cmd_ubi.c 15 KB

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  1. /*
  2. * Unsorted Block Image commands
  3. *
  4. * Copyright (C) 2008 Samsung Electronics
  5. * Kyungmin Park <kyungmin.park@samsung.com>
  6. *
  7. * Copyright 2008-2009 Stefan Roese <sr@denx.de>, DENX Software Engineering
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2 as
  11. * published by the Free Software Foundation.
  12. */
  13. #include <common.h>
  14. #include <command.h>
  15. #include <exports.h>
  16. #include <nand.h>
  17. #include <onenand_uboot.h>
  18. #include <linux/mtd/mtd.h>
  19. #include <linux/mtd/partitions.h>
  20. #include <ubi_uboot.h>
  21. #include <asm/errno.h>
  22. #include <jffs2/load_kernel.h>
  23. #undef ubi_msg
  24. #define ubi_msg(fmt, ...) printf("UBI: " fmt "\n", ##__VA_ARGS__)
  25. #define DEV_TYPE_NONE 0
  26. #define DEV_TYPE_NAND 1
  27. #define DEV_TYPE_ONENAND 2
  28. #define DEV_TYPE_NOR 3
  29. /* Private own data */
  30. static struct ubi_device *ubi;
  31. static char buffer[80];
  32. static int ubi_initialized;
  33. struct selected_dev {
  34. char part_name[80];
  35. int selected;
  36. int nr;
  37. struct mtd_info *mtd_info;
  38. };
  39. static struct selected_dev ubi_dev;
  40. #ifdef CONFIG_CMD_UBIFS
  41. int ubifs_is_mounted(void);
  42. void cmd_ubifs_umount(void);
  43. #endif
  44. static void ubi_dump_vol_info(const struct ubi_volume *vol)
  45. {
  46. ubi_msg("volume information dump:");
  47. ubi_msg("vol_id %d", vol->vol_id);
  48. ubi_msg("reserved_pebs %d", vol->reserved_pebs);
  49. ubi_msg("alignment %d", vol->alignment);
  50. ubi_msg("data_pad %d", vol->data_pad);
  51. ubi_msg("vol_type %d", vol->vol_type);
  52. ubi_msg("name_len %d", vol->name_len);
  53. ubi_msg("usable_leb_size %d", vol->usable_leb_size);
  54. ubi_msg("used_ebs %d", vol->used_ebs);
  55. ubi_msg("used_bytes %lld", vol->used_bytes);
  56. ubi_msg("last_eb_bytes %d", vol->last_eb_bytes);
  57. ubi_msg("corrupted %d", vol->corrupted);
  58. ubi_msg("upd_marker %d", vol->upd_marker);
  59. if (vol->name_len <= UBI_VOL_NAME_MAX &&
  60. strnlen(vol->name, vol->name_len + 1) == vol->name_len) {
  61. ubi_msg("name %s", vol->name);
  62. } else {
  63. ubi_msg("the 1st 5 characters of the name: %c%c%c%c%c",
  64. vol->name[0], vol->name[1], vol->name[2],
  65. vol->name[3], vol->name[4]);
  66. }
  67. printf("\n");
  68. }
  69. static void display_volume_info(struct ubi_device *ubi)
  70. {
  71. int i;
  72. for (i = 0; i < (ubi->vtbl_slots + 1); i++) {
  73. if (!ubi->volumes[i])
  74. continue; /* Empty record */
  75. ubi_dump_vol_info(ubi->volumes[i]);
  76. }
  77. }
  78. static void display_ubi_info(struct ubi_device *ubi)
  79. {
  80. ubi_msg("MTD device name: \"%s\"", ubi->mtd->name);
  81. ubi_msg("MTD device size: %llu MiB", ubi->flash_size >> 20);
  82. ubi_msg("physical eraseblock size: %d bytes (%d KiB)",
  83. ubi->peb_size, ubi->peb_size >> 10);
  84. ubi_msg("logical eraseblock size: %d bytes", ubi->leb_size);
  85. ubi_msg("number of good PEBs: %d", ubi->good_peb_count);
  86. ubi_msg("number of bad PEBs: %d", ubi->bad_peb_count);
  87. ubi_msg("smallest flash I/O unit: %d", ubi->min_io_size);
  88. ubi_msg("VID header offset: %d (aligned %d)",
  89. ubi->vid_hdr_offset, ubi->vid_hdr_aloffset);
  90. ubi_msg("data offset: %d", ubi->leb_start);
  91. ubi_msg("max. allowed volumes: %d", ubi->vtbl_slots);
  92. ubi_msg("wear-leveling threshold: %d", CONFIG_MTD_UBI_WL_THRESHOLD);
  93. ubi_msg("number of internal volumes: %d", UBI_INT_VOL_COUNT);
  94. ubi_msg("number of user volumes: %d",
  95. ubi->vol_count - UBI_INT_VOL_COUNT);
  96. ubi_msg("available PEBs: %d", ubi->avail_pebs);
  97. ubi_msg("total number of reserved PEBs: %d", ubi->rsvd_pebs);
  98. ubi_msg("number of PEBs reserved for bad PEB handling: %d",
  99. ubi->beb_rsvd_pebs);
  100. ubi_msg("max/mean erase counter: %d/%d", ubi->max_ec, ubi->mean_ec);
  101. }
  102. static int ubi_info(int layout)
  103. {
  104. if (layout)
  105. display_volume_info(ubi);
  106. else
  107. display_ubi_info(ubi);
  108. return 0;
  109. }
  110. static int verify_mkvol_req(const struct ubi_device *ubi,
  111. const struct ubi_mkvol_req *req)
  112. {
  113. int n, err = EINVAL;
  114. if (req->bytes < 0 || req->alignment < 0 || req->vol_type < 0 ||
  115. req->name_len < 0)
  116. goto bad;
  117. if ((req->vol_id < 0 || req->vol_id >= ubi->vtbl_slots) &&
  118. req->vol_id != UBI_VOL_NUM_AUTO)
  119. goto bad;
  120. if (req->alignment == 0)
  121. goto bad;
  122. if (req->bytes == 0) {
  123. printf("No space left in UBI device!\n");
  124. err = ENOMEM;
  125. goto bad;
  126. }
  127. if (req->vol_type != UBI_DYNAMIC_VOLUME &&
  128. req->vol_type != UBI_STATIC_VOLUME)
  129. goto bad;
  130. if (req->alignment > ubi->leb_size)
  131. goto bad;
  132. n = req->alignment % ubi->min_io_size;
  133. if (req->alignment != 1 && n)
  134. goto bad;
  135. if (req->name_len > UBI_VOL_NAME_MAX) {
  136. printf("Name too long!\n");
  137. err = ENAMETOOLONG;
  138. goto bad;
  139. }
  140. return 0;
  141. bad:
  142. return err;
  143. }
  144. static int ubi_create_vol(char *volume, int64_t size, int dynamic)
  145. {
  146. struct ubi_mkvol_req req;
  147. int err;
  148. if (dynamic)
  149. req.vol_type = UBI_DYNAMIC_VOLUME;
  150. else
  151. req.vol_type = UBI_STATIC_VOLUME;
  152. req.vol_id = UBI_VOL_NUM_AUTO;
  153. req.alignment = 1;
  154. req.bytes = size;
  155. strcpy(req.name, volume);
  156. req.name_len = strlen(volume);
  157. req.name[req.name_len] = '\0';
  158. req.padding1 = 0;
  159. /* It's duplicated at drivers/mtd/ubi/cdev.c */
  160. err = verify_mkvol_req(ubi, &req);
  161. if (err) {
  162. printf("verify_mkvol_req failed %d\n", err);
  163. return err;
  164. }
  165. printf("Creating %s volume %s of size %lld\n",
  166. dynamic ? "dynamic" : "static", volume, size);
  167. /* Call real ubi create volume */
  168. return ubi_create_volume(ubi, &req);
  169. }
  170. static struct ubi_volume *ubi_find_volume(char *volume)
  171. {
  172. struct ubi_volume *vol = NULL;
  173. int i;
  174. for (i = 0; i < ubi->vtbl_slots; i++) {
  175. vol = ubi->volumes[i];
  176. if (vol && !strcmp(vol->name, volume))
  177. return vol;
  178. }
  179. printf("Volume %s not found!\n", volume);
  180. return NULL;
  181. }
  182. static int ubi_remove_vol(char *volume)
  183. {
  184. int err, reserved_pebs, i;
  185. struct ubi_volume *vol;
  186. vol = ubi_find_volume(volume);
  187. if (vol == NULL)
  188. return ENODEV;
  189. printf("Remove UBI volume %s (id %d)\n", vol->name, vol->vol_id);
  190. if (ubi->ro_mode) {
  191. printf("It's read-only mode\n");
  192. err = EROFS;
  193. goto out_err;
  194. }
  195. err = ubi_change_vtbl_record(ubi, vol->vol_id, NULL);
  196. if (err) {
  197. printf("Error changing Vol tabel record err=%x\n", err);
  198. goto out_err;
  199. }
  200. reserved_pebs = vol->reserved_pebs;
  201. for (i = 0; i < vol->reserved_pebs; i++) {
  202. err = ubi_eba_unmap_leb(ubi, vol, i);
  203. if (err)
  204. goto out_err;
  205. }
  206. kfree(vol->eba_tbl);
  207. ubi->volumes[vol->vol_id]->eba_tbl = NULL;
  208. ubi->volumes[vol->vol_id] = NULL;
  209. ubi->rsvd_pebs -= reserved_pebs;
  210. ubi->avail_pebs += reserved_pebs;
  211. i = ubi->beb_rsvd_level - ubi->beb_rsvd_pebs;
  212. if (i > 0) {
  213. i = ubi->avail_pebs >= i ? i : ubi->avail_pebs;
  214. ubi->avail_pebs -= i;
  215. ubi->rsvd_pebs += i;
  216. ubi->beb_rsvd_pebs += i;
  217. if (i > 0)
  218. ubi_msg("reserve more %d PEBs", i);
  219. }
  220. ubi->vol_count -= 1;
  221. return 0;
  222. out_err:
  223. ubi_err("cannot remove volume %s, error %d", volume, err);
  224. if (err < 0)
  225. err = -err;
  226. return err;
  227. }
  228. int ubi_volume_continue_write(char *volume, void *buf, size_t size)
  229. {
  230. int err = 1;
  231. struct ubi_volume *vol;
  232. vol = ubi_find_volume(volume);
  233. if (vol == NULL)
  234. return ENODEV;
  235. err = ubi_more_update_data(ubi, vol, buf, size);
  236. if (err < 0) {
  237. printf("Couldnt or partially wrote data\n");
  238. return -err;
  239. }
  240. if (err) {
  241. size = err;
  242. err = ubi_check_volume(ubi, vol->vol_id);
  243. if (err < 0)
  244. return -err;
  245. if (err) {
  246. ubi_warn("volume %d on UBI device %d is corrupted",
  247. vol->vol_id, ubi->ubi_num);
  248. vol->corrupted = 1;
  249. }
  250. vol->checked = 1;
  251. ubi_gluebi_updated(vol);
  252. }
  253. return 0;
  254. }
  255. int ubi_volume_begin_write(char *volume, void *buf, size_t size,
  256. size_t full_size)
  257. {
  258. int err = 1;
  259. int rsvd_bytes = 0;
  260. struct ubi_volume *vol;
  261. vol = ubi_find_volume(volume);
  262. if (vol == NULL)
  263. return ENODEV;
  264. rsvd_bytes = vol->reserved_pebs * (ubi->leb_size - vol->data_pad);
  265. if (size < 0 || size > rsvd_bytes) {
  266. printf("size > volume size! Aborting!\n");
  267. return EINVAL;
  268. }
  269. err = ubi_start_update(ubi, vol, full_size);
  270. if (err < 0) {
  271. printf("Cannot start volume update\n");
  272. return -err;
  273. }
  274. return ubi_volume_continue_write(volume, buf, size);
  275. }
  276. int ubi_volume_write(char *volume, void *buf, size_t size)
  277. {
  278. return ubi_volume_begin_write(volume, buf, size, size);
  279. }
  280. int ubi_volume_read(char *volume, char *buf, size_t size)
  281. {
  282. int err, lnum, off, len, tbuf_size;
  283. void *tbuf;
  284. unsigned long long tmp;
  285. struct ubi_volume *vol;
  286. loff_t offp = 0;
  287. vol = ubi_find_volume(volume);
  288. if (vol == NULL)
  289. return ENODEV;
  290. if (vol->updating) {
  291. printf("updating");
  292. return EBUSY;
  293. }
  294. if (vol->upd_marker) {
  295. printf("damaged volume, update marker is set");
  296. return EBADF;
  297. }
  298. if (offp == vol->used_bytes)
  299. return 0;
  300. if (size == 0) {
  301. printf("No size specified -> Using max size (%lld)\n", vol->used_bytes);
  302. size = vol->used_bytes;
  303. }
  304. if (vol->corrupted)
  305. printf("read from corrupted volume %d", vol->vol_id);
  306. if (offp + size > vol->used_bytes)
  307. size = vol->used_bytes - offp;
  308. tbuf_size = vol->usable_leb_size;
  309. if (size < tbuf_size)
  310. tbuf_size = ALIGN(size, ubi->min_io_size);
  311. tbuf = malloc(tbuf_size);
  312. if (!tbuf) {
  313. printf("NO MEM\n");
  314. return ENOMEM;
  315. }
  316. len = size > tbuf_size ? tbuf_size : size;
  317. tmp = offp;
  318. off = do_div(tmp, vol->usable_leb_size);
  319. lnum = tmp;
  320. do {
  321. if (off + len >= vol->usable_leb_size)
  322. len = vol->usable_leb_size - off;
  323. err = ubi_eba_read_leb(ubi, vol, lnum, tbuf, off, len, 0);
  324. if (err) {
  325. printf("read err %x\n", err);
  326. err = -err;
  327. break;
  328. }
  329. off += len;
  330. if (off == vol->usable_leb_size) {
  331. lnum += 1;
  332. off -= vol->usable_leb_size;
  333. }
  334. size -= len;
  335. offp += len;
  336. memcpy(buf, tbuf, len);
  337. buf += len;
  338. len = size > tbuf_size ? tbuf_size : size;
  339. } while (size);
  340. free(tbuf);
  341. return err;
  342. }
  343. static int ubi_dev_scan(struct mtd_info *info, char *ubidev,
  344. const char *vid_header_offset)
  345. {
  346. struct mtd_device *dev;
  347. struct part_info *part;
  348. struct mtd_partition mtd_part;
  349. char ubi_mtd_param_buffer[80];
  350. u8 pnum;
  351. int err;
  352. if (find_dev_and_part(ubidev, &dev, &pnum, &part) != 0)
  353. return 1;
  354. sprintf(buffer, "mtd=%d", pnum);
  355. memset(&mtd_part, 0, sizeof(mtd_part));
  356. mtd_part.name = buffer;
  357. mtd_part.size = part->size;
  358. mtd_part.offset = part->offset;
  359. add_mtd_partitions(info, &mtd_part, 1);
  360. strcpy(ubi_mtd_param_buffer, buffer);
  361. if (vid_header_offset)
  362. sprintf(ubi_mtd_param_buffer, "mtd=%d,%s", pnum,
  363. vid_header_offset);
  364. err = ubi_mtd_param_parse(ubi_mtd_param_buffer, NULL);
  365. if (err) {
  366. del_mtd_partitions(info);
  367. return -err;
  368. }
  369. err = ubi_init();
  370. if (err) {
  371. del_mtd_partitions(info);
  372. return -err;
  373. }
  374. ubi_initialized = 1;
  375. return 0;
  376. }
  377. int ubi_part(char *part_name, const char *vid_header_offset)
  378. {
  379. int err = 0;
  380. char mtd_dev[16];
  381. struct mtd_device *dev;
  382. struct part_info *part;
  383. u8 pnum;
  384. if (mtdparts_init() != 0) {
  385. printf("Error initializing mtdparts!\n");
  386. return 1;
  387. }
  388. #ifdef CONFIG_CMD_UBIFS
  389. /*
  390. * Automatically unmount UBIFS partition when user
  391. * changes the UBI device. Otherwise the following
  392. * UBIFS commands will crash.
  393. */
  394. if (ubifs_is_mounted())
  395. cmd_ubifs_umount();
  396. #endif
  397. /* todo: get dev number for NAND... */
  398. ubi_dev.nr = 0;
  399. /*
  400. * Call ubi_exit() before re-initializing the UBI subsystem
  401. */
  402. if (ubi_initialized) {
  403. ubi_exit();
  404. del_mtd_partitions(ubi_dev.mtd_info);
  405. }
  406. /*
  407. * Search the mtd device number where this partition
  408. * is located
  409. */
  410. if (find_dev_and_part(part_name, &dev, &pnum, &part)) {
  411. printf("Partition %s not found!\n", part_name);
  412. return 1;
  413. }
  414. sprintf(mtd_dev, "%s%d", MTD_DEV_TYPE(dev->id->type), dev->id->num);
  415. ubi_dev.mtd_info = get_mtd_device_nm(mtd_dev);
  416. if (IS_ERR(ubi_dev.mtd_info)) {
  417. printf("Partition %s not found on device %s!\n", part_name,
  418. mtd_dev);
  419. return 1;
  420. }
  421. ubi_dev.selected = 1;
  422. strcpy(ubi_dev.part_name, part_name);
  423. err = ubi_dev_scan(ubi_dev.mtd_info, ubi_dev.part_name,
  424. vid_header_offset);
  425. if (err) {
  426. printf("UBI init error %d\n", err);
  427. ubi_dev.selected = 0;
  428. return err;
  429. }
  430. ubi = ubi_devices[0];
  431. return 0;
  432. }
  433. static int do_ubi(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  434. {
  435. int64_t size = 0;
  436. ulong addr = 0;
  437. if (argc < 2)
  438. return CMD_RET_USAGE;
  439. if (strcmp(argv[1], "part") == 0) {
  440. const char *vid_header_offset = NULL;
  441. /* Print current partition */
  442. if (argc == 2) {
  443. if (!ubi_dev.selected) {
  444. printf("Error, no UBI device/partition selected!\n");
  445. return 1;
  446. }
  447. printf("Device %d: %s, partition %s\n",
  448. ubi_dev.nr, ubi_dev.mtd_info->name, ubi_dev.part_name);
  449. return 0;
  450. }
  451. if (argc < 3)
  452. return CMD_RET_USAGE;
  453. if (argc > 3)
  454. vid_header_offset = argv[3];
  455. return ubi_part(argv[2], vid_header_offset);
  456. }
  457. if ((strcmp(argv[1], "part") != 0) && (!ubi_dev.selected)) {
  458. printf("Error, no UBI device/partition selected!\n");
  459. return 1;
  460. }
  461. if (strcmp(argv[1], "info") == 0) {
  462. int layout = 0;
  463. if (argc > 2 && !strncmp(argv[2], "l", 1))
  464. layout = 1;
  465. return ubi_info(layout);
  466. }
  467. if (strncmp(argv[1], "create", 6) == 0) {
  468. int dynamic = 1; /* default: dynamic volume */
  469. /* Use maximum available size */
  470. size = 0;
  471. /* E.g., create volume size type */
  472. if (argc == 5) {
  473. if (strncmp(argv[4], "s", 1) == 0)
  474. dynamic = 0;
  475. else if (strncmp(argv[4], "d", 1) != 0) {
  476. printf("Incorrect type\n");
  477. return 1;
  478. }
  479. argc--;
  480. }
  481. /* E.g., create volume size */
  482. if (argc == 4) {
  483. size = simple_strtoull(argv[3], NULL, 16);
  484. argc--;
  485. }
  486. /* Use maximum available size */
  487. if (!size) {
  488. size = (int64_t)ubi->avail_pebs * ubi->leb_size;
  489. printf("No size specified -> Using max size (%lld)\n", size);
  490. }
  491. /* E.g., create volume */
  492. if (argc == 3)
  493. return ubi_create_vol(argv[2], size, dynamic);
  494. }
  495. if (strncmp(argv[1], "remove", 6) == 0) {
  496. /* E.g., remove volume */
  497. if (argc == 3)
  498. return ubi_remove_vol(argv[2]);
  499. }
  500. if (strncmp(argv[1], "write", 5) == 0) {
  501. int ret;
  502. if (argc < 5) {
  503. printf("Please see usage\n");
  504. return 1;
  505. }
  506. addr = simple_strtoul(argv[2], NULL, 16);
  507. size = simple_strtoul(argv[4], NULL, 16);
  508. if (strlen(argv[1]) == 10 &&
  509. strncmp(argv[1] + 5, ".part", 5) == 0) {
  510. if (argc < 6) {
  511. ret = ubi_volume_continue_write(argv[3],
  512. (void *)addr, size);
  513. } else {
  514. size_t full_size;
  515. full_size = simple_strtoul(argv[5], NULL, 16);
  516. ret = ubi_volume_begin_write(argv[3],
  517. (void *)addr, size, full_size);
  518. }
  519. } else {
  520. ret = ubi_volume_write(argv[3], (void *)addr, size);
  521. }
  522. if (!ret) {
  523. printf("%lld bytes written to volume %s\n", size,
  524. argv[3]);
  525. }
  526. return ret;
  527. }
  528. if (strncmp(argv[1], "read", 4) == 0) {
  529. size = 0;
  530. /* E.g., read volume size */
  531. if (argc == 5) {
  532. size = simple_strtoul(argv[4], NULL, 16);
  533. argc--;
  534. }
  535. /* E.g., read volume */
  536. if (argc == 4) {
  537. addr = simple_strtoul(argv[2], NULL, 16);
  538. argc--;
  539. }
  540. if (argc == 3) {
  541. printf("Read %lld bytes from volume %s to %lx\n", size,
  542. argv[3], addr);
  543. return ubi_volume_read(argv[3], (char *)addr, size);
  544. }
  545. }
  546. printf("Please see usage\n");
  547. return 1;
  548. }
  549. U_BOOT_CMD(
  550. ubi, 6, 1, do_ubi,
  551. "ubi commands",
  552. "part [part] [offset]\n"
  553. " - Show or set current partition (with optional VID"
  554. " header offset)\n"
  555. "ubi info [l[ayout]]"
  556. " - Display volume and ubi layout information\n"
  557. "ubi create[vol] volume [size] [type]"
  558. " - create volume name with size\n"
  559. "ubi write[vol] address volume size"
  560. " - Write volume from address with size\n"
  561. "ubi write.part address volume size [fullsize]\n"
  562. " - Write part of a volume from address\n"
  563. "ubi read[vol] address volume [size]"
  564. " - Read volume to address with size\n"
  565. "ubi remove[vol] volume"
  566. " - Remove volume\n"
  567. "[Legends]\n"
  568. " volume: character name\n"
  569. " size: specified in bytes\n"
  570. " type: s[tatic] or d[ynamic] (default=dynamic)"
  571. );