# This file is dual licensed under the terms of the Apache License, Version # 2.0, and the BSD License. See the LICENSE file in the root of this repository # for complete details. import binascii import os import pytest from cryptography.hazmat.primitives.ciphers import algorithms, modes from ...utils import load_nist_vectors from .utils import generate_encrypt_test @pytest.mark.supported( only_if=lambda backend: backend.cipher_supported( algorithms._IDEAInternal(b"\x00" * 16), modes.ECB() ), skip_message="Does not support IDEA ECB", ) class TestIDEAModeECB: test_ecb = generate_encrypt_test( load_nist_vectors, os.path.join("ciphers", "IDEA"), ["idea-ecb.txt"], lambda key, **kwargs: algorithms._IDEAInternal( binascii.unhexlify((key)) ), lambda **kwargs: modes.ECB(), ) @pytest.mark.supported( only_if=lambda backend: backend.cipher_supported( algorithms._IDEAInternal(b"\x00" * 16), modes.CBC(b"\x00" * 8) ), skip_message="Does not support IDEA CBC", ) class TestIDEAModeCBC: test_cbc = generate_encrypt_test( load_nist_vectors, os.path.join("ciphers", "IDEA"), ["idea-cbc.txt"], lambda key, **kwargs: algorithms._IDEAInternal( binascii.unhexlify((key)) ), lambda iv, **kwargs: modes.CBC(binascii.unhexlify(iv)), ) @pytest.mark.supported( only_if=lambda backend: backend.cipher_supported( algorithms._IDEAInternal(b"\x00" * 16), modes.OFB(b"\x00" * 8) ), skip_message="Does not support IDEA OFB", ) class TestIDEAModeOFB: test_ofb = generate_encrypt_test( load_nist_vectors, os.path.join("ciphers", "IDEA"), ["idea-ofb.txt"], lambda key, **kwargs: algorithms._IDEAInternal( binascii.unhexlify((key)) ), lambda iv, **kwargs: modes.OFB(binascii.unhexlify(iv)), ) @pytest.mark.supported( only_if=lambda backend: backend.cipher_supported( algorithms._IDEAInternal(b"\x00" * 16), modes.CFB(b"\x00" * 8) ), skip_message="Does not support IDEA CFB", ) class TestIDEAModeCFB: test_cfb = generate_encrypt_test( load_nist_vectors, os.path.join("ciphers", "IDEA"), ["idea-cfb.txt"], lambda key, **kwargs: algorithms._IDEAInternal( binascii.unhexlify((key)) ), lambda iv, **kwargs: modes.CFB(binascii.unhexlify(iv)), )