[Java] Update batteries and tests to LDK 0.0.121
[ldk-java] / src / main / java / org / ldk / batteries / ChannelManagerConstructor.java
1 package org.ldk.batteries;
2
3 import javax.annotation.Nullable;
4
5 import org.ldk.enums.Network;
6 import org.ldk.structs.*;
7
8 import java.io.IOException;
9 import java.util.HashSet;
10
11
12 /**
13  * A simple utility class which assists in constructing a fresh or deserializing from disk a ChannelManager and one or
14  * more ChannelMonitors.
15  *
16  * Also constructs a PeerManager and spawns a background thread to monitor for and notify you of relevant Events.
17  *
18  * Note that you must ensure you hold a reference to any constructed ChannelManagerConstructor objects to ensure you
19  * continue to receive events generated by the background thread which will be stopped if this object is garbage
20  * collected.
21  */
22 public class ChannelManagerConstructor {
23     /**
24      * An Exception that indicates the serialized data is invalid and has been corrupted on disk. You should attempt to
25      * restore from a backup if there is one which is known to be current. Otherwise, funds may have been lost.
26      */
27     public static class InvalidSerializedDataException extends Exception {
28         InvalidSerializedDataException(String reason) {
29             super(reason);
30         }
31     }
32
33     /**
34      * The ChannelManager either deserialized or newly-constructed.
35      */
36     public final ChannelManager channel_manager;
37     /**
38      * The latest block has the channel manager saw. If this is non-null it is a 32-byte block hash.
39      * You should sync the blockchain starting with the block that builds on this block.
40      */
41     public final byte[] channel_manager_latest_block_hash;
42     /**
43      * A list of ChannelMonitors and the last block they each saw. You should sync the blockchain on each individually
44      * starting with the block that builds on the hash given.
45      * After doing so (and syncing the blockchain on the channel manager as well), you should call chain_sync_completed()
46      * and then continue to normal application operation.
47      */
48     public final TwoTuple_ThirtyTwoBytesChannelMonitorZ[] channel_monitors;
49     /**
50      * A PeerManager which is constructed to pass messages and handle connections to peers.
51      *
52      * This is `null` until `chain_sync_completed` is called.
53      */
54     public PeerManager peer_manager = null;
55     /**
56      * A NioPeerHandler which manages a background thread to handle socket events and pass them to the peer_manager.
57      *
58      * This is `null` until `chain_sync_completed` is called.
59      */
60     public NioPeerHandler nio_peer_handler = null;
61
62     private final ChainMonitor chain_monitor;
63
64     /**
65      * The `NetworkGraph` deserialized from the byte given to the constructor when deserializing or the `NetworkGraph`
66      * given explicitly to the new-object constructor.
67      */
68     public final NetworkGraph net_graph;
69
70     /**
71      * A mutex holding the `ProbabilisticScorer` which was loaded on startup.
72      */
73     public final MultiThreadedLockableScore scorer;
74     /**
75      * We wrap the scorer in a MultiThreadedLockableScore which ultimately gates access to the scorer, however sometimes
76      * we want to expose underlying details of the scorer itself. Thus, we expose a safe version that takes the lock
77      * then returns a reference to this scorer.
78      */
79     private final ProbabilisticScorer prob_scorer;
80     private final Logger logger;
81     private final EntropySource entropy_source;
82     private final NodeSigner node_signer;
83     private final Router router;
84
85     /**
86      * Exposes the `ProbabilisticScorer` wrapped inside a lock. Don't forget to `close` this lock when you're done with
87      * it so normal scoring operation can continue.
88      */
89     public class ScorerWrapper implements AutoCloseable {
90         private final ScoreUpdate lock;
91         public final ProbabilisticScorer prob_scorer;
92         private ScorerWrapper(ScoreUpdate lock, ProbabilisticScorer prob_scorer) {
93             this.lock = lock; this.prob_scorer = prob_scorer;
94         }
95         @Override public void close() throws Exception {
96             lock.destroy();
97         }
98     }
99     /**
100      * Gets the `ProbabilisticScorer` which backs the public lockable `scorer`. Don't forget to `close` the lock when
101      * you're done with it.
102      */
103     public ScorerWrapper get_locked_scorer() {
104         return new ScorerWrapper(this.scorer.as_LockableScore().write_lock(), this.prob_scorer);
105     }
106
107     /**
108      * A simple interface to provide routes to LDK.
109      */
110     public interface RouterWrapper {
111         /**
112          * Gets a route for the given payment.
113          *
114          * @param payment_hash is non-null for this-node-originated payments, however in the future trampoline or other
115          *                     HTLC re-routing may cause it to be null as we find routes for payments which we did not
116          *                     originate.
117          * @param payment_id is non-null for this-node-originated payments, however in the future trampoline or other
118          *                   HTLC re-routing may cause it to be null as we find routes for payments which we did not
119          *                   originate.
120          * @param default_router Provides a router which uses the LDK route-finder and a ProbabilisticScorer using the
121          *                       provided ProbabilisticScoringParameters. You may use this to fetch a "default" route,
122          *                       modifying or storing it as you wish before returning the route to LDK.
123          */
124         Result_RouteLightningErrorZ find_route(byte[] payer_node_id, RouteParameters route_params, ChannelDetails[] first_hops,
125             InFlightHtlcs inflight_htlcs, @Nullable byte[] payment_hash, @Nullable byte[] payment_id, DefaultRouter default_router);
126     }
127
128     /**
129      * Deserializes a channel manager and a set of channel monitors from the given serialized copies and interface implementations
130      *
131      * @param filter If provided, the outputs which were previously registered to be monitored for will be loaded into the filter.
132      *               Note that if the provided Watch is a ChainWatch and has an associated filter, the previously registered
133      *               outputs will be loaded when chain_sync_completed is called.
134      * @param router_wrapper If provided, routes will be fetched by calling the given router rather than an LDK `DefaultRouter`.
135      */
136     public ChannelManagerConstructor(byte[] channel_manager_serialized, byte[][] channel_monitors_serialized, UserConfig config,
137                                      EntropySource entropy_source, NodeSigner node_signer, SignerProvider signer_provider,
138                                      FeeEstimator fee_estimator, ChainMonitor chain_monitor,
139                                      @Nullable Filter filter, byte[] net_graph_serialized,
140                                      ProbabilisticScoringDecayParameters scoring_decay_params,
141                                      ProbabilisticScoringFeeParameters scoring_fee_params,
142                                      byte[] probabilistic_scorer_bytes, @Nullable RouterWrapper router_wrapper,
143                                      BroadcasterInterface tx_broadcaster, Logger logger) throws InvalidSerializedDataException {
144         this.entropy_source = entropy_source;
145         this.node_signer = node_signer;
146
147         Result_NetworkGraphDecodeErrorZ graph_res = NetworkGraph.read(net_graph_serialized, logger);
148         if (!graph_res.is_ok()) {
149             throw new InvalidSerializedDataException("Serialized Network Graph was corrupt");
150         }
151         this.net_graph = ((Result_NetworkGraphDecodeErrorZ.Result_NetworkGraphDecodeErrorZ_OK)graph_res).res;
152         assert(scoring_decay_params != null);
153         assert(probabilistic_scorer_bytes != null);
154         Result_ProbabilisticScorerDecodeErrorZ scorer_res = ProbabilisticScorer.read(probabilistic_scorer_bytes, scoring_decay_params, net_graph, logger);
155         if (!scorer_res.is_ok()) {
156             throw new InvalidSerializedDataException("Serialized ProbabilisticScorer was corrupt");
157         }
158         this.prob_scorer = ((Result_ProbabilisticScorerDecodeErrorZ.Result_ProbabilisticScorerDecodeErrorZ_OK)scorer_res).res;
159         this.scorer = MultiThreadedLockableScore.of(this.prob_scorer.as_Score());
160
161         assert(scoring_fee_params != null);
162         DefaultRouter default_router = DefaultRouter.of(this.net_graph, logger, entropy_source, scorer.as_LockableScore(), scoring_fee_params);
163         if (router_wrapper != null) {
164             router = Router.new_impl(new Router.RouterInterface() {
165                 @Override
166                 public Result_RouteLightningErrorZ find_route(byte[] payer, RouteParameters route_params, ChannelDetails[] first_hops, InFlightHtlcs inflight_htlcs) {
167                     return router_wrapper.find_route(payer, route_params, first_hops, inflight_htlcs, null, null, default_router);
168                 }
169
170                 @Override
171                 public Result_RouteLightningErrorZ find_route_with_id(byte[] payer, RouteParameters route_params, ChannelDetails[] first_hops, InFlightHtlcs inflight_htlcs, byte[] payment_hash, byte[] payment_id) {
172                     return router_wrapper.find_route(payer, route_params, first_hops, inflight_htlcs, payment_hash, payment_id, default_router);
173                 }
174
175                 @Override
176                 public Result_CVec_C2Tuple_BlindedPayInfoBlindedPathZZNoneZ create_blinded_payment_paths(byte[] recipient, ChannelDetails[] first_hops, ReceiveTlvs tlvs, long amount_msats) {
177                     return default_router.as_Router().create_blinded_payment_paths(recipient, first_hops, tlvs, amount_msats);
178                 }
179             }, new MessageRouter.MessageRouterInterface() {
180                 @Override public Result_OnionMessagePathNoneZ find_path(byte[] sender, byte[][] peers, Destination destination) {
181                     return default_router.as_MessageRouter().find_path(sender, peers, destination);
182                 }
183                 @Override public Result_CVec_BlindedPathZNoneZ create_blinded_paths(byte[] recipient, byte[][] peers) {
184                     return default_router.as_MessageRouter().create_blinded_paths(recipient, peers);
185                 }
186             });
187         } else {
188             router = default_router.as_Router();
189         }
190
191         final ChannelMonitor[] monitors = new ChannelMonitor[channel_monitors_serialized.length];
192         this.channel_monitors = new TwoTuple_ThirtyTwoBytesChannelMonitorZ[monitors.length];
193         HashSet<OutPoint> monitor_funding_set = new HashSet();
194         for (int i = 0; i < monitors.length; i++) {
195             Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ res = UtilMethods.C2Tuple_ThirtyTwoBytesChannelMonitorZ_read(channel_monitors_serialized[i], entropy_source, signer_provider);
196             if (res instanceof Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ.Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ_Err) {
197                 throw new InvalidSerializedDataException("Serialized ChannelMonitor was corrupt");
198             }
199             byte[] block_hash = ((Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ.Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ_OK)res).res.get_a();
200             monitors[i] = ((Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ.Result_C2Tuple_ThirtyTwoBytesChannelMonitorZDecodeErrorZ_OK) res).res.get_b();
201             this.channel_monitors[i] = TwoTuple_ThirtyTwoBytesChannelMonitorZ.of(block_hash, monitors[i]);
202             if (!monitor_funding_set.add(monitors[i].get_funding_txo().get_a()))
203                 throw new InvalidSerializedDataException("Set of ChannelMonitors contained duplicates (ie the same funding_txo was set on multiple monitors)");
204         }
205         Result_C2Tuple_ThirtyTwoBytesChannelManagerZDecodeErrorZ res =
206                 UtilMethods.C2Tuple_ThirtyTwoBytesChannelManagerZ_read(channel_manager_serialized, entropy_source,
207                         node_signer, signer_provider, fee_estimator, chain_monitor.as_Watch(),
208                         tx_broadcaster, router, logger, config, monitors);
209         if (!res.is_ok()) {
210             throw new InvalidSerializedDataException("Serialized ChannelManager was corrupt");
211         }
212         this.channel_manager = ((Result_C2Tuple_ThirtyTwoBytesChannelManagerZDecodeErrorZ.Result_C2Tuple_ThirtyTwoBytesChannelManagerZDecodeErrorZ_OK)res).res.get_b();
213         this.channel_manager_latest_block_hash = ((Result_C2Tuple_ThirtyTwoBytesChannelManagerZDecodeErrorZ.Result_C2Tuple_ThirtyTwoBytesChannelManagerZDecodeErrorZ_OK)res).res.get_a();
214         this.chain_monitor = chain_monitor;
215         this.logger = logger;
216         if (filter != null) {
217             for (ChannelMonitor monitor : monitors) {
218                 monitor.load_outputs_to_watch(filter, logger);
219             }
220         }
221     }
222
223     /**
224      * Constructs a channel manager from the given interface implementations
225      *
226      * @param router_wrapper If provided, routes will be fetched by calling the given router rather than an LDK `DefaultRouter`.
227      */
228     public ChannelManagerConstructor(Network network, UserConfig config, byte[] current_blockchain_tip_hash, int current_blockchain_tip_height,
229                                      EntropySource entropy_source, NodeSigner node_signer, SignerProvider signer_provider,
230                                      FeeEstimator fee_estimator, ChainMonitor chain_monitor,
231                                      NetworkGraph net_graph, ProbabilisticScoringDecayParameters scoring_decay_params,
232                                      ProbabilisticScoringFeeParameters scoring_fee_params,
233                                      @Nullable RouterWrapper router_wrapper,
234                                      BroadcasterInterface tx_broadcaster, Logger logger) {
235         this.entropy_source = entropy_source;
236         this.node_signer = node_signer;
237         this.net_graph = net_graph;
238         assert(scoring_decay_params != null);
239         this.prob_scorer = ProbabilisticScorer.of(scoring_decay_params, net_graph, logger);
240         this.scorer = MultiThreadedLockableScore.of(this.prob_scorer.as_Score());
241
242         assert(scoring_fee_params != null);
243         DefaultRouter default_router = DefaultRouter.of(this.net_graph, logger, entropy_source, scorer.as_LockableScore(), scoring_fee_params);
244         if (router_wrapper != null) {
245             router = Router.new_impl(new Router.RouterInterface() {
246                 @Override public Result_RouteLightningErrorZ find_route(byte[] payer, RouteParameters route_params, ChannelDetails[] first_hops, InFlightHtlcs inflight_htlcs) {
247                     return router_wrapper.find_route(payer, route_params, first_hops, inflight_htlcs, null, null, default_router);
248                 }
249                 @Override public Result_RouteLightningErrorZ find_route_with_id(byte[] payer, RouteParameters route_params, ChannelDetails[] first_hops, InFlightHtlcs inflight_htlcs, byte[] payment_hash, byte[] payment_id) {
250                     return router_wrapper.find_route(payer, route_params, first_hops, inflight_htlcs, payment_hash, payment_id, default_router);
251                 }
252
253                 @Override
254                 public Result_CVec_C2Tuple_BlindedPayInfoBlindedPathZZNoneZ create_blinded_payment_paths(byte[] recipient, ChannelDetails[] first_hops, ReceiveTlvs tlvs, long amount_msats) {
255                     return default_router.as_Router().create_blinded_payment_paths(recipient, first_hops, tlvs, amount_msats);
256                 }
257             }, new MessageRouter.MessageRouterInterface() {
258                 @Override public Result_OnionMessagePathNoneZ find_path(byte[] sender, byte[][] peers, Destination destination) {
259                     return default_router.as_MessageRouter().find_path(sender, peers, destination);
260                 }
261                 @Override public Result_CVec_BlindedPathZNoneZ create_blinded_paths(byte[] recipient, byte[][] peers) {
262                     return default_router.as_MessageRouter().create_blinded_paths(recipient, peers);
263                 }
264             });
265         } else {
266             router = default_router.as_Router();
267         }
268         channel_monitors = new TwoTuple_ThirtyTwoBytesChannelMonitorZ[0];
269         channel_manager_latest_block_hash = null;
270         this.chain_monitor = chain_monitor;
271         BestBlock block = BestBlock.of(current_blockchain_tip_hash, current_blockchain_tip_height);
272         ChainParameters params = ChainParameters.of(network, block);
273         channel_manager = ChannelManager.of(fee_estimator, chain_monitor.as_Watch(), tx_broadcaster, router, logger,
274             entropy_source, node_signer, signer_provider, config, params, (int) (System.currentTimeMillis() / 1000));
275         this.logger = logger;
276     }
277
278     /**
279      * Abstract interface which should handle Events and persist the ChannelManager. When you call chain_sync_completed
280      * a background thread is started which will automatically call these methods for you when events occur.
281      */
282     public interface EventHandler {
283         void handle_event(Event events);
284         void persist_manager(byte[] channel_manager_bytes);
285         void persist_network_graph(byte[] network_graph);
286         void persist_scorer(byte[] scorer_bytes);
287     }
288
289     BackgroundProcessor background_processor = null;
290
291     /**
292      * Utility which adds all of the deserialized ChannelMonitors to the chain watch so that further updates from the
293      * ChannelManager are processed as normal.
294      *
295      * This also spawns a background thread which will call the appropriate methods on the provided
296      * EventHandler as required.
297      *
298      * @param use_p2p_graph_sync determines if we will sync the network graph from peers over the standard (but
299      *                           inefficient) lightning P2P protocol. Note that doing so currently requires trusting
300      *                           peers as no DoS mechanism is enforced to ensure we don't accept bogus gossip.
301      *                           Alternatively, you may sync the net_graph exposed in this object via Rapid Gossip Sync.
302      */
303     public void chain_sync_completed(EventHandler event_handler, boolean use_p2p_graph_sync) {
304         if (background_processor != null) { return; }
305         for (TwoTuple_ThirtyTwoBytesChannelMonitorZ monitor: channel_monitors) {
306             this.chain_monitor.as_Watch().watch_channel(monitor.get_b().get_funding_txo().get_a(), monitor.get_b());
307         }
308         org.ldk.structs.EventHandler ldk_handler = org.ldk.structs.EventHandler.new_impl(event_handler::handle_event);
309
310         final IgnoringMessageHandler ignoring_handler = IgnoringMessageHandler.of();
311         P2PGossipSync graph_msg_handler = P2PGossipSync.of(net_graph, Option_UtxoLookupZ.none(), logger);
312         RoutingMessageHandler routing_msg_handler;
313         if (use_p2p_graph_sync)
314             routing_msg_handler = graph_msg_handler.as_RoutingMessageHandler();
315         else
316             routing_msg_handler = ignoring_handler.as_RoutingMessageHandler();
317         OnionMessenger messenger = OnionMessenger.of(this.entropy_source, this.node_signer, this.logger, this.router.get_message_router(), channel_manager.as_OffersMessageHandler(), IgnoringMessageHandler.of().as_CustomOnionMessageHandler());
318         this.peer_manager = PeerManager.of(channel_manager.as_ChannelMessageHandler(),
319                 routing_msg_handler, messenger.as_OnionMessageHandler(),
320                 ignoring_handler.as_CustomMessageHandler(), (int)(System.currentTimeMillis() / 1000),
321                 this.entropy_source.get_secure_random_bytes(), logger, this.node_signer);
322
323         try {
324             this.nio_peer_handler = new NioPeerHandler(peer_manager);
325         } catch (IOException e) {
326             throw new IllegalStateException("We should never fail to construct nio objects unless we're on a platform that cannot run LDK.");
327         }
328
329         GossipSync gossip_sync;
330         if (use_p2p_graph_sync)
331             gossip_sync = GossipSync.p2_p(graph_msg_handler);
332         else
333             gossip_sync = GossipSync.none();
334
335         Option_WriteableScoreZ writeable_score = Option_WriteableScoreZ.some(scorer.as_WriteableScore());
336
337         background_processor = BackgroundProcessor.start(Persister.new_impl(new Persister.PersisterInterface() {
338             @Override
339             public Result_NoneIOErrorZ persist_manager(ChannelManager channel_manager) {
340                 event_handler.persist_manager(channel_manager.write());
341                 return Result_NoneIOErrorZ.ok();
342             }
343
344             @Override
345             public Result_NoneIOErrorZ persist_graph(NetworkGraph network_graph) {
346                 event_handler.persist_network_graph(network_graph.write());
347                 return Result_NoneIOErrorZ.ok();
348             }
349
350             @Override
351             public Result_NoneIOErrorZ persist_scorer(WriteableScore scorer) {
352                 event_handler.persist_scorer(scorer.write());
353                 return Result_NoneIOErrorZ.ok();
354             }
355         }), ldk_handler, this.chain_monitor, this.channel_manager, gossip_sync, peer_manager, this.logger, writeable_score);
356     }
357
358     /**
359      * Interrupt the background thread, stopping the background handling of events.
360      */
361     public void interrupt() {
362         if (this.nio_peer_handler != null)
363             this.nio_peer_handler.interrupt();
364         this.background_processor.stop();
365     }
366 }