27238fcbd8
The purpose of this commit and the following is for psa_key_id_t to always be as defined by the PSA Cryptography API specification. Currently psa_key_id_t departs from its specification definition when MBEDTLS_PSA_CRYPTO_KEY_FILE_ID_ENCODES_OWNER configuration flag is set. In that configuration, it is set to be equal to psa_key_file_id_t which in that configuration encodes an owner identifier along the key identifier. Type psa_key_file_id_t was meant to be the key identifier type used throughout the library code. If MBEDTLS_PSA_CRYPTO_KEY_FILE_ID_ENCODES_OWNER is set it includes both a key and owner identifier, otherwise it is equal to psa_key_id_t. It has not been the key identifier type throughout the library so far because when the PSA Cryptography specification was developped the library Doxygen documentation was used to generate the PSA Cryptography API specification thus the need to use psa_key_id_t and not psa_key_file_id_t. As this constraint does not hold anymore, move to psa_key_file_id_t as the key identifier type throughout the library code. By the way, this commit updates the key identifier initialization in the tests to be compatible with a composit key identifier. A psa_key_id_make() inline function is introduced to initialize key identifiers (composit ot not) at runtime. Signed-off-by: Ronald Cron <ronald.cron@arm.com>
188 lines
6.5 KiB
C
188 lines
6.5 KiB
C
/*
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* PSA crypto support for secure element drivers
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*/
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/*
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* Copyright The Mbed TLS Contributors
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* SPDX-License-Identifier: Apache-2.0
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may
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* 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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*
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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, WITHOUT
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* 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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*/
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#ifndef PSA_CRYPTO_SE_H
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#define PSA_CRYPTO_SE_H
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#if !defined(MBEDTLS_CONFIG_FILE)
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#include "mbedtls/config.h"
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#else
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#include MBEDTLS_CONFIG_FILE
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#endif
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#include "psa/crypto.h"
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#include "psa/crypto_se_driver.h"
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/** The maximum location value that this implementation supports
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* for a secure element.
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*
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* This is not a characteristic that each PSA implementation has, but a
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* limitation of the current implementation due to the constraints imposed
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* by storage. See #PSA_CRYPTO_SE_DRIVER_ITS_UID_BASE.
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*
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* The minimum location value for a secure element is 1, like on any
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* PSA implementation (0 means a transparent key).
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*/
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#define PSA_MAX_SE_LOCATION 255
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/** The base of the range of ITS file identifiers for secure element
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* driver persistent data.
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*
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* We use a slice of the implementation reserved range 0xffff0000..0xffffffff,
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* specifically the range 0xfffffe00..0xfffffeff. The length of this range
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* drives the value of #PSA_MAX_SE_LOCATION. The identifier 0xfffffe00 is
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* actually not used since it corresponds to #PSA_KEY_LOCATION_LOCAL_STORAGE
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* which doesn't have a driver.
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*/
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#define PSA_CRYPTO_SE_DRIVER_ITS_UID_BASE ( (psa_app_key_id_t) 0xfffffe00 )
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/** The maximum number of registered secure element driver locations. */
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#define PSA_MAX_SE_DRIVERS 4
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/** Unregister all secure element drivers.
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*
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* \warning Do not call this function while the library is in the initialized
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* state. This function is only intended to be called at the end
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* of mbedtls_psa_crypto_free().
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*/
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void psa_unregister_all_se_drivers( void );
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/** Initialize all secure element drivers.
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*
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* Called from psa_crypto_init().
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*/
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psa_status_t psa_init_all_se_drivers( void );
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/** A structure that describes a registered secure element driver.
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*
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* A secure element driver table entry contains a pointer to the
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* driver's method table as well as the driver context structure.
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*/
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typedef struct psa_se_drv_table_entry_s psa_se_drv_table_entry_t;
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/** Return the secure element driver information for a lifetime value.
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*
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* \param lifetime The lifetime value to query.
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* \param[out] p_methods On output, if there is a driver,
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* \c *methods points to its method table.
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* Otherwise \c *methods is \c NULL.
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* \param[out] p_drv_context On output, if there is a driver,
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* \c *drv_context points to its context
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* structure.
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* Otherwise \c *drv_context is \c NULL.
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*
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* \retval 1
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* \p lifetime corresponds to a registered driver.
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* \retval 0
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* \p lifetime does not correspond to a registered driver.
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*/
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int psa_get_se_driver( psa_key_lifetime_t lifetime,
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const psa_drv_se_t **p_methods,
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psa_drv_se_context_t **p_drv_context);
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/** Return the secure element driver table entry for a lifetime value.
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*
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* \param lifetime The lifetime value to query.
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*
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* \return The driver table entry for \p lifetime, or
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* \p NULL if \p lifetime does not correspond to a registered driver.
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*/
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psa_se_drv_table_entry_t *psa_get_se_driver_entry(
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psa_key_lifetime_t lifetime );
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/** Return the method table for a secure element driver.
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*
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* \param[in] driver The driver table entry to access, or \c NULL.
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*
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* \return The driver's method table.
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* \c NULL if \p driver is \c NULL.
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*/
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const psa_drv_se_t *psa_get_se_driver_methods(
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const psa_se_drv_table_entry_t *driver );
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/** Return the context of a secure element driver.
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*
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* \param[in] driver The driver table entry to access, or \c NULL.
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*
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* \return A pointer to the driver context.
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* \c NULL if \p driver is \c NULL.
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*/
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psa_drv_se_context_t *psa_get_se_driver_context(
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psa_se_drv_table_entry_t *driver );
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/** Find a free slot for a key that is to be created.
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*
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* This function calls the relevant method in the driver to find a suitable
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* slot for a key with the given attributes.
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*
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* \param[in] attributes Metadata about the key that is about to be created.
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* \param[in] driver The driver table entry to query.
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* \param[out] slot_number On success, a slot number that is free in this
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* secure element.
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*/
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psa_status_t psa_find_se_slot_for_key(
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const psa_key_attributes_t *attributes,
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psa_key_creation_method_t method,
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psa_se_drv_table_entry_t *driver,
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psa_key_slot_number_t *slot_number );
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/** Destoy a key in a secure element.
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*
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* This function calls the relevant driver method to destroy a key
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* and updates the driver's persistent data.
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*/
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psa_status_t psa_destroy_se_key( psa_se_drv_table_entry_t *driver,
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psa_key_slot_number_t slot_number );
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/** Load the persistent data of a secure element driver.
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*
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* \param driver The driver table entry containing the persistent
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* data to load from storage.
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*/
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psa_status_t psa_load_se_persistent_data(
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const psa_se_drv_table_entry_t *driver );
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/** Save the persistent data of a secure element driver.
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*
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* \param[in] driver The driver table entry containing the persistent
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* data to save to storage.
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*/
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psa_status_t psa_save_se_persistent_data(
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const psa_se_drv_table_entry_t *driver );
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/** Destroy the persistent data of a secure element driver.
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*
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* This is currently only used for testing.
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*
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* \param[in] location The location identifier for the driver whose
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* persistent data is to be erased.
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*/
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psa_status_t psa_destroy_se_persistent_data( psa_key_location_t location );
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/** The storage representation of a key whose data is in a secure element.
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*/
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typedef struct
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{
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uint8_t slot_number[sizeof( psa_key_slot_number_t )];
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uint8_t bits[sizeof( psa_key_bits_t )];
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} psa_se_key_data_storage_t;
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#endif /* PSA_CRYPTO_SE_H */
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