Add metadata tests for truncated MAC and short-tag AEAD
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@ -94,6 +94,47 @@ void key_type_classification( psa_key_type_t type, unsigned flags )
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exit: ;
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}
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void mac_algorithm_core( psa_algorithm_t alg, int classification_flags,
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psa_key_type_t key_type, size_t key_bits,
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size_t length )
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{
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/* Algorithm classification */
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TEST_ASSERT( ! PSA_ALG_IS_HASH( alg ) );
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TEST_ASSERT( PSA_ALG_IS_MAC( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_CIPHER( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_AEAD( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_SIGN( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_ASYMMETRIC_ENCRYPTION( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_AGREEMENT( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_DERIVATION( alg ) );
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algorithm_classification( alg, classification_flags );
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/* Length */
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TEST_ASSERT( length == PSA_MAC_FINAL_SIZE( key_type, key_bits, alg ) );
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exit: ;
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}
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void aead_algorithm_core( psa_algorithm_t alg, int classification_flags,
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size_t tag_length )
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{
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/* Algorithm classification */
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TEST_ASSERT( ! PSA_ALG_IS_HASH( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_MAC( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_CIPHER( alg ) );
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TEST_ASSERT( PSA_ALG_IS_AEAD( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_SIGN( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_ASYMMETRIC_ENCRYPTION( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_AGREEMENT( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_DERIVATION( alg ) );
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algorithm_classification( alg, classification_flags );
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/* Tag length */
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TEST_ASSERT( tag_length == PSA_AEAD_TAG_LENGTH( alg ) );
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exit: ;
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}
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/* END_HEADER */
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/* BEGIN_DEPENDENCIES
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@ -151,23 +192,30 @@ void mac_algorithm( int alg_arg, int classification_flags,
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{
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psa_algorithm_t alg = alg_arg;
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size_t length = length_arg;
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size_t n;
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size_t key_type = key_type_arg;
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size_t key_bits = key_bits_arg;
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/* Algorithm classification */
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TEST_ASSERT( ! PSA_ALG_IS_HASH( alg ) );
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TEST_ASSERT( PSA_ALG_IS_MAC( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_CIPHER( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_AEAD( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_SIGN( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_ASYMMETRIC_ENCRYPTION( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_AGREEMENT( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_DERIVATION( alg ) );
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algorithm_classification( alg, classification_flags );
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/* Length */
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TEST_ASSERT( length == PSA_MAC_FINAL_SIZE( key_type, key_bits, alg ) );
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mac_algorithm_core( alg, classification_flags,
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key_type, key_bits, length );
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TEST_ASSERT( length <= PSA_MAC_MAX_SIZE );
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/* Truncated versions */
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for( n = 1; n <= length; n++ )
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{
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psa_algorithm_t truncated_alg = PSA_ALG_TRUNCATED_MAC( alg, n );
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mac_algorithm_core( truncated_alg, classification_flags,
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key_type, key_bits, n );
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/* Check that calling PSA_ALG_TRUNCATED_MAC twice gives the length
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* of the outer truncation (even if the outer length is smaller than
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* the inner length). */
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TEST_ASSERT( PSA_ALG_TRUNCATED_MAC( truncated_alg, 1 ) ==
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PSA_ALG_TRUNCATED_MAC( alg, 1 ) );
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TEST_ASSERT( PSA_ALG_TRUNCATED_MAC( truncated_alg, length - 1 ) ==
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PSA_ALG_TRUNCATED_MAC( alg, length - 1) );
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TEST_ASSERT( PSA_ALG_TRUNCATED_MAC( truncated_alg, length ) ==
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PSA_ALG_TRUNCATED_MAC( alg, length ) );
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}
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}
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/* END_CASE */
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@ -179,14 +227,22 @@ void hmac_algorithm( int alg_arg,
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psa_algorithm_t alg = alg_arg;
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psa_algorithm_t hash_alg = PSA_ALG_HMAC_GET_HASH( alg );
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size_t block_size = block_size_arg;
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size_t length = length_arg;
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size_t n;
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TEST_ASSERT( PSA_ALG_IS_HASH( hash_alg ) );
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TEST_ASSERT( PSA_ALG_HMAC( hash_alg ) == alg );
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TEST_ASSERT( block_size <= PSA_HMAC_MAX_HASH_BLOCK_SIZE );
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test_mac_algorithm( alg_arg, ALG_IS_HMAC, length_arg,
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PSA_KEY_TYPE_HMAC, PSA_BYTES_TO_BITS( length_arg ) );
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test_mac_algorithm( alg_arg, ALG_IS_HMAC, length,
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PSA_KEY_TYPE_HMAC, PSA_BYTES_TO_BITS( length ) );
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for( n = 1; n <= length; n++ )
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{
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psa_algorithm_t truncated_alg = PSA_ALG_TRUNCATED_MAC( alg, n );
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TEST_ASSERT( PSA_ALG_HMAC_GET_HASH( truncated_alg ) == hash_alg );
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}
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}
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/* END_CASE */
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@ -214,20 +270,30 @@ void aead_algorithm( int alg_arg, int classification_flags,
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{
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psa_algorithm_t alg = alg_arg;
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size_t tag_length = tag_length_arg;
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size_t n;
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/* Algorithm classification */
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TEST_ASSERT( ! PSA_ALG_IS_HASH( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_MAC( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_CIPHER( alg ) );
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TEST_ASSERT( PSA_ALG_IS_AEAD( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_SIGN( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_ASYMMETRIC_ENCRYPTION( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_AGREEMENT( alg ) );
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TEST_ASSERT( ! PSA_ALG_IS_KEY_DERIVATION( alg ) );
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algorithm_classification( alg, classification_flags );
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aead_algorithm_core( alg, classification_flags, tag_length );
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/* Tag length */
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TEST_ASSERT( tag_length == PSA_AEAD_TAG_LENGTH( alg ) );
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/* Truncated versions */
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for( n = 1; n <= tag_length; n++ )
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{
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psa_algorithm_t truncated_alg = PSA_ALG_AEAD_WITH_TAG_LENGTH( alg, n );
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aead_algorithm_core( truncated_alg, classification_flags, n );
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TEST_ASSERT(
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PSA_ALG_AEAD_WITH_DEFAULT_TAG_LENGTH( truncated_alg ) == alg );
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/* Check that calling PSA_ALG_AEAD_WITH_DEFAULT_TAG_LENGTH twice gives
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* the length of the outer truncation (even if the outer length is
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* smaller than the inner length). */
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TEST_ASSERT(
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PSA_ALG_AEAD_WITH_TAG_LENGTH( truncated_alg, 1 ) ==
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PSA_ALG_AEAD_WITH_TAG_LENGTH( alg, 1 ) );
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TEST_ASSERT(
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PSA_ALG_AEAD_WITH_TAG_LENGTH( truncated_alg, tag_length - 1 ) ==
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PSA_ALG_AEAD_WITH_TAG_LENGTH( alg, tag_length - 1) );
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TEST_ASSERT(
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PSA_ALG_AEAD_WITH_TAG_LENGTH( truncated_alg, tag_length ) ==
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PSA_ALG_AEAD_WITH_TAG_LENGTH( alg, tag_length ) );
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}
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}
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/* END_CASE */
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