cmd_bootm.c 37 KB

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  1. /*
  2. * (C) Copyright 2000-2009
  3. * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
  4. *
  5. * See file CREDITS for list of people who contributed to this
  6. * project.
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License as
  10. * published by the Free Software Foundation; either version 2 of
  11. * the License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  21. * MA 02111-1307 USA
  22. */
  23. /*
  24. * Boot support
  25. */
  26. #include <common.h>
  27. #include <watchdog.h>
  28. #include <command.h>
  29. #include <image.h>
  30. #include <malloc.h>
  31. #include <u-boot/zlib.h>
  32. #include <bzlib.h>
  33. #include <environment.h>
  34. #include <lmb.h>
  35. #include <linux/ctype.h>
  36. #include <asm/byteorder.h>
  37. #if defined(CONFIG_CMD_USB)
  38. #include <usb.h>
  39. #endif
  40. #ifdef CONFIG_SYS_HUSH_PARSER
  41. #include <hush.h>
  42. #endif
  43. #if defined(CONFIG_OF_LIBFDT)
  44. #include <fdt.h>
  45. #include <libfdt.h>
  46. #include <fdt_support.h>
  47. #endif
  48. #ifdef CONFIG_LZMA
  49. #include <lzma/LzmaTypes.h>
  50. #include <lzma/LzmaDec.h>
  51. #include <lzma/LzmaTools.h>
  52. #endif /* CONFIG_LZMA */
  53. #ifdef CONFIG_LZO
  54. #include <linux/lzo.h>
  55. #endif /* CONFIG_LZO */
  56. DECLARE_GLOBAL_DATA_PTR;
  57. #ifndef CONFIG_SYS_BOOTM_LEN
  58. #define CONFIG_SYS_BOOTM_LEN 0x800000 /* use 8MByte as default max gunzip size */
  59. #endif
  60. #ifdef CONFIG_BZIP2
  61. extern void bz_internal_error(int);
  62. #endif
  63. #if defined(CONFIG_CMD_IMI)
  64. static int image_info (unsigned long addr);
  65. #endif
  66. #if defined(CONFIG_CMD_IMLS)
  67. #include <flash.h>
  68. #include <mtd/cfi_flash.h>
  69. extern flash_info_t flash_info[]; /* info for FLASH chips */
  70. static int do_imls (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[]);
  71. #endif
  72. #ifdef CONFIG_SILENT_CONSOLE
  73. static void fixup_silent_linux (void);
  74. #endif
  75. static image_header_t *image_get_kernel (ulong img_addr, int verify);
  76. #if defined(CONFIG_FIT)
  77. static int fit_check_kernel (const void *fit, int os_noffset, int verify);
  78. #endif
  79. static void *boot_get_kernel (cmd_tbl_t *cmdtp, int flag,int argc, char * const argv[],
  80. bootm_headers_t *images, ulong *os_data, ulong *os_len);
  81. /*
  82. * Continue booting an OS image; caller already has:
  83. * - copied image header to global variable `header'
  84. * - checked header magic number, checksums (both header & image),
  85. * - verified image architecture (PPC) and type (KERNEL or MULTI),
  86. * - loaded (first part of) image to header load address,
  87. * - disabled interrupts.
  88. */
  89. typedef int boot_os_fn (int flag, int argc, char * const argv[],
  90. bootm_headers_t *images); /* pointers to os/initrd/fdt */
  91. #ifdef CONFIG_BOOTM_LINUX
  92. extern boot_os_fn do_bootm_linux;
  93. #endif
  94. #ifdef CONFIG_BOOTM_NETBSD
  95. static boot_os_fn do_bootm_netbsd;
  96. #endif
  97. #if defined(CONFIG_LYNXKDI)
  98. static boot_os_fn do_bootm_lynxkdi;
  99. extern void lynxkdi_boot (image_header_t *);
  100. #endif
  101. #ifdef CONFIG_BOOTM_RTEMS
  102. static boot_os_fn do_bootm_rtems;
  103. #endif
  104. #if defined(CONFIG_BOOTM_OSE)
  105. static boot_os_fn do_bootm_ose;
  106. #endif
  107. #if defined(CONFIG_CMD_ELF)
  108. static boot_os_fn do_bootm_vxworks;
  109. static boot_os_fn do_bootm_qnxelf;
  110. int do_bootvx (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[]);
  111. int do_bootelf (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[]);
  112. #endif
  113. #if defined(CONFIG_INTEGRITY)
  114. static boot_os_fn do_bootm_integrity;
  115. #endif
  116. static boot_os_fn *boot_os[] = {
  117. #ifdef CONFIG_BOOTM_LINUX
  118. [IH_OS_LINUX] = do_bootm_linux,
  119. #endif
  120. #ifdef CONFIG_BOOTM_NETBSD
  121. [IH_OS_NETBSD] = do_bootm_netbsd,
  122. #endif
  123. #ifdef CONFIG_LYNXKDI
  124. [IH_OS_LYNXOS] = do_bootm_lynxkdi,
  125. #endif
  126. #ifdef CONFIG_BOOTM_RTEMS
  127. [IH_OS_RTEMS] = do_bootm_rtems,
  128. #endif
  129. #if defined(CONFIG_BOOTM_OSE)
  130. [IH_OS_OSE] = do_bootm_ose,
  131. #endif
  132. #if defined(CONFIG_CMD_ELF)
  133. [IH_OS_VXWORKS] = do_bootm_vxworks,
  134. [IH_OS_QNX] = do_bootm_qnxelf,
  135. #endif
  136. #ifdef CONFIG_INTEGRITY
  137. [IH_OS_INTEGRITY] = do_bootm_integrity,
  138. #endif
  139. };
  140. ulong load_addr = CONFIG_SYS_LOAD_ADDR; /* Default Load Address */
  141. static bootm_headers_t images; /* pointers to os/initrd/fdt images */
  142. /* Allow for arch specific config before we boot */
  143. void __arch_preboot_os(void)
  144. {
  145. /* please define platform specific arch_preboot_os() */
  146. }
  147. void arch_preboot_os(void) __attribute__((weak, alias("__arch_preboot_os")));
  148. #if defined(__ARM__)
  149. #define IH_INITRD_ARCH IH_ARCH_ARM
  150. #elif defined(__avr32__)
  151. #define IH_INITRD_ARCH IH_ARCH_AVR32
  152. #elif defined(__bfin__)
  153. #define IH_INITRD_ARCH IH_ARCH_BLACKFIN
  154. #elif defined(__I386__)
  155. #define IH_INITRD_ARCH IH_ARCH_I386
  156. #elif defined(__M68K__)
  157. #define IH_INITRD_ARCH IH_ARCH_M68K
  158. #elif defined(__microblaze__)
  159. #define IH_INITRD_ARCH IH_ARCH_MICROBLAZE
  160. #elif defined(__mips__)
  161. #define IH_INITRD_ARCH IH_ARCH_MIPS
  162. #elif defined(__nios2__)
  163. #define IH_INITRD_ARCH IH_ARCH_NIOS2
  164. #elif defined(__PPC__)
  165. #define IH_INITRD_ARCH IH_ARCH_PPC
  166. #elif defined(__sh__)
  167. #define IH_INITRD_ARCH IH_ARCH_SH
  168. #elif defined(__sparc__)
  169. #define IH_INITRD_ARCH IH_ARCH_SPARC
  170. #else
  171. # error Unknown CPU type
  172. #endif
  173. static void bootm_start_lmb(void)
  174. {
  175. #ifdef CONFIG_LMB
  176. ulong mem_start;
  177. phys_size_t mem_size;
  178. lmb_init(&images.lmb);
  179. mem_start = getenv_bootm_low();
  180. mem_size = getenv_bootm_size();
  181. lmb_add(&images.lmb, (phys_addr_t)mem_start, mem_size);
  182. arch_lmb_reserve(&images.lmb);
  183. board_lmb_reserve(&images.lmb);
  184. #else
  185. # define lmb_reserve(lmb, base, size)
  186. #endif
  187. }
  188. static int bootm_start(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  189. {
  190. void *os_hdr;
  191. int ret;
  192. memset ((void *)&images, 0, sizeof (images));
  193. images.verify = getenv_yesno ("verify");
  194. bootm_start_lmb();
  195. /* get kernel image header, start address and length */
  196. os_hdr = boot_get_kernel (cmdtp, flag, argc, argv,
  197. &images, &images.os.image_start, &images.os.image_len);
  198. if (images.os.image_len == 0) {
  199. puts ("ERROR: can't get kernel image!\n");
  200. return 1;
  201. }
  202. /* get image parameters */
  203. switch (genimg_get_format (os_hdr)) {
  204. case IMAGE_FORMAT_LEGACY:
  205. images.os.type = image_get_type (os_hdr);
  206. images.os.comp = image_get_comp (os_hdr);
  207. images.os.os = image_get_os (os_hdr);
  208. images.os.end = image_get_image_end (os_hdr);
  209. images.os.load = image_get_load (os_hdr);
  210. break;
  211. #if defined(CONFIG_FIT)
  212. case IMAGE_FORMAT_FIT:
  213. if (fit_image_get_type (images.fit_hdr_os,
  214. images.fit_noffset_os, &images.os.type)) {
  215. puts ("Can't get image type!\n");
  216. show_boot_progress (-109);
  217. return 1;
  218. }
  219. if (fit_image_get_comp (images.fit_hdr_os,
  220. images.fit_noffset_os, &images.os.comp)) {
  221. puts ("Can't get image compression!\n");
  222. show_boot_progress (-110);
  223. return 1;
  224. }
  225. if (fit_image_get_os (images.fit_hdr_os,
  226. images.fit_noffset_os, &images.os.os)) {
  227. puts ("Can't get image OS!\n");
  228. show_boot_progress (-111);
  229. return 1;
  230. }
  231. images.os.end = fit_get_end (images.fit_hdr_os);
  232. if (fit_image_get_load (images.fit_hdr_os, images.fit_noffset_os,
  233. &images.os.load)) {
  234. puts ("Can't get image load address!\n");
  235. show_boot_progress (-112);
  236. return 1;
  237. }
  238. break;
  239. #endif
  240. default:
  241. puts ("ERROR: unknown image format type!\n");
  242. return 1;
  243. }
  244. /* find kernel entry point */
  245. if (images.legacy_hdr_valid) {
  246. images.ep = image_get_ep (&images.legacy_hdr_os_copy);
  247. #if defined(CONFIG_FIT)
  248. } else if (images.fit_uname_os) {
  249. ret = fit_image_get_entry (images.fit_hdr_os,
  250. images.fit_noffset_os, &images.ep);
  251. if (ret) {
  252. puts ("Can't get entry point property!\n");
  253. return 1;
  254. }
  255. #endif
  256. } else {
  257. puts ("Could not find kernel entry point!\n");
  258. return 1;
  259. }
  260. if (((images.os.type == IH_TYPE_KERNEL) ||
  261. (images.os.type == IH_TYPE_MULTI)) &&
  262. (images.os.os == IH_OS_LINUX)) {
  263. /* find ramdisk */
  264. ret = boot_get_ramdisk (argc, argv, &images, IH_INITRD_ARCH,
  265. &images.rd_start, &images.rd_end);
  266. if (ret) {
  267. puts ("Ramdisk image is corrupt or invalid\n");
  268. return 1;
  269. }
  270. #if defined(CONFIG_OF_LIBFDT)
  271. /* find flattened device tree */
  272. ret = boot_get_fdt (flag, argc, argv, &images,
  273. &images.ft_addr, &images.ft_len);
  274. if (ret) {
  275. puts ("Could not find a valid device tree\n");
  276. return 1;
  277. }
  278. set_working_fdt_addr(images.ft_addr);
  279. #endif
  280. }
  281. images.os.start = (ulong)os_hdr;
  282. images.state = BOOTM_STATE_START;
  283. return 0;
  284. }
  285. #define BOOTM_ERR_RESET -1
  286. #define BOOTM_ERR_OVERLAP -2
  287. #define BOOTM_ERR_UNIMPLEMENTED -3
  288. static int bootm_load_os(image_info_t os, ulong *load_end, int boot_progress)
  289. {
  290. uint8_t comp = os.comp;
  291. ulong load = os.load;
  292. ulong blob_start = os.start;
  293. ulong blob_end = os.end;
  294. ulong image_start = os.image_start;
  295. ulong image_len = os.image_len;
  296. uint unc_len = CONFIG_SYS_BOOTM_LEN;
  297. #if defined(CONFIG_LZMA) || defined(CONFIG_LZO)
  298. int ret;
  299. #endif /* defined(CONFIG_LZMA) || defined(CONFIG_LZO) */
  300. const char *type_name = genimg_get_type_name (os.type);
  301. switch (comp) {
  302. case IH_COMP_NONE:
  303. if (load == blob_start) {
  304. printf (" XIP %s ... ", type_name);
  305. } else {
  306. printf (" Loading %s ... ", type_name);
  307. memmove_wd ((void *)load, (void *)image_start,
  308. image_len, CHUNKSZ);
  309. }
  310. *load_end = load + image_len;
  311. puts("OK\n");
  312. break;
  313. #ifdef CONFIG_GZIP
  314. case IH_COMP_GZIP:
  315. printf (" Uncompressing %s ... ", type_name);
  316. if (gunzip ((void *)load, unc_len,
  317. (uchar *)image_start, &image_len) != 0) {
  318. puts ("GUNZIP: uncompress, out-of-mem or overwrite error "
  319. "- must RESET board to recover\n");
  320. if (boot_progress)
  321. show_boot_progress (-6);
  322. return BOOTM_ERR_RESET;
  323. }
  324. *load_end = load + image_len;
  325. break;
  326. #endif /* CONFIG_GZIP */
  327. #ifdef CONFIG_BZIP2
  328. case IH_COMP_BZIP2:
  329. printf (" Uncompressing %s ... ", type_name);
  330. /*
  331. * If we've got less than 4 MB of malloc() space,
  332. * use slower decompression algorithm which requires
  333. * at most 2300 KB of memory.
  334. */
  335. int i = BZ2_bzBuffToBuffDecompress ((char*)load,
  336. &unc_len, (char *)image_start, image_len,
  337. CONFIG_SYS_MALLOC_LEN < (4096 * 1024), 0);
  338. if (i != BZ_OK) {
  339. printf ("BUNZIP2: uncompress or overwrite error %d "
  340. "- must RESET board to recover\n", i);
  341. if (boot_progress)
  342. show_boot_progress (-6);
  343. return BOOTM_ERR_RESET;
  344. }
  345. *load_end = load + unc_len;
  346. break;
  347. #endif /* CONFIG_BZIP2 */
  348. #ifdef CONFIG_LZMA
  349. case IH_COMP_LZMA: {
  350. SizeT lzma_len = unc_len;
  351. printf (" Uncompressing %s ... ", type_name);
  352. ret = lzmaBuffToBuffDecompress(
  353. (unsigned char *)load, &lzma_len,
  354. (unsigned char *)image_start, image_len);
  355. unc_len = lzma_len;
  356. if (ret != SZ_OK) {
  357. printf ("LZMA: uncompress or overwrite error %d "
  358. "- must RESET board to recover\n", ret);
  359. show_boot_progress (-6);
  360. return BOOTM_ERR_RESET;
  361. }
  362. *load_end = load + unc_len;
  363. break;
  364. }
  365. #endif /* CONFIG_LZMA */
  366. #ifdef CONFIG_LZO
  367. case IH_COMP_LZO:
  368. printf (" Uncompressing %s ... ", type_name);
  369. ret = lzop_decompress((const unsigned char *)image_start,
  370. image_len, (unsigned char *)load,
  371. &unc_len);
  372. if (ret != LZO_E_OK) {
  373. printf ("LZO: uncompress or overwrite error %d "
  374. "- must RESET board to recover\n", ret);
  375. if (boot_progress)
  376. show_boot_progress (-6);
  377. return BOOTM_ERR_RESET;
  378. }
  379. *load_end = load + unc_len;
  380. break;
  381. #endif /* CONFIG_LZO */
  382. default:
  383. printf ("Unimplemented compression type %d\n", comp);
  384. return BOOTM_ERR_UNIMPLEMENTED;
  385. }
  386. puts ("OK\n");
  387. debug (" kernel loaded at 0x%08lx, end = 0x%08lx\n", load, *load_end);
  388. if (boot_progress)
  389. show_boot_progress (7);
  390. if ((load < blob_end) && (*load_end > blob_start)) {
  391. debug ("images.os.start = 0x%lX, images.os.end = 0x%lx\n", blob_start, blob_end);
  392. debug ("images.os.load = 0x%lx, load_end = 0x%lx\n", load, *load_end);
  393. return BOOTM_ERR_OVERLAP;
  394. }
  395. return 0;
  396. }
  397. static int bootm_start_standalone(ulong iflag, int argc, char * const argv[])
  398. {
  399. char *s;
  400. int (*appl)(int, char * const []);
  401. /* Don't start if "autostart" is set to "no" */
  402. if (((s = getenv("autostart")) != NULL) && (strcmp(s, "no") == 0)) {
  403. char buf[32];
  404. sprintf(buf, "%lX", images.os.image_len);
  405. setenv("filesize", buf);
  406. return 0;
  407. }
  408. appl = (int (*)(int, char * const []))ntohl(images.ep);
  409. (*appl)(argc-1, &argv[1]);
  410. return 0;
  411. }
  412. /* we overload the cmd field with our state machine info instead of a
  413. * function pointer */
  414. static cmd_tbl_t cmd_bootm_sub[] = {
  415. U_BOOT_CMD_MKENT(start, 0, 1, (void *)BOOTM_STATE_START, "", ""),
  416. U_BOOT_CMD_MKENT(loados, 0, 1, (void *)BOOTM_STATE_LOADOS, "", ""),
  417. #ifdef CONFIG_SYS_BOOT_RAMDISK_HIGH
  418. U_BOOT_CMD_MKENT(ramdisk, 0, 1, (void *)BOOTM_STATE_RAMDISK, "", ""),
  419. #endif
  420. #ifdef CONFIG_OF_LIBFDT
  421. U_BOOT_CMD_MKENT(fdt, 0, 1, (void *)BOOTM_STATE_FDT, "", ""),
  422. #endif
  423. U_BOOT_CMD_MKENT(cmdline, 0, 1, (void *)BOOTM_STATE_OS_CMDLINE, "", ""),
  424. U_BOOT_CMD_MKENT(bdt, 0, 1, (void *)BOOTM_STATE_OS_BD_T, "", ""),
  425. U_BOOT_CMD_MKENT(prep, 0, 1, (void *)BOOTM_STATE_OS_PREP, "", ""),
  426. U_BOOT_CMD_MKENT(go, 0, 1, (void *)BOOTM_STATE_OS_GO, "", ""),
  427. };
  428. int do_bootm_subcommand (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  429. {
  430. int ret = 0;
  431. int state;
  432. cmd_tbl_t *c;
  433. boot_os_fn *boot_fn;
  434. c = find_cmd_tbl(argv[1], &cmd_bootm_sub[0], ARRAY_SIZE(cmd_bootm_sub));
  435. if (c) {
  436. state = (int)c->cmd;
  437. /* treat start special since it resets the state machine */
  438. if (state == BOOTM_STATE_START) {
  439. argc--;
  440. argv++;
  441. return bootm_start(cmdtp, flag, argc, argv);
  442. }
  443. } else {
  444. /* Unrecognized command */
  445. return cmd_usage(cmdtp);
  446. }
  447. if (images.state >= state) {
  448. printf ("Trying to execute a command out of order\n");
  449. return cmd_usage(cmdtp);
  450. }
  451. images.state |= state;
  452. boot_fn = boot_os[images.os.os];
  453. switch (state) {
  454. ulong load_end;
  455. case BOOTM_STATE_START:
  456. /* should never occur */
  457. break;
  458. case BOOTM_STATE_LOADOS:
  459. ret = bootm_load_os(images.os, &load_end, 0);
  460. if (ret)
  461. return ret;
  462. lmb_reserve(&images.lmb, images.os.load,
  463. (load_end - images.os.load));
  464. break;
  465. #ifdef CONFIG_SYS_BOOT_RAMDISK_HIGH
  466. case BOOTM_STATE_RAMDISK:
  467. {
  468. ulong rd_len = images.rd_end - images.rd_start;
  469. char str[17];
  470. ret = boot_ramdisk_high(&images.lmb, images.rd_start,
  471. rd_len, &images.initrd_start, &images.initrd_end);
  472. if (ret)
  473. return ret;
  474. sprintf(str, "%lx", images.initrd_start);
  475. setenv("initrd_start", str);
  476. sprintf(str, "%lx", images.initrd_end);
  477. setenv("initrd_end", str);
  478. }
  479. break;
  480. #endif
  481. #if defined(CONFIG_OF_LIBFDT) && defined(CONFIG_SYS_BOOTMAPSZ)
  482. case BOOTM_STATE_FDT:
  483. {
  484. ulong bootmap_base = getenv_bootm_low();
  485. ret = boot_relocate_fdt(&images.lmb, bootmap_base,
  486. &images.ft_addr, &images.ft_len);
  487. break;
  488. }
  489. #endif
  490. case BOOTM_STATE_OS_CMDLINE:
  491. ret = boot_fn(BOOTM_STATE_OS_CMDLINE, argc, argv, &images);
  492. if (ret)
  493. printf ("cmdline subcommand not supported\n");
  494. break;
  495. case BOOTM_STATE_OS_BD_T:
  496. ret = boot_fn(BOOTM_STATE_OS_BD_T, argc, argv, &images);
  497. if (ret)
  498. printf ("bdt subcommand not supported\n");
  499. break;
  500. case BOOTM_STATE_OS_PREP:
  501. ret = boot_fn(BOOTM_STATE_OS_PREP, argc, argv, &images);
  502. if (ret)
  503. printf ("prep subcommand not supported\n");
  504. break;
  505. case BOOTM_STATE_OS_GO:
  506. disable_interrupts();
  507. arch_preboot_os();
  508. boot_fn(BOOTM_STATE_OS_GO, argc, argv, &images);
  509. break;
  510. }
  511. return ret;
  512. }
  513. /*******************************************************************/
  514. /* bootm - boot application image from image in memory */
  515. /*******************************************************************/
  516. int do_bootm (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  517. {
  518. ulong iflag;
  519. ulong load_end = 0;
  520. int ret;
  521. boot_os_fn *boot_fn;
  522. #ifdef CONFIG_NEEDS_MANUAL_RELOC
  523. static int relocated = 0;
  524. /* relocate boot function table */
  525. if (!relocated) {
  526. int i;
  527. for (i = 0; i < ARRAY_SIZE(boot_os); i++)
  528. if (boot_os[i] != NULL)
  529. boot_os[i] += gd->reloc_off;
  530. relocated = 1;
  531. }
  532. #endif
  533. /* determine if we have a sub command */
  534. if (argc > 1) {
  535. char *endp;
  536. simple_strtoul(argv[1], &endp, 16);
  537. /* endp pointing to NULL means that argv[1] was just a
  538. * valid number, pass it along to the normal bootm processing
  539. *
  540. * If endp is ':' or '#' assume a FIT identifier so pass
  541. * along for normal processing.
  542. *
  543. * Right now we assume the first arg should never be '-'
  544. */
  545. if ((*endp != 0) && (*endp != ':') && (*endp != '#'))
  546. return do_bootm_subcommand(cmdtp, flag, argc, argv);
  547. }
  548. if (bootm_start(cmdtp, flag, argc, argv))
  549. return 1;
  550. /*
  551. * We have reached the point of no return: we are going to
  552. * overwrite all exception vector code, so we cannot easily
  553. * recover from any failures any more...
  554. */
  555. iflag = disable_interrupts();
  556. #if defined(CONFIG_CMD_USB)
  557. /*
  558. * turn off USB to prevent the host controller from writing to the
  559. * SDRAM while Linux is booting. This could happen (at least for OHCI
  560. * controller), because the HCCA (Host Controller Communication Area)
  561. * lies within the SDRAM and the host controller writes continously to
  562. * this area (as busmaster!). The HccaFrameNumber is for example
  563. * updated every 1 ms within the HCCA structure in SDRAM! For more
  564. * details see the OpenHCI specification.
  565. */
  566. usb_stop();
  567. #endif
  568. ret = bootm_load_os(images.os, &load_end, 1);
  569. if (ret < 0) {
  570. if (ret == BOOTM_ERR_RESET)
  571. do_reset (cmdtp, flag, argc, argv);
  572. if (ret == BOOTM_ERR_OVERLAP) {
  573. if (images.legacy_hdr_valid) {
  574. if (image_get_type (&images.legacy_hdr_os_copy) == IH_TYPE_MULTI)
  575. puts ("WARNING: legacy format multi component "
  576. "image overwritten\n");
  577. } else {
  578. puts ("ERROR: new format image overwritten - "
  579. "must RESET the board to recover\n");
  580. show_boot_progress (-113);
  581. do_reset (cmdtp, flag, argc, argv);
  582. }
  583. }
  584. if (ret == BOOTM_ERR_UNIMPLEMENTED) {
  585. if (iflag)
  586. enable_interrupts();
  587. show_boot_progress (-7);
  588. return 1;
  589. }
  590. }
  591. lmb_reserve(&images.lmb, images.os.load, (load_end - images.os.load));
  592. if (images.os.type == IH_TYPE_STANDALONE) {
  593. if (iflag)
  594. enable_interrupts();
  595. /* This may return when 'autostart' is 'no' */
  596. bootm_start_standalone(iflag, argc, argv);
  597. return 0;
  598. }
  599. show_boot_progress (8);
  600. #ifdef CONFIG_SILENT_CONSOLE
  601. if (images.os.os == IH_OS_LINUX)
  602. fixup_silent_linux();
  603. #endif
  604. boot_fn = boot_os[images.os.os];
  605. if (boot_fn == NULL) {
  606. if (iflag)
  607. enable_interrupts();
  608. printf ("ERROR: booting os '%s' (%d) is not supported\n",
  609. genimg_get_os_name(images.os.os), images.os.os);
  610. show_boot_progress (-8);
  611. return 1;
  612. }
  613. arch_preboot_os();
  614. boot_fn(0, argc, argv, &images);
  615. show_boot_progress (-9);
  616. #ifdef DEBUG
  617. puts ("\n## Control returned to monitor - resetting...\n");
  618. #endif
  619. do_reset (cmdtp, flag, argc, argv);
  620. return 1;
  621. }
  622. /**
  623. * image_get_kernel - verify legacy format kernel image
  624. * @img_addr: in RAM address of the legacy format image to be verified
  625. * @verify: data CRC verification flag
  626. *
  627. * image_get_kernel() verifies legacy image integrity and returns pointer to
  628. * legacy image header if image verification was completed successfully.
  629. *
  630. * returns:
  631. * pointer to a legacy image header if valid image was found
  632. * otherwise return NULL
  633. */
  634. static image_header_t *image_get_kernel (ulong img_addr, int verify)
  635. {
  636. image_header_t *hdr = (image_header_t *)img_addr;
  637. if (!image_check_magic(hdr)) {
  638. puts ("Bad Magic Number\n");
  639. show_boot_progress (-1);
  640. return NULL;
  641. }
  642. show_boot_progress (2);
  643. if (!image_check_hcrc (hdr)) {
  644. puts ("Bad Header Checksum\n");
  645. show_boot_progress (-2);
  646. return NULL;
  647. }
  648. show_boot_progress (3);
  649. image_print_contents (hdr);
  650. if (verify) {
  651. puts (" Verifying Checksum ... ");
  652. if (!image_check_dcrc (hdr)) {
  653. printf ("Bad Data CRC\n");
  654. show_boot_progress (-3);
  655. return NULL;
  656. }
  657. puts ("OK\n");
  658. }
  659. show_boot_progress (4);
  660. if (!image_check_target_arch (hdr)) {
  661. printf ("Unsupported Architecture 0x%x\n", image_get_arch (hdr));
  662. show_boot_progress (-4);
  663. return NULL;
  664. }
  665. return hdr;
  666. }
  667. /**
  668. * fit_check_kernel - verify FIT format kernel subimage
  669. * @fit_hdr: pointer to the FIT image header
  670. * os_noffset: kernel subimage node offset within FIT image
  671. * @verify: data CRC verification flag
  672. *
  673. * fit_check_kernel() verifies integrity of the kernel subimage and from
  674. * specified FIT image.
  675. *
  676. * returns:
  677. * 1, on success
  678. * 0, on failure
  679. */
  680. #if defined (CONFIG_FIT)
  681. static int fit_check_kernel (const void *fit, int os_noffset, int verify)
  682. {
  683. fit_image_print (fit, os_noffset, " ");
  684. if (verify) {
  685. puts (" Verifying Hash Integrity ... ");
  686. if (!fit_image_check_hashes (fit, os_noffset)) {
  687. puts ("Bad Data Hash\n");
  688. show_boot_progress (-104);
  689. return 0;
  690. }
  691. puts ("OK\n");
  692. }
  693. show_boot_progress (105);
  694. if (!fit_image_check_target_arch (fit, os_noffset)) {
  695. puts ("Unsupported Architecture\n");
  696. show_boot_progress (-105);
  697. return 0;
  698. }
  699. show_boot_progress (106);
  700. if (!fit_image_check_type (fit, os_noffset, IH_TYPE_KERNEL)) {
  701. puts ("Not a kernel image\n");
  702. show_boot_progress (-106);
  703. return 0;
  704. }
  705. show_boot_progress (107);
  706. return 1;
  707. }
  708. #endif /* CONFIG_FIT */
  709. /**
  710. * boot_get_kernel - find kernel image
  711. * @os_data: pointer to a ulong variable, will hold os data start address
  712. * @os_len: pointer to a ulong variable, will hold os data length
  713. *
  714. * boot_get_kernel() tries to find a kernel image, verifies its integrity
  715. * and locates kernel data.
  716. *
  717. * returns:
  718. * pointer to image header if valid image was found, plus kernel start
  719. * address and length, otherwise NULL
  720. */
  721. static void *boot_get_kernel (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[],
  722. bootm_headers_t *images, ulong *os_data, ulong *os_len)
  723. {
  724. image_header_t *hdr;
  725. ulong img_addr;
  726. #if defined(CONFIG_FIT)
  727. void *fit_hdr;
  728. const char *fit_uname_config = NULL;
  729. const char *fit_uname_kernel = NULL;
  730. const void *data;
  731. size_t len;
  732. int cfg_noffset;
  733. int os_noffset;
  734. #endif
  735. /* find out kernel image address */
  736. if (argc < 2) {
  737. img_addr = load_addr;
  738. debug ("* kernel: default image load address = 0x%08lx\n",
  739. load_addr);
  740. #if defined(CONFIG_FIT)
  741. } else if (fit_parse_conf (argv[1], load_addr, &img_addr,
  742. &fit_uname_config)) {
  743. debug ("* kernel: config '%s' from image at 0x%08lx\n",
  744. fit_uname_config, img_addr);
  745. } else if (fit_parse_subimage (argv[1], load_addr, &img_addr,
  746. &fit_uname_kernel)) {
  747. debug ("* kernel: subimage '%s' from image at 0x%08lx\n",
  748. fit_uname_kernel, img_addr);
  749. #endif
  750. } else {
  751. img_addr = simple_strtoul(argv[1], NULL, 16);
  752. debug ("* kernel: cmdline image address = 0x%08lx\n", img_addr);
  753. }
  754. show_boot_progress (1);
  755. /* copy from dataflash if needed */
  756. img_addr = genimg_get_image (img_addr);
  757. /* check image type, for FIT images get FIT kernel node */
  758. *os_data = *os_len = 0;
  759. switch (genimg_get_format ((void *)img_addr)) {
  760. case IMAGE_FORMAT_LEGACY:
  761. printf ("## Booting kernel from Legacy Image at %08lx ...\n",
  762. img_addr);
  763. hdr = image_get_kernel (img_addr, images->verify);
  764. if (!hdr)
  765. return NULL;
  766. show_boot_progress (5);
  767. /* get os_data and os_len */
  768. switch (image_get_type (hdr)) {
  769. case IH_TYPE_KERNEL:
  770. *os_data = image_get_data (hdr);
  771. *os_len = image_get_data_size (hdr);
  772. break;
  773. case IH_TYPE_MULTI:
  774. image_multi_getimg (hdr, 0, os_data, os_len);
  775. break;
  776. case IH_TYPE_STANDALONE:
  777. *os_data = image_get_data (hdr);
  778. *os_len = image_get_data_size (hdr);
  779. break;
  780. default:
  781. printf ("Wrong Image Type for %s command\n", cmdtp->name);
  782. show_boot_progress (-5);
  783. return NULL;
  784. }
  785. /*
  786. * copy image header to allow for image overwrites during kernel
  787. * decompression.
  788. */
  789. memmove (&images->legacy_hdr_os_copy, hdr, sizeof(image_header_t));
  790. /* save pointer to image header */
  791. images->legacy_hdr_os = hdr;
  792. images->legacy_hdr_valid = 1;
  793. show_boot_progress (6);
  794. break;
  795. #if defined(CONFIG_FIT)
  796. case IMAGE_FORMAT_FIT:
  797. fit_hdr = (void *)img_addr;
  798. printf ("## Booting kernel from FIT Image at %08lx ...\n",
  799. img_addr);
  800. if (!fit_check_format (fit_hdr)) {
  801. puts ("Bad FIT kernel image format!\n");
  802. show_boot_progress (-100);
  803. return NULL;
  804. }
  805. show_boot_progress (100);
  806. if (!fit_uname_kernel) {
  807. /*
  808. * no kernel image node unit name, try to get config
  809. * node first. If config unit node name is NULL
  810. * fit_conf_get_node() will try to find default config node
  811. */
  812. show_boot_progress (101);
  813. cfg_noffset = fit_conf_get_node (fit_hdr, fit_uname_config);
  814. if (cfg_noffset < 0) {
  815. show_boot_progress (-101);
  816. return NULL;
  817. }
  818. /* save configuration uname provided in the first
  819. * bootm argument
  820. */
  821. images->fit_uname_cfg = fdt_get_name (fit_hdr, cfg_noffset, NULL);
  822. printf (" Using '%s' configuration\n", images->fit_uname_cfg);
  823. show_boot_progress (103);
  824. os_noffset = fit_conf_get_kernel_node (fit_hdr, cfg_noffset);
  825. fit_uname_kernel = fit_get_name (fit_hdr, os_noffset, NULL);
  826. } else {
  827. /* get kernel component image node offset */
  828. show_boot_progress (102);
  829. os_noffset = fit_image_get_node (fit_hdr, fit_uname_kernel);
  830. }
  831. if (os_noffset < 0) {
  832. show_boot_progress (-103);
  833. return NULL;
  834. }
  835. printf (" Trying '%s' kernel subimage\n", fit_uname_kernel);
  836. show_boot_progress (104);
  837. if (!fit_check_kernel (fit_hdr, os_noffset, images->verify))
  838. return NULL;
  839. /* get kernel image data address and length */
  840. if (fit_image_get_data (fit_hdr, os_noffset, &data, &len)) {
  841. puts ("Could not find kernel subimage data!\n");
  842. show_boot_progress (-107);
  843. return NULL;
  844. }
  845. show_boot_progress (108);
  846. *os_len = len;
  847. *os_data = (ulong)data;
  848. images->fit_hdr_os = fit_hdr;
  849. images->fit_uname_os = fit_uname_kernel;
  850. images->fit_noffset_os = os_noffset;
  851. break;
  852. #endif
  853. default:
  854. printf ("Wrong Image Format for %s command\n", cmdtp->name);
  855. show_boot_progress (-108);
  856. return NULL;
  857. }
  858. debug (" kernel data at 0x%08lx, len = 0x%08lx (%ld)\n",
  859. *os_data, *os_len, *os_len);
  860. return (void *)img_addr;
  861. }
  862. U_BOOT_CMD(
  863. bootm, CONFIG_SYS_MAXARGS, 1, do_bootm,
  864. "boot application image from memory",
  865. "[addr [arg ...]]\n - boot application image stored in memory\n"
  866. "\tpassing arguments 'arg ...'; when booting a Linux kernel,\n"
  867. "\t'arg' can be the address of an initrd image\n"
  868. #if defined(CONFIG_OF_LIBFDT)
  869. "\tWhen booting a Linux kernel which requires a flat device-tree\n"
  870. "\ta third argument is required which is the address of the\n"
  871. "\tdevice-tree blob. To boot that kernel without an initrd image,\n"
  872. "\tuse a '-' for the second argument. If you do not pass a third\n"
  873. "\ta bd_info struct will be passed instead\n"
  874. #endif
  875. #if defined(CONFIG_FIT)
  876. "\t\nFor the new multi component uImage format (FIT) addresses\n"
  877. "\tmust be extened to include component or configuration unit name:\n"
  878. "\taddr:<subimg_uname> - direct component image specification\n"
  879. "\taddr#<conf_uname> - configuration specification\n"
  880. "\tUse iminfo command to get the list of existing component\n"
  881. "\timages and configurations.\n"
  882. #endif
  883. "\nSub-commands to do part of the bootm sequence. The sub-commands "
  884. "must be\n"
  885. "issued in the order below (it's ok to not issue all sub-commands):\n"
  886. "\tstart [addr [arg ...]]\n"
  887. "\tloados - load OS image\n"
  888. #if defined(CONFIG_PPC) || defined(CONFIG_M68K) || defined(CONFIG_SPARC)
  889. "\tramdisk - relocate initrd, set env initrd_start/initrd_end\n"
  890. #endif
  891. #if defined(CONFIG_OF_LIBFDT)
  892. "\tfdt - relocate flat device tree\n"
  893. #endif
  894. "\tcmdline - OS specific command line processing/setup\n"
  895. "\tbdt - OS specific bd_t processing\n"
  896. "\tprep - OS specific prep before relocation or go\n"
  897. "\tgo - start OS"
  898. );
  899. /*******************************************************************/
  900. /* bootd - boot default image */
  901. /*******************************************************************/
  902. #if defined(CONFIG_CMD_BOOTD)
  903. int do_bootd (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  904. {
  905. int rcode = 0;
  906. #ifndef CONFIG_SYS_HUSH_PARSER
  907. if (run_command (getenv ("bootcmd"), flag) < 0)
  908. rcode = 1;
  909. #else
  910. if (parse_string_outer (getenv ("bootcmd"),
  911. FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP) != 0)
  912. rcode = 1;
  913. #endif
  914. return rcode;
  915. }
  916. U_BOOT_CMD(
  917. boot, 1, 1, do_bootd,
  918. "boot default, i.e., run 'bootcmd'",
  919. ""
  920. );
  921. /* keep old command name "bootd" for backward compatibility */
  922. U_BOOT_CMD(
  923. bootd, 1, 1, do_bootd,
  924. "boot default, i.e., run 'bootcmd'",
  925. ""
  926. );
  927. #endif
  928. /*******************************************************************/
  929. /* iminfo - print header info for a requested image */
  930. /*******************************************************************/
  931. #if defined(CONFIG_CMD_IMI)
  932. int do_iminfo (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  933. {
  934. int arg;
  935. ulong addr;
  936. int rcode = 0;
  937. if (argc < 2) {
  938. return image_info (load_addr);
  939. }
  940. for (arg = 1; arg < argc; ++arg) {
  941. addr = simple_strtoul (argv[arg], NULL, 16);
  942. if (image_info (addr) != 0)
  943. rcode = 1;
  944. }
  945. return rcode;
  946. }
  947. static int image_info (ulong addr)
  948. {
  949. void *hdr = (void *)addr;
  950. printf ("\n## Checking Image at %08lx ...\n", addr);
  951. switch (genimg_get_format (hdr)) {
  952. case IMAGE_FORMAT_LEGACY:
  953. puts (" Legacy image found\n");
  954. if (!image_check_magic (hdr)) {
  955. puts (" Bad Magic Number\n");
  956. return 1;
  957. }
  958. if (!image_check_hcrc (hdr)) {
  959. puts (" Bad Header Checksum\n");
  960. return 1;
  961. }
  962. image_print_contents (hdr);
  963. puts (" Verifying Checksum ... ");
  964. if (!image_check_dcrc (hdr)) {
  965. puts (" Bad Data CRC\n");
  966. return 1;
  967. }
  968. puts ("OK\n");
  969. return 0;
  970. #if defined(CONFIG_FIT)
  971. case IMAGE_FORMAT_FIT:
  972. puts (" FIT image found\n");
  973. if (!fit_check_format (hdr)) {
  974. puts ("Bad FIT image format!\n");
  975. return 1;
  976. }
  977. fit_print_contents (hdr);
  978. if (!fit_all_image_check_hashes (hdr)) {
  979. puts ("Bad hash in FIT image!\n");
  980. return 1;
  981. }
  982. return 0;
  983. #endif
  984. default:
  985. puts ("Unknown image format!\n");
  986. break;
  987. }
  988. return 1;
  989. }
  990. U_BOOT_CMD(
  991. iminfo, CONFIG_SYS_MAXARGS, 1, do_iminfo,
  992. "print header information for application image",
  993. "addr [addr ...]\n"
  994. " - print header information for application image starting at\n"
  995. " address 'addr' in memory; this includes verification of the\n"
  996. " image contents (magic number, header and payload checksums)"
  997. );
  998. #endif
  999. /*******************************************************************/
  1000. /* imls - list all images found in flash */
  1001. /*******************************************************************/
  1002. #if defined(CONFIG_CMD_IMLS)
  1003. int do_imls (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  1004. {
  1005. flash_info_t *info;
  1006. int i, j;
  1007. void *hdr;
  1008. for (i = 0, info = &flash_info[0];
  1009. i < CONFIG_SYS_MAX_FLASH_BANKS; ++i, ++info) {
  1010. if (info->flash_id == FLASH_UNKNOWN)
  1011. goto next_bank;
  1012. for (j = 0; j < info->sector_count; ++j) {
  1013. hdr = (void *)info->start[j];
  1014. if (!hdr)
  1015. goto next_sector;
  1016. switch (genimg_get_format (hdr)) {
  1017. case IMAGE_FORMAT_LEGACY:
  1018. if (!image_check_hcrc (hdr))
  1019. goto next_sector;
  1020. printf ("Legacy Image at %08lX:\n", (ulong)hdr);
  1021. image_print_contents (hdr);
  1022. puts (" Verifying Checksum ... ");
  1023. if (!image_check_dcrc (hdr)) {
  1024. puts ("Bad Data CRC\n");
  1025. } else {
  1026. puts ("OK\n");
  1027. }
  1028. break;
  1029. #if defined(CONFIG_FIT)
  1030. case IMAGE_FORMAT_FIT:
  1031. if (!fit_check_format (hdr))
  1032. goto next_sector;
  1033. printf ("FIT Image at %08lX:\n", (ulong)hdr);
  1034. fit_print_contents (hdr);
  1035. break;
  1036. #endif
  1037. default:
  1038. goto next_sector;
  1039. }
  1040. next_sector: ;
  1041. }
  1042. next_bank: ;
  1043. }
  1044. return (0);
  1045. }
  1046. U_BOOT_CMD(
  1047. imls, 1, 1, do_imls,
  1048. "list all images found in flash",
  1049. "\n"
  1050. " - Prints information about all images found at sector\n"
  1051. " boundaries in flash."
  1052. );
  1053. #endif
  1054. /*******************************************************************/
  1055. /* helper routines */
  1056. /*******************************************************************/
  1057. #ifdef CONFIG_SILENT_CONSOLE
  1058. static void fixup_silent_linux ()
  1059. {
  1060. char buf[256], *start, *end;
  1061. char *cmdline = getenv ("bootargs");
  1062. /* Only fix cmdline when requested */
  1063. if (!(gd->flags & GD_FLG_SILENT))
  1064. return;
  1065. debug ("before silent fix-up: %s\n", cmdline);
  1066. if (cmdline) {
  1067. if ((start = strstr (cmdline, "console=")) != NULL) {
  1068. end = strchr (start, ' ');
  1069. strncpy (buf, cmdline, (start - cmdline + 8));
  1070. if (end)
  1071. strcpy (buf + (start - cmdline + 8), end);
  1072. else
  1073. buf[start - cmdline + 8] = '\0';
  1074. } else {
  1075. strcpy (buf, cmdline);
  1076. strcat (buf, " console=");
  1077. }
  1078. } else {
  1079. strcpy (buf, "console=");
  1080. }
  1081. setenv ("bootargs", buf);
  1082. debug ("after silent fix-up: %s\n", buf);
  1083. }
  1084. #endif /* CONFIG_SILENT_CONSOLE */
  1085. /*******************************************************************/
  1086. /* OS booting routines */
  1087. /*******************************************************************/
  1088. #ifdef CONFIG_BOOTM_NETBSD
  1089. static int do_bootm_netbsd (int flag, int argc, char * const argv[],
  1090. bootm_headers_t *images)
  1091. {
  1092. void (*loader)(bd_t *, image_header_t *, char *, char *);
  1093. image_header_t *os_hdr, *hdr;
  1094. ulong kernel_data, kernel_len;
  1095. char *consdev;
  1096. char *cmdline;
  1097. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1098. return 1;
  1099. #if defined(CONFIG_FIT)
  1100. if (!images->legacy_hdr_valid) {
  1101. fit_unsupported_reset ("NetBSD");
  1102. return 1;
  1103. }
  1104. #endif
  1105. hdr = images->legacy_hdr_os;
  1106. /*
  1107. * Booting a (NetBSD) kernel image
  1108. *
  1109. * This process is pretty similar to a standalone application:
  1110. * The (first part of an multi-) image must be a stage-2 loader,
  1111. * which in turn is responsible for loading & invoking the actual
  1112. * kernel. The only differences are the parameters being passed:
  1113. * besides the board info strucure, the loader expects a command
  1114. * line, the name of the console device, and (optionally) the
  1115. * address of the original image header.
  1116. */
  1117. os_hdr = NULL;
  1118. if (image_check_type (&images->legacy_hdr_os_copy, IH_TYPE_MULTI)) {
  1119. image_multi_getimg (hdr, 1, &kernel_data, &kernel_len);
  1120. if (kernel_len)
  1121. os_hdr = hdr;
  1122. }
  1123. consdev = "";
  1124. #if defined (CONFIG_8xx_CONS_SMC1)
  1125. consdev = "smc1";
  1126. #elif defined (CONFIG_8xx_CONS_SMC2)
  1127. consdev = "smc2";
  1128. #elif defined (CONFIG_8xx_CONS_SCC2)
  1129. consdev = "scc2";
  1130. #elif defined (CONFIG_8xx_CONS_SCC3)
  1131. consdev = "scc3";
  1132. #endif
  1133. if (argc > 2) {
  1134. ulong len;
  1135. int i;
  1136. for (i = 2, len = 0; i < argc; i += 1)
  1137. len += strlen (argv[i]) + 1;
  1138. cmdline = malloc (len);
  1139. for (i = 2, len = 0; i < argc; i += 1) {
  1140. if (i > 2)
  1141. cmdline[len++] = ' ';
  1142. strcpy (&cmdline[len], argv[i]);
  1143. len += strlen (argv[i]);
  1144. }
  1145. } else if ((cmdline = getenv ("bootargs")) == NULL) {
  1146. cmdline = "";
  1147. }
  1148. loader = (void (*)(bd_t *, image_header_t *, char *, char *))images->ep;
  1149. printf ("## Transferring control to NetBSD stage-2 loader (at address %08lx) ...\n",
  1150. (ulong)loader);
  1151. show_boot_progress (15);
  1152. /*
  1153. * NetBSD Stage-2 Loader Parameters:
  1154. * r3: ptr to board info data
  1155. * r4: image address
  1156. * r5: console device
  1157. * r6: boot args string
  1158. */
  1159. (*loader) (gd->bd, os_hdr, consdev, cmdline);
  1160. return 1;
  1161. }
  1162. #endif /* CONFIG_BOOTM_NETBSD*/
  1163. #ifdef CONFIG_LYNXKDI
  1164. static int do_bootm_lynxkdi (int flag, int argc, char * const argv[],
  1165. bootm_headers_t *images)
  1166. {
  1167. image_header_t *hdr = &images->legacy_hdr_os_copy;
  1168. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1169. return 1;
  1170. #if defined(CONFIG_FIT)
  1171. if (!images->legacy_hdr_valid) {
  1172. fit_unsupported_reset ("Lynx");
  1173. return 1;
  1174. }
  1175. #endif
  1176. lynxkdi_boot ((image_header_t *)hdr);
  1177. return 1;
  1178. }
  1179. #endif /* CONFIG_LYNXKDI */
  1180. #ifdef CONFIG_BOOTM_RTEMS
  1181. static int do_bootm_rtems (int flag, int argc, char * const argv[],
  1182. bootm_headers_t *images)
  1183. {
  1184. void (*entry_point)(bd_t *);
  1185. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1186. return 1;
  1187. #if defined(CONFIG_FIT)
  1188. if (!images->legacy_hdr_valid) {
  1189. fit_unsupported_reset ("RTEMS");
  1190. return 1;
  1191. }
  1192. #endif
  1193. entry_point = (void (*)(bd_t *))images->ep;
  1194. printf ("## Transferring control to RTEMS (at address %08lx) ...\n",
  1195. (ulong)entry_point);
  1196. show_boot_progress (15);
  1197. /*
  1198. * RTEMS Parameters:
  1199. * r3: ptr to board info data
  1200. */
  1201. (*entry_point)(gd->bd);
  1202. return 1;
  1203. }
  1204. #endif /* CONFIG_BOOTM_RTEMS */
  1205. #if defined(CONFIG_BOOTM_OSE)
  1206. static int do_bootm_ose (int flag, int argc, char * const argv[],
  1207. bootm_headers_t *images)
  1208. {
  1209. void (*entry_point)(void);
  1210. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1211. return 1;
  1212. #if defined(CONFIG_FIT)
  1213. if (!images->legacy_hdr_valid) {
  1214. fit_unsupported_reset ("OSE");
  1215. return 1;
  1216. }
  1217. #endif
  1218. entry_point = (void (*)(void))images->ep;
  1219. printf ("## Transferring control to OSE (at address %08lx) ...\n",
  1220. (ulong)entry_point);
  1221. show_boot_progress (15);
  1222. /*
  1223. * OSE Parameters:
  1224. * None
  1225. */
  1226. (*entry_point)();
  1227. return 1;
  1228. }
  1229. #endif /* CONFIG_BOOTM_OSE */
  1230. #if defined(CONFIG_CMD_ELF)
  1231. static int do_bootm_vxworks (int flag, int argc, char * const argv[],
  1232. bootm_headers_t *images)
  1233. {
  1234. char str[80];
  1235. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1236. return 1;
  1237. #if defined(CONFIG_FIT)
  1238. if (!images->legacy_hdr_valid) {
  1239. fit_unsupported_reset ("VxWorks");
  1240. return 1;
  1241. }
  1242. #endif
  1243. sprintf(str, "%lx", images->ep); /* write entry-point into string */
  1244. setenv("loadaddr", str);
  1245. do_bootvx(NULL, 0, 0, NULL);
  1246. return 1;
  1247. }
  1248. static int do_bootm_qnxelf(int flag, int argc, char * const argv[],
  1249. bootm_headers_t *images)
  1250. {
  1251. char *local_args[2];
  1252. char str[16];
  1253. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1254. return 1;
  1255. #if defined(CONFIG_FIT)
  1256. if (!images->legacy_hdr_valid) {
  1257. fit_unsupported_reset ("QNX");
  1258. return 1;
  1259. }
  1260. #endif
  1261. sprintf(str, "%lx", images->ep); /* write entry-point into string */
  1262. local_args[0] = argv[0];
  1263. local_args[1] = str; /* and provide it via the arguments */
  1264. do_bootelf(NULL, 0, 2, local_args);
  1265. return 1;
  1266. }
  1267. #endif
  1268. #ifdef CONFIG_INTEGRITY
  1269. static int do_bootm_integrity (int flag, int argc, char * const argv[],
  1270. bootm_headers_t *images)
  1271. {
  1272. void (*entry_point)(void);
  1273. if ((flag != 0) && (flag != BOOTM_STATE_OS_GO))
  1274. return 1;
  1275. #if defined(CONFIG_FIT)
  1276. if (!images->legacy_hdr_valid) {
  1277. fit_unsupported_reset ("INTEGRITY");
  1278. return 1;
  1279. }
  1280. #endif
  1281. entry_point = (void (*)(void))images->ep;
  1282. printf ("## Transferring control to INTEGRITY (at address %08lx) ...\n",
  1283. (ulong)entry_point);
  1284. show_boot_progress (15);
  1285. /*
  1286. * INTEGRITY Parameters:
  1287. * None
  1288. */
  1289. (*entry_point)();
  1290. return 1;
  1291. }
  1292. #endif