mirror of
https://github.com/ElementsProject/elements.git
synced 2026-08-13 12:33:42 +02:00
fuzz test fixes
set -DPRODUCTION for simplicity in fuzz tests
set UNDEBUG for simplicity in fuzz tests
update wallet fuzz tests
update test script
fix msvc conversion issues
more msvc vector conversion fixes and substitution of boost libs
fix more hexstr calls
fix hexstr calls in init.cpp
default CMAKE_GENERATOR to Unix Makefiles
more span fixes
specify build bin directory
fix executable locations
fix fuzz tests for c11 and functional test fixes
fix fuzz test executable path
specify legacy wallet for elements functional tests
remove assertion for static initialization order issue
use elements fuzz corpus
print debug log on failure
use heap for blind and asset_blind
test: avoid disk space warning for non-regtest
feature_config_args.py incorrectly assumed that its testnet4 node
would not log a disk space warning.
0683b8ebf3 increased m_assumed_blockchain_size
on testnet4 from 1 to 11 GiB which triggers this bug on more
systems, e.g. a RAM disk.
Prevent the warning by setting -prune for these nodes.
Fix the same issue in feature_signet.py
Github-Pull: #32057
Rebased-From: 20fe41e9e83d510fd467f5a999d55a614b16ef89
622 lines
23 KiB
Python
Executable file
622 lines
23 KiB
Python
Executable file
#!/usr/bin/env python3
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# Copyright (c) 2014-2022 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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"""Helpful routines for regression testing."""
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from base64 import b64encode
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from decimal import Decimal
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from subprocess import CalledProcessError
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import hashlib
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import inspect
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import json
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import logging
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import os
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import pathlib
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import platform
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import random
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import re
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import time
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from . import coverage
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from .authproxy import AuthServiceProxy, JSONRPCException
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from collections.abc import Callable
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from typing import Optional, Union
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SATOSHI_PRECISION = Decimal('0.00000001')
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logger = logging.getLogger("TestFramework.utils")
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BITCOIN_ASSET = "b2e15d0d7a0c94e4e2ce0fe6e8691b9e451377f6e46e8045a86f7c4b5d4f0f23"
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BITCOIN_ASSET_BYTES = bytearray.fromhex(BITCOIN_ASSET)
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BITCOIN_ASSET_BYTES.reverse()
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BITCOIN_ASSET_OUT = b"\x01"+BITCOIN_ASSET_BYTES
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# This variable should be set to the node being used for CalcFastMerkleRoot calls
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node_fastmerkle = None
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def calcfastmerkleroot(leaves):
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global node_fastmerkle
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return node_fastmerkle.calcfastmerkleroot(leaves)
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# Assert functions
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##################
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def assert_approx(v, vexp, vspan=0.00001):
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"""Assert that `v` is within `vspan` of `vexp`"""
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if isinstance(v, Decimal) or isinstance(vexp, Decimal):
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v=Decimal(v)
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vexp=Decimal(vexp)
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vspan=Decimal(vspan)
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if v < vexp - vspan:
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raise AssertionError("%s < [%s..%s]" % (str(v), str(vexp - vspan), str(vexp + vspan)))
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if v > vexp + vspan:
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raise AssertionError("%s > [%s..%s]" % (str(v), str(vexp - vspan), str(vexp + vspan)))
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def assert_fee_amount(fee, tx_size, feerate_BTC_kvB):
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"""Assert the fee is in range."""
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assert isinstance(tx_size, int)
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target_fee = get_fee(tx_size, feerate_BTC_kvB)
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if fee < target_fee:
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raise AssertionError("Fee of %s BTC too low! (Should be %s BTC)" % (str(fee), str(target_fee)))
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# allow the wallet's estimation to be at most 2 bytes off
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high_fee = get_fee(tx_size + 2, feerate_BTC_kvB)
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if fee > high_fee:
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raise AssertionError("Fee of %s BTC too high! (Should be %s BTC)" % (str(fee), str(target_fee)))
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def summarise_dict_differences(thing1, thing2):
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if not isinstance(thing1, dict) or not isinstance(thing2, dict):
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return thing1, thing2
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d1, d2 = {}, {}
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for k in sorted(thing1.keys()):
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if k not in thing2:
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d1[k] = thing1[k]
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elif thing1[k] != thing2[k]:
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d1[k], d2[k] = summarise_dict_differences(thing1[k], thing2[k])
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for k in sorted(thing2.keys()):
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if k not in thing1:
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d2[k] = thing2[k]
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return d1, d2
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def assert_equal(thing1, thing2, *args):
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if thing1 != thing2 and not args and isinstance(thing1, dict) and isinstance(thing2, dict):
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d1,d2 = summarise_dict_differences(thing1, thing2)
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raise AssertionError("not(%s == %s)\n in particular not(%s == %s)" % (thing1, thing2, d1, d2))
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if thing1 != thing2 or any(thing1 != arg for arg in args):
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raise AssertionError("not(%s)" % " == ".join(str(arg) for arg in (thing1, thing2) + args))
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def assert_greater_than(thing1, thing2):
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if thing1 <= thing2:
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raise AssertionError("%s <= %s" % (str(thing1), str(thing2)))
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def assert_greater_than_or_equal(thing1, thing2):
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if thing1 < thing2:
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raise AssertionError("%s < %s" % (str(thing1), str(thing2)))
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def assert_raises(exc, fun, *args, **kwds):
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assert_raises_message(exc, None, fun, *args, **kwds)
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def assert_raises_message(exc, message, fun, *args, **kwds):
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try:
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fun(*args, **kwds)
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except JSONRPCException:
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raise AssertionError("Use assert_raises_rpc_error() to test RPC failures")
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except exc as e:
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if message is not None and message not in e.error['message']:
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raise AssertionError(
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"Expected substring not found in error message:\nsubstring: '{}'\nerror message: '{}'.".format(
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message, e.error['message']))
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except Exception as e:
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raise AssertionError("Unexpected exception raised: " + type(e).__name__)
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else:
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raise AssertionError("No exception raised")
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def assert_raises_process_error(returncode: int, output: str, fun: Callable, *args, **kwds):
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"""Execute a process and asserts the process return code and output.
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Calls function `fun` with arguments `args` and `kwds`. Catches a CalledProcessError
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and verifies that the return code and output are as expected. Throws AssertionError if
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no CalledProcessError was raised or if the return code and output are not as expected.
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Args:
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returncode: the process return code.
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output: [a substring of] the process output.
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fun: the function to call. This should execute a process.
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args*: positional arguments for the function.
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kwds**: named arguments for the function.
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"""
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try:
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fun(*args, **kwds)
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except CalledProcessError as e:
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if returncode != e.returncode:
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raise AssertionError("Unexpected returncode %i" % e.returncode)
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if output not in e.output:
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raise AssertionError("Expected substring not found:" + e.output)
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else:
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raise AssertionError("No exception raised")
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def assert_raises_rpc_error(code: Optional[int], message: Optional[str], fun: Callable, *args, **kwds):
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"""Run an RPC and verify that a specific JSONRPC exception code and message is raised.
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Calls function `fun` with arguments `args` and `kwds`. Catches a JSONRPCException
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and verifies that the error code and message are as expected. Throws AssertionError if
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no JSONRPCException was raised or if the error code/message are not as expected.
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Args:
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code: the error code returned by the RPC call (defined in src/rpc/protocol.h).
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Set to None if checking the error code is not required.
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message: [a substring of] the error string returned by the RPC call.
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Set to None if checking the error string is not required.
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fun: the function to call. This should be the name of an RPC.
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args*: positional arguments for the function.
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kwds**: named arguments for the function.
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"""
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assert try_rpc(code, message, fun, *args, **kwds), "No exception raised"
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def try_rpc(code, message, fun, *args, **kwds):
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"""Tries to run an rpc command.
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Test against error code and message if the rpc fails.
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Returns whether a JSONRPCException was raised."""
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try:
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fun(*args, **kwds)
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except JSONRPCException as e:
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# JSONRPCException was thrown as expected. Check the code and message values are correct.
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if (code is not None) and (code != e.error["code"]):
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raise AssertionError("Unexpected JSONRPC error code %i" % e.error["code"])
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if (message is not None) and (message not in e.error['message']):
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raise AssertionError(
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"Expected substring not found in error message:\nsubstring: '{}'\nerror message: '{}'.".format(
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message, e.error['message']))
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return True
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except Exception as e:
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raise AssertionError("Unexpected exception raised: " + type(e).__name__)
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else:
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return False
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def assert_is_hex_string(string):
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try:
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int(string, 16)
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except Exception as e:
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raise AssertionError("Couldn't interpret %r as hexadecimal; raised: %s" % (string, e))
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def assert_is_hash_string(string, length=64):
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if not isinstance(string, str):
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raise AssertionError("Expected a string, got type %r" % type(string))
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elif length and len(string) != length:
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raise AssertionError("String of length %d expected; got %d" % (length, len(string)))
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elif not re.match('[abcdef0-9]+$', string):
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raise AssertionError("String %r contains invalid characters for a hash." % string)
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def assert_array_result(object_array, to_match, expected, should_not_find=False):
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"""
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Pass in array of JSON objects, a dictionary with key/value pairs
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to match against, and another dictionary with expected key/value
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pairs.
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If the should_not_find flag is true, to_match should not be found
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in object_array
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"""
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if should_not_find:
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assert_equal(expected, {})
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num_matched = 0
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for item in object_array:
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all_match = True
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for key, value in to_match.items():
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if item[key] != value:
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all_match = False
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if not all_match:
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continue
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elif should_not_find:
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num_matched = num_matched + 1
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for key, value in expected.items():
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if item[key] != value:
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raise AssertionError("%s : expected %s=%s" % (str(item), str(key), str(value)))
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num_matched = num_matched + 1
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if num_matched == 0 and not should_not_find:
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raise AssertionError("No objects matched %s" % (str(to_match)))
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if num_matched > 0 and should_not_find:
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raise AssertionError("Objects were found %s" % (str(to_match)))
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# Utility functions
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###################
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def check_json_precision():
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"""Make sure json library being used does not lose precision converting BTC values"""
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n = Decimal("20000000.00000003")
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satoshis = int(json.loads(json.dumps(float(n))) * 1.0e8)
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if satoshis != 2000000000000003:
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raise RuntimeError("JSON encode/decode loses precision")
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def count_bytes(hex_string):
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return len(bytearray.fromhex(hex_string))
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def str_to_b64str(string):
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return b64encode(string.encode('utf-8')).decode('ascii')
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def ceildiv(a, b):
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"""
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Divide 2 ints and round up to next int rather than round down
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Implementation requires python integers, which have a // operator that does floor division.
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Other types like decimal.Decimal whose // operator truncates towards 0 will not work.
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"""
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assert isinstance(a, int)
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assert isinstance(b, int)
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return -(-a // b)
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def random_bitflip(data):
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data = list(data)
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data[random.randrange(len(data))] ^= (1 << (random.randrange(8)))
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return bytes(data)
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def get_fee(tx_size, feerate_btc_kvb):
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"""Calculate the fee in BTC given a feerate is BTC/kvB. Reflects CFeeRate::GetFee"""
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feerate_sat_kvb = int(feerate_btc_kvb * Decimal(1e8)) # Fee in sat/kvb as an int to avoid float precision errors
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target_fee_sat = ceildiv(feerate_sat_kvb * tx_size, 1000) # Round calculated fee up to nearest sat
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return target_fee_sat / Decimal(1e8) # Return result in BTC
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def satoshi_round(amount: Union[int, float, str], *, rounding: str) -> Decimal:
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"""Rounds a Decimal amount to the nearest satoshi using the specified rounding mode."""
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return Decimal(amount).quantize(SATOSHI_PRECISION, rounding=rounding)
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def ensure_for(*, duration, f, check_interval=0.2):
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"""Check if the predicate keeps returning True for duration.
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check_interval can be used to configure the wait time between checks.
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Setting check_interval to 0 will allow to have two checks: one in the
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beginning and one after duration.
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"""
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# If check_interval is 0 or negative or larger than duration, we fall back
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# to checking once in the beginning and once at the end of duration
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if check_interval <= 0 or check_interval > duration:
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check_interval = duration
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time_end = time.time() + duration
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predicate_source = "''''\n" + inspect.getsource(f) + "'''"
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while True:
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if not f():
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raise AssertionError(f"Predicate {predicate_source} became false within {duration} seconds")
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if time.time() > time_end:
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return
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time.sleep(check_interval)
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def wait_until_helper_internal(predicate, *, timeout=60, lock=None, timeout_factor=1.0, check_interval=0.05):
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"""Sleep until the predicate resolves to be True.
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Warning: Note that this method is not recommended to be used in tests as it is
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not aware of the context of the test framework. Using the `wait_until()` members
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from `BitcoinTestFramework` or `P2PInterface` class ensures the timeout is
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properly scaled. Furthermore, `wait_until()` from `P2PInterface` class in
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`p2p.py` has a preset lock.
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"""
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timeout = timeout * timeout_factor
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time_end = time.time() + timeout
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while time.time() < time_end:
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if lock:
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with lock:
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if predicate():
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return
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else:
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if predicate():
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return
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time.sleep(check_interval)
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# Print the cause of the timeout
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predicate_source = "''''\n" + inspect.getsource(predicate) + "'''"
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logger.error("wait_until() failed. Predicate: {}".format(predicate_source))
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raise AssertionError("Predicate {} not true after {} seconds".format(predicate_source, timeout))
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def sha256sum_file(filename):
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h = hashlib.sha256()
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with open(filename, 'rb') as f:
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d = f.read(4096)
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while len(d) > 0:
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h.update(d)
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d = f.read(4096)
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return h.digest()
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def util_xor(data, key, *, offset):
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data = bytearray(data)
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for i in range(len(data)):
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data[i] ^= key[(i + offset) % len(key)]
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return bytes(data)
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# RPC/P2P connection constants and functions
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############################################
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# The maximum number of nodes a single test can spawn
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MAX_NODES = 12
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# Don't assign p2p, rpc or tor ports lower than this
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PORT_MIN = int(os.getenv('TEST_RUNNER_PORT_MIN', default=11000))
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# The number of ports to "reserve" for p2p, rpc and tor, each
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PORT_RANGE = 5000
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class PortSeed:
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# Must be initialized with a unique integer for each process
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n = None
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def get_rpc_proxy(url: str, node_number: int, *, timeout: Optional[int]=None, coveragedir: Optional[str]=None) -> coverage.AuthServiceProxyWrapper:
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"""
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Args:
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url: URL of the RPC server to call
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node_number: the node number (or id) that this calls to
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Kwargs:
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timeout: HTTP timeout in seconds
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coveragedir: Directory
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Returns:
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AuthServiceProxy. convenience object for making RPC calls.
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"""
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proxy_kwargs = {}
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if timeout is not None:
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proxy_kwargs['timeout'] = int(timeout)
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proxy = AuthServiceProxy(url, **proxy_kwargs)
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coverage_logfile = coverage.get_filename(coveragedir, node_number) if coveragedir else None
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return coverage.AuthServiceProxyWrapper(proxy, url, coverage_logfile)
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def p2p_port(n):
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assert n <= MAX_NODES
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return PORT_MIN + n + (MAX_NODES * PortSeed.n) % (PORT_RANGE - 1 - MAX_NODES)
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def rpc_port(n):
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return p2p_port(n) + PORT_RANGE
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def tor_port(n):
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return p2p_port(n) + PORT_RANGE * 2
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def rpc_url(datadir, i, chain, rpchost):
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rpc_u, rpc_p = get_auth_cookie(datadir, chain)
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host = '127.0.0.1'
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port = rpc_port(i)
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if rpchost:
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parts = rpchost.split(':')
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if len(parts) == 2:
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host, port = parts
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else:
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host = rpchost
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return "http://%s:%s@%s:%d" % (rpc_u, rpc_p, host, int(port))
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# Node functions
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################
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def initialize_datadir(dirname, n, chain, disable_autoconnect=True):
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datadir = get_datadir_path(dirname, n)
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if not os.path.isdir(datadir):
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os.makedirs(datadir)
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write_config(os.path.join(datadir, "elements.conf"), n=n, chain=chain, disable_autoconnect=disable_autoconnect)
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os.makedirs(os.path.join(datadir, 'stderr'), exist_ok=True)
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os.makedirs(os.path.join(datadir, 'stdout'), exist_ok=True)
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return datadir
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def write_config(config_path, *, n, chain, extra_config="", disable_autoconnect=True):
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# Translate chain subdirectory name to config name
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if chain == 'testnet3':
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chain_name_conf_arg = 'testnet'
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chain_name_conf_section = 'test'
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else:
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chain_name_conf_arg = chain
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chain_name_conf_section = chain
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with open(config_path, 'w', encoding='utf8') as f:
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if chain_name_conf_arg:
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f.write("chain={}\n".format(chain_name_conf_arg))
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if chain_name_conf_section:
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f.write("[{}]\n".format(chain_name_conf_section))
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f.write("port=" + str(p2p_port(n)) + "\n")
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f.write("rpcport=" + str(rpc_port(n)) + "\n")
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# Disable server-side timeouts to avoid intermittent issues
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f.write("rpcservertimeout=99000\n")
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f.write("rpcdoccheck=1\n")
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f.write("fallbackfee=0.0002\n")
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f.write("server=1\n")
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f.write("keypool=1\n")
|
|
f.write("discover=0\n")
|
|
f.write("dnsseed=0\n")
|
|
f.write("fixedseeds=0\n")
|
|
f.write("listenonion=0\n")
|
|
# Increase peertimeout to avoid disconnects while using mocktime.
|
|
# peertimeout is measured in mock time, so setting it large enough to
|
|
# cover any duration in mock time is sufficient. It can be overridden
|
|
# in tests.
|
|
f.write("peertimeout=999999999\n")
|
|
f.write("printtoconsole=0\n")
|
|
f.write("natpmp=0\n")
|
|
f.write("shrinkdebugfile=0\n")
|
|
f.write("deprecatedrpc=create_bdb\n") # Required to run the tests
|
|
# To improve SQLite wallet performance so that the tests don't timeout, use -unsafesqlitesync
|
|
f.write("unsafesqlitesync=1\n")
|
|
# Elements:
|
|
f.write("validatepegin=0\n")
|
|
f.write("con_parent_pegged_asset=" + BITCOIN_ASSET + "\n")
|
|
f.write("con_blocksubsidy=5000000000\n")
|
|
f.write("con_connect_genesis_outputs=0\n")
|
|
f.write("anyonecanspendaremine=0\n")
|
|
f.write("walletrbf=0\n") # Default is 1 in Elements
|
|
f.write("con_bip34height=1\n")
|
|
f.write("con_bip65height=1\n")
|
|
f.write("con_bip66height=1\n")
|
|
f.write("blindedaddresses=0\n") # Set to minimize broken tests in favor of custom
|
|
f.write("evbparams=dynafed:"+str(2**31)+":::\n") # Never starts unless overridden
|
|
f.write("minrelaytxfee=0.00001\n")
|
|
#f.write("pubkeyprefix=111\n")
|
|
#f.write("scriptprefix=196\n")
|
|
#f.write("bech32_hrp=bcrt\n")
|
|
if disable_autoconnect:
|
|
f.write("connect=0\n")
|
|
# Limit max connections to mitigate test failures on some systems caused by the warning:
|
|
# "Warning: Reducing -maxconnections from <...> to <...> due to system limitations".
|
|
# The value is calculated as follows:
|
|
# available_fds = 256 // Same as FD_SETSIZE on NetBSD.
|
|
# MIN_CORE_FDS = 151 // Number of file descriptors required for core functionality.
|
|
# MAX_ADDNODE_CONNECTIONS = 8 // Maximum number of -addnode outgoing nodes.
|
|
# nBind == 3 // Maximum number of bound interfaces used in a test.
|
|
#
|
|
# min_required_fds = MIN_CORE_FDS + MAX_ADDNODE_CONNECTIONS + nBind = 151 + 8 + 3 = 162;
|
|
# nMaxConnections = available_fds - min_required_fds = 256 - 161 = 94;
|
|
f.write("maxconnections=94\n")
|
|
f.write(extra_config)
|
|
|
|
|
|
def get_datadir_path(dirname, n):
|
|
return pathlib.Path(dirname) / f"node{n}"
|
|
|
|
|
|
def get_temp_default_datadir(temp_dir: pathlib.Path) -> tuple[dict, pathlib.Path]:
|
|
if platform.system() == "Windows":
|
|
env = dict(APPDATA=str(temp_dir))
|
|
datadir = temp_dir / "Bitcoin"
|
|
else:
|
|
env = dict(HOME=str(temp_dir))
|
|
datadir = temp_dir / ".elements" # ELEMENTS: ~/.elements on all POSIX platforms
|
|
return env, datadir
|
|
|
|
|
|
def append_config(datadir, options):
|
|
with open(os.path.join(datadir, "elements.conf"), 'a', encoding='utf8') as f:
|
|
for option in options:
|
|
f.write(option + "\n")
|
|
|
|
|
|
def get_auth_cookie(datadir, chain):
|
|
user = None
|
|
password = None
|
|
if os.path.isfile(os.path.join(datadir, "elements.conf")):
|
|
with open(os.path.join(datadir, "elements.conf"), 'r', encoding='utf8') as f:
|
|
for line in f:
|
|
if line.startswith("rpcuser="):
|
|
assert user is None # Ensure that there is only one rpcuser line
|
|
user = line.split("=")[1].strip("\n")
|
|
if line.startswith("rpcpassword="):
|
|
assert password is None # Ensure that there is only one rpcpassword line
|
|
password = line.split("=")[1].strip("\n")
|
|
try:
|
|
chain = "" if chain == "main" else chain # ELEMENTS: if the test specifies bitcoin mainnet then replace "main" with ""
|
|
with open(os.path.join(datadir, chain, ".cookie"), 'r', encoding="ascii") as f:
|
|
userpass = f.read()
|
|
split_userpass = userpass.split(':')
|
|
user = split_userpass[0]
|
|
password = split_userpass[1]
|
|
except OSError:
|
|
pass
|
|
if user is None or password is None:
|
|
raise ValueError("No RPC credentials")
|
|
return user, password
|
|
|
|
|
|
# If a cookie file exists in the given datadir, delete it.
|
|
def delete_cookie_file(datadir, chain):
|
|
if os.path.isfile(os.path.join(datadir, chain, ".cookie")):
|
|
logger.debug("Deleting leftover cookie file")
|
|
os.remove(os.path.join(datadir, chain, ".cookie"))
|
|
|
|
|
|
def softfork_active(node, key):
|
|
"""Return whether a softfork is active."""
|
|
return node.getdeploymentinfo()['deployments'][key]['active']
|
|
|
|
|
|
def set_node_times(nodes, t):
|
|
for node in nodes:
|
|
node.setmocktime(t)
|
|
|
|
|
|
def check_node_connections(*, node, num_in, num_out):
|
|
info = node.getnetworkinfo()
|
|
assert_equal(info["connections_in"], num_in)
|
|
assert_equal(info["connections_out"], num_out)
|
|
|
|
|
|
# Transaction/Block functions
|
|
#############################
|
|
|
|
|
|
# Create large OP_RETURN txouts that can be appended to a transaction
|
|
# to make it large (helper for constructing large transactions). The
|
|
# total serialized size of the txouts is about 66k vbytes.
|
|
def gen_return_txouts():
|
|
from .messages import CTxOut, CTxOutValue
|
|
from .script import CScript, OP_RETURN
|
|
txouts = [CTxOut(nValue=CTxOutValue(0), scriptPubKey=CScript([OP_RETURN, b'\x01'*67437]))]
|
|
assert_equal(sum([len(txout.serialize()) for txout in txouts]), 67491)
|
|
return txouts
|
|
|
|
|
|
# Create a spend of each passed-in utxo, splicing in "txouts" to each raw
|
|
# transaction to make it large. See gen_return_txouts() above.
|
|
def create_lots_of_big_transactions(mini_wallet, node, fee, tx_batch_size, txouts, utxos=None):
|
|
txids = []
|
|
use_internal_utxos = utxos is None
|
|
for _ in range(tx_batch_size):
|
|
tx = mini_wallet.create_self_transfer(
|
|
utxo_to_spend=None if use_internal_utxos else utxos.pop(),
|
|
fee=fee)['tx']
|
|
tx.vout.extend(txouts)
|
|
|
|
res = node.testmempoolaccept([tx.serialize().hex()])[0]
|
|
assert_equal(res['fees']['base'], fee)
|
|
txids.append(node.sendrawtransaction(tx.serialize().hex()))
|
|
|
|
return txids
|
|
|
|
|
|
def mine_large_block(test_framework, mini_wallet, node):
|
|
# generate a 66k transaction,
|
|
# and 14 of them is close to the 1MB block limit
|
|
txouts = gen_return_txouts()
|
|
fee = 100 * node.getnetworkinfo()["relayfee"]
|
|
create_lots_of_big_transactions(mini_wallet, node, fee, 14, txouts)
|
|
test_framework.generate(node, 1)
|
|
|
|
|
|
def find_vout_for_address(node, txid, addr):
|
|
"""
|
|
Locate the vout index of the given transaction sending to the
|
|
given address. Raises runtime error exception if not found.
|
|
"""
|
|
tx = node.getrawtransaction(txid, True)
|
|
unblind_addr = addr
|
|
if node.getblockchaininfo()['chain'] == 'elementsregtest':
|
|
unblind_addr = node.validateaddress(addr)["unconfidential"]
|
|
for i in range(len(tx["vout"])):
|
|
if tx["vout"][i]["scriptPubKey"]["type"] == "fee":
|
|
continue
|
|
if unblind_addr == tx["vout"][i]["scriptPubKey"]["address"]:
|
|
return i
|
|
raise RuntimeError("Vout not found for address: txid=%s, addr=%s" % (txid, addr))
|