374 lines
15 KiB
Python
374 lines
15 KiB
Python
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# ===================================================================
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#
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# Copyright (c) 2014, Legrandin <helderijs@gmail.com>
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions
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# are met:
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#
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# 1. Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# 2. Redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in
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# the documentation and/or other materials provided with the
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# distribution.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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# FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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# COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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# INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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# BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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# LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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# CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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# LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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# ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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# POSSIBILITY OF SUCH DAMAGE.
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# ===================================================================
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import json
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import unittest
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from binascii import unhexlify
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from Crypto.Util.py3compat import b, bchr
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from Crypto.Util.number import bytes_to_long
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from Crypto.Util.strxor import strxor
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from Crypto.SelfTest.st_common import list_test_cases
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from Crypto.SelfTest.loader import load_tests
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from Crypto.Hash import SHA1, SHA224, SHA256, SHA384, SHA512
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from Crypto.PublicKey import RSA
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from Crypto.Signature import pss
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from Crypto.Signature import PKCS1_PSS
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from Crypto.Signature.pss import MGF1
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from Crypto.Util._file_system import pycryptodome_filename
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def load_hash_by_name(hash_name):
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return __import__("Crypto.Hash." + hash_name, globals(), locals(), ["new"])
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class PRNG(object):
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def __init__(self, stream):
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self.stream = stream
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self.idx = 0
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def __call__(self, rnd_size):
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result = self.stream[self.idx:self.idx + rnd_size]
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self.idx += rnd_size
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return result
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class PSS_Tests(unittest.TestCase):
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rsa_key = b'-----BEGIN RSA PRIVATE KEY-----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\nD+NmPL/N4uE57e40tbiU/H7KdyZaDt+5QiTmdhuyAe6CBjKsF2jy\n-----END RSA PRIVATE KEY-----'
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msg = b'AAA'
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tag = b'\x00[c5\xd8\xb0\x8b!D\x81\x83\x07\xc0\xdd\xb9\xb4\xb2`\x92\xe7\x02\xf1\xe1P\xea\xc3\xf0\xe3>\xddX5\xdd\x8e\xc5\x89\xef\xf3\xc2\xdc\xfeP\x02\x7f\x12+\xc9\xaf\xbb\xec\xfe\xb0\xa5\xb9\x08\x11P\x8fL\xee5\x9b\xb0k{=_\xd2\x14\xfb\x01R\xb7\xfe\x14}b\x03\x8d5Y\x89~}\xfc\xf2l\xd01-\xbd\xeb\x11\xcdV\x11\xe9l\x19k/o5\xa2\x0f\x15\xe7Q$\t=\xec\x1dAB\x19\xa5P\x9a\xaf\xa3G\x86"\xd6~\xf0<p5\x00\x86\xe0\xf3\x99\xc7+\xcfc,\\\x13)v\xcd\xff\x08o\x90\xc5\xd1\xca\x869\xf45\x1e\xfd\xa2\xf1n\xa3\xa6e\xc5\x11Q\xe4@\xbd\x17\x83x\xc9\x9b\xb5\xc7\xea\x03U\x9b\xa0\xccC\x17\xc9T\x86/\x05\x1c\xc7\x95hC\xf9b1\xbb\x05\xc3\xf0\x9a>j\xfcqkbs\x13\x84b\xe4\xbdm(\xed`\xa4F\xfb\x8f.\xe1\x8c)/_\x9eS\x98\xa4v\xb8\xdc\xfe\xf7/D\x18\x19\xb3T\x97:\xe2\x96s\xe8<\xa2\xb4\xb9\xf8/'
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def test_positive_1(self):
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key = RSA.import_key(self.rsa_key)
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h = SHA256.new(self.msg)
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verifier = pss.new(key)
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verifier.verify(h, self.tag)
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def test_negative_1(self):
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key = RSA.import_key(self.rsa_key)
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h = SHA256.new(self.msg + b'A')
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verifier = pss.new(key)
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tag = bytearray(self.tag)
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self.assertRaises(ValueError, verifier.verify, h, tag)
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def test_negative_2(self):
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key = RSA.import_key(self.rsa_key)
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h = SHA256.new(self.msg)
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verifier = pss.new(key, salt_bytes=1000)
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tag = bytearray(self.tag)
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self.assertRaises(ValueError, verifier.verify, h, tag)
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class FIPS_PKCS1_Verify_Tests(unittest.TestCase):
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def shortDescription(self):
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return "FIPS PKCS1 Tests (Verify)"
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def verify_positive(self, hashmod, message, public_key, salt, signature):
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prng = PRNG(salt)
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hashed = hashmod.new(message)
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verifier = pss.new(public_key, salt_bytes=len(salt), rand_func=prng)
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verifier.verify(hashed, signature)
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def verify_negative(self, hashmod, message, public_key, salt, signature):
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prng = PRNG(salt)
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hashed = hashmod.new(message)
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verifier = pss.new(public_key, salt_bytes=len(salt), rand_func=prng)
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self.assertRaises(ValueError, verifier.verify, hashed, signature)
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def test_can_sign(self):
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test_public_key = RSA.generate(1024).publickey()
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verifier = pss.new(test_public_key)
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self.assertEqual(verifier.can_sign(), False)
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class FIPS_PKCS1_Verify_Tests_KAT(unittest.TestCase):
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pass
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test_vectors_verify = load_tests(("Crypto", "SelfTest", "Signature", "test_vectors", "PKCS1-PSS"),
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"SigVerPSS_186-3.rsp",
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"Signature Verification 186-3",
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{ 'shaalg' : lambda x: x,
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'result' : lambda x: x })
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for count, tv in enumerate(test_vectors_verify):
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if isinstance(tv, str):
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continue
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if hasattr(tv, "n"):
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modulus = tv.n
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continue
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if hasattr(tv, "p"):
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continue
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hash_module = load_hash_by_name(tv.shaalg.upper())
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hash_obj = hash_module.new(tv.msg)
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public_key = RSA.construct([bytes_to_long(x) for x in (modulus, tv.e)]) # type: ignore
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if tv.saltval != b("\x00"):
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prng = PRNG(tv.saltval)
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verifier = pss.new(public_key, salt_bytes=len(tv.saltval), rand_func=prng)
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else:
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verifier = pss.new(public_key, salt_bytes=0)
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def positive_test(self, hash_obj=hash_obj, verifier=verifier, signature=tv.s):
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verifier.verify(hash_obj, signature)
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def negative_test(self, hash_obj=hash_obj, verifier=verifier, signature=tv.s):
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self.assertRaises(ValueError, verifier.verify, hash_obj, signature)
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if tv.result == 'p':
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setattr(FIPS_PKCS1_Verify_Tests_KAT, "test_positive_%d" % count, positive_test)
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else:
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setattr(FIPS_PKCS1_Verify_Tests_KAT, "test_negative_%d" % count, negative_test)
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class FIPS_PKCS1_Sign_Tests(unittest.TestCase):
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def shortDescription(self):
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return "FIPS PKCS1 Tests (Sign)"
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def test_can_sign(self):
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test_private_key = RSA.generate(1024)
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signer = pss.new(test_private_key)
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self.assertEqual(signer.can_sign(), True)
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class FIPS_PKCS1_Sign_Tests_KAT(unittest.TestCase):
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pass
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test_vectors_sign = load_tests(("Crypto", "SelfTest", "Signature", "test_vectors", "PKCS1-PSS"),
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"SigGenPSS_186-2.txt",
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"Signature Generation 186-2",
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{ 'shaalg' : lambda x: x })
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test_vectors_sign += load_tests(("Crypto", "SelfTest", "Signature", "test_vectors", "PKCS1-PSS"),
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"SigGenPSS_186-3.txt",
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"Signature Generation 186-3",
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{ 'shaalg' : lambda x: x })
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for count, tv in enumerate(test_vectors_sign):
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if isinstance(tv, str):
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continue
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if hasattr(tv, "n"):
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modulus = tv.n
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continue
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if hasattr(tv, "e"):
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private_key = RSA.construct([bytes_to_long(x) for x in (modulus, tv.e, tv.d)]) # type: ignore
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continue
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hash_module = load_hash_by_name(tv.shaalg.upper())
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hash_obj = hash_module.new(tv.msg)
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if tv.saltval != b("\x00"):
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prng = PRNG(tv.saltval)
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signer = pss.new(private_key, salt_bytes=len(tv.saltval), rand_func=prng)
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else:
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signer = pss.new(private_key, salt_bytes=0)
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def new_test(self, hash_obj=hash_obj, signer=signer, result=tv.s):
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signature = signer.sign(hash_obj)
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self.assertEqual(signature, result)
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setattr(FIPS_PKCS1_Sign_Tests_KAT, "test_%d" % count, new_test)
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class PKCS1_Legacy_Module_Tests(unittest.TestCase):
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"""Verify that the legacy module Crypto.Signature.PKCS1_PSS
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behaves as expected. The only difference is that the verify()
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method returns True/False and does not raise exceptions."""
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def shortDescription(self):
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return "Test legacy Crypto.Signature.PKCS1_PSS"
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def runTest(self):
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key = RSA.generate(1024)
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hashed = SHA1.new(b("Test"))
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good_signature = PKCS1_PSS.new(key).sign(hashed)
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verifier = PKCS1_PSS.new(key.publickey())
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self.assertEqual(verifier.verify(hashed, good_signature), True)
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# Flip a few bits in the signature
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bad_signature = strxor(good_signature, bchr(1) * len(good_signature))
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self.assertEqual(verifier.verify(hashed, bad_signature), False)
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class PKCS1_All_Hashes_Tests(unittest.TestCase):
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def shortDescription(self):
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return "Test PKCS#1 PSS signature in combination with all hashes"
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def runTest(self):
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key = RSA.generate(1280)
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signer = pss.new(key)
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hash_names = ("MD2", "MD4", "MD5", "RIPEMD160", "SHA1",
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"SHA224", "SHA256", "SHA384", "SHA512",
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"SHA3_224", "SHA3_256", "SHA3_384", "SHA3_512")
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for name in hash_names:
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hashed = load_hash_by_name(name).new(b("Test"))
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signer.sign(hashed)
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from Crypto.Hash import BLAKE2b, BLAKE2s
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for hash_size in (20, 32, 48, 64):
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hashed_b = BLAKE2b.new(digest_bytes=hash_size, data=b("Test"))
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signer.sign(hashed_b)
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for hash_size in (16, 20, 28, 32):
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hashed_s = BLAKE2s.new(digest_bytes=hash_size, data=b("Test"))
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signer.sign(hashed_s)
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def get_hash_module(hash_name):
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if hash_name == "SHA-512":
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hash_module = SHA512
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elif hash_name == "SHA-384":
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hash_module = SHA384
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elif hash_name == "SHA-256":
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hash_module = SHA256
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elif hash_name == "SHA-224":
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hash_module = SHA224
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elif hash_name == "SHA-1":
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hash_module = SHA1
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else:
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raise ValueError("Unknown hash algorithm: " + hash_name)
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return hash_module
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class TestVectorsPSSWycheproof(unittest.TestCase):
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def __init__(self, wycheproof_warnings):
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unittest.TestCase.__init__(self)
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self._wycheproof_warnings = wycheproof_warnings
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self._id = "None"
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def add_tests(self, filename):
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comps = "Crypto.SelfTest.Signature.test_vectors.wycheproof".split(".")
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with open(pycryptodome_filename(comps, filename), "rt") as file_in:
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tv_tree = json.load(file_in)
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for group in tv_tree['testGroups']:
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key = RSA.import_key(group['keyPem'])
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hash_module = get_hash_module(group['sha'])
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sLen = group['sLen']
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assert group['type'] == "RSASigVer"
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assert group['mgf'] == "MGF1"
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mgf1_hash = get_hash_module(group['mgfSha'])
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def mgf(x, y, mh=mgf1_hash):
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return MGF1(x, y, mh)
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from collections import namedtuple
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TestVector = namedtuple('TestVector', 'id comment msg sig key mgf sLen hash_module valid warning')
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for test in group['tests']:
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tv = TestVector(
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test['tcId'],
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test['comment'],
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unhexlify(test['msg']),
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unhexlify(test['sig']),
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key,
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mgf,
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sLen,
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hash_module,
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test['result'] != "invalid",
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test['result'] == "acceptable"
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)
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self.tv.append(tv)
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def setUp(self):
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self.tv = []
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self.add_tests("rsa_pss_2048_sha1_mgf1_20_test.json")
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self.add_tests("rsa_pss_2048_sha256_mgf1_0_test.json")
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self.add_tests("rsa_pss_2048_sha256_mgf1_32_test.json")
|
||
|
self.add_tests("rsa_pss_3072_sha256_mgf1_32_test.json")
|
||
|
self.add_tests("rsa_pss_4096_sha256_mgf1_32_test.json")
|
||
|
self.add_tests("rsa_pss_4096_sha512_mgf1_32_test.json")
|
||
|
self.add_tests("rsa_pss_misc_test.json")
|
||
|
|
||
|
def shortDescription(self):
|
||
|
return self._id
|
||
|
|
||
|
def warn(self, tv):
|
||
|
if tv.warning and self._wycheproof_warnings:
|
||
|
import warnings
|
||
|
warnings.warn("Wycheproof warning: %s (%s)" % (self._id, tv.comment))
|
||
|
|
||
|
def test_verify(self, tv):
|
||
|
self._id = "Wycheproof RSA PSS Test #%d (%s)" % (tv.id, tv.comment)
|
||
|
|
||
|
hashed_msg = tv.hash_module.new(tv.msg)
|
||
|
signer = pss.new(tv.key, mask_func=tv.mgf, salt_bytes=tv.sLen)
|
||
|
try:
|
||
|
signature = signer.verify(hashed_msg, tv.sig)
|
||
|
except ValueError as e:
|
||
|
if tv.warning:
|
||
|
return
|
||
|
assert not tv.valid
|
||
|
else:
|
||
|
assert tv.valid
|
||
|
self.warn(tv)
|
||
|
|
||
|
def runTest(self):
|
||
|
for tv in self.tv:
|
||
|
self.test_verify(tv)
|
||
|
|
||
|
|
||
|
def get_tests(config={}):
|
||
|
wycheproof_warnings = config.get('wycheproof_warnings')
|
||
|
|
||
|
tests = []
|
||
|
tests += list_test_cases(PSS_Tests)
|
||
|
tests += list_test_cases(FIPS_PKCS1_Verify_Tests)
|
||
|
tests += list_test_cases(FIPS_PKCS1_Sign_Tests)
|
||
|
tests += list_test_cases(PKCS1_Legacy_Module_Tests)
|
||
|
tests += list_test_cases(PKCS1_All_Hashes_Tests)
|
||
|
|
||
|
if config.get('slow_tests'):
|
||
|
tests += list_test_cases(FIPS_PKCS1_Verify_Tests_KAT)
|
||
|
tests += list_test_cases(FIPS_PKCS1_Sign_Tests_KAT)
|
||
|
|
||
|
tests += [ TestVectorsPSSWycheproof(wycheproof_warnings) ]
|
||
|
|
||
|
return tests
|
||
|
|
||
|
if __name__ == '__main__':
|
||
|
suite = lambda: unittest.TestSuite(get_tests())
|
||
|
unittest.main(defaultTest='suite')
|