neobytes/test/functional/wallet-accounts.py
MarcoFalke 17bb230d74 Merge #11121: TestNode tidyups
7148b74dc [tests] Functional tests must explicitly set num_nodes (John Newbery)
5448a1471 [tests] don't override __init__() in individual tests (John Newbery)
6cf094a02 [tests] Avoid passing around member variables in test_framework (John Newbery)
36b626867 [tests] TestNode: separate add_node from start_node (John Newbery)
be2a2ab6a [tests] fix - use rpc_timeout as rpc timeout (John Newbery)

Pull request description:

  Some additional tidyups after the introduction of TestNode:

  - commit 1 makes TestNode use the correct rpc timeout. This should have been included in #11077
  - commit 2 separates `add_node()` from `start_node()` as originally discussed here: https://github.com/bitcoin/bitcoin/pull/10556#discussion_r121161453 with @kallewoof . The test writer no longer needs to assign to `self.nodes` when starting/stopping nodes.
  - commit 3 adds a `set_test_params()` method, so individual tests don't need to override `__init__()` and call `super().__init__()`

Tree-SHA512: 0adb030623b96675b5c29e2890ce99ccd837ed05f721d0c91b35378c5ac01b6658174aac12f1f77402e1d38b61f39b3c43b4df85c96952565dde1cda05b0db84
2019-09-24 16:58:03 +02:00

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5.0 KiB
Python
Executable File

#!/usr/bin/env python3
# Copyright (c) 2016 The Bitcoin Core developers
# Distributed under the MIT software license, see the accompanying
# file COPYING or http://www.opensource.org/licenses/mit-license.php.
"""Test account RPCs.
RPCs tested are:
- getaccountaddress
- getaddressesbyaccount
- listaddressgroupings
- setaccount
- sendfrom (with account arguments)
- move (with account arguments)
"""
from test_framework.test_framework import BitcoinTestFramework
from test_framework.util import assert_equal
class WalletAccountsTest(BitcoinTestFramework):
def set_test_params(self):
self.setup_clean_chain = True
self.num_nodes = 1
self.extra_args = [["-paytxfee=0.0001"]]
def run_test(self):
node = self.nodes[0]
# Check that there's no UTXO on any of the nodes
assert_equal(len(node.listunspent()), 0)
# Note each time we call generate, all generated coins go into
# the same address, so we call twice to get two addresses w/500 each
node.generate(1)
node.generate(101)
assert_equal(node.getbalance(), 1000)
# there should be 2 address groups
# each with 1 address with a balance of 500 Dash
address_groups = node.listaddressgroupings()
assert_equal(len(address_groups), 2)
# the addresses aren't linked now, but will be after we send to the
# common address
linked_addresses = set()
for address_group in address_groups:
assert_equal(len(address_group), 1)
assert_equal(len(address_group[0]), 2)
assert_equal(address_group[0][1], 500)
linked_addresses.add(address_group[0][0])
# send 500 from each address to a third address not in this wallet
# There's some fee that will come back to us when the miner reward
# matures.
common_address = "yd5KMREs3GLMe6mTJYr3YrH1juwNwrFCfB"
txid = node.sendmany(
fromaccount="",
amounts={common_address: 1000},
minconf=1,
addlocked=False,
comment="",
subtractfeefrom=[common_address],
)
tx_details = node.gettransaction(txid)
fee = -tx_details['details'][0]['fee']
# there should be 1 address group, with the previously
# unlinked addresses now linked (they both have 0 balance)
address_groups = node.listaddressgroupings()
assert_equal(len(address_groups), 1)
assert_equal(len(address_groups[0]), 2)
assert_equal(set([a[0] for a in address_groups[0]]), linked_addresses)
assert_equal([a[1] for a in address_groups[0]], [0, 0])
node.generate(1)
# we want to reset so that the "" account has what's expected.
# otherwise we're off by exactly the fee amount as that's mined
# and matures in the next 100 blocks
node.sendfrom("", common_address, fee)
accounts = ["a", "b", "c", "d", "e"]
amount_to_send = 1.0
account_addresses = dict()
for account in accounts:
address = node.getaccountaddress(account)
account_addresses[account] = address
node.getnewaddress(account)
assert_equal(node.getaccount(address), account)
assert(address in node.getaddressesbyaccount(account))
node.sendfrom("", address, amount_to_send)
node.generate(1)
for i in range(len(accounts)):
from_account = accounts[i]
to_account = accounts[(i+1) % len(accounts)]
to_address = account_addresses[to_account]
node.sendfrom(from_account, to_address, amount_to_send)
node.generate(1)
for account in accounts:
address = node.getaccountaddress(account)
assert(address != account_addresses[account])
assert_equal(node.getreceivedbyaccount(account), 2)
node.move(account, "", node.getbalance(account))
node.generate(101)
expected_account_balances = {"": 52000}
for account in accounts:
expected_account_balances[account] = 0
assert_equal(node.listaccounts(), expected_account_balances)
assert_equal(node.getbalance(""), 52000)
for account in accounts:
address = node.getaccountaddress("")
node.setaccount(address, account)
assert(address in node.getaddressesbyaccount(account))
assert(address not in node.getaddressesbyaccount(""))
for account in accounts:
addresses = []
for x in range(10):
addresses.append(node.getnewaddress())
multisig_address = node.addmultisigaddress(5, addresses, account)
node.sendfrom("", multisig_address, 50)
node.generate(101)
for account in accounts:
assert_equal(node.getbalance(account), 50)
if __name__ == '__main__':
WalletAccountsTest().main()