Log ChannelPending events
[ldk-sample] / src / main.rs
1 mod args;
2 pub mod bitcoind_client;
3 mod cli;
4 mod convert;
5 mod disk;
6 mod hex_utils;
7
8 use crate::bitcoind_client::BitcoindClient;
9 use crate::disk::FilesystemLogger;
10 use bitcoin::blockdata::transaction::Transaction;
11 use bitcoin::consensus::encode;
12 use bitcoin::network::constants::Network;
13 use bitcoin::secp256k1::Secp256k1;
14 use bitcoin::BlockHash;
15 use bitcoin_bech32::WitnessProgram;
16 use lightning::chain;
17 use lightning::chain::chaininterface::{BroadcasterInterface, ConfirmationTarget, FeeEstimator};
18 use lightning::chain::keysinterface::{EntropySource, InMemorySigner, KeysManager};
19 use lightning::chain::{chainmonitor, ChannelMonitorUpdateStatus};
20 use lightning::chain::{Filter, Watch};
21 use lightning::events::{Event, PaymentFailureReason, PaymentPurpose};
22 use lightning::ln::channelmanager;
23 use lightning::ln::channelmanager::{
24         ChainParameters, ChannelManagerReadArgs, SimpleArcChannelManager,
25 };
26 use lightning::ln::peer_handler::{IgnoringMessageHandler, MessageHandler, SimpleArcPeerManager};
27 use lightning::ln::{PaymentHash, PaymentPreimage, PaymentSecret};
28 use lightning::onion_message::SimpleArcOnionMessenger;
29 use lightning::routing::gossip;
30 use lightning::routing::gossip::{NodeId, P2PGossipSync};
31 use lightning::routing::router::DefaultRouter;
32 use lightning::util::config::UserConfig;
33 use lightning::util::ser::ReadableArgs;
34 use lightning_background_processor::{process_events_async, GossipSync};
35 use lightning_block_sync::init;
36 use lightning_block_sync::poll;
37 use lightning_block_sync::SpvClient;
38 use lightning_block_sync::UnboundedCache;
39 use lightning_net_tokio::SocketDescriptor;
40 use lightning_persister::FilesystemPersister;
41 use rand::{thread_rng, Rng};
42 use std::collections::hash_map::Entry;
43 use std::collections::HashMap;
44 use std::convert::TryInto;
45 use std::fmt;
46 use std::fs;
47 use std::fs::File;
48 use std::io;
49 use std::io::Write;
50 use std::path::Path;
51 use std::sync::atomic::{AtomicBool, Ordering};
52 use std::sync::{Arc, Mutex};
53 use std::time::{Duration, SystemTime};
54
55 pub(crate) enum HTLCStatus {
56         Pending,
57         Succeeded,
58         Failed,
59 }
60
61 pub(crate) struct MillisatAmount(Option<u64>);
62
63 impl fmt::Display for MillisatAmount {
64         fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
65                 match self.0 {
66                         Some(amt) => write!(f, "{}", amt),
67                         None => write!(f, "unknown"),
68                 }
69         }
70 }
71
72 pub(crate) struct PaymentInfo {
73         preimage: Option<PaymentPreimage>,
74         secret: Option<PaymentSecret>,
75         status: HTLCStatus,
76         amt_msat: MillisatAmount,
77 }
78
79 pub(crate) type PaymentInfoStorage = Arc<Mutex<HashMap<PaymentHash, PaymentInfo>>>;
80
81 type ChainMonitor = chainmonitor::ChainMonitor<
82         InMemorySigner,
83         Arc<dyn Filter + Send + Sync>,
84         Arc<BitcoindClient>,
85         Arc<BitcoindClient>,
86         Arc<FilesystemLogger>,
87         Arc<FilesystemPersister>,
88 >;
89
90 pub(crate) type PeerManager = SimpleArcPeerManager<
91         SocketDescriptor,
92         ChainMonitor,
93         BitcoindClient,
94         BitcoindClient,
95         BitcoindClient,
96         FilesystemLogger,
97 >;
98
99 pub(crate) type ChannelManager =
100         SimpleArcChannelManager<ChainMonitor, BitcoindClient, BitcoindClient, FilesystemLogger>;
101
102 pub(crate) type NetworkGraph = gossip::NetworkGraph<Arc<FilesystemLogger>>;
103
104 type OnionMessenger = SimpleArcOnionMessenger<FilesystemLogger>;
105
106 async fn handle_ldk_events(
107         channel_manager: &Arc<ChannelManager>, bitcoind_client: &BitcoindClient,
108         network_graph: &NetworkGraph, keys_manager: &KeysManager,
109         inbound_payments: &PaymentInfoStorage, outbound_payments: &PaymentInfoStorage,
110         network: Network, event: Event,
111 ) {
112         match event {
113                 Event::FundingGenerationReady {
114                         temporary_channel_id,
115                         counterparty_node_id,
116                         channel_value_satoshis,
117                         output_script,
118                         ..
119                 } => {
120                         // Construct the raw transaction with one output, that is paid the amount of the
121                         // channel.
122                         let addr = WitnessProgram::from_scriptpubkey(
123                                 &output_script[..],
124                                 match network {
125                                         Network::Bitcoin => bitcoin_bech32::constants::Network::Bitcoin,
126                                         Network::Testnet => bitcoin_bech32::constants::Network::Testnet,
127                                         Network::Regtest => bitcoin_bech32::constants::Network::Regtest,
128                                         Network::Signet => bitcoin_bech32::constants::Network::Signet,
129                                 },
130                         )
131                         .expect("Lightning funding tx should always be to a SegWit output")
132                         .to_address();
133                         let mut outputs = vec![HashMap::with_capacity(1)];
134                         outputs[0].insert(addr, channel_value_satoshis as f64 / 100_000_000.0);
135                         let raw_tx = bitcoind_client.create_raw_transaction(outputs).await;
136
137                         // Have your wallet put the inputs into the transaction such that the output is
138                         // satisfied.
139                         let funded_tx = bitcoind_client.fund_raw_transaction(raw_tx).await;
140
141                         // Sign the final funding transaction and broadcast it.
142                         let signed_tx = bitcoind_client.sign_raw_transaction_with_wallet(funded_tx.hex).await;
143                         assert_eq!(signed_tx.complete, true);
144                         let final_tx: Transaction =
145                                 encode::deserialize(&hex_utils::to_vec(&signed_tx.hex).unwrap()).unwrap();
146                         // Give the funding transaction back to LDK for opening the channel.
147                         if channel_manager
148                                 .funding_transaction_generated(
149                                         &temporary_channel_id,
150                                         &counterparty_node_id,
151                                         final_tx,
152                                 )
153                                 .is_err()
154                         {
155                                 println!(
156                                         "\nERROR: Channel went away before we could fund it. The peer disconnected or refused the channel.");
157                                 print!("> ");
158                                 io::stdout().flush().unwrap();
159                         }
160                 }
161                 Event::PaymentClaimable {
162                         payment_hash,
163                         purpose,
164                         amount_msat,
165                         receiver_node_id: _,
166                         via_channel_id: _,
167                         via_user_channel_id: _,
168                         claim_deadline: _,
169                         onion_fields: _,
170                 } => {
171                         println!(
172                                 "\nEVENT: received payment from payment hash {} of {} millisatoshis",
173                                 hex_utils::hex_str(&payment_hash.0),
174                                 amount_msat,
175                         );
176                         print!("> ");
177                         io::stdout().flush().unwrap();
178                         let payment_preimage = match purpose {
179                                 PaymentPurpose::InvoicePayment { payment_preimage, .. } => payment_preimage,
180                                 PaymentPurpose::SpontaneousPayment(preimage) => Some(preimage),
181                         };
182                         channel_manager.claim_funds(payment_preimage.unwrap());
183                 }
184                 Event::PaymentClaimed { payment_hash, purpose, amount_msat, receiver_node_id: _ } => {
185                         println!(
186                                 "\nEVENT: claimed payment from payment hash {} of {} millisatoshis",
187                                 hex_utils::hex_str(&payment_hash.0),
188                                 amount_msat,
189                         );
190                         print!("> ");
191                         io::stdout().flush().unwrap();
192                         let (payment_preimage, payment_secret) = match purpose {
193                                 PaymentPurpose::InvoicePayment { payment_preimage, payment_secret, .. } => {
194                                         (payment_preimage, Some(payment_secret))
195                                 }
196                                 PaymentPurpose::SpontaneousPayment(preimage) => (Some(preimage), None),
197                         };
198                         let mut payments = inbound_payments.lock().unwrap();
199                         match payments.entry(payment_hash) {
200                                 Entry::Occupied(mut e) => {
201                                         let payment = e.get_mut();
202                                         payment.status = HTLCStatus::Succeeded;
203                                         payment.preimage = payment_preimage;
204                                         payment.secret = payment_secret;
205                                 }
206                                 Entry::Vacant(e) => {
207                                         e.insert(PaymentInfo {
208                                                 preimage: payment_preimage,
209                                                 secret: payment_secret,
210                                                 status: HTLCStatus::Succeeded,
211                                                 amt_msat: MillisatAmount(Some(amount_msat)),
212                                         });
213                                 }
214                         }
215                 }
216                 Event::PaymentSent { payment_preimage, payment_hash, fee_paid_msat, .. } => {
217                         let mut payments = outbound_payments.lock().unwrap();
218                         for (hash, payment) in payments.iter_mut() {
219                                 if *hash == payment_hash {
220                                         payment.preimage = Some(payment_preimage);
221                                         payment.status = HTLCStatus::Succeeded;
222                                         println!(
223                                                 "\nEVENT: successfully sent payment of {} millisatoshis{} from \
224                                                                  payment hash {:?} with preimage {:?}",
225                                                 payment.amt_msat,
226                                                 if let Some(fee) = fee_paid_msat {
227                                                         format!(" (fee {} msat)", fee)
228                                                 } else {
229                                                         "".to_string()
230                                                 },
231                                                 hex_utils::hex_str(&payment_hash.0),
232                                                 hex_utils::hex_str(&payment_preimage.0)
233                                         );
234                                         print!("> ");
235                                         io::stdout().flush().unwrap();
236                                 }
237                         }
238                 }
239                 Event::OpenChannelRequest { .. } => {
240                         // Unreachable, we don't set manually_accept_inbound_channels
241                 }
242                 Event::PaymentPathSuccessful { .. } => {}
243                 Event::PaymentPathFailed { .. } => {}
244                 Event::ProbeSuccessful { .. } => {}
245                 Event::ProbeFailed { .. } => {}
246                 Event::PaymentFailed { payment_hash, reason, .. } => {
247                         print!(
248                                 "\nEVENT: Failed to send payment to payment hash {:?}: {:?}",
249                                 hex_utils::hex_str(&payment_hash.0),
250                                 if let Some(r) = reason { r } else { PaymentFailureReason::RetriesExhausted }
251                         );
252                         print!("> ");
253                         io::stdout().flush().unwrap();
254
255                         let mut payments = outbound_payments.lock().unwrap();
256                         if payments.contains_key(&payment_hash) {
257                                 let payment = payments.get_mut(&payment_hash).unwrap();
258                                 payment.status = HTLCStatus::Failed;
259                         }
260                 }
261                 Event::PaymentForwarded {
262                         prev_channel_id,
263                         next_channel_id,
264                         fee_earned_msat,
265                         claim_from_onchain_tx,
266                         outbound_amount_forwarded_msat,
267                 } => {
268                         let read_only_network_graph = network_graph.read_only();
269                         let nodes = read_only_network_graph.nodes();
270                         let channels = channel_manager.list_channels();
271
272                         let node_str = |channel_id: &Option<[u8; 32]>| match channel_id {
273                                 None => String::new(),
274                                 Some(channel_id) => match channels.iter().find(|c| c.channel_id == *channel_id) {
275                                         None => String::new(),
276                                         Some(channel) => {
277                                                 match nodes.get(&NodeId::from_pubkey(&channel.counterparty.node_id)) {
278                                                         None => "private node".to_string(),
279                                                         Some(node) => match &node.announcement_info {
280                                                                 None => "unnamed node".to_string(),
281                                                                 Some(announcement) => {
282                                                                         format!("node {}", announcement.alias)
283                                                                 }
284                                                         },
285                                                 }
286                                         }
287                                 },
288                         };
289                         let channel_str = |channel_id: &Option<[u8; 32]>| {
290                                 channel_id
291                                         .map(|channel_id| format!(" with channel {}", hex_utils::hex_str(&channel_id)))
292                                         .unwrap_or_default()
293                         };
294                         let from_prev_str =
295                                 format!(" from {}{}", node_str(&prev_channel_id), channel_str(&prev_channel_id));
296                         let to_next_str =
297                                 format!(" to {}{}", node_str(&next_channel_id), channel_str(&next_channel_id));
298
299                         let from_onchain_str = if claim_from_onchain_tx {
300                                 "from onchain downstream claim"
301                         } else {
302                                 "from HTLC fulfill message"
303                         };
304                         let amt_args = if let Some(v) = outbound_amount_forwarded_msat {
305                                 format!("{}", v)
306                         } else {
307                                 "?".to_string()
308                         };
309                         if let Some(fee_earned) = fee_earned_msat {
310                                 println!(
311                                         "\nEVENT: Forwarded payment for {} msat{}{}, earning {} msat {}",
312                                         amt_args, from_prev_str, to_next_str, fee_earned, from_onchain_str
313                                 );
314                         } else {
315                                 println!(
316                                         "\nEVENT: Forwarded payment for {} msat{}{}, claiming onchain {}",
317                                         amt_args, from_prev_str, to_next_str, from_onchain_str
318                                 );
319                         }
320                         print!("> ");
321                         io::stdout().flush().unwrap();
322                 }
323                 Event::HTLCHandlingFailed { .. } => {}
324                 Event::PendingHTLCsForwardable { time_forwardable } => {
325                         let forwarding_channel_manager = channel_manager.clone();
326                         let min = time_forwardable.as_millis() as u64;
327                         tokio::spawn(async move {
328                                 let millis_to_sleep = thread_rng().gen_range(min, min * 5) as u64;
329                                 tokio::time::sleep(Duration::from_millis(millis_to_sleep)).await;
330                                 forwarding_channel_manager.process_pending_htlc_forwards();
331                         });
332                 }
333                 Event::SpendableOutputs { outputs } => {
334                         let destination_address = bitcoind_client.get_new_address().await;
335                         let output_descriptors = &outputs.iter().map(|a| a).collect::<Vec<_>>();
336                         let tx_feerate =
337                                 bitcoind_client.get_est_sat_per_1000_weight(ConfirmationTarget::Normal);
338                         let spending_tx = keys_manager
339                                 .spend_spendable_outputs(
340                                         output_descriptors,
341                                         Vec::new(),
342                                         destination_address.script_pubkey(),
343                                         tx_feerate,
344                                         &Secp256k1::new(),
345                                 )
346                                 .unwrap();
347                         bitcoind_client.broadcast_transaction(&spending_tx);
348                 }
349                 Event::ChannelPending { channel_id, counterparty_node_id, .. } => {
350                         println!(
351                                 "\nEVENT: Channel {} with peer {} is pending awaiting funding lock-in!",
352                                 hex_utils::hex_str(&channel_id),
353                                 hex_utils::hex_str(&counterparty_node_id.serialize()),
354                         );
355                         print!("> ");
356                         io::stdout().flush().unwrap();
357                 }
358                 Event::ChannelReady {
359                         ref channel_id,
360                         user_channel_id: _,
361                         ref counterparty_node_id,
362                         channel_type: _,
363                 } => {
364                         println!(
365                                 "\nEVENT: Channel {} with peer {} is ready to be used!",
366                                 hex_utils::hex_str(channel_id),
367                                 hex_utils::hex_str(&counterparty_node_id.serialize()),
368                         );
369                         print!("> ");
370                         io::stdout().flush().unwrap();
371                 }
372                 Event::ChannelClosed { channel_id, reason, user_channel_id: _ } => {
373                         println!(
374                                 "\nEVENT: Channel {} closed due to: {:?}",
375                                 hex_utils::hex_str(&channel_id),
376                                 reason
377                         );
378                         print!("> ");
379                         io::stdout().flush().unwrap();
380                 }
381                 Event::DiscardFunding { .. } => {
382                         // A "real" node should probably "lock" the UTXOs spent in funding transactions until
383                         // the funding transaction either confirms, or this event is generated.
384                 }
385                 Event::HTLCIntercepted { .. } => {}
386         }
387 }
388
389 async fn start_ldk() {
390         let args = match args::parse_startup_args() {
391                 Ok(user_args) => user_args,
392                 Err(()) => return,
393         };
394
395         // Initialize the LDK data directory if necessary.
396         let ldk_data_dir = format!("{}/.ldk", args.ldk_storage_dir_path);
397         fs::create_dir_all(ldk_data_dir.clone()).unwrap();
398
399         // ## Setup
400         // Step 1: Initialize the Logger
401         let logger = Arc::new(FilesystemLogger::new(ldk_data_dir.clone()));
402
403         // Initialize our bitcoind client.
404         let bitcoind_client = match BitcoindClient::new(
405                 args.bitcoind_rpc_host.clone(),
406                 args.bitcoind_rpc_port,
407                 args.bitcoind_rpc_username.clone(),
408                 args.bitcoind_rpc_password.clone(),
409                 tokio::runtime::Handle::current(),
410                 Arc::clone(&logger),
411         )
412         .await
413         {
414                 Ok(client) => Arc::new(client),
415                 Err(e) => {
416                         println!("Failed to connect to bitcoind client: {}", e);
417                         return;
418                 }
419         };
420
421         // Check that the bitcoind we've connected to is running the network we expect
422         let bitcoind_chain = bitcoind_client.get_blockchain_info().await.chain;
423         if bitcoind_chain
424                 != match args.network {
425                         bitcoin::Network::Bitcoin => "main",
426                         bitcoin::Network::Testnet => "test",
427                         bitcoin::Network::Regtest => "regtest",
428                         bitcoin::Network::Signet => "signet",
429                 } {
430                 println!(
431                         "Chain argument ({}) didn't match bitcoind chain ({})",
432                         args.network, bitcoind_chain
433                 );
434                 return;
435         }
436
437         // Step 2: Initialize the FeeEstimator
438
439         // BitcoindClient implements the FeeEstimator trait, so it'll act as our fee estimator.
440         let fee_estimator = bitcoind_client.clone();
441
442         // Step 3: Initialize the BroadcasterInterface
443
444         // BitcoindClient implements the BroadcasterInterface trait, so it'll act as our transaction
445         // broadcaster.
446         let broadcaster = bitcoind_client.clone();
447
448         // Step 4: Initialize Persist
449         let persister = Arc::new(FilesystemPersister::new(ldk_data_dir.clone()));
450
451         // Step 5: Initialize the ChainMonitor
452         let chain_monitor: Arc<ChainMonitor> = Arc::new(chainmonitor::ChainMonitor::new(
453                 None,
454                 broadcaster.clone(),
455                 logger.clone(),
456                 fee_estimator.clone(),
457                 persister.clone(),
458         ));
459
460         // Step 6: Initialize the KeysManager
461
462         // The key seed that we use to derive the node privkey (that corresponds to the node pubkey) and
463         // other secret key material.
464         let keys_seed_path = format!("{}/keys_seed", ldk_data_dir.clone());
465         let keys_seed = if let Ok(seed) = fs::read(keys_seed_path.clone()) {
466                 assert_eq!(seed.len(), 32);
467                 let mut key = [0; 32];
468                 key.copy_from_slice(&seed);
469                 key
470         } else {
471                 let mut key = [0; 32];
472                 thread_rng().fill_bytes(&mut key);
473                 match File::create(keys_seed_path.clone()) {
474                         Ok(mut f) => {
475                                 f.write_all(&key).expect("Failed to write node keys seed to disk");
476                                 f.sync_all().expect("Failed to sync node keys seed to disk");
477                         }
478                         Err(e) => {
479                                 println!("ERROR: Unable to create keys seed file {}: {}", keys_seed_path, e);
480                                 return;
481                         }
482                 }
483                 key
484         };
485         let cur = SystemTime::now().duration_since(SystemTime::UNIX_EPOCH).unwrap();
486         let keys_manager = Arc::new(KeysManager::new(&keys_seed, cur.as_secs(), cur.subsec_nanos()));
487
488         // Step 7: Read ChannelMonitor state from disk
489         let mut channelmonitors =
490                 persister.read_channelmonitors(keys_manager.clone(), keys_manager.clone()).unwrap();
491
492         // Step 8: Poll for the best chain tip, which may be used by the channel manager & spv client
493         let polled_chain_tip = init::validate_best_block_header(bitcoind_client.as_ref())
494                 .await
495                 .expect("Failed to fetch best block header and best block");
496
497         // Step 9: Initialize routing ProbabilisticScorer
498         let network_graph_path = format!("{}/network_graph", ldk_data_dir.clone());
499         let network_graph =
500                 Arc::new(disk::read_network(Path::new(&network_graph_path), args.network, logger.clone()));
501
502         let scorer_path = format!("{}/scorer", ldk_data_dir.clone());
503         let scorer = Arc::new(Mutex::new(disk::read_scorer(
504                 Path::new(&scorer_path),
505                 Arc::clone(&network_graph),
506                 Arc::clone(&logger),
507         )));
508
509         // Step 10: Create Router
510         let router = Arc::new(DefaultRouter::new(
511                 network_graph.clone(),
512                 logger.clone(),
513                 keys_manager.get_secure_random_bytes(),
514                 scorer.clone(),
515         ));
516
517         // Step 11: Initialize the ChannelManager
518         let mut user_config = UserConfig::default();
519         user_config.channel_handshake_limits.force_announced_channel_preference = false;
520         let mut restarting_node = true;
521         let (channel_manager_blockhash, channel_manager) = {
522                 if let Ok(mut f) = fs::File::open(format!("{}/manager", ldk_data_dir.clone())) {
523                         let mut channel_monitor_mut_references = Vec::new();
524                         for (_, channel_monitor) in channelmonitors.iter_mut() {
525                                 channel_monitor_mut_references.push(channel_monitor);
526                         }
527                         let read_args = ChannelManagerReadArgs::new(
528                                 keys_manager.clone(),
529                                 keys_manager.clone(),
530                                 keys_manager.clone(),
531                                 fee_estimator.clone(),
532                                 chain_monitor.clone(),
533                                 broadcaster.clone(),
534                                 router,
535                                 logger.clone(),
536                                 user_config,
537                                 channel_monitor_mut_references,
538                         );
539                         <(BlockHash, ChannelManager)>::read(&mut f, read_args).unwrap()
540                 } else {
541                         // We're starting a fresh node.
542                         restarting_node = false;
543
544                         let polled_best_block = polled_chain_tip.to_best_block();
545                         let polled_best_block_hash = polled_best_block.block_hash();
546                         let chain_params =
547                                 ChainParameters { network: args.network, best_block: polled_best_block };
548                         let fresh_channel_manager = channelmanager::ChannelManager::new(
549                                 fee_estimator.clone(),
550                                 chain_monitor.clone(),
551                                 broadcaster.clone(),
552                                 router,
553                                 logger.clone(),
554                                 keys_manager.clone(),
555                                 keys_manager.clone(),
556                                 keys_manager.clone(),
557                                 user_config,
558                                 chain_params,
559                         );
560                         (polled_best_block_hash, fresh_channel_manager)
561                 }
562         };
563
564         // Step 12: Sync ChannelMonitors and ChannelManager to chain tip
565         let mut chain_listener_channel_monitors = Vec::new();
566         let mut cache = UnboundedCache::new();
567         let chain_tip = if restarting_node {
568                 let mut chain_listeners = vec![(
569                         channel_manager_blockhash,
570                         &channel_manager as &(dyn chain::Listen + Send + Sync),
571                 )];
572
573                 for (blockhash, channel_monitor) in channelmonitors.drain(..) {
574                         let outpoint = channel_monitor.get_funding_txo().0;
575                         chain_listener_channel_monitors.push((
576                                 blockhash,
577                                 (channel_monitor, broadcaster.clone(), fee_estimator.clone(), logger.clone()),
578                                 outpoint,
579                         ));
580                 }
581
582                 for monitor_listener_info in chain_listener_channel_monitors.iter_mut() {
583                         chain_listeners.push((
584                                 monitor_listener_info.0,
585                                 &monitor_listener_info.1 as &(dyn chain::Listen + Send + Sync),
586                         ));
587                 }
588
589                 init::synchronize_listeners(
590                         bitcoind_client.as_ref(),
591                         args.network,
592                         &mut cache,
593                         chain_listeners,
594                 )
595                 .await
596                 .unwrap()
597         } else {
598                 polled_chain_tip
599         };
600
601         // Step 13: Give ChannelMonitors to ChainMonitor
602         for item in chain_listener_channel_monitors.drain(..) {
603                 let channel_monitor = item.1 .0;
604                 let funding_outpoint = item.2;
605                 assert_eq!(
606                         chain_monitor.watch_channel(funding_outpoint, channel_monitor),
607                         ChannelMonitorUpdateStatus::Completed
608                 );
609         }
610
611         // Step 14: Optional: Initialize the P2PGossipSync
612         let gossip_sync = Arc::new(P2PGossipSync::new(
613                 Arc::clone(&network_graph),
614                 None::<Arc<BitcoindClient>>,
615                 logger.clone(),
616         ));
617
618         // Step 15: Initialize the PeerManager
619         let channel_manager: Arc<ChannelManager> = Arc::new(channel_manager);
620         let onion_messenger: Arc<OnionMessenger> = Arc::new(OnionMessenger::new(
621                 Arc::clone(&keys_manager),
622                 Arc::clone(&keys_manager),
623                 Arc::clone(&logger),
624                 IgnoringMessageHandler {},
625         ));
626         let mut ephemeral_bytes = [0; 32];
627         let current_time = SystemTime::now().duration_since(SystemTime::UNIX_EPOCH).unwrap().as_secs();
628         rand::thread_rng().fill_bytes(&mut ephemeral_bytes);
629         let lightning_msg_handler = MessageHandler {
630                 chan_handler: channel_manager.clone(),
631                 route_handler: gossip_sync.clone(),
632                 onion_message_handler: onion_messenger.clone(),
633         };
634         let peer_manager: Arc<PeerManager> = Arc::new(PeerManager::new(
635                 lightning_msg_handler,
636                 current_time.try_into().unwrap(),
637                 &ephemeral_bytes,
638                 logger.clone(),
639                 IgnoringMessageHandler {},
640                 Arc::clone(&keys_manager),
641         ));
642
643         // ## Running LDK
644         // Step 16: Initialize networking
645
646         let peer_manager_connection_handler = peer_manager.clone();
647         let listening_port = args.ldk_peer_listening_port;
648         let stop_listen_connect = Arc::new(AtomicBool::new(false));
649         let stop_listen = Arc::clone(&stop_listen_connect);
650         tokio::spawn(async move {
651                 let listener = tokio::net::TcpListener::bind(format!("[::]:{}", listening_port))
652                         .await
653                         .expect("Failed to bind to listen port - is something else already listening on it?");
654                 loop {
655                         let peer_mgr = peer_manager_connection_handler.clone();
656                         let tcp_stream = listener.accept().await.unwrap().0;
657                         if stop_listen.load(Ordering::Acquire) {
658                                 return;
659                         }
660                         tokio::spawn(async move {
661                                 lightning_net_tokio::setup_inbound(
662                                         peer_mgr.clone(),
663                                         tcp_stream.into_std().unwrap(),
664                                 )
665                                 .await;
666                         });
667                 }
668         });
669
670         // Step 17: Connect and Disconnect Blocks
671         let channel_manager_listener = channel_manager.clone();
672         let chain_monitor_listener = chain_monitor.clone();
673         let bitcoind_block_source = bitcoind_client.clone();
674         let network = args.network;
675         tokio::spawn(async move {
676                 let chain_poller = poll::ChainPoller::new(bitcoind_block_source.as_ref(), network);
677                 let chain_listener = (chain_monitor_listener, channel_manager_listener);
678                 let mut spv_client = SpvClient::new(chain_tip, chain_poller, &mut cache, &chain_listener);
679                 loop {
680                         spv_client.poll_best_tip().await.unwrap();
681                         tokio::time::sleep(Duration::from_secs(1)).await;
682                 }
683         });
684
685         // TODO: persist payment info to disk
686         let inbound_payments: PaymentInfoStorage = Arc::new(Mutex::new(HashMap::new()));
687         let outbound_payments: PaymentInfoStorage = Arc::new(Mutex::new(HashMap::new()));
688
689         // Step 18: Handle LDK Events
690         let channel_manager_event_listener = Arc::clone(&channel_manager);
691         let bitcoind_client_event_listener = Arc::clone(&bitcoind_client);
692         let network_graph_event_listener = Arc::clone(&network_graph);
693         let keys_manager_event_listener = Arc::clone(&keys_manager);
694         let inbound_payments_event_listener = Arc::clone(&inbound_payments);
695         let outbound_payments_event_listener = Arc::clone(&outbound_payments);
696         let network = args.network;
697         let event_handler = move |event: Event| {
698                 let channel_manager_event_listener = Arc::clone(&channel_manager_event_listener);
699                 let bitcoind_client_event_listener = Arc::clone(&bitcoind_client_event_listener);
700                 let network_graph_event_listener = Arc::clone(&network_graph_event_listener);
701                 let keys_manager_event_listener = Arc::clone(&keys_manager_event_listener);
702                 let inbound_payments_event_listener = Arc::clone(&inbound_payments_event_listener);
703                 let outbound_payments_event_listener = Arc::clone(&outbound_payments_event_listener);
704                 async move {
705                         handle_ldk_events(
706                                 &channel_manager_event_listener,
707                                 &bitcoind_client_event_listener,
708                                 &network_graph_event_listener,
709                                 &keys_manager_event_listener,
710                                 &inbound_payments_event_listener,
711                                 &outbound_payments_event_listener,
712                                 network,
713                                 event,
714                         )
715                         .await;
716                 }
717         };
718
719         // Step 19: Persist ChannelManager and NetworkGraph
720         let persister = Arc::new(FilesystemPersister::new(ldk_data_dir.clone()));
721
722         // Step 20: Background Processing
723         let (bp_exit, bp_exit_check) = tokio::sync::watch::channel(());
724         let background_processor = tokio::spawn(process_events_async(
725                 persister,
726                 event_handler,
727                 chain_monitor.clone(),
728                 channel_manager.clone(),
729                 GossipSync::p2p(gossip_sync.clone()),
730                 peer_manager.clone(),
731                 logger.clone(),
732                 Some(scorer.clone()),
733                 move |t| {
734                         let mut bp_exit_fut_check = bp_exit_check.clone();
735                         Box::pin(async move {
736                                 tokio::select! {
737                                         _ = tokio::time::sleep(t) => false,
738                                         _ = bp_exit_fut_check.changed() => true,
739                                 }
740                         })
741                 },
742                 false,
743         ));
744
745         // Regularly reconnect to channel peers.
746         let connect_cm = Arc::clone(&channel_manager);
747         let connect_pm = Arc::clone(&peer_manager);
748         let peer_data_path = format!("{}/channel_peer_data", ldk_data_dir.clone());
749         let stop_connect = Arc::clone(&stop_listen_connect);
750         tokio::spawn(async move {
751                 let mut interval = tokio::time::interval(Duration::from_secs(1));
752                 loop {
753                         interval.tick().await;
754                         match disk::read_channel_peer_data(Path::new(&peer_data_path)) {
755                                 Ok(info) => {
756                                         let peers = connect_pm.get_peer_node_ids();
757                                         for node_id in connect_cm
758                                                 .list_channels()
759                                                 .iter()
760                                                 .map(|chan| chan.counterparty.node_id)
761                                                 .filter(|id| !peers.iter().any(|(pk, _)| id == pk))
762                                         {
763                                                 if stop_connect.load(Ordering::Acquire) {
764                                                         return;
765                                                 }
766                                                 for (pubkey, peer_addr) in info.iter() {
767                                                         if *pubkey == node_id {
768                                                                 let _ = cli::do_connect_peer(
769                                                                         *pubkey,
770                                                                         peer_addr.clone(),
771                                                                         Arc::clone(&connect_pm),
772                                                                 )
773                                                                 .await;
774                                                         }
775                                                 }
776                                         }
777                                 }
778                                 Err(e) => println!("ERROR: errored reading channel peer info from disk: {:?}", e),
779                         }
780                 }
781         });
782
783         // Regularly broadcast our node_announcement. This is only required (or possible) if we have
784         // some public channels, and is only useful if we have public listen address(es) to announce.
785         // In a production environment, this should occur only after the announcement of new channels
786         // to avoid churn in the global network graph.
787         let peer_man = Arc::clone(&peer_manager);
788         let network = args.network;
789         if !args.ldk_announced_listen_addr.is_empty() {
790                 tokio::spawn(async move {
791                         let mut interval = tokio::time::interval(Duration::from_secs(60));
792                         loop {
793                                 interval.tick().await;
794                                 peer_man.broadcast_node_announcement(
795                                         [0; 3],
796                                         args.ldk_announced_node_name,
797                                         args.ldk_announced_listen_addr.clone(),
798                                 );
799                         }
800                 });
801         }
802
803         // Start the CLI.
804         cli::poll_for_user_input(
805                 Arc::clone(&peer_manager),
806                 Arc::clone(&channel_manager),
807                 Arc::clone(&keys_manager),
808                 Arc::clone(&network_graph),
809                 Arc::clone(&onion_messenger),
810                 inbound_payments,
811                 outbound_payments,
812                 ldk_data_dir.clone(),
813                 network,
814                 Arc::clone(&logger),
815         )
816         .await;
817
818         // Disconnect our peers and stop accepting new connections. This ensures we don't continue
819         // updating our channel data after we've stopped the background processor.
820         stop_listen_connect.store(true, Ordering::Release);
821         peer_manager.disconnect_all_peers();
822
823         // Stop the background processor.
824         bp_exit.send(()).unwrap();
825         background_processor.await.unwrap().unwrap();
826 }
827
828 #[tokio::main]
829 pub async fn main() {
830         #[cfg(not(target_os = "windows"))]
831         {
832                 // Catch Ctrl-C with a dummy signal handler.
833                 unsafe {
834                         let mut new_action: libc::sigaction = core::mem::zeroed();
835                         let mut old_action: libc::sigaction = core::mem::zeroed();
836
837                         extern "C" fn dummy_handler(
838                                 _: libc::c_int, _: *const libc::siginfo_t, _: *const libc::c_void,
839                         ) {
840                         }
841
842                         new_action.sa_sigaction = dummy_handler as libc::sighandler_t;
843                         new_action.sa_flags = libc::SA_SIGINFO;
844
845                         libc::sigaction(
846                                 libc::SIGINT,
847                                 &new_action as *const libc::sigaction,
848                                 &mut old_action as *mut libc::sigaction,
849                         );
850                 }
851         }
852
853         start_ldk().await;
854 }