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2c7b29bac5
c1e5d40
Make debugging test crash easier (MeshCollider)8263f6a
Create walletdir if datadir doesn't exist and fix tests (MeshCollider)9587a9c
Default walletdir is wallets/ if it exists (MeshCollider)d987889
Add release notes for -walletdir and wallets/ dir (MeshCollider)80c5cbc
Add test for -walletdir (MeshCollider)0530ba0
Add -walletdir parameter to specify custom wallet dir (MeshCollider) Pull request description: Closes #11348 Adds a `-walletdir` parameter which specifies a directory to use for wallets, allowing them to be stored separately from the 'main' data directory. Creates a new `wallets/` directory in datadir if this is the first time running, and defaults to using it if it exists. Includes tests and release notes. Things which might need to be considered more: - there is no 'lock' on the wallets directory, which might be needed? - because this uses a new wallets/ directory by default, downgrading to an earlier version won't see the wallets in that directory (not a big deal though, users can just copy them up to the main dir) - jnewbery suggested putting each wallet in its own directory, which is a good idea, but out of scope for this PR IMO. EDIT: this is being done in https://github.com/bitcoin/bitcoin/pull/11687 - doc/files.md needs updating (will do soon) I also considered including a cleanup by removing caching of data directory paths and instead just initialise them once on startup (c.f. #3073), but decided it wasn't super relevant here will just complicate review. Tree-SHA512: c8ac04bfe9a810c32055f2c8b8fa0d535e56125ceb8d96f12447dd3538bf3e5ee992b60b1cd2173bf5f3fa023a9feab12c9963593bf27ed419df929bb413398d
208 lines
7.3 KiB
Python
Executable File
208 lines
7.3 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 wallet backup features.
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Test case is:
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4 nodes. 1 2 and 3 send transactions between each other,
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fourth node is a miner.
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1 2 3 each mine a block to start, then
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Miner creates 100 blocks so 1 2 3 each have 500 mature
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coins to spend.
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Then 5 iterations of 1/2/3 sending coins amongst
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themselves to get transactions in the wallets,
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and the miner mining one block.
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Wallets are backed up using dumpwallet/backupwallet.
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Then 5 more iterations of transactions and mining a block.
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Miner then generates 101 more blocks, so any
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transaction fees paid mature.
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Sanity check:
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Sum(1,2,3,4 balances) == 114*500
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1/2/3 are shutdown, and their wallets erased.
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Then restore using wallet.dat backup. And
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confirm 1/2/3/4 balances are same as before.
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Shutdown again, restore using importwallet,
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and confirm again balances are correct.
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"""
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from random import randint
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import shutil
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import *
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class WalletBackupTest(BitcoinTestFramework):
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def set_test_params(self):
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self.num_nodes = 4
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self.setup_clean_chain = True
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# nodes 1, 2,3 are spenders, let's give them a keypool=100
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self.extra_args = [["-keypool=100"], ["-keypool=100"], ["-keypool=100"], []]
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def setup_network(self, split=False):
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self.setup_nodes()
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connect_nodes(self.nodes[0], 3)
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connect_nodes(self.nodes[1], 3)
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connect_nodes(self.nodes[2], 3)
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connect_nodes(self.nodes[2], 0)
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self.sync_all()
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def one_send(self, from_node, to_address):
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if (randint(1,2) == 1):
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amount = Decimal(randint(1,10)) / Decimal(10)
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self.nodes[from_node].sendtoaddress(to_address, amount)
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def do_one_round(self):
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a0 = self.nodes[0].getnewaddress()
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a1 = self.nodes[1].getnewaddress()
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a2 = self.nodes[2].getnewaddress()
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self.one_send(0, a1)
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self.one_send(0, a2)
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self.one_send(1, a0)
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self.one_send(1, a2)
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self.one_send(2, a0)
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self.one_send(2, a1)
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# Have the miner (node3) mine a block.
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# Must sync mempools before mining.
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sync_mempools(self.nodes)
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self.nodes[3].generate(1)
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sync_blocks(self.nodes)
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# As above, this mirrors the original bash test.
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def start_three(self):
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self.start_node(0)
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self.start_node(1)
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self.start_node(2)
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connect_nodes(self.nodes[0], 3)
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connect_nodes(self.nodes[1], 3)
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connect_nodes(self.nodes[2], 3)
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connect_nodes(self.nodes[2], 0)
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def stop_three(self):
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self.stop_node(0)
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self.stop_node(1)
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self.stop_node(2)
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def erase_three(self):
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os.remove(self.options.tmpdir + "/node0/regtest/wallets/wallet.dat")
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os.remove(self.options.tmpdir + "/node1/regtest/wallets/wallet.dat")
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os.remove(self.options.tmpdir + "/node2/regtest/wallets/wallet.dat")
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def run_test(self):
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self.log.info("Generating initial blockchain")
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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self.nodes[1].generate(1)
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sync_blocks(self.nodes)
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self.nodes[2].generate(1)
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sync_blocks(self.nodes)
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self.nodes[3].generate(100)
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sync_blocks(self.nodes)
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assert_equal(self.nodes[0].getbalance(), 500)
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assert_equal(self.nodes[1].getbalance(), 500)
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assert_equal(self.nodes[2].getbalance(), 500)
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assert_equal(self.nodes[3].getbalance(), 0)
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self.log.info("Creating transactions")
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# Five rounds of sending each other transactions.
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for i in range(5):
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self.do_one_round()
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self.log.info("Backing up")
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tmpdir = self.options.tmpdir
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self.nodes[0].backupwallet(tmpdir + "/node0/wallet.bak")
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self.nodes[0].dumpwallet(tmpdir + "/node0/wallet.dump")
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self.nodes[1].backupwallet(tmpdir + "/node1/wallet.bak")
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self.nodes[1].dumpwallet(tmpdir + "/node1/wallet.dump")
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self.nodes[2].backupwallet(tmpdir + "/node2/wallet.bak")
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self.nodes[2].dumpwallet(tmpdir + "/node2/wallet.dump")
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self.log.info("More transactions")
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for i in range(5):
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self.do_one_round()
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# Generate 101 more blocks, so any fees paid mature
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self.nodes[3].generate(101)
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self.sync_all()
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balance0 = self.nodes[0].getbalance()
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balance1 = self.nodes[1].getbalance()
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balance2 = self.nodes[2].getbalance()
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balance3 = self.nodes[3].getbalance()
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total = balance0 + balance1 + balance2 + balance3
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# At this point, there are 214 blocks (103 for setup, then 10 rounds, then 101.)
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# 114 are mature, so the sum of all wallets should be 114 * 500 = 57000.
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assert_equal(total, 57000)
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##
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# Test restoring spender wallets from backups
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##
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self.log.info("Restoring using wallet.dat")
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self.stop_three()
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self.erase_three()
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# Start node2 with no chain
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/blocks")
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/chainstate")
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/evodb")
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# Restore wallets from backup
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shutil.copyfile(tmpdir + "/node0/wallet.bak", tmpdir + "/node0/regtest/wallets/wallet.dat")
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shutil.copyfile(tmpdir + "/node1/wallet.bak", tmpdir + "/node1/regtest/wallets/wallet.dat")
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shutil.copyfile(tmpdir + "/node2/wallet.bak", tmpdir + "/node2/regtest/wallets/wallet.dat")
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self.log.info("Re-starting nodes")
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self.start_three()
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sync_blocks(self.nodes)
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assert_equal(self.nodes[0].getbalance(), balance0)
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assert_equal(self.nodes[1].getbalance(), balance1)
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assert_equal(self.nodes[2].getbalance(), balance2)
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self.log.info("Restoring using dumped wallet")
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self.stop_three()
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self.erase_three()
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#start node2 with no chain
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/blocks")
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/chainstate")
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shutil.rmtree(self.options.tmpdir + "/node2/regtest/evodb")
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self.start_three()
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assert_equal(self.nodes[0].getbalance(), 0)
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assert_equal(self.nodes[1].getbalance(), 0)
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assert_equal(self.nodes[2].getbalance(), 0)
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self.nodes[0].importwallet(tmpdir + "/node0/wallet.dump")
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self.nodes[1].importwallet(tmpdir + "/node1/wallet.dump")
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self.nodes[2].importwallet(tmpdir + "/node2/wallet.dump")
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sync_blocks(self.nodes)
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assert_equal(self.nodes[0].getbalance(), balance0)
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assert_equal(self.nodes[1].getbalance(), balance1)
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assert_equal(self.nodes[2].getbalance(), balance2)
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# Backup to source wallet file must fail
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sourcePaths = [
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tmpdir + "/node0/regtest/wallets/wallet.dat",
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tmpdir + "/node0/./regtest/wallets/wallet.dat",
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tmpdir + "/node0/regtest/wallets/",
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tmpdir + "/node0/regtest/wallets"]
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for sourcePath in sourcePaths:
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assert_raises_rpc_error(-4, "backup failed", self.nodes[0].backupwallet, sourcePath)
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if __name__ == '__main__':
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WalletBackupTest().main()
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