changes
[rust-lightning] / lightning / src / ln / peer_handler.rs
1 //! Top level peer message handling and socket handling logic lives here.
2 //!
3 //! Instead of actually servicing sockets ourselves we require that you implement the
4 //! SocketDescriptor interface and use that to receive actions which you should perform on the
5 //! socket, and call into PeerManager with bytes read from the socket. The PeerManager will then
6 //! call into the provided message handlers (probably a ChannelManager and Router) with messages
7 //! they should handle, and encoding/sending response messages.
8
9 use secp256k1::key::{SecretKey,PublicKey};
10
11 use ln::msgs;
12 use util::ser::{Writeable, Writer, Readable};
13 use ln::peer_channel_encryptor::{PeerChannelEncryptor,NextNoiseStep};
14 use util::byte_utils;
15 use util::events::{MessageSendEvent};
16 use util::logger::Logger;
17
18 use std::collections::{HashMap,hash_map,HashSet,LinkedList};
19 use std::sync::{Arc, Mutex};
20 use std::sync::atomic::{AtomicUsize, Ordering};
21 use std::{cmp,error,hash,fmt};
22
23
24 use bitcoin_hashes::sha256::Hash as Sha256;
25 use bitcoin_hashes::sha256::HashEngine as Sha256Engine;
26 use bitcoin_hashes::{HashEngine, Hash};
27
28 /// Provides references to trait impls which handle different types of messages.
29 pub struct MessageHandler {
30         /// A message handler which handles messages specific to channels. Usually this is just a
31         /// ChannelManager object.
32         pub chan_handler: Arc<msgs::ChannelMessageHandler>,
33         /// A message handler which handles messages updating our knowledge of the network channel
34         /// graph. Usually this is just a Router object.
35         pub route_handler: Arc<msgs::RoutingMessageHandler>,
36 }
37
38 /// Provides an object which can be used to send data to and which uniquely identifies a connection
39 /// to a remote host. You will need to be able to generate multiple of these which meet Eq and
40 /// implement Hash to meet the PeerManager API.
41 ///
42 /// For efficiency, Clone should be relatively cheap for this type.
43 ///
44 /// You probably want to just extend an int and put a file descriptor in a struct and implement
45 /// send_data. Note that if you are using a higher-level net library that may close() itself, be
46 /// careful to ensure you don't have races whereby you might register a new connection with an fd
47 /// the same as a yet-to-be-disconnect_event()-ed.
48 pub trait SocketDescriptor : cmp::Eq + hash::Hash + Clone {
49         /// Attempts to send some data from the given slice to the peer.
50         ///
51         /// Returns the amount of data which was sent, possibly 0 if the socket has since disconnected.
52         /// Note that in the disconnected case, a disconnect_event must still fire and further write
53         /// attempts may occur until that time.
54         ///
55         /// If the returned size is smaller than data.len(), a write_available event must
56         /// trigger the next time more data can be written. Additionally, until the a send_data event
57         /// completes fully, no further read_events should trigger on the same peer!
58         ///
59         /// If a read_event on this descriptor had previously returned true (indicating that read
60         /// events should be paused to prevent DoS in the send buffer), resume_read may be set
61         /// indicating that read events on this descriptor should resume. A resume_read of false does
62         /// *not* imply that further read events should be paused.
63         fn send_data(&mut self, data: &[u8], resume_read: bool) -> usize;
64         /// Disconnect the socket pointed to by this SocketDescriptor. Once this function returns, no
65         /// more calls to write_event, read_event or disconnect_event may be made with this descriptor.
66         /// No disconnect_event should be generated as a result of this call, though obviously races
67         /// may occur whereby disconnect_socket is called after a call to disconnect_event but prior to
68         /// that event completing.
69         fn disconnect_socket(&mut self);
70 }
71
72 /// Error for PeerManager errors. If you get one of these, you must disconnect the socket and
73 /// generate no further read/write_events for the descriptor, only triggering a single
74 /// disconnect_event (unless it was provided in response to a new_*_connection event, in which case
75 /// no such disconnect_event must be generated and the socket be silently disconencted).
76 pub struct PeerHandleError {
77         /// Used to indicate that we probably can't make any future connections to this peer, implying
78         /// we should go ahead and force-close any channels we have with it.
79         no_connection_possible: bool,
80 }
81 impl fmt::Debug for PeerHandleError {
82         fn fmt(&self, formatter: &mut fmt::Formatter) -> Result<(), fmt::Error> {
83                 formatter.write_str("Peer Sent Invalid Data")
84         }
85 }
86 impl fmt::Display for PeerHandleError {
87         fn fmt(&self, formatter: &mut fmt::Formatter) -> Result<(), fmt::Error> {
88                 formatter.write_str("Peer Sent Invalid Data")
89         }
90 }
91 impl error::Error for PeerHandleError {
92         fn description(&self) -> &str {
93                 "Peer Sent Invalid Data"
94         }
95 }
96
97 enum InitSyncTracker{
98         NoSyncRequested,
99         ChannelsSyncing(u64),
100         NodesSyncing(PublicKey),
101 }
102
103 struct Peer {
104         channel_encryptor: PeerChannelEncryptor,
105         outbound: bool,
106         their_node_id: Option<PublicKey>,
107         their_global_features: Option<msgs::GlobalFeatures>,
108         their_local_features: Option<msgs::LocalFeatures>,
109
110         pending_outbound_buffer: LinkedList<Vec<u8>>,
111         pending_outbound_buffer_first_msg_offset: usize,
112         awaiting_write_event: bool,
113
114         pending_read_buffer: Vec<u8>,
115         pending_read_buffer_pos: usize,
116         pending_read_is_header: bool,
117
118         sync_status: InitSyncTracker,
119
120         ping_tracker: u8,
121 }       
122
123 impl Peer {
124         /// Returns true if the channel announcements/updates for the given channel should be
125         /// forwarded to this peer.
126         /// If we are sending our routing table to this peer and we have not yet sent channel
127         /// announcements/updates for the given channel_id then we will send it when we get to that
128         /// point and we shouldn't send it yet to avoid sending duplicate updates. If we've already
129         /// sent the old versions, we should send the update, and so return true here.
130         fn should_forward_channel(&self, channel_id: u64)->bool{
131                 match self.sync_status {
132                         InitSyncTracker::NoSyncRequested => true,
133                         InitSyncTracker::ChannelsSyncing(i) => i < channel_id,
134                         InitSyncTracker::NodesSyncing(_) => true,
135                 }
136         }
137 }
138
139 struct PeerHolder<Descriptor: SocketDescriptor> {
140         peers: HashMap<Descriptor, Peer>,
141         /// Added to by do_read_event for cases where we pushed a message onto the send buffer but
142         /// didn't call do_attempt_write_data to avoid reentrancy. Cleared in process_events()
143         peers_needing_send: HashSet<Descriptor>,
144         /// Only add to this set when noise completes:
145         node_id_to_descriptor: HashMap<PublicKey, Descriptor>,
146 }
147 struct MutPeerHolder<'a, Descriptor: SocketDescriptor + 'a> {
148         peers: &'a mut HashMap<Descriptor, Peer>,
149         peers_needing_send: &'a mut HashSet<Descriptor>,
150         node_id_to_descriptor: &'a mut HashMap<PublicKey, Descriptor>,
151 }
152 impl<Descriptor: SocketDescriptor> PeerHolder<Descriptor> {
153         fn borrow_parts(&mut self) -> MutPeerHolder<Descriptor> {
154                 MutPeerHolder {
155                         peers: &mut self.peers,
156                         peers_needing_send: &mut self.peers_needing_send,
157                         node_id_to_descriptor: &mut self.node_id_to_descriptor,
158                 }
159         }
160 }
161
162 #[cfg(not(any(target_pointer_width = "32", target_pointer_width = "64")))]
163 fn _check_usize_is_32_or_64() {
164         // See below, less than 32 bit pointers may be unsafe here!
165         unsafe { mem::transmute::<*const usize, [u8; 4]>(panic!()); }
166 }
167
168 /// A PeerManager manages a set of peers, described by their SocketDescriptor and marshalls socket
169 /// events into messages which it passes on to its MessageHandlers.
170 pub struct PeerManager<Descriptor: SocketDescriptor> {
171         message_handler: MessageHandler,
172         peers: Mutex<PeerHolder<Descriptor>>,
173         our_node_secret: SecretKey,
174         ephemeral_key_midstate: Sha256Engine,
175
176         // Usize needs to be at least 32 bits to avoid overflowing both low and high. If usize is 64
177         // bits we will never realistically count into high:
178         peer_counter_low: AtomicUsize,
179         peer_counter_high: AtomicUsize,
180
181         initial_syncs_sent: AtomicUsize,
182         logger: Arc<Logger>,
183 }
184
185 struct VecWriter(Vec<u8>);
186 impl Writer for VecWriter {
187         fn write_all(&mut self, buf: &[u8]) -> Result<(), ::std::io::Error> {
188                 self.0.extend_from_slice(buf);
189                 Ok(())
190         }
191         fn size_hint(&mut self, size: usize) {
192                 self.0.reserve_exact(size);
193         }
194 }
195
196 macro_rules! encode_msg {
197         ($msg: expr, $msg_code: expr) => {{
198                 let mut msg = VecWriter(Vec::new());
199                 ($msg_code as u16).write(&mut msg).unwrap();
200                 $msg.write(&mut msg).unwrap();
201                 msg.0
202         }}
203 }
204
205 //TODO: Really should do something smarter for this
206 const INITIAL_SYNCS_TO_SEND: usize = 5;
207
208 /// Manages and reacts to connection events. You probably want to use file descriptors as PeerIds.
209 /// PeerIds may repeat, but only after disconnect_event() has been called.
210 impl<Descriptor: SocketDescriptor> PeerManager<Descriptor> {
211         /// Constructs a new PeerManager with the given message handlers and node_id secret key
212         /// ephemeral_random_data is used to derive per-connection ephemeral keys and must be
213         /// cryptographically secure random bytes.
214         pub fn new(message_handler: MessageHandler, our_node_secret: SecretKey, ephemeral_random_data: &[u8; 32], logger: Arc<Logger>) -> PeerManager<Descriptor> {
215                 let mut ephemeral_key_midstate = Sha256::engine();
216                 ephemeral_key_midstate.input(ephemeral_random_data);
217
218                 PeerManager {
219                         message_handler: message_handler,
220                         peers: Mutex::new(PeerHolder {
221                                 peers: HashMap::new(),
222                                 peers_needing_send: HashSet::new(),
223                                 node_id_to_descriptor: HashMap::new()
224                         }),
225                         our_node_secret: our_node_secret,
226                         ephemeral_key_midstate,
227                         peer_counter_low: AtomicUsize::new(0),
228                         peer_counter_high: AtomicUsize::new(0),
229                         initial_syncs_sent: AtomicUsize::new(0),
230                         logger,
231                 }
232         }
233
234         /// Get the list of node ids for peers which have completed the initial handshake.
235         ///
236         /// For outbound connections, this will be the same as the their_node_id parameter passed in to
237         /// new_outbound_connection, however entries will only appear once the initial handshake has
238         /// completed and we are sure the remote peer has the private key for the given node_id.
239         pub fn get_peer_node_ids(&self) -> Vec<PublicKey> {
240                 let peers = self.peers.lock().unwrap();
241                 peers.peers.values().filter_map(|p| {
242                         if !p.channel_encryptor.is_ready_for_encryption() || p.their_global_features.is_none() {
243                                 return None;
244                         }
245                         p.their_node_id
246                 }).collect()
247         }
248
249         fn get_ephemeral_key(&self) -> SecretKey {
250                 let mut ephemeral_hash = self.ephemeral_key_midstate.clone();
251                 let low = self.peer_counter_low.fetch_add(1, Ordering::AcqRel);
252                 let high = if low == 0 {
253                         self.peer_counter_high.fetch_add(1, Ordering::AcqRel)
254                 } else {
255                         self.peer_counter_high.load(Ordering::Acquire)
256                 };
257                 ephemeral_hash.input(&byte_utils::le64_to_array(low as u64));
258                 ephemeral_hash.input(&byte_utils::le64_to_array(high as u64));
259                 SecretKey::from_slice(&Sha256::from_engine(ephemeral_hash).into_inner()).expect("You broke SHA-256!")
260         }
261
262         /// Indicates a new outbound connection has been established to a node with the given node_id.
263         /// Note that if an Err is returned here you MUST NOT call disconnect_event for the new
264         /// descriptor but must disconnect the connection immediately.
265         ///
266         /// Returns a small number of bytes to send to the remote node (currently always 50).
267         ///
268         /// Panics if descriptor is duplicative with some other descriptor which has not yet has a
269         /// disconnect_event.
270         pub fn new_outbound_connection(&self, their_node_id: PublicKey, descriptor: Descriptor) -> Result<Vec<u8>, PeerHandleError> {
271                 let mut peer_encryptor = PeerChannelEncryptor::new_outbound(their_node_id.clone(), self.get_ephemeral_key());
272                 let res = peer_encryptor.get_act_one().to_vec();
273                 let pending_read_buffer = [0; 50].to_vec(); // Noise act two is 50 bytes
274
275                 let mut peers = self.peers.lock().unwrap();
276                 if peers.peers.insert(descriptor, Peer {
277                         channel_encryptor: peer_encryptor,
278                         outbound: true,
279                         their_node_id: None,
280                         their_global_features: None,
281                         their_local_features: None,
282
283                         pending_outbound_buffer: LinkedList::new(),
284                         pending_outbound_buffer_first_msg_offset: 0,
285                         awaiting_write_event: false,
286
287                         pending_read_buffer: pending_read_buffer,
288                         pending_read_buffer_pos: 0,
289                         pending_read_is_header: false,
290
291                         sync_status: InitSyncTracker::NoSyncRequested,
292
293                         ping_tracker: 0,
294                 }).is_some() {
295                         panic!("PeerManager driver duplicated descriptors!");
296                 };
297                 Ok(res)
298         }
299
300         /// Indicates a new inbound connection has been established.
301         ///
302         /// May refuse the connection by returning an Err, but will never write bytes to the remote end
303         /// (outbound connector always speaks first). Note that if an Err is returned here you MUST NOT
304         /// call disconnect_event for the new descriptor but must disconnect the connection
305         /// immediately.
306         ///
307         /// Panics if descriptor is duplicative with some other descriptor which has not yet has a
308         /// disconnect_event.
309         pub fn new_inbound_connection(&self, descriptor: Descriptor) -> Result<(), PeerHandleError> {
310                 let peer_encryptor = PeerChannelEncryptor::new_inbound(&self.our_node_secret);
311                 let pending_read_buffer = [0; 50].to_vec(); // Noise act one is 50 bytes
312
313                 let mut peers = self.peers.lock().unwrap();
314                 if peers.peers.insert(descriptor, Peer {
315                         channel_encryptor: peer_encryptor,
316                         outbound: false,
317                         their_node_id: None,
318                         their_global_features: None,
319                         their_local_features: None,
320
321                         pending_outbound_buffer: LinkedList::new(),
322                         pending_outbound_buffer_first_msg_offset: 0,
323                         awaiting_write_event: false,
324
325                         pending_read_buffer: pending_read_buffer,
326                         pending_read_buffer_pos: 0,
327                         pending_read_is_header: false,
328
329                         sync_status: InitSyncTracker::NoSyncRequested,
330
331                         ping_tracker: 0,
332                 }).is_some() {
333                         panic!("PeerManager driver duplicated descriptors!");
334                 };
335                 Ok(())
336         }
337
338         fn do_attempt_write_data(&self, descriptor: &mut Descriptor, peer: &mut Peer) {
339                 macro_rules! encode_and_send_msg {
340                         ($msg: expr, $msg_code: expr) => {
341                                 {
342                                         log_trace!(self, "Encoding and sending sync update message of type {} to {}", $msg_code, log_pubkey!(peer.their_node_id.unwrap()));
343                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!($msg, $msg_code)[..]));
344                                 }
345                         }
346                 }
347                 const MSG_BUFF_SIZE: usize = 10;
348                 while !peer.awaiting_write_event {
349                         if peer.pending_outbound_buffer.len() < MSG_BUFF_SIZE {
350                                 match peer.sync_status {
351                                         InitSyncTracker::NoSyncRequested => {},
352                                         InitSyncTracker::ChannelsSyncing(c) if c < 0xffff_ffff_ffff_ffff => {
353                                                 let steps = ((MSG_BUFF_SIZE - peer.pending_outbound_buffer.len() + 2) / 3) as u8;
354                                                 let all_messages = self.message_handler.route_handler.get_next_channel_announcements(0, steps);
355                                                 for &(ref announce, ref update_a, ref update_b) in all_messages.iter() {
356                                                         encode_and_send_msg!(announce, 256);
357                                                         encode_and_send_msg!(update_a, 258);
358                                                         encode_and_send_msg!(update_b, 258);
359                                                         peer.sync_status = InitSyncTracker::ChannelsSyncing(announce.contents.short_channel_id + 1);
360                                                 }
361                                                 if all_messages.is_empty() || all_messages.len() != steps as usize {
362                                                         peer.sync_status = InitSyncTracker::ChannelsSyncing(0xffff_ffff_ffff_ffff);
363                                                 }
364                                         },
365                                         InitSyncTracker::ChannelsSyncing(c) if c == 0xffff_ffff_ffff_ffff => {
366                                                 let steps = (MSG_BUFF_SIZE - peer.pending_outbound_buffer.len()) as u8;
367                                                 let all_messages = self.message_handler.route_handler.get_next_node_announcements(None, steps);
368                                                 for msg in all_messages.iter() {
369                                                         encode_and_send_msg!(msg, 256);
370                                                         peer.sync_status = InitSyncTracker::NodesSyncing(msg.contents.node_id);
371                                                 }
372                                                 if all_messages.is_empty() || all_messages.len() != steps as usize {
373                                                         peer.sync_status = InitSyncTracker::NoSyncRequested;
374                                                 }
375                                         },
376                                         InitSyncTracker::ChannelsSyncing(_) => unreachable!(),
377                                         InitSyncTracker::NodesSyncing(key) => {
378                                                 let steps = (MSG_BUFF_SIZE - peer.pending_outbound_buffer.len()) as u8;
379                                                 let all_messages = self.message_handler.route_handler.get_next_node_announcements(Some(&key), steps);
380                                                 for msg in all_messages.iter() {
381                                                         encode_and_send_msg!(msg, 256);
382                                                         peer.sync_status = InitSyncTracker::NodesSyncing(msg.contents.node_id);
383                                                 }
384                                                 if all_messages.is_empty() || all_messages.len() != steps as usize {
385                                                         peer.sync_status = InitSyncTracker::NoSyncRequested;
386                                                 }
387                                         },
388                                 }
389                         }
390
391                         if {
392                                 let next_buff = match peer.pending_outbound_buffer.front() {
393                                         None => return,
394                                         Some(buff) => buff,
395                                 };
396
397                                 let should_be_reading = peer.pending_outbound_buffer.len() < MSG_BUFF_SIZE;
398                                 let pending = &next_buff[peer.pending_outbound_buffer_first_msg_offset..];
399                                 let data_sent = descriptor.send_data(pending, should_be_reading);
400                                 peer.pending_outbound_buffer_first_msg_offset += data_sent;
401                                 if peer.pending_outbound_buffer_first_msg_offset == next_buff.len() { true } else { false }
402                         } {
403                                 peer.pending_outbound_buffer_first_msg_offset = 0;
404                                 peer.pending_outbound_buffer.pop_front();
405                         } else {
406                                 peer.awaiting_write_event = true;
407                         }
408                 }
409         }
410
411         /// Indicates that there is room to write data to the given socket descriptor.
412         ///
413         /// May return an Err to indicate that the connection should be closed.
414         ///
415         /// Will most likely call send_data on the descriptor passed in (or the descriptor handed into
416         /// new_*\_connection) before returning. Thus, be very careful with reentrancy issues! The
417         /// invariants around calling write_event in case a write did not fully complete must still
418         /// hold - be ready to call write_event again if a write call generated here isn't sufficient!
419         /// Panics if the descriptor was not previously registered in a new_\*_connection event.
420         pub fn write_event(&self, descriptor: &mut Descriptor) -> Result<(), PeerHandleError> {
421                 let mut peers = self.peers.lock().unwrap();
422                 match peers.peers.get_mut(descriptor) {
423                         None => panic!("Descriptor for write_event is not already known to PeerManager"),
424                         Some(peer) => {
425                                 peer.awaiting_write_event = false;
426                                 self.do_attempt_write_data(descriptor, peer);
427                         }
428                 };
429                 Ok(())
430         }
431
432         /// Indicates that data was read from the given socket descriptor.
433         ///
434         /// May return an Err to indicate that the connection should be closed.
435         ///
436         /// Will *not* call back into send_data on any descriptors to avoid reentrancy complexity.
437         /// Thus, however, you almost certainly want to call process_events() after any read_event to
438         /// generate send_data calls to handle responses.
439         ///
440         /// If Ok(true) is returned, further read_events should not be triggered until a write_event on
441         /// this file descriptor has resume_read set (preventing DoS issues in the send buffer).
442         ///
443         /// Panics if the descriptor was not previously registered in a new_*_connection event.
444         pub fn read_event(&self, peer_descriptor: &mut Descriptor, data: Vec<u8>) -> Result<bool, PeerHandleError> {
445                 match self.do_read_event(peer_descriptor, data) {
446                         Ok(res) => Ok(res),
447                         Err(e) => {
448                                 self.disconnect_event_internal(peer_descriptor, e.no_connection_possible);
449                                 Err(e)
450                         }
451                 }
452         }
453
454         fn do_read_event(&self, peer_descriptor: &mut Descriptor, data: Vec<u8>) -> Result<bool, PeerHandleError> {
455                 let pause_read = {
456                         let mut peers_lock = self.peers.lock().unwrap();
457                         let peers = peers_lock.borrow_parts();
458                         let pause_read = match peers.peers.get_mut(peer_descriptor) {
459                                 None => panic!("Descriptor for read_event is not already known to PeerManager"),
460                                 Some(peer) => {
461                                         assert!(peer.pending_read_buffer.len() > 0);
462                                         assert!(peer.pending_read_buffer.len() > peer.pending_read_buffer_pos);
463
464                                         let mut read_pos = 0;
465                                         while read_pos < data.len() {
466                                                 {
467                                                         let data_to_copy = cmp::min(peer.pending_read_buffer.len() - peer.pending_read_buffer_pos, data.len() - read_pos);
468                                                         peer.pending_read_buffer[peer.pending_read_buffer_pos..peer.pending_read_buffer_pos + data_to_copy].copy_from_slice(&data[read_pos..read_pos + data_to_copy]);
469                                                         read_pos += data_to_copy;
470                                                         peer.pending_read_buffer_pos += data_to_copy;
471                                                 }
472
473                                                 if peer.pending_read_buffer_pos == peer.pending_read_buffer.len() {
474                                                         peer.pending_read_buffer_pos = 0;
475
476                                                         macro_rules! encode_and_send_msg {
477                                                                 ($msg: expr, $msg_code: expr) => {
478                                                                         {
479                                                                                 log_trace!(self, "Encoding and sending message of type {} to {}", $msg_code, log_pubkey!(peer.their_node_id.unwrap()));
480                                                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!($msg, $msg_code)[..]));
481                                                                                 peers.peers_needing_send.insert(peer_descriptor.clone());
482                                                                         }
483                                                                 }
484                                                         }
485
486                                                         macro_rules! try_potential_handleerror {
487                                                                 ($thing: expr) => {
488                                                                         match $thing {
489                                                                                 Ok(x) => x,
490                                                                                 Err(e) => {
491                                                                                         match e.action {
492                                                                                                 msgs::ErrorAction::DisconnectPeer { msg: _ } => {
493                                                                                                         //TODO: Try to push msg
494                                                                                                         log_trace!(self, "Got Err handling message, disconnecting peer because {}", e.err);
495                                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
496                                                                                                 },
497                                                                                                 msgs::ErrorAction::IgnoreError => {
498                                                                                                         log_trace!(self, "Got Err handling message, ignoring because {}", e.err);
499                                                                                                         continue;
500                                                                                                 },
501                                                                                                 msgs::ErrorAction::SendErrorMessage { msg } => {
502                                                                                                         log_trace!(self, "Got Err handling message, sending Error message because {}", e.err);
503                                                                                                         encode_and_send_msg!(msg, 17);
504                                                                                                         continue;
505                                                                                                 },
506                                                                                         }
507                                                                                 }
508                                                                         };
509                                                                 }
510                                                         }
511
512                                                         macro_rules! try_potential_decodeerror {
513                                                                 ($thing: expr) => {
514                                                                         match $thing {
515                                                                                 Ok(x) => x,
516                                                                                 Err(e) => {
517                                                                                         match e {
518                                                                                                 msgs::DecodeError::UnknownVersion => return Err(PeerHandleError{ no_connection_possible: false }),
519                                                                                                 msgs::DecodeError::UnknownRequiredFeature => {
520                                                                                                         log_debug!(self, "Got a channel/node announcement with an known required feature flag, you may want to update!");
521                                                                                                         continue;
522                                                                                                 },
523                                                                                                 msgs::DecodeError::InvalidValue => {
524                                                                                                         log_debug!(self, "Got an invalid value while deserializing message");
525                                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
526                                                                                                 },
527                                                                                                 msgs::DecodeError::ShortRead => {
528                                                                                                         log_debug!(self, "Deserialization failed due to shortness of message");
529                                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
530                                                                                                 },
531                                                                                                 msgs::DecodeError::ExtraAddressesPerType => {
532                                                                                                         log_debug!(self, "Error decoding message, ignoring due to lnd spec incompatibility. See https://github.com/lightningnetwork/lnd/issues/1407");
533                                                                                                         continue;
534                                                                                                 },
535                                                                                                 msgs::DecodeError::BadLengthDescriptor => return Err(PeerHandleError{ no_connection_possible: false }),
536                                                                                                 msgs::DecodeError::Io(_) => return Err(PeerHandleError{ no_connection_possible: false }),
537                                                                                         }
538                                                                                 }
539                                                                         };
540                                                                 }
541                                                         }
542
543                                                         macro_rules! insert_node_id {
544                                                                 () => {
545                                                                         match peers.node_id_to_descriptor.entry(peer.their_node_id.unwrap()) {
546                                                                                 hash_map::Entry::Occupied(_) => {
547                                                                                         log_trace!(self, "Got second connection with {}, closing", log_pubkey!(peer.their_node_id.unwrap()));
548                                                                                         peer.their_node_id = None; // Unset so that we don't generate a peer_disconnected event
549                                                                                         return Err(PeerHandleError{ no_connection_possible: false })
550                                                                                 },
551                                                                                 hash_map::Entry::Vacant(entry) => {
552                                                                                         log_trace!(self, "Finished noise handshake for connection with {}", log_pubkey!(peer.their_node_id.unwrap()));
553                                                                                         entry.insert(peer_descriptor.clone())
554                                                                                 },
555                                                                         };
556                                                                 }
557                                                         }
558
559                                                         let next_step = peer.channel_encryptor.get_noise_step();
560                                                         match next_step {
561                                                                 NextNoiseStep::ActOne => {
562                                                                         let act_two = try_potential_handleerror!(peer.channel_encryptor.process_act_one_with_keys(&peer.pending_read_buffer[..], &self.our_node_secret, self.get_ephemeral_key())).to_vec();
563                                                                         peer.pending_outbound_buffer.push_back(act_two);
564                                                                         peer.pending_read_buffer = [0; 66].to_vec(); // act three is 66 bytes long
565                                                                 },
566                                                                 NextNoiseStep::ActTwo => {
567                                                                         let (act_three, their_node_id) = try_potential_handleerror!(peer.channel_encryptor.process_act_two(&peer.pending_read_buffer[..], &self.our_node_secret));
568                                                                         peer.pending_outbound_buffer.push_back(act_three.to_vec());
569                                                                         peer.pending_read_buffer = [0; 18].to_vec(); // Message length header is 18 bytes
570                                                                         peer.pending_read_is_header = true;
571
572                                                                         peer.their_node_id = Some(their_node_id);
573                                                                         insert_node_id!();
574                                                                         let mut local_features = msgs::LocalFeatures::new();
575                                                                         if self.initial_syncs_sent.load(Ordering::Acquire) < INITIAL_SYNCS_TO_SEND {
576                                                                                 self.initial_syncs_sent.fetch_add(1, Ordering::AcqRel);
577                                                                                 local_features.set_initial_routing_sync();
578                                                                         }
579                                                                         encode_and_send_msg!(msgs::Init {
580                                                                                 global_features: msgs::GlobalFeatures::new(),
581                                                                                 local_features,
582                                                                         }, 16);
583                                                                 },
584                                                                 NextNoiseStep::ActThree => {
585                                                                         let their_node_id = try_potential_handleerror!(peer.channel_encryptor.process_act_three(&peer.pending_read_buffer[..]));
586                                                                         peer.pending_read_buffer = [0; 18].to_vec(); // Message length header is 18 bytes
587                                                                         peer.pending_read_is_header = true;
588                                                                         peer.their_node_id = Some(their_node_id);
589                                                                         insert_node_id!();
590                                                                 },
591                                                                 NextNoiseStep::NoiseComplete => {
592                                                                         if peer.pending_read_is_header {
593                                                                                 let msg_len = try_potential_handleerror!(peer.channel_encryptor.decrypt_length_header(&peer.pending_read_buffer[..]));
594                                                                                 peer.pending_read_buffer = Vec::with_capacity(msg_len as usize + 16);
595                                                                                 peer.pending_read_buffer.resize(msg_len as usize + 16, 0);
596                                                                                 if msg_len < 2 { // Need at least the message type tag
597                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
598                                                                                 }
599                                                                                 peer.pending_read_is_header = false;
600                                                                         } else {
601                                                                                 let msg_data = try_potential_handleerror!(peer.channel_encryptor.decrypt_message(&peer.pending_read_buffer[..]));
602                                                                                 assert!(msg_data.len() >= 2);
603
604                                                                                 // Reset read buffer
605                                                                                 peer.pending_read_buffer = [0; 18].to_vec();
606                                                                                 peer.pending_read_is_header = true;
607
608                                                                                 let msg_type = byte_utils::slice_to_be16(&msg_data[0..2]);
609                                                                                 log_trace!(self, "Received message of type {} from {}", msg_type, log_pubkey!(peer.their_node_id.unwrap()));
610                                                                                 if msg_type != 16 && peer.their_global_features.is_none() {
611                                                                                         // Need an init message as first message
612                                                                                         log_trace!(self, "Peer {} sent non-Init first message", log_pubkey!(peer.their_node_id.unwrap()));
613                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
614                                                                                 }
615                                                                                 let mut reader = ::std::io::Cursor::new(&msg_data[2..]);
616                                                                                 match msg_type {
617                                                                                         // Connection control:
618                                                                                         16 => {
619                                                                                                 let msg = try_potential_decodeerror!(msgs::Init::read(&mut reader));
620                                                                                                 if msg.global_features.requires_unknown_bits() {
621                                                                                                         log_info!(self, "Peer global features required unknown version bits");
622                                                                                                         return Err(PeerHandleError{ no_connection_possible: true });
623                                                                                                 }
624                                                                                                 if msg.local_features.requires_unknown_bits() {
625                                                                                                         log_info!(self, "Peer local features required unknown version bits");
626                                                                                                         return Err(PeerHandleError{ no_connection_possible: true });
627                                                                                                 }
628                                                                                                 if peer.their_global_features.is_some() {
629                                                                                                         return Err(PeerHandleError{ no_connection_possible: false });
630                                                                                                 }
631
632                                                                                                 log_info!(self, "Received peer Init message: data_loss_protect: {}, initial_routing_sync: {}, upfront_shutdown_script: {}, unkown local flags: {}, unknown global flags: {}",
633                                                                                                         if msg.local_features.supports_data_loss_protect() { "supported" } else { "not supported"},
634                                                                                                         if msg.local_features.initial_routing_sync() { "requested" } else { "not requested" },
635                                                                                                         if msg.local_features.supports_upfront_shutdown_script() { "supported" } else { "not supported"},
636                                                                                                         if msg.local_features.supports_unknown_bits() { "present" } else { "none" },
637                                                                                                         if msg.global_features.supports_unknown_bits() { "present" } else { "none" });
638
639                                                                                                 if msg.local_features.initial_routing_sync() {
640                                                                                                         peer.sync_status = InitSyncTracker::ChannelsSyncing(0);
641                                                                                                         peers.peers_needing_send.insert(peer_descriptor.clone());
642                                                                                                 }
643                                                                                                 peer.their_global_features = Some(msg.global_features);
644                                                                                                 peer.their_local_features = Some(msg.local_features);
645
646                                                                                                 if !peer.outbound {
647                                                                                                         let mut local_features = msgs::LocalFeatures::new();
648                                                                                                         if self.initial_syncs_sent.load(Ordering::Acquire) < INITIAL_SYNCS_TO_SEND {
649                                                                                                                 self.initial_syncs_sent.fetch_add(1, Ordering::AcqRel);
650                                                                                                                 local_features.set_initial_routing_sync();
651                                                                                                         }
652
653                                                                                                         encode_and_send_msg!(msgs::Init {
654                                                                                                                 global_features: msgs::GlobalFeatures::new(),
655                                                                                                                 local_features,
656                                                                                                         }, 16);
657                                                                                                 }
658
659                                                                                                 self.message_handler.chan_handler.peer_connected(&peer.their_node_id.unwrap());
660                                                                                         },
661                                                                                         17 => {
662                                                                                                 let msg = try_potential_decodeerror!(msgs::ErrorMessage::read(&mut reader));
663                                                                                                 let mut data_is_printable = true;
664                                                                                                 for b in msg.data.bytes() {
665                                                                                                         if b < 32 || b > 126 {
666                                                                                                                 data_is_printable = false;
667                                                                                                                 break;
668                                                                                                         }
669                                                                                                 }
670
671                                                                                                 if data_is_printable {
672                                                                                                         log_debug!(self, "Got Err message from {}: {}", log_pubkey!(peer.their_node_id.unwrap()), msg.data);
673                                                                                                 } else {
674                                                                                                         log_debug!(self, "Got Err message from {} with non-ASCII error message", log_pubkey!(peer.their_node_id.unwrap()));
675                                                                                                 }
676                                                                                                 self.message_handler.chan_handler.handle_error(&peer.their_node_id.unwrap(), &msg);
677                                                                                                 if msg.channel_id == [0; 32] {
678                                                                                                         return Err(PeerHandleError{ no_connection_possible: true });
679                                                                                                 }
680                                                                                         },
681
682                                                                                         18 => {
683                                                                                                 let msg = try_potential_decodeerror!(msgs::Ping::read(&mut reader));
684                                                                                                 if msg.ponglen < 65532 {
685                                                                                                         let resp = msgs::Pong { byteslen: msg.ponglen };
686                                                                                                         encode_and_send_msg!(resp, 19);
687                                                                                                 }
688                                                                                         },
689                                                                                         19 => { 
690                                                                                                 peer.ping_tracker = 0;
691                                                                                                 try_potential_decodeerror!(msgs::Pong::read(&mut reader)); 
692                                                                                         },
693                                                                                         // Channel control:
694                                                                                         32 => {
695                                                                                                 let msg = try_potential_decodeerror!(msgs::OpenChannel::read(&mut reader));
696                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_open_channel(&peer.their_node_id.unwrap(), peer.their_local_features.clone().unwrap(), &msg));
697                                                                                         },
698                                                                                         33 => {
699                                                                                                 let msg = try_potential_decodeerror!(msgs::AcceptChannel::read(&mut reader));
700                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_accept_channel(&peer.their_node_id.unwrap(), peer.their_local_features.clone().unwrap(), &msg));
701                                                                                         },
702
703                                                                                         34 => {
704                                                                                                 let msg = try_potential_decodeerror!(msgs::FundingCreated::read(&mut reader));
705                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_funding_created(&peer.their_node_id.unwrap(), &msg));
706                                                                                         },
707                                                                                         35 => {
708                                                                                                 let msg = try_potential_decodeerror!(msgs::FundingSigned::read(&mut reader));
709                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_funding_signed(&peer.their_node_id.unwrap(), &msg));
710                                                                                         },
711                                                                                         36 => {
712                                                                                                 let msg = try_potential_decodeerror!(msgs::FundingLocked::read(&mut reader));
713                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_funding_locked(&peer.their_node_id.unwrap(), &msg));
714                                                                                         },
715
716                                                                                         38 => {
717                                                                                                 let msg = try_potential_decodeerror!(msgs::Shutdown::read(&mut reader));
718                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_shutdown(&peer.their_node_id.unwrap(), &msg));
719                                                                                         },
720                                                                                         39 => {
721                                                                                                 let msg = try_potential_decodeerror!(msgs::ClosingSigned::read(&mut reader));
722                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_closing_signed(&peer.their_node_id.unwrap(), &msg));
723                                                                                         },
724
725                                                                                         128 => {
726                                                                                                 let msg = try_potential_decodeerror!(msgs::UpdateAddHTLC::read(&mut reader));
727                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_update_add_htlc(&peer.their_node_id.unwrap(), &msg));
728                                                                                         },
729                                                                                         130 => {
730                                                                                                 let msg = try_potential_decodeerror!(msgs::UpdateFulfillHTLC::read(&mut reader));
731                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_update_fulfill_htlc(&peer.their_node_id.unwrap(), &msg));
732                                                                                         },
733                                                                                         131 => {
734                                                                                                 let msg = try_potential_decodeerror!(msgs::UpdateFailHTLC::read(&mut reader));
735                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_update_fail_htlc(&peer.their_node_id.unwrap(), &msg));
736                                                                                         },
737                                                                                         135 => {
738                                                                                                 let msg = try_potential_decodeerror!(msgs::UpdateFailMalformedHTLC::read(&mut reader));
739                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_update_fail_malformed_htlc(&peer.their_node_id.unwrap(), &msg));
740                                                                                         },
741
742                                                                                         132 => {
743                                                                                                 let msg = try_potential_decodeerror!(msgs::CommitmentSigned::read(&mut reader));
744                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_commitment_signed(&peer.their_node_id.unwrap(), &msg));
745                                                                                         },
746                                                                                         133 => {
747                                                                                                 let msg = try_potential_decodeerror!(msgs::RevokeAndACK::read(&mut reader));
748                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_revoke_and_ack(&peer.their_node_id.unwrap(), &msg));
749                                                                                         },
750                                                                                         134 => {
751                                                                                                 let msg = try_potential_decodeerror!(msgs::UpdateFee::read(&mut reader));
752                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_update_fee(&peer.their_node_id.unwrap(), &msg));
753                                                                                         },
754                                                                                         136 => {
755                                                                                                 let msg = try_potential_decodeerror!(msgs::ChannelReestablish::read(&mut reader));
756                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_channel_reestablish(&peer.their_node_id.unwrap(), &msg));
757                                                                                         },
758
759                                                                                         // Routing control:
760                                                                                         259 => {
761                                                                                                 let msg = try_potential_decodeerror!(msgs::AnnouncementSignatures::read(&mut reader));
762                                                                                                 try_potential_handleerror!(self.message_handler.chan_handler.handle_announcement_signatures(&peer.their_node_id.unwrap(), &msg));
763                                                                                         },
764                                                                                         256 => {
765                                                                                                 let msg = try_potential_decodeerror!(msgs::ChannelAnnouncement::read(&mut reader));
766                                                                                                 let should_forward = try_potential_handleerror!(self.message_handler.route_handler.handle_channel_announcement(&msg));
767
768                                                                                                 if should_forward {
769                                                                                                         // TODO: forward msg along to all our other peers!
770                                                                                                 }
771                                                                                         },
772                                                                                         257 => {
773                                                                                                 let msg = try_potential_decodeerror!(msgs::NodeAnnouncement::read(&mut reader));
774                                                                                                 let should_forward = try_potential_handleerror!(self.message_handler.route_handler.handle_node_announcement(&msg));
775
776                                                                                                 if should_forward {
777                                                                                                         // TODO: forward msg along to all our other peers!
778                                                                                                 }
779                                                                                         },
780                                                                                         258 => {
781                                                                                                 let msg = try_potential_decodeerror!(msgs::ChannelUpdate::read(&mut reader));
782                                                                                                 let should_forward = try_potential_handleerror!(self.message_handler.route_handler.handle_channel_update(&msg));
783
784                                                                                                 if should_forward {
785                                                                                                         // TODO: forward msg along to all our other peers!
786                                                                                                 }
787                                                                                         },
788                                                                                         _ => {
789                                                                                                 if (msg_type & 1) == 0 {
790                                                                                                         return Err(PeerHandleError{ no_connection_possible: true });
791                                                                                                 }
792                                                                                         },
793                                                                                 }
794                                                                         }
795                                                                 }
796                                                         }
797                                                 }
798                                         }
799
800                                         self.do_attempt_write_data(peer_descriptor, peer);
801
802                                         peer.pending_outbound_buffer.len() > 10 // pause_read
803                                 }
804                         };
805
806                         pause_read
807                 };
808
809                 Ok(pause_read)
810         }
811
812         /// Checks for any events generated by our handlers and processes them. Includes sending most
813         /// response messages as well as messages generated by calls to handler functions directly (eg
814         /// functions like ChannelManager::process_pending_htlc_forward or send_payment).
815         pub fn process_events(&self) {
816                 {
817                         // TODO: There are some DoS attacks here where you can flood someone's outbound send
818                         // buffer by doing things like announcing channels on another node. We should be willing to
819                         // drop optional-ish messages when send buffers get full!
820
821                         let mut events_generated = self.message_handler.chan_handler.get_and_clear_pending_msg_events();
822                         let mut peers_lock = self.peers.lock().unwrap();
823                         let peers = peers_lock.borrow_parts();
824                         for event in events_generated.drain(..) {
825                                 macro_rules! get_peer_for_forwarding {
826                                         ($node_id: expr, $handle_no_such_peer: block) => {
827                                                 {
828                                                         let descriptor = match peers.node_id_to_descriptor.get($node_id) {
829                                                                 Some(descriptor) => descriptor.clone(),
830                                                                 None => {
831                                                                         $handle_no_such_peer;
832                                                                         continue;
833                                                                 },
834                                                         };
835                                                         match peers.peers.get_mut(&descriptor) {
836                                                                 Some(peer) => {
837                                                                         if peer.their_global_features.is_none() {
838                                                                                 $handle_no_such_peer;
839                                                                                 continue;
840                                                                         }
841                                                                         (descriptor, peer)
842                                                                 },
843                                                                 None => panic!("Inconsistent peers set state!"),
844                                                         }
845                                                 }
846                                         }
847                                 }
848                                 match event {
849                                         MessageSendEvent::SendAcceptChannel { ref node_id, ref msg } => {
850                                                 log_trace!(self, "Handling SendAcceptChannel event in peer_handler for node {} for channel {}",
851                                                                 log_pubkey!(node_id),
852                                                                 log_bytes!(msg.temporary_channel_id));
853                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
854                                                                 //TODO: Drop the pending channel? (or just let it timeout, but that sucks)
855                                                         });
856                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 33)));
857                                                 self.do_attempt_write_data(&mut descriptor, peer);
858                                         },
859                                         MessageSendEvent::SendOpenChannel { ref node_id, ref msg } => {
860                                                 log_trace!(self, "Handling SendOpenChannel event in peer_handler for node {} for channel {}",
861                                                                 log_pubkey!(node_id),
862                                                                 log_bytes!(msg.temporary_channel_id));
863                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
864                                                                 //TODO: Drop the pending channel? (or just let it timeout, but that sucks)
865                                                         });
866                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 32)));
867                                                 self.do_attempt_write_data(&mut descriptor, peer);
868                                         },
869                                         MessageSendEvent::SendFundingCreated { ref node_id, ref msg } => {
870                                                 log_trace!(self, "Handling SendFundingCreated event in peer_handler for node {} for channel {} (which becomes {})",
871                                                                 log_pubkey!(node_id),
872                                                                 log_bytes!(msg.temporary_channel_id),
873                                                                 log_funding_channel_id!(msg.funding_txid, msg.funding_output_index));
874                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
875                                                                 //TODO: generate a DiscardFunding event indicating to the wallet that
876                                                                 //they should just throw away this funding transaction
877                                                         });
878                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 34)));
879                                                 self.do_attempt_write_data(&mut descriptor, peer);
880                                         },
881                                         MessageSendEvent::SendFundingSigned { ref node_id, ref msg } => {
882                                                 log_trace!(self, "Handling SendFundingSigned event in peer_handler for node {} for channel {}",
883                                                                 log_pubkey!(node_id),
884                                                                 log_bytes!(msg.channel_id));
885                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
886                                                                 //TODO: generate a DiscardFunding event indicating to the wallet that
887                                                                 //they should just throw away this funding transaction
888                                                         });
889                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 35)));
890                                                 self.do_attempt_write_data(&mut descriptor, peer);
891                                         },
892                                         MessageSendEvent::SendFundingLocked { ref node_id, ref msg } => {
893                                                 log_trace!(self, "Handling SendFundingLocked event in peer_handler for node {} for channel {}",
894                                                                 log_pubkey!(node_id),
895                                                                 log_bytes!(msg.channel_id));
896                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
897                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
898                                                         });
899                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 36)));
900                                                 self.do_attempt_write_data(&mut descriptor, peer);
901                                         },
902                                         MessageSendEvent::SendAnnouncementSignatures { ref node_id, ref msg } => {
903                                                 log_trace!(self, "Handling SendAnnouncementSignatures event in peer_handler for node {} for channel {})",
904                                                                 log_pubkey!(node_id),
905                                                                 log_bytes!(msg.channel_id));
906                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
907                                                                 //TODO: generate a DiscardFunding event indicating to the wallet that
908                                                                 //they should just throw away this funding transaction
909                                                         });
910                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 259)));
911                                                 self.do_attempt_write_data(&mut descriptor, peer);
912                                         },
913                                         MessageSendEvent::UpdateHTLCs { ref node_id, updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, ref commitment_signed } } => {
914                                                 log_trace!(self, "Handling UpdateHTLCs event in peer_handler for node {} with {} adds, {} fulfills, {} fails for channel {}",
915                                                                 log_pubkey!(node_id),
916                                                                 update_add_htlcs.len(),
917                                                                 update_fulfill_htlcs.len(),
918                                                                 update_fail_htlcs.len(),
919                                                                 log_bytes!(commitment_signed.channel_id));
920                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
921                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
922                                                         });
923                                                 for msg in update_add_htlcs {
924                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 128)));
925                                                 }
926                                                 for msg in update_fulfill_htlcs {
927                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 130)));
928                                                 }
929                                                 for msg in update_fail_htlcs {
930                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 131)));
931                                                 }
932                                                 for msg in update_fail_malformed_htlcs {
933                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 135)));
934                                                 }
935                                                 if let &Some(ref msg) = update_fee {
936                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 134)));
937                                                 }
938                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(commitment_signed, 132)));
939                                                 self.do_attempt_write_data(&mut descriptor, peer);
940                                         },
941                                         MessageSendEvent::SendRevokeAndACK { ref node_id, ref msg } => {
942                                                 log_trace!(self, "Handling SendRevokeAndACK event in peer_handler for node {} for channel {}",
943                                                                 log_pubkey!(node_id),
944                                                                 log_bytes!(msg.channel_id));
945                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
946                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
947                                                         });
948                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 133)));
949                                                 self.do_attempt_write_data(&mut descriptor, peer);
950                                         },
951                                         MessageSendEvent::SendClosingSigned { ref node_id, ref msg } => {
952                                                 log_trace!(self, "Handling SendClosingSigned event in peer_handler for node {} for channel {}",
953                                                                 log_pubkey!(node_id),
954                                                                 log_bytes!(msg.channel_id));
955                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
956                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
957                                                         });
958                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 39)));
959                                                 self.do_attempt_write_data(&mut descriptor, peer);
960                                         },
961                                         MessageSendEvent::SendShutdown { ref node_id, ref msg } => {
962                                                 log_trace!(self, "Handling Shutdown event in peer_handler for node {} for channel {}",
963                                                                 log_pubkey!(node_id),
964                                                                 log_bytes!(msg.channel_id));
965                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
966                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
967                                                         });
968                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 38)));
969                                                 self.do_attempt_write_data(&mut descriptor, peer);
970                                         },
971                                         MessageSendEvent::SendChannelReestablish { ref node_id, ref msg } => {
972                                                 log_trace!(self, "Handling SendChannelReestablish event in peer_handler for node {} for channel {}",
973                                                                 log_pubkey!(node_id),
974                                                                 log_bytes!(msg.channel_id));
975                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
976                                                                 //TODO: Do whatever we're gonna do for handling dropped messages
977                                                         });
978                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 136)));
979                                                 self.do_attempt_write_data(&mut descriptor, peer);
980                                         },
981                                         MessageSendEvent::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
982                                                 log_trace!(self, "Handling BroadcastChannelAnnouncement event in peer_handler for short channel id {}", msg.contents.short_channel_id);
983                                                 if self.message_handler.route_handler.handle_channel_announcement(msg).is_ok() && self.message_handler.route_handler.handle_channel_update(update_msg).is_ok() {
984                                                         let encoded_msg = encode_msg!(msg, 256);
985                                                         let encoded_update_msg = encode_msg!(update_msg, 258);
986
987                                                         for (ref descriptor, ref mut peer) in peers.peers.iter_mut() {
988                                                                 if !peer.channel_encryptor.is_ready_for_encryption() || peer.their_global_features.is_none() ||
989                                                                                 !peer.should_forward_channel(msg.contents.short_channel_id) {
990                                                                         continue
991                                                                 }
992                                                                 match peer.their_node_id {
993                                                                         None => continue,
994                                                                         Some(their_node_id) => {
995                                                                                 if their_node_id == msg.contents.node_id_1 || their_node_id == msg.contents.node_id_2 {
996                                                                                         continue
997                                                                                 }
998                                                                         }
999                                                                 }
1000                                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encoded_msg[..]));
1001                                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encoded_update_msg[..]));
1002                                                                 self.do_attempt_write_data(&mut (*descriptor).clone(), peer);
1003                                                         }
1004                                                 }
1005                                         },
1006                                         MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
1007                                                 log_trace!(self, "Handling BroadcastChannelUpdate event in peer_handler for short channel id {}", msg.contents.short_channel_id);
1008                                                 if self.message_handler.route_handler.handle_channel_update(msg).is_ok() {
1009                                                         let encoded_msg = encode_msg!(msg, 258);
1010
1011                                                         for (ref descriptor, ref mut peer) in peers.peers.iter_mut() {
1012                                                                 if !peer.channel_encryptor.is_ready_for_encryption() || peer.their_global_features.is_none() ||
1013                                                                                 !peer.should_forward_channel(msg.contents.short_channel_id)  {
1014                                                                         continue
1015                                                                 }
1016                                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encoded_msg[..]));
1017                                                                 self.do_attempt_write_data(&mut (*descriptor).clone(), peer);
1018                                                         }
1019                                                 }
1020                                         },
1021                                         MessageSendEvent::PaymentFailureNetworkUpdate { ref update } => {
1022                                                 self.message_handler.route_handler.handle_htlc_fail_channel_update(update);
1023                                         },
1024                                         MessageSendEvent::HandleError { ref node_id, ref action } => {
1025                                                 match *action {
1026                                                         msgs::ErrorAction::DisconnectPeer { ref msg } => {
1027                                                                 if let Some(mut descriptor) = peers.node_id_to_descriptor.remove(node_id) {
1028                                                                         peers.peers_needing_send.remove(&descriptor);
1029                                                                         if let Some(mut peer) = peers.peers.remove(&descriptor) {
1030                                                                                 if let Some(ref msg) = *msg {
1031                                                                                         log_trace!(self, "Handling DisconnectPeer HandleError event in peer_handler for node {} with message {}",
1032                                                                                                         log_pubkey!(node_id),
1033                                                                                                         msg.data);
1034                                                                                         peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 17)));
1035                                                                                         // This isn't guaranteed to work, but if there is enough free
1036                                                                                         // room in the send buffer, put the error message there...
1037                                                                                         self.do_attempt_write_data(&mut descriptor, &mut peer);
1038                                                                                 } else {
1039                                                                                         log_trace!(self, "Handling DisconnectPeer HandleError event in peer_handler for node {} with no message", log_pubkey!(node_id));
1040                                                                                 }
1041                                                                         }
1042                                                                         descriptor.disconnect_socket();
1043                                                                         self.message_handler.chan_handler.peer_disconnected(&node_id, false);
1044                                                                 }
1045                                                         },
1046                                                         msgs::ErrorAction::IgnoreError => {},
1047                                                         msgs::ErrorAction::SendErrorMessage { ref msg } => {
1048                                                                 log_trace!(self, "Handling SendErrorMessage HandleError event in peer_handler for node {} with message {}",
1049                                                                                 log_pubkey!(node_id),
1050                                                                                 msg.data);
1051                                                                 let (mut descriptor, peer) = get_peer_for_forwarding!(node_id, {
1052                                                                         //TODO: Do whatever we're gonna do for handling dropped messages
1053                                                                 });
1054                                                                 peer.pending_outbound_buffer.push_back(peer.channel_encryptor.encrypt_message(&encode_msg!(msg, 17)));
1055                                                                 self.do_attempt_write_data(&mut descriptor, peer);
1056                                                         },
1057                                                 }
1058                                         }
1059                                 }
1060                         }
1061
1062                         for mut descriptor in peers.peers_needing_send.drain() {
1063                                 match peers.peers.get_mut(&descriptor) {
1064                                         Some(peer) => self.do_attempt_write_data(&mut descriptor, peer),
1065                                         None => panic!("Inconsistent peers set state!"),
1066                                 }
1067                         }
1068                 }
1069         }
1070
1071         /// Indicates that the given socket descriptor's connection is now closed.
1072         ///
1073         /// This must be called even if a PeerHandleError was given for a read_event or write_event,
1074         /// but must NOT be called if a PeerHandleError was provided out of a new_\*\_connection event!
1075         ///
1076         /// Panics if the descriptor was not previously registered in a successful new_*_connection event.
1077         pub fn disconnect_event(&self, descriptor: &Descriptor) {
1078                 self.disconnect_event_internal(descriptor, false);
1079         }
1080
1081         fn disconnect_event_internal(&self, descriptor: &Descriptor, no_connection_possible: bool) {
1082                 let mut peers = self.peers.lock().unwrap();
1083                 peers.peers_needing_send.remove(descriptor);
1084                 let peer_option = peers.peers.remove(descriptor);
1085                 match peer_option {
1086                         None => panic!("Descriptor for disconnect_event is not already known to PeerManager"),
1087                         Some(peer) => {
1088                                 match peer.their_node_id {
1089                                         Some(node_id) => {
1090                                                 peers.node_id_to_descriptor.remove(&node_id);
1091                                                 self.message_handler.chan_handler.peer_disconnected(&node_id, no_connection_possible);
1092                                         },
1093                                         None => {}
1094                                 }
1095                         }
1096                 };
1097         }
1098
1099
1100
1101 /*tto
1102 get all the descriptors (this would take the lock)
1103
1104 do_read_event on all the Descriptors
1105
1106 action_if_no_ping (also ping peers) this would take the lock
1107
1108
1109
1110
1111 */
1112
1113 fn get_des(&self) -> Vec<Descriptor> {
1114         let mut des_set: Vec<Descriptor> = Vec::new();
1115         let mut peers_lock = self.peers.lock().unwrap();
1116         let peers = peers_lock.borrow_parts();
1117                         
1118         for (Descriptor, mut Peer) in peers.peers.iter_mut() {
1119
1120                                 //read all events that have been sent from the Peer
1121                                 let mut descriptor = Descriptor.clone();
1122                                 des_set.push(descriptor);
1123         }
1124         des_set
1125
1126 }
1127
1128 fn mass_do_read_event(&self, mut des_set: Vec<Descriptor>)
1129 {
1130         for (mut Descriptor) in des_set.iter_mut(){
1131                 let data: Vec<u8> = Vec::new();
1132                                 
1133                 let res = match self.do_read_event(&mut Descriptor, data){
1134                                         Ok(pause_read) => pause_read,
1135                                         Err(e) => panic!("something is wrong"),
1136                 };
1137         }
1138
1139 }
1140
1141 fn action_if_no_ping(&self){
1142
1143                         let mut peers_lock = self.peers.lock().unwrap();
1144                         let peers = peers_lock.borrow_parts();
1145                         
1146                         for (Descriptor, mut Peer) in peers.peers.iter_mut() {
1147
1148                                 // Disconect the Peer if there is an outstanding ping for which we have not been ponged
1149                                 if Peer.ping_tracker > 0 {
1150                                         self.disconnect_event(Descriptor);
1151                                 }
1152
1153                         else {
1154                 
1155                         let ping = msgs::Ping {
1156                                 ponglen: 64,
1157                                 byteslen: 64,
1158                         };
1159
1160                         Peer.pending_outbound_buffer.push_back(Peer.channel_encryptor.encrypt_message(&encode_msg!(ping, 18)));
1161
1162                         let mut descriptor = Descriptor.clone();
1163                         self.do_attempt_write_data(&mut descriptor, &mut Peer);
1164                         Peer.ping_tracker += 1;
1165                 
1166
1167                         }
1168                 }
1169
1170 }
1171
1172 ///s
1173         pub fn tto(&self){
1174                 let mut des_set: Vec<Descriptor> = self.get_des();
1175                 self.mass_do_read_event(des_set);
1176                 self.action_if_no_ping();
1177         }
1178
1179         /// insure we recieved pong message from all peers or disconnect the peers then ping all peers
1180         pub fn timer_tick_occurred(&self){
1181
1182                         let mut peers_lock = self.peers.lock().unwrap();
1183                         let peers = peers_lock.borrow_parts();
1184                         
1185                         for (Descriptor, mut Peer) in peers.peers.iter_mut() {
1186
1187                                 //read all events that have been sent from the Peer
1188                                 let mut descriptor = Descriptor.clone();
1189                                 let data: Vec<u8> = Vec::new();
1190                                 
1191                                 let res = match self.do_read_event(&mut descriptor, data){
1192                                         Ok(pause_read) => pause_read,
1193                                         Err(e) => panic!("something is wrong"),
1194                                 };
1195                                 
1196                                 // Disconect the Peer if there is an outstanding ping for which we have not been ponged
1197                                 if Peer.ping_tracker > 0 {
1198                                         self.disconnect_event(Descriptor);
1199                                 }
1200
1201
1202                         else {
1203                 
1204                         let ping = msgs::Ping {
1205                                 ponglen: 64,
1206                                 byteslen: 64,
1207                         };
1208
1209                         Peer.pending_outbound_buffer.push_back(Peer.channel_encryptor.encrypt_message(&encode_msg!(ping, 18)));
1210
1211                         let mut descriptor = Descriptor.clone();
1212                         self.do_attempt_write_data(&mut descriptor, &mut Peer);
1213                         Peer.ping_tracker += 1;
1214                 
1215
1216                         }
1217                 }
1218         }
1219 }
1220
1221
1222
1223
1224
1225 #[cfg(test)]
1226 mod tests {
1227         use ln::peer_handler::{PeerManager, MessageHandler, SocketDescriptor};
1228         use ln::msgs;
1229         use util::events;
1230         use util::test_utils;
1231         use util::logger::Logger;
1232         use util::ser::{Writeable, Writer, Readable};
1233
1234         use std::collections::{HashMap,hash_map,HashSet,LinkedList};
1235
1236         use secp256k1::Secp256k1;
1237         use secp256k1::key::{SecretKey, PublicKey};
1238
1239         use rand::{thread_rng, Rng};
1240
1241         use std::sync::{Arc};
1242
1243         #[derive(PartialEq, Eq, Clone, Hash)]
1244         struct FileDescriptor {
1245                 fd: u16,
1246         }
1247
1248         impl SocketDescriptor for FileDescriptor {
1249                 fn send_data(&mut self, data: &[u8], _resume_read: bool) -> usize {
1250                         data.len()
1251                 }
1252
1253                 fn disconnect_socket(&mut self) {}
1254         }
1255
1256         fn create_network(peer_count: usize) -> Vec<PeerManager<FileDescriptor>> {
1257                 let mut peers = Vec::new();
1258                 let mut rng = thread_rng();
1259                 let logger : Arc<Logger> = Arc::new(test_utils::TestLogger::new());
1260                 let mut ephemeral_bytes = [0; 32];
1261                 rng.fill_bytes(&mut ephemeral_bytes);
1262
1263                 for _ in 0..peer_count {
1264                         let chan_handler = test_utils::TestChannelMessageHandler::new();
1265                         let router = test_utils::TestRoutingMessageHandler::new();
1266                         let node_id = {
1267                                 let mut key_slice = [0;32];
1268                                 rng.fill_bytes(&mut key_slice);
1269                                 SecretKey::from_slice(&key_slice).unwrap()
1270                         };
1271                         let msg_handler = MessageHandler { chan_handler: Arc::new(chan_handler), route_handler: Arc::new(router) };
1272                         let peer = PeerManager::new(msg_handler, node_id, &ephemeral_bytes, Arc::clone(&logger));
1273                         peers.push(peer);
1274                 }
1275
1276                 peers
1277         }
1278
1279         fn establish_connection(peer_a: &PeerManager<FileDescriptor>, peer_b: &PeerManager<FileDescriptor>) {
1280                 let secp_ctx = Secp256k1::new();
1281                 let their_id = PublicKey::from_secret_key(&secp_ctx, &peer_b.our_node_secret);
1282                 let fd = FileDescriptor { fd: 1};
1283                 peer_a.new_inbound_connection(fd.clone()).unwrap();
1284                 peer_a.peers.lock().unwrap().node_id_to_descriptor.insert(their_id, fd.clone());
1285         }
1286
1287         #[test]
1288         fn test_disconnect_peer() {
1289                 // Simple test which builds a network of PeerManager, connects and brings them to NoiseState::Finished and
1290                 // push a DisconnectPeer event to remove the node flagged by id
1291                 let mut peers = create_network(2);
1292                 establish_connection(&peers[0], &peers[1]);
1293                 assert_eq!(peers[0].peers.lock().unwrap().peers.len(), 1);
1294
1295                 let secp_ctx = Secp256k1::new();
1296                 let their_id = PublicKey::from_secret_key(&secp_ctx, &peers[1].our_node_secret);
1297                 let chan_handler = test_utils::TestChannelMessageHandler::new();
1298                 chan_handler.pending_events.lock().unwrap().push(events::MessageSendEvent::HandleError {
1299                         node_id: their_id,
1300                         action: msgs::ErrorAction::DisconnectPeer { msg: None },
1301                 });
1302                 assert_eq!(chan_handler.pending_events.lock().unwrap().len(), 1);
1303                 peers[0].message_handler.chan_handler = Arc::new(chan_handler);
1304
1305                 peers[0].process_events();
1306                 assert_eq!(peers[0].peers.lock().unwrap().peers.len(), 0);
1307         }
1308
1309         #[test]
1310         fn ttt(){
1311
1312                 let mut peers = create_network(2);
1313                 establish_connection(&peers[0], &peers[1]);
1314                 assert_eq!(peers[0].peers.lock().unwrap().peers.len(), 1);
1315
1316
1317
1318                 for (peer_manager) in peers.iter(){
1319                         for (key, val) in  peer_manager.peers.lock().unwrap().peers.iter_mut(){
1320                                 let secp_ctx = Secp256k1::new();
1321                                 val.their_node_id = std::option::Option::Some(PublicKey::from_secret_key(&secp_ctx, &peer_manager.our_node_secret));
1322
1323                         }
1324                 }
1325                 //bring the state to noise::state::finished::
1326                 peers[0].tto();
1327                 //peers[1].process_events();
1328
1329                 //assert_eq!(peers[0].peers.lock().unwrap().peers.len(), 1);
1330
1331                 //peers[0].timer_tick_occurred();
1332                 //peers[0].timer_tick_occurred();
1333
1334                 //assert_eq!(peers[0].peers.lock().unwrap().peers.len(), 0);
1335
1336         }
1337
1338 }
1339