03cad49ea56af9cf051e1cb2c5e173b3965033b4
[rust-lightning] / src / ln / channelmanager.rs
1 use bitcoin::blockdata::block::BlockHeader;
2 use bitcoin::blockdata::transaction::Transaction;
3 use bitcoin::blockdata::constants::genesis_block;
4 use bitcoin::network::constants::Network;
5 use bitcoin::network::serialize::BitcoinHash;
6 use bitcoin::util::hash::Sha256dHash;
7
8 use secp256k1::key::{SecretKey,PublicKey};
9 use secp256k1::{Secp256k1,Message};
10 use secp256k1::ecdh::SharedSecret;
11 use secp256k1;
12
13 use chain::chaininterface::{BroadcasterInterface,ChainListener,ChainWatchInterface,FeeEstimator};
14 use chain::transaction::OutPoint;
15 use ln::channel::{Channel, ChannelKeys};
16 use ln::channelmonitor::ManyChannelMonitor;
17 use ln::router::{Route,RouteHop};
18 use ln::msgs;
19 use ln::msgs::{HandleError,ChannelMessageHandler,MsgEncodable,MsgDecodable};
20 use util::{byte_utils, events, internal_traits, rng};
21 use util::sha2::Sha256;
22 use util::chacha20poly1305rfc::ChaCha20;
23 use util::logger::{Logger, Record};
24 use util::errors::APIError;
25
26 use crypto;
27 use crypto::mac::{Mac,MacResult};
28 use crypto::hmac::Hmac;
29 use crypto::digest::Digest;
30 use crypto::symmetriccipher::SynchronousStreamCipher;
31
32 use std::{ptr, mem};
33 use std::collections::HashMap;
34 use std::collections::hash_map;
35 use std::sync::{Mutex,MutexGuard,Arc};
36 use std::sync::atomic::{AtomicUsize, Ordering};
37 use std::time::{Instant,Duration};
38
39 mod channel_held_info {
40         use ln::msgs;
41
42         /// Stores the info we will need to send when we want to forward an HTLC onwards
43         pub struct PendingForwardHTLCInfo {
44                 pub(super) onion_packet: Option<msgs::OnionPacket>,
45                 pub(super) payment_hash: [u8; 32],
46                 pub(super) short_channel_id: u64,
47                 pub(super) prev_short_channel_id: u64,
48                 pub(super) amt_to_forward: u64,
49                 pub(super) outgoing_cltv_value: u32,
50         }
51
52         #[cfg(feature = "fuzztarget")]
53         impl PendingForwardHTLCInfo {
54                 pub fn dummy() -> Self {
55                         Self {
56                                 onion_packet: None,
57                                 payment_hash: [0; 32],
58                                 short_channel_id: 0,
59                                 prev_short_channel_id: 0,
60                                 amt_to_forward: 0,
61                                 outgoing_cltv_value: 0,
62                         }
63                 }
64         }
65
66         #[derive(Clone)] // See Channel::revoke_and_ack for why, tl;dr: Rust bug
67         pub enum HTLCFailReason {
68                 ErrorPacket {
69                         err: msgs::OnionErrorPacket,
70                 },
71                 Reason {
72                         failure_code: u16,
73                         data: Vec<u8>,
74                 }
75         }
76
77         #[cfg(feature = "fuzztarget")]
78         impl HTLCFailReason {
79                 pub fn dummy() -> Self {
80                         HTLCFailReason::Reason {
81                                 failure_code: 0, data: Vec::new(),
82                         }
83                 }
84         }
85 }
86 #[cfg(feature = "fuzztarget")]
87 pub use self::channel_held_info::*;
88 #[cfg(not(feature = "fuzztarget"))]
89 pub(crate) use self::channel_held_info::*;
90
91 enum PendingOutboundHTLC {
92         IntermediaryHopData {
93                 source_short_channel_id: u64,
94                 incoming_packet_shared_secret: SharedSecret,
95         },
96         OutboundRoute {
97                 route: Route,
98                 session_priv: SecretKey,
99         },
100         /// Used for channel rebalancing
101         CycledRoute {
102                 source_short_channel_id: u64,
103                 incoming_packet_shared_secret: SharedSecret,
104                 route: Route,
105                 session_priv: SecretKey,
106         }
107 }
108
109 /// We hold back HTLCs we intend to relay for a random interval in the range (this, 5*this). This
110 /// provides some limited amount of privacy. Ideally this would range from somewhere like 1 second
111 /// to 30 seconds, but people expect lightning to be, you know, kinda fast, sadly. We could
112 /// probably increase this significantly.
113 const MIN_HTLC_RELAY_HOLDING_CELL_MILLIS: u32 = 50;
114
115 struct ChannelHolder {
116         by_id: HashMap<[u8; 32], Channel>,
117         short_to_id: HashMap<u64, [u8; 32]>,
118         next_forward: Instant,
119         /// short channel id -> forward infos. Key of 0 means payments received
120         /// Note that while this is held in the same mutex as the channels themselves, no consistency
121         /// guarantees are made about there existing a channel with the short id here, nor the short
122         /// ids in the PendingForwardHTLCInfo!
123         forward_htlcs: HashMap<u64, Vec<PendingForwardHTLCInfo>>,
124         /// Note that while this is held in the same mutex as the channels themselves, no consistency
125         /// guarantees are made about the channels given here actually existing anymore by the time you
126         /// go to read them!
127         claimable_htlcs: HashMap<[u8; 32], PendingOutboundHTLC>,
128 }
129 struct MutChannelHolder<'a> {
130         by_id: &'a mut HashMap<[u8; 32], Channel>,
131         short_to_id: &'a mut HashMap<u64, [u8; 32]>,
132         next_forward: &'a mut Instant,
133         forward_htlcs: &'a mut HashMap<u64, Vec<PendingForwardHTLCInfo>>,
134         claimable_htlcs: &'a mut HashMap<[u8; 32], PendingOutboundHTLC>,
135 }
136 impl ChannelHolder {
137         fn borrow_parts(&mut self) -> MutChannelHolder {
138                 MutChannelHolder {
139                         by_id: &mut self.by_id,
140                         short_to_id: &mut self.short_to_id,
141                         next_forward: &mut self.next_forward,
142                         forward_htlcs: &mut self.forward_htlcs,
143                         claimable_htlcs: &mut self.claimable_htlcs,
144                 }
145         }
146 }
147
148 #[cfg(not(any(target_pointer_width = "32", target_pointer_width = "64")))]
149 const ERR: () = "You need at least 32 bit pointers (well, usize, but we'll assume they're the same) for ChannelManager::latest_block_height";
150
151 /// Manager which keeps track of a number of channels and sends messages to the appropriate
152 /// channel, also tracking HTLC preimages and forwarding onion packets appropriately.
153 /// Implements ChannelMessageHandler, handling the multi-channel parts and passing things through
154 /// to individual Channels.
155 pub struct ChannelManager {
156         genesis_hash: Sha256dHash,
157         fee_estimator: Arc<FeeEstimator>,
158         monitor: Arc<ManyChannelMonitor>,
159         chain_monitor: Arc<ChainWatchInterface>,
160         tx_broadcaster: Arc<BroadcasterInterface>,
161
162         announce_channels_publicly: bool,
163         fee_proportional_millionths: u32,
164         latest_block_height: AtomicUsize,
165         secp_ctx: Secp256k1,
166
167         channel_state: Mutex<ChannelHolder>,
168         our_network_key: SecretKey,
169
170         pending_events: Mutex<Vec<events::Event>>,
171
172         logger: Arc<Logger>,
173 }
174
175 const CLTV_EXPIRY_DELTA: u16 = 6 * 24 * 2; //TODO?
176
177 macro_rules! secp_call {
178         ( $res : expr ) => {
179                 match $res {
180                         Ok(key) => key,
181                         //TODO: Make the err a parameter!
182                         Err(_) => return Err(HandleError{err: "Key error", action: None})
183                 }
184         };
185 }
186
187 struct OnionKeys {
188         #[cfg(test)]
189         shared_secret: SharedSecret,
190         #[cfg(test)]
191         blinding_factor: [u8; 32],
192         ephemeral_pubkey: PublicKey,
193         rho: [u8; 32],
194         mu: [u8; 32],
195 }
196
197 pub struct ChannelDetails {
198         /// The channel's ID (prior to funding transaction generation, this is a random 32 bytes,
199         /// thereafter this is the txid of the funding transaction xor the funding transaction output).
200         /// Note that this means this value is *not* persistent - it can change once during the
201         /// lifetime of the channel.
202         pub channel_id: [u8; 32],
203         /// The position of the funding transaction in the chain. None if the funding transaction has
204         /// not yet been confirmed and the channel fully opened.
205         pub short_channel_id: Option<u64>,
206         pub remote_network_id: PublicKey,
207         pub channel_value_satoshis: u64,
208         /// The user_id passed in to create_channel, or 0 if the channel was inbound.
209         pub user_id: u64,
210 }
211
212 impl ChannelManager {
213         /// Constructs a new ChannelManager to hold several channels and route between them. This is
214         /// the main "logic hub" for all channel-related actions, and implements ChannelMessageHandler.
215         /// fee_proportional_millionths is an optional fee to charge any payments routed through us.
216         /// Non-proportional fees are fixed according to our risk using the provided fee estimator.
217         /// panics if channel_value_satoshis is >= `MAX_FUNDING_SATOSHIS`!
218         pub fn new(our_network_key: SecretKey, fee_proportional_millionths: u32, announce_channels_publicly: bool, network: Network, feeest: Arc<FeeEstimator>, monitor: Arc<ManyChannelMonitor>, chain_monitor: Arc<ChainWatchInterface>, tx_broadcaster: Arc<BroadcasterInterface>, logger: Arc<Logger>) -> Result<Arc<ChannelManager>, secp256k1::Error> {
219                 let secp_ctx = Secp256k1::new();
220
221                 let res = Arc::new(ChannelManager {
222                         genesis_hash: genesis_block(network).header.bitcoin_hash(),
223                         fee_estimator: feeest.clone(),
224                         monitor: monitor.clone(),
225                         chain_monitor,
226                         tx_broadcaster,
227
228                         announce_channels_publicly,
229                         fee_proportional_millionths,
230                         latest_block_height: AtomicUsize::new(0), //TODO: Get an init value (generally need to replay recent chain on chain_monitor registration)
231                         secp_ctx,
232
233                         channel_state: Mutex::new(ChannelHolder{
234                                 by_id: HashMap::new(),
235                                 short_to_id: HashMap::new(),
236                                 next_forward: Instant::now(),
237                                 forward_htlcs: HashMap::new(),
238                                 claimable_htlcs: HashMap::new(),
239                         }),
240                         our_network_key,
241
242                         pending_events: Mutex::new(Vec::new()),
243
244                         logger,
245                 });
246                 let weak_res = Arc::downgrade(&res);
247                 res.chain_monitor.register_listener(weak_res);
248                 Ok(res)
249         }
250
251         /// Creates a new outbound channel to the given remote node and with the given value.
252         /// user_id will be provided back as user_channel_id in FundingGenerationReady and
253         /// FundingBroadcastSafe events to allow tracking of which events correspond with which
254         /// create_channel call. Note that user_channel_id defaults to 0 for inbound channels, so you
255         /// may wish to avoid using 0 for user_id here.
256         /// If successful, will generate a SendOpenChannel event, so you should probably poll
257         /// PeerManager::process_events afterwards.
258         /// Raises APIError::APIMisuseError when channel_value_satoshis > 2**24 or push_msat being greater than channel_value_satoshis * 1k
259         pub fn create_channel(&self, their_network_key: PublicKey, channel_value_satoshis: u64, push_msat: u64, user_id: u64) -> Result<(), APIError> {
260                 let chan_keys = if cfg!(feature = "fuzztarget") {
261                         ChannelKeys {
262                                 funding_key:               SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
263                                 revocation_base_key:       SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
264                                 payment_base_key:          SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
265                                 delayed_payment_base_key:  SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
266                                 htlc_base_key:             SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
267                                 channel_close_key:         SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
268                                 channel_monitor_claim_key: SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]).unwrap(),
269                                 commitment_seed: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
270                         }
271                 } else {
272                         let mut key_seed = [0u8; 32];
273                         rng::fill_bytes(&mut key_seed);
274                         match ChannelKeys::new_from_seed(&key_seed) {
275                                 Ok(key) => key,
276                                 Err(_) => panic!("RNG is busted!")
277                         }
278                 };
279
280                 let channel = Channel::new_outbound(&*self.fee_estimator, chan_keys, their_network_key, channel_value_satoshis, push_msat, self.announce_channels_publicly, user_id, Arc::clone(&self.logger))?;
281                 let res = channel.get_open_channel(self.genesis_hash.clone(), &*self.fee_estimator)?;
282                 let mut channel_state = self.channel_state.lock().unwrap();
283                 match channel_state.by_id.insert(channel.channel_id(), channel) {
284                         Some(_) => panic!("RNG is bad???"),
285                         None => {}
286                 }
287
288                 let mut events = self.pending_events.lock().unwrap();
289                 events.push(events::Event::SendOpenChannel {
290                         node_id: their_network_key,
291                         msg: res,
292                 });
293                 Ok(())
294         }
295
296         /// Gets the list of open channels, in random order. See ChannelDetail field documentation for
297         /// more information.
298         pub fn list_channels(&self) -> Vec<ChannelDetails> {
299                 let channel_state = self.channel_state.lock().unwrap();
300                 let mut res = Vec::with_capacity(channel_state.by_id.len());
301                 for (channel_id, channel) in channel_state.by_id.iter() {
302                         res.push(ChannelDetails {
303                                 channel_id: (*channel_id).clone(),
304                                 short_channel_id: channel.get_short_channel_id(),
305                                 remote_network_id: channel.get_their_node_id(),
306                                 channel_value_satoshis: channel.get_value_satoshis(),
307                                 user_id: channel.get_user_id(),
308                         });
309                 }
310                 res
311         }
312
313         /// Gets the list of usable channels, in random order. Useful as an argument to
314         /// Router::get_route to ensure non-announced channels are used.
315         pub fn list_usable_channels(&self) -> Vec<ChannelDetails> {
316                 let channel_state = self.channel_state.lock().unwrap();
317                 let mut res = Vec::with_capacity(channel_state.by_id.len());
318                 for (channel_id, channel) in channel_state.by_id.iter() {
319                         if channel.is_usable() {
320                                 res.push(ChannelDetails {
321                                         channel_id: (*channel_id).clone(),
322                                         short_channel_id: channel.get_short_channel_id(),
323                                         remote_network_id: channel.get_their_node_id(),
324                                         channel_value_satoshis: channel.get_value_satoshis(),
325                                         user_id: channel.get_user_id(),
326                                 });
327                         }
328                 }
329                 res
330         }
331
332         /// Begins the process of closing a channel. After this call (plus some timeout), no new HTLCs
333         /// will be accepted on the given channel, and after additional timeout/the closing of all
334         /// pending HTLCs, the channel will be closed on chain.
335         /// May generate a SendShutdown event on success, which should be relayed.
336         pub fn close_channel(&self, channel_id: &[u8; 32]) -> Result<(), HandleError> {
337                 let (res, node_id, chan_option) = {
338                         let mut channel_state_lock = self.channel_state.lock().unwrap();
339                         let channel_state = channel_state_lock.borrow_parts();
340                         match channel_state.by_id.entry(channel_id.clone()) {
341                                 hash_map::Entry::Occupied(mut chan_entry) => {
342                                         let res = chan_entry.get_mut().get_shutdown()?;
343                                         if chan_entry.get().is_shutdown() {
344                                                 if let Some(short_id) = chan_entry.get().get_short_channel_id() {
345                                                         channel_state.short_to_id.remove(&short_id);
346                                                 }
347                                                 (res, chan_entry.get().get_their_node_id(), Some(chan_entry.remove_entry().1))
348                                         } else { (res, chan_entry.get().get_their_node_id(), None) }
349                                 },
350                                 hash_map::Entry::Vacant(_) => return Err(HandleError{err: "No such channel", action: None})
351                         }
352                 };
353                 for payment_hash in res.1 {
354                         // unknown_next_peer...I dunno who that is anymore....
355                         self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &payment_hash, HTLCFailReason::Reason { failure_code: 0x4000 | 10, data: Vec::new() });
356                 }
357                 let chan_update = if let Some(chan) = chan_option {
358                         if let Ok(update) = self.get_channel_update(&chan) {
359                                 Some(update)
360                         } else { None }
361                 } else { None };
362
363                 let mut events = self.pending_events.lock().unwrap();
364                 if let Some(update) = chan_update {
365                         events.push(events::Event::BroadcastChannelUpdate {
366                                 msg: update
367                         });
368                 }
369                 events.push(events::Event::SendShutdown {
370                         node_id,
371                         msg: res.0
372                 });
373
374                 Ok(())
375         }
376
377         #[inline]
378         fn finish_force_close_channel(&self, shutdown_res: (Vec<Transaction>, Vec<[u8; 32]>)) {
379                 let (local_txn, failed_htlcs) = shutdown_res;
380                 for payment_hash in failed_htlcs {
381                         // unknown_next_peer...I dunno who that is anymore....
382                         self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &payment_hash, HTLCFailReason::Reason { failure_code: 0x4000 | 10, data: Vec::new() });
383                 }
384                 for tx in local_txn {
385                         self.tx_broadcaster.broadcast_transaction(&tx);
386                 }
387                 //TODO: We need to have a way where outbound HTLC claims can result in us claiming the
388                 //now-on-chain HTLC output for ourselves (and, thereafter, passing the HTLC backwards).
389                 //TODO: We need to handle monitoring of pending offered HTLCs which just hit the chain and
390                 //may be claimed, resulting in us claiming the inbound HTLCs (and back-failing after
391                 //timeouts are hit and our claims confirm).
392         }
393
394         /// Force closes a channel, immediately broadcasting the latest local commitment transaction to
395         /// the chain and rejecting new HTLCs on the given channel.
396         pub fn force_close_channel(&self, channel_id: &[u8; 32]) {
397                 let mut chan = {
398                         let mut channel_state_lock = self.channel_state.lock().unwrap();
399                         let channel_state = channel_state_lock.borrow_parts();
400                         if let Some(chan) = channel_state.by_id.remove(channel_id) {
401                                 if let Some(short_id) = chan.get_short_channel_id() {
402                                         channel_state.short_to_id.remove(&short_id);
403                                 }
404                                 chan
405                         } else {
406                                 return;
407                         }
408                 };
409                 self.finish_force_close_channel(chan.force_shutdown());
410                 let mut events = self.pending_events.lock().unwrap();
411                 if let Ok(update) = self.get_channel_update(&chan) {
412                         events.push(events::Event::BroadcastChannelUpdate {
413                                 msg: update
414                         });
415                 }
416         }
417
418         #[inline]
419         fn gen_rho_mu_from_shared_secret(shared_secret: &SharedSecret) -> ([u8; 32], [u8; 32]) {
420                 ({
421                         let mut hmac = Hmac::new(Sha256::new(), &[0x72, 0x68, 0x6f]); // rho
422                         hmac.input(&shared_secret[..]);
423                         let mut res = [0; 32];
424                         hmac.raw_result(&mut res);
425                         res
426                 },
427                 {
428                         let mut hmac = Hmac::new(Sha256::new(), &[0x6d, 0x75]); // mu
429                         hmac.input(&shared_secret[..]);
430                         let mut res = [0; 32];
431                         hmac.raw_result(&mut res);
432                         res
433                 })
434         }
435
436         #[inline]
437         fn gen_um_from_shared_secret(shared_secret: &SharedSecret) -> [u8; 32] {
438                 let mut hmac = Hmac::new(Sha256::new(), &[0x75, 0x6d]); // um
439                 hmac.input(&shared_secret[..]);
440                 let mut res = [0; 32];
441                 hmac.raw_result(&mut res);
442                 res
443         }
444
445         #[inline]
446         fn gen_ammag_from_shared_secret(shared_secret: &SharedSecret) -> [u8; 32] {
447                 let mut hmac = Hmac::new(Sha256::new(), &[0x61, 0x6d, 0x6d, 0x61, 0x67]); // ammag
448                 hmac.input(&shared_secret[..]);
449                 let mut res = [0; 32];
450                 hmac.raw_result(&mut res);
451                 res
452         }
453
454         // can only fail if an intermediary hop has an invalid public key or session_priv is invalid
455         #[inline]
456         fn construct_onion_keys_callback<FType: FnMut(SharedSecret, [u8; 32], PublicKey, &RouteHop)> (secp_ctx: &Secp256k1, route: &Route, session_priv: &SecretKey, mut callback: FType) -> Result<(), HandleError> {
457                 let mut blinded_priv = session_priv.clone();
458                 let mut blinded_pub = secp_call!(PublicKey::from_secret_key(secp_ctx, &blinded_priv));
459                 let mut first_iteration = true;
460
461                 for hop in route.hops.iter() {
462                         let shared_secret = SharedSecret::new(secp_ctx, &hop.pubkey, &blinded_priv);
463
464                         let mut sha = Sha256::new();
465                         sha.input(&blinded_pub.serialize()[..]);
466                         sha.input(&shared_secret[..]);
467                         let mut blinding_factor = [0u8; 32];
468                         sha.result(&mut blinding_factor);
469
470                         if first_iteration {
471                                 blinded_pub = secp_call!(PublicKey::from_secret_key(secp_ctx, &blinded_priv));
472                                 first_iteration = false;
473                         }
474                         let ephemeral_pubkey = blinded_pub;
475
476                         secp_call!(blinded_priv.mul_assign(secp_ctx, &secp_call!(SecretKey::from_slice(secp_ctx, &blinding_factor))));
477                         blinded_pub = secp_call!(PublicKey::from_secret_key(secp_ctx, &blinded_priv));
478
479                         callback(shared_secret, blinding_factor, ephemeral_pubkey, hop);
480                 }
481
482                 Ok(())
483         }
484
485         // can only fail if an intermediary hop has an invalid public key or session_priv is invalid
486         fn construct_onion_keys(secp_ctx: &Secp256k1, route: &Route, session_priv: &SecretKey) -> Result<Vec<OnionKeys>, HandleError> {
487                 let mut res = Vec::with_capacity(route.hops.len());
488
489                 Self::construct_onion_keys_callback(secp_ctx, route, session_priv, |shared_secret, _blinding_factor, ephemeral_pubkey, _| {
490                         let (rho, mu) = ChannelManager::gen_rho_mu_from_shared_secret(&shared_secret);
491
492                         res.push(OnionKeys {
493                                 #[cfg(test)]
494                                 shared_secret,
495                                 #[cfg(test)]
496                                 blinding_factor: _blinding_factor,
497                                 ephemeral_pubkey,
498                                 rho,
499                                 mu,
500                         });
501                 })?;
502
503                 Ok(res)
504         }
505
506         /// returns the hop data, as well as the first-hop value_msat and CLTV value we should send.
507         fn build_onion_payloads(route: &Route, starting_htlc_offset: u32) -> Result<(Vec<msgs::OnionHopData>, u64, u32), HandleError> {
508                 let mut cur_value_msat = 0u64;
509                 let mut cur_cltv = starting_htlc_offset;
510                 let mut last_short_channel_id = 0;
511                 let mut res: Vec<msgs::OnionHopData> = Vec::with_capacity(route.hops.len());
512                 internal_traits::test_no_dealloc::<msgs::OnionHopData>(None);
513                 unsafe { res.set_len(route.hops.len()); }
514
515                 for (idx, hop) in route.hops.iter().enumerate().rev() {
516                         // First hop gets special values so that it can check, on receipt, that everything is
517                         // exactly as it should be (and the next hop isn't trying to probe to find out if we're
518                         // the intended recipient).
519                         let value_msat = if cur_value_msat == 0 { hop.fee_msat } else { cur_value_msat };
520                         let cltv = if cur_cltv == starting_htlc_offset { hop.cltv_expiry_delta + starting_htlc_offset } else { cur_cltv };
521                         res[idx] = msgs::OnionHopData {
522                                 realm: 0,
523                                 data: msgs::OnionRealm0HopData {
524                                         short_channel_id: last_short_channel_id,
525                                         amt_to_forward: value_msat,
526                                         outgoing_cltv_value: cltv,
527                                 },
528                                 hmac: [0; 32],
529                         };
530                         cur_value_msat += hop.fee_msat;
531                         if cur_value_msat >= 21000000 * 100000000 * 1000 {
532                                 return Err(HandleError{err: "Channel fees overflowed?!", action: None});
533                         }
534                         cur_cltv += hop.cltv_expiry_delta as u32;
535                         if cur_cltv >= 500000000 {
536                                 return Err(HandleError{err: "Channel CLTV overflowed?!", action: None});
537                         }
538                         last_short_channel_id = hop.short_channel_id;
539                 }
540                 Ok((res, cur_value_msat, cur_cltv))
541         }
542
543         #[inline]
544         fn shift_arr_right(arr: &mut [u8; 20*65]) {
545                 unsafe {
546                         ptr::copy(arr[0..].as_ptr(), arr[65..].as_mut_ptr(), 19*65);
547                 }
548                 for i in 0..65 {
549                         arr[i] = 0;
550                 }
551         }
552
553         #[inline]
554         fn xor_bufs(dst: &mut[u8], src: &[u8]) {
555                 assert_eq!(dst.len(), src.len());
556
557                 for i in 0..dst.len() {
558                         dst[i] ^= src[i];
559                 }
560         }
561
562         const ZERO:[u8; 21*65] = [0; 21*65];
563         fn construct_onion_packet(mut payloads: Vec<msgs::OnionHopData>, onion_keys: Vec<OnionKeys>, associated_data: &[u8; 32]) -> Result<msgs::OnionPacket, HandleError> {
564                 let mut buf = Vec::with_capacity(21*65);
565                 buf.resize(21*65, 0);
566
567                 let filler = {
568                         let iters = payloads.len() - 1;
569                         let end_len = iters * 65;
570                         let mut res = Vec::with_capacity(end_len);
571                         res.resize(end_len, 0);
572
573                         for (i, keys) in onion_keys.iter().enumerate() {
574                                 if i == payloads.len() - 1 { continue; }
575                                 let mut chacha = ChaCha20::new(&keys.rho, &[0u8; 8]);
576                                 chacha.process(&ChannelManager::ZERO, &mut buf); // We don't have a seek function :(
577                                 ChannelManager::xor_bufs(&mut res[0..(i + 1)*65], &buf[(20 - i)*65..21*65]);
578                         }
579                         res
580                 };
581
582                 let mut packet_data = [0; 20*65];
583                 let mut hmac_res = [0; 32];
584
585                 for (i, (payload, keys)) in payloads.iter_mut().zip(onion_keys.iter()).rev().enumerate() {
586                         ChannelManager::shift_arr_right(&mut packet_data);
587                         payload.hmac = hmac_res;
588                         packet_data[0..65].copy_from_slice(&payload.encode()[..]);
589
590                         let mut chacha = ChaCha20::new(&keys.rho, &[0u8; 8]);
591                         chacha.process(&packet_data, &mut buf[0..20*65]);
592                         packet_data[..].copy_from_slice(&buf[0..20*65]);
593
594                         if i == 0 {
595                                 packet_data[20*65 - filler.len()..20*65].copy_from_slice(&filler[..]);
596                         }
597
598                         let mut hmac = Hmac::new(Sha256::new(), &keys.mu);
599                         hmac.input(&packet_data);
600                         hmac.input(&associated_data[..]);
601                         hmac.raw_result(&mut hmac_res);
602                 }
603
604                 Ok(msgs::OnionPacket{
605                         version: 0,
606                         public_key: onion_keys.first().unwrap().ephemeral_pubkey,
607                         hop_data: packet_data,
608                         hmac: hmac_res,
609                 })
610         }
611
612         /// Encrypts a failure packet. raw_packet can either be a
613         /// msgs::DecodedOnionErrorPacket.encode() result or a msgs::OnionErrorPacket.data element.
614         fn encrypt_failure_packet(shared_secret: &SharedSecret, raw_packet: &[u8]) -> msgs::OnionErrorPacket {
615                 let ammag = ChannelManager::gen_ammag_from_shared_secret(&shared_secret);
616
617                 let mut packet_crypted = Vec::with_capacity(raw_packet.len());
618                 packet_crypted.resize(raw_packet.len(), 0);
619                 let mut chacha = ChaCha20::new(&ammag, &[0u8; 8]);
620                 chacha.process(&raw_packet, &mut packet_crypted[..]);
621                 msgs::OnionErrorPacket {
622                         data: packet_crypted,
623                 }
624         }
625
626         fn build_failure_packet(shared_secret: &SharedSecret, failure_type: u16, failure_data: &[u8]) -> msgs::DecodedOnionErrorPacket {
627                 assert!(failure_data.len() <= 256 - 2);
628
629                 let um = ChannelManager::gen_um_from_shared_secret(&shared_secret);
630
631                 let failuremsg = {
632                         let mut res = Vec::with_capacity(2 + failure_data.len());
633                         res.push(((failure_type >> 8) & 0xff) as u8);
634                         res.push(((failure_type >> 0) & 0xff) as u8);
635                         res.extend_from_slice(&failure_data[..]);
636                         res
637                 };
638                 let pad = {
639                         let mut res = Vec::with_capacity(256 - 2 - failure_data.len());
640                         res.resize(256 - 2 - failure_data.len(), 0);
641                         res
642                 };
643                 let mut packet = msgs::DecodedOnionErrorPacket {
644                         hmac: [0; 32],
645                         failuremsg: failuremsg,
646                         pad: pad,
647                 };
648
649                 let mut hmac = Hmac::new(Sha256::new(), &um);
650                 hmac.input(&packet.encode()[32..]);
651                 hmac.raw_result(&mut packet.hmac);
652
653                 packet
654         }
655
656         #[inline]
657         fn build_first_hop_failure_packet(shared_secret: &SharedSecret, failure_type: u16, failure_data: &[u8]) -> msgs::OnionErrorPacket {
658                 let failure_packet = ChannelManager::build_failure_packet(shared_secret, failure_type, failure_data);
659                 ChannelManager::encrypt_failure_packet(shared_secret, &failure_packet.encode()[..])
660         }
661
662         /// only fails if the channel does not yet have an assigned short_id
663         fn get_channel_update(&self, chan: &Channel) -> Result<msgs::ChannelUpdate, HandleError> {
664                 let short_channel_id = match chan.get_short_channel_id() {
665                         None => return Err(HandleError{err: "Channel not yet established", action: None}),
666                         Some(id) => id,
667                 };
668
669                 let were_node_one = PublicKey::from_secret_key(&self.secp_ctx, &self.our_network_key).unwrap().serialize()[..] < chan.get_their_node_id().serialize()[..];
670
671                 let unsigned = msgs::UnsignedChannelUpdate {
672                         chain_hash: self.genesis_hash,
673                         short_channel_id: short_channel_id,
674                         timestamp: chan.get_channel_update_count(),
675                         flags: (!were_node_one) as u16 | ((!chan.is_live() as u16) << 1),
676                         cltv_expiry_delta: CLTV_EXPIRY_DELTA,
677                         htlc_minimum_msat: chan.get_our_htlc_minimum_msat(),
678                         fee_base_msat: chan.get_our_fee_base_msat(&*self.fee_estimator),
679                         fee_proportional_millionths: self.fee_proportional_millionths,
680                 };
681
682                 let msg_hash = Sha256dHash::from_data(&unsigned.encode()[..]);
683                 let sig = self.secp_ctx.sign(&Message::from_slice(&msg_hash[..]).unwrap(), &self.our_network_key).unwrap(); //TODO Can we unwrap here?
684
685                 Ok(msgs::ChannelUpdate {
686                         signature: sig,
687                         contents: unsigned
688                 })
689         }
690
691         /// Sends a payment along a given route.
692         /// Value parameters are provided via the last hop in route, see documentation for RouteHop
693         /// fields for more info.
694         /// Note that if the payment_hash already exists elsewhere (eg you're sending a duplicative
695         /// payment), we don't do anything to stop you! We always try to ensure that if the provided
696         /// next hop knows the preimage to payment_hash they can claim an additional amount as
697         /// specified in the last hop in the route! Thus, you should probably do your own
698         /// payment_preimage tracking (which you should already be doing as they represent "proof of
699         /// payment") and prevent double-sends yourself.
700         /// See-also docs on Channel::send_htlc_and_commit.
701         /// May generate a SendHTLCs event on success, which should be relayed.
702         pub fn send_payment(&self, route: Route, payment_hash: [u8; 32]) -> Result<(), HandleError> {
703                 if route.hops.len() < 1 || route.hops.len() > 20 {
704                         return Err(HandleError{err: "Route didn't go anywhere/had bogus size", action: None});
705                 }
706                 let our_node_id = self.get_our_node_id();
707                 for (idx, hop) in route.hops.iter().enumerate() {
708                         if idx != route.hops.len() - 1 && hop.pubkey == our_node_id {
709                                 return Err(HandleError{err: "Route went through us but wasn't a simple rebalance loop to us", action: None});
710                         }
711                 }
712
713                 let session_priv = secp_call!(SecretKey::from_slice(&self.secp_ctx, &{
714                         let mut session_key = [0; 32];
715                         rng::fill_bytes(&mut session_key);
716                         session_key
717                 }));
718
719                 let cur_height = self.latest_block_height.load(Ordering::Acquire) as u32 + 1;
720
721                 let onion_keys = ChannelManager::construct_onion_keys(&self.secp_ctx, &route, &session_priv)?;
722                 let (onion_payloads, htlc_msat, htlc_cltv) = ChannelManager::build_onion_payloads(&route, cur_height)?;
723                 let onion_packet = ChannelManager::construct_onion_packet(onion_payloads, onion_keys, &payment_hash)?;
724
725                 let (first_hop_node_id, (update_add, commitment_signed, chan_monitor)) = {
726                         let mut channel_state_lock = self.channel_state.lock().unwrap();
727                         let channel_state = channel_state_lock.borrow_parts();
728
729                         let id = match channel_state.short_to_id.get(&route.hops.first().unwrap().short_channel_id) {
730                                 None => return Err(HandleError{err: "No channel available with first hop!", action: None}),
731                                 Some(id) => id.clone()
732                         };
733
734                         let claimable_htlc_entry = channel_state.claimable_htlcs.entry(payment_hash.clone());
735                         if let hash_map::Entry::Occupied(_) = claimable_htlc_entry {
736                                 return Err(HandleError{err: "Already had pending HTLC with the same payment_hash", action: None});
737                         }
738
739                         let res = {
740                                 let chan = channel_state.by_id.get_mut(&id).unwrap();
741                                 if chan.get_their_node_id() != route.hops.first().unwrap().pubkey {
742                                         return Err(HandleError{err: "Node ID mismatch on first hop!", action: None});
743                                 }
744                                 chan.send_htlc_and_commit(htlc_msat, payment_hash, htlc_cltv, onion_packet)?
745                         };
746
747                         let first_hop_node_id = route.hops.first().unwrap().pubkey;
748
749                         claimable_htlc_entry.or_insert(PendingOutboundHTLC::OutboundRoute {
750                                 route,
751                                 session_priv,
752                         });
753
754                         match res {
755                                 Some(msgs) => (first_hop_node_id, msgs),
756                                 None => return Ok(()),
757                         }
758                 };
759
760                 if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
761                         unimplemented!(); // maybe remove from claimable_htlcs?
762                 }
763
764                 let mut events = self.pending_events.lock().unwrap();
765                 events.push(events::Event::SendHTLCs {
766                         node_id: first_hop_node_id,
767                         msgs: vec![update_add],
768                         commitment_msg: commitment_signed,
769                 });
770                 Ok(())
771         }
772
773         /// Call this upon creation of a funding transaction for the given channel.
774         /// Panics if a funding transaction has already been provided for this channel.
775         /// May panic if the funding_txo is duplicative with some other channel (note that this should
776         /// be trivially prevented by using unique funding transaction keys per-channel).
777         pub fn funding_transaction_generated(&self, temporary_channel_id: &[u8; 32], funding_txo: OutPoint) {
778
779                 macro_rules! add_pending_event {
780                         ($event: expr) => {
781                                 {
782                                         let mut pending_events = self.pending_events.lock().unwrap();
783                                         pending_events.push($event);
784                                 }
785                         }
786                 }
787
788                 let (chan, msg, chan_monitor) = {
789                         let mut channel_state = self.channel_state.lock().unwrap();
790                         match channel_state.by_id.remove(temporary_channel_id) {
791                                 Some(mut chan) => {
792                                         match chan.get_outbound_funding_created(funding_txo) {
793                                                 Ok(funding_msg) => {
794                                                         (chan, funding_msg.0, funding_msg.1)
795                                                 },
796                                                 Err(e) => {
797                                                         log_error!(self, "Got bad signatures: {}!", e.err);
798                                                         mem::drop(channel_state);
799                                                         add_pending_event!(events::Event::HandleError {
800                                                                 node_id: chan.get_their_node_id(),
801                                                                 action: e.action,
802                                                         });
803                                                         return;
804                                                 },
805                                         }
806                                 },
807                                 None => return
808                         }
809                 }; // Release channel lock for install_watch_outpoint call,
810                 if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
811                         unimplemented!(); // maybe remove from claimable_htlcs?
812                 }
813                 add_pending_event!(events::Event::SendFundingCreated {
814                         node_id: chan.get_their_node_id(),
815                         msg: msg,
816                 });
817
818                 let mut channel_state = self.channel_state.lock().unwrap();
819                 match channel_state.by_id.entry(chan.channel_id()) {
820                         hash_map::Entry::Occupied(_) => {
821                                 panic!("Generated duplicate funding txid?");
822                         },
823                         hash_map::Entry::Vacant(e) => {
824                                 e.insert(chan);
825                         }
826                 }
827         }
828
829         fn get_announcement_sigs(&self, chan: &Channel) -> Result<Option<msgs::AnnouncementSignatures>, HandleError> {
830                 if !chan.is_usable() || !chan.should_announce() { return Ok(None) }
831
832                 let (announcement, our_bitcoin_sig) = chan.get_channel_announcement(self.get_our_node_id(), self.genesis_hash.clone())?;
833                 let msghash = Message::from_slice(&Sha256dHash::from_data(&announcement.encode()[..])[..]).unwrap();
834                 let our_node_sig = secp_call!(self.secp_ctx.sign(&msghash, &self.our_network_key));
835
836                 Ok(Some(msgs::AnnouncementSignatures {
837                         channel_id: chan.channel_id(),
838                         short_channel_id: chan.get_short_channel_id().unwrap(),
839                         node_signature: our_node_sig,
840                         bitcoin_signature: our_bitcoin_sig,
841                 }))
842         }
843
844         /// Processes HTLCs which are pending waiting on random forward delay.
845         /// Should only really ever be called in response to an PendingHTLCsForwardable event.
846         /// Will likely generate further events.
847         pub fn process_pending_htlc_forwards(&self) {
848                 let mut new_events = Vec::new();
849                 let mut failed_forwards = Vec::new();
850                 {
851                         let mut channel_state_lock = self.channel_state.lock().unwrap();
852                         let channel_state = channel_state_lock.borrow_parts();
853
854                         if cfg!(not(feature = "fuzztarget")) && Instant::now() < *channel_state.next_forward {
855                                 return;
856                         }
857
858                         for (short_chan_id, pending_forwards) in channel_state.forward_htlcs.drain() {
859                                 if short_chan_id != 0 {
860                                         let forward_chan_id = match channel_state.short_to_id.get(&short_chan_id) {
861                                                 Some(chan_id) => chan_id.clone(),
862                                                 None => {
863                                                         failed_forwards.reserve(pending_forwards.len());
864                                                         for forward_info in pending_forwards {
865                                                                 failed_forwards.push((forward_info.payment_hash, 0x4000 | 10, None));
866                                                         }
867                                                         continue;
868                                                 }
869                                         };
870                                         let forward_chan = &mut channel_state.by_id.get_mut(&forward_chan_id).unwrap();
871
872                                         let mut add_htlc_msgs = Vec::new();
873                                         for forward_info in pending_forwards {
874                                                 match forward_chan.send_htlc(forward_info.amt_to_forward, forward_info.payment_hash, forward_info.outgoing_cltv_value, forward_info.onion_packet.unwrap()) {
875                                                         Err(_e) => {
876                                                                 let chan_update = self.get_channel_update(forward_chan).unwrap();
877                                                                 failed_forwards.push((forward_info.payment_hash, 0x1000 | 7, Some(chan_update)));
878                                                                 continue;
879                                                         },
880                                                         Ok(update_add) => {
881                                                                 match update_add {
882                                                                         Some(msg) => { add_htlc_msgs.push(msg); },
883                                                                         None => {
884                                                                                 // Nothing to do here...we're waiting on a remote
885                                                                                 // revoke_and_ack before we can add anymore HTLCs. The Channel
886                                                                                 // will automatically handle building the update_add_htlc and
887                                                                                 // commitment_signed messages when we can.
888                                                                                 // TODO: Do some kind of timer to set the channel as !is_live()
889                                                                                 // as we don't really want others relying on us relaying through
890                                                                                 // this channel currently :/.
891                                                                         }
892                                                                 }
893                                                         }
894                                                 }
895                                         }
896
897                                         if !add_htlc_msgs.is_empty() {
898                                                 let (commitment_msg, monitor) = match forward_chan.send_commitment() {
899                                                         Ok(res) => res,
900                                                         Err(_e) => {
901                                                                 //TODO: Handle...this is bad!
902                                                                 continue;
903                                                         },
904                                                 };
905                                                 new_events.push((Some(monitor), events::Event::SendHTLCs {
906                                                         node_id: forward_chan.get_their_node_id(),
907                                                         msgs: add_htlc_msgs,
908                                                         commitment_msg: commitment_msg,
909                                                 }));
910                                         }
911                                 } else {
912                                         for forward_info in pending_forwards {
913                                                 new_events.push((None, events::Event::PaymentReceived {
914                                                         payment_hash: forward_info.payment_hash,
915                                                         amt: forward_info.amt_to_forward,
916                                                 }));
917                                         }
918                                 }
919                         }
920                 }
921
922                 for failed_forward in failed_forwards.drain(..) {
923                         match failed_forward.2 {
924                                 None => self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &failed_forward.0, HTLCFailReason::Reason { failure_code: failed_forward.1, data: Vec::new() }),
925                                 Some(chan_update) => self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &failed_forward.0, HTLCFailReason::Reason { failure_code: failed_forward.1, data: chan_update.encode_with_len() }),
926                         };
927                 }
928
929                 if new_events.is_empty() { return }
930
931                 new_events.retain(|event| {
932                         if let &Some(ref monitor) = &event.0 {
933                                 if let Err(_e) = self.monitor.add_update_monitor(monitor.get_funding_txo().unwrap(), monitor.clone()) {
934                                         unimplemented!();// but def dont push the event...
935                                 }
936                         }
937                         true
938                 });
939
940                 let mut events = self.pending_events.lock().unwrap();
941                 events.reserve(new_events.len());
942                 for event in new_events.drain(..) {
943                         events.push(event.1);
944                 }
945         }
946
947         /// Indicates that the preimage for payment_hash is unknown after a PaymentReceived event.
948         pub fn fail_htlc_backwards(&self, payment_hash: &[u8; 32]) -> bool {
949                 self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), payment_hash, HTLCFailReason::Reason { failure_code: 0x4000 | 15, data: Vec::new() })
950         }
951
952         /// Fails an HTLC backwards to the sender of it to us.
953         /// Note that while we take a channel_state lock as input, we do *not* assume consistency here.
954         /// There are several callsites that do stupid things like loop over a list of payment_hashes
955         /// to fail and take the channel_state lock for each iteration (as we take ownership and may
956         /// drop it). In other words, no assumptions are made that entries in claimable_htlcs point to
957         /// still-available channels.
958         fn fail_htlc_backwards_internal(&self, mut channel_state: MutexGuard<ChannelHolder>, payment_hash: &[u8; 32], onion_error: HTLCFailReason) -> bool {
959                 let mut pending_htlc = {
960                         match channel_state.claimable_htlcs.remove(payment_hash) {
961                                 Some(pending_htlc) => pending_htlc,
962                                 None => return false,
963                         }
964                 };
965
966                 match pending_htlc {
967                         PendingOutboundHTLC::CycledRoute { source_short_channel_id, incoming_packet_shared_secret, route, session_priv } => {
968                                 channel_state.claimable_htlcs.insert(payment_hash.clone(), PendingOutboundHTLC::OutboundRoute {
969                                         route,
970                                         session_priv,
971                                 });
972                                 pending_htlc = PendingOutboundHTLC::IntermediaryHopData { source_short_channel_id, incoming_packet_shared_secret };
973                         },
974                         _ => {}
975                 }
976
977                 match pending_htlc {
978                         PendingOutboundHTLC::CycledRoute { .. } => unreachable!(),
979                         PendingOutboundHTLC::OutboundRoute { .. } => {
980                                 mem::drop(channel_state);
981
982                                 let mut pending_events = self.pending_events.lock().unwrap();
983                                 pending_events.push(events::Event::PaymentFailed {
984                                         payment_hash: payment_hash.clone()
985                                 });
986                                 false
987                         },
988                         PendingOutboundHTLC::IntermediaryHopData { source_short_channel_id, incoming_packet_shared_secret } => {
989                                 let err_packet = match onion_error {
990                                         HTLCFailReason::Reason { failure_code, data } => {
991                                                 let packet = ChannelManager::build_failure_packet(&incoming_packet_shared_secret, failure_code, &data[..]).encode();
992                                                 ChannelManager::encrypt_failure_packet(&incoming_packet_shared_secret, &packet)
993                                         },
994                                         HTLCFailReason::ErrorPacket { err } => {
995                                                 ChannelManager::encrypt_failure_packet(&incoming_packet_shared_secret, &err.data)
996                                         }
997                                 };
998
999                                 let (node_id, fail_msgs) = {
1000                                         let chan_id = match channel_state.short_to_id.get(&source_short_channel_id) {
1001                                                 Some(chan_id) => chan_id.clone(),
1002                                                 None => return false
1003                                         };
1004
1005                                         let chan = channel_state.by_id.get_mut(&chan_id).unwrap();
1006                                         match chan.get_update_fail_htlc_and_commit(payment_hash, err_packet) {
1007                                                 Ok(msg) => (chan.get_their_node_id(), msg),
1008                                                 Err(_e) => {
1009                                                         //TODO: Do something with e?
1010                                                         return false;
1011                                                 },
1012                                         }
1013                                 };
1014
1015                                 match fail_msgs {
1016                                         Some((msg, commitment_msg, chan_monitor)) => {
1017                                                 mem::drop(channel_state);
1018
1019                                                 if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
1020                                                         unimplemented!();// but def dont push the event...
1021                                                 }
1022
1023                                                 let mut pending_events = self.pending_events.lock().unwrap();
1024                                                 //TODO: replace by HandleError ? UpdateFailHTLC in handle_update_add_htlc need also to build a CommitmentSigned
1025                                                 pending_events.push(events::Event::SendFailHTLC {
1026                                                         node_id,
1027                                                         msg: msg,
1028                                                         commitment_msg: commitment_msg,
1029                                                 });
1030                                         },
1031                                         None => {},
1032                                 }
1033
1034                                 true
1035                         },
1036                 }
1037         }
1038
1039         /// Provides a payment preimage in response to a PaymentReceived event, returning true and
1040         /// generating message events for the net layer to claim the payment, if possible. Thus, you
1041         /// should probably kick the net layer to go send messages if this returns true!
1042         /// May panic if called except in response to a PaymentReceived event.
1043         pub fn claim_funds(&self, payment_preimage: [u8; 32]) -> bool {
1044                 self.claim_funds_internal(payment_preimage, true)
1045         }
1046         fn claim_funds_internal(&self, payment_preimage: [u8; 32], from_user: bool) -> bool {
1047                 let mut sha = Sha256::new();
1048                 sha.input(&payment_preimage);
1049                 let mut payment_hash = [0; 32];
1050                 sha.result(&mut payment_hash);
1051
1052                 let mut channel_state = self.channel_state.lock().unwrap();
1053                 let mut pending_htlc = {
1054                         match channel_state.claimable_htlcs.remove(&payment_hash) {
1055                                 Some(pending_htlc) => pending_htlc,
1056                                 None => return false,
1057                         }
1058                 };
1059
1060                 match pending_htlc {
1061                         PendingOutboundHTLC::CycledRoute { source_short_channel_id, incoming_packet_shared_secret, route, session_priv } => {
1062                                 if from_user { // This was the end hop back to us
1063                                         pending_htlc = PendingOutboundHTLC::IntermediaryHopData { source_short_channel_id, incoming_packet_shared_secret };
1064                                         channel_state.claimable_htlcs.insert(payment_hash, PendingOutboundHTLC::OutboundRoute { route, session_priv });
1065                                 } else { // This came from the first upstream node
1066                                         // Bank error in our favor! Maybe we should tell the user this somehow???
1067                                         pending_htlc = PendingOutboundHTLC::OutboundRoute { route, session_priv };
1068                                         channel_state.claimable_htlcs.insert(payment_hash, PendingOutboundHTLC::IntermediaryHopData { source_short_channel_id, incoming_packet_shared_secret });
1069                                 }
1070                         },
1071                         _ => {},
1072                 }
1073
1074                 match pending_htlc {
1075                         PendingOutboundHTLC::CycledRoute { .. } => unreachable!(),
1076                         PendingOutboundHTLC::OutboundRoute { .. } => {
1077                                 if from_user {
1078                                         panic!("Called claim_funds with a preimage for an outgoing payment. There is nothing we can do with this, and something is seriously wrong if you knew this...");
1079                                 }
1080                                 mem::drop(channel_state);
1081                                 let mut pending_events = self.pending_events.lock().unwrap();
1082                                 pending_events.push(events::Event::PaymentSent {
1083                                         payment_preimage
1084                                 });
1085                                 false
1086                         },
1087                         PendingOutboundHTLC::IntermediaryHopData { source_short_channel_id, .. } => {
1088                                 let (node_id, fulfill_msgs) = {
1089                                         let chan_id = match channel_state.short_to_id.get(&source_short_channel_id) {
1090                                                 Some(chan_id) => chan_id.clone(),
1091                                                 None => {
1092                                                         // TODO: There is probably a channel manager somewhere that needs to
1093                                                         // learn the preimage as the channel already hit the chain and that's
1094                                                         // why its missing.
1095                                                         return false
1096                                                 }
1097                                         };
1098
1099                                         let chan = channel_state.by_id.get_mut(&chan_id).unwrap();
1100                                         match chan.get_update_fulfill_htlc_and_commit(payment_preimage) {
1101                                                 Ok(msg) => (chan.get_their_node_id(), msg),
1102                                                 Err(_e) => {
1103                                                         // TODO: There is probably a channel manager somewhere that needs to
1104                                                         // learn the preimage as the channel may be about to hit the chain.
1105                                                         //TODO: Do something with e?
1106                                                         return false;
1107                                                 },
1108                                         }
1109                                 };
1110
1111                                 mem::drop(channel_state);
1112                                 if let Some(chan_monitor) = fulfill_msgs.1 {
1113                                         if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
1114                                                 unimplemented!();// but def dont push the event...
1115                                         }
1116                                 }
1117
1118                                 if let Some((msg, commitment_msg)) = fulfill_msgs.0 {
1119                                         let mut pending_events = self.pending_events.lock().unwrap();
1120                                         pending_events.push(events::Event::SendFulfillHTLC {
1121                                                 node_id: node_id,
1122                                                 msg,
1123                                                 commitment_msg,
1124                                         });
1125                                 }
1126                                 true
1127                         },
1128                 }
1129         }
1130
1131         /// Gets the node_id held by this ChannelManager
1132         pub fn get_our_node_id(&self) -> PublicKey {
1133                 PublicKey::from_secret_key(&self.secp_ctx, &self.our_network_key).unwrap()
1134         }
1135
1136         /// Used to restore channels to normal operation after a
1137         /// ChannelMonitorUpdateErr::TemporaryFailure was returned from a channel monitor update
1138         /// operation.
1139         pub fn test_restore_channel_monitor(&self) {
1140                 unimplemented!();
1141         }
1142 }
1143
1144 impl events::EventsProvider for ChannelManager {
1145         fn get_and_clear_pending_events(&self) -> Vec<events::Event> {
1146                 let mut pending_events = self.pending_events.lock().unwrap();
1147                 let mut ret = Vec::new();
1148                 mem::swap(&mut ret, &mut *pending_events);
1149                 ret
1150         }
1151 }
1152
1153 impl ChainListener for ChannelManager {
1154         fn block_connected(&self, header: &BlockHeader, height: u32, txn_matched: &[&Transaction], indexes_of_txn_matched: &[u32]) {
1155                 let mut new_events = Vec::new();
1156                 let mut failed_channels = Vec::new();
1157                 {
1158                         let mut channel_lock = self.channel_state.lock().unwrap();
1159                         let channel_state = channel_lock.borrow_parts();
1160                         let short_to_id = channel_state.short_to_id;
1161                         channel_state.by_id.retain(|_, channel| {
1162                                 let chan_res = channel.block_connected(header, height, txn_matched, indexes_of_txn_matched);
1163                                 if let Ok(Some(funding_locked)) = chan_res {
1164                                         let announcement_sigs = match self.get_announcement_sigs(channel) {
1165                                                 Ok(res) => res,
1166                                                 Err(e) => {
1167                                                         log_error!(self, "Got error handling message: {}!", e.err);
1168                                                         //TODO: push e on events and blow up the channel (it has bad keys)
1169                                                         return true;
1170                                                 }
1171                                         };
1172                                         new_events.push(events::Event::SendFundingLocked {
1173                                                 node_id: channel.get_their_node_id(),
1174                                                 msg: funding_locked,
1175                                                 announcement_sigs: announcement_sigs
1176                                         });
1177                                         short_to_id.insert(channel.get_short_channel_id().unwrap(), channel.channel_id());
1178                                 } else if let Err(e) = chan_res {
1179                                         new_events.push(events::Event::HandleError {
1180                                                 node_id: channel.get_their_node_id(),
1181                                                 action: e.action,
1182                                         });
1183                                         if channel.is_shutdown() {
1184                                                 return false;
1185                                         }
1186                                 }
1187                                 if let Some(funding_txo) = channel.get_funding_txo() {
1188                                         for tx in txn_matched {
1189                                                 for inp in tx.input.iter() {
1190                                                         if inp.prev_hash == funding_txo.txid && inp.prev_index == funding_txo.index as u32 {
1191                                                                 if let Some(short_id) = channel.get_short_channel_id() {
1192                                                                         short_to_id.remove(&short_id);
1193                                                                 }
1194                                                                 // It looks like our counterparty went on-chain. We go ahead and
1195                                                                 // broadcast our latest local state as well here, just in case its
1196                                                                 // some kind of SPV attack, though we expect these to be dropped.
1197                                                                 failed_channels.push(channel.force_shutdown());
1198                                                                 if let Ok(update) = self.get_channel_update(&channel) {
1199                                                                         new_events.push(events::Event::BroadcastChannelUpdate {
1200                                                                                 msg: update
1201                                                                         });
1202                                                                 }
1203                                                                 return false;
1204                                                         }
1205                                                 }
1206                                         }
1207                                 }
1208                                 if channel.is_funding_initiated() && channel.channel_monitor().would_broadcast_at_height(height) {
1209                                         if let Some(short_id) = channel.get_short_channel_id() {
1210                                                 short_to_id.remove(&short_id);
1211                                         }
1212                                         failed_channels.push(channel.force_shutdown());
1213                                         // If would_broadcast_at_height() is true, the channel_monitor will broadcast
1214                                         // the latest local tx for us, so we should skip that here (it doesn't really
1215                                         // hurt anything, but does make tests a bit simpler).
1216                                         failed_channels.last_mut().unwrap().0 = Vec::new();
1217                                         if let Ok(update) = self.get_channel_update(&channel) {
1218                                                 new_events.push(events::Event::BroadcastChannelUpdate {
1219                                                         msg: update
1220                                                 });
1221                                         }
1222                                         return false;
1223                                 }
1224                                 true
1225                         });
1226                 }
1227                 for failure in failed_channels.drain(..) {
1228                         self.finish_force_close_channel(failure);
1229                 }
1230                 let mut pending_events = self.pending_events.lock().unwrap();
1231                 for funding_locked in new_events.drain(..) {
1232                         pending_events.push(funding_locked);
1233                 }
1234                 self.latest_block_height.store(height as usize, Ordering::Release);
1235         }
1236
1237         /// We force-close the channel without letting our counterparty participate in the shutdown
1238         fn block_disconnected(&self, header: &BlockHeader) {
1239                 let mut new_events = Vec::new();
1240                 let mut failed_channels = Vec::new();
1241                 {
1242                         let mut channel_lock = self.channel_state.lock().unwrap();
1243                         let channel_state = channel_lock.borrow_parts();
1244                         let short_to_id = channel_state.short_to_id;
1245                         channel_state.by_id.retain(|_,  v| {
1246                                 if v.block_disconnected(header) {
1247                                         if let Some(short_id) = v.get_short_channel_id() {
1248                                                 short_to_id.remove(&short_id);
1249                                         }
1250                                         failed_channels.push(v.force_shutdown());
1251                                         if let Ok(update) = self.get_channel_update(&v) {
1252                                                 new_events.push(events::Event::BroadcastChannelUpdate {
1253                                                         msg: update
1254                                                 });
1255                                         }
1256                                         false
1257                                 } else {
1258                                         true
1259                                 }
1260                         });
1261                 }
1262                 for failure in failed_channels.drain(..) {
1263                         self.finish_force_close_channel(failure);
1264                 }
1265                 if !new_events.is_empty() {
1266                         let mut pending_events = self.pending_events.lock().unwrap();
1267                         for funding_locked in new_events.drain(..) {
1268                                 pending_events.push(funding_locked);
1269                         }
1270                 }
1271                 self.latest_block_height.fetch_sub(1, Ordering::AcqRel);
1272         }
1273 }
1274
1275 impl ChannelMessageHandler for ChannelManager {
1276         //TODO: Handle errors and close channel (or so)
1277         fn handle_open_channel(&self, their_node_id: &PublicKey, msg: &msgs::OpenChannel) -> Result<msgs::AcceptChannel, HandleError> {
1278                 if msg.chain_hash != self.genesis_hash {
1279                         return Err(HandleError{err: "Unknown genesis block hash", action: None});
1280                 }
1281                 let mut channel_state = self.channel_state.lock().unwrap();
1282                 if channel_state.by_id.contains_key(&msg.temporary_channel_id) {
1283                         return Err(HandleError{err: "temporary_channel_id collision!", action: None});
1284                 }
1285
1286                 let chan_keys = if cfg!(feature = "fuzztarget") {
1287                         ChannelKeys {
1288                                 funding_key:               SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0]).unwrap(),
1289                                 revocation_base_key:       SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 2, 0]).unwrap(),
1290                                 payment_base_key:          SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0]).unwrap(),
1291                                 delayed_payment_base_key:  SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 0]).unwrap(),
1292                                 htlc_base_key:             SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0]).unwrap(),
1293                                 channel_close_key:         SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 6, 0]).unwrap(),
1294                                 channel_monitor_claim_key: SecretKey::from_slice(&self.secp_ctx, &[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 7, 0]).unwrap(),
1295                                 commitment_seed: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
1296                         }
1297                 } else {
1298                         let mut key_seed = [0u8; 32];
1299                         rng::fill_bytes(&mut key_seed);
1300                         match ChannelKeys::new_from_seed(&key_seed) {
1301                                 Ok(key) => key,
1302                                 Err(_) => panic!("RNG is busted!")
1303                         }
1304                 };
1305
1306                 let channel = Channel::new_from_req(&*self.fee_estimator, chan_keys, their_node_id.clone(), msg, 0, false, self.announce_channels_publicly, Arc::clone(&self.logger))?;
1307                 let accept_msg = channel.get_accept_channel()?;
1308                 channel_state.by_id.insert(channel.channel_id(), channel);
1309                 Ok(accept_msg)
1310         }
1311
1312         fn handle_accept_channel(&self, their_node_id: &PublicKey, msg: &msgs::AcceptChannel) -> Result<(), HandleError> {
1313                 let (value, output_script, user_id) = {
1314                         let mut channel_state = self.channel_state.lock().unwrap();
1315                         match channel_state.by_id.get_mut(&msg.temporary_channel_id) {
1316                                 Some(chan) => {
1317                                         if chan.get_their_node_id() != *their_node_id {
1318                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1319                                         }
1320                                         chan.accept_channel(&msg)?;
1321                                         (chan.get_value_satoshis(), chan.get_funding_redeemscript().to_v0_p2wsh(), chan.get_user_id())
1322                                 },
1323                                 None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1324                         }
1325                 };
1326                 let mut pending_events = self.pending_events.lock().unwrap();
1327                 pending_events.push(events::Event::FundingGenerationReady {
1328                         temporary_channel_id: msg.temporary_channel_id,
1329                         channel_value_satoshis: value,
1330                         output_script: output_script,
1331                         user_channel_id: user_id,
1332                 });
1333                 Ok(())
1334         }
1335
1336         fn handle_funding_created(&self, their_node_id: &PublicKey, msg: &msgs::FundingCreated) -> Result<msgs::FundingSigned, HandleError> {
1337                 let (chan, funding_msg, monitor_update) = {
1338                         let mut channel_state = self.channel_state.lock().unwrap();
1339                         match channel_state.by_id.entry(msg.temporary_channel_id.clone()) {
1340                                 hash_map::Entry::Occupied(mut chan) => {
1341                                         if chan.get().get_their_node_id() != *their_node_id {
1342                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1343                                         }
1344                                         match chan.get_mut().funding_created(msg) {
1345                                                 Ok((funding_msg, monitor_update)) => {
1346                                                         (chan.remove(), funding_msg, monitor_update)
1347                                                 },
1348                                                 Err(e) => {
1349                                                         //TODO: Possibly remove the channel depending on e.action
1350                                                         return Err(e);
1351                                                 }
1352                                         }
1353                                 },
1354                                 hash_map::Entry::Vacant(_) => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1355                         }
1356                 }; // Release channel lock for install_watch_outpoint call,
1357                    // note that this means if the remote end is misbehaving and sends a message for the same
1358                    // channel back-to-back with funding_created, we'll end up thinking they sent a message
1359                    // for a bogus channel.
1360                 if let Err(_e) = self.monitor.add_update_monitor(monitor_update.get_funding_txo().unwrap(), monitor_update) {
1361                         unimplemented!();
1362                 }
1363                 let mut channel_state = self.channel_state.lock().unwrap();
1364                 match channel_state.by_id.entry(funding_msg.channel_id) {
1365                         hash_map::Entry::Occupied(_) => {
1366                                 return Err(HandleError {
1367                                         err: "Duplicate channel_id!",
1368                                         action: Some(msgs::ErrorAction::SendErrorMessage { msg: msgs::ErrorMessage { channel_id: funding_msg.channel_id, data: "Already had channel with the new channel_id".to_owned() } })
1369                                 });
1370                         },
1371                         hash_map::Entry::Vacant(e) => {
1372                                 e.insert(chan);
1373                         }
1374                 }
1375                 Ok(funding_msg)
1376         }
1377
1378         fn handle_funding_signed(&self, their_node_id: &PublicKey, msg: &msgs::FundingSigned) -> Result<(), HandleError> {
1379                 let (funding_txo, user_id, monitor) = {
1380                         let mut channel_state = self.channel_state.lock().unwrap();
1381                         match channel_state.by_id.get_mut(&msg.channel_id) {
1382                                 Some(chan) => {
1383                                         if chan.get_their_node_id() != *their_node_id {
1384                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1385                                         }
1386                                         let chan_monitor = chan.funding_signed(&msg)?;
1387                                         (chan.get_funding_txo().unwrap(), chan.get_user_id(), chan_monitor)
1388                                 },
1389                                 None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1390                         }
1391                 };
1392                 if let Err(_e) = self.monitor.add_update_monitor(monitor.get_funding_txo().unwrap(), monitor) {
1393                         unimplemented!();
1394                 }
1395                 let mut pending_events = self.pending_events.lock().unwrap();
1396                 pending_events.push(events::Event::FundingBroadcastSafe {
1397                         funding_txo: funding_txo,
1398                         user_channel_id: user_id,
1399                 });
1400                 Ok(())
1401         }
1402
1403         fn handle_funding_locked(&self, their_node_id: &PublicKey, msg: &msgs::FundingLocked) -> Result<Option<msgs::AnnouncementSignatures>, HandleError> {
1404                 let mut channel_state = self.channel_state.lock().unwrap();
1405                 match channel_state.by_id.get_mut(&msg.channel_id) {
1406                         Some(chan) => {
1407                                 if chan.get_their_node_id() != *their_node_id {
1408                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1409                                 }
1410                                 chan.funding_locked(&msg)?;
1411                                 return Ok(self.get_announcement_sigs(chan)?);
1412                         },
1413                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1414                 };
1415         }
1416
1417         fn handle_shutdown(&self, their_node_id: &PublicKey, msg: &msgs::Shutdown) -> Result<(Option<msgs::Shutdown>, Option<msgs::ClosingSigned>), HandleError> {
1418                 let (res, chan_option) = {
1419                         let mut channel_state_lock = self.channel_state.lock().unwrap();
1420                         let channel_state = channel_state_lock.borrow_parts();
1421
1422                         match channel_state.by_id.entry(msg.channel_id.clone()) {
1423                                 hash_map::Entry::Occupied(mut chan_entry) => {
1424                                         if chan_entry.get().get_their_node_id() != *their_node_id {
1425                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1426                                         }
1427                                         let res = chan_entry.get_mut().shutdown(&*self.fee_estimator, &msg)?;
1428                                         if chan_entry.get().is_shutdown() {
1429                                                 if let Some(short_id) = chan_entry.get().get_short_channel_id() {
1430                                                         channel_state.short_to_id.remove(&short_id);
1431                                                 }
1432                                                 (res, Some(chan_entry.remove_entry().1))
1433                                         } else { (res, None) }
1434                                 },
1435                                 hash_map::Entry::Vacant(_) => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1436                         }
1437                 };
1438                 for payment_hash in res.2 {
1439                         // unknown_next_peer...I dunno who that is anymore....
1440                         self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &payment_hash, HTLCFailReason::Reason { failure_code: 0x4000 | 10, data: Vec::new() });
1441                 }
1442                 if let Some(chan) = chan_option {
1443                         if let Ok(update) = self.get_channel_update(&chan) {
1444                                 let mut events = self.pending_events.lock().unwrap();
1445                                 events.push(events::Event::BroadcastChannelUpdate {
1446                                         msg: update
1447                                 });
1448                         }
1449                 }
1450                 Ok((res.0, res.1))
1451         }
1452
1453         fn handle_closing_signed(&self, their_node_id: &PublicKey, msg: &msgs::ClosingSigned) -> Result<Option<msgs::ClosingSigned>, HandleError> {
1454                 let (res, chan_option) = {
1455                         let mut channel_state_lock = self.channel_state.lock().unwrap();
1456                         let channel_state = channel_state_lock.borrow_parts();
1457                         match channel_state.by_id.entry(msg.channel_id.clone()) {
1458                                 hash_map::Entry::Occupied(mut chan_entry) => {
1459                                         if chan_entry.get().get_their_node_id() != *their_node_id {
1460                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1461                                         }
1462                                         let res = chan_entry.get_mut().closing_signed(&*self.fee_estimator, &msg)?;
1463                                         if res.1.is_some() {
1464                                                 // We're done with this channel, we've got a signed closing transaction and
1465                                                 // will send the closing_signed back to the remote peer upon return. This
1466                                                 // also implies there are no pending HTLCs left on the channel, so we can
1467                                                 // fully delete it from tracking (the channel monitor is still around to
1468                                                 // watch for old state broadcasts)!
1469                                                 if let Some(short_id) = chan_entry.get().get_short_channel_id() {
1470                                                         channel_state.short_to_id.remove(&short_id);
1471                                                 }
1472                                                 (res, Some(chan_entry.remove_entry().1))
1473                                         } else { (res, None) }
1474                                 },
1475                                 hash_map::Entry::Vacant(_) => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1476                         }
1477                 };
1478                 if let Some(broadcast_tx) = res.1 {
1479                         self.tx_broadcaster.broadcast_transaction(&broadcast_tx);
1480                 }
1481                 if let Some(chan) = chan_option {
1482                         if let Ok(update) = self.get_channel_update(&chan) {
1483                                 let mut events = self.pending_events.lock().unwrap();
1484                                 events.push(events::Event::BroadcastChannelUpdate {
1485                                         msg: update
1486                                 });
1487                         }
1488                 }
1489                 Ok(res.0)
1490         }
1491
1492         fn handle_update_add_htlc(&self, their_node_id: &PublicKey, msg: &msgs::UpdateAddHTLC) -> Result<(), msgs::HandleError> {
1493                 //TODO: BOLT 4 points out a specific attack where a peer may re-send an onion packet and
1494                 //determine the state of the payment based on our response/if we forward anything/the time
1495                 //we take to respond. We should take care to avoid allowing such an attack.
1496                 //
1497                 //TODO: There exists a further attack where a node may garble the onion data, forward it to
1498                 //us repeatedly garbled in different ways, and compare our error messages, which are
1499                 //encrypted with the same key. Its not immediately obvious how to usefully exploit that,
1500                 //but we should prevent it anyway.
1501
1502                 let shared_secret = SharedSecret::new(&self.secp_ctx, &msg.onion_routing_packet.public_key, &self.our_network_key);
1503                 let (rho, mu) = ChannelManager::gen_rho_mu_from_shared_secret(&shared_secret);
1504
1505                 macro_rules! get_onion_hash {
1506                         () => {
1507                                 {
1508                                         let mut sha = Sha256::new();
1509                                         sha.input(&msg.onion_routing_packet.hop_data);
1510                                         let mut onion_hash = [0; 32];
1511                                         sha.result(&mut onion_hash);
1512                                         onion_hash
1513                                 }
1514                         }
1515                 }
1516
1517                 macro_rules! return_err {
1518                         ($msg: expr, $err_code: expr, $data: expr) => {
1519                                 return Err(msgs::HandleError {
1520                                         err: $msg,
1521                                         action: Some(msgs::ErrorAction::UpdateFailHTLC {
1522                                                 msg: msgs::UpdateFailHTLC {
1523                                                         channel_id: msg.channel_id,
1524                                                         htlc_id: msg.htlc_id,
1525                                                         reason: ChannelManager::build_first_hop_failure_packet(&shared_secret, $err_code, $data),
1526                                                 }
1527                                         }),
1528                                 });
1529                         }
1530                 }
1531
1532                 if msg.onion_routing_packet.version != 0 {
1533                         //TODO: Spec doesn't indicate if we should only hash hop_data here (and in other
1534                         //sha256_of_onion error data packets), or the entire onion_routing_packet. Either way,
1535                         //the hash doesn't really serve any purpuse - in the case of hashing all data, the
1536                         //receiving node would have to brute force to figure out which version was put in the
1537                         //packet by the node that send us the message, in the case of hashing the hop_data, the
1538                         //node knows the HMAC matched, so they already know what is there...
1539                         return_err!("Unknown onion packet version", 0x8000 | 0x4000 | 4, &get_onion_hash!());
1540                 }
1541
1542                 let mut hmac = Hmac::new(Sha256::new(), &mu);
1543                 hmac.input(&msg.onion_routing_packet.hop_data);
1544                 hmac.input(&msg.payment_hash);
1545                 if hmac.result() != MacResult::new(&msg.onion_routing_packet.hmac) {
1546                         return_err!("HMAC Check failed", 0x8000 | 0x4000 | 5, &get_onion_hash!());
1547                 }
1548
1549                 let mut chacha = ChaCha20::new(&rho, &[0u8; 8]);
1550                 let next_hop_data = {
1551                         let mut decoded = [0; 65];
1552                         chacha.process(&msg.onion_routing_packet.hop_data[0..65], &mut decoded);
1553                         match msgs::OnionHopData::decode(&decoded[..]) {
1554                                 Err(err) => {
1555                                         let error_code = match err {
1556                                                 msgs::DecodeError::UnknownRealmByte => 0x4000 | 1,
1557                                                 _ => 0x2000 | 2, // Should never happen
1558                                         };
1559                                         return_err!("Unable to decode our hop data", error_code, &[0;0]);
1560                                 },
1561                                 Ok(msg) => msg
1562                         }
1563                 };
1564
1565                 //TODO: Check that msg.cltv_expiry is within acceptable bounds!
1566
1567                 let mut pending_forward_info = if next_hop_data.hmac == [0; 32] {
1568                                 // OUR PAYMENT!
1569                                 if next_hop_data.data.amt_to_forward != msg.amount_msat {
1570                                         return_err!("Upstream node sent less than we were supposed to receive in payment", 19, &byte_utils::be64_to_array(msg.amount_msat));
1571                                 }
1572                                 if next_hop_data.data.outgoing_cltv_value != msg.cltv_expiry {
1573                                         return_err!("Upstream node set CLTV to the wrong value", 18, &byte_utils::be32_to_array(msg.cltv_expiry));
1574                                 }
1575
1576                                 // Note that we could obviously respond immediately with an update_fulfill_htlc
1577                                 // message, however that would leak that we are the recipient of this payment, so
1578                                 // instead we stay symmetric with the forwarding case, only responding (after a
1579                                 // delay) once they've send us a commitment_signed!
1580
1581                                 PendingForwardHTLCInfo {
1582                                         onion_packet: None,
1583                                         payment_hash: msg.payment_hash.clone(),
1584                                         short_channel_id: 0,
1585                                         prev_short_channel_id: 0,
1586                                         amt_to_forward: next_hop_data.data.amt_to_forward,
1587                                         outgoing_cltv_value: next_hop_data.data.outgoing_cltv_value,
1588                                 }
1589                         } else {
1590                                 let mut new_packet_data = [0; 20*65];
1591                                 chacha.process(&msg.onion_routing_packet.hop_data[65..], &mut new_packet_data[0..19*65]);
1592                                 chacha.process(&ChannelManager::ZERO[0..65], &mut new_packet_data[19*65..]);
1593
1594                                 let mut new_pubkey = msg.onion_routing_packet.public_key.clone();
1595
1596                                 let blinding_factor = {
1597                                         let mut sha = Sha256::new();
1598                                         sha.input(&new_pubkey.serialize()[..]);
1599                                         sha.input(&shared_secret[..]);
1600                                         let mut res = [0u8; 32];
1601                                         sha.result(&mut res);
1602                                         match SecretKey::from_slice(&self.secp_ctx, &res) {
1603                                                 Err(_) => {
1604                                                         // Return temporary node failure as its technically our issue, not the
1605                                                         // channel's issue.
1606                                                         return_err!("Blinding factor is an invalid private key", 0x2000 | 2, &[0;0]);
1607                                                 },
1608                                                 Ok(key) => key
1609                                         }
1610                                 };
1611
1612                                 match new_pubkey.mul_assign(&self.secp_ctx, &blinding_factor) {
1613                                         Err(_) => {
1614                                                 // Return temporary node failure as its technically our issue, not the
1615                                                 // channel's issue.
1616                                                 return_err!("New blinding factor is an invalid private key", 0x2000 | 2, &[0;0]);
1617                                         },
1618                                         Ok(_) => {}
1619                                 };
1620
1621                                 let outgoing_packet = msgs::OnionPacket {
1622                                         version: 0,
1623                                         public_key: new_pubkey,
1624                                         hop_data: new_packet_data,
1625                                         hmac: next_hop_data.hmac.clone(),
1626                                 };
1627
1628                                 //TODO: Check amt_to_forward and outgoing_cltv_value are within acceptable ranges!
1629
1630                                 PendingForwardHTLCInfo {
1631                                         onion_packet: Some(outgoing_packet),
1632                                         payment_hash: msg.payment_hash.clone(),
1633                                         short_channel_id: next_hop_data.data.short_channel_id,
1634                                         prev_short_channel_id: 0,
1635                                         amt_to_forward: next_hop_data.data.amt_to_forward,
1636                                         outgoing_cltv_value: next_hop_data.data.outgoing_cltv_value,
1637                                 }
1638                         };
1639
1640                 let mut channel_state_lock = self.channel_state.lock().unwrap();
1641                 let channel_state = channel_state_lock.borrow_parts();
1642
1643                 if pending_forward_info.onion_packet.is_some() { // If short_channel_id is 0 here, we'll reject them in the body here
1644                         let forwarding_id = match channel_state.short_to_id.get(&pending_forward_info.short_channel_id) {
1645                                 None => {
1646                                         return_err!("Don't have available channel for forwarding as requested.", 0x4000 | 10, &[0;0]);
1647                                 },
1648                                 Some(id) => id.clone(),
1649                         };
1650                         let chan = channel_state.by_id.get_mut(&forwarding_id).unwrap();
1651                         if !chan.is_live() {
1652                                 let chan_update = self.get_channel_update(chan).unwrap();
1653                                 return_err!("Forwarding channel is not in a ready state.", 0x1000 | 7, &chan_update.encode_with_len()[..]);
1654                         }
1655                 }
1656
1657                 let claimable_htlcs_entry = channel_state.claimable_htlcs.entry(msg.payment_hash.clone());
1658
1659                 // We dont correctly handle payments that route through us twice on their way to their
1660                 // destination. That's OK since those nodes are probably busted or trying to do network
1661                 // mapping through repeated loops. In either case, we want them to stop talking to us, so
1662                 // we send permanent_node_failure.
1663                 if let &hash_map::Entry::Occupied(ref e) = &claimable_htlcs_entry {
1664                         let mut acceptable_cycle = false;
1665                         if let &PendingOutboundHTLC::OutboundRoute { .. } = e.get() {
1666                                 acceptable_cycle = pending_forward_info.short_channel_id == 0;
1667                         }
1668                         if !acceptable_cycle {
1669                                 return_err!("Payment looped through us twice", 0x4000 | 0x2000 | 2, &[0;0]);
1670                         }
1671                 }
1672
1673                 let (source_short_channel_id, res) = match channel_state.by_id.get_mut(&msg.channel_id) {
1674                         Some(chan) => {
1675                                 if chan.get_their_node_id() != *their_node_id {
1676                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1677                                 }
1678                                 if !chan.is_usable() {
1679                                         return Err(HandleError{err: "Channel not yet available for receiving HTLCs", action: None});
1680                                 }
1681                                 let short_channel_id = chan.get_short_channel_id().unwrap();
1682                                 pending_forward_info.prev_short_channel_id = short_channel_id;
1683                                 (short_channel_id, chan.update_add_htlc(&msg, pending_forward_info)?)
1684                         },
1685                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None}),
1686                 };
1687
1688                 match claimable_htlcs_entry {
1689                         hash_map::Entry::Occupied(mut e) => {
1690                                 let outbound_route = e.get_mut();
1691                                 let (route, session_priv) = match outbound_route {
1692                                         &mut PendingOutboundHTLC::OutboundRoute { ref route, ref session_priv } => {
1693                                                 (route.clone(), session_priv.clone())
1694                                         },
1695                                         _ => unreachable!(),
1696                                 };
1697                                 *outbound_route = PendingOutboundHTLC::CycledRoute {
1698                                         source_short_channel_id,
1699                                         incoming_packet_shared_secret: shared_secret,
1700                                         route,
1701                                         session_priv,
1702                                 };
1703                         },
1704                         hash_map::Entry::Vacant(e) => {
1705                                 e.insert(PendingOutboundHTLC::IntermediaryHopData {
1706                                         source_short_channel_id,
1707                                         incoming_packet_shared_secret: shared_secret,
1708                                 });
1709                         }
1710                 }
1711
1712                 Ok(res)
1713         }
1714
1715         fn handle_update_fulfill_htlc(&self, their_node_id: &PublicKey, msg: &msgs::UpdateFulfillHTLC) -> Result<(), HandleError> {
1716                 //TODO: Delay the claimed_funds relaying just like we do outbound relay!
1717                 // Claim funds first, cause we don't really care if the channel we received the message on
1718                 // is broken, we may have enough info to get our own money!
1719                 self.claim_funds_internal(msg.payment_preimage.clone(), false);
1720
1721                 let mut channel_state = self.channel_state.lock().unwrap();
1722                 match channel_state.by_id.get_mut(&msg.channel_id) {
1723                         Some(chan) => {
1724                                 if chan.get_their_node_id() != *their_node_id {
1725                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1726                                 }
1727                                 chan.update_fulfill_htlc(&msg)
1728                         },
1729                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1730                 }
1731         }
1732
1733         fn handle_update_fail_htlc(&self, their_node_id: &PublicKey, msg: &msgs::UpdateFailHTLC) -> Result<Option<msgs::HTLCFailChannelUpdate>, HandleError> {
1734                 let mut channel_state = self.channel_state.lock().unwrap();
1735                 let payment_hash = match channel_state.by_id.get_mut(&msg.channel_id) {
1736                         Some(chan) => {
1737                                 if chan.get_their_node_id() != *their_node_id {
1738                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1739                                 }
1740                                 chan.update_fail_htlc(&msg, HTLCFailReason::ErrorPacket { err: msg.reason.clone() })
1741                         },
1742                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1743                 }?;
1744
1745                 if let Some(pending_htlc) = channel_state.claimable_htlcs.get(&payment_hash) {
1746                         match pending_htlc {
1747                                 &PendingOutboundHTLC::OutboundRoute { ref route, ref session_priv } => {
1748                                         // Handle packed channel/node updates for passing back for the route handler
1749                                         let mut packet_decrypted = msg.reason.data.clone();
1750                                         let mut res = None;
1751                                         Self::construct_onion_keys_callback(&self.secp_ctx, &route, &session_priv, |shared_secret, _, _, route_hop| {
1752                                                 if res.is_some() { return; }
1753
1754                                                 let ammag = ChannelManager::gen_ammag_from_shared_secret(&shared_secret);
1755
1756                                                 let mut decryption_tmp = Vec::with_capacity(packet_decrypted.len());
1757                                                 decryption_tmp.resize(packet_decrypted.len(), 0);
1758                                                 let mut chacha = ChaCha20::new(&ammag, &[0u8; 8]);
1759                                                 chacha.process(&packet_decrypted, &mut decryption_tmp[..]);
1760                                                 packet_decrypted = decryption_tmp;
1761
1762                                                 if let Ok(err_packet) = msgs::DecodedOnionErrorPacket::decode(&packet_decrypted) {
1763                                                         if err_packet.failuremsg.len() >= 2 {
1764                                                                 let um = ChannelManager::gen_um_from_shared_secret(&shared_secret);
1765
1766                                                                 let mut hmac = Hmac::new(Sha256::new(), &um);
1767                                                                 hmac.input(&err_packet.encode()[32..]);
1768                                                                 let mut calc_tag = [0u8; 32];
1769                                                                 hmac.raw_result(&mut calc_tag);
1770                                                                 if crypto::util::fixed_time_eq(&calc_tag, &err_packet.hmac) {
1771                                                                         const UNKNOWN_CHAN: u16 = 0x4000|10;
1772                                                                         const TEMP_CHAN_FAILURE: u16 = 0x4000|7;
1773                                                                         match byte_utils::slice_to_be16(&err_packet.failuremsg[0..2]) {
1774                                                                                 TEMP_CHAN_FAILURE => {
1775                                                                                         if err_packet.failuremsg.len() >= 4 {
1776                                                                                                 let update_len = byte_utils::slice_to_be16(&err_packet.failuremsg[2..4]) as usize;
1777                                                                                                 if err_packet.failuremsg.len() >= 4 + update_len {
1778                                                                                                         if let Ok(chan_update) = msgs::ChannelUpdate::decode(&err_packet.failuremsg[4..4 + update_len]) {
1779                                                                                                                 res = Some(msgs::HTLCFailChannelUpdate::ChannelUpdateMessage {
1780                                                                                                                         msg: chan_update,
1781                                                                                                                 });
1782                                                                                                         }
1783                                                                                                 }
1784                                                                                         }
1785                                                                                 },
1786                                                                                 UNKNOWN_CHAN => {
1787                                                                                         // No such next-hop. We know this came from the
1788                                                                                         // current node as the HMAC validated.
1789                                                                                         res = Some(msgs::HTLCFailChannelUpdate::ChannelClosed {
1790                                                                                                 short_channel_id: route_hop.short_channel_id
1791                                                                                         });
1792                                                                                 },
1793                                                                                 _ => {}, //TODO: Enumerate all of these!
1794                                                                         }
1795                                                                 }
1796                                                         }
1797                                                 }
1798                                         }).unwrap();
1799                                         Ok(res)
1800                                 },
1801                                 _ => { Ok(None) },
1802                         }
1803                 } else {
1804                         Ok(None)
1805                 }
1806         }
1807
1808         fn handle_update_fail_malformed_htlc(&self, their_node_id: &PublicKey, msg: &msgs::UpdateFailMalformedHTLC) -> Result<(), HandleError> {
1809                 let mut channel_state = self.channel_state.lock().unwrap();
1810                 match channel_state.by_id.get_mut(&msg.channel_id) {
1811                         Some(chan) => {
1812                                 if chan.get_their_node_id() != *their_node_id {
1813                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1814                                 }
1815                                 chan.update_fail_malformed_htlc(&msg, HTLCFailReason::Reason { failure_code: msg.failure_code, data: Vec::new() })
1816                         },
1817                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1818                 }
1819         }
1820
1821         fn handle_commitment_signed(&self, their_node_id: &PublicKey, msg: &msgs::CommitmentSigned) -> Result<(msgs::RevokeAndACK, Option<msgs::CommitmentSigned>), HandleError> {
1822                 let (revoke_and_ack, commitment_signed, chan_monitor) = {
1823                         let mut channel_state = self.channel_state.lock().unwrap();
1824                         match channel_state.by_id.get_mut(&msg.channel_id) {
1825                                 Some(chan) => {
1826                                         if chan.get_their_node_id() != *their_node_id {
1827                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1828                                         }
1829                                         chan.commitment_signed(&msg)?
1830                                 },
1831                                 None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1832                         }
1833                 };
1834                 if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
1835                         unimplemented!();
1836                 }
1837
1838                 Ok((revoke_and_ack, commitment_signed))
1839         }
1840
1841         fn handle_revoke_and_ack(&self, their_node_id: &PublicKey, msg: &msgs::RevokeAndACK) -> Result<Option<msgs::CommitmentUpdate>, HandleError> {
1842                 let (res, mut pending_forwards, mut pending_failures, chan_monitor) = {
1843                         let mut channel_state = self.channel_state.lock().unwrap();
1844                         match channel_state.by_id.get_mut(&msg.channel_id) {
1845                                 Some(chan) => {
1846                                         if chan.get_their_node_id() != *their_node_id {
1847                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1848                                         }
1849                                         chan.revoke_and_ack(&msg)?
1850                                 },
1851                                 None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1852                         }
1853                 };
1854                 if let Err(_e) = self.monitor.add_update_monitor(chan_monitor.get_funding_txo().unwrap(), chan_monitor) {
1855                         unimplemented!();
1856                 }
1857                 for failure in pending_failures.drain(..) {
1858                         self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), &failure.0, failure.1);
1859                 }
1860
1861                 let mut forward_event = None;
1862                 if !pending_forwards.is_empty() {
1863                         let mut channel_state = self.channel_state.lock().unwrap();
1864                         if channel_state.forward_htlcs.is_empty() {
1865                                 forward_event = Some(Instant::now() + Duration::from_millis(((rng::rand_f32() * 4.0 + 1.0) * MIN_HTLC_RELAY_HOLDING_CELL_MILLIS as f32) as u64));
1866                                 channel_state.next_forward = forward_event.unwrap();
1867                         }
1868                         for forward_info in pending_forwards.drain(..) {
1869                                 match channel_state.forward_htlcs.entry(forward_info.short_channel_id) {
1870                                         hash_map::Entry::Occupied(mut entry) => {
1871                                                 entry.get_mut().push(forward_info);
1872                                         },
1873                                         hash_map::Entry::Vacant(entry) => {
1874                                                 entry.insert(vec!(forward_info));
1875                                         }
1876                                 }
1877                         }
1878                 }
1879                 match forward_event {
1880                         Some(time) => {
1881                                 let mut pending_events = self.pending_events.lock().unwrap();
1882                                 pending_events.push(events::Event::PendingHTLCsForwardable {
1883                                         time_forwardable: time
1884                                 });
1885                         }
1886                         None => {},
1887                 }
1888
1889                 Ok(res)
1890         }
1891
1892         fn handle_update_fee(&self, their_node_id: &PublicKey, msg: &msgs::UpdateFee) -> Result<(), HandleError> {
1893                 let mut channel_state = self.channel_state.lock().unwrap();
1894                 match channel_state.by_id.get_mut(&msg.channel_id) {
1895                         Some(chan) => {
1896                                 if chan.get_their_node_id() != *their_node_id {
1897                                         return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1898                                 }
1899                                 chan.update_fee(&*self.fee_estimator, &msg)
1900                         },
1901                         None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1902                 }
1903         }
1904
1905         fn handle_announcement_signatures(&self, their_node_id: &PublicKey, msg: &msgs::AnnouncementSignatures) -> Result<(), HandleError> {
1906                 let (chan_announcement, chan_update) = {
1907                         let mut channel_state = self.channel_state.lock().unwrap();
1908                         match channel_state.by_id.get_mut(&msg.channel_id) {
1909                                 Some(chan) => {
1910                                         if chan.get_their_node_id() != *their_node_id {
1911                                                 return Err(HandleError{err: "Got a message for a channel from the wrong node!", action: None})
1912                                         }
1913                                         if !chan.is_usable() {
1914                                                 return Err(HandleError{err: "Got an announcement_signatures before we were ready for it", action: None });
1915                                         }
1916
1917                                         let our_node_id = self.get_our_node_id();
1918                                         let (announcement, our_bitcoin_sig) = chan.get_channel_announcement(our_node_id.clone(), self.genesis_hash.clone())?;
1919
1920                                         let were_node_one = announcement.node_id_1 == our_node_id;
1921                                         let msghash = Message::from_slice(&Sha256dHash::from_data(&announcement.encode()[..])[..]).unwrap();
1922                                         secp_call!(self.secp_ctx.verify(&msghash, &msg.node_signature, if were_node_one { &announcement.node_id_2 } else { &announcement.node_id_1 }));
1923                                         secp_call!(self.secp_ctx.verify(&msghash, &msg.bitcoin_signature, if were_node_one { &announcement.bitcoin_key_2 } else { &announcement.bitcoin_key_1 }));
1924
1925                                         let our_node_sig = secp_call!(self.secp_ctx.sign(&msghash, &self.our_network_key));
1926
1927                                         (msgs::ChannelAnnouncement {
1928                                                 node_signature_1: if were_node_one { our_node_sig } else { msg.node_signature },
1929                                                 node_signature_2: if were_node_one { msg.node_signature } else { our_node_sig },
1930                                                 bitcoin_signature_1: if were_node_one { our_bitcoin_sig } else { msg.bitcoin_signature },
1931                                                 bitcoin_signature_2: if were_node_one { msg.bitcoin_signature } else { our_bitcoin_sig },
1932                                                 contents: announcement,
1933                                         }, self.get_channel_update(chan).unwrap()) // can only fail if we're not in a ready state
1934                                 },
1935                                 None => return Err(HandleError{err: "Failed to find corresponding channel", action: None})
1936                         }
1937                 };
1938                 let mut pending_events = self.pending_events.lock().unwrap();
1939                 pending_events.push(events::Event::BroadcastChannelAnnouncement { msg: chan_announcement, update_msg: chan_update });
1940                 Ok(())
1941         }
1942
1943         fn peer_disconnected(&self, their_node_id: &PublicKey, no_connection_possible: bool) {
1944                 let mut new_events = Vec::new();
1945                 let mut failed_channels = Vec::new();
1946                 {
1947                         let mut channel_state_lock = self.channel_state.lock().unwrap();
1948                         let channel_state = channel_state_lock.borrow_parts();
1949                         let short_to_id = channel_state.short_to_id;
1950                         if no_connection_possible {
1951                                 channel_state.by_id.retain(|_, chan| {
1952                                         if chan.get_their_node_id() == *their_node_id {
1953                                                 if let Some(short_id) = chan.get_short_channel_id() {
1954                                                         short_to_id.remove(&short_id);
1955                                                 }
1956                                                 failed_channels.push(chan.force_shutdown());
1957                                                 if let Ok(update) = self.get_channel_update(&chan) {
1958                                                         new_events.push(events::Event::BroadcastChannelUpdate {
1959                                                                 msg: update
1960                                                         });
1961                                                 }
1962                                                 false
1963                                         } else {
1964                                                 true
1965                                         }
1966                                 });
1967                         } else {
1968                                 for chan in channel_state.by_id {
1969                                         if chan.1.get_their_node_id() == *their_node_id {
1970                                                 //TODO: mark channel disabled (and maybe announce such after a timeout). Also
1971                                                 //fail and wipe any uncommitted outbound HTLCs as those are considered after
1972                                                 //reconnect.
1973                                         }
1974                                 }
1975                         }
1976                 }
1977                 for failure in failed_channels.drain(..) {
1978                         self.finish_force_close_channel(failure);
1979                 }
1980                 if !new_events.is_empty() {
1981                         let mut pending_events = self.pending_events.lock().unwrap();
1982                         for event in new_events.drain(..) {
1983                                 pending_events.push(event);
1984                         }
1985                 }
1986         }
1987 }
1988
1989 #[cfg(test)]
1990 mod tests {
1991         use chain::chaininterface;
1992         use chain::transaction::OutPoint;
1993         use chain::chaininterface::ChainListener;
1994         use ln::channelmanager::{ChannelManager,OnionKeys};
1995         use ln::router::{Route, RouteHop, Router};
1996         use ln::msgs;
1997         use ln::msgs::{MsgEncodable,ChannelMessageHandler,RoutingMessageHandler};
1998         use util::test_utils;
1999         use util::events::{Event, EventsProvider};
2000         use util::logger::Logger;
2001
2002         use bitcoin::util::hash::Sha256dHash;
2003         use bitcoin::blockdata::block::{Block, BlockHeader};
2004         use bitcoin::blockdata::transaction::{Transaction, TxOut};
2005         use bitcoin::network::constants::Network;
2006         use bitcoin::network::serialize::serialize;
2007         use bitcoin::network::serialize::BitcoinHash;
2008
2009         use hex;
2010
2011         use secp256k1::Secp256k1;
2012         use secp256k1::key::{PublicKey,SecretKey};
2013
2014         use crypto::sha2::Sha256;
2015         use crypto::digest::Digest;
2016
2017         use rand::{thread_rng,Rng};
2018
2019         use std::collections::HashMap;
2020         use std::default::Default;
2021         use std::sync::{Arc, Mutex};
2022         use std::time::Instant;
2023         use std::mem;
2024
2025         fn build_test_onion_keys() -> Vec<OnionKeys> {
2026                 // Keys from BOLT 4, used in both test vector tests
2027                 let secp_ctx = Secp256k1::new();
2028
2029                 let route = Route {
2030                         hops: vec!(
2031                                         RouteHop {
2032                                                 pubkey: PublicKey::from_slice(&secp_ctx, &hex::decode("02eec7245d6b7d2ccb30380bfbe2a3648cd7a942653f5aa340edcea1f283686619").unwrap()[..]).unwrap(),
2033                                                 short_channel_id: 0, fee_msat: 0, cltv_expiry_delta: 0 // Test vectors are garbage and not generateble from a RouteHop, we fill in payloads manually
2034                                         },
2035                                         RouteHop {
2036                                                 pubkey: PublicKey::from_slice(&secp_ctx, &hex::decode("0324653eac434488002cc06bbfb7f10fe18991e35f9fe4302dbea6d2353dc0ab1c").unwrap()[..]).unwrap(),
2037                                                 short_channel_id: 0, fee_msat: 0, cltv_expiry_delta: 0 // Test vectors are garbage and not generateble from a RouteHop, we fill in payloads manually
2038                                         },
2039                                         RouteHop {
2040                                                 pubkey: PublicKey::from_slice(&secp_ctx, &hex::decode("027f31ebc5462c1fdce1b737ecff52d37d75dea43ce11c74d25aa297165faa2007").unwrap()[..]).unwrap(),
2041                                                 short_channel_id: 0, fee_msat: 0, cltv_expiry_delta: 0 // Test vectors are garbage and not generateble from a RouteHop, we fill in payloads manually
2042                                         },
2043                                         RouteHop {
2044                                                 pubkey: PublicKey::from_slice(&secp_ctx, &hex::decode("032c0b7cf95324a07d05398b240174dc0c2be444d96b159aa6c7f7b1e668680991").unwrap()[..]).unwrap(),
2045                                                 short_channel_id: 0, fee_msat: 0, cltv_expiry_delta: 0 // Test vectors are garbage and not generateble from a RouteHop, we fill in payloads manually
2046                                         },
2047                                         RouteHop {
2048                                                 pubkey: PublicKey::from_slice(&secp_ctx, &hex::decode("02edabbd16b41c8371b92ef2f04c1185b4f03b6dcd52ba9b78d9d7c89c8f221145").unwrap()[..]).unwrap(),
2049                                                 short_channel_id: 0, fee_msat: 0, cltv_expiry_delta: 0 // Test vectors are garbage and not generateble from a RouteHop, we fill in payloads manually
2050                                         },
2051                         ),
2052                 };
2053
2054                 let session_priv = SecretKey::from_slice(&secp_ctx, &hex::decode("4141414141414141414141414141414141414141414141414141414141414141").unwrap()[..]).unwrap();
2055
2056                 let onion_keys = ChannelManager::construct_onion_keys(&secp_ctx, &route, &session_priv).unwrap();
2057                 assert_eq!(onion_keys.len(), route.hops.len());
2058                 onion_keys
2059         }
2060
2061         #[test]
2062         fn onion_vectors() {
2063                 // Packet creation test vectors from BOLT 4
2064                 let onion_keys = build_test_onion_keys();
2065
2066                 assert_eq!(onion_keys[0].shared_secret[..], hex::decode("53eb63ea8a3fec3b3cd433b85cd62a4b145e1dda09391b348c4e1cd36a03ea66").unwrap()[..]);
2067                 assert_eq!(onion_keys[0].blinding_factor[..], hex::decode("2ec2e5da605776054187180343287683aa6a51b4b1c04d6dd49c45d8cffb3c36").unwrap()[..]);
2068                 assert_eq!(onion_keys[0].ephemeral_pubkey.serialize()[..], hex::decode("02eec7245d6b7d2ccb30380bfbe2a3648cd7a942653f5aa340edcea1f283686619").unwrap()[..]);
2069                 assert_eq!(onion_keys[0].rho, hex::decode("ce496ec94def95aadd4bec15cdb41a740c9f2b62347c4917325fcc6fb0453986").unwrap()[..]);
2070                 assert_eq!(onion_keys[0].mu, hex::decode("b57061dc6d0a2b9f261ac410c8b26d64ac5506cbba30267a649c28c179400eba").unwrap()[..]);
2071
2072                 assert_eq!(onion_keys[1].shared_secret[..], hex::decode("a6519e98832a0b179f62123b3567c106db99ee37bef036e783263602f3488fae").unwrap()[..]);
2073                 assert_eq!(onion_keys[1].blinding_factor[..], hex::decode("bf66c28bc22e598cfd574a1931a2bafbca09163df2261e6d0056b2610dab938f").unwrap()[..]);
2074                 assert_eq!(onion_keys[1].ephemeral_pubkey.serialize()[..], hex::decode("028f9438bfbf7feac2e108d677e3a82da596be706cc1cf342b75c7b7e22bf4e6e2").unwrap()[..]);
2075                 assert_eq!(onion_keys[1].rho, hex::decode("450ffcabc6449094918ebe13d4f03e433d20a3d28a768203337bc40b6e4b2c59").unwrap()[..]);
2076                 assert_eq!(onion_keys[1].mu, hex::decode("05ed2b4a3fb023c2ff5dd6ed4b9b6ea7383f5cfe9d59c11d121ec2c81ca2eea9").unwrap()[..]);
2077
2078                 assert_eq!(onion_keys[2].shared_secret[..], hex::decode("3a6b412548762f0dbccce5c7ae7bb8147d1caf9b5471c34120b30bc9c04891cc").unwrap()[..]);
2079                 assert_eq!(onion_keys[2].blinding_factor[..], hex::decode("a1f2dadd184eb1627049673f18c6325814384facdee5bfd935d9cb031a1698a5").unwrap()[..]);
2080                 assert_eq!(onion_keys[2].ephemeral_pubkey.serialize()[..], hex::decode("03bfd8225241ea71cd0843db7709f4c222f62ff2d4516fd38b39914ab6b83e0da0").unwrap()[..]);
2081                 assert_eq!(onion_keys[2].rho, hex::decode("11bf5c4f960239cb37833936aa3d02cea82c0f39fd35f566109c41f9eac8deea").unwrap()[..]);
2082                 assert_eq!(onion_keys[2].mu, hex::decode("caafe2820fa00eb2eeb78695ae452eba38f5a53ed6d53518c5c6edf76f3f5b78").unwrap()[..]);
2083
2084                 assert_eq!(onion_keys[3].shared_secret[..], hex::decode("21e13c2d7cfe7e18836df50872466117a295783ab8aab0e7ecc8c725503ad02d").unwrap()[..]);
2085                 assert_eq!(onion_keys[3].blinding_factor[..], hex::decode("7cfe0b699f35525029ae0fa437c69d0f20f7ed4e3916133f9cacbb13c82ff262").unwrap()[..]);
2086                 assert_eq!(onion_keys[3].ephemeral_pubkey.serialize()[..], hex::decode("031dde6926381289671300239ea8e57ffaf9bebd05b9a5b95beaf07af05cd43595").unwrap()[..]);
2087                 assert_eq!(onion_keys[3].rho, hex::decode("cbe784ab745c13ff5cffc2fbe3e84424aa0fd669b8ead4ee562901a4a4e89e9e").unwrap()[..]);
2088                 assert_eq!(onion_keys[3].mu, hex::decode("5052aa1b3d9f0655a0932e50d42f0c9ba0705142c25d225515c45f47c0036ee9").unwrap()[..]);
2089
2090                 assert_eq!(onion_keys[4].shared_secret[..], hex::decode("b5756b9b542727dbafc6765a49488b023a725d631af688fc031217e90770c328").unwrap()[..]);
2091                 assert_eq!(onion_keys[4].blinding_factor[..], hex::decode("c96e00dddaf57e7edcd4fb5954be5b65b09f17cb6d20651b4e90315be5779205").unwrap()[..]);
2092                 assert_eq!(onion_keys[4].ephemeral_pubkey.serialize()[..], hex::decode("03a214ebd875aab6ddfd77f22c5e7311d7f77f17a169e599f157bbcdae8bf071f4").unwrap()[..]);
2093                 assert_eq!(onion_keys[4].rho, hex::decode("034e18b8cc718e8af6339106e706c52d8df89e2b1f7e9142d996acf88df8799b").unwrap()[..]);
2094                 assert_eq!(onion_keys[4].mu, hex::decode("8e45e5c61c2b24cb6382444db6698727afb063adecd72aada233d4bf273d975a").unwrap()[..]);
2095
2096                 // Test vectors below are flat-out wrong: they claim to set outgoing_cltv_value to non-0 :/
2097                 let payloads = vec!(
2098                         msgs::OnionHopData {
2099                                 realm: 0,
2100                                 data: msgs::OnionRealm0HopData {
2101                                         short_channel_id: 0,
2102                                         amt_to_forward: 0,
2103                                         outgoing_cltv_value: 0,
2104                                 },
2105                                 hmac: [0; 32],
2106                         },
2107                         msgs::OnionHopData {
2108                                 realm: 0,
2109                                 data: msgs::OnionRealm0HopData {
2110                                         short_channel_id: 0x0101010101010101,
2111                                         amt_to_forward: 0x0100000001,
2112                                         outgoing_cltv_value: 0,
2113                                 },
2114                                 hmac: [0; 32],
2115                         },
2116                         msgs::OnionHopData {
2117                                 realm: 0,
2118                                 data: msgs::OnionRealm0HopData {
2119                                         short_channel_id: 0x0202020202020202,
2120                                         amt_to_forward: 0x0200000002,
2121                                         outgoing_cltv_value: 0,
2122                                 },
2123                                 hmac: [0; 32],
2124                         },
2125                         msgs::OnionHopData {
2126                                 realm: 0,
2127                                 data: msgs::OnionRealm0HopData {
2128                                         short_channel_id: 0x0303030303030303,
2129                                         amt_to_forward: 0x0300000003,
2130                                         outgoing_cltv_value: 0,
2131                                 },
2132                                 hmac: [0; 32],
2133                         },
2134                         msgs::OnionHopData {
2135                                 realm: 0,
2136                                 data: msgs::OnionRealm0HopData {
2137                                         short_channel_id: 0x0404040404040404,
2138                                         amt_to_forward: 0x0400000004,
2139                                         outgoing_cltv_value: 0,
2140                                 },
2141                                 hmac: [0; 32],
2142                         },
2143                 );
2144
2145                 let packet = ChannelManager::construct_onion_packet(payloads, onion_keys, &[0x42; 32]).unwrap();
2146                 // Just check the final packet encoding, as it includes all the per-hop vectors in it
2147                 // anyway...
2148                 assert_eq!(packet.encode(), hex::decode("0002eec7245d6b7d2ccb30380bfbe2a3648cd7a942653f5aa340edcea1f283686619e5f14350c2a76fc232b5e46d421e9615471ab9e0bc887beff8c95fdb878f7b3a716a996c7845c93d90e4ecbb9bde4ece2f69425c99e4bc820e44485455f135edc0d10f7d61ab590531cf08000179a333a347f8b4072f216400406bdf3bf038659793d4a1fd7b246979e3150a0a4cb052c9ec69acf0f48c3d39cd55675fe717cb7d80ce721caad69320c3a469a202f1e468c67eaf7a7cd8226d0fd32f7b48084dca885d56047694762b67021713ca673929c163ec36e04e40ca8e1c6d17569419d3039d9a1ec866abe044a9ad635778b961fc0776dc832b3a451bd5d35072d2269cf9b040f6b7a7dad84fb114ed413b1426cb96ceaf83825665ed5a1d002c1687f92465b49ed4c7f0218ff8c6c7dd7221d589c65b3b9aaa71a41484b122846c7c7b57e02e679ea8469b70e14fe4f70fee4d87b910cf144be6fe48eef24da475c0b0bcc6565ae82cd3f4e3b24c76eaa5616c6111343306ab35c1fe5ca4a77c0e314ed7dba39d6f1e0de791719c241a939cc493bea2bae1c1e932679ea94d29084278513c77b899cc98059d06a27d171b0dbdf6bee13ddc4fc17a0c4d2827d488436b57baa167544138ca2e64a11b43ac8a06cd0c2fba2d4d900ed2d9205305e2d7383cc98dacb078133de5f6fb6bed2ef26ba92cea28aafc3b9948dd9ae5559e8bd6920b8cea462aa445ca6a95e0e7ba52961b181c79e73bd581821df2b10173727a810c92b83b5ba4a0403eb710d2ca10689a35bec6c3a708e9e92f7d78ff3c5d9989574b00c6736f84c199256e76e19e78f0c98a9d580b4a658c84fc8f2096c2fbea8f5f8c59d0fdacb3be2802ef802abbecb3aba4acaac69a0e965abd8981e9896b1f6ef9d60f7a164b371af869fd0e48073742825e9434fc54da837e120266d53302954843538ea7c6c3dbfb4ff3b2fdbe244437f2a153ccf7bdb4c92aa08102d4f3cff2ae5ef86fab4653595e6a5837fa2f3e29f27a9cde5966843fb847a4a61f1e76c281fe8bb2b0a181d096100db5a1a5ce7a910238251a43ca556712eaadea167fb4d7d75825e440f3ecd782036d7574df8bceacb397abefc5f5254d2722215c53ff54af8299aaaad642c6d72a14d27882d9bbd539e1cc7a527526ba89b8c037ad09120e98ab042d3e8652b31ae0e478516bfaf88efca9f3676ffe99d2819dcaeb7610a626695f53117665d267d3f7abebd6bbd6733f645c72c389f03855bdf1e4b8075b516569b118233a0f0971d24b83113c0b096f5216a207ca99a7cddc81c130923fe3d91e7508c9ac5f2e914ff5dccab9e558566fa14efb34ac98d878580814b94b73acbfde9072f30b881f7f0fff42d4045d1ace6322d86a97d164aa84d93a60498065cc7c20e636f5862dc81531a88c60305a2e59a985be327a6902e4bed986dbf4a0b50c217af0ea7fdf9ab37f9ea1a1aaa72f54cf40154ea9b269f1a7c09f9f43245109431a175d50e2db0132337baa0ef97eed0fcf20489da36b79a1172faccc2f7ded7c60e00694282d93359c4682135642bc81f433574aa8ef0c97b4ade7ca372c5ffc23c7eddd839bab4e0f14d6df15c9dbeab176bec8b5701cf054eb3072f6dadc98f88819042bf10c407516ee58bce33fbe3b3d86a54255e577db4598e30a135361528c101683a5fcde7e8ba53f3456254be8f45fe3a56120ae96ea3773631fcb3873aa3abd91bcff00bd38bd43697a2e789e00da6077482e7b1b1a677b5afae4c54e6cbdf7377b694eb7d7a5b913476a5be923322d3de06060fd5e819635232a2cf4f0731da13b8546d1d6d4f8d75b9fce6c2341a71b0ea6f780df54bfdb0dd5cd9855179f602f9172307c7268724c3618e6817abd793adc214a0dc0bc616816632f27ea336fb56dfd").unwrap());
2149         }
2150
2151         #[test]
2152         fn test_failure_packet_onion() {
2153                 // Returning Errors test vectors from BOLT 4
2154
2155                 let onion_keys = build_test_onion_keys();
2156                 let onion_error = ChannelManager::build_failure_packet(&onion_keys[4].shared_secret, 0x2002, &[0; 0]);
2157                 assert_eq!(onion_error.encode(), hex::decode("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").unwrap());
2158
2159                 let onion_packet_1 = ChannelManager::encrypt_failure_packet(&onion_keys[4].shared_secret, &onion_error.encode()[..]);
2160                 assert_eq!(onion_packet_1.data, hex::decode("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").unwrap());
2161
2162                 let onion_packet_2 = ChannelManager::encrypt_failure_packet(&onion_keys[3].shared_secret, &onion_packet_1.data[..]);
2163                 assert_eq!(onion_packet_2.data, hex::decode("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").unwrap());
2164
2165                 let onion_packet_3 = ChannelManager::encrypt_failure_packet(&onion_keys[2].shared_secret, &onion_packet_2.data[..]);
2166                 assert_eq!(onion_packet_3.data, hex::decode("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").unwrap());
2167
2168                 let onion_packet_4 = ChannelManager::encrypt_failure_packet(&onion_keys[1].shared_secret, &onion_packet_3.data[..]);
2169                 assert_eq!(onion_packet_4.data, hex::decode("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").unwrap());
2170
2171                 let onion_packet_5 = ChannelManager::encrypt_failure_packet(&onion_keys[0].shared_secret, &onion_packet_4.data[..]);
2172                 assert_eq!(onion_packet_5.data, hex::decode("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").unwrap());
2173         }
2174
2175         fn confirm_transaction(chain: &chaininterface::ChainWatchInterfaceUtil, tx: &Transaction, chan_id: u32) {
2176                 assert!(chain.does_match_tx(tx));
2177                 let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2178                 chain.block_connected_checked(&header, 1, &[tx; 1], &[chan_id; 1]);
2179                 for i in 2..100 {
2180                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2181                         chain.block_connected_checked(&header, i, &[tx; 0], &[0; 0]);
2182                 }
2183         }
2184
2185         struct Node {
2186                 feeest: Arc<test_utils::TestFeeEstimator>,
2187                 chain_monitor: Arc<chaininterface::ChainWatchInterfaceUtil>,
2188                 tx_broadcaster: Arc<test_utils::TestBroadcaster>,
2189                 chan_monitor: Arc<test_utils::TestChannelMonitor>,
2190                 node_id: SecretKey,
2191                 node: Arc<ChannelManager>,
2192                 router: Router,
2193         }
2194
2195         static mut CHAN_COUNT: u32 = 0;
2196         fn create_chan_between_nodes(node_a: &Node, node_b: &Node) -> (msgs::ChannelAnnouncement, msgs::ChannelUpdate, msgs::ChannelUpdate, [u8; 32], Transaction) {
2197                 node_a.node.create_channel(node_b.node.get_our_node_id(), 100000, 10001, 42).unwrap();
2198
2199                 let events_1 = node_a.node.get_and_clear_pending_events();
2200                 assert_eq!(events_1.len(), 1);
2201                 let accept_chan = match events_1[0] {
2202                         Event::SendOpenChannel { ref node_id, ref msg } => {
2203                                 assert_eq!(*node_id, node_b.node.get_our_node_id());
2204                                 node_b.node.handle_open_channel(&node_a.node.get_our_node_id(), msg).unwrap()
2205                         },
2206                         _ => panic!("Unexpected event"),
2207                 };
2208
2209                 node_a.node.handle_accept_channel(&node_b.node.get_our_node_id(), &accept_chan).unwrap();
2210
2211                 let chan_id = unsafe { CHAN_COUNT };
2212                 let tx;
2213                 let funding_output;
2214
2215                 let events_2 = node_a.node.get_and_clear_pending_events();
2216                 assert_eq!(events_2.len(), 1);
2217                 match events_2[0] {
2218                         Event::FundingGenerationReady { ref temporary_channel_id, ref channel_value_satoshis, ref output_script, user_channel_id } => {
2219                                 assert_eq!(*channel_value_satoshis, 100000);
2220                                 assert_eq!(user_channel_id, 42);
2221
2222                                 tx = Transaction { version: chan_id as u32, lock_time: 0, input: Vec::new(), output: vec![TxOut {
2223                                         value: *channel_value_satoshis, script_pubkey: output_script.clone(),
2224                                 }]};
2225                                 funding_output = OutPoint::new(Sha256dHash::from_data(&serialize(&tx).unwrap()[..]), 0);
2226
2227                                 node_a.node.funding_transaction_generated(&temporary_channel_id, funding_output);
2228                                 let mut added_monitors = node_a.chan_monitor.added_monitors.lock().unwrap();
2229                                 assert_eq!(added_monitors.len(), 1);
2230                                 assert_eq!(added_monitors[0].0, funding_output);
2231                                 added_monitors.clear();
2232                         },
2233                         _ => panic!("Unexpected event"),
2234                 }
2235
2236                 let events_3 = node_a.node.get_and_clear_pending_events();
2237                 assert_eq!(events_3.len(), 1);
2238                 let funding_signed = match events_3[0] {
2239                         Event::SendFundingCreated { ref node_id, ref msg } => {
2240                                 assert_eq!(*node_id, node_b.node.get_our_node_id());
2241                                 let res = node_b.node.handle_funding_created(&node_a.node.get_our_node_id(), msg).unwrap();
2242                                 let mut added_monitors = node_b.chan_monitor.added_monitors.lock().unwrap();
2243                                 assert_eq!(added_monitors.len(), 1);
2244                                 assert_eq!(added_monitors[0].0, funding_output);
2245                                 added_monitors.clear();
2246                                 res
2247                         },
2248                         _ => panic!("Unexpected event"),
2249                 };
2250
2251                 node_a.node.handle_funding_signed(&node_b.node.get_our_node_id(), &funding_signed).unwrap();
2252                 {
2253                         let mut added_monitors = node_a.chan_monitor.added_monitors.lock().unwrap();
2254                         assert_eq!(added_monitors.len(), 1);
2255                         assert_eq!(added_monitors[0].0, funding_output);
2256                         added_monitors.clear();
2257                 }
2258
2259                 let events_4 = node_a.node.get_and_clear_pending_events();
2260                 assert_eq!(events_4.len(), 1);
2261                 match events_4[0] {
2262                         Event::FundingBroadcastSafe { ref funding_txo, user_channel_id } => {
2263                                 assert_eq!(user_channel_id, 42);
2264                                 assert_eq!(*funding_txo, funding_output);
2265                         },
2266                         _ => panic!("Unexpected event"),
2267                 };
2268
2269                 confirm_transaction(&node_a.chain_monitor, &tx, chan_id);
2270                 let events_5 = node_a.node.get_and_clear_pending_events();
2271                 assert_eq!(events_5.len(), 1);
2272                 match events_5[0] {
2273                         Event::SendFundingLocked { ref node_id, ref msg, ref announcement_sigs } => {
2274                                 assert_eq!(*node_id, node_b.node.get_our_node_id());
2275                                 assert!(announcement_sigs.is_none());
2276                                 node_b.node.handle_funding_locked(&node_a.node.get_our_node_id(), msg).unwrap()
2277                         },
2278                         _ => panic!("Unexpected event"),
2279                 };
2280
2281                 let channel_id;
2282
2283                 confirm_transaction(&node_b.chain_monitor, &tx, chan_id);
2284                 let events_6 = node_b.node.get_and_clear_pending_events();
2285                 assert_eq!(events_6.len(), 1);
2286                 let as_announcement_sigs = match events_6[0] {
2287                         Event::SendFundingLocked { ref node_id, ref msg, ref announcement_sigs } => {
2288                                 assert_eq!(*node_id, node_a.node.get_our_node_id());
2289                                 channel_id = msg.channel_id.clone();
2290                                 let as_announcement_sigs = node_a.node.handle_funding_locked(&node_b.node.get_our_node_id(), msg).unwrap().unwrap();
2291                                 node_a.node.handle_announcement_signatures(&node_b.node.get_our_node_id(), &(*announcement_sigs).clone().unwrap()).unwrap();
2292                                 as_announcement_sigs
2293                         },
2294                         _ => panic!("Unexpected event"),
2295                 };
2296
2297                 let events_7 = node_a.node.get_and_clear_pending_events();
2298                 assert_eq!(events_7.len(), 1);
2299                 let (announcement, as_update) = match events_7[0] {
2300                         Event::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
2301                                 (msg, update_msg)
2302                         },
2303                         _ => panic!("Unexpected event"),
2304                 };
2305
2306                 node_b.node.handle_announcement_signatures(&node_a.node.get_our_node_id(), &as_announcement_sigs).unwrap();
2307                 let events_8 = node_b.node.get_and_clear_pending_events();
2308                 assert_eq!(events_8.len(), 1);
2309                 let bs_update = match events_8[0] {
2310                         Event::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
2311                                 assert!(*announcement == *msg);
2312                                 update_msg
2313                         },
2314                         _ => panic!("Unexpected event"),
2315                 };
2316
2317                 unsafe {
2318                         CHAN_COUNT += 1;
2319                 }
2320
2321                 ((*announcement).clone(), (*as_update).clone(), (*bs_update).clone(), channel_id, tx)
2322         }
2323
2324         fn create_announced_chan_between_nodes(nodes: &Vec<Node>, a: usize, b: usize) -> (msgs::ChannelUpdate, msgs::ChannelUpdate, [u8; 32], Transaction) {
2325                 let chan_announcement = create_chan_between_nodes(&nodes[a], &nodes[b]);
2326                 for node in nodes {
2327                         assert!(node.router.handle_channel_announcement(&chan_announcement.0).unwrap());
2328                         node.router.handle_channel_update(&chan_announcement.1).unwrap();
2329                         node.router.handle_channel_update(&chan_announcement.2).unwrap();
2330                 }
2331                 (chan_announcement.1, chan_announcement.2, chan_announcement.3, chan_announcement.4)
2332         }
2333
2334         fn close_channel(outbound_node: &Node, inbound_node: &Node, channel_id: &[u8; 32], funding_tx: Transaction, close_inbound_first: bool) -> (msgs::ChannelUpdate, msgs::ChannelUpdate) {
2335                 let (node_a, broadcaster_a) = if close_inbound_first { (&inbound_node.node, &inbound_node.tx_broadcaster) } else { (&outbound_node.node, &outbound_node.tx_broadcaster) };
2336                 let (node_b, broadcaster_b) = if close_inbound_first { (&outbound_node.node, &outbound_node.tx_broadcaster) } else { (&inbound_node.node, &inbound_node.tx_broadcaster) };
2337                 let (tx_a, tx_b);
2338
2339                 node_a.close_channel(channel_id).unwrap();
2340                 let events_1 = node_a.get_and_clear_pending_events();
2341                 assert_eq!(events_1.len(), 1);
2342                 let shutdown_a = match events_1[0] {
2343                         Event::SendShutdown { ref node_id, ref msg } => {
2344                                 assert_eq!(node_id, &node_b.get_our_node_id());
2345                                 msg.clone()
2346                         },
2347                         _ => panic!("Unexpected event"),
2348                 };
2349
2350                 let (shutdown_b, mut closing_signed_b) = node_b.handle_shutdown(&node_a.get_our_node_id(), &shutdown_a).unwrap();
2351                 if !close_inbound_first {
2352                         assert!(closing_signed_b.is_none());
2353                 }
2354                 let (empty_a, mut closing_signed_a) = node_a.handle_shutdown(&node_b.get_our_node_id(), &shutdown_b.unwrap()).unwrap();
2355                 assert!(empty_a.is_none());
2356                 if close_inbound_first {
2357                         assert!(closing_signed_a.is_none());
2358                         closing_signed_a = node_a.handle_closing_signed(&node_b.get_our_node_id(), &closing_signed_b.unwrap()).unwrap();
2359                         assert_eq!(broadcaster_a.txn_broadcasted.lock().unwrap().len(), 1);
2360                         tx_a = broadcaster_a.txn_broadcasted.lock().unwrap().remove(0);
2361
2362                         let empty_b = node_b.handle_closing_signed(&node_a.get_our_node_id(), &closing_signed_a.unwrap()).unwrap();
2363                         assert!(empty_b.is_none());
2364                         assert_eq!(broadcaster_b.txn_broadcasted.lock().unwrap().len(), 1);
2365                         tx_b = broadcaster_b.txn_broadcasted.lock().unwrap().remove(0);
2366                 } else {
2367                         closing_signed_b = node_b.handle_closing_signed(&node_a.get_our_node_id(), &closing_signed_a.unwrap()).unwrap();
2368                         assert_eq!(broadcaster_b.txn_broadcasted.lock().unwrap().len(), 1);
2369                         tx_b = broadcaster_b.txn_broadcasted.lock().unwrap().remove(0);
2370
2371                         let empty_a2 = node_a.handle_closing_signed(&node_b.get_our_node_id(), &closing_signed_b.unwrap()).unwrap();
2372                         assert!(empty_a2.is_none());
2373                         assert_eq!(broadcaster_a.txn_broadcasted.lock().unwrap().len(), 1);
2374                         tx_a = broadcaster_a.txn_broadcasted.lock().unwrap().remove(0);
2375                 }
2376                 assert_eq!(tx_a, tx_b);
2377                 let mut funding_tx_map = HashMap::new();
2378                 funding_tx_map.insert(funding_tx.txid(), funding_tx);
2379                 tx_a.verify(&funding_tx_map).unwrap();
2380
2381                 let events_2 = node_a.get_and_clear_pending_events();
2382                 assert_eq!(events_2.len(), 1);
2383                 let as_update = match events_2[0] {
2384                         Event::BroadcastChannelUpdate { ref msg } => {
2385                                 msg.clone()
2386                         },
2387                         _ => panic!("Unexpected event"),
2388                 };
2389
2390                 let events_3 = node_b.get_and_clear_pending_events();
2391                 assert_eq!(events_3.len(), 1);
2392                 let bs_update = match events_3[0] {
2393                         Event::BroadcastChannelUpdate { ref msg } => {
2394                                 msg.clone()
2395                         },
2396                         _ => panic!("Unexpected event"),
2397                 };
2398
2399                 (as_update, bs_update)
2400         }
2401
2402         struct SendEvent {
2403                 node_id: PublicKey,
2404                 msgs: Vec<msgs::UpdateAddHTLC>,
2405                 commitment_msg: msgs::CommitmentSigned,
2406         }
2407         impl SendEvent {
2408                 fn from_event(event: Event) -> SendEvent {
2409                         match event {
2410                                 Event::SendHTLCs { node_id, msgs, commitment_msg } => {
2411                                         SendEvent { node_id: node_id, msgs: msgs, commitment_msg: commitment_msg }
2412                                 },
2413                                 _ => panic!("Unexpected event type!"),
2414                         }
2415                 }
2416         }
2417
2418         static mut PAYMENT_COUNT: u8 = 0;
2419         fn send_along_route(origin_node: &Node, route: Route, expected_route: &[&Node], recv_value: u64) -> ([u8; 32], [u8; 32]) {
2420                 let our_payment_preimage = unsafe { [PAYMENT_COUNT; 32] };
2421                 unsafe { PAYMENT_COUNT += 1 };
2422                 let our_payment_hash = {
2423                         let mut sha = Sha256::new();
2424                         sha.input(&our_payment_preimage[..]);
2425                         let mut ret = [0; 32];
2426                         sha.result(&mut ret);
2427                         ret
2428                 };
2429
2430                 let mut payment_event = {
2431                         origin_node.node.send_payment(route, our_payment_hash).unwrap();
2432                         {
2433                                 let mut added_monitors = origin_node.chan_monitor.added_monitors.lock().unwrap();
2434                                 assert_eq!(added_monitors.len(), 1);
2435                                 added_monitors.clear();
2436                         }
2437
2438                         let mut events = origin_node.node.get_and_clear_pending_events();
2439                         assert_eq!(events.len(), 1);
2440                         SendEvent::from_event(events.remove(0))
2441                 };
2442                 let mut prev_node = origin_node;
2443
2444                 for (idx, &node) in expected_route.iter().enumerate() {
2445                         assert_eq!(node.node.get_our_node_id(), payment_event.node_id);
2446
2447                         node.node.handle_update_add_htlc(&prev_node.node.get_our_node_id(), &payment_event.msgs[0]).unwrap();
2448                         {
2449                                 let added_monitors = node.chan_monitor.added_monitors.lock().unwrap();
2450                                 assert_eq!(added_monitors.len(), 0);
2451                         }
2452
2453                         let revoke_and_ack = node.node.handle_commitment_signed(&prev_node.node.get_our_node_id(), &payment_event.commitment_msg).unwrap();
2454                         {
2455                                 let mut added_monitors = node.chan_monitor.added_monitors.lock().unwrap();
2456                                 assert_eq!(added_monitors.len(), 1);
2457                                 added_monitors.clear();
2458                         }
2459                         assert!(prev_node.node.handle_revoke_and_ack(&node.node.get_our_node_id(), &revoke_and_ack.0).unwrap().is_none());
2460                         let prev_revoke_and_ack = prev_node.node.handle_commitment_signed(&node.node.get_our_node_id(), &revoke_and_ack.1.unwrap()).unwrap();
2461                         {
2462                                 let mut added_monitors = prev_node.chan_monitor.added_monitors.lock().unwrap();
2463                                 assert_eq!(added_monitors.len(), 2);
2464                                 added_monitors.clear();
2465                         }
2466                         assert!(node.node.handle_revoke_and_ack(&prev_node.node.get_our_node_id(), &prev_revoke_and_ack.0).unwrap().is_none());
2467                         assert!(prev_revoke_and_ack.1.is_none());
2468                         {
2469                                 let mut added_monitors = node.chan_monitor.added_monitors.lock().unwrap();
2470                                 assert_eq!(added_monitors.len(), 1);
2471                                 added_monitors.clear();
2472                         }
2473
2474                         let events_1 = node.node.get_and_clear_pending_events();
2475                         assert_eq!(events_1.len(), 1);
2476                         match events_1[0] {
2477                                 Event::PendingHTLCsForwardable { .. } => { },
2478                                 _ => panic!("Unexpected event"),
2479                         };
2480
2481                         node.node.channel_state.lock().unwrap().next_forward = Instant::now();
2482                         node.node.process_pending_htlc_forwards();
2483
2484                         let mut events_2 = node.node.get_and_clear_pending_events();
2485                         assert_eq!(events_2.len(), 1);
2486                         if idx == expected_route.len() - 1 {
2487                                 match events_2[0] {
2488                                         Event::PaymentReceived { ref payment_hash, amt } => {
2489                                                 assert_eq!(our_payment_hash, *payment_hash);
2490                                                 assert_eq!(amt, recv_value);
2491                                         },
2492                                         _ => panic!("Unexpected event"),
2493                                 }
2494                         } else {
2495                                 {
2496                                         let mut added_monitors = node.chan_monitor.added_monitors.lock().unwrap();
2497                                         assert_eq!(added_monitors.len(), 1);
2498                                         added_monitors.clear();
2499                                 }
2500                                 payment_event = SendEvent::from_event(events_2.remove(0));
2501                                 assert_eq!(payment_event.msgs.len(), 1);
2502                         }
2503
2504                         prev_node = node;
2505                 }
2506
2507                 (our_payment_preimage, our_payment_hash)
2508         }
2509
2510         fn claim_payment(origin_node: &Node, expected_route: &[&Node], our_payment_preimage: [u8; 32]) {
2511                 assert!(expected_route.last().unwrap().node.claim_funds(our_payment_preimage));
2512                 {
2513                         let mut added_monitors = expected_route.last().unwrap().chan_monitor.added_monitors.lock().unwrap();
2514                         assert_eq!(added_monitors.len(), 1);
2515                         added_monitors.clear();
2516                 }
2517
2518                 let mut next_msgs: Option<(msgs::UpdateFulfillHTLC, msgs::CommitmentSigned)> = None;
2519                 macro_rules! update_fulfill_dance {
2520                         ($node: expr, $prev_node: expr, $last_node: expr) => {
2521                                 {
2522                                         $node.node.handle_update_fulfill_htlc(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0).unwrap();
2523                                         {
2524                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2525                                                 if $last_node {
2526                                                         assert_eq!(added_monitors.len(), 0);
2527                                                 } else {
2528                                                         assert_eq!(added_monitors.len(), 1);
2529                                                 }
2530                                                 added_monitors.clear();
2531                                         }
2532                                         let revoke_and_commit = $node.node.handle_commitment_signed(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().1).unwrap();
2533                                         {
2534                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2535                                                 assert_eq!(added_monitors.len(), 1);
2536                                                 added_monitors.clear();
2537                                         }
2538                                         assert!($prev_node.node.handle_revoke_and_ack(&$node.node.get_our_node_id(), &revoke_and_commit.0).unwrap().is_none());
2539                                         let revoke_and_ack = $prev_node.node.handle_commitment_signed(&$node.node.get_our_node_id(), &revoke_and_commit.1.unwrap()).unwrap();
2540                                         assert!(revoke_and_ack.1.is_none());
2541                                         {
2542                                                 let mut added_monitors = $prev_node.chan_monitor.added_monitors.lock().unwrap();
2543                                                 assert_eq!(added_monitors.len(), 2);
2544                                                 added_monitors.clear();
2545                                         }
2546                                         assert!($node.node.handle_revoke_and_ack(&$prev_node.node.get_our_node_id(), &revoke_and_ack.0).unwrap().is_none());
2547                                         {
2548                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2549                                                 assert_eq!(added_monitors.len(), 1);
2550                                                 added_monitors.clear();
2551                                         }
2552                                 }
2553                         }
2554                 }
2555
2556                 let mut expected_next_node = expected_route.last().unwrap().node.get_our_node_id();
2557                 let mut prev_node = expected_route.last().unwrap();
2558                 for node in expected_route.iter().rev() {
2559                         assert_eq!(expected_next_node, node.node.get_our_node_id());
2560                         if next_msgs.is_some() {
2561                                 update_fulfill_dance!(node, prev_node, false);
2562                         }
2563
2564                         let events = node.node.get_and_clear_pending_events();
2565                         assert_eq!(events.len(), 1);
2566                         match events[0] {
2567                                 Event::SendFulfillHTLC { ref node_id, ref msg, ref commitment_msg } => {
2568                                         expected_next_node = node_id.clone();
2569                                         next_msgs = Some((msg.clone(), commitment_msg.clone()));
2570                                 },
2571                                 _ => panic!("Unexpected event"),
2572                         };
2573
2574                         prev_node = node;
2575                 }
2576
2577                 assert_eq!(expected_next_node, origin_node.node.get_our_node_id());
2578                 update_fulfill_dance!(origin_node, expected_route.first().unwrap(), true);
2579
2580                 let events = origin_node.node.get_and_clear_pending_events();
2581                 assert_eq!(events.len(), 1);
2582                 match events[0] {
2583                         Event::PaymentSent { payment_preimage } => {
2584                                 assert_eq!(payment_preimage, our_payment_preimage);
2585                         },
2586                         _ => panic!("Unexpected event"),
2587                 }
2588         }
2589
2590         const TEST_FINAL_CLTV: u32 = 32;
2591
2592         fn route_payment(origin_node: &Node, expected_route: &[&Node], recv_value: u64) -> ([u8; 32], [u8; 32]) {
2593                 let route = origin_node.router.get_route(&expected_route.last().unwrap().node.get_our_node_id(), None, &Vec::new(), recv_value, TEST_FINAL_CLTV).unwrap();
2594                 assert_eq!(route.hops.len(), expected_route.len());
2595                 for (node, hop) in expected_route.iter().zip(route.hops.iter()) {
2596                         assert_eq!(hop.pubkey, node.node.get_our_node_id());
2597                 }
2598
2599                 send_along_route(origin_node, route, expected_route, recv_value)
2600         }
2601
2602         fn route_over_limit(origin_node: &Node, expected_route: &[&Node], recv_value: u64) {
2603                 let route = origin_node.router.get_route(&expected_route.last().unwrap().node.get_our_node_id(), None, &Vec::new(), recv_value, TEST_FINAL_CLTV).unwrap();
2604                 assert_eq!(route.hops.len(), expected_route.len());
2605                 for (node, hop) in expected_route.iter().zip(route.hops.iter()) {
2606                         assert_eq!(hop.pubkey, node.node.get_our_node_id());
2607                 }
2608
2609                 let our_payment_preimage = unsafe { [PAYMENT_COUNT; 32] };
2610                 unsafe { PAYMENT_COUNT += 1 };
2611                 let our_payment_hash = {
2612                         let mut sha = Sha256::new();
2613                         sha.input(&our_payment_preimage[..]);
2614                         let mut ret = [0; 32];
2615                         sha.result(&mut ret);
2616                         ret
2617                 };
2618
2619                 let err = origin_node.node.send_payment(route, our_payment_hash).err().unwrap();
2620                 assert_eq!(err.err, "Cannot send value that would put us over our max HTLC value in flight");
2621         }
2622
2623         fn send_payment(origin: &Node, expected_route: &[&Node], recv_value: u64) {
2624                 let our_payment_preimage = route_payment(&origin, expected_route, recv_value).0;
2625                 claim_payment(&origin, expected_route, our_payment_preimage);
2626         }
2627
2628         fn fail_payment(origin_node: &Node, expected_route: &[&Node], our_payment_hash: [u8; 32]) {
2629                 assert!(expected_route.last().unwrap().node.fail_htlc_backwards(&our_payment_hash));
2630                 {
2631                         let mut added_monitors = expected_route.last().unwrap().chan_monitor.added_monitors.lock().unwrap();
2632                         assert_eq!(added_monitors.len(), 1);
2633                         added_monitors.clear();
2634                 }
2635
2636                 let mut next_msgs: Option<(msgs::UpdateFailHTLC, msgs::CommitmentSigned)> = None;
2637                 macro_rules! update_fail_dance {
2638                         ($node: expr, $prev_node: expr, $last_node: expr) => {
2639                                 {
2640                                         $node.node.handle_update_fail_htlc(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0).unwrap();
2641                                         let revoke_and_commit = $node.node.handle_commitment_signed(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().1).unwrap();
2642
2643                                         {
2644                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2645                                                 assert_eq!(added_monitors.len(), 1);
2646                                                 added_monitors.clear();
2647                                         }
2648                                         assert!($prev_node.node.handle_revoke_and_ack(&$node.node.get_our_node_id(), &revoke_and_commit.0).unwrap().is_none());
2649                                         {
2650                                                 let mut added_monitors = $prev_node.chan_monitor.added_monitors.lock().unwrap();
2651                                                 assert_eq!(added_monitors.len(), 1);
2652                                                 added_monitors.clear();
2653                                         }
2654                                         let revoke_and_ack = $prev_node.node.handle_commitment_signed(&$node.node.get_our_node_id(), &revoke_and_commit.1.unwrap()).unwrap();
2655                                         {
2656                                                 let mut added_monitors = $prev_node.chan_monitor.added_monitors.lock().unwrap();
2657                                                 assert_eq!(added_monitors.len(), 1);
2658                                                 added_monitors.clear();
2659                                         }
2660                                         assert!(revoke_and_ack.1.is_none());
2661                                         assert!($node.node.get_and_clear_pending_events().is_empty());
2662                                         assert!($node.node.handle_revoke_and_ack(&$prev_node.node.get_our_node_id(), &revoke_and_ack.0).unwrap().is_none());
2663                                         {
2664                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2665                                                 if $last_node {
2666                                                         assert_eq!(added_monitors.len(), 1);
2667                                                 } else {
2668                                                         assert_eq!(added_monitors.len(), 2);
2669                                                         assert!(added_monitors[0].0 != added_monitors[1].0);
2670                                                 }
2671                                                 added_monitors.clear();
2672                                         }
2673                                 }
2674                         }
2675                 }
2676
2677                 let mut expected_next_node = expected_route.last().unwrap().node.get_our_node_id();
2678                 let mut prev_node = expected_route.last().unwrap();
2679                 for node in expected_route.iter().rev() {
2680                         assert_eq!(expected_next_node, node.node.get_our_node_id());
2681                         if next_msgs.is_some() {
2682                                 update_fail_dance!(node, prev_node, false);
2683                         }
2684
2685                         let events = node.node.get_and_clear_pending_events();
2686                         assert_eq!(events.len(), 1);
2687                         match events[0] {
2688                                 Event::SendFailHTLC { ref node_id, ref msg, ref commitment_msg } => {
2689                                         expected_next_node = node_id.clone();
2690                                         next_msgs = Some((msg.clone(), commitment_msg.clone()));
2691                                 },
2692                                 _ => panic!("Unexpected event"),
2693                         };
2694
2695                         prev_node = node;
2696                 }
2697
2698                 assert_eq!(expected_next_node, origin_node.node.get_our_node_id());
2699                 update_fail_dance!(origin_node, expected_route.first().unwrap(), true);
2700
2701                 let events = origin_node.node.get_and_clear_pending_events();
2702                 assert_eq!(events.len(), 1);
2703                 match events[0] {
2704                         Event::PaymentFailed { payment_hash } => {
2705                                 assert_eq!(payment_hash, our_payment_hash);
2706                         },
2707                         _ => panic!("Unexpected event"),
2708                 }
2709         }
2710
2711         fn create_network(node_count: usize) -> Vec<Node> {
2712                 let mut nodes = Vec::new();
2713                 let mut rng = thread_rng();
2714                 let secp_ctx = Secp256k1::new();
2715                 let logger: Arc<Logger> = Arc::new(test_utils::TestLogger::new());
2716
2717                 for _ in 0..node_count {
2718                         let feeest = Arc::new(test_utils::TestFeeEstimator { sat_per_kw: 253 });
2719                         let chain_monitor = Arc::new(chaininterface::ChainWatchInterfaceUtil::new(Arc::clone(&logger)));
2720                         let tx_broadcaster = Arc::new(test_utils::TestBroadcaster{txn_broadcasted: Mutex::new(Vec::new())});
2721                         let chan_monitor = Arc::new(test_utils::TestChannelMonitor::new(chain_monitor.clone(), tx_broadcaster.clone()));
2722                         let node_id = {
2723                                 let mut key_slice = [0; 32];
2724                                 rng.fill_bytes(&mut key_slice);
2725                                 SecretKey::from_slice(&secp_ctx, &key_slice).unwrap()
2726                         };
2727                         let node = ChannelManager::new(node_id.clone(), 0, true, Network::Testnet, feeest.clone(), chan_monitor.clone(), chain_monitor.clone(), tx_broadcaster.clone(), Arc::clone(&logger)).unwrap();
2728                         let router = Router::new(PublicKey::from_secret_key(&secp_ctx, &node_id).unwrap(), Arc::clone(&logger));
2729                         nodes.push(Node { feeest, chain_monitor, tx_broadcaster, chan_monitor, node_id, node, router });
2730                 }
2731
2732                 nodes
2733         }
2734
2735         #[test]
2736         fn fake_network_test() {
2737                 // Simple test which builds a network of ChannelManagers, connects them to each other, and
2738                 // tests that payments get routed and transactions broadcast in semi-reasonable ways.
2739                 let nodes = create_network(4);
2740
2741                 // Create some initial channels
2742                 let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1);
2743                 let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2);
2744                 let chan_3 = create_announced_chan_between_nodes(&nodes, 2, 3);
2745
2746                 // Rebalance the network a bit by relaying one payment through all the channels...
2747                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000);
2748                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000);
2749                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000);
2750                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 8000000);
2751
2752                 // Send some more payments
2753                 send_payment(&nodes[1], &vec!(&nodes[2], &nodes[3])[..], 1000000);
2754                 send_payment(&nodes[3], &vec!(&nodes[2], &nodes[1], &nodes[0])[..], 1000000);
2755                 send_payment(&nodes[3], &vec!(&nodes[2], &nodes[1])[..], 1000000);
2756
2757                 // Test failure packets
2758                 let payment_hash_1 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], 1000000).1;
2759                 fail_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3])[..], payment_hash_1);
2760
2761                 // Add a new channel that skips 3
2762                 let chan_4 = create_announced_chan_between_nodes(&nodes, 1, 3);
2763
2764                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 1000000);
2765                 send_payment(&nodes[2], &vec!(&nodes[3])[..], 1000000);
2766                 send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000);
2767                 send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000);
2768                 send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000);
2769                 send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000);
2770                 send_payment(&nodes[1], &vec!(&nodes[3])[..], 8000000);
2771
2772                 // Do some rebalance loop payments, simultaneously
2773                 let mut hops = Vec::with_capacity(3);
2774                 hops.push(RouteHop {
2775                         pubkey: nodes[2].node.get_our_node_id(),
2776                         short_channel_id: chan_2.0.contents.short_channel_id,
2777                         fee_msat: 0,
2778                         cltv_expiry_delta: chan_3.0.contents.cltv_expiry_delta as u32
2779                 });
2780                 hops.push(RouteHop {
2781                         pubkey: nodes[3].node.get_our_node_id(),
2782                         short_channel_id: chan_3.0.contents.short_channel_id,
2783                         fee_msat: 0,
2784                         cltv_expiry_delta: chan_4.1.contents.cltv_expiry_delta as u32
2785                 });
2786                 hops.push(RouteHop {
2787                         pubkey: nodes[1].node.get_our_node_id(),
2788                         short_channel_id: chan_4.0.contents.short_channel_id,
2789                         fee_msat: 1000000,
2790                         cltv_expiry_delta: TEST_FINAL_CLTV,
2791                 });
2792                 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;
2793                 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;
2794                 let payment_preimage_1 = send_along_route(&nodes[1], Route { hops }, &vec!(&nodes[2], &nodes[3], &nodes[1])[..], 1000000).0;
2795
2796                 let mut hops = Vec::with_capacity(3);
2797                 hops.push(RouteHop {
2798                         pubkey: nodes[3].node.get_our_node_id(),
2799                         short_channel_id: chan_4.0.contents.short_channel_id,
2800                         fee_msat: 0,
2801                         cltv_expiry_delta: chan_3.1.contents.cltv_expiry_delta as u32
2802                 });
2803                 hops.push(RouteHop {
2804                         pubkey: nodes[2].node.get_our_node_id(),
2805                         short_channel_id: chan_3.0.contents.short_channel_id,
2806                         fee_msat: 0,
2807                         cltv_expiry_delta: chan_2.1.contents.cltv_expiry_delta as u32
2808                 });
2809                 hops.push(RouteHop {
2810                         pubkey: nodes[1].node.get_our_node_id(),
2811                         short_channel_id: chan_2.0.contents.short_channel_id,
2812                         fee_msat: 1000000,
2813                         cltv_expiry_delta: TEST_FINAL_CLTV,
2814                 });
2815                 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;
2816                 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;
2817                 let payment_hash_2 = send_along_route(&nodes[1], Route { hops }, &vec!(&nodes[3], &nodes[2], &nodes[1])[..], 1000000).1;
2818
2819                 // Claim the rebalances...
2820                 fail_payment(&nodes[1], &vec!(&nodes[3], &nodes[2], &nodes[1])[..], payment_hash_2);
2821                 claim_payment(&nodes[1], &vec!(&nodes[2], &nodes[3], &nodes[1])[..], payment_preimage_1);
2822
2823                 // Add a duplicate new channel from 2 to 4
2824                 let chan_5 = create_announced_chan_between_nodes(&nodes, 1, 3);
2825
2826                 // Send some payments across both channels
2827                 let payment_preimage_3 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
2828                 let payment_preimage_4 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
2829                 let payment_preimage_5 = route_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000).0;
2830
2831                 route_over_limit(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], 3000000);
2832
2833                 //TODO: Test that routes work again here as we've been notified that the channel is full
2834
2835                 claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_3);
2836                 claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_4);
2837                 claim_payment(&nodes[0], &vec!(&nodes[1], &nodes[3])[..], payment_preimage_5);
2838
2839                 // Close down the channels...
2840                 close_channel(&nodes[0], &nodes[1], &chan_1.2, chan_1.3, true);
2841                 close_channel(&nodes[1], &nodes[2], &chan_2.2, chan_2.3, false);
2842                 close_channel(&nodes[2], &nodes[3], &chan_3.2, chan_3.3, true);
2843                 close_channel(&nodes[1], &nodes[3], &chan_4.2, chan_4.3, false);
2844                 close_channel(&nodes[1], &nodes[3], &chan_5.2, chan_5.3, false);
2845
2846                 // Check that we processed all pending events
2847                 for node in nodes {
2848                         assert_eq!(node.node.get_and_clear_pending_events().len(), 0);
2849                         assert_eq!(node.chan_monitor.added_monitors.lock().unwrap().len(), 0);
2850                 }
2851         }
2852
2853         #[derive(PartialEq)]
2854         enum HTLCType { NONE, TIMEOUT, SUCCESS }
2855         fn test_txn_broadcast(node: &Node, chan: &(msgs::ChannelUpdate, msgs::ChannelUpdate, [u8; 32], Transaction), commitment_tx: Option<Transaction>, has_htlc_tx: HTLCType) -> Vec<Transaction> {
2856                 let mut node_txn = node.tx_broadcaster.txn_broadcasted.lock().unwrap();
2857                 assert!(node_txn.len() >= if commitment_tx.is_some() { 0 } else { 1 } + if has_htlc_tx == HTLCType::NONE { 0 } else { 1 });
2858
2859                 let mut res = Vec::with_capacity(2);
2860
2861                 if let Some(explicit_tx) = commitment_tx {
2862                         res.push(explicit_tx.clone());
2863                 } else {
2864                         for tx in node_txn.iter() {
2865                                 if tx.input.len() == 1 && tx.input[0].prev_hash == chan.3.txid() {
2866                                         let mut funding_tx_map = HashMap::new();
2867                                         funding_tx_map.insert(chan.3.txid(), chan.3.clone());
2868                                         tx.verify(&funding_tx_map).unwrap();
2869                                         res.push(tx.clone());
2870                                 }
2871                         }
2872                 }
2873                 assert_eq!(res.len(), 1);
2874
2875                 if has_htlc_tx != HTLCType::NONE {
2876                         for tx in node_txn.iter() {
2877                                 if tx.input.len() == 1 && tx.input[0].prev_hash == res[0].txid() {
2878                                         let mut funding_tx_map = HashMap::new();
2879                                         funding_tx_map.insert(res[0].txid(), res[0].clone());
2880                                         tx.verify(&funding_tx_map).unwrap();
2881                                         if has_htlc_tx == HTLCType::TIMEOUT {
2882                                                 assert!(tx.lock_time != 0);
2883                                         } else {
2884                                                 assert!(tx.lock_time == 0);
2885                                         }
2886                                         res.push(tx.clone());
2887                                         break;
2888                                 }
2889                         }
2890                         assert_eq!(res.len(), 2);
2891                 }
2892                 node_txn.clear();
2893                 res
2894         }
2895
2896         fn check_preimage_claim(node: &Node, prev_txn: &Vec<Transaction>) -> Vec<Transaction> {
2897                 let mut node_txn = node.tx_broadcaster.txn_broadcasted.lock().unwrap();
2898
2899                 assert!(node_txn.len() >= 1);
2900                 assert_eq!(node_txn[0].input.len(), 1);
2901                 let mut found_prev = false;
2902
2903                 for tx in prev_txn {
2904                         if node_txn[0].input[0].prev_hash == tx.txid() {
2905                                 let mut funding_tx_map = HashMap::new();
2906                                 funding_tx_map.insert(tx.txid(), tx.clone());
2907                                 node_txn[0].verify(&funding_tx_map).unwrap();
2908
2909                                 assert!(node_txn[0].input[0].witness[2].len() > 106); // must spend an htlc output
2910                                 assert_eq!(tx.input.len(), 1); // must spend a commitment tx
2911
2912                                 found_prev = true;
2913                                 break;
2914                         }
2915                 }
2916                 assert!(found_prev);
2917
2918                 let mut res = Vec::new();
2919                 mem::swap(&mut *node_txn, &mut res);
2920                 res
2921         }
2922
2923         fn get_announce_close_broadcast_events(nodes: &Vec<Node>, a: usize, b: usize) {
2924                 let events_1 = nodes[a].node.get_and_clear_pending_events();
2925                 assert_eq!(events_1.len(), 1);
2926                 let as_update = match events_1[0] {
2927                         Event::BroadcastChannelUpdate { ref msg } => {
2928                                 msg.clone()
2929                         },
2930                         _ => panic!("Unexpected event"),
2931                 };
2932
2933                 let events_2 = nodes[b].node.get_and_clear_pending_events();
2934                 assert_eq!(events_2.len(), 1);
2935                 let bs_update = match events_2[0] {
2936                         Event::BroadcastChannelUpdate { ref msg } => {
2937                                 msg.clone()
2938                         },
2939                         _ => panic!("Unexpected event"),
2940                 };
2941
2942                 for node in nodes {
2943                         node.router.handle_channel_update(&as_update).unwrap();
2944                         node.router.handle_channel_update(&bs_update).unwrap();
2945                 }
2946         }
2947
2948         #[test]
2949         fn channel_monitor_network_test() {
2950                 // Simple test which builds a network of ChannelManagers, connects them to each other, and
2951                 // tests that ChannelMonitor is able to recover from various states.
2952                 let nodes = create_network(5);
2953
2954                 // Create some initial channels
2955                 let chan_1 = create_announced_chan_between_nodes(&nodes, 0, 1);
2956                 let chan_2 = create_announced_chan_between_nodes(&nodes, 1, 2);
2957                 let chan_3 = create_announced_chan_between_nodes(&nodes, 2, 3);
2958                 let chan_4 = create_announced_chan_between_nodes(&nodes, 3, 4);
2959
2960                 // Rebalance the network a bit by relaying one payment through all the channels...
2961                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000);
2962                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000);
2963                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000);
2964                 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2], &nodes[3], &nodes[4])[..], 8000000);
2965
2966                 // Simple case with no pending HTLCs:
2967                 nodes[1].node.peer_disconnected(&nodes[0].node.get_our_node_id(), true);
2968                 {
2969                         let mut node_txn = test_txn_broadcast(&nodes[1], &chan_1, None, HTLCType::NONE);
2970                         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2971                         nodes[0].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![node_txn.drain(..).next().unwrap()] }, 1);
2972                         test_txn_broadcast(&nodes[0], &chan_1, None, HTLCType::NONE);
2973                 }
2974                 get_announce_close_broadcast_events(&nodes, 0, 1);
2975                 assert_eq!(nodes[0].node.list_channels().len(), 0);
2976                 assert_eq!(nodes[1].node.list_channels().len(), 1);
2977
2978                 // One pending HTLC is discarded by the force-close:
2979                 let payment_preimage_1 = route_payment(&nodes[1], &vec!(&nodes[2], &nodes[3])[..], 3000000).0;
2980
2981                 // Simple case of one pending HTLC to HTLC-Timeout
2982                 nodes[1].node.peer_disconnected(&nodes[2].node.get_our_node_id(), true);
2983                 {
2984                         let mut node_txn = test_txn_broadcast(&nodes[1], &chan_2, None, HTLCType::TIMEOUT);
2985                         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
2986                         nodes[2].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![node_txn.drain(..).next().unwrap()] }, 1);
2987                         test_txn_broadcast(&nodes[2], &chan_2, None, HTLCType::NONE);
2988                 }
2989                 get_announce_close_broadcast_events(&nodes, 1, 2);
2990                 assert_eq!(nodes[1].node.list_channels().len(), 0);
2991                 assert_eq!(nodes[2].node.list_channels().len(), 1);
2992
2993                 macro_rules! claim_funds {
2994                         ($node: expr, $prev_node: expr, $preimage: expr) => {
2995                                 {
2996                                         assert!($node.node.claim_funds($preimage));
2997                                         {
2998                                                 let mut added_monitors = $node.chan_monitor.added_monitors.lock().unwrap();
2999                                                 assert_eq!(added_monitors.len(), 1);
3000                                                 added_monitors.clear();
3001                                         }
3002
3003                                         let events = $node.node.get_and_clear_pending_events();
3004                                         assert_eq!(events.len(), 1);
3005                                         match events[0] {
3006                                                 Event::SendFulfillHTLC { ref node_id, .. } => {
3007                                                         assert_eq!(*node_id, $prev_node.node.get_our_node_id());
3008                                                 },
3009                                                 _ => panic!("Unexpected event"),
3010                                         };
3011                                 }
3012                         }
3013                 }
3014
3015                 // nodes[3] gets the preimage, but nodes[2] already disconnected, resulting in a nodes[2]
3016                 // HTLC-Timeout and a nodes[3] claim against it (+ its own announces)
3017                 nodes[2].node.peer_disconnected(&nodes[3].node.get_our_node_id(), true);
3018                 {
3019                         let node_txn = test_txn_broadcast(&nodes[2], &chan_3, None, HTLCType::TIMEOUT);
3020
3021                         // Claim the payment on nodes[3], giving it knowledge of the preimage
3022                         claim_funds!(nodes[3], nodes[2], payment_preimage_1);
3023
3024                         let header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3025                         nodes[3].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![node_txn[0].clone()] }, 1);
3026
3027                         check_preimage_claim(&nodes[3], &node_txn);
3028                 }
3029                 get_announce_close_broadcast_events(&nodes, 2, 3);
3030                 assert_eq!(nodes[2].node.list_channels().len(), 0);
3031                 assert_eq!(nodes[3].node.list_channels().len(), 1);
3032
3033                 // One pending HTLC to time out:
3034                 let payment_preimage_2 = route_payment(&nodes[3], &vec!(&nodes[4])[..], 3000000).0;
3035
3036                 {
3037                         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3038                         nodes[3].chain_monitor.block_connected_checked(&header, 1, &Vec::new()[..], &[0; 0]);
3039                         for i in 2..TEST_FINAL_CLTV - 3 {
3040                                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3041                                 nodes[3].chain_monitor.block_connected_checked(&header, i, &Vec::new()[..], &[0; 0]);
3042                         }
3043
3044                         let node_txn = test_txn_broadcast(&nodes[3], &chan_4, None, HTLCType::TIMEOUT);
3045
3046                         // Claim the payment on nodes[3], giving it knowledge of the preimage
3047                         claim_funds!(nodes[4], nodes[3], payment_preimage_2);
3048
3049                         header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3050                         nodes[4].chain_monitor.block_connected_checked(&header, 1, &Vec::new()[..], &[0; 0]);
3051                         for i in 2..TEST_FINAL_CLTV - 3 {
3052                                 header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3053                                 nodes[4].chain_monitor.block_connected_checked(&header, i, &Vec::new()[..], &[0; 0]);
3054                         }
3055
3056                         test_txn_broadcast(&nodes[4], &chan_4, None, HTLCType::SUCCESS);
3057
3058                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3059                         nodes[4].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![node_txn[0].clone()] }, TEST_FINAL_CLTV - 5);
3060
3061                         check_preimage_claim(&nodes[4], &node_txn);
3062                 }
3063                 get_announce_close_broadcast_events(&nodes, 3, 4);
3064                 assert_eq!(nodes[3].node.list_channels().len(), 0);
3065                 assert_eq!(nodes[4].node.list_channels().len(), 0);
3066
3067                 // Create some new channels:
3068                 let chan_5 = create_announced_chan_between_nodes(&nodes, 0, 1);
3069
3070                 // A pending HTLC which will be revoked:
3071                 let payment_preimage_3 = route_payment(&nodes[0], &vec!(&nodes[1])[..], 3000000).0;
3072                 // Get the will-be-revoked local txn from nodes[0]
3073                 let revoked_local_txn = nodes[0].node.channel_state.lock().unwrap().by_id.iter().next().unwrap().1.last_local_commitment_txn.clone();
3074                 // Revoke the old state
3075                 claim_payment(&nodes[0], &vec!(&nodes[1])[..], payment_preimage_3);
3076
3077                 {
3078                         let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3079                         nodes[1].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
3080                         {
3081                                 let mut node_txn = nodes[1].tx_broadcaster.txn_broadcasted.lock().unwrap();
3082                                 assert_eq!(node_txn.len(), 2);
3083                                 assert_eq!(node_txn[0].input.len(), 1);
3084
3085                                 let mut funding_tx_map = HashMap::new();
3086                                 funding_tx_map.insert(revoked_local_txn[0].txid(), revoked_local_txn[0].clone());
3087                                 node_txn[0].verify(&funding_tx_map).unwrap();
3088                                 node_txn.swap_remove(0);
3089                         }
3090                         test_txn_broadcast(&nodes[1], &chan_5, None, HTLCType::NONE);
3091
3092                         nodes[0].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![revoked_local_txn[0].clone()] }, 1);
3093                         let node_txn = test_txn_broadcast(&nodes[0], &chan_5, Some(revoked_local_txn[0].clone()), HTLCType::TIMEOUT);
3094                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3095                         nodes[1].chain_monitor.block_connected_with_filtering(&Block { header, txdata: vec![node_txn[1].clone()] }, 1);
3096
3097                         //TODO: At this point nodes[1] should claim the revoked HTLC-Timeout output, but that's
3098                         //not yet implemented in ChannelMonitor
3099                 }
3100                 get_announce_close_broadcast_events(&nodes, 0, 1);
3101                 assert_eq!(nodes[0].node.list_channels().len(), 0);
3102                 assert_eq!(nodes[1].node.list_channels().len(), 0);
3103
3104                 // Check that we processed all pending events
3105                 for node in nodes {
3106                         assert_eq!(node.node.get_and_clear_pending_events().len(), 0);
3107                         assert_eq!(node.chan_monitor.added_monitors.lock().unwrap().len(), 0);
3108                 }
3109         }
3110
3111         #[test]
3112         fn test_unconf_chan() {
3113                 // After creating a chan between nodes, we disconnect all blocks previously seen to force a channel close on nodes[0] side
3114                 let nodes = create_network(2);
3115                 create_announced_chan_between_nodes(&nodes, 0, 1);
3116
3117                 let channel_state = nodes[0].node.channel_state.lock().unwrap();
3118                 assert_eq!(channel_state.by_id.len(), 1);
3119                 assert_eq!(channel_state.short_to_id.len(), 1);
3120                 mem::drop(channel_state);
3121
3122                 let mut headers = Vec::new();
3123                 let mut header = BlockHeader { version: 0x20000000, prev_blockhash: Default::default(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3124                 headers.push(header.clone());
3125                 for _i in 2..100 {
3126                         header = BlockHeader { version: 0x20000000, prev_blockhash: header.bitcoin_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 };
3127                         headers.push(header.clone());
3128                 }
3129                 while !headers.is_empty() {
3130                         nodes[0].node.block_disconnected(&headers.pop().unwrap());
3131                 }
3132                 let channel_state = nodes[0].node.channel_state.lock().unwrap();
3133                 assert_eq!(channel_state.by_id.len(), 0);
3134                 assert_eq!(channel_state.short_to_id.len(), 0);
3135         }
3136 }