mirror of
https://github.com/LBRYFoundation/LBRY-Vault.git
synced 2025-08-23 17:47:31 +00:00
419 lines
19 KiB
Python
419 lines
19 KiB
Python
import asyncio
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import os
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from decimal import Decimal
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import random
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import time
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from typing import Optional, Sequence, Tuple, List
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import threading
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from functools import partial
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import socket
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import dns.resolver
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import dns.exception
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from . import constants
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from . import keystore
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from . import bitcoin
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from .keystore import BIP32_KeyStore
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from .bitcoin import sha256, COIN
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from .util import bh2u, bfh, PrintError, InvoiceError, resolve_dns_srv, is_ip_address
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from .lnbase import Peer, privkey_to_pubkey, aiosafe
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from .lnaddr import lnencode, LnAddr, lndecode
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from .ecc import der_sig_from_sig_string
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from .lnhtlc import HTLCStateMachine
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from .lnutil import (Outpoint, calc_short_channel_id, LNPeerAddr,
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get_compressed_pubkey_from_bech32, extract_nodeid,
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PaymentFailure, split_host_port, ConnStringFormatError,
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generate_keypair, LnKeyFamily)
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from .lnutil import LOCAL, REMOTE
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from .lnaddr import lndecode
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from .i18n import _
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NUM_PEERS_TARGET = 4
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PEER_RETRY_INTERVAL = 600 # seconds
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PEER_RETRY_INTERVAL_FOR_CHANNELS = 30 # seconds
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FALLBACK_NODE_LIST = (
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LNPeerAddr('ecdsa.net', 9735, bfh('038370f0e7a03eded3e1d41dc081084a87f0afa1c5b22090b4f3abb391eb15d8ff')),
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)
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class LNWorker(PrintError):
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def __init__(self, wallet, network):
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self.wallet = wallet
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self.sweep_address = wallet.get_receiving_address()
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self.network = network
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self.channel_db = self.network.channel_db
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self.lock = threading.RLock()
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self.ln_keystore = self._read_ln_keystore()
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self.node_keypair = generate_keypair(self.ln_keystore, LnKeyFamily.NODE_KEY, 0)
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self.config = network.config
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self.peers = {} # pubkey -> Peer
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self.channels = {x.channel_id: x for x in map(HTLCStateMachine, wallet.storage.get("channels", []))}
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for c in self.channels.values():
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c.lnwatcher = network.lnwatcher
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c.sweep_address = self.sweep_address
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self.invoices = wallet.storage.get('lightning_invoices', {})
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for chan_id, chan in self.channels.items():
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self.network.lnwatcher.watch_channel(chan.get_funding_address(), chan.funding_outpoint.to_str(), partial(self.on_channel_utxos, chan))
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self._last_tried_peer = {} # LNPeerAddr -> unix timestamp
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self._add_peers_from_config()
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# wait until we see confirmations
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self.network.register_callback(self.on_network_update, ['network_updated', 'verified', 'fee']) # thread safe
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asyncio.run_coroutine_threadsafe(self.network.main_taskgroup.spawn(self.main_loop()), self.network.asyncio_loop)
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def _read_ln_keystore(self) -> BIP32_KeyStore:
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xprv = self.wallet.storage.get('lightning_privkey2')
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if xprv is None:
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# TODO derive this deterministically from wallet.keystore at keystore generation time
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# probably along a hardened path ( lnd-equivalent would be m/1017'/coinType'/ )
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seed = os.urandom(32)
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xprv, xpub = bitcoin.bip32_root(seed, xtype='standard')
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self.wallet.storage.put('lightning_privkey2', xprv)
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self.wallet.storage.write()
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return keystore.from_xprv(xprv)
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def get_and_inc_counter_for_channel_keys(self):
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with self.lock:
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ctr = self.wallet.storage.get('lightning_channel_key_der_ctr', -1)
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ctr += 1
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self.wallet.storage.put('lightning_channel_key_der_ctr', ctr)
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self.wallet.storage.write()
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return ctr
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def _add_peers_from_config(self):
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peer_list = self.config.get('lightning_peers', [])
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for host, port, pubkey in peer_list:
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self.add_peer(host, int(port), bfh(pubkey))
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def suggest_peer(self):
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for node_id, peer in self.peers.items():
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if len(peer.channels) > 0:
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continue
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if not(peer.initialized.done()):
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continue
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return node_id
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def channels_for_peer(self, node_id):
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assert type(node_id) is bytes
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with self.lock:
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return {x: y for (x, y) in self.channels.items() if y.node_id == node_id}
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def add_peer(self, host, port, node_id):
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port = int(port)
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peer_addr = LNPeerAddr(host, port, node_id)
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if node_id in self.peers:
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return
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self._last_tried_peer[peer_addr] = time.time()
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self.print_error("adding peer", peer_addr)
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peer = Peer(self, host, port, node_id, request_initial_sync=self.config.get("request_initial_sync", True))
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asyncio.run_coroutine_threadsafe(self.network.main_taskgroup.spawn(peer.main_loop()), self.network.asyncio_loop)
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self.peers[node_id] = peer
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self.network.trigger_callback('ln_status')
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return peer
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def save_channel(self, openchannel):
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assert type(openchannel) is HTLCStateMachine
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if openchannel.remote_state.next_per_commitment_point == openchannel.remote_state.current_per_commitment_point:
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raise Exception("Tried to save channel with next_point == current_point, this should not happen")
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with self.lock:
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self.channels[openchannel.channel_id] = openchannel
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dumped = [x.serialize() for x in self.channels.values()]
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self.wallet.storage.put("channels", dumped)
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self.wallet.storage.write()
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self.network.trigger_callback('channel', openchannel)
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def save_short_chan_id(self, chan):
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"""
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Checks if the Funding TX has been mined. If it has save the short channel ID to disk and return the new OpenChannel.
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If the Funding TX has not been mined, return None
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"""
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assert chan.get_state() in ["OPEN", "OPENING"]
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peer = self.peers[chan.node_id]
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addr_sync = self.network.lnwatcher.addr_sync
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conf = addr_sync.get_tx_height(chan.funding_outpoint.txid).conf
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if conf >= chan.constraints.funding_txn_minimum_depth:
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block_height, tx_pos = addr_sync.get_txpos(chan.funding_outpoint.txid)
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if tx_pos == -1:
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self.print_error('funding tx is not yet SPV verified.. but there are '
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'already enough confirmations (currently {})'.format(conf))
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return False, conf
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chan.short_channel_id = calc_short_channel_id(block_height, tx_pos, chan.funding_outpoint.output_index)
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self.save_channel(chan)
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return True, conf
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return False, conf
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def on_channel_utxos(self, chan, is_funding_txo_spent: bool):
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chan.set_funding_txo_spentness(is_funding_txo_spent)
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if is_funding_txo_spent:
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chan.set_state("CLOSED")
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self.channel_db.remove_channel(chan.short_channel_id)
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self.network.trigger_callback('channel', chan)
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@aiosafe
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async def on_network_update(self, event, *args):
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# TODO
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# Race discovered in save_channel (assertion failing):
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# since short_channel_id could be changed while saving.
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with self.lock:
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channels = list(self.channels.values())
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addr_sync = self.network.lnwatcher.addr_sync
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for chan in channels:
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if chan.get_state() == "OPENING":
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res, depth = self.save_short_chan_id(chan)
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if not res:
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self.print_error("network update but funding tx is still not at sufficient depth. actual depth: " + str(depth))
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continue
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# this results in the channel being marked OPEN
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peer = self.peers[chan.node_id]
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peer.funding_locked(chan)
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elif chan.get_state() == "OPEN":
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peer = self.peers.get(chan.node_id)
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if peer is None:
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self.print_error("peer not found for {}".format(bh2u(chan.node_id)))
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return
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if event == 'fee':
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await peer.bitcoin_fee_update(chan)
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conf = addr_sync.get_tx_height(chan.funding_outpoint.txid).conf
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peer.on_network_update(chan, conf)
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async def _open_channel_coroutine(self, peer, local_amount_sat, push_sat, password):
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# peer might just have been connected to
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await asyncio.wait_for(peer.initialized, 5)
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chan = await peer.channel_establishment_flow(
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password,
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funding_sat=local_amount_sat + push_sat,
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push_msat=push_sat * 1000,
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temp_channel_id=os.urandom(32))
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self.save_channel(chan)
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self.network.lnwatcher.watch_channel(chan.get_funding_address(), chan.funding_outpoint.to_str(), partial(self.on_channel_utxos, chan))
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self.on_channels_updated()
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def on_channels_updated(self):
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self.network.trigger_callback('channels')
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@staticmethod
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def choose_preferred_address(addr_list: List[Tuple[str, int]]) -> Tuple[str, int]:
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# choose first one that is an IP
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for host, port in addr_list:
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if is_ip_address(host):
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return host, port
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# otherwise choose one at random
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# TODO maybe filter out onion if not on tor?
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return random.choice(addr_list)
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def open_channel(self, connect_contents, local_amt_sat, push_amt_sat, pw, timeout=5):
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node_id, rest = extract_nodeid(connect_contents)
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peer = self.peers.get(node_id)
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if not peer:
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all_nodes = self.network.channel_db.nodes
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node_info = all_nodes.get(node_id, None)
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if rest is not None:
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host, port = split_host_port(rest)
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elif node_info and len(node_info.addresses) > 0:
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host, port = self.choose_preferred_address(node_info.addresses)
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else:
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raise ConnStringFormatError(_('Unknown node:') + ' ' + bh2u(node_id))
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try:
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socket.getaddrinfo(host, int(port))
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except socket.gaierror:
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raise ConnStringFormatError(_('Hostname does not resolve (getaddrinfo failed)'))
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peer = self.add_peer(host, port, node_id)
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coro = self._open_channel_coroutine(peer, local_amt_sat, push_amt_sat, None if pw == "" else pw)
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f = asyncio.run_coroutine_threadsafe(coro, self.network.asyncio_loop)
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return f.result(timeout)
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def pay(self, invoice, amount_sat=None):
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addr = lndecode(invoice, expected_hrp=constants.net.SEGWIT_HRP)
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payment_hash = addr.paymenthash
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invoice_pubkey = addr.pubkey.serialize()
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amount_sat = (addr.amount * COIN) if addr.amount else amount_sat
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if amount_sat is None:
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raise InvoiceError(_("Missing amount"))
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amount_msat = int(amount_sat * 1000)
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path = self.network.path_finder.find_path_for_payment(self.node_keypair.pubkey, invoice_pubkey, amount_msat)
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if path is None:
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raise PaymentFailure(_("No path found"))
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node_id, short_channel_id = path[0]
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peer = self.peers[node_id]
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with self.lock:
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channels = list(self.channels.values())
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for chan in channels:
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if chan.short_channel_id == short_channel_id:
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break
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else:
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raise Exception("ChannelDB returned path with short_channel_id {} that is not in channel list".format(bh2u(short_channel_id)))
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coro = peer.pay(path, chan, amount_msat, payment_hash, invoice_pubkey, addr.min_final_cltv_expiry)
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return addr, peer, asyncio.run_coroutine_threadsafe(coro, self.network.asyncio_loop)
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def add_invoice(self, amount_sat, message):
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payment_preimage = os.urandom(32)
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RHASH = sha256(payment_preimage)
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amount_btc = amount_sat/Decimal(COIN) if amount_sat else None
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pay_req = lnencode(LnAddr(RHASH, amount_btc, tags=[('d', message)]), self.node_keypair.privkey)
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self.invoices[bh2u(payment_preimage)] = pay_req
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self.wallet.storage.put('lightning_invoices', self.invoices)
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self.wallet.storage.write()
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return pay_req
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def delete_invoice(self, payreq_key):
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try:
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del self.invoices[payreq_key]
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except KeyError:
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return
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self.wallet.storage.put('lightning_invoices', self.invoices)
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self.wallet.storage.write()
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def list_channels(self):
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with self.lock:
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# we output the funding_outpoint instead of the channel_id because lnd uses channel_point (funding outpoint) to identify channels
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for channel_id, chan in self.channels.items():
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yield {
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'channel_id': bh2u(chan.short_channel_id),
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'channel_point': chan.funding_outpoint.to_str(),
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'state': chan.get_state(),
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'remote_pubkey': bh2u(chan.node_id),
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'local_balance': chan.balance(LOCAL)//1000,
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'remote_balance': chan.balance(REMOTE)//1000,
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}
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async def close_channel(self, chan_id):
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chan = self.channels[chan_id]
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# local_commitment always gives back the next expected local_commitment,
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# but in this case, we want the current one. So substract one ctn number
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old_local_state = chan.local_state
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chan.local_state=chan.local_state._replace(ctn=chan.local_state.ctn - 1)
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tx = chan.pending_local_commitment
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chan.local_state = old_local_state
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tx.sign({bh2u(chan.local_config.multisig_key.pubkey): (chan.local_config.multisig_key.privkey, True)})
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remote_sig = chan.local_state.current_commitment_signature
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remote_sig = der_sig_from_sig_string(remote_sig) + b"\x01"
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none_idx = tx._inputs[0]["signatures"].index(None)
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tx.add_signature_to_txin(0, none_idx, bh2u(remote_sig))
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assert tx.is_complete()
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return await self.network.broadcast_transaction(tx)
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def _get_next_peers_to_try(self) -> Sequence[LNPeerAddr]:
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now = time.time()
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recent_peers = self.channel_db.get_recent_peers()
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# maintenance for last tried times
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# due to this, below we can just test membership in _last_tried_peer
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for peer in list(self._last_tried_peer):
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if now >= self._last_tried_peer[peer] + PEER_RETRY_INTERVAL:
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del self._last_tried_peer[peer]
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# first try from recent peers
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for peer in recent_peers:
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if peer.pubkey in self.peers: continue
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if peer in self._last_tried_peer: continue
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return [peer]
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# try random peer from graph
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all_nodes = self.channel_db.nodes
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if all_nodes:
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#self.print_error('trying to get ln peers from channel db')
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node_ids = list(all_nodes)
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max_tries = min(200, len(all_nodes))
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for i in range(max_tries):
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node_id = random.choice(node_ids)
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node = all_nodes.get(node_id)
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if node is None: continue
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addresses = node.addresses
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if not addresses: continue
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host, port = self.choose_preferred_address(addresses)
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peer = LNPeerAddr(host, port, node_id)
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if peer.pubkey in self.peers: continue
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if peer in self._last_tried_peer: continue
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self.print_error('taking random ln peer from our channel db')
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return [peer]
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# TODO remove this. For some reason the dns seeds seem to ignore the realm byte
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# and only return mainnet nodes. so for the time being dns seeding is disabled:
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if constants.net in (constants.BitcoinTestnet, ):
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return [random.choice(FALLBACK_NODE_LIST)]
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else:
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return []
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# try peers from dns seed.
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# return several peers to reduce the number of dns queries.
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if not constants.net.LN_DNS_SEEDS:
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return []
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dns_seed = random.choice(constants.net.LN_DNS_SEEDS)
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self.print_error('asking dns seed "{}" for ln peers'.format(dns_seed))
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try:
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# note: this might block for several seconds
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# this will include bech32-encoded-pubkeys and ports
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srv_answers = resolve_dns_srv('r{}.{}'.format(
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constants.net.LN_REALM_BYTE, dns_seed))
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except dns.exception.DNSException as e:
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return []
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random.shuffle(srv_answers)
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num_peers = 2 * NUM_PEERS_TARGET
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srv_answers = srv_answers[:num_peers]
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# we now have pubkeys and ports but host is still needed
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peers = []
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for srv_ans in srv_answers:
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try:
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# note: this might block for several seconds
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answers = dns.resolver.query(srv_ans['host'])
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except dns.exception.DNSException:
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continue
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try:
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ln_host = str(answers[0])
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port = int(srv_ans['port'])
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bech32_pubkey = srv_ans['host'].split('.')[0]
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pubkey = get_compressed_pubkey_from_bech32(bech32_pubkey)
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peers.append(LNPeerAddr(ln_host, port, pubkey))
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except Exception as e:
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self.print_error('error with parsing peer from dns seed: {}'.format(e))
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continue
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self.print_error('got {} ln peers from dns seed'.format(len(peers)))
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return peers
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def reestablish_peers_and_channels(self):
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def reestablish_peer_for_given_channel():
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# try last good address first
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peer = self.channel_db.get_last_good_address(chan.node_id)
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if peer:
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last_tried = self._last_tried_peer.get(peer, 0)
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if last_tried + PEER_RETRY_INTERVAL_FOR_CHANNELS < now:
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self.add_peer(peer.host, peer.port, peer.pubkey)
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return
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# try random address for node_id
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node_info = self.channel_db.nodes.get(chan.node_id, None)
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if not node_info: return
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addresses = node_info.addresses
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if not addresses: return
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host, port = random.choice(addresses)
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peer = LNPeerAddr(host, port, chan.node_id)
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last_tried = self._last_tried_peer.get(peer, 0)
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if last_tried + PEER_RETRY_INTERVAL_FOR_CHANNELS < now:
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self.add_peer(host, port, chan.node_id)
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with self.lock:
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channels = list(self.channels.values())
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now = time.time()
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for chan in channels:
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if not chan.should_try_to_reestablish_peer():
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continue
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peer = self.peers.get(chan.node_id, None)
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if peer is None:
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reestablish_peer_for_given_channel()
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else:
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coro = peer.reestablish_channel(chan)
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asyncio.run_coroutine_threadsafe(coro, self.network.asyncio_loop)
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async def main_loop(self):
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await self.on_network_update('network_updated') # shortcut (don't block) if funding tx locked and verified
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await self.network.lnwatcher.on_network_update('network_updated') # ping watcher to check our channels
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while True:
|
|
await asyncio.sleep(1)
|
|
now = time.time()
|
|
self.reestablish_peers_and_channels()
|
|
if len(self.peers) >= NUM_PEERS_TARGET:
|
|
continue
|
|
peers = self._get_next_peers_to_try()
|
|
for peer in peers:
|
|
last_tried = self._last_tried_peer.get(peer, 0)
|
|
if last_tried + PEER_RETRY_INTERVAL < now:
|
|
self.add_peer(peer.host, peer.port, peer.pubkey)
|