emmc.c 27 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. *
  4. */
  5. #include <common.h>
  6. #include <command.h>
  7. #include <console.h>
  8. #include <environment.h>
  9. #include <malloc.h>
  10. #include <mmc.h>
  11. #include <linux/math64.h>
  12. #include <part.h>
  13. #include <fat.h>
  14. #include <fs.h>
  15. #define BDEVNAME_SIZE 32
  16. #define PAGE_SIZE (2048)
  17. #define CHECKDATA_ERROR 2
  18. typedef unsigned long long sector_t;
  19. struct cmdline_subpart {
  20. char name[BDEVNAME_SIZE]; /* partition name, such as 'rootfs' */
  21. sector_t from;
  22. sector_t size;
  23. struct cmdline_subpart *next_subpart;
  24. };
  25. struct cmdline_parts {
  26. char name[BDEVNAME_SIZE]; /* block device, such as 'mmcblk0' */
  27. unsigned int nr_subparts;
  28. struct cmdline_subpart *subpart;
  29. struct cmdline_parts *next_parts;
  30. };
  31. static struct cmdline_parts *bdev_parts;
  32. static unsigned long long memparse(const char *ptr, char **retptr)
  33. {
  34. char *endptr; /* local pointer to end of parsed string */
  35. unsigned long long ret = simple_strtoull(ptr, &endptr, 0);
  36. switch (*endptr) {
  37. case 'E':
  38. case 'e':
  39. ret <<= 10;
  40. case 'P':
  41. case 'p':
  42. ret <<= 10;
  43. case 'T':
  44. case 't':
  45. ret <<= 10;
  46. case 'G':
  47. case 'g':
  48. ret <<= 10;
  49. case 'M':
  50. case 'm':
  51. ret <<= 10;
  52. case 'K':
  53. case 'k':
  54. ret <<= 10;
  55. endptr++;
  56. default:
  57. break;
  58. }
  59. if (retptr)
  60. *retptr = endptr;
  61. return ret;
  62. }
  63. static int parse_subpart(struct cmdline_subpart **subpart, char *partdef)
  64. {
  65. int ret = 0;
  66. struct cmdline_subpart *new_subpart;
  67. *subpart = NULL;
  68. new_subpart = malloc(sizeof(struct cmdline_subpart));
  69. if (!new_subpart)
  70. return -ENOMEM;
  71. memset(new_subpart, 0, sizeof(struct cmdline_subpart));
  72. if (*partdef == '-') {
  73. new_subpart->size = (sector_t)(~0ULL);
  74. partdef++;
  75. } else {
  76. new_subpart->size = (sector_t)memparse(partdef, &partdef);
  77. if (new_subpart->size < (sector_t)PAGE_SIZE) {
  78. pr_warn("cmdline partition size is invalid.");
  79. ret = -EINVAL;
  80. goto fail;
  81. }
  82. }
  83. if (*partdef == '@') {
  84. partdef++;
  85. new_subpart->from = (sector_t)memparse(partdef, &partdef);
  86. } else {
  87. new_subpart->from = (sector_t)(~0ULL);
  88. }
  89. if (*partdef == '(') {
  90. int length;
  91. char *next = strchr(++partdef, ')');
  92. if (!next) {
  93. pr_warn("cmdline partition format is invalid.");
  94. ret = -EINVAL;
  95. goto fail;
  96. }
  97. length = min_t(int, next - partdef,
  98. sizeof(new_subpart->name) - 1);
  99. strncpy(new_subpart->name, partdef, length);
  100. new_subpart->name[length] = '\0';
  101. partdef = ++next;
  102. } else
  103. new_subpart->name[0] = '\0';
  104. *subpart = new_subpart;
  105. return 0;
  106. fail:
  107. free(new_subpart);
  108. return ret;
  109. }
  110. static void free_subpart(struct cmdline_parts *parts)
  111. {
  112. struct cmdline_subpart *subpart;
  113. while (parts->subpart) {
  114. subpart = parts->subpart;
  115. parts->subpart = subpart->next_subpart;
  116. free(subpart);
  117. }
  118. }
  119. static int parse_parts(struct cmdline_parts **parts, const char *bdevdef)
  120. {
  121. int ret = -EINVAL;
  122. char *next;
  123. int length;
  124. struct cmdline_subpart **next_subpart;
  125. struct cmdline_parts *newparts;
  126. char buf[BDEVNAME_SIZE + 32 + 4];
  127. *parts = NULL;
  128. newparts = malloc(sizeof(struct cmdline_parts));
  129. if (!newparts)
  130. return -ENOMEM;
  131. memset(newparts, 0, sizeof(struct cmdline_parts));
  132. next = strchr(bdevdef, ':');
  133. if (!next) {
  134. pr_warn("cmdline partition has no block device.");
  135. goto fail;
  136. }
  137. length = min_t(int, next - bdevdef, sizeof(newparts->name) - 1);
  138. strncpy(newparts->name, bdevdef, length);
  139. newparts->name[length] = '\0';
  140. newparts->nr_subparts = 0;
  141. next_subpart = &newparts->subpart;
  142. while (next && *(++next)) {
  143. bdevdef = next;
  144. next = strchr(bdevdef, ',');
  145. length = (!next) ? (sizeof(buf) - 1) :
  146. min_t(int, next - bdevdef, sizeof(buf) - 1);
  147. strncpy(buf, bdevdef, length);
  148. buf[length] = '\0';
  149. ret = parse_subpart(next_subpart, buf);
  150. if (ret)
  151. goto fail;
  152. newparts->nr_subparts++;
  153. next_subpart = &(*next_subpart)->next_subpart;
  154. }
  155. if (!newparts->subpart) {
  156. pr_warn("cmdline partition has no valid partition.");
  157. ret = -EINVAL;
  158. goto fail;
  159. }
  160. *parts = newparts;
  161. return 0;
  162. fail:
  163. free_subpart(newparts);
  164. free(newparts);
  165. return ret;
  166. }
  167. void cmdline_parts_free(struct cmdline_parts **parts)
  168. {
  169. struct cmdline_parts *next_parts;
  170. while (*parts) {
  171. next_parts = (*parts)->next_parts;
  172. free_subpart(*parts);
  173. free(*parts);
  174. *parts = next_parts;
  175. }
  176. }
  177. static int cmdline_parts_parse(struct cmdline_parts **parts, const char *cmdline)
  178. {
  179. int ret;
  180. char *buf;
  181. char *pbuf;
  182. char *next;
  183. struct cmdline_parts **next_parts;
  184. *parts = NULL;
  185. next = pbuf = buf = strdup(cmdline);
  186. if (!buf)
  187. return -ENOMEM;
  188. next_parts = parts;
  189. while (next && *pbuf) {
  190. next = strchr(pbuf, ';');
  191. if (next)
  192. *next = '\0';
  193. ret = parse_parts(next_parts, pbuf);
  194. if (ret)
  195. goto fail;
  196. if (next)
  197. pbuf = ++next;
  198. next_parts = &(*next_parts)->next_parts;
  199. }
  200. if (!*parts) {
  201. pr_warn("cmdline partition has no valid partition.");
  202. ret = -EINVAL;
  203. goto fail;
  204. }
  205. ret = 0;
  206. done:
  207. free(buf);
  208. return ret;
  209. fail:
  210. cmdline_parts_free(parts);
  211. goto done;
  212. }
  213. static int emmcparts_init(struct mmc *mmc)
  214. {
  215. static int emmcparts_has_init = 0;
  216. const char *cmdline = CONFIG_EMMCPARTS_DEFAULT;
  217. if (emmcparts_has_init)
  218. return 0;
  219. if (cmdline && cmdline_parts_parse(&bdev_parts, cmdline)) {
  220. bdev_parts = NULL;
  221. return -1;
  222. }
  223. sector_t from = 0;
  224. sector_t disk_size = mmc->capacity;
  225. struct cmdline_subpart *subpart;
  226. for (subpart = bdev_parts->subpart; subpart; subpart = subpart->next_subpart) {
  227. if (subpart->from == (sector_t)(~0ULL))
  228. subpart->from = from;
  229. else
  230. from = subpart->from;
  231. if (from >= disk_size)
  232. break;
  233. if (subpart->size > (disk_size - from))
  234. subpart->size = disk_size - from;
  235. pr_debug("subpart %s from 0x%llx, size 0x%llx.\n", subpart->name, subpart->from, subpart->size);
  236. from += subpart->size;
  237. }
  238. emmcparts_has_init = 1;
  239. return 0;
  240. }
  241. static struct mmc *init_emmc_device(void)
  242. {
  243. struct mmc *mmc;
  244. int dev = simple_strtoul(CONFIG_EMMC_DEV_PART, NULL, 10);
  245. mmc = find_mmc_device(dev);
  246. if (!mmc) {
  247. printf("no emmc device at slot %x\n", dev);
  248. return NULL;
  249. }
  250. if (mmc_init(mmc))
  251. return NULL;
  252. emmcparts_init(mmc);
  253. return mmc;
  254. }
  255. int get_part(const char *partname, loff_t *off, loff_t *size, loff_t *maxsize)
  256. {
  257. struct cmdline_subpart *subpart;
  258. if (!bdev_parts) {
  259. printf("not found emmc partition table.\n");
  260. return -1;
  261. }
  262. for (subpart = bdev_parts->subpart; subpart; subpart = subpart->next_subpart) {
  263. if (!strcmp(subpart->name, partname)) {
  264. *off = subpart->from;
  265. *size = subpart->size;
  266. *maxsize = subpart->size;
  267. return 0;
  268. }
  269. }
  270. printf("not found part %s.\n", partname);
  271. return -1;
  272. }
  273. static int emmc_arg_off(const char *arg, loff_t *off, loff_t *size,
  274. loff_t *maxsize, uint64_t chipsize)
  275. {
  276. if (!str2off(arg, off))
  277. return get_part(arg, off, size, maxsize);
  278. if (*off >= chipsize) {
  279. puts("Offset exceeds device limit\n");
  280. return -1;
  281. }
  282. *maxsize = chipsize - *off;
  283. *size = *maxsize;
  284. return 0;
  285. }
  286. static int emmc_arg_off_size(int argc, char *const argv[], loff_t *off,
  287. loff_t *size, uint64_t chipsize)
  288. {
  289. loff_t maxsize;
  290. int ret;
  291. if (argc == 0) {
  292. *off = 0;
  293. *size = chipsize;
  294. goto print;
  295. }
  296. ret = emmc_arg_off(argv[0], off, size, &maxsize, chipsize);
  297. if (ret)
  298. return ret;
  299. if (argc == 1)
  300. goto print;
  301. if (!str2off(argv[1], size)) {
  302. printf("'%s' is not a number\n", argv[1]);
  303. return -1;
  304. }
  305. if (*size > maxsize) {
  306. puts("Size exceeds partition or device limit\n");
  307. return -1;
  308. }
  309. print:
  310. if (*size == chipsize)
  311. puts("whole chip\n");
  312. else
  313. printf("offset 0x%llx, size 0x%llx\n",
  314. (unsigned long long)*off, (unsigned long long)*size);
  315. return 0;
  316. }
  317. static int do_emmc_read(cmd_tbl_t *cmdtp, int flag,
  318. int argc, char * const argv[])
  319. {
  320. struct mmc *mmc;
  321. loff_t off, size;
  322. u32 blk, cnt, n;
  323. void *addr;
  324. if (argc != 3 && argc != 4)
  325. return CMD_RET_USAGE;
  326. addr = (void *)simple_strtoul(argv[1], NULL, 16);
  327. mmc = init_emmc_device();
  328. if (!mmc)
  329. return CMD_RET_FAILURE;
  330. emmc_arg_off_size(argc - 2, argv + 2, &off, &size, mmc->capacity);
  331. struct blk_desc *blkdesc = mmc_get_blk_desc(mmc);
  332. if (off & blkdesc->blksz) {
  333. printf("off(0x%llx) is not align to blksz(%lu).\n", off, blkdesc->blksz);
  334. return CMD_RET_FAILURE;
  335. }
  336. blk = div_u64(off, blkdesc->blksz);
  337. u32 remainder;
  338. cnt = div_u64_rem(size, blkdesc->blksz, &remainder);
  339. if (remainder) cnt += 1;
  340. printf("EMMC read: block # %d, count %d ... ",
  341. blk, cnt);
  342. n = blk_dread(mmc_get_blk_desc(mmc), blk, cnt, addr);
  343. printf("%d blocks read: %s\n", n, (n == cnt) ? "OK" : "ERROR");
  344. return (n == cnt) ? CMD_RET_SUCCESS : CMD_RET_FAILURE;
  345. }
  346. #if CONFIG_IS_ENABLED(MMC_WRITE)
  347. static int do_emmc_write(cmd_tbl_t *cmdtp, int flag,
  348. int argc, char * const argv[])
  349. {
  350. struct mmc *mmc;
  351. loff_t off, size;
  352. u32 blk, cnt, n;
  353. void *addr;
  354. if (argc != 3 && argc != 4)
  355. return CMD_RET_USAGE;
  356. addr = (void *)simple_strtoul(argv[1], NULL, 16);
  357. mmc = init_emmc_device();
  358. if (!mmc)
  359. return CMD_RET_FAILURE;
  360. emmc_arg_off_size(argc - 2, argv + 2, &off, &size, mmc->capacity);
  361. struct blk_desc *blkdesc = mmc_get_blk_desc(mmc);
  362. if (off & blkdesc->blksz) {
  363. printf("off(0x%llx) is not align to blksz(%lu).\n", off, blkdesc->blksz);
  364. return CMD_RET_FAILURE;
  365. }
  366. blk = div_u64(off, blkdesc->blksz);
  367. u32 remainder;
  368. cnt = div_u64_rem(size, blkdesc->blksz, &remainder);
  369. if (remainder) cnt += 1;
  370. printf("EMMC write: block # %d, count %d ... ",
  371. blk, cnt);
  372. if (mmc_getwp(mmc) == 1) {
  373. printf("Error: card is write protected!\n");
  374. return CMD_RET_FAILURE;
  375. }
  376. n = blk_dwrite(mmc_get_blk_desc(mmc), blk, cnt, addr);
  377. printf("%d blocks written: %s\n", n, (n == cnt) ? "OK" : "ERROR");
  378. return (n == cnt) ? CMD_RET_SUCCESS : CMD_RET_FAILURE;
  379. }
  380. static int do_emmc_erase(cmd_tbl_t *cmdtp, int flag,
  381. int argc, char * const argv[])
  382. {
  383. struct mmc *mmc;
  384. loff_t off, size;
  385. u32 blk, cnt, n;
  386. int args = 2;
  387. if (argc > 3)
  388. return CMD_RET_USAGE;
  389. mmc = init_emmc_device();
  390. if (!mmc)
  391. return CMD_RET_FAILURE;
  392. if (argv[0][5] != 0) {
  393. if (!strcmp(&argv[0][5], ".part")) {
  394. args = 1;
  395. } else if (!strcmp(&argv[0][5], ".chip")) {
  396. args = 0;
  397. } else {
  398. goto usage;
  399. }
  400. }
  401. emmc_arg_off_size(args, argv + 1, &off, &size, mmc->capacity);
  402. struct blk_desc *blkdesc = mmc_get_blk_desc(mmc);
  403. if (off & blkdesc->blksz) {
  404. printf("off(0x%llx) is not align to blksz(%lu).\n", off, blkdesc->blksz);
  405. return CMD_RET_FAILURE;
  406. }
  407. blk = div_u64(off, blkdesc->blksz);
  408. u32 remainder;
  409. cnt = div_u64_rem(size, blkdesc->blksz, &remainder);
  410. if (remainder) cnt += 1;
  411. printf("EMMC erase: block # %d, count %d ... ",
  412. blk, cnt);
  413. if (mmc_getwp(mmc) == 1) {
  414. printf("Error: card is write protected!\n");
  415. return CMD_RET_FAILURE;
  416. }
  417. n = blk_derase(mmc_get_blk_desc(mmc), blk, cnt);
  418. printf("%d blocks erased: %s\n", n, (n == cnt) ? "OK" : "ERROR");
  419. return (n == cnt) ? CMD_RET_SUCCESS : CMD_RET_FAILURE;
  420. usage:
  421. return CMD_RET_USAGE;
  422. }
  423. #endif
  424. static cmd_tbl_t cmd_mmc[] = {
  425. U_BOOT_CMD_MKENT(read, 4, 1, do_emmc_read, "", ""),
  426. #if CONFIG_IS_ENABLED(MMC_WRITE)
  427. U_BOOT_CMD_MKENT(write, 4, 0, do_emmc_write, "", ""),
  428. U_BOOT_CMD_MKENT(erase, 3, 0, do_emmc_erase, "", ""),
  429. #endif
  430. };
  431. static int do_emmcops(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  432. {
  433. cmd_tbl_t *cp;
  434. cp = find_cmd_tbl(argv[1], cmd_mmc, ARRAY_SIZE(cmd_mmc));
  435. /* Drop the mmc command */
  436. argc--;
  437. argv++;
  438. if (cp == NULL || argc > cp->maxargs)
  439. return CMD_RET_USAGE;
  440. if (flag == CMD_FLAG_REPEAT && !cp->repeatable)
  441. return CMD_RET_SUCCESS;
  442. return cp->cmd(cmdtp, flag, argc, argv);
  443. }
  444. #ifdef CONFIG_SYS_LONGHELP
  445. static char emmc_help_text[] =
  446. "emmc read - addr off|partition size\n"
  447. "emmc write - addr off|partition size\n"
  448. " read/write 'size' bytes starting at offset 'off'\n"
  449. " to/from memory address 'addr'.\n"
  450. "emmc erase off size - erase 'size' bytes "
  451. "from offset 'off'\n"
  452. "emmc erase.part partition - erase entire partition'\n"
  453. "emmc erase.chip - erase entire chip'\n"
  454. "";
  455. #endif
  456. U_BOOT_CMD(
  457. emmc, CONFIG_SYS_MAXARGS, 1, do_emmcops,
  458. "EMMC sub-system", emmc_help_text
  459. );
  460. /**
  461. * Format and print out a partition list for each device from global device
  462. * list.
  463. */
  464. static void list_partitions(void)
  465. {
  466. struct cmdline_subpart *subpart;
  467. int part_num = 0;
  468. printf("\ndevice %s, # parts = %d\n",
  469. bdev_parts->name, bdev_parts->nr_subparts);
  470. printf(" #: name\t\tsize\t\toffset\n");
  471. for (subpart = bdev_parts->subpart; subpart; subpart = subpart->next_subpart) {
  472. printf("%2d: %-20s0x%08llx\t0x%08llx\n",
  473. part_num++, subpart->name, subpart->size,
  474. subpart->from);
  475. }
  476. }
  477. static int do_emmcparts(cmd_tbl_t *cmdtp, int flag, int argc,
  478. char * const argv[])
  479. {
  480. struct mmc *mmc;
  481. mmc = init_emmc_device();
  482. if (!mmc)
  483. return CMD_RET_FAILURE;
  484. if (!bdev_parts) {
  485. printf("not found emmc partition table.\n");
  486. return CMD_RET_FAILURE;
  487. }
  488. list_partitions();
  489. return 0;
  490. }
  491. #ifdef CONFIG_SYS_LONGHELP
  492. static char emmcparts_help_text[] =
  493. "\n"
  494. " - list emmc partition table\n"
  495. "";
  496. #endif
  497. U_BOOT_CMD(
  498. emmcparts, 1, 0, do_emmcparts,
  499. "list emmc partitions", emmcparts_help_text
  500. );
  501. void get_Emmc_Parition_info(const char *filename,loff_t *off,loff_t *rtsize,loff_t *maxsize)
  502. {
  503. char cmd[128];
  504. unsigned int pos = 0,i;
  505. unsigned int size = 0;
  506. unsigned int leftsize ;
  507. struct mmc *mmc;
  508. mmc = init_emmc_device();
  509. if (!mmc)
  510. return CMD_RET_FAILURE;
  511. if(get_part(filename,off,rtsize, maxsize) == 0)
  512. printf("get Emmc part info filename %s!!\n",filename);
  513. printf("off = 0x%llx ,rtsize = 0x%llx,maxsize = 0x%llx\n",*off,*rtsize,*maxsize);
  514. return 0;
  515. }
  516. #if 1
  517. #define FAT_READ_SIZE 0x2000000
  518. #define ROOTFS_SIZE 0x1f400000
  519. static int do_update_rootfs (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  520. {
  521. unsigned int rootfsize = 0;
  522. char cmd[128];
  523. unsigned int pos = 0,i = 0;
  524. unsigned int size = 0;
  525. unsigned int leftsize,k;
  526. struct mmc *mmc;
  527. loff_t off = 0;
  528. loff_t rtsize = 0;
  529. loff_t maxsize= 0;
  530. unsigned int count = 0;
  531. unsigned int ret = 0;
  532. unsigned int file_size = 0;
  533. unsigned int *srcdata = (unsigned int *)(env_get_hex("loadaddr", 0));
  534. unsigned int *dstdata = (unsigned int *)(env_get_hex("cmploadaddr", 0));
  535. mmc = init_emmc_device();
  536. if (!mmc)
  537. return CMD_RET_FAILURE;
  538. printf("argv[0] %s , argv[1] %s\n",argv[0],argv[1]);
  539. if(get_part(argv[1],&off, &rtsize, &maxsize) == 0)
  540. printf("get Emmc part info argv[1] %s!!\n",argv[1]);
  541. printf("off = 0x%llx ,rtsize = 0x%llx,maxsize = 0x%llx\n",off,rtsize,maxsize);
  542. #if 1
  543. sprintf(cmd, "fatsize %s %s rootfs.ext2", env_get("update_dev_type"), env_get("update_dev_part"),argv[2]);
  544. printf("cmd = %s\n",cmd);
  545. ret = run_command(cmd, 0);
  546. if(ret)
  547. return ret;
  548. mdelay(100);
  549. rootfsize = env_get_hex("filesize", 0);
  550. printf("rootfsize = 0x%x\n",rootfsize);
  551. if(rootfsize == 0)
  552. {
  553. printf("Error:rootfs file maybe not in device!!!\n");
  554. return 1;
  555. }
  556. #endif
  557. size = FAT_READ_SIZE;
  558. count = 55/((rootfsize/size)+1);
  559. for(pos = 0,i = 1;pos < rootfsize;i++)
  560. {
  561. sprintf(cmd, "fatload %s %s %s rootfs.ext2 0x%x 0x%x", env_get("update_dev_type"), env_get("update_dev_part"), env_get("loadaddr"),size,pos);
  562. printf("cmd = %s\n",cmd);
  563. ret = run_command(cmd, 0);
  564. if(ret)
  565. return ret;
  566. mdelay(100);
  567. file_size = env_get_ulong("filesize", 16, 0x2000);
  568. sprintf(cmd, "emmc erase 0x%llx 0x%x",off,size);
  569. printf("cmd = %s\n",cmd);
  570. run_command(cmd, 0);
  571. mdelay(100);
  572. sprintf((char *)cmd,"disconfig %d",(40+i*count));
  573. printf("cmd = %s\n",cmd);
  574. run_command(cmd, 0);
  575. sprintf(cmd, "emmc write %s 0x%llx 0x%x",env_get("loadaddr"),off,size);
  576. printf("cmd = %s\n",cmd);
  577. run_command(cmd, 0);
  578. mdelay(100);
  579. sprintf(cmd, "emmc read %s 0x%llx 0x%x",env_get("cmploadaddr"),off,size);
  580. printf("cmd = %s\n",cmd);
  581. run_command(cmd, 0);
  582. mdelay(100);
  583. for(k = 0;k< file_size/4;k++)
  584. if(srcdata[k] != dstdata[k])
  585. {
  586. printf("check rootfs data error!!!\n");
  587. return CHECKDATA_ERROR;
  588. }
  589. off = off + size;
  590. pos += size;
  591. if(file_size < FAT_READ_SIZE)
  592. {
  593. printf("data is over!!!");
  594. break;
  595. }
  596. }
  597. sprintf(cmd, "setenv rootfssize 0x%x ",rootfsize);
  598. printf("cmd = %s\n",cmd);
  599. run_command(cmd, 0);
  600. return 0;
  601. }
  602. U_BOOT_CMD(
  603. updaterootfs, 6, 0, do_update_rootfs,
  604. "load binary file from a dos filesystem",
  605. "<interface> <dev[:part]> <addr> <filename> [<bytes>]\n"
  606. "- write file 'filename' from the address 'addr' in RAM\n"
  607. "to 'dev' on 'interface'"
  608. );
  609. static int do_update_rootfs_from_ota(char *partition_name, char *file_name)
  610. {
  611. unsigned int rootfsize = 0;
  612. char cmd[128];
  613. unsigned int pos = 0,i = 0,k;
  614. unsigned int size = 0;
  615. unsigned int leftsize ;
  616. struct mmc *mmc;
  617. loff_t off = 0;
  618. loff_t rtsize = 0;
  619. loff_t maxsize= 0;
  620. unsigned int ret = 0;
  621. unsigned int file_size = 0;
  622. unsigned int count=0,step = 0;
  623. unsigned int *srcdata = (unsigned int *)(env_get_hex("loadaddr", 0));
  624. unsigned int *dstdata = (unsigned int *)(env_get_hex("cmploadaddr", 0));
  625. mmc = init_emmc_device();
  626. if (!mmc)
  627. return CMD_RET_FAILURE;
  628. printf("partition_name %s ,file_name %s\n",partition_name,file_name);
  629. if(get_part(partition_name,&off, &rtsize, &maxsize) == 0)
  630. printf("get Emmc part info partition_name %s!!\n",partition_name);
  631. size = FAT_READ_SIZE;
  632. count = 55/((ROOTFS_SIZE/size)+1);
  633. while(1)
  634. {
  635. i++;
  636. sprintf(cmd, "fatload emmc ota %s %s 0x%x 0x%x",env_get("loadaddr"),file_name,size,pos);
  637. printf("cmd = %s\n",cmd);
  638. ret = run_command(cmd, 0);
  639. if(ret)
  640. return ret;
  641. file_size = env_get_ulong("filesize", 16, 0x2000);
  642. if(file_size == 0)
  643. break;
  644. sprintf(cmd, "emmc erase 0x%llx 0x%x",off,size);
  645. printf("cmd = %s\n",cmd);
  646. run_command(cmd, 0);
  647. mdelay(200);
  648. step = (40+i*5);
  649. if(step>95)
  650. step = 95;
  651. sprintf((char *)cmd,"disconfig %d",step);
  652. printf("cmd = %s\n",cmd);
  653. run_command(cmd, 0);
  654. mdelay(200);
  655. sprintf(cmd, "emmc write %s 0x%llx 0x%x",env_get("loadaddr"),off,size);
  656. printf("cmd = %s\n",cmd);
  657. run_command(cmd, 0);
  658. mdelay(200);
  659. sprintf(cmd, "emmc read %s 0x%llx 0x%x",env_get("cmploadaddr"),off,size);
  660. printf("cmd = %s\n",cmd);
  661. run_command(cmd, 0);
  662. mdelay(100);
  663. for(k = 0;k< file_size/4;k++)
  664. if(srcdata[k] != dstdata[k])
  665. {
  666. printf("check rootfs data error!!!\n");
  667. return CHECKDATA_ERROR;
  668. }
  669. off = off + size;
  670. pos += size;
  671. rootfsize = rootfsize + size;
  672. if(file_size < FAT_READ_SIZE)
  673. break;
  674. }
  675. sprintf(cmd, "setenv rootfssize 0x%x ",rootfsize);
  676. printf("cmd = %s\n",cmd);
  677. run_command(cmd, 0);
  678. return 0;
  679. }
  680. static int get_data_from_ota(char *file_name)
  681. {
  682. int ret = -1;
  683. char cmd[128] = { 0 };
  684. printf("file_name=%s\n", file_name);
  685. sprintf(cmd, "fatload emmc ota %s %s",env_get("loadaddr"), file_name);
  686. printf("cmd=%s\n", cmd);
  687. ret = run_command(cmd, 0);
  688. return ret;
  689. }
  690. static int burn_data_2_emmc_partition(char *partition_name)
  691. {
  692. char cmd[128] = { 0 };
  693. int ret = -1;
  694. int file_size = 0;
  695. sprintf(cmd, "emmc erase.part %s", partition_name);
  696. printf("cmd=%s\n", cmd);
  697. ret = run_command(cmd, 0);
  698. if (ret)
  699. return ret;
  700. file_size = env_get_ulong("filesize", 16, 0x2000);
  701. sprintf(cmd, "emmc write %s %s 0x%x", env_get("loadaddr"), partition_name, file_size);
  702. printf("cmd=%s\n", cmd);
  703. ret = run_command(cmd, 0);
  704. return ret;
  705. }
  706. static int ark_update_emmc_partition(char *partition_name, char *file_name)
  707. {
  708. int ret;
  709. ret = get_data_from_ota(file_name);
  710. if (!ret) {
  711. burn_data_2_emmc_partition(partition_name);
  712. }
  713. return ret;
  714. }
  715. static int ark_update_emmc_rootfs_from_ota(char *partition_name, char *file_name)
  716. {
  717. char cmd[32];
  718. unsigned int ret = 0;
  719. ret = do_update_rootfs_from_ota(partition_name,file_name);
  720. return ret;
  721. }
  722. #define ARK1668_UPDATE_MAGIC "ada7f0c6-7c86-11e9-8f9e-2a86e4085a59"
  723. int do_update_from_ota(cmd_tbl_t * cmdtp, int flag, int argc, char *const argv[])
  724. {
  725. char cmd[32];
  726. unsigned int index = 0;
  727. unsigned int ret = 0;
  728. unsigned int loadaddr;
  729. char *update_from_ota = NULL;
  730. char *update_fdt = NULL;
  731. update_from_ota = env_get("update_from_ota");
  732. unsigned char flag_partiton = 0 ;
  733. char *curr_partition = NULL;
  734. sprintf(cmd, "mmc dev %s",env_get("emmc_dev_part"));
  735. printf("cmd=%s\n", cmd);
  736. run_command(cmd, 0);
  737. sprintf((char *)cmd,"disconfig 0");
  738. run_command(cmd, 0);
  739. update_fdt = env_get("emmcfdt");
  740. printf("update_fdt:%s\n", update_fdt);
  741. env_set("updata_status", "ota");
  742. loadaddr = env_get_hex("loadaddr", 0);
  743. sprintf(cmd, "fatload emmc ota %s %s ", env_get("loadaddr"),"update-magic");
  744. run_command(cmd, 0);
  745. if (loadaddr && !memcmp((void *)loadaddr, ARK1668_UPDATE_MAGIC, strlen(ARK1668_UPDATE_MAGIC))) {
  746. printf("ARK1668_UPDATE_MAGIC CHECK OK!!\n");
  747. } else {
  748. printf("Wrong update magic, do not update from emmc.\n");
  749. goto bootoldsys;
  750. }
  751. sprintf((char *)cmd,"disconfig 8");
  752. run_command(cmd, 0);
  753. curr_partition = env_get("updata_from_part");
  754. if(!strcmp(curr_partition, "A"))
  755. flag_partiton = 1;
  756. else if(!strcmp(curr_partition, "B"))
  757. flag_partiton = 0;
  758. printf("\r\n **** update from update ubootspl .....\r\n");
  759. ret = ark_update_emmc_partition("bootstrap", "ubootspl.bin");
  760. mdelay(30);
  761. if(!ret)
  762. {
  763. sprintf(cmd, "setenv bootstrapsize %s",env_get("filesize"));
  764. printf("cmd=%s\n", cmd);
  765. run_command(cmd, 0);
  766. mdelay(30);
  767. sprintf((char *)cmd,"disconfig 10");
  768. run_command(cmd, 0);
  769. }
  770. else if(ret == CHECKDATA_ERROR)
  771. goto bootoldsys;
  772. printf("\r\n **** update from update uboot .....\r\n");
  773. ret = ark_update_emmc_partition("bootloader", "u-boot.img");
  774. mdelay(30);
  775. if(!ret)
  776. {
  777. sprintf(cmd, "setenv bootloadersize %s",env_get("filesize"));
  778. printf("cmd=%s\n", cmd);
  779. run_command(cmd, 0);
  780. mdelay(30);
  781. sprintf((char *)cmd,"disconfig 10");
  782. run_command(cmd, 0);
  783. }
  784. else if(ret == CHECKDATA_ERROR)
  785. goto bootoldsys;
  786. printf("\r\n **** update from update fdt .....\r\n");
  787. if (flag_partiton == 0)
  788. ret = ark_update_emmc_partition("fdt", update_fdt);
  789. else if (flag_partiton == 1)
  790. ret = ark_update_emmc_partition("fdt_b", update_fdt);
  791. mdelay(30);
  792. if(!ret)
  793. {
  794. if(flag_partiton == 0)
  795. sprintf(cmd, "setenv fdtsize_a %s",env_get("filesize"));
  796. else
  797. sprintf(cmd, "setenv fdtsize_b %s",env_get("filesize"));
  798. run_command(cmd, 0);
  799. printf("cmd=%s\n", cmd);
  800. mdelay(30);
  801. sprintf((char *)cmd,"disconfig 15");
  802. run_command(cmd, 0);
  803. }
  804. else if(ret == CHECKDATA_ERROR)
  805. goto bootoldsys;
  806. printf("\r\n **** update from update kernel .....\r\n");
  807. if (flag_partiton == 0)
  808. ret = ark_update_emmc_partition("kernel", "zImage");
  809. else if (flag_partiton == 1)
  810. ret = ark_update_emmc_partition("kernel_b", "zImage");
  811. mdelay(30);
  812. if(!ret)
  813. {
  814. if(flag_partiton == 0)
  815. sprintf(cmd, "setenv kernelsize_a %s",env_get("filesize"));
  816. else
  817. sprintf(cmd, "setenv kernelsize_b %s",env_get("filesize"));
  818. printf("cmd=%s\n", cmd);
  819. run_command(cmd, 0);
  820. mdelay(30);
  821. sprintf((char *)cmd,"disconfig 25");
  822. run_command(cmd, 0);
  823. }
  824. else if(ret == CHECKDATA_ERROR)
  825. goto bootoldsys;
  826. printf("\r\n **** update from update bootanimation .....\r\n");
  827. ret = ark_update_emmc_partition("bootanimation", "bootanimation");
  828. mdelay(30);
  829. if(!ret)
  830. {
  831. sprintf(cmd, "setenv bootanimationsize %s",env_get("filesize"));
  832. run_command(cmd, 0);
  833. printf("cmd=%s\n", cmd);
  834. mdelay(30);
  835. sprintf((char *)cmd,"disconfig 30");
  836. run_command(cmd, 0);
  837. }
  838. else if(ret == CHECKDATA_ERROR)
  839. goto bootoldsys;
  840. printf("\r\n **** update from update reversingtrack .....\r\n");
  841. ret = ark_update_emmc_partition("reversingtrack", "reversingtrack");
  842. mdelay(30);
  843. if(!ret)
  844. {
  845. sprintf(cmd, "setenv reversingtracksize %s",env_get("filesize"));
  846. run_command(cmd, 0);
  847. printf("cmd=%s\n", cmd);
  848. mdelay(30);
  849. sprintf((char *)cmd,"disconfig 35");
  850. run_command(cmd, 0);
  851. }
  852. else if(ret == CHECKDATA_ERROR)
  853. goto bootoldsys;
  854. printf("\r\n **** update from update uboot back .....\r\n");
  855. ret = ark_update_emmc_partition("bootloader_bak", "u-boot.img");
  856. mdelay(30);
  857. if(!ret)
  858. {
  859. sprintf(cmd, "setenv bootloadersize %s",env_get("filesize"));
  860. run_command(cmd, 0);
  861. printf("cmd=%s\n", cmd);
  862. mdelay(30);
  863. sprintf((char *)cmd,"disconfig 40");
  864. run_command(cmd, 0);
  865. }
  866. else if(ret == CHECKDATA_ERROR)
  867. goto bootoldsys;
  868. printf("\r\n **** update from update rootfs .....\r\n");
  869. if (flag_partiton == 0)
  870. ret = ark_update_emmc_rootfs_from_ota("rootfs", "rootfs.ext2");
  871. else if (flag_partiton == 1)
  872. ret = ark_update_emmc_rootfs_from_ota("rootfs_b", "rootfs.ext2");
  873. mdelay(30);
  874. if(!ret)
  875. {
  876. sprintf(cmd, "setenv rootfssize %s",env_get("filesize"));
  877. printf("cmd=%s\n", cmd);
  878. run_command(cmd, 0);
  879. mdelay(30);
  880. sprintf((char *)cmd,"disconfig 95");
  881. run_command(cmd, 0);
  882. }
  883. else if(ret == CHECKDATA_ERROR)
  884. goto bootoldsys;
  885. curr_partition = env_get("updata_from_part");
  886. if(!strcmp(curr_partition, "A"))
  887. {
  888. env_set("updata_from_part", "B");
  889. env_set("kernel_part", "kernel_b");
  890. env_set("fdt_part", "fdt_b");
  891. env_set("emmcroot", "/dev/mmcblk0p13 rw");
  892. sprintf(cmd, "setenv fdtsize %s",env_get("fdtsize_b"));
  893. run_command(cmd, 0);
  894. printf("cmd=%s\n", cmd);
  895. mdelay(30);
  896. sprintf(cmd, "setenv kernelsize %s",env_get("kernelsize_b"));
  897. run_command(cmd, 0);
  898. printf("cmd=%s\n", cmd);
  899. mdelay(30);
  900. sprintf(cmd, "setenv bootanimationsize %s",env_get("bootanimationsize_b"));
  901. run_command(cmd, 0);
  902. printf("cmd=%s\n", cmd);
  903. mdelay(30);
  904. }
  905. else if(!strcmp(curr_partition, "B"))
  906. {
  907. env_set("updata_from_part", "A");
  908. env_set("kernel_part", "kernel");
  909. env_set("fdt_part", "fdt");
  910. env_set("emmcroot", "/dev/mmcblk0p9 rw");
  911. sprintf(cmd, "setenv fdtsize %s",env_get("fdtsize_a"));
  912. run_command(cmd, 0);
  913. printf("cmd=%s\n", cmd);
  914. mdelay(30);
  915. sprintf(cmd, "setenv kernelsize %s",env_get("kernelsize_a"));
  916. run_command(cmd, 0);
  917. printf("cmd=%s\n", cmd);
  918. mdelay(30);
  919. sprintf(cmd, "setenv bootanimationsize %s",env_get("bootanimationsize_a"));
  920. run_command(cmd, 0);
  921. printf("cmd=%s\n", cmd);
  922. mdelay(30);
  923. }
  924. env_set("updata_status", "ok");
  925. mdelay(30);
  926. env_set("need_update", "no");
  927. mdelay(30);
  928. env_set("update_from_ota", "no");
  929. sprintf(cmd, "saveenv");
  930. printf("cmd=%s\n", cmd);
  931. run_command(cmd, 0);
  932. mdelay(30);
  933. sprintf((char *)cmd,"disconfig 100");
  934. run_command(cmd, 0);
  935. mdelay(20);
  936. sprintf(cmd, "run emmcboot");
  937. printf("cmd=%s\n", cmd);
  938. run_command(cmd, 0);
  939. return 0;
  940. bootoldsys:
  941. env_set("update_from_ota", "no");
  942. mdelay(30);
  943. env_set("updata_status", "error");
  944. sprintf(cmd, "saveenv");
  945. printf("cmd=%s\n", cmd);
  946. run_command(cmd, 0);
  947. mdelay(20);
  948. sprintf(cmd, "run emmcboot");
  949. printf("cmd=%s\n", cmd);
  950. run_command(cmd, 0);
  951. return 1;
  952. }
  953. U_BOOT_CMD(
  954. update_from_emmc_ota, 4, 0, do_update_from_ota,
  955. "updata from emmc ota partiton",
  956. "<interface> <dev[:part]> <filename>\n"
  957. );
  958. #if 0
  959. int do_boot_from_part(cmd_tbl_t * cmdtp, int flag, int argc, char *const argv[])
  960. {
  961. char cmd[32];
  962. unsigned int index = 0;
  963. unsigned int ret = 0;
  964. char *load_from_kernel_part = NULL;
  965. load_from_kernel_part = env_get("load_from_part");
  966. if(!strcmp(load_from_kernel_part, "A"))
  967. {
  968. env_set("kernel_part", "kernel");
  969. env_set("emmcroot", "/dev/mmcblk1p10 rw");
  970. }
  971. else
  972. {
  973. env_set("kernel_part", "kernel_b");
  974. env_set("emmcroot", "/dev/mmcblk1p13 rw");
  975. }
  976. printf("load_from_kernel_part %s\n",load_from_kernel_part);
  977. sprintf(cmd, "saveenv");
  978. printf("cmd=%s\n", cmd);
  979. run_command(cmd, 0);
  980. return 1;
  981. }
  982. U_BOOT_CMD(
  983. boot_from_part_set, 4, 0, do_boot_from_part,
  984. "updata from emmc ota partiton",
  985. "<interface> <dev[:part]> <filename>\n"
  986. );
  987. #endif
  988. #endif