1 /*
2 * mke2fs.c - Make a ext2fs filesystem.
3 *
4 * Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002,
5 * 2003, 2004, 2005 by Theodore Ts'o.
6 *
7 * %Begin-Header%
8 * This file may be redistributed under the terms of the GNU Public
9 * License.
10 * %End-Header%
11 */
12
13 /* Usage: mke2fs [options] device
14 *
15 * The device may be a block device or a image of one, but this isn't
16 * enforced (but it's not much fun on a character device :-).
17 */
18
19 #define _XOPEN_SOURCE 600
20
21 #include "config.h"
22 #include <stdio.h>
23 #include <string.h>
24 #include <strings.h>
25 #include <ctype.h>
26 #include <time.h>
27 #ifdef __linux__
28 #include <sys/utsname.h>
29 #define KERNEL_VERSION(a,b,c) (((a) << 16) + ((b) << 8) + (c))
30 #endif
31 #ifdef HAVE_GETOPT_H
32 #include <getopt.h>
33 #else
34 extern char *optarg;
35 extern int optind;
36 #endif
37 #ifdef HAVE_UNISTD_H
38 #include <unistd.h>
39 #endif
40 #ifdef HAVE_STDLIB_H
41 #include <stdlib.h>
42 #endif
43 #ifdef HAVE_ERRNO_H
44 #include <errno.h>
45 #endif
46 #ifdef HAVE_SYS_IOCTL_H
47 #include <sys/ioctl.h>
48 #endif
49 #include <libgen.h>
50 #include <limits.h>
51 #include <blkid/blkid.h>
52
53 #include "ext2fs/ext2_fs.h"
54 #include "ext2fs/ext2fsP.h"
55 #include "uuid/uuid.h"
56 #include "util.h"
57 #include "support/nls-enable.h"
58 #include "support/plausible.h"
59 #include "support/profile.h"
60 #include "support/prof_err.h"
61 #include "../version.h"
62 #include "support/quotaio.h"
63 #include "mke2fs.h"
64 #include "create_inode.h"
65
66 #define STRIDE_LENGTH 8
67
68 #define MAX_32_NUM ((((unsigned long long) 1) << 32) - 1)
69
70 #ifndef __sparc__
71 #define ZAP_BOOTBLOCK
72 #endif
73
74 #define DISCARD_STEP_MB (2048)
75
76 extern int isatty(int);
77 extern FILE *fpopen(const char *cmd, const char *mode);
78
79 const char * program_name = "mke2fs";
80 static const char * device_name /* = NULL */;
81
82 /* Command line options */
83 static int cflag;
84 int verbose;
85 int quiet;
86 static int super_only;
87 static int discard = 1; /* attempt to discard device before fs creation */
88 static int direct_io;
89 static int force;
90 static int noaction;
91 static int num_backups = 2; /* number of backup bg's for sparse_super2 */
92 static uid_t root_uid;
93 static gid_t root_gid;
94 int journal_size;
95 int journal_flags;
96 int journal_fc_size;
97 static int lazy_itable_init;
98 static int packed_meta_blocks;
99 int no_copy_xattrs;
100 static char *bad_blocks_filename = NULL;
101 static __u32 fs_stride;
102 /* Initialize usr/grp quotas by default */
103 static unsigned int quotatype_bits = (QUOTA_USR_BIT | QUOTA_GRP_BIT);
104 static __u64 offset;
105 static blk64_t journal_location = ~0LL;
106 static int proceed_delay = -1;
107 static blk64_t dev_size;
108
109 static struct ext2_super_block fs_param;
110 static __u32 zero_buf[4];
111 static char *fs_uuid = NULL;
112 static char *creator_os;
113 static char *volume_label;
114 static char *mount_dir;
115 char *journal_device;
116 static int sync_kludge; /* Set using the MKE2FS_SYNC env. option */
117 char **fs_types;
118 const char *src_root_dir; /* Copy files from the specified directory */
119 static char *undo_file;
120
121 static int android_sparse_file; /* -E android_sparse */
122
123 static profile_t profile;
124
125 static int sys_page_size = 4096;
126
127 static int errors_behavior = 0;
128
usage(void)129 static void usage(void)
130 {
131 fprintf(stderr, _("Usage: %s [-c|-l filename] [-b block-size] "
132 "[-C cluster-size]\n\t[-i bytes-per-inode] [-I inode-size] "
133 "[-J journal-options]\n"
134 "\t[-G flex-group-size] [-N number-of-inodes] "
135 "[-d root-directory]\n"
136 "\t[-m reserved-blocks-percentage] [-o creator-os]\n"
137 "\t[-g blocks-per-group] [-L volume-label] "
138 "[-M last-mounted-directory]\n\t[-O feature[,...]] "
139 "[-r fs-revision] [-E extended-option[,...]]\n"
140 "\t[-t fs-type] [-T usage-type ] [-U UUID] [-e errors_behavior]"
141 "[-z undo_file]\n"
142 "\t[-jnqvDFSV] device [blocks-count]\n"),
143 program_name);
144 exit(1);
145 }
146
int_log2(unsigned long long arg)147 static int int_log2(unsigned long long arg)
148 {
149 int l = 0;
150
151 arg >>= 1;
152 while (arg) {
153 l++;
154 arg >>= 1;
155 }
156 return l;
157 }
158
int_log10(unsigned long long arg)159 int int_log10(unsigned long long arg)
160 {
161 int l;
162
163 for (l=0; arg ; l++)
164 arg = arg / 10;
165 return l;
166 }
167
168 #ifdef __linux__
parse_version_number(const char * s)169 static int parse_version_number(const char *s)
170 {
171 int major, minor, rev;
172 char *endptr;
173 const char *cp = s;
174
175 if (!s)
176 return 0;
177 major = strtol(cp, &endptr, 10);
178 if (cp == endptr || *endptr != '.')
179 return 0;
180 cp = endptr + 1;
181 minor = strtol(cp, &endptr, 10);
182 if (cp == endptr || *endptr != '.')
183 return 0;
184 cp = endptr + 1;
185 rev = strtol(cp, &endptr, 10);
186 if (cp == endptr)
187 return 0;
188 return KERNEL_VERSION(major, minor, rev);
189 }
190
is_before_linux_ver(unsigned int major,unsigned int minor,unsigned int rev)191 static int is_before_linux_ver(unsigned int major, unsigned int minor,
192 unsigned int rev)
193 {
194 struct utsname ut;
195 static int linux_version_code = -1;
196
197 if (uname(&ut)) {
198 perror("uname");
199 exit(1);
200 }
201 if (linux_version_code < 0)
202 linux_version_code = parse_version_number(ut.release);
203 if (linux_version_code == 0)
204 return 0;
205
206 return linux_version_code < (int) KERNEL_VERSION(major, minor, rev);
207 }
208 #else
is_before_linux_ver(unsigned int major,unsigned int minor,unsigned int rev)209 static int is_before_linux_ver(unsigned int major, unsigned int minor,
210 unsigned int rev)
211 {
212 return 0;
213 }
214 #endif
215
216 /*
217 * Helper function for read_bb_file and test_disk
218 */
invalid_block(ext2_filsys fs EXT2FS_ATTR ((unused)),blk_t blk)219 static void invalid_block(ext2_filsys fs EXT2FS_ATTR((unused)), blk_t blk)
220 {
221 fprintf(stderr, _("Bad block %u out of range; ignored.\n"), blk);
222 return;
223 }
224
225 /*
226 * Reads the bad blocks list from a file
227 */
read_bb_file(ext2_filsys fs,badblocks_list * bb_list,const char * bad_blocks_file)228 static void read_bb_file(ext2_filsys fs, badblocks_list *bb_list,
229 const char *bad_blocks_file)
230 {
231 FILE *f;
232 errcode_t retval;
233
234 f = fopen(bad_blocks_file, "r");
235 if (!f) {
236 com_err("read_bad_blocks_file", errno,
237 _("while trying to open %s"), bad_blocks_file);
238 exit(1);
239 }
240 retval = ext2fs_read_bb_FILE(fs, f, bb_list, invalid_block);
241 fclose (f);
242 if (retval) {
243 com_err("ext2fs_read_bb_FILE", retval, "%s",
244 _("while reading in list of bad blocks from file"));
245 exit(1);
246 }
247 }
248
249 /*
250 * Runs the badblocks program to test the disk
251 */
test_disk(ext2_filsys fs,badblocks_list * bb_list)252 static void test_disk(ext2_filsys fs, badblocks_list *bb_list)
253 {
254 FILE *f;
255 errcode_t retval;
256 char buf[1024];
257
258 sprintf(buf, "badblocks -b %d -X %s%s%s %llu", fs->blocksize,
259 quiet ? "" : "-s ", (cflag > 1) ? "-w " : "",
260 fs->device_name,
261 (unsigned long long) ext2fs_blocks_count(fs->super)-1);
262 if (verbose)
263 printf(_("Running command: %s\n"), buf);
264 f = popen(buf, "r");
265 if (!f) {
266 com_err("popen", errno,
267 _("while trying to run '%s'"), buf);
268 exit(1);
269 }
270 retval = ext2fs_read_bb_FILE(fs, f, bb_list, invalid_block);
271 pclose(f);
272 if (retval) {
273 com_err("ext2fs_read_bb_FILE", retval, "%s",
274 _("while processing list of bad blocks from program"));
275 exit(1);
276 }
277 }
278
handle_bad_blocks(ext2_filsys fs,badblocks_list bb_list)279 static void handle_bad_blocks(ext2_filsys fs, badblocks_list bb_list)
280 {
281 dgrp_t i;
282 blk_t j;
283 unsigned must_be_good;
284 blk_t blk;
285 badblocks_iterate bb_iter;
286 errcode_t retval;
287 blk_t group_block;
288 int group;
289 int group_bad;
290
291 if (!bb_list)
292 return;
293
294 /*
295 * The primary superblock and group descriptors *must* be
296 * good; if not, abort.
297 */
298 must_be_good = fs->super->s_first_data_block + 1 + fs->desc_blocks;
299 for (i = fs->super->s_first_data_block; i <= must_be_good; i++) {
300 if (ext2fs_badblocks_list_test(bb_list, i)) {
301 fprintf(stderr, _("Block %d in primary "
302 "superblock/group descriptor area bad.\n"), i);
303 fprintf(stderr, _("Blocks %u through %u must be good "
304 "in order to build a filesystem.\n"),
305 fs->super->s_first_data_block, must_be_good);
306 fputs(_("Aborting....\n"), stderr);
307 exit(1);
308 }
309 }
310
311 /*
312 * See if any of the bad blocks are showing up in the backup
313 * superblocks and/or group descriptors. If so, issue a
314 * warning and adjust the block counts appropriately.
315 */
316 group_block = fs->super->s_first_data_block +
317 fs->super->s_blocks_per_group;
318
319 for (i = 1; i < fs->group_desc_count; i++) {
320 group_bad = 0;
321 for (j=0; j < fs->desc_blocks+1; j++) {
322 if (ext2fs_badblocks_list_test(bb_list,
323 group_block + j)) {
324 if (!group_bad)
325 fprintf(stderr,
326 _("Warning: the backup superblock/group descriptors at block %u contain\n"
327 " bad blocks.\n\n"),
328 group_block);
329 group_bad++;
330 group = ext2fs_group_of_blk2(fs, group_block+j);
331 ext2fs_bg_free_blocks_count_set(fs, group, ext2fs_bg_free_blocks_count(fs, group) + 1);
332 ext2fs_group_desc_csum_set(fs, group);
333 ext2fs_free_blocks_count_add(fs->super, 1);
334 }
335 }
336 group_block += fs->super->s_blocks_per_group;
337 }
338
339 /*
340 * Mark all the bad blocks as used...
341 */
342 retval = ext2fs_badblocks_list_iterate_begin(bb_list, &bb_iter);
343 if (retval) {
344 com_err("ext2fs_badblocks_list_iterate_begin", retval, "%s",
345 _("while marking bad blocks as used"));
346 exit(1);
347 }
348 while (ext2fs_badblocks_list_iterate(bb_iter, &blk))
349 ext2fs_mark_block_bitmap2(fs->block_map, blk);
350 ext2fs_badblocks_list_iterate_end(bb_iter);
351 }
352
write_reserved_inodes(ext2_filsys fs)353 static void write_reserved_inodes(ext2_filsys fs)
354 {
355 errcode_t retval;
356 ext2_ino_t ino;
357 struct ext2_inode *inode;
358
359 retval = ext2fs_get_memzero(EXT2_INODE_SIZE(fs->super), &inode);
360 if (retval) {
361 com_err("inode_init", retval, _("while allocating memory"));
362 exit(1);
363 }
364
365 for (ino = 1; ino < EXT2_FIRST_INO(fs->super); ino++) {
366 retval = ext2fs_write_inode_full(fs, ino, inode,
367 EXT2_INODE_SIZE(fs->super));
368 if (retval) {
369 com_err("ext2fs_write_inode_full", retval,
370 _("while writing reserved inodes"));
371 exit(1);
372 }
373 }
374
375 ext2fs_free_mem(&inode);
376 }
377
packed_allocate_tables(ext2_filsys fs)378 static errcode_t packed_allocate_tables(ext2_filsys fs)
379 {
380 errcode_t retval;
381 dgrp_t i;
382 blk64_t goal = 0;
383
384 for (i = 0; i < fs->group_desc_count; i++) {
385 retval = ext2fs_new_block2(fs, goal, NULL, &goal);
386 if (retval)
387 return retval;
388 ext2fs_block_alloc_stats2(fs, goal, +1);
389 ext2fs_block_bitmap_loc_set(fs, i, goal);
390 }
391 for (i = 0; i < fs->group_desc_count; i++) {
392 retval = ext2fs_new_block2(fs, goal, NULL, &goal);
393 if (retval)
394 return retval;
395 ext2fs_block_alloc_stats2(fs, goal, +1);
396 ext2fs_inode_bitmap_loc_set(fs, i, goal);
397 }
398 for (i = 0; i < fs->group_desc_count; i++) {
399 blk64_t end = ext2fs_blocks_count(fs->super) - 1;
400 retval = ext2fs_get_free_blocks2(fs, goal, end,
401 fs->inode_blocks_per_group,
402 fs->block_map, &goal);
403 if (retval)
404 return retval;
405 ext2fs_block_alloc_stats_range(fs, goal,
406 fs->inode_blocks_per_group, +1);
407 ext2fs_inode_table_loc_set(fs, i, goal);
408 ext2fs_group_desc_csum_set(fs, i);
409 }
410 return 0;
411 }
412
write_inode_tables(ext2_filsys fs,int lazy_flag,int itable_zeroed)413 static void write_inode_tables(ext2_filsys fs, int lazy_flag, int itable_zeroed)
414 {
415 errcode_t retval;
416 blk64_t blk;
417 dgrp_t i;
418 int num;
419 struct ext2fs_numeric_progress_struct progress;
420
421 ext2fs_numeric_progress_init(fs, &progress,
422 _("Writing inode tables: "),
423 fs->group_desc_count);
424
425 for (i = 0; i < fs->group_desc_count; i++) {
426 ext2fs_numeric_progress_update(fs, &progress, i);
427
428 blk = ext2fs_inode_table_loc(fs, i);
429 num = fs->inode_blocks_per_group;
430
431 if (lazy_flag)
432 num = ext2fs_div_ceil((fs->super->s_inodes_per_group -
433 ext2fs_bg_itable_unused(fs, i)) *
434 EXT2_INODE_SIZE(fs->super),
435 EXT2_BLOCK_SIZE(fs->super));
436 if (!lazy_flag || itable_zeroed) {
437 /* The kernel doesn't need to zero the itable blocks */
438 ext2fs_bg_flags_set(fs, i, EXT2_BG_INODE_ZEROED);
439 ext2fs_group_desc_csum_set(fs, i);
440 }
441 if (!itable_zeroed) {
442 retval = ext2fs_zero_blocks2(fs, blk, num, &blk, &num);
443 if (retval) {
444 fprintf(stderr, _("\nCould not write %d "
445 "blocks in inode table starting at %llu: %s\n"),
446 num, (unsigned long long) blk,
447 error_message(retval));
448 exit(1);
449 }
450 }
451 if (sync_kludge) {
452 if (sync_kludge == 1)
453 io_channel_flush(fs->io);
454 else if ((i % sync_kludge) == 0)
455 io_channel_flush(fs->io);
456 }
457 }
458 ext2fs_numeric_progress_close(fs, &progress,
459 _("done \n"));
460
461 /* Reserved inodes must always have correct checksums */
462 if (ext2fs_has_feature_metadata_csum(fs->super))
463 write_reserved_inodes(fs);
464 }
465
create_root_dir(ext2_filsys fs)466 static void create_root_dir(ext2_filsys fs)
467 {
468 errcode_t retval;
469 struct ext2_inode inode;
470
471 retval = ext2fs_mkdir(fs, EXT2_ROOT_INO, EXT2_ROOT_INO, 0);
472 if (retval) {
473 com_err("ext2fs_mkdir", retval, "%s",
474 _("while creating root dir"));
475 exit(1);
476 }
477 if (root_uid != 0 || root_gid != 0) {
478 retval = ext2fs_read_inode(fs, EXT2_ROOT_INO, &inode);
479 if (retval) {
480 com_err("ext2fs_read_inode", retval, "%s",
481 _("while reading root inode"));
482 exit(1);
483 }
484
485 inode.i_uid = root_uid;
486 ext2fs_set_i_uid_high(inode, root_uid >> 16);
487 inode.i_gid = root_gid;
488 ext2fs_set_i_gid_high(inode, root_gid >> 16);
489
490 retval = ext2fs_write_new_inode(fs, EXT2_ROOT_INO, &inode);
491 if (retval) {
492 com_err("ext2fs_write_inode", retval, "%s",
493 _("while setting root inode ownership"));
494 exit(1);
495 }
496 }
497 }
498
create_lost_and_found(ext2_filsys fs)499 static void create_lost_and_found(ext2_filsys fs)
500 {
501 unsigned int lpf_size = 0;
502 errcode_t retval;
503 ext2_ino_t ino;
504 const char *name = "lost+found";
505 int i;
506
507 fs->umask = 077;
508 retval = ext2fs_mkdir(fs, EXT2_ROOT_INO, 0, name);
509 if (retval) {
510 com_err("ext2fs_mkdir", retval, "%s",
511 _("while creating /lost+found"));
512 exit(1);
513 }
514
515 retval = ext2fs_lookup(fs, EXT2_ROOT_INO, name, strlen(name), 0, &ino);
516 if (retval) {
517 com_err("ext2_lookup", retval, "%s",
518 _("while looking up /lost+found"));
519 exit(1);
520 }
521
522 for (i=1; i < EXT2_NDIR_BLOCKS; i++) {
523 /* Ensure that lost+found is at least 2 blocks, so we always
524 * test large empty blocks for big-block filesystems. */
525 if ((lpf_size += fs->blocksize) >= 16*1024 &&
526 lpf_size >= 2 * fs->blocksize)
527 break;
528 retval = ext2fs_expand_dir(fs, ino);
529 if (retval) {
530 com_err("ext2fs_expand_dir", retval, "%s",
531 _("while expanding /lost+found"));
532 exit(1);
533 }
534 }
535 }
536
create_bad_block_inode(ext2_filsys fs,badblocks_list bb_list)537 static void create_bad_block_inode(ext2_filsys fs, badblocks_list bb_list)
538 {
539 errcode_t retval;
540
541 ext2fs_mark_inode_bitmap2(fs->inode_map, EXT2_BAD_INO);
542 ext2fs_inode_alloc_stats2(fs, EXT2_BAD_INO, +1, 0);
543 retval = ext2fs_update_bb_inode(fs, bb_list);
544 if (retval) {
545 com_err("ext2fs_update_bb_inode", retval, "%s",
546 _("while setting bad block inode"));
547 exit(1);
548 }
549
550 }
551
reserve_inodes(ext2_filsys fs)552 static void reserve_inodes(ext2_filsys fs)
553 {
554 ext2_ino_t i;
555
556 for (i = EXT2_ROOT_INO + 1; i < EXT2_FIRST_INODE(fs->super); i++)
557 ext2fs_inode_alloc_stats2(fs, i, +1, 0);
558 ext2fs_mark_ib_dirty(fs);
559 }
560
561 #define BSD_DISKMAGIC (0x82564557UL) /* The disk magic number */
562 #define BSD_MAGICDISK (0x57455682UL) /* The disk magic number reversed */
563 #define BSD_LABEL_OFFSET 64
564
zap_sector(ext2_filsys fs,int sect,int nsect)565 static void zap_sector(ext2_filsys fs, int sect, int nsect)
566 {
567 char *buf;
568 int retval;
569 unsigned int *magic;
570
571 buf = calloc(512, nsect);
572 if (!buf) {
573 printf(_("Out of memory erasing sectors %d-%d\n"),
574 sect, sect + nsect - 1);
575 exit(1);
576 }
577
578 if (sect == 0) {
579 /* Check for a BSD disklabel, and don't erase it if so */
580 retval = io_channel_read_blk64(fs->io, 0, -512, buf);
581 if (retval)
582 fprintf(stderr,
583 _("Warning: could not read block 0: %s\n"),
584 error_message(retval));
585 else {
586 magic = (unsigned int *) (buf + BSD_LABEL_OFFSET);
587 if ((*magic == BSD_DISKMAGIC) ||
588 (*magic == BSD_MAGICDISK))
589 return;
590 }
591 }
592
593 memset(buf, 0, 512*nsect);
594 io_channel_set_blksize(fs->io, 512);
595 retval = io_channel_write_blk64(fs->io, sect, -512*nsect, buf);
596 io_channel_set_blksize(fs->io, fs->blocksize);
597 free(buf);
598 if (retval)
599 fprintf(stderr, _("Warning: could not erase sector %d: %s\n"),
600 sect, error_message(retval));
601 }
602
create_journal_dev(ext2_filsys fs)603 static void create_journal_dev(ext2_filsys fs)
604 {
605 struct ext2fs_numeric_progress_struct progress;
606 errcode_t retval;
607 char *buf;
608 blk64_t blk, err_blk;
609 int c, count, err_count;
610 struct ext2fs_journal_params jparams;
611
612 retval = ext2fs_get_journal_params(&jparams, fs);
613 if (retval) {
614 com_err("create_journal_dev", retval, "%s",
615 _("while splitting the journal size"));
616 exit(1);
617 }
618
619 retval = ext2fs_create_journal_superblock2(fs, &jparams, 0, &buf);
620 if (retval) {
621 com_err("create_journal_dev", retval, "%s",
622 _("while initializing journal superblock"));
623 exit(1);
624 }
625
626 if (journal_flags & EXT2_MKJOURNAL_LAZYINIT)
627 goto write_superblock;
628
629 ext2fs_numeric_progress_init(fs, &progress,
630 _("Zeroing journal device: "),
631 ext2fs_blocks_count(fs->super));
632 blk = 0;
633 count = ext2fs_blocks_count(fs->super);
634 while (count > 0) {
635 if (count > 1024)
636 c = 1024;
637 else
638 c = count;
639 retval = ext2fs_zero_blocks2(fs, blk, c, &err_blk, &err_count);
640 if (retval) {
641 com_err("create_journal_dev", retval,
642 _("while zeroing journal device "
643 "(block %llu, count %d)"),
644 (unsigned long long) err_blk, err_count);
645 exit(1);
646 }
647 blk += c;
648 count -= c;
649 ext2fs_numeric_progress_update(fs, &progress, blk);
650 }
651
652 ext2fs_numeric_progress_close(fs, &progress, NULL);
653 write_superblock:
654 retval = io_channel_write_blk64(fs->io,
655 fs->super->s_first_data_block+1,
656 1, buf);
657 (void) ext2fs_free_mem(&buf);
658 if (retval) {
659 com_err("create_journal_dev", retval, "%s",
660 _("while writing journal superblock"));
661 exit(1);
662 }
663 }
664
show_stats(ext2_filsys fs)665 static void show_stats(ext2_filsys fs)
666 {
667 struct ext2_super_block *s = fs->super;
668 char *os;
669 blk64_t group_block;
670 dgrp_t i;
671 int need, col_left;
672
673 if (!verbose) {
674 printf(_("Creating filesystem with %llu %dk blocks and "
675 "%u inodes\n"),
676 (unsigned long long) ext2fs_blocks_count(s),
677 fs->blocksize >> 10, s->s_inodes_count);
678 goto skip_details;
679 }
680
681 if (ext2fs_blocks_count(&fs_param) != ext2fs_blocks_count(s))
682 fprintf(stderr, _("warning: %llu blocks unused.\n\n"),
683 (unsigned long long) (ext2fs_blocks_count(&fs_param) -
684 ext2fs_blocks_count(s)));
685
686 printf(_("Filesystem label=%.*s\n"), EXT2_LEN_STR(s->s_volume_name));
687
688 os = e2p_os2string(fs->super->s_creator_os);
689 if (os)
690 printf(_("OS type: %s\n"), os);
691 free(os);
692 printf(_("Block size=%u (log=%u)\n"), fs->blocksize,
693 s->s_log_block_size);
694 if (ext2fs_has_feature_bigalloc(fs->super))
695 printf(_("Cluster size=%u (log=%u)\n"),
696 fs->blocksize << fs->cluster_ratio_bits,
697 s->s_log_cluster_size);
698 else
699 printf(_("Fragment size=%u (log=%u)\n"), EXT2_CLUSTER_SIZE(s),
700 s->s_log_cluster_size);
701 printf(_("Stride=%u blocks, Stripe width=%u blocks\n"),
702 s->s_raid_stride, s->s_raid_stripe_width);
703 printf(_("%u inodes, %llu blocks\n"), s->s_inodes_count,
704 (unsigned long long) ext2fs_blocks_count(s));
705 printf(_("%llu blocks (%2.2f%%) reserved for the super user\n"),
706 (unsigned long long) ext2fs_r_blocks_count(s),
707 100.0 * ext2fs_r_blocks_count(s) / ext2fs_blocks_count(s));
708 printf(_("First data block=%u\n"), s->s_first_data_block);
709 if (root_uid != 0 || root_gid != 0)
710 printf(_("Root directory owner=%u:%u\n"), root_uid, root_gid);
711 if (s->s_reserved_gdt_blocks)
712 printf(_("Maximum filesystem blocks=%lu\n"),
713 (s->s_reserved_gdt_blocks + fs->desc_blocks) *
714 EXT2_DESC_PER_BLOCK(s) * s->s_blocks_per_group);
715 if (fs->group_desc_count > 1)
716 printf(_("%u block groups\n"), fs->group_desc_count);
717 else
718 printf(_("%u block group\n"), fs->group_desc_count);
719 if (ext2fs_has_feature_bigalloc(fs->super))
720 printf(_("%u blocks per group, %u clusters per group\n"),
721 s->s_blocks_per_group, s->s_clusters_per_group);
722 else
723 printf(_("%u blocks per group, %u fragments per group\n"),
724 s->s_blocks_per_group, s->s_clusters_per_group);
725 printf(_("%u inodes per group\n"), s->s_inodes_per_group);
726
727 skip_details:
728 if (fs->group_desc_count == 1) {
729 printf("\n");
730 return;
731 }
732
733 if (!e2p_is_null_uuid(s->s_uuid))
734 printf(_("Filesystem UUID: %s\n"), e2p_uuid2str(s->s_uuid));
735 printf("%s", _("Superblock backups stored on blocks: "));
736 group_block = s->s_first_data_block;
737 col_left = 0;
738 for (i = 1; i < fs->group_desc_count; i++) {
739 group_block += s->s_blocks_per_group;
740 if (!ext2fs_bg_has_super(fs, i))
741 continue;
742 if (i != 1)
743 printf(", ");
744 need = int_log10(group_block) + 2;
745 if (need > col_left) {
746 printf("\n\t");
747 col_left = 72;
748 }
749 col_left -= need;
750 printf("%llu", (unsigned long long) group_block);
751 }
752 printf("\n\n");
753 }
754
755 /*
756 * Returns true if making a file system for the Hurd, else 0
757 */
for_hurd(const char * os)758 static int for_hurd(const char *os)
759 {
760 if (!os) {
761 #ifdef __GNU__
762 return 1;
763 #else
764 return 0;
765 #endif
766 }
767 if (isdigit(*os))
768 return (atoi(os) == EXT2_OS_HURD);
769 return (strcasecmp(os, "GNU") == 0 || strcasecmp(os, "hurd") == 0);
770 }
771
772 /*
773 * Set the S_CREATOR_OS field. Return true if OS is known,
774 * otherwise, 0.
775 */
set_os(struct ext2_super_block * sb,char * os)776 static int set_os(struct ext2_super_block *sb, char *os)
777 {
778 if (isdigit (*os))
779 sb->s_creator_os = atoi (os);
780 else if (strcasecmp(os, "linux") == 0)
781 sb->s_creator_os = EXT2_OS_LINUX;
782 else if (strcasecmp(os, "GNU") == 0 || strcasecmp(os, "hurd") == 0)
783 sb->s_creator_os = EXT2_OS_HURD;
784 else if (strcasecmp(os, "freebsd") == 0)
785 sb->s_creator_os = EXT2_OS_FREEBSD;
786 else if (strcasecmp(os, "lites") == 0)
787 sb->s_creator_os = EXT2_OS_LITES;
788 else
789 return 0;
790 return 1;
791 }
792
793 #define PATH_SET "PATH=/sbin"
794
parse_extended_opts(struct ext2_super_block * param,const char * opts)795 static void parse_extended_opts(struct ext2_super_block *param,
796 const char *opts)
797 {
798 char *buf, *token, *next, *p, *arg, *badopt = 0;
799 int len;
800 int r_usage = 0;
801 int ret;
802 int encoding = -1;
803 char *encoding_flags = NULL;
804
805 len = strlen(opts);
806 buf = malloc(len+1);
807 if (!buf) {
808 fprintf(stderr, "%s",
809 _("Couldn't allocate memory to parse options!\n"));
810 exit(1);
811 }
812 strcpy(buf, opts);
813 for (token = buf; token && *token; token = next) {
814 p = strchr(token, ',');
815 next = 0;
816 if (p) {
817 *p = 0;
818 next = p+1;
819 }
820 arg = strchr(token, '=');
821 if (arg) {
822 *arg = 0;
823 arg++;
824 }
825 if (strcmp(token, "desc-size") == 0 ||
826 strcmp(token, "desc_size") == 0) {
827 int desc_size;
828
829 if (!ext2fs_has_feature_64bit(&fs_param)) {
830 fprintf(stderr,
831 _("%s requires '-O 64bit'\n"), token);
832 r_usage++;
833 continue;
834 }
835 if (param->s_reserved_gdt_blocks != 0) {
836 fprintf(stderr,
837 _("'%s' must be before 'resize=%u'\n"),
838 token, param->s_reserved_gdt_blocks);
839 r_usage++;
840 continue;
841 }
842 if (!arg) {
843 r_usage++;
844 badopt = token;
845 continue;
846 }
847 desc_size = strtoul(arg, &p, 0);
848 if (*p || (desc_size & (desc_size - 1))) {
849 fprintf(stderr,
850 _("Invalid desc_size: '%s'\n"), arg);
851 r_usage++;
852 continue;
853 }
854 param->s_desc_size = desc_size;
855 } else if (strcmp(token, "hash_seed") == 0) {
856 if (!arg) {
857 r_usage++;
858 badopt = token;
859 continue;
860 }
861 if (uuid_parse(arg,
862 (unsigned char *)param->s_hash_seed) != 0) {
863 fprintf(stderr,
864 _("Invalid hash seed: %s\n"), arg);
865 r_usage++;
866 continue;
867 }
868 } else if (strcmp(token, "offset") == 0) {
869 if (!arg) {
870 r_usage++;
871 badopt = token;
872 continue;
873 }
874 offset = strtoull(arg, &p, 0);
875 if (*p) {
876 fprintf(stderr, _("Invalid offset: %s\n"),
877 arg);
878 r_usage++;
879 continue;
880 }
881 } else if (strcmp(token, "mmp_update_interval") == 0) {
882 if (!arg) {
883 r_usage++;
884 badopt = token;
885 continue;
886 }
887 param->s_mmp_update_interval = strtoul(arg, &p, 0);
888 if (*p) {
889 fprintf(stderr,
890 _("Invalid mmp_update_interval: %s\n"),
891 arg);
892 r_usage++;
893 continue;
894 }
895 } else if (strcmp(token, "no_copy_xattrs") == 0) {
896 no_copy_xattrs = 1;
897 continue;
898 } else if (strcmp(token, "num_backup_sb") == 0) {
899 if (!arg) {
900 r_usage++;
901 badopt = token;
902 continue;
903 }
904 num_backups = strtoul(arg, &p, 0);
905 if (*p || num_backups > 2) {
906 fprintf(stderr,
907 _("Invalid # of backup "
908 "superblocks: %s\n"),
909 arg);
910 r_usage++;
911 continue;
912 }
913 } else if (strcmp(token, "packed_meta_blocks") == 0) {
914 if (arg)
915 packed_meta_blocks = strtoul(arg, &p, 0);
916 else
917 packed_meta_blocks = 1;
918 if (packed_meta_blocks)
919 journal_location = 0;
920 } else if (strcmp(token, "stride") == 0) {
921 if (!arg) {
922 r_usage++;
923 badopt = token;
924 continue;
925 }
926 param->s_raid_stride = strtoul(arg, &p, 0);
927 if (*p) {
928 fprintf(stderr,
929 _("Invalid stride parameter: %s\n"),
930 arg);
931 r_usage++;
932 continue;
933 }
934 } else if (strcmp(token, "stripe-width") == 0 ||
935 strcmp(token, "stripe_width") == 0) {
936 if (!arg) {
937 r_usage++;
938 badopt = token;
939 continue;
940 }
941 param->s_raid_stripe_width = strtoul(arg, &p, 0);
942 if (*p) {
943 fprintf(stderr,
944 _("Invalid stripe-width parameter: %s\n"),
945 arg);
946 r_usage++;
947 continue;
948 }
949 } else if (!strcmp(token, "resize")) {
950 blk64_t resize;
951 unsigned long bpg, rsv_groups;
952 unsigned long group_desc_count, desc_blocks;
953 unsigned int gdpb, blocksize;
954 int rsv_gdb;
955
956 if (!arg) {
957 r_usage++;
958 badopt = token;
959 continue;
960 }
961
962 resize = parse_num_blocks2(arg,
963 param->s_log_block_size);
964
965 if (resize == 0) {
966 fprintf(stderr,
967 _("Invalid resize parameter: %s\n"),
968 arg);
969 r_usage++;
970 continue;
971 }
972 if (resize <= ext2fs_blocks_count(param)) {
973 fprintf(stderr, "%s",
974 _("The resize maximum must be greater "
975 "than the filesystem size.\n"));
976 r_usage++;
977 continue;
978 }
979
980 blocksize = EXT2_BLOCK_SIZE(param);
981 bpg = param->s_blocks_per_group;
982 if (!bpg)
983 bpg = blocksize * 8;
984 gdpb = EXT2_DESC_PER_BLOCK(param);
985 group_desc_count = (__u32) ext2fs_div64_ceil(
986 ext2fs_blocks_count(param), bpg);
987 desc_blocks = (group_desc_count +
988 gdpb - 1) / gdpb;
989 rsv_groups = ext2fs_div64_ceil(resize, bpg);
990 rsv_gdb = ext2fs_div_ceil(rsv_groups, gdpb) -
991 desc_blocks;
992 if (rsv_gdb > (int) EXT2_ADDR_PER_BLOCK(param))
993 rsv_gdb = EXT2_ADDR_PER_BLOCK(param);
994
995 if (rsv_gdb > 0) {
996 if (param->s_rev_level == EXT2_GOOD_OLD_REV) {
997 fprintf(stderr, "%s",
998 _("On-line resizing not supported with revision 0 filesystems\n"));
999 free(buf);
1000 exit(1);
1001 }
1002 ext2fs_set_feature_resize_inode(param);
1003
1004 param->s_reserved_gdt_blocks = rsv_gdb;
1005 }
1006 } else if (!strcmp(token, "test_fs")) {
1007 param->s_flags |= EXT2_FLAGS_TEST_FILESYS;
1008 } else if (!strcmp(token, "lazy_itable_init")) {
1009 if (arg)
1010 lazy_itable_init = strtoul(arg, &p, 0);
1011 else
1012 lazy_itable_init = 1;
1013 } else if (!strcmp(token, "lazy_journal_init")) {
1014 if (arg)
1015 journal_flags |= strtoul(arg, &p, 0) ?
1016 EXT2_MKJOURNAL_LAZYINIT : 0;
1017 else
1018 journal_flags |= EXT2_MKJOURNAL_LAZYINIT;
1019 } else if (!strcmp(token, "root_owner")) {
1020 if (arg) {
1021 root_uid = strtoul(arg, &p, 0);
1022 if (*p != ':') {
1023 fprintf(stderr,
1024 _("Invalid root_owner: '%s'\n"),
1025 arg);
1026 r_usage++;
1027 continue;
1028 }
1029 p++;
1030 root_gid = strtoul(p, &p, 0);
1031 if (*p) {
1032 fprintf(stderr,
1033 _("Invalid root_owner: '%s'\n"),
1034 arg);
1035 r_usage++;
1036 continue;
1037 }
1038 } else {
1039 root_uid = getuid();
1040 root_gid = getgid();
1041 }
1042 } else if (!strcmp(token, "discard")) {
1043 discard = 1;
1044 } else if (!strcmp(token, "nodiscard")) {
1045 discard = 0;
1046 } else if (!strcmp(token, "quotatype")) {
1047 char *errtok = NULL;
1048
1049 if (!arg) {
1050 r_usage++;
1051 badopt = token;
1052 continue;
1053 }
1054 quotatype_bits = 0;
1055 ret = parse_quota_types(arg, "atype_bits, &errtok);
1056 if (ret) {
1057 if (errtok) {
1058 fprintf(stderr,
1059 "Failed to parse quota type at %s", errtok);
1060 free(errtok);
1061 } else
1062 com_err(program_name, ret,
1063 "while parsing quota type");
1064 r_usage++;
1065 badopt = token;
1066 continue;
1067 }
1068 } else if (!strcmp(token, "android_sparse")) {
1069 android_sparse_file = 1;
1070 } else if (!strcmp(token, "encoding")) {
1071 if (!arg) {
1072 r_usage++;
1073 continue;
1074 }
1075
1076 encoding = e2p_str2encoding(arg);
1077 if (encoding < 0) {
1078 fprintf(stderr, _("Invalid encoding: %s"), arg);
1079 r_usage++;
1080 continue;
1081 }
1082 param->s_encoding = encoding;
1083 ext2fs_set_feature_casefold(param);
1084 } else if (!strcmp(token, "encoding_flags")) {
1085 if (!arg) {
1086 r_usage++;
1087 continue;
1088 }
1089 encoding_flags = arg;
1090 } else {
1091 r_usage++;
1092 badopt = token;
1093 }
1094 }
1095 if (r_usage) {
1096 fprintf(stderr, _("\nBad option(s) specified: %s\n\n"
1097 "Extended options are separated by commas, "
1098 "and may take an argument which\n"
1099 "\tis set off by an equals ('=') sign.\n\n"
1100 "Valid extended options are:\n"
1101 "\tmmp_update_interval=<interval>\n"
1102 "\tnum_backup_sb=<0|1|2>\n"
1103 "\tstride=<RAID per-disk data chunk in blocks>\n"
1104 "\tstripe-width=<RAID stride * data disks in blocks>\n"
1105 "\toffset=<offset to create the file system>\n"
1106 "\tresize=<resize maximum size in blocks>\n"
1107 "\tpacked_meta_blocks=<0 to disable, 1 to enable>\n"
1108 "\tlazy_itable_init=<0 to disable, 1 to enable>\n"
1109 "\tlazy_journal_init=<0 to disable, 1 to enable>\n"
1110 "\troot_owner=<uid of root dir>:<gid of root dir>\n"
1111 "\ttest_fs\n"
1112 "\tdiscard\n"
1113 "\tnodiscard\n"
1114 "\tencoding=<encoding>\n"
1115 "\tencoding_flags=<flags>\n"
1116 "\tquotatype=<quota type(s) to be enabled>\n\n"),
1117 badopt ? badopt : "");
1118 free(buf);
1119 exit(1);
1120 }
1121 if (param->s_raid_stride &&
1122 (param->s_raid_stripe_width % param->s_raid_stride) != 0)
1123 fprintf(stderr, _("\nWarning: RAID stripe-width %u not an even "
1124 "multiple of stride %u.\n\n"),
1125 param->s_raid_stripe_width, param->s_raid_stride);
1126
1127 if (ext2fs_has_feature_casefold(param)) {
1128 param->s_encoding_flags =
1129 e2p_get_encoding_flags(param->s_encoding);
1130
1131 if (encoding_flags &&
1132 e2p_str2encoding_flags(param->s_encoding, encoding_flags,
1133 ¶m->s_encoding_flags)) {
1134 fprintf(stderr, _("error: Invalid encoding flag: %s\n"),
1135 encoding_flags);
1136 free(buf);
1137 exit(1);
1138 }
1139 } else if (encoding_flags) {
1140 fprintf(stderr, _("error: An encoding must be explicitly "
1141 "specified when passing encoding-flags\n"));
1142 free(buf);
1143 exit(1);
1144 }
1145
1146 free(buf);
1147 }
1148
1149 static __u32 ok_features[3] = {
1150 /* Compat */
1151 EXT3_FEATURE_COMPAT_HAS_JOURNAL |
1152 EXT2_FEATURE_COMPAT_RESIZE_INODE |
1153 EXT2_FEATURE_COMPAT_DIR_INDEX |
1154 EXT2_FEATURE_COMPAT_EXT_ATTR |
1155 EXT4_FEATURE_COMPAT_SPARSE_SUPER2 |
1156 EXT4_FEATURE_COMPAT_FAST_COMMIT |
1157 EXT4_FEATURE_COMPAT_STABLE_INODES,
1158 /* Incompat */
1159 EXT2_FEATURE_INCOMPAT_FILETYPE|
1160 EXT3_FEATURE_INCOMPAT_EXTENTS|
1161 EXT3_FEATURE_INCOMPAT_JOURNAL_DEV|
1162 EXT2_FEATURE_INCOMPAT_META_BG|
1163 EXT4_FEATURE_INCOMPAT_FLEX_BG|
1164 EXT4_FEATURE_INCOMPAT_EA_INODE|
1165 EXT4_FEATURE_INCOMPAT_MMP |
1166 EXT4_FEATURE_INCOMPAT_64BIT|
1167 EXT4_FEATURE_INCOMPAT_INLINE_DATA|
1168 EXT4_FEATURE_INCOMPAT_ENCRYPT |
1169 EXT4_FEATURE_INCOMPAT_CASEFOLD |
1170 EXT4_FEATURE_INCOMPAT_CSUM_SEED |
1171 EXT4_FEATURE_INCOMPAT_LARGEDIR,
1172 /* R/O compat */
1173 EXT2_FEATURE_RO_COMPAT_LARGE_FILE|
1174 EXT4_FEATURE_RO_COMPAT_HUGE_FILE|
1175 EXT4_FEATURE_RO_COMPAT_DIR_NLINK|
1176 EXT4_FEATURE_RO_COMPAT_EXTRA_ISIZE|
1177 EXT2_FEATURE_RO_COMPAT_SPARSE_SUPER|
1178 EXT4_FEATURE_RO_COMPAT_GDT_CSUM|
1179 EXT4_FEATURE_RO_COMPAT_BIGALLOC|
1180 EXT4_FEATURE_RO_COMPAT_QUOTA|
1181 EXT4_FEATURE_RO_COMPAT_METADATA_CSUM|
1182 EXT4_FEATURE_RO_COMPAT_PROJECT|
1183 EXT4_FEATURE_RO_COMPAT_VERITY
1184 };
1185
1186
syntax_err_report(const char * filename,long err,int line_num)1187 static void syntax_err_report(const char *filename, long err, int line_num)
1188 {
1189 fprintf(stderr,
1190 _("Syntax error in mke2fs config file (%s, line #%d)\n\t%s\n"),
1191 filename, line_num, error_message(err));
1192 exit(1);
1193 }
1194
1195 static const char *config_fn[] = { ROOT_SYSCONFDIR "/mke2fs.conf", 0 };
1196
edit_feature(const char * str,__u32 * compat_array)1197 static void edit_feature(const char *str, __u32 *compat_array)
1198 {
1199 if (!str)
1200 return;
1201
1202 if (e2p_edit_feature(str, compat_array, ok_features)) {
1203 fprintf(stderr, _("Invalid filesystem option set: %s\n"),
1204 str);
1205 exit(1);
1206 }
1207 }
1208
edit_mntopts(const char * str,__u32 * mntopts)1209 static void edit_mntopts(const char *str, __u32 *mntopts)
1210 {
1211 if (!str)
1212 return;
1213
1214 if (e2p_edit_mntopts(str, mntopts, ~0)) {
1215 fprintf(stderr, _("Invalid mount option set: %s\n"),
1216 str);
1217 exit(1);
1218 }
1219 }
1220
1221 struct str_list {
1222 char **list;
1223 int num;
1224 int max;
1225 };
1226
init_list(struct str_list * sl)1227 static errcode_t init_list(struct str_list *sl)
1228 {
1229 sl->num = 0;
1230 sl->max = 1;
1231 sl->list = malloc((sl->max+1) * sizeof(char *));
1232 if (!sl->list)
1233 return ENOMEM;
1234 sl->list[0] = 0;
1235 return 0;
1236 }
1237
push_string(struct str_list * sl,const char * str)1238 static errcode_t push_string(struct str_list *sl, const char *str)
1239 {
1240 char **new_list;
1241
1242 if (sl->num >= sl->max) {
1243 sl->max += 2;
1244 new_list = realloc(sl->list, (sl->max+1) * sizeof(char *));
1245 if (!new_list)
1246 return ENOMEM;
1247 sl->list = new_list;
1248 }
1249 sl->list[sl->num] = malloc(strlen(str)+1);
1250 if (sl->list[sl->num] == 0)
1251 return ENOMEM;
1252 strcpy(sl->list[sl->num], str);
1253 sl->num++;
1254 sl->list[sl->num] = 0;
1255 return 0;
1256 }
1257
print_str_list(char ** list)1258 static void print_str_list(char **list)
1259 {
1260 char **cpp;
1261
1262 for (cpp = list; *cpp; cpp++) {
1263 printf("'%s'", *cpp);
1264 if (cpp[1])
1265 fputs(", ", stdout);
1266 }
1267 fputc('\n', stdout);
1268 }
1269
1270 /*
1271 * Return TRUE if the profile has the given subsection
1272 */
profile_has_subsection(profile_t prof,const char * section,const char * subsection)1273 static int profile_has_subsection(profile_t prof, const char *section,
1274 const char *subsection)
1275 {
1276 void *state;
1277 const char *names[4];
1278 char *name;
1279 int ret = 0;
1280
1281 names[0] = section;
1282 names[1] = subsection;
1283 names[2] = 0;
1284
1285 if (profile_iterator_create(prof, names,
1286 PROFILE_ITER_LIST_SECTION |
1287 PROFILE_ITER_RELATIONS_ONLY, &state))
1288 return 0;
1289
1290 if ((profile_iterator(&state, &name, 0) == 0) && name) {
1291 free(name);
1292 ret = 1;
1293 }
1294
1295 profile_iterator_free(&state);
1296 return ret;
1297 }
1298
parse_fs_type(const char * fs_type,const char * usage_types,struct ext2_super_block * sb,blk64_t fs_blocks_count,char * progname)1299 static char **parse_fs_type(const char *fs_type,
1300 const char *usage_types,
1301 struct ext2_super_block *sb,
1302 blk64_t fs_blocks_count,
1303 char *progname)
1304 {
1305 const char *ext_type = 0;
1306 char *parse_str;
1307 char *profile_type = 0;
1308 char *cp, *t;
1309 const char *size_type;
1310 struct str_list list;
1311 unsigned long long meg;
1312 int is_hurd = for_hurd(creator_os);
1313
1314 if (init_list(&list))
1315 return 0;
1316
1317 if (fs_type)
1318 ext_type = fs_type;
1319 else if (is_hurd)
1320 ext_type = "ext2";
1321 else if (!strcmp(program_name, "mke3fs"))
1322 ext_type = "ext3";
1323 else if (!strcmp(program_name, "mke4fs"))
1324 ext_type = "ext4";
1325 else if (progname) {
1326 ext_type = strrchr(progname, '/');
1327 if (ext_type)
1328 ext_type++;
1329 else
1330 ext_type = progname;
1331
1332 if (!strncmp(ext_type, "mkfs.", 5)) {
1333 ext_type += 5;
1334 if (ext_type[0] == 0)
1335 ext_type = 0;
1336 } else
1337 ext_type = 0;
1338 }
1339
1340 if (!ext_type) {
1341 profile_get_string(profile, "defaults", "fs_type", 0,
1342 "ext2", &profile_type);
1343 ext_type = profile_type;
1344 if (!strcmp(ext_type, "ext2") && (journal_size != 0))
1345 ext_type = "ext3";
1346 }
1347
1348
1349 if (!profile_has_subsection(profile, "fs_types", ext_type) &&
1350 strcmp(ext_type, "ext2")) {
1351 printf(_("\nYour mke2fs.conf file does not define the "
1352 "%s filesystem type.\n"), ext_type);
1353 if (!strcmp(ext_type, "ext3") || !strcmp(ext_type, "ext4") ||
1354 !strcmp(ext_type, "ext4dev")) {
1355 printf("%s", _("You probably need to install an "
1356 "updated mke2fs.conf file.\n\n"));
1357 }
1358 if (!force) {
1359 printf("%s", _("Aborting...\n"));
1360 exit(1);
1361 }
1362 }
1363
1364 meg = (1024 * 1024) / EXT2_BLOCK_SIZE(sb);
1365 if (fs_blocks_count < 3 * meg)
1366 size_type = "floppy";
1367 else if (fs_blocks_count < 512 * meg)
1368 size_type = "small";
1369 else if (fs_blocks_count < 4 * 1024 * 1024 * meg)
1370 size_type = "default";
1371 else if (fs_blocks_count < 16 * 1024 * 1024 * meg)
1372 size_type = "big";
1373 else
1374 size_type = "huge";
1375
1376 if (!usage_types)
1377 usage_types = size_type;
1378
1379 parse_str = malloc(strlen(usage_types)+1);
1380 if (!parse_str) {
1381 free(profile_type);
1382 free(list.list);
1383 return 0;
1384 }
1385 strcpy(parse_str, usage_types);
1386
1387 if (ext_type)
1388 push_string(&list, ext_type);
1389 cp = parse_str;
1390 while (1) {
1391 t = strchr(cp, ',');
1392 if (t)
1393 *t = '\0';
1394
1395 if (*cp) {
1396 if (profile_has_subsection(profile, "fs_types", cp))
1397 push_string(&list, cp);
1398 else if (strcmp(cp, "default") != 0)
1399 fprintf(stderr,
1400 _("\nWarning: the fs_type %s is not "
1401 "defined in mke2fs.conf\n\n"),
1402 cp);
1403 }
1404 if (t)
1405 cp = t+1;
1406 else
1407 break;
1408 }
1409 free(parse_str);
1410 free(profile_type);
1411 if (is_hurd)
1412 push_string(&list, "hurd");
1413 return (list.list);
1414 }
1415
get_string_from_profile(char ** types,const char * opt,const char * def_val)1416 char *get_string_from_profile(char **types, const char *opt,
1417 const char *def_val)
1418 {
1419 char *ret = 0;
1420 int i;
1421
1422 for (i=0; types[i]; i++);
1423 for (i-=1; i >=0 ; i--) {
1424 profile_get_string(profile, "fs_types", types[i],
1425 opt, 0, &ret);
1426 if (ret)
1427 return ret;
1428 }
1429 profile_get_string(profile, "defaults", opt, 0, def_val, &ret);
1430 return (ret);
1431 }
1432
get_int_from_profile(char ** types,const char * opt,int def_val)1433 int get_int_from_profile(char **types, const char *opt, int def_val)
1434 {
1435 int ret;
1436 char **cpp;
1437
1438 profile_get_integer(profile, "defaults", opt, 0, def_val, &ret);
1439 for (cpp = types; *cpp; cpp++)
1440 profile_get_integer(profile, "fs_types", *cpp, opt, ret, &ret);
1441 return ret;
1442 }
1443
get_uint_from_profile(char ** types,const char * opt,unsigned int def_val)1444 static unsigned int get_uint_from_profile(char **types, const char *opt,
1445 unsigned int def_val)
1446 {
1447 unsigned int ret;
1448 char **cpp;
1449
1450 profile_get_uint(profile, "defaults", opt, 0, def_val, &ret);
1451 for (cpp = types; *cpp; cpp++)
1452 profile_get_uint(profile, "fs_types", *cpp, opt, ret, &ret);
1453 return ret;
1454 }
1455
get_double_from_profile(char ** types,const char * opt,double def_val)1456 static double get_double_from_profile(char **types, const char *opt,
1457 double def_val)
1458 {
1459 double ret;
1460 char **cpp;
1461
1462 profile_get_double(profile, "defaults", opt, 0, def_val, &ret);
1463 for (cpp = types; *cpp; cpp++)
1464 profile_get_double(profile, "fs_types", *cpp, opt, ret, &ret);
1465 return ret;
1466 }
1467
get_bool_from_profile(char ** types,const char * opt,int def_val)1468 int get_bool_from_profile(char **types, const char *opt, int def_val)
1469 {
1470 int ret;
1471 char **cpp;
1472
1473 profile_get_boolean(profile, "defaults", opt, 0, def_val, &ret);
1474 for (cpp = types; *cpp; cpp++)
1475 profile_get_boolean(profile, "fs_types", *cpp, opt, ret, &ret);
1476 return ret;
1477 }
1478
1479 extern const char *mke2fs_default_profile;
1480 static const char *default_files[] = { "<default>", 0 };
1481
1482 struct device_param {
1483 unsigned long min_io; /* prefered minimum IO size */
1484 unsigned long opt_io; /* optimal IO size */
1485 unsigned long alignment_offset; /* alignment offset wrt physical block size */
1486 unsigned int dax:1; /* supports dax? */
1487 };
1488
1489 #ifdef HAVE_BLKID_PROBE_GET_TOPOLOGY
1490 /*
1491 * Sets the geometry of a device (stripe/stride), and returns the
1492 * device's alignment offset, if any, or a negative error.
1493 */
get_device_geometry(const char * file,unsigned int blocksize,unsigned int psector_size,struct device_param * dev_param)1494 static int get_device_geometry(const char *file,
1495 unsigned int blocksize,
1496 unsigned int psector_size,
1497 struct device_param *dev_param)
1498 {
1499 int rc = -1;
1500 blkid_probe pr;
1501 blkid_topology tp;
1502 struct stat statbuf;
1503
1504 memset(dev_param, 0, sizeof(*dev_param));
1505
1506 /* Nothing to do for a regular file */
1507 if (!stat(file, &statbuf) && S_ISREG(statbuf.st_mode))
1508 return 0;
1509
1510 pr = blkid_new_probe_from_filename(file);
1511 if (!pr)
1512 goto out;
1513
1514 tp = blkid_probe_get_topology(pr);
1515 if (!tp)
1516 goto out;
1517
1518 dev_param->min_io = blkid_topology_get_minimum_io_size(tp);
1519 dev_param->opt_io = blkid_topology_get_optimal_io_size(tp);
1520 if ((dev_param->min_io == 0) && (psector_size > blocksize))
1521 dev_param->min_io = psector_size;
1522 if ((dev_param->opt_io == 0) && dev_param->min_io > 0)
1523 dev_param->opt_io = dev_param->min_io;
1524 if ((dev_param->opt_io == 0) && (psector_size > blocksize))
1525 dev_param->opt_io = psector_size;
1526
1527 dev_param->alignment_offset = blkid_topology_get_alignment_offset(tp);
1528 #ifdef HAVE_BLKID_TOPOLOGY_GET_DAX
1529 dev_param->dax = blkid_topology_get_dax(tp);
1530 #endif
1531 rc = 0;
1532 out:
1533 blkid_free_probe(pr);
1534 return rc;
1535 }
1536 #endif
1537
PRS(int argc,char * argv[])1538 static void PRS(int argc, char *argv[])
1539 {
1540 int b, c, flags;
1541 int cluster_size = 0;
1542 char *tmp, **cpp;
1543 int explicit_fssize = 0;
1544 int blocksize = 0;
1545 int inode_ratio = 0;
1546 int inode_size = 0;
1547 unsigned long flex_bg_size = 0;
1548 double reserved_ratio = -1.0;
1549 int lsector_size = 0, psector_size = 0;
1550 int show_version_only = 0, is_device = 0;
1551 unsigned long long num_inodes = 0; /* unsigned long long to catch too-large input */
1552 errcode_t retval;
1553 char * oldpath = getenv("PATH");
1554 char * extended_opts = 0;
1555 char * fs_type = 0;
1556 char * usage_types = 0;
1557 /*
1558 * NOTE: A few words about fs_blocks_count and blocksize:
1559 *
1560 * Initially, blocksize is set to zero, which implies 1024.
1561 * If -b is specified, blocksize is updated to the user's value.
1562 *
1563 * Next, the device size or the user's "blocks" command line argument
1564 * is used to set fs_blocks_count; the units are blocksize.
1565 *
1566 * Later, if blocksize hasn't been set and the profile specifies a
1567 * blocksize, then blocksize is updated and fs_blocks_count is scaled
1568 * appropriately. Note the change in units!
1569 *
1570 * Finally, we complain about fs_blocks_count > 2^32 on a non-64bit fs.
1571 */
1572 blk64_t fs_blocks_count = 0;
1573 long sysval;
1574 int s_opt = -1, r_opt = -1;
1575 char *fs_features = 0;
1576 int fs_features_size = 0;
1577 int use_bsize;
1578 char *newpath;
1579 int pathlen = sizeof(PATH_SET) + 1;
1580 #ifdef HAVE_BLKID_PROBE_GET_TOPOLOGY
1581 struct device_param dev_param;
1582 #endif
1583
1584 if (oldpath)
1585 pathlen += strlen(oldpath);
1586 newpath = malloc(pathlen);
1587 if (!newpath) {
1588 fprintf(stderr, "%s",
1589 _("Couldn't allocate memory for new PATH.\n"));
1590 exit(1);
1591 }
1592 strcpy(newpath, PATH_SET);
1593
1594 /* Update our PATH to include /sbin */
1595 if (oldpath) {
1596 strcat (newpath, ":");
1597 strcat (newpath, oldpath);
1598 }
1599 putenv (newpath);
1600
1601 /* Determine the system page size if possible */
1602 #ifdef HAVE_SYSCONF
1603 #if (!defined(_SC_PAGESIZE) && defined(_SC_PAGE_SIZE))
1604 #define _SC_PAGESIZE _SC_PAGE_SIZE
1605 #endif
1606 #ifdef _SC_PAGESIZE
1607 sysval = sysconf(_SC_PAGESIZE);
1608 if (sysval > 0)
1609 sys_page_size = sysval;
1610 #endif /* _SC_PAGESIZE */
1611 #endif /* HAVE_SYSCONF */
1612
1613 if ((tmp = getenv("MKE2FS_CONFIG")) != NULL)
1614 config_fn[0] = tmp;
1615 profile_set_syntax_err_cb(syntax_err_report);
1616 retval = profile_init(config_fn, &profile);
1617 if (retval == ENOENT) {
1618 retval = profile_init(default_files, &profile);
1619 if (retval)
1620 goto profile_error;
1621 retval = profile_set_default(profile, mke2fs_default_profile);
1622 if (retval)
1623 goto profile_error;
1624 } else if (retval) {
1625 profile_error:
1626 fprintf(stderr, _("Couldn't init profile successfully"
1627 " (error: %ld).\n"), retval);
1628 exit(1);
1629 }
1630
1631 setbuf(stdout, NULL);
1632 setbuf(stderr, NULL);
1633 add_error_table(&et_ext2_error_table);
1634 add_error_table(&et_prof_error_table);
1635 memset(&fs_param, 0, sizeof(struct ext2_super_block));
1636 fs_param.s_rev_level = 1; /* Create revision 1 filesystems now */
1637
1638 if (is_before_linux_ver(2, 2, 0))
1639 fs_param.s_rev_level = 0;
1640
1641 if (argc && *argv) {
1642 program_name = get_progname(*argv);
1643
1644 /* If called as mkfs.ext3, create a journal inode */
1645 if (!strcmp(program_name, "mkfs.ext3") ||
1646 !strcmp(program_name, "mke3fs"))
1647 journal_size = -1;
1648 }
1649
1650 while ((c = getopt (argc, argv,
1651 "b:cd:e:g:i:jl:m:no:qr:s:t:vC:DE:FG:I:J:KL:M:N:O:R:ST:U:Vz:")) != EOF) {
1652 switch (c) {
1653 case 'b':
1654 blocksize = parse_num_blocks2(optarg, -1);
1655 b = (blocksize > 0) ? blocksize : -blocksize;
1656 if (b < EXT2_MIN_BLOCK_SIZE ||
1657 b > EXT2_MAX_BLOCK_SIZE) {
1658 com_err(program_name, 0,
1659 _("invalid block size - %s"), optarg);
1660 exit(1);
1661 }
1662 if (blocksize > 4096)
1663 fprintf(stderr, _("Warning: blocksize %d not "
1664 "usable on most systems.\n"),
1665 blocksize);
1666 if (blocksize > 0)
1667 fs_param.s_log_block_size =
1668 int_log2(blocksize >>
1669 EXT2_MIN_BLOCK_LOG_SIZE);
1670 break;
1671 case 'c': /* Check for bad blocks */
1672 cflag++;
1673 break;
1674 case 'C':
1675 cluster_size = parse_num_blocks2(optarg, -1);
1676 if (cluster_size <= EXT2_MIN_CLUSTER_SIZE ||
1677 cluster_size > EXT2_MAX_CLUSTER_SIZE) {
1678 com_err(program_name, 0,
1679 _("invalid cluster size - %s"),
1680 optarg);
1681 exit(1);
1682 }
1683 break;
1684 case 'd':
1685 src_root_dir = optarg;
1686 break;
1687 case 'D':
1688 direct_io = 1;
1689 break;
1690 case 'R':
1691 com_err(program_name, 0, "%s",
1692 _("'-R' is deprecated, use '-E' instead"));
1693 /* fallthrough */
1694 case 'E':
1695 extended_opts = optarg;
1696 break;
1697 case 'e':
1698 if (strcmp(optarg, "continue") == 0)
1699 errors_behavior = EXT2_ERRORS_CONTINUE;
1700 else if (strcmp(optarg, "remount-ro") == 0)
1701 errors_behavior = EXT2_ERRORS_RO;
1702 else if (strcmp(optarg, "panic") == 0)
1703 errors_behavior = EXT2_ERRORS_PANIC;
1704 else {
1705 com_err(program_name, 0,
1706 _("bad error behavior - %s"),
1707 optarg);
1708 usage();
1709 }
1710 break;
1711 case 'F':
1712 force++;
1713 break;
1714 case 'g':
1715 fs_param.s_blocks_per_group = strtoul(optarg, &tmp, 0);
1716 if (*tmp) {
1717 com_err(program_name, 0, "%s",
1718 _("Illegal number for blocks per group"));
1719 exit(1);
1720 }
1721 if ((fs_param.s_blocks_per_group % 8) != 0) {
1722 com_err(program_name, 0, "%s",
1723 _("blocks per group must be multiple of 8"));
1724 exit(1);
1725 }
1726 break;
1727 case 'G':
1728 flex_bg_size = strtoul(optarg, &tmp, 0);
1729 if (*tmp) {
1730 com_err(program_name, 0, "%s",
1731 _("Illegal number for flex_bg size"));
1732 exit(1);
1733 }
1734 if (flex_bg_size < 1 ||
1735 (flex_bg_size & (flex_bg_size-1)) != 0) {
1736 com_err(program_name, 0, "%s",
1737 _("flex_bg size must be a power of 2"));
1738 exit(1);
1739 }
1740 if (flex_bg_size > MAX_32_NUM) {
1741 com_err(program_name, 0,
1742 _("flex_bg size (%lu) must be less than"
1743 " or equal to 2^31"), flex_bg_size);
1744 exit(1);
1745 }
1746 break;
1747 case 'i':
1748 inode_ratio = parse_num_blocks(optarg, -1);
1749 if (inode_ratio < EXT2_MIN_BLOCK_SIZE ||
1750 inode_ratio > EXT2_MAX_BLOCK_SIZE * 1024) {
1751 com_err(program_name, 0,
1752 _("invalid inode ratio %s (min %d/max %d)"),
1753 optarg, EXT2_MIN_BLOCK_SIZE,
1754 EXT2_MAX_BLOCK_SIZE * 1024);
1755 exit(1);
1756 }
1757 break;
1758 case 'I':
1759 inode_size = strtoul(optarg, &tmp, 0);
1760 if (*tmp) {
1761 com_err(program_name, 0,
1762 _("invalid inode size - %s"), optarg);
1763 exit(1);
1764 }
1765 break;
1766 case 'j':
1767 if (!journal_size)
1768 journal_size = -1;
1769 if (!journal_fc_size)
1770 journal_fc_size = -1;
1771 break;
1772 case 'J':
1773 parse_journal_opts(optarg);
1774 break;
1775 case 'K':
1776 fprintf(stderr, "%s",
1777 _("Warning: -K option is deprecated and "
1778 "should not be used anymore. Use "
1779 "\'-E nodiscard\' extended option "
1780 "instead!\n"));
1781 discard = 0;
1782 break;
1783 case 'l':
1784 bad_blocks_filename = realloc(bad_blocks_filename,
1785 strlen(optarg) + 1);
1786 if (!bad_blocks_filename) {
1787 com_err(program_name, ENOMEM, "%s",
1788 _("in malloc for bad_blocks_filename"));
1789 exit(1);
1790 }
1791 strcpy(bad_blocks_filename, optarg);
1792 break;
1793 case 'L':
1794 volume_label = optarg;
1795 if (strlen(volume_label) > EXT2_LABEL_LEN) {
1796 volume_label[EXT2_LABEL_LEN] = '\0';
1797 fprintf(stderr, _("Warning: label too long; will be truncated to '%s'\n\n"),
1798 volume_label);
1799 }
1800 break;
1801 case 'm':
1802 reserved_ratio = strtod(optarg, &tmp);
1803 if ( *tmp || reserved_ratio > 50 ||
1804 reserved_ratio < 0) {
1805 com_err(program_name, 0,
1806 _("invalid reserved blocks percent - %s"),
1807 optarg);
1808 exit(1);
1809 }
1810 break;
1811 case 'M':
1812 mount_dir = optarg;
1813 break;
1814 case 'n':
1815 noaction++;
1816 break;
1817 case 'N':
1818 num_inodes = strtoul(optarg, &tmp, 0);
1819 if (*tmp) {
1820 com_err(program_name, 0,
1821 _("bad num inodes - %s"), optarg);
1822 exit(1);
1823 }
1824 break;
1825 case 'o':
1826 creator_os = optarg;
1827 break;
1828 case 'O':
1829 retval = ext2fs_resize_mem(fs_features_size,
1830 fs_features_size + 1 + strlen(optarg),
1831 &fs_features);
1832 if (retval) {
1833 com_err(program_name, retval,
1834 _("while allocating fs_feature string"));
1835 exit(1);
1836 }
1837 if (fs_features_size)
1838 strcat(fs_features, ",");
1839 else
1840 fs_features[0] = 0;
1841 strcat(fs_features, optarg);
1842 fs_features_size += 1 + strlen(optarg);
1843 break;
1844 case 'q':
1845 quiet = 1;
1846 break;
1847 case 'r':
1848 r_opt = strtoul(optarg, &tmp, 0);
1849 if (*tmp) {
1850 com_err(program_name, 0,
1851 _("bad revision level - %s"), optarg);
1852 exit(1);
1853 }
1854 if (r_opt > EXT2_MAX_SUPP_REV) {
1855 com_err(program_name, EXT2_ET_REV_TOO_HIGH,
1856 _("while trying to create revision %d"), r_opt);
1857 exit(1);
1858 }
1859 fs_param.s_rev_level = r_opt;
1860 break;
1861 case 's': /* deprecated */
1862 s_opt = atoi(optarg);
1863 break;
1864 case 'S':
1865 super_only = 1;
1866 break;
1867 case 't':
1868 if (fs_type) {
1869 com_err(program_name, 0, "%s",
1870 _("The -t option may only be used once"));
1871 exit(1);
1872 }
1873 fs_type = strdup(optarg);
1874 break;
1875 case 'T':
1876 if (usage_types) {
1877 com_err(program_name, 0, "%s",
1878 _("The -T option may only be used once"));
1879 exit(1);
1880 }
1881 usage_types = strdup(optarg);
1882 break;
1883 case 'U':
1884 fs_uuid = optarg;
1885 break;
1886 case 'v':
1887 verbose = 1;
1888 break;
1889 case 'V':
1890 /* Print version number and exit */
1891 show_version_only++;
1892 break;
1893 case 'z':
1894 undo_file = optarg;
1895 break;
1896 default:
1897 usage();
1898 }
1899 }
1900 if ((optind == argc) && !show_version_only)
1901 usage();
1902 device_name = argv[optind++];
1903
1904 if (!quiet || show_version_only)
1905 fprintf (stderr, "mke2fs %s (%s)\n", E2FSPROGS_VERSION,
1906 E2FSPROGS_DATE);
1907
1908 if (show_version_only) {
1909 fprintf(stderr, _("\tUsing %s\n"),
1910 error_message(EXT2_ET_BASE));
1911 exit(0);
1912 }
1913
1914 /*
1915 * If there's no blocksize specified and there is a journal
1916 * device, use it to figure out the blocksize
1917 */
1918 if (blocksize <= 0 && journal_device) {
1919 ext2_filsys jfs;
1920 io_manager io_ptr;
1921
1922 #ifdef CONFIG_TESTIO_DEBUG
1923 if (getenv("TEST_IO_FLAGS") || getenv("TEST_IO_BLOCK")) {
1924 io_ptr = test_io_manager;
1925 test_io_backing_manager = unix_io_manager;
1926 } else
1927 #endif
1928 io_ptr = unix_io_manager;
1929 retval = ext2fs_open(journal_device,
1930 EXT2_FLAG_JOURNAL_DEV_OK, 0,
1931 0, io_ptr, &jfs);
1932 if (retval) {
1933 com_err(program_name, retval,
1934 _("while trying to open journal device %s\n"),
1935 journal_device);
1936 exit(1);
1937 }
1938 if ((blocksize < 0) && (jfs->blocksize < (unsigned) (-blocksize))) {
1939 com_err(program_name, 0,
1940 _("Journal dev blocksize (%d) smaller than "
1941 "minimum blocksize %d\n"), jfs->blocksize,
1942 -blocksize);
1943 exit(1);
1944 }
1945 blocksize = jfs->blocksize;
1946 printf(_("Using journal device's blocksize: %d\n"), blocksize);
1947 fs_param.s_log_block_size =
1948 int_log2(blocksize >> EXT2_MIN_BLOCK_LOG_SIZE);
1949 ext2fs_close_free(&jfs);
1950 }
1951
1952 if (optind < argc) {
1953 fs_blocks_count = parse_num_blocks2(argv[optind++],
1954 fs_param.s_log_block_size);
1955 if (!fs_blocks_count) {
1956 com_err(program_name, 0,
1957 _("invalid blocks '%s' on device '%s'"),
1958 argv[optind - 1], device_name);
1959 exit(1);
1960 }
1961 }
1962 if (optind < argc)
1963 usage();
1964
1965 profile_get_integer(profile, "options", "sync_kludge", 0, 0,
1966 &sync_kludge);
1967 tmp = getenv("MKE2FS_SYNC");
1968 if (tmp)
1969 sync_kludge = atoi(tmp);
1970
1971 profile_get_integer(profile, "options", "proceed_delay", 0, 0,
1972 &proceed_delay);
1973
1974 /* The isatty() test is so we don't break existing scripts */
1975 flags = CREATE_FILE;
1976 if (isatty(0) && isatty(1) && !offset)
1977 flags |= CHECK_FS_EXIST;
1978 if (!quiet)
1979 flags |= VERBOSE_CREATE;
1980 if (fs_blocks_count == 0)
1981 flags |= NO_SIZE;
1982 else
1983 explicit_fssize = 1;
1984 if (!check_plausibility(device_name, flags, &is_device) && !force)
1985 proceed_question(proceed_delay);
1986
1987 check_mount(device_name, force, _("filesystem"));
1988
1989 /* Determine the size of the device (if possible) */
1990 if (noaction && fs_blocks_count) {
1991 dev_size = fs_blocks_count;
1992 retval = 0;
1993 } else
1994 retval = ext2fs_get_device_size2(device_name,
1995 EXT2_BLOCK_SIZE(&fs_param),
1996 &dev_size);
1997 if (retval && (retval != EXT2_ET_UNIMPLEMENTED)) {
1998 com_err(program_name, retval, "%s",
1999 _("while trying to determine filesystem size"));
2000 exit(1);
2001 }
2002 if (!fs_blocks_count) {
2003 if (retval == EXT2_ET_UNIMPLEMENTED) {
2004 com_err(program_name, 0, "%s",
2005 _("Couldn't determine device size; you "
2006 "must specify\nthe size of the "
2007 "filesystem\n"));
2008 exit(1);
2009 } else {
2010 if (dev_size == 0) {
2011 com_err(program_name, 0, "%s",
2012 _("Device size reported to be zero. "
2013 "Invalid partition specified, or\n\t"
2014 "partition table wasn't reread "
2015 "after running fdisk, due to\n\t"
2016 "a modified partition being busy "
2017 "and in use. You may need to reboot\n\t"
2018 "to re-read your partition table.\n"
2019 ));
2020 exit(1);
2021 }
2022 fs_blocks_count = dev_size;
2023 if (sys_page_size > EXT2_BLOCK_SIZE(&fs_param))
2024 fs_blocks_count &= ~((blk64_t) ((sys_page_size /
2025 EXT2_BLOCK_SIZE(&fs_param))-1));
2026 }
2027 } else if (!force && is_device && (fs_blocks_count > dev_size)) {
2028 com_err(program_name, 0, "%s",
2029 _("Filesystem larger than apparent device size."));
2030 proceed_question(proceed_delay);
2031 }
2032
2033 if (!fs_type)
2034 profile_get_string(profile, "devices", device_name,
2035 "fs_type", 0, &fs_type);
2036 if (!usage_types)
2037 profile_get_string(profile, "devices", device_name,
2038 "usage_types", 0, &usage_types);
2039
2040 /*
2041 * We have the file system (or device) size, so we can now
2042 * determine the appropriate file system types so the fs can
2043 * be appropriately configured.
2044 */
2045 fs_types = parse_fs_type(fs_type, usage_types, &fs_param,
2046 fs_blocks_count ? fs_blocks_count : dev_size,
2047 argv[0]);
2048 if (!fs_types) {
2049 fprintf(stderr, "%s", _("Failed to parse fs types list\n"));
2050 exit(1);
2051 }
2052
2053 /* Figure out what features should be enabled */
2054
2055 tmp = NULL;
2056 if (fs_param.s_rev_level != EXT2_GOOD_OLD_REV) {
2057 tmp = get_string_from_profile(fs_types, "base_features",
2058 "sparse_super,large_file,filetype,resize_inode,dir_index");
2059 edit_feature(tmp, &fs_param.s_feature_compat);
2060 free(tmp);
2061
2062 /* And which mount options as well */
2063 tmp = get_string_from_profile(fs_types, "default_mntopts",
2064 "acl,user_xattr");
2065 edit_mntopts(tmp, &fs_param.s_default_mount_opts);
2066 if (tmp)
2067 free(tmp);
2068
2069 for (cpp = fs_types; *cpp; cpp++) {
2070 tmp = NULL;
2071 profile_get_string(profile, "fs_types", *cpp,
2072 "features", "", &tmp);
2073 if (tmp && *tmp)
2074 edit_feature(tmp, &fs_param.s_feature_compat);
2075 if (tmp)
2076 free(tmp);
2077 }
2078 tmp = get_string_from_profile(fs_types, "default_features",
2079 "");
2080 }
2081 /* Mask off features which aren't supported by the Hurd */
2082 if (for_hurd(creator_os)) {
2083 ext2fs_clear_feature_filetype(&fs_param);
2084 ext2fs_clear_feature_huge_file(&fs_param);
2085 ext2fs_clear_feature_metadata_csum(&fs_param);
2086 ext2fs_clear_feature_ea_inode(&fs_param);
2087 ext2fs_clear_feature_casefold(&fs_param);
2088 }
2089 edit_feature(fs_features ? fs_features : tmp,
2090 &fs_param.s_feature_compat);
2091 if (tmp)
2092 free(tmp);
2093 (void) ext2fs_free_mem(&fs_features);
2094 /*
2095 * If the user specified features incompatible with the Hurd, complain
2096 */
2097 if (for_hurd(creator_os)) {
2098 if (ext2fs_has_feature_filetype(&fs_param)) {
2099 fprintf(stderr, "%s", _("The HURD does not support the "
2100 "filetype feature.\n"));
2101 exit(1);
2102 }
2103 if (ext2fs_has_feature_huge_file(&fs_param)) {
2104 fprintf(stderr, "%s", _("The HURD does not support the "
2105 "huge_file feature.\n"));
2106 exit(1);
2107 }
2108 if (ext2fs_has_feature_metadata_csum(&fs_param)) {
2109 fprintf(stderr, "%s", _("The HURD does not support the "
2110 "metadata_csum feature.\n"));
2111 exit(1);
2112 }
2113 if (ext2fs_has_feature_ea_inode(&fs_param)) {
2114 fprintf(stderr, "%s", _("The HURD does not support the "
2115 "ea_inode feature.\n"));
2116 exit(1);
2117 }
2118 }
2119
2120 /* Get the hardware sector sizes, if available */
2121 retval = ext2fs_get_device_sectsize(device_name, &lsector_size);
2122 if (retval) {
2123 com_err(program_name, retval, "%s",
2124 _("while trying to determine hardware sector size"));
2125 exit(1);
2126 }
2127 retval = ext2fs_get_device_phys_sectsize(device_name, &psector_size);
2128 if (retval) {
2129 com_err(program_name, retval, "%s",
2130 _("while trying to determine physical sector size"));
2131 exit(1);
2132 }
2133
2134 tmp = getenv("MKE2FS_DEVICE_SECTSIZE");
2135 if (tmp != NULL)
2136 lsector_size = atoi(tmp);
2137 tmp = getenv("MKE2FS_DEVICE_PHYS_SECTSIZE");
2138 if (tmp != NULL)
2139 psector_size = atoi(tmp);
2140
2141 /* Older kernels may not have physical/logical distinction */
2142 if (!psector_size)
2143 psector_size = lsector_size;
2144
2145 if (blocksize <= 0) {
2146 use_bsize = get_int_from_profile(fs_types, "blocksize", 4096);
2147
2148 if (use_bsize == -1) {
2149 use_bsize = sys_page_size;
2150 if (is_before_linux_ver(2, 6, 0) && use_bsize > 4096)
2151 use_bsize = 4096;
2152 }
2153 if (lsector_size && use_bsize < lsector_size)
2154 use_bsize = lsector_size;
2155 if ((blocksize < 0) && (use_bsize < (-blocksize)))
2156 use_bsize = -blocksize;
2157 blocksize = use_bsize;
2158 fs_blocks_count /= (blocksize / 1024);
2159 } else {
2160 if (blocksize < lsector_size) { /* Impossible */
2161 com_err(program_name, EINVAL, "%s",
2162 _("while setting blocksize; too small "
2163 "for device\n"));
2164 exit(1);
2165 } else if ((blocksize < psector_size) &&
2166 (psector_size <= sys_page_size)) { /* Suboptimal */
2167 fprintf(stderr, _("Warning: specified blocksize %d is "
2168 "less than device physical sectorsize %d\n"),
2169 blocksize, psector_size);
2170 }
2171 }
2172
2173 fs_param.s_log_block_size =
2174 int_log2(blocksize >> EXT2_MIN_BLOCK_LOG_SIZE);
2175
2176 /*
2177 * We now need to do a sanity check of fs_blocks_count for
2178 * 32-bit vs 64-bit block number support.
2179 */
2180 if ((fs_blocks_count > MAX_32_NUM) &&
2181 ext2fs_has_feature_64bit(&fs_param))
2182 ext2fs_clear_feature_resize_inode(&fs_param);
2183 if ((fs_blocks_count > MAX_32_NUM) &&
2184 !ext2fs_has_feature_64bit(&fs_param) &&
2185 get_bool_from_profile(fs_types, "auto_64-bit_support", 0)) {
2186 ext2fs_set_feature_64bit(&fs_param);
2187 ext2fs_clear_feature_resize_inode(&fs_param);
2188 }
2189 if ((fs_blocks_count > MAX_32_NUM) &&
2190 !ext2fs_has_feature_64bit(&fs_param)) {
2191 fprintf(stderr, _("%s: Size of device (0x%llx blocks) %s "
2192 "too big to be expressed\n\t"
2193 "in 32 bits using a blocksize of %d.\n"),
2194 program_name, (unsigned long long) fs_blocks_count,
2195 device_name, EXT2_BLOCK_SIZE(&fs_param));
2196 exit(1);
2197 }
2198 /*
2199 * Guard against group descriptor count overflowing... Mostly to avoid
2200 * strange results for absurdly large devices. This is in log2:
2201 * (blocksize) * (bits per byte) * (maximum number of block groups)
2202 */
2203 if (fs_blocks_count >
2204 (1ULL << (EXT2_BLOCK_SIZE_BITS(&fs_param) + 3 + 32)) - 1) {
2205 fprintf(stderr, _("%s: Size of device (0x%llx blocks) %s "
2206 "too big to create\n\t"
2207 "a filesystem using a blocksize of %d.\n"),
2208 program_name, (unsigned long long) fs_blocks_count,
2209 device_name, EXT2_BLOCK_SIZE(&fs_param));
2210 exit(1);
2211 }
2212
2213 ext2fs_blocks_count_set(&fs_param, fs_blocks_count);
2214
2215 if (ext2fs_has_feature_journal_dev(&fs_param)) {
2216 int i;
2217
2218 for (i=0; fs_types[i]; i++) {
2219 free(fs_types[i]);
2220 fs_types[i] = 0;
2221 }
2222 fs_types[0] = strdup("journal");
2223 fs_types[1] = 0;
2224 }
2225
2226 if (verbose) {
2227 fputs(_("fs_types for mke2fs.conf resolution: "), stdout);
2228 print_str_list(fs_types);
2229 }
2230
2231 if (r_opt == EXT2_GOOD_OLD_REV &&
2232 (fs_param.s_feature_compat || fs_param.s_feature_incompat ||
2233 fs_param.s_feature_ro_compat)) {
2234 fprintf(stderr, "%s", _("Filesystem features not supported "
2235 "with revision 0 filesystems\n"));
2236 exit(1);
2237 }
2238
2239 if (s_opt > 0) {
2240 if (r_opt == EXT2_GOOD_OLD_REV) {
2241 fprintf(stderr, "%s",
2242 _("Sparse superblocks not supported "
2243 "with revision 0 filesystems\n"));
2244 exit(1);
2245 }
2246 ext2fs_set_feature_sparse_super(&fs_param);
2247 } else if (s_opt == 0)
2248 ext2fs_clear_feature_sparse_super(&fs_param);
2249
2250 if (journal_size != 0) {
2251 if (r_opt == EXT2_GOOD_OLD_REV) {
2252 fprintf(stderr, "%s", _("Journals not supported with "
2253 "revision 0 filesystems\n"));
2254 exit(1);
2255 }
2256 ext2fs_set_feature_journal(&fs_param);
2257 }
2258
2259 /* Get reserved_ratio from profile if not specified on cmd line. */
2260 if (reserved_ratio < 0.0) {
2261 reserved_ratio = get_double_from_profile(
2262 fs_types, "reserved_ratio", 5.0);
2263 if (reserved_ratio > 50 || reserved_ratio < 0) {
2264 com_err(program_name, 0,
2265 _("invalid reserved blocks percent - %lf"),
2266 reserved_ratio);
2267 exit(1);
2268 }
2269 }
2270
2271 if (ext2fs_has_feature_journal_dev(&fs_param)) {
2272 reserved_ratio = 0;
2273 fs_param.s_feature_incompat = EXT3_FEATURE_INCOMPAT_JOURNAL_DEV;
2274 fs_param.s_feature_compat = 0;
2275 fs_param.s_feature_ro_compat &=
2276 EXT4_FEATURE_RO_COMPAT_METADATA_CSUM;
2277 }
2278
2279 /* Check the user's mkfs options for 64bit */
2280 if (ext2fs_has_feature_64bit(&fs_param) &&
2281 !ext2fs_has_feature_extents(&fs_param)) {
2282 printf("%s", _("Extents MUST be enabled for a 64-bit "
2283 "filesystem. Pass -O extents to rectify.\n"));
2284 exit(1);
2285 }
2286
2287 /* Set first meta blockgroup via an environment variable */
2288 /* (this is mostly for debugging purposes) */
2289 if (ext2fs_has_feature_meta_bg(&fs_param) &&
2290 (tmp = getenv("MKE2FS_FIRST_META_BG")))
2291 fs_param.s_first_meta_bg = atoi(tmp);
2292 if (ext2fs_has_feature_bigalloc(&fs_param)) {
2293 if (!cluster_size)
2294 cluster_size = get_int_from_profile(fs_types,
2295 "cluster_size",
2296 blocksize*16);
2297 fs_param.s_log_cluster_size =
2298 int_log2(cluster_size >> EXT2_MIN_CLUSTER_LOG_SIZE);
2299 if (fs_param.s_log_cluster_size &&
2300 fs_param.s_log_cluster_size < fs_param.s_log_block_size) {
2301 com_err(program_name, 0, "%s",
2302 _("The cluster size may not be "
2303 "smaller than the block size.\n"));
2304 exit(1);
2305 }
2306 } else if (cluster_size) {
2307 com_err(program_name, 0, "%s",
2308 _("specifying a cluster size requires the "
2309 "bigalloc feature"));
2310 exit(1);
2311 } else
2312 fs_param.s_log_cluster_size = fs_param.s_log_block_size;
2313
2314 if (inode_ratio == 0) {
2315 inode_ratio = get_int_from_profile(fs_types, "inode_ratio",
2316 8192);
2317 if (inode_ratio < blocksize)
2318 inode_ratio = blocksize;
2319 if (inode_ratio < EXT2_CLUSTER_SIZE(&fs_param))
2320 inode_ratio = EXT2_CLUSTER_SIZE(&fs_param);
2321 }
2322
2323 #ifdef HAVE_BLKID_PROBE_GET_TOPOLOGY
2324 retval = get_device_geometry(device_name, blocksize,
2325 psector_size, &dev_param);
2326 if (retval < 0) {
2327 fprintf(stderr,
2328 _("warning: Unable to get device geometry for %s\n"),
2329 device_name);
2330 } else {
2331 /* setting stripe/stride to blocksize is pointless */
2332 if (dev_param.min_io > blocksize)
2333 fs_param.s_raid_stride = dev_param.min_io / blocksize;
2334 if (dev_param.opt_io > blocksize) {
2335 fs_param.s_raid_stripe_width =
2336 dev_param.opt_io / blocksize;
2337 }
2338
2339 if (dev_param.alignment_offset) {
2340 printf(_("%s alignment is offset by %lu bytes.\n"),
2341 device_name, dev_param.alignment_offset);
2342 printf(_("This may result in very poor performance, "
2343 "(re)-partitioning suggested.\n"));
2344 }
2345
2346 if (dev_param.dax && blocksize != sys_page_size) {
2347 fprintf(stderr,
2348 _("%s is capable of DAX but current block size "
2349 "%u is different from system page size %u so "
2350 "filesystem will not support DAX.\n"),
2351 device_name, blocksize, sys_page_size);
2352 }
2353 }
2354 #endif
2355
2356 num_backups = get_int_from_profile(fs_types, "num_backup_sb", 2);
2357
2358 blocksize = EXT2_BLOCK_SIZE(&fs_param);
2359
2360 /*
2361 * Initialize s_desc_size so that the parse_extended_opts()
2362 * can correctly handle "-E resize=NNN" if the 64-bit option
2363 * is set.
2364 */
2365 if (ext2fs_has_feature_64bit(&fs_param))
2366 fs_param.s_desc_size = EXT2_MIN_DESC_SIZE_64BIT;
2367
2368 /* This check should happen beyond the last assignment to blocksize */
2369 if (blocksize > sys_page_size) {
2370 if (!force) {
2371 com_err(program_name, 0,
2372 _("%d-byte blocks too big for system (max %d)"),
2373 blocksize, sys_page_size);
2374 proceed_question(proceed_delay);
2375 }
2376 fprintf(stderr, _("Warning: %d-byte blocks too big for system "
2377 "(max %d), forced to continue\n"),
2378 blocksize, sys_page_size);
2379 }
2380
2381 /* Metadata checksumming wasn't totally stable before 3.18. */
2382 if (is_before_linux_ver(3, 18, 0) &&
2383 ext2fs_has_feature_metadata_csum(&fs_param))
2384 fprintf(stderr, _("Suggestion: Use Linux kernel >= 3.18 for "
2385 "improved stability of the metadata and journal "
2386 "checksum features.\n"));
2387
2388 /*
2389 * On newer kernels we do have lazy_itable_init support. So pick the
2390 * right default in case ext4 module is not loaded.
2391 */
2392 if (is_before_linux_ver(2, 6, 37))
2393 lazy_itable_init = 0;
2394 else
2395 lazy_itable_init = 1;
2396
2397 if (access("/sys/fs/ext4/features/lazy_itable_init", R_OK) == 0)
2398 lazy_itable_init = 1;
2399
2400 lazy_itable_init = get_bool_from_profile(fs_types,
2401 "lazy_itable_init",
2402 lazy_itable_init);
2403 discard = get_bool_from_profile(fs_types, "discard" , discard);
2404 journal_flags |= get_bool_from_profile(fs_types,
2405 "lazy_journal_init", 0) ?
2406 EXT2_MKJOURNAL_LAZYINIT : 0;
2407 journal_flags |= EXT2_MKJOURNAL_NO_MNT_CHECK;
2408
2409 if (!journal_location_string)
2410 journal_location_string = get_string_from_profile(fs_types,
2411 "journal_location", "");
2412 if ((journal_location == ~0ULL) && journal_location_string &&
2413 *journal_location_string)
2414 journal_location = parse_num_blocks2(journal_location_string,
2415 fs_param.s_log_block_size);
2416 free(journal_location_string);
2417
2418 packed_meta_blocks = get_bool_from_profile(fs_types,
2419 "packed_meta_blocks", 0);
2420 if (packed_meta_blocks)
2421 journal_location = 0;
2422
2423 if (ext2fs_has_feature_casefold(&fs_param)) {
2424 char *ef, *en = get_string_from_profile(fs_types,
2425 "encoding", "utf8");
2426 int encoding = e2p_str2encoding(en);
2427
2428 if (encoding < 0) {
2429 com_err(program_name, 0,
2430 _("Unknown filename encoding from profile: %s"),
2431 en);
2432 exit(1);
2433 }
2434 free(en);
2435 fs_param.s_encoding = encoding;
2436 ef = get_string_from_profile(fs_types, "encoding_flags", NULL);
2437 if (ef) {
2438 if (e2p_str2encoding_flags(encoding, ef,
2439 &fs_param.s_encoding_flags) < 0) {
2440 com_err(program_name, 0,
2441 _("Unknown encoding flags from profile: %s"), ef);
2442 exit(1);
2443 }
2444 free(ef);
2445 } else
2446 fs_param.s_encoding_flags =
2447 e2p_get_encoding_flags(encoding);
2448 }
2449
2450 /* Get options from profile */
2451 for (cpp = fs_types; *cpp; cpp++) {
2452 tmp = NULL;
2453 profile_get_string(profile, "fs_types", *cpp, "options", "", &tmp);
2454 if (tmp && *tmp)
2455 parse_extended_opts(&fs_param, tmp);
2456 free(tmp);
2457 }
2458
2459 if (extended_opts)
2460 parse_extended_opts(&fs_param, extended_opts);
2461
2462 if (explicit_fssize == 0 && offset > 0) {
2463 fs_blocks_count -= offset / EXT2_BLOCK_SIZE(&fs_param);
2464 ext2fs_blocks_count_set(&fs_param, fs_blocks_count);
2465 fprintf(stderr,
2466 _("\nWarning: offset specified without an "
2467 "explicit file system size.\n"
2468 "Creating a file system with %llu blocks "
2469 "but this might\n"
2470 "not be what you want.\n\n"),
2471 (unsigned long long) fs_blocks_count);
2472 }
2473
2474 if (quotatype_bits & QUOTA_PRJ_BIT)
2475 ext2fs_set_feature_project(&fs_param);
2476
2477 if (ext2fs_has_feature_project(&fs_param)) {
2478 quotatype_bits |= QUOTA_PRJ_BIT;
2479 if (inode_size == EXT2_GOOD_OLD_INODE_SIZE) {
2480 com_err(program_name, 0,
2481 _("%d byte inodes are too small for "
2482 "project quota"),
2483 inode_size);
2484 exit(1);
2485 }
2486 if (inode_size == 0) {
2487 inode_size = get_int_from_profile(fs_types,
2488 "inode_size", 0);
2489 if (inode_size <= EXT2_GOOD_OLD_INODE_SIZE*2)
2490 inode_size = EXT2_GOOD_OLD_INODE_SIZE*2;
2491 }
2492 }
2493
2494 /* Don't allow user to set both metadata_csum and uninit_bg bits. */
2495 if (ext2fs_has_feature_metadata_csum(&fs_param) &&
2496 ext2fs_has_feature_gdt_csum(&fs_param))
2497 ext2fs_clear_feature_gdt_csum(&fs_param);
2498
2499 /* Can't support bigalloc feature without extents feature */
2500 if (ext2fs_has_feature_bigalloc(&fs_param) &&
2501 !ext2fs_has_feature_extents(&fs_param)) {
2502 com_err(program_name, 0, "%s",
2503 _("Can't support bigalloc feature without "
2504 "extents feature"));
2505 exit(1);
2506 }
2507
2508 if (ext2fs_has_feature_meta_bg(&fs_param) &&
2509 ext2fs_has_feature_resize_inode(&fs_param)) {
2510 fprintf(stderr, "%s", _("The resize_inode and meta_bg "
2511 "features are not compatible.\n"
2512 "They can not be both enabled "
2513 "simultaneously.\n"));
2514 exit(1);
2515 }
2516
2517 if (!quiet && ext2fs_has_feature_bigalloc(&fs_param))
2518 fprintf(stderr, "%s", _("\nWarning: the bigalloc feature is "
2519 "still under development\n"
2520 "See https://ext4.wiki.kernel.org/"
2521 "index.php/Bigalloc for more information\n\n"));
2522
2523 /*
2524 * Since sparse_super is the default, we would only have a problem
2525 * here if it was explicitly disabled.
2526 */
2527 if (ext2fs_has_feature_resize_inode(&fs_param) &&
2528 !ext2fs_has_feature_sparse_super(&fs_param)) {
2529 com_err(program_name, 0, "%s",
2530 _("reserved online resize blocks not supported "
2531 "on non-sparse filesystem"));
2532 exit(1);
2533 }
2534
2535 if (fs_param.s_blocks_per_group) {
2536 if (fs_param.s_blocks_per_group < 256 ||
2537 fs_param.s_blocks_per_group > 8 * (unsigned) blocksize) {
2538 com_err(program_name, 0, "%s",
2539 _("blocks per group count out of range"));
2540 exit(1);
2541 }
2542 }
2543
2544 /*
2545 * If the bigalloc feature is enabled, then the -g option will
2546 * specify the number of clusters per group.
2547 */
2548 if (ext2fs_has_feature_bigalloc(&fs_param)) {
2549 fs_param.s_clusters_per_group = fs_param.s_blocks_per_group;
2550 fs_param.s_blocks_per_group = 0;
2551 }
2552
2553 if (inode_size == 0)
2554 inode_size = get_int_from_profile(fs_types, "inode_size", 0);
2555 if (!flex_bg_size && ext2fs_has_feature_flex_bg(&fs_param))
2556 flex_bg_size = get_uint_from_profile(fs_types,
2557 "flex_bg_size", 16);
2558 if (flex_bg_size) {
2559 if (!ext2fs_has_feature_flex_bg(&fs_param)) {
2560 com_err(program_name, 0, "%s",
2561 _("Flex_bg feature not enabled, so "
2562 "flex_bg size may not be specified"));
2563 exit(1);
2564 }
2565 fs_param.s_log_groups_per_flex = int_log2(flex_bg_size);
2566 }
2567
2568 if (inode_size && fs_param.s_rev_level >= EXT2_DYNAMIC_REV) {
2569 if (inode_size < EXT2_GOOD_OLD_INODE_SIZE ||
2570 inode_size > EXT2_BLOCK_SIZE(&fs_param) ||
2571 inode_size & (inode_size - 1)) {
2572 com_err(program_name, 0,
2573 _("invalid inode size %d (min %d/max %d)"),
2574 inode_size, EXT2_GOOD_OLD_INODE_SIZE,
2575 blocksize);
2576 exit(1);
2577 }
2578 fs_param.s_inode_size = inode_size;
2579 }
2580
2581 /*
2582 * If inode size is 128 and inline data is enabled, we need
2583 * to notify users that inline data will never be useful.
2584 */
2585 if (ext2fs_has_feature_inline_data(&fs_param) &&
2586 fs_param.s_inode_size == EXT2_GOOD_OLD_INODE_SIZE) {
2587 com_err(program_name, 0,
2588 _("%d byte inodes are too small for inline data; "
2589 "specify larger size"),
2590 fs_param.s_inode_size);
2591 exit(1);
2592 }
2593
2594 /* Make sure number of inodes specified will fit in 32 bits */
2595 if (num_inodes == 0) {
2596 unsigned long long n;
2597 n = ext2fs_blocks_count(&fs_param) * blocksize / inode_ratio;
2598 if (n > MAX_32_NUM) {
2599 if (ext2fs_has_feature_64bit(&fs_param))
2600 num_inodes = MAX_32_NUM;
2601 else {
2602 com_err(program_name, 0,
2603 _("too many inodes (%llu), raise "
2604 "inode ratio?"),
2605 (unsigned long long) n);
2606 exit(1);
2607 }
2608 }
2609 } else if (num_inodes > MAX_32_NUM) {
2610 com_err(program_name, 0,
2611 _("too many inodes (%llu), specify < 2^32 inodes"),
2612 (unsigned long long) num_inodes);
2613 exit(1);
2614 }
2615 /*
2616 * Calculate number of inodes based on the inode ratio
2617 */
2618 fs_param.s_inodes_count = num_inodes ? num_inodes :
2619 (ext2fs_blocks_count(&fs_param) * blocksize) / inode_ratio;
2620
2621 if ((((unsigned long long)fs_param.s_inodes_count) *
2622 (inode_size ? inode_size : EXT2_GOOD_OLD_INODE_SIZE)) >=
2623 ((ext2fs_blocks_count(&fs_param)) *
2624 EXT2_BLOCK_SIZE(&fs_param))) {
2625 com_err(program_name, 0, _("inode_size (%u) * inodes_count "
2626 "(%u) too big for a\n\t"
2627 "filesystem with %llu blocks, "
2628 "specify higher inode_ratio (-i)\n\t"
2629 "or lower inode count (-N).\n"),
2630 inode_size ? inode_size : EXT2_GOOD_OLD_INODE_SIZE,
2631 fs_param.s_inodes_count,
2632 (unsigned long long) ext2fs_blocks_count(&fs_param));
2633 exit(1);
2634 }
2635
2636 /*
2637 * Calculate number of blocks to reserve
2638 */
2639 ext2fs_r_blocks_count_set(&fs_param, reserved_ratio *
2640 ext2fs_blocks_count(&fs_param) / 100.0);
2641
2642 if (ext2fs_has_feature_sparse_super2(&fs_param)) {
2643 if (num_backups >= 1)
2644 fs_param.s_backup_bgs[0] = 1;
2645 if (num_backups >= 2)
2646 fs_param.s_backup_bgs[1] = ~0;
2647 }
2648
2649 free(fs_type);
2650 free(usage_types);
2651 }
2652
should_do_undo(const char * name)2653 static int should_do_undo(const char *name)
2654 {
2655 errcode_t retval;
2656 io_channel channel;
2657 __u16 s_magic;
2658 struct ext2_super_block super;
2659 io_manager manager = unix_io_manager;
2660 int csum_flag, force_undo;
2661
2662 csum_flag = ext2fs_has_feature_metadata_csum(&fs_param) ||
2663 ext2fs_has_feature_gdt_csum(&fs_param);
2664 force_undo = get_int_from_profile(fs_types, "force_undo", 0);
2665 if (!force_undo && (!csum_flag || !lazy_itable_init))
2666 return 0;
2667
2668 retval = manager->open(name, IO_FLAG_EXCLUSIVE, &channel);
2669 if (retval) {
2670 /*
2671 * We don't handle error cases instead we
2672 * declare that the file system doesn't exist
2673 * and let the rest of mke2fs take care of
2674 * error
2675 */
2676 retval = 0;
2677 goto open_err_out;
2678 }
2679
2680 io_channel_set_blksize(channel, SUPERBLOCK_OFFSET);
2681 retval = io_channel_read_blk64(channel, 1, -SUPERBLOCK_SIZE, &super);
2682 if (retval) {
2683 retval = 0;
2684 goto err_out;
2685 }
2686
2687 #if defined(WORDS_BIGENDIAN)
2688 s_magic = ext2fs_swab16(super.s_magic);
2689 #else
2690 s_magic = super.s_magic;
2691 #endif
2692
2693 if (s_magic == EXT2_SUPER_MAGIC)
2694 retval = 1;
2695
2696 err_out:
2697 io_channel_close(channel);
2698
2699 open_err_out:
2700
2701 return retval;
2702 }
2703
mke2fs_setup_tdb(const char * name,io_manager * io_ptr)2704 static int mke2fs_setup_tdb(const char *name, io_manager *io_ptr)
2705 {
2706 errcode_t retval = ENOMEM;
2707 char *tdb_dir = NULL, *tdb_file = NULL;
2708 char *dev_name, *tmp_name;
2709 int free_tdb_dir = 0;
2710
2711 /* (re)open a specific undo file */
2712 if (undo_file && undo_file[0] != 0) {
2713 retval = set_undo_io_backing_manager(*io_ptr);
2714 if (retval)
2715 goto err;
2716 *io_ptr = undo_io_manager;
2717 retval = set_undo_io_backup_file(undo_file);
2718 if (retval)
2719 goto err;
2720 printf(_("Overwriting existing filesystem; this can be undone "
2721 "using the command:\n"
2722 " e2undo %s %s\n\n"), undo_file, name);
2723 return retval;
2724 }
2725
2726 /*
2727 * Configuration via a conf file would be
2728 * nice
2729 */
2730 tdb_dir = getenv("E2FSPROGS_UNDO_DIR");
2731 if (!tdb_dir) {
2732 profile_get_string(profile, "defaults",
2733 "undo_dir", 0, "/var/lib/e2fsprogs",
2734 &tdb_dir);
2735 free_tdb_dir = 1;
2736 }
2737
2738 if (!strcmp(tdb_dir, "none") || (tdb_dir[0] == 0) ||
2739 access(tdb_dir, W_OK)) {
2740 if (free_tdb_dir)
2741 free(tdb_dir);
2742 return 0;
2743 }
2744
2745 tmp_name = strdup(name);
2746 if (!tmp_name)
2747 goto errout;
2748 dev_name = basename(tmp_name);
2749 tdb_file = malloc(strlen(tdb_dir) + 8 + strlen(dev_name) + 7 + 1);
2750 if (!tdb_file) {
2751 free(tmp_name);
2752 goto errout;
2753 }
2754 sprintf(tdb_file, "%s/mke2fs-%s.e2undo", tdb_dir, dev_name);
2755 free(tmp_name);
2756
2757 if ((unlink(tdb_file) < 0) && (errno != ENOENT)) {
2758 retval = errno;
2759 com_err(program_name, retval,
2760 _("while trying to delete %s"), tdb_file);
2761 goto errout;
2762 }
2763
2764 retval = set_undo_io_backing_manager(*io_ptr);
2765 if (retval)
2766 goto errout;
2767 *io_ptr = undo_io_manager;
2768 retval = set_undo_io_backup_file(tdb_file);
2769 if (retval)
2770 goto errout;
2771 printf(_("Overwriting existing filesystem; this can be undone "
2772 "using the command:\n"
2773 " e2undo %s %s\n\n"), tdb_file, name);
2774
2775 if (free_tdb_dir)
2776 free(tdb_dir);
2777 free(tdb_file);
2778 return 0;
2779
2780 errout:
2781 if (free_tdb_dir)
2782 free(tdb_dir);
2783 free(tdb_file);
2784 err:
2785 com_err(program_name, retval, "%s",
2786 _("while trying to setup undo file\n"));
2787 return retval;
2788 }
2789
mke2fs_discard_device(ext2_filsys fs)2790 static int mke2fs_discard_device(ext2_filsys fs)
2791 {
2792 struct ext2fs_numeric_progress_struct progress;
2793 blk64_t blocks = ext2fs_blocks_count(fs->super);
2794 blk64_t count = DISCARD_STEP_MB;
2795 blk64_t cur;
2796 int retval = 0;
2797
2798 /*
2799 * Let's try if discard really works on the device, so
2800 * we do not print numeric progress resulting in failure
2801 * afterwards.
2802 */
2803 retval = io_channel_discard(fs->io, 0, fs->blocksize);
2804 if (retval)
2805 return retval;
2806 cur = fs->blocksize;
2807
2808 count *= (1024 * 1024);
2809 count /= fs->blocksize;
2810
2811 ext2fs_numeric_progress_init(fs, &progress,
2812 _("Discarding device blocks: "),
2813 blocks);
2814 while (cur < blocks) {
2815 ext2fs_numeric_progress_update(fs, &progress, cur);
2816
2817 if (cur + count > blocks)
2818 count = blocks - cur;
2819
2820 retval = io_channel_discard(fs->io, cur, count);
2821 if (retval)
2822 break;
2823 cur += count;
2824 }
2825
2826 if (retval) {
2827 ext2fs_numeric_progress_close(fs, &progress,
2828 _("failed - "));
2829 if (!quiet)
2830 printf("%s\n",error_message(retval));
2831 } else
2832 ext2fs_numeric_progress_close(fs, &progress,
2833 _("done \n"));
2834
2835 return retval;
2836 }
2837
fix_cluster_bg_counts(ext2_filsys fs)2838 static void fix_cluster_bg_counts(ext2_filsys fs)
2839 {
2840 blk64_t block, num_blocks, last_block, next;
2841 blk64_t tot_free = 0;
2842 errcode_t retval;
2843 dgrp_t group = 0;
2844 int grp_free = 0;
2845
2846 num_blocks = ext2fs_blocks_count(fs->super);
2847 last_block = ext2fs_group_last_block2(fs, group);
2848 block = fs->super->s_first_data_block;
2849 while (block < num_blocks) {
2850 retval = ext2fs_find_first_zero_block_bitmap2(fs->block_map,
2851 block, last_block, &next);
2852 if (retval == 0)
2853 block = next;
2854 else {
2855 block = last_block + 1;
2856 goto next_bg;
2857 }
2858
2859 retval = ext2fs_find_first_set_block_bitmap2(fs->block_map,
2860 block, last_block, &next);
2861 if (retval)
2862 next = last_block + 1;
2863 grp_free += EXT2FS_NUM_B2C(fs, next - block);
2864 tot_free += next - block;
2865 block = next;
2866
2867 if (block > last_block) {
2868 next_bg:
2869 ext2fs_bg_free_blocks_count_set(fs, group, grp_free);
2870 ext2fs_group_desc_csum_set(fs, group);
2871 grp_free = 0;
2872 group++;
2873 last_block = ext2fs_group_last_block2(fs, group);
2874 }
2875 }
2876 ext2fs_free_blocks_count_set(fs->super, tot_free);
2877 }
2878
create_quota_inodes(ext2_filsys fs)2879 static int create_quota_inodes(ext2_filsys fs)
2880 {
2881 quota_ctx_t qctx;
2882 errcode_t retval;
2883
2884 retval = quota_init_context(&qctx, fs, quotatype_bits);
2885 if (retval) {
2886 com_err(program_name, retval,
2887 _("while initializing quota context"));
2888 exit(1);
2889 }
2890 quota_compute_usage(qctx);
2891 retval = quota_write_inode(qctx, quotatype_bits);
2892 if (retval) {
2893 com_err(program_name, retval,
2894 _("while writing quota inodes"));
2895 exit(1);
2896 }
2897 quota_release_context(&qctx);
2898
2899 return 0;
2900 }
2901
set_error_behavior(ext2_filsys fs)2902 static errcode_t set_error_behavior(ext2_filsys fs)
2903 {
2904 char *arg = NULL;
2905 short errors = fs->super->s_errors;
2906
2907 arg = get_string_from_profile(fs_types, "errors", NULL);
2908 if (arg == NULL)
2909 goto try_user;
2910
2911 if (strcmp(arg, "continue") == 0)
2912 errors = EXT2_ERRORS_CONTINUE;
2913 else if (strcmp(arg, "remount-ro") == 0)
2914 errors = EXT2_ERRORS_RO;
2915 else if (strcmp(arg, "panic") == 0)
2916 errors = EXT2_ERRORS_PANIC;
2917 else {
2918 com_err(program_name, 0,
2919 _("bad error behavior in profile - %s"),
2920 arg);
2921 free(arg);
2922 return EXT2_ET_INVALID_ARGUMENT;
2923 }
2924 free(arg);
2925
2926 try_user:
2927 if (errors_behavior)
2928 errors = errors_behavior;
2929
2930 fs->super->s_errors = errors;
2931 return 0;
2932 }
2933
2934 // TODO(b/141583541): stop leaks
__asan_default_options()2935 const char *__asan_default_options()
2936 {
2937 return "detect_leaks=0";
2938 }
2939
main(int argc,char * argv[])2940 int main (int argc, char *argv[])
2941 {
2942 errcode_t retval = 0;
2943 ext2_filsys fs;
2944 badblocks_list bb_list = 0;
2945 badblocks_iterate bb_iter;
2946 blk_t blk;
2947 struct ext2fs_journal_params jparams = {0};
2948 unsigned int i, checkinterval;
2949 int max_mnt_count;
2950 int val, hash_alg;
2951 int flags;
2952 int old_bitmaps;
2953 io_manager io_ptr;
2954 char opt_string[40];
2955 char *hash_alg_str;
2956 int itable_zeroed = 0;
2957 blk64_t overhead;
2958
2959 #ifdef ENABLE_NLS
2960 setlocale(LC_MESSAGES, "");
2961 setlocale(LC_CTYPE, "");
2962 bindtextdomain(NLS_CAT_NAME, LOCALEDIR);
2963 textdomain(NLS_CAT_NAME);
2964 set_com_err_gettext(gettext);
2965 #endif
2966 PRS(argc, argv);
2967
2968 #ifdef CONFIG_TESTIO_DEBUG
2969 if (getenv("TEST_IO_FLAGS") || getenv("TEST_IO_BLOCK")) {
2970 io_ptr = test_io_manager;
2971 test_io_backing_manager = unix_io_manager;
2972 } else
2973 #endif
2974 io_ptr = unix_io_manager;
2975
2976 if (undo_file != NULL || should_do_undo(device_name)) {
2977 retval = mke2fs_setup_tdb(device_name, &io_ptr);
2978 if (retval)
2979 exit(1);
2980 }
2981
2982 /*
2983 * Initialize the superblock....
2984 */
2985 flags = EXT2_FLAG_EXCLUSIVE;
2986 if (direct_io)
2987 flags |= EXT2_FLAG_DIRECT_IO;
2988 profile_get_boolean(profile, "options", "old_bitmaps", 0, 0,
2989 &old_bitmaps);
2990 if (!old_bitmaps)
2991 flags |= EXT2_FLAG_64BITS;
2992 /*
2993 * By default, we print how many inode tables or block groups
2994 * or whatever we've written so far. The quiet flag disables
2995 * this, along with a lot of other output.
2996 */
2997 if (!quiet)
2998 flags |= EXT2_FLAG_PRINT_PROGRESS;
2999 if (android_sparse_file) {
3000 char *android_sparse_params = malloc(strlen(device_name) + 48);
3001
3002 if (!android_sparse_params) {
3003 com_err(program_name, ENOMEM, "%s",
3004 _("in malloc for android_sparse_params"));
3005 exit(1);
3006 }
3007 sprintf(android_sparse_params, "(%s):%u:%u",
3008 device_name, fs_param.s_blocks_count,
3009 1024 << fs_param.s_log_block_size);
3010 retval = ext2fs_initialize(android_sparse_params, flags,
3011 &fs_param, sparse_io_manager, &fs);
3012 free(android_sparse_params);
3013 } else
3014 retval = ext2fs_initialize(device_name, flags, &fs_param,
3015 io_ptr, &fs);
3016 if (retval) {
3017 com_err(device_name, retval, "%s",
3018 _("while setting up superblock"));
3019 exit(1);
3020 }
3021 fs->progress_ops = &ext2fs_numeric_progress_ops;
3022
3023 /* Set the error behavior */
3024 retval = set_error_behavior(fs);
3025 if (retval)
3026 usage();
3027
3028 /* Check the user's mkfs options for metadata checksumming */
3029 if (!quiet &&
3030 !ext2fs_has_feature_journal_dev(fs->super) &&
3031 ext2fs_has_feature_metadata_csum(fs->super)) {
3032 if (!ext2fs_has_feature_extents(fs->super))
3033 printf("%s",
3034 _("Extents are not enabled. The file extent "
3035 "tree can be checksummed, whereas block maps "
3036 "cannot. Not enabling extents reduces the "
3037 "coverage of metadata checksumming. "
3038 "Pass -O extents to rectify.\n"));
3039 if (!ext2fs_has_feature_64bit(fs->super))
3040 printf("%s",
3041 _("64-bit filesystem support is not enabled. "
3042 "The larger fields afforded by this feature "
3043 "enable full-strength checksumming. "
3044 "Pass -O 64bit to rectify.\n"));
3045 }
3046
3047 if (ext2fs_has_feature_csum_seed(fs->super) &&
3048 !ext2fs_has_feature_metadata_csum(fs->super)) {
3049 printf("%s", _("The metadata_csum_seed feature "
3050 "requires the metadata_csum feature.\n"));
3051 exit(1);
3052 }
3053
3054 /* Calculate journal blocks */
3055 if (!journal_device && ((journal_size) ||
3056 ext2fs_has_feature_journal(&fs_param)))
3057 figure_journal_size(&jparams, journal_size, journal_fc_size, fs);
3058
3059 sprintf(opt_string, "tdb_data_size=%d", fs->blocksize <= 4096 ?
3060 32768 : fs->blocksize * 8);
3061 io_channel_set_options(fs->io, opt_string);
3062 if (offset) {
3063 sprintf(opt_string, "offset=%llu", (unsigned long long) offset);
3064 io_channel_set_options(fs->io, opt_string);
3065 }
3066
3067 /* Can't undo discard ... */
3068 if (!noaction && discard && dev_size && (io_ptr != undo_io_manager)) {
3069 retval = mke2fs_discard_device(fs);
3070 if (!retval && io_channel_discard_zeroes_data(fs->io)) {
3071 if (verbose)
3072 printf("%s",
3073 _("Discard succeeded and will return "
3074 "0s - skipping inode table wipe\n"));
3075 lazy_itable_init = 1;
3076 itable_zeroed = 1;
3077 zero_hugefile = 0;
3078 }
3079 }
3080
3081 if (fs_param.s_flags & EXT2_FLAGS_TEST_FILESYS)
3082 fs->super->s_flags |= EXT2_FLAGS_TEST_FILESYS;
3083
3084 if (ext2fs_has_feature_flex_bg(&fs_param) ||
3085 ext2fs_has_feature_huge_file(&fs_param) ||
3086 ext2fs_has_feature_gdt_csum(&fs_param) ||
3087 ext2fs_has_feature_dir_nlink(&fs_param) ||
3088 ext2fs_has_feature_metadata_csum(&fs_param) ||
3089 ext2fs_has_feature_extra_isize(&fs_param))
3090 fs->super->s_kbytes_written = 1;
3091
3092 /*
3093 * Wipe out the old on-disk superblock
3094 */
3095 if (!noaction)
3096 zap_sector(fs, 2, 6);
3097
3098 /*
3099 * Parse or generate a UUID for the filesystem
3100 */
3101 if (fs_uuid) {
3102 if ((strcasecmp(fs_uuid, "null") == 0) ||
3103 (strcasecmp(fs_uuid, "clear") == 0)) {
3104 uuid_clear(fs->super->s_uuid);
3105 } else if (strcasecmp(fs_uuid, "time") == 0) {
3106 uuid_generate_time(fs->super->s_uuid);
3107 } else if (strcasecmp(fs_uuid, "random") == 0) {
3108 uuid_generate(fs->super->s_uuid);
3109 } else if (uuid_parse(fs_uuid, fs->super->s_uuid) != 0) {
3110 com_err(device_name, 0, "could not parse UUID: %s\n",
3111 fs_uuid);
3112 exit(1);
3113 }
3114 } else
3115 uuid_generate(fs->super->s_uuid);
3116
3117 if (ext2fs_has_feature_csum_seed(fs->super))
3118 fs->super->s_checksum_seed = ext2fs_crc32c_le(~0,
3119 fs->super->s_uuid, sizeof(fs->super->s_uuid));
3120
3121 ext2fs_init_csum_seed(fs);
3122
3123 /*
3124 * Initialize the directory index variables
3125 */
3126 hash_alg_str = get_string_from_profile(fs_types, "hash_alg",
3127 "half_md4");
3128 hash_alg = e2p_string2hash(hash_alg_str);
3129 free(hash_alg_str);
3130 fs->super->s_def_hash_version = (hash_alg >= 0) ? hash_alg :
3131 EXT2_HASH_HALF_MD4;
3132
3133 if (memcmp(fs_param.s_hash_seed, zero_buf,
3134 sizeof(fs_param.s_hash_seed)) != 0) {
3135 memcpy(fs->super->s_hash_seed, fs_param.s_hash_seed,
3136 sizeof(fs->super->s_hash_seed));
3137 } else
3138 uuid_generate((unsigned char *) fs->super->s_hash_seed);
3139
3140 /*
3141 * Periodic checks can be enabled/disabled via config file.
3142 * Note we override the kernel include file's idea of what the default
3143 * check interval (never) should be. It's a good idea to check at
3144 * least *occasionally*, specially since servers will never rarely get
3145 * to reboot, since Linux is so robust these days. :-)
3146 *
3147 * 180 days (six months) seems like a good value.
3148 */
3149 #ifdef EXT2_DFL_CHECKINTERVAL
3150 #undef EXT2_DFL_CHECKINTERVAL
3151 #endif
3152 #define EXT2_DFL_CHECKINTERVAL (86400L * 180L)
3153
3154 if (get_bool_from_profile(fs_types, "enable_periodic_fsck", 0)) {
3155 fs->super->s_checkinterval = EXT2_DFL_CHECKINTERVAL;
3156 fs->super->s_max_mnt_count = EXT2_DFL_MAX_MNT_COUNT;
3157 /*
3158 * Add "jitter" to the superblock's check interval so that we
3159 * don't check all the filesystems at the same time. We use a
3160 * kludgy hack of using the UUID to derive a random jitter value
3161 */
3162 for (i = 0, val = 0 ; i < sizeof(fs->super->s_uuid); i++)
3163 val += fs->super->s_uuid[i];
3164 fs->super->s_max_mnt_count += val % EXT2_DFL_MAX_MNT_COUNT;
3165 } else
3166 fs->super->s_max_mnt_count = -1;
3167
3168 /*
3169 * Override the creator OS, if applicable
3170 */
3171 if (creator_os && !set_os(fs->super, creator_os)) {
3172 com_err (program_name, 0, _("unknown os - %s"), creator_os);
3173 exit(1);
3174 }
3175
3176 /*
3177 * For the Hurd, we will turn off filetype since it doesn't
3178 * support it.
3179 */
3180 if (fs->super->s_creator_os == EXT2_OS_HURD)
3181 ext2fs_clear_feature_filetype(fs->super);
3182
3183 /*
3184 * Set the volume label...
3185 */
3186 if (volume_label) {
3187 memset(fs->super->s_volume_name, 0,
3188 sizeof(fs->super->s_volume_name));
3189 strncpy((char *) fs->super->s_volume_name, volume_label,
3190 sizeof(fs->super->s_volume_name));
3191 }
3192
3193 /*
3194 * Set the last mount directory
3195 */
3196 if (mount_dir) {
3197 memset(fs->super->s_last_mounted, 0,
3198 sizeof(fs->super->s_last_mounted));
3199 strncpy((char *) fs->super->s_last_mounted, mount_dir,
3200 sizeof(fs->super->s_last_mounted));
3201 }
3202
3203 /* Set current default encryption algorithms for data and
3204 * filename encryption */
3205 if (ext2fs_has_feature_encrypt(fs->super)) {
3206 fs->super->s_encrypt_algos[0] =
3207 EXT4_ENCRYPTION_MODE_AES_256_XTS;
3208 fs->super->s_encrypt_algos[1] =
3209 EXT4_ENCRYPTION_MODE_AES_256_CTS;
3210 }
3211
3212 if (ext2fs_has_feature_metadata_csum(fs->super))
3213 fs->super->s_checksum_type = EXT2_CRC32C_CHKSUM;
3214
3215 if (!quiet || noaction)
3216 show_stats(fs);
3217
3218 if (noaction)
3219 exit(0);
3220
3221 if (ext2fs_has_feature_journal_dev(fs->super)) {
3222 create_journal_dev(fs);
3223 printf("\n");
3224 exit(ext2fs_close_free(&fs) ? 1 : 0);
3225 }
3226
3227 if (bad_blocks_filename)
3228 read_bb_file(fs, &bb_list, bad_blocks_filename);
3229 if (cflag)
3230 test_disk(fs, &bb_list);
3231 handle_bad_blocks(fs, bb_list);
3232
3233 fs->stride = fs_stride = fs->super->s_raid_stride;
3234 if (!quiet)
3235 printf("%s", _("Allocating group tables: "));
3236 if (ext2fs_has_feature_flex_bg(fs->super) &&
3237 packed_meta_blocks)
3238 retval = packed_allocate_tables(fs);
3239 else
3240 retval = ext2fs_allocate_tables(fs);
3241 if (retval) {
3242 com_err(program_name, retval, "%s",
3243 _("while trying to allocate filesystem tables"));
3244 exit(1);
3245 }
3246 if (!quiet)
3247 printf("%s", _("done \n"));
3248
3249 /*
3250 * Unmark bad blocks to calculate overhead, because metadata
3251 * blocks and bad blocks can land on the same allocation cluster.
3252 */
3253 if (bb_list) {
3254 retval = ext2fs_badblocks_list_iterate_begin(bb_list,
3255 &bb_iter);
3256 if (retval) {
3257 com_err("ext2fs_badblocks_list_iterate_begin", retval,
3258 "%s", _("while unmarking bad blocks"));
3259 exit(1);
3260 }
3261 while (ext2fs_badblocks_list_iterate(bb_iter, &blk))
3262 ext2fs_unmark_block_bitmap2(fs->block_map, blk);
3263 ext2fs_badblocks_list_iterate_end(bb_iter);
3264 }
3265
3266 retval = ext2fs_convert_subcluster_bitmap(fs, &fs->block_map);
3267 if (retval) {
3268 com_err(program_name, retval, "%s",
3269 _("\n\twhile converting subcluster bitmap"));
3270 exit(1);
3271 }
3272
3273 retval = ext2fs_count_used_clusters(fs, fs->super->s_first_data_block,
3274 ext2fs_blocks_count(fs->super) - 1,
3275 &overhead);
3276 if (retval) {
3277 com_err(program_name, retval, "%s",
3278 _("while calculating overhead"));
3279 exit(1);
3280 }
3281
3282 if (bb_list) {
3283 retval = ext2fs_badblocks_list_iterate_begin(bb_list,
3284 &bb_iter);
3285 if (retval) {
3286 com_err("ext2fs_badblocks_list_iterate_begin", retval,
3287 "%s", _("while marking bad blocks as used"));
3288 exit(1);
3289 }
3290 while (ext2fs_badblocks_list_iterate(bb_iter, &blk))
3291 ext2fs_mark_block_bitmap2(fs->block_map, blk);
3292 ext2fs_badblocks_list_iterate_end(bb_iter);
3293 }
3294
3295 if (super_only) {
3296 check_plausibility(device_name, CHECK_FS_EXIST, NULL);
3297 printf(_("%s may be further corrupted by superblock rewrite\n"),
3298 device_name);
3299 if (!force)
3300 proceed_question(proceed_delay);
3301 fs->super->s_state |= EXT2_ERROR_FS;
3302 fs->flags &= ~(EXT2_FLAG_IB_DIRTY|EXT2_FLAG_BB_DIRTY);
3303 /*
3304 * The command "mke2fs -S" is used to recover
3305 * corrupted file systems, so do not mark any of the
3306 * inodes as unused; we want e2fsck to consider all
3307 * inodes as potentially containing recoverable data.
3308 */
3309 if (ext2fs_has_group_desc_csum(fs)) {
3310 for (i = 0; i < fs->group_desc_count; i++)
3311 ext2fs_bg_itable_unused_set(fs, i, 0);
3312 }
3313 } else {
3314 /* rsv must be a power of two (64kB is MD RAID sb alignment) */
3315 blk64_t rsv = 65536 / fs->blocksize;
3316 blk64_t blocks = ext2fs_blocks_count(fs->super);
3317 blk64_t start;
3318 blk64_t ret_blk;
3319
3320 #ifdef ZAP_BOOTBLOCK
3321 zap_sector(fs, 0, 2);
3322 #endif
3323
3324 /*
3325 * Wipe out any old MD RAID (or other) metadata at the end
3326 * of the device. This will also verify that the device is
3327 * as large as we think. Be careful with very small devices.
3328 */
3329 start = (blocks & ~(rsv - 1));
3330 if (start > rsv)
3331 start -= rsv;
3332 if (start > 0)
3333 retval = ext2fs_zero_blocks2(fs, start, blocks - start,
3334 &ret_blk, NULL);
3335
3336 if (retval) {
3337 com_err(program_name, retval,
3338 _("while zeroing block %llu at end of filesystem"),
3339 (unsigned long long) ret_blk);
3340 }
3341 write_inode_tables(fs, lazy_itable_init, itable_zeroed);
3342 create_root_dir(fs);
3343 create_lost_and_found(fs);
3344 reserve_inodes(fs);
3345 create_bad_block_inode(fs, bb_list);
3346 if (ext2fs_has_feature_resize_inode(fs->super)) {
3347 retval = ext2fs_create_resize_inode(fs);
3348 if (retval) {
3349 com_err("ext2fs_create_resize_inode", retval,
3350 "%s",
3351 _("while reserving blocks for online resize"));
3352 exit(1);
3353 }
3354 }
3355 }
3356
3357 if (journal_device) {
3358 ext2_filsys jfs;
3359
3360 if (!check_plausibility(journal_device, CHECK_BLOCK_DEV,
3361 NULL) && !force)
3362 proceed_question(proceed_delay);
3363 check_mount(journal_device, force, _("journal"));
3364
3365 retval = ext2fs_open(journal_device, EXT2_FLAG_RW|
3366 EXT2_FLAG_JOURNAL_DEV_OK, 0,
3367 fs->blocksize, unix_io_manager, &jfs);
3368 if (retval) {
3369 com_err(program_name, retval,
3370 _("while trying to open journal device %s\n"),
3371 journal_device);
3372 exit(1);
3373 }
3374 if (!quiet) {
3375 printf(_("Adding journal to device %s: "),
3376 journal_device);
3377 fflush(stdout);
3378 }
3379 retval = ext2fs_add_journal_device(fs, jfs);
3380 if(retval) {
3381 com_err (program_name, retval,
3382 _("\n\twhile trying to add journal to device %s"),
3383 journal_device);
3384 exit(1);
3385 }
3386 if (!quiet)
3387 printf("%s", _("done\n"));
3388 ext2fs_close_free(&jfs);
3389 free(journal_device);
3390 } else if ((journal_size) ||
3391 ext2fs_has_feature_journal(&fs_param)) {
3392 overhead += EXT2FS_NUM_B2C(fs, jparams.num_journal_blocks + jparams.num_fc_blocks);
3393 if (super_only) {
3394 printf("%s", _("Skipping journal creation in super-only mode\n"));
3395 fs->super->s_journal_inum = EXT2_JOURNAL_INO;
3396 goto no_journal;
3397 }
3398
3399 if (!jparams.num_journal_blocks) {
3400 ext2fs_clear_feature_journal(fs->super);
3401 goto no_journal;
3402 }
3403 if (!quiet) {
3404 printf(_("Creating journal (%u blocks): "),
3405 jparams.num_journal_blocks + jparams.num_fc_blocks);
3406 fflush(stdout);
3407 }
3408 retval = ext2fs_add_journal_inode3(fs, &jparams,
3409 journal_location,
3410 journal_flags);
3411 if (retval) {
3412 com_err(program_name, retval, "%s",
3413 _("\n\twhile trying to create journal"));
3414 exit(1);
3415 }
3416 if (!quiet)
3417 printf("%s", _("done\n"));
3418 }
3419 no_journal:
3420 if (!super_only &&
3421 ext2fs_has_feature_mmp(fs->super)) {
3422 retval = ext2fs_mmp_init(fs);
3423 if (retval) {
3424 fprintf(stderr, "%s",
3425 _("\nError while enabling multiple "
3426 "mount protection feature."));
3427 exit(1);
3428 }
3429 if (!quiet)
3430 printf(_("Multiple mount protection is enabled "
3431 "with update interval %d seconds.\n"),
3432 fs->super->s_mmp_update_interval);
3433 }
3434
3435 overhead += fs->super->s_first_data_block;
3436 if (!super_only)
3437 fs->super->s_overhead_clusters = overhead;
3438
3439 if (ext2fs_has_feature_bigalloc(&fs_param))
3440 fix_cluster_bg_counts(fs);
3441 if (ext2fs_has_feature_quota(&fs_param))
3442 create_quota_inodes(fs);
3443
3444 retval = mk_hugefiles(fs, device_name);
3445 if (retval)
3446 com_err(program_name, retval, "while creating huge files");
3447 /* Copy files from the specified directory */
3448 if (src_root_dir) {
3449 if (!quiet)
3450 printf("%s", _("Copying files into the device: "));
3451
3452 retval = populate_fs(fs, EXT2_ROOT_INO, src_root_dir,
3453 EXT2_ROOT_INO);
3454 if (retval) {
3455 com_err(program_name, retval, "%s",
3456 _("while populating file system"));
3457 exit(1);
3458 } else if (!quiet)
3459 printf("%s", _("done\n"));
3460 }
3461
3462 if (!quiet)
3463 printf("%s", _("Writing superblocks and "
3464 "filesystem accounting information: "));
3465 checkinterval = fs->super->s_checkinterval;
3466 max_mnt_count = fs->super->s_max_mnt_count;
3467 retval = ext2fs_close_free(&fs);
3468 if (retval) {
3469 com_err(program_name, retval, "%s",
3470 _("while writing out and closing file system"));
3471 retval = 1;
3472 } else if (!quiet) {
3473 printf("%s", _("done\n\n"));
3474 if (!getenv("MKE2FS_SKIP_CHECK_MSG"))
3475 print_check_message(max_mnt_count, checkinterval);
3476 }
3477
3478 remove_error_table(&et_ext2_error_table);
3479 remove_error_table(&et_prof_error_table);
3480 profile_release(profile);
3481 for (i=0; fs_types[i]; i++)
3482 free(fs_types[i]);
3483 free(fs_types);
3484 return retval;
3485 }
3486