image.c 31 KB

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  1. /*
  2. * (C) Copyright 2008 Semihalf
  3. *
  4. * (C) Copyright 2000-2006
  5. * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
  6. *
  7. * See file CREDITS for list of people who contributed to this
  8. * project.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License as
  12. * published by the Free Software Foundation; either version 2 of
  13. * the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  23. * MA 02111-1307 USA
  24. */
  25. #ifndef USE_HOSTCC
  26. #include <common.h>
  27. #include <watchdog.h>
  28. #ifdef CONFIG_SHOW_BOOT_PROGRESS
  29. #include <status_led.h>
  30. #endif
  31. #ifdef CONFIG_HAS_DATAFLASH
  32. #include <dataflash.h>
  33. #endif
  34. #ifdef CONFIG_LOGBUFFER
  35. #include <logbuff.h>
  36. #endif
  37. #include <rtc.h>
  38. #include <environment.h>
  39. #include <image.h>
  40. #if defined(CONFIG_FIT) || defined(CONFIG_OF_LIBFDT)
  41. #include <libfdt.h>
  42. #include <fdt_support.h>
  43. #endif
  44. #include <u-boot/md5.h>
  45. #include <sha1.h>
  46. #include <asm/errno.h>
  47. #include <asm/io.h>
  48. #ifdef CONFIG_CMD_BDI
  49. extern int do_bdinfo(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[]);
  50. #endif
  51. DECLARE_GLOBAL_DATA_PTR;
  52. static const image_header_t *image_get_ramdisk(ulong rd_addr, uint8_t arch,
  53. int verify);
  54. #else
  55. #include "mkimage.h"
  56. #include <u-boot/md5.h>
  57. #include <time.h>
  58. #include <image.h>
  59. #endif /* !USE_HOSTCC*/
  60. #include <u-boot/crc.h>
  61. #ifndef CONFIG_SYS_BARGSIZE
  62. #define CONFIG_SYS_BARGSIZE 512
  63. #endif
  64. static const table_entry_t uimage_arch[] = {
  65. { IH_ARCH_INVALID, NULL, "Invalid ARCH", },
  66. { IH_ARCH_ALPHA, "alpha", "Alpha", },
  67. { IH_ARCH_ARM, "arm", "ARM", },
  68. { IH_ARCH_I386, "x86", "Intel x86", },
  69. { IH_ARCH_IA64, "ia64", "IA64", },
  70. { IH_ARCH_M68K, "m68k", "M68K", },
  71. { IH_ARCH_MICROBLAZE, "microblaze", "MicroBlaze", },
  72. { IH_ARCH_MIPS, "mips", "MIPS", },
  73. { IH_ARCH_MIPS64, "mips64", "MIPS 64 Bit", },
  74. { IH_ARCH_NIOS2, "nios2", "NIOS II", },
  75. { IH_ARCH_PPC, "powerpc", "PowerPC", },
  76. { IH_ARCH_PPC, "ppc", "PowerPC", },
  77. { IH_ARCH_S390, "s390", "IBM S390", },
  78. { IH_ARCH_SH, "sh", "SuperH", },
  79. { IH_ARCH_SPARC, "sparc", "SPARC", },
  80. { IH_ARCH_SPARC64, "sparc64", "SPARC 64 Bit", },
  81. { IH_ARCH_BLACKFIN, "blackfin", "Blackfin", },
  82. { IH_ARCH_AVR32, "avr32", "AVR32", },
  83. { IH_ARCH_NDS32, "nds32", "NDS32", },
  84. { IH_ARCH_OPENRISC, "or1k", "OpenRISC 1000",},
  85. { IH_ARCH_SANDBOX, "sandbox", "Sandbox", },
  86. { -1, "", "", },
  87. };
  88. static const table_entry_t uimage_os[] = {
  89. { IH_OS_INVALID, NULL, "Invalid OS", },
  90. { IH_OS_LINUX, "linux", "Linux", },
  91. #if defined(CONFIG_LYNXKDI) || defined(USE_HOSTCC)
  92. { IH_OS_LYNXOS, "lynxos", "LynxOS", },
  93. #endif
  94. { IH_OS_NETBSD, "netbsd", "NetBSD", },
  95. { IH_OS_OSE, "ose", "Enea OSE", },
  96. { IH_OS_PLAN9, "plan9", "Plan 9", },
  97. { IH_OS_RTEMS, "rtems", "RTEMS", },
  98. { IH_OS_U_BOOT, "u-boot", "U-Boot", },
  99. #if defined(CONFIG_CMD_ELF) || defined(USE_HOSTCC)
  100. { IH_OS_QNX, "qnx", "QNX", },
  101. { IH_OS_VXWORKS, "vxworks", "VxWorks", },
  102. #endif
  103. #if defined(CONFIG_INTEGRITY) || defined(USE_HOSTCC)
  104. { IH_OS_INTEGRITY,"integrity", "INTEGRITY", },
  105. #endif
  106. #ifdef USE_HOSTCC
  107. { IH_OS_4_4BSD, "4_4bsd", "4_4BSD", },
  108. { IH_OS_DELL, "dell", "Dell", },
  109. { IH_OS_ESIX, "esix", "Esix", },
  110. { IH_OS_FREEBSD, "freebsd", "FreeBSD", },
  111. { IH_OS_IRIX, "irix", "Irix", },
  112. { IH_OS_NCR, "ncr", "NCR", },
  113. { IH_OS_OPENBSD, "openbsd", "OpenBSD", },
  114. { IH_OS_PSOS, "psos", "pSOS", },
  115. { IH_OS_SCO, "sco", "SCO", },
  116. { IH_OS_SOLARIS, "solaris", "Solaris", },
  117. { IH_OS_SVR4, "svr4", "SVR4", },
  118. #endif
  119. { -1, "", "", },
  120. };
  121. static const table_entry_t uimage_type[] = {
  122. { IH_TYPE_AISIMAGE, "aisimage", "Davinci AIS image",},
  123. { IH_TYPE_FILESYSTEM, "filesystem", "Filesystem Image", },
  124. { IH_TYPE_FIRMWARE, "firmware", "Firmware", },
  125. { IH_TYPE_FLATDT, "flat_dt", "Flat Device Tree", },
  126. { IH_TYPE_KERNEL, "kernel", "Kernel Image", },
  127. { IH_TYPE_KERNEL_NOLOAD, "kernel_noload", "Kernel Image (no loading done)", },
  128. { IH_TYPE_KWBIMAGE, "kwbimage", "Kirkwood Boot Image",},
  129. { IH_TYPE_IMXIMAGE, "imximage", "Freescale i.MX Boot Image",},
  130. { IH_TYPE_INVALID, NULL, "Invalid Image", },
  131. { IH_TYPE_MULTI, "multi", "Multi-File Image", },
  132. { IH_TYPE_OMAPIMAGE, "omapimage", "TI OMAP SPL With GP CH",},
  133. { IH_TYPE_PBLIMAGE, "pblimage", "Freescale PBL Boot Image",},
  134. { IH_TYPE_RAMDISK, "ramdisk", "RAMDisk Image", },
  135. { IH_TYPE_SCRIPT, "script", "Script", },
  136. { IH_TYPE_STANDALONE, "standalone", "Standalone Program", },
  137. { IH_TYPE_UBLIMAGE, "ublimage", "Davinci UBL image",},
  138. { -1, "", "", },
  139. };
  140. static const table_entry_t uimage_comp[] = {
  141. { IH_COMP_NONE, "none", "uncompressed", },
  142. { IH_COMP_BZIP2, "bzip2", "bzip2 compressed", },
  143. { IH_COMP_GZIP, "gzip", "gzip compressed", },
  144. { IH_COMP_LZMA, "lzma", "lzma compressed", },
  145. { IH_COMP_LZO, "lzo", "lzo compressed", },
  146. { -1, "", "", },
  147. };
  148. /*****************************************************************************/
  149. /* Legacy format routines */
  150. /*****************************************************************************/
  151. int image_check_hcrc(const image_header_t *hdr)
  152. {
  153. ulong hcrc;
  154. ulong len = image_get_header_size();
  155. image_header_t header;
  156. /* Copy header so we can blank CRC field for re-calculation */
  157. memmove(&header, (char *)hdr, image_get_header_size());
  158. image_set_hcrc(&header, 0);
  159. hcrc = crc32(0, (unsigned char *)&header, len);
  160. return (hcrc == image_get_hcrc(hdr));
  161. }
  162. int image_check_dcrc(const image_header_t *hdr)
  163. {
  164. ulong data = image_get_data(hdr);
  165. ulong len = image_get_data_size(hdr);
  166. ulong dcrc = crc32_wd(0, (unsigned char *)data, len, CHUNKSZ_CRC32);
  167. return (dcrc == image_get_dcrc(hdr));
  168. }
  169. /**
  170. * image_multi_count - get component (sub-image) count
  171. * @hdr: pointer to the header of the multi component image
  172. *
  173. * image_multi_count() returns number of components in a multi
  174. * component image.
  175. *
  176. * Note: no checking of the image type is done, caller must pass
  177. * a valid multi component image.
  178. *
  179. * returns:
  180. * number of components
  181. */
  182. ulong image_multi_count(const image_header_t *hdr)
  183. {
  184. ulong i, count = 0;
  185. uint32_t *size;
  186. /* get start of the image payload, which in case of multi
  187. * component images that points to a table of component sizes */
  188. size = (uint32_t *)image_get_data(hdr);
  189. /* count non empty slots */
  190. for (i = 0; size[i]; ++i)
  191. count++;
  192. return count;
  193. }
  194. /**
  195. * image_multi_getimg - get component data address and size
  196. * @hdr: pointer to the header of the multi component image
  197. * @idx: index of the requested component
  198. * @data: pointer to a ulong variable, will hold component data address
  199. * @len: pointer to a ulong variable, will hold component size
  200. *
  201. * image_multi_getimg() returns size and data address for the requested
  202. * component in a multi component image.
  203. *
  204. * Note: no checking of the image type is done, caller must pass
  205. * a valid multi component image.
  206. *
  207. * returns:
  208. * data address and size of the component, if idx is valid
  209. * 0 in data and len, if idx is out of range
  210. */
  211. void image_multi_getimg(const image_header_t *hdr, ulong idx,
  212. ulong *data, ulong *len)
  213. {
  214. int i;
  215. uint32_t *size;
  216. ulong offset, count, img_data;
  217. /* get number of component */
  218. count = image_multi_count(hdr);
  219. /* get start of the image payload, which in case of multi
  220. * component images that points to a table of component sizes */
  221. size = (uint32_t *)image_get_data(hdr);
  222. /* get address of the proper component data start, which means
  223. * skipping sizes table (add 1 for last, null entry) */
  224. img_data = image_get_data(hdr) + (count + 1) * sizeof(uint32_t);
  225. if (idx < count) {
  226. *len = uimage_to_cpu(size[idx]);
  227. offset = 0;
  228. /* go over all indices preceding requested component idx */
  229. for (i = 0; i < idx; i++) {
  230. /* add up i-th component size, rounding up to 4 bytes */
  231. offset += (uimage_to_cpu(size[i]) + 3) & ~3 ;
  232. }
  233. /* calculate idx-th component data address */
  234. *data = img_data + offset;
  235. } else {
  236. *len = 0;
  237. *data = 0;
  238. }
  239. }
  240. static void image_print_type(const image_header_t *hdr)
  241. {
  242. const char *os, *arch, *type, *comp;
  243. os = genimg_get_os_name(image_get_os(hdr));
  244. arch = genimg_get_arch_name(image_get_arch(hdr));
  245. type = genimg_get_type_name(image_get_type(hdr));
  246. comp = genimg_get_comp_name(image_get_comp(hdr));
  247. printf("%s %s %s (%s)\n", arch, os, type, comp);
  248. }
  249. /**
  250. * image_print_contents - prints out the contents of the legacy format image
  251. * @ptr: pointer to the legacy format image header
  252. * @p: pointer to prefix string
  253. *
  254. * image_print_contents() formats a multi line legacy image contents description.
  255. * The routine prints out all header fields followed by the size/offset data
  256. * for MULTI/SCRIPT images.
  257. *
  258. * returns:
  259. * no returned results
  260. */
  261. void image_print_contents(const void *ptr)
  262. {
  263. const image_header_t *hdr = (const image_header_t *)ptr;
  264. const char *p;
  265. p = IMAGE_INDENT_STRING;
  266. printf("%sImage Name: %.*s\n", p, IH_NMLEN, image_get_name(hdr));
  267. if (IMAGE_ENABLE_TIMESTAMP) {
  268. printf("%sCreated: ", p);
  269. genimg_print_time((time_t)image_get_time(hdr));
  270. }
  271. printf("%sImage Type: ", p);
  272. image_print_type(hdr);
  273. printf("%sData Size: ", p);
  274. genimg_print_size(image_get_data_size(hdr));
  275. printf("%sLoad Address: %08x\n", p, image_get_load(hdr));
  276. printf("%sEntry Point: %08x\n", p, image_get_ep(hdr));
  277. if (image_check_type(hdr, IH_TYPE_MULTI) ||
  278. image_check_type(hdr, IH_TYPE_SCRIPT)) {
  279. int i;
  280. ulong data, len;
  281. ulong count = image_multi_count(hdr);
  282. printf("%sContents:\n", p);
  283. for (i = 0; i < count; i++) {
  284. image_multi_getimg(hdr, i, &data, &len);
  285. printf("%s Image %d: ", p, i);
  286. genimg_print_size(len);
  287. if (image_check_type(hdr, IH_TYPE_SCRIPT) && i > 0) {
  288. /*
  289. * the user may need to know offsets
  290. * if planning to do something with
  291. * multiple files
  292. */
  293. printf("%s Offset = 0x%08lx\n", p, data);
  294. }
  295. }
  296. }
  297. }
  298. #ifndef USE_HOSTCC
  299. /**
  300. * image_get_ramdisk - get and verify ramdisk image
  301. * @rd_addr: ramdisk image start address
  302. * @arch: expected ramdisk architecture
  303. * @verify: checksum verification flag
  304. *
  305. * image_get_ramdisk() returns a pointer to the verified ramdisk image
  306. * header. Routine receives image start address and expected architecture
  307. * flag. Verification done covers data and header integrity and os/type/arch
  308. * fields checking.
  309. *
  310. * If dataflash support is enabled routine checks for dataflash addresses
  311. * and handles required dataflash reads.
  312. *
  313. * returns:
  314. * pointer to a ramdisk image header, if image was found and valid
  315. * otherwise, return NULL
  316. */
  317. static const image_header_t *image_get_ramdisk(ulong rd_addr, uint8_t arch,
  318. int verify)
  319. {
  320. const image_header_t *rd_hdr = (const image_header_t *)rd_addr;
  321. if (!image_check_magic(rd_hdr)) {
  322. puts("Bad Magic Number\n");
  323. bootstage_error(BOOTSTAGE_ID_RD_MAGIC);
  324. return NULL;
  325. }
  326. if (!image_check_hcrc(rd_hdr)) {
  327. puts("Bad Header Checksum\n");
  328. bootstage_error(BOOTSTAGE_ID_RD_HDR_CHECKSUM);
  329. return NULL;
  330. }
  331. bootstage_mark(BOOTSTAGE_ID_RD_MAGIC);
  332. image_print_contents(rd_hdr);
  333. if (verify) {
  334. puts(" Verifying Checksum ... ");
  335. if (!image_check_dcrc(rd_hdr)) {
  336. puts("Bad Data CRC\n");
  337. bootstage_error(BOOTSTAGE_ID_RD_CHECKSUM);
  338. return NULL;
  339. }
  340. puts("OK\n");
  341. }
  342. bootstage_mark(BOOTSTAGE_ID_RD_HDR_CHECKSUM);
  343. if (!image_check_os(rd_hdr, IH_OS_LINUX) ||
  344. !image_check_arch(rd_hdr, arch) ||
  345. !image_check_type(rd_hdr, IH_TYPE_RAMDISK)) {
  346. printf("No Linux %s Ramdisk Image\n",
  347. genimg_get_arch_name(arch));
  348. bootstage_error(BOOTSTAGE_ID_RAMDISK);
  349. return NULL;
  350. }
  351. return rd_hdr;
  352. }
  353. #endif /* !USE_HOSTCC */
  354. /*****************************************************************************/
  355. /* Shared dual-format routines */
  356. /*****************************************************************************/
  357. #ifndef USE_HOSTCC
  358. ulong load_addr = CONFIG_SYS_LOAD_ADDR; /* Default Load Address */
  359. ulong save_addr; /* Default Save Address */
  360. ulong save_size; /* Default Save Size (in bytes) */
  361. static int on_loadaddr(const char *name, const char *value, enum env_op op,
  362. int flags)
  363. {
  364. switch (op) {
  365. case env_op_create:
  366. case env_op_overwrite:
  367. load_addr = simple_strtoul(value, NULL, 16);
  368. break;
  369. default:
  370. break;
  371. }
  372. return 0;
  373. }
  374. U_BOOT_ENV_CALLBACK(loadaddr, on_loadaddr);
  375. ulong getenv_bootm_low(void)
  376. {
  377. char *s = getenv("bootm_low");
  378. if (s) {
  379. ulong tmp = simple_strtoul(s, NULL, 16);
  380. return tmp;
  381. }
  382. #if defined(CONFIG_SYS_SDRAM_BASE)
  383. return CONFIG_SYS_SDRAM_BASE;
  384. #elif defined(CONFIG_ARM)
  385. return gd->bd->bi_dram[0].start;
  386. #else
  387. return 0;
  388. #endif
  389. }
  390. phys_size_t getenv_bootm_size(void)
  391. {
  392. phys_size_t tmp;
  393. char *s = getenv("bootm_size");
  394. if (s) {
  395. tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
  396. return tmp;
  397. }
  398. s = getenv("bootm_low");
  399. if (s)
  400. tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
  401. else
  402. tmp = 0;
  403. #if defined(CONFIG_ARM)
  404. return gd->bd->bi_dram[0].size - tmp;
  405. #else
  406. return gd->bd->bi_memsize - tmp;
  407. #endif
  408. }
  409. phys_size_t getenv_bootm_mapsize(void)
  410. {
  411. phys_size_t tmp;
  412. char *s = getenv("bootm_mapsize");
  413. if (s) {
  414. tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
  415. return tmp;
  416. }
  417. #if defined(CONFIG_SYS_BOOTMAPSZ)
  418. return CONFIG_SYS_BOOTMAPSZ;
  419. #else
  420. return getenv_bootm_size();
  421. #endif
  422. }
  423. void memmove_wd(void *to, void *from, size_t len, ulong chunksz)
  424. {
  425. if (to == from)
  426. return;
  427. #if defined(CONFIG_HW_WATCHDOG) || defined(CONFIG_WATCHDOG)
  428. while (len > 0) {
  429. size_t tail = (len > chunksz) ? chunksz : len;
  430. WATCHDOG_RESET();
  431. memmove(to, from, tail);
  432. to += tail;
  433. from += tail;
  434. len -= tail;
  435. }
  436. #else /* !(CONFIG_HW_WATCHDOG || CONFIG_WATCHDOG) */
  437. memmove(to, from, len);
  438. #endif /* CONFIG_HW_WATCHDOG || CONFIG_WATCHDOG */
  439. }
  440. #endif /* !USE_HOSTCC */
  441. void genimg_print_size(uint32_t size)
  442. {
  443. #ifndef USE_HOSTCC
  444. printf("%d Bytes = ", size);
  445. print_size(size, "\n");
  446. #else
  447. printf("%d Bytes = %.2f kB = %.2f MB\n",
  448. size, (double)size / 1.024e3,
  449. (double)size / 1.048576e6);
  450. #endif
  451. }
  452. #if IMAGE_ENABLE_TIMESTAMP
  453. void genimg_print_time(time_t timestamp)
  454. {
  455. #ifndef USE_HOSTCC
  456. struct rtc_time tm;
  457. to_tm(timestamp, &tm);
  458. printf("%4d-%02d-%02d %2d:%02d:%02d UTC\n",
  459. tm.tm_year, tm.tm_mon, tm.tm_mday,
  460. tm.tm_hour, tm.tm_min, tm.tm_sec);
  461. #else
  462. printf("%s", ctime(&timestamp));
  463. #endif
  464. }
  465. #endif
  466. /**
  467. * get_table_entry_name - translate entry id to long name
  468. * @table: pointer to a translation table for entries of a specific type
  469. * @msg: message to be returned when translation fails
  470. * @id: entry id to be translated
  471. *
  472. * get_table_entry_name() will go over translation table trying to find
  473. * entry that matches given id. If matching entry is found, its long
  474. * name is returned to the caller.
  475. *
  476. * returns:
  477. * long entry name if translation succeeds
  478. * msg otherwise
  479. */
  480. char *get_table_entry_name(const table_entry_t *table, char *msg, int id)
  481. {
  482. for (; table->id >= 0; ++table) {
  483. if (table->id == id)
  484. #if defined(USE_HOSTCC) || !defined(CONFIG_NEEDS_MANUAL_RELOC)
  485. return table->lname;
  486. #else
  487. return table->lname + gd->reloc_off;
  488. #endif
  489. }
  490. return (msg);
  491. }
  492. const char *genimg_get_os_name(uint8_t os)
  493. {
  494. return (get_table_entry_name(uimage_os, "Unknown OS", os));
  495. }
  496. const char *genimg_get_arch_name(uint8_t arch)
  497. {
  498. return (get_table_entry_name(uimage_arch, "Unknown Architecture",
  499. arch));
  500. }
  501. const char *genimg_get_type_name(uint8_t type)
  502. {
  503. return (get_table_entry_name(uimage_type, "Unknown Image", type));
  504. }
  505. const char *genimg_get_comp_name(uint8_t comp)
  506. {
  507. return (get_table_entry_name(uimage_comp, "Unknown Compression",
  508. comp));
  509. }
  510. /**
  511. * get_table_entry_id - translate short entry name to id
  512. * @table: pointer to a translation table for entries of a specific type
  513. * @table_name: to be used in case of error
  514. * @name: entry short name to be translated
  515. *
  516. * get_table_entry_id() will go over translation table trying to find
  517. * entry that matches given short name. If matching entry is found,
  518. * its id returned to the caller.
  519. *
  520. * returns:
  521. * entry id if translation succeeds
  522. * -1 otherwise
  523. */
  524. int get_table_entry_id(const table_entry_t *table,
  525. const char *table_name, const char *name)
  526. {
  527. const table_entry_t *t;
  528. #ifdef USE_HOSTCC
  529. int first = 1;
  530. for (t = table; t->id >= 0; ++t) {
  531. if (t->sname && strcasecmp(t->sname, name) == 0)
  532. return(t->id);
  533. }
  534. fprintf(stderr, "\nInvalid %s Type - valid names are", table_name);
  535. for (t = table; t->id >= 0; ++t) {
  536. if (t->sname == NULL)
  537. continue;
  538. fprintf(stderr, "%c %s", (first) ? ':' : ',', t->sname);
  539. first = 0;
  540. }
  541. fprintf(stderr, "\n");
  542. #else
  543. for (t = table; t->id >= 0; ++t) {
  544. #ifdef CONFIG_NEEDS_MANUAL_RELOC
  545. if (t->sname && strcmp(t->sname + gd->reloc_off, name) == 0)
  546. #else
  547. if (t->sname && strcmp(t->sname, name) == 0)
  548. #endif
  549. return (t->id);
  550. }
  551. debug("Invalid %s Type: %s\n", table_name, name);
  552. #endif /* USE_HOSTCC */
  553. return (-1);
  554. }
  555. int genimg_get_os_id(const char *name)
  556. {
  557. return (get_table_entry_id(uimage_os, "OS", name));
  558. }
  559. int genimg_get_arch_id(const char *name)
  560. {
  561. return (get_table_entry_id(uimage_arch, "CPU", name));
  562. }
  563. int genimg_get_type_id(const char *name)
  564. {
  565. return (get_table_entry_id(uimage_type, "Image", name));
  566. }
  567. int genimg_get_comp_id(const char *name)
  568. {
  569. return (get_table_entry_id(uimage_comp, "Compression", name));
  570. }
  571. #ifndef USE_HOSTCC
  572. /**
  573. * genimg_get_format - get image format type
  574. * @img_addr: image start address
  575. *
  576. * genimg_get_format() checks whether provided address points to a valid
  577. * legacy or FIT image.
  578. *
  579. * New uImage format and FDT blob are based on a libfdt. FDT blob
  580. * may be passed directly or embedded in a FIT image. In both situations
  581. * genimg_get_format() must be able to dectect libfdt header.
  582. *
  583. * returns:
  584. * image format type or IMAGE_FORMAT_INVALID if no image is present
  585. */
  586. int genimg_get_format(const void *img_addr)
  587. {
  588. ulong format = IMAGE_FORMAT_INVALID;
  589. const image_header_t *hdr;
  590. #if defined(CONFIG_FIT) || defined(CONFIG_OF_LIBFDT)
  591. char *fit_hdr;
  592. #endif
  593. hdr = (const image_header_t *)img_addr;
  594. if (image_check_magic(hdr))
  595. format = IMAGE_FORMAT_LEGACY;
  596. #if defined(CONFIG_FIT) || defined(CONFIG_OF_LIBFDT)
  597. else {
  598. fit_hdr = (char *)img_addr;
  599. if (fdt_check_header(fit_hdr) == 0)
  600. format = IMAGE_FORMAT_FIT;
  601. }
  602. #endif
  603. return format;
  604. }
  605. /**
  606. * genimg_get_image - get image from special storage (if necessary)
  607. * @img_addr: image start address
  608. *
  609. * genimg_get_image() checks if provided image start adddress is located
  610. * in a dataflash storage. If so, image is moved to a system RAM memory.
  611. *
  612. * returns:
  613. * image start address after possible relocation from special storage
  614. */
  615. ulong genimg_get_image(ulong img_addr)
  616. {
  617. ulong ram_addr = img_addr;
  618. #ifdef CONFIG_HAS_DATAFLASH
  619. ulong h_size, d_size;
  620. if (addr_dataflash(img_addr)) {
  621. void *buf;
  622. /* ger RAM address */
  623. ram_addr = CONFIG_SYS_LOAD_ADDR;
  624. /* get header size */
  625. h_size = image_get_header_size();
  626. #if defined(CONFIG_FIT)
  627. if (sizeof(struct fdt_header) > h_size)
  628. h_size = sizeof(struct fdt_header);
  629. #endif
  630. /* read in header */
  631. debug(" Reading image header from dataflash address "
  632. "%08lx to RAM address %08lx\n", img_addr, ram_addr);
  633. buf = map_sysmem(ram_addr, 0);
  634. read_dataflash(img_addr, h_size, buf);
  635. /* get data size */
  636. switch (genimg_get_format(buf)) {
  637. case IMAGE_FORMAT_LEGACY:
  638. d_size = image_get_data_size(buf);
  639. debug(" Legacy format image found at 0x%08lx, "
  640. "size 0x%08lx\n",
  641. ram_addr, d_size);
  642. break;
  643. #if defined(CONFIG_FIT)
  644. case IMAGE_FORMAT_FIT:
  645. d_size = fit_get_size(buf) - h_size;
  646. debug(" FIT/FDT format image found at 0x%08lx, "
  647. "size 0x%08lx\n",
  648. ram_addr, d_size);
  649. break;
  650. #endif
  651. default:
  652. printf(" No valid image found at 0x%08lx\n",
  653. img_addr);
  654. return ram_addr;
  655. }
  656. /* read in image data */
  657. debug(" Reading image remaining data from dataflash address "
  658. "%08lx to RAM address %08lx\n", img_addr + h_size,
  659. ram_addr + h_size);
  660. read_dataflash(img_addr + h_size, d_size,
  661. (char *)(buf + h_size));
  662. }
  663. #endif /* CONFIG_HAS_DATAFLASH */
  664. return ram_addr;
  665. }
  666. /**
  667. * fit_has_config - check if there is a valid FIT configuration
  668. * @images: pointer to the bootm command headers structure
  669. *
  670. * fit_has_config() checks if there is a FIT configuration in use
  671. * (if FTI support is present).
  672. *
  673. * returns:
  674. * 0, no FIT support or no configuration found
  675. * 1, configuration found
  676. */
  677. int genimg_has_config(bootm_headers_t *images)
  678. {
  679. #if defined(CONFIG_FIT)
  680. if (images->fit_uname_cfg)
  681. return 1;
  682. #endif
  683. return 0;
  684. }
  685. /**
  686. * boot_get_ramdisk - main ramdisk handling routine
  687. * @argc: command argument count
  688. * @argv: command argument list
  689. * @images: pointer to the bootm images structure
  690. * @arch: expected ramdisk architecture
  691. * @rd_start: pointer to a ulong variable, will hold ramdisk start address
  692. * @rd_end: pointer to a ulong variable, will hold ramdisk end
  693. *
  694. * boot_get_ramdisk() is responsible for finding a valid ramdisk image.
  695. * Curently supported are the following ramdisk sources:
  696. * - multicomponent kernel/ramdisk image,
  697. * - commandline provided address of decicated ramdisk image.
  698. *
  699. * returns:
  700. * 0, if ramdisk image was found and valid, or skiped
  701. * rd_start and rd_end are set to ramdisk start/end addresses if
  702. * ramdisk image is found and valid
  703. *
  704. * 1, if ramdisk image is found but corrupted, or invalid
  705. * rd_start and rd_end are set to 0 if no ramdisk exists
  706. */
  707. int boot_get_ramdisk(int argc, char * const argv[], bootm_headers_t *images,
  708. uint8_t arch, ulong *rd_start, ulong *rd_end)
  709. {
  710. ulong rd_addr, rd_load;
  711. ulong rd_data, rd_len;
  712. const image_header_t *rd_hdr;
  713. void *buf;
  714. #ifdef CONFIG_SUPPORT_RAW_INITRD
  715. char *end;
  716. #endif
  717. #if defined(CONFIG_FIT)
  718. const char *fit_uname_config = images->fit_uname_cfg;
  719. const char *fit_uname_ramdisk = NULL;
  720. ulong default_addr;
  721. int rd_noffset;
  722. #endif
  723. const char *select = NULL;
  724. *rd_start = 0;
  725. *rd_end = 0;
  726. if (argc >= 2)
  727. select = argv[1];
  728. /*
  729. * Look for a '-' which indicates to ignore the
  730. * ramdisk argument
  731. */
  732. if (select && strcmp(select, "-") == 0) {
  733. debug("## Skipping init Ramdisk\n");
  734. rd_len = rd_data = 0;
  735. } else if (select || genimg_has_config(images)) {
  736. #if defined(CONFIG_FIT)
  737. if (select) {
  738. /*
  739. * If the init ramdisk comes from the FIT image and
  740. * the FIT image address is omitted in the command
  741. * line argument, try to use os FIT image address or
  742. * default load address.
  743. */
  744. if (images->fit_uname_os)
  745. default_addr = (ulong)images->fit_hdr_os;
  746. else
  747. default_addr = load_addr;
  748. if (fit_parse_conf(select, default_addr,
  749. &rd_addr, &fit_uname_config)) {
  750. debug("* ramdisk: config '%s' from image at "
  751. "0x%08lx\n",
  752. fit_uname_config, rd_addr);
  753. } else if (fit_parse_subimage(select, default_addr,
  754. &rd_addr, &fit_uname_ramdisk)) {
  755. debug("* ramdisk: subimage '%s' from image at "
  756. "0x%08lx\n",
  757. fit_uname_ramdisk, rd_addr);
  758. } else
  759. #endif
  760. {
  761. rd_addr = simple_strtoul(select, NULL, 16);
  762. debug("* ramdisk: cmdline image address = "
  763. "0x%08lx\n",
  764. rd_addr);
  765. }
  766. #if defined(CONFIG_FIT)
  767. } else {
  768. /* use FIT configuration provided in first bootm
  769. * command argument. If the property is not defined,
  770. * quit silently.
  771. */
  772. rd_addr = map_to_sysmem(images->fit_hdr_os);
  773. rd_noffset = fit_get_node_from_config(images,
  774. FIT_RAMDISK_PROP, rd_addr);
  775. if (rd_noffset == -ENOLINK)
  776. return 0;
  777. else if (rd_noffset < 0)
  778. return 1;
  779. }
  780. #endif
  781. /* copy from dataflash if needed */
  782. rd_addr = genimg_get_image(rd_addr);
  783. /*
  784. * Check if there is an initrd image at the
  785. * address provided in the second bootm argument
  786. * check image type, for FIT images get FIT node.
  787. */
  788. buf = map_sysmem(rd_addr, 0);
  789. switch (genimg_get_format(buf)) {
  790. case IMAGE_FORMAT_LEGACY:
  791. printf("## Loading init Ramdisk from Legacy "
  792. "Image at %08lx ...\n", rd_addr);
  793. bootstage_mark(BOOTSTAGE_ID_CHECK_RAMDISK);
  794. rd_hdr = image_get_ramdisk(rd_addr, arch,
  795. images->verify);
  796. if (rd_hdr == NULL)
  797. return 1;
  798. rd_data = image_get_data(rd_hdr);
  799. rd_len = image_get_data_size(rd_hdr);
  800. rd_load = image_get_load(rd_hdr);
  801. break;
  802. #if defined(CONFIG_FIT)
  803. case IMAGE_FORMAT_FIT:
  804. rd_noffset = fit_image_load(images, FIT_RAMDISK_PROP,
  805. rd_addr, &fit_uname_ramdisk,
  806. &fit_uname_config, arch,
  807. IH_TYPE_RAMDISK,
  808. BOOTSTAGE_ID_FIT_RD_START,
  809. FIT_LOAD_IGNORED, &rd_data, &rd_len);
  810. if (rd_noffset < 0)
  811. return 1;
  812. images->fit_hdr_rd = map_sysmem(rd_addr, 0);
  813. images->fit_uname_rd = fit_uname_ramdisk;
  814. images->fit_noffset_rd = rd_noffset;
  815. break;
  816. #endif
  817. default:
  818. #ifdef CONFIG_SUPPORT_RAW_INITRD
  819. end = NULL;
  820. if (select)
  821. end = strchr(select, ':');
  822. if (end) {
  823. rd_len = simple_strtoul(++end, NULL, 16);
  824. rd_data = rd_addr;
  825. } else
  826. #endif
  827. {
  828. puts("Wrong Ramdisk Image Format\n");
  829. rd_data = rd_len = rd_load = 0;
  830. return 1;
  831. }
  832. }
  833. } else if (images->legacy_hdr_valid &&
  834. image_check_type(&images->legacy_hdr_os_copy,
  835. IH_TYPE_MULTI)) {
  836. /*
  837. * Now check if we have a legacy mult-component image,
  838. * get second entry data start address and len.
  839. */
  840. bootstage_mark(BOOTSTAGE_ID_RAMDISK);
  841. printf("## Loading init Ramdisk from multi component "
  842. "Legacy Image at %08lx ...\n",
  843. (ulong)images->legacy_hdr_os);
  844. image_multi_getimg(images->legacy_hdr_os, 1, &rd_data, &rd_len);
  845. } else {
  846. /*
  847. * no initrd image
  848. */
  849. bootstage_mark(BOOTSTAGE_ID_NO_RAMDISK);
  850. rd_len = rd_data = 0;
  851. }
  852. if (!rd_data) {
  853. debug("## No init Ramdisk\n");
  854. } else {
  855. *rd_start = rd_data;
  856. *rd_end = rd_data + rd_len;
  857. }
  858. debug(" ramdisk start = 0x%08lx, ramdisk end = 0x%08lx\n",
  859. *rd_start, *rd_end);
  860. return 0;
  861. }
  862. #ifdef CONFIG_SYS_BOOT_RAMDISK_HIGH
  863. /**
  864. * boot_ramdisk_high - relocate init ramdisk
  865. * @lmb: pointer to lmb handle, will be used for memory mgmt
  866. * @rd_data: ramdisk data start address
  867. * @rd_len: ramdisk data length
  868. * @initrd_start: pointer to a ulong variable, will hold final init ramdisk
  869. * start address (after possible relocation)
  870. * @initrd_end: pointer to a ulong variable, will hold final init ramdisk
  871. * end address (after possible relocation)
  872. *
  873. * boot_ramdisk_high() takes a relocation hint from "initrd_high" environement
  874. * variable and if requested ramdisk data is moved to a specified location.
  875. *
  876. * Initrd_start and initrd_end are set to final (after relocation) ramdisk
  877. * start/end addresses if ramdisk image start and len were provided,
  878. * otherwise set initrd_start and initrd_end set to zeros.
  879. *
  880. * returns:
  881. * 0 - success
  882. * -1 - failure
  883. */
  884. int boot_ramdisk_high(struct lmb *lmb, ulong rd_data, ulong rd_len,
  885. ulong *initrd_start, ulong *initrd_end)
  886. {
  887. char *s;
  888. ulong initrd_high;
  889. int initrd_copy_to_ram = 1;
  890. if ((s = getenv("initrd_high")) != NULL) {
  891. /* a value of "no" or a similar string will act like 0,
  892. * turning the "load high" feature off. This is intentional.
  893. */
  894. initrd_high = simple_strtoul(s, NULL, 16);
  895. if (initrd_high == ~0)
  896. initrd_copy_to_ram = 0;
  897. } else {
  898. /* not set, no restrictions to load high */
  899. initrd_high = ~0;
  900. }
  901. #ifdef CONFIG_LOGBUFFER
  902. /* Prevent initrd from overwriting logbuffer */
  903. lmb_reserve(lmb, logbuffer_base() - LOGBUFF_OVERHEAD, LOGBUFF_RESERVE);
  904. #endif
  905. debug("## initrd_high = 0x%08lx, copy_to_ram = %d\n",
  906. initrd_high, initrd_copy_to_ram);
  907. if (rd_data) {
  908. if (!initrd_copy_to_ram) { /* zero-copy ramdisk support */
  909. debug(" in-place initrd\n");
  910. *initrd_start = rd_data;
  911. *initrd_end = rd_data + rd_len;
  912. lmb_reserve(lmb, rd_data, rd_len);
  913. } else {
  914. if (initrd_high)
  915. *initrd_start = (ulong)lmb_alloc_base(lmb,
  916. rd_len, 0x1000, initrd_high);
  917. else
  918. *initrd_start = (ulong)lmb_alloc(lmb, rd_len,
  919. 0x1000);
  920. if (*initrd_start == 0) {
  921. puts("ramdisk - allocation error\n");
  922. goto error;
  923. }
  924. bootstage_mark(BOOTSTAGE_ID_COPY_RAMDISK);
  925. *initrd_end = *initrd_start + rd_len;
  926. printf(" Loading Ramdisk to %08lx, end %08lx ... ",
  927. *initrd_start, *initrd_end);
  928. memmove_wd((void *)*initrd_start,
  929. (void *)rd_data, rd_len, CHUNKSZ);
  930. #ifdef CONFIG_MP
  931. /*
  932. * Ensure the image is flushed to memory to handle
  933. * AMP boot scenarios in which we might not be
  934. * HW cache coherent
  935. */
  936. flush_cache((unsigned long)*initrd_start, rd_len);
  937. #endif
  938. puts("OK\n");
  939. }
  940. } else {
  941. *initrd_start = 0;
  942. *initrd_end = 0;
  943. }
  944. debug(" ramdisk load start = 0x%08lx, ramdisk load end = 0x%08lx\n",
  945. *initrd_start, *initrd_end);
  946. return 0;
  947. error:
  948. return -1;
  949. }
  950. #endif /* CONFIG_SYS_BOOT_RAMDISK_HIGH */
  951. #ifdef CONFIG_SYS_BOOT_GET_CMDLINE
  952. /**
  953. * boot_get_cmdline - allocate and initialize kernel cmdline
  954. * @lmb: pointer to lmb handle, will be used for memory mgmt
  955. * @cmd_start: pointer to a ulong variable, will hold cmdline start
  956. * @cmd_end: pointer to a ulong variable, will hold cmdline end
  957. *
  958. * boot_get_cmdline() allocates space for kernel command line below
  959. * BOOTMAPSZ + getenv_bootm_low() address. If "bootargs" U-boot environemnt
  960. * variable is present its contents is copied to allocated kernel
  961. * command line.
  962. *
  963. * returns:
  964. * 0 - success
  965. * -1 - failure
  966. */
  967. int boot_get_cmdline(struct lmb *lmb, ulong *cmd_start, ulong *cmd_end)
  968. {
  969. char *cmdline;
  970. char *s;
  971. cmdline = (char *)(ulong)lmb_alloc_base(lmb, CONFIG_SYS_BARGSIZE, 0xf,
  972. getenv_bootm_mapsize() + getenv_bootm_low());
  973. if (cmdline == NULL)
  974. return -1;
  975. if ((s = getenv("bootargs")) == NULL)
  976. s = "";
  977. strcpy(cmdline, s);
  978. *cmd_start = (ulong) & cmdline[0];
  979. *cmd_end = *cmd_start + strlen(cmdline);
  980. debug("## cmdline at 0x%08lx ... 0x%08lx\n", *cmd_start, *cmd_end);
  981. return 0;
  982. }
  983. #endif /* CONFIG_SYS_BOOT_GET_CMDLINE */
  984. #ifdef CONFIG_SYS_BOOT_GET_KBD
  985. /**
  986. * boot_get_kbd - allocate and initialize kernel copy of board info
  987. * @lmb: pointer to lmb handle, will be used for memory mgmt
  988. * @kbd: double pointer to board info data
  989. *
  990. * boot_get_kbd() allocates space for kernel copy of board info data below
  991. * BOOTMAPSZ + getenv_bootm_low() address and kernel board info is initialized
  992. * with the current u-boot board info data.
  993. *
  994. * returns:
  995. * 0 - success
  996. * -1 - failure
  997. */
  998. int boot_get_kbd(struct lmb *lmb, bd_t **kbd)
  999. {
  1000. *kbd = (bd_t *)(ulong)lmb_alloc_base(lmb, sizeof(bd_t), 0xf,
  1001. getenv_bootm_mapsize() + getenv_bootm_low());
  1002. if (*kbd == NULL)
  1003. return -1;
  1004. **kbd = *(gd->bd);
  1005. debug("## kernel board info at 0x%08lx\n", (ulong)*kbd);
  1006. #if defined(DEBUG) && defined(CONFIG_CMD_BDI)
  1007. do_bdinfo(NULL, 0, 0, NULL);
  1008. #endif
  1009. return 0;
  1010. }
  1011. #endif /* CONFIG_SYS_BOOT_GET_KBD */
  1012. #ifdef CONFIG_LMB
  1013. int image_setup_linux(bootm_headers_t *images)
  1014. {
  1015. ulong of_size = images->ft_len;
  1016. char **of_flat_tree = &images->ft_addr;
  1017. ulong *initrd_start = &images->initrd_start;
  1018. ulong *initrd_end = &images->initrd_end;
  1019. struct lmb *lmb = &images->lmb;
  1020. ulong rd_len;
  1021. int ret;
  1022. if (IMAGE_ENABLE_OF_LIBFDT)
  1023. boot_fdt_add_mem_rsv_regions(lmb, *of_flat_tree);
  1024. if (IMAGE_BOOT_GET_CMDLINE) {
  1025. ret = boot_get_cmdline(lmb, &images->cmdline_start,
  1026. &images->cmdline_end);
  1027. if (ret) {
  1028. puts("ERROR with allocation of cmdline\n");
  1029. return ret;
  1030. }
  1031. }
  1032. if (IMAGE_ENABLE_RAMDISK_HIGH) {
  1033. rd_len = images->rd_end - images->rd_start;
  1034. ret = boot_ramdisk_high(lmb, images->rd_start, rd_len,
  1035. initrd_start, initrd_end);
  1036. if (ret)
  1037. return ret;
  1038. }
  1039. if (IMAGE_ENABLE_OF_LIBFDT) {
  1040. ret = boot_relocate_fdt(lmb, of_flat_tree, &of_size);
  1041. if (ret)
  1042. return ret;
  1043. }
  1044. if (IMAGE_ENABLE_OF_LIBFDT && of_size) {
  1045. ret = image_setup_libfdt(images, *of_flat_tree, of_size, lmb);
  1046. if (ret)
  1047. return ret;
  1048. }
  1049. return 0;
  1050. }
  1051. #endif /* CONFIG_LMB */
  1052. #endif /* !USE_HOSTCC */