Hold a reference when we pass Option<Trait> to rust
[ldk-java] / src / test / java / org / ldk / HumanObjectPeerTest.java
1 package org.ldk;
2
3 import org.bitcoinj.core.*;
4 import org.bitcoinj.script.Script;
5 import org.junit.jupiter.api.Test;
6 import org.ldk.batteries.ChannelManagerConstructor;
7 import org.ldk.batteries.NioPeerHandler;
8 import org.ldk.enums.AccessError;
9 import org.ldk.enums.Currency;
10 import org.ldk.enums.Network;
11 import org.ldk.structs.*;
12 import org.ldk.util.TwoTuple;
13
14 import java.io.IOException;
15 import java.lang.ref.WeakReference;
16 import java.net.InetSocketAddress;
17 import java.util.*;
18
19 class HumanObjectPeerTestInstance {
20     private final boolean nice_close;
21     private final boolean use_km_wrapper;
22     private final boolean use_manual_watch;
23     private final boolean reload_peers;
24     private final boolean break_cross_peer_refs;
25     private final boolean use_nio_peer_handler;
26     private final boolean use_filter;
27     private final boolean use_ignore_handler;
28     private final boolean use_chan_manager_constructor;
29     private final boolean use_invoice_payer;
30
31     HumanObjectPeerTestInstance(boolean nice_close, boolean use_km_wrapper, boolean use_manual_watch, boolean reload_peers, boolean break_cross_peer_refs, boolean use_nio_peer_handler, boolean use_filter, boolean use_ignore_handler, boolean use_chan_manager_constructor, boolean use_invoice_payer) {
32         this.nice_close = nice_close;
33         this.use_km_wrapper = use_km_wrapper;
34         this.use_manual_watch = use_manual_watch;
35         this.reload_peers = reload_peers;
36         this.break_cross_peer_refs = break_cross_peer_refs;
37         this.use_nio_peer_handler = use_nio_peer_handler;
38         this.use_filter = use_filter;
39         this.use_ignore_handler = use_ignore_handler;
40         this.use_chan_manager_constructor = use_chan_manager_constructor;
41         this.use_invoice_payer = use_invoice_payer;
42     }
43
44     class Peer {
45         KeysInterface manual_keysif(KeysInterface underlying_if) {
46             return KeysInterface.new_impl(new KeysInterface.KeysInterfaceInterface() {
47                 @Override public byte[] get_node_secret() { return underlying_if.get_node_secret(); }
48                 @Override public byte[] get_destination_script() { return underlying_if.get_destination_script(); }
49                 @Override public ShutdownScript get_shutdown_scriptpubkey() { return underlying_if.get_shutdown_scriptpubkey(); }
50
51                 @Override
52                 public Sign get_channel_signer(boolean inbound, long channel_value_satoshis) {
53                     Sign underlying_ck = underlying_if.get_channel_signer(inbound, channel_value_satoshis);
54                     BaseSign underlying_base = underlying_ck.get_base_sign();
55                     BaseSign.BaseSignInterface bsi = new BaseSign.BaseSignInterface() {
56                         @Override public byte[] get_per_commitment_point(long idx) {
57                             return underlying_base.get_per_commitment_point(idx);
58                         }
59                         @Override public byte[] release_commitment_secret(long idx) {
60                             return underlying_base.release_commitment_secret(idx);
61                         }
62                         @Override public Result_NoneNoneZ validate_holder_commitment(HolderCommitmentTransaction holder_tx) {
63                             return underlying_base.validate_holder_commitment(holder_tx);
64                         }
65                         @Override public byte[] channel_keys_id() {
66                             return new byte[32];
67                         }
68                         @Override public Result_C2Tuple_SignatureCVec_SignatureZZNoneZ sign_counterparty_commitment(CommitmentTransaction commitment_tx) {
69                             return underlying_base.sign_counterparty_commitment(commitment_tx);
70                         }
71                         @Override public Result_NoneNoneZ validate_counterparty_revocation(long idx, byte[] secret) {
72                             return underlying_base.validate_counterparty_revocation(idx, secret);
73                         }
74                         @Override public Result_C2Tuple_SignatureCVec_SignatureZZNoneZ sign_holder_commitment_and_htlcs(HolderCommitmentTransaction holder_commitment_tx) {
75                             return underlying_base.sign_holder_commitment_and_htlcs(holder_commitment_tx);
76                         }
77                         @Override public Result_SignatureNoneZ sign_justice_revoked_output(byte[] justice_tx, long input, long amount, byte[] per_commitment_key) {
78                             return underlying_base.sign_justice_revoked_output(justice_tx, input, amount, per_commitment_key);
79                         }
80                         @Override public Result_SignatureNoneZ sign_justice_revoked_htlc(byte[] justice_tx, long input, long amount, byte[] per_commitment_key, HTLCOutputInCommitment htlc) {
81                             return underlying_base.sign_justice_revoked_htlc(justice_tx, input, amount, per_commitment_key, htlc);
82                         }
83                         @Override public Result_SignatureNoneZ sign_counterparty_htlc_transaction(byte[] htlc_tx, long input, long amount, byte[] per_commitment_point, HTLCOutputInCommitment htlc) {
84                             return underlying_base.sign_counterparty_htlc_transaction(htlc_tx, input, amount, per_commitment_point, htlc);
85                         }
86                         @Override public Result_SignatureNoneZ sign_closing_transaction(ClosingTransaction closing_tx) {
87                             return underlying_base.sign_closing_transaction(closing_tx);
88                         }
89                         @Override public Result_SignatureNoneZ sign_channel_announcement(UnsignedChannelAnnouncement msg) {
90                             return underlying_base.sign_channel_announcement(msg);
91                         }
92                         @Override public void ready_channel(ChannelTransactionParameters params) {
93                             underlying_base.ready_channel(params);
94                         }
95                     };
96                     Sign.SignInterface si = new Sign.SignInterface() {
97                         @Override
98                         public byte[] write() {
99                             return underlying_ck.write();
100                         }
101                     };
102                     Sign resp = Sign.new_impl(si, bsi, underlying_base.get_pubkeys());
103                     must_free_objs.add(new WeakReference<>(si));
104                     must_free_objs.add(new WeakReference<>(bsi));
105                     must_free_objs.add(new WeakReference<>(resp));
106                     must_free_objs.add(new WeakReference<>(underlying_base));
107                     must_free_objs.add(new WeakReference<>(underlying_ck));
108                     return resp;
109                 }
110
111                 @Override
112                 public byte[] get_secure_random_bytes() {
113                     return underlying_if.get_secure_random_bytes();
114                 }
115
116                 @Override
117                 public Result_SignDecodeErrorZ read_chan_signer(byte[] reader) {
118                     return underlying_if.read_chan_signer(reader);
119                 }
120
121                 @Override
122                 public Result_RecoverableSignatureNoneZ sign_invoice(byte[] invoice_preimage) {
123                     return underlying_if.sign_invoice(invoice_preimage);
124                 }
125             });
126         }
127
128         Watch get_manual_watch() {
129             Watch.WatchInterface watch_impl = new Watch.WatchInterface() {
130                 public Result_NoneChannelMonitorUpdateErrZ watch_channel(OutPoint funding_txo, ChannelMonitor monitor) {
131                     synchronized (monitors) {
132                         assert monitors.put(Arrays.toString(funding_txo.get_txid()), monitor) == null;
133                     }
134                     return Result_NoneChannelMonitorUpdateErrZ.ok();
135                 }
136
137                 public Result_NoneChannelMonitorUpdateErrZ update_channel(OutPoint funding_txo, ChannelMonitorUpdate update) {
138                     synchronized (monitors) {
139                         String txid = Arrays.toString(funding_txo.get_txid());
140                         assert monitors.containsKey(txid);
141                         Result_NoneMonitorUpdateErrorZ update_res = monitors.get(txid).update_monitor(update, tx_broadcaster, fee_estimator, logger);
142                         assert update_res instanceof Result_NoneMonitorUpdateErrorZ.Result_NoneMonitorUpdateErrorZ_OK;
143                     }
144                     return Result_NoneChannelMonitorUpdateErrZ.ok();
145                 }
146
147                 @Override
148                 public MonitorEvent[] release_pending_monitor_events() {
149                     synchronized (monitors) {
150                         assert monitors.size() <= 1;
151                         for (ChannelMonitor mon : monitors.values()) {
152                             return mon.get_and_clear_pending_monitor_events();
153                         }
154                     }
155                     return new MonitorEvent[0];
156                 }
157             };
158             Watch watch = Watch.new_impl(watch_impl);
159             must_free_objs.add(new WeakReference<>(watch_impl));
160             must_free_objs.add(new WeakReference<>(watch));
161             return watch;
162         }
163
164         NioPeerHandler nio_peer_handler;
165         short nio_port;
166         final byte seed;
167         final Logger logger;
168         final FeeEstimator fee_estimator;
169         final BroadcasterInterface tx_broadcaster;
170         final KeysManager explicit_keys_manager;
171         final KeysInterface keys_interface;
172         final ChainMonitor chain_monitor;
173         final NetworkGraph router;
174         NetGraphMsgHandler route_handler;
175         final Watch chain_watch;
176         final HashSet<String> filter_additions;
177         Option_FilterZ filter;
178         ChannelManager chan_manager;
179         PeerManager peer_manager;
180         final HashMap<String, ChannelMonitor> monitors; // Wow I forgot just how terrible Java is - we can't put a byte array here.
181         byte[] node_id;
182         byte[] connected_peer_node_id = null;
183         final LinkedList<byte[]> broadcast_set = new LinkedList<>();
184         final LinkedList<Event> pending_manager_events = new LinkedList<>();
185         private final CustomMessageHandler custom_message_handler;
186         final LinkedList<byte[]> received_custom_messages = new LinkedList<>();
187         final LinkedList<byte[]> custom_messages_to_send = new LinkedList<>();
188         ChannelManagerConstructor constructor = null;
189         InvoicePayer payer = null;
190         GcCheck obj = new GcCheck();
191
192         private TwoTuple_OutPointScriptZ test_mon_roundtrip(ChannelMonitor mon) {
193             // Because get_funding_txo() returns an OutPoint in a tuple that is a reference to an OutPoint inside the
194             // ChannelMonitor, its a good test to ensure that the OutPoint isn't freed (or is cloned) before the
195             // ChannelMonitor is. This used to be broken.
196             Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ roundtrip_monitor = UtilMethods.C2Tuple_BlockHashChannelMonitorZ_read(mon.write(), keys_interface);
197             assert roundtrip_monitor instanceof Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ.Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ_OK;
198             TwoTuple_OutPointScriptZ funding_txo = ((Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ.Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ_OK) roundtrip_monitor).res.get_b().get_funding_txo();
199             System.gc(); System.runFinalization(); // Give the GC a chance to run.
200             return funding_txo;
201         }
202
203         private Peer(Object _dummy, byte seed) {
204             logger = Logger.new_impl((String arg) -> System.out.println(seed + ": " + arg));
205             fee_estimator = FeeEstimator.new_impl((confirmation_target -> 253));
206             tx_broadcaster = BroadcasterInterface.new_impl(tx -> {
207                 synchronized (broadcast_set) {
208                     broadcast_set.add(tx);
209                     broadcast_set.notifyAll();
210                 }
211             });
212             monitors = new HashMap<>();
213             this.seed = seed;
214             Persist persister = Persist.new_impl(new Persist.PersistInterface() {
215                 @Override
216                 public Result_NoneChannelMonitorUpdateErrZ persist_new_channel(OutPoint id, ChannelMonitor data, MonitorUpdateId update_id) {
217                     synchronized (monitors) {
218                         String key = Arrays.toString(id.to_channel_id());
219                         assert monitors.put(key, data) == null;
220                         TwoTuple_OutPointScriptZ res = test_mon_roundtrip(data);
221                         assert Arrays.equals(res.get_a().get_txid(), id.get_txid());
222                         assert res.get_a().get_index() == id.get_index();
223                     }
224                     return Result_NoneChannelMonitorUpdateErrZ.ok();
225                 }
226
227                 @Override
228                 public Result_NoneChannelMonitorUpdateErrZ update_persisted_channel(OutPoint id, ChannelMonitorUpdate update, ChannelMonitor data, MonitorUpdateId update_id) {
229                     synchronized (monitors) {
230                         String key = Arrays.toString(id.to_channel_id());
231                         assert monitors.put(key, data) != null;
232                         TwoTuple_OutPointScriptZ res = test_mon_roundtrip(data);
233                         assert Arrays.equals(res.get_a().get_txid(), id.get_txid());
234                         assert res.get_a().get_index() == id.get_index();
235                     }
236                     return Result_NoneChannelMonitorUpdateErrZ.ok();
237                 }
238             });
239
240             filter_additions = new HashSet<>();
241             if (use_filter) {
242                 this.filter = Option_FilterZ.some(Filter.new_impl(new Filter.FilterInterface() {
243                     @Override public void register_tx(byte[] txid, byte[] script_pubkey) {
244                         filter_additions.add(Arrays.toString(txid));
245                     }
246                     @Override public Option_C2Tuple_usizeTransactionZZ register_output(WatchedOutput output) {
247                         filter_additions.add(Arrays.toString(output.get_outpoint().get_txid()) + ":" + output.get_outpoint().get_index());
248                         return Option_C2Tuple_usizeTransactionZZ.none();
249                     }
250                 }));
251             } else {
252                 this.filter = Option_FilterZ.none();
253             }
254
255             if (use_manual_watch) {
256                 chain_watch = get_manual_watch();
257                 chain_monitor = null;
258             } else {
259                 chain_monitor = ChainMonitor.of(filter, tx_broadcaster, logger, fee_estimator, persister);
260                 chain_watch = chain_monitor.as_Watch();
261             }
262
263             byte[] key_seed = new byte[32];
264             for (byte i = 0; i < 32; i++) {
265                 key_seed[i] = (byte) (i ^ seed);
266             }
267             KeysManager keys = KeysManager.of(key_seed, System.currentTimeMillis() / 1000, (int) (System.currentTimeMillis() * 1000));
268             if (use_km_wrapper) {
269                 this.keys_interface = manual_keysif(keys.as_KeysInterface());
270                 this.explicit_keys_manager = null;
271             } else {
272                 this.keys_interface = keys.as_KeysInterface();
273                 this.explicit_keys_manager = keys;
274             }
275             this.router = NetworkGraph.of(new byte[32]);
276             this.route_handler = NetGraphMsgHandler.of(this.router, Option_AccessZ.some(Access.new_impl(new Access.AccessInterface() {
277                 @Override
278                 public Result_TxOutAccessErrorZ get_utxo(byte[] genesis_hash, long short_channel_id) {
279                     // We don't exchange any gossip, so should never actually get called, but providing a Some(Access)
280                     // is a good test of our Option<Trait> free'ing, which used to be broken and relies on a dirty hack.
281                     assert false;
282                     return Result_TxOutAccessErrorZ.err(AccessError.LDKAccessError_UnknownTx);
283                 }
284             })), logger);
285
286             this.custom_message_handler = CustomMessageHandler.new_impl(new CustomMessageHandler.CustomMessageHandlerInterface() {
287                 @Override
288                 public Result_NoneLightningErrorZ handle_custom_message(Type msg, byte[] sender_node_id) {
289                     synchronized (received_custom_messages) {
290                         received_custom_messages.add(msg.write());
291                         received_custom_messages.notifyAll();
292                     }
293                     return Result_NoneLightningErrorZ.ok();
294                 }
295
296                 @Override
297                 public TwoTuple_PublicKeyTypeZ[] get_and_clear_pending_msg() {
298                     byte[][] bytes;
299                     synchronized (custom_messages_to_send) {
300                         bytes = custom_messages_to_send.toArray(new byte[0][0]);
301                         custom_messages_to_send.clear();
302                     }
303                     TwoTuple_PublicKeyTypeZ[] ret = new TwoTuple_PublicKeyTypeZ[bytes.length];
304                     for (int i = 0; i < bytes.length; i++) {
305                         final int msg_idx = i;
306                         ret[i] = TwoTuple_PublicKeyTypeZ.of(connected_peer_node_id, Type.new_impl(new Type.TypeInterface() {
307                             @Override public short type_id() { return 4096; }
308                             @Override public String debug_str() { return "Custom Java Message"; }
309                             @Override public byte[] write() { return bytes[msg_idx]; }
310                         }));
311                     }
312                     return ret;
313                 }
314             }, (message_type, buffer) -> {
315                 assert message_type == 4096;
316                 return Result_COption_TypeZDecodeErrorZ.ok(Option_TypeZ.some(Type.new_impl(new Type.TypeInterface() {
317                     @Override public short type_id() { return 4096; }
318                     @Override public String debug_str() { return "Custom Java-Decoded Message"; }
319                     @Override public byte[] write() { return buffer; }
320                 })));
321             });
322         }
323         private void bind_nio() {
324             if (!use_nio_peer_handler) return;
325             if (use_chan_manager_constructor) {
326                 this.nio_peer_handler = this.constructor.nio_peer_handler;
327             } else {
328                 try { this.nio_peer_handler = new NioPeerHandler(peer_manager); } catch (IOException e) { assert false; }
329             }
330             for (short i = 10_000; true; i++) {
331                 try {
332                     nio_peer_handler.bind_listener(new InetSocketAddress("127.0.0.1", i));
333                     nio_port = i;
334                     break;
335                 } catch (IOException e) { assert i < 10_500; }
336             }
337         }
338         Peer(byte seed) {
339             this(null, seed);
340             if (use_chan_manager_constructor) {
341                 if (use_ignore_handler) {
342                     this.constructor = new ChannelManagerConstructor(Network.LDKNetwork_Bitcoin, UserConfig.with_default(), new byte[32], 0,
343                                                         this.keys_interface, this.fee_estimator, this.chain_monitor, null, this.tx_broadcaster, this.logger);
344                 } else {
345                     this.constructor = new ChannelManagerConstructor(Network.LDKNetwork_Bitcoin, UserConfig.with_default(), new byte[32], 0,
346                                                         this.keys_interface, this.fee_estimator, this.chain_monitor, this.router, this.tx_broadcaster, this.logger);
347                 }
348                 LockableScore scorer = null;
349                 if (use_invoice_payer) { scorer = LockableScore.of(Scorer.with_default().as_Score()); }
350                 constructor.chain_sync_completed(new ChannelManagerConstructor.EventHandler() {
351                     @Override public void handle_event(Event event) {
352                         synchronized (pending_manager_events) {
353                             pending_manager_events.add(event);
354                             pending_manager_events.notifyAll();
355                         }
356                     }
357                     @Override public void persist_manager(byte[] channel_manager_bytes) { assert channel_manager_bytes.length > 1; }
358                 }, scorer);
359                 this.chan_manager = constructor.channel_manager;
360                 this.peer_manager = constructor.peer_manager;
361                 this.payer = constructor.payer;
362                 must_free_objs.add(new WeakReference<>(this.chan_manager));
363             } else {
364                 ChainParameters params = ChainParameters.of(Network.LDKNetwork_Bitcoin, BestBlock.of(new byte[32], 0));
365                 this.chan_manager = ChannelManager.of(this.fee_estimator, chain_watch, tx_broadcaster, logger, this.keys_interface, UserConfig.with_default(), params);
366                 byte[] random_data = keys_interface.get_secure_random_bytes();
367                 this.peer_manager = PeerManager.of(chan_manager.as_ChannelMessageHandler(), route_handler.as_RoutingMessageHandler(), keys_interface.get_node_secret(), random_data, logger, this.custom_message_handler);
368                 if (use_invoice_payer) {
369                     this.payer = InvoicePayer.of(this.chan_manager.as_Payer(), Router.new_impl(new Router.RouterInterface() {
370                         @Override
371                         public Result_RouteLightningErrorZ find_route(byte[] payer, RouteParameters params, ChannelDetails[] first_hops, Score scorer) {
372                             return UtilMethods.find_route(payer, params, router, first_hops, logger, scorer);
373                         }
374                     }), LockableScore.of(Score.new_impl(new Score.ScoreInterface() {
375                         @Override public void payment_path_failed(RouteHop[] path, long scid) {}
376                         @Override public long channel_penalty_msat(long scid, NodeId src, NodeId dst) { return 0; }
377                         @Override public byte[] write() { assert false; return null; }
378                     })), logger, EventHandler.new_impl(new EventHandler.EventHandlerInterface() {
379                         @Override public void handle_event(Event event) {
380                             synchronized (pending_manager_events) {
381                                 pending_manager_events.add(event);
382                                 pending_manager_events.notifyAll();
383                             }
384                         }
385                     }), RetryAttempts.of(0));
386                 }
387             }
388
389             this.node_id = chan_manager.get_our_node_id();
390             this.filter = null;
391             bind_nio();
392             System.gc();
393         }
394
395         Object ptr_to;
396         Peer(Peer orig) {
397             this(null, orig.seed);
398             if (use_chan_manager_constructor) {
399                 byte[][] monitors = {orig.monitors.values().stream().iterator().next().write()};
400                 byte[] serialized = orig.chan_manager.write();
401                 try {
402                     Filter filter_nullable = null;
403                     if (this.filter instanceof Option_FilterZ.Some) {
404                         filter_nullable = ((Option_FilterZ.Some) this.filter).some;
405                     }
406                     if (use_ignore_handler) {
407                         this.constructor = new ChannelManagerConstructor(serialized, monitors, this.keys_interface,
408                                 this.fee_estimator, this.chain_monitor, filter_nullable, null, this.tx_broadcaster, this.logger);
409                     } else {
410                         this.constructor = new ChannelManagerConstructor(serialized, monitors, this.keys_interface,
411                                 this.fee_estimator, this.chain_monitor, filter_nullable, this.router, this.tx_broadcaster, this.logger);
412                     }
413                     LockableScore scorer = null;
414                     if (use_invoice_payer) { scorer = LockableScore.of(Scorer.with_default().as_Score()); }
415                     constructor.chain_sync_completed(new ChannelManagerConstructor.EventHandler() {
416                         @Override public void handle_event(Event event) {
417                             synchronized (pending_manager_events) {
418                                 pending_manager_events.add(event);
419                                 pending_manager_events.notifyAll();
420                             }
421                         }
422                         @Override public void persist_manager(byte[] channel_manager_bytes) { assert channel_manager_bytes.length > 1; }
423                     }, scorer);
424                     this.chan_manager = constructor.channel_manager;
425                     this.payer = constructor.payer;
426                     this.peer_manager = constructor.peer_manager;
427                     must_free_objs.add(new WeakReference<>(this.chan_manager));
428                     // If we are using a ChannelManagerConstructor, we may have pending events waiting on the old peer
429                     // which have been removed from the ChannelManager but which we still need to handle.
430                     this.pending_manager_events.addAll(orig.pending_manager_events);
431                     if (!this.pending_manager_events.isEmpty()) {
432                         // However, this implies cross_reload_ref_pollution
433                         cross_reload_ref_pollution = true;
434                     }
435                 } catch (ChannelManagerConstructor.InvalidSerializedDataException e) {
436                     assert false;
437                 }
438             } else {
439                 ChannelMonitor[] monitors = new ChannelMonitor[1];
440                 assert orig.monitors.size() == 1;
441                 if (!break_cross_peer_refs) {
442                     monitors[0] = orig.monitors.values().stream().iterator().next();
443                 } else {
444                     byte[] serialized = orig.monitors.values().stream().iterator().next().write();
445                     Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ res =
446                             UtilMethods.C2Tuple_BlockHashChannelMonitorZ_read(serialized, this.keys_interface);
447                     assert res instanceof Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ.Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ_OK;
448                     monitors[0] = ((Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ.Result_C2Tuple_BlockHashChannelMonitorZDecodeErrorZ_OK) res).res.get_b();
449                 }
450                 byte[] serialized = orig.chan_manager.write();
451                 Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ read_res =
452                         UtilMethods.C2Tuple_BlockHashChannelManagerZ_read(serialized, this.keys_interface, this.fee_estimator, this.chain_watch, this.tx_broadcaster, this.logger, UserConfig.with_default(), monitors);
453                 assert read_res instanceof Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ.Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ_OK;
454                 this.chan_manager = ((Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ.Result_C2Tuple_BlockHashChannelManagerZDecodeErrorZ_OK) read_res).res.get_b();
455                 this.chain_watch.watch_channel(monitors[0].get_funding_txo().get_a(), monitors[0]);
456                 byte[] random_data = keys_interface.get_secure_random_bytes();
457                 this.peer_manager = PeerManager.of(chan_manager.as_ChannelMessageHandler(), route_handler.as_RoutingMessageHandler(), keys_interface.get_node_secret(), random_data, logger, this.custom_message_handler);
458                 if (!break_cross_peer_refs && (use_manual_watch || use_km_wrapper)) {
459                     // When we pass monitors[0] into chain_watch.watch_channel we create a reference from the new Peer to a
460                     // field in the old peer, preventing freeing of the original Peer until the new Peer is freed. Thus, we
461                     // shouldn't bother waiting for the original to be freed later on.
462                     cross_reload_ref_pollution = true;
463                 }
464                 if (use_invoice_payer) {
465                     this.payer = InvoicePayer.of(this.chan_manager.as_Payer(), Router.new_impl(new Router.RouterInterface() {
466                         @Override
467                         public Result_RouteLightningErrorZ find_route(byte[] payer, RouteParameters params, ChannelDetails[] first_hops, Score scorer) {
468                             return UtilMethods.find_route(payer, params, router, first_hops, logger, scorer);
469                         }
470                     }), LockableScore.of(Score.new_impl(new Score.ScoreInterface() {
471                         @Override public void payment_path_failed(RouteHop[] path, long scid) {}
472                         @Override public long channel_penalty_msat(long scid, NodeId src, NodeId dst) { return 0; }
473                         @Override public byte[] write() { assert false; return null; }
474                     })), logger, EventHandler.new_impl(new EventHandler.EventHandlerInterface() {
475                         @Override public void handle_event(Event event) {
476                             synchronized (pending_manager_events) {
477                                 pending_manager_events.add(event);
478                                 pending_manager_events.notifyAll();
479                             }
480                         }
481                     }), RetryAttempts.of(0));
482                 }
483             }
484             this.node_id = chan_manager.get_our_node_id();
485             bind_nio();
486
487             if (cross_reload_ref_pollution) {
488                 // This really, really needs to be handled at the bindings layer, but its rather complicated -
489                 // ChannelSigners can be cloned and passed around without java being involved, resulting in them being
490                 // owned by both one or more ChannelMonitors and a ChannelManager, with only one having proper pointers
491                 // to the ChannelSigner. Ideally, the ChannelSigner would have a global reference to the Java
492                 // implementation class, but that results in circular references. Instead, we need some ability to,
493                 // while cloning ChannelSigners, add new references in the calling Java struct (ie ChannelMonitor) to
494                 // the ChannelSigner.
495                 this.ptr_to = orig.chan_manager;
496             }
497             this.filter = null;
498         }
499
500         TwoTuple_TxidCVec_C2Tuple_u32TxOutZZZ[] connect_block(Block b, int height, long expected_monitor_update_len) {
501             byte[] header = Arrays.copyOfRange(b.bitcoinSerialize(), 0, 80);
502             TwoTuple_usizeTransactionZ[] txn;
503             if (b.hasTransactions()) {
504                 assert b.getTransactions().size() == 1;
505                 TwoTuple_usizeTransactionZ txp = TwoTuple_usizeTransactionZ.of((long) 0, b.getTransactions().get(0).bitcoinSerialize());
506                 txn = new TwoTuple_usizeTransactionZ[]{txp};
507             } else
508                 txn = new TwoTuple_usizeTransactionZ[0];
509             if (chain_monitor != null) {
510                 chan_manager.as_Listen().block_connected(b.bitcoinSerialize(), height);
511                 chain_monitor.as_Listen().block_connected(b.bitcoinSerialize(), height);
512             } else {
513                 chan_manager.as_Confirm().transactions_confirmed(header, txn, height);
514                 chan_manager.as_Confirm().best_block_updated(header, height);
515                 // Connect manually if we aren't using a ChainMonitor and are implementing Watch ourselves
516                 synchronized (monitors) {
517                     assert monitors.size() == 1;
518                     for (ChannelMonitor mon : monitors.values()) {
519                         TwoTuple_TxidCVec_C2Tuple_u32TxOutZZZ[] ret = mon.block_connected(header, txn, height, tx_broadcaster, fee_estimator, logger);
520                         assert ret.length == expected_monitor_update_len;
521                         return ret;
522                     }
523                 }
524             }
525             return null;
526         }
527
528         Event[] get_monitor_events(int expected_len) {
529             if (use_chan_manager_constructor) {
530                 while (true) {
531                     synchronized (this.pending_manager_events) {
532                         if (expected_len != 0 && this.pending_manager_events.size() == expected_len) {
533                             break;
534                         }
535                     }
536                     if (expected_len == 0) {
537                         try { Thread.sleep(500); } catch (InterruptedException e) { assert false; }
538                         break;
539                     } else {
540                         Thread.yield();
541                     }
542                 }
543                 synchronized (this.pending_manager_events) {
544                     Event[] res = this.pending_manager_events.toArray(new Event[0]);
545                     this.pending_manager_events.clear();
546                     assert res.length == expected_len;
547                     return res;
548                 }
549             } else if (chain_monitor != null) {
550                 ArrayList<Event> l = new ArrayList<Event>();
551                 chain_monitor.as_EventsProvider().process_pending_events(EventHandler.new_impl(l::add));
552                 assert l.size() == expected_len;
553                 return l.toArray(new Event[0]);
554             } else {
555                 synchronized (monitors) {
556                     assert monitors.size() == 1;
557                     for (ChannelMonitor mon : monitors.values()) {
558                         Event[] res = mon.get_and_clear_pending_events();
559                         assert res.length == expected_len;
560                         return res;
561                     }
562                     return null;
563                 }
564             }
565         }
566
567         Event[] get_manager_events(int expected_len, Peer peer1, Peer peer2) {
568             assert expected_len != 0;
569             if (!use_nio_peer_handler) {
570                 maybe_exchange_peer_messages(peer1, peer2);
571             }
572             Event[] res = new Event[0];
573             if (use_chan_manager_constructor) {
574                 while (res.length < expected_len) {
575                     synchronized (this.pending_manager_events) {
576                         res = this.pending_manager_events.toArray(res);
577                         assert res.length == expected_len || res.length == 0; // We don't handle partial results
578                         this.pending_manager_events.clear();
579                         if (res.length < expected_len) {
580                             try { this.pending_manager_events.wait(); } catch (InterruptedException e) { assert false; }
581                         }
582                     }
583                 }
584             } else {
585                 ArrayList<Event> l = new ArrayList<Event>();
586                 while (l.size() < expected_len) {
587                     Thread.yield();
588                     if (use_nio_peer_handler) {
589                         peer1.nio_peer_handler.check_events();
590                         peer2.nio_peer_handler.check_events();
591                     }
592                     chan_manager.as_EventsProvider().process_pending_events(EventHandler.new_impl(l::add));
593                     assert l.size() == expected_len || l.size() == 0; // We don't handle partial results
594                 }
595                 return l.toArray(new Event[0]);
596             }
597             assert res.length == expected_len;
598             return res;
599         }
600     }
601
602     static class DescriptorHolder { SocketDescriptor val; }
603
604     boolean running = false;
605     final LinkedList<Runnable> runqueue = new LinkedList();
606     boolean ran = false;
607     Thread t = new Thread(() -> {
608             while (true) {
609                 try {
610                     Runnable r;
611                     synchronized (runqueue) {
612                         while (runqueue.isEmpty()) {
613                             runqueue.wait();
614                         }
615                         running = true;
616                         r = runqueue.pollFirst();
617                     }
618                     r.run();
619                     synchronized (runqueue) {
620                         running = false;
621                         runqueue.notifyAll();
622                     }
623                 } catch (InterruptedException e) {
624                     return;
625                 }
626             }
627     });
628
629     void maybe_exchange_peer_messages(Peer peer1, Peer peer2) {
630         if (!use_nio_peer_handler) {
631             synchronized (runqueue) {
632                 ran = false;
633             }
634             while (true) {
635                 peer1.peer_manager.process_events();
636                 peer2.peer_manager.process_events();
637                 synchronized (runqueue) {
638                     if (runqueue.isEmpty() && !running) {
639                         if (ran) {
640                             ran = false;
641                             continue;
642                         } else { break; }
643                     }
644                     try { runqueue.wait(); } catch (InterruptedException e) { assert false; }
645                 }
646             }
647         } else if (!use_chan_manager_constructor) {
648             peer1.nio_peer_handler.check_events();
649             peer2.nio_peer_handler.check_events();
650         }
651     }
652     void do_read_event(PeerManager pm, SocketDescriptor descriptor, byte[] data) {
653         if (!t.isAlive()) t.start();
654         synchronized (runqueue) {
655             ran = true;
656             runqueue.add(() -> {
657                 Result_boolPeerHandleErrorZ res = pm.read_event(descriptor, data);
658                 assert res instanceof Result_boolPeerHandleErrorZ.Result_boolPeerHandleErrorZ_OK;
659             });
660             runqueue.notifyAll();
661         }
662         must_free_objs.add(new WeakReference<>(data));
663     }
664
665     void connect_peers(final Peer peer1, final Peer peer2) {
666         peer2.connected_peer_node_id = peer1.node_id;
667         peer1.connected_peer_node_id = peer2.node_id;
668         if (use_nio_peer_handler) {
669             try {
670                 peer1.nio_peer_handler.connect(peer2.chan_manager.get_our_node_id(), new InetSocketAddress("127.0.0.1", peer2.nio_port), 100);
671             } catch (IOException e) { assert false; }
672             while (peer1.peer_manager.get_peer_node_ids().length == 0 || peer2.peer_manager.get_peer_node_ids().length == 0) {
673                 Thread.yield();
674             }
675         } else {
676             DescriptorHolder descriptor1 = new DescriptorHolder();
677             DescriptorHolder descriptor1ref = descriptor1;
678             SocketDescriptor descriptor2 = SocketDescriptor.new_impl(new SocketDescriptor.SocketDescriptorInterface() {
679                 @Override
680                 public long send_data(byte[] data, boolean resume_read) {
681                     do_read_event(peer1.peer_manager, descriptor1ref.val, data);
682                     return data.length;
683                 }
684
685                 @Override public void disconnect_socket() { assert false; }
686                 @Override public boolean eq(SocketDescriptor other_arg) { return other_arg.hash() == 2; }
687                 @Override public long hash() { return 2; }
688             });
689
690             descriptor1.val = SocketDescriptor.new_impl(new SocketDescriptor.SocketDescriptorInterface() {
691                 @Override
692                 public long send_data(byte[] data, boolean resume_read) {
693                     do_read_event(peer2.peer_manager, descriptor2, data);
694                     return data.length;
695                 }
696
697                 @Override public void disconnect_socket() { assert false; }
698                 @Override public boolean eq(SocketDescriptor other_arg) { return other_arg.hash() == 1; }
699                 @Override public long hash() { return 1; }
700             });
701
702             Result_CVec_u8ZPeerHandleErrorZ conn_res = peer1.peer_manager.new_outbound_connection(peer2.node_id, descriptor1.val);
703             assert conn_res instanceof Result_CVec_u8ZPeerHandleErrorZ.Result_CVec_u8ZPeerHandleErrorZ_OK;
704
705             Result_NonePeerHandleErrorZ inbound_conn_res = peer2.peer_manager.new_inbound_connection(descriptor2);
706             assert inbound_conn_res instanceof Result_NonePeerHandleErrorZ.Result_NonePeerHandleErrorZ_OK;
707             do_read_event(peer2.peer_manager, descriptor2, ((Result_CVec_u8ZPeerHandleErrorZ.Result_CVec_u8ZPeerHandleErrorZ_OK) conn_res).res);
708
709             maybe_exchange_peer_messages(peer1, peer2);
710         }
711     }
712
713     TestState do_test_message_handler() throws InterruptedException {
714         Peer peer1 = new Peer((byte) 1);
715         Peer peer2 = new Peer((byte) 2);
716
717         connect_peers(peer1, peer2);
718
719         Result__u832APIErrorZ cc_res = peer1.chan_manager.create_channel(peer2.node_id, 100000, 1000, 42, null);
720         assert cc_res instanceof Result__u832APIErrorZ.Result__u832APIErrorZ_OK;
721
722         // Previously, this was a SEGFAULT instead of get_funding_txo() returning null.
723         ChannelDetails pre_funding_chan = peer1.chan_manager.list_channels()[0];
724         assert pre_funding_chan.get_funding_txo() == null;
725
726         Event[] events = peer1.get_manager_events(1, peer1, peer2);
727         assert events[0] instanceof Event.FundingGenerationReady;
728         assert ((Event.FundingGenerationReady) events[0]).channel_value_satoshis == 100000;
729         assert ((Event.FundingGenerationReady) events[0]).user_channel_id == 42;
730         byte[] funding_spk = ((Event.FundingGenerationReady) events[0]).output_script;
731         assert funding_spk.length == 34 && funding_spk[0] == 0 && funding_spk[1] == 32; // P2WSH
732         byte[] chan_id = ((Event.FundingGenerationReady) events[0]).temporary_channel_id;
733
734         NetworkParameters bitcoinj_net = NetworkParameters.fromID(NetworkParameters.ID_MAINNET);
735
736         Transaction funding = new Transaction(bitcoinj_net);
737         funding.addInput(new TransactionInput(bitcoinj_net, funding, new byte[0]));
738         funding.getInputs().get(0).setWitness(new TransactionWitness(2)); // Make sure we don't complain about lack of witness
739         funding.getInput(0).getWitness().setPush(0, new byte[]{0x1});
740         funding.addOutput(Coin.SATOSHI.multiply(100000), new Script(funding_spk));
741         Result_NoneAPIErrorZ funding_res = peer1.chan_manager.funding_transaction_generated(chan_id, funding.bitcoinSerialize());
742         assert funding_res instanceof Result_NoneAPIErrorZ.Result_NoneAPIErrorZ_OK;
743
744         maybe_exchange_peer_messages(peer1, peer2);
745         synchronized (peer1.broadcast_set) {
746             while (peer1.broadcast_set.size() != 1) {
747                 peer1.broadcast_set.wait();
748             }
749         }
750
751         assert peer1.broadcast_set.size() == 1;
752         assert Arrays.equals(peer1.broadcast_set.get(0), funding.bitcoinSerialize());
753         peer1.broadcast_set.clear();
754
755         Block b = new Block(bitcoinj_net, 2, Sha256Hash.ZERO_HASH, Sha256Hash.ZERO_HASH, 42, 0, 0, Arrays.asList(new Transaction[]{funding}));
756         peer1.connect_block(b, 1, 0);
757         peer2.connect_block(b, 1, 0);
758
759         for (int height = 2; height < 10; height++) {
760             b = new Block(bitcoinj_net, 2, b.getHash(), Sha256Hash.ZERO_HASH, 42, 0, 0, Arrays.asList(new Transaction[0]));
761             peer1.connect_block(b, height, 0);
762             peer2.connect_block(b, height, 0);
763         }
764
765         maybe_exchange_peer_messages(peer1, peer2);
766         while (peer1.chan_manager.list_usable_channels().length != 1 || peer2.chan_manager.list_usable_channels().length != 1)
767
768         peer1.chan_manager.list_channels();
769         ChannelDetails[] peer1_chans = peer1.chan_manager.list_usable_channels();
770         ChannelDetails[] peer2_chans = peer2.chan_manager.list_usable_channels();
771         assert peer1_chans.length == 1;
772         assert peer2_chans.length == 1;
773         assert peer1_chans[0].get_channel_value_satoshis() == 100000;
774         assert peer1_chans[0].get_is_usable();
775         Option_u64Z short_chan_id = peer1_chans[0].get_short_channel_id();
776         assert short_chan_id instanceof Option_u64Z.Some;
777         assert ((Option_u64Z.Some)short_chan_id).some == (1L << 40); // 0th output in the 0th transaction in the 1st block
778         assert Arrays.equals(peer1_chans[0].get_channel_id(), funding.getTxId().getReversedBytes());
779         assert Arrays.equals(peer2_chans[0].get_channel_id(), funding.getTxId().getReversedBytes());
780
781         Result_InvoiceSignOrCreationErrorZ invoice = UtilMethods.create_invoice_from_channelmanager(peer2.chan_manager, peer2.keys_interface, Currency.LDKCurrency_Bitcoin, Option_u64Z.some(10000000), "Invoice Description");
782         assert invoice instanceof Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK;
783         System.out.println("Got invoice: " + ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.to_str());
784
785         Result_InvoiceNoneZ parsed_invoice = Invoice.from_str(((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.to_str());
786         assert parsed_invoice instanceof Result_InvoiceNoneZ.Result_InvoiceNoneZ_OK;
787         assert Arrays.equals(((Result_InvoiceNoneZ.Result_InvoiceNoneZ_OK) parsed_invoice).res.payment_hash(), ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.payment_hash());
788         SignedRawInvoice signed_raw = ((Result_InvoiceNoneZ.Result_InvoiceNoneZ_OK) parsed_invoice).res.into_signed_raw();
789         RawInvoice raw_invoice = signed_raw.raw_invoice();
790         byte[] desc_hash = raw_invoice.hash();
791         Description raw_invoice_description = raw_invoice.description();
792         String description_string = raw_invoice_description.into_inner();
793         assert description_string.equals("Invoice Description");
794
795         if (!use_invoice_payer) {
796             byte[] payment_hash = ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.payment_hash();
797             byte[] payment_secret = ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.payment_secret();
798             byte[] dest_node_id = ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.recover_payee_pub_key();
799             assert Arrays.equals(dest_node_id, peer2.node_id);
800             InvoiceFeatures invoice_features = ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.features();
801             RouteHint[] route_hints = ((Result_InvoiceSignOrCreationErrorZ.Result_InvoiceSignOrCreationErrorZ_OK) invoice).res.route_hints();
802
803             Payee payee = Payee.of(peer2.node_id, invoice_features, route_hints, Option_u64Z.none());
804             RouteParameters route_params = RouteParameters.of(payee, 10000000, 42);
805             Result_RouteLightningErrorZ route_res = UtilMethods.find_route(
806                     peer1.chan_manager.get_our_node_id(), route_params, peer1.router,
807                     peer1_chans, peer1.logger, Scorer.with_default().as_Score());
808             assert route_res instanceof Result_RouteLightningErrorZ.Result_RouteLightningErrorZ_OK;
809             Route route = ((Result_RouteLightningErrorZ.Result_RouteLightningErrorZ_OK) route_res).res;
810             assert route.get_paths().length == 1;
811             assert route.get_paths()[0].length == 1;
812             assert route.get_paths()[0][0].get_fee_msat() == 10000000;
813
814             Result_PaymentIdPaymentSendFailureZ payment_res = peer1.chan_manager.send_payment(route, payment_hash, payment_secret);
815             assert payment_res instanceof Result_PaymentIdPaymentSendFailureZ.Result_PaymentIdPaymentSendFailureZ_OK;
816
817             RouteHop[][] hops = new RouteHop[1][1];
818             byte[] hop_pubkey = new byte[33];
819             hop_pubkey[0] = 3;
820             hop_pubkey[1] = 42;
821             hops[0][0] = RouteHop.of(hop_pubkey, NodeFeatures.known(), 42, ChannelFeatures.known(), 100, 0);
822             Route r2 = Route.of(hops, payee);
823             payment_res = peer1.chan_manager.send_payment(r2, payment_hash, payment_secret);
824             assert payment_res instanceof Result_PaymentIdPaymentSendFailureZ.Result_PaymentIdPaymentSendFailureZ_Err;
825         } else {
826             Result_PaymentIdPaymentErrorZ send_res = peer1.payer.pay_invoice(((Result_InvoiceNoneZ.Result_InvoiceNoneZ_OK) parsed_invoice).res);
827             assert send_res instanceof Result_PaymentIdPaymentErrorZ.Result_PaymentIdPaymentErrorZ_OK;
828         }
829
830         if (reload_peers) {
831             if (use_chan_manager_constructor) {
832                 peer1.constructor.interrupt();
833                 peer2.constructor.interrupt();
834             } else if (use_nio_peer_handler) {
835                 peer1.nio_peer_handler.interrupt();
836                 peer2.nio_peer_handler.interrupt();
837             }
838             WeakReference<Peer> op1 = new WeakReference<Peer>(peer1);
839             peer1 = new Peer(peer1);
840             peer2 = new Peer(peer2);
841             return new TestState(op1, peer1, peer2, b.getHash());
842         }
843         return new TestState(null, peer1, peer2, b.getHash());
844     }
845
846     boolean cross_reload_ref_pollution = false;
847     class TestState {
848         private final WeakReference<Peer> ref_block;
849         private final Peer peer1;
850         private final Peer peer2;
851         public Sha256Hash best_blockhash;
852
853         public TestState(WeakReference<Peer> ref_block, Peer peer1, Peer peer2, Sha256Hash best_blockhash) {
854             this.ref_block = ref_block;
855             this.peer1 = peer1;
856             this.peer2 = peer2;
857             this.best_blockhash = best_blockhash;
858         }
859     }
860     void do_test_message_handler_b(TestState state) throws InterruptedException {
861         GcCheck obj = new GcCheck();
862         if (state.ref_block != null) {
863             // Ensure the original peers get freed before we move on. Note that we have to be in a different function
864             // scope to do so as the (at least current OpenJDK) JRE won't release anything created in the same scope.
865             while (!cross_reload_ref_pollution && state.ref_block.get() != null) {
866                 System.gc();
867                 System.runFinalization();
868             }
869             connect_peers(state.peer1, state.peer2);
870         }
871
872         Event[] events = state.peer2.get_manager_events(1, state.peer1, state.peer2);
873         assert events[0] instanceof Event.PendingHTLCsForwardable;
874         state.peer2.chan_manager.process_pending_htlc_forwards();
875
876         events = state.peer2.get_manager_events(1, state.peer1, state.peer2);
877         assert events[0] instanceof Event.PaymentReceived;
878         assert ((Event.PaymentReceived)events[0]).purpose instanceof PaymentPurpose.InvoicePayment;
879         byte[] payment_preimage = ((PaymentPurpose.InvoicePayment)((Event.PaymentReceived)events[0]).purpose).payment_preimage;
880         assert !Arrays.equals(payment_preimage, new byte[32]);
881         state.peer2.chan_manager.claim_funds(payment_preimage);
882
883         events = state.peer1.get_manager_events(1, state.peer1, state.peer2);
884         assert events[0] instanceof Event.PaymentSent;
885         assert Arrays.equals(((Event.PaymentSent) events[0]).payment_preimage, payment_preimage);
886
887         if (use_nio_peer_handler) {
888             // We receive PaymentSent immediately upon receipt of the payment preimage, but we expect to not have an
889             // HTLC transaction to broadcast below, which requires a bit more time to fully complete the
890             // commitment-transaction-update dance between both peers.
891             Thread.sleep(100);
892         }
893
894         if (state.peer1.chain_monitor != null) {
895             Balance[] peer1_balances = state.peer1.chain_monitor.get_claimable_balances(state.peer1.chan_manager.list_channels());
896             assert peer1_balances.length == 0;
897             Balance[] peer2_balances = state.peer2.chain_monitor.get_claimable_balances(state.peer2.chan_manager.list_channels());
898             assert peer2_balances.length == 0;
899         }
900
901         ChannelDetails[] peer1_chans = state.peer1.chan_manager.list_channels();
902
903         if (nice_close) {
904             Result_NoneAPIErrorZ close_res = state.peer1.chan_manager.close_channel(peer1_chans[0].get_channel_id());
905             assert close_res instanceof Result_NoneAPIErrorZ.Result_NoneAPIErrorZ_OK;
906             maybe_exchange_peer_messages(state.peer1, state.peer2);
907             synchronized (state.peer1.broadcast_set) {
908                 while (state.peer1.broadcast_set.size() != 1) state.peer1.broadcast_set.wait();
909             }
910             synchronized (state.peer2.broadcast_set) {
911                 while (state.peer2.broadcast_set.size() != 1) state.peer2.broadcast_set.wait();
912             }
913
914             assert state.peer1.broadcast_set.size() == 1;
915             assert state.peer2.broadcast_set.size() == 1;
916         } else {
917             state.peer1.chan_manager.force_close_all_channels();
918             maybe_exchange_peer_messages(state.peer1, state.peer2);
919             synchronized (state.peer1.broadcast_set) {
920                 while (state.peer1.broadcast_set.size() != 1) state.peer1.broadcast_set.wait();
921             }
922             synchronized (state.peer2.broadcast_set) {
923                 while (state.peer2.broadcast_set.size() != 1) state.peer2.broadcast_set.wait();
924             }
925
926             assert state.peer1.broadcast_set.size() == 1;
927             assert state.peer2.broadcast_set.size() == 1;
928         }
929
930         events = state.peer2.get_manager_events(1, state.peer1, state.peer2);
931         assert events[0] instanceof Event.ChannelClosed;
932         events = state.peer1.get_manager_events(1, state.peer1, state.peer2);
933         assert events[0] instanceof Event.ChannelClosed;
934
935         if (state.peer1.chain_monitor != null) {
936             Balance[] peer1_balances = state.peer1.chain_monitor.get_claimable_balances(state.peer1.chan_manager.list_channels());
937             assert peer1_balances.length == 1;
938             for (Balance bal : peer1_balances) {
939                 assert bal instanceof Balance.ClaimableOnChannelClose;
940                 long expected_tx_fee = 183;
941                 assert ((Balance.ClaimableOnChannelClose) bal).claimable_amount_satoshis == 100000 - 1 - 10000 - expected_tx_fee;
942             }
943             Balance[] peer2_balances = state.peer2.chain_monitor.get_claimable_balances(state.peer2.chan_manager.list_channels());
944             assert peer2_balances.length == 1;
945             for (Balance bal : peer2_balances) {
946                 assert bal instanceof Balance.ClaimableOnChannelClose;
947                 assert ((Balance.ClaimableOnChannelClose) bal).claimable_amount_satoshis == 10000 + 1;
948             }
949         }
950
951         if (!nice_close) {
952             NetworkParameters bitcoinj_net = NetworkParameters.fromID(NetworkParameters.ID_MAINNET);
953             Transaction tx = new Transaction(bitcoinj_net, state.peer1.broadcast_set.getFirst());
954             Block b = new Block(bitcoinj_net, 2, state.best_blockhash, Sha256Hash.ZERO_HASH, 42, 0, 0,
955                     Arrays.asList(new Transaction[]{tx}));
956             TwoTuple_TxidCVec_C2Tuple_u32TxOutZZZ[] watch_outputs = state.peer2.connect_block(b, 10, 1);
957             if (watch_outputs != null) { // We only process watch_outputs manually when we use a manually-build Watch impl
958                 assert watch_outputs.length == 1;
959                 assert Arrays.equals(watch_outputs[0].get_a(), tx.getTxId().getReversedBytes());
960                 assert watch_outputs[0].get_b().length == 2;
961                 assert watch_outputs[0].get_b()[0].get_a() == 0;
962                 assert watch_outputs[0].get_b()[1].get_a() == 1;
963             }
964
965             for (int i = 11; i < 21; i++) {
966                 b = new Block(bitcoinj_net, 2, b.getHash(), Sha256Hash.ZERO_HASH, 42, 0, 0, new ArrayList<>());
967                 state.peer2.connect_block(b, i, 0);
968             }
969
970             Event[] broadcastable_event = state.peer2.get_monitor_events(1);
971             for (ChannelMonitor mon : state.peer2.monitors.values()) {
972                 // This used to be buggy and double-free, so go ahead and fetch them!
973                 byte[][] txn = mon.get_latest_holder_commitment_txn(state.peer2.logger);
974             }
975             assert broadcastable_event.length == 1;
976             assert broadcastable_event[0] instanceof Event.SpendableOutputs;
977             if (state.peer2.explicit_keys_manager != null) {
978                 TxOut[] additional_outputs = new TxOut[]{new TxOut(420, new byte[]{0x42})};
979                 Result_TransactionNoneZ tx_res = state.peer2.explicit_keys_manager.spend_spendable_outputs(((Event.SpendableOutputs) broadcastable_event[0]).outputs, additional_outputs, new byte[]{0x00}, 253);
980                 assert tx_res instanceof Result_TransactionNoneZ.Result_TransactionNoneZ_OK;
981                 Transaction built_tx = new Transaction(bitcoinj_net, ((Result_TransactionNoneZ.Result_TransactionNoneZ_OK) tx_res).res);
982                 assert built_tx.getOutputs().size() == 2;
983                 assert Arrays.equals(built_tx.getOutput(1).getScriptBytes(), new byte[]{0x00});
984                 assert Arrays.equals(built_tx.getOutput(0).getScriptBytes(), new byte[]{0x42});
985                 assert built_tx.getOutput(0).getValue().value == 420;
986             }
987         }
988
989         // Test exchanging a custom message (note that ChannelManagerConstructor) always loads an IgnorimgMessageHandler
990         // so we cannot exchange custom messages with it
991         if (!use_chan_manager_constructor) {
992             byte[] custom_message_bytes = new byte[]{0x42, 0x44, 0x43, 0x00};
993             state.peer1.custom_messages_to_send.add(custom_message_bytes);
994             state.peer1.peer_manager.process_events();
995             synchronized (state.peer2.received_custom_messages) {
996                 while (true) {
997                     if (state.peer2.received_custom_messages.isEmpty()) {
998                         state.peer2.received_custom_messages.wait();
999                         continue;
1000                     }
1001                     assert state.peer2.received_custom_messages.size() == 1;
1002                     assert Arrays.equals(state.peer2.received_custom_messages.get(0), custom_message_bytes);
1003                     break;
1004                 }
1005             }
1006         }
1007
1008         if (use_nio_peer_handler) {
1009             state.peer1.peer_manager.disconnect_by_node_id(state.peer2.chan_manager.get_our_node_id(), false);
1010             while (state.peer1.peer_manager.get_peer_node_ids().length != 0) Thread.yield();
1011             while (state.peer2.peer_manager.get_peer_node_ids().length != 0) Thread.yield();
1012             state.peer1.nio_peer_handler.interrupt();
1013             state.peer2.nio_peer_handler.interrupt();
1014         }
1015
1016         state.peer1.get_monitor_events(0);
1017         state.peer2.get_monitor_events(0);
1018
1019         if (use_chan_manager_constructor) {
1020             state.peer1.constructor.interrupt();
1021             state.peer2.constructor.interrupt();
1022         }
1023
1024         t.interrupt();
1025
1026         // Construct the only Option_Enum::Variant(OpaqueStruct) we have in the codebase as this used to cause double-frees:
1027         byte[] serd = new byte[] {(byte)0xd9,(byte)0x77,(byte)0xcb,(byte)0x9b,(byte)0x53,(byte)0xd9,(byte)0x3a,(byte)0x6f,(byte)0xf6,(byte)0x4b,(byte)0xb5,(byte)0xf1,(byte)0xe1,(byte)0x58,(byte)0xb4,(byte)0x09,(byte)0x4b,(byte)0x66,(byte)0xe7,(byte)0x98,(byte)0xfb,(byte)0x12,(byte)0x91,(byte)0x11,(byte)0x68,(byte)0xa3,(byte)0xcc,(byte)0xdf,(byte)0x80,(byte)0xa8,(byte)0x30,(byte)0x96,(byte)0x34,(byte)0x0a,(byte)0x6a,(byte)0x95,(byte)0xda,(byte)0x0a,(byte)0xe8,(byte)0xd9,(byte)0xf7,(byte)0x76,(byte)0x52,(byte)0x8e,(byte)0xec,(byte)0xdb,(byte)0xb7,(byte)0x47,(byte)0xeb,(byte)0x6b,(byte)0x54,(byte)0x54,(byte)0x95,(byte)0xa4,(byte)0x31,(byte)0x9e,(byte)0xd5,(byte)0x37,(byte)0x8e,(byte)0x35,(byte)0xb2,(byte)0x1e,(byte)0x07,(byte)0x3a,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x19,(byte)0xd6,(byte)0x68,(byte)0x9c,(byte)0x08,(byte)0x5a,(byte)0xe1,(byte)0x65,(byte)0x83,(byte)0x1e,(byte)0x93,(byte)0x4f,(byte)0xf7,(byte)0x63,(byte)0xae,(byte)0x46,(byte)0xa2,(byte)0xa6,(byte)0xc1,(byte)0x72,(byte)0xb3,(byte)0xf1,(byte)0xb6,(byte)0x0a,(byte)0x8c,(byte)0xe2,(byte)0x6f,(byte)0x00,(byte)0x08,(byte)0x3a,(byte)0x84,(byte)0x00,(byte)0x00,(byte)0x03,(byte)0x4d,(byte)0x01,(byte)0x34,(byte)0x13,(byte)0xa7,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x90,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x0f,(byte)0x42,(byte)0x40,(byte)0x00,(byte)0x00,(byte)0x27,(byte)0x10,(byte)0x00,(byte)0x00,(byte)0x00,(byte)0x14,};
1028         Result_ChannelUpdateDecodeErrorZ upd_msg = ChannelUpdate.read(serd);
1029         assert upd_msg instanceof Result_ChannelUpdateDecodeErrorZ.Result_ChannelUpdateDecodeErrorZ_OK;
1030         Option_NetworkUpdateZ upd = Option_NetworkUpdateZ.some(NetworkUpdate.channel_update_message(((Result_ChannelUpdateDecodeErrorZ.Result_ChannelUpdateDecodeErrorZ_OK) upd_msg).res));
1031     }
1032
1033     java.util.LinkedList<WeakReference<Object>> must_free_objs = new java.util.LinkedList();
1034     int gc_count = 0;
1035     int gc_exp_count = 0;
1036     class GcCheck {
1037         GcCheck() { gc_exp_count += 1; }
1038         @Override
1039         protected void finalize() throws Throwable {
1040             gc_count += 1;
1041             super.finalize();
1042         }
1043     }
1044 }
1045 public class HumanObjectPeerTest {
1046     HumanObjectPeerTestInstance do_test_run(boolean nice_close, boolean use_km_wrapper, boolean use_manual_watch, boolean reload_peers, boolean break_cross_peer_refs, boolean nio_peer_handler, boolean use_ignoring_routing_handler, boolean use_chan_manager_constructor, boolean use_invoice_payer) throws InterruptedException {
1047         HumanObjectPeerTestInstance instance = new HumanObjectPeerTestInstance(nice_close, use_km_wrapper, use_manual_watch, reload_peers, break_cross_peer_refs, nio_peer_handler, !nio_peer_handler, use_ignoring_routing_handler, use_chan_manager_constructor, use_invoice_payer);
1048         HumanObjectPeerTestInstance.TestState state = instance.do_test_message_handler();
1049         instance.do_test_message_handler_b(state);
1050         return instance;
1051     }
1052     void do_test(boolean nice_close, boolean use_km_wrapper, boolean use_manual_watch, boolean reload_peers, boolean break_cross_peer_refs, boolean nio_peer_handler, boolean use_ignoring_routing_handler, boolean use_chan_manager_constructor, boolean use_invoice_payer) throws InterruptedException {
1053         HumanObjectPeerTestInstance instance = do_test_run(nice_close, use_km_wrapper, use_manual_watch, reload_peers, break_cross_peer_refs, nio_peer_handler, use_ignoring_routing_handler, use_chan_manager_constructor, use_invoice_payer);
1054         while (instance.gc_count != instance.gc_exp_count) {
1055             System.gc();
1056             System.runFinalization();
1057         }
1058         for (WeakReference<Object> o : instance.must_free_objs)
1059             assert o.get() == null;
1060     }
1061     @Test
1062     public void test_message_handler() throws InterruptedException {
1063         for (int i = 0; i < (1 << 9) - 1; i++) {
1064             boolean nice_close =                   (i & (1 << 0)) != 0;
1065             boolean use_km_wrapper =               (i & (1 << 1)) != 0;
1066             boolean use_manual_watch =             (i & (1 << 2)) != 0;
1067             boolean reload_peers =                 (i & (1 << 3)) != 0;
1068             boolean break_cross_refs =             (i & (1 << 4)) != 0;
1069             boolean use_ignoring_routing_handler = (i & (1 << 5)) != 0;
1070             boolean use_chan_manager_constructor = (i & (1 << 6)) != 0;
1071             boolean use_invoice_payer =            (i & (1 << 7)) != 0;
1072             boolean nio_peer_handler =             (i & (1 << 8)) != 0;
1073             if (break_cross_refs && !reload_peers) {
1074                 // There are no cross refs to break without reloading peers.
1075                 continue;
1076             }
1077             if (use_chan_manager_constructor && (use_manual_watch || !nio_peer_handler)) {
1078                 // ChannelManagerConstructor requires a ChainMonitor as the Watch and creates a NioPeerHandler for us.
1079                 continue;
1080             }
1081             if (!use_chan_manager_constructor && (use_ignoring_routing_handler)) {
1082                 // We rely on the ChannelManagerConstructor to convert null into an IgnoringMessageHandler, so don't
1083                 // try to run with an IgnoringMessageHandler unless we're also using a ChannelManagerConstructor.
1084                 continue;
1085             }
1086             if (use_chan_manager_constructor && use_ignoring_routing_handler && use_invoice_payer) {
1087                 // As documented on ChannelManagerConstructor, if we provide a `null` NetworkGraph (because we want to
1088                 // use an IgnoringMessageHandler), no InvoicePayer will be constructored for us, thus we cannot use an
1089                 // InvoicePayer to send payments in this case.
1090                 continue;
1091             }
1092             System.err.println("Running test with flags " + i);
1093             do_test(nice_close, use_km_wrapper, use_manual_watch, reload_peers, break_cross_refs, nio_peer_handler, use_ignoring_routing_handler, use_chan_manager_constructor, use_invoice_payer);
1094         }
1095     }
1096
1097     // This is used in the test jar to test the built jar is runnable
1098     public static void main(String[] args) {
1099         try {
1100             new HumanObjectPeerTest().test_message_handler();
1101         } catch (Exception e) {
1102             System.err.println("Caught exception:");
1103             System.err.println(e);
1104             System.exit(1);
1105         }
1106     }
1107 }