2018-01-27 23:32:46 +01:00
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/**
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* \file psa/crypto.h
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* \brief Platform Security Architecture cryptography module
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*/
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#ifndef PSA_CRYPTO_H
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#define PSA_CRYPTO_H
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#include "crypto_platform.h"
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2018-01-28 13:16:24 +01:00
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#include <stddef.h>
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2018-02-07 21:54:47 +01:00
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#ifdef __DOXYGEN_ONLY__
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/** \defgroup platform Implementation-specific definitions
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* @{
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*/
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2018-01-28 13:16:24 +01:00
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/** \brief Key slot number.
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*
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* This type represents key slots. It must be an unsigned integral
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* type.* The choice of type is implementation-dependent.
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* 0 is not a valid key slot number. The meaning of other values is
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* implementation dependent.
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*
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* At any given point in time, each key slot either contains a
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* cryptographic object, or is empty. Key slots are persistent:
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* once set, the cryptographic object remains in the key slot until
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* explicitly destroyed.
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*/
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typedef _unsigned_integral_type_ psa_key_slot_t;
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2018-02-07 21:54:47 +01:00
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/**@}*/
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#endif
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2018-01-27 23:32:46 +01:00
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#ifdef __cplusplus
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extern "C" {
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#endif
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/** \defgroup basic Basic definitions
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* @{
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*/
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/**
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* \brief Function return status.
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*
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* Zero indicates success, anything else indicates an error.
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*/
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typedef enum {
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/** The action was completed successfully. */
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PSA_SUCCESS = 0,
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/** The requested operation or a parameter is not supported
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by this implementation. */
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PSA_ERROR_NOT_SUPPORTED,
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/** The requested action is denied by a policy. */
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PSA_ERROR_NOT_PERMITTED,
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/** An output buffer is too small. */
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PSA_ERROR_BUFFER_TOO_SMALL,
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/** A slot is occupied, but must be empty to carry out the
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requested action. */
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PSA_ERROR_OCCUPIED_SLOT,
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/** A slot is empty, but must be occupied to carry out the
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requested action. */
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PSA_ERROR_EMPTY_SLOT,
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/** The requested action cannot be performed in the current state. */
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PSA_ERROR_BAD_STATE,
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/** The parameters passed to the function are invalid. */
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PSA_ERROR_INVALID_ARGUMENT,
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/** There is not enough runtime memory. */
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PSA_ERROR_INSUFFICIENT_MEMORY,
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/** There is not enough persistent storage. */
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PSA_ERROR_INSUFFICIENT_STORAGE,
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/** There was a communication failure inside the implementation. */
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PSA_ERROR_COMMUNICATION_FAILURE,
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2018-02-07 20:59:33 +01:00
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/** There was a storage failure that may have led to data loss. */
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PSA_ERROR_STORAGE_FAILURE,
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2018-01-27 23:32:46 +01:00
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/** A hardware failure was detected. */
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PSA_ERROR_HARDWARE_FAILURE,
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/** A tampering attempt was detected. */
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PSA_ERROR_TAMPERING_DETECTED,
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/** There is not enough entropy to generate random data needed
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for the requested action. */
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PSA_ERROR_INSUFFICIENT_ENTROPY,
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2018-02-07 20:59:33 +01:00
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/** The signature, MAC or hash is incorrect. */
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2018-01-27 23:32:46 +01:00
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PSA_ERROR_INVALID_SIGNATURE,
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2018-02-07 20:59:33 +01:00
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/** The decrypted padding is incorrect. */
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PSA_ERROR_INVALID_PADDING,
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2018-01-27 23:32:46 +01:00
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/** An error occurred that does not correspond to any defined
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failure cause. */
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PSA_ERROR_UNKNOWN_ERROR,
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} psa_status_t;
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/**
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* \brief Library initialization.
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*
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* Applications must call this function before calling any other
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* function in this module.
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*
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* Applications may call this function more than once. Once a call
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* succeeds, subsequent calls are guaranteed to succeed.
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*
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* \return * \c PSA_SUCCESS: success.
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* * \c PSA_ERROR_INSUFFICIENT_MEMORY
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* * \c PSA_ERROR_COMMUNICATION_FAILURE
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* * \c PSA_ERROR_HARDWARE_FAILURE
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* * \c PSA_ERROR_TAMPERING_DETECTED
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* * \c PSA_ERROR_INSUFFICIENT_ENTROPY
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*/
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psa_status_t psa_crypto_init(void);
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2018-02-03 23:57:22 +01:00
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#define BITS_TO_BYTES(bits) (((bits) + 7) / 8)
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#define BYTES_TO_BITS(bytes) ((bytes) * 8)
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2018-01-27 23:32:46 +01:00
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/**@}*/
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2018-01-28 13:16:24 +01:00
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/** \defgroup crypto_types Key and algorithm types
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* @{
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*/
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typedef uint32_t psa_key_type_t;
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2018-02-06 18:57:29 +01:00
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#define PSA_KEY_TYPE_NONE ((psa_key_type_t)0x00000000)
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#define PSA_KEY_TYPE_VENDOR_FLAG ((psa_key_type_t)0x80000000)
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#define PSA_KEY_TYPE_CATEGORY_MASK ((psa_key_type_t)0x7e000000)
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#define PSA_KEY_TYPE_RAW_DATA ((psa_key_type_t)0x02000000)
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#define PSA_KEY_TYPE_CATEGORY_SYMMETRIC ((psa_key_type_t)0x04000000)
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#define PSA_KEY_TYPE_CATEGORY_ASYMMETRIC ((psa_key_type_t)0x06000000)
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#define PSA_KEY_TYPE_PAIR_FLAG ((psa_key_type_t)0x01000000)
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#define PSA_KEY_TYPE_HMAC ((psa_key_type_t)0x02000001)
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#define PSA_KEY_TYPE_AES ((psa_key_type_t)0x04000001)
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#define PSA_KEY_TYPE_DES ((psa_key_type_t)0x04000002)
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#define PSA_KEY_TYPE_CAMELLIA ((psa_key_type_t)0x04000003)
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#define PSA_KEY_TYPE_ARC4 ((psa_key_type_t)0x04000004)
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#define PSA_KEY_TYPE_RSA_PUBLIC_KEY ((psa_key_type_t)0x06010000)
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#define PSA_KEY_TYPE_RSA_KEYPAIR ((psa_key_type_t)0x07010000)
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#define PSA_KEY_TYPE_ECC_BASE ((psa_key_type_t)0x06030000)
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#define PSA_KEY_TYPE_ECC_CURVE_MASK ((psa_key_type_t)0x0000ffff)
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#define PSA_KEY_TYPE_IS_VENDOR_DEFINED(type) \
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2018-01-28 13:16:24 +01:00
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(((type) & PSA_KEY_TYPE_VENDOR_FLAG) != 0)
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2018-02-06 18:57:29 +01:00
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#define PSA_KEY_TYPE_IS_ASYMMETRIC(type) \
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(((type) & PSA_KEY_TYPE_CATEGORY_MASK) == PSA_KEY_TYPE_CATEGORY_ASYMMETRIC)
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#define PSA_KEY_TYPE_IS_PUBLIC_KEY(type) \
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(((type) & (PSA_KEY_TYPE_CATEGORY_MASK | PSA_KEY_TYPE_PAIR_FLAG) == \
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PSA_KEY_TYPE_CATEGORY_ASYMMETRIC))
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#define PSA_KEY_TYPE_IS_KEYPAIR(type) \
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(((type) & (PSA_KEY_TYPE_CATEGORY_MASK | PSA_KEY_TYPE_PAIR_FLAG)) == \
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(PSA_KEY_TYPE_CATEGORY_ASYMMETRIC | PSA_KEY_TYPE_PAIR_FLAG))
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2018-02-03 23:57:22 +01:00
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#define PSA_KEY_TYPE_IS_RSA(type) \
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2018-02-06 18:57:29 +01:00
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(((type) & ~PSA_KEY_TYPE_PAIR_FLAG) == PSA_KEY_TYPE_RSA_PUBLIC_KEY)
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2018-02-03 22:43:28 +01:00
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#define PSA_KEY_TYPE_IS_ECC(type) \
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2018-02-06 18:57:29 +01:00
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(((type) & ~PSA_KEY_TYPE_ECC_CURVE_MASK) == PSA_KEY_TYPE_ECC_BASE)
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2018-01-28 13:16:24 +01:00
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2018-02-03 22:44:14 +01:00
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typedef uint32_t psa_algorithm_t;
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2018-02-06 18:57:29 +01:00
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#define PSA_ALG_VENDOR_FLAG ((psa_algorithm_t)0x80000000)
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#define PSA_ALG_CATEGORY_MASK ((psa_algorithm_t)0x7f000000)
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#define PSA_ALG_CATEGORY_HASH ((psa_algorithm_t)0x01000000)
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#define PSA_ALG_CATEGORY_MAC ((psa_algorithm_t)0x02000000)
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#define PSA_ALG_CATEGORY_CIPHER ((psa_algorithm_t)0x04000000)
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#define PSA_ALG_CATEGORY_AEAD ((psa_algorithm_t)0x06000000)
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#define PSA_ALG_CATEGORY_SIGN ((psa_algorithm_t)0x10000000)
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#define PSA_ALG_CATEGORY_ASYMMETRIC_ENCRYPTION ((psa_algorithm_t)0x12000000)
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#define PSA_ALG_CATEGORY_KEY_AGREEMENT ((psa_algorithm_t)0x22000000)
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#define PSA_ALG_CATEGORY_KEY_DERIVATION ((psa_algorithm_t)0x30000000)
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#define PSA_ALG_IS_VENDOR_DEFINED(alg) \
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(((alg) & PSA_ALG_VENDOR_FLAG) != 0)
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#define PSA_ALG_IS_HASH(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_HASH)
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#define PSA_ALG_IS_MAC(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_MAC)
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#define PSA_ALG_IS_CIPHER(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_CIPHER)
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#define PSA_ALG_IS_AEAD(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_AEAD)
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#define PSA_ALG_IS_SIGN(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_SIGN)
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#define PSA_ALG_IS_ASYMMETRIC_ENCRYPTION(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_ASYMMETRIC_ENCRYPTION)
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#define PSA_ALG_IS_KEY_AGREEMENT(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_KEY_AGREEMENT)
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#define PSA_ALG_IS_KEY_DERIVATION(alg) \
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(((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_KEY_DERIVATION)
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#define PSA_ALG_HASH_MASK ((psa_algorithm_t)0x000000ff)
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#define PSA_ALG_MD2 ((psa_algorithm_t)0x01000001)
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#define PSA_ALG_MD4 ((psa_algorithm_t)0x01000002)
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#define PSA_ALG_MD5 ((psa_algorithm_t)0x01000003)
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#define PSA_ALG_SHA_256_128 ((psa_algorithm_t)0x01000004)
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#define PSA_ALG_RIPEMD160 ((psa_algorithm_t)0x01000005)
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#define PSA_ALG_SHA_1 ((psa_algorithm_t)0x01000006)
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#define PSA_ALG_SHA_256_160 ((psa_algorithm_t)0x01000007)
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#define PSA_ALG_SHA_224 ((psa_algorithm_t)0x01000008)
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#define PSA_ALG_SHA_256 ((psa_algorithm_t)0x01000009)
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#define PSA_ALG_SHA_384 ((psa_algorithm_t)0x0100000a)
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#define PSA_ALG_SHA_512 ((psa_algorithm_t)0x0100000b)
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#define PSA_ALG_SHA_512_224 ((psa_algorithm_t)0x0100000c)
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#define PSA_ALG_SHA_512_256 ((psa_algorithm_t)0x0100000d)
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#define PSA_ALG_SHA3_224 ((psa_algorithm_t)0x01000010)
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#define PSA_ALG_SHA3_256 ((psa_algorithm_t)0x01000011)
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#define PSA_ALG_SHA3_384 ((psa_algorithm_t)0x01000012)
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#define PSA_ALG_SHA3_512 ((psa_algorithm_t)0x01000013)
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#define PSA_ALG_HMAC_BASE ((psa_algorithm_t)0x02800000)
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#define PSA_ALG_HMAC(hash_alg) \
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(PSA_ALG_HMAC_BASE | (hash_alg))
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#define PSA_ALG_CBC_MAC ((psa_algorithm_t)0x02000001)
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#define PSA_ALG_CMAC ((psa_algorithm_t)0x02000002)
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#define PSA_ALG_GMAC ((psa_algorithm_t)0x02000003)
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#define PSA_ALG_BLOCK_CIPHER_BASE_MASK ((psa_algorithm_t)0x000000ff)
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#define PSA_ALG_BLOCK_CIPHER_PADDING_MASK ((psa_algorithm_t)0x007f0000)
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#define PSA_ALG_BLOCK_CIPHER_PAD_PKCS7 ((psa_algorithm_t)0x00010000)
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#define PSA_ALG_CBC_BASE ((psa_algorithm_t)0x04000001)
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#define PSA_ALG_CFB_BASE ((psa_algorithm_t)0x04000003)
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#define PSA_ALG_OFB_BASE ((psa_algorithm_t)0x04000004)
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#define PSA_ALG_XTS_BASE ((psa_algorithm_t)0x04000005)
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#define PSA_ALG_STREAM_CIPHER ((psa_algorithm_t)0x04800000)
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#define PSA_ALG_CTR ((psa_algorithm_t)0x04800001)
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#define PSA_ALG_CCM ((psa_algorithm_t)0x06000002)
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#define PSA_ALG_GCM ((psa_algorithm_t)0x06000003)
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#define PSA_ALG_RSA_PKCS1V15_RAW ((psa_algorithm_t)0x10010000)
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#define PSA_ALG_RSA_PSS_MGF1 ((psa_algorithm_t)0x10020000)
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#define PSA_ALG_RSA_OAEP ((psa_algorithm_t)0x12020000)
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#define PSA_ALG_RSA_PKCS1V15(hash_alg) \
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(PSA_ALG_RSA_PKCS1V15_RAW | ((hash_alg) & PSA_ALG_HASH_MASK))
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#define PSA_ALG_IS_RSA_PKCS1V15(alg) \
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2018-02-03 22:44:14 +01:00
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(((alg) & 0x7fffff00) == PSA_ALG_RSA_PKCS1V15_RAW)
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2018-02-06 18:57:29 +01:00
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#define PSA_ALG_RSA_GET_HASH(alg) \
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(((alg) & PSA_ALG_HASH_MASK) | PSA_ALG_CATEGORY_HASH)
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2018-01-28 13:16:24 +01:00
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/**@}*/
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/** \defgroup key_management Key management
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* @{
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*/
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/**
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* \brief Import a key in binary format.
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*
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* This function supports any output from psa_export_key().
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*
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* \return * \c PSA_SUCCESS: success.
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* * \c PSA_ERROR_NOT_SUPPORTED
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* * \c PSA_ERROR_INVALID_ARGUMENT
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* * \c PSA_ERROR_INSUFFICIENT_MEMORY
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* * \c PSA_ERROR_COMMUNICATION_FAILURE
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* * \c PSA_ERROR_HARDWARE_FAILURE
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* * \c PSA_ERROR_TAMPERING_DETECTED
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*/
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psa_status_t psa_import_key(psa_key_slot_t key,
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psa_key_type_t type,
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const uint8_t *data,
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size_t data_length);
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/**
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* \brief Destroy a key.
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*
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* \return * \c PSA_SUCCESS: success.
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* * \c PSA_ERROR_EMPTY_SLOT
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* * \c PSA_ERROR_COMMUNICATION_FAILURE
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* * \c PSA_ERROR_HARDWARE_FAILURE
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* * \c PSA_ERROR_TAMPERING_DETECTED
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*/
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psa_status_t psa_destroy_key(psa_key_slot_t key);
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/**
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* \brief Get basic metadata about a key.
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*
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* \return * \c PSA_SUCCESS: success.
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* * \c PSA_ERROR_EMPTY_SLOT
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* * \c PSA_ERROR_COMMUNICATION_FAILURE
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* * \c PSA_ERROR_HARDWARE_FAILURE
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* * \c PSA_ERROR_TAMPERING_DETECTED
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*/
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psa_status_t psa_get_key_information(psa_key_slot_t key,
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psa_key_type_t *type,
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|
size_t *bits);
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|
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/**
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|
* \brief Export a key in binary format.
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*
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|
* The output of this function can be passed to psa_import_key() to
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|
* create an equivalent object.
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|
*
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|
* If a key is created with psa_import_key() and then exported with
|
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|
* this function, it is not guaranteed that the resulting data is
|
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|
* identical: the implementation may choose a different representation
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|
* of the same key.
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*
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|
* \return * \c PSA_SUCCESS: success.
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|
* * \c PSA_ERROR_EMPTY_SLOT
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|
* * \c PSA_ERROR_COMMUNICATION_FAILURE
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|
* * \c PSA_ERROR_HARDWARE_FAILURE
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|
* * \c PSA_ERROR_TAMPERING_DETECTED
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|
|
|
*/
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psa_status_t psa_export_key(psa_key_slot_t key,
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|
uint8_t *data,
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|
size_t data_size,
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|
|
size_t *data_length);
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|
2018-02-03 22:44:14 +01:00
|
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|
/**@}*/
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|
2018-02-07 21:05:37 +01:00
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|
/** \defgroup hash Message digests
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* @{
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|
*/
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|
typedef struct psa_hash_operation_s psa_hash_operation_t;
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#define PSA_HASH_FINAL_SIZE(alg) \
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|
( \
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(alg) == PSA_ALG_MD2 ? 16 : \
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|
(alg) == PSA_ALG_MD4 ? 16 : \
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|
(alg) == PSA_ALG_MD5 ? 16 : \
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|
(alg) == PSA_ALG_SHA_256_128 ? 16 : \
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|
(alg) == PSA_ALG_RIPEMD160 ? 20 : \
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|
(alg) == PSA_ALG_SHA_1 ? 20 : \
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(alg) == PSA_ALG_SHA_256_160 ? 20 : \
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|
(alg) == PSA_ALG_SHA_224 ? 28 : \
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(alg) == PSA_ALG_SHA_256 ? 32 : \
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|
(alg) == PSA_ALG_SHA_384 ? 48 : \
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|
(alg) == PSA_ALG_SHA_512 ? 64 : \
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|
(alg) == PSA_ALG_SHA_512_224 ? 28 : \
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|
(alg) == PSA_ALG_SHA_512_256 ? 32 : \
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|
|
(alg) == PSA_ALG_SHA3_224 ? 28 : \
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|
|
(alg) == PSA_ALG_SHA3_256 ? 32 : \
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|
|
(alg) == PSA_ALG_SHA3_384 ? 48 : \
|
|
|
|
(alg) == PSA_ALG_SHA3_512 ? 64 : \
|
|
|
|
0)
|
|
|
|
|
|
|
|
psa_status_t psa_hash_start(psa_hash_operation_t *operation,
|
|
|
|
psa_algorithm_t alg);
|
|
|
|
|
|
|
|
psa_status_t psa_hash_update(psa_hash_operation_t *operation,
|
|
|
|
const uint8_t *input,
|
|
|
|
size_t input_length);
|
|
|
|
|
|
|
|
psa_status_t psa_hash_finish(psa_hash_operation_t *operation,
|
|
|
|
uint8_t *hash,
|
|
|
|
size_t hash_size,
|
|
|
|
size_t *hash_length);
|
|
|
|
|
|
|
|
psa_status_t psa_hash_verify(psa_hash_operation_t *operation,
|
|
|
|
const uint8_t *hash,
|
|
|
|
size_t hash_length);
|
|
|
|
|
|
|
|
psa_status_t ps_hash_abort(psa_hash_operation_t *operation);
|
|
|
|
|
|
|
|
/**@}*/
|
|
|
|
|
|
|
|
/** \defgroup MAC Message authentication codes
|
2018-02-03 22:44:14 +01:00
|
|
|
/** \defgroup asymmetric Asymmetric cryptography
|
|
|
|
* @{
|
|
|
|
*/
|
|
|
|
|
2018-02-03 23:57:22 +01:00
|
|
|
/**
|
|
|
|
* \brief Maximum ECDSA signature size for a given curve bit size
|
|
|
|
*
|
|
|
|
* \param curve_bits Curve size in bits
|
|
|
|
* \return Maximum signature size in bytes
|
|
|
|
*
|
|
|
|
* \note This macro returns a compile-time constant if its argument is one.
|
|
|
|
*
|
|
|
|
* \warning This macro may evaluate its argument multiple times.
|
|
|
|
*/
|
|
|
|
/*
|
|
|
|
* RFC 4492 page 20:
|
|
|
|
*
|
|
|
|
* Ecdsa-Sig-Value ::= SEQUENCE {
|
|
|
|
* r INTEGER,
|
|
|
|
* s INTEGER
|
|
|
|
* }
|
|
|
|
*
|
|
|
|
* Size is at most
|
|
|
|
* 1 (tag) + 1 (len) + 1 (initial 0) + curve_bytes for each of r and s,
|
|
|
|
* twice that + 1 (tag) + 2 (len) for the sequence
|
|
|
|
* (assuming curve_bytes is less than 126 for r and s,
|
|
|
|
* and less than 124 (total len <= 255) for the sequence)
|
|
|
|
*/
|
|
|
|
#define PSA_ECDSA_SIGNATURE_SIZE(curve_bits) \
|
|
|
|
( /*T,L of SEQUENCE*/ ((curve_bits) >= 61 * 8 ? 3 : 2) + \
|
|
|
|
/*T,L of r,s*/ 2 * (((curve_bits) >= 127 * 8 ? 3 : 2) + \
|
|
|
|
/*V of r,s*/ ((curve_bits) + 8) / 8))
|
|
|
|
|
|
|
|
|
|
|
|
#define PSA_ASYMMETRIC_SIGN_OUTPUT_SIZE(key_type, key_bits, alg) \
|
|
|
|
(PSA_KEY_TYPE_IS_RSA(key_type) ? ((void)alg, BITS_TO_BYTES(key_bits)) : \
|
|
|
|
PSA_KEY_TYPE_IS_ECC(key_type) ? PSA_ECDSA_SIGNATURE_SIZE(key_bits) : \
|
|
|
|
0)
|
|
|
|
|
2018-02-03 22:44:14 +01:00
|
|
|
/**
|
|
|
|
* \brief Sign a hash or short message with a private key.
|
|
|
|
*
|
|
|
|
*/
|
|
|
|
psa_status_t psa_asymmetric_sign(psa_key_slot_t key,
|
|
|
|
psa_algorithm_t alg,
|
|
|
|
const uint8_t *hash,
|
|
|
|
size_t hash_length,
|
|
|
|
const uint8_t *salt,
|
|
|
|
size_t salt_length,
|
|
|
|
uint8_t *signature,
|
|
|
|
size_t signature_size,
|
|
|
|
size_t *signature_length);
|
|
|
|
|
|
|
|
/**
|
|
|
|
* \brief Verify the signature a hash or short message using a public key.
|
|
|
|
*
|
|
|
|
*/
|
|
|
|
psa_status_t psa_asymmetric_verify(psa_key_slot_t key,
|
|
|
|
psa_algorithm_t alg,
|
|
|
|
const uint8_t *hash,
|
|
|
|
size_t hash_length,
|
|
|
|
const uint8_t *salt,
|
|
|
|
size_t salt_length,
|
|
|
|
uint8_t *signature,
|
|
|
|
size_t signature_size);
|
|
|
|
|
2018-01-28 13:16:24 +01:00
|
|
|
/**@}*/
|
|
|
|
|
2018-01-27 23:32:46 +01:00
|
|
|
#ifdef __cplusplus
|
|
|
|
}
|
|
|
|
#endif
|
|
|
|
|
2018-02-07 21:05:37 +01:00
|
|
|
/* The file "crypto_struct.h" contains definitions for
|
|
|
|
* implementation-specific structs that are declared above. */
|
|
|
|
#include "crypto_struct.h"
|
|
|
|
|
|
|
|
/* The file "crypto_extra.h" contains vendor-specific definitions. This
|
|
|
|
* can include vendor-defined algorithms, extra functions, etc. */
|
2018-01-27 23:32:46 +01:00
|
|
|
#include "crypto_extra.h"
|
|
|
|
|
|
|
|
#endif /* PSA_CRYPTO_H */
|