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#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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# Copyright (c) 2020-2022 tecnovert
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# Distributed under the MIT software license, see the accompanying
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# file LICENSE.txt or http://www.opensource.org/licenses/mit-license.php.
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import os
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import json
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import signal
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import logging
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from urllib.request import urlopen
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from .util import read_json_api
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from basicswap.rpc import callrpc
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from basicswap.contrib.rpcauth import generate_salt, password_to_hmac
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from bin.basicswap_prepare import downloadPIVXParams
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TEST_HTTP_HOST = os.getenv('TEST_HTTP_HOST', '127.0.0.1') # Set to 0.0.0.0 when used in docker
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TEST_HTTP_PORT = 1800
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BASE_P2P_PORT = 12792
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BASE_PORT = 14792
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BASE_RPC_PORT = 19792
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BASE_ZMQ_PORT = 20792
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BTC_BASE_PORT = 31792
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BTC_BASE_RPC_PORT = 32792
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BTC_BASE_ZMQ_PORT = 33792
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BTC_BASE_TOR_PORT = 33732
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LTC_BASE_PORT = 34792
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LTC_BASE_RPC_PORT = 35792
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LTC_BASE_ZMQ_PORT = 36792
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PIVX_BASE_PORT = 34892
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PIVX_BASE_RPC_PORT = 35892
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PIVX_BASE_ZMQ_PORT = 36892
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PREFIX_SECRET_KEY_REGTEST = 0x2e
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def prepareDataDir(datadir, node_id, conf_file, dir_prefix, base_p2p_port=BASE_PORT, base_rpc_port=BASE_RPC_PORT, num_nodes=3):
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node_dir = os.path.join(datadir, dir_prefix + str(node_id))
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if not os.path.exists(node_dir):
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os.makedirs(node_dir)
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cfg_file_path = os.path.join(node_dir, conf_file)
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if os.path.exists(cfg_file_path):
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return
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with open(cfg_file_path, 'w+') as fp:
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fp.write('regtest=1\n')
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fp.write('[regtest]\n')
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fp.write('port=' + str(base_p2p_port + node_id) + '\n')
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fp.write('rpcport=' + str(base_rpc_port + node_id) + '\n')
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salt = generate_salt(16)
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fp.write('rpcauth={}:{}${}\n'.format('test' + str(node_id), salt, password_to_hmac(salt, 'test_pass' + str(node_id))))
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fp.write('daemon=0\n')
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fp.write('printtoconsole=0\n')
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fp.write('server=1\n')
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fp.write('discover=0\n')
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fp.write('listenonion=0\n')
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fp.write('bind=127.0.0.1\n')
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fp.write('debug=1\n')
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fp.write('debugexclude=libevent\n')
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fp.write('fallbackfee=0.01\n')
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fp.write('acceptnonstdtxn=0\n')
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fp.write('txindex=1\n')
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fp.write('wallet=wallet.dat\n')
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fp.write('findpeers=0\n')
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if base_p2p_port == BASE_PORT: # Particl
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fp.write('zmqpubsmsg=tcp://127.0.0.1:{}\n'.format(BASE_ZMQ_PORT + node_id))
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# minstakeinterval=5 # Using walletsettings stakelimit instead
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fp.write('stakethreadconddelayms=1000\n')
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fp.write('smsgsregtestadjust=0\n')
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if conf_file == 'pivx.conf':
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params_dir = os.path.join(datadir, 'pivx-params')
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downloadPIVXParams(params_dir)
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fp.write(f'paramsdir={params_dir}\n')
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for i in range(0, num_nodes):
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if node_id == i:
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continue
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fp.write('addnode=127.0.0.1:{}\n'.format(base_p2p_port + i))
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return node_dir
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def checkForks(ro):
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try:
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if 'bip9_softforks' in ro:
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assert (ro['bip9_softforks']['csv']['status'] == 'active')
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assert (ro['bip9_softforks']['segwit']['status'] == 'active')
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else:
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assert (ro['softforks']['csv']['active'])
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assert (ro['softforks']['segwit']['active'])
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except Exception as e:
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logging.warning('Could not parse deployment info')
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def stopDaemons(daemons):
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for d in daemons:
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logging.info('Interrupting %d', d.pid)
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try:
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d.send_signal(signal.SIGINT)
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except Exception as e:
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logging.info('Interrupting %d, error %s', d.pid, str(e))
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for d in daemons:
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try:
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d.wait(timeout=20)
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for fp in (d.stdout, d.stderr, d.stdin):
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if fp:
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fp.close()
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except Exception as e:
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logging.info('Closing %d, error %s', d.pid, str(e))
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def wait_for_bid(delay_event, swap_client, bid_id, state=None, sent=False, wait_for=20):
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logging.info('wait_for_bid %s', bid_id.hex())
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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filters = {
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'bid_id': bid_id,
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}
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bids = swap_client.listBids(sent=sent, filters=filters)
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assert (len(bids) < 2)
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for bid in bids:
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if bid[2] == bid_id:
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if type(state) == list:
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if bid[5] in state:
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return
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else:
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continue
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elif state is not None and state != bid[5]:
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continue
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return
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raise ValueError('wait_for_bid timed out.')
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def wait_for_bid_tx_state(delay_event, swap_client, bid_id, initiate_state, participate_state, wait_for=30):
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logging.info('wait_for_bid_tx_state %s %s %s', bid_id.hex(), str(initiate_state), str(participate_state))
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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bid = swap_client.getBid(bid_id)
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if (initiate_state is None or bid.getITxState() == initiate_state) \
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and (participate_state is None or bid.getPTxState() == participate_state):
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return
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raise ValueError('wait_for_bid_tx_state timed out.')
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def wait_for_event(delay_event, swap_client, linked_type, linked_id, event_type=None, wait_for=20):
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logging.info('wait_for_event')
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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rv = swap_client.getEvents(linked_type, linked_id)
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for event in rv:
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if event_type is None or event.event_type == event_type:
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return event
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raise ValueError('wait_for_event timed out.')
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def wait_for_offer(delay_event, swap_client, offer_id, wait_for=20):
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logging.info('wait_for_offer %s', offer_id.hex())
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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offers = swap_client.listOffers()
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for offer in offers:
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if offer.offer_id == offer_id:
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return
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raise ValueError('wait_for_offer timed out.')
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def wait_for_no_offer(delay_event, swap_client, offer_id, wait_for=20):
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logging.info('wait_for_no_offer %s', offer_id.hex())
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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offers = swap_client.listOffers()
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found_offer = False
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for offer in offers:
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if offer.offer_id == offer_id:
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found_offer = True
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break
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if not found_offer:
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return True
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raise ValueError('wait_for_offer timed out.')
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def wait_for_in_progress(delay_event, swap_client, bid_id, sent=False):
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logging.info('wait_for_in_progress %s', bid_id.hex())
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for i in range(20):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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swaps = swap_client.listSwapsInProgress()
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for b in swaps:
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if b[0] == bid_id:
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return
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raise ValueError('wait_for_in_progress timed out.')
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def wait_for_none_active(delay_event, port, wait_for=30):
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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delay_event.wait(1)
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js = read_json_api(port)
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if js['num_swapping'] == 0 and js['num_watched_outputs'] == 0:
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return
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raise ValueError('wait_for_none_active timed out.')
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def waitForNumOffers(delay_event, port, offers, wait_for=20):
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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summary = read_json_api(port)
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if summary['num_network_offers'] >= offers:
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return
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delay_event.wait(1)
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raise ValueError('waitForNumOffers failed')
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def waitForNumBids(delay_event, port, bids, wait_for=20):
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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summary = read_json_api(port)
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if summary['num_recv_bids'] >= bids:
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return
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delay_event.wait(1)
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raise ValueError('waitForNumBids failed')
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def waitForNumSwapping(delay_event, port, bids, wait_for=60):
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for i in range(wait_for):
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if delay_event.is_set():
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raise ValueError('Test stopped.')
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summary = read_json_api(port)
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if summary['num_swapping'] >= bids:
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return
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delay_event.wait(1)
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raise ValueError('waitForNumSwapping failed')
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def wait_for_balance(delay_event, url, balance_key, expect_amount, iterations=20, delay_time=3) -> None:
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i = 0
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while not delay_event.is_set():
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rv_js = json.loads(urlopen(url).read())
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if float(rv_js[balance_key]) >= expect_amount:
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return
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delay_event.wait(delay_time)
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i += 1
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if i > iterations:
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raise ValueError('Expect {} {}'.format(balance_key, expect_amount))
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def wait_for_unspent(delay_event, ci, expect_amount, iterations=20, delay_time=1) -> None:
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logging.info(f'Waiting for unspent balance: {expect_amount}')
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i = 0
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while not delay_event.is_set():
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unspent_addr = ci.getUnspentsByAddr()
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for _, value in unspent_addr.items():
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if value >= expect_amount:
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return
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delay_event.wait(delay_time)
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i += 1
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if i > iterations:
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raise ValueError('wait_for_unspent {}'.format(expect_amount))
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def delay_for(delay_event, delay_for=60):
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logging.info('Delaying for {} seconds.'.format(delay_for))
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delay_event.wait(delay_for)
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def make_rpc_func(node_id, base_rpc_port=BASE_RPC_PORT):
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node_id = node_id
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auth = 'test{0}:test_pass{0}'.format(node_id)
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def rpc_func(method, params=None, wallet=None):
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nonlocal node_id, auth
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return callrpc(base_rpc_port + node_id, auth, method, params, wallet)
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return rpc_func
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def extract_states_from_xu_file(file_path, prefix):
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states = {}
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alt_counter = 0
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active_path = 0
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states[active_path] = []
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path_stack = [active_path, ]
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with open(file_path) as fp:
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for line in fp:
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line = line.strip()
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if line.startswith('#'):
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continue
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if line == '};':
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if len(path_stack) > 1:
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path_stack.pop()
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active_path = path_stack[-1]
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continue
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split_line = line.split('[')
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if len(split_line) < 2:
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continue
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definitions = split_line[0].split(' ')
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if len(definitions) < 2:
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continue
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if definitions[1] == 'alt':
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alt_counter += 1
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path_stack.append(alt_counter)
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states[alt_counter] = [s for s in states[active_path]]
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continue
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if definitions[0] == '---':
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active_path = path_stack[-1]
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continue
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if definitions[1] != 'abox':
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continue
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if definitions[0] != prefix:
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continue
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tag_start = 'label="'
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tag_end = '"'
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pos_start = split_line[1].find(tag_start)
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if pos_start < 0:
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continue
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pos_start += len(tag_start)
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pos_end = split_line[1].find(tag_end, pos_start)
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if pos_end < 0:
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continue
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label = split_line[1][pos_start:pos_end]
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if line.find('textbgcolor') > 0:
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# transaction status
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pass
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states[active_path].append(label)
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return states
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def compare_bid_states(states, expect_states, exact_match=True):
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for i in range(len(states) - 1, -1, -1):
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if states[i][1] == 'Bid Delaying':
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del states[i]
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if exact_match:
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assert (len(states) == len(expect_states))
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else:
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assert (len(states) >= len(expect_states))
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for i in range(len(expect_states)):
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|
s = states[i]
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|
|
if s[1] != expect_states[i]:
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|
|
if 'Bid ' + expect_states[i] == s[1]:
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logging.warning(f'Expected state {expect_states[i]} not an exact match to {s[1]}.')
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|
|
continue
|
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|
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if [s[0], expect_states[i]] in states:
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|
logging.warning(f'Expected state {expect_states[i]} found out of order at the same time as {s[1]}.')
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|
|
continue
|
|
|
|
raise ValueError(f'Expected state {expect_states[i]}, found {s[1]}')
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|
|
|
assert (s[1] == expect_states[i])
|
|
|
|
return True
|