hab.c 14 KB

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  1. /*
  2. * Copyright (C) 2010-2015 Freescale Semiconductor, Inc.
  3. *
  4. * SPDX-License-Identifier: GPL-2.0+
  5. */
  6. #include <common.h>
  7. #include <config.h>
  8. #include <fuse.h>
  9. #include <asm/io.h>
  10. #include <asm/system.h>
  11. #include <asm/arch/clock.h>
  12. #include <asm/arch/sys_proto.h>
  13. #include <asm/mach-imx/hab.h>
  14. /* -------- start of HAB API updates ------------*/
  15. #define hab_rvt_report_event_p \
  16. ( \
  17. (is_mx6dqp()) ? \
  18. ((hab_rvt_report_event_t *)HAB_RVT_REPORT_EVENT_NEW) : \
  19. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  20. ((hab_rvt_report_event_t *)HAB_RVT_REPORT_EVENT_NEW) : \
  21. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  22. ((hab_rvt_report_event_t *)HAB_RVT_REPORT_EVENT_NEW) : \
  23. ((hab_rvt_report_event_t *)HAB_RVT_REPORT_EVENT) \
  24. )
  25. #define hab_rvt_report_status_p \
  26. ( \
  27. (is_mx6dqp()) ? \
  28. ((hab_rvt_report_status_t *)HAB_RVT_REPORT_STATUS_NEW) :\
  29. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  30. ((hab_rvt_report_status_t *)HAB_RVT_REPORT_STATUS_NEW) :\
  31. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  32. ((hab_rvt_report_status_t *)HAB_RVT_REPORT_STATUS_NEW) :\
  33. ((hab_rvt_report_status_t *)HAB_RVT_REPORT_STATUS) \
  34. )
  35. #define hab_rvt_authenticate_image_p \
  36. ( \
  37. (is_mx6dqp()) ? \
  38. ((hab_rvt_authenticate_image_t *)HAB_RVT_AUTHENTICATE_IMAGE_NEW) : \
  39. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  40. ((hab_rvt_authenticate_image_t *)HAB_RVT_AUTHENTICATE_IMAGE_NEW) : \
  41. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  42. ((hab_rvt_authenticate_image_t *)HAB_RVT_AUTHENTICATE_IMAGE_NEW) : \
  43. ((hab_rvt_authenticate_image_t *)HAB_RVT_AUTHENTICATE_IMAGE) \
  44. )
  45. #define hab_rvt_entry_p \
  46. ( \
  47. (is_mx6dqp()) ? \
  48. ((hab_rvt_entry_t *)HAB_RVT_ENTRY_NEW) : \
  49. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  50. ((hab_rvt_entry_t *)HAB_RVT_ENTRY_NEW) : \
  51. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  52. ((hab_rvt_entry_t *)HAB_RVT_ENTRY_NEW) : \
  53. ((hab_rvt_entry_t *)HAB_RVT_ENTRY) \
  54. )
  55. #define hab_rvt_exit_p \
  56. ( \
  57. (is_mx6dqp()) ? \
  58. ((hab_rvt_exit_t *)HAB_RVT_EXIT_NEW) : \
  59. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  60. ((hab_rvt_exit_t *)HAB_RVT_EXIT_NEW) : \
  61. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  62. ((hab_rvt_exit_t *)HAB_RVT_EXIT_NEW) : \
  63. ((hab_rvt_exit_t *)HAB_RVT_EXIT) \
  64. )
  65. static inline enum hab_status hab_rvt_check_target_new(enum hab_target target,
  66. const void *start,
  67. size_t bytes)
  68. {
  69. return HAB_SUCCESS;
  70. }
  71. #define hab_rvt_check_target_p \
  72. ( \
  73. (is_mx6dqp()) ? \
  74. ((hab_rvt_check_target_t *)hab_rvt_check_target_new) : \
  75. (is_mx6dq() && (soc_rev() >= CHIP_REV_1_5)) ? \
  76. ((hab_rvt_check_target_t *)hab_rvt_check_target_new) : \
  77. (is_mx6sdl() && (soc_rev() >= CHIP_REV_1_2)) ? \
  78. ((hab_rvt_check_target_t *)hab_rvt_check_target_new) : \
  79. ((hab_rvt_check_target_t *)HAB_RVT_CHECK_TARGET) \
  80. )
  81. #define ALIGN_SIZE 0x1000
  82. #define MX6DQ_PU_IROM_MMU_EN_VAR 0x009024a8
  83. #define MX6DLS_PU_IROM_MMU_EN_VAR 0x00901dd0
  84. #define MX6SL_PU_IROM_MMU_EN_VAR 0x00900a18
  85. #define IS_HAB_ENABLED_BIT \
  86. (is_soc_type(MXC_SOC_MX7ULP) ? 0x80000000 : \
  87. (is_soc_type(MXC_SOC_MX7) ? 0x2000000 : 0x2))
  88. static bool imx_hab_is_enabled(void);
  89. static int ivt_header_error(const char *err_str, struct ivt_header *ivt_hdr)
  90. {
  91. printf("%s magic=0x%x length=0x%02x version=0x%x\n", err_str,
  92. ivt_hdr->magic, ivt_hdr->length, ivt_hdr->version);
  93. return 1;
  94. }
  95. static int verify_ivt_header(struct ivt_header *ivt_hdr)
  96. {
  97. int result = 0;
  98. if (ivt_hdr->magic != IVT_HEADER_MAGIC)
  99. result = ivt_header_error("bad magic", ivt_hdr);
  100. if (be16_to_cpu(ivt_hdr->length) != IVT_TOTAL_LENGTH)
  101. result = ivt_header_error("bad length", ivt_hdr);
  102. if (ivt_hdr->version != IVT_HEADER_V1 &&
  103. ivt_hdr->version != IVT_HEADER_V2)
  104. result = ivt_header_error("bad version", ivt_hdr);
  105. return result;
  106. }
  107. #if !defined(CONFIG_SPL_BUILD)
  108. #define MAX_RECORD_BYTES (8*1024) /* 4 kbytes */
  109. struct record {
  110. uint8_t tag; /* Tag */
  111. uint8_t len[2]; /* Length */
  112. uint8_t par; /* Version */
  113. uint8_t contents[MAX_RECORD_BYTES];/* Record Data */
  114. bool any_rec_flag;
  115. };
  116. static char *rsn_str[] = {
  117. "RSN = HAB_RSN_ANY (0x00)\n",
  118. "RSN = HAB_ENG_FAIL (0x30)\n",
  119. "RSN = HAB_INV_ADDRESS (0x22)\n",
  120. "RSN = HAB_INV_ASSERTION (0x0C)\n",
  121. "RSN = HAB_INV_CALL (0x28)\n",
  122. "RSN = HAB_INV_CERTIFICATE (0x21)\n",
  123. "RSN = HAB_INV_COMMAND (0x06)\n",
  124. "RSN = HAB_INV_CSF (0x11)\n",
  125. "RSN = HAB_INV_DCD (0x27)\n",
  126. "RSN = HAB_INV_INDEX (0x0F)\n",
  127. "RSN = HAB_INV_IVT (0x05)\n",
  128. "RSN = HAB_INV_KEY (0x1D)\n",
  129. "RSN = HAB_INV_RETURN (0x1E)\n",
  130. "RSN = HAB_INV_SIGNATURE (0x18)\n",
  131. "RSN = HAB_INV_SIZE (0x17)\n",
  132. "RSN = HAB_MEM_FAIL (0x2E)\n",
  133. "RSN = HAB_OVR_COUNT (0x2B)\n",
  134. "RSN = HAB_OVR_STORAGE (0x2D)\n",
  135. "RSN = HAB_UNS_ALGORITHM (0x12)\n",
  136. "RSN = HAB_UNS_COMMAND (0x03)\n",
  137. "RSN = HAB_UNS_ENGINE (0x0A)\n",
  138. "RSN = HAB_UNS_ITEM (0x24)\n",
  139. "RSN = HAB_UNS_KEY (0x1B)\n",
  140. "RSN = HAB_UNS_PROTOCOL (0x14)\n",
  141. "RSN = HAB_UNS_STATE (0x09)\n",
  142. "RSN = INVALID\n",
  143. NULL
  144. };
  145. static char *sts_str[] = {
  146. "STS = HAB_SUCCESS (0xF0)\n",
  147. "STS = HAB_FAILURE (0x33)\n",
  148. "STS = HAB_WARNING (0x69)\n",
  149. "STS = INVALID\n",
  150. NULL
  151. };
  152. static char *eng_str[] = {
  153. "ENG = HAB_ENG_ANY (0x00)\n",
  154. "ENG = HAB_ENG_SCC (0x03)\n",
  155. "ENG = HAB_ENG_RTIC (0x05)\n",
  156. "ENG = HAB_ENG_SAHARA (0x06)\n",
  157. "ENG = HAB_ENG_CSU (0x0A)\n",
  158. "ENG = HAB_ENG_SRTC (0x0C)\n",
  159. "ENG = HAB_ENG_DCP (0x1B)\n",
  160. "ENG = HAB_ENG_CAAM (0x1D)\n",
  161. "ENG = HAB_ENG_SNVS (0x1E)\n",
  162. "ENG = HAB_ENG_OCOTP (0x21)\n",
  163. "ENG = HAB_ENG_DTCP (0x22)\n",
  164. "ENG = HAB_ENG_ROM (0x36)\n",
  165. "ENG = HAB_ENG_HDCP (0x24)\n",
  166. "ENG = HAB_ENG_RTL (0x77)\n",
  167. "ENG = HAB_ENG_SW (0xFF)\n",
  168. "ENG = INVALID\n",
  169. NULL
  170. };
  171. static char *ctx_str[] = {
  172. "CTX = HAB_CTX_ANY(0x00)\n",
  173. "CTX = HAB_CTX_FAB (0xFF)\n",
  174. "CTX = HAB_CTX_ENTRY (0xE1)\n",
  175. "CTX = HAB_CTX_TARGET (0x33)\n",
  176. "CTX = HAB_CTX_AUTHENTICATE (0x0A)\n",
  177. "CTX = HAB_CTX_DCD (0xDD)\n",
  178. "CTX = HAB_CTX_CSF (0xCF)\n",
  179. "CTX = HAB_CTX_COMMAND (0xC0)\n",
  180. "CTX = HAB_CTX_AUT_DAT (0xDB)\n",
  181. "CTX = HAB_CTX_ASSERT (0xA0)\n",
  182. "CTX = HAB_CTX_EXIT (0xEE)\n",
  183. "CTX = INVALID\n",
  184. NULL
  185. };
  186. static uint8_t hab_statuses[5] = {
  187. HAB_STS_ANY,
  188. HAB_FAILURE,
  189. HAB_WARNING,
  190. HAB_SUCCESS,
  191. -1
  192. };
  193. static uint8_t hab_reasons[26] = {
  194. HAB_RSN_ANY,
  195. HAB_ENG_FAIL,
  196. HAB_INV_ADDRESS,
  197. HAB_INV_ASSERTION,
  198. HAB_INV_CALL,
  199. HAB_INV_CERTIFICATE,
  200. HAB_INV_COMMAND,
  201. HAB_INV_CSF,
  202. HAB_INV_DCD,
  203. HAB_INV_INDEX,
  204. HAB_INV_IVT,
  205. HAB_INV_KEY,
  206. HAB_INV_RETURN,
  207. HAB_INV_SIGNATURE,
  208. HAB_INV_SIZE,
  209. HAB_MEM_FAIL,
  210. HAB_OVR_COUNT,
  211. HAB_OVR_STORAGE,
  212. HAB_UNS_ALGORITHM,
  213. HAB_UNS_COMMAND,
  214. HAB_UNS_ENGINE,
  215. HAB_UNS_ITEM,
  216. HAB_UNS_KEY,
  217. HAB_UNS_PROTOCOL,
  218. HAB_UNS_STATE,
  219. -1
  220. };
  221. static uint8_t hab_contexts[12] = {
  222. HAB_CTX_ANY,
  223. HAB_CTX_FAB,
  224. HAB_CTX_ENTRY,
  225. HAB_CTX_TARGET,
  226. HAB_CTX_AUTHENTICATE,
  227. HAB_CTX_DCD,
  228. HAB_CTX_CSF,
  229. HAB_CTX_COMMAND,
  230. HAB_CTX_AUT_DAT,
  231. HAB_CTX_ASSERT,
  232. HAB_CTX_EXIT,
  233. -1
  234. };
  235. static uint8_t hab_engines[16] = {
  236. HAB_ENG_ANY,
  237. HAB_ENG_SCC,
  238. HAB_ENG_RTIC,
  239. HAB_ENG_SAHARA,
  240. HAB_ENG_CSU,
  241. HAB_ENG_SRTC,
  242. HAB_ENG_DCP,
  243. HAB_ENG_CAAM,
  244. HAB_ENG_SNVS,
  245. HAB_ENG_OCOTP,
  246. HAB_ENG_DTCP,
  247. HAB_ENG_ROM,
  248. HAB_ENG_HDCP,
  249. HAB_ENG_RTL,
  250. HAB_ENG_SW,
  251. -1
  252. };
  253. static inline uint8_t get_idx(uint8_t *list, uint8_t tgt)
  254. {
  255. uint8_t idx = 0;
  256. uint8_t element = list[idx];
  257. while (element != -1) {
  258. if (element == tgt)
  259. return idx;
  260. element = list[++idx];
  261. }
  262. return -1;
  263. }
  264. static void process_event_record(uint8_t *event_data, size_t bytes)
  265. {
  266. struct record *rec = (struct record *)event_data;
  267. printf("\n\n%s", sts_str[get_idx(hab_statuses, rec->contents[0])]);
  268. printf("%s", rsn_str[get_idx(hab_reasons, rec->contents[1])]);
  269. printf("%s", ctx_str[get_idx(hab_contexts, rec->contents[2])]);
  270. printf("%s", eng_str[get_idx(hab_engines, rec->contents[3])]);
  271. }
  272. static void display_event(uint8_t *event_data, size_t bytes)
  273. {
  274. uint32_t i;
  275. if (!(event_data && bytes > 0))
  276. return;
  277. for (i = 0; i < bytes; i++) {
  278. if (i == 0)
  279. printf("\t0x%02x", event_data[i]);
  280. else if ((i % 8) == 0)
  281. printf("\n\t0x%02x", event_data[i]);
  282. else
  283. printf(" 0x%02x", event_data[i]);
  284. }
  285. process_event_record(event_data, bytes);
  286. }
  287. static int get_hab_status(void)
  288. {
  289. uint32_t index = 0; /* Loop index */
  290. uint8_t event_data[128]; /* Event data buffer */
  291. size_t bytes = sizeof(event_data); /* Event size in bytes */
  292. enum hab_config config = 0;
  293. enum hab_state state = 0;
  294. hab_rvt_report_event_t *hab_rvt_report_event;
  295. hab_rvt_report_status_t *hab_rvt_report_status;
  296. hab_rvt_report_event = hab_rvt_report_event_p;
  297. hab_rvt_report_status = hab_rvt_report_status_p;
  298. if (imx_hab_is_enabled())
  299. puts("\nSecure boot enabled\n");
  300. else
  301. puts("\nSecure boot disabled\n");
  302. /* Check HAB status */
  303. if (hab_rvt_report_status(&config, &state) != HAB_SUCCESS) {
  304. printf("\nHAB Configuration: 0x%02x, HAB State: 0x%02x\n",
  305. config, state);
  306. /* Display HAB Error events */
  307. while (hab_rvt_report_event(HAB_FAILURE, index, event_data,
  308. &bytes) == HAB_SUCCESS) {
  309. puts("\n");
  310. printf("--------- HAB Event %d -----------------\n",
  311. index + 1);
  312. puts("event data:\n");
  313. display_event(event_data, bytes);
  314. puts("\n");
  315. bytes = sizeof(event_data);
  316. index++;
  317. }
  318. }
  319. /* Display message if no HAB events are found */
  320. else {
  321. printf("\nHAB Configuration: 0x%02x, HAB State: 0x%02x\n",
  322. config, state);
  323. puts("No HAB Events Found!\n\n");
  324. }
  325. return 0;
  326. }
  327. static int do_hab_status(cmd_tbl_t *cmdtp, int flag, int argc,
  328. char * const argv[])
  329. {
  330. if ((argc != 1)) {
  331. cmd_usage(cmdtp);
  332. return 1;
  333. }
  334. get_hab_status();
  335. return 0;
  336. }
  337. static int do_authenticate_image(cmd_tbl_t *cmdtp, int flag, int argc,
  338. char * const argv[])
  339. {
  340. ulong addr, length, ivt_offset;
  341. int rcode = 0;
  342. if (argc < 4)
  343. return CMD_RET_USAGE;
  344. addr = simple_strtoul(argv[1], NULL, 16);
  345. length = simple_strtoul(argv[2], NULL, 16);
  346. ivt_offset = simple_strtoul(argv[3], NULL, 16);
  347. rcode = imx_hab_authenticate_image(addr, length, ivt_offset);
  348. if (rcode == 0)
  349. rcode = CMD_RET_SUCCESS;
  350. else
  351. rcode = CMD_RET_FAILURE;
  352. return rcode;
  353. }
  354. U_BOOT_CMD(
  355. hab_status, CONFIG_SYS_MAXARGS, 1, do_hab_status,
  356. "display HAB status",
  357. ""
  358. );
  359. U_BOOT_CMD(
  360. hab_auth_img, 4, 0, do_authenticate_image,
  361. "authenticate image via HAB",
  362. "addr length ivt_offset\n"
  363. "addr - image hex address\n"
  364. "length - image hex length\n"
  365. "ivt_offset - hex offset of IVT in the image"
  366. );
  367. #endif /* !defined(CONFIG_SPL_BUILD) */
  368. static bool imx_hab_is_enabled(void)
  369. {
  370. struct imx_sec_config_fuse_t *fuse =
  371. (struct imx_sec_config_fuse_t *)&imx_sec_config_fuse;
  372. uint32_t reg;
  373. int ret;
  374. ret = fuse_read(fuse->bank, fuse->word, &reg);
  375. if (ret) {
  376. puts("\nSecure boot fuse read error\n");
  377. return ret;
  378. }
  379. return (reg & IS_HAB_ENABLED_BIT) == IS_HAB_ENABLED_BIT;
  380. }
  381. int imx_hab_authenticate_image(uint32_t ddr_start, uint32_t image_size,
  382. uint32_t ivt_offset)
  383. {
  384. uint32_t load_addr = 0;
  385. size_t bytes;
  386. uint32_t ivt_addr = 0;
  387. int result = 1;
  388. ulong start;
  389. hab_rvt_authenticate_image_t *hab_rvt_authenticate_image;
  390. hab_rvt_entry_t *hab_rvt_entry;
  391. hab_rvt_exit_t *hab_rvt_exit;
  392. hab_rvt_check_target_t *hab_rvt_check_target;
  393. struct ivt *ivt;
  394. struct ivt_header *ivt_hdr;
  395. enum hab_status status;
  396. hab_rvt_authenticate_image = hab_rvt_authenticate_image_p;
  397. hab_rvt_entry = hab_rvt_entry_p;
  398. hab_rvt_exit = hab_rvt_exit_p;
  399. hab_rvt_check_target = hab_rvt_check_target_p;
  400. if (!imx_hab_is_enabled()) {
  401. puts("hab fuse not enabled\n");
  402. return 0;
  403. }
  404. printf("\nAuthenticate image from DDR location 0x%x...\n",
  405. ddr_start);
  406. hab_caam_clock_enable(1);
  407. /* Calculate IVT address header */
  408. ivt_addr = ddr_start + ivt_offset;
  409. ivt = (struct ivt *)ivt_addr;
  410. ivt_hdr = &ivt->hdr;
  411. /* Verify IVT header bugging out on error */
  412. if (verify_ivt_header(ivt_hdr))
  413. goto hab_caam_clock_disable;
  414. /* Verify IVT body */
  415. if (ivt->self != ivt_addr) {
  416. printf("ivt->self 0x%08x pointer is 0x%08x\n",
  417. ivt->self, ivt_addr);
  418. goto hab_caam_clock_disable;
  419. }
  420. start = ddr_start;
  421. bytes = image_size;
  422. if (hab_rvt_entry() != HAB_SUCCESS) {
  423. puts("hab entry function fail\n");
  424. goto hab_exit_failure_print_status;
  425. }
  426. status = hab_rvt_check_target(HAB_TGT_MEMORY, (void *)ddr_start, bytes);
  427. if (status != HAB_SUCCESS) {
  428. printf("HAB check target 0x%08x-0x%08x fail\n",
  429. ddr_start, ddr_start + bytes);
  430. goto hab_exit_failure_print_status;
  431. }
  432. #ifdef DEBUG
  433. printf("\nivt_offset = 0x%x, ivt addr = 0x%x\n", ivt_offset, ivt_addr);
  434. printf("ivt entry = 0x%08x, dcd = 0x%08x, csf = 0x%08x\n", ivt->entry,
  435. ivt->dcd, ivt->csf);
  436. puts("Dumping IVT\n");
  437. print_buffer(ivt_addr, (void *)(ivt_addr), 4, 0x8, 0);
  438. puts("Dumping CSF Header\n");
  439. print_buffer(ivt->csf, (void *)(ivt->csf), 4, 0x10, 0);
  440. #if !defined(CONFIG_SPL_BUILD)
  441. get_hab_status();
  442. #endif
  443. puts("\nCalling authenticate_image in ROM\n");
  444. printf("\tivt_offset = 0x%x\n", ivt_offset);
  445. printf("\tstart = 0x%08lx\n", start);
  446. printf("\tbytes = 0x%x\n", bytes);
  447. #endif
  448. /*
  449. * If the MMU is enabled, we have to notify the ROM
  450. * code, or it won't flush the caches when needed.
  451. * This is done, by setting the "pu_irom_mmu_enabled"
  452. * word to 1. You can find its address by looking in
  453. * the ROM map. This is critical for
  454. * authenticate_image(). If MMU is enabled, without
  455. * setting this bit, authentication will fail and may
  456. * crash.
  457. */
  458. /* Check MMU enabled */
  459. if (is_soc_type(MXC_SOC_MX6) && get_cr() & CR_M) {
  460. if (is_mx6dq()) {
  461. /*
  462. * This won't work on Rev 1.0.0 of
  463. * i.MX6Q/D, since their ROM doesn't
  464. * do cache flushes. don't think any
  465. * exist, so we ignore them.
  466. */
  467. if (!is_mx6dqp())
  468. writel(1, MX6DQ_PU_IROM_MMU_EN_VAR);
  469. } else if (is_mx6sdl()) {
  470. writel(1, MX6DLS_PU_IROM_MMU_EN_VAR);
  471. } else if (is_mx6sl()) {
  472. writel(1, MX6SL_PU_IROM_MMU_EN_VAR);
  473. }
  474. }
  475. load_addr = (uint32_t)hab_rvt_authenticate_image(
  476. HAB_CID_UBOOT,
  477. ivt_offset, (void **)&start,
  478. (size_t *)&bytes, NULL);
  479. if (hab_rvt_exit() != HAB_SUCCESS) {
  480. puts("hab exit function fail\n");
  481. load_addr = 0;
  482. }
  483. hab_exit_failure_print_status:
  484. #if !defined(CONFIG_SPL_BUILD)
  485. get_hab_status();
  486. #endif
  487. hab_caam_clock_disable:
  488. hab_caam_clock_enable(0);
  489. if (load_addr != 0)
  490. result = 0;
  491. return result;
  492. }