Implement reorg-safety for SpendableOutputDescriptor detection
[rust-lightning] / lightning / src / ln / functional_tests.rs
1 //! Tests that test standing up a network of ChannelManagers, creating channels, sending
2 //! payments/messages between them, and often checking the resulting ChannelMonitors are able to
3 //! claim outputs on-chain.
4
5 use chain::transaction::OutPoint;
6 use chain::keysinterface::{ChannelKeys, KeysInterface, SpendableOutputDescriptor};
7 use chain::chaininterface::{ChainListener, ChainWatchInterfaceUtil, BlockNotifier};
8 use ln::channel::{COMMITMENT_TX_BASE_WEIGHT, COMMITMENT_TX_WEIGHT_PER_HTLC};
9 use ln::channelmanager::{ChannelManager,ChannelManagerReadArgs,HTLCForwardInfo,RAACommitmentOrder, PaymentPreimage, PaymentHash, BREAKDOWN_TIMEOUT};
10 use ln::channelmonitor::{ChannelMonitor, CLTV_CLAIM_BUFFER, LATENCY_GRACE_PERIOD_BLOCKS, ManyChannelMonitor, ANTI_REORG_DELAY};
11 use ln::channel::{Channel, ChannelError};
12 use ln::{chan_utils, onion_utils};
13 use ln::router::{Route, RouteHop};
14 use ln::features::{ChannelFeatures, InitFeatures, NodeFeatures};
15 use ln::msgs;
16 use ln::msgs::{ChannelMessageHandler,RoutingMessageHandler,HTLCFailChannelUpdate, ErrorAction};
17 use util::enforcing_trait_impls::EnforcingChannelKeys;
18 use util::test_utils;
19 use util::events::{Event, EventsProvider, MessageSendEvent, MessageSendEventsProvider};
20 use util::errors::APIError;
21 use util::ser::{Writeable, Writer, ReadableArgs};
22 use util::config::UserConfig;
23 use util::logger::Logger;
24
25 use bitcoin::util::hash::BitcoinHash;
26 use bitcoin_hashes::sha256d::Hash as Sha256dHash;
27 use bitcoin::util::bip143;
28 use bitcoin::util::address::Address;
29 use bitcoin::util::bip32::{ChildNumber, ExtendedPubKey, ExtendedPrivKey};
30 use bitcoin::blockdata::block::{Block, BlockHeader};
31 use bitcoin::blockdata::transaction::{Transaction, TxOut, TxIn, SigHashType, OutPoint as BitcoinOutPoint};
32 use bitcoin::blockdata::script::{Builder, Script};
33 use bitcoin::blockdata::opcodes;
34 use bitcoin::blockdata::constants::genesis_block;
35 use bitcoin::network::constants::Network;
36
37 use bitcoin_hashes::sha256::Hash as Sha256;
38 use bitcoin_hashes::Hash;
39
40 use secp256k1::{Secp256k1, Message};
41 use secp256k1::key::{PublicKey,SecretKey};
42
43 use std::collections::{BTreeSet, HashMap, HashSet};
44 use std::default::Default;
45 use std::sync::{Arc, Mutex};
46 use std::sync::atomic::Ordering;
47 use std::{mem, io};
48
49 use rand::{thread_rng, Rng};
50
51 use ln::functional_test_utils::*;
52
53 #[test]
54 fn test_insane_channel_opens() {
55         // Stand up a network of 2 nodes
56         let chanmon_cfgs = create_chanmon_cfgs(2);
57         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
58         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
59         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
60
61         // Instantiate channel parameters where we push the maximum msats given our
62         // funding satoshis
63         let channel_value_sat = 31337; // same as funding satoshis
64         let channel_reserve_satoshis = Channel::<EnforcingChannelKeys>::get_our_channel_reserve_satoshis(channel_value_sat);
65         let push_msat = (channel_value_sat - channel_reserve_satoshis) * 1000;
66
67         // Have node0 initiate a channel to node1 with aforementioned parameters
68         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), channel_value_sat, push_msat, 42, None).unwrap();
69
70         // Extract the channel open message from node0 to node1
71         let open_channel_message = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
72
73         // Test helper that asserts we get the correct error string given a mutator
74         // that supposedly makes the channel open message insane
75         let insane_open_helper = |expected_error_str: &str, message_mutator: fn(msgs::OpenChannel) -> msgs::OpenChannel| {
76                 nodes[1].node.handle_open_channel(&nodes[0].node.get_our_node_id(), InitFeatures::supported(), &message_mutator(open_channel_message.clone()));
77                 let msg_events = nodes[1].node.get_and_clear_pending_msg_events();
78                 assert_eq!(msg_events.len(), 1);
79                 if let MessageSendEvent::HandleError { ref action, .. } = msg_events[0] {
80                         match action {
81                                 &ErrorAction::SendErrorMessage { .. } => {
82                                         nodes[1].logger.assert_log("lightning::ln::channelmanager".to_string(), expected_error_str.to_string(), 1);
83                                 },
84                                 _ => panic!("unexpected event!"),
85                         }
86                 } else { assert!(false); }
87         };
88
89         use ln::channel::MAX_FUNDING_SATOSHIS;
90         use ln::channelmanager::MAX_LOCAL_BREAKDOWN_TIMEOUT;
91
92         // Test all mutations that would make the channel open message insane
93         insane_open_helper("funding value > 2^24", |mut msg| { msg.funding_satoshis = MAX_FUNDING_SATOSHIS; msg });
94
95         insane_open_helper("Bogus channel_reserve_satoshis", |mut msg| { msg.channel_reserve_satoshis = msg.funding_satoshis + 1; msg });
96
97         insane_open_helper("push_msat larger than funding value", |mut msg| { msg.push_msat = (msg.funding_satoshis - msg.channel_reserve_satoshis) * 1000 + 1; msg });
98
99         insane_open_helper("Peer never wants payout outputs?", |mut msg| { msg.dust_limit_satoshis = msg.funding_satoshis + 1 ; msg });
100
101         insane_open_helper("Bogus; channel reserve is less than dust limit", |mut msg| { msg.dust_limit_satoshis = msg.channel_reserve_satoshis + 1; msg });
102
103         insane_open_helper("Minimum htlc value is full channel value", |mut msg| { msg.htlc_minimum_msat = (msg.funding_satoshis - msg.channel_reserve_satoshis) * 1000; msg });
104
105         insane_open_helper("They wanted our payments to be delayed by a needlessly long period", |mut msg| { msg.to_self_delay = MAX_LOCAL_BREAKDOWN_TIMEOUT + 1; msg });
106
107         insane_open_helper("0 max_accpted_htlcs makes for a useless channel", |mut msg| { msg.max_accepted_htlcs = 0; msg });
108
109         insane_open_helper("max_accpted_htlcs > 483", |mut msg| { msg.max_accepted_htlcs = 484; msg });
110 }
111
112 #[test]
113 fn test_async_inbound_update_fee() {
114         let chanmon_cfgs = create_chanmon_cfgs(2);
115         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
116         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
117         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
118         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
119         let channel_id = chan.2;
120
121         // balancing
122         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
123
124         // A                                        B
125         // update_fee                            ->
126         // send (1) commitment_signed            -.
127         //                                       <- update_add_htlc/commitment_signed
128         // send (2) RAA (awaiting remote revoke) -.
129         // (1) commitment_signed is delivered    ->
130         //                                       .- send (3) RAA (awaiting remote revoke)
131         // (2) RAA is delivered                  ->
132         //                                       .- send (4) commitment_signed
133         //                                       <- (3) RAA is delivered
134         // send (5) commitment_signed            -.
135         //                                       <- (4) commitment_signed is delivered
136         // send (6) RAA                          -.
137         // (5) commitment_signed is delivered    ->
138         //                                       <- RAA
139         // (6) RAA is delivered                  ->
140
141         // First nodes[0] generates an update_fee
142         nodes[0].node.update_fee(channel_id, get_feerate!(nodes[0], channel_id) + 20).unwrap();
143         check_added_monitors!(nodes[0], 1);
144
145         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
146         assert_eq!(events_0.len(), 1);
147         let (update_msg, commitment_signed) = match events_0[0] { // (1)
148                 MessageSendEvent::UpdateHTLCs { updates: msgs::CommitmentUpdate { ref update_fee, ref commitment_signed, .. }, .. } => {
149                         (update_fee.as_ref(), commitment_signed)
150                 },
151                 _ => panic!("Unexpected event"),
152         };
153
154         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
155
156         // ...but before it's delivered, nodes[1] starts to send a payment back to nodes[0]...
157         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
158         nodes[1].node.send_payment(nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &Vec::new(), 40000, TEST_FINAL_CLTV).unwrap(), our_payment_hash).unwrap();
159         check_added_monitors!(nodes[1], 1);
160
161         let payment_event = {
162                 let mut events_1 = nodes[1].node.get_and_clear_pending_msg_events();
163                 assert_eq!(events_1.len(), 1);
164                 SendEvent::from_event(events_1.remove(0))
165         };
166         assert_eq!(payment_event.node_id, nodes[0].node.get_our_node_id());
167         assert_eq!(payment_event.msgs.len(), 1);
168
169         // ...now when the messages get delivered everyone should be happy
170         nodes[0].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event.msgs[0]);
171         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &payment_event.commitment_msg); // (2)
172         let as_revoke_and_ack = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
173         // nodes[0] is awaiting nodes[1] revoke_and_ack so get_event_msg's assert(len == 1) passes
174         check_added_monitors!(nodes[0], 1);
175
176         // deliver(1), generate (3):
177         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed);
178         let bs_revoke_and_ack = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
179         // nodes[1] is awaiting nodes[0] revoke_and_ack so get_event_msg's assert(len == 1) passes
180         check_added_monitors!(nodes[1], 1);
181
182         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_and_ack); // deliver (2)
183         let bs_update = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
184         assert!(bs_update.update_add_htlcs.is_empty()); // (4)
185         assert!(bs_update.update_fulfill_htlcs.is_empty()); // (4)
186         assert!(bs_update.update_fail_htlcs.is_empty()); // (4)
187         assert!(bs_update.update_fail_malformed_htlcs.is_empty()); // (4)
188         assert!(bs_update.update_fee.is_none()); // (4)
189         check_added_monitors!(nodes[1], 1);
190
191         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_and_ack); // deliver (3)
192         let as_update = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
193         assert!(as_update.update_add_htlcs.is_empty()); // (5)
194         assert!(as_update.update_fulfill_htlcs.is_empty()); // (5)
195         assert!(as_update.update_fail_htlcs.is_empty()); // (5)
196         assert!(as_update.update_fail_malformed_htlcs.is_empty()); // (5)
197         assert!(as_update.update_fee.is_none()); // (5)
198         check_added_monitors!(nodes[0], 1);
199
200         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_update.commitment_signed); // deliver (4)
201         let as_second_revoke = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
202         // only (6) so get_event_msg's assert(len == 1) passes
203         check_added_monitors!(nodes[0], 1);
204
205         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_update.commitment_signed); // deliver (5)
206         let bs_second_revoke = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
207         check_added_monitors!(nodes[1], 1);
208
209         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_second_revoke);
210         check_added_monitors!(nodes[0], 1);
211
212         let events_2 = nodes[0].node.get_and_clear_pending_events();
213         assert_eq!(events_2.len(), 1);
214         match events_2[0] {
215                 Event::PendingHTLCsForwardable {..} => {}, // If we actually processed we'd receive the payment
216                 _ => panic!("Unexpected event"),
217         }
218
219         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_second_revoke); // deliver (6)
220         check_added_monitors!(nodes[1], 1);
221 }
222
223 #[test]
224 fn test_update_fee_unordered_raa() {
225         // Just the intro to the previous test followed by an out-of-order RAA (which caused a
226         // crash in an earlier version of the update_fee patch)
227         let chanmon_cfgs = create_chanmon_cfgs(2);
228         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
229         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
230         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
231         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
232         let channel_id = chan.2;
233
234         // balancing
235         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
236
237         // First nodes[0] generates an update_fee
238         nodes[0].node.update_fee(channel_id, get_feerate!(nodes[0], channel_id) + 20).unwrap();
239         check_added_monitors!(nodes[0], 1);
240
241         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
242         assert_eq!(events_0.len(), 1);
243         let update_msg = match events_0[0] { // (1)
244                 MessageSendEvent::UpdateHTLCs { updates: msgs::CommitmentUpdate { ref update_fee, .. }, .. } => {
245                         update_fee.as_ref()
246                 },
247                 _ => panic!("Unexpected event"),
248         };
249
250         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
251
252         // ...but before it's delivered, nodes[1] starts to send a payment back to nodes[0]...
253         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
254         nodes[1].node.send_payment(nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &Vec::new(), 40000, TEST_FINAL_CLTV).unwrap(), our_payment_hash).unwrap();
255         check_added_monitors!(nodes[1], 1);
256
257         let payment_event = {
258                 let mut events_1 = nodes[1].node.get_and_clear_pending_msg_events();
259                 assert_eq!(events_1.len(), 1);
260                 SendEvent::from_event(events_1.remove(0))
261         };
262         assert_eq!(payment_event.node_id, nodes[0].node.get_our_node_id());
263         assert_eq!(payment_event.msgs.len(), 1);
264
265         // ...now when the messages get delivered everyone should be happy
266         nodes[0].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event.msgs[0]);
267         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &payment_event.commitment_msg); // (2)
268         let as_revoke_msg = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
269         // nodes[0] is awaiting nodes[1] revoke_and_ack so get_event_msg's assert(len == 1) passes
270         check_added_monitors!(nodes[0], 1);
271
272         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_msg); // deliver (2)
273         check_added_monitors!(nodes[1], 1);
274
275         // We can't continue, sadly, because our (1) now has a bogus signature
276 }
277
278 #[test]
279 fn test_multi_flight_update_fee() {
280         let chanmon_cfgs = create_chanmon_cfgs(2);
281         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
282         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
283         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
284         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
285         let channel_id = chan.2;
286
287         // A                                        B
288         // update_fee/commitment_signed          ->
289         //                                       .- send (1) RAA and (2) commitment_signed
290         // update_fee (never committed)          ->
291         // (3) update_fee                        ->
292         // We have to manually generate the above update_fee, it is allowed by the protocol but we
293         // don't track which updates correspond to which revoke_and_ack responses so we're in
294         // AwaitingRAA mode and will not generate the update_fee yet.
295         //                                       <- (1) RAA delivered
296         // (3) is generated and send (4) CS      -.
297         // Note that A cannot generate (4) prior to (1) being delivered as it otherwise doesn't
298         // know the per_commitment_point to use for it.
299         //                                       <- (2) commitment_signed delivered
300         // revoke_and_ack                        ->
301         //                                          B should send no response here
302         // (4) commitment_signed delivered       ->
303         //                                       <- RAA/commitment_signed delivered
304         // revoke_and_ack                        ->
305
306         // First nodes[0] generates an update_fee
307         let initial_feerate = get_feerate!(nodes[0], channel_id);
308         nodes[0].node.update_fee(channel_id, initial_feerate + 20).unwrap();
309         check_added_monitors!(nodes[0], 1);
310
311         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
312         assert_eq!(events_0.len(), 1);
313         let (update_msg_1, commitment_signed_1) = match events_0[0] { // (1)
314                 MessageSendEvent::UpdateHTLCs { updates: msgs::CommitmentUpdate { ref update_fee, ref commitment_signed, .. }, .. } => {
315                         (update_fee.as_ref().unwrap(), commitment_signed)
316                 },
317                 _ => panic!("Unexpected event"),
318         };
319
320         // Deliver first update_fee/commitment_signed pair, generating (1) and (2):
321         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg_1);
322         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed_1);
323         let (bs_revoke_msg, bs_commitment_signed) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
324         check_added_monitors!(nodes[1], 1);
325
326         // nodes[0] is awaiting a revoke from nodes[1] before it will create a new commitment
327         // transaction:
328         nodes[0].node.update_fee(channel_id, initial_feerate + 40).unwrap();
329         assert!(nodes[0].node.get_and_clear_pending_events().is_empty());
330         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
331
332         // Create the (3) update_fee message that nodes[0] will generate before it does...
333         let mut update_msg_2 = msgs::UpdateFee {
334                 channel_id: update_msg_1.channel_id.clone(),
335                 feerate_per_kw: (initial_feerate + 30) as u32,
336         };
337
338         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), &update_msg_2);
339
340         update_msg_2.feerate_per_kw = (initial_feerate + 40) as u32;
341         // Deliver (3)
342         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), &update_msg_2);
343
344         // Deliver (1), generating (3) and (4)
345         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_msg);
346         let as_second_update = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
347         check_added_monitors!(nodes[0], 1);
348         assert!(as_second_update.update_add_htlcs.is_empty());
349         assert!(as_second_update.update_fulfill_htlcs.is_empty());
350         assert!(as_second_update.update_fail_htlcs.is_empty());
351         assert!(as_second_update.update_fail_malformed_htlcs.is_empty());
352         // Check that the update_fee newly generated matches what we delivered:
353         assert_eq!(as_second_update.update_fee.as_ref().unwrap().channel_id, update_msg_2.channel_id);
354         assert_eq!(as_second_update.update_fee.as_ref().unwrap().feerate_per_kw, update_msg_2.feerate_per_kw);
355
356         // Deliver (2) commitment_signed
357         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_commitment_signed);
358         let as_revoke_msg = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
359         check_added_monitors!(nodes[0], 1);
360         // No commitment_signed so get_event_msg's assert(len == 1) passes
361
362         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_msg);
363         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
364         check_added_monitors!(nodes[1], 1);
365
366         // Delever (4)
367         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_second_update.commitment_signed);
368         let (bs_second_revoke, bs_second_commitment) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
369         check_added_monitors!(nodes[1], 1);
370
371         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_second_revoke);
372         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
373         check_added_monitors!(nodes[0], 1);
374
375         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_second_commitment);
376         let as_second_revoke = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
377         // No commitment_signed so get_event_msg's assert(len == 1) passes
378         check_added_monitors!(nodes[0], 1);
379
380         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_second_revoke);
381         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
382         check_added_monitors!(nodes[1], 1);
383 }
384
385 #[test]
386 fn test_1_conf_open() {
387         // Previously, if the minium_depth config was set to 1, we'd never send a funding_locked. This
388         // tests that we properly send one in that case.
389         let mut alice_config = UserConfig::default();
390         alice_config.own_channel_config.minimum_depth = 1;
391         alice_config.channel_options.announced_channel = true;
392         alice_config.peer_channel_config_limits.force_announced_channel_preference = false;
393         let mut bob_config = UserConfig::default();
394         bob_config.own_channel_config.minimum_depth = 1;
395         bob_config.channel_options.announced_channel = true;
396         bob_config.peer_channel_config_limits.force_announced_channel_preference = false;
397         let chanmon_cfgs = create_chanmon_cfgs(2);
398         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
399         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[Some(alice_config), Some(bob_config)]);
400         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
401
402         let tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 100000, 10001, InitFeatures::supported(), InitFeatures::supported());
403         assert!(nodes[0].chain_monitor.does_match_tx(&tx));
404         assert!(nodes[1].chain_monitor.does_match_tx(&tx));
405
406         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
407         nodes[1].block_notifier.block_connected_checked(&header, 1, &[&tx; 1], &[tx.version; 1]);
408         nodes[0].node.handle_funding_locked(&nodes[1].node.get_our_node_id(), &get_event_msg!(nodes[1], MessageSendEvent::SendFundingLocked, nodes[0].node.get_our_node_id()));
409
410         nodes[0].block_notifier.block_connected_checked(&header, 1, &[&tx; 1], &[tx.version; 1]);
411         let (funding_locked, _) = create_chan_between_nodes_with_value_confirm_second(&nodes[1], &nodes[0]);
412         let (announcement, as_update, bs_update) = create_chan_between_nodes_with_value_b(&nodes[0], &nodes[1], &funding_locked);
413
414         for node in nodes {
415                 assert!(node.router.handle_channel_announcement(&announcement).unwrap());
416                 node.router.handle_channel_update(&as_update).unwrap();
417                 node.router.handle_channel_update(&bs_update).unwrap();
418         }
419 }
420
421 fn do_test_sanity_on_in_flight_opens(steps: u8) {
422         // Previously, we had issues deserializing channels when we hadn't connected the first block
423         // after creation. To catch that and similar issues, we lean on the Node::drop impl to test
424         // serialization round-trips and simply do steps towards opening a channel and then drop the
425         // Node objects.
426
427         let chanmon_cfgs = create_chanmon_cfgs(2);
428         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
429         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
430         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
431
432         if steps & 0b1000_0000 != 0{
433                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
434                 nodes[0].block_notifier.block_connected_checked(&header, 1, &Vec::new(), &[0; 0]);
435                 nodes[1].block_notifier.block_connected_checked(&header, 1, &Vec::new(), &[0; 0]);
436         }
437
438         if steps & 0x0f == 0 { return; }
439         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), 100000, 10001, 42, None).unwrap();
440         let open_channel = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
441
442         if steps & 0x0f == 1 { return; }
443         nodes[1].node.handle_open_channel(&nodes[0].node.get_our_node_id(), InitFeatures::supported(), &open_channel);
444         let accept_channel = get_event_msg!(nodes[1], MessageSendEvent::SendAcceptChannel, nodes[0].node.get_our_node_id());
445
446         if steps & 0x0f == 2 { return; }
447         nodes[0].node.handle_accept_channel(&nodes[1].node.get_our_node_id(), InitFeatures::supported(), &accept_channel);
448
449         let (temporary_channel_id, tx, funding_output) = create_funding_transaction(&nodes[0], 100000, 42);
450
451         if steps & 0x0f == 3 { return; }
452         {
453                 nodes[0].node.funding_transaction_generated(&temporary_channel_id, funding_output);
454                 let mut added_monitors = nodes[0].chan_monitor.added_monitors.lock().unwrap();
455                 assert_eq!(added_monitors.len(), 1);
456                 assert_eq!(added_monitors[0].0, funding_output);
457                 added_monitors.clear();
458         }
459         let funding_created = get_event_msg!(nodes[0], MessageSendEvent::SendFundingCreated, nodes[1].node.get_our_node_id());
460
461         if steps & 0x0f == 4 { return; }
462         nodes[1].node.handle_funding_created(&nodes[0].node.get_our_node_id(), &funding_created);
463         {
464                 let mut added_monitors = nodes[1].chan_monitor.added_monitors.lock().unwrap();
465                 assert_eq!(added_monitors.len(), 1);
466                 assert_eq!(added_monitors[0].0, funding_output);
467                 added_monitors.clear();
468         }
469         let funding_signed = get_event_msg!(nodes[1], MessageSendEvent::SendFundingSigned, nodes[0].node.get_our_node_id());
470
471         if steps & 0x0f == 5 { return; }
472         nodes[0].node.handle_funding_signed(&nodes[1].node.get_our_node_id(), &funding_signed);
473         {
474                 let mut added_monitors = nodes[0].chan_monitor.added_monitors.lock().unwrap();
475                 assert_eq!(added_monitors.len(), 1);
476                 assert_eq!(added_monitors[0].0, funding_output);
477                 added_monitors.clear();
478         }
479
480         let events_4 = nodes[0].node.get_and_clear_pending_events();
481         assert_eq!(events_4.len(), 1);
482         match events_4[0] {
483                 Event::FundingBroadcastSafe { ref funding_txo, user_channel_id } => {
484                         assert_eq!(user_channel_id, 42);
485                         assert_eq!(*funding_txo, funding_output);
486                 },
487                 _ => panic!("Unexpected event"),
488         };
489
490         if steps & 0x0f == 6 { return; }
491         create_chan_between_nodes_with_value_confirm_first(&nodes[0], &nodes[1], &tx);
492
493         if steps & 0x0f == 7 { return; }
494         confirm_transaction(&nodes[0].block_notifier, &nodes[0].chain_monitor, &tx, tx.version);
495         create_chan_between_nodes_with_value_confirm_second(&nodes[1], &nodes[0]);
496 }
497
498 #[test]
499 fn test_sanity_on_in_flight_opens() {
500         do_test_sanity_on_in_flight_opens(0);
501         do_test_sanity_on_in_flight_opens(0 | 0b1000_0000);
502         do_test_sanity_on_in_flight_opens(1);
503         do_test_sanity_on_in_flight_opens(1 | 0b1000_0000);
504         do_test_sanity_on_in_flight_opens(2);
505         do_test_sanity_on_in_flight_opens(2 | 0b1000_0000);
506         do_test_sanity_on_in_flight_opens(3);
507         do_test_sanity_on_in_flight_opens(3 | 0b1000_0000);
508         do_test_sanity_on_in_flight_opens(4);
509         do_test_sanity_on_in_flight_opens(4 | 0b1000_0000);
510         do_test_sanity_on_in_flight_opens(5);
511         do_test_sanity_on_in_flight_opens(5 | 0b1000_0000);
512         do_test_sanity_on_in_flight_opens(6);
513         do_test_sanity_on_in_flight_opens(6 | 0b1000_0000);
514         do_test_sanity_on_in_flight_opens(7);
515         do_test_sanity_on_in_flight_opens(7 | 0b1000_0000);
516         do_test_sanity_on_in_flight_opens(8);
517         do_test_sanity_on_in_flight_opens(8 | 0b1000_0000);
518 }
519
520 #[test]
521 fn test_update_fee_vanilla() {
522         let chanmon_cfgs = create_chanmon_cfgs(2);
523         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
524         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
525         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
526         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
527         let channel_id = chan.2;
528
529         let feerate = get_feerate!(nodes[0], channel_id);
530         nodes[0].node.update_fee(channel_id, feerate+25).unwrap();
531         check_added_monitors!(nodes[0], 1);
532
533         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
534         assert_eq!(events_0.len(), 1);
535         let (update_msg, commitment_signed) = match events_0[0] {
536                         MessageSendEvent::UpdateHTLCs { node_id:_, updates: msgs::CommitmentUpdate { update_add_htlcs:_, update_fulfill_htlcs:_, update_fail_htlcs:_, update_fail_malformed_htlcs:_, ref update_fee, ref commitment_signed } } => {
537                         (update_fee.as_ref(), commitment_signed)
538                 },
539                 _ => panic!("Unexpected event"),
540         };
541         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
542
543         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed);
544         let (revoke_msg, commitment_signed) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
545         check_added_monitors!(nodes[1], 1);
546
547         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &revoke_msg);
548         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
549         check_added_monitors!(nodes[0], 1);
550
551         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_signed);
552         let revoke_msg = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
553         // No commitment_signed so get_event_msg's assert(len == 1) passes
554         check_added_monitors!(nodes[0], 1);
555
556         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &revoke_msg);
557         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
558         check_added_monitors!(nodes[1], 1);
559 }
560
561 #[test]
562 fn test_update_fee_that_funder_cannot_afford() {
563         let chanmon_cfgs = create_chanmon_cfgs(2);
564         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
565         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
566         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
567         let channel_value = 1888;
568         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, channel_value, 700000, InitFeatures::supported(), InitFeatures::supported());
569         let channel_id = chan.2;
570
571         let feerate = 260;
572         nodes[0].node.update_fee(channel_id, feerate).unwrap();
573         check_added_monitors!(nodes[0], 1);
574         let update_msg = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
575
576         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), &update_msg.update_fee.unwrap());
577
578         commitment_signed_dance!(nodes[1], nodes[0], update_msg.commitment_signed, false);
579
580         //Confirm that the new fee based on the last local commitment txn is what we expected based on the feerate of 260 set above.
581         //This value results in a fee that is exactly what the funder can afford (277 sat + 1000 sat channel reserve)
582         {
583                 let commitment_tx = get_local_commitment_txn!(nodes[1], channel_id)[0].clone();
584
585                 //We made sure neither party's funds are below the dust limit so -2 non-HTLC txns from number of outputs
586                 let num_htlcs = commitment_tx.output.len() - 2;
587                 let total_fee: u64 = feerate * (COMMITMENT_TX_BASE_WEIGHT + (num_htlcs as u64) * COMMITMENT_TX_WEIGHT_PER_HTLC) / 1000;
588                 let mut actual_fee = commitment_tx.output.iter().fold(0, |acc, output| acc + output.value);
589                 actual_fee = channel_value - actual_fee;
590                 assert_eq!(total_fee, actual_fee);
591         }
592
593         //Add 2 to the previous fee rate to the final fee increases by 1 (with no HTLCs the fee is essentially
594         //fee_rate*(724/1000) so the increment of 1*0.724 is rounded back down)
595         nodes[0].node.update_fee(channel_id, feerate+2).unwrap();
596         check_added_monitors!(nodes[0], 1);
597
598         let update2_msg = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
599
600         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), &update2_msg.update_fee.unwrap());
601
602         //While producing the commitment_signed response after handling a received update_fee request the
603         //check to see if the funder, who sent the update_fee request, can afford the new fee (funder_balance >= fee+channel_reserve)
604         //Should produce and error.
605         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &update2_msg.commitment_signed);
606         nodes[1].logger.assert_log("lightning::ln::channelmanager".to_string(), "Funding remote cannot afford proposed new fee".to_string(), 1);
607         check_added_monitors!(nodes[1], 1);
608         check_closed_broadcast!(nodes[1], true);
609 }
610
611 #[test]
612 fn test_update_fee_with_fundee_update_add_htlc() {
613         let chanmon_cfgs = create_chanmon_cfgs(2);
614         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
615         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
616         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
617         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
618         let channel_id = chan.2;
619
620         // balancing
621         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
622
623         let feerate = get_feerate!(nodes[0], channel_id);
624         nodes[0].node.update_fee(channel_id, feerate+20).unwrap();
625         check_added_monitors!(nodes[0], 1);
626
627         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
628         assert_eq!(events_0.len(), 1);
629         let (update_msg, commitment_signed) = match events_0[0] {
630                         MessageSendEvent::UpdateHTLCs { node_id:_, updates: msgs::CommitmentUpdate { update_add_htlcs:_, update_fulfill_htlcs:_, update_fail_htlcs:_, update_fail_malformed_htlcs:_, ref update_fee, ref commitment_signed } } => {
631                         (update_fee.as_ref(), commitment_signed)
632                 },
633                 _ => panic!("Unexpected event"),
634         };
635         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
636         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed);
637         let (revoke_msg, commitment_signed) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
638         check_added_monitors!(nodes[1], 1);
639
640         let route = nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &Vec::new(), 800000, TEST_FINAL_CLTV).unwrap();
641
642         let (our_payment_preimage, our_payment_hash) = get_payment_preimage_hash!(nodes[1]);
643
644         // nothing happens since node[1] is in AwaitingRemoteRevoke
645         nodes[1].node.send_payment(route, our_payment_hash).unwrap();
646         {
647                 let mut added_monitors = nodes[0].chan_monitor.added_monitors.lock().unwrap();
648                 assert_eq!(added_monitors.len(), 0);
649                 added_monitors.clear();
650         }
651         assert!(nodes[0].node.get_and_clear_pending_events().is_empty());
652         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
653         // node[1] has nothing to do
654
655         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &revoke_msg);
656         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
657         check_added_monitors!(nodes[0], 1);
658
659         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_signed);
660         let revoke_msg = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
661         // No commitment_signed so get_event_msg's assert(len == 1) passes
662         check_added_monitors!(nodes[0], 1);
663         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &revoke_msg);
664         check_added_monitors!(nodes[1], 1);
665         // AwaitingRemoteRevoke ends here
666
667         let commitment_update = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
668         assert_eq!(commitment_update.update_add_htlcs.len(), 1);
669         assert_eq!(commitment_update.update_fulfill_htlcs.len(), 0);
670         assert_eq!(commitment_update.update_fail_htlcs.len(), 0);
671         assert_eq!(commitment_update.update_fail_malformed_htlcs.len(), 0);
672         assert_eq!(commitment_update.update_fee.is_none(), true);
673
674         nodes[0].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &commitment_update.update_add_htlcs[0]);
675         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_update.commitment_signed);
676         check_added_monitors!(nodes[0], 1);
677         let (revoke, commitment_signed) = get_revoke_commit_msgs!(nodes[0], nodes[1].node.get_our_node_id());
678
679         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &revoke);
680         check_added_monitors!(nodes[1], 1);
681         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
682
683         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &commitment_signed);
684         check_added_monitors!(nodes[1], 1);
685         let revoke = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
686         // No commitment_signed so get_event_msg's assert(len == 1) passes
687
688         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &revoke);
689         check_added_monitors!(nodes[0], 1);
690         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
691
692         expect_pending_htlcs_forwardable!(nodes[0]);
693
694         let events = nodes[0].node.get_and_clear_pending_events();
695         assert_eq!(events.len(), 1);
696         match events[0] {
697                 Event::PaymentReceived { .. } => { },
698                 _ => panic!("Unexpected event"),
699         };
700
701         claim_payment(&nodes[1], &vec!(&nodes[0])[..], our_payment_preimage, 800_000);
702
703         send_payment(&nodes[1], &vec!(&nodes[0])[..], 800000, 800_000);
704         send_payment(&nodes[0], &vec!(&nodes[1])[..], 800000, 800_000);
705         close_channel(&nodes[0], &nodes[1], &chan.2, chan.3, true);
706 }
707
708 #[test]
709 fn test_update_fee() {
710         let chanmon_cfgs = create_chanmon_cfgs(2);
711         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
712         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
713         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
714         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
715         let channel_id = chan.2;
716
717         // A                                        B
718         // (1) update_fee/commitment_signed      ->
719         //                                       <- (2) revoke_and_ack
720         //                                       .- send (3) commitment_signed
721         // (4) update_fee/commitment_signed      ->
722         //                                       .- send (5) revoke_and_ack (no CS as we're awaiting a revoke)
723         //                                       <- (3) commitment_signed delivered
724         // send (6) revoke_and_ack               -.
725         //                                       <- (5) deliver revoke_and_ack
726         // (6) deliver revoke_and_ack            ->
727         //                                       .- send (7) commitment_signed in response to (4)
728         //                                       <- (7) deliver commitment_signed
729         // revoke_and_ack                        ->
730
731         // Create and deliver (1)...
732         let feerate = get_feerate!(nodes[0], channel_id);
733         nodes[0].node.update_fee(channel_id, feerate+20).unwrap();
734         check_added_monitors!(nodes[0], 1);
735
736         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
737         assert_eq!(events_0.len(), 1);
738         let (update_msg, commitment_signed) = match events_0[0] {
739                         MessageSendEvent::UpdateHTLCs { node_id:_, updates: msgs::CommitmentUpdate { update_add_htlcs:_, update_fulfill_htlcs:_, update_fail_htlcs:_, update_fail_malformed_htlcs:_, ref update_fee, ref commitment_signed } } => {
740                         (update_fee.as_ref(), commitment_signed)
741                 },
742                 _ => panic!("Unexpected event"),
743         };
744         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
745
746         // Generate (2) and (3):
747         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed);
748         let (revoke_msg, commitment_signed_0) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
749         check_added_monitors!(nodes[1], 1);
750
751         // Deliver (2):
752         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &revoke_msg);
753         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
754         check_added_monitors!(nodes[0], 1);
755
756         // Create and deliver (4)...
757         nodes[0].node.update_fee(channel_id, feerate+30).unwrap();
758         check_added_monitors!(nodes[0], 1);
759         let events_0 = nodes[0].node.get_and_clear_pending_msg_events();
760         assert_eq!(events_0.len(), 1);
761         let (update_msg, commitment_signed) = match events_0[0] {
762                         MessageSendEvent::UpdateHTLCs { node_id:_, updates: msgs::CommitmentUpdate { update_add_htlcs:_, update_fulfill_htlcs:_, update_fail_htlcs:_, update_fail_malformed_htlcs:_, ref update_fee, ref commitment_signed } } => {
763                         (update_fee.as_ref(), commitment_signed)
764                 },
765                 _ => panic!("Unexpected event"),
766         };
767
768         nodes[1].node.handle_update_fee(&nodes[0].node.get_our_node_id(), update_msg.unwrap());
769         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), commitment_signed);
770         check_added_monitors!(nodes[1], 1);
771         // ... creating (5)
772         let revoke_msg = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
773         // No commitment_signed so get_event_msg's assert(len == 1) passes
774
775         // Handle (3), creating (6):
776         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_signed_0);
777         check_added_monitors!(nodes[0], 1);
778         let revoke_msg_0 = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
779         // No commitment_signed so get_event_msg's assert(len == 1) passes
780
781         // Deliver (5):
782         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &revoke_msg);
783         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
784         check_added_monitors!(nodes[0], 1);
785
786         // Deliver (6), creating (7):
787         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &revoke_msg_0);
788         let commitment_update = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
789         assert!(commitment_update.update_add_htlcs.is_empty());
790         assert!(commitment_update.update_fulfill_htlcs.is_empty());
791         assert!(commitment_update.update_fail_htlcs.is_empty());
792         assert!(commitment_update.update_fail_malformed_htlcs.is_empty());
793         assert!(commitment_update.update_fee.is_none());
794         check_added_monitors!(nodes[1], 1);
795
796         // Deliver (7)
797         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_update.commitment_signed);
798         check_added_monitors!(nodes[0], 1);
799         let revoke_msg = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
800         // No commitment_signed so get_event_msg's assert(len == 1) passes
801
802         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &revoke_msg);
803         check_added_monitors!(nodes[1], 1);
804         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
805
806         assert_eq!(get_feerate!(nodes[0], channel_id), feerate + 30);
807         assert_eq!(get_feerate!(nodes[1], channel_id), feerate + 30);
808         close_channel(&nodes[0], &nodes[1], &chan.2, chan.3, true);
809 }
810
811 #[test]
812 fn pre_funding_lock_shutdown_test() {
813         // Test sending a shutdown prior to funding_locked after funding generation
814         let chanmon_cfgs = create_chanmon_cfgs(2);
815         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
816         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
817         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
818         let tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 8000000, 0, InitFeatures::supported(), InitFeatures::supported());
819         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
820         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![tx.clone()]}, 1);
821         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![tx.clone()]}, 1);
822
823         nodes[0].node.close_channel(&OutPoint::new(tx.txid(), 0).to_channel_id()).unwrap();
824         let node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
825         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
826         let node_1_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
827         nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_shutdown);
828
829         let node_0_closing_signed = get_event_msg!(nodes[0], MessageSendEvent::SendClosingSigned, nodes[1].node.get_our_node_id());
830         nodes[1].node.handle_closing_signed(&nodes[0].node.get_our_node_id(), &node_0_closing_signed);
831         let (_, node_1_closing_signed) = get_closing_signed_broadcast!(nodes[1].node, nodes[0].node.get_our_node_id());
832         nodes[0].node.handle_closing_signed(&nodes[1].node.get_our_node_id(), &node_1_closing_signed.unwrap());
833         let (_, node_0_none) = get_closing_signed_broadcast!(nodes[0].node, nodes[1].node.get_our_node_id());
834         assert!(node_0_none.is_none());
835
836         assert!(nodes[0].node.list_channels().is_empty());
837         assert!(nodes[1].node.list_channels().is_empty());
838 }
839
840 #[test]
841 fn updates_shutdown_wait() {
842         // Test sending a shutdown with outstanding updates pending
843         let chanmon_cfgs = create_chanmon_cfgs(3);
844         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
845         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
846         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
847         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
848         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
849         let route_1 = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
850         let route_2 = nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
851
852         let (our_payment_preimage, _) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 100000);
853
854         nodes[0].node.close_channel(&chan_1.2).unwrap();
855         let node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
856         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
857         let node_1_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
858         nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_shutdown);
859
860         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
861         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
862
863         let (_, payment_hash) = get_payment_preimage_hash!(nodes[0]);
864         if let Err(APIError::ChannelUnavailable {..}) = nodes[0].node.send_payment(route_1, payment_hash) {}
865         else { panic!("New sends should fail!") };
866         if let Err(APIError::ChannelUnavailable {..}) = nodes[1].node.send_payment(route_2, payment_hash) {}
867         else { panic!("New sends should fail!") };
868
869         assert!(nodes[2].node.claim_funds(our_payment_preimage, 100_000));
870         check_added_monitors!(nodes[2], 1);
871         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
872         assert!(updates.update_add_htlcs.is_empty());
873         assert!(updates.update_fail_htlcs.is_empty());
874         assert!(updates.update_fail_malformed_htlcs.is_empty());
875         assert!(updates.update_fee.is_none());
876         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
877         nodes[1].node.handle_update_fulfill_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fulfill_htlcs[0]);
878         check_added_monitors!(nodes[1], 1);
879         let updates_2 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
880         commitment_signed_dance!(nodes[1], nodes[2], updates.commitment_signed, false);
881
882         assert!(updates_2.update_add_htlcs.is_empty());
883         assert!(updates_2.update_fail_htlcs.is_empty());
884         assert!(updates_2.update_fail_malformed_htlcs.is_empty());
885         assert!(updates_2.update_fee.is_none());
886         assert_eq!(updates_2.update_fulfill_htlcs.len(), 1);
887         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &updates_2.update_fulfill_htlcs[0]);
888         commitment_signed_dance!(nodes[0], nodes[1], updates_2.commitment_signed, false, true);
889
890         let events = nodes[0].node.get_and_clear_pending_events();
891         assert_eq!(events.len(), 1);
892         match events[0] {
893                 Event::PaymentSent { ref payment_preimage } => {
894                         assert_eq!(our_payment_preimage, *payment_preimage);
895                 },
896                 _ => panic!("Unexpected event"),
897         }
898
899         let node_0_closing_signed = get_event_msg!(nodes[0], MessageSendEvent::SendClosingSigned, nodes[1].node.get_our_node_id());
900         nodes[1].node.handle_closing_signed(&nodes[0].node.get_our_node_id(), &node_0_closing_signed);
901         let (_, node_1_closing_signed) = get_closing_signed_broadcast!(nodes[1].node, nodes[0].node.get_our_node_id());
902         nodes[0].node.handle_closing_signed(&nodes[1].node.get_our_node_id(), &node_1_closing_signed.unwrap());
903         let (_, node_0_none) = get_closing_signed_broadcast!(nodes[0].node, nodes[1].node.get_our_node_id());
904         assert!(node_0_none.is_none());
905
906         assert!(nodes[0].node.list_channels().is_empty());
907
908         assert_eq!(nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
909         nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
910         close_channel(&nodes[1], &nodes[2], &chan_2.2, chan_2.3, true);
911         assert!(nodes[1].node.list_channels().is_empty());
912         assert!(nodes[2].node.list_channels().is_empty());
913 }
914
915 #[test]
916 fn htlc_fail_async_shutdown() {
917         // Test HTLCs fail if shutdown starts even if messages are delivered out-of-order
918         let chanmon_cfgs = create_chanmon_cfgs(3);
919         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
920         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
921         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
922         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
923         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
924
925         let route = nodes[0].router.get_route(&nodes[2].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
926         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
927         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
928         check_added_monitors!(nodes[0], 1);
929         let updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
930         assert_eq!(updates.update_add_htlcs.len(), 1);
931         assert!(updates.update_fulfill_htlcs.is_empty());
932         assert!(updates.update_fail_htlcs.is_empty());
933         assert!(updates.update_fail_malformed_htlcs.is_empty());
934         assert!(updates.update_fee.is_none());
935
936         nodes[1].node.close_channel(&chan_1.2).unwrap();
937         let node_1_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
938         nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_shutdown);
939         let node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
940
941         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
942         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &updates.commitment_signed);
943         check_added_monitors!(nodes[1], 1);
944         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
945         commitment_signed_dance!(nodes[1], nodes[0], (), false, true, false);
946
947         let updates_2 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
948         assert!(updates_2.update_add_htlcs.is_empty());
949         assert!(updates_2.update_fulfill_htlcs.is_empty());
950         assert_eq!(updates_2.update_fail_htlcs.len(), 1);
951         assert!(updates_2.update_fail_malformed_htlcs.is_empty());
952         assert!(updates_2.update_fee.is_none());
953
954         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &updates_2.update_fail_htlcs[0]);
955         commitment_signed_dance!(nodes[0], nodes[1], updates_2.commitment_signed, false, true);
956
957         let events = nodes[0].node.get_and_clear_pending_events();
958         assert_eq!(events.len(), 1);
959         match events[0] {
960                 Event::PaymentFailed { ref payment_hash, ref rejected_by_dest, .. } => {
961                         assert_eq!(our_payment_hash, *payment_hash);
962                         assert!(!rejected_by_dest);
963                 },
964                 _ => panic!("Unexpected event"),
965         }
966
967         let msg_events = nodes[0].node.get_and_clear_pending_msg_events();
968         assert_eq!(msg_events.len(), 2);
969         let node_0_closing_signed = match msg_events[0] {
970                 MessageSendEvent::SendClosingSigned { ref node_id, ref msg } => {
971                         assert_eq!(*node_id, nodes[1].node.get_our_node_id());
972                         (*msg).clone()
973                 },
974                 _ => panic!("Unexpected event"),
975         };
976         match msg_events[1] {
977                 MessageSendEvent::PaymentFailureNetworkUpdate { update: msgs::HTLCFailChannelUpdate::ChannelUpdateMessage { ref msg }} => {
978                         assert_eq!(msg.contents.short_channel_id, chan_1.0.contents.short_channel_id);
979                 },
980                 _ => panic!("Unexpected event"),
981         }
982
983         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
984         nodes[1].node.handle_closing_signed(&nodes[0].node.get_our_node_id(), &node_0_closing_signed);
985         let (_, node_1_closing_signed) = get_closing_signed_broadcast!(nodes[1].node, nodes[0].node.get_our_node_id());
986         nodes[0].node.handle_closing_signed(&nodes[1].node.get_our_node_id(), &node_1_closing_signed.unwrap());
987         let (_, node_0_none) = get_closing_signed_broadcast!(nodes[0].node, nodes[1].node.get_our_node_id());
988         assert!(node_0_none.is_none());
989
990         assert!(nodes[0].node.list_channels().is_empty());
991
992         assert_eq!(nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
993         nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
994         close_channel(&nodes[1], &nodes[2], &chan_2.2, chan_2.3, true);
995         assert!(nodes[1].node.list_channels().is_empty());
996         assert!(nodes[2].node.list_channels().is_empty());
997 }
998
999 fn do_test_shutdown_rebroadcast(recv_count: u8) {
1000         // Test that shutdown/closing_signed is re-sent on reconnect with a variable number of
1001         // messages delivered prior to disconnect
1002         let chanmon_cfgs = create_chanmon_cfgs(3);
1003         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
1004         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
1005         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
1006         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1007         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
1008
1009         let (our_payment_preimage, _) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 100000);
1010
1011         nodes[1].node.close_channel(&chan_1.2).unwrap();
1012         let node_1_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
1013         if recv_count > 0 {
1014                 nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_shutdown);
1015                 let node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
1016                 if recv_count > 1 {
1017                         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
1018                 }
1019         }
1020
1021         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
1022         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
1023
1024         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
1025         let node_0_reestablish = get_event_msg!(nodes[0], MessageSendEvent::SendChannelReestablish, nodes[1].node.get_our_node_id());
1026         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
1027         let node_1_reestablish = get_event_msg!(nodes[1], MessageSendEvent::SendChannelReestablish, nodes[0].node.get_our_node_id());
1028
1029         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &node_0_reestablish);
1030         let node_1_2nd_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
1031         assert!(node_1_shutdown == node_1_2nd_shutdown);
1032
1033         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &node_1_reestablish);
1034         let node_0_2nd_shutdown = if recv_count > 0 {
1035                 let node_0_2nd_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
1036                 nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_2nd_shutdown);
1037                 node_0_2nd_shutdown
1038         } else {
1039                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1040                 nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_2nd_shutdown);
1041                 get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id())
1042         };
1043         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_2nd_shutdown);
1044
1045         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1046         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1047
1048         assert!(nodes[2].node.claim_funds(our_payment_preimage, 100_000));
1049         check_added_monitors!(nodes[2], 1);
1050         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
1051         assert!(updates.update_add_htlcs.is_empty());
1052         assert!(updates.update_fail_htlcs.is_empty());
1053         assert!(updates.update_fail_malformed_htlcs.is_empty());
1054         assert!(updates.update_fee.is_none());
1055         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
1056         nodes[1].node.handle_update_fulfill_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fulfill_htlcs[0]);
1057         check_added_monitors!(nodes[1], 1);
1058         let updates_2 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1059         commitment_signed_dance!(nodes[1], nodes[2], updates.commitment_signed, false);
1060
1061         assert!(updates_2.update_add_htlcs.is_empty());
1062         assert!(updates_2.update_fail_htlcs.is_empty());
1063         assert!(updates_2.update_fail_malformed_htlcs.is_empty());
1064         assert!(updates_2.update_fee.is_none());
1065         assert_eq!(updates_2.update_fulfill_htlcs.len(), 1);
1066         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &updates_2.update_fulfill_htlcs[0]);
1067         commitment_signed_dance!(nodes[0], nodes[1], updates_2.commitment_signed, false, true);
1068
1069         let events = nodes[0].node.get_and_clear_pending_events();
1070         assert_eq!(events.len(), 1);
1071         match events[0] {
1072                 Event::PaymentSent { ref payment_preimage } => {
1073                         assert_eq!(our_payment_preimage, *payment_preimage);
1074                 },
1075                 _ => panic!("Unexpected event"),
1076         }
1077
1078         let node_0_closing_signed = get_event_msg!(nodes[0], MessageSendEvent::SendClosingSigned, nodes[1].node.get_our_node_id());
1079         if recv_count > 0 {
1080                 nodes[1].node.handle_closing_signed(&nodes[0].node.get_our_node_id(), &node_0_closing_signed);
1081                 let (_, node_1_closing_signed) = get_closing_signed_broadcast!(nodes[1].node, nodes[0].node.get_our_node_id());
1082                 assert!(node_1_closing_signed.is_some());
1083         }
1084
1085         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
1086         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
1087
1088         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
1089         let node_0_2nd_reestablish = get_event_msg!(nodes[0], MessageSendEvent::SendChannelReestablish, nodes[1].node.get_our_node_id());
1090         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
1091         if recv_count == 0 {
1092                 // If all closing_signeds weren't delivered we can just resume where we left off...
1093                 let node_1_2nd_reestablish = get_event_msg!(nodes[1], MessageSendEvent::SendChannelReestablish, nodes[0].node.get_our_node_id());
1094
1095                 nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &node_1_2nd_reestablish);
1096                 let node_0_3rd_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
1097                 assert!(node_0_2nd_shutdown == node_0_3rd_shutdown);
1098
1099                 nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &node_0_2nd_reestablish);
1100                 let node_1_3rd_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
1101                 assert!(node_1_3rd_shutdown == node_1_2nd_shutdown);
1102
1103                 nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_3rd_shutdown);
1104                 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1105
1106                 nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_1_3rd_shutdown);
1107                 let node_0_2nd_closing_signed = get_event_msg!(nodes[0], MessageSendEvent::SendClosingSigned, nodes[1].node.get_our_node_id());
1108                 assert!(node_0_closing_signed == node_0_2nd_closing_signed);
1109
1110                 nodes[1].node.handle_closing_signed(&nodes[0].node.get_our_node_id(), &node_0_2nd_closing_signed);
1111                 let (_, node_1_closing_signed) = get_closing_signed_broadcast!(nodes[1].node, nodes[0].node.get_our_node_id());
1112                 nodes[0].node.handle_closing_signed(&nodes[1].node.get_our_node_id(), &node_1_closing_signed.unwrap());
1113                 let (_, node_0_none) = get_closing_signed_broadcast!(nodes[0].node, nodes[1].node.get_our_node_id());
1114                 assert!(node_0_none.is_none());
1115         } else {
1116                 // If one node, however, received + responded with an identical closing_signed we end
1117                 // up erroring and node[0] will try to broadcast its own latest commitment transaction.
1118                 // There isn't really anything better we can do simply, but in the future we might
1119                 // explore storing a set of recently-closed channels that got disconnected during
1120                 // closing_signed and avoiding broadcasting local commitment txn for some timeout to
1121                 // give our counterparty enough time to (potentially) broadcast a cooperative closing
1122                 // transaction.
1123                 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1124
1125                 nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &node_0_2nd_reestablish);
1126                 let msg_events = nodes[1].node.get_and_clear_pending_msg_events();
1127                 assert_eq!(msg_events.len(), 1);
1128                 if let MessageSendEvent::HandleError { ref action, .. } = msg_events[0] {
1129                         match action {
1130                                 &ErrorAction::SendErrorMessage { ref msg } => {
1131                                         nodes[0].node.handle_error(&nodes[1].node.get_our_node_id(), &msg);
1132                                         assert_eq!(msg.channel_id, chan_1.2);
1133                                 },
1134                                 _ => panic!("Unexpected event!"),
1135                         }
1136                 } else { panic!("Needed SendErrorMessage close"); }
1137
1138                 // get_closing_signed_broadcast usually eats the BroadcastChannelUpdate for us and
1139                 // checks it, but in this case nodes[0] didn't ever get a chance to receive a
1140                 // closing_signed so we do it ourselves
1141                 check_closed_broadcast!(nodes[0], false);
1142                 check_added_monitors!(nodes[0], 1);
1143         }
1144
1145         assert!(nodes[0].node.list_channels().is_empty());
1146
1147         assert_eq!(nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
1148         nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
1149         close_channel(&nodes[1], &nodes[2], &chan_2.2, chan_2.3, true);
1150         assert!(nodes[1].node.list_channels().is_empty());
1151         assert!(nodes[2].node.list_channels().is_empty());
1152 }
1153
1154 #[test]
1155 fn test_shutdown_rebroadcast() {
1156         do_test_shutdown_rebroadcast(0);
1157         do_test_shutdown_rebroadcast(1);
1158         do_test_shutdown_rebroadcast(2);
1159 }
1160
1161 #[test]
1162 fn fake_network_test() {
1163         // Simple test which builds a network of ChannelManagers, connects them to each other, and
1164         // tests that payments get routed and transactions broadcast in semi-reasonable ways.
1165         let chanmon_cfgs = create_chanmon_cfgs(4);
1166         let node_cfgs = create_node_cfgs(4, &chanmon_cfgs);
1167         let node_chanmgrs = create_node_chanmgrs(4, &node_cfgs, &[None, None, None, None]);
1168         let nodes = create_network(4, &node_cfgs, &node_chanmgrs);
1169
1170         // Create some initial channels
1171         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1172         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
1173         let chan_3 = create_announced_chan_between_nodes(&nodes, 2, 3, InitFeatures::supported(), InitFeatures::supported());
1174
1175         // Rebalance the network a bit by relaying one payment through all the channels...
1176         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000, 8_000_000);
1177         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000, 8_000_000);
1178         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000, 8_000_000);
1179         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000, 8_000_000);
1180
1181         // Send some more payments
1182         send_payment(&nodes[1], &vec!(&nodes[2], &nodes[3])[..], 1000000, 1_000_000);
1183         send_payment(&nodes[3], &vec!(&nodes[2], &nodes[1], &nodes[0])[..], 1000000, 1_000_000);
1184         send_payment(&nodes[3], &vec!(&nodes[2], &nodes[1])[..], 1000000, 1_000_000);
1185
1186         // Test failure packets
1187         let payment_hash_1 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 1000000).1;
1188         fail_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], payment_hash_1);
1189
1190         // Add a new channel that skips 3
1191         let chan_4 = create_announced_chan_between_nodes(&nodes, 1, 3, InitFeatures::supported(), InitFeatures::supported());
1192
1193         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 1000000, 1_000_000);
1194         send_payment(&nodes[2], &vec!(&nodes[3])[..], 1000000, 1_000_000);
1195         send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000, 8_000_000);
1196         send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000, 8_000_000);
1197         send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000, 8_000_000);
1198         send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000, 8_000_000);
1199         send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000, 8_000_000);
1200
1201         // Do some rebalance loop payments, simultaneously
1202         let mut hops = Vec::with_capacity(3);
1203         hops.push(RouteHop {
1204                 pubkey: nodes[2].node.get_our_node_id(),
1205                 node_features: NodeFeatures::empty(),
1206                 short_channel_id: chan_2.0.contents.short_channel_id,
1207                 channel_features: ChannelFeatures::empty(),
1208                 fee_msat: 0,
1209                 cltv_expiry_delta: chan_3.0.contents.cltv_expiry_delta as u32
1210         });
1211         hops.push(RouteHop {
1212                 pubkey: nodes[3].node.get_our_node_id(),
1213                 node_features: NodeFeatures::empty(),
1214                 short_channel_id: chan_3.0.contents.short_channel_id,
1215                 channel_features: ChannelFeatures::empty(),
1216                 fee_msat: 0,
1217                 cltv_expiry_delta: chan_4.1.contents.cltv_expiry_delta as u32
1218         });
1219         hops.push(RouteHop {
1220                 pubkey: nodes[1].node.get_our_node_id(),
1221                 node_features: NodeFeatures::empty(),
1222                 short_channel_id: chan_4.0.contents.short_channel_id,
1223                 channel_features: ChannelFeatures::empty(),
1224                 fee_msat: 1000000,
1225                 cltv_expiry_delta: TEST_FINAL_CLTV,
1226         });
1227         hops[1].fee_msat = chan_4.1.contents.fee_base_msat as u64 + chan_4.1.contents.fee_proportional_millionths as u64 * hops[2].fee_msat as u64 / 1000000;
1228         hops[0].fee_msat = chan_3.0.contents.fee_base_msat as u64 + chan_3.0.contents.fee_proportional_millionths as u64 * hops[1].fee_msat as u64 / 1000000;
1229         let payment_preimage_1 = send_along_route(&nodes[1], Route { hops }, &vec!(&nodes[2], &nodes[3], &nodes[1])[..], 1000000).0;
1230
1231         let mut hops = Vec::with_capacity(3);
1232         hops.push(RouteHop {
1233                 pubkey: nodes[3].node.get_our_node_id(),
1234                 node_features: NodeFeatures::empty(),
1235                 short_channel_id: chan_4.0.contents.short_channel_id,
1236                 channel_features: ChannelFeatures::empty(),
1237                 fee_msat: 0,
1238                 cltv_expiry_delta: chan_3.1.contents.cltv_expiry_delta as u32
1239         });
1240         hops.push(RouteHop {
1241                 pubkey: nodes[2].node.get_our_node_id(),
1242                 node_features: NodeFeatures::empty(),
1243                 short_channel_id: chan_3.0.contents.short_channel_id,
1244                 channel_features: ChannelFeatures::empty(),
1245                 fee_msat: 0,
1246                 cltv_expiry_delta: chan_2.1.contents.cltv_expiry_delta as u32
1247         });
1248         hops.push(RouteHop {
1249                 pubkey: nodes[1].node.get_our_node_id(),
1250                 node_features: NodeFeatures::empty(),
1251                 short_channel_id: chan_2.0.contents.short_channel_id,
1252                 channel_features: ChannelFeatures::empty(),
1253                 fee_msat: 1000000,
1254                 cltv_expiry_delta: TEST_FINAL_CLTV,
1255         });
1256         hops[1].fee_msat = chan_2.1.contents.fee_base_msat as u64 + chan_2.1.contents.fee_proportional_millionths as u64 * hops[2].fee_msat as u64 / 1000000;
1257         hops[0].fee_msat = chan_3.1.contents.fee_base_msat as u64 + chan_3.1.contents.fee_proportional_millionths as u64 * hops[1].fee_msat as u64 / 1000000;
1258         let payment_hash_2 = send_along_route(&nodes[1], Route { hops }, &vec!(&nodes[3], &nodes[2], &nodes[1])[..], 1000000).1;
1259
1260         // Claim the rebalances...
1261         fail_payment(&nodes[1], &vec!(&nodes[3], &nodes[2], &nodes[1])[..], payment_hash_2);
1262         claim_payment(&nodes[1], &vec!(&nodes[2], &nodes[3], &nodes[1])[..], payment_preimage_1, 1_000_000);
1263
1264         // Add a duplicate new channel from 2 to 4
1265         let chan_5 = create_announced_chan_between_nodes(&nodes, 1, 3, InitFeatures::supported(), InitFeatures::supported());
1266
1267         // Send some payments across both channels
1268         let payment_preimage_3 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
1269         let payment_preimage_4 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
1270         let payment_preimage_5 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
1271
1272
1273         route_over_limit(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000);
1274         let events = nodes[0].node.get_and_clear_pending_msg_events();
1275         assert_eq!(events.len(), 0);
1276         nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over the max HTLC value in flight our peer will accept".to_string(), 1);
1277
1278         //TODO: Test that routes work again here as we've been notified that the channel is full
1279
1280         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_3, 3_000_000);
1281         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_4, 3_000_000);
1282         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_5, 3_000_000);
1283
1284         // Close down the channels...
1285         close_channel(&nodes[0], &nodes[1], &chan_1.2, chan_1.3, true);
1286         close_channel(&nodes[1], &nodes[2], &chan_2.2, chan_2.3, false);
1287         close_channel(&nodes[2], &nodes[3], &chan_3.2, chan_3.3, true);
1288         close_channel(&nodes[1], &nodes[3], &chan_4.2, chan_4.3, false);
1289         close_channel(&nodes[1], &nodes[3], &chan_5.2, chan_5.3, false);
1290 }
1291
1292 #[test]
1293 fn holding_cell_htlc_counting() {
1294         // Tests that HTLCs in the holding cell count towards the pending HTLC limits on outbound HTLCs
1295         // to ensure we don't end up with HTLCs sitting around in our holding cell for several
1296         // commitment dance rounds.
1297         let chanmon_cfgs = create_chanmon_cfgs(3);
1298         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
1299         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
1300         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
1301         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1302         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
1303
1304         let mut payments = Vec::new();
1305         for _ in 0..::ln::channel::OUR_MAX_HTLCS {
1306                 let route = nodes[1].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 100000, TEST_FINAL_CLTV).unwrap();
1307                 let (payment_preimage, payment_hash) = get_payment_preimage_hash!(nodes[0]);
1308                 nodes[1].node.send_payment(route, payment_hash).unwrap();
1309                 payments.push((payment_preimage, payment_hash));
1310         }
1311         check_added_monitors!(nodes[1], 1);
1312
1313         let mut events = nodes[1].node.get_and_clear_pending_msg_events();
1314         assert_eq!(events.len(), 1);
1315         let initial_payment_event = SendEvent::from_event(events.pop().unwrap());
1316         assert_eq!(initial_payment_event.node_id, nodes[2].node.get_our_node_id());
1317
1318         // There is now one HTLC in an outbound commitment transaction and (OUR_MAX_HTLCS - 1) HTLCs in
1319         // the holding cell waiting on B's RAA to send. At this point we should not be able to add
1320         // another HTLC.
1321         let route = nodes[1].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 100000, TEST_FINAL_CLTV).unwrap();
1322         let (_, payment_hash_1) = get_payment_preimage_hash!(nodes[0]);
1323         if let APIError::ChannelUnavailable { err } = nodes[1].node.send_payment(route, payment_hash_1).unwrap_err() {
1324                 assert_eq!(err, "Cannot push more than their max accepted HTLCs");
1325         } else { panic!("Unexpected event"); }
1326         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1327         nodes[1].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot push more than their max accepted HTLCs".to_string(), 1);
1328
1329         // This should also be true if we try to forward a payment.
1330         let route = nodes[0].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 100000, TEST_FINAL_CLTV).unwrap();
1331         let (_, payment_hash_2) = get_payment_preimage_hash!(nodes[0]);
1332         nodes[0].node.send_payment(route, payment_hash_2).unwrap();
1333         check_added_monitors!(nodes[0], 1);
1334
1335         let mut events = nodes[0].node.get_and_clear_pending_msg_events();
1336         assert_eq!(events.len(), 1);
1337         let payment_event = SendEvent::from_event(events.pop().unwrap());
1338         assert_eq!(payment_event.node_id, nodes[1].node.get_our_node_id());
1339
1340         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
1341         commitment_signed_dance!(nodes[1], nodes[0], payment_event.commitment_msg, false);
1342         // We have to forward pending HTLCs twice - once tries to forward the payment forward (and
1343         // fails), the second will process the resulting failure and fail the HTLC backward.
1344         expect_pending_htlcs_forwardable!(nodes[1]);
1345         expect_pending_htlcs_forwardable!(nodes[1]);
1346         check_added_monitors!(nodes[1], 1);
1347
1348         let bs_fail_updates = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1349         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &bs_fail_updates.update_fail_htlcs[0]);
1350         commitment_signed_dance!(nodes[0], nodes[1], bs_fail_updates.commitment_signed, false, true);
1351
1352         let events = nodes[0].node.get_and_clear_pending_msg_events();
1353         assert_eq!(events.len(), 1);
1354         match events[0] {
1355                 MessageSendEvent::PaymentFailureNetworkUpdate { update: msgs::HTLCFailChannelUpdate::ChannelUpdateMessage { ref msg }} => {
1356                         assert_eq!(msg.contents.short_channel_id, chan_2.0.contents.short_channel_id);
1357                 },
1358                 _ => panic!("Unexpected event"),
1359         }
1360
1361         let events = nodes[0].node.get_and_clear_pending_events();
1362         assert_eq!(events.len(), 1);
1363         match events[0] {
1364                 Event::PaymentFailed { payment_hash, rejected_by_dest, .. } => {
1365                         assert_eq!(payment_hash, payment_hash_2);
1366                         assert!(!rejected_by_dest);
1367                 },
1368                 _ => panic!("Unexpected event"),
1369         }
1370
1371         // Now forward all the pending HTLCs and claim them back
1372         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &initial_payment_event.msgs[0]);
1373         nodes[2].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &initial_payment_event.commitment_msg);
1374         check_added_monitors!(nodes[2], 1);
1375
1376         let (bs_revoke_and_ack, bs_commitment_signed) = get_revoke_commit_msgs!(nodes[2], nodes[1].node.get_our_node_id());
1377         nodes[1].node.handle_revoke_and_ack(&nodes[2].node.get_our_node_id(), &bs_revoke_and_ack);
1378         check_added_monitors!(nodes[1], 1);
1379         let as_updates = get_htlc_update_msgs!(nodes[1], nodes[2].node.get_our_node_id());
1380
1381         nodes[1].node.handle_commitment_signed(&nodes[2].node.get_our_node_id(), &bs_commitment_signed);
1382         check_added_monitors!(nodes[1], 1);
1383         let as_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[2].node.get_our_node_id());
1384
1385         for ref update in as_updates.update_add_htlcs.iter() {
1386                 nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), update);
1387         }
1388         nodes[2].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &as_updates.commitment_signed);
1389         check_added_monitors!(nodes[2], 1);
1390         nodes[2].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &as_raa);
1391         check_added_monitors!(nodes[2], 1);
1392         let (bs_revoke_and_ack, bs_commitment_signed) = get_revoke_commit_msgs!(nodes[2], nodes[1].node.get_our_node_id());
1393
1394         nodes[1].node.handle_revoke_and_ack(&nodes[2].node.get_our_node_id(), &bs_revoke_and_ack);
1395         check_added_monitors!(nodes[1], 1);
1396         nodes[1].node.handle_commitment_signed(&nodes[2].node.get_our_node_id(), &bs_commitment_signed);
1397         check_added_monitors!(nodes[1], 1);
1398         let as_final_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[2].node.get_our_node_id());
1399
1400         nodes[2].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &as_final_raa);
1401         check_added_monitors!(nodes[2], 1);
1402
1403         expect_pending_htlcs_forwardable!(nodes[2]);
1404
1405         let events = nodes[2].node.get_and_clear_pending_events();
1406         assert_eq!(events.len(), payments.len());
1407         for (event, &(_, ref hash)) in events.iter().zip(payments.iter()) {
1408                 match event {
1409                         &Event::PaymentReceived { ref payment_hash, .. } => {
1410                                 assert_eq!(*payment_hash, *hash);
1411                         },
1412                         _ => panic!("Unexpected event"),
1413                 };
1414         }
1415
1416         for (preimage, _) in payments.drain(..) {
1417                 claim_payment(&nodes[1], &[&nodes[2]], preimage, 100_000);
1418         }
1419
1420         send_payment(&nodes[0], &[&nodes[1], &nodes[2]], 1000000, 1_000_000);
1421 }
1422
1423 #[test]
1424 fn duplicate_htlc_test() {
1425         // Test that we accept duplicate payment_hash HTLCs across the network and that
1426         // claiming/failing them are all separate and don't affect each other
1427         let chanmon_cfgs = create_chanmon_cfgs(6);
1428         let node_cfgs = create_node_cfgs(6, &chanmon_cfgs);
1429         let node_chanmgrs = create_node_chanmgrs(6, &node_cfgs, &[None, None, None, None, None, None]);
1430         let mut nodes = create_network(6, &node_cfgs, &node_chanmgrs);
1431
1432         // Create some initial channels to route via 3 to 4/5 from 0/1/2
1433         create_announced_chan_between_nodes(&nodes, 0, 3, InitFeatures::supported(), InitFeatures::supported());
1434         create_announced_chan_between_nodes(&nodes, 1, 3, InitFeatures::supported(), InitFeatures::supported());
1435         create_announced_chan_between_nodes(&nodes, 2, 3, InitFeatures::supported(), InitFeatures::supported());
1436         create_announced_chan_between_nodes(&nodes, 3, 4, InitFeatures::supported(), InitFeatures::supported());
1437         create_announced_chan_between_nodes(&nodes, 3, 5, InitFeatures::supported(), InitFeatures::supported());
1438
1439         let (payment_preimage, payment_hash) = route_payment(&nodes[0], &vec!(&nodes[3], &nodes[4])[..], 1000000);
1440
1441         *nodes[0].network_payment_count.borrow_mut() -= 1;
1442         assert_eq!(route_payment(&nodes[1], &vec!(&nodes[3])[..], 1000000).0, payment_preimage);
1443
1444         *nodes[0].network_payment_count.borrow_mut() -= 1;
1445         assert_eq!(route_payment(&nodes[2], &vec!(&nodes[3], &nodes[5])[..], 1000000).0, payment_preimage);
1446
1447         claim_payment(&nodes[0], &vec!(&nodes[3], &nodes[4])[..], payment_preimage, 1_000_000);
1448         fail_payment(&nodes[2], &vec!(&nodes[3], &nodes[5])[..], payment_hash);
1449         claim_payment(&nodes[1], &vec!(&nodes[3])[..], payment_preimage, 1_000_000);
1450 }
1451
1452 #[test]
1453 fn test_duplicate_htlc_different_direction_onchain() {
1454         // Test that ChannelMonitor doesn't generate 2 preimage txn
1455         // when we have 2 HTLCs with same preimage that go across a node
1456         // in opposite directions.
1457         let chanmon_cfgs = create_chanmon_cfgs(2);
1458         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1459         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1460         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1461
1462         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1463
1464         // balancing
1465         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
1466
1467         let (payment_preimage, payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1])[..], 900_000);
1468
1469         let route = nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &Vec::new(), 800_000, TEST_FINAL_CLTV).unwrap();
1470         send_along_route_with_hash(&nodes[1], route, &vec!(&nodes[0])[..], 800_000, payment_hash);
1471
1472         // Provide preimage to node 0 by claiming payment
1473         nodes[0].node.claim_funds(payment_preimage, 800_000);
1474         check_added_monitors!(nodes[0], 1);
1475
1476         // Broadcast node 1 commitment txn
1477         let remote_txn = get_local_commitment_txn!(nodes[1], chan_1.2);
1478
1479         assert_eq!(remote_txn[0].output.len(), 4); // 1 local, 1 remote, 1 htlc inbound, 1 htlc outbound
1480         let mut has_both_htlcs = 0; // check htlcs match ones committed
1481         for outp in remote_txn[0].output.iter() {
1482                 if outp.value == 800_000 / 1000 {
1483                         has_both_htlcs += 1;
1484                 } else if outp.value == 900_000 / 1000 {
1485                         has_both_htlcs += 1;
1486                 }
1487         }
1488         assert_eq!(has_both_htlcs, 2);
1489
1490         let header = BlockHeader { version: 0x2000_0000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
1491         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![remote_txn[0].clone()] }, 1);
1492         check_added_monitors!(nodes[0], 1);
1493
1494         // Check we only broadcast 1 timeout tx
1495         let claim_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().clone();
1496         let htlc_pair = if claim_txn[0].output[0].value == 800_000 / 1000 { (claim_txn[0].clone(), claim_txn[1].clone()) } else { (claim_txn[1].clone(), claim_txn[0].clone()) };
1497         assert_eq!(claim_txn.len(), 5);
1498         check_spends!(claim_txn[2], chan_1.3);
1499         check_spends!(claim_txn[3], claim_txn[2]);
1500         assert_eq!(htlc_pair.0.input.len(), 1);
1501         assert_eq!(htlc_pair.0.input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT); // HTLC 1 <--> 0, preimage tx
1502         check_spends!(htlc_pair.0, remote_txn[0]);
1503         assert_eq!(htlc_pair.1.input.len(), 1);
1504         assert_eq!(htlc_pair.1.input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT); // HTLC 0 <--> 1, timeout tx
1505         check_spends!(htlc_pair.1, remote_txn[0]);
1506
1507         let events = nodes[0].node.get_and_clear_pending_msg_events();
1508         assert_eq!(events.len(), 2);
1509         for e in events {
1510                 match e {
1511                         MessageSendEvent::BroadcastChannelUpdate { .. } => {},
1512                         MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, .. } } => {
1513                                 assert!(update_add_htlcs.is_empty());
1514                                 assert!(update_fail_htlcs.is_empty());
1515                                 assert_eq!(update_fulfill_htlcs.len(), 1);
1516                                 assert!(update_fail_malformed_htlcs.is_empty());
1517                                 assert_eq!(nodes[1].node.get_our_node_id(), *node_id);
1518                         },
1519                         _ => panic!("Unexpected event"),
1520                 }
1521         }
1522 }
1523
1524 fn do_channel_reserve_test(test_recv: bool) {
1525
1526         let chanmon_cfgs = create_chanmon_cfgs(3);
1527         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
1528         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
1529         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
1530         let chan_1 = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1900, 1001, InitFeatures::supported(), InitFeatures::supported());
1531         let chan_2 = create_announced_chan_between_nodes_with_value(&nodes, 1, 2, 1900, 1001, InitFeatures::supported(), InitFeatures::supported());
1532
1533         let mut stat01 = get_channel_value_stat!(nodes[0], chan_1.2);
1534         let mut stat11 = get_channel_value_stat!(nodes[1], chan_1.2);
1535
1536         let mut stat12 = get_channel_value_stat!(nodes[1], chan_2.2);
1537         let mut stat22 = get_channel_value_stat!(nodes[2], chan_2.2);
1538
1539         macro_rules! get_route_and_payment_hash {
1540                 ($recv_value: expr) => {{
1541                         let route = nodes[0].router.get_route(&nodes.last().unwrap().node.get_our_node_id(), None, &Vec::new(), $recv_value, TEST_FINAL_CLTV).unwrap();
1542                         let (payment_preimage, payment_hash) = get_payment_preimage_hash!(nodes[0]);
1543                         (route, payment_hash, payment_preimage)
1544                 }}
1545         };
1546
1547         macro_rules! expect_forward {
1548                 ($node: expr) => {{
1549                         let mut events = $node.node.get_and_clear_pending_msg_events();
1550                         assert_eq!(events.len(), 1);
1551                         check_added_monitors!($node, 1);
1552                         let payment_event = SendEvent::from_event(events.remove(0));
1553                         payment_event
1554                 }}
1555         }
1556
1557         let feemsat = 239; // somehow we know?
1558         let total_fee_msat = (nodes.len() - 2) as u64 * 239;
1559
1560         let recv_value_0 = stat01.their_max_htlc_value_in_flight_msat - total_fee_msat;
1561
1562         // attempt to send amt_msat > their_max_htlc_value_in_flight_msat
1563         {
1564                 let (route, our_payment_hash, _) = get_route_and_payment_hash!(recv_value_0 + 1);
1565                 assert!(route.hops.iter().rev().skip(1).all(|h| h.fee_msat == feemsat));
1566                 let err = nodes[0].node.send_payment(route, our_payment_hash).err().unwrap();
1567                 match err {
1568                         APIError::ChannelUnavailable{err} => assert_eq!(err, "Cannot send value that would put us over the max HTLC value in flight our peer will accept"),
1569                         _ => panic!("Unknown error variants"),
1570                 }
1571                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1572                 nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over the max HTLC value in flight our peer will accept".to_string(), 1);
1573         }
1574
1575         let mut htlc_id = 0;
1576         // channel reserve is bigger than their_max_htlc_value_in_flight_msat so loop to deplete
1577         // nodes[0]'s wealth
1578         loop {
1579                 let amt_msat = recv_value_0 + total_fee_msat;
1580                 if stat01.value_to_self_msat - amt_msat < stat01.channel_reserve_msat {
1581                         break;
1582                 }
1583                 send_payment(&nodes[0], &vec![&nodes[1], &nodes[2]][..], recv_value_0, recv_value_0);
1584                 htlc_id += 1;
1585
1586                 let (stat01_, stat11_, stat12_, stat22_) = (
1587                         get_channel_value_stat!(nodes[0], chan_1.2),
1588                         get_channel_value_stat!(nodes[1], chan_1.2),
1589                         get_channel_value_stat!(nodes[1], chan_2.2),
1590                         get_channel_value_stat!(nodes[2], chan_2.2),
1591                 );
1592
1593                 assert_eq!(stat01_.value_to_self_msat, stat01.value_to_self_msat - amt_msat);
1594                 assert_eq!(stat11_.value_to_self_msat, stat11.value_to_self_msat + amt_msat);
1595                 assert_eq!(stat12_.value_to_self_msat, stat12.value_to_self_msat - (amt_msat - feemsat));
1596                 assert_eq!(stat22_.value_to_self_msat, stat22.value_to_self_msat + (amt_msat - feemsat));
1597                 stat01 = stat01_; stat11 = stat11_; stat12 = stat12_; stat22 = stat22_;
1598         }
1599
1600         {
1601                 let recv_value = stat01.value_to_self_msat - stat01.channel_reserve_msat - total_fee_msat;
1602                 // attempt to get channel_reserve violation
1603                 let (route, our_payment_hash, _) = get_route_and_payment_hash!(recv_value + 1);
1604                 let err = nodes[0].node.send_payment(route.clone(), our_payment_hash).err().unwrap();
1605                 match err {
1606                         APIError::ChannelUnavailable{err} => assert_eq!(err, "Cannot send value that would put us over their reserve value"),
1607                         _ => panic!("Unknown error variants"),
1608                 }
1609                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1610                 nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over their reserve value".to_string(), 1);
1611         }
1612
1613         // adding pending output
1614         let recv_value_1 = (stat01.value_to_self_msat - stat01.channel_reserve_msat - total_fee_msat)/2;
1615         let amt_msat_1 = recv_value_1 + total_fee_msat;
1616
1617         let (route_1, our_payment_hash_1, our_payment_preimage_1) = get_route_and_payment_hash!(recv_value_1);
1618         let payment_event_1 = {
1619                 nodes[0].node.send_payment(route_1, our_payment_hash_1).unwrap();
1620                 check_added_monitors!(nodes[0], 1);
1621
1622                 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
1623                 assert_eq!(events.len(), 1);
1624                 SendEvent::from_event(events.remove(0))
1625         };
1626         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event_1.msgs[0]);
1627
1628         // channel reserve test with htlc pending output > 0
1629         let recv_value_2 = stat01.value_to_self_msat - amt_msat_1 - stat01.channel_reserve_msat - total_fee_msat;
1630         {
1631                 let (route, our_payment_hash, _) = get_route_and_payment_hash!(recv_value_2 + 1);
1632                 match nodes[0].node.send_payment(route, our_payment_hash).err().unwrap() {
1633                         APIError::ChannelUnavailable{err} => assert_eq!(err, "Cannot send value that would put us over their reserve value"),
1634                         _ => panic!("Unknown error variants"),
1635                 }
1636                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1637                 nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over their reserve value".to_string(), 2);
1638         }
1639
1640         {
1641                 // test channel_reserve test on nodes[1] side
1642                 let (route, our_payment_hash, _) = get_route_and_payment_hash!(recv_value_2 + 1);
1643
1644                 // Need to manually create update_add_htlc message to go around the channel reserve check in send_htlc()
1645                 let secp_ctx = Secp256k1::new();
1646                 let session_priv = SecretKey::from_slice(&{
1647                         let mut session_key = [0; 32];
1648                         let mut rng = thread_rng();
1649                         rng.fill_bytes(&mut session_key);
1650                         session_key
1651                 }).expect("RNG is bad!");
1652
1653                 let cur_height = nodes[0].node.latest_block_height.load(Ordering::Acquire) as u32 + 1;
1654                 let onion_keys = onion_utils::construct_onion_keys(&secp_ctx, &route, &session_priv).unwrap();
1655                 let (onion_payloads, htlc_msat, htlc_cltv) = onion_utils::build_onion_payloads(&route, cur_height).unwrap();
1656                 let onion_packet = onion_utils::construct_onion_packet(onion_payloads, onion_keys, [0; 32], &our_payment_hash);
1657                 let msg = msgs::UpdateAddHTLC {
1658                         channel_id: chan_1.2,
1659                         htlc_id,
1660                         amount_msat: htlc_msat,
1661                         payment_hash: our_payment_hash,
1662                         cltv_expiry: htlc_cltv,
1663                         onion_routing_packet: onion_packet,
1664                 };
1665
1666                 if test_recv {
1667                         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &msg);
1668                         // If we send a garbage message, the channel should get closed, making the rest of this test case fail.
1669                         assert_eq!(nodes[1].node.list_channels().len(), 1);
1670                         assert_eq!(nodes[1].node.list_channels().len(), 1);
1671                         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
1672                         assert_eq!(err_msg.data, "Remote HTLC add would put them over their reserve value");
1673                         check_added_monitors!(nodes[1], 1);
1674                         return;
1675                 }
1676         }
1677
1678         // split the rest to test holding cell
1679         let recv_value_21 = recv_value_2/2;
1680         let recv_value_22 = recv_value_2 - recv_value_21 - total_fee_msat;
1681         {
1682                 let stat = get_channel_value_stat!(nodes[0], chan_1.2);
1683                 assert_eq!(stat.value_to_self_msat - (stat.pending_outbound_htlcs_amount_msat + recv_value_21 + recv_value_22 + total_fee_msat + total_fee_msat), stat.channel_reserve_msat);
1684         }
1685
1686         // now see if they go through on both sides
1687         let (route_21, our_payment_hash_21, our_payment_preimage_21) = get_route_and_payment_hash!(recv_value_21);
1688         // but this will stuck in the holding cell
1689         nodes[0].node.send_payment(route_21, our_payment_hash_21).unwrap();
1690         check_added_monitors!(nodes[0], 0);
1691         let events = nodes[0].node.get_and_clear_pending_events();
1692         assert_eq!(events.len(), 0);
1693
1694         // test with outbound holding cell amount > 0
1695         {
1696                 let (route, our_payment_hash, _) = get_route_and_payment_hash!(recv_value_22+1);
1697                 match nodes[0].node.send_payment(route, our_payment_hash).err().unwrap() {
1698                         APIError::ChannelUnavailable{err} => assert_eq!(err, "Cannot send value that would put us over their reserve value"),
1699                         _ => panic!("Unknown error variants"),
1700                 }
1701                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1702                 nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over their reserve value".to_string(), 3);
1703         }
1704
1705         let (route_22, our_payment_hash_22, our_payment_preimage_22) = get_route_and_payment_hash!(recv_value_22);
1706         // this will also stuck in the holding cell
1707         nodes[0].node.send_payment(route_22, our_payment_hash_22).unwrap();
1708         check_added_monitors!(nodes[0], 0);
1709         assert!(nodes[0].node.get_and_clear_pending_events().is_empty());
1710         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
1711
1712         // flush the pending htlc
1713         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &payment_event_1.commitment_msg);
1714         let (as_revoke_and_ack, as_commitment_signed) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1715         check_added_monitors!(nodes[1], 1);
1716
1717         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &as_revoke_and_ack);
1718         check_added_monitors!(nodes[0], 1);
1719         let commitment_update_2 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1720
1721         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &as_commitment_signed);
1722         let bs_revoke_and_ack = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
1723         // No commitment_signed so get_event_msg's assert(len == 1) passes
1724         check_added_monitors!(nodes[0], 1);
1725
1726         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &bs_revoke_and_ack);
1727         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1728         check_added_monitors!(nodes[1], 1);
1729
1730         expect_pending_htlcs_forwardable!(nodes[1]);
1731
1732         let ref payment_event_11 = expect_forward!(nodes[1]);
1733         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event_11.msgs[0]);
1734         commitment_signed_dance!(nodes[2], nodes[1], payment_event_11.commitment_msg, false);
1735
1736         expect_pending_htlcs_forwardable!(nodes[2]);
1737         expect_payment_received!(nodes[2], our_payment_hash_1, recv_value_1);
1738
1739         // flush the htlcs in the holding cell
1740         assert_eq!(commitment_update_2.update_add_htlcs.len(), 2);
1741         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &commitment_update_2.update_add_htlcs[0]);
1742         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &commitment_update_2.update_add_htlcs[1]);
1743         commitment_signed_dance!(nodes[1], nodes[0], &commitment_update_2.commitment_signed, false);
1744         expect_pending_htlcs_forwardable!(nodes[1]);
1745
1746         let ref payment_event_3 = expect_forward!(nodes[1]);
1747         assert_eq!(payment_event_3.msgs.len(), 2);
1748         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event_3.msgs[0]);
1749         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event_3.msgs[1]);
1750
1751         commitment_signed_dance!(nodes[2], nodes[1], &payment_event_3.commitment_msg, false);
1752         expect_pending_htlcs_forwardable!(nodes[2]);
1753
1754         let events = nodes[2].node.get_and_clear_pending_events();
1755         assert_eq!(events.len(), 2);
1756         match events[0] {
1757                 Event::PaymentReceived { ref payment_hash, amt } => {
1758                         assert_eq!(our_payment_hash_21, *payment_hash);
1759                         assert_eq!(recv_value_21, amt);
1760                 },
1761                 _ => panic!("Unexpected event"),
1762         }
1763         match events[1] {
1764                 Event::PaymentReceived { ref payment_hash, amt } => {
1765                         assert_eq!(our_payment_hash_22, *payment_hash);
1766                         assert_eq!(recv_value_22, amt);
1767                 },
1768                 _ => panic!("Unexpected event"),
1769         }
1770
1771         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), our_payment_preimage_1, recv_value_1);
1772         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), our_payment_preimage_21, recv_value_21);
1773         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), our_payment_preimage_22, recv_value_22);
1774
1775         let expected_value_to_self = stat01.value_to_self_msat - (recv_value_1 + total_fee_msat) - (recv_value_21 + total_fee_msat) - (recv_value_22 + total_fee_msat);
1776         let stat0 = get_channel_value_stat!(nodes[0], chan_1.2);
1777         assert_eq!(stat0.value_to_self_msat, expected_value_to_self);
1778         assert_eq!(stat0.value_to_self_msat, stat0.channel_reserve_msat);
1779
1780         let stat2 = get_channel_value_stat!(nodes[2], chan_2.2);
1781         assert_eq!(stat2.value_to_self_msat, stat22.value_to_self_msat + recv_value_1 + recv_value_21 + recv_value_22);
1782 }
1783
1784 #[test]
1785 fn channel_reserve_test() {
1786         do_channel_reserve_test(false);
1787         do_channel_reserve_test(true);
1788 }
1789
1790 #[test]
1791 fn channel_reserve_in_flight_removes() {
1792         // In cases where one side claims an HTLC, it thinks it has additional available funds that it
1793         // can send to its counterparty, but due to update ordering, the other side may not yet have
1794         // considered those HTLCs fully removed.
1795         // This tests that we don't count HTLCs which will not be included in the next remote
1796         // commitment transaction towards the reserve value (as it implies no commitment transaction
1797         // will be generated which violates the remote reserve value).
1798         // This was broken previously, and discovered by the chanmon_fail_consistency fuzz test.
1799         // To test this we:
1800         //  * route two HTLCs from A to B (note that, at a high level, this test is checking that, when
1801         //    you consider the values of both of these HTLCs, B may not send an HTLC back to A, but if
1802         //    you only consider the value of the first HTLC, it may not),
1803         //  * start routing a third HTLC from A to B,
1804         //  * claim the first two HTLCs (though B will generate an update_fulfill for one, and put
1805         //    the other claim in its holding cell, as it immediately goes into AwaitingRAA),
1806         //  * deliver the first fulfill from B
1807         //  * deliver the update_add and an RAA from A, resulting in B freeing the second holding cell
1808         //    claim,
1809         //  * deliver A's response CS and RAA.
1810         //    This results in A having the second HTLC in AwaitingRemovedRemoteRevoke, but B having
1811         //    removed it fully. B now has the push_msat plus the first two HTLCs in value.
1812         //  * Now B happily sends another HTLC, potentially violating its reserve value from A's point
1813         //    of view (if A counts the AwaitingRemovedRemoteRevoke HTLC).
1814         let chanmon_cfgs = create_chanmon_cfgs(2);
1815         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1816         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1817         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1818         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1819
1820         let b_chan_values = get_channel_value_stat!(nodes[1], chan_1.2);
1821         // Route the first two HTLCs.
1822         let (payment_preimage_1, _) = route_payment(&nodes[0], &[&nodes[1]], b_chan_values.channel_reserve_msat - b_chan_values.value_to_self_msat - 10000);
1823         let (payment_preimage_2, _) = route_payment(&nodes[0], &[&nodes[1]], 20000);
1824
1825         // Start routing the third HTLC (this is just used to get everyone in the right state).
1826         let (payment_preimage_3, payment_hash_3) = get_payment_preimage_hash!(nodes[0]);
1827         let send_1 = {
1828                 let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
1829                 nodes[0].node.send_payment(route, payment_hash_3).unwrap();
1830                 check_added_monitors!(nodes[0], 1);
1831                 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
1832                 assert_eq!(events.len(), 1);
1833                 SendEvent::from_event(events.remove(0))
1834         };
1835
1836         // Now claim both of the first two HTLCs on B's end, putting B in AwaitingRAA and generating an
1837         // initial fulfill/CS.
1838         assert!(nodes[1].node.claim_funds(payment_preimage_1, b_chan_values.channel_reserve_msat - b_chan_values.value_to_self_msat - 10000));
1839         check_added_monitors!(nodes[1], 1);
1840         let bs_removes = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1841
1842         // This claim goes in B's holding cell, allowing us to have a pending B->A RAA which does not
1843         // remove the second HTLC when we send the HTLC back from B to A.
1844         assert!(nodes[1].node.claim_funds(payment_preimage_2, 20000));
1845         check_added_monitors!(nodes[1], 1);
1846         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1847
1848         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &bs_removes.update_fulfill_htlcs[0]);
1849         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_removes.commitment_signed);
1850         check_added_monitors!(nodes[0], 1);
1851         let as_raa = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
1852         expect_payment_sent!(nodes[0], payment_preimage_1);
1853
1854         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &send_1.msgs[0]);
1855         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &send_1.commitment_msg);
1856         check_added_monitors!(nodes[1], 1);
1857         // B is already AwaitingRAA, so cant generate a CS here
1858         let bs_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
1859
1860         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_raa);
1861         check_added_monitors!(nodes[1], 1);
1862         let bs_cs = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1863
1864         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_raa);
1865         check_added_monitors!(nodes[0], 1);
1866         let as_cs = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1867
1868         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_cs.commitment_signed);
1869         check_added_monitors!(nodes[1], 1);
1870         let bs_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
1871
1872         // The second HTLCis removed, but as A is in AwaitingRAA it can't generate a CS here, so the
1873         // RAA that B generated above doesn't fully resolve the second HTLC from A's point of view.
1874         // However, the RAA A generates here *does* fully resolve the HTLC from B's point of view (as A
1875         // can no longer broadcast a commitment transaction with it and B has the preimage so can go
1876         // on-chain as necessary).
1877         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &bs_cs.update_fulfill_htlcs[0]);
1878         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_cs.commitment_signed);
1879         check_added_monitors!(nodes[0], 1);
1880         let as_raa = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
1881         expect_payment_sent!(nodes[0], payment_preimage_2);
1882
1883         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_raa);
1884         check_added_monitors!(nodes[1], 1);
1885         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
1886
1887         expect_pending_htlcs_forwardable!(nodes[1]);
1888         expect_payment_received!(nodes[1], payment_hash_3, 100000);
1889
1890         // Note that as this RAA was generated before the delivery of the update_fulfill it shouldn't
1891         // resolve the second HTLC from A's point of view.
1892         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_raa);
1893         check_added_monitors!(nodes[0], 1);
1894         let as_cs = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1895
1896         // Now that B doesn't have the second RAA anymore, but A still does, send a payment from B back
1897         // to A to ensure that A doesn't count the almost-removed HTLC in update_add processing.
1898         let (payment_preimage_4, payment_hash_4) = get_payment_preimage_hash!(nodes[1]);
1899         let send_2 = {
1900                 let route = nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &[], 10000, TEST_FINAL_CLTV).unwrap();
1901                 nodes[1].node.send_payment(route, payment_hash_4).unwrap();
1902                 check_added_monitors!(nodes[1], 1);
1903                 let mut events = nodes[1].node.get_and_clear_pending_msg_events();
1904                 assert_eq!(events.len(), 1);
1905                 SendEvent::from_event(events.remove(0))
1906         };
1907
1908         nodes[0].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &send_2.msgs[0]);
1909         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &send_2.commitment_msg);
1910         check_added_monitors!(nodes[0], 1);
1911         let as_raa = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
1912
1913         // Now just resolve all the outstanding messages/HTLCs for completeness...
1914
1915         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_cs.commitment_signed);
1916         check_added_monitors!(nodes[1], 1);
1917         let bs_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
1918
1919         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_raa);
1920         check_added_monitors!(nodes[1], 1);
1921
1922         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_raa);
1923         check_added_monitors!(nodes[0], 1);
1924         let as_cs = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1925
1926         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_cs.commitment_signed);
1927         check_added_monitors!(nodes[1], 1);
1928         let bs_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
1929
1930         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_raa);
1931         check_added_monitors!(nodes[0], 1);
1932
1933         expect_pending_htlcs_forwardable!(nodes[0]);
1934         expect_payment_received!(nodes[0], payment_hash_4, 10000);
1935
1936         claim_payment(&nodes[1], &[&nodes[0]], payment_preimage_4, 10_000);
1937         claim_payment(&nodes[0], &[&nodes[1]], payment_preimage_3, 100_000);
1938 }
1939
1940 #[test]
1941 fn channel_monitor_network_test() {
1942         // Simple test which builds a network of ChannelManagers, connects them to each other, and
1943         // tests that ChannelMonitor is able to recover from various states.
1944         let chanmon_cfgs = create_chanmon_cfgs(5);
1945         let node_cfgs = create_node_cfgs(5, &chanmon_cfgs);
1946         let node_chanmgrs = create_node_chanmgrs(5, &node_cfgs, &[None, None, None, None, None]);
1947         let nodes = create_network(5, &node_cfgs, &node_chanmgrs);
1948
1949         // Create some initial channels
1950         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
1951         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
1952         let chan_3 = create_announced_chan_between_nodes(&nodes, 2, 3, InitFeatures::supported(), InitFeatures::supported());
1953         let chan_4 = create_announced_chan_between_nodes(&nodes, 3, 4, InitFeatures::supported(), InitFeatures::supported());
1954
1955         // Rebalance the network a bit by relaying one payment through all the channels...
1956         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000, 8_000_000);
1957         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000, 8_000_000);
1958         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000, 8_000_000);
1959         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000, 8_000_000);
1960
1961         // Simple case with no pending HTLCs:
1962         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), true);
1963         check_added_monitors!(nodes[1], 1);
1964         {
1965                 let mut node_txn = test_txn_broadcast(&nodes[1], &chan_1, None, HTLCType::NONE);
1966                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
1967                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![node_txn.drain(..).next().unwrap()] }, 1);
1968                 check_added_monitors!(nodes[0], 1);
1969                 test_txn_broadcast(&nodes[0], &chan_1, None, HTLCType::NONE);
1970         }
1971         get_announce_close_broadcast_events(&nodes, 0, 1);
1972         assert_eq!(nodes[0].node.list_channels().len(), 0);
1973         assert_eq!(nodes[1].node.list_channels().len(), 1);
1974
1975         // One pending HTLC is discarded by the force-close:
1976         let payment_preimage_1 = route_payment(&nodes[1], &vec!(&nodes[2], &nodes[3])[..], 3000000).0;
1977
1978         // Simple case of one pending HTLC to HTLC-Timeout
1979         nodes[1].node.peer_disconnected(&nodes[2].node.get_our_node_id(), true);
1980         check_added_monitors!(nodes[1], 1);
1981         {
1982                 let mut node_txn = test_txn_broadcast(&nodes[1], &chan_2, None, HTLCType::TIMEOUT);
1983                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
1984                 nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![node_txn.drain(..).next().unwrap()] }, 1);
1985                 check_added_monitors!(nodes[2], 1);
1986                 test_txn_broadcast(&nodes[2], &chan_2, None, HTLCType::NONE);
1987         }
1988         get_announce_close_broadcast_events(&nodes, 1, 2);
1989         assert_eq!(nodes[1].node.list_channels().len(), 0);
1990         assert_eq!(nodes[2].node.list_channels().len(), 1);
1991
1992         macro_rules! claim_funds {
1993                 ($node: expr, $prev_node: expr, $preimage: expr, $amount: expr) => {
1994                         {
1995                                 assert!($node.node.claim_funds($preimage, $amount));
1996                                 check_added_monitors!($node, 1);
1997
1998                                 let events = $node.node.get_and_clear_pending_msg_events();
1999                                 assert_eq!(events.len(), 1);
2000                                 match events[0] {
2001                                         MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, .. } } => {
2002                                                 assert!(update_add_htlcs.is_empty());
2003                                                 assert!(update_fail_htlcs.is_empty());
2004                                                 assert_eq!(*node_id, $prev_node.node.get_our_node_id());
2005                                         },
2006                                         _ => panic!("Unexpected event"),
2007                                 };
2008                         }
2009                 }
2010         }
2011
2012         // nodes[3] gets the preimage, but nodes[2] already disconnected, resulting in a nodes[2]
2013         // HTLC-Timeout and a nodes[3] claim against it (+ its own announces)
2014         nodes[2].node.peer_disconnected(&nodes[3].node.get_our_node_id(), true);
2015         check_added_monitors!(nodes[2], 1);
2016         let node2_commitment_txid;
2017         {
2018                 let node_txn = test_txn_broadcast(&nodes[2], &chan_3, None, HTLCType::TIMEOUT);
2019                 node2_commitment_txid = node_txn[0].txid();
2020
2021                 // Claim the payment on nodes[3], giving it knowledge of the preimage
2022                 claim_funds!(nodes[3], nodes[2], payment_preimage_1, 3_000_000);
2023
2024                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2025                 nodes[3].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone()] }, 1);
2026                 check_added_monitors!(nodes[3], 1);
2027
2028                 check_preimage_claim(&nodes[3], &node_txn);
2029         }
2030         get_announce_close_broadcast_events(&nodes, 2, 3);
2031         assert_eq!(nodes[2].node.list_channels().len(), 0);
2032         assert_eq!(nodes[3].node.list_channels().len(), 1);
2033
2034         { // Cheat and reset nodes[4]'s height to 1
2035                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2036                 nodes[4].block_notifier.block_connected(&Block { header, txdata: vec![] }, 1);
2037         }
2038
2039         assert_eq!(nodes[3].node.latest_block_height.load(Ordering::Acquire), 1);
2040         assert_eq!(nodes[4].node.latest_block_height.load(Ordering::Acquire), 1);
2041         // One pending HTLC to time out:
2042         let payment_preimage_2 = route_payment(&nodes[3], &vec!(&nodes[4])[..], 3000000).0;
2043         // CLTV expires at TEST_FINAL_CLTV + 1 (current height) + 1 (added in send_payment for
2044         // buffer space).
2045
2046         {
2047                 let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2048                 nodes[3].block_notifier.block_connected_checked(&header, 2, &Vec::new()[..], &[0; 0]);
2049                 for i in 3..TEST_FINAL_CLTV + 2 + LATENCY_GRACE_PERIOD_BLOCKS + 1 {
2050                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2051                         nodes[3].block_notifier.block_connected_checked(&header, i, &Vec::new()[..], &[0; 0]);
2052                 }
2053                 check_added_monitors!(nodes[3], 1);
2054
2055                 // Clear bumped claiming txn spending node 2 commitment tx. Bumped txn are generated after reaching some height timer.
2056                 {
2057                         let mut node_txn = nodes[3].tx_broadcaster.txn_broadcasted.lock().unwrap();
2058                         node_txn.retain(|tx| {
2059                                 if tx.input[0].previous_output.txid == node2_commitment_txid {
2060                                         false
2061                                 } else { true }
2062                         });
2063                 }
2064
2065                 let node_txn = test_txn_broadcast(&nodes[3], &chan_4, None, HTLCType::TIMEOUT);
2066
2067                 // Claim the payment on nodes[4], giving it knowledge of the preimage
2068                 claim_funds!(nodes[4], nodes[3], payment_preimage_2, 3_000_000);
2069
2070                 header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2071
2072                 nodes[4].block_notifier.block_connected_checked(&header, 2, &Vec::new()[..], &[0; 0]);
2073                 for i in 3..TEST_FINAL_CLTV + 2 - CLTV_CLAIM_BUFFER + 1 {
2074                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2075                         nodes[4].block_notifier.block_connected_checked(&header, i, &Vec::new()[..], &[0; 0]);
2076                 }
2077
2078                 check_added_monitors!(nodes[4], 1);
2079                 test_txn_broadcast(&nodes[4], &chan_4, None, HTLCType::SUCCESS);
2080
2081                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2082                 nodes[4].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone()] }, TEST_FINAL_CLTV - 5);
2083
2084                 check_preimage_claim(&nodes[4], &node_txn);
2085         }
2086         get_announce_close_broadcast_events(&nodes, 3, 4);
2087         assert_eq!(nodes[3].node.list_channels().len(), 0);
2088         assert_eq!(nodes[4].node.list_channels().len(), 0);
2089 }
2090
2091 #[test]
2092 fn test_justice_tx() {
2093         // Test justice txn built on revoked HTLC-Success tx, against both sides
2094         let mut alice_config = UserConfig::default();
2095         alice_config.channel_options.announced_channel = true;
2096         alice_config.peer_channel_config_limits.force_announced_channel_preference = false;
2097         alice_config.own_channel_config.our_to_self_delay = 6 * 24 * 5;
2098         let mut bob_config = UserConfig::default();
2099         bob_config.channel_options.announced_channel = true;
2100         bob_config.peer_channel_config_limits.force_announced_channel_preference = false;
2101         bob_config.own_channel_config.our_to_self_delay = 6 * 24 * 3;
2102         let user_cfgs = [Some(alice_config), Some(bob_config)];
2103         let chanmon_cfgs = create_chanmon_cfgs(2);
2104         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
2105         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &user_cfgs);
2106         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
2107         // Create some new channels:
2108         let chan_5 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2109
2110         // A pending HTLC which will be revoked:
2111         let payment_preimage_3 = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
2112         // Get the will-be-revoked local txn from nodes[0]
2113         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_5.2);
2114         assert_eq!(revoked_local_txn.len(), 2); // First commitment tx, then HTLC tx
2115         assert_eq!(revoked_local_txn[0].input.len(), 1);
2116         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_5.3.txid());
2117         assert_eq!(revoked_local_txn[0].output.len(), 2); // Only HTLC and output back to 0 are present
2118         assert_eq!(revoked_local_txn[1].input.len(), 1);
2119         assert_eq!(revoked_local_txn[1].input[0].previous_output.txid, revoked_local_txn[0].txid());
2120         assert_eq!(revoked_local_txn[1].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT); // HTLC-Timeout
2121         // Revoke the old state
2122         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_3, 3_000_000);
2123
2124         {
2125                 let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2126                 nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2127                 {
2128                         let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2129                         assert_eq!(node_txn.len(), 2); // ChannelMonitor: penalty tx, ChannelManager: local commitment tx
2130                         assert_eq!(node_txn[0].input.len(), 2); // We should claim the revoked output and the HTLC output
2131
2132                         check_spends!(node_txn[0], revoked_local_txn[0]);
2133                         node_txn.swap_remove(0);
2134                         node_txn.truncate(1);
2135                 }
2136                 check_added_monitors!(nodes[1], 1);
2137                 test_txn_broadcast(&nodes[1], &chan_5, None, HTLCType::NONE);
2138
2139                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2140                 // Verify broadcast of revoked HTLC-timeout
2141                 let node_txn = test_txn_broadcast(&nodes[0], &chan_5, Some(revoked_local_txn[0].clone()), HTLCType::TIMEOUT);
2142                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2143                 check_added_monitors!(nodes[0], 1);
2144                 // Broadcast revoked HTLC-timeout on node 1
2145                 nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[1].clone()] }, 1);
2146                 test_revoked_htlc_claim_txn_broadcast(&nodes[1], node_txn[1].clone(), revoked_local_txn[0].clone());
2147         }
2148         get_announce_close_broadcast_events(&nodes, 0, 1);
2149
2150         assert_eq!(nodes[0].node.list_channels().len(), 0);
2151         assert_eq!(nodes[1].node.list_channels().len(), 0);
2152
2153         // We test justice_tx build by A on B's revoked HTLC-Success tx
2154         // Create some new channels:
2155         let chan_6 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2156         {
2157                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2158                 node_txn.clear();
2159         }
2160
2161         // A pending HTLC which will be revoked:
2162         let payment_preimage_4 = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
2163         // Get the will-be-revoked local txn from B
2164         let revoked_local_txn = get_local_commitment_txn!(nodes[1], chan_6.2);
2165         assert_eq!(revoked_local_txn.len(), 1); // Only commitment tx
2166         assert_eq!(revoked_local_txn[0].input.len(), 1);
2167         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_6.3.txid());
2168         assert_eq!(revoked_local_txn[0].output.len(), 2); // Only HTLC and output back to A are present
2169         // Revoke the old state
2170         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_4, 3_000_000);
2171         {
2172                 let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2173                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2174                 {
2175                         let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
2176                         assert_eq!(node_txn.len(), 2); //ChannelMonitor: penalty tx, ChannelManager: local commitment tx
2177                         assert_eq!(node_txn[0].input.len(), 1); // We claim the received HTLC output
2178
2179                         check_spends!(node_txn[0], revoked_local_txn[0]);
2180                         node_txn.swap_remove(0);
2181                 }
2182                 check_added_monitors!(nodes[0], 1);
2183                 test_txn_broadcast(&nodes[0], &chan_6, None, HTLCType::NONE);
2184
2185                 nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2186                 let node_txn = test_txn_broadcast(&nodes[1], &chan_6, Some(revoked_local_txn[0].clone()), HTLCType::SUCCESS);
2187                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2188                 check_added_monitors!(nodes[1], 1);
2189                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[1].clone()] }, 1);
2190                 test_revoked_htlc_claim_txn_broadcast(&nodes[0], node_txn[1].clone(), revoked_local_txn[0].clone());
2191         }
2192         get_announce_close_broadcast_events(&nodes, 0, 1);
2193         assert_eq!(nodes[0].node.list_channels().len(), 0);
2194         assert_eq!(nodes[1].node.list_channels().len(), 0);
2195 }
2196
2197 #[test]
2198 fn revoked_output_claim() {
2199         // Simple test to ensure a node will claim a revoked output when a stale remote commitment
2200         // transaction is broadcast by its counterparty
2201         let chanmon_cfgs = create_chanmon_cfgs(2);
2202         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
2203         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
2204         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
2205         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2206         // node[0] is gonna to revoke an old state thus node[1] should be able to claim the revoked output
2207         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
2208         assert_eq!(revoked_local_txn.len(), 1);
2209         // Only output is the full channel value back to nodes[0]:
2210         assert_eq!(revoked_local_txn[0].output.len(), 1);
2211         // Send a payment through, updating everyone's latest commitment txn
2212         send_payment(&nodes[0], &vec!(&nodes[1])[..], 5000000, 5_000_000);
2213
2214         // Inform nodes[1] that nodes[0] broadcast a stale tx
2215         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2216         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2217         check_added_monitors!(nodes[1], 1);
2218         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2219         assert_eq!(node_txn.len(), 2); // ChannelMonitor: justice tx against revoked to_local output, ChannelManager: local commitment tx
2220
2221         check_spends!(node_txn[0], revoked_local_txn[0]);
2222         check_spends!(node_txn[1], chan_1.3);
2223
2224         // Inform nodes[0] that a watchtower cheated on its behalf, so it will force-close the chan
2225         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2226         get_announce_close_broadcast_events(&nodes, 0, 1);
2227         check_added_monitors!(nodes[0], 1)
2228 }
2229
2230 #[test]
2231 fn claim_htlc_outputs_shared_tx() {
2232         // Node revoked old state, htlcs haven't time out yet, claim them in shared justice tx
2233         let chanmon_cfgs = create_chanmon_cfgs(2);
2234         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
2235         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
2236         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
2237
2238         // Create some new channel:
2239         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2240
2241         // Rebalance the network to generate htlc in the two directions
2242         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
2243         // node[0] is gonna to revoke an old state thus node[1] should be able to claim both offered/received HTLC outputs on top of commitment tx
2244         let payment_preimage_1 = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
2245         let (_payment_preimage_2, payment_hash_2) = route_payment(&nodes[1], &vec!(&nodes[0])[..], 3000000);
2246
2247         // Get the will-be-revoked local txn from node[0]
2248         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
2249         assert_eq!(revoked_local_txn.len(), 2); // commitment tx + 1 HTLC-Timeout tx
2250         assert_eq!(revoked_local_txn[0].input.len(), 1);
2251         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_1.3.txid());
2252         assert_eq!(revoked_local_txn[1].input.len(), 1);
2253         assert_eq!(revoked_local_txn[1].input[0].previous_output.txid, revoked_local_txn[0].txid());
2254         assert_eq!(revoked_local_txn[1].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT); // HTLC-Timeout
2255         check_spends!(revoked_local_txn[1], revoked_local_txn[0]);
2256
2257         //Revoke the old state
2258         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_1, 3_000_000);
2259
2260         {
2261                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2262                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2263                 check_added_monitors!(nodes[0], 1);
2264                 nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2265                 check_added_monitors!(nodes[1], 1);
2266                 connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
2267
2268                 let events = nodes[1].node.get_and_clear_pending_events();
2269                 assert_eq!(events.len(), 1);
2270                 match events[0] {
2271                         Event::PaymentFailed { payment_hash, .. } => {
2272                                 assert_eq!(payment_hash, payment_hash_2);
2273                         },
2274                         _ => panic!("Unexpected event"),
2275                 }
2276
2277                 let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2278                 assert_eq!(node_txn.len(), 3); // ChannelMonitor: penalty tx, ChannelManager: local commitment + HTLC-timeout
2279
2280                 assert_eq!(node_txn[0].input.len(), 3); // Claim the revoked output + both revoked HTLC outputs
2281                 check_spends!(node_txn[0], revoked_local_txn[0]);
2282
2283                 let mut witness_lens = BTreeSet::new();
2284                 witness_lens.insert(node_txn[0].input[0].witness.last().unwrap().len());
2285                 witness_lens.insert(node_txn[0].input[1].witness.last().unwrap().len());
2286                 witness_lens.insert(node_txn[0].input[2].witness.last().unwrap().len());
2287                 assert_eq!(witness_lens.len(), 3);
2288                 assert_eq!(*witness_lens.iter().skip(0).next().unwrap(), 77); // revoked to_local
2289                 assert_eq!(*witness_lens.iter().skip(1).next().unwrap(), OFFERED_HTLC_SCRIPT_WEIGHT); // revoked offered HTLC
2290                 assert_eq!(*witness_lens.iter().skip(2).next().unwrap(), ACCEPTED_HTLC_SCRIPT_WEIGHT); // revoked received HTLC
2291
2292                 // Next nodes[1] broadcasts its current local tx state:
2293                 assert_eq!(node_txn[1].input.len(), 1);
2294                 assert_eq!(node_txn[1].input[0].previous_output.txid, chan_1.3.txid()); //Spending funding tx unique txouput, tx broadcasted by ChannelManager
2295
2296                 assert_eq!(node_txn[2].input.len(), 1);
2297                 let witness_script = node_txn[2].clone().input[0].witness.pop().unwrap();
2298                 assert_eq!(witness_script.len(), OFFERED_HTLC_SCRIPT_WEIGHT); //Spending an offered htlc output
2299                 assert_eq!(node_txn[2].input[0].previous_output.txid, node_txn[1].txid());
2300                 assert_ne!(node_txn[2].input[0].previous_output.txid, node_txn[0].input[0].previous_output.txid);
2301                 assert_ne!(node_txn[2].input[0].previous_output.txid, node_txn[0].input[1].previous_output.txid);
2302         }
2303         get_announce_close_broadcast_events(&nodes, 0, 1);
2304         assert_eq!(nodes[0].node.list_channels().len(), 0);
2305         assert_eq!(nodes[1].node.list_channels().len(), 0);
2306 }
2307
2308 #[test]
2309 fn claim_htlc_outputs_single_tx() {
2310         // Node revoked old state, htlcs have timed out, claim each of them in separated justice tx
2311         let chanmon_cfgs = create_chanmon_cfgs(2);
2312         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
2313         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
2314         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
2315
2316         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2317
2318         // Rebalance the network to generate htlc in the two directions
2319         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
2320         // node[0] is gonna to revoke an old state thus node[1] should be able to claim both offered/received HTLC outputs on top of commitment tx, but this
2321         // time as two different claim transactions as we're gonna to timeout htlc with given a high current height
2322         let payment_preimage_1 = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
2323         let (_payment_preimage_2, payment_hash_2) = route_payment(&nodes[1], &vec!(&nodes[0])[..], 3000000);
2324
2325         // Get the will-be-revoked local txn from node[0]
2326         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
2327
2328         //Revoke the old state
2329         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_1, 3_000_000);
2330
2331         {
2332                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2333                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 200);
2334                 check_added_monitors!(nodes[0], 1);
2335                 nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 200);
2336                 check_added_monitors!(nodes[1], 1);
2337                 connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 200, true, header.bitcoin_hash());
2338
2339                 let events = nodes[1].node.get_and_clear_pending_events();
2340                 assert_eq!(events.len(), 1);
2341                 match events[0] {
2342                         Event::PaymentFailed { payment_hash, .. } => {
2343                                 assert_eq!(payment_hash, payment_hash_2);
2344                         },
2345                         _ => panic!("Unexpected event"),
2346                 }
2347
2348                 let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2349                 assert_eq!(node_txn.len(), 21);
2350                 // ChannelMonitor: justice tx revoked offered htlc, justice tx revoked received htlc, justice tx revoked to_local (3)
2351                 // ChannelManager: local commmitment + local HTLC-timeout (2)
2352                 // ChannelMonitor: bumped justice tx (4), after one increase, bumps on HTLC aren't generated not being substantial anymore
2353                 // ChannelMonito r: local commitment + local HTLC-timeout (14)
2354
2355                 assert_eq!(node_txn[0], node_txn[5]);
2356                 assert_eq!(node_txn[0], node_txn[7]);
2357                 assert_eq!(node_txn[0], node_txn[9]);
2358                 assert_eq!(node_txn[0], node_txn[13]);
2359                 assert_eq!(node_txn[0], node_txn[15]);
2360                 assert_eq!(node_txn[0], node_txn[17]);
2361                 assert_eq!(node_txn[0], node_txn[19]);
2362
2363                 assert_eq!(node_txn[1], node_txn[6]);
2364                 assert_eq!(node_txn[1], node_txn[8]);
2365                 assert_eq!(node_txn[1], node_txn[10]);
2366                 assert_eq!(node_txn[1], node_txn[14]);
2367                 assert_eq!(node_txn[1], node_txn[16]);
2368                 assert_eq!(node_txn[1], node_txn[18]);
2369                 assert_eq!(node_txn[1], node_txn[20]);
2370
2371
2372                 // Check the pair local commitment and HTLC-timeout broadcast due to HTLC expiration and present 8 times (rebroadcast at every block from 200 to 206)
2373                 assert_eq!(node_txn[0].input.len(), 1);
2374                 check_spends!(node_txn[0], chan_1.3);
2375                 assert_eq!(node_txn[1].input.len(), 1);
2376                 let witness_script = node_txn[1].input[0].witness.last().unwrap();
2377                 assert_eq!(witness_script.len(), OFFERED_HTLC_SCRIPT_WEIGHT); //Spending an offered htlc output
2378                 check_spends!(node_txn[1], node_txn[0]);
2379
2380                 // Justice transactions are indices 2-3-4
2381                 assert_eq!(node_txn[2].input.len(), 1);
2382                 assert_eq!(node_txn[3].input.len(), 1);
2383                 assert_eq!(node_txn[4].input.len(), 1);
2384                 check_spends!(node_txn[2], revoked_local_txn[0]);
2385                 check_spends!(node_txn[3], revoked_local_txn[0]);
2386                 check_spends!(node_txn[4], revoked_local_txn[0]);
2387
2388                 let mut witness_lens = BTreeSet::new();
2389                 witness_lens.insert(node_txn[2].input[0].witness.last().unwrap().len());
2390                 witness_lens.insert(node_txn[3].input[0].witness.last().unwrap().len());
2391                 witness_lens.insert(node_txn[4].input[0].witness.last().unwrap().len());
2392                 assert_eq!(witness_lens.len(), 3);
2393                 assert_eq!(*witness_lens.iter().skip(0).next().unwrap(), 77); // revoked to_local
2394                 assert_eq!(*witness_lens.iter().skip(1).next().unwrap(), OFFERED_HTLC_SCRIPT_WEIGHT); // revoked offered HTLC
2395                 assert_eq!(*witness_lens.iter().skip(2).next().unwrap(), ACCEPTED_HTLC_SCRIPT_WEIGHT); // revoked received HTLC
2396         }
2397         get_announce_close_broadcast_events(&nodes, 0, 1);
2398         assert_eq!(nodes[0].node.list_channels().len(), 0);
2399         assert_eq!(nodes[1].node.list_channels().len(), 0);
2400 }
2401
2402 #[test]
2403 fn test_htlc_on_chain_success() {
2404         // Test that in case of a unilateral close onchain, we detect the state of output thanks to
2405         // ChainWatchInterface and pass the preimage backward accordingly. So here we test that ChannelManager is
2406         // broadcasting the right event to other nodes in payment path.
2407         // We test with two HTLCs simultaneously as that was not handled correctly in the past.
2408         // A --------------------> B ----------------------> C (preimage)
2409         // First, C should claim the HTLC outputs via HTLC-Success when its own latest local
2410         // commitment transaction was broadcast.
2411         // Then, B should learn the preimage from said transactions, attempting to claim backwards
2412         // towards B.
2413         // B should be able to claim via preimage if A then broadcasts its local tx.
2414         // Finally, when A sees B's latest local commitment transaction it should be able to claim
2415         // the HTLC outputs via the preimage it learned (which, once confirmed should generate a
2416         // PaymentSent event).
2417
2418         let chanmon_cfgs = create_chanmon_cfgs(3);
2419         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
2420         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
2421         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
2422
2423         // Create some initial channels
2424         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2425         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
2426
2427         // Rebalance the network a bit by relaying one payment through all the channels...
2428         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
2429         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
2430
2431         let (our_payment_preimage, _payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), 3000000);
2432         let (our_payment_preimage_2, _payment_hash_2) = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), 3000000);
2433         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
2434
2435         // Broadcast legit commitment tx from C on B's chain
2436         // Broadcast HTLC Success transaction by C on received output from C's commitment tx on B's chain
2437         let commitment_tx = get_local_commitment_txn!(nodes[2], chan_2.2);
2438         assert_eq!(commitment_tx.len(), 1);
2439         check_spends!(commitment_tx[0], chan_2.3);
2440         nodes[2].node.claim_funds(our_payment_preimage, 3_000_000);
2441         nodes[2].node.claim_funds(our_payment_preimage_2, 3_000_000);
2442         check_added_monitors!(nodes[2], 2);
2443         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
2444         assert!(updates.update_add_htlcs.is_empty());
2445         assert!(updates.update_fail_htlcs.is_empty());
2446         assert!(updates.update_fail_malformed_htlcs.is_empty());
2447         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
2448
2449         nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 1);
2450         check_closed_broadcast!(nodes[2], false);
2451         check_added_monitors!(nodes[2], 1);
2452         let node_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // ChannelManager : 3 (commitment tx, 2*htlc-success tx), ChannelMonitor : 4 (2*2 * HTLC-Success tx)
2453         assert_eq!(node_txn.len(), 7);
2454         assert_eq!(node_txn[0], node_txn[3]);
2455         assert_eq!(node_txn[1], node_txn[4]);
2456         assert_eq!(node_txn[0], node_txn[5]);
2457         assert_eq!(node_txn[1], node_txn[6]);
2458         assert_eq!(node_txn[2], commitment_tx[0]);
2459         check_spends!(node_txn[0], commitment_tx[0]);
2460         check_spends!(node_txn[1], commitment_tx[0]);
2461         assert_eq!(node_txn[0].input[0].witness.clone().last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2462         assert_eq!(node_txn[1].input[0].witness.clone().last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2463         assert!(node_txn[0].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2464         assert!(node_txn[1].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2465         assert_eq!(node_txn[0].lock_time, 0);
2466         assert_eq!(node_txn[1].lock_time, 0);
2467
2468         // Verify that B's ChannelManager is able to extract preimage from HTLC Success tx and pass it backward
2469         nodes[1].block_notifier.block_connected(&Block { header, txdata: node_txn}, 1);
2470         {
2471                 let mut added_monitors = nodes[1].chan_monitor.added_monitors.lock().unwrap();
2472                 assert_eq!(added_monitors.len(), 1);
2473                 assert_eq!(added_monitors[0].0.txid, chan_2.3.txid());
2474                 added_monitors.clear();
2475         }
2476         let events = nodes[1].node.get_and_clear_pending_msg_events();
2477         {
2478                 let mut added_monitors = nodes[1].chan_monitor.added_monitors.lock().unwrap();
2479                 assert_eq!(added_monitors.len(), 2);
2480                 assert_eq!(added_monitors[0].0.txid, chan_1.3.txid());
2481                 assert_eq!(added_monitors[1].0.txid, chan_1.3.txid());
2482                 added_monitors.clear();
2483         }
2484         assert_eq!(events.len(), 2);
2485         match events[0] {
2486                 MessageSendEvent::BroadcastChannelUpdate { .. } => {},
2487                 _ => panic!("Unexpected event"),
2488         }
2489         match events[1] {
2490                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, ref update_fulfill_htlcs, ref update_fail_malformed_htlcs, .. } } => {
2491                         assert!(update_add_htlcs.is_empty());
2492                         assert!(update_fail_htlcs.is_empty());
2493                         assert_eq!(update_fulfill_htlcs.len(), 1);
2494                         assert!(update_fail_malformed_htlcs.is_empty());
2495                         assert_eq!(nodes[0].node.get_our_node_id(), *node_id);
2496                 },
2497                 _ => panic!("Unexpected event"),
2498         };
2499         macro_rules! check_tx_local_broadcast {
2500                 ($node: expr, $htlc_offered: expr, $commitment_tx: expr, $chan_tx: expr) => { {
2501                         let mut node_txn = $node.tx_broadcaster.txn_broadcasted.lock().unwrap();
2502                         assert_eq!(node_txn.len(), if $htlc_offered { 7 } else { 5 });
2503                         // Node[1]: ChannelManager: 3 (commitment tx, 2*HTLC-Timeout tx), ChannelMonitor: 2 (timeout tx)
2504                         // Node[0]: ChannelManager: 3 (commtiemtn tx, 2*HTLC-Timeout tx), ChannelMonitor: 2 HTLC-timeout * 2 (block-rescan)
2505                         check_spends!(node_txn[0], $commitment_tx);
2506                         check_spends!(node_txn[1], $commitment_tx);
2507                         if $htlc_offered {
2508                                 assert_eq!(node_txn[0], node_txn[5]);
2509                                 assert_eq!(node_txn[1], node_txn[6]);
2510                         }
2511                         assert_ne!(node_txn[0].lock_time, 0);
2512                         assert_ne!(node_txn[1].lock_time, 0);
2513                         if $htlc_offered {
2514                                 assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2515                                 assert_eq!(node_txn[1].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2516                                 assert!(node_txn[0].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2517                                 assert!(node_txn[1].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2518                         } else {
2519                                 assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2520                                 assert_eq!(node_txn[1].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2521                                 assert!(node_txn[0].output[0].script_pubkey.is_v0_p2wpkh()); // direct payment
2522                                 assert!(node_txn[1].output[0].script_pubkey.is_v0_p2wpkh()); // direct payment
2523                         }
2524                         check_spends!(node_txn[2], $chan_tx);
2525                         check_spends!(node_txn[3], node_txn[2]);
2526                         check_spends!(node_txn[4], node_txn[2]);
2527                         assert_eq!(node_txn[2].input[0].witness.last().unwrap().len(), 71);
2528                         assert_eq!(node_txn[3].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2529                         assert_eq!(node_txn[4].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2530                         assert!(node_txn[3].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2531                         assert!(node_txn[4].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
2532                         assert_ne!(node_txn[3].lock_time, 0);
2533                         assert_ne!(node_txn[4].lock_time, 0);
2534                         node_txn.clear();
2535                 } }
2536         }
2537         // nodes[1] now broadcasts its own local state as a fallback, suggesting an alternate
2538         // commitment transaction with a corresponding HTLC-Timeout transactions, as well as a
2539         // timeout-claim of the output that nodes[2] just claimed via success.
2540         check_tx_local_broadcast!(nodes[1], false, commitment_tx[0], chan_2.3);
2541
2542         // Broadcast legit commitment tx from A on B's chain
2543         // Broadcast preimage tx by B on offered output from A commitment tx  on A's chain
2544         let commitment_tx = get_local_commitment_txn!(nodes[0], chan_1.2);
2545         check_spends!(commitment_tx[0], chan_1.3);
2546         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 1);
2547         check_closed_broadcast!(nodes[1], false);
2548         check_added_monitors!(nodes[1], 1);
2549         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // ChannelManager : 3 (commitment tx + HTLC-Sucess * 2), ChannelMonitor : 1 (HTLC-Success)
2550         assert_eq!(node_txn.len(), 4);
2551         check_spends!(node_txn[0], commitment_tx[0]);
2552         assert_eq!(node_txn[0].input.len(), 2);
2553         assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2554         assert_eq!(node_txn[0].input[1].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2555         assert_eq!(node_txn[0].lock_time, 0);
2556         assert!(node_txn[0].output[0].script_pubkey.is_v0_p2wpkh()); // direct payment
2557         check_spends!(node_txn[1], chan_1.3);
2558         assert_eq!(node_txn[1].input[0].witness.clone().last().unwrap().len(), 71);
2559         check_spends!(node_txn[2], node_txn[1]);
2560         check_spends!(node_txn[3], node_txn[1]);
2561         // We don't bother to check that B can claim the HTLC output on its commitment tx here as
2562         // we already checked the same situation with A.
2563
2564         // Verify that A's ChannelManager is able to extract preimage from preimage tx and generate PaymentSent
2565         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone(), node_txn[0].clone()] }, 1);
2566         check_closed_broadcast!(nodes[0], false);
2567         check_added_monitors!(nodes[0], 1);
2568         let events = nodes[0].node.get_and_clear_pending_events();
2569         assert_eq!(events.len(), 2);
2570         let mut first_claimed = false;
2571         for event in events {
2572                 match event {
2573                         Event::PaymentSent { payment_preimage } => {
2574                                 if payment_preimage == our_payment_preimage {
2575                                         assert!(!first_claimed);
2576                                         first_claimed = true;
2577                                 } else {
2578                                         assert_eq!(payment_preimage, our_payment_preimage_2);
2579                                 }
2580                         },
2581                         _ => panic!("Unexpected event"),
2582                 }
2583         }
2584         check_tx_local_broadcast!(nodes[0], true, commitment_tx[0], chan_1.3);
2585 }
2586
2587 #[test]
2588 fn test_htlc_on_chain_timeout() {
2589         // Test that in case of a unilateral close onchain, we detect the state of output thanks to
2590         // ChainWatchInterface and timeout the HTLC backward accordingly. So here we test that ChannelManager is
2591         // broadcasting the right event to other nodes in payment path.
2592         // A ------------------> B ----------------------> C (timeout)
2593         //    B's commitment tx                 C's commitment tx
2594         //            \                                  \
2595         //         B's HTLC timeout tx               B's timeout tx
2596
2597         let chanmon_cfgs = create_chanmon_cfgs(3);
2598         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
2599         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
2600         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
2601
2602         // Create some intial channels
2603         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2604         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
2605
2606         // Rebalance the network a bit by relaying one payment thorugh all the channels...
2607         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
2608         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
2609
2610         let (_payment_preimage, payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), 3000000);
2611         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
2612
2613         // Broadcast legit commitment tx from C on B's chain
2614         let commitment_tx = get_local_commitment_txn!(nodes[2], chan_2.2);
2615         check_spends!(commitment_tx[0], chan_2.3);
2616         nodes[2].node.fail_htlc_backwards(&payment_hash);
2617         check_added_monitors!(nodes[2], 0);
2618         expect_pending_htlcs_forwardable!(nodes[2]);
2619         check_added_monitors!(nodes[2], 1);
2620
2621         let events = nodes[2].node.get_and_clear_pending_msg_events();
2622         assert_eq!(events.len(), 1);
2623         match events[0] {
2624                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, .. } } => {
2625                         assert!(update_add_htlcs.is_empty());
2626                         assert!(!update_fail_htlcs.is_empty());
2627                         assert!(update_fulfill_htlcs.is_empty());
2628                         assert!(update_fail_malformed_htlcs.is_empty());
2629                         assert_eq!(nodes[1].node.get_our_node_id(), *node_id);
2630                 },
2631                 _ => panic!("Unexpected event"),
2632         };
2633         nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 1);
2634         check_closed_broadcast!(nodes[2], false);
2635         check_added_monitors!(nodes[2], 1);
2636         let node_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // ChannelManager : 1 (commitment tx)
2637         assert_eq!(node_txn.len(), 1);
2638         check_spends!(node_txn[0], chan_2.3);
2639         assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), 71);
2640
2641         // Broadcast timeout transaction by B on received output from C's commitment tx on B's chain
2642         // Verify that B's ChannelManager is able to detect that HTLC is timeout by its own tx and react backward in consequence
2643         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 200);
2644         let timeout_tx;
2645         {
2646                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
2647                 assert_eq!(node_txn.len(), 7); // ChannelManager : 2 (commitment tx, HTLC-Timeout tx), ChannelMonitor : (local commitment tx + HTLC-timeout) * 2 (block-rescan), timeout tx
2648                 assert_eq!(node_txn[0], node_txn[3]);
2649                 assert_eq!(node_txn[0], node_txn[5]);
2650                 assert_eq!(node_txn[1], node_txn[4]);
2651                 assert_eq!(node_txn[1], node_txn[6]);
2652
2653                 check_spends!(node_txn[2], commitment_tx[0]);
2654                 assert_eq!(node_txn[2].clone().input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2655
2656                 check_spends!(node_txn[0], chan_2.3);
2657                 check_spends!(node_txn[1], node_txn[0]);
2658                 assert_eq!(node_txn[0].clone().input[0].witness.last().unwrap().len(), 71);
2659                 assert_eq!(node_txn[1].clone().input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2660
2661                 timeout_tx = node_txn[2].clone();
2662                 node_txn.clear();
2663         }
2664
2665         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![timeout_tx]}, 1);
2666         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
2667         check_added_monitors!(nodes[1], 1);
2668         check_closed_broadcast!(nodes[1], false);
2669
2670         expect_pending_htlcs_forwardable!(nodes[1]);
2671         check_added_monitors!(nodes[1], 1);
2672         let events = nodes[1].node.get_and_clear_pending_msg_events();
2673         assert_eq!(events.len(), 1);
2674         match events[0] {
2675                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, ref update_fulfill_htlcs, ref update_fail_malformed_htlcs, .. } } => {
2676                         assert!(update_add_htlcs.is_empty());
2677                         assert!(!update_fail_htlcs.is_empty());
2678                         assert!(update_fulfill_htlcs.is_empty());
2679                         assert!(update_fail_malformed_htlcs.is_empty());
2680                         assert_eq!(nodes[0].node.get_our_node_id(), *node_id);
2681                 },
2682                 _ => panic!("Unexpected event"),
2683         };
2684         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // Well... here we detect our own htlc_timeout_tx so no tx to be generated
2685         assert_eq!(node_txn.len(), 0);
2686
2687         // Broadcast legit commitment tx from B on A's chain
2688         let commitment_tx = get_local_commitment_txn!(nodes[1], chan_1.2);
2689         check_spends!(commitment_tx[0], chan_1.3);
2690
2691         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 200);
2692         check_closed_broadcast!(nodes[0], false);
2693         check_added_monitors!(nodes[0], 1);
2694         let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // ChannelManager : 2 (commitment tx, HTLC-Timeout tx), ChannelMonitor : 1 timeout tx
2695         assert_eq!(node_txn.len(), 3);
2696         check_spends!(node_txn[0], commitment_tx[0]);
2697         assert_eq!(node_txn[0].clone().input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
2698         check_spends!(node_txn[1], chan_1.3);
2699         check_spends!(node_txn[2], node_txn[1]);
2700         assert_eq!(node_txn[1].clone().input[0].witness.last().unwrap().len(), 71);
2701         assert_eq!(node_txn[2].clone().input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
2702 }
2703
2704 #[test]
2705 fn test_simple_commitment_revoked_fail_backward() {
2706         // Test that in case of a revoked commitment tx, we detect the resolution of output by justice tx
2707         // and fail backward accordingly.
2708
2709         let chanmon_cfgs = create_chanmon_cfgs(3);
2710         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
2711         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
2712         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
2713
2714         // Create some initial channels
2715         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2716         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
2717
2718         let (payment_preimage, _payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 3000000);
2719         // Get the will-be-revoked local txn from nodes[2]
2720         let revoked_local_txn = get_local_commitment_txn!(nodes[2], chan_2.2);
2721         // Revoke the old state
2722         claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage, 3_000_000);
2723
2724         route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 3000000);
2725
2726         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
2727         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2728         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
2729         check_added_monitors!(nodes[1], 1);
2730         check_closed_broadcast!(nodes[1], false);
2731
2732         expect_pending_htlcs_forwardable!(nodes[1]);
2733         check_added_monitors!(nodes[1], 1);
2734         let events = nodes[1].node.get_and_clear_pending_msg_events();
2735         assert_eq!(events.len(), 1);
2736         match events[0] {
2737                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, ref update_fulfill_htlcs, ref update_fail_malformed_htlcs, ref commitment_signed, .. } } => {
2738                         assert!(update_add_htlcs.is_empty());
2739                         assert_eq!(update_fail_htlcs.len(), 1);
2740                         assert!(update_fulfill_htlcs.is_empty());
2741                         assert!(update_fail_malformed_htlcs.is_empty());
2742                         assert_eq!(nodes[0].node.get_our_node_id(), *node_id);
2743
2744                         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlcs[0]);
2745                         commitment_signed_dance!(nodes[0], nodes[1], commitment_signed, false, true);
2746
2747                         let events = nodes[0].node.get_and_clear_pending_msg_events();
2748                         assert_eq!(events.len(), 1);
2749                         match events[0] {
2750                                 MessageSendEvent::PaymentFailureNetworkUpdate { .. } => {},
2751                                 _ => panic!("Unexpected event"),
2752                         }
2753                         let events = nodes[0].node.get_and_clear_pending_events();
2754                         assert_eq!(events.len(), 1);
2755                         match events[0] {
2756                                 Event::PaymentFailed { .. } => {},
2757                                 _ => panic!("Unexpected event"),
2758                         }
2759                 },
2760                 _ => panic!("Unexpected event"),
2761         }
2762 }
2763
2764 fn do_test_commitment_revoked_fail_backward_exhaustive(deliver_bs_raa: bool, use_dust: bool, no_to_remote: bool) {
2765         // Test that if our counterparty broadcasts a revoked commitment transaction we fail all
2766         // pending HTLCs on that channel backwards even if the HTLCs aren't present in our latest
2767         // commitment transaction anymore.
2768         // To do this, we have the peer which will broadcast a revoked commitment transaction send
2769         // a number of update_fail/commitment_signed updates without ever sending the RAA in
2770         // response to our commitment_signed. This is somewhat misbehavior-y, though not
2771         // technically disallowed and we should probably handle it reasonably.
2772         // Note that this is pretty exhaustive as an outbound HTLC which we haven't yet
2773         // failed/fulfilled backwards must be in at least one of the latest two remote commitment
2774         // transactions:
2775         // * Once we move it out of our holding cell/add it, we will immediately include it in a
2776         //   commitment_signed (implying it will be in the latest remote commitment transaction).
2777         // * Once they remove it, we will send a (the first) commitment_signed without the HTLC,
2778         //   and once they revoke the previous commitment transaction (allowing us to send a new
2779         //   commitment_signed) we will be free to fail/fulfill the HTLC backwards.
2780         let chanmon_cfgs = create_chanmon_cfgs(3);
2781         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
2782         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
2783         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
2784
2785         // Create some initial channels
2786         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
2787         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
2788
2789         let (payment_preimage, _payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], if no_to_remote { 10_000 } else { 3_000_000 });
2790         // Get the will-be-revoked local txn from nodes[2]
2791         let revoked_local_txn = get_local_commitment_txn!(nodes[2], chan_2.2);
2792         assert_eq!(revoked_local_txn[0].output.len(), if no_to_remote { 1 } else { 2 });
2793         // Revoke the old state
2794         claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage, if no_to_remote { 10_000 } else { 3_000_000});
2795
2796         let value = if use_dust {
2797                 // The dust limit applied to HTLC outputs considers the fee of the HTLC transaction as
2798                 // well, so HTLCs at exactly the dust limit will not be included in commitment txn.
2799                 nodes[2].node.channel_state.lock().unwrap().by_id.get(&chan_2.2).unwrap().our_dust_limit_satoshis * 1000
2800         } else { 3000000 };
2801
2802         let (_, first_payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], value);
2803         let (_, second_payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], value);
2804         let (_, third_payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], value);
2805
2806         assert!(nodes[2].node.fail_htlc_backwards(&first_payment_hash));
2807         expect_pending_htlcs_forwardable!(nodes[2]);
2808         check_added_monitors!(nodes[2], 1);
2809         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
2810         assert!(updates.update_add_htlcs.is_empty());
2811         assert!(updates.update_fulfill_htlcs.is_empty());
2812         assert!(updates.update_fail_malformed_htlcs.is_empty());
2813         assert_eq!(updates.update_fail_htlcs.len(), 1);
2814         assert!(updates.update_fee.is_none());
2815         nodes[1].node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[0]);
2816         let bs_raa = commitment_signed_dance!(nodes[1], nodes[2], updates.commitment_signed, false, true, false, true);
2817         // Drop the last RAA from 3 -> 2
2818
2819         assert!(nodes[2].node.fail_htlc_backwards(&second_payment_hash));
2820         expect_pending_htlcs_forwardable!(nodes[2]);
2821         check_added_monitors!(nodes[2], 1);
2822         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
2823         assert!(updates.update_add_htlcs.is_empty());
2824         assert!(updates.update_fulfill_htlcs.is_empty());
2825         assert!(updates.update_fail_malformed_htlcs.is_empty());
2826         assert_eq!(updates.update_fail_htlcs.len(), 1);
2827         assert!(updates.update_fee.is_none());
2828         nodes[1].node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[0]);
2829         nodes[1].node.handle_commitment_signed(&nodes[2].node.get_our_node_id(), &updates.commitment_signed);
2830         check_added_monitors!(nodes[1], 1);
2831         // Note that nodes[1] is in AwaitingRAA, so won't send a CS
2832         let as_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[2].node.get_our_node_id());
2833         nodes[2].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &as_raa);
2834         check_added_monitors!(nodes[2], 1);
2835
2836         assert!(nodes[2].node.fail_htlc_backwards(&third_payment_hash));
2837         expect_pending_htlcs_forwardable!(nodes[2]);
2838         check_added_monitors!(nodes[2], 1);
2839         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
2840         assert!(updates.update_add_htlcs.is_empty());
2841         assert!(updates.update_fulfill_htlcs.is_empty());
2842         assert!(updates.update_fail_malformed_htlcs.is_empty());
2843         assert_eq!(updates.update_fail_htlcs.len(), 1);
2844         assert!(updates.update_fee.is_none());
2845         nodes[1].node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[0]);
2846         // At this point first_payment_hash has dropped out of the latest two commitment
2847         // transactions that nodes[1] is tracking...
2848         nodes[1].node.handle_commitment_signed(&nodes[2].node.get_our_node_id(), &updates.commitment_signed);
2849         check_added_monitors!(nodes[1], 1);
2850         // Note that nodes[1] is (still) in AwaitingRAA, so won't send a CS
2851         let as_raa = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[2].node.get_our_node_id());
2852         nodes[2].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &as_raa);
2853         check_added_monitors!(nodes[2], 1);
2854
2855         // Add a fourth HTLC, this one will get sequestered away in nodes[1]'s holding cell waiting
2856         // on nodes[2]'s RAA.
2857         let route = nodes[1].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
2858         let (_, fourth_payment_hash) = get_payment_preimage_hash!(nodes[0]);
2859         nodes[1].node.send_payment(route, fourth_payment_hash).unwrap();
2860         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
2861         assert!(nodes[1].node.get_and_clear_pending_events().is_empty());
2862         check_added_monitors!(nodes[1], 0);
2863
2864         if deliver_bs_raa {
2865                 nodes[1].node.handle_revoke_and_ack(&nodes[2].node.get_our_node_id(), &bs_raa);
2866                 // One monitor for the new revocation preimage, no second on as we won't generate a new
2867                 // commitment transaction for nodes[0] until process_pending_htlc_forwards().
2868                 check_added_monitors!(nodes[1], 1);
2869                 let events = nodes[1].node.get_and_clear_pending_events();
2870                 assert_eq!(events.len(), 1);
2871                 match events[0] {
2872                         Event::PendingHTLCsForwardable { .. } => { },
2873                         _ => panic!("Unexpected event"),
2874                 };
2875                 // Deliberately don't process the pending fail-back so they all fail back at once after
2876                 // block connection just like the !deliver_bs_raa case
2877         }
2878
2879         let mut failed_htlcs = HashSet::new();
2880         assert!(nodes[1].node.get_and_clear_pending_events().is_empty());
2881
2882         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
2883         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
2884         check_added_monitors!(nodes[1], 1);
2885         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
2886
2887         let events = nodes[1].node.get_and_clear_pending_events();
2888         assert_eq!(events.len(), if deliver_bs_raa { 1 } else { 2 });
2889         match events[0] {
2890                 Event::PaymentFailed { ref payment_hash, .. } => {
2891                         assert_eq!(*payment_hash, fourth_payment_hash);
2892                 },
2893                 _ => panic!("Unexpected event"),
2894         }
2895         if !deliver_bs_raa {
2896                 match events[1] {
2897                         Event::PendingHTLCsForwardable { .. } => { },
2898                         _ => panic!("Unexpected event"),
2899                 };
2900         }
2901         nodes[1].node.process_pending_htlc_forwards();
2902         check_added_monitors!(nodes[1], 1);
2903
2904         let events = nodes[1].node.get_and_clear_pending_msg_events();
2905         assert_eq!(events.len(), if deliver_bs_raa { 3 } else { 2 });
2906         match events[if deliver_bs_raa { 1 } else { 0 }] {
2907                 MessageSendEvent::BroadcastChannelUpdate { msg: msgs::ChannelUpdate { .. } } => {},
2908                 _ => panic!("Unexpected event"),
2909         }
2910         if deliver_bs_raa {
2911                 match events[0] {
2912                         MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, ref update_fulfill_htlcs, ref update_fail_malformed_htlcs, .. } } => {
2913                                 assert_eq!(nodes[2].node.get_our_node_id(), *node_id);
2914                                 assert_eq!(update_add_htlcs.len(), 1);
2915                                 assert!(update_fulfill_htlcs.is_empty());
2916                                 assert!(update_fail_htlcs.is_empty());
2917                                 assert!(update_fail_malformed_htlcs.is_empty());
2918                         },
2919                         _ => panic!("Unexpected event"),
2920                 }
2921         }
2922         match events[if deliver_bs_raa { 2 } else { 1 }] {
2923                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fail_htlcs, ref update_fulfill_htlcs, ref update_fail_malformed_htlcs, ref commitment_signed, .. } } => {
2924                         assert!(update_add_htlcs.is_empty());
2925                         assert_eq!(update_fail_htlcs.len(), 3);
2926                         assert!(update_fulfill_htlcs.is_empty());
2927                         assert!(update_fail_malformed_htlcs.is_empty());
2928                         assert_eq!(nodes[0].node.get_our_node_id(), *node_id);
2929
2930                         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlcs[0]);
2931                         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlcs[1]);
2932                         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlcs[2]);
2933
2934                         commitment_signed_dance!(nodes[0], nodes[1], commitment_signed, false, true);
2935
2936                         let events = nodes[0].node.get_and_clear_pending_msg_events();
2937                         // If we delivered B's RAA we got an unknown preimage error, not something
2938                         // that we should update our routing table for.
2939                         assert_eq!(events.len(), if deliver_bs_raa { 2 } else { 3 });
2940                         for event in events {
2941                                 match event {
2942                                         MessageSendEvent::PaymentFailureNetworkUpdate { .. } => {},
2943                                         _ => panic!("Unexpected event"),
2944                                 }
2945                         }
2946                         let events = nodes[0].node.get_and_clear_pending_events();
2947                         assert_eq!(events.len(), 3);
2948                         match events[0] {
2949                                 Event::PaymentFailed { ref payment_hash, .. } => {
2950                                         assert!(failed_htlcs.insert(payment_hash.0));
2951                                 },
2952                                 _ => panic!("Unexpected event"),
2953                         }
2954                         match events[1] {
2955                                 Event::PaymentFailed { ref payment_hash, .. } => {
2956                                         assert!(failed_htlcs.insert(payment_hash.0));
2957                                 },
2958                                 _ => panic!("Unexpected event"),
2959                         }
2960                         match events[2] {
2961                                 Event::PaymentFailed { ref payment_hash, .. } => {
2962                                         assert!(failed_htlcs.insert(payment_hash.0));
2963                                 },
2964                                 _ => panic!("Unexpected event"),
2965                         }
2966                 },
2967                 _ => panic!("Unexpected event"),
2968         }
2969
2970         assert!(failed_htlcs.contains(&first_payment_hash.0));
2971         assert!(failed_htlcs.contains(&second_payment_hash.0));
2972         assert!(failed_htlcs.contains(&third_payment_hash.0));
2973 }
2974
2975 #[test]
2976 fn test_commitment_revoked_fail_backward_exhaustive_a() {
2977         do_test_commitment_revoked_fail_backward_exhaustive(false, true, false);
2978         do_test_commitment_revoked_fail_backward_exhaustive(true, true, false);
2979         do_test_commitment_revoked_fail_backward_exhaustive(false, false, false);
2980         do_test_commitment_revoked_fail_backward_exhaustive(true, false, false);
2981 }
2982
2983 #[test]
2984 fn test_commitment_revoked_fail_backward_exhaustive_b() {
2985         do_test_commitment_revoked_fail_backward_exhaustive(false, true, true);
2986         do_test_commitment_revoked_fail_backward_exhaustive(true, true, true);
2987         do_test_commitment_revoked_fail_backward_exhaustive(false, false, true);
2988         do_test_commitment_revoked_fail_backward_exhaustive(true, false, true);
2989 }
2990
2991 #[test]
2992 fn test_htlc_ignore_latest_remote_commitment() {
2993         // Test that HTLC transactions spending the latest remote commitment transaction are simply
2994         // ignored if we cannot claim them. This originally tickled an invalid unwrap().
2995         let chanmon_cfgs = create_chanmon_cfgs(2);
2996         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
2997         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
2998         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
2999         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3000
3001         route_payment(&nodes[0], &[&nodes[1]], 10000000);
3002         nodes[0].node.force_close_channel(&nodes[0].node.list_channels()[0].channel_id);
3003         check_closed_broadcast!(nodes[0], false);
3004         check_added_monitors!(nodes[0], 1);
3005
3006         let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
3007         assert_eq!(node_txn.len(), 2);
3008
3009         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3010         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone(), node_txn[1].clone()]}, 1);
3011         check_closed_broadcast!(nodes[1], false);
3012         check_added_monitors!(nodes[1], 1);
3013
3014         // Duplicate the block_connected call since this may happen due to other listeners
3015         // registering new transactions
3016         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone(), node_txn[1].clone()]}, 1);
3017 }
3018
3019 #[test]
3020 fn test_force_close_fail_back() {
3021         // Check which HTLCs are failed-backwards on channel force-closure
3022         let chanmon_cfgs = create_chanmon_cfgs(3);
3023         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
3024         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
3025         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
3026         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3027         create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
3028
3029         let route = nodes[0].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 1000000, 42).unwrap();
3030
3031         let (our_payment_preimage, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
3032
3033         let mut payment_event = {
3034                 nodes[0].node.send_payment(route, our_payment_hash).unwrap();
3035                 check_added_monitors!(nodes[0], 1);
3036
3037                 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
3038                 assert_eq!(events.len(), 1);
3039                 SendEvent::from_event(events.remove(0))
3040         };
3041
3042         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
3043         commitment_signed_dance!(nodes[1], nodes[0], payment_event.commitment_msg, false);
3044
3045         expect_pending_htlcs_forwardable!(nodes[1]);
3046
3047         let mut events_2 = nodes[1].node.get_and_clear_pending_msg_events();
3048         assert_eq!(events_2.len(), 1);
3049         payment_event = SendEvent::from_event(events_2.remove(0));
3050         assert_eq!(payment_event.msgs.len(), 1);
3051
3052         check_added_monitors!(nodes[1], 1);
3053         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event.msgs[0]);
3054         nodes[2].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &payment_event.commitment_msg);
3055         check_added_monitors!(nodes[2], 1);
3056         let (_, _) = get_revoke_commit_msgs!(nodes[2], nodes[1].node.get_our_node_id());
3057
3058         // nodes[2] now has the latest commitment transaction, but hasn't revoked its previous
3059         // state or updated nodes[1]' state. Now force-close and broadcast that commitment/HTLC
3060         // transaction and ensure nodes[1] doesn't fail-backwards (this was originally a bug!).
3061
3062         nodes[2].node.force_close_channel(&payment_event.commitment_msg.channel_id);
3063         check_closed_broadcast!(nodes[2], false);
3064         check_added_monitors!(nodes[2], 1);
3065         let tx = {
3066                 let mut node_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap();
3067                 // Note that we don't bother broadcasting the HTLC-Success transaction here as we don't
3068                 // have a use for it unless nodes[2] learns the preimage somehow, the funds will go
3069                 // back to nodes[1] upon timeout otherwise.
3070                 assert_eq!(node_txn.len(), 1);
3071                 node_txn.remove(0)
3072         };
3073
3074         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3075         nodes[1].block_notifier.block_connected_checked(&header, 1, &[&tx], &[1]);
3076
3077         // Note no UpdateHTLCs event here from nodes[1] to nodes[0]!
3078         check_closed_broadcast!(nodes[1], false);
3079         check_added_monitors!(nodes[1], 1);
3080
3081         // Now check that if we add the preimage to ChannelMonitor it broadcasts our HTLC-Success..
3082         {
3083                 let mut monitors = nodes[2].chan_monitor.simple_monitor.monitors.lock().unwrap();
3084                 monitors.get_mut(&OutPoint::new(Sha256dHash::from_slice(&payment_event.commitment_msg.channel_id[..]).unwrap(), 0)).unwrap()
3085                         .provide_payment_preimage(&our_payment_hash, &our_payment_preimage);
3086         }
3087         nodes[2].block_notifier.block_connected_checked(&header, 1, &[&tx], &[1]);
3088         let node_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap();
3089         assert_eq!(node_txn.len(), 1);
3090         assert_eq!(node_txn[0].input.len(), 1);
3091         assert_eq!(node_txn[0].input[0].previous_output.txid, tx.txid());
3092         assert_eq!(node_txn[0].lock_time, 0); // Must be an HTLC-Success
3093         assert_eq!(node_txn[0].input[0].witness.len(), 5); // Must be an HTLC-Success
3094
3095         check_spends!(node_txn[0], tx);
3096 }
3097
3098 #[test]
3099 fn test_unconf_chan() {
3100         // After creating a chan between nodes, we disconnect all blocks previously seen to force a channel close on nodes[0] side
3101         let chanmon_cfgs = create_chanmon_cfgs(2);
3102         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3103         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3104         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3105         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3106
3107         let channel_state = nodes[0].node.channel_state.lock().unwrap();
3108         assert_eq!(channel_state.by_id.len(), 1);
3109         assert_eq!(channel_state.short_to_id.len(), 1);
3110         mem::drop(channel_state);
3111
3112         let mut headers = Vec::new();
3113         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3114         headers.push(header.clone());
3115         for _i in 2..100 {
3116                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3117                 headers.push(header.clone());
3118         }
3119         let mut height = 99;
3120         while !headers.is_empty() {
3121                 nodes[0].node.block_disconnected(&headers.pop().unwrap(), height);
3122                 height -= 1;
3123         }
3124         check_closed_broadcast!(nodes[0], false);
3125         check_added_monitors!(nodes[0], 1);
3126         let channel_state = nodes[0].node.channel_state.lock().unwrap();
3127         assert_eq!(channel_state.by_id.len(), 0);
3128         assert_eq!(channel_state.short_to_id.len(), 0);
3129 }
3130
3131 #[test]
3132 fn test_simple_peer_disconnect() {
3133         // Test that we can reconnect when there are no lost messages
3134         let chanmon_cfgs = create_chanmon_cfgs(3);
3135         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
3136         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
3137         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
3138         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3139         create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
3140
3141         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3142         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3143         reconnect_nodes(&nodes[0], &nodes[1], (true, true), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3144
3145         let payment_preimage_1 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).0;
3146         let payment_hash_2 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).1;
3147         fail_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), payment_hash_2);
3148         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), payment_preimage_1, 1_000_000);
3149
3150         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3151         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3152         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3153
3154         let payment_preimage_3 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).0;
3155         let payment_preimage_4 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).0;
3156         let payment_hash_5 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).1;
3157         let payment_hash_6 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 1000000).1;
3158
3159         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3160         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3161
3162         claim_payment_along_route(&nodes[0], &vec!(&nodes[1], &nodes[2]), true, payment_preimage_3, 1_000_000);
3163         fail_payment_along_route(&nodes[0], &[&nodes[1], &nodes[2]], true, payment_hash_5);
3164
3165         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (1, 0), (1, 0), (false, false));
3166         {
3167                 let events = nodes[0].node.get_and_clear_pending_events();
3168                 assert_eq!(events.len(), 2);
3169                 match events[0] {
3170                         Event::PaymentSent { payment_preimage } => {
3171                                 assert_eq!(payment_preimage, payment_preimage_3);
3172                         },
3173                         _ => panic!("Unexpected event"),
3174                 }
3175                 match events[1] {
3176                         Event::PaymentFailed { payment_hash, rejected_by_dest, .. } => {
3177                                 assert_eq!(payment_hash, payment_hash_5);
3178                                 assert!(rejected_by_dest);
3179                         },
3180                         _ => panic!("Unexpected event"),
3181                 }
3182         }
3183
3184         claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), payment_preimage_4, 1_000_000);
3185         fail_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), payment_hash_6);
3186 }
3187
3188 fn do_test_drop_messages_peer_disconnect(messages_delivered: u8) {
3189         // Test that we can reconnect when in-flight HTLC updates get dropped
3190         let chanmon_cfgs = create_chanmon_cfgs(2);
3191         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3192         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3193         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3194         if messages_delivered == 0 {
3195                 create_chan_between_nodes_with_value_a(&nodes[0], &nodes[1], 100000, 10001, InitFeatures::supported(), InitFeatures::supported());
3196                 // nodes[1] doesn't receive the funding_locked message (it'll be re-sent on reconnect)
3197         } else {
3198                 create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3199         }
3200
3201         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), Some(&nodes[0].node.list_usable_channels()), &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
3202         let (payment_preimage_1, payment_hash_1) = get_payment_preimage_hash!(nodes[0]);
3203
3204         let payment_event = {
3205                 nodes[0].node.send_payment(route.clone(), payment_hash_1).unwrap();
3206                 check_added_monitors!(nodes[0], 1);
3207
3208                 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
3209                 assert_eq!(events.len(), 1);
3210                 SendEvent::from_event(events.remove(0))
3211         };
3212         assert_eq!(nodes[1].node.get_our_node_id(), payment_event.node_id);
3213
3214         if messages_delivered < 2 {
3215                 // Drop the payment_event messages, and let them get re-generated in reconnect_nodes!
3216         } else {
3217                 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
3218                 if messages_delivered >= 3 {
3219                         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &payment_event.commitment_msg);
3220                         check_added_monitors!(nodes[1], 1);
3221                         let (bs_revoke_and_ack, bs_commitment_signed) = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
3222
3223                         if messages_delivered >= 4 {
3224                                 nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_and_ack);
3225                                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
3226                                 check_added_monitors!(nodes[0], 1);
3227
3228                                 if messages_delivered >= 5 {
3229                                         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_commitment_signed);
3230                                         let as_revoke_and_ack = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
3231                                         // No commitment_signed so get_event_msg's assert(len == 1) passes
3232                                         check_added_monitors!(nodes[0], 1);
3233
3234                                         if messages_delivered >= 6 {
3235                                                 nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_and_ack);
3236                                                 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
3237                                                 check_added_monitors!(nodes[1], 1);
3238                                         }
3239                                 }
3240                         }
3241                 }
3242         }
3243
3244         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3245         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3246         if messages_delivered < 3 {
3247                 // Even if the funding_locked messages get exchanged, as long as nothing further was
3248                 // received on either side, both sides will need to resend them.
3249                 reconnect_nodes(&nodes[0], &nodes[1], (true, true), (0, 1), (0, 0), (0, 0), (0, 0), (false, false));
3250         } else if messages_delivered == 3 {
3251                 // nodes[0] still wants its RAA + commitment_signed
3252                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (-1, 0), (0, 0), (0, 0), (0, 0), (true, false));
3253         } else if messages_delivered == 4 {
3254                 // nodes[0] still wants its commitment_signed
3255                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (-1, 0), (0, 0), (0, 0), (0, 0), (false, false));
3256         } else if messages_delivered == 5 {
3257                 // nodes[1] still wants its final RAA
3258                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, true));
3259         } else if messages_delivered == 6 {
3260                 // Everything was delivered...
3261                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3262         }
3263
3264         let events_1 = nodes[1].node.get_and_clear_pending_events();
3265         assert_eq!(events_1.len(), 1);
3266         match events_1[0] {
3267                 Event::PendingHTLCsForwardable { .. } => { },
3268                 _ => panic!("Unexpected event"),
3269         };
3270
3271         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3272         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3273         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3274
3275         nodes[1].node.process_pending_htlc_forwards();
3276
3277         let events_2 = nodes[1].node.get_and_clear_pending_events();
3278         assert_eq!(events_2.len(), 1);
3279         match events_2[0] {
3280                 Event::PaymentReceived { ref payment_hash, amt } => {
3281                         assert_eq!(payment_hash_1, *payment_hash);
3282                         assert_eq!(amt, 1000000);
3283                 },
3284                 _ => panic!("Unexpected event"),
3285         }
3286
3287         nodes[1].node.claim_funds(payment_preimage_1, 1_000_000);
3288         check_added_monitors!(nodes[1], 1);
3289
3290         let events_3 = nodes[1].node.get_and_clear_pending_msg_events();
3291         assert_eq!(events_3.len(), 1);
3292         let (update_fulfill_htlc, commitment_signed) = match events_3[0] {
3293                 MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
3294                         assert_eq!(*node_id, nodes[0].node.get_our_node_id());
3295                         assert!(updates.update_add_htlcs.is_empty());
3296                         assert!(updates.update_fail_htlcs.is_empty());
3297                         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
3298                         assert!(updates.update_fail_malformed_htlcs.is_empty());
3299                         assert!(updates.update_fee.is_none());
3300                         (updates.update_fulfill_htlcs[0].clone(), updates.commitment_signed.clone())
3301                 },
3302                 _ => panic!("Unexpected event"),
3303         };
3304
3305         if messages_delivered >= 1 {
3306                 nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &update_fulfill_htlc);
3307
3308                 let events_4 = nodes[0].node.get_and_clear_pending_events();
3309                 assert_eq!(events_4.len(), 1);
3310                 match events_4[0] {
3311                         Event::PaymentSent { ref payment_preimage } => {
3312                                 assert_eq!(payment_preimage_1, *payment_preimage);
3313                         },
3314                         _ => panic!("Unexpected event"),
3315                 }
3316
3317                 if messages_delivered >= 2 {
3318                         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &commitment_signed);
3319                         check_added_monitors!(nodes[0], 1);
3320                         let (as_revoke_and_ack, as_commitment_signed) = get_revoke_commit_msgs!(nodes[0], nodes[1].node.get_our_node_id());
3321
3322                         if messages_delivered >= 3 {
3323                                 nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_and_ack);
3324                                 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
3325                                 check_added_monitors!(nodes[1], 1);
3326
3327                                 if messages_delivered >= 4 {
3328                                         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_commitment_signed);
3329                                         let bs_revoke_and_ack = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
3330                                         // No commitment_signed so get_event_msg's assert(len == 1) passes
3331                                         check_added_monitors!(nodes[1], 1);
3332
3333                                         if messages_delivered >= 5 {
3334                                                 nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_and_ack);
3335                                                 assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
3336                                                 check_added_monitors!(nodes[0], 1);
3337                                         }
3338                                 }
3339                         }
3340                 }
3341         }
3342
3343         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3344         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3345         if messages_delivered < 2 {
3346                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (1, 0), (0, 0), (0, 0), (false, false));
3347                 //TODO: Deduplicate PaymentSent events, then enable this if:
3348                 //if messages_delivered < 1 {
3349                         let events_4 = nodes[0].node.get_and_clear_pending_events();
3350                         assert_eq!(events_4.len(), 1);
3351                         match events_4[0] {
3352                                 Event::PaymentSent { ref payment_preimage } => {
3353                                         assert_eq!(payment_preimage_1, *payment_preimage);
3354                                 },
3355                                 _ => panic!("Unexpected event"),
3356                         }
3357                 //}
3358         } else if messages_delivered == 2 {
3359                 // nodes[0] still wants its RAA + commitment_signed
3360                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, -1), (0, 0), (0, 0), (0, 0), (false, true));
3361         } else if messages_delivered == 3 {
3362                 // nodes[0] still wants its commitment_signed
3363                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, -1), (0, 0), (0, 0), (0, 0), (false, false));
3364         } else if messages_delivered == 4 {
3365                 // nodes[1] still wants its final RAA
3366                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (true, false));
3367         } else if messages_delivered == 5 {
3368                 // Everything was delivered...
3369                 reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3370         }
3371
3372         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3373         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3374         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3375
3376         // Channel should still work fine...
3377         let payment_preimage_2 = send_along_route(&nodes[0], route, &[&nodes[1]], 1000000).0;
3378         claim_payment(&nodes[0], &[&nodes[1]], payment_preimage_2, 1_000_000);
3379 }
3380
3381 #[test]
3382 fn test_drop_messages_peer_disconnect_a() {
3383         do_test_drop_messages_peer_disconnect(0);
3384         do_test_drop_messages_peer_disconnect(1);
3385         do_test_drop_messages_peer_disconnect(2);
3386         do_test_drop_messages_peer_disconnect(3);
3387 }
3388
3389 #[test]
3390 fn test_drop_messages_peer_disconnect_b() {
3391         do_test_drop_messages_peer_disconnect(4);
3392         do_test_drop_messages_peer_disconnect(5);
3393         do_test_drop_messages_peer_disconnect(6);
3394 }
3395
3396 #[test]
3397 fn test_funding_peer_disconnect() {
3398         // Test that we can lock in our funding tx while disconnected
3399         let chanmon_cfgs = create_chanmon_cfgs(2);
3400         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3401         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3402         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3403         let tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 100000, 10001, InitFeatures::supported(), InitFeatures::supported());
3404
3405         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3406         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3407
3408         confirm_transaction(&nodes[0].block_notifier, &nodes[0].chain_monitor, &tx, tx.version);
3409         let events_1 = nodes[0].node.get_and_clear_pending_msg_events();
3410         assert_eq!(events_1.len(), 1);
3411         match events_1[0] {
3412                 MessageSendEvent::SendFundingLocked { ref node_id, msg: _ } => {
3413                         assert_eq!(*node_id, nodes[1].node.get_our_node_id());
3414                 },
3415                 _ => panic!("Unexpected event"),
3416         }
3417
3418         reconnect_nodes(&nodes[0], &nodes[1], (false, true), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3419
3420         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3421         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3422
3423         confirm_transaction(&nodes[1].block_notifier, &nodes[1].chain_monitor, &tx, tx.version);
3424         let events_2 = nodes[1].node.get_and_clear_pending_msg_events();
3425         assert_eq!(events_2.len(), 2);
3426         let funding_locked = match events_2[0] {
3427                 MessageSendEvent::SendFundingLocked { ref node_id, ref msg } => {
3428                         assert_eq!(*node_id, nodes[0].node.get_our_node_id());
3429                         msg.clone()
3430                 },
3431                 _ => panic!("Unexpected event"),
3432         };
3433         let bs_announcement_sigs = match events_2[1] {
3434                 MessageSendEvent::SendAnnouncementSignatures { ref node_id, ref msg } => {
3435                         assert_eq!(*node_id, nodes[0].node.get_our_node_id());
3436                         msg.clone()
3437                 },
3438                 _ => panic!("Unexpected event"),
3439         };
3440
3441         reconnect_nodes(&nodes[0], &nodes[1], (true, true), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3442
3443         nodes[0].node.handle_funding_locked(&nodes[1].node.get_our_node_id(), &funding_locked);
3444         nodes[0].node.handle_announcement_signatures(&nodes[1].node.get_our_node_id(), &bs_announcement_sigs);
3445         let events_3 = nodes[0].node.get_and_clear_pending_msg_events();
3446         assert_eq!(events_3.len(), 2);
3447         let as_announcement_sigs = match events_3[0] {
3448                 MessageSendEvent::SendAnnouncementSignatures { ref node_id, ref msg } => {
3449                         assert_eq!(*node_id, nodes[1].node.get_our_node_id());
3450                         msg.clone()
3451                 },
3452                 _ => panic!("Unexpected event"),
3453         };
3454         let (as_announcement, as_update) = match events_3[1] {
3455                 MessageSendEvent::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
3456                         (msg.clone(), update_msg.clone())
3457                 },
3458                 _ => panic!("Unexpected event"),
3459         };
3460
3461         nodes[1].node.handle_announcement_signatures(&nodes[0].node.get_our_node_id(), &as_announcement_sigs);
3462         let events_4 = nodes[1].node.get_and_clear_pending_msg_events();
3463         assert_eq!(events_4.len(), 1);
3464         let (_, bs_update) = match events_4[0] {
3465                 MessageSendEvent::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
3466                         (msg.clone(), update_msg.clone())
3467                 },
3468                 _ => panic!("Unexpected event"),
3469         };
3470
3471         nodes[0].router.handle_channel_announcement(&as_announcement).unwrap();
3472         nodes[0].router.handle_channel_update(&bs_update).unwrap();
3473         nodes[0].router.handle_channel_update(&as_update).unwrap();
3474
3475         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
3476         let (payment_preimage, _) = send_along_route(&nodes[0], route, &[&nodes[1]], 1000000);
3477         claim_payment(&nodes[0], &[&nodes[1]], payment_preimage, 1_000_000);
3478 }
3479
3480 #[test]
3481 fn test_drop_messages_peer_disconnect_dual_htlc() {
3482         // Test that we can handle reconnecting when both sides of a channel have pending
3483         // commitment_updates when we disconnect.
3484         let chanmon_cfgs = create_chanmon_cfgs(2);
3485         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3486         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3487         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3488         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3489
3490         let (payment_preimage_1, _) = route_payment(&nodes[0], &[&nodes[1]], 1000000);
3491
3492         // Now try to send a second payment which will fail to send
3493         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
3494         let (payment_preimage_2, payment_hash_2) = get_payment_preimage_hash!(nodes[0]);
3495
3496         nodes[0].node.send_payment(route.clone(), payment_hash_2).unwrap();
3497         check_added_monitors!(nodes[0], 1);
3498
3499         let events_1 = nodes[0].node.get_and_clear_pending_msg_events();
3500         assert_eq!(events_1.len(), 1);
3501         match events_1[0] {
3502                 MessageSendEvent::UpdateHTLCs { .. } => {},
3503                 _ => panic!("Unexpected event"),
3504         }
3505
3506         assert!(nodes[1].node.claim_funds(payment_preimage_1, 1_000_000));
3507         check_added_monitors!(nodes[1], 1);
3508
3509         let events_2 = nodes[1].node.get_and_clear_pending_msg_events();
3510         assert_eq!(events_2.len(), 1);
3511         match events_2[0] {
3512                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, ref commitment_signed } } => {
3513                         assert_eq!(*node_id, nodes[0].node.get_our_node_id());
3514                         assert!(update_add_htlcs.is_empty());
3515                         assert_eq!(update_fulfill_htlcs.len(), 1);
3516                         assert!(update_fail_htlcs.is_empty());
3517                         assert!(update_fail_malformed_htlcs.is_empty());
3518                         assert!(update_fee.is_none());
3519
3520                         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &update_fulfill_htlcs[0]);
3521                         let events_3 = nodes[0].node.get_and_clear_pending_events();
3522                         assert_eq!(events_3.len(), 1);
3523                         match events_3[0] {
3524                                 Event::PaymentSent { ref payment_preimage } => {
3525                                         assert_eq!(*payment_preimage, payment_preimage_1);
3526                                 },
3527                                 _ => panic!("Unexpected event"),
3528                         }
3529
3530                         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), commitment_signed);
3531                         let _ = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
3532                         // No commitment_signed so get_event_msg's assert(len == 1) passes
3533                         check_added_monitors!(nodes[0], 1);
3534                 },
3535                 _ => panic!("Unexpected event"),
3536         }
3537
3538         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
3539         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3540
3541         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3542         let reestablish_1 = get_chan_reestablish_msgs!(nodes[0], nodes[1]);
3543         assert_eq!(reestablish_1.len(), 1);
3544         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3545         let reestablish_2 = get_chan_reestablish_msgs!(nodes[1], nodes[0]);
3546         assert_eq!(reestablish_2.len(), 1);
3547
3548         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[0]);
3549         let as_resp = handle_chan_reestablish_msgs!(nodes[0], nodes[1]);
3550         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[0]);
3551         let bs_resp = handle_chan_reestablish_msgs!(nodes[1], nodes[0]);
3552
3553         assert!(as_resp.0.is_none());
3554         assert!(bs_resp.0.is_none());
3555
3556         assert!(bs_resp.1.is_none());
3557         assert!(bs_resp.2.is_none());
3558
3559         assert!(as_resp.3 == RAACommitmentOrder::CommitmentFirst);
3560
3561         assert_eq!(as_resp.2.as_ref().unwrap().update_add_htlcs.len(), 1);
3562         assert!(as_resp.2.as_ref().unwrap().update_fulfill_htlcs.is_empty());
3563         assert!(as_resp.2.as_ref().unwrap().update_fail_htlcs.is_empty());
3564         assert!(as_resp.2.as_ref().unwrap().update_fail_malformed_htlcs.is_empty());
3565         assert!(as_resp.2.as_ref().unwrap().update_fee.is_none());
3566         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &as_resp.2.as_ref().unwrap().update_add_htlcs[0]);
3567         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_resp.2.as_ref().unwrap().commitment_signed);
3568         let bs_revoke_and_ack = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
3569         // No commitment_signed so get_event_msg's assert(len == 1) passes
3570         check_added_monitors!(nodes[1], 1);
3571
3572         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), as_resp.1.as_ref().unwrap());
3573         let bs_second_commitment_signed = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
3574         assert!(bs_second_commitment_signed.update_add_htlcs.is_empty());
3575         assert!(bs_second_commitment_signed.update_fulfill_htlcs.is_empty());
3576         assert!(bs_second_commitment_signed.update_fail_htlcs.is_empty());
3577         assert!(bs_second_commitment_signed.update_fail_malformed_htlcs.is_empty());
3578         assert!(bs_second_commitment_signed.update_fee.is_none());
3579         check_added_monitors!(nodes[1], 1);
3580
3581         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_and_ack);
3582         let as_commitment_signed = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
3583         assert!(as_commitment_signed.update_add_htlcs.is_empty());
3584         assert!(as_commitment_signed.update_fulfill_htlcs.is_empty());
3585         assert!(as_commitment_signed.update_fail_htlcs.is_empty());
3586         assert!(as_commitment_signed.update_fail_malformed_htlcs.is_empty());
3587         assert!(as_commitment_signed.update_fee.is_none());
3588         check_added_monitors!(nodes[0], 1);
3589
3590         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_second_commitment_signed.commitment_signed);
3591         let as_revoke_and_ack = get_event_msg!(nodes[0], MessageSendEvent::SendRevokeAndACK, nodes[1].node.get_our_node_id());
3592         // No commitment_signed so get_event_msg's assert(len == 1) passes
3593         check_added_monitors!(nodes[0], 1);
3594
3595         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_commitment_signed.commitment_signed);
3596         let bs_second_revoke_and_ack = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
3597         // No commitment_signed so get_event_msg's assert(len == 1) passes
3598         check_added_monitors!(nodes[1], 1);
3599
3600         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_revoke_and_ack);
3601         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
3602         check_added_monitors!(nodes[1], 1);
3603
3604         expect_pending_htlcs_forwardable!(nodes[1]);
3605
3606         let events_5 = nodes[1].node.get_and_clear_pending_events();
3607         assert_eq!(events_5.len(), 1);
3608         match events_5[0] {
3609                 Event::PaymentReceived { ref payment_hash, amt: _ } => {
3610                         assert_eq!(payment_hash_2, *payment_hash);
3611                 },
3612                 _ => panic!("Unexpected event"),
3613         }
3614
3615         nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_second_revoke_and_ack);
3616         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
3617         check_added_monitors!(nodes[0], 1);
3618
3619         claim_payment(&nodes[0], &[&nodes[1]], payment_preimage_2, 1_000_000);
3620 }
3621
3622 #[test]
3623 fn test_invalid_channel_announcement() {
3624         //Test BOLT 7 channel_announcement msg requirement for final node, gather data to build customed channel_announcement msgs
3625         let secp_ctx = Secp256k1::new();
3626         let chanmon_cfgs = create_chanmon_cfgs(2);
3627         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3628         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3629         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3630
3631         let chan_announcement = create_chan_between_nodes(&nodes[0], &nodes[1], InitFeatures::supported(), InitFeatures::supported());
3632
3633         let a_channel_lock = nodes[0].node.channel_state.lock().unwrap();
3634         let b_channel_lock = nodes[1].node.channel_state.lock().unwrap();
3635         let as_chan = a_channel_lock.by_id.get(&chan_announcement.3).unwrap();
3636         let bs_chan = b_channel_lock.by_id.get(&chan_announcement.3).unwrap();
3637
3638         nodes[0].router.handle_htlc_fail_channel_update(&msgs::HTLCFailChannelUpdate::ChannelClosed { short_channel_id : as_chan.get_short_channel_id().unwrap(), is_permanent: false } );
3639
3640         let as_bitcoin_key = as_chan.get_local_keys().inner.local_channel_pubkeys.funding_pubkey;
3641         let bs_bitcoin_key = bs_chan.get_local_keys().inner.local_channel_pubkeys.funding_pubkey;
3642
3643         let as_network_key = nodes[0].node.get_our_node_id();
3644         let bs_network_key = nodes[1].node.get_our_node_id();
3645
3646         let were_node_one = as_bitcoin_key.serialize()[..] < bs_bitcoin_key.serialize()[..];
3647
3648         let mut chan_announcement;
3649
3650         macro_rules! dummy_unsigned_msg {
3651                 () => {
3652                         msgs::UnsignedChannelAnnouncement {
3653                                 features: ChannelFeatures::supported(),
3654                                 chain_hash: genesis_block(Network::Testnet).header.bitcoin_hash(),
3655                                 short_channel_id: as_chan.get_short_channel_id().unwrap(),
3656                                 node_id_1: if were_node_one { as_network_key } else { bs_network_key },
3657                                 node_id_2: if were_node_one { bs_network_key } else { as_network_key },
3658                                 bitcoin_key_1: if were_node_one { as_bitcoin_key } else { bs_bitcoin_key },
3659                                 bitcoin_key_2: if were_node_one { bs_bitcoin_key } else { as_bitcoin_key },
3660                                 excess_data: Vec::new(),
3661                         };
3662                 }
3663         }
3664
3665         macro_rules! sign_msg {
3666                 ($unsigned_msg: expr) => {
3667                         let msghash = Message::from_slice(&Sha256dHash::hash(&$unsigned_msg.encode()[..])[..]).unwrap();
3668                         let as_bitcoin_sig = secp_ctx.sign(&msghash, &as_chan.get_local_keys().inner.funding_key());
3669                         let bs_bitcoin_sig = secp_ctx.sign(&msghash, &bs_chan.get_local_keys().inner.funding_key());
3670                         let as_node_sig = secp_ctx.sign(&msghash, &nodes[0].keys_manager.get_node_secret());
3671                         let bs_node_sig = secp_ctx.sign(&msghash, &nodes[1].keys_manager.get_node_secret());
3672                         chan_announcement = msgs::ChannelAnnouncement {
3673                                 node_signature_1 : if were_node_one { as_node_sig } else { bs_node_sig},
3674                                 node_signature_2 : if were_node_one { bs_node_sig } else { as_node_sig},
3675                                 bitcoin_signature_1: if were_node_one { as_bitcoin_sig } else { bs_bitcoin_sig },
3676                                 bitcoin_signature_2 : if were_node_one { bs_bitcoin_sig } else { as_bitcoin_sig },
3677                                 contents: $unsigned_msg
3678                         }
3679                 }
3680         }
3681
3682         let unsigned_msg = dummy_unsigned_msg!();
3683         sign_msg!(unsigned_msg);
3684         assert_eq!(nodes[0].router.handle_channel_announcement(&chan_announcement).unwrap(), true);
3685         let _ = nodes[0].router.handle_htlc_fail_channel_update(&msgs::HTLCFailChannelUpdate::ChannelClosed { short_channel_id : as_chan.get_short_channel_id().unwrap(), is_permanent: false } );
3686
3687         // Configured with Network::Testnet
3688         let mut unsigned_msg = dummy_unsigned_msg!();
3689         unsigned_msg.chain_hash = genesis_block(Network::Bitcoin).header.bitcoin_hash();
3690         sign_msg!(unsigned_msg);
3691         assert!(nodes[0].router.handle_channel_announcement(&chan_announcement).is_err());
3692
3693         let mut unsigned_msg = dummy_unsigned_msg!();
3694         unsigned_msg.chain_hash = Sha256dHash::hash(&[1,2,3,4,5,6,7,8,9]);
3695         sign_msg!(unsigned_msg);
3696         assert!(nodes[0].router.handle_channel_announcement(&chan_announcement).is_err());
3697 }
3698
3699 #[test]
3700 fn test_no_txn_manager_serialize_deserialize() {
3701         let chanmon_cfgs = create_chanmon_cfgs(2);
3702         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3703         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3704         let fee_estimator: test_utils::TestFeeEstimator;
3705         let new_chan_monitor: test_utils::TestChannelMonitor;
3706         let keys_manager: test_utils::TestKeysInterface;
3707         let nodes_0_deserialized: ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>;
3708         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3709
3710         let tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 100000, 10001, InitFeatures::supported(), InitFeatures::supported());
3711
3712         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3713
3714         let nodes_0_serialized = nodes[0].node.encode();
3715         let mut chan_0_monitor_serialized = test_utils::TestVecWriter(Vec::new());
3716         nodes[0].chan_monitor.simple_monitor.monitors.lock().unwrap().iter().next().unwrap().1.write_for_disk(&mut chan_0_monitor_serialized).unwrap();
3717
3718         fee_estimator = test_utils::TestFeeEstimator { sat_per_kw: 253 };
3719         new_chan_monitor = test_utils::TestChannelMonitor::new(nodes[0].chain_monitor.clone(), nodes[0].tx_broadcaster.clone(), Arc::new(test_utils::TestLogger::new()), &fee_estimator);
3720         nodes[0].chan_monitor = &new_chan_monitor;
3721         let mut chan_0_monitor_read = &chan_0_monitor_serialized.0[..];
3722         let (_, mut chan_0_monitor) = <(Sha256dHash, ChannelMonitor<EnforcingChannelKeys>)>::read(&mut chan_0_monitor_read, Arc::new(test_utils::TestLogger::new())).unwrap();
3723         assert!(chan_0_monitor_read.is_empty());
3724
3725         let mut nodes_0_read = &nodes_0_serialized[..];
3726         let config = UserConfig::default();
3727         keys_manager = test_utils::TestKeysInterface::new(&nodes[0].node_seed, Network::Testnet, Arc::new(test_utils::TestLogger::new()));
3728         let (_, nodes_0_deserialized_tmp) = {
3729                 let mut channel_monitors = HashMap::new();
3730                 channel_monitors.insert(chan_0_monitor.get_funding_txo().unwrap(), &mut chan_0_monitor);
3731                 <(Sha256dHash, ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>)>::read(&mut nodes_0_read, ChannelManagerReadArgs {
3732                         default_config: config,
3733                         keys_manager: &keys_manager,
3734                         fee_estimator: &fee_estimator,
3735                         monitor: nodes[0].chan_monitor,
3736                         tx_broadcaster: nodes[0].tx_broadcaster.clone(),
3737                         logger: Arc::new(test_utils::TestLogger::new()),
3738                         channel_monitors: &mut channel_monitors,
3739                 }).unwrap()
3740         };
3741         nodes_0_deserialized = nodes_0_deserialized_tmp;
3742         assert!(nodes_0_read.is_empty());
3743
3744         assert!(nodes[0].chan_monitor.add_monitor(chan_0_monitor.get_funding_txo().unwrap(), chan_0_monitor).is_ok());
3745         nodes[0].node = &nodes_0_deserialized;
3746         nodes[0].block_notifier.register_listener(nodes[0].node);
3747         assert_eq!(nodes[0].node.list_channels().len(), 1);
3748         check_added_monitors!(nodes[0], 1);
3749
3750         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3751         let reestablish_1 = get_chan_reestablish_msgs!(nodes[0], nodes[1]);
3752         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3753         let reestablish_2 = get_chan_reestablish_msgs!(nodes[1], nodes[0]);
3754
3755         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[0]);
3756         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
3757         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[0]);
3758         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
3759
3760         let (funding_locked, _) = create_chan_between_nodes_with_value_confirm(&nodes[0], &nodes[1], &tx);
3761         let (announcement, as_update, bs_update) = create_chan_between_nodes_with_value_b(&nodes[0], &nodes[1], &funding_locked);
3762         for node in nodes.iter() {
3763                 assert!(node.router.handle_channel_announcement(&announcement).unwrap());
3764                 node.router.handle_channel_update(&as_update).unwrap();
3765                 node.router.handle_channel_update(&bs_update).unwrap();
3766         }
3767
3768         send_payment(&nodes[0], &[&nodes[1]], 1000000, 1_000_000);
3769 }
3770
3771 #[test]
3772 fn test_simple_manager_serialize_deserialize() {
3773         let chanmon_cfgs = create_chanmon_cfgs(2);
3774         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
3775         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
3776         let fee_estimator: test_utils::TestFeeEstimator;
3777         let new_chan_monitor: test_utils::TestChannelMonitor;
3778         let keys_manager: test_utils::TestKeysInterface;
3779         let nodes_0_deserialized: ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>;
3780         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
3781         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3782
3783         let (our_payment_preimage, _) = route_payment(&nodes[0], &[&nodes[1]], 1000000);
3784         let (_, our_payment_hash) = route_payment(&nodes[0], &[&nodes[1]], 1000000);
3785
3786         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3787
3788         let nodes_0_serialized = nodes[0].node.encode();
3789         let mut chan_0_monitor_serialized = test_utils::TestVecWriter(Vec::new());
3790         nodes[0].chan_monitor.simple_monitor.monitors.lock().unwrap().iter().next().unwrap().1.write_for_disk(&mut chan_0_monitor_serialized).unwrap();
3791
3792         fee_estimator = test_utils::TestFeeEstimator { sat_per_kw: 253 };
3793         new_chan_monitor = test_utils::TestChannelMonitor::new(nodes[0].chain_monitor.clone(), nodes[0].tx_broadcaster.clone(), Arc::new(test_utils::TestLogger::new()), &fee_estimator);
3794         nodes[0].chan_monitor = &new_chan_monitor;
3795         let mut chan_0_monitor_read = &chan_0_monitor_serialized.0[..];
3796         let (_, mut chan_0_monitor) = <(Sha256dHash, ChannelMonitor<EnforcingChannelKeys>)>::read(&mut chan_0_monitor_read, Arc::new(test_utils::TestLogger::new())).unwrap();
3797         assert!(chan_0_monitor_read.is_empty());
3798
3799         let mut nodes_0_read = &nodes_0_serialized[..];
3800         keys_manager = test_utils::TestKeysInterface::new(&nodes[0].node_seed, Network::Testnet, Arc::new(test_utils::TestLogger::new()));
3801         let (_, nodes_0_deserialized_tmp) = {
3802                 let mut channel_monitors = HashMap::new();
3803                 channel_monitors.insert(chan_0_monitor.get_funding_txo().unwrap(), &mut chan_0_monitor);
3804                 <(Sha256dHash, ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>)>::read(&mut nodes_0_read, ChannelManagerReadArgs {
3805                         default_config: UserConfig::default(),
3806                         keys_manager: &keys_manager,
3807                         fee_estimator: &fee_estimator,
3808                         monitor: nodes[0].chan_monitor,
3809                         tx_broadcaster: nodes[0].tx_broadcaster.clone(),
3810                         logger: Arc::new(test_utils::TestLogger::new()),
3811                         channel_monitors: &mut channel_monitors,
3812                 }).unwrap()
3813         };
3814         nodes_0_deserialized = nodes_0_deserialized_tmp;
3815         assert!(nodes_0_read.is_empty());
3816
3817         assert!(nodes[0].chan_monitor.add_monitor(chan_0_monitor.get_funding_txo().unwrap(), chan_0_monitor).is_ok());
3818         nodes[0].node = &nodes_0_deserialized;
3819         check_added_monitors!(nodes[0], 1);
3820
3821         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3822
3823         fail_payment(&nodes[0], &[&nodes[1]], our_payment_hash);
3824         claim_payment(&nodes[0], &[&nodes[1]], our_payment_preimage, 1_000_000);
3825 }
3826
3827 #[test]
3828 fn test_manager_serialize_deserialize_inconsistent_monitor() {
3829         // Test deserializing a ChannelManager with an out-of-date ChannelMonitor
3830         let chanmon_cfgs = create_chanmon_cfgs(4);
3831         let node_cfgs = create_node_cfgs(4, &chanmon_cfgs);
3832         let node_chanmgrs = create_node_chanmgrs(4, &node_cfgs, &[None, None, None, None]);
3833         let fee_estimator: test_utils::TestFeeEstimator;
3834         let new_chan_monitor: test_utils::TestChannelMonitor;
3835         let keys_manager: test_utils::TestKeysInterface;
3836         let nodes_0_deserialized: ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>;
3837         let mut nodes = create_network(4, &node_cfgs, &node_chanmgrs);
3838         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
3839         create_announced_chan_between_nodes(&nodes, 2, 0, InitFeatures::supported(), InitFeatures::supported());
3840         let (_, _, channel_id, funding_tx) = create_announced_chan_between_nodes(&nodes, 0, 3, InitFeatures::supported(), InitFeatures::supported());
3841
3842         let (our_payment_preimage, _) = route_payment(&nodes[2], &[&nodes[0], &nodes[1]], 1000000);
3843
3844         // Serialize the ChannelManager here, but the monitor we keep up-to-date
3845         let nodes_0_serialized = nodes[0].node.encode();
3846
3847         route_payment(&nodes[0], &[&nodes[3]], 1000000);
3848         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3849         nodes[2].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3850         nodes[3].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
3851
3852         // Now the ChannelMonitor (which is now out-of-sync with ChannelManager for channel w/
3853         // nodes[3])
3854         let mut node_0_monitors_serialized = Vec::new();
3855         for monitor in nodes[0].chan_monitor.simple_monitor.monitors.lock().unwrap().iter() {
3856                 let mut writer = test_utils::TestVecWriter(Vec::new());
3857                 monitor.1.write_for_disk(&mut writer).unwrap();
3858                 node_0_monitors_serialized.push(writer.0);
3859         }
3860
3861         fee_estimator = test_utils::TestFeeEstimator { sat_per_kw: 253 };
3862         new_chan_monitor = test_utils::TestChannelMonitor::new(nodes[0].chain_monitor.clone(), nodes[0].tx_broadcaster.clone(), Arc::new(test_utils::TestLogger::new()), &fee_estimator);
3863         nodes[0].chan_monitor = &new_chan_monitor;
3864         let mut node_0_monitors = Vec::new();
3865         for serialized in node_0_monitors_serialized.iter() {
3866                 let mut read = &serialized[..];
3867                 let (_, monitor) = <(Sha256dHash, ChannelMonitor<EnforcingChannelKeys>)>::read(&mut read, Arc::new(test_utils::TestLogger::new())).unwrap();
3868                 assert!(read.is_empty());
3869                 node_0_monitors.push(monitor);
3870         }
3871
3872         let mut nodes_0_read = &nodes_0_serialized[..];
3873         keys_manager = test_utils::TestKeysInterface::new(&nodes[0].node_seed, Network::Testnet, Arc::new(test_utils::TestLogger::new()));
3874         let (_, nodes_0_deserialized_tmp) = <(Sha256dHash, ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>)>::read(&mut nodes_0_read, ChannelManagerReadArgs {
3875                 default_config: UserConfig::default(),
3876                 keys_manager: &keys_manager,
3877                 fee_estimator: &fee_estimator,
3878                 monitor: nodes[0].chan_monitor,
3879                 tx_broadcaster: nodes[0].tx_broadcaster.clone(),
3880                 logger: Arc::new(test_utils::TestLogger::new()),
3881                 channel_monitors: &mut node_0_monitors.iter_mut().map(|monitor| { (monitor.get_funding_txo().unwrap(), monitor) }).collect(),
3882         }).unwrap();
3883         nodes_0_deserialized = nodes_0_deserialized_tmp;
3884         assert!(nodes_0_read.is_empty());
3885
3886         { // Channel close should result in a commitment tx and an HTLC tx
3887                 let txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
3888                 assert_eq!(txn.len(), 2);
3889                 assert_eq!(txn[0].input[0].previous_output.txid, funding_tx.txid());
3890                 assert_eq!(txn[1].input[0].previous_output.txid, txn[0].txid());
3891         }
3892
3893         for monitor in node_0_monitors.drain(..) {
3894                 assert!(nodes[0].chan_monitor.add_monitor(monitor.get_funding_txo().unwrap(), monitor).is_ok());
3895                 check_added_monitors!(nodes[0], 1);
3896         }
3897         nodes[0].node = &nodes_0_deserialized;
3898
3899         // nodes[1] and nodes[2] have no lost state with nodes[0]...
3900         reconnect_nodes(&nodes[0], &nodes[1], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3901         reconnect_nodes(&nodes[0], &nodes[2], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
3902         //... and we can even still claim the payment!
3903         claim_payment(&nodes[2], &[&nodes[0], &nodes[1]], our_payment_preimage, 1_000_000);
3904
3905         nodes[3].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3906         let reestablish = get_event_msg!(nodes[3], MessageSendEvent::SendChannelReestablish, nodes[0].node.get_our_node_id());
3907         nodes[0].node.peer_connected(&nodes[3].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
3908         nodes[0].node.handle_channel_reestablish(&nodes[3].node.get_our_node_id(), &reestablish);
3909         let msg_events = nodes[0].node.get_and_clear_pending_msg_events();
3910         assert_eq!(msg_events.len(), 1);
3911         if let MessageSendEvent::HandleError { ref action, .. } = msg_events[0] {
3912                 match action {
3913                         &ErrorAction::SendErrorMessage { ref msg } => {
3914                                 assert_eq!(msg.channel_id, channel_id);
3915                         },
3916                         _ => panic!("Unexpected event!"),
3917                 }
3918         }
3919 }
3920
3921 macro_rules! check_spendable_outputs {
3922         ($node: expr, $der_idx: expr) => {
3923                 {
3924                         let events = $node.chan_monitor.simple_monitor.get_and_clear_pending_events();
3925                         let mut txn = Vec::new();
3926                         for event in events {
3927                                 match event {
3928                                         Event::SpendableOutputs { ref outputs } => {
3929                                                 for outp in outputs {
3930                                                         match *outp {
3931                                                                 SpendableOutputDescriptor::DynamicOutputP2WPKH { ref outpoint, ref key, ref output } => {
3932                                                                         let input = TxIn {
3933                                                                                 previous_output: outpoint.clone(),
3934                                                                                 script_sig: Script::new(),
3935                                                                                 sequence: 0,
3936                                                                                 witness: Vec::new(),
3937                                                                         };
3938                                                                         let outp = TxOut {
3939                                                                                 script_pubkey: Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script(),
3940                                                                                 value: output.value,
3941                                                                         };
3942                                                                         let mut spend_tx = Transaction {
3943                                                                                 version: 2,
3944                                                                                 lock_time: 0,
3945                                                                                 input: vec![input],
3946                                                                                 output: vec![outp],
3947                                                                         };
3948                                                                         let secp_ctx = Secp256k1::new();
3949                                                                         let remotepubkey = PublicKey::from_secret_key(&secp_ctx, &key);
3950                                                                         let witness_script = Address::p2pkh(&::bitcoin::PublicKey{compressed: true, key: remotepubkey}, Network::Testnet).script_pubkey();
3951                                                                         let sighash = Message::from_slice(&bip143::SighashComponents::new(&spend_tx).sighash_all(&spend_tx.input[0], &witness_script, output.value)[..]).unwrap();
3952                                                                         let remotesig = secp_ctx.sign(&sighash, key);
3953                                                                         spend_tx.input[0].witness.push(remotesig.serialize_der().to_vec());
3954                                                                         spend_tx.input[0].witness[0].push(SigHashType::All as u8);
3955                                                                         spend_tx.input[0].witness.push(remotepubkey.serialize().to_vec());
3956                                                                         txn.push(spend_tx);
3957                                                                 },
3958                                                                 SpendableOutputDescriptor::DynamicOutputP2WSH { ref outpoint, ref key, ref witness_script, ref to_self_delay, ref output } => {
3959                                                                         let input = TxIn {
3960                                                                                 previous_output: outpoint.clone(),
3961                                                                                 script_sig: Script::new(),
3962                                                                                 sequence: *to_self_delay as u32,
3963                                                                                 witness: Vec::new(),
3964                                                                         };
3965                                                                         let outp = TxOut {
3966                                                                                 script_pubkey: Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script(),
3967                                                                                 value: output.value,
3968                                                                         };
3969                                                                         let mut spend_tx = Transaction {
3970                                                                                 version: 2,
3971                                                                                 lock_time: 0,
3972                                                                                 input: vec![input],
3973                                                                                 output: vec![outp],
3974                                                                         };
3975                                                                         let secp_ctx = Secp256k1::new();
3976                                                                         let sighash = Message::from_slice(&bip143::SighashComponents::new(&spend_tx).sighash_all(&spend_tx.input[0], witness_script, output.value)[..]).unwrap();
3977                                                                         let local_delaysig = secp_ctx.sign(&sighash, key);
3978                                                                         spend_tx.input[0].witness.push(local_delaysig.serialize_der().to_vec());
3979                                                                         spend_tx.input[0].witness[0].push(SigHashType::All as u8);
3980                                                                         spend_tx.input[0].witness.push(vec!(0));
3981                                                                         spend_tx.input[0].witness.push(witness_script.clone().into_bytes());
3982                                                                         txn.push(spend_tx);
3983                                                                 },
3984                                                                 SpendableOutputDescriptor::StaticOutput { ref outpoint, ref output } => {
3985                                                                         let secp_ctx = Secp256k1::new();
3986                                                                         let input = TxIn {
3987                                                                                 previous_output: outpoint.clone(),
3988                                                                                 script_sig: Script::new(),
3989                                                                                 sequence: 0,
3990                                                                                 witness: Vec::new(),
3991                                                                         };
3992                                                                         let outp = TxOut {
3993                                                                                 script_pubkey: Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script(),
3994                                                                                 value: output.value,
3995                                                                         };
3996                                                                         let mut spend_tx = Transaction {
3997                                                                                 version: 2,
3998                                                                                 lock_time: 0,
3999                                                                                 input: vec![input],
4000                                                                                 output: vec![outp.clone()],
4001                                                                         };
4002                                                                         let secret = {
4003                                                                                 match ExtendedPrivKey::new_master(Network::Testnet, &$node.node_seed) {
4004                                                                                         Ok(master_key) => {
4005                                                                                                 match master_key.ckd_priv(&secp_ctx, ChildNumber::from_hardened_idx($der_idx).expect("key space exhausted")) {
4006                                                                                                         Ok(key) => key,
4007                                                                                                         Err(_) => panic!("Your RNG is busted"),
4008                                                                                                 }
4009                                                                                         }
4010                                                                                         Err(_) => panic!("Your rng is busted"),
4011                                                                                 }
4012                                                                         };
4013                                                                         let pubkey = ExtendedPubKey::from_private(&secp_ctx, &secret).public_key;
4014                                                                         let witness_script = Address::p2pkh(&pubkey, Network::Testnet).script_pubkey();
4015                                                                         let sighash = Message::from_slice(&bip143::SighashComponents::new(&spend_tx).sighash_all(&spend_tx.input[0], &witness_script, output.value)[..]).unwrap();
4016                                                                         let sig = secp_ctx.sign(&sighash, &secret.private_key.key);
4017                                                                         spend_tx.input[0].witness.push(sig.serialize_der().to_vec());
4018                                                                         spend_tx.input[0].witness[0].push(SigHashType::All as u8);
4019                                                                         spend_tx.input[0].witness.push(pubkey.key.serialize().to_vec());
4020                                                                         txn.push(spend_tx);
4021                                                                 },
4022                                                         }
4023                                                 }
4024                                         },
4025                                         _ => panic!("Unexpected event"),
4026                                 };
4027                         }
4028                         txn
4029                 }
4030         }
4031 }
4032
4033 #[test]
4034 fn test_claim_sizeable_push_msat() {
4035         // Incidentally test SpendableOutput event generation due to detection of to_local output on commitment tx
4036         let chanmon_cfgs = create_chanmon_cfgs(2);
4037         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4038         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4039         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4040
4041         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 99000000, InitFeatures::supported(), InitFeatures::supported());
4042         nodes[1].node.force_close_channel(&chan.2);
4043         check_closed_broadcast!(nodes[1], false);
4044         check_added_monitors!(nodes[1], 1);
4045         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4046         assert_eq!(node_txn.len(), 1);
4047         check_spends!(node_txn[0], chan.3);
4048         assert_eq!(node_txn[0].output.len(), 2); // We can't force trimming of to_remote output as channel_reserve_satoshis block us to do so at channel opening
4049
4050         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4051         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone()] }, 0);
4052         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4053
4054         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4055         assert_eq!(spend_txn.len(), 1);
4056         check_spends!(spend_txn[0], node_txn[0]);
4057 }
4058
4059 #[test]
4060 fn test_claim_on_remote_sizeable_push_msat() {
4061         // Same test as previous, just test on remote commitment tx, as per_commitment_point registration changes following you're funder/fundee and
4062         // to_remote output is encumbered by a P2WPKH
4063         let chanmon_cfgs = create_chanmon_cfgs(2);
4064         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4065         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4066         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4067
4068         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 99000000, InitFeatures::supported(), InitFeatures::supported());
4069         nodes[0].node.force_close_channel(&chan.2);
4070         check_closed_broadcast!(nodes[0], false);
4071         check_added_monitors!(nodes[0], 1);
4072
4073         let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
4074         assert_eq!(node_txn.len(), 1);
4075         check_spends!(node_txn[0], chan.3);
4076         assert_eq!(node_txn[0].output.len(), 2); // We can't force trimming of to_remote output as channel_reserve_satoshis block us to do so at channel opening
4077
4078         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4079         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone()] }, 0);
4080         check_closed_broadcast!(nodes[1], false);
4081         check_added_monitors!(nodes[1], 1);
4082         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4083
4084         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4085         assert_eq!(spend_txn.len(), 2);
4086         assert_eq!(spend_txn[0], spend_txn[1]);
4087         check_spends!(spend_txn[0], node_txn[0]);
4088 }
4089
4090 #[test]
4091 fn test_claim_on_remote_revoked_sizeable_push_msat() {
4092         // Same test as previous, just test on remote revoked commitment tx, as per_commitment_point registration changes following you're funder/fundee and
4093         // to_remote output is encumbered by a P2WPKH
4094
4095         let chanmon_cfgs = create_chanmon_cfgs(2);
4096         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4097         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4098         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4099
4100         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 59000000, InitFeatures::supported(), InitFeatures::supported());
4101         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
4102         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan.2);
4103         assert_eq!(revoked_local_txn[0].input.len(), 1);
4104         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan.3.txid());
4105
4106         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
4107         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4108         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 0);
4109         check_closed_broadcast!(nodes[1], false);
4110         check_added_monitors!(nodes[1], 1);
4111
4112         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4113         let header_1 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4114         nodes[1].block_notifier.block_connected(&Block { header: header_1, txdata: vec![node_txn[0].clone()] }, 1);
4115         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4116
4117         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4118         assert_eq!(spend_txn.len(), 3);
4119         assert_eq!(spend_txn[0], spend_txn[1]); // to_remote output on revoked remote commitment_tx
4120         check_spends!(spend_txn[0], revoked_local_txn[0]);
4121         check_spends!(spend_txn[2], node_txn[0]);
4122 }
4123
4124 #[test]
4125 fn test_static_spendable_outputs_preimage_tx() {
4126         let chanmon_cfgs = create_chanmon_cfgs(2);
4127         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4128         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4129         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4130
4131         // Create some initial channels
4132         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4133
4134         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
4135
4136         let commitment_tx = get_local_commitment_txn!(nodes[0], chan_1.2);
4137         assert_eq!(commitment_tx[0].input.len(), 1);
4138         assert_eq!(commitment_tx[0].input[0].previous_output.txid, chan_1.3.txid());
4139
4140         // Settle A's commitment tx on B's chain
4141         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4142         assert!(nodes[1].node.claim_funds(payment_preimage, 3_000_000));
4143         check_added_monitors!(nodes[1], 1);
4144         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()] }, 1);
4145         check_added_monitors!(nodes[1], 1);
4146         let events = nodes[1].node.get_and_clear_pending_msg_events();
4147         match events[0] {
4148                 MessageSendEvent::UpdateHTLCs { .. } => {},
4149                 _ => panic!("Unexpected event"),
4150         }
4151         match events[1] {
4152                 MessageSendEvent::BroadcastChannelUpdate { .. } => {},
4153                 _ => panic!("Unexepected event"),
4154         }
4155
4156         // Check B's monitor was able to send back output descriptor event for preimage tx on A's commitment tx
4157         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap(); // ChannelManager : 2 (local commitment tx + HTLC-Success), ChannelMonitor: preimage tx
4158         assert_eq!(node_txn.len(), 3);
4159         check_spends!(node_txn[0], commitment_tx[0]);
4160         assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
4161         check_spends!(node_txn[1], chan_1.3);
4162         check_spends!(node_txn[2], node_txn[1]);
4163
4164         let header_1 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4165         nodes[1].block_notifier.block_connected(&Block { header: header_1, txdata: vec![node_txn[0].clone()] }, 1);
4166         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4167
4168         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4169         assert_eq!(spend_txn.len(), 1);
4170         check_spends!(spend_txn[0], node_txn[0]);
4171 }
4172
4173 #[test]
4174 fn test_static_spendable_outputs_justice_tx_revoked_commitment_tx() {
4175         let chanmon_cfgs = create_chanmon_cfgs(2);
4176         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4177         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4178         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4179
4180         // Create some initial channels
4181         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4182
4183         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
4184         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
4185         assert_eq!(revoked_local_txn[0].input.len(), 1);
4186         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_1.3.txid());
4187
4188         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
4189
4190         let  header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4191         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 0);
4192         check_closed_broadcast!(nodes[1], false);
4193         check_added_monitors!(nodes[1], 1);
4194
4195         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4196         assert_eq!(node_txn.len(), 2);
4197         assert_eq!(node_txn[0].input.len(), 2);
4198         check_spends!(node_txn[0], revoked_local_txn[0]);
4199
4200         let header_1 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4201         nodes[1].block_notifier.block_connected(&Block { header: header_1, txdata: vec![node_txn[0].clone()] }, 1);
4202         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4203
4204         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4205         assert_eq!(spend_txn.len(), 1);
4206         check_spends!(spend_txn[0], node_txn[0]);
4207 }
4208
4209 #[test]
4210 fn test_static_spendable_outputs_justice_tx_revoked_htlc_timeout_tx() {
4211         let chanmon_cfgs = create_chanmon_cfgs(2);
4212         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4213         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4214         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4215
4216         // Create some initial channels
4217         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4218
4219         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
4220         let revoked_local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
4221         assert_eq!(revoked_local_txn[0].input.len(), 1);
4222         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_1.3.txid());
4223
4224         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
4225
4226         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4227         // A will generate HTLC-Timeout from revoked commitment tx
4228         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
4229         check_closed_broadcast!(nodes[0], false);
4230         check_added_monitors!(nodes[0], 1);
4231
4232         let revoked_htlc_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
4233         assert_eq!(revoked_htlc_txn.len(), 3);
4234         assert_eq!(revoked_htlc_txn[0], revoked_htlc_txn[2]);
4235         assert_eq!(revoked_htlc_txn[0].input.len(), 1);
4236         assert_eq!(revoked_htlc_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
4237         check_spends!(revoked_htlc_txn[0], revoked_local_txn[0]);
4238         check_spends!(revoked_htlc_txn[1], chan_1.3);
4239
4240         // B will generate justice tx from A's revoked commitment/HTLC tx
4241         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone(), revoked_htlc_txn[0].clone()] }, 0);
4242         check_closed_broadcast!(nodes[1], false);
4243         check_added_monitors!(nodes[1], 1);
4244
4245         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4246         assert_eq!(node_txn.len(), 4); // ChannelMonitor: justice tx on revoked commitment, justice tx on revoked HTLC-timeout, adjusted justice tx, ChannelManager: local commitment tx
4247         assert_eq!(node_txn[0].input.len(), 2);
4248         check_spends!(node_txn[0], revoked_local_txn[0]);
4249         check_spends!(node_txn[1], chan_1.3);
4250         assert_eq!(node_txn[2].input.len(), 1);
4251         check_spends!(node_txn[2], revoked_htlc_txn[0]);
4252         assert_eq!(node_txn[3].input.len(), 1);
4253         check_spends!(node_txn[3], revoked_local_txn[0]);
4254
4255         let header_1 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4256         nodes[1].block_notifier.block_connected(&Block { header: header_1, txdata: vec![node_txn[0].clone(), node_txn[2].clone()] }, 1);
4257         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4258
4259         // Check B's ChannelMonitor was able to generate the right spendable output descriptor
4260         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4261         assert_eq!(spend_txn.len(), 2);
4262         check_spends!(spend_txn[0], node_txn[0]);
4263         check_spends!(spend_txn[1], node_txn[2]);
4264 }
4265
4266 #[test]
4267 fn test_static_spendable_outputs_justice_tx_revoked_htlc_success_tx() {
4268         let chanmon_cfgs = create_chanmon_cfgs(2);
4269         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4270         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4271         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4272
4273         // Create some initial channels
4274         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4275
4276         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
4277         let revoked_local_txn = get_local_commitment_txn!(nodes[1], chan_1.2);
4278         assert_eq!(revoked_local_txn[0].input.len(), 1);
4279         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan_1.3.txid());
4280
4281         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
4282
4283         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4284         // B will generate HTLC-Success from revoked commitment tx
4285         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
4286         check_closed_broadcast!(nodes[1], false);
4287         check_added_monitors!(nodes[1], 1);
4288         let revoked_htlc_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4289
4290         assert_eq!(revoked_htlc_txn.len(), 3);
4291         assert_eq!(revoked_htlc_txn[0], revoked_htlc_txn[2]);
4292         assert_eq!(revoked_htlc_txn[0].input.len(), 1);
4293         assert_eq!(revoked_htlc_txn[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4294         check_spends!(revoked_htlc_txn[0], revoked_local_txn[0]);
4295
4296         // A will generate justice tx from B's revoked commitment/HTLC tx
4297         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone(), revoked_htlc_txn[0].clone()] }, 1);
4298         check_closed_broadcast!(nodes[0], false);
4299         check_added_monitors!(nodes[0], 1);
4300
4301         let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
4302         assert_eq!(node_txn.len(), 3); // ChannelMonitor: justice tx on revoked commitment, justice tx on revoked HTLC-success, ChannelManager: local commitment tx
4303         assert_eq!(node_txn[2].input.len(), 1);
4304         check_spends!(node_txn[2], revoked_htlc_txn[0]);
4305
4306         let header_1 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4307         nodes[0].block_notifier.block_connected(&Block { header: header_1, txdata: vec![node_txn[0].clone(), node_txn[2].clone()] }, 1);
4308         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 1, true, header.bitcoin_hash());
4309
4310         // Check A's ChannelMonitor was able to generate the right spendable output descriptor
4311         let spend_txn = check_spendable_outputs!(nodes[0], 1);
4312         assert_eq!(spend_txn.len(), 5); // Duplicated SpendableOutput due to block rescan after revoked htlc output tracking
4313         assert_eq!(spend_txn[0], spend_txn[1]);
4314         assert_eq!(spend_txn[0], spend_txn[2]);
4315         check_spends!(spend_txn[0], revoked_local_txn[0]); // spending to_remote output from revoked local tx
4316         check_spends!(spend_txn[3], node_txn[0]); // spending justice tx output from revoked local tx htlc received output
4317         check_spends!(spend_txn[4], node_txn[2]); // spending justice tx output on htlc success tx
4318 }
4319
4320 #[test]
4321 fn test_onchain_to_onchain_claim() {
4322         // Test that in case of channel closure, we detect the state of output thanks to
4323         // ChainWatchInterface and claim HTLC on downstream peer's remote commitment tx.
4324         // First, have C claim an HTLC against its own latest commitment transaction.
4325         // Then, broadcast these to B, which should update the monitor downstream on the A<->B
4326         // channel.
4327         // Finally, check that B will claim the HTLC output if A's latest commitment transaction
4328         // gets broadcast.
4329
4330         let chanmon_cfgs = create_chanmon_cfgs(3);
4331         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
4332         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
4333         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
4334
4335         // Create some initial channels
4336         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4337         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
4338
4339         // Rebalance the network a bit by relaying one payment through all the channels ...
4340         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
4341         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 8000000, 8_000_000);
4342
4343         let (payment_preimage, _payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2]), 3000000);
4344         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
4345         let commitment_tx = get_local_commitment_txn!(nodes[2], chan_2.2);
4346         check_spends!(commitment_tx[0], chan_2.3);
4347         nodes[2].node.claim_funds(payment_preimage, 3_000_000);
4348         check_added_monitors!(nodes[2], 1);
4349         let updates = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
4350         assert!(updates.update_add_htlcs.is_empty());
4351         assert!(updates.update_fail_htlcs.is_empty());
4352         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
4353         assert!(updates.update_fail_malformed_htlcs.is_empty());
4354
4355         nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 1);
4356         check_closed_broadcast!(nodes[2], false);
4357         check_added_monitors!(nodes[2], 1);
4358
4359         let c_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap().clone(); // ChannelManager : 2 (commitment tx, HTLC-Success tx), ChannelMonitor : 1 (HTLC-Success tx)
4360         assert_eq!(c_txn.len(), 4);
4361         assert_eq!(c_txn[0], c_txn[2]);
4362         assert_eq!(c_txn[0], c_txn[3]);
4363         assert_eq!(commitment_tx[0], c_txn[1]);
4364         check_spends!(c_txn[1], chan_2.3);
4365         check_spends!(c_txn[2], c_txn[1]);
4366         assert_eq!(c_txn[1].input[0].witness.clone().last().unwrap().len(), 71);
4367         assert_eq!(c_txn[2].input[0].witness.clone().last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4368         assert!(c_txn[0].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
4369         assert_eq!(c_txn[0].lock_time, 0); // Success tx
4370
4371         // So we broadcast C's commitment tx and HTLC-Success on B's chain, we should successfully be able to extract preimage and update downstream monitor
4372         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![c_txn[1].clone(), c_txn[2].clone()]}, 1);
4373         {
4374                 let mut b_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4375                 // ChannelMonitor: claim tx, ChannelManager: local commitment tx + HTLC-timeout tx
4376                 assert_eq!(b_txn.len(), 3);
4377                 check_spends!(b_txn[1], chan_2.3); // B local commitment tx, issued by ChannelManager
4378                 check_spends!(b_txn[2], b_txn[1]); // HTLC-Timeout on B local commitment tx, issued by ChannelManager
4379                 assert_eq!(b_txn[2].input[0].witness.clone().last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
4380                 assert!(b_txn[2].output[0].script_pubkey.is_v0_p2wsh()); // revokeable output
4381                 assert_ne!(b_txn[2].lock_time, 0); // Timeout tx
4382                 check_spends!(b_txn[0], c_txn[1]); // timeout tx on C remote commitment tx, issued by ChannelMonitor, * 2 due to block rescan
4383                 assert_eq!(b_txn[0].input[0].witness.clone().last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4384                 assert!(b_txn[0].output[0].script_pubkey.is_v0_p2wpkh()); // direct payment
4385                 assert_ne!(b_txn[2].lock_time, 0); // Timeout tx
4386                 b_txn.clear();
4387         }
4388         check_added_monitors!(nodes[1], 1);
4389         let msg_events = nodes[1].node.get_and_clear_pending_msg_events();
4390         check_added_monitors!(nodes[1], 1);
4391         match msg_events[0] {
4392                 MessageSendEvent::BroadcastChannelUpdate {  .. } => {},
4393                 _ => panic!("Unexpected event"),
4394         }
4395         match msg_events[1] {
4396                 MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, .. } } => {
4397                         assert!(update_add_htlcs.is_empty());
4398                         assert!(update_fail_htlcs.is_empty());
4399                         assert_eq!(update_fulfill_htlcs.len(), 1);
4400                         assert!(update_fail_malformed_htlcs.is_empty());
4401                         assert_eq!(nodes[0].node.get_our_node_id(), *node_id);
4402                 },
4403                 _ => panic!("Unexpected event"),
4404         };
4405         // Broadcast A's commitment tx on B's chain to see if we are able to claim inbound HTLC with our HTLC-Success tx
4406         let commitment_tx = get_local_commitment_txn!(nodes[0], chan_1.2);
4407         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![commitment_tx[0].clone()]}, 1);
4408         let b_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4409         // ChannelMonitor: HTLC-Success tx, ChannelManager: local commitment tx + HTLC-Success tx
4410         assert_eq!(b_txn.len(), 3);
4411         check_spends!(b_txn[1], chan_1.3);
4412         check_spends!(b_txn[2], b_txn[1]);
4413         check_spends!(b_txn[0], commitment_tx[0]);
4414         assert_eq!(b_txn[0].input[0].witness.clone().last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
4415         assert!(b_txn[0].output[0].script_pubkey.is_v0_p2wpkh()); // direct payment
4416         assert_eq!(b_txn[0].lock_time, 0); // Success tx
4417
4418         check_closed_broadcast!(nodes[1], false);
4419         check_added_monitors!(nodes[1], 1);
4420 }
4421
4422 #[test]
4423 fn test_duplicate_payment_hash_one_failure_one_success() {
4424         // Topology : A --> B --> C
4425         // We route 2 payments with same hash between B and C, one will be timeout, the other successfully claim
4426         let chanmon_cfgs = create_chanmon_cfgs(3);
4427         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
4428         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
4429         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
4430
4431         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4432         let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
4433
4434         let (our_payment_preimage, duplicate_payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 900000);
4435         *nodes[0].network_payment_count.borrow_mut() -= 1;
4436         assert_eq!(route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 900000).1, duplicate_payment_hash);
4437
4438         let commitment_txn = get_local_commitment_txn!(nodes[2], chan_2.2);
4439         assert_eq!(commitment_txn[0].input.len(), 1);
4440         check_spends!(commitment_txn[0], chan_2.3);
4441
4442         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4443         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![commitment_txn[0].clone()] }, 1);
4444         check_closed_broadcast!(nodes[1], false);
4445         check_added_monitors!(nodes[1], 1);
4446
4447         let htlc_timeout_tx;
4448         { // Extract one of the two HTLC-Timeout transaction
4449                 let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4450                 // ChannelMonitor: timeout tx * 2, ChannelManager: local commitment tx + HTLC-timeout * 2
4451                 assert_eq!(node_txn.len(), 5);
4452                 check_spends!(node_txn[0], commitment_txn[0]);
4453                 assert_eq!(node_txn[0].input.len(), 1);
4454                 check_spends!(node_txn[1], commitment_txn[0]);
4455                 assert_eq!(node_txn[1].input.len(), 1);
4456                 assert_ne!(node_txn[0].input[0], node_txn[1].input[0]);
4457                 assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4458                 assert_eq!(node_txn[1].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4459                 check_spends!(node_txn[2], chan_2.3);
4460                 check_spends!(node_txn[3], node_txn[2]);
4461                 check_spends!(node_txn[4], node_txn[2]);
4462                 htlc_timeout_tx = node_txn[1].clone();
4463         }
4464
4465         nodes[2].node.claim_funds(our_payment_preimage, 900_000);
4466         nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![commitment_txn[0].clone()] }, 1);
4467         check_added_monitors!(nodes[2], 3);
4468         let events = nodes[2].node.get_and_clear_pending_msg_events();
4469         match events[0] {
4470                 MessageSendEvent::UpdateHTLCs { .. } => {},
4471                 _ => panic!("Unexpected event"),
4472         }
4473         match events[1] {
4474                 MessageSendEvent::BroadcastChannelUpdate { .. } => {},
4475                 _ => panic!("Unexepected event"),
4476         }
4477         let htlc_success_txn: Vec<_> = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap().clone();
4478         assert_eq!(htlc_success_txn.len(), 7);
4479         check_spends!(htlc_success_txn[2], chan_2.3);
4480         check_spends!(htlc_success_txn[3], htlc_success_txn[2]);
4481         check_spends!(htlc_success_txn[4], htlc_success_txn[2]);
4482         assert_eq!(htlc_success_txn[0], htlc_success_txn[5]);
4483         assert_eq!(htlc_success_txn[0].input.len(), 1);
4484         assert_eq!(htlc_success_txn[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4485         assert_eq!(htlc_success_txn[1], htlc_success_txn[4]);
4486         assert_eq!(htlc_success_txn[1].input.len(), 1);
4487         assert_eq!(htlc_success_txn[1].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4488         assert_ne!(htlc_success_txn[0].input[0], htlc_success_txn[1].input[0]);
4489         check_spends!(htlc_success_txn[0], commitment_txn[0]);
4490         check_spends!(htlc_success_txn[1], commitment_txn[0]);
4491
4492         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![htlc_timeout_tx] }, 200);
4493         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 200, true, header.bitcoin_hash());
4494         expect_pending_htlcs_forwardable!(nodes[1]);
4495         let htlc_updates = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
4496         assert!(htlc_updates.update_add_htlcs.is_empty());
4497         assert_eq!(htlc_updates.update_fail_htlcs.len(), 1);
4498         assert_eq!(htlc_updates.update_fail_htlcs[0].htlc_id, 1);
4499         assert!(htlc_updates.update_fulfill_htlcs.is_empty());
4500         assert!(htlc_updates.update_fail_malformed_htlcs.is_empty());
4501         check_added_monitors!(nodes[1], 1);
4502
4503         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &htlc_updates.update_fail_htlcs[0]);
4504         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
4505         {
4506                 commitment_signed_dance!(nodes[0], nodes[1], &htlc_updates.commitment_signed, false, true);
4507                 let events = nodes[0].node.get_and_clear_pending_msg_events();
4508                 assert_eq!(events.len(), 1);
4509                 match events[0] {
4510                         MessageSendEvent::PaymentFailureNetworkUpdate { update: msgs::HTLCFailChannelUpdate::ChannelClosed { .. }  } => {
4511                         },
4512                         _ => { panic!("Unexpected event"); }
4513                 }
4514         }
4515         let events = nodes[0].node.get_and_clear_pending_events();
4516         match events[0] {
4517                 Event::PaymentFailed { ref payment_hash, .. } => {
4518                         assert_eq!(*payment_hash, duplicate_payment_hash);
4519                 }
4520                 _ => panic!("Unexpected event"),
4521         }
4522
4523         // Solve 2nd HTLC by broadcasting on B's chain HTLC-Success Tx from C
4524         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![htlc_success_txn[0].clone()] }, 200);
4525         let updates = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
4526         assert!(updates.update_add_htlcs.is_empty());
4527         assert!(updates.update_fail_htlcs.is_empty());
4528         assert_eq!(updates.update_fulfill_htlcs.len(), 1);
4529         assert_eq!(updates.update_fulfill_htlcs[0].htlc_id, 0);
4530         assert!(updates.update_fail_malformed_htlcs.is_empty());
4531         check_added_monitors!(nodes[1], 1);
4532
4533         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &updates.update_fulfill_htlcs[0]);
4534         commitment_signed_dance!(nodes[0], nodes[1], &updates.commitment_signed, false);
4535
4536         let events = nodes[0].node.get_and_clear_pending_events();
4537         match events[0] {
4538                 Event::PaymentSent { ref payment_preimage } => {
4539                         assert_eq!(*payment_preimage, our_payment_preimage);
4540                 }
4541                 _ => panic!("Unexpected event"),
4542         }
4543 }
4544
4545 #[test]
4546 fn test_dynamic_spendable_outputs_local_htlc_success_tx() {
4547         let chanmon_cfgs = create_chanmon_cfgs(2);
4548         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4549         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4550         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4551
4552         // Create some initial channels
4553         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4554
4555         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 9000000).0;
4556         let local_txn = get_local_commitment_txn!(nodes[1], chan_1.2);
4557         assert_eq!(local_txn[0].input.len(), 1);
4558         check_spends!(local_txn[0], chan_1.3);
4559
4560         // Give B knowledge of preimage to be able to generate a local HTLC-Success Tx
4561         nodes[1].node.claim_funds(payment_preimage, 9_000_000);
4562         check_added_monitors!(nodes[1], 1);
4563         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4564         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![local_txn[0].clone()] }, 1);
4565         check_added_monitors!(nodes[1], 1);
4566         let events = nodes[1].node.get_and_clear_pending_msg_events();
4567         match events[0] {
4568                 MessageSendEvent::UpdateHTLCs { .. } => {},
4569                 _ => panic!("Unexpected event"),
4570         }
4571         match events[1] {
4572                 MessageSendEvent::BroadcastChannelUpdate { .. } => {},
4573                 _ => panic!("Unexepected event"),
4574         }
4575         let node_txn = {
4576                 let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
4577                 assert_eq!(node_txn[0].input.len(), 1);
4578                 assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
4579                 check_spends!(node_txn[0], local_txn[0]);
4580                 vec![node_txn[0].clone(), node_txn[2].clone()]
4581         };
4582
4583         let header_201 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4584         nodes[1].block_notifier.block_connected(&Block { header: header_201, txdata: node_txn.clone() }, 201);
4585         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 201, true, header_201.bitcoin_hash());
4586
4587         // Verify that B is able to spend its own HTLC-Success tx thanks to spendable output event given back by its ChannelMonitor
4588         let spend_txn = check_spendable_outputs!(nodes[1], 1);
4589         assert_eq!(spend_txn.len(), 2);
4590         check_spends!(spend_txn[0], node_txn[0]);
4591         check_spends!(spend_txn[1], node_txn[1]);
4592 }
4593
4594 fn do_test_fail_backwards_unrevoked_remote_announce(deliver_last_raa: bool, announce_latest: bool) {
4595         // Test that we fail backwards the full set of HTLCs we need to when remote broadcasts an
4596         // unrevoked commitment transaction.
4597         // This includes HTLCs which were below the dust threshold as well as HTLCs which were awaiting
4598         // a remote RAA before they could be failed backwards (and combinations thereof).
4599         // We also test duplicate-hash HTLCs by adding two nodes on each side of the target nodes which
4600         // use the same payment hashes.
4601         // Thus, we use a six-node network:
4602         //
4603         // A \         / E
4604         //    - C - D -
4605         // B /         \ F
4606         // And test where C fails back to A/B when D announces its latest commitment transaction
4607         let chanmon_cfgs = create_chanmon_cfgs(6);
4608         let node_cfgs = create_node_cfgs(6, &chanmon_cfgs);
4609         let node_chanmgrs = create_node_chanmgrs(6, &node_cfgs, &[None, None, None, None, None, None]);
4610         let nodes = create_network(6, &node_cfgs, &node_chanmgrs);
4611
4612         create_announced_chan_between_nodes(&nodes, 0, 2, InitFeatures::supported(), InitFeatures::supported());
4613         create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported());
4614         let chan = create_announced_chan_between_nodes(&nodes, 2, 3, InitFeatures::supported(), InitFeatures::supported());
4615         create_announced_chan_between_nodes(&nodes, 3, 4, InitFeatures::supported(), InitFeatures::supported());
4616         create_announced_chan_between_nodes(&nodes, 3, 5, InitFeatures::supported(), InitFeatures::supported());
4617
4618         // Rebalance and check output sanity...
4619         send_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], 500000, 500_000);
4620         send_payment(&nodes[1], &[&nodes[2], &nodes[3], &nodes[5]], 500000, 500_000);
4621         assert_eq!(get_local_commitment_txn!(nodes[3], chan.2)[0].output.len(), 2);
4622
4623         let ds_dust_limit = nodes[3].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().our_dust_limit_satoshis;
4624         // 0th HTLC:
4625         let (_, payment_hash_1) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], ds_dust_limit*1000); // not added < dust limit + HTLC tx fee
4626         // 1st HTLC:
4627         let (_, payment_hash_2) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], ds_dust_limit*1000); // not added < dust limit + HTLC tx fee
4628         let route = nodes[1].router.get_route(&nodes[5].node.get_our_node_id(), None, &Vec::new(), ds_dust_limit*1000, TEST_FINAL_CLTV).unwrap();
4629         // 2nd HTLC:
4630         send_along_route_with_hash(&nodes[1], route.clone(), &[&nodes[2], &nodes[3], &nodes[5]], ds_dust_limit*1000, payment_hash_1); // not added < dust limit + HTLC tx fee
4631         // 3rd HTLC:
4632         send_along_route_with_hash(&nodes[1], route, &[&nodes[2], &nodes[3], &nodes[5]], ds_dust_limit*1000, payment_hash_2); // not added < dust limit + HTLC tx fee
4633         // 4th HTLC:
4634         let (_, payment_hash_3) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], 1000000);
4635         // 5th HTLC:
4636         let (_, payment_hash_4) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], 1000000);
4637         let route = nodes[1].router.get_route(&nodes[5].node.get_our_node_id(), None, &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
4638         // 6th HTLC:
4639         send_along_route_with_hash(&nodes[1], route.clone(), &[&nodes[2], &nodes[3], &nodes[5]], 1000000, payment_hash_3);
4640         // 7th HTLC:
4641         send_along_route_with_hash(&nodes[1], route, &[&nodes[2], &nodes[3], &nodes[5]], 1000000, payment_hash_4);
4642
4643         // 8th HTLC:
4644         let (_, payment_hash_5) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], 1000000);
4645         // 9th HTLC:
4646         let route = nodes[1].router.get_route(&nodes[5].node.get_our_node_id(), None, &Vec::new(), ds_dust_limit*1000, TEST_FINAL_CLTV).unwrap();
4647         send_along_route_with_hash(&nodes[1], route, &[&nodes[2], &nodes[3], &nodes[5]], ds_dust_limit*1000, payment_hash_5); // not added < dust limit + HTLC tx fee
4648
4649         // 10th HTLC:
4650         let (_, payment_hash_6) = route_payment(&nodes[0], &[&nodes[2], &nodes[3], &nodes[4]], ds_dust_limit*1000); // not added < dust limit + HTLC tx fee
4651         // 11th HTLC:
4652         let route = nodes[1].router.get_route(&nodes[5].node.get_our_node_id(), None, &Vec::new(), 1000000, TEST_FINAL_CLTV).unwrap();
4653         send_along_route_with_hash(&nodes[1], route, &[&nodes[2], &nodes[3], &nodes[5]], 1000000, payment_hash_6);
4654
4655         // Double-check that six of the new HTLC were added
4656         // We now have six HTLCs pending over the dust limit and six HTLCs under the dust limit (ie,
4657         // with to_local and to_remote outputs, 8 outputs and 6 HTLCs not included).
4658         assert_eq!(get_local_commitment_txn!(nodes[3], chan.2).len(), 1);
4659         assert_eq!(get_local_commitment_txn!(nodes[3], chan.2)[0].output.len(), 8);
4660
4661         // Now fail back three of the over-dust-limit and three of the under-dust-limit payments in one go.
4662         // Fail 0th below-dust, 4th above-dust, 8th above-dust, 10th below-dust HTLCs
4663         assert!(nodes[4].node.fail_htlc_backwards(&payment_hash_1));
4664         assert!(nodes[4].node.fail_htlc_backwards(&payment_hash_3));
4665         assert!(nodes[4].node.fail_htlc_backwards(&payment_hash_5));
4666         assert!(nodes[4].node.fail_htlc_backwards(&payment_hash_6));
4667         check_added_monitors!(nodes[4], 0);
4668         expect_pending_htlcs_forwardable!(nodes[4]);
4669         check_added_monitors!(nodes[4], 1);
4670
4671         let four_removes = get_htlc_update_msgs!(nodes[4], nodes[3].node.get_our_node_id());
4672         nodes[3].node.handle_update_fail_htlc(&nodes[4].node.get_our_node_id(), &four_removes.update_fail_htlcs[0]);
4673         nodes[3].node.handle_update_fail_htlc(&nodes[4].node.get_our_node_id(), &four_removes.update_fail_htlcs[1]);
4674         nodes[3].node.handle_update_fail_htlc(&nodes[4].node.get_our_node_id(), &four_removes.update_fail_htlcs[2]);
4675         nodes[3].node.handle_update_fail_htlc(&nodes[4].node.get_our_node_id(), &four_removes.update_fail_htlcs[3]);
4676         commitment_signed_dance!(nodes[3], nodes[4], four_removes.commitment_signed, false);
4677
4678         // Fail 3rd below-dust and 7th above-dust HTLCs
4679         assert!(nodes[5].node.fail_htlc_backwards(&payment_hash_2));
4680         assert!(nodes[5].node.fail_htlc_backwards(&payment_hash_4));
4681         check_added_monitors!(nodes[5], 0);
4682         expect_pending_htlcs_forwardable!(nodes[5]);
4683         check_added_monitors!(nodes[5], 1);
4684
4685         let two_removes = get_htlc_update_msgs!(nodes[5], nodes[3].node.get_our_node_id());
4686         nodes[3].node.handle_update_fail_htlc(&nodes[5].node.get_our_node_id(), &two_removes.update_fail_htlcs[0]);
4687         nodes[3].node.handle_update_fail_htlc(&nodes[5].node.get_our_node_id(), &two_removes.update_fail_htlcs[1]);
4688         commitment_signed_dance!(nodes[3], nodes[5], two_removes.commitment_signed, false);
4689
4690         let ds_prev_commitment_tx = get_local_commitment_txn!(nodes[3], chan.2);
4691
4692         expect_pending_htlcs_forwardable!(nodes[3]);
4693         check_added_monitors!(nodes[3], 1);
4694         let six_removes = get_htlc_update_msgs!(nodes[3], nodes[2].node.get_our_node_id());
4695         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[0]);
4696         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[1]);
4697         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[2]);
4698         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[3]);
4699         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[4]);
4700         nodes[2].node.handle_update_fail_htlc(&nodes[3].node.get_our_node_id(), &six_removes.update_fail_htlcs[5]);
4701         if deliver_last_raa {
4702                 commitment_signed_dance!(nodes[2], nodes[3], six_removes.commitment_signed, false);
4703         } else {
4704                 let _cs_last_raa = commitment_signed_dance!(nodes[2], nodes[3], six_removes.commitment_signed, false, true, false, true);
4705         }
4706
4707         // D's latest commitment transaction now contains 1st + 2nd + 9th HTLCs (implicitly, they're
4708         // below the dust limit) and the 5th + 6th + 11th HTLCs. It has failed back the 0th, 3rd, 4th,
4709         // 7th, 8th, and 10th, but as we haven't yet delivered the final RAA to C, the fails haven't
4710         // propagated back to A/B yet (and D has two unrevoked commitment transactions).
4711         //
4712         // We now broadcast the latest commitment transaction, which *should* result in failures for
4713         // the 0th, 1st, 2nd, 3rd, 4th, 7th, 8th, 9th, and 10th HTLCs, ie all the below-dust HTLCs and
4714         // the non-broadcast above-dust HTLCs.
4715         //
4716         // Alternatively, we may broadcast the previous commitment transaction, which should only
4717         // result in failures for the below-dust HTLCs, ie the 0th, 1st, 2nd, 3rd, 9th, and 10th HTLCs.
4718         let ds_last_commitment_tx = get_local_commitment_txn!(nodes[3], chan.2);
4719
4720         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4721         if announce_latest {
4722                 nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![ds_last_commitment_tx[0].clone()]}, 1);
4723         } else {
4724                 nodes[2].block_notifier.block_connected(&Block { header, txdata: vec![ds_prev_commitment_tx[0].clone()]}, 1);
4725         }
4726         connect_blocks(&nodes[2].block_notifier, ANTI_REORG_DELAY - 1, 1, true,  header.bitcoin_hash());
4727         check_closed_broadcast!(nodes[2], false);
4728         expect_pending_htlcs_forwardable!(nodes[2]);
4729         check_added_monitors!(nodes[2], 3);
4730
4731         let cs_msgs = nodes[2].node.get_and_clear_pending_msg_events();
4732         assert_eq!(cs_msgs.len(), 2);
4733         let mut a_done = false;
4734         for msg in cs_msgs {
4735                 match msg {
4736                         MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
4737                                 // Both under-dust HTLCs and the one above-dust HTLC that we had already failed
4738                                 // should be failed-backwards here.
4739                                 let target = if *node_id == nodes[0].node.get_our_node_id() {
4740                                         // If announce_latest, expect 0th, 1st, 4th, 8th, 10th HTLCs, else only 0th, 1st, 10th below-dust HTLCs
4741                                         for htlc in &updates.update_fail_htlcs {
4742                                                 assert!(htlc.htlc_id == 1 || htlc.htlc_id == 2 || htlc.htlc_id == 6 || if announce_latest { htlc.htlc_id == 3 || htlc.htlc_id == 5 } else { false });
4743                                         }
4744                                         assert_eq!(updates.update_fail_htlcs.len(), if announce_latest { 5 } else { 3 });
4745                                         assert!(!a_done);
4746                                         a_done = true;
4747                                         &nodes[0]
4748                                 } else {
4749                                         // If announce_latest, expect 2nd, 3rd, 7th, 9th HTLCs, else only 2nd, 3rd, 9th below-dust HTLCs
4750                                         for htlc in &updates.update_fail_htlcs {
4751                                                 assert!(htlc.htlc_id == 1 || htlc.htlc_id == 2 || htlc.htlc_id == 5 || if announce_latest { htlc.htlc_id == 4 } else { false });
4752                                         }
4753                                         assert_eq!(*node_id, nodes[1].node.get_our_node_id());
4754                                         assert_eq!(updates.update_fail_htlcs.len(), if announce_latest { 4 } else { 3 });
4755                                         &nodes[1]
4756                                 };
4757                                 target.node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[0]);
4758                                 target.node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[1]);
4759                                 target.node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[2]);
4760                                 if announce_latest {
4761                                         target.node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[3]);
4762                                         if *node_id == nodes[0].node.get_our_node_id() {
4763                                                 target.node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &updates.update_fail_htlcs[4]);
4764                                         }
4765                                 }
4766                                 commitment_signed_dance!(target, nodes[2], updates.commitment_signed, false, true);
4767                         },
4768                         _ => panic!("Unexpected event"),
4769                 }
4770         }
4771
4772         let as_events = nodes[0].node.get_and_clear_pending_events();
4773         assert_eq!(as_events.len(), if announce_latest { 5 } else { 3 });
4774         let mut as_failds = HashSet::new();
4775         for event in as_events.iter() {
4776                 if let &Event::PaymentFailed { ref payment_hash, ref rejected_by_dest, .. } = event {
4777                         assert!(as_failds.insert(*payment_hash));
4778                         if *payment_hash != payment_hash_2 {
4779                                 assert_eq!(*rejected_by_dest, deliver_last_raa);
4780                         } else {
4781                                 assert!(!rejected_by_dest);
4782                         }
4783                 } else { panic!("Unexpected event"); }
4784         }
4785         assert!(as_failds.contains(&payment_hash_1));
4786         assert!(as_failds.contains(&payment_hash_2));
4787         if announce_latest {
4788                 assert!(as_failds.contains(&payment_hash_3));
4789                 assert!(as_failds.contains(&payment_hash_5));
4790         }
4791         assert!(as_failds.contains(&payment_hash_6));
4792
4793         let bs_events = nodes[1].node.get_and_clear_pending_events();
4794         assert_eq!(bs_events.len(), if announce_latest { 4 } else { 3 });
4795         let mut bs_failds = HashSet::new();
4796         for event in bs_events.iter() {
4797                 if let &Event::PaymentFailed { ref payment_hash, ref rejected_by_dest, .. } = event {
4798                         assert!(bs_failds.insert(*payment_hash));
4799                         if *payment_hash != payment_hash_1 && *payment_hash != payment_hash_5 {
4800                                 assert_eq!(*rejected_by_dest, deliver_last_raa);
4801                         } else {
4802                                 assert!(!rejected_by_dest);
4803                         }
4804                 } else { panic!("Unexpected event"); }
4805         }
4806         assert!(bs_failds.contains(&payment_hash_1));
4807         assert!(bs_failds.contains(&payment_hash_2));
4808         if announce_latest {
4809                 assert!(bs_failds.contains(&payment_hash_4));
4810         }
4811         assert!(bs_failds.contains(&payment_hash_5));
4812
4813         // For each HTLC which was not failed-back by normal process (ie deliver_last_raa), we should
4814         // get a PaymentFailureNetworkUpdate. A should have gotten 4 HTLCs which were failed-back due
4815         // to unknown-preimage-etc, B should have gotten 2. Thus, in the
4816         // announce_latest && deliver_last_raa case, we should have 5-4=1 and 4-2=2
4817         // PaymentFailureNetworkUpdates.
4818         let as_msg_events = nodes[0].node.get_and_clear_pending_msg_events();
4819         assert_eq!(as_msg_events.len(), if deliver_last_raa { 1 } else if !announce_latest { 3 } else { 5 });
4820         let bs_msg_events = nodes[1].node.get_and_clear_pending_msg_events();
4821         assert_eq!(bs_msg_events.len(), if deliver_last_raa { 2 } else if !announce_latest { 3 } else { 4 });
4822         for event in as_msg_events.iter().chain(bs_msg_events.iter()) {
4823                 match event {
4824                         &MessageSendEvent::PaymentFailureNetworkUpdate { .. } => {},
4825                         _ => panic!("Unexpected event"),
4826                 }
4827         }
4828 }
4829
4830 #[test]
4831 fn test_fail_backwards_latest_remote_announce_a() {
4832         do_test_fail_backwards_unrevoked_remote_announce(false, true);
4833 }
4834
4835 #[test]
4836 fn test_fail_backwards_latest_remote_announce_b() {
4837         do_test_fail_backwards_unrevoked_remote_announce(true, true);
4838 }
4839
4840 #[test]
4841 fn test_fail_backwards_previous_remote_announce() {
4842         do_test_fail_backwards_unrevoked_remote_announce(false, false);
4843         // Note that true, true doesn't make sense as it implies we announce a revoked state, which is
4844         // tested for in test_commitment_revoked_fail_backward_exhaustive()
4845 }
4846
4847 #[test]
4848 fn test_dynamic_spendable_outputs_local_htlc_timeout_tx() {
4849         let chanmon_cfgs = create_chanmon_cfgs(2);
4850         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4851         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4852         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4853
4854         // Create some initial channels
4855         let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4856
4857         let (_, our_payment_hash) = route_payment(&nodes[0], &vec!(&nodes[1])[..], 9000000);
4858         let local_txn = get_local_commitment_txn!(nodes[0], chan_1.2);
4859         assert_eq!(local_txn[0].input.len(), 1);
4860         check_spends!(local_txn[0], chan_1.3);
4861
4862         // Timeout HTLC on A's chain and so it can generate a HTLC-Timeout tx
4863         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4864         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![local_txn[0].clone()] }, 200);
4865         check_closed_broadcast!(nodes[0], false);
4866         check_added_monitors!(nodes[0], 1);
4867
4868         let htlc_timeout = {
4869                 let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
4870                 assert_eq!(node_txn[0].input.len(), 1);
4871                 assert_eq!(node_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
4872                 check_spends!(node_txn[0], local_txn[0]);
4873                 node_txn[0].clone()
4874         };
4875
4876         let header_201 = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4877         nodes[0].block_notifier.block_connected(&Block { header: header_201, txdata: vec![htlc_timeout.clone()] }, 201);
4878         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 201, true, header_201.bitcoin_hash());
4879         let events = nodes[0].node.get_and_clear_pending_events();
4880         assert_eq!(events.len(), 1);
4881         match events[0] {
4882                 Event::PaymentFailed { payment_hash, .. } => {
4883                         assert_eq!(payment_hash, our_payment_hash);
4884                 },
4885                 _ => panic!("Unexpected event"),
4886         }
4887
4888         // Verify that A is able to spend its own HTLC-Timeout tx thanks to spendable output event given back by its ChannelMonitor
4889         let spend_txn = check_spendable_outputs!(nodes[0], 1);
4890         assert_eq!(spend_txn.len(), 3);
4891         assert_eq!(spend_txn[0], spend_txn[1]);
4892         check_spends!(spend_txn[0], local_txn[0]);
4893         check_spends!(spend_txn[2], htlc_timeout);
4894 }
4895
4896 #[test]
4897 fn test_static_output_closing_tx() {
4898         let chanmon_cfgs = create_chanmon_cfgs(2);
4899         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4900         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4901         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4902
4903         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4904
4905         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
4906         let closing_tx = close_channel(&nodes[0], &nodes[1], &chan.2, chan.3, true).2;
4907
4908         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4909         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![closing_tx.clone()] }, 0);
4910         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 0, true, header.bitcoin_hash());
4911
4912         let spend_txn = check_spendable_outputs!(nodes[0], 2);
4913         assert_eq!(spend_txn.len(), 1);
4914         check_spends!(spend_txn[0], closing_tx);
4915
4916         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![closing_tx.clone()] }, 0);
4917         connect_blocks(&nodes[1].block_notifier, ANTI_REORG_DELAY - 1, 0, true, header.bitcoin_hash());
4918
4919         let spend_txn = check_spendable_outputs!(nodes[1], 2);
4920         assert_eq!(spend_txn.len(), 1);
4921         check_spends!(spend_txn[0], closing_tx);
4922 }
4923
4924 fn do_htlc_claim_local_commitment_only(use_dust: bool) {
4925         let chanmon_cfgs = create_chanmon_cfgs(2);
4926         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4927         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4928         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4929         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4930
4931         let (our_payment_preimage, _) = route_payment(&nodes[0], &[&nodes[1]], if use_dust { 50000 } else { 3000000 });
4932
4933         // Claim the payment, but don't deliver A's commitment_signed, resulting in the HTLC only being
4934         // present in B's local commitment transaction, but none of A's commitment transactions.
4935         assert!(nodes[1].node.claim_funds(our_payment_preimage, if use_dust { 50_000 } else { 3_000_000 }));
4936         check_added_monitors!(nodes[1], 1);
4937
4938         let bs_updates = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
4939         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &bs_updates.update_fulfill_htlcs[0]);
4940         let events = nodes[0].node.get_and_clear_pending_events();
4941         assert_eq!(events.len(), 1);
4942         match events[0] {
4943                 Event::PaymentSent { payment_preimage } => {
4944                         assert_eq!(payment_preimage, our_payment_preimage);
4945                 },
4946                 _ => panic!("Unexpected event"),
4947         }
4948
4949         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_updates.commitment_signed);
4950         check_added_monitors!(nodes[0], 1);
4951         let as_updates = get_revoke_commit_msgs!(nodes[0], nodes[1].node.get_our_node_id());
4952         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_updates.0);
4953         check_added_monitors!(nodes[1], 1);
4954
4955         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4956         for i in 1..TEST_FINAL_CLTV - CLTV_CLAIM_BUFFER + CHAN_CONFIRM_DEPTH + 1 {
4957                 nodes[1].block_notifier.block_connected_checked(&header, i, &Vec::new(), &Vec::new());
4958                 header.prev_blockhash = header.bitcoin_hash();
4959         }
4960         test_txn_broadcast(&nodes[1], &chan, None, if use_dust { HTLCType::NONE } else { HTLCType::SUCCESS });
4961         check_closed_broadcast!(nodes[1], false);
4962         check_added_monitors!(nodes[1], 1);
4963 }
4964
4965 fn do_htlc_claim_current_remote_commitment_only(use_dust: bool) {
4966         let chanmon_cfgs = create_chanmon_cfgs(2);
4967         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4968         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4969         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4970         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
4971
4972         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &Vec::new(), if use_dust { 50000 } else { 3000000 }, TEST_FINAL_CLTV).unwrap();
4973         let (_, payment_hash) = get_payment_preimage_hash!(nodes[0]);
4974         nodes[0].node.send_payment(route, payment_hash).unwrap();
4975         check_added_monitors!(nodes[0], 1);
4976
4977         let _as_update = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
4978
4979         // As far as A is concerned, the HTLC is now present only in the latest remote commitment
4980         // transaction, however it is not in A's latest local commitment, so we can just broadcast that
4981         // to "time out" the HTLC.
4982
4983         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
4984
4985         for i in 1..TEST_FINAL_CLTV + LATENCY_GRACE_PERIOD_BLOCKS + CHAN_CONFIRM_DEPTH + 1 {
4986                 nodes[0].block_notifier.block_connected(&Block { header, txdata: Vec::new()}, i);
4987                 header.prev_blockhash = header.bitcoin_hash();
4988         }
4989         test_txn_broadcast(&nodes[0], &chan, None, HTLCType::NONE);
4990         check_closed_broadcast!(nodes[0], false);
4991         check_added_monitors!(nodes[0], 1);
4992 }
4993
4994 fn do_htlc_claim_previous_remote_commitment_only(use_dust: bool, check_revoke_no_close: bool) {
4995         let chanmon_cfgs = create_chanmon_cfgs(3);
4996         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
4997         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
4998         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
4999         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
5000
5001         // Fail the payment, but don't deliver A's final RAA, resulting in the HTLC only being present
5002         // in B's previous (unrevoked) commitment transaction, but none of A's commitment transactions.
5003         // Also optionally test that we *don't* fail the channel in case the commitment transaction was
5004         // actually revoked.
5005         let htlc_value = if use_dust { 50000 } else { 3000000 };
5006         let (_, our_payment_hash) = route_payment(&nodes[0], &[&nodes[1]], htlc_value);
5007         assert!(nodes[1].node.fail_htlc_backwards(&our_payment_hash));
5008         expect_pending_htlcs_forwardable!(nodes[1]);
5009         check_added_monitors!(nodes[1], 1);
5010
5011         let bs_updates = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
5012         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &bs_updates.update_fail_htlcs[0]);
5013         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &bs_updates.commitment_signed);
5014         check_added_monitors!(nodes[0], 1);
5015         let as_updates = get_revoke_commit_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5016         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(), &as_updates.0);
5017         check_added_monitors!(nodes[1], 1);
5018         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &as_updates.1);
5019         check_added_monitors!(nodes[1], 1);
5020         let bs_revoke_and_ack = get_event_msg!(nodes[1], MessageSendEvent::SendRevokeAndACK, nodes[0].node.get_our_node_id());
5021
5022         if check_revoke_no_close {
5023                 nodes[0].node.handle_revoke_and_ack(&nodes[1].node.get_our_node_id(), &bs_revoke_and_ack);
5024                 check_added_monitors!(nodes[0], 1);
5025         }
5026
5027         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
5028         for i in 1..TEST_FINAL_CLTV + LATENCY_GRACE_PERIOD_BLOCKS + CHAN_CONFIRM_DEPTH + 1 {
5029                 nodes[0].block_notifier.block_connected_checked(&header, i, &Vec::new(), &Vec::new());
5030                 header.prev_blockhash = header.bitcoin_hash();
5031         }
5032         if !check_revoke_no_close {
5033                 test_txn_broadcast(&nodes[0], &chan, None, HTLCType::NONE);
5034                 check_closed_broadcast!(nodes[0], false);
5035                 check_added_monitors!(nodes[0], 1);
5036         } else {
5037                 let events = nodes[0].node.get_and_clear_pending_events();
5038                 assert_eq!(events.len(), 1);
5039                 match events[0] {
5040                         Event::PaymentFailed { payment_hash, rejected_by_dest, .. } => {
5041                                 assert_eq!(payment_hash, our_payment_hash);
5042                                 assert!(rejected_by_dest);
5043                         },
5044                         _ => panic!("Unexpected event"),
5045                 }
5046         }
5047 }
5048
5049 // Test that we close channels on-chain when broadcastable HTLCs reach their timeout window.
5050 // There are only a few cases to test here:
5051 //  * its not really normative behavior, but we test that below-dust HTLCs "included" in
5052 //    broadcastable commitment transactions result in channel closure,
5053 //  * its included in an unrevoked-but-previous remote commitment transaction,
5054 //  * its included in the latest remote or local commitment transactions.
5055 // We test each of the three possible commitment transactions individually and use both dust and
5056 // non-dust HTLCs.
5057 // Note that we don't bother testing both outbound and inbound HTLC failures for each case, and we
5058 // assume they are handled the same across all six cases, as both outbound and inbound failures are
5059 // tested for at least one of the cases in other tests.
5060 #[test]
5061 fn htlc_claim_single_commitment_only_a() {
5062         do_htlc_claim_local_commitment_only(true);
5063         do_htlc_claim_local_commitment_only(false);
5064
5065         do_htlc_claim_current_remote_commitment_only(true);
5066         do_htlc_claim_current_remote_commitment_only(false);
5067 }
5068
5069 #[test]
5070 fn htlc_claim_single_commitment_only_b() {
5071         do_htlc_claim_previous_remote_commitment_only(true, false);
5072         do_htlc_claim_previous_remote_commitment_only(false, false);
5073         do_htlc_claim_previous_remote_commitment_only(true, true);
5074         do_htlc_claim_previous_remote_commitment_only(false, true);
5075 }
5076
5077 fn run_onion_failure_test<F1,F2>(_name: &str, test_case: u8, nodes: &Vec<Node>, route: &Route, payment_hash: &PaymentHash, callback_msg: F1, callback_node: F2, expected_retryable: bool, expected_error_code: Option<u16>, expected_channel_update: Option<HTLCFailChannelUpdate>)
5078         where F1: for <'a> FnMut(&'a mut msgs::UpdateAddHTLC),
5079                                 F2: FnMut(),
5080 {
5081         run_onion_failure_test_with_fail_intercept(_name, test_case, nodes, route, payment_hash, callback_msg, |_|{}, callback_node, expected_retryable, expected_error_code, expected_channel_update);
5082 }
5083
5084 // test_case
5085 // 0: node1 fails backward
5086 // 1: final node fails backward
5087 // 2: payment completed but the user rejects the payment
5088 // 3: final node fails backward (but tamper onion payloads from node0)
5089 // 100: trigger error in the intermediate node and tamper returning fail_htlc
5090 // 200: trigger error in the final node and tamper returning fail_htlc
5091 fn run_onion_failure_test_with_fail_intercept<F1,F2,F3>(_name: &str, test_case: u8, nodes: &Vec<Node>, route: &Route, payment_hash: &PaymentHash, mut callback_msg: F1, mut callback_fail: F2, mut callback_node: F3, expected_retryable: bool, expected_error_code: Option<u16>, expected_channel_update: Option<HTLCFailChannelUpdate>)
5092         where F1: for <'a> FnMut(&'a mut msgs::UpdateAddHTLC),
5093                                 F2: for <'a> FnMut(&'a mut msgs::UpdateFailHTLC),
5094                                 F3: FnMut(),
5095 {
5096
5097         // reset block height
5098         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
5099         for ix in 0..nodes.len() {
5100                 nodes[ix].block_notifier.block_connected_checked(&header, 1, &[], &[]);
5101         }
5102
5103         macro_rules! expect_event {
5104                 ($node: expr, $event_type: path) => {{
5105                         let events = $node.node.get_and_clear_pending_events();
5106                         assert_eq!(events.len(), 1);
5107                         match events[0] {
5108                                 $event_type { .. } => {},
5109                                 _ => panic!("Unexpected event"),
5110                         }
5111                 }}
5112         }
5113
5114         macro_rules! expect_htlc_forward {
5115                 ($node: expr) => {{
5116                         expect_event!($node, Event::PendingHTLCsForwardable);
5117                         $node.node.process_pending_htlc_forwards();
5118                 }}
5119         }
5120
5121         // 0 ~~> 2 send payment
5122         nodes[0].node.send_payment(route.clone(), payment_hash.clone()).unwrap();
5123         check_added_monitors!(nodes[0], 1);
5124         let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5125         // temper update_add (0 => 1)
5126         let mut update_add_0 = update_0.update_add_htlcs[0].clone();
5127         if test_case == 0 || test_case == 3 || test_case == 100 {
5128                 callback_msg(&mut update_add_0);
5129                 callback_node();
5130         }
5131         // 0 => 1 update_add & CS
5132         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add_0);
5133         commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
5134
5135         let update_1_0 = match test_case {
5136                 0|100 => { // intermediate node failure; fail backward to 0
5137                         let update_1_0 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
5138                         assert!(update_1_0.update_fail_htlcs.len()+update_1_0.update_fail_malformed_htlcs.len()==1 && (update_1_0.update_fail_htlcs.len()==1 || update_1_0.update_fail_malformed_htlcs.len()==1));
5139                         update_1_0
5140                 },
5141                 1|2|3|200 => { // final node failure; forwarding to 2
5142                         assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
5143                         // forwarding on 1
5144                         if test_case != 200 {
5145                                 callback_node();
5146                         }
5147                         expect_htlc_forward!(&nodes[1]);
5148
5149                         let update_1 = get_htlc_update_msgs!(nodes[1], nodes[2].node.get_our_node_id());
5150                         check_added_monitors!(&nodes[1], 1);
5151                         assert_eq!(update_1.update_add_htlcs.len(), 1);
5152                         // tamper update_add (1 => 2)
5153                         let mut update_add_1 = update_1.update_add_htlcs[0].clone();
5154                         if test_case != 3 && test_case != 200 {
5155                                 callback_msg(&mut update_add_1);
5156                         }
5157
5158                         // 1 => 2
5159                         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &update_add_1);
5160                         commitment_signed_dance!(nodes[2], nodes[1], update_1.commitment_signed, false, true);
5161
5162                         if test_case == 2 || test_case == 200 {
5163                                 expect_htlc_forward!(&nodes[2]);
5164                                 expect_event!(&nodes[2], Event::PaymentReceived);
5165                                 callback_node();
5166                                 expect_pending_htlcs_forwardable!(nodes[2]);
5167                         }
5168
5169                         let update_2_1 = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
5170                         if test_case == 2 || test_case == 200 {
5171                                 check_added_monitors!(&nodes[2], 1);
5172                         }
5173                         assert!(update_2_1.update_fail_htlcs.len() == 1);
5174
5175                         let mut fail_msg = update_2_1.update_fail_htlcs[0].clone();
5176                         if test_case == 200 {
5177                                 callback_fail(&mut fail_msg);
5178                         }
5179
5180                         // 2 => 1
5181                         nodes[1].node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &fail_msg);
5182                         commitment_signed_dance!(nodes[1], nodes[2], update_2_1.commitment_signed, true);
5183
5184                         // backward fail on 1
5185                         let update_1_0 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
5186                         assert!(update_1_0.update_fail_htlcs.len() == 1);
5187                         update_1_0
5188                 },
5189                 _ => unreachable!(),
5190         };
5191
5192         // 1 => 0 commitment_signed_dance
5193         if update_1_0.update_fail_htlcs.len() > 0 {
5194                 let mut fail_msg = update_1_0.update_fail_htlcs[0].clone();
5195                 if test_case == 100 {
5196                         callback_fail(&mut fail_msg);
5197                 }
5198                 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
5199         } else {
5200                 nodes[0].node.handle_update_fail_malformed_htlc(&nodes[1].node.get_our_node_id(), &update_1_0.update_fail_malformed_htlcs[0]);
5201         };
5202
5203         commitment_signed_dance!(nodes[0], nodes[1], update_1_0.commitment_signed, false, true);
5204
5205         let events = nodes[0].node.get_and_clear_pending_events();
5206         assert_eq!(events.len(), 1);
5207         if let &Event::PaymentFailed { payment_hash:_, ref rejected_by_dest, ref error_code } = &events[0] {
5208                 assert_eq!(*rejected_by_dest, !expected_retryable);
5209                 assert_eq!(*error_code, expected_error_code);
5210         } else {
5211                 panic!("Uexpected event");
5212         }
5213
5214         let events = nodes[0].node.get_and_clear_pending_msg_events();
5215         if expected_channel_update.is_some() {
5216                 assert_eq!(events.len(), 1);
5217                 match events[0] {
5218                         MessageSendEvent::PaymentFailureNetworkUpdate { ref update } => {
5219                                 match update {
5220                                         &HTLCFailChannelUpdate::ChannelUpdateMessage { .. } => {
5221                                                 if let HTLCFailChannelUpdate::ChannelUpdateMessage { .. } = expected_channel_update.unwrap() {} else {
5222                                                         panic!("channel_update not found!");
5223                                                 }
5224                                         },
5225                                         &HTLCFailChannelUpdate::ChannelClosed { ref short_channel_id, ref is_permanent } => {
5226                                                 if let HTLCFailChannelUpdate::ChannelClosed { short_channel_id: ref expected_short_channel_id, is_permanent: ref expected_is_permanent } = expected_channel_update.unwrap() {
5227                                                         assert!(*short_channel_id == *expected_short_channel_id);
5228                                                         assert!(*is_permanent == *expected_is_permanent);
5229                                                 } else {
5230                                                         panic!("Unexpected message event");
5231                                                 }
5232                                         },
5233                                         &HTLCFailChannelUpdate::NodeFailure { ref node_id, ref is_permanent } => {
5234                                                 if let HTLCFailChannelUpdate::NodeFailure { node_id: ref expected_node_id, is_permanent: ref expected_is_permanent } = expected_channel_update.unwrap() {
5235                                                         assert!(*node_id == *expected_node_id);
5236                                                         assert!(*is_permanent == *expected_is_permanent);
5237                                                 } else {
5238                                                         panic!("Unexpected message event");
5239                                                 }
5240                                         },
5241                                 }
5242                         },
5243                         _ => panic!("Unexpected message event"),
5244                 }
5245         } else {
5246                 assert_eq!(events.len(), 0);
5247         }
5248 }
5249
5250 impl msgs::ChannelUpdate {
5251         fn dummy() -> msgs::ChannelUpdate {
5252                 use secp256k1::ffi::Signature as FFISignature;
5253                 use secp256k1::Signature;
5254                 msgs::ChannelUpdate {
5255                         signature: Signature::from(FFISignature::new()),
5256                         contents: msgs::UnsignedChannelUpdate {
5257                                 chain_hash: Sha256dHash::hash(&vec![0u8][..]),
5258                                 short_channel_id: 0,
5259                                 timestamp: 0,
5260                                 flags: 0,
5261                                 cltv_expiry_delta: 0,
5262                                 htlc_minimum_msat: 0,
5263                                 fee_base_msat: 0,
5264                                 fee_proportional_millionths: 0,
5265                                 excess_data: vec![],
5266                         }
5267                 }
5268         }
5269 }
5270
5271 struct BogusOnionHopData {
5272         data: Vec<u8>
5273 }
5274 impl BogusOnionHopData {
5275         fn new(orig: msgs::OnionHopData) -> Self {
5276                 Self { data: orig.encode() }
5277         }
5278 }
5279 impl Writeable for BogusOnionHopData {
5280         fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
5281                 writer.write_all(&self.data[..])
5282         }
5283 }
5284
5285 #[test]
5286 fn test_onion_failure() {
5287         use ln::msgs::ChannelUpdate;
5288         use ln::channelmanager::CLTV_FAR_FAR_AWAY;
5289         use secp256k1;
5290
5291         const BADONION: u16 = 0x8000;
5292         const PERM: u16 = 0x4000;
5293         const NODE: u16 = 0x2000;
5294         const UPDATE: u16 = 0x1000;
5295
5296         let chanmon_cfgs = create_chanmon_cfgs(3);
5297         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
5298         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
5299         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
5300         for node in nodes.iter() {
5301                 *node.keys_manager.override_session_priv.lock().unwrap() = Some(SecretKey::from_slice(&[3; 32]).unwrap());
5302         }
5303         let channels = [create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported()), create_announced_chan_between_nodes(&nodes, 1, 2, InitFeatures::supported(), InitFeatures::supported())];
5304         let (_, payment_hash) = get_payment_preimage_hash!(nodes[0]);
5305         let route = nodes[0].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 40000, TEST_FINAL_CLTV).unwrap();
5306         // positve case
5307         send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 40000, 40_000);
5308
5309         // intermediate node failure
5310         run_onion_failure_test("invalid_realm", 0, &nodes, &route, &payment_hash, |msg| {
5311                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5312                 let cur_height = nodes[0].node.latest_block_height.load(Ordering::Acquire) as u32 + 1;
5313                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5314                 let (mut onion_payloads, _htlc_msat, _htlc_cltv) = onion_utils::build_onion_payloads(&route, cur_height).unwrap();
5315                 let mut new_payloads = Vec::new();
5316                 for payload in onion_payloads.drain(..) {
5317                         new_payloads.push(BogusOnionHopData::new(payload));
5318                 }
5319                 // break the first (non-final) hop payload by swapping the realm (0) byte for a byte
5320                 // describing a length-1 TLV payload, which is obviously bogus.
5321                 new_payloads[0].data[0] = 1;
5322                 msg.onion_routing_packet = onion_utils::construct_onion_packet_bogus_hopdata(new_payloads, onion_keys, [0; 32], &payment_hash);
5323         }, ||{}, true, Some(PERM|22), Some(msgs::HTLCFailChannelUpdate::ChannelClosed{short_channel_id: channels[1].0.contents.short_channel_id, is_permanent: true}));//XXX incremented channels idx here
5324
5325         // final node failure
5326         run_onion_failure_test("invalid_realm", 3, &nodes, &route, &payment_hash, |msg| {
5327                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5328                 let cur_height = nodes[0].node.latest_block_height.load(Ordering::Acquire) as u32 + 1;
5329                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5330                 let (mut onion_payloads, _htlc_msat, _htlc_cltv) = onion_utils::build_onion_payloads(&route, cur_height).unwrap();
5331                 let mut new_payloads = Vec::new();
5332                 for payload in onion_payloads.drain(..) {
5333                         new_payloads.push(BogusOnionHopData::new(payload));
5334                 }
5335                 // break the last-hop payload by swapping the realm (0) byte for a byte describing a
5336                 // length-1 TLV payload, which is obviously bogus.
5337                 new_payloads[1].data[0] = 1;
5338                 msg.onion_routing_packet = onion_utils::construct_onion_packet_bogus_hopdata(new_payloads, onion_keys, [0; 32], &payment_hash);
5339         }, ||{}, false, Some(PERM|22), Some(msgs::HTLCFailChannelUpdate::ChannelClosed{short_channel_id: channels[1].0.contents.short_channel_id, is_permanent: true}));
5340
5341         // the following three with run_onion_failure_test_with_fail_intercept() test only the origin node
5342         // receiving simulated fail messages
5343         // intermediate node failure
5344         run_onion_failure_test_with_fail_intercept("temporary_node_failure", 100, &nodes, &route, &payment_hash, |msg| {
5345                 // trigger error
5346                 msg.amount_msat -= 1;
5347         }, |msg| {
5348                 // and tamper returning error message
5349                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5350                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5351                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], NODE|2, &[0;0]);
5352         }, ||{}, true, Some(NODE|2), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[0].pubkey, is_permanent: false}));
5353
5354         // final node failure
5355         run_onion_failure_test_with_fail_intercept("temporary_node_failure", 200, &nodes, &route, &payment_hash, |_msg| {}, |msg| {
5356                 // and tamper returning error message
5357                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5358                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5359                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[1].shared_secret[..], NODE|2, &[0;0]);
5360         }, ||{
5361                 nodes[2].node.fail_htlc_backwards(&payment_hash);
5362         }, true, Some(NODE|2), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[1].pubkey, is_permanent: false}));
5363
5364         // intermediate node failure
5365         run_onion_failure_test_with_fail_intercept("permanent_node_failure", 100, &nodes, &route, &payment_hash, |msg| {
5366                 msg.amount_msat -= 1;
5367         }, |msg| {
5368                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5369                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5370                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], PERM|NODE|2, &[0;0]);
5371         }, ||{}, true, Some(PERM|NODE|2), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[0].pubkey, is_permanent: true}));
5372
5373         // final node failure
5374         run_onion_failure_test_with_fail_intercept("permanent_node_failure", 200, &nodes, &route, &payment_hash, |_msg| {}, |msg| {
5375                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5376                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5377                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[1].shared_secret[..], PERM|NODE|2, &[0;0]);
5378         }, ||{
5379                 nodes[2].node.fail_htlc_backwards(&payment_hash);
5380         }, false, Some(PERM|NODE|2), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[1].pubkey, is_permanent: true}));
5381
5382         // intermediate node failure
5383         run_onion_failure_test_with_fail_intercept("required_node_feature_missing", 100, &nodes, &route, &payment_hash, |msg| {
5384                 msg.amount_msat -= 1;
5385         }, |msg| {
5386                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5387                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5388                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], PERM|NODE|3, &[0;0]);
5389         }, ||{
5390                 nodes[2].node.fail_htlc_backwards(&payment_hash);
5391         }, true, Some(PERM|NODE|3), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[0].pubkey, is_permanent: true}));
5392
5393         // final node failure
5394         run_onion_failure_test_with_fail_intercept("required_node_feature_missing", 200, &nodes, &route, &payment_hash, |_msg| {}, |msg| {
5395                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5396                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5397                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[1].shared_secret[..], PERM|NODE|3, &[0;0]);
5398         }, ||{
5399                 nodes[2].node.fail_htlc_backwards(&payment_hash);
5400         }, false, Some(PERM|NODE|3), Some(msgs::HTLCFailChannelUpdate::NodeFailure{node_id: route.hops[1].pubkey, is_permanent: true}));
5401
5402         run_onion_failure_test("invalid_onion_version", 0, &nodes, &route, &payment_hash, |msg| { msg.onion_routing_packet.version = 1; }, ||{}, true,
5403                 Some(BADONION|PERM|4), None);
5404
5405         run_onion_failure_test("invalid_onion_hmac", 0, &nodes, &route, &payment_hash, |msg| { msg.onion_routing_packet.hmac = [3; 32]; }, ||{}, true,
5406                 Some(BADONION|PERM|5), None);
5407
5408         run_onion_failure_test("invalid_onion_key", 0, &nodes, &route, &payment_hash, |msg| { msg.onion_routing_packet.public_key = Err(secp256k1::Error::InvalidPublicKey);}, ||{}, true,
5409                 Some(BADONION|PERM|6), None);
5410
5411         run_onion_failure_test_with_fail_intercept("temporary_channel_failure", 100, &nodes, &route, &payment_hash, |msg| {
5412                 msg.amount_msat -= 1;
5413         }, |msg| {
5414                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5415                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5416                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], UPDATE|7, &ChannelUpdate::dummy().encode_with_len()[..]);
5417         }, ||{}, true, Some(UPDATE|7), Some(msgs::HTLCFailChannelUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy()}));
5418
5419         run_onion_failure_test_with_fail_intercept("permanent_channel_failure", 100, &nodes, &route, &payment_hash, |msg| {
5420                 msg.amount_msat -= 1;
5421         }, |msg| {
5422                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5423                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5424                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], PERM|8, &[0;0]);
5425                 // short_channel_id from the processing node
5426         }, ||{}, true, Some(PERM|8), Some(msgs::HTLCFailChannelUpdate::ChannelClosed{short_channel_id: channels[1].0.contents.short_channel_id, is_permanent: true}));
5427
5428         run_onion_failure_test_with_fail_intercept("required_channel_feature_missing", 100, &nodes, &route, &payment_hash, |msg| {
5429                 msg.amount_msat -= 1;
5430         }, |msg| {
5431                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5432                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5433                 msg.reason = onion_utils::build_first_hop_failure_packet(&onion_keys[0].shared_secret[..], PERM|9, &[0;0]);
5434                 // short_channel_id from the processing node
5435         }, ||{}, true, Some(PERM|9), Some(msgs::HTLCFailChannelUpdate::ChannelClosed{short_channel_id: channels[1].0.contents.short_channel_id, is_permanent: true}));
5436
5437         let mut bogus_route = route.clone();
5438         bogus_route.hops[1].short_channel_id -= 1;
5439         run_onion_failure_test("unknown_next_peer", 0, &nodes, &bogus_route, &payment_hash, |_| {}, ||{}, true, Some(PERM|10),
5440           Some(msgs::HTLCFailChannelUpdate::ChannelClosed{short_channel_id: bogus_route.hops[1].short_channel_id, is_permanent:true}));
5441
5442         let amt_to_forward = nodes[1].node.channel_state.lock().unwrap().by_id.get(&channels[1].2).unwrap().get_their_htlc_minimum_msat() - 1;
5443         let mut bogus_route = route.clone();
5444         let route_len = bogus_route.hops.len();
5445         bogus_route.hops[route_len-1].fee_msat = amt_to_forward;
5446         run_onion_failure_test("amount_below_minimum", 0, &nodes, &bogus_route, &payment_hash, |_| {}, ||{}, true, Some(UPDATE|11), Some(msgs::HTLCFailChannelUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy()}));
5447
5448         //TODO: with new config API, we will be able to generate both valid and
5449         //invalid channel_update cases.
5450         run_onion_failure_test("fee_insufficient", 0, &nodes, &route, &payment_hash, |msg| {
5451                 msg.amount_msat -= 1;
5452         }, || {}, true, Some(UPDATE|12), Some(msgs::HTLCFailChannelUpdate::ChannelClosed { short_channel_id: channels[0].0.contents.short_channel_id, is_permanent: true}));
5453
5454         run_onion_failure_test("incorrect_cltv_expiry", 0, &nodes, &route, &payment_hash, |msg| {
5455                 // need to violate: cltv_expiry - cltv_expiry_delta >= outgoing_cltv_value
5456                 msg.cltv_expiry -= 1;
5457         }, || {}, true, Some(UPDATE|13), Some(msgs::HTLCFailChannelUpdate::ChannelClosed { short_channel_id: channels[0].0.contents.short_channel_id, is_permanent: true}));
5458
5459         run_onion_failure_test("expiry_too_soon", 0, &nodes, &route, &payment_hash, |msg| {
5460                 let height = msg.cltv_expiry - CLTV_CLAIM_BUFFER - LATENCY_GRACE_PERIOD_BLOCKS + 1;
5461                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
5462
5463                 nodes[1].block_notifier.block_connected_checked(&header, height, &[], &[]);
5464         }, ||{}, true, Some(UPDATE|14), Some(msgs::HTLCFailChannelUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy()}));
5465
5466         run_onion_failure_test("unknown_payment_hash", 2, &nodes, &route, &payment_hash, |_| {}, || {
5467                 nodes[2].node.fail_htlc_backwards(&payment_hash);
5468         }, false, Some(PERM|15), None);
5469
5470         run_onion_failure_test("final_expiry_too_soon", 1, &nodes, &route, &payment_hash, |msg| {
5471                 let height = msg.cltv_expiry - CLTV_CLAIM_BUFFER - LATENCY_GRACE_PERIOD_BLOCKS + 1;
5472                 let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
5473
5474                 nodes[2].block_notifier.block_connected_checked(&header, height, &[], &[]);
5475         }, || {}, true, Some(17), None);
5476
5477         run_onion_failure_test("final_incorrect_cltv_expiry", 1, &nodes, &route, &payment_hash, |_| {}, || {
5478                 for (_, pending_forwards) in nodes[1].node.channel_state.lock().unwrap().forward_htlcs.iter_mut() {
5479                         for f in pending_forwards.iter_mut() {
5480                                 match f {
5481                                         &mut HTLCForwardInfo::AddHTLC { ref mut forward_info, .. } =>
5482                                                 forward_info.outgoing_cltv_value += 1,
5483                                         _ => {},
5484                                 }
5485                         }
5486                 }
5487         }, true, Some(18), None);
5488
5489         run_onion_failure_test("final_incorrect_htlc_amount", 1, &nodes, &route, &payment_hash, |_| {}, || {
5490                 // violate amt_to_forward > msg.amount_msat
5491                 for (_, pending_forwards) in nodes[1].node.channel_state.lock().unwrap().forward_htlcs.iter_mut() {
5492                         for f in pending_forwards.iter_mut() {
5493                                 match f {
5494                                         &mut HTLCForwardInfo::AddHTLC { ref mut forward_info, .. } =>
5495                                                 forward_info.amt_to_forward -= 1,
5496                                         _ => {},
5497                                 }
5498                         }
5499                 }
5500         }, true, Some(19), None);
5501
5502         run_onion_failure_test("channel_disabled", 0, &nodes, &route, &payment_hash, |_| {}, || {
5503                 // disconnect event to the channel between nodes[1] ~ nodes[2]
5504                 nodes[1].node.peer_disconnected(&nodes[2].node.get_our_node_id(), false);
5505                 nodes[2].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
5506         }, true, Some(UPDATE|20), Some(msgs::HTLCFailChannelUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy()}));
5507         reconnect_nodes(&nodes[1], &nodes[2], (false, false), (0, 0), (0, 0), (0, 0), (0, 0), (false, false));
5508
5509         run_onion_failure_test("expiry_too_far", 0, &nodes, &route, &payment_hash, |msg| {
5510                 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
5511                 let mut route = route.clone();
5512                 let height = 1;
5513                 route.hops[1].cltv_expiry_delta += CLTV_FAR_FAR_AWAY + route.hops[0].cltv_expiry_delta + 1;
5514                 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route, &session_priv).unwrap();
5515                 let (onion_payloads, _, htlc_cltv) = onion_utils::build_onion_payloads(&route, height).unwrap();
5516                 let onion_packet = onion_utils::construct_onion_packet(onion_payloads, onion_keys, [0; 32], &payment_hash);
5517                 msg.cltv_expiry = htlc_cltv;
5518                 msg.onion_routing_packet = onion_packet;
5519         }, ||{}, true, Some(21), None);
5520 }
5521
5522 #[test]
5523 #[should_panic]
5524 fn bolt2_open_channel_sending_node_checks_part1() { //This test needs to be on its own as we are catching a panic
5525         let chanmon_cfgs = create_chanmon_cfgs(2);
5526         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5527         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5528         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5529         //Force duplicate channel ids
5530         for node in nodes.iter() {
5531                 *node.keys_manager.override_channel_id_priv.lock().unwrap() = Some([0; 32]);
5532         }
5533
5534         // BOLT #2 spec: Sending node must ensure temporary_channel_id is unique from any other channel ID with the same peer.
5535         let channel_value_satoshis=10000;
5536         let push_msat=10001;
5537         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), channel_value_satoshis, push_msat, 42, None).unwrap();
5538         let node0_to_1_send_open_channel = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
5539         nodes[1].node.handle_open_channel(&nodes[0].node.get_our_node_id(), InitFeatures::supported(), &node0_to_1_send_open_channel);
5540
5541         //Create a second channel with a channel_id collision
5542         assert!(nodes[0].node.create_channel(nodes[0].node.get_our_node_id(), channel_value_satoshis, push_msat, 42, None).is_err());
5543 }
5544
5545 #[test]
5546 fn bolt2_open_channel_sending_node_checks_part2() {
5547         let chanmon_cfgs = create_chanmon_cfgs(2);
5548         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5549         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5550         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5551
5552         // BOLT #2 spec: Sending node must set funding_satoshis to less than 2^24 satoshis
5553         let channel_value_satoshis=2^24;
5554         let push_msat=10001;
5555         assert!(nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), channel_value_satoshis, push_msat, 42, None).is_err());
5556
5557         // BOLT #2 spec: Sending node must set push_msat to equal or less than 1000 * funding_satoshis
5558         let channel_value_satoshis=10000;
5559         // Test when push_msat is equal to 1000 * funding_satoshis.
5560         let push_msat=1000*channel_value_satoshis+1;
5561         assert!(nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), channel_value_satoshis, push_msat, 42, None).is_err());
5562
5563         // BOLT #2 spec: Sending node must set set channel_reserve_satoshis greater than or equal to dust_limit_satoshis
5564         let channel_value_satoshis=10000;
5565         let push_msat=10001;
5566         assert!(nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), channel_value_satoshis, push_msat, 42, None).is_ok()); //Create a valid channel
5567         let node0_to_1_send_open_channel = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
5568         assert!(node0_to_1_send_open_channel.channel_reserve_satoshis>=node0_to_1_send_open_channel.dust_limit_satoshis);
5569
5570         // BOLT #2 spec: Sending node must set undefined bits in channel_flags to 0
5571         // Only the least-significant bit of channel_flags is currently defined resulting in channel_flags only having one of two possible states 0 or 1
5572         assert!(node0_to_1_send_open_channel.channel_flags<=1);
5573
5574         // BOLT #2 spec: Sending node should set to_self_delay sufficient to ensure the sender can irreversibly spend a commitment transaction output, in case of misbehaviour by the receiver.
5575         assert!(BREAKDOWN_TIMEOUT>0);
5576         assert!(node0_to_1_send_open_channel.to_self_delay==BREAKDOWN_TIMEOUT);
5577
5578         // BOLT #2 spec: Sending node must ensure the chain_hash value identifies the chain it wishes to open the channel within.
5579         let chain_hash=genesis_block(Network::Testnet).header.bitcoin_hash();
5580         assert_eq!(node0_to_1_send_open_channel.chain_hash,chain_hash);
5581
5582         // BOLT #2 spec: Sending node must set funding_pubkey, revocation_basepoint, htlc_basepoint, payment_basepoint, and delayed_payment_basepoint to valid DER-encoded, compressed, secp256k1 pubkeys.
5583         assert!(PublicKey::from_slice(&node0_to_1_send_open_channel.funding_pubkey.serialize()).is_ok());
5584         assert!(PublicKey::from_slice(&node0_to_1_send_open_channel.revocation_basepoint.serialize()).is_ok());
5585         assert!(PublicKey::from_slice(&node0_to_1_send_open_channel.htlc_basepoint.serialize()).is_ok());
5586         assert!(PublicKey::from_slice(&node0_to_1_send_open_channel.payment_basepoint.serialize()).is_ok());
5587         assert!(PublicKey::from_slice(&node0_to_1_send_open_channel.delayed_payment_basepoint.serialize()).is_ok());
5588 }
5589
5590 // BOLT 2 Requirements for the Sender when constructing and sending an update_add_htlc message.
5591 // BOLT 2 Requirement: MUST NOT offer amount_msat it cannot pay for in the remote commitment transaction at the current feerate_per_kw (see "Updating Fees") while maintaining its channel reserve.
5592 //TODO: I don't believe this is explicitly enforced when sending an HTLC but as the Fee aspect of the BOLT specs is in flux leaving this as a TODO.
5593
5594 #[test]
5595 fn test_update_add_htlc_bolt2_sender_value_below_minimum_msat() {
5596         //BOLT2 Requirement: MUST NOT offer amount_msat below the receiving node's htlc_minimum_msat (same validation check catches both of these)
5597         let chanmon_cfgs = create_chanmon_cfgs(2);
5598         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5599         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5600         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5601         let _chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5602         let mut route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
5603         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5604
5605         route.hops[0].fee_msat = 100;
5606
5607         let err = nodes[0].node.send_payment(route, our_payment_hash);
5608
5609         if let Err(APIError::ChannelUnavailable{err}) = err {
5610                 assert_eq!(err, "Cannot send less than their minimum HTLC value");
5611         } else {
5612                 assert!(false);
5613         }
5614         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
5615         nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send less than their minimum HTLC value".to_string(), 1);
5616 }
5617
5618 #[test]
5619 fn test_update_add_htlc_bolt2_sender_zero_value_msat() {
5620         //BOLT2 Requirement: MUST offer amount_msat greater than 0.
5621         let chanmon_cfgs = create_chanmon_cfgs(2);
5622         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5623         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5624         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5625         let _chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5626         let mut route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
5627         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5628
5629         route.hops[0].fee_msat = 0;
5630
5631         let err = nodes[0].node.send_payment(route, our_payment_hash);
5632
5633         if let Err(APIError::ChannelUnavailable{err}) = err {
5634                 assert_eq!(err, "Cannot send 0-msat HTLC");
5635         } else {
5636                 assert!(false);
5637         }
5638         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
5639         nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send 0-msat HTLC".to_string(), 1);
5640 }
5641
5642 #[test]
5643 fn test_update_add_htlc_bolt2_receiver_zero_value_msat() {
5644         //BOLT2 Requirement: MUST offer amount_msat greater than 0.
5645         let chanmon_cfgs = create_chanmon_cfgs(2);
5646         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5647         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5648         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5649         let _chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5650         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
5651         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5652
5653         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5654         check_added_monitors!(nodes[0], 1);
5655         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5656         updates.update_add_htlcs[0].amount_msat = 0;
5657
5658         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5659         nodes[1].logger.assert_log("lightning::ln::channelmanager".to_string(), "Remote side tried to send a 0-msat HTLC".to_string(), 1);
5660         check_closed_broadcast!(nodes[1], true).unwrap();
5661         check_added_monitors!(nodes[1], 1);
5662 }
5663
5664 #[test]
5665 fn test_update_add_htlc_bolt2_sender_cltv_expiry_too_high() {
5666         //BOLT 2 Requirement: MUST set cltv_expiry less than 500000000.
5667         //It is enforced when constructing a route.
5668         let chanmon_cfgs = create_chanmon_cfgs(2);
5669         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5670         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5671         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5672         let _chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 0, InitFeatures::supported(), InitFeatures::supported());
5673         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000000, 500000001).unwrap();
5674         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5675
5676         let err = nodes[0].node.send_payment(route, our_payment_hash);
5677
5678         if let Err(APIError::RouteError{err}) = err {
5679                 assert_eq!(err, "Channel CLTV overflowed?!");
5680         } else {
5681                 assert!(false);
5682         }
5683 }
5684
5685 #[test]
5686 fn test_update_add_htlc_bolt2_sender_exceed_max_htlc_num_and_htlc_id_increment() {
5687         //BOLT 2 Requirement: if result would be offering more than the remote's max_accepted_htlcs HTLCs, in the remote commitment transaction: MUST NOT add an HTLC.
5688         //BOLT 2 Requirement: for the first HTLC it offers MUST set id to 0.
5689         //BOLT 2 Requirement: MUST increase the value of id by 1 for each successive offer.
5690         let chanmon_cfgs = create_chanmon_cfgs(2);
5691         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5692         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5693         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5694         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 0, InitFeatures::supported(), InitFeatures::supported());
5695         let max_accepted_htlcs = nodes[1].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().their_max_accepted_htlcs as u64;
5696
5697         for i in 0..max_accepted_htlcs {
5698                 let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
5699                 let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5700                 let payment_event = {
5701                         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5702                         check_added_monitors!(nodes[0], 1);
5703
5704                         let mut events = nodes[0].node.get_and_clear_pending_msg_events();
5705                         assert_eq!(events.len(), 1);
5706                         if let MessageSendEvent::UpdateHTLCs { node_id: _, updates: msgs::CommitmentUpdate{ update_add_htlcs: ref htlcs, .. }, } = events[0] {
5707                                 assert_eq!(htlcs[0].htlc_id, i);
5708                         } else {
5709                                 assert!(false);
5710                         }
5711                         SendEvent::from_event(events.remove(0))
5712                 };
5713                 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
5714                 check_added_monitors!(nodes[1], 0);
5715                 commitment_signed_dance!(nodes[1], nodes[0], payment_event.commitment_msg, false);
5716
5717                 expect_pending_htlcs_forwardable!(nodes[1]);
5718                 expect_payment_received!(nodes[1], our_payment_hash, 100000);
5719         }
5720         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 100000, TEST_FINAL_CLTV).unwrap();
5721         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5722         let err = nodes[0].node.send_payment(route, our_payment_hash);
5723
5724         if let Err(APIError::ChannelUnavailable{err}) = err {
5725                 assert_eq!(err, "Cannot push more than their max accepted HTLCs");
5726         } else {
5727                 assert!(false);
5728         }
5729         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
5730         nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot push more than their max accepted HTLCs".to_string(), 1);
5731 }
5732
5733 #[test]
5734 fn test_update_add_htlc_bolt2_sender_exceed_max_htlc_value_in_flight() {
5735         //BOLT 2 Requirement: if the sum of total offered HTLCs would exceed the remote's max_htlc_value_in_flight_msat: MUST NOT add an HTLC.
5736         let chanmon_cfgs = create_chanmon_cfgs(2);
5737         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5738         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5739         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5740         let channel_value = 100000;
5741         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, channel_value, 0, InitFeatures::supported(), InitFeatures::supported());
5742         let max_in_flight = get_channel_value_stat!(nodes[0], chan.2).their_max_htlc_value_in_flight_msat;
5743
5744         send_payment(&nodes[0], &vec!(&nodes[1])[..], max_in_flight, max_in_flight);
5745
5746         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], max_in_flight+1, TEST_FINAL_CLTV).unwrap();
5747         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5748         let err = nodes[0].node.send_payment(route, our_payment_hash);
5749
5750         if let Err(APIError::ChannelUnavailable{err}) = err {
5751                 assert_eq!(err, "Cannot send value that would put us over the max HTLC value in flight our peer will accept");
5752         } else {
5753                 assert!(false);
5754         }
5755         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
5756         nodes[0].logger.assert_log("lightning::ln::channelmanager".to_string(), "Cannot send value that would put us over the max HTLC value in flight our peer will accept".to_string(), 1);
5757
5758         send_payment(&nodes[0], &[&nodes[1]], max_in_flight, max_in_flight);
5759 }
5760
5761 // BOLT 2 Requirements for the Receiver when handling an update_add_htlc message.
5762 #[test]
5763 fn test_update_add_htlc_bolt2_receiver_check_amount_received_more_than_min() {
5764         //BOLT2 Requirement: receiving an amount_msat equal to 0, OR less than its own htlc_minimum_msat -> SHOULD fail the channel.
5765         let chanmon_cfgs = create_chanmon_cfgs(2);
5766         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5767         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5768         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5769         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5770         let htlc_minimum_msat: u64;
5771         {
5772                 let chan_lock = nodes[0].node.channel_state.lock().unwrap();
5773                 let channel = chan_lock.by_id.get(&chan.2).unwrap();
5774                 htlc_minimum_msat = channel.get_our_htlc_minimum_msat();
5775         }
5776         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], htlc_minimum_msat, TEST_FINAL_CLTV).unwrap();
5777         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5778         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5779         check_added_monitors!(nodes[0], 1);
5780         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5781         updates.update_add_htlcs[0].amount_msat = htlc_minimum_msat-1;
5782         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5783         assert!(nodes[1].node.list_channels().is_empty());
5784         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5785         assert_eq!(err_msg.data, "Remote side tried to send less than our minimum HTLC value");
5786         check_added_monitors!(nodes[1], 1);
5787 }
5788
5789 #[test]
5790 fn test_update_add_htlc_bolt2_receiver_sender_can_afford_amount_sent() {
5791         //BOLT2 Requirement: receiving an amount_msat that the sending node cannot afford at the current feerate_per_kw (while maintaining its channel reserve): SHOULD fail the channel
5792         let chanmon_cfgs = create_chanmon_cfgs(2);
5793         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5794         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5795         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5796         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5797
5798         let their_channel_reserve = get_channel_value_stat!(nodes[0], chan.2).channel_reserve_msat;
5799
5800         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 5000000-their_channel_reserve, TEST_FINAL_CLTV).unwrap();
5801         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5802         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5803         check_added_monitors!(nodes[0], 1);
5804         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5805
5806         updates.update_add_htlcs[0].amount_msat = 5000000-their_channel_reserve+1;
5807         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5808
5809         assert!(nodes[1].node.list_channels().is_empty());
5810         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5811         assert_eq!(err_msg.data, "Remote HTLC add would put them over their reserve value");
5812         check_added_monitors!(nodes[1], 1);
5813 }
5814
5815 #[test]
5816 fn test_update_add_htlc_bolt2_receiver_check_max_htlc_limit() {
5817         //BOLT 2 Requirement: if a sending node adds more than its max_accepted_htlcs HTLCs to its local commitment transaction: SHOULD fail the channel
5818         //BOLT 2 Requirement: MUST allow multiple HTLCs with the same payment_hash.
5819         let chanmon_cfgs = create_chanmon_cfgs(2);
5820         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5821         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5822         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5823         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5824         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 3999999, TEST_FINAL_CLTV).unwrap();
5825         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5826
5827         let session_priv = SecretKey::from_slice(&{
5828                 let mut session_key = [0; 32];
5829                 let mut rng = thread_rng();
5830                 rng.fill_bytes(&mut session_key);
5831                 session_key
5832         }).expect("RNG is bad!");
5833
5834         let cur_height = nodes[0].node.latest_block_height.load(Ordering::Acquire) as u32 + 1;
5835         let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::signing_only(), &route, &session_priv).unwrap();
5836         let (onion_payloads, _htlc_msat, htlc_cltv) = onion_utils::build_onion_payloads(&route, cur_height).unwrap();
5837         let onion_packet = onion_utils::construct_onion_packet(onion_payloads, onion_keys, [0; 32], &our_payment_hash);
5838
5839         let mut msg = msgs::UpdateAddHTLC {
5840                 channel_id: chan.2,
5841                 htlc_id: 0,
5842                 amount_msat: 1000,
5843                 payment_hash: our_payment_hash,
5844                 cltv_expiry: htlc_cltv,
5845                 onion_routing_packet: onion_packet.clone(),
5846         };
5847
5848         for i in 0..super::channel::OUR_MAX_HTLCS {
5849                 msg.htlc_id = i as u64;
5850                 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &msg);
5851         }
5852         msg.htlc_id = (super::channel::OUR_MAX_HTLCS) as u64;
5853         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &msg);
5854
5855         assert!(nodes[1].node.list_channels().is_empty());
5856         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5857         assert_eq!(err_msg.data, "Remote tried to push more than our max accepted HTLCs");
5858         check_added_monitors!(nodes[1], 1);
5859 }
5860
5861 #[test]
5862 fn test_update_add_htlc_bolt2_receiver_check_max_in_flight_msat() {
5863         //OR adds more than its max_htlc_value_in_flight_msat worth of offered HTLCs to its local commitment transaction: SHOULD fail the channel
5864         let chanmon_cfgs = create_chanmon_cfgs(2);
5865         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5866         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5867         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5868         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, InitFeatures::supported(), InitFeatures::supported());
5869         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
5870         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5871         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5872         check_added_monitors!(nodes[0], 1);
5873         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5874         updates.update_add_htlcs[0].amount_msat = get_channel_value_stat!(nodes[1], chan.2).their_max_htlc_value_in_flight_msat + 1;
5875         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5876
5877         assert!(nodes[1].node.list_channels().is_empty());
5878         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5879         assert_eq!(err_msg.data,"Remote HTLC add would put them over our max HTLC value");
5880         check_added_monitors!(nodes[1], 1);
5881 }
5882
5883 #[test]
5884 fn test_update_add_htlc_bolt2_receiver_check_cltv_expiry() {
5885         //BOLT2 Requirement: if sending node sets cltv_expiry to greater or equal to 500000000: SHOULD fail the channel.
5886         let chanmon_cfgs = create_chanmon_cfgs(2);
5887         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5888         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5889         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5890         create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 100000, 95000000, InitFeatures::supported(), InitFeatures::supported());
5891         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 3999999, TEST_FINAL_CLTV).unwrap();
5892         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5893         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5894         check_added_monitors!(nodes[0], 1);
5895         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5896         updates.update_add_htlcs[0].cltv_expiry = 500000000;
5897         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5898
5899         assert!(nodes[1].node.list_channels().is_empty());
5900         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5901         assert_eq!(err_msg.data,"Remote provided CLTV expiry in seconds instead of block height");
5902         check_added_monitors!(nodes[1], 1);
5903 }
5904
5905 #[test]
5906 fn test_update_add_htlc_bolt2_receiver_check_repeated_id_ignore() {
5907         //BOLT 2 requirement: if the sender did not previously acknowledge the commitment of that HTLC: MUST ignore a repeated id value after a reconnection.
5908         // We test this by first testing that that repeated HTLCs pass commitment signature checks
5909         // after disconnect and that non-sequential htlc_ids result in a channel failure.
5910         let chanmon_cfgs = create_chanmon_cfgs(2);
5911         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5912         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5913         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5914         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
5915         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
5916         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5917         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5918         check_added_monitors!(nodes[0], 1);
5919         let updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5920         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5921
5922         //Disconnect and Reconnect
5923         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
5924         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
5925         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
5926         let reestablish_1 = get_chan_reestablish_msgs!(nodes[0], nodes[1]);
5927         assert_eq!(reestablish_1.len(), 1);
5928         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
5929         let reestablish_2 = get_chan_reestablish_msgs!(nodes[1], nodes[0]);
5930         assert_eq!(reestablish_2.len(), 1);
5931         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[0]);
5932         handle_chan_reestablish_msgs!(nodes[0], nodes[1]);
5933         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[0]);
5934         handle_chan_reestablish_msgs!(nodes[1], nodes[0]);
5935
5936         //Resend HTLC
5937         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5938         assert_eq!(updates.commitment_signed.htlc_signatures.len(), 1);
5939         nodes[1].node.handle_commitment_signed(&nodes[0].node.get_our_node_id(), &updates.commitment_signed);
5940         check_added_monitors!(nodes[1], 1);
5941         let _bs_responses = get_revoke_commit_msgs!(nodes[1], nodes[0].node.get_our_node_id());
5942
5943         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5944
5945         assert!(nodes[1].node.list_channels().is_empty());
5946         let err_msg = check_closed_broadcast!(nodes[1], true).unwrap();
5947         assert_eq!(err_msg.data, "Remote skipped HTLC ID");
5948         check_added_monitors!(nodes[1], 1);
5949 }
5950
5951 #[test]
5952 fn test_update_fulfill_htlc_bolt2_update_fulfill_htlc_before_commitment() {
5953         //BOLT 2 Requirement: until the corresponding HTLC is irrevocably committed in both sides' commitment transactions:     MUST NOT send an update_fulfill_htlc, update_fail_htlc, or update_fail_malformed_htlc.
5954
5955         let chanmon_cfgs = create_chanmon_cfgs(2);
5956         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5957         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5958         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5959         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
5960
5961         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
5962         let (our_payment_preimage, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5963         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5964         check_added_monitors!(nodes[0], 1);
5965         let updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5966         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5967
5968         let update_msg = msgs::UpdateFulfillHTLC{
5969                 channel_id: chan.2,
5970                 htlc_id: 0,
5971                 payment_preimage: our_payment_preimage,
5972         };
5973
5974         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &update_msg);
5975
5976         assert!(nodes[0].node.list_channels().is_empty());
5977         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
5978         assert_eq!(err_msg.data, "Remote tried to fulfill/fail HTLC before it had been committed");
5979         check_added_monitors!(nodes[0], 1);
5980 }
5981
5982 #[test]
5983 fn test_update_fulfill_htlc_bolt2_update_fail_htlc_before_commitment() {
5984         //BOLT 2 Requirement: until the corresponding HTLC is irrevocably committed in both sides' commitment transactions:     MUST NOT send an update_fulfill_htlc, update_fail_htlc, or update_fail_malformed_htlc.
5985
5986         let chanmon_cfgs = create_chanmon_cfgs(2);
5987         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
5988         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
5989         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
5990         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
5991
5992         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
5993         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
5994         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
5995         check_added_monitors!(nodes[0], 1);
5996         let updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
5997         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
5998
5999         let update_msg = msgs::UpdateFailHTLC{
6000                 channel_id: chan.2,
6001                 htlc_id: 0,
6002                 reason: msgs::OnionErrorPacket { data: Vec::new()},
6003         };
6004
6005         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_msg);
6006
6007         assert!(nodes[0].node.list_channels().is_empty());
6008         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
6009         assert_eq!(err_msg.data, "Remote tried to fulfill/fail HTLC before it had been committed");
6010         check_added_monitors!(nodes[0], 1);
6011 }
6012
6013 #[test]
6014 fn test_update_fulfill_htlc_bolt2_update_fail_malformed_htlc_before_commitment() {
6015         //BOLT 2 Requirement: until the corresponding HTLC is irrevocably committed in both sides' commitment transactions:     MUST NOT send an update_fulfill_htlc, update_fail_htlc, or update_fail_malformed_htlc.
6016
6017         let chanmon_cfgs = create_chanmon_cfgs(2);
6018         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6019         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6020         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6021         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6022
6023         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
6024         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
6025         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
6026         check_added_monitors!(nodes[0], 1);
6027         let updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
6028         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
6029
6030         let update_msg = msgs::UpdateFailMalformedHTLC{
6031                 channel_id: chan.2,
6032                 htlc_id: 0,
6033                 sha256_of_onion: [1; 32],
6034                 failure_code: 0x8000,
6035         };
6036
6037         nodes[0].node.handle_update_fail_malformed_htlc(&nodes[1].node.get_our_node_id(), &update_msg);
6038
6039         assert!(nodes[0].node.list_channels().is_empty());
6040         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
6041         assert_eq!(err_msg.data, "Remote tried to fulfill/fail HTLC before it had been committed");
6042         check_added_monitors!(nodes[0], 1);
6043 }
6044
6045 #[test]
6046 fn test_update_fulfill_htlc_bolt2_incorrect_htlc_id() {
6047         //BOLT 2 Requirement: A receiving node: if the id does not correspond to an HTLC in its current commitment transaction MUST fail the channel.
6048
6049         let chanmon_cfgs = create_chanmon_cfgs(2);
6050         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6051         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6052         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6053         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6054
6055         let our_payment_preimage = route_payment(&nodes[0], &[&nodes[1]], 100000).0;
6056
6057         nodes[1].node.claim_funds(our_payment_preimage, 100_000);
6058         check_added_monitors!(nodes[1], 1);
6059
6060         let events = nodes[1].node.get_and_clear_pending_msg_events();
6061         assert_eq!(events.len(), 1);
6062         let mut update_fulfill_msg: msgs::UpdateFulfillHTLC = {
6063                 match events[0] {
6064                         MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, .. } } => {
6065                                 assert!(update_add_htlcs.is_empty());
6066                                 assert_eq!(update_fulfill_htlcs.len(), 1);
6067                                 assert!(update_fail_htlcs.is_empty());
6068                                 assert!(update_fail_malformed_htlcs.is_empty());
6069                                 assert!(update_fee.is_none());
6070                                 update_fulfill_htlcs[0].clone()
6071                         },
6072                         _ => panic!("Unexpected event"),
6073                 }
6074         };
6075
6076         update_fulfill_msg.htlc_id = 1;
6077
6078         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &update_fulfill_msg);
6079
6080         assert!(nodes[0].node.list_channels().is_empty());
6081         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
6082         assert_eq!(err_msg.data, "Remote tried to fulfill/fail an HTLC we couldn't find");
6083         check_added_monitors!(nodes[0], 1);
6084 }
6085
6086 #[test]
6087 fn test_update_fulfill_htlc_bolt2_wrong_preimage() {
6088         //BOLT 2 Requirement: A receiving node: if the payment_preimage value in update_fulfill_htlc doesn't SHA256 hash to the corresponding HTLC payment_hash MUST fail the channel.
6089
6090         let chanmon_cfgs = create_chanmon_cfgs(2);
6091         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6092         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6093         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6094         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6095
6096         let our_payment_preimage = route_payment(&nodes[0], &[&nodes[1]], 100000).0;
6097
6098         nodes[1].node.claim_funds(our_payment_preimage, 100_000);
6099         check_added_monitors!(nodes[1], 1);
6100
6101         let events = nodes[1].node.get_and_clear_pending_msg_events();
6102         assert_eq!(events.len(), 1);
6103         let mut update_fulfill_msg: msgs::UpdateFulfillHTLC = {
6104                 match events[0] {
6105                         MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, .. } } => {
6106                                 assert!(update_add_htlcs.is_empty());
6107                                 assert_eq!(update_fulfill_htlcs.len(), 1);
6108                                 assert!(update_fail_htlcs.is_empty());
6109                                 assert!(update_fail_malformed_htlcs.is_empty());
6110                                 assert!(update_fee.is_none());
6111                                 update_fulfill_htlcs[0].clone()
6112                         },
6113                         _ => panic!("Unexpected event"),
6114                 }
6115         };
6116
6117         update_fulfill_msg.payment_preimage = PaymentPreimage([1; 32]);
6118
6119         nodes[0].node.handle_update_fulfill_htlc(&nodes[1].node.get_our_node_id(), &update_fulfill_msg);
6120
6121         assert!(nodes[0].node.list_channels().is_empty());
6122         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
6123         assert_eq!(err_msg.data, "Remote tried to fulfill HTLC with an incorrect preimage");
6124         check_added_monitors!(nodes[0], 1);
6125 }
6126
6127 #[test]
6128 fn test_update_fulfill_htlc_bolt2_missing_badonion_bit_for_malformed_htlc_message() {
6129         //BOLT 2 Requirement: A receiving node: if the BADONION bit in failure_code is not set for update_fail_malformed_htlc MUST fail the channel.
6130
6131         let chanmon_cfgs = create_chanmon_cfgs(2);
6132         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6133         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6134         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6135         create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, InitFeatures::supported(), InitFeatures::supported());
6136         let route = nodes[0].router.get_route(&nodes[1].node.get_our_node_id(), None, &[], 1000000, TEST_FINAL_CLTV).unwrap();
6137         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
6138         nodes[0].node.send_payment(route, our_payment_hash).unwrap();
6139         check_added_monitors!(nodes[0], 1);
6140
6141         let mut updates = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
6142         updates.update_add_htlcs[0].onion_routing_packet.version = 1; //Produce a malformed HTLC message
6143
6144         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &updates.update_add_htlcs[0]);
6145         check_added_monitors!(nodes[1], 0);
6146         commitment_signed_dance!(nodes[1], nodes[0], updates.commitment_signed, false, true);
6147
6148         let events = nodes[1].node.get_and_clear_pending_msg_events();
6149
6150         let mut update_msg: msgs::UpdateFailMalformedHTLC = {
6151                 match events[0] {
6152                         MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, .. } } => {
6153                                 assert!(update_add_htlcs.is_empty());
6154                                 assert!(update_fulfill_htlcs.is_empty());
6155                                 assert!(update_fail_htlcs.is_empty());
6156                                 assert_eq!(update_fail_malformed_htlcs.len(), 1);
6157                                 assert!(update_fee.is_none());
6158                                 update_fail_malformed_htlcs[0].clone()
6159                         },
6160                         _ => panic!("Unexpected event"),
6161                 }
6162         };
6163         update_msg.failure_code &= !0x8000;
6164         nodes[0].node.handle_update_fail_malformed_htlc(&nodes[1].node.get_our_node_id(), &update_msg);
6165
6166         assert!(nodes[0].node.list_channels().is_empty());
6167         let err_msg = check_closed_broadcast!(nodes[0], true).unwrap();
6168         assert_eq!(err_msg.data, "Got update_fail_malformed_htlc with BADONION not set");
6169         check_added_monitors!(nodes[0], 1);
6170 }
6171
6172 #[test]
6173 fn test_update_fulfill_htlc_bolt2_after_malformed_htlc_message_must_forward_update_fail_htlc() {
6174         //BOLT 2 Requirement: a receiving node which has an outgoing HTLC canceled by update_fail_malformed_htlc:
6175         //    * MUST return an error in the update_fail_htlc sent to the link which originally sent the HTLC, using the failure_code given and setting the data to sha256_of_onion.
6176
6177         let chanmon_cfgs = create_chanmon_cfgs(3);
6178         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
6179         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
6180         let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
6181         create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, InitFeatures::supported(), InitFeatures::supported());
6182         create_announced_chan_between_nodes_with_value(&nodes, 1, 2, 1000000, 1000000, InitFeatures::supported(), InitFeatures::supported());
6183
6184         let route = nodes[0].router.get_route(&nodes[2].node.get_our_node_id(), None, &Vec::new(), 100000, TEST_FINAL_CLTV).unwrap();
6185         let (_, our_payment_hash) = get_payment_preimage_hash!(nodes[0]);
6186
6187         //First hop
6188         let mut payment_event = {
6189                 nodes[0].node.send_payment(route, our_payment_hash).unwrap();
6190                 check_added_monitors!(nodes[0], 1);
6191                 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
6192                 assert_eq!(events.len(), 1);
6193                 SendEvent::from_event(events.remove(0))
6194         };
6195         nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
6196         check_added_monitors!(nodes[1], 0);
6197         commitment_signed_dance!(nodes[1], nodes[0], payment_event.commitment_msg, false);
6198         expect_pending_htlcs_forwardable!(nodes[1]);
6199         let mut events_2 = nodes[1].node.get_and_clear_pending_msg_events();
6200         assert_eq!(events_2.len(), 1);
6201         check_added_monitors!(nodes[1], 1);
6202         payment_event = SendEvent::from_event(events_2.remove(0));
6203         assert_eq!(payment_event.msgs.len(), 1);
6204
6205         //Second Hop
6206         payment_event.msgs[0].onion_routing_packet.version = 1; //Produce a malformed HTLC message
6207         nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &payment_event.msgs[0]);
6208         check_added_monitors!(nodes[2], 0);
6209         commitment_signed_dance!(nodes[2], nodes[1], payment_event.commitment_msg, false, true);
6210
6211         let events_3 = nodes[2].node.get_and_clear_pending_msg_events();
6212         assert_eq!(events_3.len(), 1);
6213         let update_msg : (msgs::UpdateFailMalformedHTLC, msgs::CommitmentSigned) = {
6214                 match events_3[0] {
6215                         MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, ref commitment_signed } } => {
6216                                 assert!(update_add_htlcs.is_empty());
6217                                 assert!(update_fulfill_htlcs.is_empty());
6218                                 assert!(update_fail_htlcs.is_empty());
6219                                 assert_eq!(update_fail_malformed_htlcs.len(), 1);
6220                                 assert!(update_fee.is_none());
6221                                 (update_fail_malformed_htlcs[0].clone(), commitment_signed.clone())
6222                         },
6223                         _ => panic!("Unexpected event"),
6224                 }
6225         };
6226
6227         nodes[1].node.handle_update_fail_malformed_htlc(&nodes[2].node.get_our_node_id(), &update_msg.0);
6228
6229         check_added_monitors!(nodes[1], 0);
6230         commitment_signed_dance!(nodes[1], nodes[2], update_msg.1, false, true);
6231         expect_pending_htlcs_forwardable!(nodes[1]);
6232         let events_4 = nodes[1].node.get_and_clear_pending_msg_events();
6233         assert_eq!(events_4.len(), 1);
6234
6235         //Confirm that handlinge the update_malformed_htlc message produces an update_fail_htlc message to be forwarded back along the route
6236         match events_4[0] {
6237                 MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, .. } } => {
6238                         assert!(update_add_htlcs.is_empty());
6239                         assert!(update_fulfill_htlcs.is_empty());
6240                         assert_eq!(update_fail_htlcs.len(), 1);
6241                         assert!(update_fail_malformed_htlcs.is_empty());
6242                         assert!(update_fee.is_none());
6243                 },
6244                 _ => panic!("Unexpected event"),
6245         };
6246
6247         check_added_monitors!(nodes[1], 1);
6248 }
6249
6250 fn do_test_failure_delay_dust_htlc_local_commitment(announce_latest: bool) {
6251         // Dust-HTLC failure updates must be delayed until failure-trigger tx (in this case local commitment) reach ANTI_REORG_DELAY
6252         // We can have at most two valid local commitment tx, so both cases must be covered, and both txs must be checked to get them all as
6253         // HTLC could have been removed from lastest local commitment tx but still valid until we get remote RAA
6254
6255         let chanmon_cfgs = create_chanmon_cfgs(2);
6256         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6257         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6258         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6259         let chan =create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6260
6261         let bs_dust_limit = nodes[1].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().our_dust_limit_satoshis;
6262
6263         // We route 2 dust-HTLCs between A and B
6264         let (_, payment_hash_1) = route_payment(&nodes[0], &[&nodes[1]], bs_dust_limit*1000);
6265         let (_, payment_hash_2) = route_payment(&nodes[0], &[&nodes[1]], bs_dust_limit*1000);
6266         route_payment(&nodes[0], &[&nodes[1]], 1000000);
6267
6268         // Cache one local commitment tx as previous
6269         let as_prev_commitment_tx = get_local_commitment_txn!(nodes[0], chan.2);
6270
6271         // Fail one HTLC to prune it in the will-be-latest-local commitment tx
6272         assert!(nodes[1].node.fail_htlc_backwards(&payment_hash_2));
6273         check_added_monitors!(nodes[1], 0);
6274         expect_pending_htlcs_forwardable!(nodes[1]);
6275         check_added_monitors!(nodes[1], 1);
6276
6277         let remove = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
6278         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &remove.update_fail_htlcs[0]);
6279         nodes[0].node.handle_commitment_signed(&nodes[1].node.get_our_node_id(), &remove.commitment_signed);
6280         check_added_monitors!(nodes[0], 1);
6281
6282         // Cache one local commitment tx as lastest
6283         let as_last_commitment_tx = get_local_commitment_txn!(nodes[0], chan.2);
6284
6285         let events = nodes[0].node.get_and_clear_pending_msg_events();
6286         match events[0] {
6287                 MessageSendEvent::SendRevokeAndACK { node_id, .. } => {
6288                         assert_eq!(node_id, nodes[1].node.get_our_node_id());
6289                 },
6290                 _ => panic!("Unexpected event"),
6291         }
6292         match events[1] {
6293                 MessageSendEvent::UpdateHTLCs { node_id, .. } => {
6294                         assert_eq!(node_id, nodes[1].node.get_our_node_id());
6295                 },
6296                 _ => panic!("Unexpected event"),
6297         }
6298
6299         assert_ne!(as_prev_commitment_tx, as_last_commitment_tx);
6300         // Fail the 2 dust-HTLCs, move their failure in maturation buffer (htlc_updated_waiting_threshold_conf)
6301         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6302
6303         if announce_latest {
6304                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![as_last_commitment_tx[0].clone()]}, 1);
6305         } else {
6306                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![as_prev_commitment_tx[0].clone()]}, 1);
6307         }
6308
6309         check_closed_broadcast!(nodes[0], false);
6310         check_added_monitors!(nodes[0], 1);
6311
6312         assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6313         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 1, true,  header.bitcoin_hash());
6314         let events = nodes[0].node.get_and_clear_pending_events();
6315         // Only 2 PaymentFailed events should show up, over-dust HTLC has to be failed by timeout tx
6316         assert_eq!(events.len(), 2);
6317         let mut first_failed = false;
6318         for event in events {
6319                 match event {
6320                         Event::PaymentFailed { payment_hash, .. } => {
6321                                 if payment_hash == payment_hash_1 {
6322                                         assert!(!first_failed);
6323                                         first_failed = true;
6324                                 } else {
6325                                         assert_eq!(payment_hash, payment_hash_2);
6326                                 }
6327                         }
6328                         _ => panic!("Unexpected event"),
6329                 }
6330         }
6331 }
6332
6333 #[test]
6334 fn test_failure_delay_dust_htlc_local_commitment() {
6335         do_test_failure_delay_dust_htlc_local_commitment(true);
6336         do_test_failure_delay_dust_htlc_local_commitment(false);
6337 }
6338
6339 #[test]
6340 fn test_no_failure_dust_htlc_local_commitment() {
6341         // Transaction filters for failing back dust htlc based on local commitment txn infos has been
6342         // prone to error, we test here that a dummy transaction don't fail them.
6343
6344         let chanmon_cfgs = create_chanmon_cfgs(2);
6345         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6346         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6347         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6348         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6349
6350         // Rebalance a bit
6351         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
6352
6353         let as_dust_limit = nodes[0].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().our_dust_limit_satoshis;
6354         let bs_dust_limit = nodes[1].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().our_dust_limit_satoshis;
6355
6356         // We route 2 dust-HTLCs between A and B
6357         let (preimage_1, _) = route_payment(&nodes[0], &[&nodes[1]], bs_dust_limit*1000);
6358         let (preimage_2, _) = route_payment(&nodes[1], &[&nodes[0]], as_dust_limit*1000);
6359
6360         // Build a dummy invalid transaction trying to spend a commitment tx
6361         let input = TxIn {
6362                 previous_output: BitcoinOutPoint { txid: chan.3.txid(), vout: 0 },
6363                 script_sig: Script::new(),
6364                 sequence: 0,
6365                 witness: Vec::new(),
6366         };
6367
6368         let outp = TxOut {
6369                 script_pubkey: Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script(),
6370                 value: 10000,
6371         };
6372
6373         let dummy_tx = Transaction {
6374                 version: 2,
6375                 lock_time: 0,
6376                 input: vec![input],
6377                 output: vec![outp]
6378         };
6379
6380         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6381         nodes[0].chan_monitor.simple_monitor.block_connected(&header, 1, &[&dummy_tx], &[1;1]);
6382         assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6383         assert_eq!(nodes[0].node.get_and_clear_pending_msg_events().len(), 0);
6384         // We broadcast a few more block to check everything is all right
6385         connect_blocks(&nodes[0].block_notifier, 20, 1, true,  header.bitcoin_hash());
6386         assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6387         assert_eq!(nodes[0].node.get_and_clear_pending_msg_events().len(), 0);
6388
6389         claim_payment(&nodes[0], &vec!(&nodes[1])[..], preimage_1, bs_dust_limit*1000);
6390         claim_payment(&nodes[1], &vec!(&nodes[0])[..], preimage_2, as_dust_limit*1000);
6391 }
6392
6393 fn do_test_sweep_outbound_htlc_failure_update(revoked: bool, local: bool) {
6394         // Outbound HTLC-failure updates must be cancelled if we get a reorg before we reach ANTI_REORG_DELAY.
6395         // Broadcast of revoked remote commitment tx, trigger failure-update of dust/non-dust HTLCs
6396         // Broadcast of remote commitment tx, trigger failure-update of dust-HTLCs
6397         // Broadcast of timeout tx on remote commitment tx, trigger failure-udate of non-dust HTLCs
6398         // Broadcast of local commitment tx, trigger failure-update of dust-HTLCs
6399         // Broadcast of HTLC-timeout tx on local commitment tx, trigger failure-update of non-dust HTLCs
6400
6401         let chanmon_cfgs = create_chanmon_cfgs(3);
6402         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
6403         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
6404         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
6405         let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6406
6407         let bs_dust_limit = nodes[1].node.channel_state.lock().unwrap().by_id.get(&chan.2).unwrap().our_dust_limit_satoshis;
6408
6409         let (_payment_preimage_1, dust_hash) = route_payment(&nodes[0], &[&nodes[1]], bs_dust_limit*1000);
6410         let (_payment_preimage_2, non_dust_hash) = route_payment(&nodes[0], &[&nodes[1]], 1000000);
6411
6412         let as_commitment_tx = get_local_commitment_txn!(nodes[0], chan.2);
6413         let bs_commitment_tx = get_local_commitment_txn!(nodes[1], chan.2);
6414
6415         // We revoked bs_commitment_tx
6416         if revoked {
6417                 let (payment_preimage_3, _) = route_payment(&nodes[0], &[&nodes[1]], 1000000);
6418                 claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_3, 1_000_000);
6419         }
6420
6421         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6422         let mut timeout_tx = Vec::new();
6423         if local {
6424                 // We fail dust-HTLC 1 by broadcast of local commitment tx
6425                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![as_commitment_tx[0].clone()]}, 1);
6426                 check_closed_broadcast!(nodes[0], false);
6427                 check_added_monitors!(nodes[0], 1);
6428                 assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6429                 timeout_tx.push(nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap()[0].clone());
6430                 let parent_hash  = connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 2, true, header.bitcoin_hash());
6431                 let events = nodes[0].node.get_and_clear_pending_events();
6432                 assert_eq!(events.len(), 1);
6433                 match events[0] {
6434                         Event::PaymentFailed { payment_hash, .. } => {
6435                                 assert_eq!(payment_hash, dust_hash);
6436                         },
6437                         _ => panic!("Unexpected event"),
6438                 }
6439                 assert_eq!(timeout_tx[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
6440                 // We fail non-dust-HTLC 2 by broadcast of local HTLC-timeout tx on local commitment tx
6441                 let header_2 = BlockHeader { version: 0x20000000, prev_blockhash: parent_hash, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6442                 assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6443                 nodes[0].block_notifier.block_connected(&Block { header: header_2, txdata: vec![timeout_tx[0].clone()]}, 7);
6444                 let header_3 = BlockHeader { version: 0x20000000, prev_blockhash: header_2.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6445                 connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 8, true, header_3.bitcoin_hash());
6446                 let events = nodes[0].node.get_and_clear_pending_events();
6447                 assert_eq!(events.len(), 1);
6448                 match events[0] {
6449                         Event::PaymentFailed { payment_hash, .. } => {
6450                                 assert_eq!(payment_hash, non_dust_hash);
6451                         },
6452                         _ => panic!("Unexpected event"),
6453                 }
6454         } else {
6455                 // We fail dust-HTLC 1 by broadcast of remote commitment tx. If revoked, fail also non-dust HTLC
6456                 nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![bs_commitment_tx[0].clone()]}, 1);
6457                 check_closed_broadcast!(nodes[0], false);
6458                 check_added_monitors!(nodes[0], 1);
6459                 assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6460                 timeout_tx.push(nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap()[0].clone());
6461                 let parent_hash  = connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 2, true, header.bitcoin_hash());
6462                 let header_2 = BlockHeader { version: 0x20000000, prev_blockhash: parent_hash, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6463                 if !revoked {
6464                         let events = nodes[0].node.get_and_clear_pending_events();
6465                         assert_eq!(events.len(), 1);
6466                         match events[0] {
6467                                 Event::PaymentFailed { payment_hash, .. } => {
6468                                         assert_eq!(payment_hash, dust_hash);
6469                                 },
6470                                 _ => panic!("Unexpected event"),
6471                         }
6472                         assert_eq!(timeout_tx[0].input[0].witness.last().unwrap().len(), ACCEPTED_HTLC_SCRIPT_WEIGHT);
6473                         // We fail non-dust-HTLC 2 by broadcast of local timeout tx on remote commitment tx
6474                         nodes[0].block_notifier.block_connected(&Block { header: header_2, txdata: vec![timeout_tx[0].clone()]}, 7);
6475                         assert_eq!(nodes[0].node.get_and_clear_pending_events().len(), 0);
6476                         let header_3 = BlockHeader { version: 0x20000000, prev_blockhash: header_2.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6477                         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 8, true, header_3.bitcoin_hash());
6478                         let events = nodes[0].node.get_and_clear_pending_events();
6479                         assert_eq!(events.len(), 1);
6480                         match events[0] {
6481                                 Event::PaymentFailed { payment_hash, .. } => {
6482                                         assert_eq!(payment_hash, non_dust_hash);
6483                                 },
6484                                 _ => panic!("Unexpected event"),
6485                         }
6486                 } else {
6487                         // If revoked, both dust & non-dust HTLCs should have been failed after ANTI_REORG_DELAY confs of revoked
6488                         // commitment tx
6489                         let events = nodes[0].node.get_and_clear_pending_events();
6490                         assert_eq!(events.len(), 2);
6491                         let first;
6492                         match events[0] {
6493                                 Event::PaymentFailed { payment_hash, .. } => {
6494                                         if payment_hash == dust_hash { first = true; }
6495                                         else { first = false; }
6496                                 },
6497                                 _ => panic!("Unexpected event"),
6498                         }
6499                         match events[1] {
6500                                 Event::PaymentFailed { payment_hash, .. } => {
6501                                         if first { assert_eq!(payment_hash, non_dust_hash); }
6502                                         else { assert_eq!(payment_hash, dust_hash); }
6503                                 },
6504                                 _ => panic!("Unexpected event"),
6505                         }
6506                 }
6507         }
6508 }
6509
6510 #[test]
6511 fn test_sweep_outbound_htlc_failure_update() {
6512         do_test_sweep_outbound_htlc_failure_update(false, true);
6513         do_test_sweep_outbound_htlc_failure_update(false, false);
6514         do_test_sweep_outbound_htlc_failure_update(true, false);
6515 }
6516
6517 #[test]
6518 fn test_upfront_shutdown_script() {
6519         // BOLT 2 : Option upfront shutdown script, if peer commit its closing_script at channel opening
6520         // enforce it at shutdown message
6521
6522         let mut config = UserConfig::default();
6523         config.channel_options.announced_channel = true;
6524         config.peer_channel_config_limits.force_announced_channel_preference = false;
6525         config.channel_options.commit_upfront_shutdown_pubkey = false;
6526         let user_cfgs = [None, Some(config), None];
6527         let chanmon_cfgs = create_chanmon_cfgs(3);
6528         let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
6529         let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &user_cfgs);
6530         let nodes = create_network(3, &node_cfgs, &node_chanmgrs);
6531
6532         // We test that in case of peer committing upfront to a script, if it changes at closing, we refuse to sign
6533         let flags = InitFeatures::supported();
6534         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 2, 1000000, 1000000, flags.clone(), flags.clone());
6535         nodes[0].node.close_channel(&OutPoint::new(chan.3.txid(), 0).to_channel_id()).unwrap();
6536         let mut node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[2].node.get_our_node_id());
6537         node_0_shutdown.scriptpubkey = Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script().to_p2sh();
6538         // Test we enforce upfront_scriptpbukey if by providing a diffrent one at closing that  we disconnect peer
6539         nodes[2].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
6540         assert_eq!(check_closed_broadcast!(nodes[2], true).unwrap().data, "Got shutdown request with a scriptpubkey which did not match their previous scriptpubkey");
6541         check_added_monitors!(nodes[2], 1);
6542
6543         // We test that in case of peer committing upfront to a script, if it doesn't change at closing, we sign
6544         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 2, 1000000, 1000000, flags.clone(), flags.clone());
6545         nodes[0].node.close_channel(&OutPoint::new(chan.3.txid(), 0).to_channel_id()).unwrap();
6546         let node_0_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[2].node.get_our_node_id());
6547         // We test that in case of peer committing upfront to a script, if it oesn't change at closing, we sign
6548         nodes[2].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_0_shutdown);
6549         let events = nodes[2].node.get_and_clear_pending_msg_events();
6550         assert_eq!(events.len(), 1);
6551         match events[0] {
6552                 MessageSendEvent::SendShutdown { node_id, .. } => { assert_eq!(node_id, nodes[0].node.get_our_node_id()) }
6553                 _ => panic!("Unexpected event"),
6554         }
6555
6556         // We test that if case of peer non-signaling we don't enforce committed script at channel opening
6557         let mut flags_no = InitFeatures::supported();
6558         flags_no.unset_upfront_shutdown_script();
6559         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, flags_no, flags.clone());
6560         nodes[0].node.close_channel(&OutPoint::new(chan.3.txid(), 0).to_channel_id()).unwrap();
6561         let mut node_1_shutdown = get_event_msg!(nodes[0], MessageSendEvent::SendShutdown, nodes[1].node.get_our_node_id());
6562         node_1_shutdown.scriptpubkey = Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script().to_p2sh();
6563         nodes[1].node.handle_shutdown(&nodes[0].node.get_our_node_id(), &node_1_shutdown);
6564         let events = nodes[1].node.get_and_clear_pending_msg_events();
6565         assert_eq!(events.len(), 1);
6566         match events[0] {
6567                 MessageSendEvent::SendShutdown { node_id, .. } => { assert_eq!(node_id, nodes[0].node.get_our_node_id()) }
6568                 _ => panic!("Unexpected event"),
6569         }
6570
6571         // We test that if user opt-out, we provide a zero-length script at channel opening and we are able to close
6572         // channel smoothly, opt-out is from channel initiator here
6573         let chan = create_announced_chan_between_nodes_with_value(&nodes, 1, 0, 1000000, 1000000, flags.clone(), flags.clone());
6574         nodes[1].node.close_channel(&OutPoint::new(chan.3.txid(), 0).to_channel_id()).unwrap();
6575         let mut node_0_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
6576         node_0_shutdown.scriptpubkey = Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script().to_p2sh();
6577         nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_0_shutdown);
6578         let events = nodes[0].node.get_and_clear_pending_msg_events();
6579         assert_eq!(events.len(), 1);
6580         match events[0] {
6581                 MessageSendEvent::SendShutdown { node_id, .. } => { assert_eq!(node_id, nodes[1].node.get_our_node_id()) }
6582                 _ => panic!("Unexpected event"),
6583         }
6584
6585         //// We test that if user opt-out, we provide a zero-length script at channel opening and we are able to close
6586         //// channel smoothly
6587         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, flags.clone(), flags.clone());
6588         nodes[1].node.close_channel(&OutPoint::new(chan.3.txid(), 0).to_channel_id()).unwrap();
6589         let mut node_0_shutdown = get_event_msg!(nodes[1], MessageSendEvent::SendShutdown, nodes[0].node.get_our_node_id());
6590         node_0_shutdown.scriptpubkey = Builder::new().push_opcode(opcodes::all::OP_RETURN).into_script().to_p2sh();
6591         nodes[0].node.handle_shutdown(&nodes[1].node.get_our_node_id(), &node_0_shutdown);
6592         let events = nodes[0].node.get_and_clear_pending_msg_events();
6593         assert_eq!(events.len(), 2);
6594         match events[0] {
6595                 MessageSendEvent::SendShutdown { node_id, .. } => { assert_eq!(node_id, nodes[1].node.get_our_node_id()) }
6596                 _ => panic!("Unexpected event"),
6597         }
6598         match events[1] {
6599                 MessageSendEvent::SendClosingSigned { node_id, .. } => { assert_eq!(node_id, nodes[1].node.get_our_node_id()) }
6600                 _ => panic!("Unexpected event"),
6601         }
6602 }
6603
6604 #[test]
6605 fn test_user_configurable_csv_delay() {
6606         // We test our channel constructors yield errors when we pass them absurd csv delay
6607
6608         let mut low_our_to_self_config = UserConfig::default();
6609         low_our_to_self_config.own_channel_config.our_to_self_delay = 6;
6610         let mut high_their_to_self_config = UserConfig::default();
6611         high_their_to_self_config.peer_channel_config_limits.their_to_self_delay = 100;
6612         let user_cfgs = [Some(high_their_to_self_config.clone()), None];
6613         let chanmon_cfgs = create_chanmon_cfgs(2);
6614         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6615         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &user_cfgs);
6616         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6617
6618         // We test config.our_to_self > BREAKDOWN_TIMEOUT is enforced in Channel::new_outbound()
6619         let keys_manager: Arc<KeysInterface<ChanKeySigner = EnforcingChannelKeys>> = Arc::new(test_utils::TestKeysInterface::new(&nodes[0].node_seed, Network::Testnet, Arc::new(test_utils::TestLogger::new())));
6620         if let Err(error) = Channel::new_outbound(&&test_utils::TestFeeEstimator { sat_per_kw: 253 }, &keys_manager, nodes[1].node.get_our_node_id(), 1000000, 1000000, 0, Arc::new(test_utils::TestLogger::new()), &low_our_to_self_config) {
6621                 match error {
6622                         APIError::APIMisuseError { err } => { assert_eq!(err, "Configured with an unreasonable our_to_self_delay putting user funds at risks"); },
6623                         _ => panic!("Unexpected event"),
6624                 }
6625         } else { assert!(false) }
6626
6627         // We test config.our_to_self > BREAKDOWN_TIMEOUT is enforced in Channel::new_from_req()
6628         nodes[1].node.create_channel(nodes[0].node.get_our_node_id(), 1000000, 1000000, 42, None).unwrap();
6629         let mut open_channel = get_event_msg!(nodes[1], MessageSendEvent::SendOpenChannel, nodes[0].node.get_our_node_id());
6630         open_channel.to_self_delay = 200;
6631         if let Err(error) = Channel::new_from_req(&&test_utils::TestFeeEstimator { sat_per_kw: 253 }, &keys_manager, nodes[1].node.get_our_node_id(), InitFeatures::supported(), &open_channel, 0, Arc::new(test_utils::TestLogger::new()), &low_our_to_self_config) {
6632                 match error {
6633                         ChannelError::Close(err) => { assert_eq!(err, "Configured with an unreasonable our_to_self_delay putting user funds at risks"); },
6634                         _ => panic!("Unexpected event"),
6635                 }
6636         } else { assert!(false); }
6637
6638         // We test msg.to_self_delay <= config.their_to_self_delay is enforced in Chanel::accept_channel()
6639         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), 1000000, 1000000, 42, None).unwrap();
6640         nodes[1].node.handle_open_channel(&nodes[0].node.get_our_node_id(), InitFeatures::supported(), &get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id()));
6641         let mut accept_channel = get_event_msg!(nodes[1], MessageSendEvent::SendAcceptChannel, nodes[0].node.get_our_node_id());
6642         accept_channel.to_self_delay = 200;
6643         nodes[0].node.handle_accept_channel(&nodes[1].node.get_our_node_id(), InitFeatures::supported(), &accept_channel);
6644         if let MessageSendEvent::HandleError { ref action, .. } = nodes[0].node.get_and_clear_pending_msg_events()[0] {
6645                 match action {
6646                         &ErrorAction::SendErrorMessage { ref msg } => {
6647                                 assert_eq!(msg.data,"They wanted our payments to be delayed by a needlessly long period");
6648                         },
6649                         _ => { assert!(false); }
6650                 }
6651         } else { assert!(false); }
6652
6653         // We test msg.to_self_delay <= config.their_to_self_delay is enforced in Channel::new_from_req()
6654         nodes[1].node.create_channel(nodes[0].node.get_our_node_id(), 1000000, 1000000, 42, None).unwrap();
6655         let mut open_channel = get_event_msg!(nodes[1], MessageSendEvent::SendOpenChannel, nodes[0].node.get_our_node_id());
6656         open_channel.to_self_delay = 200;
6657         if let Err(error) = Channel::new_from_req(&&test_utils::TestFeeEstimator { sat_per_kw: 253 }, &keys_manager, nodes[1].node.get_our_node_id(), InitFeatures::supported(), &open_channel, 0, Arc::new(test_utils::TestLogger::new()), &high_their_to_self_config) {
6658                 match error {
6659                         ChannelError::Close(err) => { assert_eq!(err, "They wanted our payments to be delayed by a needlessly long period"); },
6660                         _ => panic!("Unexpected event"),
6661                 }
6662         } else { assert!(false); }
6663 }
6664
6665 #[test]
6666 fn test_data_loss_protect() {
6667         // We want to be sure that :
6668         // * we don't broadcast our Local Commitment Tx in case of fallen behind
6669         // * we close channel in case of detecting other being fallen behind
6670         // * we are able to claim our own outputs thanks to remote my_current_per_commitment_point
6671         let keys_manager;
6672         let fee_estimator;
6673         let tx_broadcaster;
6674         let monitor;
6675         let node_state_0;
6676         let chanmon_cfgs = create_chanmon_cfgs(2);
6677         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6678         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6679         let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6680
6681         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 1000000, InitFeatures::supported(), InitFeatures::supported());
6682
6683         // Cache node A state before any channel update
6684         let previous_node_state = nodes[0].node.encode();
6685         let mut previous_chan_monitor_state = test_utils::TestVecWriter(Vec::new());
6686         nodes[0].chan_monitor.simple_monitor.monitors.lock().unwrap().iter().next().unwrap().1.write_for_disk(&mut previous_chan_monitor_state).unwrap();
6687
6688         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
6689         send_payment(&nodes[0], &vec!(&nodes[1])[..], 8000000, 8_000_000);
6690
6691         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
6692         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
6693
6694         // Restore node A from previous state
6695         let logger: Arc<Logger> = Arc::new(test_utils::TestLogger::with_id(format!("node {}", 0)));
6696         let mut chan_monitor = <(Sha256dHash, ChannelMonitor<EnforcingChannelKeys>)>::read(&mut ::std::io::Cursor::new(previous_chan_monitor_state.0), Arc::clone(&logger)).unwrap().1;
6697         let chain_monitor = Arc::new(ChainWatchInterfaceUtil::new(Network::Testnet, Arc::clone(&logger)));
6698         tx_broadcaster = test_utils::TestBroadcaster{txn_broadcasted: Mutex::new(Vec::new())};
6699         fee_estimator = test_utils::TestFeeEstimator { sat_per_kw: 253 };
6700         keys_manager = test_utils::TestKeysInterface::new(&nodes[0].node_seed, Network::Testnet, Arc::clone(&logger));
6701         monitor = test_utils::TestChannelMonitor::new(chain_monitor.clone(), &tx_broadcaster, logger.clone(), &fee_estimator);
6702         node_state_0 = {
6703                 let mut channel_monitors = HashMap::new();
6704                 channel_monitors.insert(OutPoint { txid: chan.3.txid(), index: 0 }, &mut chan_monitor);
6705                 <(Sha256dHash, ChannelManager<EnforcingChannelKeys, &test_utils::TestChannelMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator>)>::read(&mut ::std::io::Cursor::new(previous_node_state), ChannelManagerReadArgs {
6706                         keys_manager: &keys_manager,
6707                         fee_estimator: &fee_estimator,
6708                         monitor: &monitor,
6709                         logger: Arc::clone(&logger),
6710                         tx_broadcaster: &tx_broadcaster,
6711                         default_config: UserConfig::default(),
6712                         channel_monitors: &mut channel_monitors,
6713                 }).unwrap().1
6714         };
6715         nodes[0].node = &node_state_0;
6716         assert!(monitor.add_monitor(OutPoint { txid: chan.3.txid(), index: 0 }, chan_monitor).is_ok());
6717         nodes[0].chan_monitor = &monitor;
6718         nodes[0].chain_monitor = chain_monitor;
6719
6720         nodes[0].block_notifier = BlockNotifier::new(nodes[0].chain_monitor.clone());
6721         nodes[0].block_notifier.register_listener(&nodes[0].chan_monitor.simple_monitor);
6722         nodes[0].block_notifier.register_listener(nodes[0].node);
6723
6724         check_added_monitors!(nodes[0], 1);
6725
6726         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
6727         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
6728
6729         let reestablish_0 = get_chan_reestablish_msgs!(nodes[1], nodes[0]);
6730
6731         // Check we update monitor following learning of per_commitment_point from B
6732         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_0[0]);
6733         check_added_monitors!(nodes[0], 2);
6734
6735         {
6736                 let node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().clone();
6737                 assert_eq!(node_txn.len(), 0);
6738         }
6739
6740         let mut reestablish_1 = Vec::with_capacity(1);
6741         for msg in nodes[0].node.get_and_clear_pending_msg_events() {
6742                 if let MessageSendEvent::SendChannelReestablish { ref node_id, ref msg } = msg {
6743                         assert_eq!(*node_id, nodes[1].node.get_our_node_id());
6744                         reestablish_1.push(msg.clone());
6745                 } else if let MessageSendEvent::BroadcastChannelUpdate { .. } = msg {
6746                 } else if let MessageSendEvent::HandleError { ref action, .. } = msg {
6747                         match action {
6748                                 &ErrorAction::SendErrorMessage { ref msg } => {
6749                                         assert_eq!(msg.data, "We have fallen behind - we have received proof that if we broadcast remote is going to claim our funds - we can't do any automated broadcasting");
6750                                 },
6751                                 _ => panic!("Unexpected event!"),
6752                         }
6753                 } else {
6754                         panic!("Unexpected event")
6755                 }
6756         }
6757
6758         // Check we close channel detecting A is fallen-behind
6759         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[0]);
6760         assert_eq!(check_closed_broadcast!(nodes[1], true).unwrap().data, "Peer attempted to reestablish channel with a very old local commitment transaction");
6761         check_added_monitors!(nodes[1], 1);
6762
6763
6764         // Check A is able to claim to_remote output
6765         let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap().clone();
6766         assert_eq!(node_txn.len(), 1);
6767         check_spends!(node_txn[0], chan.3);
6768         assert_eq!(node_txn[0].output.len(), 2);
6769         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42};
6770         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![node_txn[0].clone()]}, 0);
6771         connect_blocks(&nodes[0].block_notifier, ANTI_REORG_DELAY - 1, 0, true, header.bitcoin_hash());
6772         let spend_txn = check_spendable_outputs!(nodes[0], 1);
6773         assert_eq!(spend_txn.len(), 1);
6774         check_spends!(spend_txn[0], node_txn[0]);
6775 }
6776
6777 #[test]
6778 fn test_check_htlc_underpaying() {
6779         // Send payment through A -> B but A is maliciously
6780         // sending a probe payment (i.e less than expected value0
6781         // to B, B should refuse payment.
6782
6783         let chanmon_cfgs = create_chanmon_cfgs(2);
6784         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6785         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6786         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6787
6788         // Create some initial channels
6789         create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported());
6790
6791         let (payment_preimage, _) = route_payment(&nodes[0], &[&nodes[1]], 10_000);
6792
6793         // Node 3 is expecting payment of 100_000 but receive 10_000,
6794         // fail htlc like we didn't know the preimage.
6795         nodes[1].node.claim_funds(payment_preimage, 100_000);
6796         nodes[1].node.process_pending_htlc_forwards();
6797
6798         let events = nodes[1].node.get_and_clear_pending_msg_events();
6799         assert_eq!(events.len(), 1);
6800         let (update_fail_htlc, commitment_signed) = match events[0] {
6801                 MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, ref commitment_signed } } => {
6802                         assert!(update_add_htlcs.is_empty());
6803                         assert!(update_fulfill_htlcs.is_empty());
6804                         assert_eq!(update_fail_htlcs.len(), 1);
6805                         assert!(update_fail_malformed_htlcs.is_empty());
6806                         assert!(update_fee.is_none());
6807                         (update_fail_htlcs[0].clone(), commitment_signed)
6808                 },
6809                 _ => panic!("Unexpected event"),
6810         };
6811         check_added_monitors!(nodes[1], 1);
6812
6813         nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlc);
6814         commitment_signed_dance!(nodes[0], nodes[1], commitment_signed, false, true);
6815
6816         let events = nodes[0].node.get_and_clear_pending_events();
6817         assert_eq!(events.len(), 1);
6818         if let &Event::PaymentFailed { payment_hash:_, ref rejected_by_dest, ref error_code } = &events[0] {
6819                 assert_eq!(*rejected_by_dest, true);
6820                 assert_eq!(error_code.unwrap(), 0x4000|15);
6821         } else {
6822                 panic!("Unexpected event");
6823         }
6824         nodes[1].node.get_and_clear_pending_events();
6825 }
6826
6827 #[test]
6828 fn test_announce_disable_channels() {
6829         // Create 2 channels between A and B. Disconnect B. Call timer_chan_freshness_every_min and check for generated
6830         // ChannelUpdate. Reconnect B, reestablish and check there is non-generated ChannelUpdate.
6831
6832         let chanmon_cfgs = create_chanmon_cfgs(2);
6833         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6834         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6835         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6836
6837         let short_id_1 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported()).0.contents.short_channel_id;
6838         let short_id_2 = create_announced_chan_between_nodes(&nodes, 1, 0, InitFeatures::supported(), InitFeatures::supported()).0.contents.short_channel_id;
6839         let short_id_3 = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported()).0.contents.short_channel_id;
6840
6841         // Disconnect peers
6842         nodes[0].node.peer_disconnected(&nodes[1].node.get_our_node_id(), false);
6843         nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), false);
6844
6845         nodes[0].node.timer_chan_freshness_every_min(); // dirty -> stagged
6846         nodes[0].node.timer_chan_freshness_every_min(); // staged -> fresh
6847         let msg_events = nodes[0].node.get_and_clear_pending_msg_events();
6848         assert_eq!(msg_events.len(), 3);
6849         for e in msg_events {
6850                 match e {
6851                         MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
6852                                 let short_id = msg.contents.short_channel_id;
6853                                 // Check generated channel_update match list in PendingChannelUpdate
6854                                 if short_id != short_id_1 && short_id != short_id_2 && short_id != short_id_3 {
6855                                         panic!("Generated ChannelUpdate for wrong chan!");
6856                                 }
6857                         },
6858                         _ => panic!("Unexpected event"),
6859                 }
6860         }
6861         // Reconnect peers
6862         nodes[0].node.peer_connected(&nodes[1].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
6863         let reestablish_1 = get_chan_reestablish_msgs!(nodes[0], nodes[1]);
6864         assert_eq!(reestablish_1.len(), 3);
6865         nodes[1].node.peer_connected(&nodes[0].node.get_our_node_id(), &msgs::Init { features: InitFeatures::empty() });
6866         let reestablish_2 = get_chan_reestablish_msgs!(nodes[1], nodes[0]);
6867         assert_eq!(reestablish_2.len(), 3);
6868
6869         // Reestablish chan_1
6870         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[0]);
6871         handle_chan_reestablish_msgs!(nodes[0], nodes[1]);
6872         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[0]);
6873         handle_chan_reestablish_msgs!(nodes[1], nodes[0]);
6874         // Reestablish chan_2
6875         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[1]);
6876         handle_chan_reestablish_msgs!(nodes[0], nodes[1]);
6877         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[1]);
6878         handle_chan_reestablish_msgs!(nodes[1], nodes[0]);
6879         // Reestablish chan_3
6880         nodes[0].node.handle_channel_reestablish(&nodes[1].node.get_our_node_id(), &reestablish_2[2]);
6881         handle_chan_reestablish_msgs!(nodes[0], nodes[1]);
6882         nodes[1].node.handle_channel_reestablish(&nodes[0].node.get_our_node_id(), &reestablish_1[2]);
6883         handle_chan_reestablish_msgs!(nodes[1], nodes[0]);
6884
6885         nodes[0].node.timer_chan_freshness_every_min();
6886         assert!(nodes[0].node.get_and_clear_pending_msg_events().is_empty());
6887 }
6888
6889 #[test]
6890 fn test_bump_penalty_txn_on_revoked_commitment() {
6891         // In case of penalty txn with too low feerates for getting into mempools, RBF-bump them to be sure
6892         // we're able to claim outputs on revoked commitment transaction before timelocks expiration
6893
6894         let chanmon_cfgs = create_chanmon_cfgs(2);
6895         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6896         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
6897         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
6898
6899         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 59000000, InitFeatures::supported(), InitFeatures::supported());
6900         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
6901         let route = nodes[1].router.get_route(&nodes[0].node.get_our_node_id(), None, &Vec::new(), 3000000, 30).unwrap();
6902         send_along_route(&nodes[1], route, &vec!(&nodes[0])[..], 3000000);
6903
6904         let revoked_txn = get_local_commitment_txn!(nodes[0], chan.2);
6905         // Revoked commitment txn with 4 outputs : to_local, to_remote, 1 outgoing HTLC, 1 incoming HTLC
6906         assert_eq!(revoked_txn[0].output.len(), 4);
6907         assert_eq!(revoked_txn[0].input.len(), 1);
6908         assert_eq!(revoked_txn[0].input[0].previous_output.txid, chan.3.txid());
6909         let revoked_txid = revoked_txn[0].txid();
6910
6911         let mut penalty_sum = 0;
6912         for outp in revoked_txn[0].output.iter() {
6913                 if outp.script_pubkey.is_v0_p2wsh() {
6914                         penalty_sum += outp.value;
6915                 }
6916         }
6917
6918         // Connect blocks to change height_timer range to see if we use right soonest_timelock
6919         let header_114 = connect_blocks(&nodes[1].block_notifier, 114, 0, false, Default::default());
6920
6921         // Actually revoke tx by claiming a HTLC
6922         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
6923         let header = BlockHeader { version: 0x20000000, prev_blockhash: header_114, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
6924         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_txn[0].clone()] }, 115);
6925         check_added_monitors!(nodes[1], 1);
6926
6927         // One or more justice tx should have been broadcast, check it
6928         let penalty_1;
6929         let feerate_1;
6930         {
6931                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
6932                 assert_eq!(node_txn.len(), 3); // justice tx (broadcasted from ChannelMonitor) + local commitment tx + local HTLC-timeout (broadcasted from ChannelManager)
6933                 assert_eq!(node_txn[0].input.len(), 3); // Penalty txn claims to_local, offered_htlc and received_htlc outputs
6934                 assert_eq!(node_txn[0].output.len(), 1);
6935                 check_spends!(node_txn[0], revoked_txn[0]);
6936                 let fee_1 = penalty_sum - node_txn[0].output[0].value;
6937                 feerate_1 = fee_1 * 1000 / node_txn[0].get_weight() as u64;
6938                 penalty_1 = node_txn[0].txid();
6939                 node_txn.clear();
6940         };
6941
6942         // After exhaustion of height timer, a new bumped justice tx should have been broadcast, check it
6943         let header = connect_blocks(&nodes[1].block_notifier, 3, 115,  true, header.bitcoin_hash());
6944         let mut penalty_2 = penalty_1;
6945         let mut feerate_2 = 0;
6946         {
6947                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
6948                 assert_eq!(node_txn.len(), 1);
6949                 if node_txn[0].input[0].previous_output.txid == revoked_txid {
6950                         assert_eq!(node_txn[0].input.len(), 3); // Penalty txn claims to_local, offered_htlc and received_htlc outputs
6951                         assert_eq!(node_txn[0].output.len(), 1);
6952                         check_spends!(node_txn[0], revoked_txn[0]);
6953                         penalty_2 = node_txn[0].txid();
6954                         // Verify new bumped tx is different from last claiming transaction, we don't want spurrious rebroadcast
6955                         assert_ne!(penalty_2, penalty_1);
6956                         let fee_2 = penalty_sum - node_txn[0].output[0].value;
6957                         feerate_2 = fee_2 * 1000 / node_txn[0].get_weight() as u64;
6958                         // Verify 25% bump heuristic
6959                         assert!(feerate_2 * 100 >= feerate_1 * 125);
6960                         node_txn.clear();
6961                 }
6962         }
6963         assert_ne!(feerate_2, 0);
6964
6965         // After exhaustion of height timer for a 2nd time, a new bumped justice tx should have been broadcast, check it
6966         connect_blocks(&nodes[1].block_notifier, 3, 118, true, header);
6967         let penalty_3;
6968         let mut feerate_3 = 0;
6969         {
6970                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
6971                 assert_eq!(node_txn.len(), 1);
6972                 if node_txn[0].input[0].previous_output.txid == revoked_txid {
6973                         assert_eq!(node_txn[0].input.len(), 3); // Penalty txn claims to_local, offered_htlc and received_htlc outputs
6974                         assert_eq!(node_txn[0].output.len(), 1);
6975                         check_spends!(node_txn[0], revoked_txn[0]);
6976                         penalty_3 = node_txn[0].txid();
6977                         // Verify new bumped tx is different from last claiming transaction, we don't want spurrious rebroadcast
6978                         assert_ne!(penalty_3, penalty_2);
6979                         let fee_3 = penalty_sum - node_txn[0].output[0].value;
6980                         feerate_3 = fee_3 * 1000 / node_txn[0].get_weight() as u64;
6981                         // Verify 25% bump heuristic
6982                         assert!(feerate_3 * 100 >= feerate_2 * 125);
6983                         node_txn.clear();
6984                 }
6985         }
6986         assert_ne!(feerate_3, 0);
6987
6988         nodes[1].node.get_and_clear_pending_events();
6989         nodes[1].node.get_and_clear_pending_msg_events();
6990 }
6991
6992 #[test]
6993 fn test_bump_penalty_txn_on_revoked_htlcs() {
6994         // In case of penalty txn with too low feerates for getting into mempools, RBF-bump them to sure
6995         // we're able to claim outputs on revoked HTLC transactions before timelocks expiration
6996
6997         let chanmon_cfgs = create_chanmon_cfgs(2);
6998         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
6999         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7000         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7001
7002         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 59000000, InitFeatures::supported(), InitFeatures::supported());
7003         // Lock HTLC in both directions
7004         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3_000_000).0;
7005         route_payment(&nodes[1], &vec!(&nodes[0])[..], 3_000_000).0;
7006
7007         let revoked_local_txn = get_local_commitment_txn!(nodes[1], chan.2);
7008         assert_eq!(revoked_local_txn[0].input.len(), 1);
7009         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan.3.txid());
7010
7011         // Revoke local commitment tx
7012         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 3_000_000);
7013
7014         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7015         // B will generate both revoked HTLC-timeout/HTLC-preimage txn from revoked commitment tx
7016         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
7017         check_closed_broadcast!(nodes[1], false);
7018         check_added_monitors!(nodes[1], 1);
7019
7020         let revoked_htlc_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
7021         assert_eq!(revoked_htlc_txn.len(), 6);
7022         if revoked_htlc_txn[0].input[0].witness.last().unwrap().len() == ACCEPTED_HTLC_SCRIPT_WEIGHT {
7023                 assert_eq!(revoked_htlc_txn[0].input.len(), 1);
7024                 check_spends!(revoked_htlc_txn[0], revoked_local_txn[0]);
7025                 assert_eq!(revoked_htlc_txn[1].input.len(), 1);
7026                 assert_eq!(revoked_htlc_txn[1].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
7027                 check_spends!(revoked_htlc_txn[1], revoked_local_txn[0]);
7028         } else if revoked_htlc_txn[1].input[0].witness.last().unwrap().len() == ACCEPTED_HTLC_SCRIPT_WEIGHT {
7029                 assert_eq!(revoked_htlc_txn[1].input.len(), 1);
7030                 check_spends!(revoked_htlc_txn[1], revoked_local_txn[0]);
7031                 assert_eq!(revoked_htlc_txn[0].input.len(), 1);
7032                 assert_eq!(revoked_htlc_txn[0].input[0].witness.last().unwrap().len(), OFFERED_HTLC_SCRIPT_WEIGHT);
7033                 check_spends!(revoked_htlc_txn[0], revoked_local_txn[0]);
7034         }
7035
7036         // Broadcast set of revoked txn on A
7037         let header_128 = connect_blocks(&nodes[0].block_notifier, 128, 0, true, header.bitcoin_hash());
7038         let header_129 = BlockHeader { version: 0x20000000, prev_blockhash: header_128, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7039         nodes[0].block_notifier.block_connected(&Block { header: header_129, txdata: vec![revoked_local_txn[0].clone(), revoked_htlc_txn[0].clone(), revoked_htlc_txn[1].clone()] }, 129);
7040         let first;
7041         let feerate_1;
7042         let penalty_txn;
7043         {
7044                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7045                 assert_eq!(node_txn.len(), 5); // 3 penalty txn on revoked commitment tx + A commitment tx + 1 penalty tnx on revoked HTLC txn
7046                 // Verify claim tx are spending revoked HTLC txn
7047                 assert_eq!(node_txn[4].input.len(), 2);
7048                 assert_eq!(node_txn[4].output.len(), 1);
7049                 check_spends!(node_txn[4], revoked_htlc_txn[0], revoked_htlc_txn[1]);
7050                 first = node_txn[4].txid();
7051                 // Store both feerates for later comparison
7052                 let fee_1 = revoked_htlc_txn[0].output[0].value + revoked_htlc_txn[1].output[0].value - node_txn[4].output[0].value;
7053                 feerate_1 = fee_1 * 1000 / node_txn[4].get_weight() as u64;
7054                 penalty_txn = vec![node_txn[0].clone(), node_txn[1].clone(), node_txn[2].clone()];
7055                 node_txn.clear();
7056         }
7057
7058         // Connect three more block to see if bumped penalty are issued for HTLC txn
7059         let header_130 = BlockHeader { version: 0x20000000, prev_blockhash: header_129.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7060         nodes[0].block_notifier.block_connected(&Block { header: header_130, txdata: penalty_txn }, 130);
7061         {
7062                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7063                 assert_eq!(node_txn.len(), 2); // 2 bumped penalty txn on revoked commitment tx
7064
7065                 check_spends!(node_txn[0], revoked_local_txn[0]);
7066                 check_spends!(node_txn[1], revoked_local_txn[0]);
7067
7068                 node_txn.clear();
7069         };
7070
7071         // Few more blocks to confirm penalty txn
7072         let header_135 = connect_blocks(&nodes[0].block_notifier, 5, 130, true, header_130.bitcoin_hash());
7073         assert!(nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().is_empty());
7074         let header_144 = connect_blocks(&nodes[0].block_notifier, 9, 135, true, header_135);
7075         let node_txn = {
7076                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7077                 assert_eq!(node_txn.len(), 1);
7078
7079                 assert_eq!(node_txn[0].input.len(), 2);
7080                 check_spends!(node_txn[0], revoked_htlc_txn[0], revoked_htlc_txn[1]);
7081                 // Verify bumped tx is different and 25% bump heuristic
7082                 assert_ne!(first, node_txn[0].txid());
7083                 let fee_2 = revoked_htlc_txn[0].output[0].value + revoked_htlc_txn[1].output[0].value - node_txn[0].output[0].value;
7084                 let feerate_2 = fee_2 * 1000 / node_txn[0].get_weight() as u64;
7085                 assert!(feerate_2 * 100 > feerate_1 * 125);
7086                 let txn = vec![node_txn[0].clone()];
7087                 node_txn.clear();
7088                 txn
7089         };
7090         // Broadcast claim txn and confirm blocks to avoid further bumps on this outputs
7091         let header_145 = BlockHeader { version: 0x20000000, prev_blockhash: header_144, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7092         nodes[0].block_notifier.block_connected(&Block { header: header_145, txdata: node_txn }, 145);
7093         connect_blocks(&nodes[0].block_notifier, 20, 145, true, header_145.bitcoin_hash());
7094         {
7095                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7096                 // We verify than no new transaction has been broadcast because previously
7097                 // we were buggy on this exact behavior by not tracking for monitoring remote HTLC outputs (see #411)
7098                 // which means we wouldn't see a spend of them by a justice tx and bumped justice tx
7099                 // were generated forever instead of safe cleaning after confirmation and ANTI_REORG_SAFE_DELAY blocks.
7100                 // Enforce spending of revoked htlc output by claiming transaction remove request as expected and dry
7101                 // up bumped justice generation.
7102                 assert_eq!(node_txn.len(), 0);
7103                 node_txn.clear();
7104         }
7105         check_closed_broadcast!(nodes[0], false);
7106         check_added_monitors!(nodes[0], 1);
7107 }
7108
7109 #[test]
7110 fn test_bump_penalty_txn_on_remote_commitment() {
7111         // In case of claim txn with too low feerates for getting into mempools, RBF-bump them to be sure
7112         // we're able to claim outputs on remote commitment transaction before timelocks expiration
7113
7114         // Create 2 HTLCs
7115         // Provide preimage for one
7116         // Check aggregation
7117
7118         let chanmon_cfgs = create_chanmon_cfgs(2);
7119         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7120         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7121         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7122
7123         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 59000000, InitFeatures::supported(), InitFeatures::supported());
7124         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
7125         route_payment(&nodes[1], &vec!(&nodes[0])[..], 3000000).0;
7126
7127         // Remote commitment txn with 4 outputs : to_local, to_remote, 1 outgoing HTLC, 1 incoming HTLC
7128         let remote_txn = get_local_commitment_txn!(nodes[0], chan.2);
7129         assert_eq!(remote_txn[0].output.len(), 4);
7130         assert_eq!(remote_txn[0].input.len(), 1);
7131         assert_eq!(remote_txn[0].input[0].previous_output.txid, chan.3.txid());
7132
7133         // Claim a HTLC without revocation (provide B monitor with preimage)
7134         nodes[1].node.claim_funds(payment_preimage, 3_000_000);
7135         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7136         nodes[1].block_notifier.block_connected(&Block { header, txdata: vec![remote_txn[0].clone()] }, 1);
7137         check_added_monitors!(nodes[1], 2);
7138
7139         // One or more claim tx should have been broadcast, check it
7140         let timeout;
7141         let preimage;
7142         let feerate_timeout;
7143         let feerate_preimage;
7144         {
7145                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
7146                 assert_eq!(node_txn.len(), 5); // 2 * claim tx (broadcasted from ChannelMonitor) + local commitment tx + local HTLC-timeout + local HTLC-success (broadcasted from ChannelManager)
7147                 assert_eq!(node_txn[0].input.len(), 1);
7148                 assert_eq!(node_txn[1].input.len(), 1);
7149                 check_spends!(node_txn[0], remote_txn[0]);
7150                 check_spends!(node_txn[1], remote_txn[0]);
7151                 check_spends!(node_txn[2], chan.3);
7152                 check_spends!(node_txn[3], node_txn[2]);
7153                 check_spends!(node_txn[4], node_txn[2]);
7154                 if node_txn[0].input[0].witness.last().unwrap().len() == ACCEPTED_HTLC_SCRIPT_WEIGHT {
7155                         timeout = node_txn[0].txid();
7156                         let index = node_txn[0].input[0].previous_output.vout;
7157                         let fee = remote_txn[0].output[index as usize].value - node_txn[0].output[0].value;
7158                         feerate_timeout = fee * 1000 / node_txn[0].get_weight() as u64;
7159
7160                         preimage = node_txn[1].txid();
7161                         let index = node_txn[1].input[0].previous_output.vout;
7162                         let fee = remote_txn[0].output[index as usize].value - node_txn[1].output[0].value;
7163                         feerate_preimage = fee * 1000 / node_txn[1].get_weight() as u64;
7164                 } else {
7165                         timeout = node_txn[1].txid();
7166                         let index = node_txn[1].input[0].previous_output.vout;
7167                         let fee = remote_txn[0].output[index as usize].value - node_txn[1].output[0].value;
7168                         feerate_timeout = fee * 1000 / node_txn[1].get_weight() as u64;
7169
7170                         preimage = node_txn[0].txid();
7171                         let index = node_txn[0].input[0].previous_output.vout;
7172                         let fee = remote_txn[0].output[index as usize].value - node_txn[0].output[0].value;
7173                         feerate_preimage = fee * 1000 / node_txn[0].get_weight() as u64;
7174                 }
7175                 node_txn.clear();
7176         };
7177         assert_ne!(feerate_timeout, 0);
7178         assert_ne!(feerate_preimage, 0);
7179
7180         // After exhaustion of height timer, new bumped claim txn should have been broadcast, check it
7181         connect_blocks(&nodes[1].block_notifier, 15, 1,  true, header.bitcoin_hash());
7182         {
7183                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
7184                 assert_eq!(node_txn.len(), 2);
7185                 assert_eq!(node_txn[0].input.len(), 1);
7186                 assert_eq!(node_txn[1].input.len(), 1);
7187                 check_spends!(node_txn[0], remote_txn[0]);
7188                 check_spends!(node_txn[1], remote_txn[0]);
7189                 if node_txn[0].input[0].witness.last().unwrap().len() == ACCEPTED_HTLC_SCRIPT_WEIGHT {
7190                         let index = node_txn[0].input[0].previous_output.vout;
7191                         let fee = remote_txn[0].output[index as usize].value - node_txn[0].output[0].value;
7192                         let new_feerate = fee * 1000 / node_txn[0].get_weight() as u64;
7193                         assert!(new_feerate * 100 > feerate_timeout * 125);
7194                         assert_ne!(timeout, node_txn[0].txid());
7195
7196                         let index = node_txn[1].input[0].previous_output.vout;
7197                         let fee = remote_txn[0].output[index as usize].value - node_txn[1].output[0].value;
7198                         let new_feerate = fee * 1000 / node_txn[1].get_weight() as u64;
7199                         assert!(new_feerate * 100 > feerate_preimage * 125);
7200                         assert_ne!(preimage, node_txn[1].txid());
7201                 } else {
7202                         let index = node_txn[1].input[0].previous_output.vout;
7203                         let fee = remote_txn[0].output[index as usize].value - node_txn[1].output[0].value;
7204                         let new_feerate = fee * 1000 / node_txn[1].get_weight() as u64;
7205                         assert!(new_feerate * 100 > feerate_timeout * 125);
7206                         assert_ne!(timeout, node_txn[1].txid());
7207
7208                         let index = node_txn[0].input[0].previous_output.vout;
7209                         let fee = remote_txn[0].output[index as usize].value - node_txn[0].output[0].value;
7210                         let new_feerate = fee * 1000 / node_txn[0].get_weight() as u64;
7211                         assert!(new_feerate * 100 > feerate_preimage * 125);
7212                         assert_ne!(preimage, node_txn[0].txid());
7213                 }
7214                 node_txn.clear();
7215         }
7216
7217         nodes[1].node.get_and_clear_pending_events();
7218         nodes[1].node.get_and_clear_pending_msg_events();
7219 }
7220
7221 #[test]
7222 fn test_set_outpoints_partial_claiming() {
7223         // - remote party claim tx, new bump tx
7224         // - disconnect remote claiming tx, new bump
7225         // - disconnect tx, see no tx anymore
7226         let chanmon_cfgs = create_chanmon_cfgs(2);
7227         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7228         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7229         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7230
7231         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 59000000, InitFeatures::supported(), InitFeatures::supported());
7232         let payment_preimage_1 = route_payment(&nodes[1], &vec!(&nodes[0])[..], 3_000_000).0;
7233         let payment_preimage_2 = route_payment(&nodes[1], &vec!(&nodes[0])[..], 3_000_000).0;
7234
7235         // Remote commitment txn with 4 outputs: to_local, to_remote, 2 outgoing HTLC
7236         let remote_txn = get_local_commitment_txn!(nodes[1], chan.2);
7237         assert_eq!(remote_txn.len(), 3);
7238         assert_eq!(remote_txn[0].output.len(), 4);
7239         assert_eq!(remote_txn[0].input.len(), 1);
7240         assert_eq!(remote_txn[0].input[0].previous_output.txid, chan.3.txid());
7241         check_spends!(remote_txn[1], remote_txn[0]);
7242         check_spends!(remote_txn[2], remote_txn[0]);
7243
7244         // Connect blocks on node A to advance height towards TEST_FINAL_CLTV
7245         let prev_header_100 = connect_blocks(&nodes[1].block_notifier, 100, 0, false, Default::default());
7246         // Provide node A with both preimage
7247         nodes[0].node.claim_funds(payment_preimage_1, 3_000_000);
7248         nodes[0].node.claim_funds(payment_preimage_2, 3_000_000);
7249         check_added_monitors!(nodes[0], 2);
7250         nodes[0].node.get_and_clear_pending_events();
7251         nodes[0].node.get_and_clear_pending_msg_events();
7252
7253         // Connect blocks on node A commitment transaction
7254         let header = BlockHeader { version: 0x20000000, prev_blockhash: prev_header_100, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7255         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![remote_txn[0].clone()] }, 101);
7256         check_closed_broadcast!(nodes[0], false);
7257         check_added_monitors!(nodes[0], 1);
7258         // Verify node A broadcast tx claiming both HTLCs
7259         {
7260                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7261                 // ChannelMonitor: claim tx, ChannelManager: local commitment tx + HTLC-Success*2
7262                 assert_eq!(node_txn.len(), 4);
7263                 check_spends!(node_txn[0], remote_txn[0]);
7264                 check_spends!(node_txn[1], chan.3);
7265                 check_spends!(node_txn[2], node_txn[1]);
7266                 check_spends!(node_txn[3], node_txn[1]);
7267                 assert_eq!(node_txn[0].input.len(), 2);
7268                 node_txn.clear();
7269         }
7270
7271         // Connect blocks on node B
7272         connect_blocks(&nodes[1].block_notifier, 135, 0, false, Default::default());
7273         check_closed_broadcast!(nodes[1], false);
7274         check_added_monitors!(nodes[1], 1);
7275         // Verify node B broadcast 2 HTLC-timeout txn
7276         let partial_claim_tx = {
7277                 let node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
7278                 assert_eq!(node_txn.len(), 3);
7279                 check_spends!(node_txn[1], node_txn[0]);
7280                 check_spends!(node_txn[2], node_txn[0]);
7281                 assert_eq!(node_txn[1].input.len(), 1);
7282                 assert_eq!(node_txn[2].input.len(), 1);
7283                 node_txn[1].clone()
7284         };
7285
7286         // Broadcast partial claim on node A, should regenerate a claiming tx with HTLC dropped
7287         let header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7288         nodes[0].block_notifier.block_connected(&Block { header, txdata: vec![partial_claim_tx.clone()] }, 102);
7289         {
7290                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7291                 assert_eq!(node_txn.len(), 1);
7292                 check_spends!(node_txn[0], remote_txn[0]);
7293                 assert_eq!(node_txn[0].input.len(), 1); //dropped HTLC
7294                 node_txn.clear();
7295         }
7296         nodes[0].node.get_and_clear_pending_msg_events();
7297
7298         // Disconnect last block on node A, should regenerate a claiming tx with HTLC dropped
7299         nodes[0].block_notifier.block_disconnected(&header, 102);
7300         {
7301                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7302                 assert_eq!(node_txn.len(), 1);
7303                 check_spends!(node_txn[0], remote_txn[0]);
7304                 assert_eq!(node_txn[0].input.len(), 2); //resurrected HTLC
7305                 node_txn.clear();
7306         }
7307
7308         //// Disconnect one more block and then reconnect multiple no transaction should be generated
7309         nodes[0].block_notifier.block_disconnected(&header, 101);
7310         connect_blocks(&nodes[1].block_notifier, 15, 101, false, prev_header_100);
7311         {
7312                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7313                 assert_eq!(node_txn.len(), 0);
7314                 node_txn.clear();
7315         }
7316 }
7317
7318 #[test]
7319 fn test_counterparty_raa_skip_no_crash() {
7320         // Previously, if our counterparty sent two RAAs in a row without us having provided a
7321         // commitment transaction, we would have happily carried on and provided them the next
7322         // commitment transaction based on one RAA forward. This would probably eventually have led to
7323         // channel closure, but it would not have resulted in funds loss. Still, our
7324         // EnforcingChannelKeys would have paniced as it doesn't like jumps into the future. Here, we
7325         // check simply that the channel is closed in response to such an RAA, but don't check whether
7326         // we decide to punish our counterparty for revoking their funds (as we don't currently
7327         // implement that).
7328         let chanmon_cfgs = create_chanmon_cfgs(2);
7329         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7330         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7331         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7332         let channel_id = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::supported(), InitFeatures::supported()).2;
7333
7334         let commitment_seed = nodes[0].node.channel_state.lock().unwrap().by_id.get_mut(&channel_id).unwrap().local_keys.commitment_seed().clone();
7335         const INITIAL_COMMITMENT_NUMBER: u64 = (1 << 48) - 1;
7336         let next_per_commitment_point = PublicKey::from_secret_key(&Secp256k1::new(),
7337                 &SecretKey::from_slice(&chan_utils::build_commitment_secret(&commitment_seed, INITIAL_COMMITMENT_NUMBER - 2)).unwrap());
7338         let per_commitment_secret = chan_utils::build_commitment_secret(&commitment_seed, INITIAL_COMMITMENT_NUMBER);
7339
7340         nodes[1].node.handle_revoke_and_ack(&nodes[0].node.get_our_node_id(),
7341                 &msgs::RevokeAndACK { channel_id, per_commitment_secret, next_per_commitment_point });
7342         assert_eq!(check_closed_broadcast!(nodes[1], true).unwrap().data, "Received an unexpected revoke_and_ack");
7343         check_added_monitors!(nodes[1], 1);
7344 }
7345
7346 #[test]
7347 fn test_bump_txn_sanitize_tracking_maps() {
7348         // Sanitizing pendning_claim_request and claimable_outpoints used to be buggy,
7349         // verify we clean then right after expiration of ANTI_REORG_DELAY.
7350
7351         let chanmon_cfgs = create_chanmon_cfgs(2);
7352         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7353         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7354         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7355
7356         let chan = create_announced_chan_between_nodes_with_value(&nodes, 0, 1, 1000000, 59000000, InitFeatures::supported(), InitFeatures::supported());
7357         // Lock HTLC in both directions
7358         let payment_preimage = route_payment(&nodes[0], &vec!(&nodes[1])[..], 9_000_000).0;
7359         route_payment(&nodes[1], &vec!(&nodes[0])[..], 9_000_000).0;
7360
7361         let revoked_local_txn = get_local_commitment_txn!(nodes[1], chan.2);
7362         assert_eq!(revoked_local_txn[0].input.len(), 1);
7363         assert_eq!(revoked_local_txn[0].input[0].previous_output.txid, chan.3.txid());
7364
7365         // Revoke local commitment tx
7366         claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage, 9_000_000);
7367
7368         // Broadcast set of revoked txn on A
7369         let header_128 = connect_blocks(&nodes[0].block_notifier, 128, 0,  false, Default::default());
7370         let header_129 = BlockHeader { version: 0x20000000, prev_blockhash: header_128, merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7371         nodes[0].block_notifier.block_connected(&Block { header: header_129, txdata: vec![revoked_local_txn[0].clone()] }, 129);
7372         check_closed_broadcast!(nodes[0], false);
7373         check_added_monitors!(nodes[0], 1);
7374         let penalty_txn = {
7375                 let mut node_txn = nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap();
7376                 assert_eq!(node_txn.len(), 4); //ChannelMonitor: justice txn * 3, ChannelManager: local commitment tx
7377                 check_spends!(node_txn[0], revoked_local_txn[0]);
7378                 check_spends!(node_txn[1], revoked_local_txn[0]);
7379                 check_spends!(node_txn[2], revoked_local_txn[0]);
7380                 let penalty_txn = vec![node_txn[0].clone(), node_txn[1].clone(), node_txn[2].clone()];
7381                 node_txn.clear();
7382                 penalty_txn
7383         };
7384         let header_130 = BlockHeader { version: 0x20000000, prev_blockhash: header_129.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
7385         nodes[0].block_notifier.block_connected(&Block { header: header_130, txdata: penalty_txn }, 130);
7386         connect_blocks(&nodes[0].block_notifier, 5, 130,  false, header_130.bitcoin_hash());
7387         {
7388                 let monitors = nodes[0].chan_monitor.simple_monitor.monitors.lock().unwrap();
7389                 if let Some(monitor) = monitors.get(&OutPoint::new(chan.3.txid(), 0)) {
7390                         assert!(monitor.onchain_tx_handler.pending_claim_requests.is_empty());
7391                         assert!(monitor.onchain_tx_handler.claimable_outpoints.is_empty());
7392                 }
7393         }
7394 }
7395
7396 #[test]
7397 fn test_override_channel_config() {
7398         let chanmon_cfgs = create_chanmon_cfgs(2);
7399         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7400         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
7401         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7402
7403         // Node0 initiates a channel to node1 using the override config.
7404         let mut override_config = UserConfig::default();
7405         override_config.own_channel_config.our_to_self_delay = 200;
7406
7407         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), 16_000_000, 12_000_000, 42, Some(override_config)).unwrap();
7408
7409         // Assert the channel created by node0 is using the override config.
7410         let res = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
7411         assert_eq!(res.channel_flags, 0);
7412         assert_eq!(res.to_self_delay, 200);
7413 }
7414
7415 #[test]
7416 fn test_override_0msat_htlc_minimum() {
7417         let mut zero_config = UserConfig::default();
7418         zero_config.own_channel_config.our_htlc_minimum_msat = 0;
7419         let chanmon_cfgs = create_chanmon_cfgs(2);
7420         let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
7421         let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, Some(zero_config.clone())]);
7422         let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
7423
7424         nodes[0].node.create_channel(nodes[1].node.get_our_node_id(), 16_000_000, 12_000_000, 42, Some(zero_config)).unwrap();
7425         let res = get_event_msg!(nodes[0], MessageSendEvent::SendOpenChannel, nodes[1].node.get_our_node_id());
7426         assert_eq!(res.htlc_minimum_msat, 1);
7427
7428         nodes[1].node.handle_open_channel(&nodes[0].node.get_our_node_id(), InitFeatures::supported(), &res);
7429         let res = get_event_msg!(nodes[1], MessageSendEvent::SendAcceptChannel, nodes[0].node.get_our_node_id());
7430         assert_eq!(res.htlc_minimum_msat, 1);
7431 }