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from bitcoin.rpc import RawProxy as BitcoinProxy
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from lightning import LightningRpc
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import logging
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import os
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import re
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import sqlite3
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import subprocess
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import threading
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import time
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import binascii
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BITCOIND_CONFIG = {
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"rpcuser": "rpcuser",
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"rpcpassword": "rpcpass",
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"rpcport": 18332,
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}
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LIGHTNINGD_CONFIG = {
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"bitcoind-poll": "1s",
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"log-level": "debug",
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"cltv-delta": 6,
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"cltv-final": 5,
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"locktime-blocks": 5,
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}
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DEVELOPER = os.getenv("DEVELOPER", "0") == "1"
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def write_config(filename, opts):
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with open(filename, 'w') as f:
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for k, v in opts.items():
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f.write("{}={}\n".format(k, v))
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class TailableProc(object):
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"""A monitorable process that we can start, stop and tail.
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This is the base class for the daemons. It allows us to directly
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tail the processes and react to their output.
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"""
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def __init__(self, outputDir=None):
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self.logs = []
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self.logs_cond = threading.Condition(threading.RLock())
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self.cmd_line = None
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self.env = os.environ
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self.running = False
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self.proc = None
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self.outputDir = outputDir
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self.logsearch_start = 0
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def start(self):
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"""Start the underlying process and start monitoring it.
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"""
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logging.debug("Starting '%s'", " ".join(self.cmd_line))
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self.proc = subprocess.Popen(self.cmd_line, stdout=subprocess.PIPE, env=self.env)
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self.thread = threading.Thread(target=self.tail)
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self.thread.daemon = True
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self.thread.start()
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self.running = True
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def save_log(self):
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if self.outputDir:
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logpath = os.path.join(self.outputDir, 'log')
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with open(logpath, 'w') as f:
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for l in self.logs:
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f.write(l + '\n')
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def stop(self, timeout=10):
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self.save_log()
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self.proc.terminate()
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# Now give it some time to react to the signal
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rc = self.proc.wait(timeout)
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if rc is None:
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self.proc.kill()
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self.proc.wait()
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self.thread.join()
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if self.proc.returncode:
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raise ValueError("Process '{}' did not cleanly shutdown: return code {}".format(self.proc.pid, rc))
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return self.proc.returncode
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def kill(self):
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"""Kill process without giving it warning."""
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self.proc.kill()
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self.proc.wait()
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self.thread.join()
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def tail(self):
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"""Tail the stdout of the process and remember it.
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Stores the lines of output produced by the process in
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self.logs and signals that a new line was read so that it can
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be picked up by consumers.
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"""
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for line in iter(self.proc.stdout.readline, ''):
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if len(line) == 0:
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break
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with self.logs_cond:
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self.logs.append(str(line.rstrip()))
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logging.debug("%s: %s", self.prefix, line.decode().rstrip())
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self.logs_cond.notifyAll()
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self.running = False
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self.proc.stdout.close()
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def is_in_log(self, regex, start = 0):
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"""Look for `regex` in the logs."""
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ex = re.compile(regex)
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for l in self.logs[start:]:
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if ex.search(l):
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logging.debug("Found '%s' in logs", regex)
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return True
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logging.debug("Did not find '%s' in logs", regex)
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return False
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def wait_for_logs(self, regexs, timeout=60):
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"""Look for `regexs` in the logs.
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We tail the stdout of the process and look for each regex in `regexs`,
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starting from last of the previous waited-for log entries (if any). We
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fail if the timeout is exceeded or if the underlying process
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exits before all the `regexs` were found.
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If timeout is None, no time-out is applied.
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"""
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logging.debug("Waiting for {} in the logs".format(regexs))
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exs = [re.compile(r) for r in regexs]
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start_time = time.time()
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pos = self.logsearch_start
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initial_pos = len(self.logs)
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while True:
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if timeout is not None and time.time() > start_time + timeout:
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print("Time-out: can't find {} in logs".format(exs))
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for r in exs:
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if self.is_in_log(r):
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print("({} was previously in logs!)".format(r))
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raise TimeoutError('Unable to find "{}" in logs.'.format(exs))
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elif not self.running:
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raise ValueError('Process died while waiting for logs')
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with self.logs_cond:
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if pos >= len(self.logs):
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self.logs_cond.wait(1)
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continue
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for r in exs.copy():
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self.logsearch_start = pos+1
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if r.search(self.logs[pos]):
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logging.debug("Found '%s' in logs", r)
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exs.remove(r)
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break
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if len(exs) == 0:
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return self.logs[pos]
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pos += 1
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def wait_for_log(self, regex, timeout=60):
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"""Look for `regex` in the logs.
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Convenience wrapper for the common case of only seeking a single entry.
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"""
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return self.wait_for_logs([regex], timeout)
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class SimpleBitcoinProxy:
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"""Wrapper for BitcoinProxy to reconnect.
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Long wait times between calls to the Bitcoin RPC could result in
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`bitcoind` closing the connection, so here we just create
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throwaway connections. This is easier than to reach into the RPC
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library to close, reopen and reauth upon failure.
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"""
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def __init__(self, btc_conf_file, *args, **kwargs):
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self.__btc_conf_file__= btc_conf_file
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def __getattr__(self, name):
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if name.startswith('__') and name.endswith('__'):
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# Python internal stuff
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raise AttributeError
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# Create a callable to do the actual call
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proxy = BitcoinProxy(btc_conf_file=self.__btc_conf_file__)
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f = lambda *args: proxy._call(name, *args)
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# Make debuggers show <function bitcoin.rpc.name> rather than <function
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# bitcoin.rpc.<lambda>>
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f.__name__ = name
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return f
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class BitcoinD(TailableProc):
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def __init__(self, bitcoin_dir="/tmp/bitcoind-test", rpcport=18332):
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TailableProc.__init__(self, bitcoin_dir)
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self.bitcoin_dir = bitcoin_dir
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self.rpcport = rpcport
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self.prefix = 'bitcoind'
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regtestdir = os.path.join(bitcoin_dir, 'regtest')
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if not os.path.exists(regtestdir):
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os.makedirs(regtestdir)
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self.cmd_line = [
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'bitcoind',
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'-datadir={}'.format(bitcoin_dir),
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'-printtoconsole',
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'-server',
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'-regtest',
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'-logtimestamps',
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'-nolisten',
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]
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BITCOIND_CONFIG['rpcport'] = rpcport
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btc_conf_file = os.path.join(regtestdir, 'bitcoin.conf')
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write_config(os.path.join(bitcoin_dir, 'bitcoin.conf'), BITCOIND_CONFIG)
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write_config(btc_conf_file, BITCOIND_CONFIG)
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self.rpc = SimpleBitcoinProxy(btc_conf_file=btc_conf_file)
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def start(self):
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TailableProc.start(self)
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self.wait_for_log("Done loading", timeout=60)
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logging.info("BitcoinD started")
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def generate_block(self, numblocks=1):
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# As of 0.16, generate() is removed; use generatetoaddress.
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self.rpc.generatetoaddress(numblocks, self.rpc.getnewaddress())
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# lightning-1 => 0266e4598d1d3c415f572a8488830b60f7e744ed9235eb0b1ba93283b315c03518 aka JUNIORBEAM #0266e4
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# lightning-2 => 022d223620a359a47ff7f7ac447c85c46c923da53389221a0054c11c1e3ca31d59 aka SILENTARTIST #022d22
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# lightning-3 => 035d2b1192dfba134e10e540875d366ebc8bc353d5aa766b80c090b39c3a5d885d aka HOPPINGFIRE #035d2b
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# lightning-4 => 0382ce59ebf18be7d84677c2e35f23294b9992ceca95491fcf8a56c6cb2d9de199 aka JUNIORFELONY #0382ce
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# lightning-5 => 032cf15d1ad9c4a08d26eab1918f732d8ef8fdc6abb9640bf3db174372c491304e aka SOMBERFIRE #032cf1
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class LightningD(TailableProc):
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def __init__(self, lightning_dir, bitcoin_dir, port=9735, random_hsm=False):
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TailableProc.__init__(self, lightning_dir)
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self.lightning_dir = lightning_dir
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self.port = port
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# Last 32-bytes of final part of dir -> seed.
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seed = (bytes(re.search('([^/]+)/*$', lightning_dir).group(1), encoding='utf-8') + bytes(32))[:32]
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self.cmd_line = [
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'lightningd/lightningd',
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'--bitcoin-datadir={}'.format(bitcoin_dir),
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'--lightning-dir={}'.format(lightning_dir),
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'--port={}'.format(port),
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'--allow-deprecated-apis=false',
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'--override-fee-rates=15000/7500/1000',
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'--network=regtest',
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'--ignore-fee-limits=false'
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]
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if DEVELOPER:
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self.cmd_line += ['--dev-broadcast-interval=1000']
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if not random_hsm:
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self.cmd_line += ['--dev-hsm-seed={}'.format(binascii.hexlify(seed).decode('ascii'))]
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self.cmd_line += ["--{}={}".format(k, v) for k, v in sorted(LIGHTNINGD_CONFIG.items())]
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self.prefix = 'lightningd(%d)' % (port)
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if not os.path.exists(lightning_dir):
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os.makedirs(lightning_dir)
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def start(self):
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TailableProc.start(self)
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self.wait_for_log("Server started with public key")
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logging.info("LightningD started")
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def wait(self, timeout=10):
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"""Wait for the daemon to stop for up to timeout seconds
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Returns the returncode of the process, None if the process did
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not return before the timeout triggers.
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"""
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self.proc.wait(timeout)
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return self.proc.returncode
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class LightningNode(object):
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def __init__(self, daemon, rpc, btc, executor, may_fail=False):
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self.rpc = rpc
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self.daemon = daemon
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self.bitcoin = btc
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self.executor = executor
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self.may_fail = may_fail
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# Use batch if you're doing more than one async.
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def connect(self, remote_node, capacity, async=False):
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# Collect necessary information
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addr = self.rpc.newaddr()['address']
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txid = self.bitcoin.rpc.sendtoaddress(addr, capacity)
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tx = self.bitcoin.rpc.gettransaction(txid)
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start_size = self.bitcoin.rpc.getmempoolinfo()['size']
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def call_connect():
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try:
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self.rpc.connect('127.0.0.1', remote_node.daemon.port, tx['hex'], async=False)
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except:
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pass
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t = threading.Thread(target=call_connect)
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t.daemon = True
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t.start()
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def wait_connected():
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# Up to 10 seconds to get tx into mempool.
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start_time = time.time()
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while self.bitcoin.rpc.getmempoolinfo()['size'] == start_size:
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if time.time() > start_time + 10:
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raise TimeoutError('No new transactions in mempool')
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time.sleep(0.1)
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self.bitcoin.generate_block(1)
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#fut.result(timeout=5)
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# Now wait for confirmation
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self.daemon.wait_for_log(" to CHANNELD_NORMAL|STATE_NORMAL")
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remote_node.daemon.wait_for_log(" to CHANNELD_NORMAL|STATE_NORMAL")
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if async:
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return self.executor.submit(wait_connected)
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else:
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return wait_connected()
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def openchannel(self, remote_node, capacity, addrtype="p2sh-segwit"):
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addr, wallettxid = self.fundwallet(capacity, addrtype)
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fundingtx = self.rpc.fundchannel(remote_node.info['id'], capacity)
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self.daemon.wait_for_log('sendrawtx exit 0, gave')
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self.bitcoin.generate_block(6)
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self.daemon.wait_for_log('to CHANNELD_NORMAL|STATE_NORMAL')
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return {'address': addr, 'wallettxid': wallettxid, 'fundingtx': fundingtx}
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def fundwallet(self, sats, addrtype="p2sh-segwit"):
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addr = self.rpc.newaddr(addrtype)['address']
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txid = self.bitcoin.rpc.sendtoaddress(addr, sats / 10**6)
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self.bitcoin.generate_block(1)
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self.daemon.wait_for_log('Owning output .* txid {}'.format(txid))
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return addr, txid
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def getactivechannels(self):
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return [c for c in self.rpc.listchannels()['channels'] if c['active']]
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def db_query(self, query):
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from shutil import copyfile
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orig = os.path.join(self.daemon.lightning_dir, "lightningd.sqlite3")
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copy = os.path.join(self.daemon.lightning_dir, "lightningd-copy.sqlite3")
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copyfile(orig, copy)
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db = sqlite3.connect(copy)
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db.row_factory = sqlite3.Row
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c = db.cursor()
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c.execute(query)
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rows = c.fetchall()
|
|
|
|
|
|
|
|
result = []
|
|
|
|
for row in rows:
|
|
|
|
result.append(dict(zip(row.keys(), row)))
|
|
|
|
|
|
|
|
c.close()
|
|
|
|
db.close()
|
|
|
|
return result
|
|
|
|
|
|
|
|
def stop(self, timeout=10):
|
|
|
|
""" Attempt to do a clean shutdown, but kill if it hangs
|
|
|
|
"""
|
|
|
|
|
|
|
|
# Tell the daemon to stop
|
|
|
|
try:
|
|
|
|
# May fail if the process already died
|
|
|
|
self.rpc.stop()
|
|
|
|
except:
|
|
|
|
pass
|
|
|
|
|
|
|
|
rc = self.daemon.wait(timeout)
|
|
|
|
|
|
|
|
# If it did not stop be more insistent
|
|
|
|
if rc is None:
|
|
|
|
rc = self.daemon.stop()
|
|
|
|
|
|
|
|
self.daemon.save_log()
|
|
|
|
|
|
|
|
if rc != 0 and not self.may_fail:
|
|
|
|
raise ValueError("Node did not exit cleanly, rc={}".format(rc))
|
|
|
|
else:
|
|
|
|
return rc
|
|
|
|
|
|
|
|
def restart(self, timeout=10, clean=True):
|
|
|
|
"""Stop and restart the lightning node.
|
|
|
|
|
|
|
|
Keyword arguments:
|
|
|
|
timeout: number of seconds to wait for a shutdown
|
|
|
|
clean: whether to issue a `stop` RPC command before killing
|
|
|
|
"""
|
|
|
|
if clean:
|
|
|
|
self.stop(timeout)
|
|
|
|
else:
|
|
|
|
self.daemon.stop()
|
|
|
|
|
|
|
|
self.daemon.start()
|