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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Copyright (c) 2012, NVIDIA CORPORATION.  All rights reserved.
4  */
5 
6 #include <config.h>
7 #include <errno.h>
8 #include <common.h>
9 #include <env.h>
10 #include <mapmem.h>
11 #include <part.h>
12 #include <ext4fs.h>
13 #include <fat.h>
14 #include <fs.h>
15 #include <sandboxfs.h>
16 #include <ubifs_uboot.h>
17 #include <btrfs.h>
18 #include <asm/io.h>
19 #include <div64.h>
20 #include <linux/math64.h>
21 #include <efi_loader.h>
22 
23 DECLARE_GLOBAL_DATA_PTR;
24 
25 static struct blk_desc *fs_dev_desc;
26 static int fs_dev_part;
27 static disk_partition_t fs_partition;
28 static int fs_type = FS_TYPE_ANY;
29 
fs_probe_unsupported(struct blk_desc * fs_dev_desc,disk_partition_t * fs_partition)30 static inline int fs_probe_unsupported(struct blk_desc *fs_dev_desc,
31 				      disk_partition_t *fs_partition)
32 {
33 	printf("** Unrecognized filesystem type **\n");
34 	return -1;
35 }
36 
fs_ls_unsupported(const char * dirname)37 static inline int fs_ls_unsupported(const char *dirname)
38 {
39 	return -1;
40 }
41 
42 /* generic implementation of ls in terms of opendir/readdir/closedir */
43 __maybe_unused
fs_ls_generic(const char * dirname)44 static int fs_ls_generic(const char *dirname)
45 {
46 	struct fs_dir_stream *dirs;
47 	struct fs_dirent *dent;
48 	int nfiles = 0, ndirs = 0;
49 
50 	dirs = fs_opendir(dirname);
51 	if (!dirs)
52 		return -errno;
53 
54 	while ((dent = fs_readdir(dirs))) {
55 		if (dent->type == FS_DT_DIR) {
56 			printf("            %s/\n", dent->name);
57 			ndirs++;
58 		} else {
59 			printf(" %8lld   %s\n", dent->size, dent->name);
60 			nfiles++;
61 		}
62 	}
63 
64 	fs_closedir(dirs);
65 
66 	printf("\n%d file(s), %d dir(s)\n\n", nfiles, ndirs);
67 
68 	return 0;
69 }
70 
fs_exists_unsupported(const char * filename)71 static inline int fs_exists_unsupported(const char *filename)
72 {
73 	return 0;
74 }
75 
fs_size_unsupported(const char * filename,loff_t * size)76 static inline int fs_size_unsupported(const char *filename, loff_t *size)
77 {
78 	return -1;
79 }
80 
fs_read_unsupported(const char * filename,void * buf,loff_t offset,loff_t len,loff_t * actread)81 static inline int fs_read_unsupported(const char *filename, void *buf,
82 				      loff_t offset, loff_t len,
83 				      loff_t *actread)
84 {
85 	return -1;
86 }
87 
fs_write_unsupported(const char * filename,void * buf,loff_t offset,loff_t len,loff_t * actwrite)88 static inline int fs_write_unsupported(const char *filename, void *buf,
89 				      loff_t offset, loff_t len,
90 				      loff_t *actwrite)
91 {
92 	return -1;
93 }
94 
fs_ln_unsupported(const char * filename,const char * target)95 static inline int fs_ln_unsupported(const char *filename, const char *target)
96 {
97 	return -1;
98 }
99 
fs_close_unsupported(void)100 static inline void fs_close_unsupported(void)
101 {
102 }
103 
fs_uuid_unsupported(char * uuid_str)104 static inline int fs_uuid_unsupported(char *uuid_str)
105 {
106 	return -1;
107 }
108 
fs_opendir_unsupported(const char * filename,struct fs_dir_stream ** dirs)109 static inline int fs_opendir_unsupported(const char *filename,
110 					 struct fs_dir_stream **dirs)
111 {
112 	return -EACCES;
113 }
114 
fs_unlink_unsupported(const char * filename)115 static inline int fs_unlink_unsupported(const char *filename)
116 {
117 	return -1;
118 }
119 
fs_mkdir_unsupported(const char * dirname)120 static inline int fs_mkdir_unsupported(const char *dirname)
121 {
122 	return -1;
123 }
124 
125 struct fstype_info {
126 	int fstype;
127 	char *name;
128 	/*
129 	 * Is it legal to pass NULL as .probe()'s  fs_dev_desc parameter? This
130 	 * should be false in most cases. For "virtual" filesystems which
131 	 * aren't based on a U-Boot block device (e.g. sandbox), this can be
132 	 * set to true. This should also be true for the dummy entry at the end
133 	 * of fstypes[], since that is essentially a "virtual" (non-existent)
134 	 * filesystem.
135 	 */
136 	bool null_dev_desc_ok;
137 	int (*probe)(struct blk_desc *fs_dev_desc,
138 		     disk_partition_t *fs_partition);
139 	int (*ls)(const char *dirname);
140 	int (*exists)(const char *filename);
141 	int (*size)(const char *filename, loff_t *size);
142 	int (*read)(const char *filename, void *buf, loff_t offset,
143 		    loff_t len, loff_t *actread);
144 	int (*write)(const char *filename, void *buf, loff_t offset,
145 		     loff_t len, loff_t *actwrite);
146 	void (*close)(void);
147 	int (*uuid)(char *uuid_str);
148 	/*
149 	 * Open a directory stream.  On success return 0 and directory
150 	 * stream pointer via 'dirsp'.  On error, return -errno.  See
151 	 * fs_opendir().
152 	 */
153 	int (*opendir)(const char *filename, struct fs_dir_stream **dirsp);
154 	/*
155 	 * Read next entry from directory stream.  On success return 0
156 	 * and directory entry pointer via 'dentp'.  On error return
157 	 * -errno.  See fs_readdir().
158 	 */
159 	int (*readdir)(struct fs_dir_stream *dirs, struct fs_dirent **dentp);
160 	/* see fs_closedir() */
161 	void (*closedir)(struct fs_dir_stream *dirs);
162 	int (*unlink)(const char *filename);
163 	int (*mkdir)(const char *dirname);
164 	int (*ln)(const char *filename, const char *target);
165 };
166 
167 static struct fstype_info fstypes[] = {
168 #ifdef CONFIG_FS_FAT
169 	{
170 		.fstype = FS_TYPE_FAT,
171 		.name = "fat",
172 		.null_dev_desc_ok = false,
173 		.probe = fat_set_blk_dev,
174 		.close = fat_close,
175 		.ls = fs_ls_generic,
176 		.exists = fat_exists,
177 		.size = fat_size,
178 		.read = fat_read_file,
179 #if CONFIG_IS_ENABLED(FAT_WRITE)
180 		.write = file_fat_write,
181 		.unlink = fat_unlink,
182 		.mkdir = fat_mkdir,
183 #else
184 		.write = fs_write_unsupported,
185 		.unlink = fs_unlink_unsupported,
186 		.mkdir = fs_mkdir_unsupported,
187 #endif
188 		.uuid = fs_uuid_unsupported,
189 		.opendir = fat_opendir,
190 		.readdir = fat_readdir,
191 		.closedir = fat_closedir,
192 		.ln = fs_ln_unsupported,
193 	},
194 #endif
195 
196 #if CONFIG_IS_ENABLED(FS_EXT4)
197 	{
198 		.fstype = FS_TYPE_EXT,
199 		.name = "ext4",
200 		.null_dev_desc_ok = false,
201 		.probe = ext4fs_probe,
202 		.close = ext4fs_close,
203 		.ls = ext4fs_ls,
204 		.exists = ext4fs_exists,
205 		.size = ext4fs_size,
206 		.read = ext4_read_file,
207 #ifdef CONFIG_CMD_EXT4_WRITE
208 		.write = ext4_write_file,
209 		.ln = ext4fs_create_link,
210 #else
211 		.write = fs_write_unsupported,
212 		.ln = fs_ln_unsupported,
213 #endif
214 		.uuid = ext4fs_uuid,
215 		.opendir = fs_opendir_unsupported,
216 		.unlink = fs_unlink_unsupported,
217 		.mkdir = fs_mkdir_unsupported,
218 	},
219 #endif
220 #ifdef CONFIG_SANDBOX
221 	{
222 		.fstype = FS_TYPE_SANDBOX,
223 		.name = "sandbox",
224 		.null_dev_desc_ok = true,
225 		.probe = sandbox_fs_set_blk_dev,
226 		.close = sandbox_fs_close,
227 		.ls = sandbox_fs_ls,
228 		.exists = sandbox_fs_exists,
229 		.size = sandbox_fs_size,
230 		.read = fs_read_sandbox,
231 		.write = fs_write_sandbox,
232 		.uuid = fs_uuid_unsupported,
233 		.opendir = fs_opendir_unsupported,
234 		.unlink = fs_unlink_unsupported,
235 		.mkdir = fs_mkdir_unsupported,
236 		.ln = fs_ln_unsupported,
237 	},
238 #endif
239 #ifdef CONFIG_CMD_UBIFS
240 	{
241 		.fstype = FS_TYPE_UBIFS,
242 		.name = "ubifs",
243 		.null_dev_desc_ok = true,
244 		.probe = ubifs_set_blk_dev,
245 		.close = ubifs_close,
246 		.ls = ubifs_ls,
247 		.exists = ubifs_exists,
248 		.size = ubifs_size,
249 		.read = ubifs_read,
250 		.write = fs_write_unsupported,
251 		.uuid = fs_uuid_unsupported,
252 		.opendir = fs_opendir_unsupported,
253 		.unlink = fs_unlink_unsupported,
254 		.mkdir = fs_mkdir_unsupported,
255 		.ln = fs_ln_unsupported,
256 	},
257 #endif
258 #ifdef CONFIG_FS_BTRFS
259 	{
260 		.fstype = FS_TYPE_BTRFS,
261 		.name = "btrfs",
262 		.null_dev_desc_ok = false,
263 		.probe = btrfs_probe,
264 		.close = btrfs_close,
265 		.ls = btrfs_ls,
266 		.exists = btrfs_exists,
267 		.size = btrfs_size,
268 		.read = btrfs_read,
269 		.write = fs_write_unsupported,
270 		.uuid = btrfs_uuid,
271 		.opendir = fs_opendir_unsupported,
272 		.unlink = fs_unlink_unsupported,
273 		.mkdir = fs_mkdir_unsupported,
274 		.ln = fs_ln_unsupported,
275 	},
276 #endif
277 	{
278 		.fstype = FS_TYPE_ANY,
279 		.name = "unsupported",
280 		.null_dev_desc_ok = true,
281 		.probe = fs_probe_unsupported,
282 		.close = fs_close_unsupported,
283 		.ls = fs_ls_unsupported,
284 		.exists = fs_exists_unsupported,
285 		.size = fs_size_unsupported,
286 		.read = fs_read_unsupported,
287 		.write = fs_write_unsupported,
288 		.uuid = fs_uuid_unsupported,
289 		.opendir = fs_opendir_unsupported,
290 		.unlink = fs_unlink_unsupported,
291 		.mkdir = fs_mkdir_unsupported,
292 		.ln = fs_ln_unsupported,
293 	},
294 };
295 
fs_get_info(int fstype)296 static struct fstype_info *fs_get_info(int fstype)
297 {
298 	struct fstype_info *info;
299 	int i;
300 
301 	for (i = 0, info = fstypes; i < ARRAY_SIZE(fstypes) - 1; i++, info++) {
302 		if (fstype == info->fstype)
303 			return info;
304 	}
305 
306 	/* Return the 'unsupported' sentinel */
307 	return info;
308 }
309 
310 /**
311  * fs_get_type() - Get type of current filesystem
312  *
313  * Return: filesystem type
314  *
315  * Returns filesystem type representing the current filesystem, or
316  * FS_TYPE_ANY for any unrecognised filesystem.
317  */
fs_get_type(void)318 int fs_get_type(void)
319 {
320 	return fs_type;
321 }
322 
323 /**
324  * fs_get_type_name() - Get type of current filesystem
325  *
326  * Return: Pointer to filesystem name
327  *
328  * Returns a string describing the current filesystem, or the sentinel
329  * "unsupported" for any unrecognised filesystem.
330  */
fs_get_type_name(void)331 const char *fs_get_type_name(void)
332 {
333 	return fs_get_info(fs_type)->name;
334 }
335 
fs_set_blk_dev(const char * ifname,const char * dev_part_str,int fstype)336 int fs_set_blk_dev(const char *ifname, const char *dev_part_str, int fstype)
337 {
338 	struct fstype_info *info;
339 	int part, i;
340 #ifdef CONFIG_NEEDS_MANUAL_RELOC
341 	static int relocated;
342 
343 	if (!relocated) {
344 		for (i = 0, info = fstypes; i < ARRAY_SIZE(fstypes);
345 				i++, info++) {
346 			info->name += gd->reloc_off;
347 			info->probe += gd->reloc_off;
348 			info->close += gd->reloc_off;
349 			info->ls += gd->reloc_off;
350 			info->read += gd->reloc_off;
351 			info->write += gd->reloc_off;
352 		}
353 		relocated = 1;
354 	}
355 #endif
356 
357 	part = blk_get_device_part_str(ifname, dev_part_str, &fs_dev_desc,
358 					&fs_partition, 1);
359 	if (part < 0)
360 		return -1;
361 
362 	for (i = 0, info = fstypes; i < ARRAY_SIZE(fstypes); i++, info++) {
363 		if (fstype != FS_TYPE_ANY && info->fstype != FS_TYPE_ANY &&
364 				fstype != info->fstype)
365 			continue;
366 
367 		if (!fs_dev_desc && !info->null_dev_desc_ok)
368 			continue;
369 
370 		if (!info->probe(fs_dev_desc, &fs_partition)) {
371 			fs_type = info->fstype;
372 			fs_dev_part = part;
373 			return 0;
374 		}
375 	}
376 
377 	return -1;
378 }
379 
380 /* set current blk device w/ blk_desc + partition # */
fs_set_blk_dev_with_part(struct blk_desc * desc,int part)381 int fs_set_blk_dev_with_part(struct blk_desc *desc, int part)
382 {
383 	struct fstype_info *info;
384 	int ret, i;
385 
386 	if (part >= 1)
387 		ret = part_get_info(desc, part, &fs_partition);
388 	else
389 		ret = part_get_info_whole_disk(desc, &fs_partition);
390 	if (ret)
391 		return ret;
392 	fs_dev_desc = desc;
393 
394 	for (i = 0, info = fstypes; i < ARRAY_SIZE(fstypes); i++, info++) {
395 		if (!info->probe(fs_dev_desc, &fs_partition)) {
396 			fs_type = info->fstype;
397 			fs_dev_part = part;
398 			return 0;
399 		}
400 	}
401 
402 	return -1;
403 }
404 
fs_close(void)405 void fs_close(void)
406 {
407 	struct fstype_info *info = fs_get_info(fs_type);
408 
409 	info->close();
410 
411 	fs_type = FS_TYPE_ANY;
412 }
413 
fs_uuid(char * uuid_str)414 int fs_uuid(char *uuid_str)
415 {
416 	struct fstype_info *info = fs_get_info(fs_type);
417 
418 	return info->uuid(uuid_str);
419 }
420 
fs_ls(const char * dirname)421 int fs_ls(const char *dirname)
422 {
423 	int ret;
424 
425 	struct fstype_info *info = fs_get_info(fs_type);
426 
427 	ret = info->ls(dirname);
428 
429 	fs_close();
430 
431 	return ret;
432 }
433 
fs_exists(const char * filename)434 int fs_exists(const char *filename)
435 {
436 	int ret;
437 
438 	struct fstype_info *info = fs_get_info(fs_type);
439 
440 	ret = info->exists(filename);
441 
442 	fs_close();
443 
444 	return ret;
445 }
446 
fs_size(const char * filename,loff_t * size)447 int fs_size(const char *filename, loff_t *size)
448 {
449 	int ret;
450 
451 	struct fstype_info *info = fs_get_info(fs_type);
452 
453 	ret = info->size(filename, size);
454 
455 	fs_close();
456 
457 	return ret;
458 }
459 
460 #ifdef CONFIG_LMB
461 /* Check if a file may be read to the given address */
fs_read_lmb_check(const char * filename,ulong addr,loff_t offset,loff_t len,struct fstype_info * info)462 static int fs_read_lmb_check(const char *filename, ulong addr, loff_t offset,
463 			     loff_t len, struct fstype_info *info)
464 {
465 	struct lmb lmb;
466 	int ret;
467 	loff_t size;
468 	loff_t read_len;
469 
470 	/* get the actual size of the file */
471 	ret = info->size(filename, &size);
472 	if (ret)
473 		return ret;
474 	if (offset >= size) {
475 		/* offset >= EOF, no bytes will be written */
476 		return 0;
477 	}
478 	read_len = size - offset;
479 
480 	/* limit to 'len' if it is smaller */
481 	if (len && len < read_len)
482 		read_len = len;
483 
484 	lmb_init_and_reserve(&lmb, gd->bd, (void *)gd->fdt_blob);
485 	lmb_dump_all(&lmb);
486 
487 	if (lmb_alloc_addr(&lmb, addr, read_len) == addr)
488 		return 0;
489 
490 	printf("** Reading file would overwrite reserved memory **\n");
491 	return -ENOSPC;
492 }
493 #endif
494 
_fs_read(const char * filename,ulong addr,loff_t offset,loff_t len,int do_lmb_check,loff_t * actread)495 static int _fs_read(const char *filename, ulong addr, loff_t offset, loff_t len,
496 		    int do_lmb_check, loff_t *actread)
497 {
498 	struct fstype_info *info = fs_get_info(fs_type);
499 	void *buf;
500 	int ret;
501 
502 #ifdef CONFIG_LMB
503 	if (do_lmb_check) {
504 		ret = fs_read_lmb_check(filename, addr, offset, len, info);
505 		if (ret)
506 			return ret;
507 	}
508 #endif
509 
510 	/*
511 	 * We don't actually know how many bytes are being read, since len==0
512 	 * means read the whole file.
513 	 */
514 	buf = map_sysmem(addr, len);
515 	ret = info->read(filename, buf, offset, len, actread);
516 	unmap_sysmem(buf);
517 
518 	/* If we requested a specific number of bytes, check we got it */
519 	if (ret == 0 && len && *actread != len)
520 		debug("** %s shorter than offset + len **\n", filename);
521 	fs_close();
522 
523 	return ret;
524 }
525 
fs_read(const char * filename,ulong addr,loff_t offset,loff_t len,loff_t * actread)526 int fs_read(const char *filename, ulong addr, loff_t offset, loff_t len,
527 	    loff_t *actread)
528 {
529 	return _fs_read(filename, addr, offset, len, 0, actread);
530 }
531 
fs_write(const char * filename,ulong addr,loff_t offset,loff_t len,loff_t * actwrite)532 int fs_write(const char *filename, ulong addr, loff_t offset, loff_t len,
533 	     loff_t *actwrite)
534 {
535 	struct fstype_info *info = fs_get_info(fs_type);
536 	void *buf;
537 	int ret;
538 
539 	buf = map_sysmem(addr, len);
540 	ret = info->write(filename, buf, offset, len, actwrite);
541 	unmap_sysmem(buf);
542 
543 	if (ret < 0 && len != *actwrite) {
544 		printf("** Unable to write file %s **\n", filename);
545 		ret = -1;
546 	}
547 	fs_close();
548 
549 	return ret;
550 }
551 
fs_opendir(const char * filename)552 struct fs_dir_stream *fs_opendir(const char *filename)
553 {
554 	struct fstype_info *info = fs_get_info(fs_type);
555 	struct fs_dir_stream *dirs = NULL;
556 	int ret;
557 
558 	ret = info->opendir(filename, &dirs);
559 	fs_close();
560 	if (ret) {
561 		errno = -ret;
562 		return NULL;
563 	}
564 
565 	dirs->desc = fs_dev_desc;
566 	dirs->part = fs_dev_part;
567 
568 	return dirs;
569 }
570 
fs_readdir(struct fs_dir_stream * dirs)571 struct fs_dirent *fs_readdir(struct fs_dir_stream *dirs)
572 {
573 	struct fstype_info *info;
574 	struct fs_dirent *dirent;
575 	int ret;
576 
577 	fs_set_blk_dev_with_part(dirs->desc, dirs->part);
578 	info = fs_get_info(fs_type);
579 
580 	ret = info->readdir(dirs, &dirent);
581 	fs_close();
582 	if (ret) {
583 		errno = -ret;
584 		return NULL;
585 	}
586 
587 	return dirent;
588 }
589 
fs_closedir(struct fs_dir_stream * dirs)590 void fs_closedir(struct fs_dir_stream *dirs)
591 {
592 	struct fstype_info *info;
593 
594 	if (!dirs)
595 		return;
596 
597 	fs_set_blk_dev_with_part(dirs->desc, dirs->part);
598 	info = fs_get_info(fs_type);
599 
600 	info->closedir(dirs);
601 	fs_close();
602 }
603 
fs_unlink(const char * filename)604 int fs_unlink(const char *filename)
605 {
606 	int ret;
607 
608 	struct fstype_info *info = fs_get_info(fs_type);
609 
610 	ret = info->unlink(filename);
611 
612 	fs_close();
613 
614 	return ret;
615 }
616 
fs_mkdir(const char * dirname)617 int fs_mkdir(const char *dirname)
618 {
619 	int ret;
620 
621 	struct fstype_info *info = fs_get_info(fs_type);
622 
623 	ret = info->mkdir(dirname);
624 
625 	fs_close();
626 
627 	return ret;
628 }
629 
fs_ln(const char * fname,const char * target)630 int fs_ln(const char *fname, const char *target)
631 {
632 	struct fstype_info *info = fs_get_info(fs_type);
633 	int ret;
634 
635 	ret = info->ln(fname, target);
636 
637 	if (ret < 0) {
638 		printf("** Unable to create link %s -> %s **\n", fname, target);
639 		ret = -1;
640 	}
641 	fs_close();
642 
643 	return ret;
644 }
645 
do_size(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)646 int do_size(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
647 		int fstype)
648 {
649 	loff_t size;
650 
651 	if (argc != 4)
652 		return CMD_RET_USAGE;
653 
654 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
655 		return 1;
656 
657 	if (fs_size(argv[3], &size) < 0)
658 		return CMD_RET_FAILURE;
659 
660 	env_set_hex("filesize", size);
661 
662 	return 0;
663 }
664 
do_load(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)665 int do_load(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
666 		int fstype)
667 {
668 	unsigned long addr;
669 	const char *addr_str;
670 	const char *filename;
671 	loff_t bytes;
672 	loff_t pos;
673 	loff_t len_read;
674 	int ret;
675 	unsigned long time;
676 	char *ep;
677 
678 	if (argc < 2)
679 		return CMD_RET_USAGE;
680 	if (argc > 7)
681 		return CMD_RET_USAGE;
682 
683 	if (fs_set_blk_dev(argv[1], (argc >= 3) ? argv[2] : NULL, fstype))
684 		return 1;
685 
686 	if (argc >= 4) {
687 		addr = simple_strtoul(argv[3], &ep, 16);
688 		if (ep == argv[3] || *ep != '\0')
689 			return CMD_RET_USAGE;
690 	} else {
691 		addr_str = env_get("loadaddr");
692 		if (addr_str != NULL)
693 			addr = simple_strtoul(addr_str, NULL, 16);
694 		else
695 			addr = CONFIG_SYS_LOAD_ADDR;
696 	}
697 	if (argc >= 5) {
698 		filename = argv[4];
699 	} else {
700 		filename = env_get("bootfile");
701 		if (!filename) {
702 			puts("** No boot file defined **\n");
703 			return 1;
704 		}
705 	}
706 	if (argc >= 6)
707 		bytes = simple_strtoul(argv[5], NULL, 16);
708 	else
709 		bytes = 0;
710 	if (argc >= 7)
711 		pos = simple_strtoul(argv[6], NULL, 16);
712 	else
713 		pos = 0;
714 
715 #ifdef CONFIG_CMD_BOOTEFI
716 	efi_set_bootdev(argv[1], (argc > 2) ? argv[2] : "",
717 			(argc > 4) ? argv[4] : "");
718 #endif
719 	time = get_timer(0);
720 	ret = _fs_read(filename, addr, pos, bytes, 1, &len_read);
721 	time = get_timer(time);
722 	if (ret < 0)
723 		return 1;
724 
725 	printf("%llu bytes read in %lu ms", len_read, time);
726 	if (time > 0) {
727 		puts(" (");
728 		print_size(div_u64(len_read, time) * 1000, "/s");
729 		puts(")");
730 	}
731 	puts("\n");
732 
733 	env_set_hex("fileaddr", addr);
734 	env_set_hex("filesize", len_read);
735 
736 	return 0;
737 }
738 
do_ls(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)739 int do_ls(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
740 	int fstype)
741 {
742 	if (argc < 2)
743 		return CMD_RET_USAGE;
744 	if (argc > 4)
745 		return CMD_RET_USAGE;
746 
747 	if (fs_set_blk_dev(argv[1], (argc >= 3) ? argv[2] : NULL, fstype))
748 		return 1;
749 
750 	if (fs_ls(argc >= 4 ? argv[3] : "/"))
751 		return 1;
752 
753 	return 0;
754 }
755 
file_exists(const char * dev_type,const char * dev_part,const char * file,int fstype)756 int file_exists(const char *dev_type, const char *dev_part, const char *file,
757 		int fstype)
758 {
759 	if (fs_set_blk_dev(dev_type, dev_part, fstype))
760 		return 0;
761 
762 	return fs_exists(file);
763 }
764 
do_save(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)765 int do_save(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
766 		int fstype)
767 {
768 	unsigned long addr;
769 	const char *filename;
770 	loff_t bytes;
771 	loff_t pos;
772 	loff_t len;
773 	int ret;
774 	unsigned long time;
775 
776 	if (argc < 6 || argc > 7)
777 		return CMD_RET_USAGE;
778 
779 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
780 		return 1;
781 
782 	addr = simple_strtoul(argv[3], NULL, 16);
783 	filename = argv[4];
784 	bytes = simple_strtoul(argv[5], NULL, 16);
785 	if (argc >= 7)
786 		pos = simple_strtoul(argv[6], NULL, 16);
787 	else
788 		pos = 0;
789 
790 	time = get_timer(0);
791 	ret = fs_write(filename, addr, pos, bytes, &len);
792 	time = get_timer(time);
793 	if (ret < 0)
794 		return 1;
795 
796 	printf("%llu bytes written in %lu ms", len, time);
797 	if (time > 0) {
798 		puts(" (");
799 		print_size(div_u64(len, time) * 1000, "/s");
800 		puts(")");
801 	}
802 	puts("\n");
803 
804 	return 0;
805 }
806 
do_fs_uuid(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)807 int do_fs_uuid(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
808 		int fstype)
809 {
810 	int ret;
811 	char uuid[37];
812 	memset(uuid, 0, sizeof(uuid));
813 
814 	if (argc < 3 || argc > 4)
815 		return CMD_RET_USAGE;
816 
817 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
818 		return 1;
819 
820 	ret = fs_uuid(uuid);
821 	if (ret)
822 		return CMD_RET_FAILURE;
823 
824 	if (argc == 4)
825 		env_set(argv[3], uuid);
826 	else
827 		printf("%s\n", uuid);
828 
829 	return CMD_RET_SUCCESS;
830 }
831 
do_fs_type(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[])832 int do_fs_type(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
833 {
834 	struct fstype_info *info;
835 
836 	if (argc < 3 || argc > 4)
837 		return CMD_RET_USAGE;
838 
839 	if (fs_set_blk_dev(argv[1], argv[2], FS_TYPE_ANY))
840 		return 1;
841 
842 	info = fs_get_info(fs_type);
843 
844 	if (argc == 4)
845 		env_set(argv[3], info->name);
846 	else
847 		printf("%s\n", info->name);
848 
849 	fs_close();
850 
851 	return CMD_RET_SUCCESS;
852 }
853 
do_rm(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)854 int do_rm(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
855 	  int fstype)
856 {
857 	if (argc != 4)
858 		return CMD_RET_USAGE;
859 
860 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
861 		return 1;
862 
863 	if (fs_unlink(argv[3]))
864 		return 1;
865 
866 	return 0;
867 }
868 
do_mkdir(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)869 int do_mkdir(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
870 	     int fstype)
871 {
872 	int ret;
873 
874 	if (argc != 4)
875 		return CMD_RET_USAGE;
876 
877 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
878 		return 1;
879 
880 	ret = fs_mkdir(argv[3]);
881 	if (ret) {
882 		printf("** Unable to create a directory \"%s\" **\n", argv[3]);
883 		return 1;
884 	}
885 
886 	return 0;
887 }
888 
do_ln(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[],int fstype)889 int do_ln(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
890 	  int fstype)
891 {
892 	if (argc != 5)
893 		return CMD_RET_USAGE;
894 
895 	if (fs_set_blk_dev(argv[1], argv[2], fstype))
896 		return 1;
897 
898 	if (fs_ln(argv[3], argv[4]))
899 		return 1;
900 
901 	return 0;
902 }
903