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Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +01001/* vi: set sw=4 ts=4: */
2/*
3 * mkfs_reiser: utility to create ReiserFS filesystem
4 *
5 * Busybox'ed (2009) by Vladimir Dronnikov <dronnikov@gmail.com>
6 *
Denys Vlasenko0ef64bd2010-08-16 20:14:46 +02007 * Licensed under GPLv2, see file LICENSE in this source tree.
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +01008 */
Pere Orga5bc8c002011-04-11 03:29:49 +02009
10//usage:#define mkfs_reiser_trivial_usage
11//usage: "[-f] [-l LABEL] BLOCKDEV [4K-BLOCKS]"
12//usage:#define mkfs_reiser_full_usage "\n\n"
13//usage: "Make a ReiserFS V3 filesystem\n"
14//usage: "\nOptions:"
15//usage: "\n -f Force"
16//usage: "\n -l LBL Volume label"
17
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +010018#include "libbb.h"
19#include <linux/fs.h>
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +010020
21char BUG_wrong_field_size(void);
22#define STORE_LE(field, value) \
23do { \
24 if (sizeof(field) == 4) \
Denys Vlasenko67743862010-05-09 00:13:40 +020025 field = SWAP_LE32(value); \
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +010026 else if (sizeof(field) == 2) \
Denys Vlasenko67743862010-05-09 00:13:40 +020027 field = SWAP_LE16(value); \
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +010028 else if (sizeof(field) == 1) \
29 field = (value); \
30 else \
31 BUG_wrong_field_size(); \
32} while (0)
33
34#define FETCH_LE32(field) \
Denys Vlasenko67743862010-05-09 00:13:40 +020035 (sizeof(field) == 4 ? SWAP_LE32(field) : BUG_wrong_field_size())
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +010036
37struct journal_params {
38 uint32_t jp_journal_1st_block; /* where does journal start from on its device */
39 uint32_t jp_journal_dev; /* journal device st_rdev */
40 uint32_t jp_journal_size; /* size of the journal on FS creation. used to make sure they don't overflow it */
41 uint32_t jp_journal_trans_max; /* max number of blocks in a transaction. */
42 uint32_t jp_journal_magic; /* random value made on fs creation (this was sb_journal_block_count) */
43 uint32_t jp_journal_max_batch; /* max number of blocks to batch into a trans */
44 uint32_t jp_journal_max_commit_age; /* in seconds, how old can an async commit be */
45 uint32_t jp_journal_max_trans_age; /* in seconds, how old can a transaction be */
46};
47
48struct reiserfs_journal_header {
49 uint32_t jh_last_flush_trans_id; /* id of last fully flushed transaction */
50 uint32_t jh_first_unflushed_offset; /* offset in the log of where to start replay after a crash */
51 uint32_t jh_mount_id;
52 struct journal_params jh_journal;
53 uint32_t jh_last_check_mount_id; /* the mount id of the fs during the last reiserfsck --check. */
54};
55
56struct reiserfs_super_block {
57 uint32_t sb_block_count; /* 0 number of block on data device */
58 uint32_t sb_free_blocks; /* 4 free blocks count */
59 uint32_t sb_root_block; /* 8 root of the tree */
60
61 struct journal_params sb_journal; /* 12 */
62
63 uint16_t sb_blocksize; /* 44 */
64 uint16_t sb_oid_maxsize; /* 46 max size of object id array, see get_objectid() commentary */
65 uint16_t sb_oid_cursize; /* 48 current size of object id array */
66 uint16_t sb_umount_state; /* 50 this is set to 1 when filesystem was umounted, to 2 - when not */
67
68 char s_magic[10]; /* 52 "ReIsErFs" or "ReIsEr2Fs" or "ReIsEr3Fs" */
69 uint16_t sb_fs_state; /* 62 it is set to used by fsck to mark which phase of rebuilding is done (used for fsck debugging) */
70 uint32_t sb_hash_function_code; /* 64 code of fuction which was/is/will be used to sort names in a directory. See codes in above */
71 uint16_t sb_tree_height; /* 68 height of filesytem tree. Tree consisting of only one root block has 2 here */
72 uint16_t sb_bmap_nr; /* 70 amount of bitmap blocks needed to address each block of file system */
73 uint16_t sb_version; /* 72 this field is only reliable on filesystem with non-standard journal */
74 uint16_t sb_reserved_for_journal; /* 74 size in blocks of journal area on main device, we need to keep after non-standard journal relocation */
75 uint32_t sb_inode_generation; /* 76 */
76 uint32_t sb_flags; /* 80 Right now used only by inode-attributes, if enabled */
77 unsigned char s_uuid[16]; /* 84 filesystem unique identifier */
78 unsigned char s_label[16]; /* 100 filesystem volume label */
79 uint16_t sb_mnt_count; /* 116 */
80 uint16_t sb_max_mnt_count; /* 118 */
81 uint32_t sb_lastcheck; /* 120 */
82 uint32_t sb_check_interval; /* 124 */
83/* zero filled by mkreiserfs and reiserfs_convert_objectid_map_v1() so any additions must be updated there as well. */
84 char s_unused[76]; /* 128 */
85 /* 204 */
86};
87
88/* Header of a disk block. More precisely, header of a formatted leaf
89 or internal node, and not the header of an unformatted node. */
90struct block_head {
91 uint16_t blk2_level; /* Level of a block in the tree. */
92 uint16_t blk2_nr_item; /* Number of keys/items in a block. */
93 uint16_t blk2_free_space; /* Block free space in bytes. */
94 uint16_t blk_reserved;
95 uint32_t reserved[4];
96};
97
98#define REISERFS_DISK_OFFSET_IN_BYTES (64 * 1024)
99
100#define REISERFS_3_6_SUPER_MAGIC_STRING "ReIsEr2Fs"
101#define REISERFS_FORMAT_3_6 2
102#define DEFAULT_MAX_MNT_COUNT 30 /* 30 mounts */
103#define DEFAULT_CHECK_INTERVAL (180 * 60 * 60 * 24) /* 180 days */
104
105#define FS_CLEANLY_UMOUNTED 1 /* this was REISERFS_VALID_FS */
106
107#define JOURNAL_MIN_SIZE 512
108/* biggest possible single transaction, don't change for now (8/3/99) */
109#define JOURNAL_TRANS_MAX 1024
110#define JOURNAL_TRANS_MIN 256 /* need to check whether it works */
111#define JOURNAL_DEFAULT_RATIO 8 /* default journal size / max trans length */
112#define JOURNAL_MIN_RATIO 2
113/* max blocks to batch into one transaction, don't make this any bigger than 900 */
114#define JOURNAL_MAX_BATCH 900
115#define JOURNAL_MAX_COMMIT_AGE 30
116
117
118// Standard mkreiserfs 3.6.21:
119// -b | --block-size N size of file-system block, in bytes
120// -j | --journal-device FILE path to separate device to hold journal
121// -s | --journal-size N size of the journal in blocks
122// -o | --journal-offset N offset of the journal from the start of
123// the separate device, in blocks
124// -t | --transaction-max-size N maximal size of transaction, in blocks
125// -B | --badblocks file store all bad blocks given in file on the fs
126// -h | --hash rupasov|tea|r5 hash function to use by default
127// -u | --uuid UUID store UUID in the superblock
128// -l | --label LABEL store LABEL in the superblock
129// --format 3.5|3.6 old 3.5 format or newer 3.6
130// -f | --force specified once, make mkreiserfs the whole
131// disk, not block device or mounted partition;
132// specified twice, do not ask for confirmation
133// -q | --quiet quiet work without messages, progress and
134// questions. Useful if run in a script. For use
135// by end users only.
136// -d | --debug print debugging information during mkreiser
137// -V print version and exit
138
139// Options not commented below are taken but silently ignored:
140enum {
141 OPT_b = 1 << 0,
142 OPT_j = 1 << 1,
143 OPT_s = 1 << 2,
144 OPT_o = 1 << 3,
145 OPT_t = 1 << 4,
146 OPT_B = 1 << 5,
147 OPT_h = 1 << 6,
148 OPT_u = 1 << 7,
149 OPT_l = 1 << 8, // label
150 OPT_f = 1 << 9, // ask no questions
151 OPT_q = 1 << 10,
152 OPT_d = 1 << 11,
153 //OPT_V = 1 << 12, // -V version. bbox applets don't support that
154};
155
156int mkfs_reiser_main(int argc, char **argv) MAIN_EXTERNALLY_VISIBLE;
157int mkfs_reiser_main(int argc UNUSED_PARAM, char **argv)
158{
159 unsigned blocksize = 4096;
160 unsigned journal_blocks = 8192;
161 unsigned blocks, bitmap_blocks, i, block;
162 time_t timestamp;
163 const char *label = "";
164 struct stat st;
165 int fd;
166 uint8_t *buf;
167 struct reiserfs_super_block *sb;
168 struct journal_params *jp;
169 struct block_head *root;
170
171 // using global "option_mask32" instead of local "opts":
172 // we are register starved here
173 opt_complementary = "-1:b+";
174 /*opts =*/ getopt32(argv, "b:j:s:o:t:B:h:u:l:fqd",
175 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, &label);
176 argv += optind; // argv[0] -- device
177
178 // check the device is a block device
179 fd = xopen(argv[0], O_WRONLY | O_EXCL);
Denys Vlasenko8d3e2252010-08-31 12:42:06 +0200180 xfstat(fd, &st, argv[0]);
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +0100181 if (!S_ISBLK(st.st_mode) && !(option_mask32 & OPT_f))
Denys Vlasenko8d3e2252010-08-31 12:42:06 +0200182 bb_error_msg_and_die("%s: not a block device", argv[0]);
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +0100183
184 // check if it is mounted
185 // N.B. what if we format a file? find_mount_point will return false negative since
Denys Vlasenko40e7d252010-02-01 23:48:27 +0100186 // it is loop block device which is mounted!
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +0100187 if (find_mount_point(argv[0], 0))
188 bb_error_msg_and_die("can't format mounted filesystem");
189
190 // open the device, get size in blocks
Denys Vlasenko40e7d252010-02-01 23:48:27 +0100191 blocks = get_volume_size_in_bytes(fd, argv[1], blocksize, /*extend:*/ 1) / blocksize;
Vladimir Dronnikov0d8ea642009-11-02 10:41:46 +0100192
193 // block number sanity check
194 // we have a limit: skipped area, super block, journal and root block
195 // all have to be addressed by one first bitmap
196 block = REISERFS_DISK_OFFSET_IN_BYTES / blocksize // boot area
197 + 1 // sb
198 + 1 // bitmap#0
199 + journal_blocks+1 // journal
200 ;
201
202 // count overhead
203 bitmap_blocks = (blocks - 1) / (blocksize * 8) + 1;
204 i = block + bitmap_blocks;
205
206 // check overhead
207 if (MIN(blocksize * 8, blocks) < i)
208 bb_error_msg_and_die("need >= %u blocks", i);
209
210 // ask confirmation?
211 // TODO: ???
212
213 // wipe out first REISERFS_DISK_OFFSET_IN_BYTES of device
214 // TODO: do we really need to wipe?!
215 xlseek(fd, REISERFS_DISK_OFFSET_IN_BYTES, SEEK_SET);
216
217 // fill superblock
218 sb = (struct reiserfs_super_block *)xzalloc(blocksize);
219 // block count
220 STORE_LE(sb->sb_block_count, blocks);
221 STORE_LE(sb->sb_free_blocks, blocks - i);
222 // TODO: decypher!
223 STORE_LE(sb->sb_root_block, block);
224 // fill journal related fields
225 jp = &sb->sb_journal;
226 STORE_LE(jp->jp_journal_1st_block, REISERFS_DISK_OFFSET_IN_BYTES / blocksize + 1/*sb*/ + 1/*bmp#0*/);
227 timestamp = time(NULL);
228 srandom(timestamp);
229 STORE_LE(jp->jp_journal_magic, random());
230 STORE_LE(jp->jp_journal_size, journal_blocks);
231 STORE_LE(jp->jp_journal_trans_max, JOURNAL_TRANS_MAX);
232 STORE_LE(jp->jp_journal_max_batch, JOURNAL_MAX_BATCH);
233 STORE_LE(jp->jp_journal_max_commit_age, JOURNAL_MAX_COMMIT_AGE);
234 // sizes
235 STORE_LE(sb->sb_blocksize, blocksize);
236 STORE_LE(sb->sb_oid_maxsize, (blocksize - sizeof(*sb)) / sizeof(uint32_t) / 2 * 2);
237 STORE_LE(sb->sb_oid_cursize, 2); // "." and ".."
238 strcpy(sb->s_magic, REISERFS_3_6_SUPER_MAGIC_STRING);
239 STORE_LE(sb->sb_bmap_nr, (bitmap_blocks > ((1LL << 16) - 1)) ? 0 : bitmap_blocks);
240 // misc
241 STORE_LE(sb->sb_version, REISERFS_FORMAT_3_6);
242 STORE_LE(sb->sb_lastcheck, timestamp);
243 STORE_LE(sb->sb_check_interval, DEFAULT_CHECK_INTERVAL);
244 STORE_LE(sb->sb_mnt_count, 1);
245 STORE_LE(sb->sb_max_mnt_count, DEFAULT_MAX_MNT_COUNT);
246 STORE_LE(sb->sb_umount_state, FS_CLEANLY_UMOUNTED);
247 STORE_LE(sb->sb_tree_height, 2);
248 STORE_LE(sb->sb_hash_function_code, 3); // R5_HASH
249 STORE_LE(sb->sb_flags, 1);
250 //STORE_LE(sb->sb_reserved_for_journal, 0);
251 // create UUID
252 generate_uuid(sb->s_uuid);
253 // write the label
254 safe_strncpy((char *)sb->s_label, label, sizeof(sb->s_label));
255
256 // TODO: EMPIRIC! ENDIANNESS!
257 // superblock has only 204 bytes. What are these?
258 buf = (uint8_t *)sb;
259 buf[205] = 1;
260 buf[209] = 3;
261
262 // put superblock
263 xwrite(fd, sb, blocksize);
264
265 // create bitmaps
266 buf = xzalloc(blocksize);
267
268 // bitmap #0 uses initial "block"+1 blocks
269 i = block + 1;
270 memset(buf, 0xFF, i / 8);
271 buf[i / 8] = (1 << (i & 7)) - 1; //0..7 => 00000000..01111111
272 // mark trailing absent blocks, if any
273 if (blocks < 8*blocksize) {
274 unsigned n = 8*blocksize - blocks;
275 i = n / 8;
276 buf[blocksize - i - 1] |= 0x7F00 >> (n & 7); //0..7 => 00000000..11111110
277 memset(buf + blocksize - i, 0xFF, i); // N.B. no overflow here!
278 }
279 // put bitmap #0
280 xwrite(fd, buf, blocksize);
281
282 // now go journal blocks
283 memset(buf, 0, blocksize);
284 for (i = 0; i < journal_blocks; i++)
285 xwrite(fd, buf, blocksize);
286 // dump journal control block
287 memcpy(&((struct reiserfs_journal_header *)buf)->jh_journal, &sb->sb_journal, sizeof(sb->sb_journal));
288 xwrite(fd, buf, blocksize);
289
290 // other bitmaps are in every (8*blocksize)-th block
291 // N.B. they use the only block -- namely bitmap itself!
292 buf[0] = 0x01;
293 // put bitmaps
294 for (i = 1; i < bitmap_blocks; i++) {
295 xlseek(fd, i*8*blocksize * blocksize, SEEK_SET);
296 // mark trailing absent blocks, if any
297 if (i == bitmap_blocks - 1 && (blocks % (8*blocksize))) {
298 unsigned n = 8*blocksize - blocks % (8*blocksize);
299 unsigned j = n / 8;
300 buf[blocksize - j - 1] |= 0x7F00 >> (n & 7); //0..7 => 00000000..11111110
301 memset(buf + blocksize - j, 0xFF, j); // N.B. no overflow here!
302 }
303 xwrite(fd, buf, blocksize);
304 }
305
306 // fill root block
307 // block head
308 memset(buf, 0, blocksize);
309 root = (struct block_head *)buf;
310 STORE_LE(root->blk2_level, 1); // leaf node
311 STORE_LE(root->blk2_nr_item, 2); // "." and ".."
312 STORE_LE(root->blk2_free_space, blocksize - sizeof(struct block_head));
313 // item head
314 // root directory
315 // TODO: EMPIRIC! ENDIANNESS!
316 // TODO: indented assignments seem to be timestamps
317buf[4] = 0134;
318buf[24] = 01;
319buf[28] = 02;
320buf[42] = 054;
321buf[44] = 0324;
322buf[45] = 017;
323buf[46] = 01;
324buf[48] = 01;
325buf[52] = 02;
326buf[56] = 01;
327buf[60] = 0364;
328buf[61] = 01;
329buf[64] = 02;
330buf[66] = 060;
331buf[68] = 0244;
332buf[69] = 017;
333buf[4004] = 01;
334buf[4008] = 01;
335buf[4012] = 02;
336buf[4016] = 050;
337buf[4018] = 04;
338buf[4020] = 02;
339buf[4028] = 01;
340buf[4032] = 040;
341buf[4034] = 04;
342
343buf[4036] = 056; buf[4037] = 056; // ".."
344buf[4044] = 056; // "."
345
346buf[4052] = 0355;
347buf[4053] = 0101;
348buf[4056] = 03;
349buf[4060] = 060;
350 buf[4076] = 0173;
351 buf[4077] = 0240;
352 buf[4078] = 0344;
353 buf[4079] = 0112;
354 buf[4080] = 0173;
355 buf[4081] = 0240;
356 buf[4082] = 0344;
357 buf[4083] = 0112;
358 buf[4084] = 0173;
359 buf[4085] = 0240;
360 buf[4086] = 0344;
361 buf[4087] = 0112;
362buf[4088] = 01;
363
364 // put root block
365 xlseek(fd, block * blocksize, SEEK_SET);
366 xwrite(fd, buf, blocksize);
367
368 // cleanup
369 if (ENABLE_FEATURE_CLEAN_UP) {
370 free(buf);
371 free(sb);
372 }
373
374 xclose(fd);
375 return EXIT_SUCCESS;
376}