2017-09-28 00:07:36 +00:00
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import asyncio
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2017-09-30 17:32:39 +00:00
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import datetime
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2017-10-28 17:53:56 +00:00
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import msgpack
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2017-10-04 04:13:46 +00:00
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import pytest
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2017-11-05 04:59:35 +00:00
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2017-11-07 04:42:21 +00:00
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from kademlia.utils import digest
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2017-11-07 20:51:30 +00:00
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from nkms.characters import Ursula, Alice, Character, Bob, congregate
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2017-11-03 04:54:58 +00:00
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from nkms.network.blockchain_client import list_all_ursulas
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2017-09-30 17:32:39 +00:00
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from nkms.policy.constants import NON_PAYMENT
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2017-11-07 04:42:21 +00:00
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from nkms.policy.models import PolicyManagerForAlice, PolicyOffer, Policy
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2017-11-09 21:48:40 +00:00
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from tests.test_utilities import make_fake_ursulas, MockNetworkyStuff
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2017-10-03 15:43:12 +00:00
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2017-10-28 02:26:23 +00:00
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EVENT_LOOP = asyncio.get_event_loop()
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2017-10-27 01:39:13 +00:00
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asyncio.set_event_loop(EVENT_LOOP)
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2017-11-03 04:54:58 +00:00
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URSULA_PORT = 7468
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2017-11-07 04:42:21 +00:00
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NUMBER_OF_URSULAS_IN_NETWORK = 6
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2017-11-09 21:48:40 +00:00
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URSULAS, URSULA_PORTS = make_fake_ursulas(NUMBER_OF_URSULAS_IN_NETWORK, URSULA_PORT)
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2017-10-27 01:39:13 +00:00
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ALICE = Alice()
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ALICE.attach_server()
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ALICE.server.listen(8471)
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2017-10-28 04:32:32 +00:00
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EVENT_LOOP.run_until_complete(ALICE.server.bootstrap([("127.0.0.1", URSULA_PORT)]))
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BOB = Bob(alice=ALICE)
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BOB.attach_server()
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BOB.server.listen(8475)
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2017-11-03 04:54:58 +00:00
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EVENT_LOOP.run_until_complete(BOB.server.bootstrap([("127.0.0.1", URSULA_PORT)]))
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2017-10-27 01:39:13 +00:00
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2017-11-07 20:51:30 +00:00
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congregate(ALICE, BOB, URSULAS[0])
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2017-10-27 01:39:13 +00:00
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2017-11-06 21:35:54 +00:00
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def test_all_ursulas_know_about_all_other_ursulas():
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2017-11-09 21:48:40 +00:00
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"""
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Once launched, all Ursulas know about - and can help locate - all other Ursulas in the network.
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"""
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2017-11-06 21:35:54 +00:00
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ignorance = []
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for acounter, announcing_ursula in enumerate(list_all_ursulas()):
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for counter, propagating_ursula in enumerate(URSULAS):
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if not digest(announcing_ursula) in propagating_ursula.server.storage:
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ignorance.append((counter, acounter))
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if ignorance:
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pytest.fail(str(["{} didn't know about {}".format(counter, acounter) for counter, acounter in ignorance]))
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def test_vladimir_illegal_interface_key_does_not_propagate():
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2017-11-09 21:48:40 +00:00
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"""
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Although Ursulas propagate each other's interface information, as demonstrated above, they do not propagate
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interface information for Vladimir, an Evil Ursula.
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"""
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2017-11-06 03:28:13 +00:00
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vladimir = URSULAS[0]
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ursula = URSULAS[1]
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# Ursula hasn't seen any illegal keys.
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assert ursula.server.protocol.illegal_keys_seen == []
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# Vladimir does almost everything right....
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interface_info = msgpack.dumps((vladimir.port, vladimir.interface))
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signature = vladimir.seal(interface_info)
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value = b"uaddr-" + msgpack.dumps([signature, bytes(vladimir.seal), interface_info])
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# Except he sets an illegal key for his interface.
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illegal_key = "Not allowed to set arbitrary key for this."
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setter = vladimir.server.set(key=illegal_key, value=value)
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loop = asyncio.get_event_loop()
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loop.run_until_complete(setter)
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# Now Ursula has seen an illegal key.
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assert digest(illegal_key) in ursula.server.protocol.illegal_keys_seen
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2017-11-09 22:28:11 +00:00
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def test_alice_cannot_offer_policy_without_first_finding_ursula():
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"""
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Alice can't just offer a Policy if she doesn't know whether any Ursulas are available (she gets Ursula.NotFound).
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"""
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networky_stuff = MockNetworkyStuff(URSULAS)
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policy = Policy(Alice())
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with pytest.raises(Ursula.NotFound):
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policy_offer = policy.encrypt_payload_for_ursula()
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def test_trying_to_find_unknown_actor_raises_not_found():
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"""
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Tony the test character can't make reference to a character he doesn't know about yet.
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"""
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tony_clifton = Character()
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message = b"some_message"
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signature = ALICE.seal(message)
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# Tony can't reference Alice...
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with pytest.raises(Character.NotFound):
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verification = tony_clifton.verify_from(ALICE, signature, message)
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# ...before learning about Alice.
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tony_clifton.learn_about_actor(ALICE)
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verification, NO_DECRYPTION_PERFORMED = tony_clifton.verify_from(ALICE, signature, message)
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assert verification is True
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2017-11-09 21:48:40 +00:00
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def test_alice_finds_ursula():
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"""
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With the help of any Ursula, Alice can find a specific Ursula.
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"""
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ursula_index = 1
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all_ursulas = list_all_ursulas()
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getter = ALICE.server.get(all_ursulas[ursula_index])
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loop = asyncio.get_event_loop()
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value = loop.run_until_complete(getter)
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signature, ursula_pubkey_sig, interface_info = msgpack.loads(value.lstrip(b"uaddr-"))
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port, interface = msgpack.loads(interface_info)
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assert port == URSULA_PORT + ursula_index
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2017-10-18 08:52:01 +00:00
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2017-10-28 02:26:23 +00:00
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2017-11-09 22:28:11 +00:00
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def test_alice_has_ursulas_public_key_and_uses_it_to_encode_policy_payload():
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"""
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Now that Alice has found an Ursula, Alice can make a PolicyGroup, using Ursula's Public Key to encrypt each offer.
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"""
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# For example, a hashed path.
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resource_id = b"as098duasdlkj213098asf"
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# Alice has a policy in mind; she crafts an offer.
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n = NUMBER_OF_URSULAS_IN_NETWORK
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deposit = NON_PAYMENT
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contract_end_datetime = datetime.datetime.now() + datetime.timedelta(days=5)
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offer = PolicyOffer(n, deposit, contract_end_datetime)
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# Now, Alice needs to find N Ursulas to whom to make the offer.
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networky_stuff = MockNetworkyStuff(URSULAS)
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policy_manager = PolicyManagerForAlice(ALICE)
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policy_group = policy_manager.create_policy_group(
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BOB,
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resource_id,
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m=3,
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n=n,
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)
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networky_stuff = MockNetworkyStuff(URSULAS)
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policy_group.find_n_ursulas(networky_stuff, offer)
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policy_group.transmit_payloads(networky_stuff) # Until we figure out encrypt_for logic
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return policy_group
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2017-11-10 00:07:25 +00:00
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def test_alice_sets_treasure_map_on_network():
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2017-10-04 04:13:46 +00:00
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"""
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2017-11-10 00:07:25 +00:00
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Having made a PolicyGroup, Alice creates a TreasureMap and sends it to Ursula via the DHT.
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2017-10-04 04:13:46 +00:00
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"""
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2017-11-07 04:42:21 +00:00
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policy_group = test_alice_has_ursulas_public_key_and_uses_it_to_encode_policy_payload()
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treasure_map = policy_group.treasure_map
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2017-10-03 15:43:12 +00:00
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2017-10-27 01:39:13 +00:00
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encrypted_treasure_map, signature = ALICE.encrypt_for(BOB, treasure_map.packed_payload())
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2017-10-28 17:53:56 +00:00
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packed_encrypted_treasure_map = msgpack.dumps(encrypted_treasure_map)
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2017-10-03 15:43:12 +00:00
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2017-10-28 17:53:56 +00:00
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setter = ALICE.server.set(policy_group.id, packed_encrypted_treasure_map)
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2017-11-07 04:42:21 +00:00
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_set_event = EVENT_LOOP.run_until_complete(setter)
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2017-10-03 15:43:12 +00:00
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2017-11-03 21:50:04 +00:00
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treasure_map_as_set_on_network = URSULAS[0].server.storage[digest(policy_group.id)]
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2017-10-28 17:53:56 +00:00
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assert treasure_map_as_set_on_network == packed_encrypted_treasure_map # IE, Ursula stores it properly.
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2017-10-28 02:26:23 +00:00
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return treasure_map, treasure_map_as_set_on_network, signature, policy_group
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2017-10-24 00:28:10 +00:00
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2017-11-10 00:07:25 +00:00
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def test_treasure_map_with_bad_id_does_not_propagate():
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"""
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In order to prevent spam attacks, Ursula refuses to propagate a TreasureMap whose PolicyGroup ID does not comport to convention.
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"""
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illegal_policygroup_id = "This is not a conventional policygroup id"
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policy_group = test_alice_has_ursulas_public_key_and_uses_it_to_encode_policy_payload()
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treasure_map = policy_group.treasure_map
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encrypted_treasure_map, signature = ALICE.encrypt_for(BOB, treasure_map.packed_payload())
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packed_encrypted_treasure_map = msgpack.dumps(encrypted_treasure_map)
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setter = ALICE.server.set(illegal_policygroup_id, packed_encrypted_treasure_map)
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_set_event = EVENT_LOOP.run_until_complete(setter)
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with pytest.raises(KeyError):
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URSULAS[0].server.storage[digest(illegal_policygroup_id)]
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2017-10-27 01:39:13 +00:00
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def test_treasure_map_stored_by_ursula_is_the_correct_one_for_bob():
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2017-11-09 22:28:11 +00:00
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"""
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The TreasureMap given by Alice to Ursula is the correct one for Bob; he can decrypt and read it.
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"""
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2017-11-10 00:07:25 +00:00
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treasure_map, treasure_map_as_set_on_network, signature, _ = test_alice_sets_treasure_map_on_network()
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2017-10-28 17:53:56 +00:00
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encrypted_treasure_map = msgpack.loads(treasure_map_as_set_on_network)
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2017-10-27 01:39:13 +00:00
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verified, treasure_map_as_decrypted_by_bob = BOB.verify_from(ALICE, signature,
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2017-10-28 17:53:56 +00:00
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encrypted_treasure_map,
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2017-10-13 19:56:10 +00:00
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decrypt=True,
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signature_is_on_cleartext=True,
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2017-10-13 21:06:33 +00:00
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)
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2017-10-04 04:13:46 +00:00
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assert treasure_map_as_decrypted_by_bob == treasure_map.packed_payload()
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2017-10-13 02:11:07 +00:00
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assert verified is True
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2017-10-03 15:43:12 +00:00
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2017-11-09 22:28:11 +00:00
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def test_bob_can_retreive_the_treasure_map_and_decrypt_it():
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2017-10-24 00:28:10 +00:00
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"""
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2017-11-09 22:28:11 +00:00
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Above, we showed that the TreasureMap saved on the network is the correct one for Bob. Here, we show
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that Bob can retrieve it with only the information about which he is privy pursuant to the PolicyGroup.
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2017-10-24 00:28:10 +00:00
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"""
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2017-11-10 00:07:25 +00:00
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treasure_map, treasure_map_as_set_on_network, signature, policy_group = test_alice_sets_treasure_map_on_network()
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2017-11-09 21:48:40 +00:00
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networky_stuff = MockNetworkyStuff(URSULAS)
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2017-10-28 02:26:23 +00:00
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# Of course, in the real world, Bob has sufficient information to reconstitute a PolicyGroup, gleaned, we presume, through a side-channel with Alice.
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2017-10-28 04:32:32 +00:00
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treasure_map_from_wire = BOB.get_treasure_map(policy_group, signature)
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2017-10-27 02:46:34 +00:00
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2017-10-28 04:32:32 +00:00
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assert treasure_map == treasure_map_from_wire
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2017-10-24 00:28:10 +00:00
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2017-11-07 02:11:03 +00:00
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def test_treaure_map_is_legit():
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2017-11-09 22:28:11 +00:00
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"""
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Sure, the TreasureMap can get to Bob, but we also need to know that each Ursula in the TreasureMap is on the network.
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"""
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2017-11-10 00:07:25 +00:00
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treasure_map, treasure_map_as_set_on_network, signature, policy_group = test_alice_sets_treasure_map_on_network()
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2017-11-07 02:11:03 +00:00
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2017-11-07 04:42:21 +00:00
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for ursula_interface_id in treasure_map:
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getter = ALICE.server.get(ursula_interface_id)
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2017-11-07 02:11:03 +00:00
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loop = asyncio.get_event_loop()
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value = loop.run_until_complete(getter)
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signature, ursula_pubkey_sig, interface_info = msgpack.loads(value.lstrip(b"uaddr-"))
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2017-11-07 04:42:21 +00:00
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port, _interface = msgpack.loads(interface_info)
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assert port in URSULA_PORTS
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