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b4d001a602
When receiving an islock, propagate it as islock. When creating/receiving and isdlock, propagate it as isdlock to peers which support it and as islock to peers which don't. Functional tests to cover both islock and isdlock scenarios.
99 lines
4.3 KiB
Python
Executable File
99 lines
4.3 KiB
Python
Executable File
#!/usr/bin/env python3
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# Copyright (c) 2020-2021 The Dash 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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from test_framework.messages import CTransaction, FromHex, hash256, ser_compact_size, ser_string
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from test_framework.test_framework import DashTestFramework
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from test_framework.util import assert_raises_rpc_error, satoshi_round, wait_until
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'''
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rpc_verifyislock.py
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Test verifyislock rpc
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'''
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class RPCVerifyISLockTest(DashTestFramework):
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def set_test_params(self):
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# -whitelist is needed to avoid the trickling logic on node0
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self.set_dash_test_params(6, 5, [["-whitelist=127.0.0.1"], [], [], [], [], []], fast_dip3_enforcement=True)
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self.set_dash_llmq_test_params(5, 3)
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def get_request_id(self, tx_hex):
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tx = FromHex(CTransaction(), tx_hex)
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request_id_buf = ser_string(b"islock") + ser_compact_size(len(tx.vin))
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for txin in tx.vin:
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request_id_buf += txin.prevout.serialize()
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return hash256(request_id_buf)[::-1].hex()
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def run_test(self):
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node = self.nodes[0]
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node.spork("SPORK_17_QUORUM_DKG_ENABLED", 0)
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self.wait_for_sporks_same()
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self.mine_quorum()
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txid = node.sendtoaddress(node.getnewaddress(), 1)
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self.wait_for_instantlock(txid, node)
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request_id = self.get_request_id(self.nodes[0].getrawtransaction(txid))
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wait_until(lambda: node.quorum("hasrecsig", 100, request_id, txid))
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rec_sig = node.quorum("getrecsig", 100, request_id, txid)['sig']
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assert node.verifyislock(request_id, txid, rec_sig)
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# Not mined, should use maxHeight
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assert not node.verifyislock(request_id, txid, rec_sig, 1)
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node.generate(1)
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assert txid not in node.getrawmempool()
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# Mined but at higher height, should use maxHeight
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assert not node.verifyislock(request_id, txid, rec_sig, 1)
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# Mined, should ignore higher maxHeight
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assert node.verifyislock(request_id, txid, rec_sig, node.getblockcount() + 100)
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# Mine one more quorum to have a full active set
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self.mine_quorum()
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# Create an ISLOCK for the oldest quorum i.e. the active quorum which will be moved
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# out of the active set when a new quorum appears
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selected_hash = None
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request_id = None
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oldest_quorum_hash = node.quorum("list")["llmq_test"][-1]
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utxos = node.listunspent()
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fee = 0.001
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amount = 1
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# Try all available utxo's until we have one resulting in a request id which selects the
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# last active quorum
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for utxo in utxos:
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in_amount = float(utxo['amount'])
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if in_amount < amount + fee:
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continue
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outputs = dict()
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outputs[node.getnewaddress()] = satoshi_round(amount)
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change = in_amount - amount - fee
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if change > 0:
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outputs[node.getnewaddress()] = satoshi_round(change)
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rawtx = node.createrawtransaction([utxo], outputs)
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rawtx = node.signrawtransactionwithwallet(rawtx)["hex"]
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request_id = self.get_request_id(rawtx)
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selected_hash = node.quorum('selectquorum', 100, request_id)["quorumHash"]
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if selected_hash == oldest_quorum_hash:
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break
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assert selected_hash == oldest_quorum_hash
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# Create the ISLOCK, then mine a quorum to move the signing quorum out of the active set
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islock = self.create_islock(rawtx, True)
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# Mine one block to trigger the "signHeight + dkgInterval" verification for the ISLOCK
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self.mine_quorum()
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# Verify the ISLOCK for a transaction that is not yet known by the node
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rawtx_txid = node.decoderawtransaction(rawtx)["txid"]
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assert_raises_rpc_error(-5, "No such mempool or blockchain transaction", node.getrawtransaction, rawtx_txid)
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assert node.verifyislock(request_id, rawtx_txid, islock.sig.hex(), node.getblockcount())
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# Send the tx and verify the ISLOCK for a now known transaction
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assert rawtx_txid == node.sendrawtransaction(rawtx)
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assert node.verifyislock(request_id, rawtx_txid, islock.sig.hex(), node.getblockcount())
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if __name__ == '__main__':
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RPCVerifyISLockTest().main()
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