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92 lines
3.8 KiB
92 lines
3.8 KiB
#!/usr/bin/env python3
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# Copyright (c) 2020 The Bitcoin Core developers
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# Distributed under the MIT software license, see the accompanying
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# file COPYING or http://www.opensource.org/licenses/mit-license.php.
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"""A limited-functionality wallet, which may replace a real wallet in tests"""
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from decimal import Decimal
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from test_framework.address import ADDRESS_BCRT1_P2WSH_OP_TRUE
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from test_framework.messages import (
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COIN,
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COutPoint,
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CTransaction,
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CTxIn,
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CTxInWitness,
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CTxOut,
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)
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from test_framework.script import (
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CScript,
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OP_TRUE,
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)
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from test_framework.util import (
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assert_equal,
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hex_str_to_bytes,
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satoshi_round,
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)
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class MiniWallet:
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def __init__(self, test_node):
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self._test_node = test_node
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self._utxos = []
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self._address = ADDRESS_BCRT1_P2WSH_OP_TRUE
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self._scriptPubKey = hex_str_to_bytes(self._test_node.validateaddress(self._address)['scriptPubKey'])
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def scan_blocks(self, *, start=1, num):
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"""Scan the blocks for self._address outputs and add them to self._utxos"""
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for i in range(start, start + num):
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block = self._test_node.getblock(blockhash=self._test_node.getblockhash(i), verbosity=2)
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for tx in block['tx']:
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for out in tx['vout']:
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if out['scriptPubKey']['hex'] == self._scriptPubKey.hex():
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self._utxos.append({'txid': tx['txid'], 'vout': out['n'], 'value': out['value']})
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def generate(self, num_blocks):
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"""Generate blocks with coinbase outputs to the internal address, and append the outputs to the internal list"""
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blocks = self._test_node.generatetoaddress(num_blocks, self._address)
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for b in blocks:
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cb_tx = self._test_node.getblock(blockhash=b, verbosity=2)['tx'][0]
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self._utxos.append({'txid': cb_tx['txid'], 'vout': 0, 'value': cb_tx['vout'][0]['value']})
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return blocks
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def get_address(self):
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return self._address
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def get_utxo(self, *, txid=''):
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"""
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Returns a utxo and marks it as spent (pops it from the internal list)
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Args:
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txid (string), optional: get the first utxo we find from a specific transaction
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Note: Can be used to get the change output immediately after a send_self_transfer
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"""
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index = -1 # by default the last utxo
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if txid:
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utxo = next(filter(lambda utxo: txid == utxo['txid'], self._utxos))
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index = self._utxos.index(utxo)
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return self._utxos.pop(index)
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def send_self_transfer(self, *, fee_rate=Decimal("0.003"), from_node, utxo_to_spend=None):
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"""Create and send a tx with the specified fee_rate. Fee may be exact or at most one satoshi higher than needed."""
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self._utxos = sorted(self._utxos, key=lambda k: k['value'])
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utxo_to_spend = utxo_to_spend or self._utxos.pop() # Pick the largest utxo (if none provided) and hope it covers the fee
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vsize = Decimal(96)
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send_value = satoshi_round(utxo_to_spend['value'] - fee_rate * (vsize / 1000))
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fee = utxo_to_spend['value'] - send_value
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assert send_value > 0
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tx = CTransaction()
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tx.vin = [CTxIn(COutPoint(int(utxo_to_spend['txid'], 16), utxo_to_spend['vout']))]
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tx.vout = [CTxOut(int(send_value * COIN), self._scriptPubKey)]
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tx.wit.vtxinwit = [CTxInWitness()]
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tx.wit.vtxinwit[0].scriptWitness.stack = [CScript([OP_TRUE])]
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tx_hex = tx.serialize().hex()
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tx_info = from_node.testmempoolaccept([tx_hex])[0]
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self._utxos.append({'txid': tx_info['txid'], 'vout': 0, 'value': send_value})
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from_node.sendrawtransaction(tx_hex)
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assert_equal(tx_info['vsize'], vsize)
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assert_equal(tx_info['fees']['base'], fee)
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return {'txid': tx_info['txid'], 'wtxid': tx_info['wtxid'], 'hex': tx_hex}
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