mirror of
https://github.com/espressif/esp-idf.git
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133 lines
4.0 KiB
C
133 lines
4.0 KiB
C
/*
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* SPDX-FileCopyrightText: 2024 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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#pragma once
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#include <stdint.h>
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#include <stdbool.h>
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#include "ets_sys.h"
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#include "ecdsa.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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#if CONFIG_SECURE_BOOT_V2_ENABLED || CONFIG_SECURE_SIGNED_APPS_NO_SECURE_BOOT
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typedef struct ets_secure_boot_sig_block ets_secure_boot_sig_block_t;
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typedef struct ets_secure_boot_signature ets_secure_boot_signature_t;
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typedef struct ets_secure_boot_key_digests ets_secure_boot_key_digests_t;
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/* Anti-FI measure: use full words for success/fail, instead of
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0/non-zero
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*/
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typedef enum {
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SB_SUCCESS = 0x3A5A5AA5,
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SB_FAILED = 0x7533885E,
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} ets_secure_boot_status_t;
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/* Verify bootloader image (reconfigures cache to map),
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with key digests provided as parameters.)
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Can be used to verify secure boot status before enabling
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secure boot permanently.
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If stage_load parameter is true, bootloader is copied into staging
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buffer in RAM at the same time.
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If result is SB_SUCCESS, the "simple hash" of the bootloader is
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copied into verified_hash.
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*/
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ets_secure_boot_status_t ets_secure_boot_verify_bootloader_with_keys(uint8_t *verified_hash, const ets_secure_boot_key_digests_t *trusted_keys, bool stage_load);
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/* Read key digests from efuse. Any revoked/missing digests will be
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marked as NULL
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*/
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ETS_STATUS ets_secure_boot_read_key_digests(ets_secure_boot_key_digests_t *trusted_keys);
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/* Verify supplied signature against supplied digest, using
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supplied trusted key digests.
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Doesn't reconfigure cache or any other hardware access except for RSA peripheral.
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If result is SB_SUCCESS, the image_digest value is copied into verified_digest.
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*/
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ets_secure_boot_status_t ets_secure_boot_verify_signature(const ets_secure_boot_signature_t *sig, const uint8_t *image_digest, const ets_secure_boot_key_digests_t *trusted_keys, uint8_t *verified_digest);
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/* Revoke a public key digest in efuse.
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@param index Digest to revoke. Must be 0, 1 or 2.
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*/
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void ets_secure_boot_revoke_public_key_digest(int index);
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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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/* Secure Boot V2 signature block
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(Up to 3 in a signature sector are appended to the image)
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*/
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#if CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME
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struct ets_secure_boot_sig_block {
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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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};
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#elif CONFIG_SECURE_SIGNED_APPS_ECDSA_V2_SCHEME
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struct __attribute((packed)) ets_secure_boot_sig_block {
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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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struct {
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struct {
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uint8_t curve_id; /* ETS_ECDSA_CURVE_P192 / ETS_ECDSA_CURVE_P256 */
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uint8_t point[64]; /* X followed by Y (both little-endian), plus zero bytes if P192 */
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} key;
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uint8_t signature[64]; /* r followed by s (both little-endian) */
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uint8_t padding[1031];
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} ecdsa;
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uint32_t block_crc; /* note: crc covers all bytes in the structure before it, regardless of version field */
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uint8_t _padding[16];
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};
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#endif
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ESP_STATIC_ASSERT(sizeof(ets_secure_boot_sig_block_t) == 1216, "invalid sig block size");
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#define SECURE_BOOT_NUM_BLOCKS 3
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/* V2 Secure boot signature sector (up to 3 blocks) */
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struct ets_secure_boot_signature {
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ets_secure_boot_sig_block_t block[SECURE_BOOT_NUM_BLOCKS];
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uint8_t _padding[4096 - (sizeof(ets_secure_boot_sig_block_t) * SECURE_BOOT_NUM_BLOCKS)];
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};
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ESP_STATIC_ASSERT(sizeof(ets_secure_boot_signature_t) == 4096, "invalid sig sector size");
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#define MAX_KEY_DIGESTS 3
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struct ets_secure_boot_key_digests {
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const void *key_digests[MAX_KEY_DIGESTS];
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bool allow_key_revoke;
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};
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#endif /* CONFIG_SECURE_BOOT_V2_ENABLED || CONFIG_SECURE_SIGNED_APPS_NO_SECURE_BOOT */
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#ifdef __cplusplus
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}
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#endif
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