Dmitri Bogomolov
faed885c34
- use bytes for python3 - encode the result of arithmetic.privtopub - add test for arithmetic.base10_multiply
114 lines
3.6 KiB
Python
114 lines
3.6 KiB
Python
"""
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Test the alternatives for crypto primitives
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"""
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import hashlib
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import unittest
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from abc import ABCMeta, abstractmethod
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from binascii import hexlify, unhexlify
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from pybitmessage.pyelliptic import arithmetic
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try:
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from Crypto.Hash import RIPEMD
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except ImportError:
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RIPEMD = None
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# These keys are from addresses test script
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sample_pubsigningkey = unhexlify(
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'044a367f049ec16cb6b6118eb734a9962d10b8db59c890cd08f210c43ff08bdf09d'
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'16f502ca26cd0713f38988a1237f1fc8fa07b15653c996dc4013af6d15505ce')
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sample_pubencryptionkey = unhexlify(
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'044597d59177fc1d89555d38915f581b5ff2286b39d022ca0283d2bdd5c36be5d3c'
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'e7b9b97792327851a562752e4b79475d1f51f5a71352482b241227f45ed36a9')
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sample_privsigningkey = \
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'93d0b61371a54b53df143b954035d612f8efa8a3ed1cf842c2186bfd8f876665'
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sample_privencryptionkey = \
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'4b0b73a54e19b059dc274ab69df095fe699f43b17397bca26fdf40f4d7400a3a'
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sample_ripe = b'003cd097eb7f35c87b5dc8b4538c22cb55312a9f'
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# stream: 1, version: 2
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sample_address = 'BM-onkVu1KKL2UaUss5Upg9vXmqd3esTmV79'
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sample_factor = 66858749573256452658262553961707680376751171096153613379801854825275240965733
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# G * sample_factor
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sample_point = (
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33567437183004486938355437500683826356288335339807546987348409590129959362313,
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94730058721143827257669456336351159718085716196507891067256111928318063085006
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)
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_sha = hashlib.new('sha512')
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_sha.update(sample_pubsigningkey + sample_pubencryptionkey)
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pubkey_sha = _sha.digest()
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class RIPEMD160TestCase(object):
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"""Base class for RIPEMD160 test case"""
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# pylint: disable=too-few-public-methods,no-member
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__metaclass__ = ABCMeta
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@abstractmethod
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def _hashdigest(self, data):
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"""RIPEMD160 digest implementation"""
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pass
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def test_hash_string(self):
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"""Check RIPEMD160 hash function on string"""
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self.assertEqual(hexlify(self._hashdigest(pubkey_sha)), sample_ripe)
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class TestHashlib(RIPEMD160TestCase, unittest.TestCase):
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"""RIPEMD160 test case for hashlib"""
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@staticmethod
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def _hashdigest(data):
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hasher = hashlib.new('ripemd160')
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hasher.update(data)
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return hasher.digest()
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@unittest.skipUnless(RIPEMD, 'pycrypto package not found')
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class TestCrypto(RIPEMD160TestCase, unittest.TestCase):
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"""RIPEMD160 test case for Crypto"""
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@staticmethod
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def _hashdigest(data):
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return RIPEMD.RIPEMD160Hash(data).digest()
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class TestAddresses(unittest.TestCase):
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"""Test addresses manipulations"""
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def test_base10_multiply(self):
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"""Test arithmetic.base10_multiply"""
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self.assertEqual(
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sample_point,
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arithmetic.base10_multiply(arithmetic.G, sample_factor))
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def test_privtopub(self):
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"""Generate public keys and check the result"""
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self.assertEqual(
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arithmetic.privtopub(sample_privsigningkey).encode(),
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hexlify(sample_pubsigningkey)
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)
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self.assertEqual(
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arithmetic.privtopub(sample_privencryptionkey).encode(),
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hexlify(sample_pubencryptionkey)
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)
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def test_address(self):
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"""Create address and check the result"""
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from pybitmessage import addresses
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from pybitmessage.fallback import RIPEMD160Hash
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sha = hashlib.new('sha512')
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sha.update(sample_pubsigningkey + sample_pubencryptionkey)
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ripe_hash = RIPEMD160Hash(sha.digest()).digest()
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self.assertEqual(ripe_hash, unhexlify(sample_ripe))
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self.assertEqual(
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addresses.encodeAddress(2, 1, ripe_hash), sample_address)
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self.assertEqual(
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addresses.decodeAddress(sample_address),
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('success', 2, 1, ripe_hash))
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