auto_update.c 18 KB

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  1. /*
  2. * (C) Copyright 2003
  3. * Gary Jennejohn, DENX Software Engineering, gj@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. #include <common.h>
  24. #include <command.h>
  25. #include <malloc.h>
  26. #include <image.h>
  27. #include <asm/byteorder.h>
  28. #include <usb.h>
  29. #ifdef CFG_HUSH_PARSER
  30. #include <hush.h>
  31. #endif
  32. #ifdef CONFIG_AUTO_UPDATE
  33. #ifndef CONFIG_USB_OHCI
  34. #error "must define CONFIG_USB_OHCI"
  35. #endif
  36. #ifndef CONFIG_USB_STORAGE
  37. #error "must define CONFIG_USB_STORAGE"
  38. #endif
  39. #ifndef CFG_HUSH_PARSER
  40. #error "must define CFG_HUSH_PARSER"
  41. #endif
  42. #if !(CONFIG_COMMANDS & CFG_CMD_FAT)
  43. #error "must define CFG_CMD_FAT"
  44. #endif
  45. /*
  46. * Check whether a USB memory stick is plugged in.
  47. * If one is found:
  48. * 1) if prepare.img ist found load it into memory. If it is
  49. * valid then run it.
  50. * 2) if preinst.img is found load it into memory. If it is
  51. * valid then run it. Update the EEPROM.
  52. * 3) if firmware.img is found load it into memory. If it is valid,
  53. * burn it into FLASH and update the EEPROM.
  54. * 4) if kernel.img is found load it into memory. If it is valid,
  55. * burn it into FLASH and update the EEPROM.
  56. * 5) if app.img is found load it into memory. If it is valid,
  57. * burn it into FLASH and update the EEPROM.
  58. * 6) if disk.img is found load it into memory. If it is valid,
  59. * burn it into FLASH and update the EEPROM.
  60. * 7) if postinst.img is found load it into memory. If it is
  61. * valid then run it. Update the EEPROM.
  62. */
  63. #undef AU_DEBUG
  64. #undef debug
  65. #ifdef AU_DEBUG
  66. #define debug(fmt,args...) printf (fmt ,##args)
  67. #else
  68. #define debug(fmt,args...)
  69. #endif /* AU_DEBUG */
  70. /* possible names of files on the USB stick. */
  71. #define AU_PREPARE "prepare.img"
  72. #define AU_PREINST "preinst.img"
  73. #define AU_FIRMWARE "firmware.img"
  74. #define AU_KERNEL "kernel.img"
  75. #define AU_APP "app.img"
  76. #define AU_DISK "disk.img"
  77. #define AU_POSTINST "postinst.img"
  78. struct flash_layout
  79. {
  80. long start;
  81. long end;
  82. };
  83. /* layout of the FLASH. ST = start address, ND = end address. */
  84. #ifndef CONFIG_FLASH_8MB /* 16 MB Flash, 32 MB RAM */
  85. #define AU_FL_FIRMWARE_ST 0x00000000
  86. #define AU_FL_FIRMWARE_ND 0x0009FFFF
  87. #define AU_FL_VFD_ST 0x000A0000
  88. #define AU_FL_VFD_ND 0x000BFFFF
  89. #define AU_FL_KERNEL_ST 0x000C0000
  90. #define AU_FL_KERNEL_ND 0x001BFFFF
  91. #define AU_FL_APP_ST 0x001C0000
  92. #define AU_FL_APP_ND 0x005BFFFF
  93. #define AU_FL_DISK_ST 0x005C0000
  94. #define AU_FL_DISK_ND 0x00FFFFFF
  95. #else /* 8 MB Flash, 32 MB RAM */
  96. #define AU_FL_FIRMWARE_ST 0x00000000
  97. #define AU_FL_FIRMWARE_ND 0x0005FFFF
  98. #define AU_FL_KERNEL_ST 0x00060000
  99. #define AU_FL_KERNEL_ND 0x0013FFFF
  100. #define AU_FL_APP_ST 0x00140000
  101. #define AU_FL_APP_ND 0x0067FFFF
  102. #define AU_FL_DISK_ST 0x00680000
  103. #define AU_FL_DISK_ND 0x007DFFFF
  104. #define AU_FL_VFD_ST 0x007E0000
  105. #define AU_FL_VFD_ND 0x007FFFFF
  106. #endif /* CONFIG_FLASH_8MB */
  107. /* a structure with the offsets to values in the EEPROM */
  108. struct eeprom_layout
  109. {
  110. int time;
  111. int size;
  112. int dcrc;
  113. };
  114. /* layout of the EEPROM - offset from the start. All entries are 32 bit. */
  115. #define AU_EEPROM_TIME_PREINST 64
  116. #define AU_EEPROM_SIZE_PREINST 68
  117. #define AU_EEPROM_DCRC_PREINST 72
  118. #define AU_EEPROM_TIME_FIRMWARE 76
  119. #define AU_EEPROM_SIZE_FIRMWARE 80
  120. #define AU_EEPROM_DCRC_FIRMWARE 84
  121. #define AU_EEPROM_TIME_KERNEL 88
  122. #define AU_EEPROM_SIZE_KERNEL 92
  123. #define AU_EEPROM_DCRC_KERNEL 96
  124. #define AU_EEPROM_TIME_APP 100
  125. #define AU_EEPROM_SIZE_APP 104
  126. #define AU_EEPROM_DCRC_APP 108
  127. #define AU_EEPROM_TIME_DISK 112
  128. #define AU_EEPROM_SIZE_DISK 116
  129. #define AU_EEPROM_DCRC_DISK 120
  130. #define AU_EEPROM_TIME_POSTINST 124
  131. #define AU_EEPROM_SIZE_POSTINST 128
  132. #define AU_EEPROM_DCRC_POSTINST 132
  133. static int au_usb_stor_curr_dev; /* current device */
  134. /* index of each file in the following arrays */
  135. #define IDX_PREPARE 0
  136. #define IDX_PREINST 1
  137. #define IDX_FIRMWARE 2
  138. #define IDX_KERNEL 3
  139. #define IDX_APP 4
  140. #define IDX_DISK 5
  141. #define IDX_POSTINST 6
  142. /* max. number of files which could interest us */
  143. #define AU_MAXFILES 7
  144. /* pointers to file names */
  145. char *aufile[AU_MAXFILES];
  146. /* sizes of flash areas for each file */
  147. long ausize[AU_MAXFILES];
  148. /* offsets into the EEEPROM */
  149. struct eeprom_layout auee_off[AU_MAXFILES] = { \
  150. {0}, \
  151. {AU_EEPROM_TIME_PREINST, AU_EEPROM_SIZE_PREINST, AU_EEPROM_DCRC_PREINST,}, \
  152. {AU_EEPROM_TIME_FIRMWARE, AU_EEPROM_SIZE_FIRMWARE, AU_EEPROM_DCRC_FIRMWARE,}, \
  153. {AU_EEPROM_TIME_KERNEL, AU_EEPROM_SIZE_KERNEL, AU_EEPROM_DCRC_KERNEL,}, \
  154. {AU_EEPROM_TIME_APP, AU_EEPROM_SIZE_APP, AU_EEPROM_DCRC_APP,}, \
  155. {AU_EEPROM_TIME_DISK, AU_EEPROM_SIZE_DISK, AU_EEPROM_DCRC_DISK,}, \
  156. {AU_EEPROM_TIME_POSTINST, AU_EEPROM_SIZE_POSTINST, AU_EEPROM_DCRC_POSTINST,} \
  157. };
  158. /* array of flash areas start and end addresses */
  159. struct flash_layout aufl_layout[AU_MAXFILES - 3] = { \
  160. {AU_FL_FIRMWARE_ST, AU_FL_FIRMWARE_ND,}, \
  161. {AU_FL_KERNEL_ST, AU_FL_KERNEL_ND,}, \
  162. {AU_FL_APP_ST, AU_FL_APP_ND,}, \
  163. {AU_FL_DISK_ST, AU_FL_DISK_ND,}, \
  164. };
  165. /* convert the index into aufile[] to an index into aufl_layout[] */
  166. #define FIDX_TO_LIDX(idx) ((idx) - 2)
  167. /* where to load files into memory */
  168. #define LOAD_ADDR ((unsigned char *)0x0C100000)
  169. /* the app is the largest image */
  170. #define MAX_LOADSZ ausize[IDX_APP]
  171. /* externals */
  172. extern int fat_register_device(block_dev_desc_t *, int);
  173. extern int file_fat_detectfs(void);
  174. extern long file_fat_read(const char *, void *, unsigned long);
  175. extern int i2c_read (unsigned char, unsigned int, int , unsigned char* , int);
  176. extern int i2c_write (uchar, uint, int , uchar* , int);
  177. #ifdef CONFIG_VFD
  178. extern int trab_vfd (ulong);
  179. extern int transfer_pic(unsigned char, unsigned char *, int, int);
  180. #endif
  181. extern int flash_sect_erase(ulong, ulong);
  182. extern int flash_sect_protect (int, ulong, ulong);
  183. extern int flash_write (uchar *, ulong, ulong);
  184. /* change char* to void* to shutup the compiler */
  185. extern int i2c_write_multiple (uchar, uint, int, void *, int);
  186. extern int i2c_read_multiple (uchar, uint, int, void *, int);
  187. extern block_dev_desc_t *get_dev (char*, int);
  188. extern int u_boot_hush_start(void);
  189. int
  190. au_check_cksum_valid(int idx, long nbytes)
  191. {
  192. image_header_t *hdr;
  193. unsigned long checksum;
  194. hdr = (image_header_t *)LOAD_ADDR;
  195. if (nbytes != (sizeof(*hdr) + ntohl(hdr->ih_size)))
  196. {
  197. printf ("Image %s bad total SIZE\n", aufile[idx]);
  198. return -1;
  199. }
  200. /* check the data CRC */
  201. checksum = ntohl(hdr->ih_dcrc);
  202. if (crc32 (0, (char *)(LOAD_ADDR + sizeof(*hdr)), ntohl(hdr->ih_size))
  203. != checksum)
  204. {
  205. printf ("Image %s bad data checksum\n", aufile[idx]);
  206. return -1;
  207. }
  208. return 0;
  209. }
  210. int
  211. au_check_header_valid(int idx, long nbytes)
  212. {
  213. image_header_t *hdr;
  214. unsigned long checksum;
  215. unsigned char buf[4];
  216. hdr = (image_header_t *)LOAD_ADDR;
  217. /* check the easy ones first */
  218. #undef CHECK_VALID_DEBUG
  219. #ifdef CHECK_VALID_DEBUG
  220. printf("magic %#x %#x ", ntohl(hdr->ih_magic), IH_MAGIC);
  221. printf("arch %#x %#x ", hdr->ih_arch, IH_CPU_ARM);
  222. printf("size %#x %#lx ", ntohl(hdr->ih_size), nbytes);
  223. printf("type %#x %#x ", hdr->ih_type, IH_TYPE_KERNEL);
  224. #endif
  225. if (nbytes < sizeof(*hdr))
  226. {
  227. printf ("Image %s bad header SIZE\n", aufile[idx]);
  228. return -1;
  229. }
  230. if (ntohl(hdr->ih_magic) != IH_MAGIC || hdr->ih_arch != IH_CPU_ARM)
  231. {
  232. printf ("Image %s bad MAGIC or ARCH\n", aufile[idx]);
  233. return -1;
  234. }
  235. /* check the hdr CRC */
  236. checksum = ntohl(hdr->ih_hcrc);
  237. hdr->ih_hcrc = 0;
  238. if (crc32 (0, (char *)hdr, sizeof(*hdr)) != checksum) {
  239. printf ("Image %s bad header checksum\n", aufile[idx]);
  240. return -1;
  241. }
  242. hdr->ih_hcrc = htonl(checksum);
  243. /* check the type - could do this all in one gigantic if() */
  244. if ((idx == IDX_FIRMWARE) && (hdr->ih_type != IH_TYPE_FIRMWARE)) {
  245. printf ("Image %s wrong type\n", aufile[idx]);
  246. return -1;
  247. }
  248. if ((idx == IDX_KERNEL) && (hdr->ih_type != IH_TYPE_KERNEL)) {
  249. printf ("Image %s wrong type\n", aufile[idx]);
  250. return -1;
  251. }
  252. if ((idx == IDX_DISK) && (hdr->ih_type != IH_TYPE_FILESYSTEM)) {
  253. printf ("Image %s wrong type\n", aufile[idx]);
  254. return -1;
  255. }
  256. if ((idx == IDX_APP) && (hdr->ih_type != IH_TYPE_RAMDISK)
  257. && (hdr->ih_type != IH_TYPE_FILESYSTEM)) {
  258. printf ("Image %s wrong type\n", aufile[idx]);
  259. return -1;
  260. }
  261. if ((idx == IDX_PREPARE || idx == IDX_PREINST || idx == IDX_POSTINST)
  262. && (hdr->ih_type != IH_TYPE_SCRIPT))
  263. {
  264. printf ("Image %s wrong type\n", aufile[idx]);
  265. return -1;
  266. }
  267. /* special case for prepare.img */
  268. if (idx == IDX_PREPARE)
  269. return 0;
  270. /* recycle checksum */
  271. checksum = ntohl(hdr->ih_size);
  272. /* for kernel and app the image header must also fit into flash */
  273. if (idx != IDX_DISK)
  274. checksum += sizeof(*hdr);
  275. /* check the size does not exceed space in flash. HUSH scripts */
  276. /* all have ausize[] set to 0 */
  277. if ((ausize[idx] != 0) && (ausize[idx] < checksum)) {
  278. printf ("Image %s is bigger than FLASH\n", aufile[idx]);
  279. return -1;
  280. }
  281. /* check the time stamp from the EEPROM */
  282. /* read it in */
  283. i2c_read_multiple(0x54, auee_off[idx].time, 1, buf, sizeof(buf));
  284. #ifdef CHECK_VALID_DEBUG
  285. printf ("buf[0] %#x buf[1] %#x buf[2] %#x buf[3] %#x "
  286. "as int %#x time %#x\n",
  287. buf[0], buf[1], buf[2], buf[3],
  288. *((unsigned int *)buf), ntohl(hdr->ih_time));
  289. #endif
  290. /* check it */
  291. if (*((unsigned int *)buf) >= ntohl(hdr->ih_time)) {
  292. printf ("Image %s is too old\n", aufile[idx]);
  293. return -1;
  294. }
  295. return 0;
  296. }
  297. /* power control defines */
  298. #define CPLD_VFD_BK ((volatile char *)0x04038002)
  299. #define POWER_OFF (1 << 1)
  300. int
  301. au_do_update(int idx, long sz)
  302. {
  303. image_header_t *hdr;
  304. char *addr;
  305. long start, end;
  306. int off, rc;
  307. uint nbytes;
  308. hdr = (image_header_t *)LOAD_ADDR;
  309. /* disable the power switch */
  310. *CPLD_VFD_BK |= POWER_OFF;
  311. /* execute a script */
  312. if (hdr->ih_type == IH_TYPE_SCRIPT) {
  313. addr = (char *)((char *)hdr + sizeof(*hdr));
  314. /* stick a NULL at the end of the script, otherwise */
  315. /* parse_string_outer() runs off the end. */
  316. addr[ntohl(hdr->ih_size)] = 0;
  317. addr += 8;
  318. parse_string_outer(addr, FLAG_PARSE_SEMICOLON);
  319. return 0;
  320. }
  321. start = aufl_layout[FIDX_TO_LIDX(idx)].start;
  322. end = aufl_layout[FIDX_TO_LIDX(idx)].end;
  323. /* unprotect the address range */
  324. /* this assumes that ONLY the firmware is protected! */
  325. if (idx == IDX_FIRMWARE) {
  326. #undef AU_UPDATE_TEST
  327. #ifdef AU_UPDATE_TEST
  328. /* erase it where Linux goes */
  329. start = aufl_layout[1].start;
  330. end = aufl_layout[1].end;
  331. #endif
  332. flash_sect_protect(0, start, end);
  333. }
  334. /*
  335. * erase the address range.
  336. */
  337. debug ("flash_sect_erase(%lx, %lx);\n", start, end);
  338. flash_sect_erase(start, end);
  339. wait_ms(100);
  340. /* strip the header - except for the kernel and ramdisk */
  341. if (hdr->ih_type == IH_TYPE_KERNEL || hdr->ih_type == IH_TYPE_RAMDISK) {
  342. addr = (char *)hdr;
  343. off = sizeof(*hdr);
  344. nbytes = sizeof(*hdr) + ntohl(hdr->ih_size);
  345. } else {
  346. addr = (char *)((char *)hdr + sizeof(*hdr));
  347. #ifdef AU_UPDATE_TEST
  348. /* copy it to where Linux goes */
  349. if (idx == IDX_FIRMWARE)
  350. start = aufl_layout[1].start;
  351. #endif
  352. off = 0;
  353. nbytes = ntohl(hdr->ih_size);
  354. }
  355. /* copy the data from RAM to FLASH */
  356. debug ("flash_write(%p, %lx %x)\n", addr, start, nbytes);
  357. rc = flash_write(addr, start, nbytes);
  358. if (rc != 0) {
  359. printf("Flashing failed due to error %d\n", rc);
  360. return -1;
  361. }
  362. /* check the dcrc of the copy */
  363. if (crc32 (0, (char *)(start + off), ntohl(hdr->ih_size)) != ntohl(hdr->ih_dcrc)) {
  364. printf ("Image %s Bad Data Checksum After COPY\n", aufile[idx]);
  365. return -1;
  366. }
  367. /* protect the address range */
  368. /* this assumes that ONLY the firmware is protected! */
  369. if (idx == IDX_FIRMWARE)
  370. flash_sect_protect(1, start, end);
  371. return 0;
  372. }
  373. int
  374. au_update_eeprom(int idx)
  375. {
  376. image_header_t *hdr;
  377. int off;
  378. uint32_t val;
  379. hdr = (image_header_t *)LOAD_ADDR;
  380. /* write the time field into EEPROM */
  381. off = auee_off[idx].time;
  382. val = ntohl(hdr->ih_time);
  383. i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
  384. /* write the size field into EEPROM */
  385. off = auee_off[idx].size;
  386. val = ntohl(hdr->ih_size);
  387. i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
  388. /* write the dcrc field into EEPROM */
  389. off = auee_off[idx].dcrc;
  390. val = ntohl(hdr->ih_dcrc);
  391. i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
  392. /* enable the power switch */
  393. *CPLD_VFD_BK &= ~POWER_OFF;
  394. return 0;
  395. }
  396. /*
  397. * this is called from board_init() after the hardware has been set up
  398. * and is usable. That seems like a good time to do this.
  399. * Right now the return value is ignored.
  400. */
  401. int
  402. do_auto_update(void)
  403. {
  404. block_dev_desc_t *stor_dev;
  405. long sz;
  406. int i, res, bitmap_first, cnt, old_ctrlc, got_ctrlc;
  407. char *env;
  408. long start, end;
  409. #undef ERASE_EEPROM
  410. #ifdef ERASE_EEPROM
  411. int arr[18];
  412. memset(arr, 0, sizeof(arr));
  413. i2c_write_multiple(0x54, 64, 1, arr, sizeof(arr));
  414. #endif
  415. au_usb_stor_curr_dev = -1;
  416. /* start USB */
  417. if (usb_stop() < 0) {
  418. debug ("usb_stop failed\n");
  419. return -1;
  420. }
  421. if (usb_init() < 0) {
  422. debug ("usb_init failed\n");
  423. return -1;
  424. }
  425. /*
  426. * check whether a storage device is attached (assume that it's
  427. * a USB memory stick, since nothing else should be attached).
  428. */
  429. au_usb_stor_curr_dev = usb_stor_scan(0);
  430. if (au_usb_stor_curr_dev == -1) {
  431. debug ("No device found. Not initialized?\n");
  432. return -1;
  433. }
  434. /* check whether it has a partition table */
  435. stor_dev = get_dev("usb", 0);
  436. if (stor_dev == NULL) {
  437. debug ("uknown device type\n");
  438. return -1;
  439. }
  440. if (fat_register_device(stor_dev, 1) != 0) {
  441. debug ("Unable to use USB %d:%d for fatls\n",
  442. au_usb_stor_curr_dev, 1);
  443. return -1;
  444. }
  445. if (file_fat_detectfs() != 0) {
  446. debug ("file_fat_detectfs failed\n");
  447. }
  448. /* initialize the array of file names */
  449. memset(aufile, 0, sizeof(aufile));
  450. aufile[IDX_PREPARE] = AU_PREPARE;
  451. aufile[IDX_PREINST] = AU_PREINST;
  452. aufile[IDX_FIRMWARE] = AU_FIRMWARE;
  453. aufile[IDX_KERNEL] = AU_KERNEL;
  454. aufile[IDX_APP] = AU_APP;
  455. aufile[IDX_DISK] = AU_DISK;
  456. aufile[IDX_POSTINST] = AU_POSTINST;
  457. /* initialize the array of flash sizes */
  458. memset(ausize, 0, sizeof(ausize));
  459. ausize[IDX_FIRMWARE] = (AU_FL_FIRMWARE_ND + 1) - AU_FL_FIRMWARE_ST;
  460. ausize[IDX_KERNEL] = (AU_FL_KERNEL_ND + 1) - AU_FL_KERNEL_ST;
  461. ausize[IDX_APP] = (AU_FL_APP_ND + 1) - AU_FL_APP_ST;
  462. ausize[IDX_DISK] = (AU_FL_DISK_ND + 1) - AU_FL_DISK_ST;
  463. /*
  464. * now check whether start and end are defined using environment
  465. * variables.
  466. */
  467. start = -1;
  468. end = 0;
  469. env = getenv("firmware_st");
  470. if (env != NULL)
  471. start = simple_strtoul(env, NULL, 16);
  472. env = getenv("firmware_nd");
  473. if (env != NULL)
  474. end = simple_strtoul(env, NULL, 16);
  475. if (start >= 0 && end && end > start) {
  476. ausize[IDX_FIRMWARE] = (end + 1) - start;
  477. aufl_layout[0].start = start;
  478. aufl_layout[0].end = end;
  479. }
  480. start = -1;
  481. end = 0;
  482. env = getenv("kernel_st");
  483. if (env != NULL)
  484. start = simple_strtoul(env, NULL, 16);
  485. env = getenv("kernel_nd");
  486. if (env != NULL)
  487. end = simple_strtoul(env, NULL, 16);
  488. if (start >= 0 && end && end > start) {
  489. ausize[IDX_KERNEL] = (end + 1) - start;
  490. aufl_layout[1].start = start;
  491. aufl_layout[1].end = end;
  492. }
  493. start = -1;
  494. end = 0;
  495. env = getenv("app_st");
  496. if (env != NULL)
  497. start = simple_strtoul(env, NULL, 16);
  498. env = getenv("app_nd");
  499. if (env != NULL)
  500. end = simple_strtoul(env, NULL, 16);
  501. if (start >= 0 && end && end > start) {
  502. ausize[IDX_APP] = (end + 1) - start;
  503. aufl_layout[2].start = start;
  504. aufl_layout[2].end = end;
  505. }
  506. start = -1;
  507. end = 0;
  508. env = getenv("disk_st");
  509. if (env != NULL)
  510. start = simple_strtoul(env, NULL, 16);
  511. env = getenv("disk_nd");
  512. if (env != NULL)
  513. end = simple_strtoul(env, NULL, 16);
  514. if (start >= 0 && end && end > start) {
  515. ausize[IDX_DISK] = (end + 1) - start;
  516. aufl_layout[3].start = start;
  517. aufl_layout[3].end = end;
  518. }
  519. /* make certain that HUSH is runnable */
  520. u_boot_hush_start();
  521. /* make sure that we see CTRL-C and save the old state */
  522. old_ctrlc = disable_ctrlc(0);
  523. bitmap_first = 0;
  524. /* just loop thru all the possible files */
  525. for (i = 0; i < AU_MAXFILES; i++) {
  526. /* just read the header */
  527. sz = file_fat_read(aufile[i], LOAD_ADDR, sizeof(image_header_t));
  528. debug ("read %s sz %ld hdr %d\n",
  529. aufile[i], sz, sizeof(image_header_t));
  530. if (sz <= 0 || sz < sizeof(image_header_t)) {
  531. debug ("%s not found\n", aufile[i]);
  532. continue;
  533. }
  534. if (au_check_header_valid(i, sz) < 0) {
  535. debug ("%s header not valid\n", aufile[i]);
  536. continue;
  537. }
  538. sz = file_fat_read(aufile[i], LOAD_ADDR, MAX_LOADSZ);
  539. debug ("read %s sz %ld hdr %d\n",
  540. aufile[i], sz, sizeof(image_header_t));
  541. if (sz <= 0 || sz <= sizeof(image_header_t)) {
  542. debug ("%s not found\n", aufile[i]);
  543. continue;
  544. }
  545. if (au_check_cksum_valid(i, sz) < 0) {
  546. debug ("%s checksum not valid\n", aufile[i]);
  547. continue;
  548. }
  549. #ifdef CONFIG_VFD
  550. /* now that we have a valid file we can display the */
  551. /* bitmap. */
  552. if (bitmap_first == 0) {
  553. env = getenv("bitmap2");
  554. if (env == NULL) {
  555. trab_vfd(0);
  556. } else {
  557. /* not so simple - bitmap2 is supposed to */
  558. /* contain the address of the bitmap */
  559. env = (char *)simple_strtoul(env, NULL, 16);
  560. /* NOTE: these are taken from vfd_logo.h. If that file changes then */
  561. /* these defines MUST also be updated! These may be wrong for bitmap2. */
  562. #define VFD_LOGO_WIDTH 112
  563. #define VFD_LOGO_HEIGHT 72
  564. /* must call transfer_pic directly */
  565. transfer_pic(3, env, VFD_LOGO_HEIGHT, VFD_LOGO_WIDTH);
  566. }
  567. bitmap_first = 1;
  568. }
  569. #endif
  570. /* this is really not a good idea, but it's what the */
  571. /* customer wants. */
  572. cnt = 0;
  573. got_ctrlc = 0;
  574. do {
  575. res = au_do_update(i, sz);
  576. /* let the user break out of the loop */
  577. if (ctrlc() || had_ctrlc()) {
  578. clear_ctrlc();
  579. if (res < 0)
  580. got_ctrlc = 1;
  581. break;
  582. }
  583. cnt++;
  584. #ifdef AU_TEST_ONLY
  585. } while (res < 0 && cnt < 3);
  586. if (cnt < 3)
  587. #else
  588. } while (res < 0);
  589. #endif
  590. /*
  591. * it doesn't make sense to update the EEPROM if the
  592. * update was interrupted by the user due to errors.
  593. */
  594. if (got_ctrlc == 0)
  595. au_update_eeprom(i);
  596. else
  597. /* enable the power switch */
  598. *CPLD_VFD_BK &= ~POWER_OFF;
  599. }
  600. usb_stop();
  601. /* restore the old state */
  602. disable_ctrlc(old_ctrlc);
  603. return 0;
  604. }
  605. #endif /* CONFIG_AUTO_UPDATE */