xref: /openbmc/u-boot/fs/fat/fat.c (revision dc146ca1)
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * fat.c
4  *
5  * R/O (V)FAT 12/16/32 filesystem implementation by Marcus Sundberg
6  *
7  * 2002-07-28 - rjones@nexus-tech.net - ported to ppcboot v1.1.6
8  * 2003-03-10 - kharris@nexus-tech.net - ported to uboot
9  */
10 
11 #include <common.h>
12 #include <blk.h>
13 #include <config.h>
14 #include <exports.h>
15 #include <fat.h>
16 #include <fs.h>
17 #include <asm/byteorder.h>
18 #include <part.h>
19 #include <malloc.h>
20 #include <memalign.h>
21 #include <linux/compiler.h>
22 #include <linux/ctype.h>
23 
24 /*
25  * Convert a string to lowercase.  Converts at most 'len' characters,
26  * 'len' may be larger than the length of 'str' if 'str' is NULL
27  * terminated.
28  */
29 static void downcase(char *str, size_t len)
30 {
31 	while (*str != '\0' && len--) {
32 		*str = tolower(*str);
33 		str++;
34 	}
35 }
36 
37 static struct blk_desc *cur_dev;
38 static disk_partition_t cur_part_info;
39 
40 #define DOS_BOOT_MAGIC_OFFSET	0x1fe
41 #define DOS_FS_TYPE_OFFSET	0x36
42 #define DOS_FS32_TYPE_OFFSET	0x52
43 
44 static int disk_read(__u32 block, __u32 nr_blocks, void *buf)
45 {
46 	ulong ret;
47 
48 	if (!cur_dev)
49 		return -1;
50 
51 	ret = blk_dread(cur_dev, cur_part_info.start + block, nr_blocks, buf);
52 
53 	if (ret != nr_blocks)
54 		return -1;
55 
56 	return ret;
57 }
58 
59 int fat_set_blk_dev(struct blk_desc *dev_desc, disk_partition_t *info)
60 {
61 	ALLOC_CACHE_ALIGN_BUFFER(unsigned char, buffer, dev_desc->blksz);
62 
63 	cur_dev = dev_desc;
64 	cur_part_info = *info;
65 
66 	/* Make sure it has a valid FAT header */
67 	if (disk_read(0, 1, buffer) != 1) {
68 		cur_dev = NULL;
69 		return -1;
70 	}
71 
72 	/* Check if it's actually a DOS volume */
73 	if (memcmp(buffer + DOS_BOOT_MAGIC_OFFSET, "\x55\xAA", 2)) {
74 		cur_dev = NULL;
75 		return -1;
76 	}
77 
78 	/* Check for FAT12/FAT16/FAT32 filesystem */
79 	if (!memcmp(buffer + DOS_FS_TYPE_OFFSET, "FAT", 3))
80 		return 0;
81 	if (!memcmp(buffer + DOS_FS32_TYPE_OFFSET, "FAT32", 5))
82 		return 0;
83 
84 	cur_dev = NULL;
85 	return -1;
86 }
87 
88 int fat_register_device(struct blk_desc *dev_desc, int part_no)
89 {
90 	disk_partition_t info;
91 
92 	/* First close any currently found FAT filesystem */
93 	cur_dev = NULL;
94 
95 	/* Read the partition table, if present */
96 	if (part_get_info(dev_desc, part_no, &info)) {
97 		if (part_no != 0) {
98 			printf("** Partition %d not valid on device %d **\n",
99 					part_no, dev_desc->devnum);
100 			return -1;
101 		}
102 
103 		info.start = 0;
104 		info.size = dev_desc->lba;
105 		info.blksz = dev_desc->blksz;
106 		info.name[0] = 0;
107 		info.type[0] = 0;
108 		info.bootable = 0;
109 #if CONFIG_IS_ENABLED(PARTITION_UUIDS)
110 		info.uuid[0] = 0;
111 #endif
112 	}
113 
114 	return fat_set_blk_dev(dev_desc, &info);
115 }
116 
117 /*
118  * Extract zero terminated short name from a directory entry.
119  */
120 static void get_name(dir_entry *dirent, char *s_name)
121 {
122 	char *ptr;
123 
124 	memcpy(s_name, dirent->name, 8);
125 	s_name[8] = '\0';
126 	ptr = s_name;
127 	while (*ptr && *ptr != ' ')
128 		ptr++;
129 	if (dirent->lcase & CASE_LOWER_BASE)
130 		downcase(s_name, (unsigned)(ptr - s_name));
131 	if (dirent->ext[0] && dirent->ext[0] != ' ') {
132 		*ptr++ = '.';
133 		memcpy(ptr, dirent->ext, 3);
134 		if (dirent->lcase & CASE_LOWER_EXT)
135 			downcase(ptr, 3);
136 		ptr[3] = '\0';
137 		while (*ptr && *ptr != ' ')
138 			ptr++;
139 	}
140 	*ptr = '\0';
141 	if (*s_name == DELETED_FLAG)
142 		*s_name = '\0';
143 	else if (*s_name == aRING)
144 		*s_name = DELETED_FLAG;
145 }
146 
147 static int flush_dirty_fat_buffer(fsdata *mydata);
148 
149 #if !CONFIG_IS_ENABLED(FAT_WRITE)
150 /* Stub for read only operation */
151 int flush_dirty_fat_buffer(fsdata *mydata)
152 {
153 	(void)(mydata);
154 	return 0;
155 }
156 #endif
157 
158 /*
159  * Get the entry at index 'entry' in a FAT (12/16/32) table.
160  * On failure 0x00 is returned.
161  */
162 static __u32 get_fatent(fsdata *mydata, __u32 entry)
163 {
164 	__u32 bufnum;
165 	__u32 offset, off8;
166 	__u32 ret = 0x00;
167 
168 	if (CHECK_CLUST(entry, mydata->fatsize)) {
169 		printf("Error: Invalid FAT entry: 0x%08x\n", entry);
170 		return ret;
171 	}
172 
173 	switch (mydata->fatsize) {
174 	case 32:
175 		bufnum = entry / FAT32BUFSIZE;
176 		offset = entry - bufnum * FAT32BUFSIZE;
177 		break;
178 	case 16:
179 		bufnum = entry / FAT16BUFSIZE;
180 		offset = entry - bufnum * FAT16BUFSIZE;
181 		break;
182 	case 12:
183 		bufnum = entry / FAT12BUFSIZE;
184 		offset = entry - bufnum * FAT12BUFSIZE;
185 		break;
186 
187 	default:
188 		/* Unsupported FAT size */
189 		return ret;
190 	}
191 
192 	debug("FAT%d: entry: 0x%08x = %d, offset: 0x%04x = %d\n",
193 	       mydata->fatsize, entry, entry, offset, offset);
194 
195 	/* Read a new block of FAT entries into the cache. */
196 	if (bufnum != mydata->fatbufnum) {
197 		__u32 getsize = FATBUFBLOCKS;
198 		__u8 *bufptr = mydata->fatbuf;
199 		__u32 fatlength = mydata->fatlength;
200 		__u32 startblock = bufnum * FATBUFBLOCKS;
201 
202 		/* Cap length if fatlength is not a multiple of FATBUFBLOCKS */
203 		if (startblock + getsize > fatlength)
204 			getsize = fatlength - startblock;
205 
206 		startblock += mydata->fat_sect;	/* Offset from start of disk */
207 
208 		/* Write back the fatbuf to the disk */
209 		if (flush_dirty_fat_buffer(mydata) < 0)
210 			return -1;
211 
212 		if (disk_read(startblock, getsize, bufptr) < 0) {
213 			debug("Error reading FAT blocks\n");
214 			return ret;
215 		}
216 		mydata->fatbufnum = bufnum;
217 	}
218 
219 	/* Get the actual entry from the table */
220 	switch (mydata->fatsize) {
221 	case 32:
222 		ret = FAT2CPU32(((__u32 *) mydata->fatbuf)[offset]);
223 		break;
224 	case 16:
225 		ret = FAT2CPU16(((__u16 *) mydata->fatbuf)[offset]);
226 		break;
227 	case 12:
228 		off8 = (offset * 3) / 2;
229 		/* fatbut + off8 may be unaligned, read in byte granularity */
230 		ret = mydata->fatbuf[off8] + (mydata->fatbuf[off8 + 1] << 8);
231 
232 		if (offset & 0x1)
233 			ret >>= 4;
234 		ret &= 0xfff;
235 	}
236 	debug("FAT%d: ret: 0x%08x, entry: 0x%08x, offset: 0x%04x\n",
237 	       mydata->fatsize, ret, entry, offset);
238 
239 	return ret;
240 }
241 
242 /*
243  * Read at most 'size' bytes from the specified cluster into 'buffer'.
244  * Return 0 on success, -1 otherwise.
245  */
246 static int
247 get_cluster(fsdata *mydata, __u32 clustnum, __u8 *buffer, unsigned long size)
248 {
249 	__u32 idx = 0;
250 	__u32 startsect;
251 	int ret;
252 
253 	if (clustnum > 0) {
254 		startsect = clust_to_sect(mydata, clustnum);
255 	} else {
256 		startsect = mydata->rootdir_sect;
257 	}
258 
259 	debug("gc - clustnum: %d, startsect: %d\n", clustnum, startsect);
260 
261 	if ((unsigned long)buffer & (ARCH_DMA_MINALIGN - 1)) {
262 		ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
263 
264 		debug("FAT: Misaligned buffer address (%p)\n", buffer);
265 
266 		while (size >= mydata->sect_size) {
267 			ret = disk_read(startsect++, 1, tmpbuf);
268 			if (ret != 1) {
269 				debug("Error reading data (got %d)\n", ret);
270 				return -1;
271 			}
272 
273 			memcpy(buffer, tmpbuf, mydata->sect_size);
274 			buffer += mydata->sect_size;
275 			size -= mydata->sect_size;
276 		}
277 	} else {
278 		idx = size / mydata->sect_size;
279 		ret = disk_read(startsect, idx, buffer);
280 		if (ret != idx) {
281 			debug("Error reading data (got %d)\n", ret);
282 			return -1;
283 		}
284 		startsect += idx;
285 		idx *= mydata->sect_size;
286 		buffer += idx;
287 		size -= idx;
288 	}
289 	if (size) {
290 		ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
291 
292 		ret = disk_read(startsect, 1, tmpbuf);
293 		if (ret != 1) {
294 			debug("Error reading data (got %d)\n", ret);
295 			return -1;
296 		}
297 
298 		memcpy(buffer, tmpbuf, size);
299 	}
300 
301 	return 0;
302 }
303 
304 /*
305  * Read at most 'maxsize' bytes from 'pos' in the file associated with 'dentptr'
306  * into 'buffer'.
307  * Update the number of bytes read in *gotsize or return -1 on fatal errors.
308  */
309 __u8 get_contents_vfatname_block[MAX_CLUSTSIZE]
310 	__aligned(ARCH_DMA_MINALIGN);
311 
312 static int get_contents(fsdata *mydata, dir_entry *dentptr, loff_t pos,
313 			__u8 *buffer, loff_t maxsize, loff_t *gotsize)
314 {
315 	loff_t filesize = FAT2CPU32(dentptr->size);
316 	unsigned int bytesperclust = mydata->clust_size * mydata->sect_size;
317 	__u32 curclust = START(dentptr);
318 	__u32 endclust, newclust;
319 	loff_t actsize;
320 
321 	*gotsize = 0;
322 	debug("Filesize: %llu bytes\n", filesize);
323 
324 	if (pos >= filesize) {
325 		debug("Read position past EOF: %llu\n", pos);
326 		return 0;
327 	}
328 
329 	if (maxsize > 0 && filesize > pos + maxsize)
330 		filesize = pos + maxsize;
331 
332 	debug("%llu bytes\n", filesize);
333 
334 	actsize = bytesperclust;
335 
336 	/* go to cluster at pos */
337 	while (actsize <= pos) {
338 		curclust = get_fatent(mydata, curclust);
339 		if (CHECK_CLUST(curclust, mydata->fatsize)) {
340 			debug("curclust: 0x%x\n", curclust);
341 			debug("Invalid FAT entry\n");
342 			return 0;
343 		}
344 		actsize += bytesperclust;
345 	}
346 
347 	/* actsize > pos */
348 	actsize -= bytesperclust;
349 	filesize -= actsize;
350 	pos -= actsize;
351 
352 	/* align to beginning of next cluster if any */
353 	if (pos) {
354 		actsize = min(filesize, (loff_t)bytesperclust);
355 		if (get_cluster(mydata, curclust, get_contents_vfatname_block,
356 				(int)actsize) != 0) {
357 			printf("Error reading cluster\n");
358 			return -1;
359 		}
360 		filesize -= actsize;
361 		actsize -= pos;
362 		memcpy(buffer, get_contents_vfatname_block + pos, actsize);
363 		*gotsize += actsize;
364 		if (!filesize)
365 			return 0;
366 		buffer += actsize;
367 
368 		curclust = get_fatent(mydata, curclust);
369 		if (CHECK_CLUST(curclust, mydata->fatsize)) {
370 			debug("curclust: 0x%x\n", curclust);
371 			debug("Invalid FAT entry\n");
372 			return 0;
373 		}
374 	}
375 
376 	actsize = bytesperclust;
377 	endclust = curclust;
378 
379 	do {
380 		/* search for consecutive clusters */
381 		while (actsize < filesize) {
382 			newclust = get_fatent(mydata, endclust);
383 			if ((newclust - 1) != endclust)
384 				goto getit;
385 			if (CHECK_CLUST(newclust, mydata->fatsize)) {
386 				debug("curclust: 0x%x\n", newclust);
387 				debug("Invalid FAT entry\n");
388 				return 0;
389 			}
390 			endclust = newclust;
391 			actsize += bytesperclust;
392 		}
393 
394 		/* get remaining bytes */
395 		actsize = filesize;
396 		if (get_cluster(mydata, curclust, buffer, (int)actsize) != 0) {
397 			printf("Error reading cluster\n");
398 			return -1;
399 		}
400 		*gotsize += actsize;
401 		return 0;
402 getit:
403 		if (get_cluster(mydata, curclust, buffer, (int)actsize) != 0) {
404 			printf("Error reading cluster\n");
405 			return -1;
406 		}
407 		*gotsize += (int)actsize;
408 		filesize -= actsize;
409 		buffer += actsize;
410 
411 		curclust = get_fatent(mydata, endclust);
412 		if (CHECK_CLUST(curclust, mydata->fatsize)) {
413 			debug("curclust: 0x%x\n", curclust);
414 			printf("Invalid FAT entry\n");
415 			return 0;
416 		}
417 		actsize = bytesperclust;
418 		endclust = curclust;
419 	} while (1);
420 }
421 
422 /*
423  * Extract the file name information from 'slotptr' into 'l_name',
424  * starting at l_name[*idx].
425  * Return 1 if terminator (zero byte) is found, 0 otherwise.
426  */
427 static int slot2str(dir_slot *slotptr, char *l_name, int *idx)
428 {
429 	int j;
430 
431 	for (j = 0; j <= 8; j += 2) {
432 		l_name[*idx] = slotptr->name0_4[j];
433 		if (l_name[*idx] == 0x00)
434 			return 1;
435 		(*idx)++;
436 	}
437 	for (j = 0; j <= 10; j += 2) {
438 		l_name[*idx] = slotptr->name5_10[j];
439 		if (l_name[*idx] == 0x00)
440 			return 1;
441 		(*idx)++;
442 	}
443 	for (j = 0; j <= 2; j += 2) {
444 		l_name[*idx] = slotptr->name11_12[j];
445 		if (l_name[*idx] == 0x00)
446 			return 1;
447 		(*idx)++;
448 	}
449 
450 	return 0;
451 }
452 
453 /* Calculate short name checksum */
454 static __u8 mkcksum(const char name[8], const char ext[3])
455 {
456 	int i;
457 
458 	__u8 ret = 0;
459 
460 	for (i = 0; i < 8; i++)
461 		ret = (((ret & 1) << 7) | ((ret & 0xfe) >> 1)) + name[i];
462 	for (i = 0; i < 3; i++)
463 		ret = (((ret & 1) << 7) | ((ret & 0xfe) >> 1)) + ext[i];
464 
465 	return ret;
466 }
467 
468 /*
469  * Read boot sector and volume info from a FAT filesystem
470  */
471 static int
472 read_bootsectandvi(boot_sector *bs, volume_info *volinfo, int *fatsize)
473 {
474 	__u8 *block;
475 	volume_info *vistart;
476 	int ret = 0;
477 
478 	if (cur_dev == NULL) {
479 		debug("Error: no device selected\n");
480 		return -1;
481 	}
482 
483 	block = malloc_cache_aligned(cur_dev->blksz);
484 	if (block == NULL) {
485 		debug("Error: allocating block\n");
486 		return -1;
487 	}
488 
489 	if (disk_read(0, 1, block) < 0) {
490 		debug("Error: reading block\n");
491 		goto fail;
492 	}
493 
494 	memcpy(bs, block, sizeof(boot_sector));
495 	bs->reserved = FAT2CPU16(bs->reserved);
496 	bs->fat_length = FAT2CPU16(bs->fat_length);
497 	bs->secs_track = FAT2CPU16(bs->secs_track);
498 	bs->heads = FAT2CPU16(bs->heads);
499 	bs->total_sect = FAT2CPU32(bs->total_sect);
500 
501 	/* FAT32 entries */
502 	if (bs->fat_length == 0) {
503 		/* Assume FAT32 */
504 		bs->fat32_length = FAT2CPU32(bs->fat32_length);
505 		bs->flags = FAT2CPU16(bs->flags);
506 		bs->root_cluster = FAT2CPU32(bs->root_cluster);
507 		bs->info_sector = FAT2CPU16(bs->info_sector);
508 		bs->backup_boot = FAT2CPU16(bs->backup_boot);
509 		vistart = (volume_info *)(block + sizeof(boot_sector));
510 		*fatsize = 32;
511 	} else {
512 		vistart = (volume_info *)&(bs->fat32_length);
513 		*fatsize = 0;
514 	}
515 	memcpy(volinfo, vistart, sizeof(volume_info));
516 
517 	if (*fatsize == 32) {
518 		if (strncmp(FAT32_SIGN, vistart->fs_type, SIGNLEN) == 0)
519 			goto exit;
520 	} else {
521 		if (strncmp(FAT12_SIGN, vistart->fs_type, SIGNLEN) == 0) {
522 			*fatsize = 12;
523 			goto exit;
524 		}
525 		if (strncmp(FAT16_SIGN, vistart->fs_type, SIGNLEN) == 0) {
526 			*fatsize = 16;
527 			goto exit;
528 		}
529 	}
530 
531 	debug("Error: broken fs_type sign\n");
532 fail:
533 	ret = -1;
534 exit:
535 	free(block);
536 	return ret;
537 }
538 
539 static int get_fs_info(fsdata *mydata)
540 {
541 	boot_sector bs;
542 	volume_info volinfo;
543 	int ret;
544 
545 	ret = read_bootsectandvi(&bs, &volinfo, &mydata->fatsize);
546 	if (ret) {
547 		debug("Error: reading boot sector\n");
548 		return ret;
549 	}
550 
551 	if (mydata->fatsize == 32) {
552 		mydata->fatlength = bs.fat32_length;
553 		mydata->total_sect = bs.total_sect;
554 	} else {
555 		mydata->fatlength = bs.fat_length;
556 		mydata->total_sect = (bs.sectors[1] << 8) + bs.sectors[0];
557 		if (!mydata->total_sect)
558 			mydata->total_sect = bs.total_sect;
559 	}
560 	if (!mydata->total_sect) /* unlikely */
561 		mydata->total_sect = (u32)cur_part_info.size;
562 
563 	mydata->fats = bs.fats;
564 	mydata->fat_sect = bs.reserved;
565 
566 	mydata->rootdir_sect = mydata->fat_sect + mydata->fatlength * bs.fats;
567 
568 	mydata->sect_size = (bs.sector_size[1] << 8) + bs.sector_size[0];
569 	mydata->clust_size = bs.cluster_size;
570 	if (mydata->sect_size != cur_part_info.blksz) {
571 		printf("Error: FAT sector size mismatch (fs=%hu, dev=%lu)\n",
572 				mydata->sect_size, cur_part_info.blksz);
573 		return -1;
574 	}
575 	if (mydata->clust_size == 0) {
576 		printf("Error: FAT cluster size not set\n");
577 		return -1;
578 	}
579 	if ((unsigned int)mydata->clust_size * mydata->sect_size >
580 	    MAX_CLUSTSIZE) {
581 		printf("Error: FAT cluster size too big (cs=%u, max=%u)\n",
582 		       (unsigned int)mydata->clust_size * mydata->sect_size,
583 		       MAX_CLUSTSIZE);
584 		return -1;
585 	}
586 
587 	if (mydata->fatsize == 32) {
588 		mydata->data_begin = mydata->rootdir_sect -
589 					(mydata->clust_size * 2);
590 		mydata->root_cluster = bs.root_cluster;
591 	} else {
592 		mydata->rootdir_size = ((bs.dir_entries[1]  * (int)256 +
593 					 bs.dir_entries[0]) *
594 					 sizeof(dir_entry)) /
595 					 mydata->sect_size;
596 		mydata->data_begin = mydata->rootdir_sect +
597 					mydata->rootdir_size -
598 					(mydata->clust_size * 2);
599 		mydata->root_cluster =
600 			sect_to_clust(mydata, mydata->rootdir_sect);
601 	}
602 
603 	mydata->fatbufnum = -1;
604 	mydata->fat_dirty = 0;
605 	mydata->fatbuf = malloc_cache_aligned(FATBUFSIZE);
606 	if (mydata->fatbuf == NULL) {
607 		debug("Error: allocating memory\n");
608 		return -1;
609 	}
610 
611 	debug("FAT%d, fat_sect: %d, fatlength: %d\n",
612 	       mydata->fatsize, mydata->fat_sect, mydata->fatlength);
613 	debug("Rootdir begins at cluster: %d, sector: %d, offset: %x\n"
614 	       "Data begins at: %d\n",
615 	       mydata->root_cluster,
616 	       mydata->rootdir_sect,
617 	       mydata->rootdir_sect * mydata->sect_size, mydata->data_begin);
618 	debug("Sector size: %d, cluster size: %d\n", mydata->sect_size,
619 	      mydata->clust_size);
620 
621 	return 0;
622 }
623 
624 
625 /*
626  * Directory iterator, to simplify filesystem traversal
627  *
628  * Implements an iterator pattern to traverse directory tables,
629  * transparently handling directory tables split across multiple
630  * clusters, and the difference between FAT12/FAT16 root directory
631  * (contiguous) and subdirectories + FAT32 root (chained).
632  *
633  * Rough usage:
634  *
635  *   for (fat_itr_root(&itr, fsdata); fat_itr_next(&itr); ) {
636  *      // to traverse down to a subdirectory pointed to by
637  *      // current iterator position:
638  *      fat_itr_child(&itr, &itr);
639  *   }
640  *
641  * For more complete example, see fat_itr_resolve()
642  */
643 
644 typedef struct {
645 	fsdata    *fsdata;        /* filesystem parameters */
646 	unsigned   start_clust;   /* first cluster */
647 	unsigned   clust;         /* current cluster */
648 	unsigned   next_clust;    /* next cluster if remaining == 0 */
649 	int        last_cluster;  /* set once we've read last cluster */
650 	int        is_root;       /* is iterator at root directory */
651 	int        remaining;     /* remaining dent's in current cluster */
652 
653 	/* current iterator position values: */
654 	dir_entry *dent;          /* current directory entry */
655 	char       l_name[VFAT_MAXLEN_BYTES];    /* long (vfat) name */
656 	char       s_name[14];    /* short 8.3 name */
657 	char      *name;          /* l_name if there is one, else s_name */
658 
659 	/* storage for current cluster in memory: */
660 	u8         block[MAX_CLUSTSIZE] __aligned(ARCH_DMA_MINALIGN);
661 } fat_itr;
662 
663 static int fat_itr_isdir(fat_itr *itr);
664 
665 /**
666  * fat_itr_root() - initialize an iterator to start at the root
667  * directory
668  *
669  * @itr: iterator to initialize
670  * @fsdata: filesystem data for the partition
671  * @return 0 on success, else -errno
672  */
673 static int fat_itr_root(fat_itr *itr, fsdata *fsdata)
674 {
675 	if (get_fs_info(fsdata))
676 		return -ENXIO;
677 
678 	itr->fsdata = fsdata;
679 	itr->start_clust = 0;
680 	itr->clust = fsdata->root_cluster;
681 	itr->next_clust = fsdata->root_cluster;
682 	itr->dent = NULL;
683 	itr->remaining = 0;
684 	itr->last_cluster = 0;
685 	itr->is_root = 1;
686 
687 	return 0;
688 }
689 
690 /**
691  * fat_itr_child() - initialize an iterator to descend into a sub-
692  * directory
693  *
694  * Initializes 'itr' to iterate the contents of the directory at
695  * the current cursor position of 'parent'.  It is an error to
696  * call this if the current cursor of 'parent' is pointing at a
697  * regular file.
698  *
699  * Note that 'itr' and 'parent' can be the same pointer if you do
700  * not need to preserve 'parent' after this call, which is useful
701  * for traversing directory structure to resolve a file/directory.
702  *
703  * @itr: iterator to initialize
704  * @parent: the iterator pointing at a directory entry in the
705  *    parent directory of the directory to iterate
706  */
707 static void fat_itr_child(fat_itr *itr, fat_itr *parent)
708 {
709 	fsdata *mydata = parent->fsdata;  /* for silly macros */
710 	unsigned clustnum = START(parent->dent);
711 
712 	assert(fat_itr_isdir(parent));
713 
714 	itr->fsdata = parent->fsdata;
715 	itr->start_clust = clustnum;
716 	if (clustnum > 0) {
717 		itr->clust = clustnum;
718 		itr->next_clust = clustnum;
719 		itr->is_root = 0;
720 	} else {
721 		itr->clust = parent->fsdata->root_cluster;
722 		itr->next_clust = parent->fsdata->root_cluster;
723 		itr->is_root = 1;
724 	}
725 	itr->dent = NULL;
726 	itr->remaining = 0;
727 	itr->last_cluster = 0;
728 }
729 
730 static void *next_cluster(fat_itr *itr)
731 {
732 	fsdata *mydata = itr->fsdata;  /* for silly macros */
733 	int ret;
734 	u32 sect;
735 
736 	/* have we reached the end? */
737 	if (itr->last_cluster)
738 		return NULL;
739 
740 	sect = clust_to_sect(itr->fsdata, itr->next_clust);
741 
742 	debug("FAT read(sect=%d), clust_size=%d, DIRENTSPERBLOCK=%zd\n",
743 	      sect, itr->fsdata->clust_size, DIRENTSPERBLOCK);
744 
745 	/*
746 	 * NOTE: do_fat_read_at() had complicated logic to deal w/
747 	 * vfat names that span multiple clusters in the fat16 case,
748 	 * which get_dentfromdir() probably also needed (and was
749 	 * missing).  And not entirely sure what fat32 didn't have
750 	 * the same issue..  We solve that by only caring about one
751 	 * dent at a time and iteratively constructing the vfat long
752 	 * name.
753 	 */
754 	ret = disk_read(sect, itr->fsdata->clust_size,
755 			itr->block);
756 	if (ret < 0) {
757 		debug("Error: reading block\n");
758 		return NULL;
759 	}
760 
761 	itr->clust = itr->next_clust;
762 	if (itr->is_root && itr->fsdata->fatsize != 32) {
763 		itr->next_clust++;
764 		sect = clust_to_sect(itr->fsdata, itr->next_clust);
765 		if (sect - itr->fsdata->rootdir_sect >=
766 		    itr->fsdata->rootdir_size) {
767 			debug("nextclust: 0x%x\n", itr->next_clust);
768 			itr->last_cluster = 1;
769 		}
770 	} else {
771 		itr->next_clust = get_fatent(itr->fsdata, itr->next_clust);
772 		if (CHECK_CLUST(itr->next_clust, itr->fsdata->fatsize)) {
773 			debug("nextclust: 0x%x\n", itr->next_clust);
774 			itr->last_cluster = 1;
775 		}
776 	}
777 
778 	return itr->block;
779 }
780 
781 static dir_entry *next_dent(fat_itr *itr)
782 {
783 	if (itr->remaining == 0) {
784 		struct dir_entry *dent = next_cluster(itr);
785 		unsigned nbytes = itr->fsdata->sect_size *
786 			itr->fsdata->clust_size;
787 
788 		/* have we reached the last cluster? */
789 		if (!dent) {
790 			/* a sign for no more entries left */
791 			itr->dent = NULL;
792 			return NULL;
793 		}
794 
795 		itr->remaining = nbytes / sizeof(dir_entry) - 1;
796 		itr->dent = dent;
797 	} else {
798 		itr->remaining--;
799 		itr->dent++;
800 	}
801 
802 	/* have we reached the last valid entry? */
803 	if (itr->dent->name[0] == 0)
804 		return NULL;
805 
806 	return itr->dent;
807 }
808 
809 static dir_entry *extract_vfat_name(fat_itr *itr)
810 {
811 	struct dir_entry *dent = itr->dent;
812 	int seqn = itr->dent->name[0] & ~LAST_LONG_ENTRY_MASK;
813 	u8 chksum, alias_checksum = ((dir_slot *)dent)->alias_checksum;
814 	int n = 0;
815 
816 	while (seqn--) {
817 		char buf[13];
818 		int idx = 0;
819 
820 		slot2str((dir_slot *)dent, buf, &idx);
821 
822 		if (n + idx >= sizeof(itr->l_name))
823 			return NULL;
824 
825 		/* shift accumulated long-name up and copy new part in: */
826 		memmove(itr->l_name + idx, itr->l_name, n);
827 		memcpy(itr->l_name, buf, idx);
828 		n += idx;
829 
830 		dent = next_dent(itr);
831 		if (!dent)
832 			return NULL;
833 	}
834 
835 	itr->l_name[n] = '\0';
836 
837 	chksum = mkcksum(dent->name, dent->ext);
838 
839 	/* checksum mismatch could mean deleted file, etc.. skip it: */
840 	if (chksum != alias_checksum) {
841 		debug("** chksum=%x, alias_checksum=%x, l_name=%s, s_name=%8s.%3s\n",
842 		      chksum, alias_checksum, itr->l_name, dent->name, dent->ext);
843 		return NULL;
844 	}
845 
846 	return dent;
847 }
848 
849 /**
850  * fat_itr_next() - step to the next entry in a directory
851  *
852  * Must be called once on a new iterator before the cursor is valid.
853  *
854  * @itr: the iterator to iterate
855  * @return boolean, 1 if success or 0 if no more entries in the
856  *    current directory
857  */
858 static int fat_itr_next(fat_itr *itr)
859 {
860 	dir_entry *dent;
861 
862 	itr->name = NULL;
863 
864 	while (1) {
865 		dent = next_dent(itr);
866 		if (!dent)
867 			return 0;
868 
869 		if (dent->name[0] == DELETED_FLAG ||
870 		    dent->name[0] == aRING)
871 			continue;
872 
873 		if (dent->attr & ATTR_VOLUME) {
874 			if ((dent->attr & ATTR_VFAT) == ATTR_VFAT &&
875 			    (dent->name[0] & LAST_LONG_ENTRY_MASK)) {
876 				dent = extract_vfat_name(itr);
877 				if (!dent)
878 					continue;
879 				itr->name = itr->l_name;
880 				break;
881 			} else {
882 				/* Volume label or VFAT entry, skip */
883 				continue;
884 			}
885 		}
886 
887 		break;
888 	}
889 
890 	get_name(dent, itr->s_name);
891 	if (!itr->name)
892 		itr->name = itr->s_name;
893 
894 	return 1;
895 }
896 
897 /**
898  * fat_itr_isdir() - is current cursor position pointing to a directory
899  *
900  * @itr: the iterator
901  * @return true if cursor is at a directory
902  */
903 static int fat_itr_isdir(fat_itr *itr)
904 {
905 	return !!(itr->dent->attr & ATTR_DIR);
906 }
907 
908 /*
909  * Helpers:
910  */
911 
912 #define TYPE_FILE 0x1
913 #define TYPE_DIR  0x2
914 #define TYPE_ANY  (TYPE_FILE | TYPE_DIR)
915 
916 /**
917  * fat_itr_resolve() - traverse directory structure to resolve the
918  * requested path.
919  *
920  * Traverse directory structure to the requested path.  If the specified
921  * path is to a directory, this will descend into the directory and
922  * leave it iterator at the start of the directory.  If the path is to a
923  * file, it will leave the iterator in the parent directory with current
924  * cursor at file's entry in the directory.
925  *
926  * @itr: iterator initialized to root
927  * @path: the requested path
928  * @type: bitmask of allowable file types
929  * @return 0 on success or -errno
930  */
931 static int fat_itr_resolve(fat_itr *itr, const char *path, unsigned type)
932 {
933 	const char *next;
934 
935 	/* chomp any extra leading slashes: */
936 	while (path[0] && ISDIRDELIM(path[0]))
937 		path++;
938 
939 	/* are we at the end? */
940 	if (strlen(path) == 0) {
941 		if (!(type & TYPE_DIR))
942 			return -ENOENT;
943 		return 0;
944 	}
945 
946 	/* find length of next path entry: */
947 	next = path;
948 	while (next[0] && !ISDIRDELIM(next[0]))
949 		next++;
950 
951 	if (itr->is_root) {
952 		/* root dir doesn't have "." nor ".." */
953 		if ((((next - path) == 1) && !strncmp(path, ".", 1)) ||
954 		    (((next - path) == 2) && !strncmp(path, "..", 2))) {
955 			/* point back to itself */
956 			itr->clust = itr->fsdata->root_cluster;
957 			itr->next_clust = itr->fsdata->root_cluster;
958 			itr->dent = NULL;
959 			itr->remaining = 0;
960 			itr->last_cluster = 0;
961 
962 			if (next[0] == 0) {
963 				if (type & TYPE_DIR)
964 					return 0;
965 				else
966 					return -ENOENT;
967 			}
968 
969 			return fat_itr_resolve(itr, next, type);
970 		}
971 	}
972 
973 	while (fat_itr_next(itr)) {
974 		int match = 0;
975 		unsigned n = max(strlen(itr->name), (size_t)(next - path));
976 
977 		/* check both long and short name: */
978 		if (!strncasecmp(path, itr->name, n))
979 			match = 1;
980 		else if (itr->name != itr->s_name &&
981 			 !strncasecmp(path, itr->s_name, n))
982 			match = 1;
983 
984 		if (!match)
985 			continue;
986 
987 		if (fat_itr_isdir(itr)) {
988 			/* recurse into directory: */
989 			fat_itr_child(itr, itr);
990 			return fat_itr_resolve(itr, next, type);
991 		} else if (next[0]) {
992 			/*
993 			 * If next is not empty then we have a case
994 			 * like: /path/to/realfile/nonsense
995 			 */
996 			debug("bad trailing path: %s\n", next);
997 			return -ENOENT;
998 		} else if (!(type & TYPE_FILE)) {
999 			return -ENOTDIR;
1000 		} else {
1001 			return 0;
1002 		}
1003 	}
1004 
1005 	return -ENOENT;
1006 }
1007 
1008 int file_fat_detectfs(void)
1009 {
1010 	boot_sector bs;
1011 	volume_info volinfo;
1012 	int fatsize;
1013 	char vol_label[12];
1014 
1015 	if (cur_dev == NULL) {
1016 		printf("No current device\n");
1017 		return 1;
1018 	}
1019 
1020 #if defined(CONFIG_IDE) || \
1021     defined(CONFIG_SATA) || \
1022     defined(CONFIG_SCSI) || \
1023     defined(CONFIG_CMD_USB) || \
1024     defined(CONFIG_MMC)
1025 	printf("Interface:  ");
1026 	switch (cur_dev->if_type) {
1027 	case IF_TYPE_IDE:
1028 		printf("IDE");
1029 		break;
1030 	case IF_TYPE_SATA:
1031 		printf("SATA");
1032 		break;
1033 	case IF_TYPE_SCSI:
1034 		printf("SCSI");
1035 		break;
1036 	case IF_TYPE_ATAPI:
1037 		printf("ATAPI");
1038 		break;
1039 	case IF_TYPE_USB:
1040 		printf("USB");
1041 		break;
1042 	case IF_TYPE_DOC:
1043 		printf("DOC");
1044 		break;
1045 	case IF_TYPE_MMC:
1046 		printf("MMC");
1047 		break;
1048 	default:
1049 		printf("Unknown");
1050 	}
1051 
1052 	printf("\n  Device %d: ", cur_dev->devnum);
1053 	dev_print(cur_dev);
1054 #endif
1055 
1056 	if (read_bootsectandvi(&bs, &volinfo, &fatsize)) {
1057 		printf("\nNo valid FAT fs found\n");
1058 		return 1;
1059 	}
1060 
1061 	memcpy(vol_label, volinfo.volume_label, 11);
1062 	vol_label[11] = '\0';
1063 	volinfo.fs_type[5] = '\0';
1064 
1065 	printf("Filesystem: %s \"%s\"\n", volinfo.fs_type, vol_label);
1066 
1067 	return 0;
1068 }
1069 
1070 int fat_exists(const char *filename)
1071 {
1072 	fsdata fsdata;
1073 	fat_itr *itr;
1074 	int ret;
1075 
1076 	itr = malloc_cache_aligned(sizeof(fat_itr));
1077 	if (!itr)
1078 		return 0;
1079 	ret = fat_itr_root(itr, &fsdata);
1080 	if (ret)
1081 		goto out;
1082 
1083 	ret = fat_itr_resolve(itr, filename, TYPE_ANY);
1084 	free(fsdata.fatbuf);
1085 out:
1086 	free(itr);
1087 	return ret == 0;
1088 }
1089 
1090 int fat_size(const char *filename, loff_t *size)
1091 {
1092 	fsdata fsdata;
1093 	fat_itr *itr;
1094 	int ret;
1095 
1096 	itr = malloc_cache_aligned(sizeof(fat_itr));
1097 	if (!itr)
1098 		return -ENOMEM;
1099 	ret = fat_itr_root(itr, &fsdata);
1100 	if (ret)
1101 		goto out_free_itr;
1102 
1103 	ret = fat_itr_resolve(itr, filename, TYPE_FILE);
1104 	if (ret) {
1105 		/*
1106 		 * Directories don't have size, but fs_size() is not
1107 		 * expected to fail if passed a directory path:
1108 		 */
1109 		free(fsdata.fatbuf);
1110 		fat_itr_root(itr, &fsdata);
1111 		if (!fat_itr_resolve(itr, filename, TYPE_DIR)) {
1112 			*size = 0;
1113 			ret = 0;
1114 		}
1115 		goto out_free_both;
1116 	}
1117 
1118 	*size = FAT2CPU32(itr->dent->size);
1119 out_free_both:
1120 	free(fsdata.fatbuf);
1121 out_free_itr:
1122 	free(itr);
1123 	return ret;
1124 }
1125 
1126 int file_fat_read_at(const char *filename, loff_t pos, void *buffer,
1127 		     loff_t maxsize, loff_t *actread)
1128 {
1129 	fsdata fsdata;
1130 	fat_itr *itr;
1131 	int ret;
1132 
1133 	itr = malloc_cache_aligned(sizeof(fat_itr));
1134 	if (!itr)
1135 		return -ENOMEM;
1136 	ret = fat_itr_root(itr, &fsdata);
1137 	if (ret)
1138 		goto out_free_itr;
1139 
1140 	ret = fat_itr_resolve(itr, filename, TYPE_FILE);
1141 	if (ret)
1142 		goto out_free_both;
1143 
1144 	debug("reading %s at pos %llu\n", filename, pos);
1145 	ret = get_contents(&fsdata, itr->dent, pos, buffer, maxsize, actread);
1146 
1147 out_free_both:
1148 	free(fsdata.fatbuf);
1149 out_free_itr:
1150 	free(itr);
1151 	return ret;
1152 }
1153 
1154 int file_fat_read(const char *filename, void *buffer, int maxsize)
1155 {
1156 	loff_t actread;
1157 	int ret;
1158 
1159 	ret =  file_fat_read_at(filename, 0, buffer, maxsize, &actread);
1160 	if (ret)
1161 		return ret;
1162 	else
1163 		return actread;
1164 }
1165 
1166 int fat_read_file(const char *filename, void *buf, loff_t offset, loff_t len,
1167 		  loff_t *actread)
1168 {
1169 	int ret;
1170 
1171 	ret = file_fat_read_at(filename, offset, buf, len, actread);
1172 	if (ret)
1173 		printf("** Unable to read file %s **\n", filename);
1174 
1175 	return ret;
1176 }
1177 
1178 typedef struct {
1179 	struct fs_dir_stream parent;
1180 	struct fs_dirent dirent;
1181 	fsdata fsdata;
1182 	fat_itr itr;
1183 } fat_dir;
1184 
1185 int fat_opendir(const char *filename, struct fs_dir_stream **dirsp)
1186 {
1187 	fat_dir *dir;
1188 	int ret;
1189 
1190 	dir = malloc_cache_aligned(sizeof(*dir));
1191 	if (!dir)
1192 		return -ENOMEM;
1193 	memset(dir, 0, sizeof(*dir));
1194 
1195 	ret = fat_itr_root(&dir->itr, &dir->fsdata);
1196 	if (ret)
1197 		goto fail_free_dir;
1198 
1199 	ret = fat_itr_resolve(&dir->itr, filename, TYPE_DIR);
1200 	if (ret)
1201 		goto fail_free_both;
1202 
1203 	*dirsp = (struct fs_dir_stream *)dir;
1204 	return 0;
1205 
1206 fail_free_both:
1207 	free(dir->fsdata.fatbuf);
1208 fail_free_dir:
1209 	free(dir);
1210 	return ret;
1211 }
1212 
1213 int fat_readdir(struct fs_dir_stream *dirs, struct fs_dirent **dentp)
1214 {
1215 	fat_dir *dir = (fat_dir *)dirs;
1216 	struct fs_dirent *dent = &dir->dirent;
1217 
1218 	if (!fat_itr_next(&dir->itr))
1219 		return -ENOENT;
1220 
1221 	memset(dent, 0, sizeof(*dent));
1222 	strcpy(dent->name, dir->itr.name);
1223 
1224 	if (fat_itr_isdir(&dir->itr)) {
1225 		dent->type = FS_DT_DIR;
1226 	} else {
1227 		dent->type = FS_DT_REG;
1228 		dent->size = FAT2CPU32(dir->itr.dent->size);
1229 	}
1230 
1231 	*dentp = dent;
1232 
1233 	return 0;
1234 }
1235 
1236 void fat_closedir(struct fs_dir_stream *dirs)
1237 {
1238 	fat_dir *dir = (fat_dir *)dirs;
1239 	free(dir->fsdata.fatbuf);
1240 	free(dir);
1241 }
1242 
1243 void fat_close(void)
1244 {
1245 }
1246