Updated Identity tests
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@ -20,14 +20,70 @@ fixed_keys = [
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class TestIdentity(unittest.TestCase):
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def test_create_from_bytes(self):
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def test_0_create_from_bytes(self):
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for entry in fixed_keys:
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key, id_hash = entry
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i = RNS.Identity.from_bytes(bytes.fromhex(key))
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self.assertEqual(i.hash, bytes.fromhex(id_hash))
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self.assertEqual(i.get_private_key(), bytes.fromhex(key))
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def test_sign(self):
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def test_1_encrypt(self):
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print("")
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# Test decryption of known token
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fid = RNS.Identity.from_bytes(bytes.fromhex(fixed_keys[0][0]))
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self.assertEqual(fid.hash, bytes.fromhex(fixed_keys[0][1]))
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plaintext = fid.decrypt(bytes.fromhex(fixed_token))
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self.assertEqual(plaintext, bytes.fromhex(encrypted_message))
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# Test encrypt and decrypt of random chunks
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print("Testing random small chunk encrypt/decrypt")
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b = 0
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e_t = 0
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d_t = 0
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for i in range(1, 500):
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mlen = i % (RNS.Reticulum.MTU//2) + (RNS.Reticulum.MTU//2)
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msg = os.urandom(mlen)
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b += mlen
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id1 = RNS.Identity()
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id2 = RNS.Identity(create_keys=False)
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id2.load_public_key(id1.get_public_key())
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e_start = time.time()
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token = id2.encrypt(msg)
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e_t += time.time() - e_start
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d_start = time.time()
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decrypted = id1.decrypt(token)
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self.assertEqual(msg, decrypted)
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d_t += time.time() - d_start
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print("Encrypt chunks < MTU: "+self.size_str(b/e_t, "b")+"ps")
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print("Decrypt chunks < MTU: "+self.size_str(b/d_t, "b")+"ps")
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print("")
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# Test encrypt and decrypt of large chunks
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print("Testing large chunk encrypt/decrypt")
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mlen = 8*1000*1000
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for i in range(1, 3):
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msg = os.urandom(mlen)
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b += mlen
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id1 = RNS.Identity()
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id2 = RNS.Identity(create_keys=False)
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id2.load_public_key(id1.get_public_key())
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e_start = time.time()
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token = id2.encrypt(msg)
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e_t += time.time() - e_start
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d_start = time.time()
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self.assertEqual(msg, id1.decrypt(token))
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d_t += time.time() - d_start
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print("Encrypt "+self.size_str(mlen)+" chunks: "+self.size_str(b/e_t, "b")+"ps")
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print("Decrypt "+self.size_str(mlen)+" chunks: "+self.size_str(b/d_t, "b")+"ps")
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def test_2_sign(self):
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print("")
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# Test known signature
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@ -68,58 +124,6 @@ class TestIdentity(unittest.TestCase):
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print("Sign/validate 16KB chunks: "+self.size_str(b/t, "b")+"ps")
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def test_encrypt(self):
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print("")
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# Test decryption of known token
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fid = RNS.Identity.from_bytes(bytes.fromhex(fixed_keys[0][0]))
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self.assertEqual(fid.hash, bytes.fromhex(fixed_keys[0][1]))
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plaintext = fid.decrypt(bytes.fromhex(fixed_token))
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self.assertEqual(plaintext, bytes.fromhex(encrypted_message))
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# Test encrypt and decrypt of random chunks
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b = 0
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e_t = 0
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d_t = 0
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for i in range(1, 500):
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mlen = i % (RNS.Reticulum.MTU//2) + (RNS.Reticulum.MTU//2)
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msg = os.urandom(mlen)
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b += mlen
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id1 = RNS.Identity()
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id2 = RNS.Identity(create_keys=False)
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id2.load_public_key(id1.get_public_key())
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e_start = time.time()
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token = id2.encrypt(msg)
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e_t += time.time() - e_start
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d_start = time.time()
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self.assertEqual(msg, id1.decrypt(token))
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d_t += time.time() - d_start
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print("Encrypt chunks < MTU: "+self.size_str(b/e_t, "b")+"ps")
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print("Decrypt chunks < MTU: "+self.size_str(b/d_t, "b")+"ps")
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print("")
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# Test encrypt and decrypt of large chunks
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mlen = 8*1000*1000
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for i in range(1, 8):
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msg = os.urandom(mlen)
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b += mlen
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id1 = RNS.Identity()
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id2 = RNS.Identity(create_keys=False)
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id2.load_public_key(id1.get_public_key())
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e_start = time.time()
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token = id2.encrypt(msg)
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e_t += time.time() - e_start
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d_start = time.time()
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self.assertEqual(msg, id1.decrypt(token))
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d_t += time.time() - d_start
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print("Encrypt "+self.size_str(mlen)+" chunks: "+self.size_str(b/e_t, "b")+"ps")
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print("Decrypt "+self.size_str(mlen)+" chunks: "+self.size_str(b/d_t, "b")+"ps")
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def size_str(self, num, suffix='B'):
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units = ['','K','M','G','T','P','E','Z']
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@ -141,4 +145,4 @@ class TestIdentity(unittest.TestCase):
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return "%.2f%s%s" % (num, last_unit, suffix)
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if __name__ == '__main__':
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unittest.main(verbosity=1)
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unittest.main(verbosity=2)
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