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1/*
2 * (C) Copyright 2002
3 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
700a0c64 4 *
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5 * (C) Copyright 2002
6 * Robert Schwebel, Pengutronix, <r.schwebel@pengutronix.de>
700a0c64 7 *
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8 * (C) Copyright 2003
9 * Kai-Uwe Bloem, Auerswald GmbH & Co KG, <linux-development@auerswald.de>
c609719b 10 *
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11 * (C) Copyright 2005
12 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
13 *
14 * Added support for reading flash partition table from environment.
15 * Parsing routines are based on driver/mtd/cmdline.c from the linux 2.4
16 * kernel tree.
17 *
18 * $Id: cmdlinepart.c,v 1.17 2004/11/26 11:18:47 lavinen Exp $
19 * Copyright 2002 SYSGO Real-Time Solutions GmbH
20 *
21 * See file CREDITS for list of people who contributed to this
22 * project.
23 *
24 * This program is free software; you can redistribute it and/or
25 * modify it under the terms of the GNU General Public License as
26 * published by the Free Software Foundation; either version 2 of
27 * the License, or (at your option) any later version.
28 *
29 * This program is distributed in the hope that it will be useful,
30 * but WITHOUT ANY WARRANTY; without even the implied warranty of
ab4b956d 31 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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32 * GNU General Public License for more details.
33 *
34 * You should have received a copy of the GNU General Public License
35 * along with this program; if not, write to the Free Software
36 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
37 * MA 02111-1307 USA
38 */
39
40/*
41 * Three environment variables are used by the parsing routines:
42 *
43 * 'partition' - keeps current partition identifier
44 *
45 * partition := <part-id>
46 * <part-id> := <dev-id>,part_num
47 *
8f79e4c2 48 *
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49 * 'mtdids' - linux kernel mtd device id <-> u-boot device id mapping
50 *
51 * mtdids=<idmap>[,<idmap>,...]
52 *
53 * <idmap> := <dev-id>=<mtd-id>
1a7f8cce 54 * <dev-id> := 'nand'|'nor'|'onenand'<dev-num>
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55 * <dev-num> := mtd device number, 0...
56 * <mtd-id> := unique device tag used by linux kernel to find mtd device (mtd->name)
57 *
58 *
59 * 'mtdparts' - partition list
60 *
61 * mtdparts=mtdparts=<mtd-def>[;<mtd-def>...]
62 *
63 * <mtd-def> := <mtd-id>:<part-def>[,<part-def>...]
64 * <mtd-id> := unique device tag used by linux kernel to find mtd device (mtd->name)
65 * <part-def> := <size>[@<offset>][<name>][<ro-flag>]
66 * <size> := standard linux memsize OR '-' to denote all remaining space
67 * <offset> := partition start offset within the device
68 * <name> := '(' NAME ')'
69 * <ro-flag> := when set to 'ro' makes partition read-only (not used, passed to kernel)
70 *
71 * Notes:
72 * - each <mtd-id> used in mtdparts must albo exist in 'mtddis' mapping
73 * - if the above variables are not set defaults for a given target are used
74 *
75 * Examples:
76 *
77 * 1 NOR Flash, with 1 single writable partition:
78 * mtdids=nor0=edb7312-nor
79 * mtdparts=mtdparts=edb7312-nor:-
80 *
81 * 1 NOR Flash with 2 partitions, 1 NAND with one
82 * mtdids=nor0=edb7312-nor,nand0=edb7312-nand
83 * mtdparts=mtdparts=edb7312-nor:256k(ARMboot)ro,-(root);edb7312-nand:-(home)
84 *
85 */
86
87/*
991b089d 88 * JFFS2/CRAMFS support
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89 */
90#include <common.h>
91#include <command.h>
92#include <malloc.h>
93#include <jffs2/jffs2.h>
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94#include <linux/list.h>
95#include <linux/ctype.h>
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96#include <cramfs/cramfs_fs.h>
97
c76fe474 98#if defined(CONFIG_CMD_NAND)
addb2e16 99#include <linux/mtd/nand.h>
ac7eb8a3 100#include <nand.h>
c76fe474 101#endif
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102
103#if defined(CONFIG_CMD_ONENAND)
104#include <linux/mtd/mtd.h>
105#include <linux/mtd/onenand.h>
106#include <onenand_uboot.h>
107#endif
108
700a0c64 109/* enable/disable debugging messages */
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110#define DEBUG_JFFS
111#undef DEBUG_JFFS
700a0c64 112
ab4b956d 113#ifdef DEBUG_JFFS
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114# define DEBUGF(fmt, args...) printf(fmt ,##args)
115#else
116# define DEBUGF(fmt, args...)
117#endif
118
119/* special size referring to all the remaining space in a partition */
120#define SIZE_REMAINING 0xFFFFFFFF
121
122/* special offset value, it is used when not provided by user
123 *
124 * this value is used temporarily during parsing, later such offests
125 * are recalculated */
126#define OFFSET_NOT_SPECIFIED 0xFFFFFFFF
127
128/* minimum partition size */
129#define MIN_PART_SIZE 4096
130
131/* this flag needs to be set in part_info struct mask_flags
132 * field for read-only partitions */
038ccac5 133#define MTD_WRITEABLE_CMD 1
700a0c64 134
68d7d651 135/* current active device and partition number */
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136#ifdef CONFIG_CMD_MTDPARTS
137/* Use the ones declared in cmd_mtdparts.c */
138extern struct mtd_device *current_mtd_dev;
139extern u8 current_mtd_partnum;
140#else
141/* Use local ones */
142struct mtd_device *current_mtd_dev = NULL;
143u8 current_mtd_partnum = 0;
144#endif
700a0c64 145
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146#if defined(CONFIG_CMD_CRAMFS)
147extern int cramfs_check (struct part_info *info);
148extern int cramfs_load (char *loadoffset, struct part_info *info, char *filename);
149extern int cramfs_ls (struct part_info *info, char *filename);
150extern int cramfs_info (struct part_info *info);
151#else
152/* defining empty macros for function names is ugly but avoids ifdef clutter
153 * all over the code */
154#define cramfs_check(x) (0)
155#define cramfs_load(x,y,z) (-1)
156#define cramfs_ls(x,y) (0)
157#define cramfs_info(x) (0)
158#endif
700a0c64 159
68d7d651 160#ifndef CONFIG_CMD_MTDPARTS
700a0c64 161/**
68d7d651 162 * Check device number to be within valid range for given device type.
700a0c64 163 *
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164 * @param dev device to validate
165 * @return 0 if device is valid, 1 otherwise
c609719b 166 */
68d7d651 167static int mtd_device_validate(u8 type, u8 num, u32 *size)
700a0c64 168{
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169 if (type == MTD_DEV_TYPE_NOR) {
170#if defined(CONFIG_CMD_FLASH)
171 if (num < CONFIG_SYS_MAX_FLASH_BANKS) {
172 extern flash_info_t flash_info[];
173 *size = flash_info[num].size;
180d3f74 174
68d7d651 175 return 0;
700a0c64 176 }
c609719b 177
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178 printf("no such FLASH device: %s%d (valid range 0 ... %d\n",
179 MTD_DEV_TYPE(type), num, CONFIG_SYS_MAX_FLASH_BANKS - 1);
180#else
181 printf("support for FLASH devices not present\n");
182#endif
183 } else if (type == MTD_DEV_TYPE_NAND) {
184#if defined(CONFIG_JFFS2_NAND) && defined(CONFIG_CMD_NAND)
185 if (num < CONFIG_SYS_MAX_NAND_DEVICE) {
68d7d651 186 *size = nand_info[num].size;
68d7d651 187 return 0;
700a0c64 188 }
6705d81e 189
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190 printf("no such NAND device: %s%d (valid range 0 ... %d)\n",
191 MTD_DEV_TYPE(type), num, CONFIG_SYS_MAX_NAND_DEVICE - 1);
192#else
193 printf("support for NAND devices not present\n");
194#endif
195 } else if (type == MTD_DEV_TYPE_ONENAND) {
196#if defined(CONFIG_CMD_ONENAND)
197 *size = onenand_mtd.size;
198 return 0;
199#else
200 printf("support for OneNAND devices not present\n");
201#endif
202 } else
203 printf("Unknown defice type %d\n", type);
c609719b 204
68d7d651 205 return 1;
700a0c64 206}
998eaaec 207
700a0c64 208/**
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209 * Parse device id string <dev-id> := 'nand'|'nor'|'onenand'<dev-num>,
210 * return device type and number.
700a0c64 211 *
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212 * @param id string describing device id
213 * @param ret_id output pointer to next char after parse completes (output)
214 * @param dev_type parsed device type (output)
215 * @param dev_num parsed device number (output)
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216 * @return 0 on success, 1 otherwise
217 */
68d7d651 218static int mtd_id_parse(const char *id, const char **ret_id, u8 *dev_type, u8 *dev_num)
c609719b 219{
68d7d651 220 const char *p = id;
700a0c64 221
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222 *dev_type = 0;
223 if (strncmp(p, "nand", 4) == 0) {
224 *dev_type = MTD_DEV_TYPE_NAND;
225 p += 4;
226 } else if (strncmp(p, "nor", 3) == 0) {
227 *dev_type = MTD_DEV_TYPE_NOR;
228 p += 3;
229 } else if (strncmp(p, "onenand", 7) == 0) {
230 *dev_type = MTD_DEV_TYPE_ONENAND;
231 p += 7;
232 } else {
233 printf("incorrect device type in %s\n", id);
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234 return 1;
235 }
c609719b 236
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237 if (!isdigit(*p)) {
238 printf("incorrect device number in %s\n", id);
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239 return 1;
240 }
241
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242 *dev_num = simple_strtoul(p, (char **)&p, 0);
243 if (ret_id)
244 *ret_id = p;
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245 return 0;
246}
68d7d651 247
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248/*
249 * 'Static' version of command line mtdparts_init() routine. Single partition on
250 * a single device configuration.
251 */
252
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253/**
254 * Calculate sector size.
255 *
256 * @return sector size
257 */
258static inline u32 get_part_sector_size_nand(struct mtdids *id)
259{
260#if defined(CONFIG_JFFS2_NAND) && defined(CONFIG_CMD_NAND)
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261 nand_info_t *nand;
262
263 nand = &nand_info[id->num];
264
265 return nand->erasesize;
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266#else
267 BUG();
268 return 0;
269#endif
270}
271
272static inline u32 get_part_sector_size_nor(struct mtdids *id, struct part_info *part)
273{
274#if defined(CONFIG_CMD_FLASH)
275 extern flash_info_t flash_info[];
276
277 u32 end_phys, start_phys, sector_size = 0, size = 0;
278 int i;
279 flash_info_t *flash;
280
281 flash = &flash_info[id->num];
282
283 start_phys = flash->start[0] + part->offset;
284 end_phys = start_phys + part->size;
285
286 for (i = 0; i < flash->sector_count; i++) {
287 if (flash->start[i] >= end_phys)
288 break;
289
290 if (flash->start[i] >= start_phys) {
291 if (i == flash->sector_count - 1) {
292 size = flash->start[0] + flash->size - flash->start[i];
293 } else {
294 size = flash->start[i+1] - flash->start[i];
295 }
296
297 if (sector_size < size)
298 sector_size = size;
299 }
300 }
301
302 return sector_size;
303#else
304 BUG();
305 return 0;
306#endif
307}
308
309static inline u32 get_part_sector_size_onenand(void)
310{
311#if defined(CONFIG_CMD_ONENAND)
312 struct mtd_info *mtd;
313
314 mtd = &onenand_mtd;
315
316 return mtd->erasesize;
317#else
318 BUG();
319 return 0;
320#endif
321}
322
323static inline u32 get_part_sector_size(struct mtdids *id, struct part_info *part)
324{
325 if (id->type == MTD_DEV_TYPE_NAND)
326 return get_part_sector_size_nand(id);
327 else if (id->type == MTD_DEV_TYPE_NOR)
328 return get_part_sector_size_nor(id, part);
329 else if (id->type == MTD_DEV_TYPE_ONENAND)
330 return get_part_sector_size_onenand();
331 else
332 DEBUGF("Error: Unknown device type.\n");
333
334 return 0;
335}
336
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337/**
338 * Parse and initialize global mtdids mapping and create global
8f79e4c2 339 * device/partition list.
700a0c64 340 *
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341 * 'Static' version of command line mtdparts_init() routine. Single partition on
342 * a single device configuration.
343 *
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344 * @return 0 on success, 1 otherwise
345 */
346int mtdparts_init(void)
347{
348 static int initialized = 0;
349 u32 size;
350 char *dev_name;
351
352 DEBUGF("\n---mtdparts_init---\n");
353 if (!initialized) {
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354 struct mtdids *id;
355 struct part_info *part;
356
700a0c64 357 initialized = 1;
76b5883d 358 current_mtd_dev = (struct mtd_device *)
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359 malloc(sizeof(struct mtd_device) +
360 sizeof(struct part_info) +
361 sizeof(struct mtdids));
76b5883d 362 if (!current_mtd_dev) {
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363 printf("out of memory\n");
364 return 1;
365 }
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SR
366 memset(current_mtd_dev, 0, sizeof(struct mtd_device) +
367 sizeof(struct part_info) + sizeof(struct mtdids));
700a0c64 368
76b5883d 369 id = (struct mtdids *)(current_mtd_dev + 1);
c4e0e686 370 part = (struct part_info *)(id + 1);
c609719b 371
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372 /* id */
373 id->mtd_id = "single part";
c609719b 374
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375#if defined(CONFIG_JFFS2_DEV)
376 dev_name = CONFIG_JFFS2_DEV;
c609719b 377#else
700a0c64 378 dev_name = "nor0";
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379#endif
380
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SR
381 if ((mtd_id_parse(dev_name, NULL, &id->type, &id->num) != 0) ||
382 (mtd_device_validate(id->type, id->num, &size) != 0)) {
700a0c64 383 printf("incorrect device: %s%d\n", MTD_DEV_TYPE(id->type), id->num);
76b5883d 384 free(current_mtd_dev);
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385 return 1;
386 }
387 id->size = size;
388 INIT_LIST_HEAD(&id->link);
389
390 DEBUGF("dev id: type = %d, num = %d, size = 0x%08lx, mtd_id = %s\n",
391 id->type, id->num, id->size, id->mtd_id);
392
393 /* partition */
394 part->name = "static";
395 part->auto_name = 0;
396
397#if defined(CONFIG_JFFS2_PART_SIZE)
398 part->size = CONFIG_JFFS2_PART_SIZE;
399#else
400 part->size = SIZE_REMAINING;
401#endif
c609719b 402
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403#if defined(CONFIG_JFFS2_PART_OFFSET)
404 part->offset = CONFIG_JFFS2_PART_OFFSET;
405#else
406 part->offset = 0x00000000;
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407#endif
408
76b5883d 409 part->dev = current_mtd_dev;
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410 INIT_LIST_HEAD(&part->link);
411
412 /* recalculate size if needed */
413 if (part->size == SIZE_REMAINING)
414 part->size = id->size - part->offset;
c609719b 415
2903ad33
MF
416 part->sector_size = get_part_sector_size(id, part);
417
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418 DEBUGF("part : name = %s, size = 0x%08lx, offset = 0x%08lx\n",
419 part->name, part->size, part->offset);
420
421 /* device */
76b5883d
SR
422 current_mtd_dev->id = id;
423 INIT_LIST_HEAD(&current_mtd_dev->link);
424 current_mtd_dev->num_parts = 1;
425 INIT_LIST_HEAD(&current_mtd_dev->parts);
426 list_add(&part->link, &current_mtd_dev->parts);
c609719b 427 }
700a0c64 428
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429 return 0;
430}
68d7d651 431#endif /* #ifndef CONFIG_CMD_MTDPARTS */
998eaaec 432
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433/**
434 * Return pointer to the partition of a requested number from a requested
435 * device.
436 *
437 * @param dev device that is to be searched for a partition
438 * @param part_num requested partition number
439 * @return pointer to the part_info, NULL otherwise
440 */
441static struct part_info* jffs2_part_info(struct mtd_device *dev, unsigned int part_num)
998eaaec 442{
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443 struct list_head *entry;
444 struct part_info *part;
445 int num;
998eaaec 446
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447 if (!dev)
448 return NULL;
998eaaec 449
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450 DEBUGF("\n--- jffs2_part_info: partition number %d for device %s%d (%s)\n",
451 part_num, MTD_DEV_TYPE(dev->id->type),
452 dev->id->num, dev->id->mtd_id);
998eaaec 453
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454 if (part_num >= dev->num_parts) {
455 printf("invalid partition number %d for device %s%d (%s)\n",
456 part_num, MTD_DEV_TYPE(dev->id->type),
457 dev->id->num, dev->id->mtd_id);
458 return NULL;
459 }
998eaaec 460
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461 /* locate partition number, return it */
462 num = 0;
463 list_for_each(entry, &dev->parts) {
464 part = list_entry(entry, struct part_info, link);
465
466 if (part_num == num++) {
467 return part;
468 }
998eaaec 469 }
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470
471 return NULL;
998eaaec
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472}
473
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474/***************************************************/
475/* U-boot commands */
476/***************************************************/
dd875c76 477
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478/**
479 * Routine implementing fsload u-boot command. This routine tries to load
480 * a requested file from jffs2/cramfs filesystem on a current partition.
481 *
482 * @param cmdtp command internal data
483 * @param flag command flag
484 * @param argc number of arguments supplied to the command
485 * @param argv arguments list
486 * @return 0 on success, 1 otherwise
487 */
54841ab5 488int do_jffs2_fsload(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
c609719b 489{
39539887 490 char *fsname;
f39748ae 491 char *filename;
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492 int size;
493 struct part_info *part;
494 ulong offset = load_addr;
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495
496 /* pre-set Boot file name */
497 if ((filename = getenv("bootfile")) == NULL) {
498 filename = "uImage";
499 }
500
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501 if (argc == 2) {
502 filename = argv[1];
503 }
504 if (argc == 3) {
505 offset = simple_strtoul(argv[1], NULL, 16);
4b9206ed 506 load_addr = offset;
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507 filename = argv[2];
508 }
509
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510 /* make sure we are in sync with env variables */
511 if (mtdparts_init() !=0)
512 return 1;
513
76b5883d 514 if ((part = jffs2_part_info(current_mtd_dev, current_mtd_partnum))){
c609719b 515
991b089d
MS
516 /* check partition type for cramfs */
517 fsname = (cramfs_check(part) ? "CRAMFS" : "JFFS2");
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518 printf("### %s loading '%s' to 0x%lx\n", fsname, filename, offset);
519
520 if (cramfs_check(part)) {
521 size = cramfs_load ((char *) offset, part, filename);
522 } else {
991b089d 523 /* if this is not cramfs assume jffs2 */
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524 size = jffs2_1pass_load((char *)offset, part, filename);
525 }
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526
527 if (size > 0) {
528 char buf[10];
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529 printf("### %s load complete: %d bytes loaded to 0x%lx\n",
530 fsname, size, offset);
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531 sprintf(buf, "%x", size);
532 setenv("filesize", buf);
533 } else {
dd875c76 534 printf("### %s LOAD ERROR<%x> for %s!\n", fsname, size, filename);
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535 }
536
537 return !(size > 0);
538 }
87b8bd5a 539 return 1;
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540}
541
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542/**
543 * Routine implementing u-boot ls command which lists content of a given
544 * directory on a current partition.
545 *
546 * @param cmdtp command internal data
547 * @param flag command flag
548 * @param argc number of arguments supplied to the command
549 * @param argv arguments list
550 * @return 0 on success, 1 otherwise
551 */
54841ab5 552int do_jffs2_ls(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
c609719b 553{
a87589da 554 char *filename = "/";
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555 int ret;
556 struct part_info *part;
557
558 if (argc == 2)
559 filename = argv[1];
560
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561 /* make sure we are in sync with env variables */
562 if (mtdparts_init() !=0)
563 return 1;
564
76b5883d 565 if ((part = jffs2_part_info(current_mtd_dev, current_mtd_partnum))){
c609719b 566
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567 /* check partition type for cramfs */
568 if (cramfs_check(part)) {
569 ret = cramfs_ls (part, filename);
570 } else {
991b089d 571 /* if this is not cramfs assume jffs2 */
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572 ret = jffs2_1pass_ls(part, filename);
573 }
c609719b 574
87b8bd5a 575 return ret ? 0 : 1;
c609719b 576 }
87b8bd5a 577 return 1;
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578}
579
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580/**
581 * Routine implementing u-boot fsinfo command. This routine prints out
582 * miscellaneous filesystem informations/statistics.
583 *
584 * @param cmdtp command internal data
585 * @param flag command flag
586 * @param argc number of arguments supplied to the command
587 * @param argv arguments list
588 * @return 0 on success, 1 otherwise
589 */
54841ab5 590int do_jffs2_fsinfo(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
c609719b 591{
c609719b 592 struct part_info *part;
991b089d 593 char *fsname;
dd875c76 594 int ret;
c609719b 595
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596 /* make sure we are in sync with env variables */
597 if (mtdparts_init() !=0)
598 return 1;
8f79e4c2 599
76b5883d 600 if ((part = jffs2_part_info(current_mtd_dev, current_mtd_partnum))){
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601
602 /* check partition type for cramfs */
991b089d
MS
603 fsname = (cramfs_check(part) ? "CRAMFS" : "JFFS2");
604 printf("### filesystem type is %s\n", fsname);
c609719b 605
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606 if (cramfs_check(part)) {
607 ret = cramfs_info (part);
608 } else {
991b089d 609 /* if this is not cramfs assume jffs2 */
dd875c76
WD
610 ret = jffs2_1pass_info(part);
611 }
c609719b 612
87b8bd5a 613 return ret ? 0 : 1;
c609719b 614 }
87b8bd5a 615 return 1;
c609719b
WD
616}
617
700a0c64 618/***************************************************/
0d498393
WD
619U_BOOT_CMD(
620 fsload, 3, 0, do_jffs2_fsload,
2fb2604d 621 "load binary file from a filesystem image",
8bde7f77
WD
622 "[ off ] [ filename ]\n"
623 " - load binary file from flash bank\n"
a89c33db 624 " with offset 'off'"
8bde7f77 625);
700a0c64
WD
626U_BOOT_CMD(
627 ls, 2, 1, do_jffs2_ls,
2fb2604d 628 "list files in a directory (default /)",
a89c33db 629 "[ directory ]"
700a0c64 630);
8bde7f77 631
0d498393
WD
632U_BOOT_CMD(
633 fsinfo, 1, 1, do_jffs2_fsinfo,
2fb2604d 634 "print information about filesystems",
a89c33db 635 ""
8bde7f77 636);
700a0c64 637/***************************************************/