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#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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# Copyright (c) 2021-2024 tecnovert
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# Distributed under the MIT software license, see the accompanying
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# file LICENSE or http://www.opensource.org/licenses/mit-license.php.
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import random
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import logging
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import unittest
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from basicswap.basicswap import (
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Coins,
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SwapTypes,
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BidStates,
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)
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from basicswap.util import (
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COIN,
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)
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from tests.basicswap.util import (
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read_json_api,
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)
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from tests.basicswap.common import (
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wait_for_bid,
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wait_for_offer,
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wait_for_in_progress,
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TEST_HTTP_PORT,
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LTC_BASE_RPC_PORT,
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)
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from .test_btc_xmr import BasicSwapTest, test_delay_event
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from .test_xmr import pause_event
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logger = logging.getLogger()
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class TestLTC(BasicSwapTest):
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__test__ = True
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test_coin_from = Coins.LTC
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start_ltc_nodes = True
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base_rpc_port = LTC_BASE_RPC_PORT
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def mineBlock(self, num_blocks=1):
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self.callnoderpc('generatetoaddress', [num_blocks, self.ltc_addr])
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def check_softfork_active(self, feature_name):
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deploymentinfo = self.callnoderpc('getblockchaininfo')
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assert (deploymentinfo['softforks'][feature_name]['active'] is True)
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def test_001_nested_segwit(self):
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logging.info('---------- Test {} p2sh nested segwit'.format(self.test_coin_from.name))
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logging.info('Skipped')
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def test_002_native_segwit(self):
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logging.info('---------- Test {} p2sh native segwit'.format(self.test_coin_from.name))
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ci = self.swap_clients[0].ci(self.test_coin_from)
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addr_segwit = ci.rpc_wallet('getnewaddress', ['segwit test', 'bech32'])
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addr_info = ci.rpc_wallet('getaddressinfo', [addr_segwit, ])
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assert addr_info['iswitness'] is True
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txid = ci.rpc_wallet('sendtoaddress', [addr_segwit, 1.0])
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assert len(txid) == 64
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tx_wallet = ci.rpc_wallet('gettransaction', [txid, ])['hex']
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tx = ci.rpc('decoderawtransaction', [tx_wallet, ])
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self.mineBlock()
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ro = ci.rpc('scantxoutset', ['start', ['addr({})'.format(addr_segwit)]])
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assert (len(ro['unspents']) == 1)
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assert (ro['unspents'][0]['txid'] == txid)
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prevout_n = -1
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for txo in tx['vout']:
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if addr_segwit in txo['scriptPubKey']['addresses']:
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prevout_n = txo['n']
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break
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assert prevout_n > -1
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tx_funded = ci.rpc('createrawtransaction', [[{'txid': txid, 'vout': prevout_n}], {addr_segwit: 0.99}])
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tx_signed = ci.rpc_wallet('signrawtransactionwithwallet', [tx_funded, ])['hex']
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tx_funded_decoded = ci.rpc('decoderawtransaction', [tx_funded, ])
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tx_signed_decoded = ci.rpc('decoderawtransaction', [tx_signed, ])
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assert tx_funded_decoded['txid'] == tx_signed_decoded['txid']
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def test_007_hdwallet(self):
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logging.info('---------- Test {} hdwallet'.format(self.test_coin_from.name))
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test_seed = '8e54a313e6df8918df6d758fafdbf127a115175fdd2238d0e908dd8093c9ac3b'
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test_wif = self.swap_clients[0].ci(self.test_coin_from).encodeKey(bytes.fromhex(test_seed))
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new_wallet_name = random.randbytes(10).hex()
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self.callnoderpc('createwallet', [new_wallet_name])
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self.callnoderpc('sethdseed', [True, test_wif], wallet=new_wallet_name)
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addr = self.callnoderpc('getnewaddress', wallet=new_wallet_name)
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self.callnoderpc('unloadwallet', [new_wallet_name])
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assert (addr == 'rltc1qps7hnjd866e9ynxadgseprkc2l56m00djr82la')
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def test_20_btc_coin(self):
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logging.info('---------- Test BTC to {}'.format(self.test_coin_from.name))
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swap_clients = self.swap_clients
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offer_id = swap_clients[0].postOffer(Coins.BTC, self.test_coin_from, 100 * COIN, 0.1 * COIN, 100 * COIN, SwapTypes.SELLER_FIRST)
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wait_for_offer(test_delay_event, swap_clients[1], offer_id)
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offer = swap_clients[1].getOffer(offer_id)
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bid_id = swap_clients[1].postBid(offer_id, offer.amount_from)
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wait_for_bid(test_delay_event, swap_clients[0], bid_id)
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swap_clients[0].acceptBid(bid_id)
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wait_for_in_progress(test_delay_event, swap_clients[1], bid_id, sent=True)
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wait_for_bid(test_delay_event, swap_clients[0], bid_id, BidStates.SWAP_COMPLETED, wait_for=60)
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wait_for_bid(test_delay_event, swap_clients[1], bid_id, BidStates.SWAP_COMPLETED, sent=True, wait_for=60)
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js_0 = read_json_api(1800)
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js_1 = read_json_api(1801)
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assert (js_0['num_swapping'] == 0 and js_0['num_watched_outputs'] == 0)
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assert (js_1['num_swapping'] == 0 and js_1['num_watched_outputs'] == 0)
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def test_21_mweb(self):
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logging.info('---------- Test MWEB {}'.format(self.test_coin_from.name))
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swap_clients = self.swap_clients
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ci0 = swap_clients[0].ci(self.test_coin_from)
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ci1 = swap_clients[1].ci(self.test_coin_from)
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mweb_addr_0 = ci0.rpc_wallet('getnewaddress', ['mweb addr test 0', 'mweb'])
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mweb_addr_1 = ci1.rpc_wallet('getnewaddress', ['mweb addr test 1', 'mweb'])
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addr_info0 = ci0.rpc_wallet('getaddressinfo', [mweb_addr_0,])
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assert (addr_info0['ismweb'] is True)
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addr_info1 = ci1.rpc_wallet('getaddressinfo', [mweb_addr_1,])
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assert (addr_info1['ismweb'] is True)
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trusted_before = ci0.rpc_wallet('getbalances')['mine']['trusted']
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ci0.rpc_wallet('sendtoaddress', [mweb_addr_0, 10.0])
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assert (trusted_before - float(ci0.rpc_wallet('getbalances')['mine']['trusted']) < 0.1)
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try:
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pause_event.clear() # Stop mining
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ci0.rpc_wallet('sendtoaddress', [mweb_addr_1, 10.0])
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found_unconfirmed: bool = False
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for i in range(20):
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test_delay_event.wait(1)
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ltc_wallet = read_json_api(TEST_HTTP_PORT + 1, 'wallets/ltc')
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if float(ltc_wallet['unconfirmed']) == 10.0:
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found_unconfirmed = True
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break
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finally:
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pause_event.set()
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assert (found_unconfirmed)
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self.mineBlock()
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txns = ci0.rpc_wallet('listtransactions')
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utxos = ci0.rpc_wallet('listunspent')
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balances = ci0.rpc_wallet('getbalances')
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wi = ci0.rpc_wallet('getwalletinfo')
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txid = ci0.rpc_wallet('sendtoaddress', [mweb_addr_1, 10.0])
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self.mineBlock()
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txns = ci1.rpc_wallet('listtransactions')
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utxos = ci1.rpc_wallet('listunspent')
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balances = ci1.rpc_wallet('getbalances')
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wi = ci1.rpc_wallet('getwalletinfo')
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mweb_tx = None
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for utxo in utxos:
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if utxo.get('address', '') == mweb_addr_1:
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mweb_tx = utxo
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assert (mweb_tx is not None)
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tx = ci1.rpc_wallet('gettransaction', [mweb_tx['txid'],])
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blockhash = tx['blockhash']
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block3 = ci1.rpc('getblock', [blockhash, 3])
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block0 = ci1.rpc('getblock', [blockhash, 0])
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require_amount: int = ci1.make_int(1)
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unspent_addr = ci1.getUnspentsByAddr()
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assert (len(unspent_addr) > 0)
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for addr, _ in unspent_addr.items():
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if 'mweb1' in addr:
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raise ValueError('getUnspentsByAddr should exclude mweb UTXOs.')
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# TODO
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def test_22_mweb_balance(self):
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logging.info('---------- Test MWEB balance {}'.format(self.test_coin_from.name))
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swap_clients = self.swap_clients
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ci_mweb = swap_clients[0].ci(Coins.LTC_MWEB)
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mweb_addr_0 = ci_mweb.getNewAddress()
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addr_info0 = ci_mweb.rpc_wallet('getaddressinfo', [mweb_addr_0,])
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assert (addr_info0['ismweb'] is True)
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ltc_addr = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc/nextdepositaddr')
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ltc_mweb_addr = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc_mweb/nextdepositaddr')
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ltc_mweb_addr2 = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc/newmwebaddress')
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assert (ci_mweb.rpc_wallet('getaddressinfo', [ltc_addr,])['ismweb'] is False)
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assert (ci_mweb.rpc_wallet('getaddressinfo', [ltc_mweb_addr,])['ismweb'] is True)
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assert (ci_mweb.rpc_wallet('getaddressinfo', [ltc_mweb_addr2,])['ismweb'] is True)
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post_json = {
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'value': 10,
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'address': ltc_mweb_addr,
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'subfee': False,
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}
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc/withdraw', post_json)
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assert (len(json_rv['txid']) == 64)
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self.mineBlock()
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc', post_json)
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assert (json_rv['mweb_balance'] == 10.0)
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mweb_address = json_rv['mweb_address']
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post_json = {
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'value': 11,
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'address': mweb_address,
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'subfee': False,
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}
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc/withdraw', post_json)
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assert (len(json_rv['txid']) == 64)
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self.mineBlock()
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc_mweb', post_json)
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assert (json_rv['mweb_balance'] == 21.0)
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assert (json_rv['mweb_address'] == mweb_address)
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ltc_address = json_rv['deposit_address']
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# Check that spending the mweb balance takes from the correct wallet
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post_json = {
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'value': 1,
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'address': ltc_address,
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'subfee': False,
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'type_from': 'mweb',
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}
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc/withdraw', post_json)
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assert (len(json_rv['txid']) == 64)
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json_rv = read_json_api(TEST_HTTP_PORT + 0, 'wallets/ltc', post_json)
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assert (json_rv['mweb_balance'] <= 20.0)
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if __name__ == '__main__':
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unittest.main()
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