mirror of
https://github.com/aljazceru/python-teos.git
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308 lines
13 KiB
Python
308 lines
13 KiB
Python
import json
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import binascii
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from time import sleep
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from riemann.tx import Tx
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from cli import teos_cli, DATA_DIR, DEFAULT_CONF, CONF_FILE_NAME
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import common.cryptographer
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from common.blob import Blob
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from common.logger import Logger
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from common.tools import compute_locator
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from common.appointment import Appointment
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from common.cryptographer import Cryptographer
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from teos.utils.auth_proxy import JSONRPCException
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from test.teos.e2e.conftest import (
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END_TIME_DELTA,
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build_appointment_data,
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get_random_value_hex,
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create_penalty_tx,
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run_teosd,
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get_config,
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)
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cli_config = get_config(DATA_DIR, CONF_FILE_NAME, DEFAULT_CONF)
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common.cryptographer.logger = Logger(actor="Cryptographer", log_name_prefix="")
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# # We'll use teos_cli to add appointments. The expected input format is a list of arguments with a json-encoded
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# # appointment
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# teos_cli.teos_api_server = "http://{}".format(HOST)
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# teos_cli.teos_api_port = PORT
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teos_base_endpoint = "http://{}:{}".format(cli_config.get("TEOS_SERVER"), cli_config.get("TEOS_PORT"))
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teos_add_appointment_endpoint = teos_base_endpoint
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teos_get_appointment_endpoint = teos_base_endpoint + "/get_appointment"
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# Run teosd
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teosd_process = run_teosd()
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def broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, addr):
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# Broadcast the commitment transaction and mine a block
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bitcoin_cli.sendrawtransaction(commitment_tx)
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bitcoin_cli.generatetoaddress(1, addr)
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def get_appointment_info(locator):
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# Check that the justice has been triggered (the appointment has moved from Watcher to Responder)
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sleep(1) # Let's add a bit of delay so the state can be updated
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return teos_cli.get_appointment(locator, teos_get_appointment_endpoint)
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def test_appointment_life_cycle(bitcoin_cli, create_txs):
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commitment_tx, penalty_tx = create_txs
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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appointment_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx)
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locator = compute_locator(commitment_tx_id)
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "being_watched"
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "dispute_responded"
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# It can be also checked by ensuring that the penalty transaction made it to the network
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penalty_tx_id = bitcoin_cli.decoderawtransaction(penalty_tx).get("txid")
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try:
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bitcoin_cli.getrawtransaction(penalty_tx_id)
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assert True
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except JSONRPCException:
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# If the transaction if not found.
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assert False
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# Now let's mine some blocks so the appointment reaches its end.
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# Since we are running all the nodes remotely data may take more time than normal, and some confirmations may be
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# missed, so we generate more than enough confirmations and add some delays.
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for _ in range(int(1.5 * END_TIME_DELTA)):
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sleep(1)
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bitcoin_cli.generatetoaddress(1, new_addr)
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appointment_info = get_appointment_info(locator)
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assert appointment_info[0].get("status") == "not_found"
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def test_appointment_malformed_penalty(bitcoin_cli, create_txs):
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# Lets start by creating two valid transaction
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commitment_tx, penalty_tx = create_txs
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# Now we can modify the penalty so it is invalid when broadcast
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mod_penalty_tx = Tx.from_hex(penalty_tx)
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tx_in = mod_penalty_tx.tx_ins[0].copy(redeem_script=b"")
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mod_penalty_tx = mod_penalty_tx.copy(tx_ins=[tx_in])
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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appointment_data = build_appointment_data(bitcoin_cli, commitment_tx_id, mod_penalty_tx.hex())
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locator = compute_locator(commitment_tx_id)
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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# Broadcast the commitment transaction and mine a block
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# The appointment should have been removed since the penalty_tx was malformed.
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sleep(1)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "not_found"
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def test_appointment_wrong_key(bitcoin_cli, create_txs):
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# This tests an appointment encrypted with a key that has not been derived from the same source as the locator.
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# Therefore the tower won't be able to decrypt the blob once the appointment is triggered.
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commitment_tx, penalty_tx = create_txs
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# The appointment data is built using a random 32-byte value.
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appointment_data = build_appointment_data(bitcoin_cli, get_random_value_hex(32), penalty_tx)
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# We can't use teos_cli.add_appointment here since it computes the locator internally, so let's do it manually.
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# We will encrypt the blob using the random value and derive the locator from the commitment tx.
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appointment_data["locator"] = compute_locator(bitcoin_cli.decoderawtransaction(commitment_tx).get("txid"))
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appointment_data["encrypted_blob"] = Cryptographer.encrypt(Blob(penalty_tx), get_random_value_hex(32))
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appointment = Appointment.from_dict(appointment_data)
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teos_pk, cli_sk, cli_pk_der = teos_cli.load_keys(
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cli_config.get("TEOS_PUBLIC_KEY"), cli_config.get("CLI_PRIVATE_KEY"), cli_config.get("CLI_PUBLIC_KEY")
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)
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hex_pk_der = binascii.hexlify(cli_pk_der)
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signature = Cryptographer.sign(appointment.serialize(), cli_sk)
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data = {"appointment": appointment.to_dict(), "signature": signature, "public_key": hex_pk_der.decode("utf-8")}
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# Send appointment to the server.
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response = teos_cli.post_appointment(data, teos_add_appointment_endpoint)
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response_json = teos_cli.process_post_appointment_response(response)
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# Check that the server has accepted the appointment
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signature = response_json.get("signature")
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assert signature is not None
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rpk = Cryptographer.recover_pk(appointment.serialize(), signature)
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assert Cryptographer.verify_rpk(teos_pk, rpk) is True
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assert response_json.get("locator") == appointment.locator
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# Trigger the appointment
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# The appointment should have been removed since the decryption failed.
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sleep(1)
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appointment_info = get_appointment_info(appointment.locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "not_found"
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def test_two_identical_appointments(bitcoin_cli, create_txs):
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# Tests sending two identical appointments to the tower.
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# At the moment there are no checks for identical appointments, so both will be accepted, decrypted and kept until
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# the end.
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# TODO: 34-exact-duplicate-appointment
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# This tests sending an appointment with two valid transaction with the same locator.
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commitment_tx, penalty_tx = create_txs
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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appointment_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx)
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locator = compute_locator(commitment_tx_id)
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# Send the appointment twice
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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# Broadcast the commitment transaction and mine a block
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# The first appointment should have made it to the Responder, and the second one should have been dropped for
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# double-spending
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sleep(1)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 2
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for info in appointment_info:
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assert info.get("status") == "dispute_responded"
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assert info.get("penalty_rawtx") == penalty_tx
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def test_two_appointment_same_locator_different_penalty(bitcoin_cli, create_txs):
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# This tests sending an appointment with two valid transaction with the same locator.
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commitment_tx, penalty_tx1 = create_txs
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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# We need to create a second penalty spending from the same commitment
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decoded_commitment_tx = bitcoin_cli.decoderawtransaction(commitment_tx)
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new_addr = bitcoin_cli.getnewaddress()
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penalty_tx2 = create_penalty_tx(bitcoin_cli, decoded_commitment_tx, new_addr)
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appointment1_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx1)
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appointment2_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx2)
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locator = compute_locator(commitment_tx_id)
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assert teos_cli.add_appointment([json.dumps(appointment1_data)], teos_add_appointment_endpoint, cli_config) is True
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assert teos_cli.add_appointment([json.dumps(appointment2_data)], teos_add_appointment_endpoint, cli_config) is True
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# Broadcast the commitment transaction and mine a block
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# The first appointment should have made it to the Responder, and the second one should have been dropped for
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# double-spending
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sleep(1)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "dispute_responded"
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assert appointment_info[0].get("penalty_rawtx") == penalty_tx1
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def test_appointment_shutdown_teos_trigger_back_online(create_txs, bitcoin_cli):
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global teosd_process
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teos_pid = teosd_process.pid
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commitment_tx, penalty_tx = create_txs
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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appointment_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx)
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locator = compute_locator(commitment_tx_id)
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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# Restart teos
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teosd_process.terminate()
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teosd_process = run_teosd()
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assert teos_pid != teosd_process.pid
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# Check that the appointment is still in the Watcher
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "being_watched"
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# Trigger appointment after restart
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# The appointment should have been moved to the Responder
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sleep(1)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "dispute_responded"
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def test_appointment_shutdown_teos_trigger_while_offline(create_txs, bitcoin_cli):
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global teosd_process
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teos_pid = teosd_process.pid
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commitment_tx, penalty_tx = create_txs
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commitment_tx_id = bitcoin_cli.decoderawtransaction(commitment_tx).get("txid")
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appointment_data = build_appointment_data(bitcoin_cli, commitment_tx_id, penalty_tx)
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locator = compute_locator(commitment_tx_id)
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assert teos_cli.add_appointment([json.dumps(appointment_data)], teos_add_appointment_endpoint, cli_config) is True
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# Check that the appointment is still in the Watcher
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "being_watched"
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# Shutdown and trigger
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teosd_process.terminate()
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new_addr = bitcoin_cli.getnewaddress()
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broadcast_transaction_and_mine_block(bitcoin_cli, commitment_tx, new_addr)
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# Restart
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teosd_process = run_teosd()
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assert teos_pid != teosd_process.pid
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# The appointment should have been moved to the Responder
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sleep(1)
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appointment_info = get_appointment_info(locator)
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assert appointment_info is not None
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assert len(appointment_info) == 1
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assert appointment_info[0].get("status") == "dispute_responded"
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teosd_process.terminate()
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