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140 lines
4.2 KiB
Python
140 lines
4.2 KiB
Python
import pytest
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import logging
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from os import urandom
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from time import sleep
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from uuid import uuid4
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from hashlib import sha256
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from threading import Thread
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from queue import Queue, Empty
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from pisa.watcher import Watcher
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from pisa.responder import Responder
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from pisa.conf import MAX_APPOINTMENTS
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from pisa.appointment import Appointment
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from pisa.tools import check_txid_format
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from pisa.utils.auth_proxy import AuthServiceProxy
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from test.simulator.bitcoind_sim import TIME_BETWEEN_BLOCKS
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from pisa.conf import EXPIRY_DELTA, BTC_RPC_USER, BTC_RPC_PASSWD, BTC_RPC_HOST, BTC_RPC_PORT
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logging.getLogger().disabled = True
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APPOINTMENTS = 5
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START_TIME_OFFSET = 1
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END_TIME_OFFSET = 1
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@pytest.fixture(scope="module")
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def watcher():
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return Watcher()
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def create_appointment(locator=None):
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bitcoin_cli = AuthServiceProxy("http://%s:%s@%s:%d" % (BTC_RPC_USER, BTC_RPC_PASSWD, BTC_RPC_HOST, BTC_RPC_PORT))
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if locator is None:
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locator = urandom(32).hex()
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start_time = bitcoin_cli.getblockcount() + 1
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end_time = start_time + 1
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dispute_delta = 20
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encrypted_blob_data = urandom(100).hex()
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cipher = "AES-GCM-128"
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hash_function = "SHA256"
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return Appointment(locator, start_time, end_time, dispute_delta, encrypted_blob_data, cipher, hash_function)
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def create_appointments(n):
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locator_uuid_map = dict()
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appointments = dict()
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txids = []
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for i in range(n):
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txid = urandom(32)
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uuid = uuid4().hex
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locator = sha256(txid).hexdigest()
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appointments[uuid] = create_appointment(locator)
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locator_uuid_map[locator] = [uuid]
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txids.append(txid.hex())
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return appointments, locator_uuid_map, txids
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def test_init(watcher):
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assert type(watcher.appointments) is dict and len(watcher.appointments) == 0
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assert type(watcher.locator_uuid_map) is dict and len(watcher.locator_uuid_map) == 0
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assert watcher.block_queue is None
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assert watcher.asleep is True
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assert watcher.max_appointments == MAX_APPOINTMENTS
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assert watcher.zmq_subscriber is None
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assert type(watcher.responder) is Responder
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def test_add_appointment(run_bitcoind, watcher):
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# The watcher automatically fire do_watch and do_subscribe on adding an appointment if it is asleep (initial state).
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# Avoid this by setting the state to awake.
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watcher.asleep = False
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# We should be able to add appointments up to the limit
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for _ in range(10):
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added_appointment = watcher.add_appointment(create_appointment())
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assert added_appointment is True
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def test_add_too_many_appointments(watcher):
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# Any appointment on top of those should fail
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watcher.appointments = dict()
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for _ in range(MAX_APPOINTMENTS):
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added_appointment = watcher.add_appointment(create_appointment())
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assert added_appointment is True
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added_appointment = watcher.add_appointment(create_appointment())
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assert added_appointment is False
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def test_do_subscribe(watcher):
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watcher.block_queue = Queue()
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zmq_thread = Thread(target=watcher.do_subscribe)
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zmq_thread.daemon = True
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zmq_thread.start()
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try:
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block_hash = watcher.block_queue.get(timeout=MAX_APPOINTMENTS)
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assert check_txid_format(block_hash)
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except Empty:
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assert False
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def test_do_watch(watcher):
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bitcoin_cli = AuthServiceProxy("http://%s:%s@%s:%d" % (BTC_RPC_USER, BTC_RPC_PASSWD, BTC_RPC_HOST, BTC_RPC_PORT))
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# We will wipe all the previous data and add 5 appointments
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watcher.appointments, watcher.locator_uuid_map, txids = create_appointments(APPOINTMENTS)
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watch_thread = Thread(target=watcher.do_watch)
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watch_thread.daemon = True
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watch_thread.start()
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# Broadcast the first two
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for txid in txids[:2]:
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bitcoin_cli.sendrawtransaction(txid)
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# After leaving some time for the block to be mined and processed, the number of appointments should have reduced
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# by two
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sleep(TIME_BETWEEN_BLOCKS*(START_TIME_OFFSET+END_TIME_OFFSET + 1))
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assert len(watcher.appointments) == APPOINTMENTS - 2
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# The rest of appointments will timeout after the end (2) + EXPIRY_DELTA
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# Wait for an additional block to be safe
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sleep((EXPIRY_DELTA + 2 + 1) * TIME_BETWEEN_BLOCKS)
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assert len(watcher.appointments) == 0
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assert watcher.asleep is True
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