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dad596fc37
This makes NodeConnCB a subclass of NodeConn, and removes the need for the client code to know anything about the implementation details of NodeConnCB. NodeConn can now be swapped out for any other implementation of a low-level connection without changing client code.
228 lines
8.5 KiB
Python
Executable File
228 lines
8.5 KiB
Python
Executable File
#!/usr/bin/env python3
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# Copyright (c) 2017 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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"""Class for bitcoind node under test"""
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import decimal
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import errno
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import http.client
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import json
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import logging
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import os
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import subprocess
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import time
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from .authproxy import JSONRPCException
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from .util import (
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assert_equal,
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get_rpc_proxy,
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rpc_url,
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wait_until,
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p2p_port,
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)
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BITCOIND_PROC_WAIT_TIMEOUT = 60
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class TestNode():
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"""A class for representing a bitcoind node under test.
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This class contains:
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- state about the node (whether it's running, etc)
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- a Python subprocess.Popen object representing the running process
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- an RPC connection to the node
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- one or more P2P connections to the node
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To make things easier for the test writer, any unrecognised messages will
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be dispatched to the RPC connection."""
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def __init__(self, i, dirname, extra_args, rpchost, timewait, binary, stderr, mocktime, coverage_dir):
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self.index = i
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self.datadir = os.path.join(dirname, "node" + str(i))
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self.rpchost = rpchost
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if timewait:
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self.rpc_timeout = timewait
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else:
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# Wait for up to 60 seconds for the RPC server to respond
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self.rpc_timeout = 60
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if binary is None:
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self.binary = os.getenv("BITCOIND", "bitcoind")
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else:
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self.binary = binary
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self.stderr = stderr
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self.coverage_dir = coverage_dir
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# Most callers will just need to add extra args to the standard list below. For those callers that need more flexibity, they can just set the args property directly.
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self.extra_args = extra_args
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self.args = [self.binary, "-datadir=" + self.datadir, "-server", "-keypool=1", "-discover=0", "-rest", "-logtimemicros", "-debug", "-debugexclude=libevent", "-debugexclude=leveldb", "-mocktime=" + str(mocktime), "-uacomment=testnode%d" % i]
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self.cli = TestNodeCLI(os.getenv("BITCOINCLI", "bitcoin-cli"), self.datadir)
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self.running = False
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self.process = None
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self.rpc_connected = False
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self.rpc = None
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self.url = None
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self.log = logging.getLogger('TestFramework.node%d' % i)
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self.p2ps = []
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def __getattr__(self, name):
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"""Dispatches any unrecognised messages to the RPC connection."""
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assert self.rpc_connected and self.rpc is not None, "Error: no RPC connection"
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return getattr(self.rpc, name)
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def start(self, extra_args=None, stderr=None):
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"""Start the node."""
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if extra_args is None:
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extra_args = self.extra_args
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if stderr is None:
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stderr = self.stderr
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self.process = subprocess.Popen(self.args + extra_args, stderr=stderr)
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self.running = True
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self.log.debug("bitcoind started, waiting for RPC to come up")
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def wait_for_rpc_connection(self):
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"""Sets up an RPC connection to the bitcoind process. Returns False if unable to connect."""
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# Poll at a rate of four times per second
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poll_per_s = 4
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for _ in range(poll_per_s * self.rpc_timeout):
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assert self.process.poll() is None, "bitcoind exited with status %i during initialization" % self.process.returncode
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try:
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self.rpc = get_rpc_proxy(rpc_url(self.datadir, self.index, self.rpchost), self.index, timeout=self.rpc_timeout, coveragedir=self.coverage_dir)
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self.rpc.getblockcount()
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# If the call to getblockcount() succeeds then the RPC connection is up
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self.rpc_connected = True
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self.url = self.rpc.url
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self.log.debug("RPC successfully started")
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return
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except IOError as e:
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if e.errno != errno.ECONNREFUSED: # Port not yet open?
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raise # unknown IO error
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except JSONRPCException as e: # Initialization phase
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if e.error['code'] != -28: # RPC in warmup?
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raise # unknown JSON RPC exception
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except ValueError as e: # cookie file not found and no rpcuser or rpcassword. bitcoind still starting
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if "No RPC credentials" not in str(e):
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raise
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time.sleep(1.0 / poll_per_s)
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raise AssertionError("Unable to connect to bitcoind")
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def get_wallet_rpc(self, wallet_name):
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assert self.rpc_connected
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assert self.rpc
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wallet_path = "wallet/%s" % wallet_name
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return self.rpc / wallet_path
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def stop_node(self):
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"""Stop the node."""
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if not self.running:
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return
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self.log.debug("Stopping node")
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try:
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self.stop()
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except http.client.CannotSendRequest:
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self.log.exception("Unable to stop node.")
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del self.p2ps[:]
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def is_node_stopped(self):
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"""Checks whether the node has stopped.
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Returns True if the node has stopped. False otherwise.
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This method is responsible for freeing resources (self.process)."""
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if not self.running:
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return True
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return_code = self.process.poll()
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if return_code is None:
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return False
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# process has stopped. Assert that it didn't return an error code.
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assert_equal(return_code, 0)
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self.running = False
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self.process = None
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self.rpc_connected = False
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self.rpc = None
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self.log.debug("Node stopped")
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return True
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def wait_until_stopped(self, timeout=BITCOIND_PROC_WAIT_TIMEOUT):
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wait_until(self.is_node_stopped, timeout=timeout)
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def node_encrypt_wallet(self, passphrase):
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""""Encrypts the wallet.
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This causes bitcoind to shutdown, so this method takes
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care of cleaning up resources."""
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self.encryptwallet(passphrase)
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self.wait_until_stopped()
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def add_p2p_connection(self, p2p_conn, *args, **kwargs):
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"""Add a p2p connection to the node.
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This method adds the p2p connection to the self.p2ps list and also
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returns the connection to the caller."""
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if 'dstport' not in kwargs:
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kwargs['dstport'] = p2p_port(self.index)
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if 'dstaddr' not in kwargs:
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kwargs['dstaddr'] = '127.0.0.1'
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p2p_conn.peer_connect(*args, **kwargs)
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self.p2ps.append(p2p_conn)
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return p2p_conn
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@property
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def p2p(self):
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"""Return the first p2p connection
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Convenience property - most tests only use a single p2p connection to each
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node, so this saves having to write node.p2ps[0] many times."""
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assert self.p2ps, "No p2p connection"
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return self.p2ps[0]
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def disconnect_p2ps(self):
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"""Close all p2p connections to the node."""
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for p in self.p2ps:
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p.peer_disconnect()
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del self.p2ps[:]
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class TestNodeCLI():
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"""Interface to bitcoin-cli for an individual node"""
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def __init__(self, binary, datadir):
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self.args = []
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self.binary = binary
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self.datadir = datadir
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self.input = None
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def __call__(self, *args, input=None):
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# TestNodeCLI is callable with bitcoin-cli command-line args
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self.args = [str(arg) for arg in args]
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self.input = input
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return self
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def __getattr__(self, command):
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def dispatcher(*args, **kwargs):
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return self.send_cli(command, *args, **kwargs)
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return dispatcher
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def send_cli(self, command, *args, **kwargs):
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"""Run bitcoin-cli command. Deserializes returned string as python object."""
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pos_args = [str(arg) for arg in args]
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named_args = [str(key) + "=" + str(value) for (key, value) in kwargs.items()]
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assert not (pos_args and named_args), "Cannot use positional arguments and named arguments in the same bitcoin-cli call"
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p_args = [self.binary, "-datadir=" + self.datadir] + self.args
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if named_args:
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p_args += ["-named"]
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p_args += [command] + pos_args + named_args
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process = subprocess.Popen(p_args, stdin=subprocess.PIPE, stdout=subprocess.PIPE, stderr=subprocess.PIPE, universal_newlines=True)
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cli_stdout, cli_stderr = process.communicate(input=self.input)
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returncode = process.poll()
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if returncode:
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# Ignore cli_stdout, raise with cli_stderr
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raise subprocess.CalledProcessError(returncode, self.binary, output=cli_stderr)
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return json.loads(cli_stdout, parse_float=decimal.Decimal)
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