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-BEGIN VERIFY SCRIPT- sed -i 's/assert_raises_jsonrpc/assert_raises_rpc_error/g' test/functional/*py test/functional/test_framework/*py -END VERIFY SCRIPT-
79 lines
3.2 KiB
Python
Executable File
79 lines
3.2 KiB
Python
Executable File
#!/usr/bin/env python3
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# Copyright (c) 2014-2016 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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"""Test the zapwallettxes functionality.
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- start two bitcoind nodes
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- create two transactions on node 0 - one is confirmed and one is unconfirmed.
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- restart node 0 and verify that both the confirmed and the unconfirmed
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transactions are still available.
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- restart node 0 with zapwallettxes and persistmempool, and verify that both
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the confirmed and the unconfirmed transactions are still available.
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- restart node 0 with just zapwallettxed and verify that the confirmed
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transactions are still available, but that the unconfirmed transaction has
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been zapped.
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"""
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import (
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assert_equal,
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assert_raises_rpc_error,
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wait_until,
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)
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class ZapWalletTXesTest (BitcoinTestFramework):
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def set_test_params(self):
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self.setup_clean_chain = True
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self.num_nodes = 2
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def run_test(self):
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self.log.info("Mining blocks...")
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self.nodes[0].generate(1)
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self.sync_all()
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self.nodes[1].generate(100)
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self.sync_all()
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# This transaction will be confirmed
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txid1 = self.nodes[0].sendtoaddress(self.nodes[1].getnewaddress(), 10)
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self.nodes[0].generate(1)
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self.sync_all()
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# This transaction will not be confirmed
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txid2 = self.nodes[0].sendtoaddress(self.nodes[1].getnewaddress(), 20)
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# Confirmed and unconfirmed transactions are now in the wallet.
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assert_equal(self.nodes[0].gettransaction(txid1)['txid'], txid1)
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assert_equal(self.nodes[0].gettransaction(txid2)['txid'], txid2)
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# Stop-start node0. Both confirmed and unconfirmed transactions remain in the wallet.
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self.stop_node(0)
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self.start_node(0)
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assert_equal(self.nodes[0].gettransaction(txid1)['txid'], txid1)
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assert_equal(self.nodes[0].gettransaction(txid2)['txid'], txid2)
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# Stop node0 and restart with zapwallettxes and persistmempool. The unconfirmed
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# transaction is zapped from the wallet, but is re-added when the mempool is reloaded.
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self.stop_node(0)
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self.start_node(0, ["-persistmempool=1", "-zapwallettxes=2"])
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wait_until(lambda: self.nodes[0].getmempoolinfo()['size'] == 1, timeout=3)
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assert_equal(self.nodes[0].gettransaction(txid1)['txid'], txid1)
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assert_equal(self.nodes[0].gettransaction(txid2)['txid'], txid2)
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# Stop node0 and restart with zapwallettxes, but not persistmempool.
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# The unconfirmed transaction is zapped and is no longer in the wallet.
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self.stop_node(0)
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self.start_node(0, ["-zapwallettxes=2"])
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# tx1 is still be available because it was confirmed
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assert_equal(self.nodes[0].gettransaction(txid1)['txid'], txid1)
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# This will raise an exception because the unconfirmed transaction has been zapped
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assert_raises_rpc_error(-5, 'Invalid or non-wallet transaction id', self.nodes[0].gettransaction, txid2)
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if __name__ == '__main__':
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ZapWalletTXesTest().main()
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