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Expand psa_generate_tests to support constructor arguments
In macro_collector.py, base InputsForTest on PSAMacroEnumerator rather than PSAMacroCollector. It didn't make much sense to use PSAMacroCollector anymore since InputsForTest didn't use anything other than the constructor. psa_generate_tests now generates arguments for more macros. In particular, it now collects macro arguments from test_suite_psa_crypto_metadata. Algorithms with parameters are now supported. Signed-off-by: Gilles Peskine <Gilles.Peskine@arm.com>
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@ -105,6 +105,16 @@ class PSAMacroEnumerator:
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'tag_length': [],
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'min_tag_length': [],
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} #type: Dict[str, List[str]]
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self.include_intermediate = False
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def is_internal_name(self, name: str) -> bool:
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"""Whether this is an internal macro. Internal macros will be skipped."""
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if not self.include_intermediate:
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if name.endswith('_BASE') or name.endswith('_NONE'):
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return True
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if '_CATEGORY_' in name:
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return True
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return name.endswith('_FLAG') or name.endswith('_MASK')
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def gather_arguments(self) -> None:
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"""Populate the list of values for macro arguments.
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@ -192,15 +202,6 @@ class PSAMacroCollector(PSAMacroEnumerator):
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self.key_types_from_group = {} #type: Dict[str, str]
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self.algorithms_from_hash = {} #type: Dict[str, str]
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def is_internal_name(self, name: str) -> bool:
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"""Whether this is an internal macro. Internal macros will be skipped."""
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if not self.include_intermediate:
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if name.endswith('_BASE') or name.endswith('_NONE'):
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return True
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if '_CATEGORY_' in name:
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return True
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return name.endswith('_FLAG') or name.endswith('_MASK')
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def record_algorithm_subtype(self, name: str, expansion: str) -> None:
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"""Record the subtype of an algorithm constructor.
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@ -301,7 +302,7 @@ class PSAMacroCollector(PSAMacroEnumerator):
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self.read_line(line)
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class InputsForTest(PSAMacroCollector):
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class InputsForTest(PSAMacroEnumerator):
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# pylint: disable=too-many-instance-attributes
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"""Accumulate information about macros to test.
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enumerate
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@ -408,7 +409,8 @@ enumerate
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name = m.group(1)
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self.all_declared.add(name)
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if re.search(self._excluded_name_re, name) or \
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name in self._excluded_names:
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name in self._excluded_names or \
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self.is_internal_name(name):
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return
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dest = self.table_by_prefix.get(m.group(2))
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if dest is None:
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@ -94,23 +94,25 @@ class Information:
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@staticmethod
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def remove_unwanted_macros(
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constructors: macro_collector.PSAMacroCollector
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constructors: macro_collector.PSAMacroEnumerator
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) -> None:
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# Mbed TLS doesn't support DSA. Don't attempt to generate any related
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# test case.
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# Mbed TLS doesn't support finite-field DH yet and will not support
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# finite-field DSA. Don't attempt to generate any related test case.
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constructors.key_types.discard('PSA_KEY_TYPE_DH_KEY_PAIR')
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constructors.key_types.discard('PSA_KEY_TYPE_DH_PUBLIC_KEY')
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constructors.key_types.discard('PSA_KEY_TYPE_DSA_KEY_PAIR')
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constructors.key_types.discard('PSA_KEY_TYPE_DSA_PUBLIC_KEY')
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constructors.algorithms_from_hash.pop('PSA_ALG_DSA', None)
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constructors.algorithms_from_hash.pop('PSA_ALG_DETERMINISTIC_DSA', None)
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def read_psa_interface(self) -> macro_collector.PSAMacroCollector:
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def read_psa_interface(self) -> macro_collector.PSAMacroEnumerator:
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"""Return the list of known key types, algorithms, etc."""
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constructors = macro_collector.InputsForTest()
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header_file_names = ['include/psa/crypto_values.h',
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'include/psa/crypto_extra.h']
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test_suites = ['tests/suites/test_suite_psa_crypto_metadata.data']
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for header_file_name in header_file_names:
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with open(header_file_name, 'rb') as header_file:
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constructors.read_file(header_file)
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constructors.parse_header(header_file_name)
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for test_cases in test_suites:
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constructors.parse_test_cases(test_cases)
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self.remove_unwanted_macros(constructors)
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constructors.gather_arguments()
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return constructors
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@ -194,14 +196,18 @@ class NotSupported:
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)
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# To be added: derive
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ECC_KEY_TYPES = ('PSA_KEY_TYPE_ECC_KEY_PAIR',
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'PSA_KEY_TYPE_ECC_PUBLIC_KEY')
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def test_cases_for_not_supported(self) -> Iterator[test_case.TestCase]:
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"""Generate test cases that exercise the creation of keys of unsupported types."""
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for key_type in sorted(self.constructors.key_types):
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if key_type in self.ECC_KEY_TYPES:
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continue
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kt = crypto_knowledge.KeyType(key_type)
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yield from self.test_cases_for_key_type_not_supported(kt)
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for curve_family in sorted(self.constructors.ecc_curves):
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for constr in ('PSA_KEY_TYPE_ECC_KEY_PAIR',
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'PSA_KEY_TYPE_ECC_PUBLIC_KEY'):
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for constr in self.ECC_KEY_TYPES:
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kt = crypto_knowledge.KeyType(constr, [curve_family])
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yield from self.test_cases_for_key_type_not_supported(
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kt, param_descr='type')
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@ -330,16 +336,9 @@ class StorageFormat:
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def all_keys_for_types(self) -> Iterator[StorageKey]:
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"""Generate test keys covering key types and their representations."""
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for key_type in sorted(self.constructors.key_types):
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key_types = sorted(self.constructors.key_types)
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for key_type in self.constructors.generate_expressions(key_types):
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yield from self.keys_for_type(key_type)
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for key_type in sorted(self.constructors.key_types_from_curve):
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for curve in sorted(self.constructors.ecc_curves):
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yield from self.keys_for_type(key_type, [curve])
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## Diffie-Hellman (FFDH) is not supported yet, either in
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## crypto_knowledge.py or in Mbed TLS.
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# for key_type in sorted(self.constructors.key_types_from_group):
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# for group in sorted(self.constructors.dh_groups):
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# yield from self.keys_for_type(key_type, [group])
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def keys_for_algorithm(self, alg: str) -> Iterator[StorageKey]:
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"""Generate test keys for the specified algorithm."""
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@ -365,9 +364,9 @@ class StorageFormat:
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def all_keys_for_algorithms(self) -> Iterator[StorageKey]:
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"""Generate test keys covering algorithm encodings."""
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for alg in sorted(self.constructors.algorithms):
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algorithms = sorted(self.constructors.algorithms)
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for alg in self.constructors.generate_expressions(algorithms):
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yield from self.keys_for_algorithm(alg)
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# To do: algorithm constructors with parameters
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def all_test_cases(self) -> Iterator[test_case.TestCase]:
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"""Generate all storage format test cases."""
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