import RT-Thread@9217865c without bsp, libcpu and components/net
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e2376a3709
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189
components/drivers/hwcrypto/hw_symmetric.h
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components/drivers/hwcrypto/hw_symmetric.h
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/*
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* Copyright (c) 2006-2023, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2019-04-25 tyx the first version
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*/
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#ifndef __HW_SYMMETRIC_H__
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#define __HW_SYMMETRIC_H__
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#include <hwcrypto.h>
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#ifndef RT_HWCRYPTO_IV_MAX_SIZE
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#define RT_HWCRYPTO_IV_MAX_SIZE (16)
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#endif
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#ifndef RT_HWCRYPTO_KEYBIT_MAX_SIZE
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#define RT_HWCRYPTO_KEYBIT_MAX_SIZE (256)
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#endif
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#define SYMMTRIC_MODIFY_KEY (0x1 << 0)
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#define SYMMTRIC_MODIFY_IV (0x1 << 1)
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#define SYMMTRIC_MODIFY_IVOFF (0x1 << 2)
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#ifdef __cplusplus
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extern "C" {
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#endif
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struct hwcrypto_symmetric;
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struct hwcrypto_symmetric_info;
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struct hwcrypto_symmetric_ops
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{
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rt_err_t (*crypt)(struct hwcrypto_symmetric *symmetric_ctx,
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struct hwcrypto_symmetric_info *symmetric_info); /**< Hardware Symmetric Encryption and Decryption Callback */
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};
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/**
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* @brief Hardware driver usage, including input and output information
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*/
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struct hwcrypto_symmetric_info
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{
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hwcrypto_mode mode; /**< crypto mode. HWCRYPTO_MODE_ENCRYPT or HWCRYPTO_MODE_DECRYPT */
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const rt_uint8_t *in; /**< Input data */
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rt_uint8_t *out; /**< Output data will be written */
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rt_size_t length; /**< The length of the input data in Bytes. It's a multiple of block size. */
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};
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/**
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* @brief Symmetric crypto context. Hardware driver usage
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*/
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struct hwcrypto_symmetric
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{
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struct rt_hwcrypto_ctx parent; /**< Inheritance from hardware crypto context */
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rt_uint16_t flags; /**< key or iv or ivoff has been changed. The flag will be set up */
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rt_uint16_t iv_len; /**< initialization vector effective length */
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rt_uint16_t iv_off; /**< The offset in IV */
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rt_uint16_t key_bitlen; /**< The crypto key bit length */
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rt_uint8_t iv[RT_HWCRYPTO_IV_MAX_SIZE]; /**< The initialization vector */
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rt_uint8_t key[RT_HWCRYPTO_KEYBIT_MAX_SIZE >> 3]; /**< The crypto key */
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const struct hwcrypto_symmetric_ops *ops; /**< !! Hardware initializes this value when creating context !! */
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};
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/**
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* @brief Creating Symmetric Encryption and Decryption Context
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*
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* @param device Hardware crypto device
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* @param type Type of symmetric crypto context
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*
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* @return Symmetric crypto context
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*/
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struct rt_hwcrypto_ctx *rt_hwcrypto_symmetric_create(struct rt_hwcrypto_device *device,
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hwcrypto_type type);
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/**
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* @brief Destroy Symmetric Encryption and Decryption Context
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*
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* @param ctx Symmetric crypto context
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*/
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void rt_hwcrypto_symmetric_destroy(struct rt_hwcrypto_ctx *ctx);
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/**
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* @brief This function performs a symmetric encryption or decryption operation
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*
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* @param ctx Symmetric crypto context
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* @param mode Operation mode. HWCRYPTO_MODE_ENCRYPT or HWCRYPTO_MODE_DECRYPT
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* @param length The length of the input data in Bytes. This must be a multiple of the block size
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* @param in The buffer holding the input data
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* @param out The buffer holding the output data
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*
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* @return RT_EOK on success.
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*/
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rt_err_t rt_hwcrypto_symmetric_crypt(struct rt_hwcrypto_ctx *ctx, hwcrypto_mode mode,
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rt_size_t length, const rt_uint8_t *in, rt_uint8_t *out);
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/**
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* @brief Set Symmetric Encryption and Decryption Key
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*
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* @param ctx Symmetric crypto context
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* @param key The crypto key
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* @param bitlen The crypto key bit length
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*
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* @return RT_EOK on success.
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*/
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rt_err_t rt_hwcrypto_symmetric_setkey(struct rt_hwcrypto_ctx *ctx, const rt_uint8_t *key, rt_uint32_t bitlen);
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/**
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* @brief Get Symmetric Encryption and Decryption Key
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*
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* @param ctx Symmetric crypto context
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* @param key The crypto key buffer
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* @param bitlen The crypto key bit length
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*
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* @return Key length of copy
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*/
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int rt_hwcrypto_symmetric_getkey(struct rt_hwcrypto_ctx *ctx, rt_uint8_t *key, rt_uint32_t bitlen);
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/**
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* @brief Set Symmetric Encryption and Decryption initialization vector
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*
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* @param ctx Symmetric crypto context
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* @param iv The crypto initialization vector
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* @param len The crypto initialization vector length
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*
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* @return RT_EOK on success.
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*/
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rt_err_t rt_hwcrypto_symmetric_setiv(struct rt_hwcrypto_ctx *ctx, const rt_uint8_t *iv, rt_size_t len);
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/**
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* @brief Get Symmetric Encryption and Decryption initialization vector
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*
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* @param ctx Symmetric crypto context
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* @param iv The crypto initialization vector buffer
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* @param len The crypto initialization vector buffer length
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*
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* @return IV length of copy
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*/
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int rt_hwcrypto_symmetric_getiv(struct rt_hwcrypto_ctx *ctx, rt_uint8_t *iv, rt_size_t len);
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/**
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* @brief Set offset in initialization vector
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*
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* @param ctx Symmetric crypto context
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* @param iv_off The offset in IV
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*/
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void rt_hwcrypto_symmetric_set_ivoff(struct rt_hwcrypto_ctx *ctx, rt_int32_t iv_off);
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/**
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* @brief Get offset in initialization vector
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*
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* @param ctx Symmetric crypto context
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* @param iv_off It must point to a valid memory
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*/
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void rt_hwcrypto_symmetric_get_ivoff(struct rt_hwcrypto_ctx *ctx, rt_int32_t *iv_off);
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/**
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* @brief This function copy symmetric crypto context
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*
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* @param des The destination symmetric crypto context
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* @param src The symmetric crypto context to be copy
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*
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* @return RT_EOK on success.
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*/
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rt_err_t rt_hwcrypto_symmetric_cpy(struct rt_hwcrypto_ctx *des, const struct rt_hwcrypto_ctx *src);
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/**
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* @brief Reset symmetric crypto context
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*
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* @param ctx Symmetric crypto context
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*/
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void rt_hwcrypto_symmetric_reset(struct rt_hwcrypto_ctx *ctx);
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/**
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* @brief Setting symmetric crypto context type
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*
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* @param ctx Symmetric crypto context
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* @param type Types of settings
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*
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* @return RT_EOK on success.
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*/
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rt_err_t rt_hwcrypto_symmetric_set_type(struct rt_hwcrypto_ctx *ctx, hwcrypto_type type);
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#ifdef __cplusplus
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}
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#endif
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#endif
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