esp_secure_boot.h 11 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2015-2021 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #pragma once
  7. #include <stdbool.h>
  8. #include <esp_err.h>
  9. #include "soc/efuse_periph.h"
  10. #include "esp_image_format.h"
  11. #include "esp_rom_efuse.h"
  12. #include "sdkconfig.h"
  13. #include "esp_rom_crc.h"
  14. #if CONFIG_IDF_TARGET_ESP32
  15. #include "esp32/rom/efuse.h"
  16. #include "esp32/rom/secure_boot.h"
  17. #elif CONFIG_IDF_TARGET_ESP32S2
  18. #include "esp32s2/rom/efuse.h"
  19. #include "esp32s2/rom/secure_boot.h"
  20. #elif CONFIG_IDF_TARGET_ESP32C3
  21. #include "esp32c3/rom/efuse.h"
  22. #include "esp32c3/rom/secure_boot.h"
  23. #elif CONFIG_IDF_TARGET_ESP32S3
  24. #include "esp32s3/rom/efuse.h"
  25. #include "esp32s3/rom/secure_boot.h"
  26. #endif
  27. #ifdef CONFIG_SECURE_BOOT_V1_ENABLED
  28. #if !defined(CONFIG_SECURE_SIGNED_ON_BOOT) || !defined(CONFIG_SECURE_SIGNED_ON_UPDATE) || !defined(CONFIG_SECURE_SIGNED_APPS)
  29. #error "internal sdkconfig error, secure boot should always enable all signature options"
  30. #endif
  31. #endif
  32. #ifdef __cplusplus
  33. extern "C" {
  34. #endif
  35. /* Support functions for secure boot features.
  36. Can be compiled as part of app or bootloader code.
  37. */
  38. #define ESP_SECURE_BOOT_DIGEST_LEN 32
  39. /** @brief Is secure boot currently enabled in hardware?
  40. *
  41. * This means that the ROM bootloader code will only boot
  42. * a verified secure bootloader from now on.
  43. *
  44. * @return true if secure boot is enabled.
  45. */
  46. static inline bool esp_secure_boot_enabled(void)
  47. {
  48. #if CONFIG_IDF_TARGET_ESP32
  49. #ifdef CONFIG_SECURE_BOOT_V1_ENABLED
  50. return REG_READ(EFUSE_BLK0_RDATA6_REG) & EFUSE_RD_ABS_DONE_0;
  51. #elif CONFIG_SECURE_BOOT_V2_ENABLED
  52. return ets_use_secure_boot_v2();
  53. #endif
  54. #else
  55. return esp_rom_efuse_is_secure_boot_enabled();
  56. #endif
  57. return false; /* Secure Boot not enabled in menuconfig */
  58. }
  59. /** @brief Generate secure digest from bootloader image
  60. *
  61. * @important This function is intended to be called from bootloader code only.
  62. *
  63. * This function is only used in the context of the Secure Boot V1 scheme.
  64. *
  65. * If secure boot is not yet enabled for bootloader, this will:
  66. * 1) generate the secure boot key and burn it on EFUSE
  67. * (without enabling R/W protection)
  68. * 2) generate the digest from bootloader and save it
  69. * to flash address 0x0
  70. *
  71. * If first boot gets interrupted after calling this function
  72. * but before esp_secure_boot_permanently_enable() is called, then
  73. * the key burned on EFUSE will not be regenerated, unless manually
  74. * done using espefuse.py tool
  75. *
  76. * @return ESP_OK if secure boot digest is generated
  77. * successfully or found to be already present
  78. */
  79. esp_err_t esp_secure_boot_generate_digest(void);
  80. /** @brief Enable secure boot V1 if it is not already enabled.
  81. *
  82. * @important If this function succeeds, secure boot V1 is permanently
  83. * enabled on the chip via efuse.
  84. *
  85. * @important This function is intended to be called from bootloader code only.
  86. *
  87. * @important In case of Secure Boot V1, this will enable r/w protection
  88. * of secure boot key on EFUSE, therefore it is to be ensured that
  89. * esp_secure_boot_generate_digest() is called before this .If secure boot is not
  90. * yet enabled for bootloader, this will
  91. * 1) enable R/W protection of secure boot key on EFUSE
  92. * 2) enable secure boot by blowing the EFUSE_RD_ABS_DONE_0 efuse.
  93. *
  94. * This function does not verify secure boot of the bootloader (the
  95. * ROM bootloader does this.)
  96. *
  97. * Will fail if efuses have been part-burned in a way that indicates
  98. * secure boot should not or could not be correctly enabled.
  99. *
  100. * @return ESP_ERR_INVALID_STATE if efuse state doesn't allow
  101. * secure boot to be enabled cleanly. ESP_OK if secure boot
  102. * is enabled on this chip from now on.
  103. */
  104. esp_err_t esp_secure_boot_permanently_enable(void);
  105. /** @brief Enables secure boot V2 if it is not already enabled.
  106. *
  107. * @important If this function succeeds, secure boot V2 is permanently
  108. * enabled on the chip via efuse.
  109. *
  110. * @important This function is intended to be called from bootloader code only.
  111. *
  112. * @important In case of Secure Boot V2, this will enable write protection
  113. * of secure boot key on EFUSE in BLK2. .If secure boot is not
  114. * yet enabled for bootloader, this will
  115. * 1) enable W protection of secure boot key on EFUSE
  116. * 2) enable secure boot by blowing the EFUSE_RD_ABS_DONE_1 efuse.
  117. *
  118. * This function does not verify secure boot of the bootloader (the
  119. * ROM bootloader does this.)
  120. *
  121. * @param image_data Image metadata of the application to be loaded.
  122. *
  123. * Will fail if efuses have been part-burned in a way that indicates
  124. * secure boot should not or could not be correctly enabled.
  125. *
  126. * @return ESP_ERR_INVALID_STATE if efuse state doesn't allow
  127. * secure boot to be enabled cleanly. ESP_OK if secure boot
  128. * is enabled on this chip from now on.
  129. */
  130. esp_err_t esp_secure_boot_v2_permanently_enable(const esp_image_metadata_t *image_data);
  131. /** @brief Verify the secure boot signature appended to some binary data in flash.
  132. *
  133. * For ECDSA Scheme (Secure Boot V1) - deterministic ECDSA w/ SHA256 image
  134. * For RSA Scheme (Secure Boot V2) - RSA-PSS Verification of the SHA-256 image
  135. *
  136. * Public key is compiled into the calling program in the ECDSA Scheme.
  137. * See the apt docs/security/secure-boot-v1.rst or docs/security/secure-boot-v2.rst for details.
  138. *
  139. * @param src_addr Starting offset of the data in flash.
  140. * @param length Length of data in bytes. Signature is appended -after- length bytes.
  141. *
  142. * If flash encryption is enabled, the image will be transparently decrypted while being verified.
  143. *
  144. * @note This function doesn't have any fault injection resistance so should not be called
  145. * during a secure boot itself (but can be called when verifying an update, etc.)
  146. *
  147. * @return ESP_OK if signature is valid, ESP_ERR_INVALID_STATE if
  148. * signature fails, ESP_FAIL for other failures (ie can't read flash).
  149. */
  150. esp_err_t esp_secure_boot_verify_signature(uint32_t src_addr, uint32_t length);
  151. /** @brief Secure boot verification block, on-flash data format. */
  152. typedef struct {
  153. uint32_t version;
  154. uint8_t signature[64];
  155. } esp_secure_boot_sig_block_t;
  156. /** @brief Verify the ECDSA secure boot signature block for Secure Boot V1.
  157. *
  158. * Calculates Deterministic ECDSA w/ SHA256 based on the SHA256 hash of the image. ECDSA signature
  159. * verification must be enabled in project configuration to use this function.
  160. *
  161. * Similar to esp_secure_boot_verify_signature(), but can be used when the digest is precalculated.
  162. * @param sig_block Pointer to ECDSA signature block data
  163. * @param image_digest Pointer to 32 byte buffer holding SHA-256 hash.
  164. * @param verified_digest Pointer to 32 byte buffer that will receive verified digest if verification completes. (Used during bootloader implementation only, result is invalid otherwise.)
  165. *
  166. */
  167. esp_err_t esp_secure_boot_verify_ecdsa_signature_block(const esp_secure_boot_sig_block_t *sig_block, const uint8_t *image_digest, uint8_t *verified_digest);
  168. #if !CONFIG_IDF_TARGET_ESP32 || CONFIG_ESP32_REV_MIN_3
  169. /**
  170. * @brief Structure to hold public key digests calculated from the signature blocks of a single image.
  171. *
  172. * Each image can have one or more signature blocks (up to SECURE_BOOT_NUM_BLOCKS). Each signature block includes a public key.
  173. */
  174. typedef struct {
  175. uint8_t key_digests[SECURE_BOOT_NUM_BLOCKS][ESP_SECURE_BOOT_DIGEST_LEN]; /* SHA of the public key components in the signature block */
  176. unsigned num_digests; /* Number of valid digests, starting at index 0 */
  177. } esp_image_sig_public_key_digests_t;
  178. /** @brief Verify the RSA secure boot signature block for Secure Boot V2.
  179. *
  180. * Performs RSA-PSS Verification of the SHA-256 image based on the public key
  181. * in the signature block, compared against the public key digest stored in efuse.
  182. *
  183. * Similar to esp_secure_boot_verify_signature(), but can be used when the digest is precalculated.
  184. * @param sig_block Pointer to RSA signature block data
  185. * @param image_digest Pointer to 32 byte buffer holding SHA-256 hash.
  186. * @param verified_digest Pointer to 32 byte buffer that will receive verified digest if verification completes. (Used during bootloader implementation only, result is invalid otherwise.)
  187. *
  188. */
  189. esp_err_t esp_secure_boot_verify_rsa_signature_block(const ets_secure_boot_signature_t *sig_block, const uint8_t *image_digest, uint8_t *verified_digest);
  190. #endif // !CONFIG_IDF_TARGET_ESP32 || CONFIG_ESP32_REV_MIN_3
  191. /** @brief Legacy ECDSA verification function
  192. *
  193. * @note Deprecated, call either esp_secure_boot_verify_ecdsa_signature_block() or esp_secure_boot_verify_rsa_signature_block() instead.
  194. *
  195. * @param sig_block Pointer to ECDSA signature block data
  196. * @param image_digest Pointer to 32 byte buffer holding SHA-256 hash.
  197. */
  198. esp_err_t esp_secure_boot_verify_signature_block(const esp_secure_boot_sig_block_t *sig_block, const uint8_t *image_digest)
  199. __attribute__((deprecated("use esp_secure_boot_verify_ecdsa_signature_block instead")));
  200. #define FLASH_OFFS_SECURE_BOOT_IV_DIGEST 0
  201. /** @brief Secure boot IV+digest header */
  202. typedef struct {
  203. uint8_t iv[128];
  204. uint8_t digest[64];
  205. } esp_secure_boot_iv_digest_t;
  206. /** @brief Check the secure boot V2 during startup
  207. *
  208. * @note This function is called automatically during app startup,
  209. * it doesn't need to be called from the app.
  210. *
  211. * Verifies the secure boot config during startup:
  212. *
  213. * - Correct any insecure secure boot settings
  214. */
  215. void esp_secure_boot_init_checks(void);
  216. #if !BOOTLOADER_BUILD && CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME
  217. /** @brief Scan the current running app for signature blocks
  218. *
  219. * @note This function doesn't verify that the signatures are valid or the
  220. * corresponding public keys are trusted, it only reads the number of signature
  221. * blocks present and optionally calculates the digests of the public keys
  222. * provided in the signature blocks.
  223. *
  224. * @param digest_public_keys If true, the key_digests fields in the
  225. * public_key_digests structure will be filled with the digests of the public
  226. * key provided in each signature block. Note that if Secure Boot V2 is enabled,
  227. * each public key will only be trusted if the same digest is also present in
  228. * eFuse (but this is not checked by this function).
  229. *
  230. * @param public_key_digests[out] Structure is initialized with the num_digests
  231. * field set to the number of signatures found. If digest_public_keys is set,
  232. * the public key digests are also calculated and stored here.
  233. *
  234. * @return
  235. * - ESP_OK - At least one signature was found
  236. * - ESP_ERR_NOT_FOUND - No signatures were found, num_digests value will be zero
  237. * - ESP_FAIL - An error occured trying to read the signature blocks from flash
  238. */
  239. esp_err_t esp_secure_boot_get_signature_blocks_for_running_app(bool digest_public_keys, esp_image_sig_public_key_digests_t *public_key_digests);
  240. #endif // !BOOTLOADER_BUILD && CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME
  241. #ifdef __cplusplus
  242. }
  243. #endif