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	Special handling of volatile key identifiers is not needed eventually, they can be handled just as key identifier in the vendor range. Signed-off-by: Ronald Cron <ronald.cron@arm.com>
		
			
				
	
	
		
			473 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			473 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 *  PSA crypto layer on top of Mbed TLS crypto
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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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#include "common.h"
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#if defined(MBEDTLS_PSA_CRYPTO_C)
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#include "psa_crypto_service_integration.h"
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#include "psa/crypto.h"
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#include "psa_crypto_core.h"
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#include "psa_crypto_slot_management.h"
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#include "psa_crypto_storage.h"
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#if defined(MBEDTLS_PSA_CRYPTO_SE_C)
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#include "psa_crypto_se.h"
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#endif
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#include <stdlib.h>
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#include <string.h>
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#if defined(MBEDTLS_PLATFORM_C)
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#include "mbedtls/platform.h"
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#else
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#define mbedtls_calloc calloc
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#define mbedtls_free   free
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#endif
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#define ARRAY_LENGTH( array ) ( sizeof( array ) / sizeof( *( array ) ) )
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typedef struct
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{
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    psa_key_slot_t key_slots[PSA_KEY_SLOT_COUNT];
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    unsigned key_slots_initialized : 1;
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} psa_global_data_t;
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static psa_global_data_t global_data;
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psa_status_t psa_validate_key_id(
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    mbedtls_svc_key_id_t key, int vendor_ok )
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{
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    psa_key_id_t key_id = MBEDTLS_SVC_KEY_ID_GET_KEY_ID( key );
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    if( ( PSA_KEY_ID_USER_MIN <= key_id ) &&
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        ( key_id <= PSA_KEY_ID_USER_MAX ) )
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        return( PSA_SUCCESS );
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    if( vendor_ok &&
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        ( PSA_KEY_ID_VENDOR_MIN <= key_id ) &&
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        ( key_id <= PSA_KEY_ID_VENDOR_MAX ) )
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        return( PSA_SUCCESS );
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    return( PSA_ERROR_INVALID_HANDLE );
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}
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/** Search for the description of a key given its identifier.
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 *
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 *  The descriptions of volatile keys and loaded persistent keys are
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 *  stored in key slots. This function returns a pointer to the key slot
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 *  containing the description of a key given its identifier.
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 *
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 *  The function searches the key slots containing the description of the key
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 *  with \p key identifier. The function does only read accesses to the key
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 *  slots. The function does not load any persistent key thus does not access
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 *  any storage.
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 *
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 *  For volatile key identifiers, only one key slot is queried as a volatile
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 *  key with identifier key_id can only be stored in slot of index
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 *  ( key_id - #PSA_KEY_ID_VOLATILE_MIN ).
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 *
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 *  On success, the access counter of the returned key slot is incremented by
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 *  one. It is the responsibility of the caller to call
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 *  psa_decrement_key_slot_access_count() when it does not access the key slot
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 *  anymore.
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 *
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 * \param key           Key identifier to query.
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 * \param[out] p_slot   On success, `*p_slot` contains a pointer to the
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 *                      key slot containing the description of the key
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 *                      identified by \p key.
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 *
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 * \retval #PSA_SUCCESS
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 *         The pointer to the key slot containing the description of the key
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 *         identified by \p key was returned.
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 * \retval #PSA_ERROR_INVALID_HANDLE
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 *         \p key is not a valid key identifier.
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 * \retval #PSA_ERROR_DOES_NOT_EXIST
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 *         There is no key with key identifier \p key in the key slots.
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 */
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static psa_status_t psa_search_key_in_slots(
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    mbedtls_svc_key_id_t key, psa_key_slot_t **p_slot )
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{
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    psa_status_t status = PSA_ERROR_CORRUPTION_DETECTED;
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    psa_key_id_t key_id = MBEDTLS_SVC_KEY_ID_GET_KEY_ID( key );
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    size_t slot_idx;
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    psa_key_slot_t *slot = NULL;
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    if( psa_key_id_is_volatile( key_id ) )
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    {
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        slot = &global_data.key_slots[ key_id - PSA_KEY_ID_VOLATILE_MIN ];
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        status = mbedtls_svc_key_id_equal( key, slot->attr.id ) ?
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                 PSA_SUCCESS : PSA_ERROR_DOES_NOT_EXIST;
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    }
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    else
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    {
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        status = psa_validate_key_id( key, 1 );
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        if( status != PSA_SUCCESS )
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            return( status );
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        for( slot_idx = 0; slot_idx < PSA_KEY_SLOT_COUNT; slot_idx++ )
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        {
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            slot = &global_data.key_slots[ slot_idx ];
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            if( mbedtls_svc_key_id_equal( key, slot->attr.id ) )
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                break;
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        }
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        status = ( slot_idx < PSA_KEY_SLOT_COUNT ) ?
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                 PSA_SUCCESS : PSA_ERROR_DOES_NOT_EXIST;
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    }
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    if( status == PSA_SUCCESS )
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    {
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        *p_slot = slot;
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        psa_increment_key_slot_access_count( slot );
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    }
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    return( status );
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}
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psa_status_t psa_initialize_key_slots( void )
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{
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    /* Nothing to do: program startup and psa_wipe_all_key_slots() both
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     * guarantee that the key slots are initialized to all-zero, which
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     * means that all the key slots are in a valid, empty state. */
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    global_data.key_slots_initialized = 1;
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    return( PSA_SUCCESS );
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}
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void psa_wipe_all_key_slots( void )
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{
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    size_t slot_idx;
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    for( slot_idx = 0; slot_idx < PSA_KEY_SLOT_COUNT; slot_idx++ )
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    {
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        psa_key_slot_t *slot = &global_data.key_slots[ slot_idx ];
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        slot->access_count = 1;
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        (void) psa_wipe_key_slot( slot );
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    }
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    global_data.key_slots_initialized = 0;
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}
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psa_status_t psa_get_empty_key_slot( psa_key_id_t *volatile_key_id,
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                                     psa_key_slot_t **p_slot )
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{
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    psa_status_t status = PSA_ERROR_CORRUPTION_DETECTED;
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    size_t slot_idx;
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    psa_key_slot_t *selected_slot, *unaccessed_persistent_key_slot;
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    if( ! global_data.key_slots_initialized )
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    {
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        status = PSA_ERROR_BAD_STATE;
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        goto error;
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    }
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    selected_slot = unaccessed_persistent_key_slot = NULL;
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    for( slot_idx = 0; slot_idx < PSA_KEY_SLOT_COUNT; slot_idx++ )
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    {
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        psa_key_slot_t *slot = &global_data.key_slots[ slot_idx ];
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        if( ! psa_is_key_slot_occupied( slot ) )
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        {
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            selected_slot = slot;
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            break;
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        }
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        if( ( unaccessed_persistent_key_slot == NULL ) &&
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            ( ! PSA_KEY_LIFETIME_IS_VOLATILE( slot->attr.lifetime ) ) &&
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            ( ! psa_is_key_slot_accessed( slot ) ) )
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            unaccessed_persistent_key_slot = slot;
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    }
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    /*
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     * If there is no unused key slot and there is at least one unaccessed key
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     * slot containing the description of a permament key, recycle the first
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     * such key slot we encountered. If we need later on to operate on the
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     * persistent key we evict now, we will reload its description from
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     * storage.
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     */
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    if( ( selected_slot == NULL ) &&
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        ( unaccessed_persistent_key_slot != NULL ) )
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    {
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        selected_slot = unaccessed_persistent_key_slot;
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        selected_slot->access_count = 1;
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        psa_wipe_key_slot( selected_slot );
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    }
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    if( selected_slot != NULL )
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    {
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        *volatile_key_id = PSA_KEY_ID_VOLATILE_MIN +
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            ( (psa_key_id_t)( selected_slot - global_data.key_slots ) );
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        *p_slot = selected_slot;
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        psa_increment_key_slot_access_count( selected_slot );
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        return( PSA_SUCCESS );
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    }
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    status = PSA_ERROR_INSUFFICIENT_MEMORY;
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error:
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    *p_slot = NULL;
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    *volatile_key_id = 0;
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    return( status );
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}
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#if defined(MBEDTLS_PSA_CRYPTO_STORAGE_C)
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static psa_status_t psa_load_persistent_key_into_slot( psa_key_slot_t *slot )
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{
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    psa_status_t status = PSA_SUCCESS;
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    uint8_t *key_data = NULL;
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    size_t key_data_length = 0;
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    status = psa_load_persistent_key( &slot->attr,
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                                      &key_data, &key_data_length );
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    if( status != PSA_SUCCESS )
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        goto exit;
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#if defined(MBEDTLS_PSA_CRYPTO_SE_C)
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    if( psa_key_lifetime_is_external( slot->attr.lifetime ) )
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    {
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        psa_se_key_data_storage_t *data;
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        if( key_data_length != sizeof( *data ) )
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        {
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            status = PSA_ERROR_STORAGE_FAILURE;
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            goto exit;
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        }
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        data = (psa_se_key_data_storage_t *) key_data;
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        memcpy( &slot->data.se.slot_number, &data->slot_number,
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                sizeof( slot->data.se.slot_number ) );
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    }
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    else
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#endif /* MBEDTLS_PSA_CRYPTO_SE_C */
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    {
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        status = psa_copy_key_material_into_slot( slot, key_data, key_data_length );
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        if( status != PSA_SUCCESS )
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            goto exit;
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    }
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exit:
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    psa_free_persistent_key_data( key_data, key_data_length );
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    return( status );
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}
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#endif /* MBEDTLS_PSA_CRYPTO_STORAGE_C */
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psa_status_t psa_get_key_slot( mbedtls_svc_key_id_t key,
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                               psa_key_slot_t **p_slot )
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{
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    psa_status_t status = PSA_ERROR_CORRUPTION_DETECTED;
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    *p_slot = NULL;
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    if( ! global_data.key_slots_initialized )
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        return( PSA_ERROR_BAD_STATE );
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    /*
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     * On success, the pointer to the slot is passed directly to the caller
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     * thus no need to decrement the key slot access counter here.
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     */
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    status = psa_search_key_in_slots( key, p_slot );
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    if( status != PSA_ERROR_DOES_NOT_EXIST )
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        return( status );
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#if defined(MBEDTLS_PSA_CRYPTO_STORAGE_C)
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    psa_key_id_t volatile_key_id;
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    status = psa_get_empty_key_slot( &volatile_key_id, p_slot );
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    if( status != PSA_SUCCESS )
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        return( status );
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    (*p_slot)->attr.lifetime = PSA_KEY_LIFETIME_PERSISTENT;
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    (*p_slot)->attr.id = key;
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    status = psa_load_persistent_key_into_slot( *p_slot );
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    if( status != PSA_SUCCESS )
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        psa_wipe_key_slot( *p_slot );
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    return( status );
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#else
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    return( PSA_ERROR_DOES_NOT_EXIST );
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#endif /* defined(MBEDTLS_PSA_CRYPTO_STORAGE_C) */
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}
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psa_status_t psa_decrement_key_slot_access_count( psa_key_slot_t *slot )
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{
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    if( slot == NULL )
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        return( PSA_SUCCESS );
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    if( slot->access_count > 0 )
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    {
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        slot->access_count--;
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        return( PSA_SUCCESS );
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    }
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    /*
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     * As the return error code may not be handled in case of multiple errors,
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     * do our best to report if the access counter is equal to zero: if
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     * available call MBEDTLS_PARAM_FAILED that may terminate execution (if
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     * called as part of the execution of a unit test suite this will stop the
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     * test suite execution) and if MBEDTLS_PARAM_FAILED does not terminate
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     * execution ouput an error message on standard error output.
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     */
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#ifdef MBEDTLS_CHECK_PARAMS
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    MBEDTLS_PARAM_FAILED( slot->access_count > 0 );
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#endif
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#ifdef MBEDTLS_PLATFORM_C
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    mbedtls_fprintf( stderr,
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        "\nFATAL psa_decrement_key_slot_access_count Decrementing a zero access counter.\n" );
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#endif
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    return( PSA_ERROR_CORRUPTION_DETECTED );
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}
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psa_status_t psa_validate_key_location( psa_key_lifetime_t lifetime,
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                                        psa_se_drv_table_entry_t **p_drv )
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{
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    if ( psa_key_lifetime_is_external( lifetime ) )
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    {
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#if defined(MBEDTLS_PSA_CRYPTO_SE_C)
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        psa_se_drv_table_entry_t *driver = psa_get_se_driver_entry( lifetime );
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        if( driver == NULL )
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            return( PSA_ERROR_INVALID_ARGUMENT );
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        else
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        {
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            if (p_drv != NULL)
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                *p_drv = driver;
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            return( PSA_SUCCESS );
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        }
 | 
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#else
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        (void) p_drv;
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        return( PSA_ERROR_INVALID_ARGUMENT );
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#endif /* MBEDTLS_PSA_CRYPTO_SE_C */
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    }
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    else
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        /* Local/internal keys are always valid */
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        return( PSA_SUCCESS );
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}
 | 
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 | 
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psa_status_t psa_validate_key_persistence( psa_key_lifetime_t lifetime )
 | 
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{
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    if ( PSA_KEY_LIFETIME_IS_VOLATILE( lifetime ) )
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    {
 | 
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        /* Volatile keys are always supported */
 | 
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        return( PSA_SUCCESS );
 | 
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    }
 | 
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    else
 | 
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    {
 | 
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        /* Persistent keys require storage support */
 | 
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#if defined(MBEDTLS_PSA_CRYPTO_STORAGE_C)
 | 
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        return( PSA_SUCCESS );
 | 
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#else /* MBEDTLS_PSA_CRYPTO_STORAGE_C */
 | 
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        return( PSA_ERROR_NOT_SUPPORTED );
 | 
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#endif /* !MBEDTLS_PSA_CRYPTO_STORAGE_C */
 | 
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    }
 | 
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}
 | 
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 | 
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psa_status_t psa_open_key( mbedtls_svc_key_id_t key, psa_key_handle_t *handle )
 | 
						|
{
 | 
						|
#if defined(MBEDTLS_PSA_CRYPTO_STORAGE_C)
 | 
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    psa_status_t status;
 | 
						|
    psa_key_slot_t *slot;
 | 
						|
 | 
						|
    status = psa_get_key_slot( key, &slot );
 | 
						|
    if( status != PSA_SUCCESS )
 | 
						|
    {
 | 
						|
        *handle = PSA_KEY_HANDLE_INIT;
 | 
						|
        return( status );
 | 
						|
    }
 | 
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 | 
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    *handle = key;
 | 
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 | 
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    return( psa_decrement_key_slot_access_count( slot ) );
 | 
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 | 
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#else /* defined(MBEDTLS_PSA_CRYPTO_STORAGE_C) */
 | 
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    (void) key;
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    *handle = PSA_KEY_HANDLE_INIT;
 | 
						|
    return( PSA_ERROR_NOT_SUPPORTED );
 | 
						|
#endif /* !defined(MBEDTLS_PSA_CRYPTO_STORAGE_C) */
 | 
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}
 | 
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 | 
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psa_status_t psa_close_key( psa_key_handle_t handle )
 | 
						|
{
 | 
						|
    psa_status_t status;
 | 
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    psa_key_slot_t *slot;
 | 
						|
 | 
						|
    if( psa_key_handle_is_null( handle ) )
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						|
        return( PSA_SUCCESS );
 | 
						|
 | 
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    status = psa_search_key_in_slots( handle, &slot );
 | 
						|
    if( status != PSA_SUCCESS )
 | 
						|
        return( status );
 | 
						|
 | 
						|
    if( slot->access_count <= 1 )
 | 
						|
        return( psa_wipe_key_slot( slot ) );
 | 
						|
    else
 | 
						|
        return( psa_decrement_key_slot_access_count( slot ) );
 | 
						|
}
 | 
						|
 | 
						|
psa_status_t psa_purge_key( mbedtls_svc_key_id_t key )
 | 
						|
{
 | 
						|
    psa_status_t status;
 | 
						|
    psa_key_slot_t *slot;
 | 
						|
 | 
						|
    status = psa_search_key_in_slots( key, &slot );
 | 
						|
    if( status != PSA_SUCCESS )
 | 
						|
        return( status );
 | 
						|
 | 
						|
    if( ( ! PSA_KEY_LIFETIME_IS_VOLATILE( slot->attr.lifetime ) ) &&
 | 
						|
        ( slot->access_count <= 1 ) )
 | 
						|
        return( psa_wipe_key_slot( slot ) );
 | 
						|
    else
 | 
						|
        return( psa_decrement_key_slot_access_count( slot ) );
 | 
						|
}
 | 
						|
 | 
						|
void mbedtls_psa_get_stats( mbedtls_psa_stats_t *stats )
 | 
						|
{
 | 
						|
    size_t slot_idx;
 | 
						|
 | 
						|
    memset( stats, 0, sizeof( *stats ) );
 | 
						|
 | 
						|
    for( slot_idx = 0; slot_idx < PSA_KEY_SLOT_COUNT; slot_idx++ )
 | 
						|
    {
 | 
						|
        const psa_key_slot_t *slot = &global_data.key_slots[ slot_idx ];
 | 
						|
        if( ! psa_is_key_slot_accessed( slot ) )
 | 
						|
        {
 | 
						|
            ++stats->unaccessed_slots;
 | 
						|
        }
 | 
						|
        if( ! psa_is_key_slot_occupied( slot ) )
 | 
						|
        {
 | 
						|
            ++stats->empty_slots;
 | 
						|
            continue;
 | 
						|
        }
 | 
						|
        if( slot->attr.lifetime == PSA_KEY_LIFETIME_VOLATILE )
 | 
						|
            ++stats->volatile_slots;
 | 
						|
        else if( slot->attr.lifetime == PSA_KEY_LIFETIME_PERSISTENT )
 | 
						|
        {
 | 
						|
            psa_key_id_t id = MBEDTLS_SVC_KEY_ID_GET_KEY_ID( slot->attr.id );
 | 
						|
            ++stats->persistent_slots;
 | 
						|
            if( id > stats->max_open_internal_key_id )
 | 
						|
                stats->max_open_internal_key_id = id;
 | 
						|
        }
 | 
						|
        else
 | 
						|
        {
 | 
						|
            psa_key_id_t id = MBEDTLS_SVC_KEY_ID_GET_KEY_ID( slot->attr.id );
 | 
						|
            ++stats->external_slots;
 | 
						|
            if( id > stats->max_open_external_key_id )
 | 
						|
                stats->max_open_external_key_id = id;
 | 
						|
        }
 | 
						|
    }
 | 
						|
}
 | 
						|
 | 
						|
#endif /* MBEDTLS_PSA_CRYPTO_C */
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