start_block + i,
661 1, (ibmap_buf8 + i * sb->block_size))) != EOK)
662 return rc;
663 }
664
665 start_block = 2 + ibmap_nblocks;
666
667 for (i = 0; i < zbmap_nblocks; ++i) {
668 if ((rc = write_block(start_block + i,
669 1, (zbmap_buf8 + i * sb->block_size))) != EOK)
670 return rc;
671 }
672
673 free(ibmap_buf);
674 free(zbmap_buf);
675
676 return rc;
677}
678
679/**Mark a bitmap entry as used or free.
680 *
681 * @param bmap 32-bit pointer to the bitmap in memory.
682 * @param idx The index in the bitmap of the bit to set at 1 or 0.
683 * @param v FREE to clear the bit, USED to set the bit.
684 */
685static void mark_bmap(uint32_t *bmap, int idx, int v)
686{
687 if (v == FREE)
688 bmap[idx / 32] &= ~(1 << (idx % 32));
689 else
690 bmap[idx / 32] |= 1 << (idx % 32);
691}
692
693/**Write a block on disk.
694 *
695 * @param off 64-bit block offset on disk.
696 * @param size size of the block.
697 * @param data Pointer to the block content.
698 *
699 * @return EOK on success or a negative error number.
700 */
701static inline int write_block(aoff64_t off, size_t size, const void *data)
702{
703 if (shift == 3) {
704 int rc;
705 aoff64_t tmp_off = off << 1;
706 uint8_t *data_ptr = (uint8_t *) data;
707
708 rc = block_write_direct(service_id, tmp_off << 2,
709 size << 2, data_ptr);
710
711 if (rc != EOK)
712 return rc;
713
714 data_ptr += 2048;
715 tmp_off++;
716
717 return block_write_direct(service_id, tmp_off << 2,
718 size << 2, data_ptr);
719 }
720 return block_write_direct(service_id, off << shift,
721 size << shift, data);
722}
723
724static void help_cmd_mkmfs(help_level_t level)
725{
726 if (level == HELP_SHORT) {
727 printf(NAME": tool to create new Minix file systems\n");
728 } else {
729 printf("Usage: [options] device\n"
730 "-1 Make a Minix version 1 filesystem\n"
731 "-2 Make a Minix version 2 filesystem\n"
732 "-b ## Specify the block size in bytes (V3 only),\n"
733 " valid block size values are 1024, 2048 and"
734 " 4096 bytes per block\n"
735 "-i ## Specify the number of inodes"
736 " for the filesystem\n"
737 "-l Use 30-char long filenames (V1/V2 only)\n");
738 }
739}
740
741/** Check if a given number is a power of two.
742 *
743 * @param n The number to check.
744 *
745 * @return true if it is a power of two, false otherwise.
746 */
747static bool is_power_of_two(uint32_t n)
748{
749 if (n == 0)
750 return false;
751
752 return (n & (n - 1)) == 0;
753}
754
755
756/**
757 * @}
758 */
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