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a84ec5cc19
e4f4ea47ebf7774fb6f445adde7bf7ea71fa05a1 lint: Catch use of [] or {} as default parameter values in Python functions (practicalswift) 25dd86715039586d92176eee16e9c6644d2547f0 Avoid using mutable default parameter values (practicalswift) Pull request description: Avoid common Python default parameter gotcha when mutable `dict`/`list`:s are used as default parameter values. Examples of this gotcha caught during review: * https://github.com/bitcoin/bitcoin/pull/16673#discussion_r317415261 * https://github.com/bitcoin/bitcoin/pull/14565#discussion_r241942304 Perhaps surprisingly this is how mutable list and dictionary default parameter values behave in Python: ``` >>> def f(i, j=[], k={}): ... j.append(i) ... k[i] = True ... return j, k ... >>> f(1) ([1], {1: True}) >>> f(1) ([1, 1], {1: True}) >>> f(2) ([1, 1, 2], {1: True, 2: True}) ``` In contrast to: ``` >>> def f(i, j=None, k=None): ... if j is None: ... j = [] ... if k is None: ... k = {} ... j.append(i) ... k[i] = True ... return j, k ... >>> f(1) ([1], {1: True}) >>> f(1) ([1], {1: True}) >>> f(2) ([2], {2: True}) ``` The latter is typically the intended behaviour. This PR fixes two instances of this and adds a check guarding against this gotcha going forward :-) ACKs for top commit: Sjors: Oh Python... ACK e4f4ea47ebf7774fb6f445adde7bf7ea71fa05a1. Testing tip: swap the two commits. Tree-SHA512: 56e14d24fc866211a20185c9fdb274ed046c3aed2dc0e07699e58b6f9fa3b79f6d0c880fb02d72b7fe5cc5eb7c0ff6da0ead33123344e1a872209370c2e49e3f
718 lines
34 KiB
Python
Executable File
718 lines
34 KiB
Python
Executable File
#!/usr/bin/env python3
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# Copyright (c) 2014-2018 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 importmulti RPC.
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Test importmulti by generating keys on node0, importing the scriptPubKeys and
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addresses on node1 and then testing the address info for the different address
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variants.
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- `get_key()` and `get_multisig()` are called to generate keys on node0 and
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return the privkeys, pubkeys and all variants of scriptPubKey and address.
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- `test_importmulti()` is called to send an importmulti call to node1, test
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success, and (if unsuccessful) test the error code and error message returned.
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- `test_address()` is called to call getaddressinfo for an address on node1
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and test the values returned."""
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from test_framework.script import (
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CScript,
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OP_NOP,
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)
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.descriptors import descsum_create
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from test_framework.util import (
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assert_equal,
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assert_greater_than,
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assert_raises_rpc_error,
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)
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from test_framework.wallet_util import (
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get_key,
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get_multisig,
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test_address,
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)
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class ImportMultiTest(BitcoinTestFramework):
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def set_test_params(self):
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self.num_nodes = 2
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self.setup_clean_chain = True
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self.extra_args = [['-usehd=1']] * self.num_nodes
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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 setup_network(self):
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self.setup_nodes()
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def test_importmulti(self, req, success, error_code=None, error_message=None, warnings=None):
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"""Run importmulti and assert success"""
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if warnings is None:
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warnings = []
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result = self.nodes[1].importmulti([req])
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observed_warnings = []
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if 'warnings' in result[0]:
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observed_warnings = result[0]['warnings']
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assert_equal("\n".join(sorted(warnings)), "\n".join(sorted(observed_warnings)))
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assert_equal(result[0]['success'], success)
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if error_code is not None:
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assert_equal(result[0]['error']['code'], error_code)
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assert_equal(result[0]['error']['message'], error_message)
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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.nodes[1].generate(1)
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timestamp = self.nodes[1].getblock(self.nodes[1].getbestblockhash())['mediantime']
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self.nodes[1].syncwithvalidationinterfacequeue()
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node0_address1 = self.nodes[0].getaddressinfo(self.nodes[0].getnewaddress())
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# Check only one address
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assert_equal(node0_address1['ismine'], True)
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# Node 1 sync test
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assert_equal(self.nodes[1].getblockcount(), 1)
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# Address Test - before import
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address_info = self.nodes[1].getaddressinfo(node0_address1['address'])
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assert_equal(address_info['iswatchonly'], False)
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assert_equal(address_info['ismine'], False)
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# RPC importmulti -----------------------------------------------
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# Bitcoin Address (implicit non-internal)
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self.log.info("Should import an address")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now"},
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success=True)
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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timestamp=timestamp,
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ischange=False)
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watchonly_address = key.p2pkh_addr
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watchonly_timestamp = timestamp
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self.log.info("Should not import an invalid address")
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self.test_importmulti({"scriptPubKey": {"address": "not valid address"},
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"timestamp": "now"},
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success=False,
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error_code=-5,
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error_message='Invalid address \"not valid address\"')
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# ScriptPubKey + internal
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self.log.info("Should import a scriptPubKey with internal flag")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"internal": True},
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success=True)
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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timestamp=timestamp,
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ischange=True)
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# ScriptPubKey + internal + label
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self.log.info("Should not allow a label to be specified when internal is true")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"internal": True,
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"label": "Example label"},
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success=False,
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error_code=-8,
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error_message='Internal addresses should not have a label')
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# Nonstandard scriptPubKey + !internal
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self.log.info("Should not import a nonstandard scriptPubKey without internal flag")
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nonstandardScriptPubKey = key.p2pkh_script + CScript([OP_NOP]).hex()
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": nonstandardScriptPubKey,
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"timestamp": "now"},
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success=False,
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error_code=-8,
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error_message='Internal must be set to true for nonstandard scriptPubKey imports.')
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=False,
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timestamp=None)
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# Address + Public key + !Internal(explicit)
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self.log.info("Should import an address with public key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"pubkeys": [key.pubkey],
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"internal": False},
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success=True,
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warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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timestamp=timestamp)
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# ScriptPubKey + Public key + internal
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self.log.info("Should import a scriptPubKey with internal and with public key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"pubkeys": [key.pubkey],
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"internal": True},
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success=True,
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warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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timestamp=timestamp)
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# Nonstandard scriptPubKey + Public key + !internal
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self.log.info("Should not import a nonstandard scriptPubKey without internal and with public key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": nonstandardScriptPubKey,
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"timestamp": "now",
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"pubkeys": [key.pubkey]},
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success=False,
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error_code=-8,
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error_message='Internal must be set to true for nonstandard scriptPubKey imports.')
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=False,
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timestamp=None)
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# Address + Private key + !watchonly
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self.log.info("Should import an address with private key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"keys": [key.privkey]},
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success=True)
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=True,
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timestamp=timestamp)
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self.log.info("Should not import an address with private key if is already imported")
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"keys": [key.privkey]},
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success=False,
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error_code=-4,
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error_message='The wallet already contains the private key for this address or script ("' + key.p2pkh_script + '")')
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# Address + Private key + watchonly
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self.log.info("Should import an address with private key and with watchonly")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"keys": [key.privkey],
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"watchonly": True},
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success=True,
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warnings=["All private keys are provided, outputs will be considered spendable. If this is intentional, do not specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=True,
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timestamp=timestamp)
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# ScriptPubKey + Private key + internal
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self.log.info("Should import a scriptPubKey with internal and with private key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"keys": [key.privkey],
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"internal": True},
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success=True)
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=True,
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timestamp=timestamp)
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# Nonstandard scriptPubKey + Private key + !internal
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self.log.info("Should not import a nonstandard scriptPubKey without internal and with private key")
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key = get_key(self.nodes[0])
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self.test_importmulti({"scriptPubKey": nonstandardScriptPubKey,
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"timestamp": "now",
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"keys": [key.privkey]},
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success=False,
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error_code=-8,
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error_message='Internal must be set to true for nonstandard scriptPubKey imports.')
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=False,
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ismine=False,
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timestamp=None)
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# P2SH address
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multisig = get_multisig(self.nodes[0])
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self.nodes[1].generate(100)
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self.nodes[1].sendtoaddress(multisig.p2sh_addr, 10.00)
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self.nodes[1].generate(1)
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timestamp = self.nodes[1].getblock(self.nodes[1].getbestblockhash())['mediantime']
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self.nodes[1].syncwithvalidationinterfacequeue()
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self.log.info("Should import a p2sh")
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self.test_importmulti({"scriptPubKey": {"address": multisig.p2sh_addr},
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"timestamp": "now"},
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success=True)
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test_address(self.nodes[1],
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multisig.p2sh_addr,
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isscript=True,
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iswatchonly=True,
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timestamp=timestamp)
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p2shunspent = self.nodes[1].listunspent(0, 999999, [multisig.p2sh_addr])[0]
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assert_equal(p2shunspent['spendable'], False)
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assert_equal(p2shunspent['solvable'], False)
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# P2SH + Redeem script
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multisig = get_multisig(self.nodes[0])
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self.nodes[1].generate(100)
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self.nodes[1].sendtoaddress(multisig.p2sh_addr, 10.00)
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self.nodes[1].generate(1)
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timestamp = self.nodes[1].getblock(self.nodes[1].getbestblockhash())['mediantime']
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self.nodes[1].syncwithvalidationinterfacequeue()
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self.log.info("Should import a p2sh with respective redeem script")
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self.test_importmulti({"scriptPubKey": {"address": multisig.p2sh_addr},
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"timestamp": "now",
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"redeemscript": multisig.redeem_script},
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success=True,
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warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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multisig.p2sh_addr, timestamp=timestamp, iswatchonly=True, ismine=False, solvable=True)
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p2shunspent = self.nodes[1].listunspent(0, 999999, [multisig.p2sh_addr])[0]
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assert_equal(p2shunspent['spendable'], False)
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assert_equal(p2shunspent['solvable'], True)
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# P2SH + Redeem script + Private Keys + !Watchonly
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multisig = get_multisig(self.nodes[0])
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self.nodes[1].generate(100)
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self.nodes[1].sendtoaddress(multisig.p2sh_addr, 10.00)
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self.nodes[1].generate(1)
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timestamp = self.nodes[1].getblock(self.nodes[1].getbestblockhash())['mediantime']
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self.nodes[1].syncwithvalidationinterfacequeue()
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self.log.info("Should import a p2sh with respective redeem script and private keys")
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self.test_importmulti({"scriptPubKey": {"address": multisig.p2sh_addr},
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"timestamp": "now",
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"redeemscript": multisig.redeem_script,
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"keys": multisig.privkeys[0:2]},
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success=True,
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warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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multisig.p2sh_addr,
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timestamp=timestamp,
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ismine=False,
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iswatchonly=True,
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solvable=True)
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p2shunspent = self.nodes[1].listunspent(0, 999999, [multisig.p2sh_addr])[0]
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assert_equal(p2shunspent['spendable'], False)
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assert_equal(p2shunspent['solvable'], True)
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# P2SH + Redeem script + Private Keys + Watchonly
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multisig = get_multisig(self.nodes[0])
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self.nodes[1].generate(100)
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self.nodes[1].sendtoaddress(multisig.p2sh_addr, 10.00)
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self.nodes[1].generate(1)
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timestamp = self.nodes[1].getblock(self.nodes[1].getbestblockhash())['mediantime']
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self.nodes[1].syncwithvalidationinterfacequeue()
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self.log.info("Should import a p2sh with respective redeem script and private keys")
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self.test_importmulti({"scriptPubKey": {"address": multisig.p2sh_addr},
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"timestamp": "now",
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"redeemscript": multisig.redeem_script,
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"keys": multisig.privkeys[0:2],
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"watchonly": True},
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success=True)
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test_address(self.nodes[1],
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multisig.p2sh_addr,
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iswatchonly=True,
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ismine=False,
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solvable=True,
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timestamp=timestamp)
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# Address + Public key + !Internal + Wrong pubkey
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self.log.info("Should not import an address with the wrong public key as non-solvable")
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key = get_key(self.nodes[0])
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wrong_key = get_key(self.nodes[0]).pubkey
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"pubkeys": [wrong_key]},
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success=True,
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warnings=["Importing as non-solvable: some required keys are missing. If this is intentional, don't provide any keys, pubkeys, or redeemscript.", "Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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solvable=False,
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timestamp=timestamp)
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# ScriptPubKey + Public key + internal + Wrong pubkey
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self.log.info("Should import a scriptPubKey with internal and with a wrong public key as non-solvable")
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key = get_key(self.nodes[0])
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wrong_key = get_key(self.nodes[0]).pubkey
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"pubkeys": [wrong_key],
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"internal": True},
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success=True,
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warnings=["Importing as non-solvable: some required keys are missing. If this is intentional, don't provide any keys, pubkeys, or redeemscript.", "Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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solvable=False,
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timestamp=timestamp)
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# Address + Private key + !watchonly + Wrong private key
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self.log.info("Should import an address with a wrong private key as non-solvable")
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key = get_key(self.nodes[0])
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wrong_privkey = get_key(self.nodes[0]).privkey
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self.test_importmulti({"scriptPubKey": {"address": key.p2pkh_addr},
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"timestamp": "now",
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"keys": [wrong_privkey]},
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success=True,
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warnings=["Importing as non-solvable: some required keys are missing. If this is intentional, don't provide any keys, pubkeys, or redeemscript.", "Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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solvable=False,
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timestamp=timestamp)
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# ScriptPubKey + Private key + internal + Wrong private key
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self.log.info("Should import a scriptPubKey with internal and with a wrong private key as non-solvable")
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key = get_key(self.nodes[0])
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wrong_privkey = get_key(self.nodes[0]).privkey
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self.test_importmulti({"scriptPubKey": key.p2pkh_script,
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"timestamp": "now",
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"keys": [wrong_privkey],
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"internal": True},
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success=True,
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warnings=["Importing as non-solvable: some required keys are missing. If this is intentional, don't provide any keys, pubkeys, or redeemscript.", "Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
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test_address(self.nodes[1],
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key.p2pkh_addr,
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iswatchonly=True,
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ismine=False,
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solvable=False,
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timestamp=timestamp)
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# Importing existing watch only address with new timestamp should replace saved timestamp.
|
|
assert_greater_than(timestamp, watchonly_timestamp)
|
|
self.log.info("Should replace previously saved watch only timestamp.")
|
|
self.test_importmulti({"scriptPubKey": {"address": watchonly_address},
|
|
"timestamp": "now"},
|
|
success=True)
|
|
test_address(self.nodes[1],
|
|
watchonly_address,
|
|
iswatchonly=True,
|
|
ismine=False,
|
|
timestamp=timestamp)
|
|
watchonly_timestamp = timestamp
|
|
|
|
# restart nodes to check for proper serialization/deserialization of watch only address
|
|
self.stop_nodes()
|
|
self.start_nodes()
|
|
test_address(self.nodes[1],
|
|
watchonly_address,
|
|
iswatchonly=True,
|
|
ismine=False,
|
|
timestamp=watchonly_timestamp)
|
|
|
|
# Bad or missing timestamps
|
|
self.log.info("Should throw on invalid or missing timestamp values")
|
|
assert_raises_rpc_error(-3, 'Missing required timestamp field for key',
|
|
self.nodes[1].importmulti, [{"scriptPubKey": key.p2pkh_script}])
|
|
assert_raises_rpc_error(-3, 'Expected number or "now" timestamp value for key. got type string',
|
|
self.nodes[1].importmulti, [{
|
|
"scriptPubKey": key.p2pkh_script,
|
|
"timestamp": ""
|
|
}])
|
|
|
|
# Test ranged descriptor fails if range is not specified
|
|
xpriv = "tprv8ZgxMBicQKsPeuVhWwi6wuMQGfPKi9Li5GtX35jVNknACgqe3CY4g5xgkfDDJcmtF7o1QnxWDRYw4H5P26PXq7sbcUkEqeR4fg3Kxp2tigg"
|
|
desc = "sh(pkh(" + xpriv + "/0'/0'/*'" + "))"
|
|
self.log.info("Ranged descriptor import should fail without a specified range")
|
|
self.test_importmulti({"desc": descsum_create(desc),
|
|
"timestamp": "now"},
|
|
success=False,
|
|
error_code=-8,
|
|
error_message='Descriptor is ranged, please specify the range')
|
|
|
|
# Test importing of a ranged descriptor with xpriv
|
|
self.log.info("Should import the ranged descriptor with specified range as solvable")
|
|
self.test_importmulti({"desc": descsum_create(desc),
|
|
"timestamp": "now",
|
|
"range": 1},
|
|
success=True)
|
|
|
|
self.test_importmulti({"desc": descsum_create(desc), "timestamp": "now", "range": -1},
|
|
success=False, error_code=-8, error_message='End of range is too high')
|
|
|
|
self.test_importmulti({"desc": descsum_create(desc), "timestamp": "now", "range": [-1, 10]},
|
|
success=False, error_code=-8, error_message='Range should be greater or equal than 0')
|
|
|
|
self.test_importmulti({"desc": descsum_create(desc), "timestamp": "now", "range": [(2 << 31 + 1) - 1000000, (2 << 31 + 1)]},
|
|
success=False, error_code=-8, error_message='End of range is too high')
|
|
|
|
self.test_importmulti({"desc": descsum_create(desc), "timestamp": "now", "range": [2, 1]},
|
|
success=False, error_code=-8, error_message='Range specified as [begin,end] must not have begin after end')
|
|
|
|
self.test_importmulti({"desc": descsum_create(desc), "timestamp": "now", "range": [0, 1000001]},
|
|
success=False, error_code=-8, error_message='Range is too large')
|
|
|
|
# Test importing a descriptor containing a WIF private key
|
|
wif_priv = "cTT3BvHnd51YJf8fkdr2XvZTQRRUZruWhRvRyQY1raVFg5Lvam2A"
|
|
address = "ySWABbcNKyHUgBb1ffhpuETuis9jsdR3aq"
|
|
desc = "sh(pkh(" + wif_priv + "))"
|
|
self.log.info("Should import a descriptor with a WIF private key as spendable")
|
|
self.test_importmulti({"desc": descsum_create(desc),
|
|
"timestamp": "now"},
|
|
success=True)
|
|
test_address(self.nodes[1],
|
|
address,
|
|
solvable=True,
|
|
ismine=True)
|
|
|
|
# dump the private key to ensure it matches what was imported
|
|
privkey = self.nodes[1].dumpprivkey(address)
|
|
assert_equal(privkey, wif_priv)
|
|
|
|
# Test importing of a P2PKH address via descriptor
|
|
key = get_key(self.nodes[0])
|
|
self.log.info("Should import a p2pkh address from descriptor")
|
|
self.test_importmulti({"desc": descsum_create("pkh(" + key.pubkey + ")"),
|
|
"timestamp": "now",
|
|
"label": "Descriptor import test"},
|
|
success=True,
|
|
warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
|
|
test_address(self.nodes[1],
|
|
key.p2pkh_addr,
|
|
solvable=True,
|
|
ismine=False,
|
|
label="Descriptor import test")
|
|
|
|
# Test import fails if both desc and scriptPubKey are provided
|
|
key = get_key(self.nodes[0])
|
|
self.log.info("Import should fail if both scriptPubKey and desc are provided")
|
|
self.test_importmulti({"desc": descsum_create("pkh(" + key.pubkey + ")"),
|
|
"scriptPubKey": {"address": key.p2pkh_addr},
|
|
"timestamp": "now"},
|
|
success=False,
|
|
error_code=-8,
|
|
error_message='Both a descriptor and a scriptPubKey should not be provided.')
|
|
|
|
# Test import fails if neither desc nor scriptPubKey are present
|
|
key = get_key(self.nodes[0])
|
|
self.log.info("Import should fail if neither a descriptor nor a scriptPubKey are provided")
|
|
self.test_importmulti({"timestamp": "now"},
|
|
success=False,
|
|
error_code=-8,
|
|
error_message='Either a descriptor or scriptPubKey must be provided.')
|
|
|
|
# Test importing of a multisig via descriptor
|
|
key1 = get_key(self.nodes[0])
|
|
key2 = get_key(self.nodes[0])
|
|
self.log.info("Should import a 1-of-2 bare multisig from descriptor")
|
|
self.test_importmulti({"desc": descsum_create("multi(1," + key1.pubkey + "," + key2.pubkey + ")"),
|
|
"timestamp": "now"},
|
|
True,
|
|
warnings=["Some private keys are missing, outputs will be considered watchonly. If this is intentional, specify the watchonly flag."])
|
|
self.log.info("Should not treat individual keys from the imported bare multisig as watchonly")
|
|
test_address(self.nodes[1],
|
|
key1.p2pkh_addr,
|
|
ismine=False,
|
|
iswatchonly=False)
|
|
|
|
# Import pubkeys with key origin info
|
|
self.log.info("Addresses should have hd keypath and master key id after import with key origin")
|
|
pub_addr = self.nodes[1].getnewaddress()
|
|
pub_addr = self.nodes[1].getnewaddress()
|
|
info = self.nodes[1].getaddressinfo(pub_addr)
|
|
pub = info['pubkey']
|
|
pub_keypath = info['hdkeypath']
|
|
pub_fpr = info['hdmasterfingerprint']
|
|
result = self.nodes[0].importmulti(
|
|
[{
|
|
'desc' : descsum_create("pkh([" + pub_fpr + pub_keypath[1:] +"]" + pub + ")"),
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
pub_import_info = self.nodes[0].getaddressinfo(pub_addr)
|
|
assert_equal(pub_import_info['hdmasterfingerprint'], pub_fpr)
|
|
assert_equal(pub_import_info['pubkey'], pub)
|
|
assert_equal(pub_import_info['hdkeypath'], pub_keypath)
|
|
|
|
# Import privkeys with key origin info
|
|
priv_addr = self.nodes[1].getnewaddress()
|
|
info = self.nodes[1].getaddressinfo(priv_addr)
|
|
priv = self.nodes[1].dumpprivkey(priv_addr)
|
|
priv_keypath = info['hdkeypath']
|
|
priv_fpr = info['hdmasterfingerprint']
|
|
result = self.nodes[0].importmulti(
|
|
[{
|
|
'desc' : descsum_create("pkh([" + priv_fpr + priv_keypath[1:] + "]" + priv + ")"),
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
priv_import_info = self.nodes[0].getaddressinfo(priv_addr)
|
|
assert_equal(priv_import_info['hdmasterfingerprint'], priv_fpr)
|
|
assert_equal(priv_import_info['hdkeypath'], priv_keypath)
|
|
|
|
# Make sure the key origin info are still there after a restart
|
|
self.stop_nodes()
|
|
self.start_nodes()
|
|
import_info = self.nodes[0].getaddressinfo(pub_addr)
|
|
assert_equal(import_info['hdmasterfingerprint'], pub_fpr)
|
|
assert_equal(import_info['hdkeypath'], pub_keypath)
|
|
import_info = self.nodes[0].getaddressinfo(priv_addr)
|
|
assert_equal(import_info['hdmasterfingerprint'], priv_fpr)
|
|
assert_equal(import_info['hdkeypath'], priv_keypath)
|
|
|
|
# Check legacy import does not import key origin info
|
|
self.log.info("Legacy imports don't have key origin info")
|
|
pub_addr = self.nodes[1].getnewaddress()
|
|
info = self.nodes[1].getaddressinfo(pub_addr)
|
|
pub = info['pubkey']
|
|
result = self.nodes[0].importmulti(
|
|
[{
|
|
'scriptPubKey': {'address': pub_addr},
|
|
'pubkeys': [pub],
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
pub_import_info = self.nodes[0].getaddressinfo(pub_addr)
|
|
assert_equal(pub_import_info['pubkey'], pub)
|
|
assert 'hdmasterfingerprint' not in pub_import_info
|
|
assert 'hdkeypath' not in pub_import_info
|
|
|
|
# Import some public keys to the keypool of a no privkey wallet
|
|
self.log.info("Adding pubkey to keypool of disableprivkey wallet")
|
|
self.nodes[1].createwallet(wallet_name="noprivkeys", disable_private_keys=True)
|
|
wrpc = self.nodes[1].get_wallet_rpc("noprivkeys")
|
|
|
|
addr1 = self.nodes[0].getnewaddress()
|
|
addr2 = self.nodes[0].getnewaddress()
|
|
pub1 = self.nodes[0].getaddressinfo(addr1)['pubkey']
|
|
pub2 = self.nodes[0].getaddressinfo(addr2)['pubkey']
|
|
result = wrpc.importmulti(
|
|
[{
|
|
'desc': descsum_create('pkh(' + pub1 + ')'),
|
|
'keypool': True,
|
|
"timestamp": "now",
|
|
},
|
|
{
|
|
'desc': descsum_create('pkh(' + pub2 + ')'),
|
|
'keypool': True,
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
assert result[1]['success']
|
|
assert_equal(wrpc.getwalletinfo()["keypoolsize"], 2)
|
|
newaddr1 = wrpc.getnewaddress()
|
|
assert_equal(addr1, newaddr1)
|
|
newaddr2 = wrpc.getnewaddress()
|
|
assert_equal(addr2, newaddr2)
|
|
|
|
# Import some public keys to the internal keypool of a no privkey wallet
|
|
self.log.info("Adding pubkey to internal keypool of disableprivkey wallet")
|
|
addr1 = self.nodes[0].getnewaddress()
|
|
addr2 = self.nodes[0].getnewaddress()
|
|
pub1 = self.nodes[0].getaddressinfo(addr1)['pubkey']
|
|
pub2 = self.nodes[0].getaddressinfo(addr2)['pubkey']
|
|
result = wrpc.importmulti(
|
|
[{
|
|
'desc': descsum_create('pkh(' + pub1 + ')'),
|
|
'keypool': True,
|
|
'internal': True,
|
|
"timestamp": "now",
|
|
},
|
|
{
|
|
'desc': descsum_create('pkh(' + pub2 + ')'),
|
|
'keypool': True,
|
|
'internal': True,
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
assert result[1]['success']
|
|
assert_equal(wrpc.getwalletinfo()["keypoolsize_hd_internal"], 2)
|
|
newaddr1 = wrpc.getrawchangeaddress()
|
|
assert_equal(addr1, newaddr1)
|
|
newaddr2 = wrpc.getrawchangeaddress()
|
|
assert_equal(addr2, newaddr2)
|
|
|
|
# Import a multisig and make sure the keys don't go into the keypool
|
|
self.log.info('Imported scripts with pubkeys should not have their pubkeys go into the keypool')
|
|
addr1 = self.nodes[0].getnewaddress()
|
|
addr2 = self.nodes[0].getnewaddress()
|
|
pub1 = self.nodes[0].getaddressinfo(addr1)['pubkey']
|
|
pub2 = self.nodes[0].getaddressinfo(addr2)['pubkey']
|
|
result = wrpc.importmulti(
|
|
[{
|
|
'desc': descsum_create('sh(multi(2,' + pub1 + ',' + pub2 + '))'),
|
|
'keypool': True,
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert result[0]['success']
|
|
assert_equal(wrpc.getwalletinfo()["keypoolsize"], 0)
|
|
|
|
# Cannot import those pubkeys to keypool of wallet with privkeys
|
|
self.log.info("Pubkeys cannot be added to the keypool of a wallet with private keys")
|
|
wrpc = self.nodes[1].get_wallet_rpc(self.default_wallet_name)
|
|
assert wrpc.getwalletinfo()['private_keys_enabled']
|
|
result = wrpc.importmulti(
|
|
[{
|
|
'desc': descsum_create('pkh(' + pub1 + ')'),
|
|
'keypool': True,
|
|
"timestamp": "now",
|
|
}]
|
|
)
|
|
assert_equal(result[0]['error']['code'], -8)
|
|
assert_equal(result[0]['error']['message'], "Keys can only be imported to the keypool when private keys are disabled")
|
|
|
|
# Make sure ranged imports import keys in order
|
|
self.log.info('Key ranges should be imported in order')
|
|
wrpc = self.nodes[1].get_wallet_rpc("noprivkeys")
|
|
assert_equal(wrpc.getwalletinfo()["keypoolsize"], 0)
|
|
assert_equal(wrpc.getwalletinfo()["private_keys_enabled"], False)
|
|
xpub = "tpubDAXcJ7s7ZwicqjprRaEWdPoHKrCS215qxGYxpusRLLmJuT69ZSicuGdSfyvyKpvUNYBW1s2U3NSrT6vrCYB9e6nZUEvrqnwXPF8ArTCRXMY"
|
|
addresses = [
|
|
'yUxX4qnzWntXhEGrYB92v7ez4EZBnUjB1y', # m/0'/0'/0
|
|
'yRhTPsPd2qYgYbFFCqY2nuPHJQBjTnMQxg', # m/0'/0'/1
|
|
'yUyn3UV9rBdWfw6yJJ6eAoKuzDJ8RVLP1o', # m/0'/0'/2
|
|
'yi8GEkfLBgK85wGmBFsMFdSbEvPPNCSnVx', # m/0'/0'/3
|
|
'yYB4whdY8APWoCez6ryNdMBrrDjwzFbqMi', # m/0'/0'/4
|
|
]
|
|
result = wrpc.importmulti(
|
|
[{
|
|
'desc': descsum_create('pkh([80002067/0h/0h]' + xpub + '/*)'),
|
|
'keypool': True,
|
|
'timestamp': 'now',
|
|
'range' : [0, 4],
|
|
}]
|
|
)
|
|
for i in range(0, 5):
|
|
addr = wrpc.getnewaddress('')
|
|
assert_equal(addr, addresses[i])
|
|
|
|
|
|
if __name__ == '__main__':
|
|
ImportMultiTest().main()
|