2022-11-02 15:44:08 +01:00
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"""Framework classes for generation of bignum mod test cases."""
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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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2022-12-06 11:14:57 +01:00
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from typing import Dict, List
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2022-11-30 17:34:07 +01:00
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2022-11-02 15:44:08 +01:00
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from . import test_data_generation
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2022-12-06 11:14:57 +01:00
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from . import bignum_common
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2022-12-15 17:59:40 +01:00
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from .bignum_data import ONLY_PRIME_MODULI
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2022-11-09 13:14:14 +01:00
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class BignumModTarget(test_data_generation.BaseTarget):
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#pylint: disable=abstract-method, too-few-public-methods
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2022-11-02 15:44:08 +01:00
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"""Target for bignum mod test case generation."""
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target_basename = 'test_suite_bignum_mod.generated'
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2022-11-02 15:46:23 +01:00
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2022-12-13 10:53:50 +01:00
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class BignumModMul(bignum_common.ModOperationCommon,
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BignumModTarget):
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# pylint:disable=duplicate-code
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2022-12-13 10:53:50 +01:00
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"""Test cases for bignum mpi_mod_mul()."""
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symbol = "*"
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test_function = "mpi_mod_mul"
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test_name = "mbedtls_mpi_mod_mul"
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input_style = "arch_split"
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arity = 2
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def arguments(self) -> List[str]:
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2022-12-16 15:25:02 +01:00
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return [self.format_result(self.to_montgomery(self.int_a)),
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self.format_result(self.to_montgomery(self.int_b)),
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bignum_common.quote_str(self.arg_n)
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] + self.result()
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def result(self) -> List[str]:
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result = (self.int_a * self.int_b) % self.int_n
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return [self.format_result(self.to_montgomery(result))]
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2022-12-01 15:27:37 +01:00
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class BignumModSub(bignum_common.ModOperationCommon, BignumModTarget):
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"""Test cases for bignum mpi_mod_sub()."""
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symbol = "-"
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test_function = "mpi_mod_sub"
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test_name = "mbedtls_mpi_mod_sub"
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input_style = "fixed"
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arity = 2
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def result(self) -> List[str]:
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result = (self.int_a - self.int_b) % self.int_n
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2022-12-05 16:47:40 +01:00
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# To make negative tests easier, append 0 for success to the
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# generated cases
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return [self.format_result(result), "0"]
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2022-12-01 15:27:37 +01:00
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2022-12-15 17:59:40 +01:00
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class BignumModInvNonMont(bignum_common.ModOperationCommon, BignumModTarget):
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"""Test cases for bignum mpi_mod_inv() - not in Montgomery form."""
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moduli = ONLY_PRIME_MODULI # for now only prime moduli supported
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symbol = "^ -1"
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test_function = "mpi_mod_inv_non_mont"
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test_name = "mbedtls_mpi_mod_inv non-Mont. form"
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input_style = "fixed"
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arity = 1
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suffix = True
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disallow_zero_a = True
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def result(self) -> List[str]:
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result = bignum_common.invmod_positive(self.int_a, self.int_n)
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# To make negative tests easier, append 0 for success to the
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# generated cases
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return [self.format_result(result), "0"]
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class BignumModInvMont(bignum_common.ModOperationCommon, BignumModTarget):
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"""Test cases for bignum mpi_mod_inv() - Montgomery form."""
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moduli = ONLY_PRIME_MODULI # for now only prime moduli supported
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symbol = "^ -1"
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test_function = "mpi_mod_inv_mont"
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test_name = "mbedtls_mpi_mod_inv Mont. form"
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input_style = "arch_split" # Mont. form requires arch_split
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arity = 1
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suffix = True
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disallow_zero_a = True
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montgomery_form_a = True
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def result(self) -> List[str]:
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result = bignum_common.invmod_positive(self.int_a, self.int_n)
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mont_result = self.to_montgomery(result)
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# To make negative tests easier, append 0 for success to the
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# generated cases
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return [self.format_result(mont_result), "0"]
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2022-11-02 15:46:23 +01:00
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2022-11-29 13:25:05 +01:00
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class BignumModAdd(bignum_common.ModOperationCommon, BignumModTarget):
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"""Test cases for bignum mpi_mod_add()."""
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count = 0
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symbol = "+"
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test_function = "mpi_mod_add"
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test_name = "mbedtls_mpi_mod_add"
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input_style = "fixed"
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def result(self) -> List[str]:
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result = (self.int_a + self.int_b) % self.int_n
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# To make negative tests easier, append "0" for success to the
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# generated cases
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return [self.format_result(result), "0"]
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