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06b2d85bb4
Backport notice: changes in feature_notification.py are missing due to #18878 is not done yet 49797c3ccfbb9f7ac9c1fbb574d35b315c103805 tests: Disable bdb dump test when no bdb (Andrew Chow) 1194cf9269e6c4bf67b09c4766f42bf173d12c0a Fix wallet_send.py wallet setup to work with descriptors (Andrew Chow) fbaea7bfe44822710a36601c6b0febbd5e33dfbd Require legacy wallet for wallet_upgradewallet.py (Andrew Chow) b1b679e0ab7a9981e3e78424fe8836edd59abf6f Explicitly mark legacy wallet tests as such (Andrew Chow) 09514e1bef46444a67cde9ff13e76bd4b9f8c7ac Setup wallets for interface_zmq.py (Andrew Chow) 4d03ef9a73ceb5ef4e9d184a135bca6bdeb8c311 Use MiniWallet in rpc_net.py (Andrew Chow) 4de23824b0c711ece68f9fc007ffac12126710aa Setup wallets for interface_bitcoin_cli.py (Andrew Chow) 7c71c627d28f0cddaf2349a55336278a681c27c2 Setup wallets with descriptors for feature_notifications (Andrew Chow) 1f1bef8dbab7225884d769a45477ee11d0ebf654 Have feature_filelock.py test both bdb and sqlite, depending on compiled (Andrew Chow) c77975abc0123b29b0eb3481b8916e7c025b7c4c Disable upgrades tests that require BDB if BDB is not compiled (Andrew Chow) 1f20cac9d41e507901a2811d6db7147d7ab0321b Disable wallet_descriptor.py bdb format check if BDB is not compiled (Andrew Chow) 3641597d7ef6f5097a9e93cab3ef7e0f9c820296 tests: Don't make any wallets unless wallet is required (Andrew Chow) b9b88f57a9b9a28e0f0614c12ae3012cf5050b10 Skip legacy wallet reliant tests if BDB is not compiled (Andrew Chow) 6f36242389bd3e7eacf594ce90491e8ccca70f3a tests: Set descriptors default based on compilation (Andrew Chow) Pull request description: This PR fixes tests for when BDB is not compiled. Tests which rely on or test legacy wallet behavior are disabled and skipped when BDB is not compiled. For the components of some tests that are for legacy wallet things, those parts of the tests are skipped. For the majority of tests, changes are made so that they can be run with either legacy wallets or descriptor wallets without materially effecting the test. Most tests only need the wallet for balance and transactions, so the type of wallet is not an important part of those tests. Additionally, some tests are wallet agnostic and modified to instead use the test framework's MiniWallet. ACKs for top commit: laanwj: ACK 49797c3ccfbb9f7ac9c1fbb574d35b315c103805 ryanofsky: Code review ACK 49797c3ccfbb9f7ac9c1fbb574d35b315c103805. Only change since last review is dropping last commit. Previous review w/ suggestions for future followup is https://github.com/bitcoin/bitcoin/pull/20267#pullrequestreview-581508843 Tree-SHA512: 69659f8a81fb437ecbca962f4082c12835282dbf1fba7d9952f727a49e01981d749af9b09feda1c8ca737516c7d7a08ef17e782795df3fa69892d5021b41c1ed
373 lines
18 KiB
Python
Executable File
373 lines
18 KiB
Python
Executable File
#!/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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"""Test the send RPC command."""
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from decimal import Decimal, getcontext
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from test_framework.authproxy import JSONRPCException
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from test_framework.descriptors import descsum_create
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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_fee_amount,
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assert_greater_than,
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assert_raises_rpc_error
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)
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class WalletSendTest(BitcoinTestFramework):
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def set_test_params(self):
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self.num_nodes = 2
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# whitelist all peers to speed up tx relay / mempool sync
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self.extra_args = [
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["-whitelist=127.0.0.1"],
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["-whitelist=127.0.0.1"],
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]
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getcontext().prec = 8 # Satoshi precision for Decimal
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def skip_test_if_missing_module(self):
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self.skip_if_no_wallet()
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def test_send(self, from_wallet, to_wallet=None, amount=None, data=None,
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arg_conf_target=None, arg_estimate_mode=None,
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conf_target=None, estimate_mode=None, add_to_wallet=None, psbt=None,
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inputs=None, add_inputs=None, change_address=None, change_position=None,
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include_watching=None, locktime=None, lock_unspents=None, subtract_fee_from_outputs=None,
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expect_error=None):
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assert (amount is None) != (data is None)
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from_balance_before = from_wallet.getbalance()
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if to_wallet is None:
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assert amount is None
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else:
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to_untrusted_pending_before = to_wallet.getbalances()["mine"]["untrusted_pending"]
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if amount:
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dest = to_wallet.getnewaddress()
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outputs = {dest: amount}
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else:
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outputs = {"data": data}
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# Construct options dictionary
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options = {}
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if add_to_wallet is not None:
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options["add_to_wallet"] = add_to_wallet
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else:
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if psbt:
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add_to_wallet = False
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else:
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add_to_wallet = from_wallet.getwalletinfo()["private_keys_enabled"] # Default value
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if psbt is not None:
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options["psbt"] = psbt
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if conf_target is not None:
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options["conf_target"] = conf_target
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if estimate_mode is not None:
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options["estimate_mode"] = estimate_mode
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if inputs is not None:
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options["inputs"] = inputs
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if add_inputs is not None:
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options["add_inputs"] = add_inputs
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if change_address is not None:
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options["change_address"] = change_address
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if change_position is not None:
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options["change_position"] = change_position
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if include_watching is not None:
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options["include_watching"] = include_watching
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if locktime is not None:
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options["locktime"] = locktime
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if lock_unspents is not None:
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options["lock_unspents"] = lock_unspents
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if subtract_fee_from_outputs is not None:
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options["subtract_fee_from_outputs"] = subtract_fee_from_outputs
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if len(options.keys()) == 0:
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options = None
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if expect_error is None:
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res = from_wallet.send(outputs=outputs, conf_target=arg_conf_target, estimate_mode=arg_estimate_mode, options=options)
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else:
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try:
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assert_raises_rpc_error(expect_error[0], expect_error[1], from_wallet.send,
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outputs=outputs, conf_target=arg_conf_target, estimate_mode=arg_estimate_mode, options=options)
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except AssertionError:
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# Provide debug info if the test fails
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self.log.error("Unexpected successful result:")
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self.log.error(options)
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res = from_wallet.send(outputs=outputs, conf_target=arg_conf_target, estimate_mode=arg_estimate_mode, options=options)
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self.log.error(res)
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if "txid" in res and add_to_wallet:
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self.log.error("Transaction details:")
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try:
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tx = from_wallet.gettransaction(res["txid"])
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self.log.error(tx)
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self.log.error("testmempoolaccept (transaction may already be in mempool):")
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self.log.error(from_wallet.testmempoolaccept([tx["hex"]]))
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except JSONRPCException as exc:
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self.log.error(exc)
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raise
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return
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if locktime:
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return res
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if from_wallet.getwalletinfo()["private_keys_enabled"] and not include_watching:
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assert_equal(res["complete"], True)
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assert "txid" in res
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else:
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assert_equal(res["complete"], False)
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assert not "txid" in res
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assert "psbt" in res
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if add_to_wallet and not include_watching:
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# Ensure transaction exists in the wallet:
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tx = from_wallet.gettransaction(res["txid"])
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assert tx
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# Ensure transaction exists in the mempool:
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tx = from_wallet.getrawtransaction(res["txid"], True)
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assert tx
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if amount:
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if subtract_fee_from_outputs:
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assert_equal(from_balance_before - from_wallet.getbalance(), amount)
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else:
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assert_greater_than(from_balance_before - from_wallet.getbalance(), amount)
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else:
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assert next((out for out in tx["vout"] if out["scriptPubKey"]["asm"] == "OP_RETURN 35"), None)
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else:
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assert_equal(from_balance_before, from_wallet.getbalance())
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if to_wallet:
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self.sync_mempools()
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if add_to_wallet:
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if not subtract_fee_from_outputs:
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assert_equal(to_wallet.getbalances()["mine"]["untrusted_pending"], to_untrusted_pending_before + Decimal(amount if amount else 0))
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else:
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assert_equal(to_wallet.getbalances()["mine"]["untrusted_pending"], to_untrusted_pending_before)
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return res
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def run_test(self):
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self.log.info("Setup wallets...")
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# w0 is a wallet with coinbase rewards
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w0 = self.nodes[0].get_wallet_rpc(self.default_wallet_name)
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# w1 is a regular wallet
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self.nodes[1].createwallet(wallet_name="w1")
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w1 = self.nodes[1].get_wallet_rpc("w1")
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# w2 contains the private keys for w3
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self.nodes[1].createwallet(wallet_name="w2", blank=True)
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w2 = self.nodes[1].get_wallet_rpc("w2")
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xpriv = "tprv8ZgxMBicQKsPfHCsTwkiM1KT56RXbGGTqvc2hgqzycpwbHqqpcajQeMRZoBD35kW4RtyCemu6j34Ku5DEspmgjKdt2qe4SvRch5Kk8B8A2v"
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xpub = "tpubD6NzVbkrYhZ4YkEfMbRJkQyZe7wTkbTNRECozCtJPtdLRn6cT1QKb8yHjwAPcAr26eHBFYs5iLiFFnCbwPRsncCKUKCfubHDMGKzMVcN1Jg"
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if self.options.descriptors:
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w2.importdescriptors([{
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"desc": descsum_create("pkh(" + xpriv + "/0/0/*)"),
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"timestamp": "now",
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"range": [0, 100],
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"active": True
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},{
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"desc": descsum_create("pkh(" + xpriv + "/0/1/*)"),
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"timestamp": "now",
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"range": [0, 100],
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"active": True,
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"internal": True
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}])
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else:
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w2.upgradetohd()
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# TODO: replace upgradetohd to sethdseed when it is implemented
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# w2.sethdseed(True)
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# w3 is a watch-only wallet, based on w2
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self.nodes[1].createwallet(wallet_name="w3", disable_private_keys=True)
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w3 = self.nodes[1].get_wallet_rpc("w3")
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if self.options.descriptors:
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# Match the privkeys in w2 for descriptors
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res = w3.importdescriptors([{
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"desc": descsum_create("pkh(" + xpub + "/0/0/*)"),
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"timestamp": "now",
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"range": [0, 100],
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"keypool": True,
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"active": True,
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"watchonly": True
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},{
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"desc": descsum_create("pkh(" + xpub + "/0/1/*)"),
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"timestamp": "now",
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"range": [0, 100],
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"keypool": True,
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"active": True,
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"internal": True,
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"watchonly": True
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}])
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assert_equal(res, [{"success": True}, {"success": True}])
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for _ in range(3):
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a2_receive = w2.getnewaddress()
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if not self.options.descriptors:
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# Because legacy wallets use exclusively hardened derivation, we can't do a ranged import like we do for descriptors
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a2_change = w2.getrawchangeaddress() # doesn't actually use change derivation
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res = w3.importmulti([{
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"desc": w2.getaddressinfo(a2_receive)["desc"],
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"timestamp": "now",
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"keypool": True,
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"watchonly": True
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},{
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"desc": w2.getaddressinfo(a2_change)["desc"],
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"timestamp": "now",
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"keypool": True,
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"internal": True,
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"watchonly": True
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}])
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assert_equal(res, [{"success": True}, {"success": True}])
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w0.sendtoaddress(a2_receive, 10) # fund w3
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self.nodes[0].generate(1)
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self.sync_blocks()
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if not self.options.descriptors:
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# w4 has private keys enabled, but only contains watch-only keys (from w2)
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# This is legacy wallet behavior only as descriptor wallets don't allow watchonly and non-watchonly things in the same wallet.
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self.nodes[1].createwallet(wallet_name="w4", disable_private_keys=False)
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w4 = self.nodes[1].get_wallet_rpc("w4")
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for _ in range(3):
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a2_receive = w2.getnewaddress()
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res = w4.importmulti([{
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"desc": w2.getaddressinfo(a2_receive)["desc"],
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"timestamp": "now",
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"keypool": False,
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"watchonly": True
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}])
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assert_equal(res, [{"success": True}])
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w0.sendtoaddress(a2_receive, 10) # fund w4
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self.nodes[0].generate(1)
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self.sync_blocks()
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self.log.info("Send to address...")
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1)
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=True)
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self.log.info("Don't broadcast...")
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=False)
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assert(res["hex"])
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self.log.info("Return PSBT...")
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, psbt=True)
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assert(res["psbt"])
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self.log.info("Create transaction that spends to address, but don't broadcast...")
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=False)
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# conf_target & estimate_mode can be set as argument or option
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res1 = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, arg_conf_target=1, arg_estimate_mode="economical", add_to_wallet=False)
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res2 = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, conf_target=1, estimate_mode="economical", add_to_wallet=False)
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assert_equal(self.nodes[1].decodepsbt(res1["psbt"])["fee"],
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self.nodes[1].decodepsbt(res2["psbt"])["fee"])
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# but not at the same time
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, arg_conf_target=1, arg_estimate_mode="economical",
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conf_target=1, estimate_mode="economical", add_to_wallet=False, expect_error=(-8,"Use either conf_target and estimate_mode or the options dictionary to control fee rate"))
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self.log.info("Create PSBT from watch-only wallet w3, sign with w2...")
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res = self.test_send(from_wallet=w3, to_wallet=w1, amount=1)
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res = w2.walletprocesspsbt(res["psbt"])
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assert res["complete"]
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if not self.options.descriptors:
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# Descriptor wallets do not allow mixed watch-only and non-watch-only things in the same wallet.
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# This is specifically testing that w4 ignores its own private keys and creates a psbt with send
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# which is not something that needs to be tested in descriptor wallets.
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self.log.info("Create PSBT from wallet w4 with watch-only keys, sign with w2...")
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self.test_send(from_wallet=w4, to_wallet=w1, amount=1, expect_error=(-4, "Insufficient funds"))
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res = self.test_send(from_wallet=w4, to_wallet=w1, amount=1, include_watching=True, add_to_wallet=False)
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res = w2.walletprocesspsbt(res["psbt"])
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assert res["complete"]
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self.log.info("Create OP_RETURN...")
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1)
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self.test_send(from_wallet=w0, data="Hello World", expect_error=(-8, "Data must be hexadecimal string (not 'Hello World')"))
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self.test_send(from_wallet=w0, data="23")
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res = self.test_send(from_wallet=w3, data="23")
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res = w2.walletprocesspsbt(res["psbt"])
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assert res["complete"]
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self.log.info("Set fee rate...")
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, conf_target=2, estimate_mode="duff/b", add_to_wallet=False)
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fee = self.nodes[1].decodepsbt(res["psbt"])["fee"]
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assert_fee_amount(fee, Decimal(len(res["hex"]) / 2), Decimal("0.00002"))
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, conf_target=-1, estimate_mode="duff/b",
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expect_error=(-3, "Amount out of range"))
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# TODO: Return hex if fee rate is below -maxmempool
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# res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, conf_target=0.1, estimate_mode="duff/b", add_to_wallet=False)
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# assert res["hex"]
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# hex = res["hex"]
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# res = self.nodes[0].testmempoolaccept([hex])
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# assert not res[0]["allowed"]
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# assert_equal(res[0]["reject-reason"], "...") # low fee
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# assert_fee_amount(fee, Decimal(len(res["hex"]) / 2), Decimal("0.000001"))
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self.log.info("If inputs are specified, do not automatically add more...")
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=501, inputs=[], add_to_wallet=False)
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assert res["complete"]
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utxo1 = w0.listunspent()[0]
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assert_equal(utxo1["amount"], 500)
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self.test_send(from_wallet=w0, to_wallet=w1, amount=501, inputs=[utxo1],
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expect_error=(-4, "Insufficient funds"))
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self.test_send(from_wallet=w0, to_wallet=w1, amount=501, inputs=[utxo1], add_inputs=False,
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expect_error=(-4, "Insufficient funds"))
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=501, inputs=[utxo1], add_inputs=True, add_to_wallet=False)
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assert res["complete"]
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self.log.info("Manual change address and position...")
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, change_address="not an address",
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expect_error=(-5, "Change address must be a valid Dash address"))
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change_address = w0.getnewaddress()
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self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=False, change_address=change_address)
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assert res["complete"]
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=False, change_address=change_address, change_position=0)
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assert res["complete"]
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assert_equal(self.nodes[0].decodepsbt(res["psbt"])["tx"]["vout"][0]["scriptPubKey"]["addresses"], [change_address])
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, add_to_wallet=False, change_position=0)
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assert res["complete"]
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change_address = self.nodes[0].decodepsbt(res["psbt"])["tx"]["vout"][0]["scriptPubKey"]["addresses"][0]
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assert change_address[0] == "y" or change_address[0] == "8" or change_address[0] == "9"
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self.log.info("Set lock time...")
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height = self.nodes[0].getblockchaininfo()["blocks"]
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res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, locktime=height + 1)
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assert res["complete"]
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assert res["txid"]
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txid = res["txid"]
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# Although the wallet finishes the transaction, it can't be added to the mempool yet:
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hex = self.nodes[0].gettransaction(res["txid"])["hex"]
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res = self.nodes[0].testmempoolaccept([hex])
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assert not res[0]["allowed"]
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assert_equal(res[0]["reject-reason"], "non-final")
|
|
# It shouldn't be confirmed in the next block
|
|
self.nodes[0].generate(1)
|
|
assert_equal(self.nodes[0].gettransaction(txid)["confirmations"], 0)
|
|
# The mempool should allow it now:
|
|
res = self.nodes[0].testmempoolaccept([hex])
|
|
assert res[0]["allowed"]
|
|
# Don't wait for wallet to add it to the mempool:
|
|
res = self.nodes[0].sendrawtransaction(hex)
|
|
self.nodes[0].generate(1)
|
|
assert_equal(self.nodes[0].gettransaction(txid)["confirmations"], 1)
|
|
self.sync_all()
|
|
|
|
self.log.info("Lock unspents...")
|
|
utxo1 = w0.listunspent()[0]
|
|
assert_greater_than(utxo1["amount"], 1)
|
|
res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, inputs=[utxo1], add_to_wallet=False, lock_unspents=True)
|
|
assert res["complete"]
|
|
locked_coins = w0.listlockunspent()
|
|
assert_equal(len(locked_coins), 1)
|
|
# Locked coins are automatically unlocked when manually selected
|
|
res = self.test_send(from_wallet=w0, to_wallet=w1, amount=1, inputs=[utxo1], add_to_wallet=False)
|
|
assert res["complete"]
|
|
|
|
self.log.info("Subtract fee from output")
|
|
self.test_send(from_wallet=w0, to_wallet=w1, amount=1, subtract_fee_from_outputs=[0])
|
|
|
|
|
|
if __name__ == '__main__':
|
|
WalletSendTest().main()
|