cmd_nand.c 25 KB

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  1. /*
  2. * Driver for NAND support, Rick Bronson
  3. * borrowed heavily from:
  4. * (c) 1999 Machine Vision Holdings, Inc.
  5. * (c) 1999, 2000 David Woodhouse <dwmw2@infradead.org>
  6. *
  7. * Ported 'dynenv' to 'nand env.oob' command
  8. * (C) 2010 Nanometrics, Inc.
  9. * 'dynenv' -- Dynamic environment offset in NAND OOB
  10. * (C) Copyright 2006-2007 OpenMoko, Inc.
  11. * Added 16-bit nand support
  12. * (C) 2004 Texas Instruments
  13. *
  14. * Copyright 2010, 2012 Freescale Semiconductor
  15. * The portions of this file whose copyright is held by Freescale and which
  16. * are not considered a derived work of GPL v2-only code may be distributed
  17. * and/or modified under the terms of the GNU General Public License as
  18. * published by the Free Software Foundation; either version 2 of the
  19. * License, or (at your option) any later version.
  20. */
  21. #include <common.h>
  22. #include <linux/mtd/mtd.h>
  23. #include <command.h>
  24. #include <watchdog.h>
  25. #include <malloc.h>
  26. #include <asm/byteorder.h>
  27. #include <jffs2/jffs2.h>
  28. #include <nand.h>
  29. #if defined(CONFIG_CMD_MTDPARTS)
  30. /* partition handling routines */
  31. int mtdparts_init(void);
  32. int id_parse(const char *id, const char **ret_id, u8 *dev_type, u8 *dev_num);
  33. int find_dev_and_part(const char *id, struct mtd_device **dev,
  34. u8 *part_num, struct part_info **part);
  35. #endif
  36. static int nand_dump(nand_info_t *nand, ulong off, int only_oob, int repeat)
  37. {
  38. int i;
  39. u_char *datbuf, *oobbuf, *p;
  40. static loff_t last;
  41. if (repeat)
  42. off = last + nand->writesize;
  43. last = off;
  44. datbuf = memalign(ARCH_DMA_MINALIGN, nand->writesize);
  45. oobbuf = memalign(ARCH_DMA_MINALIGN, nand->oobsize);
  46. if (!datbuf || !oobbuf) {
  47. puts("No memory for page buffer\n");
  48. return 1;
  49. }
  50. off &= ~(nand->writesize - 1);
  51. loff_t addr = (loff_t) off;
  52. struct mtd_oob_ops ops;
  53. memset(&ops, 0, sizeof(ops));
  54. ops.datbuf = datbuf;
  55. ops.oobbuf = oobbuf;
  56. ops.len = nand->writesize;
  57. ops.ooblen = nand->oobsize;
  58. ops.mode = MTD_OPS_RAW;
  59. i = mtd_read_oob(nand, addr, &ops);
  60. if (i < 0) {
  61. printf("Error (%d) reading page %08lx\n", i, off);
  62. free(datbuf);
  63. free(oobbuf);
  64. return 1;
  65. }
  66. printf("Page %08lx dump:\n", off);
  67. i = nand->writesize >> 4;
  68. p = datbuf;
  69. while (i--) {
  70. if (!only_oob)
  71. printf("\t%02x %02x %02x %02x %02x %02x %02x %02x"
  72. " %02x %02x %02x %02x %02x %02x %02x %02x\n",
  73. p[0], p[1], p[2], p[3], p[4], p[5], p[6], p[7],
  74. p[8], p[9], p[10], p[11], p[12], p[13], p[14],
  75. p[15]);
  76. p += 16;
  77. }
  78. puts("OOB:\n");
  79. i = nand->oobsize >> 3;
  80. p = oobbuf;
  81. while (i--) {
  82. printf("\t%02x %02x %02x %02x %02x %02x %02x %02x\n",
  83. p[0], p[1], p[2], p[3], p[4], p[5], p[6], p[7]);
  84. p += 8;
  85. }
  86. free(datbuf);
  87. free(oobbuf);
  88. return 0;
  89. }
  90. /* ------------------------------------------------------------------------- */
  91. static int set_dev(int dev)
  92. {
  93. if (dev < 0 || dev >= CONFIG_SYS_MAX_NAND_DEVICE ||
  94. !nand_info[dev].name) {
  95. puts("No such device\n");
  96. return -1;
  97. }
  98. if (nand_curr_device == dev)
  99. return 0;
  100. printf("Device %d: %s", dev, nand_info[dev].name);
  101. puts("... is now current device\n");
  102. nand_curr_device = dev;
  103. #ifdef CONFIG_SYS_NAND_SELECT_DEVICE
  104. board_nand_select_device(nand_info[dev].priv, dev);
  105. #endif
  106. return 0;
  107. }
  108. static inline int str2off(const char *p, loff_t *num)
  109. {
  110. char *endptr;
  111. *num = simple_strtoull(p, &endptr, 16);
  112. return *p != '\0' && *endptr == '\0';
  113. }
  114. static inline int str2long(const char *p, ulong *num)
  115. {
  116. char *endptr;
  117. *num = simple_strtoul(p, &endptr, 16);
  118. return *p != '\0' && *endptr == '\0';
  119. }
  120. static int get_part(const char *partname, int *idx, loff_t *off, loff_t *size,
  121. loff_t *maxsize)
  122. {
  123. #ifdef CONFIG_CMD_MTDPARTS
  124. struct mtd_device *dev;
  125. struct part_info *part;
  126. u8 pnum;
  127. int ret;
  128. ret = mtdparts_init();
  129. if (ret)
  130. return ret;
  131. ret = find_dev_and_part(partname, &dev, &pnum, &part);
  132. if (ret)
  133. return ret;
  134. if (dev->id->type != MTD_DEV_TYPE_NAND) {
  135. puts("not a NAND device\n");
  136. return -1;
  137. }
  138. *off = part->offset;
  139. *size = part->size;
  140. *maxsize = part->size;
  141. *idx = dev->id->num;
  142. ret = set_dev(*idx);
  143. if (ret)
  144. return ret;
  145. return 0;
  146. #else
  147. puts("offset is not a number\n");
  148. return -1;
  149. #endif
  150. }
  151. static int arg_off(const char *arg, int *idx, loff_t *off, loff_t *size,
  152. loff_t *maxsize)
  153. {
  154. if (!str2off(arg, off))
  155. return get_part(arg, idx, off, size, maxsize);
  156. if (*off >= nand_info[*idx].size) {
  157. puts("Offset exceeds device limit\n");
  158. return -1;
  159. }
  160. *maxsize = nand_info[*idx].size - *off;
  161. *size = *maxsize;
  162. return 0;
  163. }
  164. static int arg_off_size(int argc, char *const argv[], int *idx,
  165. loff_t *off, loff_t *size, loff_t *maxsize)
  166. {
  167. int ret;
  168. if (argc == 0) {
  169. *off = 0;
  170. *size = nand_info[*idx].size;
  171. *maxsize = *size;
  172. goto print;
  173. }
  174. ret = arg_off(argv[0], idx, off, size, maxsize);
  175. if (ret)
  176. return ret;
  177. if (argc == 1)
  178. goto print;
  179. if (!str2off(argv[1], size)) {
  180. printf("'%s' is not a number\n", argv[1]);
  181. return -1;
  182. }
  183. if (*size > *maxsize) {
  184. puts("Size exceeds partition or device limit\n");
  185. return -1;
  186. }
  187. print:
  188. printf("device %d ", *idx);
  189. if (*size == nand_info[*idx].size)
  190. puts("whole chip\n");
  191. else
  192. printf("offset 0x%llx, size 0x%llx\n",
  193. (unsigned long long)*off, (unsigned long long)*size);
  194. return 0;
  195. }
  196. #ifdef CONFIG_CMD_NAND_LOCK_UNLOCK
  197. static void print_status(ulong start, ulong end, ulong erasesize, int status)
  198. {
  199. /*
  200. * Micron NAND flash (e.g. MT29F4G08ABADAH4) BLOCK LOCK READ STATUS is
  201. * not the same as others. Instead of bit 1 being lock, it is
  202. * #lock_tight. To make the driver support either format, ignore bit 1
  203. * and use only bit 0 and bit 2.
  204. */
  205. printf("%08lx - %08lx: %08lx blocks %s%s%s\n",
  206. start,
  207. end - 1,
  208. (end - start) / erasesize,
  209. ((status & NAND_LOCK_STATUS_TIGHT) ? "TIGHT " : ""),
  210. (!(status & NAND_LOCK_STATUS_UNLOCK) ? "LOCK " : ""),
  211. ((status & NAND_LOCK_STATUS_UNLOCK) ? "UNLOCK " : ""));
  212. }
  213. static void do_nand_status(nand_info_t *nand)
  214. {
  215. ulong block_start = 0;
  216. ulong off;
  217. int last_status = -1;
  218. struct nand_chip *nand_chip = nand->priv;
  219. /* check the WP bit */
  220. nand_chip->cmdfunc(nand, NAND_CMD_STATUS, -1, -1);
  221. printf("device is %swrite protected\n",
  222. (nand_chip->read_byte(nand) & 0x80 ?
  223. "NOT " : ""));
  224. for (off = 0; off < nand->size; off += nand->erasesize) {
  225. int s = nand_get_lock_status(nand, off);
  226. /* print message only if status has changed */
  227. if (s != last_status && off != 0) {
  228. print_status(block_start, off, nand->erasesize,
  229. last_status);
  230. block_start = off;
  231. }
  232. last_status = s;
  233. }
  234. /* Print the last block info */
  235. print_status(block_start, off, nand->erasesize, last_status);
  236. }
  237. #endif
  238. #ifdef CONFIG_ENV_OFFSET_OOB
  239. unsigned long nand_env_oob_offset;
  240. int do_nand_env_oob(cmd_tbl_t *cmdtp, int argc, char *const argv[])
  241. {
  242. int ret;
  243. uint32_t oob_buf[ENV_OFFSET_SIZE/sizeof(uint32_t)];
  244. nand_info_t *nand = &nand_info[0];
  245. char *cmd = argv[1];
  246. if (CONFIG_SYS_MAX_NAND_DEVICE == 0 || !nand->name) {
  247. puts("no devices available\n");
  248. return 1;
  249. }
  250. set_dev(0);
  251. if (!strcmp(cmd, "get")) {
  252. ret = get_nand_env_oob(nand, &nand_env_oob_offset);
  253. if (ret)
  254. return 1;
  255. printf("0x%08lx\n", nand_env_oob_offset);
  256. } else if (!strcmp(cmd, "set")) {
  257. loff_t addr;
  258. loff_t maxsize;
  259. struct mtd_oob_ops ops;
  260. int idx = 0;
  261. if (argc < 3)
  262. goto usage;
  263. /* We don't care about size, or maxsize. */
  264. if (arg_off(argv[2], &idx, &addr, &maxsize, &maxsize)) {
  265. puts("Offset or partition name expected\n");
  266. return 1;
  267. }
  268. if (idx != 0) {
  269. puts("Partition not on first NAND device\n");
  270. return 1;
  271. }
  272. if (nand->oobavail < ENV_OFFSET_SIZE) {
  273. printf("Insufficient available OOB bytes:\n"
  274. "%d OOB bytes available but %d required for "
  275. "env.oob support\n",
  276. nand->oobavail, ENV_OFFSET_SIZE);
  277. return 1;
  278. }
  279. if ((addr & (nand->erasesize - 1)) != 0) {
  280. printf("Environment offset must be block-aligned\n");
  281. return 1;
  282. }
  283. ops.datbuf = NULL;
  284. ops.mode = MTD_OOB_AUTO;
  285. ops.ooboffs = 0;
  286. ops.ooblen = ENV_OFFSET_SIZE;
  287. ops.oobbuf = (void *) oob_buf;
  288. oob_buf[0] = ENV_OOB_MARKER;
  289. oob_buf[1] = addr / nand->erasesize;
  290. ret = nand->write_oob(nand, ENV_OFFSET_SIZE, &ops);
  291. if (ret) {
  292. printf("Error writing OOB block 0\n");
  293. return ret;
  294. }
  295. ret = get_nand_env_oob(nand, &nand_env_oob_offset);
  296. if (ret) {
  297. printf("Error reading env offset in OOB\n");
  298. return ret;
  299. }
  300. if (addr != nand_env_oob_offset) {
  301. printf("Verification of env offset in OOB failed: "
  302. "0x%08llx expected but got 0x%08lx\n",
  303. (unsigned long long)addr, nand_env_oob_offset);
  304. return 1;
  305. }
  306. } else {
  307. goto usage;
  308. }
  309. return ret;
  310. usage:
  311. return CMD_RET_USAGE;
  312. }
  313. #endif
  314. static void nand_print_and_set_info(int idx)
  315. {
  316. nand_info_t *nand = &nand_info[idx];
  317. struct nand_chip *chip = nand->priv;
  318. printf("Device %d: ", idx);
  319. if (chip->numchips > 1)
  320. printf("%dx ", chip->numchips);
  321. printf("%s, sector size %u KiB\n",
  322. nand->name, nand->erasesize >> 10);
  323. printf(" Page size %8d b\n", nand->writesize);
  324. printf(" OOB size %8d b\n", nand->oobsize);
  325. printf(" Erase size %8d b\n", nand->erasesize);
  326. /* Set geometry info */
  327. setenv_hex("nand_writesize", nand->writesize);
  328. setenv_hex("nand_oobsize", nand->oobsize);
  329. setenv_hex("nand_erasesize", nand->erasesize);
  330. }
  331. static int raw_access(nand_info_t *nand, ulong addr, loff_t off, ulong count,
  332. int read)
  333. {
  334. int ret = 0;
  335. while (count--) {
  336. /* Raw access */
  337. mtd_oob_ops_t ops = {
  338. .datbuf = (u8 *)addr,
  339. .oobbuf = ((u8 *)addr) + nand->writesize,
  340. .len = nand->writesize,
  341. .ooblen = nand->oobsize,
  342. .mode = MTD_OPS_RAW
  343. };
  344. if (read)
  345. ret = mtd_read_oob(nand, off, &ops);
  346. else
  347. ret = mtd_write_oob(nand, off, &ops);
  348. if (ret) {
  349. printf("%s: error at offset %llx, ret %d\n",
  350. __func__, (long long)off, ret);
  351. break;
  352. }
  353. addr += nand->writesize + nand->oobsize;
  354. off += nand->writesize;
  355. }
  356. return ret;
  357. }
  358. /* Adjust a chip/partition size down for bad blocks so we don't
  359. * read/write/erase past the end of a chip/partition by accident.
  360. */
  361. static void adjust_size_for_badblocks(loff_t *size, loff_t offset, int dev)
  362. {
  363. /* We grab the nand info object here fresh because this is usually
  364. * called after arg_off_size() which can change the value of dev.
  365. */
  366. nand_info_t *nand = &nand_info[dev];
  367. loff_t maxoffset = offset + *size;
  368. int badblocks = 0;
  369. /* count badblocks in NAND from offset to offset + size */
  370. for (; offset < maxoffset; offset += nand->erasesize) {
  371. if (nand_block_isbad(nand, offset))
  372. badblocks++;
  373. }
  374. /* adjust size if any bad blocks found */
  375. if (badblocks) {
  376. *size -= badblocks * nand->erasesize;
  377. printf("size adjusted to 0x%llx (%d bad blocks)\n",
  378. (unsigned long long)*size, badblocks);
  379. }
  380. }
  381. static int do_nand(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  382. {
  383. int i, ret = 0;
  384. ulong addr;
  385. loff_t off, size, maxsize;
  386. char *cmd, *s;
  387. nand_info_t *nand;
  388. #ifdef CONFIG_SYS_NAND_QUIET
  389. int quiet = CONFIG_SYS_NAND_QUIET;
  390. #else
  391. int quiet = 0;
  392. #endif
  393. const char *quiet_str = getenv("quiet");
  394. int dev = nand_curr_device;
  395. int repeat = flag & CMD_FLAG_REPEAT;
  396. /* at least two arguments please */
  397. if (argc < 2)
  398. goto usage;
  399. if (quiet_str)
  400. quiet = simple_strtoul(quiet_str, NULL, 0) != 0;
  401. cmd = argv[1];
  402. /* Only "dump" is repeatable. */
  403. if (repeat && strcmp(cmd, "dump"))
  404. return 0;
  405. if (strcmp(cmd, "info") == 0) {
  406. putc('\n');
  407. for (i = 0; i < CONFIG_SYS_MAX_NAND_DEVICE; i++) {
  408. if (nand_info[i].name)
  409. nand_print_and_set_info(i);
  410. }
  411. return 0;
  412. }
  413. if (strcmp(cmd, "device") == 0) {
  414. if (argc < 3) {
  415. putc('\n');
  416. if (dev < 0 || dev >= CONFIG_SYS_MAX_NAND_DEVICE)
  417. puts("no devices available\n");
  418. else
  419. nand_print_and_set_info(dev);
  420. return 0;
  421. }
  422. dev = (int)simple_strtoul(argv[2], NULL, 10);
  423. set_dev(dev);
  424. return 0;
  425. }
  426. #ifdef CONFIG_ENV_OFFSET_OOB
  427. /* this command operates only on the first nand device */
  428. if (strcmp(cmd, "env.oob") == 0)
  429. return do_nand_env_oob(cmdtp, argc - 1, argv + 1);
  430. #endif
  431. /* The following commands operate on the current device, unless
  432. * overridden by a partition specifier. Note that if somehow the
  433. * current device is invalid, it will have to be changed to a valid
  434. * one before these commands can run, even if a partition specifier
  435. * for another device is to be used.
  436. */
  437. if (dev < 0 || dev >= CONFIG_SYS_MAX_NAND_DEVICE ||
  438. !nand_info[dev].name) {
  439. puts("\nno devices available\n");
  440. return 1;
  441. }
  442. nand = &nand_info[dev];
  443. if (strcmp(cmd, "bad") == 0) {
  444. printf("\nDevice %d bad blocks:\n", dev);
  445. for (off = 0; off < nand->size; off += nand->erasesize)
  446. if (nand_block_isbad(nand, off))
  447. printf(" %08llx\n", (unsigned long long)off);
  448. return 0;
  449. }
  450. /*
  451. * Syntax is:
  452. * 0 1 2 3 4
  453. * nand erase [clean] [off size]
  454. */
  455. if (strncmp(cmd, "erase", 5) == 0 || strncmp(cmd, "scrub", 5) == 0) {
  456. nand_erase_options_t opts;
  457. /* "clean" at index 2 means request to write cleanmarker */
  458. int clean = argc > 2 && !strcmp("clean", argv[2]);
  459. int scrub_yes = argc > 2 && !strcmp("-y", argv[2]);
  460. int o = (clean || scrub_yes) ? 3 : 2;
  461. int scrub = !strncmp(cmd, "scrub", 5);
  462. int spread = 0;
  463. int args = 2;
  464. int adjust_size = 0;
  465. const char *scrub_warn =
  466. "Warning: "
  467. "scrub option will erase all factory set bad blocks!\n"
  468. " "
  469. "There is no reliable way to recover them.\n"
  470. " "
  471. "Use this command only for testing purposes if you\n"
  472. " "
  473. "are sure of what you are doing!\n"
  474. "\nReally scrub this NAND flash? <y/N>\n";
  475. if (cmd[5] != 0) {
  476. if (!strcmp(&cmd[5], ".spread")) {
  477. spread = 1;
  478. } else if (!strcmp(&cmd[5], ".part")) {
  479. args = 1;
  480. adjust_size = 1;
  481. } else if (!strcmp(&cmd[5], ".chip")) {
  482. args = 0;
  483. adjust_size = 1;
  484. } else {
  485. goto usage;
  486. }
  487. }
  488. /*
  489. * Don't allow missing arguments to cause full chip/partition
  490. * erases -- easy to do accidentally, e.g. with a misspelled
  491. * variable name.
  492. */
  493. if (argc != o + args)
  494. goto usage;
  495. printf("\nNAND %s: ", cmd);
  496. /* skip first two or three arguments, look for offset and size */
  497. if (arg_off_size(argc - o, argv + o, &dev, &off, &size,
  498. &maxsize) != 0)
  499. return 1;
  500. /* size is unspecified */
  501. if (adjust_size && !scrub)
  502. adjust_size_for_badblocks(&size, off, dev);
  503. nand = &nand_info[dev];
  504. memset(&opts, 0, sizeof(opts));
  505. opts.offset = off;
  506. opts.length = size;
  507. opts.jffs2 = clean;
  508. opts.quiet = quiet;
  509. opts.spread = spread;
  510. if (scrub) {
  511. if (!scrub_yes)
  512. puts(scrub_warn);
  513. if (scrub_yes)
  514. opts.scrub = 1;
  515. else if (getc() == 'y') {
  516. puts("y");
  517. if (getc() == '\r')
  518. opts.scrub = 1;
  519. else {
  520. puts("scrub aborted\n");
  521. return -1;
  522. }
  523. } else {
  524. puts("scrub aborted\n");
  525. return -1;
  526. }
  527. }
  528. ret = nand_erase_opts(nand, &opts);
  529. printf("%s\n", ret ? "ERROR" : "OK");
  530. return ret == 0 ? 0 : 1;
  531. }
  532. if (strncmp(cmd, "dump", 4) == 0) {
  533. if (argc < 3)
  534. goto usage;
  535. off = (int)simple_strtoul(argv[2], NULL, 16);
  536. ret = nand_dump(nand, off, !strcmp(&cmd[4], ".oob"), repeat);
  537. return ret == 0 ? 1 : 0;
  538. }
  539. if (strncmp(cmd, "read", 4) == 0 || strncmp(cmd, "write", 5) == 0) {
  540. size_t rwsize;
  541. ulong pagecount = 1;
  542. int read;
  543. int raw = 0;
  544. if (argc < 4)
  545. goto usage;
  546. addr = (ulong)simple_strtoul(argv[2], NULL, 16);
  547. read = strncmp(cmd, "read", 4) == 0; /* 1 = read, 0 = write */
  548. printf("\nNAND %s: ", read ? "read" : "write");
  549. nand = &nand_info[dev];
  550. s = strchr(cmd, '.');
  551. if (s && !strcmp(s, ".raw")) {
  552. raw = 1;
  553. if (arg_off(argv[3], &dev, &off, &size, &maxsize))
  554. return 1;
  555. if (argc > 4 && !str2long(argv[4], &pagecount)) {
  556. printf("'%s' is not a number\n", argv[4]);
  557. return 1;
  558. }
  559. if (pagecount * nand->writesize > size) {
  560. puts("Size exceeds partition or device limit\n");
  561. return -1;
  562. }
  563. rwsize = pagecount * (nand->writesize + nand->oobsize);
  564. } else {
  565. if (arg_off_size(argc - 3, argv + 3, &dev,
  566. &off, &size, &maxsize) != 0)
  567. return 1;
  568. /* size is unspecified */
  569. if (argc < 5)
  570. adjust_size_for_badblocks(&size, off, dev);
  571. rwsize = size;
  572. }
  573. if (!s || !strcmp(s, ".jffs2") ||
  574. !strcmp(s, ".e") || !strcmp(s, ".i")) {
  575. if (read)
  576. ret = nand_read_skip_bad(nand, off, &rwsize,
  577. NULL, maxsize,
  578. (u_char *)addr);
  579. else
  580. ret = nand_write_skip_bad(nand, off, &rwsize,
  581. NULL, maxsize,
  582. (u_char *)addr, 0);
  583. #ifdef CONFIG_CMD_NAND_TRIMFFS
  584. } else if (!strcmp(s, ".trimffs")) {
  585. if (read) {
  586. printf("Unknown nand command suffix '%s'\n", s);
  587. return 1;
  588. }
  589. ret = nand_write_skip_bad(nand, off, &rwsize, NULL,
  590. maxsize, (u_char *)addr,
  591. WITH_DROP_FFS);
  592. #endif
  593. #ifdef CONFIG_CMD_NAND_YAFFS
  594. } else if (!strcmp(s, ".yaffs")) {
  595. if (read) {
  596. printf("Unknown nand command suffix '%s'.\n", s);
  597. return 1;
  598. }
  599. ret = nand_write_skip_bad(nand, off, &rwsize, NULL,
  600. maxsize, (u_char *)addr,
  601. WITH_YAFFS_OOB);
  602. #endif
  603. } else if (!strcmp(s, ".oob")) {
  604. /* out-of-band data */
  605. mtd_oob_ops_t ops = {
  606. .oobbuf = (u8 *)addr,
  607. .ooblen = rwsize,
  608. .mode = MTD_OPS_RAW
  609. };
  610. if (read)
  611. ret = mtd_read_oob(nand, off, &ops);
  612. else
  613. ret = mtd_write_oob(nand, off, &ops);
  614. } else if (raw) {
  615. ret = raw_access(nand, addr, off, pagecount, read);
  616. } else {
  617. printf("Unknown nand command suffix '%s'.\n", s);
  618. return 1;
  619. }
  620. printf(" %zu bytes %s: %s\n", rwsize,
  621. read ? "read" : "written", ret ? "ERROR" : "OK");
  622. return ret == 0 ? 0 : 1;
  623. }
  624. #ifdef CONFIG_CMD_NAND_TORTURE
  625. if (strcmp(cmd, "torture") == 0) {
  626. if (argc < 3)
  627. goto usage;
  628. if (!str2off(argv[2], &off)) {
  629. puts("Offset is not a valid number\n");
  630. return 1;
  631. }
  632. printf("\nNAND torture: device %d offset 0x%llx size 0x%x\n",
  633. dev, off, nand->erasesize);
  634. ret = nand_torture(nand, off);
  635. printf(" %s\n", ret ? "Failed" : "Passed");
  636. return ret == 0 ? 0 : 1;
  637. }
  638. #endif
  639. if (strcmp(cmd, "markbad") == 0) {
  640. argc -= 2;
  641. argv += 2;
  642. if (argc <= 0)
  643. goto usage;
  644. while (argc > 0) {
  645. addr = simple_strtoul(*argv, NULL, 16);
  646. if (mtd_block_markbad(nand, addr)) {
  647. printf("block 0x%08lx NOT marked "
  648. "as bad! ERROR %d\n",
  649. addr, ret);
  650. ret = 1;
  651. } else {
  652. printf("block 0x%08lx successfully "
  653. "marked as bad\n",
  654. addr);
  655. }
  656. --argc;
  657. ++argv;
  658. }
  659. return ret;
  660. }
  661. if (strcmp(cmd, "biterr") == 0) {
  662. /* todo */
  663. return 1;
  664. }
  665. #ifdef CONFIG_CMD_NAND_LOCK_UNLOCK
  666. if (strcmp(cmd, "lock") == 0) {
  667. int tight = 0;
  668. int status = 0;
  669. if (argc == 3) {
  670. if (!strcmp("tight", argv[2]))
  671. tight = 1;
  672. if (!strcmp("status", argv[2]))
  673. status = 1;
  674. }
  675. if (status) {
  676. do_nand_status(nand);
  677. } else {
  678. if (!nand_lock(nand, tight)) {
  679. puts("NAND flash successfully locked\n");
  680. } else {
  681. puts("Error locking NAND flash\n");
  682. return 1;
  683. }
  684. }
  685. return 0;
  686. }
  687. if (strncmp(cmd, "unlock", 5) == 0) {
  688. int allexcept = 0;
  689. s = strchr(cmd, '.');
  690. if (s && !strcmp(s, ".allexcept"))
  691. allexcept = 1;
  692. if (arg_off_size(argc - 2, argv + 2, &dev, &off, &size,
  693. &maxsize) < 0)
  694. return 1;
  695. if (!nand_unlock(&nand_info[dev], off, size, allexcept)) {
  696. puts("NAND flash successfully unlocked\n");
  697. } else {
  698. puts("Error unlocking NAND flash, "
  699. "write and erase will probably fail\n");
  700. return 1;
  701. }
  702. return 0;
  703. }
  704. #endif
  705. usage:
  706. return CMD_RET_USAGE;
  707. }
  708. #ifdef CONFIG_SYS_LONGHELP
  709. static char nand_help_text[] =
  710. "info - show available NAND devices\n"
  711. "nand device [dev] - show or set current device\n"
  712. "nand read - addr off|partition size\n"
  713. "nand write - addr off|partition size\n"
  714. " read/write 'size' bytes starting at offset 'off'\n"
  715. " to/from memory address 'addr', skipping bad blocks.\n"
  716. "nand read.raw - addr off|partition [count]\n"
  717. "nand write.raw - addr off|partition [count]\n"
  718. " Use read.raw/write.raw to avoid ECC and access the flash as-is.\n"
  719. #ifdef CONFIG_CMD_NAND_TRIMFFS
  720. "nand write.trimffs - addr off|partition size\n"
  721. " write 'size' bytes starting at offset 'off' from memory address\n"
  722. " 'addr', skipping bad blocks and dropping any pages at the end\n"
  723. " of eraseblocks that contain only 0xFF\n"
  724. #endif
  725. #ifdef CONFIG_CMD_NAND_YAFFS
  726. "nand write.yaffs - addr off|partition size\n"
  727. " write 'size' bytes starting at offset 'off' with yaffs format\n"
  728. " from memory address 'addr', skipping bad blocks.\n"
  729. #endif
  730. "nand erase[.spread] [clean] off size - erase 'size' bytes "
  731. "from offset 'off'\n"
  732. " With '.spread', erase enough for given file size, otherwise,\n"
  733. " 'size' includes skipped bad blocks.\n"
  734. "nand erase.part [clean] partition - erase entire mtd partition'\n"
  735. "nand erase.chip [clean] - erase entire chip'\n"
  736. "nand bad - show bad blocks\n"
  737. "nand dump[.oob] off - dump page\n"
  738. #ifdef CONFIG_CMD_NAND_TORTURE
  739. "nand torture off - torture block at offset\n"
  740. #endif
  741. "nand scrub [-y] off size | scrub.part partition | scrub.chip\n"
  742. " really clean NAND erasing bad blocks (UNSAFE)\n"
  743. "nand markbad off [...] - mark bad block(s) at offset (UNSAFE)\n"
  744. "nand biterr off - make a bit error at offset (UNSAFE)"
  745. #ifdef CONFIG_CMD_NAND_LOCK_UNLOCK
  746. "\n"
  747. "nand lock [tight] [status]\n"
  748. " bring nand to lock state or display locked pages\n"
  749. "nand unlock[.allexcept] [offset] [size] - unlock section"
  750. #endif
  751. #ifdef CONFIG_ENV_OFFSET_OOB
  752. "\n"
  753. "nand env.oob - environment offset in OOB of block 0 of"
  754. " first device.\n"
  755. "nand env.oob set off|partition - set enviromnent offset\n"
  756. "nand env.oob get - get environment offset"
  757. #endif
  758. "";
  759. #endif
  760. U_BOOT_CMD(
  761. nand, CONFIG_SYS_MAXARGS, 1, do_nand,
  762. "NAND sub-system", nand_help_text
  763. );
  764. static int nand_load_image(cmd_tbl_t *cmdtp, nand_info_t *nand,
  765. ulong offset, ulong addr, char *cmd)
  766. {
  767. int r;
  768. char *s;
  769. size_t cnt;
  770. image_header_t *hdr;
  771. #if defined(CONFIG_FIT)
  772. const void *fit_hdr = NULL;
  773. #endif
  774. s = strchr(cmd, '.');
  775. if (s != NULL &&
  776. (strcmp(s, ".jffs2") && strcmp(s, ".e") && strcmp(s, ".i"))) {
  777. printf("Unknown nand load suffix '%s'\n", s);
  778. bootstage_error(BOOTSTAGE_ID_NAND_SUFFIX);
  779. return 1;
  780. }
  781. printf("\nLoading from %s, offset 0x%lx\n", nand->name, offset);
  782. cnt = nand->writesize;
  783. r = nand_read_skip_bad(nand, offset, &cnt, NULL, nand->size,
  784. (u_char *)addr);
  785. if (r) {
  786. puts("** Read error\n");
  787. bootstage_error(BOOTSTAGE_ID_NAND_HDR_READ);
  788. return 1;
  789. }
  790. bootstage_mark(BOOTSTAGE_ID_NAND_HDR_READ);
  791. switch (genimg_get_format ((void *)addr)) {
  792. case IMAGE_FORMAT_LEGACY:
  793. hdr = (image_header_t *)addr;
  794. bootstage_mark(BOOTSTAGE_ID_NAND_TYPE);
  795. image_print_contents (hdr);
  796. cnt = image_get_image_size (hdr);
  797. break;
  798. #if defined(CONFIG_FIT)
  799. case IMAGE_FORMAT_FIT:
  800. fit_hdr = (const void *)addr;
  801. puts ("Fit image detected...\n");
  802. cnt = fit_get_size (fit_hdr);
  803. break;
  804. #endif
  805. default:
  806. bootstage_error(BOOTSTAGE_ID_NAND_TYPE);
  807. puts ("** Unknown image type\n");
  808. return 1;
  809. }
  810. bootstage_mark(BOOTSTAGE_ID_NAND_TYPE);
  811. r = nand_read_skip_bad(nand, offset, &cnt, NULL, nand->size,
  812. (u_char *)addr);
  813. if (r) {
  814. puts("** Read error\n");
  815. bootstage_error(BOOTSTAGE_ID_NAND_READ);
  816. return 1;
  817. }
  818. bootstage_mark(BOOTSTAGE_ID_NAND_READ);
  819. #if defined(CONFIG_FIT)
  820. /* This cannot be done earlier, we need complete FIT image in RAM first */
  821. if (genimg_get_format ((void *)addr) == IMAGE_FORMAT_FIT) {
  822. if (!fit_check_format (fit_hdr)) {
  823. bootstage_error(BOOTSTAGE_ID_NAND_FIT_READ);
  824. puts ("** Bad FIT image format\n");
  825. return 1;
  826. }
  827. bootstage_mark(BOOTSTAGE_ID_NAND_FIT_READ_OK);
  828. fit_print_contents (fit_hdr);
  829. }
  830. #endif
  831. /* Loading ok, update default load address */
  832. load_addr = addr;
  833. return bootm_maybe_autostart(cmdtp, cmd);
  834. }
  835. static int do_nandboot(cmd_tbl_t *cmdtp, int flag, int argc,
  836. char * const argv[])
  837. {
  838. char *boot_device = NULL;
  839. int idx;
  840. ulong addr, offset = 0;
  841. #if defined(CONFIG_CMD_MTDPARTS)
  842. struct mtd_device *dev;
  843. struct part_info *part;
  844. u8 pnum;
  845. if (argc >= 2) {
  846. char *p = (argc == 2) ? argv[1] : argv[2];
  847. if (!(str2long(p, &addr)) && (mtdparts_init() == 0) &&
  848. (find_dev_and_part(p, &dev, &pnum, &part) == 0)) {
  849. if (dev->id->type != MTD_DEV_TYPE_NAND) {
  850. puts("Not a NAND device\n");
  851. return 1;
  852. }
  853. if (argc > 3)
  854. goto usage;
  855. if (argc == 3)
  856. addr = simple_strtoul(argv[1], NULL, 16);
  857. else
  858. addr = CONFIG_SYS_LOAD_ADDR;
  859. return nand_load_image(cmdtp, &nand_info[dev->id->num],
  860. part->offset, addr, argv[0]);
  861. }
  862. }
  863. #endif
  864. bootstage_mark(BOOTSTAGE_ID_NAND_PART);
  865. switch (argc) {
  866. case 1:
  867. addr = CONFIG_SYS_LOAD_ADDR;
  868. boot_device = getenv("bootdevice");
  869. break;
  870. case 2:
  871. addr = simple_strtoul(argv[1], NULL, 16);
  872. boot_device = getenv("bootdevice");
  873. break;
  874. case 3:
  875. addr = simple_strtoul(argv[1], NULL, 16);
  876. boot_device = argv[2];
  877. break;
  878. case 4:
  879. addr = simple_strtoul(argv[1], NULL, 16);
  880. boot_device = argv[2];
  881. offset = simple_strtoul(argv[3], NULL, 16);
  882. break;
  883. default:
  884. #if defined(CONFIG_CMD_MTDPARTS)
  885. usage:
  886. #endif
  887. bootstage_error(BOOTSTAGE_ID_NAND_SUFFIX);
  888. return CMD_RET_USAGE;
  889. }
  890. bootstage_mark(BOOTSTAGE_ID_NAND_SUFFIX);
  891. if (!boot_device) {
  892. puts("\n** No boot device **\n");
  893. bootstage_error(BOOTSTAGE_ID_NAND_BOOT_DEVICE);
  894. return 1;
  895. }
  896. bootstage_mark(BOOTSTAGE_ID_NAND_BOOT_DEVICE);
  897. idx = simple_strtoul(boot_device, NULL, 16);
  898. if (idx < 0 || idx >= CONFIG_SYS_MAX_NAND_DEVICE || !nand_info[idx].name) {
  899. printf("\n** Device %d not available\n", idx);
  900. bootstage_error(BOOTSTAGE_ID_NAND_AVAILABLE);
  901. return 1;
  902. }
  903. bootstage_mark(BOOTSTAGE_ID_NAND_AVAILABLE);
  904. return nand_load_image(cmdtp, &nand_info[idx], offset, addr, argv[0]);
  905. }
  906. U_BOOT_CMD(nboot, 4, 1, do_nandboot,
  907. "boot from NAND device",
  908. "[partition] | [[[loadAddr] dev] offset]"
  909. );