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add new test scenario (cipher_test_encrypt_multipart)
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@ -116,3 +116,15 @@ cipher_test_decrypt:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf715880
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PSA Symmetric encryption/decryption: AES-128
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PSA Symmetric encryption/decryption: AES-128
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depends_on:MBEDTLS_AES_C:MBEDTLS_CIPHER_MODE_CBC
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depends_on:MBEDTLS_AES_C:MBEDTLS_CIPHER_MODE_CBC
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cipher_test_verify_output:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf7158809cf4f3c":"6bc1bee22e409f96e93d7e117393172a"
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cipher_test_verify_output:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf7158809cf4f3c":"6bc1bee22e409f96e93d7e117393172a"
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PSA Symmetric encryption multipart: AES-128
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depends_on:MBEDTLS_AES_C:MBEDTLS_CIPHER_MODE_CBC
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cipher_test_encrypt_multipart:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf7158809cf4f3c":"6bc1bee22e409f96e93d7e117393172a":7:"a076ec9dfbe47d52afc357336f20743b"
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PSA Symmetric encryption multipart: AES-128
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depends_on:MBEDTLS_AES_C:MBEDTLS_CIPHER_MODE_CBC
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cipher_test_encrypt_multipart:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf7158809cf4f3c":"6bc1bee22e409f96e93d7e117393172a":3:"a076ec9dfbe47d52afc357336f20743b"
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PSA Symmetric encryption multipart: AES-128
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depends_on:MBEDTLS_AES_C:MBEDTLS_CIPHER_MODE_CBC
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cipher_test_encrypt_multipart:PSA_ALG_CBC_BASE:PSA_KEY_TYPE_AES:"2b7e151628aed2a6abf7158809cf4f3c":"6bc1bee22e409f96e93d7e117393172a":11:"a076ec9dfbe47d52afc357336f20743b"
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@ -651,6 +651,73 @@ exit:
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}
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}
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/* END_CASE */
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/* END_CASE */
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/* BEGIN_CASE */
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void cipher_test_encrypt_multipart( int alg_arg, int key_type_arg,
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char *key_hex,
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char *input_hex,
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int first_part_size, char *output_hex )
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{
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int key_slot = 1;
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psa_key_type_t key_type = key_type_arg;
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psa_algorithm_t alg = alg_arg;
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unsigned char *key = NULL;
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size_t key_size;
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unsigned char iv[16] = {0};
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unsigned char *input = NULL;
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size_t input_size = 0;
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unsigned char *output;
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unsigned char *expected_output;
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size_t output_size = 0;
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size_t output_length = 0;
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psa_cipher_operation_t operation;
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key = unhexify_alloc( key_hex, &key_size );
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TEST_ASSERT( key != NULL );
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input = unhexify_alloc( input_hex, &input_size );
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TEST_ASSERT( input != NULL );
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expected_output = unhexify_alloc( output_hex, &output_size );
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TEST_ASSERT( expected_output != NULL );
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memset( iv, 0x2a, sizeof( iv ) );
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TEST_ASSERT( psa_crypto_init( ) == PSA_SUCCESS );
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TEST_ASSERT( psa_import_key( key_slot, key_type,
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key, key_size ) == PSA_SUCCESS );
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TEST_ASSERT( psa_encrypt_setup( &operation, key_slot, alg ) == PSA_SUCCESS );
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TEST_ASSERT( psa_encrypt_set_iv( &operation, iv,
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sizeof( iv ) ) == PSA_SUCCESS );
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output = mbedtls_calloc(0, output_size);
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TEST_ASSERT( (unsigned int)first_part_size < input_size );
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TEST_ASSERT( psa_cipher_update( &operation, input, first_part_size,
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output, output_size,
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&output_length) == PSA_SUCCESS );
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TEST_ASSERT( psa_cipher_update( &operation, input + first_part_size, input_size - first_part_size,
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output, output_size,
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&output_length) == PSA_SUCCESS );
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TEST_ASSERT( psa_cipher_finish( &operation, output + output_length,
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output_size, &output_length) == PSA_SUCCESS );
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TEST_ASSERT( psa_cipher_abort( &operation ) == PSA_SUCCESS );
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TEST_ASSERT( input_size == output_size );
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TEST_ASSERT( memcmp( expected_output, output, output_size ) == 0 );
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exit:
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mbedtls_free( key );
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mbedtls_free( input );
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psa_destroy_key( key_slot );
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mbedtls_psa_crypto_free( );
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}
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/* END_CASE */
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/* BEGIN_CASE */
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/* BEGIN_CASE */
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void cipher_test_decrypt( int alg_arg, int key_type_arg,
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void cipher_test_decrypt( int alg_arg, int key_type_arg,
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char *key_hex,
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char *key_hex,
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