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https://github.com/espressif/esp-idf.git
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123 lines
3.8 KiB
C
123 lines
3.8 KiB
C
/*
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* SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include "sdkconfig.h"
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#pragma once
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#include <stdint.h>
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#include "ets_sys.h"
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#include "esp_assert.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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void ets_secure_boot_start(void);
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void ets_secure_boot_finish(void);
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void ets_secure_boot_hash(const uint32_t *buf);
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void ets_secure_boot_obtain(void);
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int ets_secure_boot_check(uint32_t *buf);
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void ets_secure_boot_rd_iv(uint32_t *buf);
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void ets_secure_boot_rd_abstract(uint32_t *buf);
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bool ets_secure_boot_check_start(uint8_t abs_index, uint32_t iv_addr);
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int ets_secure_boot_check_finish(uint32_t *abstract);
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#if CONFIG_ESP32_REV_MIN_FULL >= 300
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#include "rsa_pss.h"
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#define SECURE_BOOT_NUM_BLOCKS 1
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#define CRC_SIGN_BLOCK_LEN 1196
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#define SIG_BLOCK_PADDING 4096
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#define ETS_SECURE_BOOT_V2_SIGNATURE_MAGIC 0xE7
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// Anti-FI measure: use full words for success/fail internally, instead of 0/non-zero
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typedef enum {
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SBV2_SUCCESS = 0x3A5A5AA5,
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SB_SUCCESS = 0x3A5A5AA5,
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SBV2_FAILED = 0xA533885A,
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SB_FAILED = 0xA533885A,
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} secure_boot_v2_status_t;
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/* Secure Boot Version 2 signature format for ESP32 ECO3 */
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typedef struct {
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uint8_t magic_byte;
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uint8_t version;
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uint8_t _reserved1;
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uint8_t _reserved2;
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uint8_t image_digest[32];
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ets_rsa_pubkey_t key;
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uint8_t signature[384];
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uint32_t block_crc;
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uint8_t _padding[16];
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} ets_secure_boot_sig_block_t;
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ESP_STATIC_ASSERT(sizeof(ets_secure_boot_sig_block_t) == 1216, "invalid sig block size");
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/* ROM supports up to 3, but IDF only checks the first one (SECURE_BOOT_NUM_BLOCKS) */
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#define SECURE_BOOT_MAX_APPENDED_SIGN_BLOCKS_TO_IMAGE 3
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/* Multiple key block support */
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typedef struct {
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ets_secure_boot_sig_block_t block[SECURE_BOOT_MAX_APPENDED_SIGN_BLOCKS_TO_IMAGE];
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uint8_t _padding[4096 - (sizeof(ets_secure_boot_sig_block_t) * SECURE_BOOT_MAX_APPENDED_SIGN_BLOCKS_TO_IMAGE)];
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} ets_secure_boot_signature_t;
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ESP_STATIC_ASSERT(sizeof(ets_secure_boot_signature_t) == 4096, "invalid sig sector size");
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typedef struct {
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const void *key_digests[SECURE_BOOT_NUM_BLOCKS];
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} ets_secure_boot_key_digests_t;
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/** @brief Verifies the signature block appended to a firmware image. Implemented in the ROM.
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*
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* This function is used to verify the bootloader before burning its public key hash into Efuse.
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* Also, it is used to verify the app on loading the image on boot and on OTA.
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*
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* @param sig The signature block flashed aligned 4096 bytes from the firmware. (ROM implementation expects 3 blocks, sig->block[3]).
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* @param image_digest The SHA-256 Digest of the firmware to be verified
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* @param trusted_key_digest The SHA-256 Digest of the public key (ets_rsa_pubkey_t) of a single signature block.
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* @param verified_digest RSA-PSS signature of image_digest. Pass an uninitialised array.
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*
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* @return SBV2_SUCCESS if signature is valid
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* SBV2_FAILED for failures.
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*/
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secure_boot_v2_status_t ets_secure_boot_verify_signature(const ets_secure_boot_signature_t *sig, const uint8_t *image_digest, const uint8_t *trusted_key_digest, uint8_t *verified_digest);
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/** @brief This function verifies the 1st stage bootloader. Implemented in the ROM.
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* Reboots post verification. It reads the Efuse key for verification of the public key.
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*
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* This function is not used in the current workflow.
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*
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*/
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void ets_secure_boot_verify_boot_bootloader(void);
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/** @brief Confirms if the secure boot V2 has been enabled. Implemented in the ROM.
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*
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* In ESP32-ECO3 - It checks the value of ABS_DONE_1 in EFuse.
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*
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* @return true if is Secure boot v2 has been enabled
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* False if Secure boot v2 has not been enabled.
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*/
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bool ets_use_secure_boot_v2(void);
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#else
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#define SECURE_BOOT_NUM_BLOCKS 0
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#endif /* CONFIG_ESP32_REV_MIN_FULL >= 300 */
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#ifdef __cplusplus
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}
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#endif
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