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merge bitcoin#21762: Speed up mempool_spend_coinbase.py
Co-authored-by: UdjinM6 <UdjinM6@users.noreply.github.com>
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@ -20,40 +20,41 @@ from test_framework.wallet import MiniWallet
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class MempoolSpendCoinbaseTest(BitcoinTestFramework):
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class MempoolSpendCoinbaseTest(BitcoinTestFramework):
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def set_test_params(self):
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def set_test_params(self):
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self.num_nodes = 1
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self.num_nodes = 1
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self.setup_clean_chain = True
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def run_test(self):
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def run_test(self):
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wallet = MiniWallet(self.nodes[0])
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wallet = MiniWallet(self.nodes[0])
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wallet.generate(200)
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# Invalidate two blocks, so that miniwallet has access to a coin that will mature in the next block
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chain_height = self.nodes[0].getblockcount()
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chain_height = 198
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assert_equal(chain_height, 200)
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self.nodes[0].invalidateblock(self.nodes[0].getblockhash(chain_height + 1))
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assert_equal(chain_height, self.nodes[0].getblockcount())
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# Coinbase at height chain_height-100+1 ok in mempool, should
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# Coinbase at height chain_height-100+1 ok in mempool, should
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# get mined. Coinbase at height chain_height-100+2 is
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# get mined. Coinbase at height chain_height-100+2 is
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# too immature to spend.
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# too immature to spend.
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b = [self.nodes[0].getblockhash(n) for n in range(101, 103)]
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wallet.scan_blocks(start=chain_height - 100 + 1, num=1)
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coinbase_txids = [self.nodes[0].getblock(h)['tx'][0] for h in b]
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utxo_mature = wallet.get_utxo()
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utxo_101 = wallet.get_utxo(txid=coinbase_txids[0])
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wallet.scan_blocks(start=chain_height - 100 + 2, num=1)
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utxo_102 = wallet.get_utxo(txid=coinbase_txids[1])
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utxo_immature = wallet.get_utxo()
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spend_101_id = wallet.send_self_transfer(from_node=self.nodes[0], utxo_to_spend=utxo_101)["txid"]
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spend_mature_id = wallet.send_self_transfer(from_node=self.nodes[0], utxo_to_spend=utxo_mature)["txid"]
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# coinbase at height 102 should be too immature to spend
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# other coinbase should be too immature to spend
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immature_tx = wallet.create_self_transfer(from_node=self.nodes[0], utxo_to_spend=utxo_immature, mempool_valid=False)
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assert_raises_rpc_error(-26,
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assert_raises_rpc_error(-26,
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"bad-txns-premature-spend-of-coinbase",
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"bad-txns-premature-spend-of-coinbase",
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lambda: wallet.send_self_transfer(from_node=self.nodes[0], utxo_to_spend=utxo_102))
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lambda: self.nodes[0].sendrawtransaction(immature_tx['hex']))
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# mempool should have just spend_101:
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# mempool should have just the mature one
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assert_equal(self.nodes[0].getrawmempool(), [spend_101_id])
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assert_equal(self.nodes[0].getrawmempool(), [spend_mature_id])
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# mine a block, spend_101 should get confirmed
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# mine a block, mature one should get confirmed
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self.nodes[0].generate(1)
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self.nodes[0].generate(1)
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assert_equal(set(self.nodes[0].getrawmempool()), set())
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assert_equal(set(self.nodes[0].getrawmempool()), set())
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# ... and now height 102 can be spent:
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# ... and now previously immature can be spent:
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spend_102_id = wallet.send_self_transfer(from_node=self.nodes[0], utxo_to_spend=utxo_102)["txid"]
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spend_new_id = self.nodes[0].sendrawtransaction(immature_tx['hex'])
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assert_equal(self.nodes[0].getrawmempool(), [spend_102_id])
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assert_equal(self.nodes[0].getrawmempool(), [spend_new_id])
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if __name__ == '__main__':
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if __name__ == '__main__':
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@ -913,12 +913,13 @@ class BitcoinTestFramework(metaclass=BitcoinTestMetaClass):
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# This is needed so that we are out of IBD when the test starts,
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# This is needed so that we are out of IBD when the test starts,
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# see the tip age check in IsInitialBlockDownload().
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# see the tip age check in IsInitialBlockDownload().
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self.set_genesis_mocktime()
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self.set_genesis_mocktime()
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gen_addresses = [k.address for k in TestNode.PRIV_KEYS] + [ADDRESS_BCRT1_P2SH_OP_TRUE]
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gen_addresses = [k.address for k in TestNode.PRIV_KEYS][:3] + [ADDRESS_BCRT1_P2SH_OP_TRUE]
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assert_equal(len(gen_addresses), 4)
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for i in range(8):
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for i in range(8):
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self.bump_mocktime((25 if i != 7 else 24) * 156)
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self.bump_mocktime((25 if i != 7 else 24) * 156)
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cache_node.generatetoaddress(
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cache_node.generatetoaddress(
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nblocks=25 if i != 7 else 24,
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nblocks=25 if i != 7 else 24,
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address=gen_addresses[i % 4],
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address=gen_addresses[i % len(gen_addresses)],
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)
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)
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assert_equal(cache_node.getblockchaininfo()["blocks"], 199)
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assert_equal(cache_node.getblockchaininfo()["blocks"], 199)
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@ -37,9 +37,13 @@ class MiniWallet:
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for i in range(start, start + num):
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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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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 tx in block['tx']:
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for out in tx['vout']:
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self.scan_tx(tx)
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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 scan_tx(self, tx):
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"""Scan the tx for self._scriptPubKey outputs and add them to self._utxos"""
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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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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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"""Generate blocks with coinbase outputs to the internal address, and append the outputs to the internal list"""
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@ -69,6 +73,12 @@ class MiniWallet:
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def send_self_transfer(self, *, fee_rate=Decimal("0.003"), from_node, utxo_to_spend=None):
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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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"""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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tx = self.create_self_transfer(fee_rate=fee_rate, from_node=from_node, utxo_to_spend=utxo_to_spend)
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self.sendrawtransaction(from_node=from_node, tx_hex=tx['hex'])
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return tx
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def create_self_transfer(self, *, fee_rate=Decimal("0.003"), from_node, utxo_to_spend=None, mempool_valid=True):
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"""Create and return 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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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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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(85)
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vsize = Decimal(85)
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@ -83,8 +93,12 @@ class MiniWallet:
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tx_hex = tx.serialize().hex()
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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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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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assert_equal(mempool_valid, tx_info['allowed'])
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from_node.sendrawtransaction(tx_hex)
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if mempool_valid:
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assert_equal(len(tx_hex) // 2, vsize)
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assert_equal(len(tx_hex) // 2, vsize)
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assert_equal(tx_info['fees']['base'], fee)
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assert_equal(tx_info['fees']['base'], fee)
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return {'txid': tx_info['txid'], 'hex': tx_hex}
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return {'txid': tx_info['txid'], 'hex': tx_hex}
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def sendrawtransaction(self, *, from_node, tx_hex):
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from_node.sendrawtransaction(tx_hex)
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self.scan_tx(from_node.decoderawtransaction(tx_hex))
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