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			163 lines
		
	
	
		
			4.6 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			163 lines
		
	
	
		
			4.6 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
"""Common features for bignum in test generation framework."""
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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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from abc import abstractmethod
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from typing import Iterator, List, Tuple, TypeVar
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T = TypeVar('T') #pylint: disable=invalid-name
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def invmod(a: int, n: int) -> int:
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    """Return inverse of a to modulo n.
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    Equivalent to pow(a, -1, n) in Python 3.8+. Implementation is equivalent
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    to long_invmod() in CPython.
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    """
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    b, c = 1, 0
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    while n:
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        q, r = divmod(a, n)
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        a, b, c, n = n, c, b - q*c, r
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    # at this point a is the gcd of the original inputs
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    if a == 1:
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        return b
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    raise ValueError("Not invertible")
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def hex_to_int(val: str) -> int:
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    """Implement the syntax accepted by mbedtls_test_read_mpi().
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    This is a superset of what is accepted by mbedtls_test_read_mpi_core().
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    """
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    if val in ['', '-']:
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        return 0
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    return int(val, 16)
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def quote_str(val) -> str:
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    return "\"{}\"".format(val)
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def bound_mpi(val: int, bits_in_limb: int) -> int:
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    """First number exceeding number of limbs needed for given input value."""
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    return bound_mpi_limbs(limbs_mpi(val, bits_in_limb), bits_in_limb)
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def bound_mpi_limbs(limbs: int, bits_in_limb: int) -> int:
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    """First number exceeding maximum of given number of limbs."""
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    bits = bits_in_limb * limbs
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    return 1 << bits
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def limbs_mpi(val: int, bits_in_limb: int) -> int:
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    """Return the number of limbs required to store value."""
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    return (val.bit_length() + bits_in_limb - 1) // bits_in_limb
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def combination_pairs(values: List[T]) -> List[Tuple[T, T]]:
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    """Return all pair combinations from input values."""
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    return [(x, y) for x in values for y in values]
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class OperationCommon:
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    """Common features for bignum binary operations.
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    This adds functionality common in binary operation tests.
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    Attributes:
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        symbol: Symbol to use for the operation in case description.
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        input_values: List of values to use as test case inputs. These are
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            combined to produce pairs of values.
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        input_cases: List of tuples containing pairs of test case inputs. This
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            can be used to implement specific pairs of inputs.
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        unique_combinations_only: Boolean to select if test case combinations
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            must be unique. If True, only A,B or B,A would be included as a test
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            case. If False, both A,B and B,A would be included.
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    """
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    symbol = ""
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    input_values = [] # type: List[str]
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    input_cases = [] # type: List[Tuple[str, str]]
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    unique_combinations_only = True
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    def __init__(self, val_a: str, val_b: str) -> None:
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        self.arg_a = val_a
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        self.arg_b = val_b
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        self.int_a = hex_to_int(val_a)
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        self.int_b = hex_to_int(val_b)
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    def arguments(self) -> List[str]:
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        return [
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            quote_str(self.arg_a), quote_str(self.arg_b)
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        ] + self.result()
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    @abstractmethod
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    def result(self) -> List[str]:
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        """Get the result of the operation.
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        This could be calculated during initialization and stored as `_result`
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        and then returned, or calculated when the method is called.
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        """
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        raise NotImplementedError
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    @classmethod
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    def get_value_pairs(cls) -> Iterator[Tuple[str, str]]:
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        """Generator to yield pairs of inputs.
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        Combinations are first generated from all input values, and then
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        specific cases provided.
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        """
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        if cls.unique_combinations_only:
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            yield from combination_pairs(cls.input_values)
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        else:
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            yield from (
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                (a, b)
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                for a in cls.input_values
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                for b in cls.input_values
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            )
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        yield from cls.input_cases
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