Host-customized fork of https://github.com/tecnovert/basicswap/
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365 lines
14 KiB
365 lines
14 KiB
#!/usr/bin/env python |
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# -*- coding: utf-8 -*- |
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# Copyright (c) 2022-2023 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 hashlib |
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import random |
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from .btc import BTCInterface, find_vout_for_address_from_txobj |
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from basicswap.util import ( |
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i2b, |
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ensure, |
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) |
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from basicswap.rpc import make_rpc_func |
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from basicswap.util.crypto import hash160 |
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from basicswap.util.address import decodeAddress |
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from basicswap.chainparams import Coins |
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from basicswap.interface.contrib.firo_test_framework.script import ( |
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CScript, |
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OP_DUP, |
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OP_EQUAL, |
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OP_HASH160, |
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OP_CHECKSIG, |
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OP_EQUALVERIFY, |
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) |
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from basicswap.interface.contrib.firo_test_framework.mininode import ( |
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CBlock, |
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FromHex, |
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CTransaction, |
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) |
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class FIROInterface(BTCInterface): |
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@staticmethod |
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def coin_type(): |
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return Coins.FIRO |
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def __init__(self, coin_settings, network, swap_client=None): |
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super(FIROInterface, self).__init__(coin_settings, network, swap_client) |
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# No multiwallet support |
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self.rpc_wallet = make_rpc_func(self._rpcport, self._rpcauth, host=self._rpc_host) |
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def checkWallets(self) -> int: |
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return 1 |
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def getExchangeName(self, exchange_name): |
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return 'zcoin' |
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def initialiseWallet(self, key): |
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# load with -hdseed= parameter |
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pass |
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def getNewAddress(self, use_segwit, label='swap_receive'): |
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return self.rpc('getnewaddress', [label]) |
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# addr_plain = self.rpc('getnewaddress', [label]) |
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# return self.rpc('addwitnessaddress', [addr_plain]) |
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def decodeAddress(self, address): |
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return decodeAddress(address)[1:] |
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def encodeSegwitAddress(self, script): |
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raise ValueError('TODO') |
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def decodeSegwitAddress(self, addr): |
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raise ValueError('TODO') |
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def isWatchOnlyAddress(self, address): |
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addr_info = self.rpc('validateaddress', [address]) |
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return addr_info['iswatchonly'] |
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def isAddressMine(self, address: str, or_watch_only: bool = False) -> bool: |
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addr_info = self.rpc('validateaddress', [address]) |
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if not or_watch_only: |
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return addr_info['ismine'] |
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return addr_info['ismine'] or addr_info['iswatchonly'] |
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def getSCLockScriptAddress(self, lock_script): |
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lock_tx_dest = self.getScriptDest(lock_script) |
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address = self.encodeScriptDest(lock_tx_dest) |
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if not self.isAddressMine(address, or_watch_only=True): |
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# Expects P2WSH nested in BIP16_P2SH |
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ro = self.rpc('importaddress', [lock_tx_dest.hex(), 'bid lock', False, True]) |
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addr_info = self.rpc('validateaddress', [address]) |
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return address |
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def getLockTxHeight(self, txid, dest_address, bid_amount, rescan_from, find_index: bool = False): |
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# Add watchonly address and rescan if required |
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if not self.isAddressMine(dest_address, or_watch_only=True): |
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self.importWatchOnlyAddress(dest_address, 'bid') |
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self._log.info('Imported watch-only addr: {}'.format(dest_address)) |
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self._log.info('Rescanning {} chain from height: {}'.format(self.coin_name(), rescan_from)) |
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self.rescanBlockchainForAddress(rescan_from, dest_address) |
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return_txid = True if txid is None else False |
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if txid is None: |
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txns = self.rpc('listunspent', [0, 9999999, [dest_address, ]]) |
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for tx in txns: |
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if self.make_int(tx['amount']) == bid_amount: |
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txid = bytes.fromhex(tx['txid']) |
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break |
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if txid is None: |
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return None |
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try: |
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tx = self.rpc('gettransaction', [txid.hex()]) |
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block_height = 0 |
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if 'blockhash' in tx: |
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block_header = self.rpc('getblockheader', [tx['blockhash']]) |
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block_height = block_header['height'] |
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rv = { |
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'depth': 0 if 'confirmations' not in tx else tx['confirmations'], |
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'height': block_height} |
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except Exception as e: |
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self._log.debug('getLockTxHeight gettransaction failed: %s, %s', txid.hex(), str(e)) |
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return None |
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if find_index: |
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tx_obj = self.rpc('decoderawtransaction', [tx['hex']]) |
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rv['index'] = find_vout_for_address_from_txobj(tx_obj, dest_address) |
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if return_txid: |
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rv['txid'] = txid.hex() |
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return rv |
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def createSCLockTx(self, value: int, script: bytearray, vkbv: bytes = None) -> bytes: |
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tx = CTransaction() |
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tx.nVersion = self.txVersion() |
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tx.vout.append(self.txoType()(value, self.getScriptDest(script))) |
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return tx.serialize() |
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def fundSCLockTx(self, tx_bytes, feerate, vkbv=None): |
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return self.fundTx(tx_bytes, feerate) |
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def signTxWithWallet(self, tx): |
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rv = self.rpc('signrawtransaction', [tx.hex()]) |
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return bytes.fromhex(rv['hex']) |
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def createRawFundedTransaction(self, addr_to: str, amount: int, sub_fee: bool = False, lock_unspents: bool = True) -> str: |
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txn = self.rpc('createrawtransaction', [[], {addr_to: self.format_amount(amount)}]) |
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fee_rate, fee_src = self.get_fee_rate(self._conf_target) |
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self._log.debug(f'Fee rate: {fee_rate}, source: {fee_src}, block target: {self._conf_target}') |
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options = { |
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'lockUnspents': lock_unspents, |
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'feeRate': fee_rate, |
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} |
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if sub_fee: |
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options['subtractFeeFromOutputs'] = [0,] |
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return self.rpc('fundrawtransaction', [txn, options])['hex'] |
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def createRawSignedTransaction(self, addr_to, amount) -> str: |
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txn_funded = self.createRawFundedTransaction(addr_to, amount) |
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return self.rpc('signrawtransaction', [txn_funded])['hex'] |
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def getScriptForPubkeyHash(self, pkh: bytes) -> bytearray: |
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# Return P2PKH |
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return CScript([OP_DUP, OP_HASH160, pkh, OP_EQUALVERIFY, OP_CHECKSIG]) |
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def getScriptDest(self, script: bytearray) -> bytearray: |
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# P2SH |
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script_hash = hash160(script) |
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assert len(script_hash) == 20 |
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return CScript([OP_HASH160, script_hash, OP_EQUAL]) |
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def getSeedHash(self, seed: bytes) -> bytes: |
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return hash160(seed)[::-1] |
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def encodeScriptDest(self, script_dest: bytes) -> str: |
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# Extract hash from script |
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script_hash = script_dest[2:-1] |
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return self.sh_to_address(script_hash) |
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def getDestForScriptHash(self, script_hash): |
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assert len(script_hash) == 20 |
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return CScript([OP_HASH160, script_hash, OP_EQUAL]) |
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def withdrawCoin(self, value, addr_to, subfee): |
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params = [addr_to, value, '', '', subfee] |
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return self.rpc('sendtoaddress', params) |
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def getWalletSeedID(self): |
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return self.rpc('getwalletinfo')['hdmasterkeyid'] |
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def getSpendableBalance(self) -> int: |
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return self.make_int(self.rpc('getwalletinfo')['balance']) |
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def getBLockSpendTxFee(self, tx, fee_rate: int) -> int: |
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add_bytes = 107 |
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size = len(tx.serialize_with_witness()) + add_bytes |
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pay_fee = round(fee_rate * size / 1000) |
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self._log.info(f'BLockSpendTx fee_rate, size, fee: {fee_rate}, {size}, {pay_fee}.') |
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return pay_fee |
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def signTxWithKey(self, tx: bytes, key: bytes) -> bytes: |
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key_wif = self.encodeKey(key) |
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rv = self.rpc('signrawtransaction', [tx.hex(), [], [key_wif, ]]) |
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return bytes.fromhex(rv['hex']) |
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def findTxnByHash(self, txid_hex: str): |
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# Only works for wallet txns |
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try: |
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rv = self.rpc('gettransaction', [txid_hex]) |
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except Exception as ex: |
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self._log.debug('findTxnByHash getrawtransaction failed: {}'.format(txid_hex)) |
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return None |
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if 'confirmations' in rv and rv['confirmations'] >= self.blocks_confirmed: |
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block_height = self.getBlockHeader(rv['blockhash'])['height'] |
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return {'txid': txid_hex, 'amount': 0, 'height': block_height} |
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return None |
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def getProofOfFunds(self, amount_for, extra_commit_bytes): |
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# TODO: Lock unspent and use same output/s to fund bid |
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unspents_by_addr = dict() |
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unspents = self.rpc('listunspent') |
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for u in unspents: |
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if u['spendable'] is not True: |
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continue |
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if u['address'] not in unspents_by_addr: |
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unspents_by_addr[u['address']] = {'total': 0, 'utxos': []} |
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utxo_amount: int = self.make_int(u['amount'], r=1) |
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unspents_by_addr[u['address']]['total'] += utxo_amount |
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unspents_by_addr[u['address']]['utxos'].append((utxo_amount, u['txid'], u['vout'])) |
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max_utxos: int = 4 |
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viable_addrs = [] |
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for addr, data in unspents_by_addr.items(): |
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if data['total'] >= amount_for: |
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# Sort from largest to smallest amount |
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sorted_utxos = sorted(data['utxos'], key=lambda x: x[0]) |
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# Max outputs required to reach amount_for |
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utxos_req: int = 0 |
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sum_value: int = 0 |
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for utxo in sorted_utxos: |
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sum_value += utxo[0] |
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utxos_req += 1 |
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if sum_value >= amount_for: |
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break |
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if utxos_req <= max_utxos: |
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viable_addrs.append(addr) |
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continue |
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ensure(len(viable_addrs) > 0, 'Could not find address with enough funds for proof') |
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sign_for_addr: str = random.choice(viable_addrs) |
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self._log.debug('sign_for_addr %s', sign_for_addr) |
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prove_utxos = [] |
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sorted_utxos = sorted(unspents_by_addr[sign_for_addr]['utxos'], key=lambda x: x[0]) |
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hasher = hashlib.sha256() |
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sum_value: int = 0 |
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for utxo in sorted_utxos: |
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sum_value += utxo[0] |
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outpoint = (bytes.fromhex(utxo[1]), utxo[2]) |
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prove_utxos.append(outpoint) |
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hasher.update(outpoint[0]) |
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hasher.update(outpoint[1].to_bytes(2, 'big')) |
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if sum_value >= amount_for: |
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break |
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utxos_hash = hasher.digest() |
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if self.using_segwit(): # TODO: Use isSegwitAddress when scantxoutset can use combo |
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# 'Address does not refer to key' for non p2pkh |
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pkh = self.decodeAddress(sign_for_addr) |
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sign_for_addr = self.pkh_to_address(pkh) |
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self._log.debug('sign_for_addr converted %s', sign_for_addr) |
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signature = self.rpc('signmessage', [sign_for_addr, sign_for_addr + '_swap_proof_' + utxos_hash.hex() + extra_commit_bytes.hex()]) |
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return (sign_for_addr, signature, prove_utxos) |
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def verifyProofOfFunds(self, address, signature, utxos, extra_commit_bytes): |
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hasher = hashlib.sha256() |
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sum_value: int = 0 |
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for outpoint in utxos: |
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hasher.update(outpoint[0]) |
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hasher.update(outpoint[1].to_bytes(2, 'big')) |
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utxos_hash = hasher.digest() |
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passed = self.verifyMessage(address, address + '_swap_proof_' + utxos_hash.hex() + extra_commit_bytes.hex(), signature) |
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ensure(passed is True, 'Proof of funds signature invalid') |
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if self.using_segwit(): |
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address = self.encodeSegwitAddress(decodeAddress(address)[1:]) |
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sum_value: int = 0 |
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for outpoint in utxos: |
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txout = self.rpc('gettxout', [outpoint[0].hex(), outpoint[1]]) |
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sum_value += self.make_int(txout['value']) |
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return sum_value |
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def rescanBlockchainForAddress(self, height_start: int, addr_find: str): |
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# Very ugly workaround for missing `rescanblockchain` rpc command |
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chain_blocks: int = self.getChainHeight() |
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current_height: int = chain_blocks |
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block_hash = self.rpc('getblockhash', [current_height]) |
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script_hash: bytes = self.decodeAddress(addr_find) |
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find_scriptPubKey = self.getDestForScriptHash(script_hash) |
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while current_height > height_start: |
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block_hash = self.rpc('getblockhash', [current_height]) |
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block = self.rpc('getblock', [block_hash, False]) |
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decoded_block = CBlock() |
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decoded_block = FromHex(decoded_block, block) |
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for tx in decoded_block.vtx: |
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for txo in tx.vout: |
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if txo.scriptPubKey == find_scriptPubKey: |
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tx.rehash() |
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txid = i2b(tx.sha256) |
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self._log.info('Found output to addr: {} in tx {} in block {}'.format(addr_find, txid.hex(), block_hash)) |
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self._log.info('rescanblockchain hack invalidateblock {}'.format(block_hash)) |
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self.rpc('invalidateblock', [block_hash]) |
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self.rpc('reconsiderblock', [block_hash]) |
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return |
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current_height -= 1 |
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def getBlockWithTxns(self, block_hash): |
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# TODO: Bypass decoderawtransaction and getblockheader |
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block = self.rpc('getblock', [block_hash, False]) |
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block_header = self.rpc('getblockheader', [block_hash]) |
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decoded_block = CBlock() |
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decoded_block = FromHex(decoded_block, block) |
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tx_rv = [] |
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for tx in decoded_block.vtx: |
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tx_hex = tx.serialize_with_witness().hex() |
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tx_dec = self.rpc('decoderawtransaction', [tx_hex]) |
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if 'hex' not in tx_dec: |
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tx_dec['hex'] = tx_hex |
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tx_rv.append(tx_dec) |
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block_rv = { |
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'hash': block_hash, |
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'tx': tx_rv, |
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'confirmations': block_header['confirmations'], |
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'height': block_header['height'], |
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'version': block_header['version'], |
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'merkleroot': block_header['merkleroot'], |
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} |
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return block_rv
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