1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Copyright (C) 2019 Namjae Jeon <linkinjeon@kernel.org>
4 */
5
6 #include <sys/types.h>
7 #include <sys/stat.h>
8 #include <sys/ioctl.h>
9 #include <sys/sysmacros.h>
10 #include <unistd.h>
11 #include <fcntl.h>
12 #include <stdlib.h>
13 #include <stdio.h>
14 #include <string.h>
15 #include <errno.h>
16 #include <wchar.h>
17 #include <limits.h>
18 #include <assert.h>
19
20 #include "exfat_ondisk.h"
21 #include "libexfat.h"
22 #include "version.h"
23 #include "exfat_fs.h"
24 #include "exfat_dir.h"
25
26 unsigned int print_level = EXFAT_INFO;
27
exfat_bitmap_set_range(struct exfat * exfat,char * bitmap,clus_t start_clus,clus_t count)28 void exfat_bitmap_set_range(struct exfat *exfat, char *bitmap,
29 clus_t start_clus, clus_t count)
30 {
31 clus_t clus;
32
33 if (!exfat_heap_clus(exfat, start_clus) ||
34 !exfat_heap_clus(exfat, start_clus + count - 1))
35 return;
36
37 clus = start_clus;
38 while (clus < start_clus + count) {
39 exfat_bitmap_set(bitmap, clus);
40 clus++;
41 }
42 }
43
exfat_bitmap_find_bit(struct exfat * exfat,char * bmap,clus_t start_clu,clus_t * next,int bit)44 static int exfat_bitmap_find_bit(struct exfat *exfat, char *bmap,
45 clus_t start_clu, clus_t *next,
46 int bit)
47 {
48 clus_t last_clu;
49
50 last_clu = le32_to_cpu(exfat->bs->bsx.clu_count) +
51 EXFAT_FIRST_CLUSTER;
52 while (start_clu < last_clu) {
53 if (!!exfat_bitmap_get(bmap, start_clu) == bit) {
54 *next = start_clu;
55 return 0;
56 }
57 start_clu++;
58 }
59 return 1;
60 }
61
exfat_bitmap_find_zero(struct exfat * exfat,char * bmap,clus_t start_clu,clus_t * next)62 int exfat_bitmap_find_zero(struct exfat *exfat, char *bmap,
63 clus_t start_clu, clus_t *next)
64 {
65 return exfat_bitmap_find_bit(exfat, bmap,
66 start_clu, next, 0);
67 }
68
exfat_bitmap_find_one(struct exfat * exfat,char * bmap,clus_t start_clu,clus_t * next)69 int exfat_bitmap_find_one(struct exfat *exfat, char *bmap,
70 clus_t start_clu, clus_t *next)
71 {
72 return exfat_bitmap_find_bit(exfat, bmap,
73 start_clu, next, 1);
74 }
75
exfat_bad_char(wchar_t w)76 wchar_t exfat_bad_char(wchar_t w)
77 {
78 return (w < 0x0020)
79 || (w == '*') || (w == '?') || (w == '<') || (w == '>')
80 || (w == '|') || (w == '"') || (w == ':') || (w == '/')
81 || (w == '\\');
82 }
83
boot_calc_checksum(unsigned char * sector,unsigned short size,bool is_boot_sec,__le32 * checksum)84 void boot_calc_checksum(unsigned char *sector, unsigned short size,
85 bool is_boot_sec, __le32 *checksum)
86 {
87 unsigned int index;
88
89 if (is_boot_sec) {
90 for (index = 0; index < size; index++) {
91 if ((index == 106) || (index == 107) || (index == 112))
92 continue;
93 *checksum = ((*checksum & 1) ? 0x80000000 : 0) +
94 (*checksum >> 1) + sector[index];
95 }
96 } else {
97 for (index = 0; index < size; index++) {
98 *checksum = ((*checksum & 1) ? 0x80000000 : 0) +
99 (*checksum >> 1) + sector[index];
100 }
101 }
102 }
103
show_version(void)104 void show_version(void)
105 {
106 printf("exfatprogs version : %s\n", EXFAT_PROGS_VERSION);
107 }
108
sector_size_bits(unsigned int size)109 static inline unsigned int sector_size_bits(unsigned int size)
110 {
111 unsigned int bits = 8;
112
113 do {
114 bits++;
115 size >>= 1;
116 } while (size > 256);
117
118 return bits;
119 }
120
exfat_set_default_cluster_size(struct exfat_blk_dev * bd,struct exfat_user_input * ui)121 static void exfat_set_default_cluster_size(struct exfat_blk_dev *bd,
122 struct exfat_user_input *ui)
123 {
124 if (256 * MB >= bd->size)
125 ui->cluster_size = 4 * KB;
126 else if (32 * GB >= bd->size)
127 ui->cluster_size = 32 * KB;
128 else
129 ui->cluster_size = 128 * KB;
130 }
131
init_user_input(struct exfat_user_input * ui)132 void init_user_input(struct exfat_user_input *ui)
133 {
134 memset(ui, 0, sizeof(struct exfat_user_input));
135 ui->writeable = true;
136 ui->quick = true;
137 }
138
exfat_get_blk_dev_info(struct exfat_user_input * ui,struct exfat_blk_dev * bd)139 int exfat_get_blk_dev_info(struct exfat_user_input *ui,
140 struct exfat_blk_dev *bd)
141 {
142 int fd, ret = -1;
143 off_t blk_dev_size;
144 struct stat st;
145 unsigned long long blk_dev_offset = 0;
146
147 fd = open(ui->dev_name, ui->writeable ? O_RDWR|O_EXCL : O_RDONLY);
148 if (fd < 0) {
149 exfat_err("open failed : %s, %s\n", ui->dev_name,
150 strerror(errno));
151 return -1;
152 }
153 blk_dev_size = lseek(fd, 0, SEEK_END);
154 if (blk_dev_size <= 0) {
155 exfat_err("invalid block device size(%s)\n",
156 ui->dev_name);
157 ret = blk_dev_size;
158 close(fd);
159 goto out;
160 }
161
162 if (fstat(fd, &st) == 0 && S_ISBLK(st.st_mode)) {
163 char pathname[sizeof("/sys/dev/block/4294967295:4294967295/start")];
164 FILE *fp;
165
166 snprintf(pathname, sizeof(pathname), "/sys/dev/block/%u:%u/start",
167 major(st.st_rdev), minor(st.st_rdev));
168 fp = fopen(pathname, "r");
169 if (fp != NULL) {
170 if (fscanf(fp, "%llu", &blk_dev_offset) == 1) {
171 /*
172 * Linux kernel always reports partition offset
173 * in 512-byte units, regardless of sector size
174 */
175 blk_dev_offset <<= 9;
176 }
177 fclose(fp);
178 }
179 }
180
181 bd->dev_fd = fd;
182 bd->offset = blk_dev_offset;
183 bd->size = blk_dev_size;
184 if (!ui->cluster_size)
185 exfat_set_default_cluster_size(bd, ui);
186
187 if (!ui->boundary_align)
188 ui->boundary_align = DEFAULT_BOUNDARY_ALIGNMENT;
189
190 if (ui->sector_size)
191 bd->sector_size = ui->sector_size;
192 else if (ioctl(fd, BLKSSZGET, &bd->sector_size) < 0)
193 bd->sector_size = DEFAULT_SECTOR_SIZE;
194 bd->sector_size_bits = sector_size_bits(bd->sector_size);
195 bd->num_sectors = blk_dev_size / bd->sector_size;
196 bd->num_clusters = blk_dev_size / ui->cluster_size;
197
198 exfat_debug("Block device name : %s\n", ui->dev_name);
199 exfat_debug("Block device offset : %llu\n", bd->offset);
200 exfat_debug("Block device size : %llu\n", bd->size);
201 exfat_debug("Block sector size : %u\n", bd->sector_size);
202 exfat_debug("Number of the sectors : %llu\n",
203 bd->num_sectors);
204 exfat_debug("Number of the clusters : %u\n",
205 bd->num_clusters);
206
207 ret = 0;
208 bd->dev_fd = fd;
209 out:
210 return ret;
211 }
212
exfat_read(int fd,void * buf,size_t size,off_t offset)213 ssize_t exfat_read(int fd, void *buf, size_t size, off_t offset)
214 {
215 return pread(fd, buf, size, offset);
216 }
217
exfat_write(int fd,void * buf,size_t size,off_t offset)218 ssize_t exfat_write(int fd, void *buf, size_t size, off_t offset)
219 {
220 return pwrite(fd, buf, size, offset);
221 }
222
exfat_write_zero(int fd,size_t size,off_t offset)223 ssize_t exfat_write_zero(int fd, size_t size, off_t offset)
224 {
225 const char zero_buf[4 * KB] = {0};
226
227 lseek(fd, offset, SEEK_SET);
228
229 while (size > 0) {
230 int iter_size = MIN(size, sizeof(zero_buf));
231
232 if (iter_size != write(fd, zero_buf, iter_size))
233 return -EIO;
234
235 size -= iter_size;
236 }
237
238 return 0;
239 }
240
exfat_utf16_len(const __le16 * str,size_t max_size)241 size_t exfat_utf16_len(const __le16 *str, size_t max_size)
242 {
243 size_t i = 0;
244
245 while (le16_to_cpu(str[i]) && i < max_size)
246 i++;
247 return i;
248 }
249
exfat_utf16_enc(const char * in_str,__u16 * out_str,size_t out_size)250 ssize_t exfat_utf16_enc(const char *in_str, __u16 *out_str, size_t out_size)
251 {
252 size_t mbs_len, out_len, i;
253 wchar_t *wcs;
254
255 mbs_len = mbstowcs(NULL, in_str, 0);
256 if (mbs_len == (size_t)-1) {
257 if (errno == EINVAL || errno == EILSEQ)
258 exfat_err("invalid character sequence in current locale\n");
259 return -errno;
260 }
261
262 wcs = calloc(mbs_len+1, sizeof(wchar_t));
263 if (!wcs)
264 return -ENOMEM;
265
266 /* First convert multibyte char* string to wchar_t* string */
267 if (mbstowcs(wcs, in_str, mbs_len+1) == (size_t)-1) {
268 if (errno == EINVAL || errno == EILSEQ)
269 exfat_err("invalid character sequence in current locale\n");
270 free(wcs);
271 return -errno;
272 }
273
274 /* Convert wchar_t* string (sequence of code points) to UTF-16 string */
275 for (i = 0, out_len = 0; i < mbs_len; i++) {
276 if (2*(out_len+1) > out_size ||
277 (wcs[i] >= 0x10000 && 2*(out_len+2) > out_size)) {
278 exfat_err("input string is too long\n");
279 free(wcs);
280 return -E2BIG;
281 }
282
283 /* Encode code point above Plane0 as UTF-16 surrogate pair */
284 if (wcs[i] >= 0x10000) {
285 out_str[out_len++] =
286 cpu_to_le16(((wcs[i] - 0x10000) >> 10) + 0xD800);
287 wcs[i] = ((wcs[i] - 0x10000) & 0x3FF) + 0xDC00;
288 }
289
290 out_str[out_len++] = cpu_to_le16(wcs[i]);
291 }
292
293 free(wcs);
294 return 2*out_len;
295 }
296
exfat_utf16_dec(const __u16 * in_str,size_t in_len,char * out_str,size_t out_size)297 ssize_t exfat_utf16_dec(const __u16 *in_str, size_t in_len,
298 char *out_str, size_t out_size)
299 {
300 size_t wcs_len, out_len, c_len, i;
301 char c_str[MB_LEN_MAX];
302 wchar_t *wcs;
303 mbstate_t ps;
304 wchar_t w;
305
306 wcs = calloc(in_len/2+1, sizeof(wchar_t));
307 if (!wcs)
308 return -ENOMEM;
309
310 /* First convert UTF-16 string to wchar_t* string */
311 for (i = 0, wcs_len = 0; i < in_len/2; i++, wcs_len++) {
312 wcs[wcs_len] = le16_to_cpu(in_str[i]);
313 /*
314 * If wchar_t can store code point above Plane0
315 * then unpack UTF-16 surrogate pair to code point
316 */
317 #if WCHAR_MAX >= 0x10FFFF
318 if (wcs[wcs_len] >= 0xD800 && wcs[wcs_len] <= 0xDBFF &&
319 i+1 < in_len/2) {
320 w = le16_to_cpu(in_str[i+1]);
321 if (w >= 0xDC00 && w <= 0xDFFF) {
322 wcs[wcs_len] = 0x10000 +
323 ((wcs[wcs_len] - 0xD800) << 10) +
324 (w - 0xDC00);
325 i++;
326 }
327 }
328 #endif
329 }
330
331 memset(&ps, 0, sizeof(ps));
332
333 /* And then convert wchar_t* string to multibyte char* string */
334 for (i = 0, out_len = 0, c_len = 0; i <= wcs_len; i++) {
335 c_len = wcrtomb(c_str, wcs[i], &ps);
336 /*
337 * If character is non-representable in current locale then
338 * try to store it as Unicode replacement code point U+FFFD
339 */
340 if (c_len == (size_t)-1 && errno == EILSEQ)
341 c_len = wcrtomb(c_str, 0xFFFD, &ps);
342 /* If U+FFFD is also non-representable, try question mark */
343 if (c_len == (size_t)-1 && errno == EILSEQ)
344 c_len = wcrtomb(c_str, L'?', &ps);
345 /* If also (7bit) question mark fails then we cannot do more */
346 if (c_len == (size_t)-1) {
347 exfat_err("invalid UTF-16 sequence\n");
348 free(wcs);
349 return -errno;
350 }
351 if (out_len+c_len > out_size) {
352 exfat_err("input string is too long\n");
353 free(wcs);
354 return -E2BIG;
355 }
356 memcpy(out_str+out_len, c_str, c_len);
357 out_len += c_len;
358 }
359
360 free(wcs);
361
362 /* Last iteration of above loop should have produced null byte */
363 if (c_len == 0 || out_str[out_len-1] != 0) {
364 exfat_err("invalid UTF-16 sequence\n");
365 return -errno;
366 }
367
368 return out_len-1;
369 }
370
exfat_get_root_entry_offset(struct exfat_blk_dev * bd)371 off_t exfat_get_root_entry_offset(struct exfat_blk_dev *bd)
372 {
373 struct pbr *bs;
374 int nbytes;
375 unsigned int cluster_size, sector_size;
376 off_t root_clu_off;
377
378 bs = malloc(EXFAT_MAX_SECTOR_SIZE);
379 if (!bs) {
380 exfat_err("failed to allocate memory\n");
381 return -ENOMEM;
382 }
383
384 nbytes = exfat_read(bd->dev_fd, bs, EXFAT_MAX_SECTOR_SIZE, 0);
385 if (nbytes != EXFAT_MAX_SECTOR_SIZE) {
386 exfat_err("boot sector read failed: %d\n", errno);
387 free(bs);
388 return -1;
389 }
390
391 if (memcmp(bs->bpb.oem_name, "EXFAT ", 8) != 0) {
392 exfat_err("Bad fs_name in boot sector, which does not describe a valid exfat filesystem\n");
393 free(bs);
394 return -1;
395 }
396
397 sector_size = 1 << bs->bsx.sect_size_bits;
398 cluster_size = (1 << bs->bsx.sect_per_clus_bits) * sector_size;
399 root_clu_off = le32_to_cpu(bs->bsx.clu_offset) * sector_size +
400 (le32_to_cpu(bs->bsx.root_cluster) - EXFAT_RESERVED_CLUSTERS) *
401 cluster_size;
402 free(bs);
403
404 return root_clu_off;
405 }
406
exfat_conv_volume_label(struct exfat_dentry * vol_entry)407 char *exfat_conv_volume_label(struct exfat_dentry *vol_entry)
408 {
409 char *volume_label;
410 __le16 disk_label[VOLUME_LABEL_MAX_LEN];
411
412 volume_label = malloc(VOLUME_LABEL_BUFFER_SIZE);
413 if (!volume_label)
414 return NULL;
415
416 memcpy(disk_label, vol_entry->vol_label, sizeof(disk_label));
417 memset(volume_label, 0, VOLUME_LABEL_BUFFER_SIZE);
418 if (exfat_utf16_dec(disk_label, vol_entry->vol_char_cnt*2,
419 volume_label, VOLUME_LABEL_BUFFER_SIZE) < 0) {
420 exfat_err("failed to decode volume label\n");
421 free(volume_label);
422 return NULL;
423 }
424
425 return volume_label;
426 }
427
exfat_read_volume_label(struct exfat * exfat)428 int exfat_read_volume_label(struct exfat *exfat)
429 {
430 struct exfat_dentry *dentry;
431 int err;
432 __le16 disk_label[VOLUME_LABEL_MAX_LEN];
433 struct exfat_lookup_filter filter = {
434 .in.type = EXFAT_VOLUME,
435 .in.dentry_count = 0,
436 .in.filter = NULL,
437 };
438
439 err = exfat_lookup_dentry_set(exfat, exfat->root, &filter);
440 if (err)
441 return err;
442
443 dentry = filter.out.dentry_set;
444
445 if (dentry->vol_char_cnt == 0)
446 goto out;
447
448 if (dentry->vol_char_cnt > VOLUME_LABEL_MAX_LEN) {
449 exfat_err("too long label. %d\n", dentry->vol_char_cnt);
450 err = -EINVAL;
451 goto out;
452 }
453
454 memcpy(disk_label, dentry->vol_label, sizeof(disk_label));
455 if (exfat_utf16_dec(disk_label, dentry->vol_char_cnt*2,
456 exfat->volume_label, sizeof(exfat->volume_label)) < 0) {
457 exfat_err("failed to decode volume label\n");
458 err = -EINVAL;
459 goto out;
460 }
461
462 exfat_info("label: %s\n", exfat->volume_label);
463 out:
464 free(filter.out.dentry_set);
465 return err;
466 }
467
exfat_set_volume_label(struct exfat * exfat,char * label_input)468 int exfat_set_volume_label(struct exfat *exfat, char *label_input)
469 {
470 struct exfat_dentry *pvol;
471 struct exfat_dentry_loc loc;
472 __u16 volume_label[VOLUME_LABEL_MAX_LEN];
473 int volume_label_len, dcount, err;
474
475 struct exfat_lookup_filter filter = {
476 .in.type = EXFAT_VOLUME,
477 .in.dentry_count = 1,
478 .in.filter = NULL,
479 };
480
481 err = exfat_lookup_dentry_set(exfat, exfat->root, &filter);
482 if (!err) {
483 pvol = filter.out.dentry_set;
484 dcount = filter.out.dentry_count;
485 memset(pvol->vol_label, 0, sizeof(pvol->vol_label));
486 } else {
487 pvol = calloc(1, sizeof(struct exfat_dentry));
488 if (!pvol)
489 return -ENOMEM;
490
491 dcount = 1;
492 pvol->type = EXFAT_VOLUME;
493 }
494
495 volume_label_len = exfat_utf16_enc(label_input,
496 volume_label, sizeof(volume_label));
497 if (volume_label_len < 0) {
498 exfat_err("failed to encode volume label\n");
499 err = -1;
500 goto out;
501 }
502
503 pvol->vol_char_cnt = volume_label_len/2;
504 err = exfat_check_name(volume_label, pvol->vol_char_cnt);
505 if (err != pvol->vol_char_cnt) {
506 exfat_err("volume label contain invalid character(%c)\n",
507 le16_to_cpu(label_input[err]));
508 err = -1;
509 goto out;
510 }
511
512 memcpy(pvol->vol_label, volume_label, volume_label_len);
513
514 loc.parent = exfat->root;
515 loc.file_offset = filter.out.file_offset;
516 loc.dev_offset = filter.out.dev_offset;
517 err = exfat_add_dentry_set(exfat, &loc, pvol, dcount, false);
518 exfat_info("new label: %s\n", label_input);
519
520 out:
521 free(pvol);
522
523 return err;
524 }
525
print_guid(const char * msg,const __u8 * guid)526 static inline void print_guid(const char *msg, const __u8 *guid)
527 {
528 exfat_info("%s: %02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x\n",
529 msg,
530 guid[0], guid[1], guid[2], guid[3],
531 guid[4], guid[5], guid[5], guid[7],
532 guid[8], guid[9], guid[10], guid[11],
533 guid[12], guid[13], guid[14], guid[15]);
534 }
535
set_guid(__u8 * guid,const char * input)536 static int set_guid(__u8 *guid, const char *input)
537 {
538 int i, j, zero_len = 0;
539 int len = strlen(input);
540
541 if (len != EXFAT_GUID_LEN * 2 && len != EXFAT_GUID_LEN * 2 + 4) {
542 exfat_err("invalid format for volume guid\n");
543 return -EINVAL;
544 }
545
546 for (i = 0, j = 0; i < len; i++) {
547 unsigned char ch = input[i];
548
549 if (ch >= '0' && ch <= '9')
550 ch -= '0';
551 else if (ch >= 'a' && ch <= 'f')
552 ch -= 'a' - 0xA;
553 else if (ch >= 'A' && ch <= 'F')
554 ch -= 'A' - 0xA;
555 else if (ch == '-' && len == EXFAT_GUID_LEN * 2 + 4 &&
556 (i == 8 || i == 13 || i == 18 || i == 23))
557 continue;
558 else {
559 exfat_err("invalid character '%c' for volume GUID\n", ch);
560 return -EINVAL;
561 }
562
563 if (j & 1)
564 guid[j >> 1] |= ch;
565 else
566 guid[j >> 1] = ch << 4;
567
568 j++;
569
570 if (ch == 0)
571 zero_len++;
572 }
573
574 if (zero_len == EXFAT_GUID_LEN * 2) {
575 exfat_err("%s is invalid for volume GUID\n", input);
576 return -EINVAL;
577 }
578
579 return 0;
580 }
581
exfat_read_volume_guid(struct exfat * exfat)582 int exfat_read_volume_guid(struct exfat *exfat)
583 {
584 int err;
585 uint16_t checksum = 0;
586 struct exfat_dentry *dentry;
587 struct exfat_lookup_filter filter = {
588 .in.type = EXFAT_GUID,
589 .in.dentry_count = 1,
590 .in.filter = NULL,
591 };
592
593 err = exfat_lookup_dentry_set(exfat, exfat->root, &filter);
594 if (err)
595 return err;
596
597 dentry = filter.out.dentry_set;
598 exfat_calc_dentry_checksum(dentry, &checksum, true);
599
600 if (cpu_to_le16(checksum) == dentry->dentry.guid.checksum)
601 print_guid("GUID", dentry->dentry.guid.guid);
602 else
603 exfat_info("GUID is corrupted, please delete it or set a new one\n");
604
605 free(dentry);
606
607 return err;
608 }
609
__exfat_set_volume_guid(struct exfat_dentry * dentry,const char * guid)610 int __exfat_set_volume_guid(struct exfat_dentry *dentry, const char *guid)
611 {
612 int err;
613 uint16_t checksum = 0;
614
615 memset(dentry, 0, sizeof(*dentry));
616 dentry->type = EXFAT_GUID;
617
618 err = set_guid(dentry->dentry.guid.guid, guid);
619 if (err)
620 return err;
621
622 exfat_calc_dentry_checksum(dentry, &checksum, true);
623 dentry->dentry.guid.checksum = cpu_to_le16(checksum);
624
625 return 0;
626 }
627
628 /*
629 * Create/Update/Delete GUID dentry in root directory
630 *
631 * create/update GUID if @guid is not NULL.
632 * delete GUID if @guid is NULL.
633 */
exfat_set_volume_guid(struct exfat * exfat,const char * guid)634 int exfat_set_volume_guid(struct exfat *exfat, const char *guid)
635 {
636 struct exfat_dentry *dentry;
637 struct exfat_dentry_loc loc;
638 int err;
639
640 struct exfat_lookup_filter filter = {
641 .in.type = EXFAT_GUID,
642 .in.dentry_count = 1,
643 .in.filter = NULL,
644 };
645
646 err = exfat_lookup_dentry_set(exfat, exfat->root, &filter);
647 if (!err) {
648 /* GUID entry is found */
649 dentry = filter.out.dentry_set;
650 } else {
651 /* no GUID to delete */
652 if (guid == NULL)
653 return 0;
654
655 dentry = calloc(1, sizeof(*dentry));
656 if (!dentry)
657 return -ENOMEM;
658 }
659
660 if (guid) {
661 /* Set GUID */
662 err = __exfat_set_volume_guid(dentry, guid);
663 if (err)
664 goto out;
665 } else {
666 /* Delete GUID */
667 dentry->type &= ~EXFAT_INVAL;
668 }
669
670 loc.parent = exfat->root;
671 loc.file_offset = filter.out.file_offset;
672 loc.dev_offset = filter.out.dev_offset;
673 err = exfat_add_dentry_set(exfat, &loc, dentry, 1, false);
674 if (!err) {
675 if (guid)
676 print_guid("new GUID", dentry->dentry.guid.guid);
677 else
678 exfat_info("GUID is deleted\n");
679 }
680
681 out:
682 free(dentry);
683
684 return err;
685 }
686
exfat_read_sector(struct exfat_blk_dev * bd,void * buf,unsigned int sec_off)687 int exfat_read_sector(struct exfat_blk_dev *bd, void *buf, unsigned int sec_off)
688 {
689 int ret;
690 unsigned long long offset =
691 (unsigned long long)sec_off * bd->sector_size;
692
693 ret = pread(bd->dev_fd, buf, bd->sector_size, offset);
694 if (ret < 0) {
695 exfat_err("read failed, sec_off : %u\n", sec_off);
696 return -1;
697 }
698 return 0;
699 }
700
exfat_write_sector(struct exfat_blk_dev * bd,void * buf,unsigned int sec_off)701 int exfat_write_sector(struct exfat_blk_dev *bd, void *buf,
702 unsigned int sec_off)
703 {
704 int bytes;
705 unsigned long long offset =
706 (unsigned long long)sec_off * bd->sector_size;
707
708 bytes = pwrite(bd->dev_fd, buf, bd->sector_size, offset);
709 if (bytes != (int)bd->sector_size) {
710 exfat_err("write failed, sec_off : %u, bytes : %d\n", sec_off,
711 bytes);
712 return -1;
713 }
714 return 0;
715 }
716
exfat_write_checksum_sector(struct exfat_blk_dev * bd,unsigned int checksum,bool is_backup)717 int exfat_write_checksum_sector(struct exfat_blk_dev *bd,
718 unsigned int checksum, bool is_backup)
719 {
720 __le32 *checksum_buf;
721 int ret = 0;
722 unsigned int i;
723 unsigned int sec_idx = CHECKSUM_SEC_IDX;
724
725 checksum_buf = malloc(bd->sector_size);
726 if (!checksum_buf)
727 return -1;
728
729 if (is_backup)
730 sec_idx += BACKUP_BOOT_SEC_IDX;
731
732 for (i = 0; i < bd->sector_size / sizeof(int); i++)
733 checksum_buf[i] = cpu_to_le32(checksum);
734
735 ret = exfat_write_sector(bd, checksum_buf, sec_idx);
736 if (ret) {
737 exfat_err("checksum sector write failed\n");
738 goto free;
739 }
740
741 free:
742 free(checksum_buf);
743 return ret;
744 }
745
exfat_show_volume_serial(int fd)746 int exfat_show_volume_serial(int fd)
747 {
748 struct pbr *ppbr;
749 int ret;
750
751 ppbr = malloc(EXFAT_MAX_SECTOR_SIZE);
752 if (!ppbr) {
753 exfat_err("Cannot allocate pbr: out of memory\n");
754 return -1;
755 }
756
757 /* read main boot sector */
758 ret = exfat_read(fd, (char *)ppbr, EXFAT_MAX_SECTOR_SIZE, 0);
759 if (ret < 0) {
760 exfat_err("main boot sector read failed\n");
761 ret = -1;
762 goto free_ppbr;
763 }
764
765 if (memcmp(ppbr->bpb.oem_name, "EXFAT ", 8) != 0) {
766 exfat_err("Bad fs_name in boot sector, which does not describe a valid exfat filesystem\n");
767 ret = -1;
768 goto free_ppbr;
769 }
770
771 exfat_info("volume serial : 0x%x\n", le32_to_cpu(ppbr->bsx.vol_serial));
772
773 free_ppbr:
774 free(ppbr);
775 return ret;
776 }
777
exfat_update_boot_checksum(struct exfat_blk_dev * bd,bool is_backup)778 static int exfat_update_boot_checksum(struct exfat_blk_dev *bd, bool is_backup)
779 {
780 unsigned int checksum = 0;
781 int ret, sec_idx, backup_sec_idx = 0;
782 unsigned char *buf;
783
784 buf = malloc(bd->sector_size);
785 if (!buf) {
786 exfat_err("Cannot allocate pbr: out of memory\n");
787 return -1;
788 }
789
790 if (is_backup)
791 backup_sec_idx = BACKUP_BOOT_SEC_IDX;
792
793 for (sec_idx = BOOT_SEC_IDX; sec_idx < CHECKSUM_SEC_IDX; sec_idx++) {
794 bool is_boot_sec = false;
795
796 ret = exfat_read_sector(bd, buf, sec_idx + backup_sec_idx);
797 if (ret < 0) {
798 exfat_err("sector(%d) read failed\n", sec_idx);
799 ret = -1;
800 goto free_buf;
801 }
802
803 if (sec_idx == BOOT_SEC_IDX)
804 is_boot_sec = true;
805
806 boot_calc_checksum(buf, bd->sector_size, is_boot_sec,
807 &checksum);
808 }
809
810 ret = exfat_write_checksum_sector(bd, checksum, is_backup);
811
812 free_buf:
813 free(buf);
814
815 return ret;
816 }
817
exfat_set_volume_serial(struct exfat_blk_dev * bd,struct exfat_user_input * ui)818 int exfat_set_volume_serial(struct exfat_blk_dev *bd,
819 struct exfat_user_input *ui)
820 {
821 int ret;
822 struct pbr *ppbr;
823
824 ppbr = malloc(EXFAT_MAX_SECTOR_SIZE);
825 if (!ppbr) {
826 exfat_err("Cannot allocate pbr: out of memory\n");
827 return -1;
828 }
829
830 /* read main boot sector */
831 ret = exfat_read(bd->dev_fd, (char *)ppbr, EXFAT_MAX_SECTOR_SIZE,
832 BOOT_SEC_IDX);
833 if (ret < 0) {
834 exfat_err("main boot sector read failed\n");
835 ret = -1;
836 goto free_ppbr;
837 }
838
839 if (memcmp(ppbr->bpb.oem_name, "EXFAT ", 8) != 0) {
840 exfat_err("Bad fs_name in boot sector, which does not describe a valid exfat filesystem\n");
841 ret = -1;
842 goto free_ppbr;
843 }
844
845 bd->sector_size = 1 << ppbr->bsx.sect_size_bits;
846 ppbr->bsx.vol_serial = cpu_to_le32(ui->volume_serial);
847
848 /* update main boot sector */
849 ret = exfat_write_sector(bd, (char *)ppbr, BOOT_SEC_IDX);
850 if (ret < 0) {
851 exfat_err("main boot sector write failed\n");
852 ret = -1;
853 goto free_ppbr;
854 }
855
856 /* update backup boot sector */
857 ret = exfat_write_sector(bd, (char *)ppbr, BACKUP_BOOT_SEC_IDX);
858 if (ret < 0) {
859 exfat_err("backup boot sector write failed\n");
860 ret = -1;
861 goto free_ppbr;
862 }
863
864 ret = exfat_update_boot_checksum(bd, 0);
865 if (ret < 0) {
866 exfat_err("main checksum update failed\n");
867 goto free_ppbr;
868 }
869
870 ret = exfat_update_boot_checksum(bd, 1);
871 if (ret < 0)
872 exfat_err("backup checksum update failed\n");
873 free_ppbr:
874 free(ppbr);
875
876 exfat_info("New volume serial : 0x%x\n", ui->volume_serial);
877
878 return ret;
879 }
880
exfat_clus_to_blk_dev_off(struct exfat_blk_dev * bd,unsigned int clu_off_sectnr,unsigned int clu)881 unsigned int exfat_clus_to_blk_dev_off(struct exfat_blk_dev *bd,
882 unsigned int clu_off_sectnr, unsigned int clu)
883 {
884 return clu_off_sectnr * bd->sector_size +
885 (clu - EXFAT_RESERVED_CLUSTERS) * bd->cluster_size;
886 }
887
exfat_get_next_clus(struct exfat * exfat,clus_t clus,clus_t * next)888 int exfat_get_next_clus(struct exfat *exfat, clus_t clus, clus_t *next)
889 {
890 off_t offset;
891
892 *next = EXFAT_EOF_CLUSTER;
893
894 if (!exfat_heap_clus(exfat, clus))
895 return -EINVAL;
896
897 offset = (off_t)le32_to_cpu(exfat->bs->bsx.fat_offset) <<
898 exfat->bs->bsx.sect_size_bits;
899 offset += sizeof(clus_t) * clus;
900
901 if (exfat_read(exfat->blk_dev->dev_fd, next, sizeof(*next), offset)
902 != sizeof(*next))
903 return -EIO;
904 *next = le32_to_cpu(*next);
905 return 0;
906 }
907
exfat_get_inode_next_clus(struct exfat * exfat,struct exfat_inode * node,clus_t clus,clus_t * next)908 int exfat_get_inode_next_clus(struct exfat *exfat, struct exfat_inode *node,
909 clus_t clus, clus_t *next)
910 {
911 *next = EXFAT_EOF_CLUSTER;
912
913 if (node->is_contiguous) {
914 if (!exfat_heap_clus(exfat, clus))
915 return -EINVAL;
916 *next = clus + 1;
917 return 0;
918 }
919
920 return exfat_get_next_clus(exfat, clus, next);
921 }
922
exfat_set_fat(struct exfat * exfat,clus_t clus,clus_t next_clus)923 int exfat_set_fat(struct exfat *exfat, clus_t clus, clus_t next_clus)
924 {
925 off_t offset;
926
927 offset = le32_to_cpu(exfat->bs->bsx.fat_offset) <<
928 exfat->bs->bsx.sect_size_bits;
929 offset += sizeof(clus_t) * clus;
930
931 next_clus = cpu_to_le32(next_clus);
932
933 if (exfat_write(exfat->blk_dev->dev_fd, &next_clus, sizeof(next_clus),
934 offset) != sizeof(next_clus))
935 return -EIO;
936 return 0;
937 }
938
exfat_s2o(struct exfat * exfat,off_t sect)939 off_t exfat_s2o(struct exfat *exfat, off_t sect)
940 {
941 return sect << exfat->bs->bsx.sect_size_bits;
942 }
943
exfat_c2o(struct exfat * exfat,unsigned int clus)944 off_t exfat_c2o(struct exfat *exfat, unsigned int clus)
945 {
946 assert(clus >= EXFAT_FIRST_CLUSTER);
947
948 return exfat_s2o(exfat, le32_to_cpu(exfat->bs->bsx.clu_offset) +
949 ((off_t)(clus - EXFAT_FIRST_CLUSTER) <<
950 exfat->bs->bsx.sect_per_clus_bits));
951 }
952
exfat_o2c(struct exfat * exfat,off_t device_offset,unsigned int * clu,unsigned int * offset)953 int exfat_o2c(struct exfat *exfat, off_t device_offset,
954 unsigned int *clu, unsigned int *offset)
955 {
956 off_t heap_offset;
957
958 heap_offset = exfat_s2o(exfat, le32_to_cpu(exfat->bs->bsx.clu_offset));
959 if (device_offset < heap_offset)
960 return -ERANGE;
961
962 *clu = (unsigned int)((device_offset - heap_offset) /
963 exfat->clus_size) + EXFAT_FIRST_CLUSTER;
964 if (!exfat_heap_clus(exfat, *clu))
965 return -ERANGE;
966 *offset = (device_offset - heap_offset) % exfat->clus_size;
967 return 0;
968 }
969
exfat_heap_clus(struct exfat * exfat,clus_t clus)970 bool exfat_heap_clus(struct exfat *exfat, clus_t clus)
971 {
972 return clus >= EXFAT_FIRST_CLUSTER &&
973 (clus - EXFAT_FIRST_CLUSTER) < exfat->clus_count;
974 }
975
exfat_root_clus_count(struct exfat * exfat)976 int exfat_root_clus_count(struct exfat *exfat)
977 {
978 struct exfat_inode *node = exfat->root;
979 clus_t clus, next;
980 int clus_count = 0;
981
982 if (!exfat_heap_clus(exfat, node->first_clus))
983 return -EIO;
984
985 clus = node->first_clus;
986 do {
987 if (exfat_bitmap_get(exfat->alloc_bitmap, clus))
988 return -EINVAL;
989
990 exfat_bitmap_set(exfat->alloc_bitmap, clus);
991
992 if (exfat_get_inode_next_clus(exfat, node, clus, &next)) {
993 exfat_err("ERROR: failed to read the fat entry of root");
994 return -EIO;
995 }
996
997 if (next != EXFAT_EOF_CLUSTER && !exfat_heap_clus(exfat, next))
998 return -EINVAL;
999
1000 clus = next;
1001 clus_count++;
1002 } while (clus != EXFAT_EOF_CLUSTER);
1003
1004 node->size = clus_count * exfat->clus_size;
1005 return 0;
1006 }
1007
read_boot_sect(struct exfat_blk_dev * bdev,struct pbr ** bs)1008 int read_boot_sect(struct exfat_blk_dev *bdev, struct pbr **bs)
1009 {
1010 struct pbr *pbr;
1011 int err = 0;
1012 unsigned int sect_size, clu_size;
1013
1014 pbr = malloc(sizeof(struct pbr));
1015 if (!pbr) {
1016 exfat_err("failed to allocate memory\n");
1017 return -ENOMEM;
1018 }
1019
1020 if (exfat_read(bdev->dev_fd, pbr, sizeof(*pbr), 0) !=
1021 (ssize_t)sizeof(*pbr)) {
1022 exfat_err("failed to read a boot sector\n");
1023 err = -EIO;
1024 goto err;
1025 }
1026
1027 err = -EINVAL;
1028 if (memcmp(pbr->bpb.oem_name, "EXFAT ", 8) != 0) {
1029 exfat_err("failed to find exfat file system\n");
1030 goto err;
1031 }
1032
1033 sect_size = 1 << pbr->bsx.sect_size_bits;
1034 clu_size = 1 << (pbr->bsx.sect_size_bits +
1035 pbr->bsx.sect_per_clus_bits);
1036
1037 if (sect_size < 512 || sect_size > 4 * KB) {
1038 exfat_err("too small or big sector size: %d\n",
1039 sect_size);
1040 goto err;
1041 }
1042
1043 if (clu_size < sect_size || clu_size > 32 * MB) {
1044 exfat_err("too small or big cluster size: %d\n",
1045 clu_size);
1046 goto err;
1047 }
1048
1049 *bs = pbr;
1050 return 0;
1051 err:
1052 free(pbr);
1053 return err;
1054 }
1055
exfat_parse_ulong(const char * s,unsigned long * out)1056 int exfat_parse_ulong(const char *s, unsigned long *out)
1057 {
1058 char *endptr;
1059
1060 errno = 0;
1061
1062 *out = strtoul(s, &endptr, 0);
1063
1064 if (errno)
1065 return -errno;
1066
1067 if (s == endptr || *endptr != '\0')
1068 return -EINVAL;
1069
1070 return 0;
1071 }
1072
check_bad_utf16_char(unsigned short w)1073 static inline int check_bad_utf16_char(unsigned short w)
1074 {
1075 return (w < 0x0020) || (w == '*') || (w == '?') || (w == '<') ||
1076 (w == '>') || (w == '|') || (w == '"') || (w == ':') ||
1077 (w == '/') || (w == '\\');
1078 }
1079
exfat_check_name(__le16 * utf16_name,int len)1080 int exfat_check_name(__le16 *utf16_name, int len)
1081 {
1082 int i;
1083
1084 for (i = 0; i < len; i++) {
1085 if (check_bad_utf16_char(le16_to_cpu(utf16_name[i])))
1086 break;
1087 }
1088
1089 return i;
1090 }
1091