source: mainline/uspace/app/mkfat/mkfat.c@ 8d2dd7f2

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 8d2dd7f2 was 8d2dd7f2, checked in by Jakub Jermar <jakub@…>, 9 years ago

Reduce the number of files that include <sys/types.h>

  • Property mode set to 100644
File size: 10.3 KB
RevLine 
[dccf721]1/*
2 * Copyright (c) 2010 Jiri Svoboda
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup fs
30 * @{
31 */
32
33/**
34 * @file mkfat.c
35 * @brief Tool for creating new FAT file systems.
36 *
[602c3d8c]37 * Currently we can create 12/16/32-bit FAT.
[dccf721]38 */
39
40#include <stdio.h>
41#include <stdlib.h>
[8d2dd7f2]42#include <stdint.h>
[f73b291]43#include <block.h>
[dccf721]44#include <mem.h>
[15f3c3f]45#include <loc.h>
[dccf721]46#include <byteorder.h>
[1ccafee]47#include <sys/typefmt.h>
[fb6f1a5]48#include <inttypes.h>
[dccf721]49#include <errno.h>
50#include "fat.h"
51
52#define NAME "mkfat"
53
54/** Divide and round up. */
55#define div_round_up(a, b) (((a) + (b) - 1) / (b))
56
[602c3d8c]57/** Default file-system parameters */
[dccf721]58enum {
[602c3d8c]59 default_sector_size = 512,
60 default_sectors_per_cluster = 4,
61 default_fat_count = 2,
62 default_reserved_clusters = 2,
63 default_media_descriptor = 0xF8 /**< fixed disk */
[dccf721]64};
65
66/** Configurable file-system parameters */
67typedef struct fat_cfg {
[602c3d8c]68 int fat_type; /* FAT12 = 12, FAT16 = 16, FAT32 = 32 */
69 size_t sector_size;
[dccf721]70 uint32_t total_sectors;
71 uint16_t root_ent_max;
[602c3d8c]72 uint32_t addt_res_sectors;
73 uint8_t sectors_per_cluster;
[dccf721]74
75 uint16_t reserved_sectors;
[602c3d8c]76 uint32_t rootdir_sectors;
[dccf721]77 uint32_t fat_sectors;
[602c3d8c]78 uint32_t total_clusters;
79 uint8_t fat_count;
80} fat_cfg_t;
[dccf721]81
[9245413]82static void syntax_print(void);
83
[602c3d8c]84static int fat_params_compute(struct fat_cfg *cfg);
[375ab5e]85static int fat_blocks_write(struct fat_cfg const *cfg, service_id_t service_id);
[602c3d8c]86static void fat_bootsec_create(struct fat_cfg const *cfg, struct fat_bs *bs);
[dccf721]87
88int main(int argc, char **argv)
89{
90 struct fat_cfg cfg;
91
92 int rc;
93 char *dev_path;
[15f3c3f]94 service_id_t service_id;
[dccf721]95 char *endptr;
[ed903174]96 aoff64_t dev_nblocks;
[dccf721]97
[602c3d8c]98 cfg.sector_size = default_sector_size;
99 cfg.sectors_per_cluster = default_sectors_per_cluster;
100 cfg.fat_count = default_fat_count;
[dccf721]101 cfg.total_sectors = 0;
102 cfg.addt_res_sectors = 0;
103 cfg.root_ent_max = 128;
[ed9bf14]104 cfg.fat_type = FATAUTO;
[dccf721]105
106 if (argc < 2) {
[9245413]107 printf(NAME ": Error, argument missing.\n");
108 syntax_print();
[dccf721]109 return 1;
110 }
111
112 --argc; ++argv;
113 if (str_cmp(*argv, "--size") == 0) {
114 --argc; ++argv;
115 if (*argv == NULL) {
[9245413]116 printf(NAME ": Error, argument missing.\n");
117 syntax_print();
[dccf721]118 return 1;
119 }
120
121 cfg.total_sectors = strtol(*argv, &endptr, 10);
122 if (*endptr != '\0') {
[9245413]123 printf(NAME ": Error, invalid argument.\n");
124 syntax_print();
[dccf721]125 return 1;
126 }
127
128 --argc; ++argv;
129 }
130
[602c3d8c]131 if (str_cmp(*argv, "--type") == 0) {
132 --argc; ++argv;
133 if (*argv == NULL) {
134 printf(NAME ": Error, argument missing.\n");
135 syntax_print();
136 return 1;
137 }
138
139 cfg.fat_type = strtol(*argv, &endptr, 10);
140 if (*endptr != '\0') {
141 printf(NAME ": Error, invalid argument.\n");
142 syntax_print();
143 return 1;
144 }
145
146 --argc; ++argv;
147 }
148
[dccf721]149 if (argc != 1) {
[9245413]150 printf(NAME ": Error, unexpected argument.\n");
151 syntax_print();
[dccf721]152 return 1;
153 }
154
155 dev_path = *argv;
[602c3d8c]156 printf("Device: %s\n", dev_path);
[dccf721]157
[15f3c3f]158 rc = loc_service_get_id(dev_path, &service_id, 0);
[dccf721]159 if (rc != EOK) {
[9245413]160 printf(NAME ": Error resolving device `%s'.\n", dev_path);
[dccf721]161 return 2;
162 }
163
[fc22069]164 rc = block_init(service_id, 2048);
[dccf721]165 if (rc != EOK) {
166 printf(NAME ": Error initializing libblock.\n");
167 return 2;
168 }
169
[375ab5e]170 rc = block_get_bsize(service_id, &cfg.sector_size);
[dccf721]171 if (rc != EOK) {
172 printf(NAME ": Error determining device block size.\n");
173 return 2;
174 }
175
[15f3c3f]176 rc = block_get_nblocks(service_id, &dev_nblocks);
[08232ee]177 if (rc != EOK) {
178 printf(NAME ": Warning, failed to obtain block device size.\n");
179 } else {
[ed903174]180 printf(NAME ": Block device has %" PRIuOFF64 " blocks.\n",
[1ccafee]181 dev_nblocks);
[81e20c7]182 if (!cfg.total_sectors || dev_nblocks < cfg.total_sectors)
[c80100f]183 cfg.total_sectors = dev_nblocks;
[08232ee]184 }
185
[dccf721]186 if (cfg.total_sectors == 0) {
187 printf(NAME ": Error. You must specify filesystem size.\n");
188 return 1;
189 }
190
[ed9bf14]191 if (cfg.fat_type != FATAUTO && cfg.fat_type != FAT12 && cfg.fat_type != FAT16 &&
192 cfg.fat_type != FAT32) {
[462b418]193 printf(NAME ": Error. Unknown FAT type.\n");
194 return 2;
195 }
196
[602c3d8c]197 printf(NAME ": Creating FAT%d filesystem on device %s.\n", cfg.fat_type, dev_path);
[dccf721]198
[602c3d8c]199 rc = fat_params_compute(&cfg);
[dccf721]200 if (rc != EOK) {
201 printf(NAME ": Invalid file-system parameters.\n");
202 return 2;
203 }
204
[375ab5e]205 rc = fat_blocks_write(&cfg, service_id);
[dccf721]206 if (rc != EOK) {
207 printf(NAME ": Error writing device.\n");
208 return 2;
209 }
210
[15f3c3f]211 block_fini(service_id);
[dccf721]212 printf("Success.\n");
213
214 return 0;
215}
216
[9245413]217static void syntax_print(void)
218{
[26ad20b]219 printf("syntax: mkfat [--size <sectors>] [--type 12|16|32] <device_name>\n");
[9245413]220}
221
[dccf721]222/** Derive sizes of different filesystem structures.
223 *
224 * This function concentrates all the different computations of FAT
225 * file system params.
226 */
[602c3d8c]227static int fat_params_compute(struct fat_cfg *cfg)
[dccf721]228{
229 uint32_t fat_bytes;
230 uint32_t non_data_sectors_lb;
231
232 /*
[26ad20b]233 * Make a conservative guess on the FAT size needed for the file
234 * system. The optimum could be potentially smaller since we
235 * do not subtract size of the FAT itself when computing the
236 * size of the data region.
237 */
[602c3d8c]238
239 cfg->reserved_sectors = 1 + cfg->addt_res_sectors;
240 if (cfg->fat_type != FAT32) {
241 cfg->rootdir_sectors = div_round_up(cfg->root_ent_max * DIRENT_SIZE,
242 cfg->sector_size);
[26ad20b]243 } else
[602c3d8c]244 cfg->rootdir_sectors = 0;
245 non_data_sectors_lb = cfg->reserved_sectors + cfg->rootdir_sectors;
[dccf721]246
[602c3d8c]247 cfg->total_clusters = div_round_up(cfg->total_sectors - non_data_sectors_lb,
248 cfg->sectors_per_cluster);
[dccf721]249
[ed9bf14]250 if (cfg->total_clusters <= FAT12_CLST_MAX) {
251 if (cfg->fat_type == FATAUTO)
252 cfg->fat_type = FAT12;
253 else if (cfg->fat_type != FAT12)
254 return EINVAL;
255 } else if (cfg->total_clusters <= FAT16_CLST_MAX) {
256 if (cfg->fat_type == FATAUTO)
257 cfg->fat_type = FAT16;
258 else if (cfg->fat_type != FAT16)
259 return EINVAL;
260 } else {
261 if (cfg->fat_type == FATAUTO)
262 cfg->fat_type = FAT32;
263 else if (cfg->fat_type != FAT32)
264 return EINVAL;
265 }
[dccf721]266
[51d0ee9]267 fat_bytes = div_round_up((cfg->total_clusters + 2) *
268 FAT_CLUSTER_DOUBLE_SIZE(cfg->fat_type), 2);
[602c3d8c]269 cfg->fat_sectors = div_round_up(fat_bytes, cfg->sector_size);
[dccf721]270
271 return EOK;
272}
273
274/** Create file system with the given parameters. */
[375ab5e]275static int fat_blocks_write(struct fat_cfg const *cfg, service_id_t service_id)
[dccf721]276{
[ed903174]277 aoff64_t addr;
[dccf721]278 uint8_t *buffer;
279 int i;
280 uint32_t j;
281 int rc;
282 struct fat_bs bs;
283
[602c3d8c]284 fat_bootsec_create(cfg, &bs);
[dccf721]285
[15f3c3f]286 rc = block_write_direct(service_id, BS_BLOCK, 1, &bs);
[dccf721]287 if (rc != EOK)
288 return EIO;
289
290 addr = BS_BLOCK + 1;
291
[602c3d8c]292 buffer = calloc(cfg->sector_size, 1);
[dccf721]293 if (buffer == NULL)
294 return ENOMEM;
[602c3d8c]295 memset(buffer, 0, cfg->sector_size);
[dccf721]296
297 /* Reserved sectors */
[602c3d8c]298 for (i = 0; i < cfg->reserved_sectors - 1; ++i) {
[15f3c3f]299 rc = block_write_direct(service_id, addr, 1, buffer);
[dccf721]300 if (rc != EOK)
301 return EIO;
302
303 ++addr;
304 }
305
306 /* File allocation tables */
[602c3d8c]307 for (i = 0; i < cfg->fat_count; ++i) {
[dccf721]308 printf("Writing allocation table %d.\n", i + 1);
309
[602c3d8c]310 for (j = 0; j < cfg->fat_sectors; ++j) {
311 memset(buffer, 0, cfg->sector_size);
[dccf721]312 if (j == 0) {
[602c3d8c]313 buffer[0] = default_media_descriptor;
[dccf721]314 buffer[1] = 0xFF;
315 buffer[2] = 0xFF;
[602c3d8c]316 if (cfg->fat_type == FAT16) {
317 buffer[3] = 0xFF;
318 } else if (cfg->fat_type == FAT32) {
319 buffer[3] = 0x0F;
320 buffer[4] = 0xFF;
321 buffer[5] = 0xFF;
322 buffer[6] = 0xFF;
323 buffer[7] = 0x0F;
324 buffer[8] = 0xF8;
325 buffer[9] = 0xFF;
326 buffer[10] = 0xFF;
327 buffer[11] = 0x0F;
328 }
[dccf721]329 }
330
[15f3c3f]331 rc = block_write_direct(service_id, addr, 1, buffer);
[dccf721]332 if (rc != EOK)
333 return EIO;
334
335 ++addr;
336 }
337 }
338
[602c3d8c]339 /* Root directory */
[dccf721]340 printf("Writing root directory.\n");
[602c3d8c]341 memset(buffer, 0, cfg->sector_size);
342 if (cfg->fat_type != FAT32) {
343 size_t idx;
344 for (idx = 0; idx < cfg->rootdir_sectors; ++idx) {
[375ab5e]345 rc = block_write_direct(service_id, addr, 1, buffer);
[602c3d8c]346 if (rc != EOK)
347 return EIO;
[dccf721]348
[602c3d8c]349 ++addr;
350 }
351 } else {
[26ad20b]352 for (i = 0; i < cfg->sectors_per_cluster; i++) {
[375ab5e]353 rc = block_write_direct(service_id, addr, 1, buffer);
[602c3d8c]354 if (rc != EOK)
355 return EIO;
[dccf721]356
[602c3d8c]357 ++addr;
358 }
[dccf721]359 }
360
361 free(buffer);
362
363 return EOK;
364}
365
366/** Construct boot sector with the given parameters. */
[602c3d8c]367static void fat_bootsec_create(struct fat_cfg const *cfg, struct fat_bs *bs)
[dccf721]368{
369 memset(bs, 0, sizeof(*bs));
370
371 bs->ji[0] = 0xEB;
372 bs->ji[1] = 0x3C;
373 bs->ji[2] = 0x90;
374
375 memcpy(bs->oem_name, "HELENOS ", 8);
376
377 /* BIOS Parameter Block */
[602c3d8c]378 bs->bps = host2uint16_t_le(cfg->sector_size);
379 bs->spc = cfg->sectors_per_cluster;
380 bs->rscnt = host2uint16_t_le(cfg->reserved_sectors);
381 bs->fatcnt = cfg->fat_count;
382 bs->root_ent_max = host2uint16_t_le(cfg->root_ent_max);
383
384 if (cfg->total_sectors < 0x10000) {
385 bs->totsec16 = host2uint16_t_le(cfg->total_sectors);
386 bs->totsec32 = 0;
387 } else {
388 bs->totsec16 = 0;
389 bs->totsec32 = host2uint32_t_le(cfg->total_sectors);
390 }
[dccf721]391
[602c3d8c]392 bs->mdesc = default_media_descriptor;
[dccf721]393 bs->sec_per_track = host2uint16_t_le(63);
[602c3d8c]394 bs->signature = host2uint16_t_be(0x55AA);
[dccf721]395 bs->headcnt = host2uint16_t_le(6);
396 bs->hidden_sec = host2uint32_t_le(0);
397
[602c3d8c]398 if (cfg->fat_type == FAT32) {
399 bs->sec_per_fat = 0;
400 bs->fat32.sectors_per_fat = host2uint32_t_le(cfg->fat_sectors);
[dccf721]401
[602c3d8c]402 bs->fat32.pdn = 0x80;
403 bs->fat32.ebs = 0x29;
404 bs->fat32.id = host2uint32_t_be(0x12345678);
405 bs->fat32.root_cluster = 2;
[dccf721]406
[602c3d8c]407 memcpy(bs->fat32.label, "HELENOS_NEW", 11);
408 memcpy(bs->fat32.type, "FAT32 ", 8);
409 } else {
410 bs->sec_per_fat = host2uint16_t_le(cfg->fat_sectors);
411 bs->pdn = 0x80;
412 bs->ebs = 0x29;
413 bs->id = host2uint32_t_be(0x12345678);
414
415 memcpy(bs->label, "HELENOS_NEW", 11);
416 memcpy(bs->type, "FAT ", 8);
417 }
[dccf721]418}
419
420/**
421 * @}
422 */
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