2022-06-08 19:04:29 +00:00
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import hashlib
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import random
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import RNS
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import os
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import time
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import unittest
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2022-06-08 21:28:55 +00:00
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class TestSHA256(unittest.TestCase):
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2022-06-08 19:04:29 +00:00
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def setUp(self):
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self.f = RNS.Cryptography.sha256
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def test_empty(self):
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self.assertEqual(
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self.f(''.encode("utf-8")),
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bytes.fromhex("e3b0c44298fc1c149afbf4c8996fb92427ae41e4649b934ca495991b7852b855"))
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def test_less_than_block_length(self):
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self.assertEqual(
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self.f('abc'.encode("utf-8")),
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bytes.fromhex("ba7816bf8f01cfea414140de5dae2223b00361a396177a9cb410ff61f20015ad"))
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def test_block_length(self):
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self.assertEqual(
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self.f('a'.encode("utf-8")*64),
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bytes.fromhex("ffe054fe7ae0cb6dc65c3af9b61d5209f439851db43d0ba5997337df154668eb"))
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def test_several_blocks(self):
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self.assertEqual(
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self.f('a'.encode("utf-8")*1000000),
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bytes.fromhex("cdc76e5c9914fb9281a1c7e284d73e67f1809a48a497200e046d39ccc7112cd0"))
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2022-06-08 20:27:26 +00:00
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def test_random_blocks(self):
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2022-06-08 19:04:29 +00:00
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max_rounds = 10000
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b = 0
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i = 0
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ok = True
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start = time.time()
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print("")
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while ok and i < max_rounds:
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i += 1
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rlen = random.randint(0, 1024*16)
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rdat = os.urandom(rlen)
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b += rlen
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msg = rdat
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ok = RNS.Cryptography.sha256(msg) == hashlib.sha256(msg).digest()
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# t = RNS.Cryptography.sha256(msg)
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# t = hashlib.sha256(msg).digest()
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if (i%1000 == 0):
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gbytes = round(b/1000000000,3)
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mbps = round((b*8/1000000)/(time.time()-start), 2)
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print(str(i)+" rounds OK, total data: "+str(gbytes)+"GB, "+str(mbps)+"mbps")
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if not ok:
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print("Failed at round "+str(i))
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else:
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print("SHA-256 test OK")
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self.assertEqual(ok, True)
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2022-06-08 21:28:55 +00:00
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class TestSHA512(unittest.TestCase):
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2022-06-08 19:04:29 +00:00
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def setUp(self):
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self.f = RNS.Cryptography.sha512
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def test_empty(self):
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self.assertEqual(
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self.f(''.encode("utf-8")),
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bytes.fromhex(
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'cf83e1357eefb8bdf1542850d66d8007d620e4050b5715dc83f4a921d36ce9ce'+
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'47d0d13c5d85f2b0ff8318d2877eec2f63b931bd47417a81a538327af927da3e'))
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def test_less_than_block_length(self):
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self.assertEqual(self.f('abc'.encode("utf-8")),
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bytes.fromhex(
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'ddaf35a193617abacc417349ae20413112e6fa4e89a97ea20a9eeee64b55d39a'+
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'2192992a274fc1a836ba3c23a3feebbd454d4423643ce80e2a9ac94fa54ca49f'))
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def test_block_length(self):
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self.assertEqual(self.f('a'.encode("utf-8")*128),
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bytes.fromhex(
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'b73d1929aa615934e61a871596b3f3b33359f42b8175602e89f7e06e5f658a24'+
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'3667807ed300314b95cacdd579f3e33abdfbe351909519a846d465c59582f321'))
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def test_several_blocks(self):
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self.assertEqual(self.f('a'.encode("utf-8")*1000000),
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bytes.fromhex(
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'e718483d0ce769644e2e42c7bc15b4638e1f98b13b2044285632a803afa973eb'+
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'de0ff244877ea60a4cb0432ce577c31beb009c5c2c49aa2e4eadb217ad8cc09b'))
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2022-06-08 20:27:26 +00:00
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def test_random_blocks(self):
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2022-06-08 19:04:29 +00:00
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max_rounds = 10000
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b = 0
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i = 0
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ok = True
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start = time.time()
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print("")
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while ok and i < max_rounds:
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i += 1
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rlen = random.randint(0, 1024*16)
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rdat = os.urandom(rlen)
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b += rlen
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msg = rdat
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ok = RNS.Cryptography.sha512(msg) == hashlib.sha512(msg).digest()
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# t = RNS.Cryptography.sha512(msg)
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# t = hashlib.sha512(msg).digest()
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if (i%1000 == 0):
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gbytes = round(b/1000000000,3)
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mbps = round((b*8/1000000)/(time.time()-start), 2)
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print(str(i)+" rounds OK, total data: "+str(gbytes)+"GB, "+str(mbps)+"mbps")
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if not ok:
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print("Failed at round "+str(i))
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else:
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print("SHA-512 test OK")
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self.assertEqual(ok, True)
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if __name__ == '__main__':
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2022-06-08 20:27:26 +00:00
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unittest.main(verbosity=2)
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