imagetag.c 22 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * Copyright (C) 2008 Axel Gembe <[email protected]>
  7. * Copyright (C) 2009 Daniel Dickinson <[email protected]>
  8. */
  9. #include <stdio.h>
  10. #include <stdlib.h>
  11. #include <string.h>
  12. #include <stdint.h>
  13. #include <time.h>
  14. #include <unistd.h>
  15. #include <sys/stat.h>
  16. #include <netinet/in.h>
  17. #include "bcm_tag.h"
  18. #define IMAGETAG_MAGIC1 "Broadcom Corporatio"
  19. #define IMAGETAG_MAGIC2 "ver. 2.0"
  20. #define IMAGETAG_VER "6"
  21. #define IMAGETAG_DEFAULT_LOADADDR 0x80010000
  22. #define DEFAULT_FW_OFFSET 0x10000
  23. #define DEFAULT_FLASH_START 0xBFC00000
  24. #define DEFAULT_FLASH_BS (64 * 1024)
  25. #define DEADCODE 0xDEADC0DE
  26. union int2char {
  27. uint32_t input;
  28. unsigned char output[4];
  29. };
  30. /* This appears to be necessary due to alignment issues */
  31. #define int2tag(tag, value) intchar.input = htonl(value); \
  32. strncpy(tag, intchar.output, sizeof(union int2char))
  33. /* Kernel header */
  34. struct kernelhdr {
  35. uint32_t loadaddr; /* Kernel load address */
  36. uint32_t entry; /* Kernel entry point address */
  37. uint32_t lzmalen; /* Compressed length of the LZMA data that follows */
  38. };
  39. static struct tagiddesc_t tagidtab[NUM_TAGID] = TAGID_DEFINITIONS;
  40. static uint32_t crc32tab[256] = {
  41. 0x00000000, 0x77073096, 0xEE0E612C, 0x990951BA, 0x076DC419, 0x706AF48F, 0xE963A535, 0x9E6495A3,
  42. 0x0EDB8832, 0x79DCB8A4, 0xE0D5E91E, 0x97D2D988, 0x09B64C2B, 0x7EB17CBD, 0xE7B82D07, 0x90BF1D91,
  43. 0x1DB71064, 0x6AB020F2, 0xF3B97148, 0x84BE41DE, 0x1ADAD47D, 0x6DDDE4EB, 0xF4D4B551, 0x83D385C7,
  44. 0x136C9856, 0x646BA8C0, 0xFD62F97A, 0x8A65C9EC, 0x14015C4F, 0x63066CD9, 0xFA0F3D63, 0x8D080DF5,
  45. 0x3B6E20C8, 0x4C69105E, 0xD56041E4, 0xA2677172, 0x3C03E4D1, 0x4B04D447, 0xD20D85FD, 0xA50AB56B,
  46. 0x35B5A8FA, 0x42B2986C, 0xDBBBC9D6, 0xACBCF940, 0x32D86CE3, 0x45DF5C75, 0xDCD60DCF, 0xABD13D59,
  47. 0x26D930AC, 0x51DE003A, 0xC8D75180, 0xBFD06116, 0x21B4F4B5, 0x56B3C423, 0xCFBA9599, 0xB8BDA50F,
  48. 0x2802B89E, 0x5F058808, 0xC60CD9B2, 0xB10BE924, 0x2F6F7C87, 0x58684C11, 0xC1611DAB, 0xB6662D3D,
  49. 0x76DC4190, 0x01DB7106, 0x98D220BC, 0xEFD5102A, 0x71B18589, 0x06B6B51F, 0x9FBFE4A5, 0xE8B8D433,
  50. 0x7807C9A2, 0x0F00F934, 0x9609A88E, 0xE10E9818, 0x7F6A0DBB, 0x086D3D2D, 0x91646C97, 0xE6635C01,
  51. 0x6B6B51F4, 0x1C6C6162, 0x856530D8, 0xF262004E, 0x6C0695ED, 0x1B01A57B, 0x8208F4C1, 0xF50FC457,
  52. 0x65B0D9C6, 0x12B7E950, 0x8BBEB8EA, 0xFCB9887C, 0x62DD1DDF, 0x15DA2D49, 0x8CD37CF3, 0xFBD44C65,
  53. 0x4DB26158, 0x3AB551CE, 0xA3BC0074, 0xD4BB30E2, 0x4ADFA541, 0x3DD895D7, 0xA4D1C46D, 0xD3D6F4FB,
  54. 0x4369E96A, 0x346ED9FC, 0xAD678846, 0xDA60B8D0, 0x44042D73, 0x33031DE5, 0xAA0A4C5F, 0xDD0D7CC9,
  55. 0x5005713C, 0x270241AA, 0xBE0B1010, 0xC90C2086, 0x5768B525, 0x206F85B3, 0xB966D409, 0xCE61E49F,
  56. 0x5EDEF90E, 0x29D9C998, 0xB0D09822, 0xC7D7A8B4, 0x59B33D17, 0x2EB40D81, 0xB7BD5C3B, 0xC0BA6CAD,
  57. 0xEDB88320, 0x9ABFB3B6, 0x03B6E20C, 0x74B1D29A, 0xEAD54739, 0x9DD277AF, 0x04DB2615, 0x73DC1683,
  58. 0xE3630B12, 0x94643B84, 0x0D6D6A3E, 0x7A6A5AA8, 0xE40ECF0B, 0x9309FF9D, 0x0A00AE27, 0x7D079EB1,
  59. 0xF00F9344, 0x8708A3D2, 0x1E01F268, 0x6906C2FE, 0xF762575D, 0x806567CB, 0x196C3671, 0x6E6B06E7,
  60. 0xFED41B76, 0x89D32BE0, 0x10DA7A5A, 0x67DD4ACC, 0xF9B9DF6F, 0x8EBEEFF9, 0x17B7BE43, 0x60B08ED5,
  61. 0xD6D6A3E8, 0xA1D1937E, 0x38D8C2C4, 0x4FDFF252, 0xD1BB67F1, 0xA6BC5767, 0x3FB506DD, 0x48B2364B,
  62. 0xD80D2BDA, 0xAF0A1B4C, 0x36034AF6, 0x41047A60, 0xDF60EFC3, 0xA867DF55, 0x316E8EEF, 0x4669BE79,
  63. 0xCB61B38C, 0xBC66831A, 0x256FD2A0, 0x5268E236, 0xCC0C7795, 0xBB0B4703, 0x220216B9, 0x5505262F,
  64. 0xC5BA3BBE, 0xB2BD0B28, 0x2BB45A92, 0x5CB36A04, 0xC2D7FFA7, 0xB5D0CF31, 0x2CD99E8B, 0x5BDEAE1D,
  65. 0x9B64C2B0, 0xEC63F226, 0x756AA39C, 0x026D930A, 0x9C0906A9, 0xEB0E363F, 0x72076785, 0x05005713,
  66. 0x95BF4A82, 0xE2B87A14, 0x7BB12BAE, 0x0CB61B38, 0x92D28E9B, 0xE5D5BE0D, 0x7CDCEFB7, 0x0BDBDF21,
  67. 0x86D3D2D4, 0xF1D4E242, 0x68DDB3F8, 0x1FDA836E, 0x81BE16CD, 0xF6B9265B, 0x6FB077E1, 0x18B74777,
  68. 0x88085AE6, 0xFF0F6A70, 0x66063BCA, 0x11010B5C, 0x8F659EFF, 0xF862AE69, 0x616BFFD3, 0x166CCF45,
  69. 0xA00AE278, 0xD70DD2EE, 0x4E048354, 0x3903B3C2, 0xA7672661, 0xD06016F7, 0x4969474D, 0x3E6E77DB,
  70. 0xAED16A4A, 0xD9D65ADC, 0x40DF0B66, 0x37D83BF0, 0xA9BCAE53, 0xDEBB9EC5, 0x47B2CF7F, 0x30B5FFE9,
  71. 0xBDBDF21C, 0xCABAC28A, 0x53B39330, 0x24B4A3A6, 0xBAD03605, 0xCDD70693, 0x54DE5729, 0x23D967BF,
  72. 0xB3667A2E, 0xC4614AB8, 0x5D681B02, 0x2A6F2B94, 0xB40BBE37, 0xC30C8EA1, 0x5A05DF1B, 0x2D02EF8D
  73. };
  74. uint32_t crc32(uint32_t crc, uint8_t *data, size_t len)
  75. {
  76. while (len--)
  77. crc = (crc >> 8) ^ crc32tab[(crc ^ *data++) & 0xFF];
  78. return crc;
  79. }
  80. uint32_t compute_crc32(uint32_t crc, FILE *binfile, size_t compute_start, size_t compute_len)
  81. {
  82. uint8_t readbuf[1024];
  83. size_t read;
  84. fseek(binfile, compute_start, SEEK_SET);
  85. /* read block of 1024 bytes */
  86. while (binfile && !feof(binfile) && !ferror(binfile) && (compute_len >= sizeof(readbuf))) {
  87. read = fread(readbuf, sizeof(uint8_t), sizeof(readbuf), binfile);
  88. crc = crc32(crc, readbuf, read);
  89. compute_len = compute_len - read;
  90. }
  91. /* Less than 1024 bytes remains, read compute_len bytes */
  92. if (binfile && !feof(binfile) && !ferror(binfile) && (compute_len > 0)) {
  93. read = fread(readbuf, sizeof(uint8_t), compute_len, binfile);
  94. crc = crc32(crc, readbuf, read);
  95. }
  96. return crc;
  97. }
  98. size_t getlen(FILE *fp)
  99. {
  100. size_t retval, curpos;
  101. if (!fp)
  102. return 0;
  103. curpos = ftell(fp);
  104. fseek(fp, 0, SEEK_END);
  105. retval = ftell(fp);
  106. fseek(fp, curpos, SEEK_SET);
  107. return retval;
  108. }
  109. int tagfile(const char *kernel, const char *rootfs, const char *bin,
  110. const char *boardid, const char *chipid, const uint32_t fwaddr,
  111. const uint32_t loadaddr, const uint32_t entry,
  112. const char *ver, const char *magic2, const uint32_t flash_bs,
  113. const char *tagid, const char *information, const char *layoutver)
  114. {
  115. union bcm_tag tag;
  116. struct kernelhdr khdr;
  117. FILE *kernelfile = NULL, *rootfsfile = NULL, *binfile;
  118. size_t kerneloff, kernellen, rootfsoff, rootfslen, read, imagelen, rootfsoffpadlen, kernelfslen;
  119. uint8_t readbuf[1024];
  120. uint32_t imagecrc = IMAGETAG_CRC_START;
  121. uint32_t kernelcrc = IMAGETAG_CRC_START;
  122. uint32_t rootfscrc = IMAGETAG_CRC_START;
  123. uint32_t kernelfscrc = IMAGETAG_CRC_START;
  124. const uint32_t deadcode = htonl(DEADCODE);
  125. union int2char intchar;
  126. memset(&tag, 0, sizeof(union bcm_tag));
  127. /* All imagetags have boardid in the same location and of the same
  128. * size, so we just use the bccfe one
  129. */
  130. if (strlen(boardid) >= sizeof(tag.bccfe.boardid)) {
  131. fprintf(stderr, "Board id is too long!\n");
  132. return 1;
  133. }
  134. /* Likewise chipid */
  135. if (strlen(chipid) >= sizeof(tag.bccfe.chipid)) {
  136. fprintf(stderr, "Chip id is too long!\n");
  137. return 1;
  138. }
  139. if (kernel && !(kernelfile = fopen(kernel, "rb"))) {
  140. fprintf(stderr, "Unable to open kernel \"%s\"\n", kernel);
  141. return 1;
  142. }
  143. if (rootfs && !(rootfsfile = fopen(rootfs, "rb"))) {
  144. fprintf(stderr, "Unable to open rootfs \"%s\"\n", rootfs);
  145. return 1;
  146. }
  147. if (!bin || !(binfile = fopen(bin, "wb+"))) {
  148. fprintf(stderr, "Unable to open output file \"%s\"\n", bin);
  149. return 1;
  150. }
  151. /* Build the kernel address and length (doesn't need to be aligned, read only) */
  152. kerneloff = fwaddr + sizeof(tag);
  153. kernellen = getlen(kernelfile);
  154. /* Build the kernel header */
  155. khdr.loadaddr = htonl(loadaddr);
  156. khdr.entry = htonl(entry);
  157. khdr.lzmalen = htonl(kernellen);
  158. /* Increase the kernel size by the header size */
  159. kernellen += sizeof(khdr);
  160. /* Build the rootfs address and length (start and end do need to be aligned on flash erase block boundaries */
  161. rootfsoff = kerneloff + kernellen;
  162. rootfsoff = (rootfsoff % flash_bs) > 0 ? (((rootfsoff / flash_bs) + 1) * flash_bs) : rootfsoff;
  163. rootfslen = getlen(rootfsfile);
  164. rootfslen = ( (rootfslen % flash_bs) > 0 ? (((rootfslen / flash_bs) + 1) * flash_bs) : rootfslen );
  165. imagelen = rootfsoff + rootfslen - kerneloff + sizeof(deadcode);
  166. rootfsoffpadlen = rootfsoff - (kerneloff + kernellen);
  167. /* Seek to the start of the kernel */
  168. fseek(binfile, kerneloff - fwaddr, SEEK_SET);
  169. /* Write the kernel header */
  170. fwrite(&khdr, sizeof(khdr), 1, binfile);
  171. /* Write the kernel */
  172. while (kernelfile && !feof(kernelfile) && !ferror(kernelfile)) {
  173. read = fread(readbuf, sizeof(uint8_t), sizeof(readbuf), kernelfile);
  174. fwrite(readbuf, sizeof(uint8_t), read, binfile);
  175. }
  176. /* Write the RootFS */
  177. fseek(binfile, rootfsoff - fwaddr, SEEK_SET);
  178. while (rootfsfile && !feof(rootfsfile) && !ferror(rootfsfile)) {
  179. read = fread(readbuf, sizeof(uint8_t), sizeof(readbuf), rootfsfile);
  180. fwrite(readbuf, sizeof(uint8_t), read, binfile);
  181. }
  182. /* Align image to specified erase block size and append deadc0de */
  183. printf("Data alignment to %dk with 'deadc0de' appended\n", flash_bs/1024);
  184. fseek(binfile, rootfsoff + rootfslen - fwaddr, SEEK_SET);
  185. fwrite(&deadcode, sizeof(uint32_t), 1, binfile);
  186. /* Flush the binfile buffer so that when we read from file, it contains
  187. * everything in the buffer
  188. */
  189. fflush(binfile);
  190. /* Choose and compute the CRC32 that should be inserted in the tag */
  191. if ( tagid && ( (strncmp(tagid, "bccfe", TAGID_LEN) == 0)) || ( strncmp(tagid, "bc300", TAGID_LEN) == 0)) {
  192. /* Compute the crc32 of the entire image (deadC0de included) */
  193. imagecrc = compute_crc32(imagecrc, binfile, kerneloff - fwaddr, imagelen);
  194. } else if ( tagid && (strncmp(tagid, "ag306", TAGID_LEN) == 0)) {
  195. /* Compute the crc32 of the kernel and padding between kernel and rootfs) */
  196. kernelcrc = compute_crc32(kernelcrc, binfile, kerneloff - fwaddr, kernellen + rootfsoffpadlen);
  197. } else if ( tagid && ( (strncmp(tagid, "bc221", TAGID_LEN) == 0))) {
  198. /* Compute the crc32 of the entire image (deadC0de included) */
  199. imagecrc = compute_crc32(imagecrc, binfile, kerneloff - fwaddr, imagelen);
  200. /* Compute the crc32 of the kernel and padding between kernel and rootfs) */
  201. kernelfscrc = compute_crc32(kernelfscrc, binfile, kerneloff - fwaddr, kernellen + rootfsoffpadlen + rootfslen + sizeof(deadcode));
  202. } else if ( tagid && (strncmp(tagid, "bc310", TAGID_LEN) == 0) ) {
  203. /* Compute the crc32 of the entire image (deadC0de included) */
  204. imagecrc = compute_crc32(imagecrc, binfile, kerneloff - fwaddr, imagelen);
  205. /* Compute the crc32 of the kernel and padding between kernel and rootfs) */
  206. kernelcrc = compute_crc32(kernelcrc, binfile, kerneloff - fwaddr, kernellen + rootfsoffpadlen);
  207. /* Compute the crc32 of the flashImageStart to rootLength.
  208. * The broadcom firmware assumes the rootfs starts the image,
  209. * therefore uses the rootfs start to determine where to flash
  210. * the image. Since we have the kernel first we have to give
  211. * it the kernel address, but the crc uses the length
  212. * associated with this address, which is added to the kernel
  213. * length to determine the length of image to flash and thus
  214. * needs to be rootfs + deadcode
  215. */
  216. rootfscrc = compute_crc32(rootfscrc, binfile, kerneloff - fwaddr, rootfslen + sizeof(deadcode));
  217. }
  218. /* Close the files */
  219. fclose(kernelfile);
  220. fclose(rootfsfile);
  221. if ( tagid && (strcmp(tagid, "bccfe") == 0)) {
  222. /* Build the tag */
  223. strncpy(tag.bccfe.tagVersion, ver, TAGVER_LEN);
  224. strncpy(tag.bccfe.sig_1, IMAGETAG_MAGIC1, sizeof(tag.bccfe.sig_1) - 1);
  225. strncpy(tag.bccfe.sig_2, magic2, sizeof(tag.bccfe.sig_2) - 1);
  226. strcpy(tag.bccfe.chipid, chipid);
  227. strcpy(tag.bccfe.boardid, boardid);
  228. strcpy(tag.bccfe.big_endian, "1");
  229. sprintf(tag.bccfe.totalLength, "%lu", imagelen);
  230. /* We don't include CFE */
  231. strcpy(tag.bccfe.cfeAddress, "0");
  232. strcpy(tag.bccfe.cfeLength, "0");
  233. if (kernelfile) {
  234. sprintf(tag.bccfe.kernelAddress, "%lu", kerneloff);
  235. sprintf(tag.bccfe.kernelLength, "%lu", kernellen + rootfsoffpadlen);
  236. }
  237. if (rootfsfile) {
  238. sprintf(tag.bccfe.rootAddress, "%lu", rootfsoff);
  239. sprintf(tag.bccfe.rootLength, "%lu", rootfslen);
  240. }
  241. strncpy(tag.bccfe.tagId, "bccfe", TAGID_LEN);
  242. int2tag(tag.bccfe.tagIdCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&(tag.bccfe.tagId[0]), TAGID_LEN));
  243. int2tag(tag.bccfe.imageCRC, imagecrc);
  244. int2tag(tag.bccfe.headerCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&tag, sizeof(tag) - 20));
  245. } else if ( tagid && (strcmp(tagid, "bc300") == 0)) {
  246. /* Build the tag */
  247. strncpy(tag.bc300.tagVersion, ver, TAGVER_LEN);
  248. strncpy(tag.bc300.sig_1, IMAGETAG_MAGIC1, sizeof(tag.bc300.sig_1) - 1);
  249. strncpy(tag.bc300.sig_2, magic2, sizeof(tag.bc300.sig_2) - 1);
  250. strcpy(tag.bc300.chipid, chipid);
  251. strcpy(tag.bc300.boardid, boardid);
  252. strcpy(tag.bc300.big_endian, "1");
  253. sprintf(tag.bc300.totalLength, "%lu", imagelen);
  254. /* We don't include CFE */
  255. strcpy(tag.bc300.cfeAddress, "0");
  256. strcpy(tag.bc300.cfeLength, "0");
  257. if (kernelfile) {
  258. sprintf(tag.bc300.kernelAddress, "%lu", kerneloff);
  259. sprintf(tag.bc300.kernelLength, "%lu", kernellen + rootfsoffpadlen);
  260. }
  261. if (rootfsfile) {
  262. sprintf(tag.bc300.flashImageStart, "%lu", kerneloff);
  263. sprintf(tag.bc300.flashRootLength, "%lu", rootfslen + sizeof(deadcode));
  264. sprintf(tag.bc300.rootAddress, "%lu", rootfsoff);
  265. sprintf(tag.bc300.rootLength, "%lu", rootfslen);
  266. }
  267. strncpy(tag.bc300.tagId, "bc300", TAGID_LEN);
  268. int2tag(tag.bc300.tagIdCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&(tag.bc300.tagId[0]), TAGID_LEN));
  269. int2tag(tag.bc300.imageCRC, imagecrc);
  270. int2tag(tag.bc300.headerCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&tag, sizeof(tag) - 20));
  271. } else if ( tagid && (strcmp(tagid, "ag306") == 0)) {
  272. /* Build the tag */
  273. strncpy(tag.ag306.tagVersion, ver, TAGVER_LEN);
  274. strncpy(tag.ag306.sig_1, IMAGETAG_MAGIC1, sizeof(tag.ag306.sig_1) - 1);
  275. strncpy(tag.ag306.sig_2, magic2, sizeof(tag.ag306.sig_2) - 1);
  276. strcpy(tag.ag306.chipid, chipid);
  277. strcpy(tag.ag306.boardid, boardid);
  278. strcpy(tag.ag306.big_endian, "1");
  279. sprintf(tag.ag306.totalLength, "%lu", imagelen);
  280. /* We don't include CFE */
  281. strcpy(tag.ag306.cfeAddress, "0");
  282. strcpy(tag.ag306.cfeLength, "0");
  283. if (kernelfile) {
  284. sprintf(tag.ag306.kernelAddress, "%lu", kerneloff);
  285. sprintf(tag.ag306.kernelLength, "%lu", kernellen + rootfsoffpadlen);
  286. }
  287. if (rootfsfile) {
  288. sprintf(tag.ag306.flashImageStart, "%lu", kerneloff);
  289. sprintf(tag.ag306.flashRootLength, "%lu", rootfslen + sizeof(deadcode));
  290. sprintf(tag.ag306.rootAddress, "%lu", rootfsoff);
  291. sprintf(tag.ag306.rootLength, "%lu", rootfslen);
  292. }
  293. strncpy(tag.ag306.tagId, "ag306", TAGID_LEN);
  294. int2tag(tag.ag306.tagIdCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&(tag.ag306.tagId[0]), TAGID_LEN));
  295. int2tag(tag.ag306.kernelCRC, kernelcrc);
  296. int2tag(tag.ag306.headerCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&tag, sizeof(tag) - 20));
  297. } else if ( tagid && (strcmp(tagid, "bc221") == 0)) {
  298. /* Build the tag */
  299. strncpy(tag.bc221.tagVersion, ver, TAGVER_LEN);
  300. strncpy(tag.bc221.sig_1, IMAGETAG_MAGIC1, sizeof(tag.bc221.sig_1) - 1);
  301. strncpy(tag.bc221.sig_2, magic2, sizeof(tag.bc221.sig_2) - 1);
  302. strcpy(tag.bc221.chipid, chipid);
  303. strcpy(tag.bc221.boardid, boardid);
  304. strcpy(tag.bc221.big_endian, "1");
  305. sprintf(tag.bc221.totalLength, "%lu", imagelen);
  306. /* We don't include CFE */
  307. strcpy(tag.bc221.cfeAddress, "0");
  308. strcpy(tag.bc221.cfeLength, "0");
  309. if (kernelfile) {
  310. sprintf(tag.bc221.kernelAddress, "%lu", kerneloff);
  311. sprintf(tag.bc221.kernelLength, "%lu", kernellen + rootfsoffpadlen);
  312. }
  313. if (rootfsfile) {
  314. sprintf(tag.bc221.flashImageStart, "%lu", kerneloff);
  315. sprintf(tag.bc221.flashRootLength, "%lu", rootfslen + sizeof(deadcode));
  316. sprintf(tag.bc221.rootAddress, "%lu", rootfsoff);
  317. sprintf(tag.bc221.rootLength, "%lu", rootfslen);
  318. }
  319. strncpy(tag.bc221.tagId, "bc221", TAGID_LEN);
  320. if (layoutver) {
  321. strncpy(tag.bc221.flashLayoutVer, layoutver, TAGLAYOUT_LEN);
  322. }
  323. int2tag(tag.bc221.tagIdCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&(tag.bc221.tagId[0]), TAGID_LEN));
  324. int2tag(tag.bc221.imageCRC, imagecrc);
  325. int2tag(tag.bc221.fskernelCRC, kernelfscrc);
  326. int2tag(tag.bc221.headerCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&tag, sizeof(tag) - 20));
  327. } else if ( tagid && (strcmp(tagid, "bc310") == 0)) {
  328. /* Build the tag */
  329. strncpy(tag.bc310.tagVersion, ver, TAGVER_LEN);
  330. strncpy(tag.bc310.sig_1, IMAGETAG_MAGIC1, sizeof(tag.bc310.sig_1) - 1);
  331. strncpy(tag.bc310.sig_2, magic2, sizeof(tag.bc310.sig_2) - 1);
  332. strcpy(tag.bc310.chipid, chipid);
  333. strcpy(tag.bc310.boardid, boardid);
  334. strcpy(tag.bc310.big_endian, "1");
  335. sprintf(tag.bc310.totalLength, "%lu", imagelen);
  336. /* We don't include CFE */
  337. strcpy(tag.bc310.cfeAddress, "0");
  338. strcpy(tag.bc310.cfeLength, "0");
  339. if (kernelfile) {
  340. sprintf(tag.bc310.kernelAddress, "%lu", kerneloff);
  341. sprintf(tag.bc310.kernelLength, "%lu", kernellen + rootfsoffpadlen);
  342. }
  343. if (rootfsfile) {
  344. sprintf(tag.bc310.flashImageStart, "%lu", kerneloff);
  345. sprintf(tag.bc310.flashRootLength, "%lu", rootfslen + sizeof(deadcode));
  346. sprintf(tag.bc310.rootAddress, "%lu", rootfsoff);
  347. sprintf(tag.bc310.rootLength, "%lu", rootfslen);
  348. }
  349. strncpy(tag.bc310.tagId, "bc310", TAGID_LEN);
  350. if (information) {
  351. strncpy(tag.bc310.information1, information, TAGINFO_LEN);
  352. }
  353. int2tag(tag.bc310.tagIdCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&(tag.bc310.tagId[0]), TAGID_LEN));
  354. int2tag(tag.bc310.imageCRC, imagecrc);
  355. int2tag(tag.bc310.kernelCRC, kernelcrc);
  356. int2tag(tag.bc310.rootfsCRC, rootfscrc);
  357. int2tag(tag.bc310.headerCRC, crc32(IMAGETAG_CRC_START, (uint8_t*)&tag, sizeof(tag) - 20));
  358. }
  359. fseek(binfile, 0L, SEEK_SET);
  360. fwrite(&tag, sizeof(uint8_t), sizeof(tag), binfile);
  361. fclose(binfile);
  362. return 0;
  363. }
  364. int main(int argc, char **argv)
  365. {
  366. int c, i;
  367. char *kernel, *rootfs, *bin, *boardid, *chipid, *magic2, *ver, *tagid, *information, *layoutver;
  368. uint32_t flashstart, fwoffset, loadaddr, entry;
  369. uint32_t fwaddr, flash_bs;
  370. int tagidfound = 0;
  371. kernel = rootfs = bin = boardid = chipid = magic2 = ver = tagid = information = layoutver = NULL;
  372. entry = 0;
  373. flashstart = DEFAULT_FLASH_START;
  374. fwoffset = DEFAULT_FW_OFFSET;
  375. loadaddr = IMAGETAG_DEFAULT_LOADADDR;
  376. flash_bs = DEFAULT_FLASH_BS;
  377. printf("Broadcom image tagger - v0.2.0\n");
  378. printf("Copyright (C) 2008 Axel Gembe\n");
  379. printf("Copyright (C) 2009 Daniel Dickinson\n");
  380. while ((c = getopt(argc, argv, "i:f:o:b:c:s:n:v:m:k:l:e:h:t:d:y:")) != -1) {
  381. switch (c) {
  382. case 'i':
  383. kernel = optarg;
  384. break;
  385. case 'f':
  386. rootfs = optarg;
  387. break;
  388. case 'o':
  389. bin = optarg;
  390. break;
  391. case 'b':
  392. boardid = optarg;
  393. break;
  394. case 'c':
  395. chipid = optarg;
  396. break;
  397. case 's':
  398. flashstart = strtoul(optarg, NULL, 16);
  399. break;
  400. case 'n':
  401. fwoffset = strtoul(optarg, NULL, 16);
  402. break;
  403. case 'v':
  404. ver = optarg;
  405. break;
  406. case 'm':
  407. magic2 = optarg;
  408. break;
  409. case 'k':
  410. flash_bs = strtoul(optarg, NULL, 16);
  411. break;
  412. case 'l':
  413. loadaddr = strtoul(optarg, NULL, 16);
  414. break;
  415. case 'e':
  416. entry = strtoul(optarg, NULL, 16);
  417. break;
  418. case 't':
  419. tagid = optarg;
  420. break;
  421. case 'd':
  422. information = optarg;
  423. break;
  424. case 'y':
  425. layoutver = optarg;
  426. break;
  427. case 'h':
  428. default:
  429. fprintf(stderr, "Usage: imagetag <parameters>\n\n");
  430. fprintf(stderr, " -i <kernel> - The LZMA compressed kernel file to include in the image\n");
  431. fprintf(stderr, " -f <rootfs> - The RootFS file to include in the image\n");
  432. fprintf(stderr, " -o <bin> - The output file\n");
  433. fprintf(stderr, " -b <boardid> - The board id to set in the image (i.e. \"96345GW2\")\n");
  434. fprintf(stderr, " -c <chipid> - The chip id to set in the image (i.e. \"6345\")\n");
  435. fprintf(stderr, " -s <flashstart> - Flash start address (i.e. \"0xBFC00000\"\n");
  436. fprintf(stderr, " -n <fwoffset> - \n");
  437. fprintf(stderr, " -v <version> - \n");
  438. fprintf(stderr, " -m <magic2> - \n");
  439. fprintf(stderr, " -k <flash_bs> - flash erase block size\n");
  440. fprintf(stderr, " -l <loadaddr> - Address where the kernel expects to be loaded (defaults to 0x80010000)\n");
  441. fprintf(stderr, " -e <entry> - Address where the kernel entry point will end up\n");
  442. fprintf(stderr, " -t <tagid> - type if imagetag to create, use 'list' to see available choices");
  443. fprintf(stderr, " -d <information> - vendor specific information, for those that need it");
  444. fprintf(stderr, " -y <layoutver> - Flash Layout Version (2.2x code versions need this)");
  445. fprintf(stderr, " -h - Displays this text\n\n");
  446. return 1;
  447. }
  448. }
  449. if (!boardid || !chipid) {
  450. fprintf(stderr, "You need to specify the board (-b) and chip id (-c)!\n");
  451. return 1;
  452. }
  453. if (entry == 0) {
  454. fprintf(stderr, "You need to specify the kernel entry (-e)\n");
  455. return 1;
  456. }
  457. tagidfound = 0;
  458. if (!tagid) {
  459. fprintf(stderr, "You must specify a tagid (-t)\n");
  460. } else {
  461. if (strncmp(tagid, "list", 4) == 0) {
  462. fprintf(stderr, "\n----------------------------------------\n");
  463. fprintf(stderr, "\tAvailable tagId:");
  464. fprintf(stderr, "\n\n");
  465. for (i = 0; i < NUM_TAGID; i++) {
  466. fprintf(stderr, "\t%s\t%s", tagidtab[i].tagid, tagidtab[i].tagiddesc);
  467. }
  468. fprintf(stderr, "\n----------------------------------------\n");
  469. return 0;
  470. }
  471. }
  472. if (tagid) {
  473. for(i = 0; i < NUM_TAGID; i++) {
  474. if (strncmp(tagid, tagidtab[i].tagid, TAGID_LEN) == 0) {
  475. tagidfound = 1;
  476. break;
  477. }
  478. }
  479. if (!tagidfound) {
  480. if (tagid) {
  481. fprintf(stderr, "The tagid you selected '%s' does't exist.\n", tagid);
  482. }
  483. fprintf(stderr, "Use -t list to see the list of available ids");
  484. return 1;
  485. }
  486. }
  487. /* Fallback to defaults */
  488. fwaddr = flashstart + fwoffset;
  489. if (!magic2) {
  490. magic2 = malloc(sizeof(char) * 14);
  491. if (!magic2) {
  492. perror("malloc");
  493. return 1;
  494. }
  495. strcpy(magic2, IMAGETAG_MAGIC2);
  496. }
  497. if (!ver) {
  498. ver = malloc(sizeof(char) * 4);
  499. if (!ver) {
  500. perror("malloc");
  501. return 1;
  502. }
  503. strcpy(ver, IMAGETAG_VER);
  504. }
  505. return tagfile(kernel, rootfs, bin, boardid, chipid, fwaddr, loadaddr, entry, ver, magic2, flash_bs, tagid, information, layoutver);
  506. }