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								// Copyright 2020 Espressif Systems (Shanghai) PTE LTD
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								//
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								// Licensed under the Apache License, Version 2.0 (the "License");
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								// you may not use this file except in compliance with the License.
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								// You may obtain a copy of the License at
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								//     http://www.apache.org/licenses/LICENSE-2.0
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								//
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								// Unless required by applicable law or agreed to in writing, software
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								// distributed under the License is distributed on an "AS IS" BASIS,
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								// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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								// See the License for the specific language governing permissions and
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								// limitations under the License.
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								#pragma once
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								#include "esp_hmac.h"
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								#include "esp_err.h"
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								#ifdef __cplusplus
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								extern "C" {
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								#endif
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								#define ESP_ERR_HW_CRYPTO_DS_HMAC_FAIL           ESP_ERR_HW_CRYPTO_BASE + 0x1 /*!< HMAC peripheral problem */
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								#define ESP_ERR_HW_CRYPTO_DS_INVALID_KEY         ESP_ERR_HW_CRYPTO_BASE + 0x2 /*!< given HMAC key isn't correct,
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								                                                                                HMAC peripheral problem */
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								#define ESP_ERR_HW_CRYPTO_DS_INVALID_DIGEST      ESP_ERR_HW_CRYPTO_BASE + 0x4 /*!< message digest check failed,
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								                                                                                result is invalid */
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								#define ESP_ERR_HW_CRYPTO_DS_INVALID_PADDING     ESP_ERR_HW_CRYPTO_BASE + 0x5 /*!< padding check failed, but result
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								                                                                                   is produced anyway and can be read*/
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								#define ESP_DS_IV_LEN 16
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								/* Length of parameter 'C' stored in flash */
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								#define ESP_DS_C_LEN (12672 / 8)
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								typedef struct esp_ds_context esp_ds_context_t;
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								typedef enum {
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								    ESP_DS_RSA_1024 = (1024 / 32) - 1,
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								    ESP_DS_RSA_2048 = (2048 / 32) - 1,
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								    ESP_DS_RSA_3072 = (3072 / 32) - 1,
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								    ESP_DS_RSA_4096 = (4096 / 32) - 1
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								} esp_digital_signature_length_t;
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								/**
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								 * Encrypted private key data. Recommended to store in flash in this format.
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								 *
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								 * @note This struct has to match to one from the ROM code! This documentation is mostly taken from there.
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								 */
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								typedef struct esp_digital_signature_data {
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								    /**
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								     * RSA LENGTH register parameters
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								     * (number of words in RSA key & operands, minus one).
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								     *
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								     * Max value 127 (for RSA 4096).
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								     *
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								     * This value must match the length field encrypted and stored in 'c',
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								     * or invalid results will be returned. (The DS peripheral will
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								     * always use the value in 'c', not this value, so an attacker can't
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								     * alter the DS peripheral results this way, it will just truncate or
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								     * extend the message and the resulting signature in software.)
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								     *
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								     * @note In IDF, the enum type length is the same as of type unsigned, so they can be used interchangably.
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								     *       See the ROM code for the original declaration of struct \c ets_ds_data_t.
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								     */
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								    esp_digital_signature_length_t rsa_length;
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								    /**
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								     * IV value used to encrypt 'c'
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								     */
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								    uint8_t iv[ESP_DS_IV_LEN];
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								    /**
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								     * Encrypted Digital Signature parameters. Result of AES-CBC encryption
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								     * of plaintext values. Includes an encrypted message digest.
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								     */
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								    uint8_t c[ESP_DS_C_LEN];
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								} esp_ds_data_t;
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								/** Plaintext parameters used by Digital Signature.
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								 *
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								 * Not used for signing with DS peripheral, but can be encrypted
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								 * in-device by calling esp_ds_encrypt_params()
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								 *
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								 * @note This documentation is mostly taken from the ROM code.
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								 */
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								typedef struct {
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								    uint32_t Y[4096/32];                    //!< RSA exponent
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								    uint32_t M[4096/32];                    //!< RSA modulus
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								    uint32_t Rb[4096/32];                   //!< RSA r inverse operand
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								    uint32_t M_prime;                       //!< RSA M prime operand
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								    esp_digital_signature_length_t length;  //!< RSA length
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								} esp_ds_p_data_t;
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								/**
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								 * Sign the message.
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								 *
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								 * This function is a wrapper around \c esp_ds_finish_sign() and \c esp_ds_start_sign(), so do not use them
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								 * in parallel.
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								 * It blocks until the signing is finished and then returns the signature.
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								 *
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								 * @note This function locks the HMAC, SHA, AES and RSA components during its entire execution time.
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								 *
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								 * @param message the message to be signed; its length is determined by data->rsa_length
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								 * @param data the encrypted signing key data (AES encrypted RSA key + IV)
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								 * @param key_id the HMAC key ID determining the HMAC key of the HMAC which will be used to decrypt the
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								 *        signing key data
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								 * @param signature the destination of the signature, should be (data->rsa_length + 1)*4 bytes long
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								 *
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								 * @return
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								 *      - ESP_OK if successful, the signature was written to the parameter \c signature.
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								 *      - ESP_ERR_INVALID_ARG if one of the parameters is NULL or data->rsa_length is too long or 0
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								 *      - ESP_ERR_HW_CRYPTO_DS_HMAC_FAIL if there was an HMAC failure during retrieval of the decryption key
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								 *      - ESP_ERR_NO_MEM if there hasn't been enough memory to allocate the context object
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_KEY if there's a problem with passing the HMAC key to the DS component
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_DIGEST if the message digest didn't match; the signature is invalid.
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_PADDING if the message padding is incorrect, the signature can be read though
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								 *        since the message digest matches.
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								 */
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								esp_err_t esp_ds_sign(const void *message,
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								        const esp_ds_data_t *data,
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								        hmac_key_id_t key_id,
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								        void *signature);
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								/**
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								 * Start the signing process.
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								 *
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								 * This function yields a context object which needs to be passed to \c esp_ds_finish_sign() to finish the signing
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								 * process.
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								 *
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								 * @note This function locks the HMAC, SHA, AES and RSA components, so the user has to ensure to call
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								 *       \c esp_ds_finish_sign() in a timely manner.
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								 *
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								 * @param message the message to be signed; its length is determined by data->rsa_length
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								 * @param data the encrypted signing key data (AES encrypted RSA key + IV)
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								 * @param key_id the HMAC key ID determining the HMAC key of the HMAC which will be used to decrypt the
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								 *        signing key data
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								 * @param esp_ds_ctx the context object which is needed for finishing the signing process later
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								 *
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								 * @return
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								 *      - ESP_OK if successful, the ds operation was started now and has to be finished with \c esp_ds_finish_sign()
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								 *      - ESP_ERR_INVALID_ARG if one of the parameters is NULL or data->rsa_length is too long or 0
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								 *      - ESP_ERR_HW_CRYPTO_DS_HMAC_FAIL if there was an HMAC failure during retrieval of the decryption key
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								 *      - ESP_ERR_NO_MEM if there hasn't been enough memory to allocate the context object
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_KEY if there's a problem with passing the HMAC key to the DS component
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								 */
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								esp_err_t esp_ds_start_sign(const void *message,
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								        const esp_ds_data_t *data,
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								        hmac_key_id_t key_id,
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								        esp_ds_context_t **esp_ds_ctx);
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								/**
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								 * Return true if the DS peripheral is busy, otherwise false.
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								 *
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								 * @note Only valid if \c esp_ds_start_sign() was called before.
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								 */
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								bool esp_ds_is_busy(void);
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								/**
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								 * Finish the signing process.
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								 *
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								 * @param signature the destination of the signature, should be (data->rsa_length + 1)*4 bytes long
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								 * @param esp_ds_ctx the context object retreived by \c esp_ds_start_sign()
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								 *
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								 * @return
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								 *      - ESP_OK if successful, the ds operation has been finished and the result is written to signature.
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								 *      - ESP_ERR_INVALID_ARG if one of the parameters is NULL
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_DIGEST if the message digest didn't match; the signature is invalid.
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								 *      - ESP_ERR_HW_CRYPTO_DS_INVALID_PADDING if the message padding is incorrect, the signature can be read though
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								 *        since the message digest matches.
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								 */
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								esp_err_t esp_ds_finish_sign(void *signature, esp_ds_context_t *esp_ds_ctx);
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								/**
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								 * Encrypt the private key parameters.
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								 *
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								 * @param data Output buffer to store encrypted data, suitable for later use generating signatures.
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								 *        The allocated memory must be in internal memory and word aligned since it's filled by DMA. Both is asserted
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								 *        at run time.
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								 * @param iv Pointer to 16 byte IV buffer, will be copied into 'data'. Should be randomly generated bytes each time.
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								 * @param p_data Pointer to input plaintext key data. The expectation is this data will be deleted after this process
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								 *        is done and 'data' is stored.
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								 * @param key Pointer to 32 bytes of key data. Type determined by key_type parameter. The expectation is the
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								 *        corresponding HMAC key will be stored to efuse and then permanently erased.
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								 *
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								 * @return
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								 *      - ESP_OK if successful, the ds operation has been finished and the result is written to signature.
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								 *      - ESP_ERR_INVALID_ARG if one of the parameters is NULL or p_data->rsa_length is too long
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								 */
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								esp_err_t esp_ds_encrypt_params(esp_ds_data_t *data,
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								        const void *iv,
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								        const esp_ds_p_data_t *p_data,
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								        const void *key);
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								#ifdef __cplusplus
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								}
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								#endif
							 |