Flatten OnionHopData struct with the Realm0 struct.
[rust-lightning] / lightning / src / ln / msgs.rs
1 //! Wire messages, traits representing wire message handlers, and a few error types live here.
2 //!
3 //! For a normal node you probably don't need to use anything here, however, if you wish to split a
4 //! node into an internet-facing route/message socket handling daemon and a separate daemon (or
5 //! server entirely) which handles only channel-related messages you may wish to implement
6 //! ChannelMessageHandler yourself and use it to re-serialize messages and pass them across
7 //! daemons/servers.
8 //!
9 //! Note that if you go with such an architecture (instead of passing raw socket events to a
10 //! non-internet-facing system) you trust the frontend internet-facing system to not lie about the
11 //! source node_id of the message, however this does allow you to significantly reduce bandwidth
12 //! between the systems as routing messages can represent a significant chunk of bandwidth usage
13 //! (especially for non-channel-publicly-announcing nodes). As an alternate design which avoids
14 //! this issue, if you have sufficient bidirectional bandwidth between your systems, you may send
15 //! raw socket events into your non-internet-facing system and then send routing events back to
16 //! track the network on the less-secure system.
17
18 use secp256k1::key::PublicKey;
19 use secp256k1::Signature;
20 use secp256k1;
21 use bitcoin_hashes::sha256d::Hash as Sha256dHash;
22 use bitcoin::blockdata::script::Script;
23
24 use ln::features::{ChannelFeatures, InitFeatures, NodeFeatures};
25
26 use std::error::Error;
27 use std::{cmp, fmt};
28 use std::io::Read;
29 use std::result::Result;
30
31 use util::events;
32 use util::ser::{Readable, Writeable, Writer};
33
34 use ln::channelmanager::{PaymentPreimage, PaymentHash};
35
36 /// An error in decoding a message or struct.
37 #[derive(Debug)]
38 pub enum DecodeError {
39         /// A version byte specified something we don't know how to handle.
40         /// Includes unknown realm byte in an OnionHopData packet
41         UnknownVersion,
42         /// Unknown feature mandating we fail to parse message
43         UnknownRequiredFeature,
44         /// Value was invalid, eg a byte which was supposed to be a bool was something other than a 0
45         /// or 1, a public key/private key/signature was invalid, text wasn't UTF-8, etc
46         InvalidValue,
47         /// Buffer too short
48         ShortRead,
49         /// node_announcement included more than one address of a given type!
50         ExtraAddressesPerType,
51         /// A length descriptor in the packet didn't describe the later data correctly
52         BadLengthDescriptor,
53         /// Error from std::io
54         Io(::std::io::Error),
55 }
56
57 /// An init message to be sent or received from a peer
58 pub struct Init {
59         #[cfg(not(feature = "fuzztarget"))]
60         pub(crate) features: InitFeatures,
61         #[cfg(feature = "fuzztarget")]
62         pub features: InitFeatures,
63 }
64
65 /// An error message to be sent or received from a peer
66 #[derive(Clone)]
67 pub struct ErrorMessage {
68         pub(crate) channel_id: [u8; 32],
69         pub(crate) data: String,
70 }
71
72 /// A ping message to be sent or received from a peer
73 pub struct Ping {
74         pub(crate) ponglen: u16,
75         pub(crate) byteslen: u16,
76 }
77
78 /// A pong message to be sent or received from a peer
79 pub struct Pong {
80         pub(crate) byteslen: u16,
81 }
82
83 /// An open_channel message to be sent or received from a peer
84 #[derive(Clone)]
85 pub struct OpenChannel {
86         pub(crate) chain_hash: Sha256dHash,
87         pub(crate) temporary_channel_id: [u8; 32],
88         pub(crate) funding_satoshis: u64,
89         pub(crate) push_msat: u64,
90         pub(crate) dust_limit_satoshis: u64,
91         pub(crate) max_htlc_value_in_flight_msat: u64,
92         pub(crate) channel_reserve_satoshis: u64,
93         pub(crate) htlc_minimum_msat: u64,
94         pub(crate) feerate_per_kw: u32,
95         pub(crate) to_self_delay: u16,
96         pub(crate) max_accepted_htlcs: u16,
97         pub(crate) funding_pubkey: PublicKey,
98         pub(crate) revocation_basepoint: PublicKey,
99         pub(crate) payment_basepoint: PublicKey,
100         pub(crate) delayed_payment_basepoint: PublicKey,
101         pub(crate) htlc_basepoint: PublicKey,
102         pub(crate) first_per_commitment_point: PublicKey,
103         pub(crate) channel_flags: u8,
104         pub(crate) shutdown_scriptpubkey: OptionalField<Script>,
105 }
106
107 /// An accept_channel message to be sent or received from a peer
108 #[derive(Clone)]
109 pub struct AcceptChannel {
110         pub(crate) temporary_channel_id: [u8; 32],
111         pub(crate) dust_limit_satoshis: u64,
112         pub(crate) max_htlc_value_in_flight_msat: u64,
113         pub(crate) channel_reserve_satoshis: u64,
114         pub(crate) htlc_minimum_msat: u64,
115         pub(crate) minimum_depth: u32,
116         pub(crate) to_self_delay: u16,
117         pub(crate) max_accepted_htlcs: u16,
118         pub(crate) funding_pubkey: PublicKey,
119         pub(crate) revocation_basepoint: PublicKey,
120         pub(crate) payment_basepoint: PublicKey,
121         pub(crate) delayed_payment_basepoint: PublicKey,
122         pub(crate) htlc_basepoint: PublicKey,
123         pub(crate) first_per_commitment_point: PublicKey,
124         pub(crate) shutdown_scriptpubkey: OptionalField<Script>
125 }
126
127 /// A funding_created message to be sent or received from a peer
128 #[derive(Clone)]
129 pub struct FundingCreated {
130         pub(crate) temporary_channel_id: [u8; 32],
131         pub(crate) funding_txid: Sha256dHash,
132         pub(crate) funding_output_index: u16,
133         pub(crate) signature: Signature,
134 }
135
136 /// A funding_signed message to be sent or received from a peer
137 #[derive(Clone)]
138 pub struct FundingSigned {
139         pub(crate) channel_id: [u8; 32],
140         pub(crate) signature: Signature,
141 }
142
143 /// A funding_locked message to be sent or received from a peer
144 #[derive(Clone, PartialEq)]
145 #[allow(missing_docs)]
146 pub struct FundingLocked {
147         pub channel_id: [u8; 32],
148         pub next_per_commitment_point: PublicKey,
149 }
150
151 /// A shutdown message to be sent or received from a peer
152 #[derive(Clone, PartialEq)]
153 pub struct Shutdown {
154         pub(crate) channel_id: [u8; 32],
155         pub(crate) scriptpubkey: Script,
156 }
157
158 /// A closing_signed message to be sent or received from a peer
159 #[derive(Clone, PartialEq)]
160 pub struct ClosingSigned {
161         pub(crate) channel_id: [u8; 32],
162         pub(crate) fee_satoshis: u64,
163         pub(crate) signature: Signature,
164 }
165
166 /// An update_add_htlc message to be sent or received from a peer
167 #[derive(Clone, PartialEq)]
168 pub struct UpdateAddHTLC {
169         pub(crate) channel_id: [u8; 32],
170         pub(crate) htlc_id: u64,
171         pub(crate) amount_msat: u64,
172         pub(crate) payment_hash: PaymentHash,
173         pub(crate) cltv_expiry: u32,
174         pub(crate) onion_routing_packet: OnionPacket,
175 }
176
177 /// An update_fulfill_htlc message to be sent or received from a peer
178 #[derive(Clone, PartialEq)]
179 pub struct UpdateFulfillHTLC {
180         pub(crate) channel_id: [u8; 32],
181         pub(crate) htlc_id: u64,
182         pub(crate) payment_preimage: PaymentPreimage,
183 }
184
185 /// An update_fail_htlc message to be sent or received from a peer
186 #[derive(Clone, PartialEq)]
187 pub struct UpdateFailHTLC {
188         pub(crate) channel_id: [u8; 32],
189         pub(crate) htlc_id: u64,
190         pub(crate) reason: OnionErrorPacket,
191 }
192
193 /// An update_fail_malformed_htlc message to be sent or received from a peer
194 #[derive(Clone, PartialEq)]
195 pub struct UpdateFailMalformedHTLC {
196         pub(crate) channel_id: [u8; 32],
197         pub(crate) htlc_id: u64,
198         pub(crate) sha256_of_onion: [u8; 32],
199         pub(crate) failure_code: u16,
200 }
201
202 /// A commitment_signed message to be sent or received from a peer
203 #[derive(Clone, PartialEq)]
204 pub struct CommitmentSigned {
205         pub(crate) channel_id: [u8; 32],
206         pub(crate) signature: Signature,
207         pub(crate) htlc_signatures: Vec<Signature>,
208 }
209
210 /// A revoke_and_ack message to be sent or received from a peer
211 #[derive(Clone, PartialEq)]
212 pub struct RevokeAndACK {
213         pub(crate) channel_id: [u8; 32],
214         pub(crate) per_commitment_secret: [u8; 32],
215         pub(crate) next_per_commitment_point: PublicKey,
216 }
217
218 /// An update_fee message to be sent or received from a peer
219 #[derive(PartialEq, Clone)]
220 pub struct UpdateFee {
221         pub(crate) channel_id: [u8; 32],
222         pub(crate) feerate_per_kw: u32,
223 }
224
225 #[derive(PartialEq, Clone)]
226 pub(crate) struct DataLossProtect {
227         pub(crate) your_last_per_commitment_secret: [u8; 32],
228         pub(crate) my_current_per_commitment_point: PublicKey,
229 }
230
231 /// A channel_reestablish message to be sent or received from a peer
232 #[derive(PartialEq, Clone)]
233 pub struct ChannelReestablish {
234         pub(crate) channel_id: [u8; 32],
235         pub(crate) next_local_commitment_number: u64,
236         pub(crate) next_remote_commitment_number: u64,
237         pub(crate) data_loss_protect: OptionalField<DataLossProtect>,
238 }
239
240 /// An announcement_signatures message to be sent or received from a peer
241 #[derive(PartialEq, Clone, Debug)]
242 pub struct AnnouncementSignatures {
243         pub(crate) channel_id: [u8; 32],
244         pub(crate) short_channel_id: u64,
245         pub(crate) node_signature: Signature,
246         pub(crate) bitcoin_signature: Signature,
247 }
248
249 /// An address which can be used to connect to a remote peer
250 #[derive(Clone, PartialEq, Debug)]
251 pub enum NetAddress {
252         /// An IPv4 address/port on which the peer is listening.
253         IPv4 {
254                 /// The 4-byte IPv4 address
255                 addr: [u8; 4],
256                 /// The port on which the node is listening
257                 port: u16,
258         },
259         /// An IPv6 address/port on which the peer is listening.
260         IPv6 {
261                 /// The 16-byte IPv6 address
262                 addr: [u8; 16],
263                 /// The port on which the node is listening
264                 port: u16,
265         },
266         /// An old-style Tor onion address/port on which the peer is listening.
267         OnionV2 {
268                 /// The bytes (usually encoded in base32 with ".onion" appended)
269                 addr: [u8; 10],
270                 /// The port on which the node is listening
271                 port: u16,
272         },
273         /// A new-style Tor onion address/port on which the peer is listening.
274         /// To create the human-readable "hostname", concatenate ed25519_pubkey, checksum, and version,
275         /// wrap as base32 and append ".onion".
276         OnionV3 {
277                 /// The ed25519 long-term public key of the peer
278                 ed25519_pubkey: [u8; 32],
279                 /// The checksum of the pubkey and version, as included in the onion address
280                 checksum: u16,
281                 /// The version byte, as defined by the Tor Onion v3 spec.
282                 version: u8,
283                 /// The port on which the node is listening
284                 port: u16,
285         },
286 }
287 impl NetAddress {
288         fn get_id(&self) -> u8 {
289                 match self {
290                         &NetAddress::IPv4 {..} => { 1 },
291                         &NetAddress::IPv6 {..} => { 2 },
292                         &NetAddress::OnionV2 {..} => { 3 },
293                         &NetAddress::OnionV3 {..} => { 4 },
294                 }
295         }
296
297         /// Strict byte-length of address descriptor, 1-byte type not recorded
298         fn len(&self) -> u16 {
299                 match self {
300                         &NetAddress::IPv4 { .. } => { 6 },
301                         &NetAddress::IPv6 { .. } => { 18 },
302                         &NetAddress::OnionV2 { .. } => { 12 },
303                         &NetAddress::OnionV3 { .. } => { 37 },
304                 }
305         }
306 }
307
308 impl Writeable for NetAddress {
309         fn write<W: Writer>(&self, writer: &mut W) -> Result<(), ::std::io::Error> {
310                 match self {
311                         &NetAddress::IPv4 { ref addr, ref port } => {
312                                 1u8.write(writer)?;
313                                 addr.write(writer)?;
314                                 port.write(writer)?;
315                         },
316                         &NetAddress::IPv6 { ref addr, ref port } => {
317                                 2u8.write(writer)?;
318                                 addr.write(writer)?;
319                                 port.write(writer)?;
320                         },
321                         &NetAddress::OnionV2 { ref addr, ref port } => {
322                                 3u8.write(writer)?;
323                                 addr.write(writer)?;
324                                 port.write(writer)?;
325                         },
326                         &NetAddress::OnionV3 { ref ed25519_pubkey, ref checksum, ref version, ref port } => {
327                                 4u8.write(writer)?;
328                                 ed25519_pubkey.write(writer)?;
329                                 checksum.write(writer)?;
330                                 version.write(writer)?;
331                                 port.write(writer)?;
332                         }
333                 }
334                 Ok(())
335         }
336 }
337
338 impl<R: ::std::io::Read>  Readable<R> for Result<NetAddress, u8> {
339         fn read(reader: &mut R) -> Result<Result<NetAddress, u8>, DecodeError> {
340                 let byte = <u8 as Readable<R>>::read(reader)?;
341                 match byte {
342                         1 => {
343                                 Ok(Ok(NetAddress::IPv4 {
344                                         addr: Readable::read(reader)?,
345                                         port: Readable::read(reader)?,
346                                 }))
347                         },
348                         2 => {
349                                 Ok(Ok(NetAddress::IPv6 {
350                                         addr: Readable::read(reader)?,
351                                         port: Readable::read(reader)?,
352                                 }))
353                         },
354                         3 => {
355                                 Ok(Ok(NetAddress::OnionV2 {
356                                         addr: Readable::read(reader)?,
357                                         port: Readable::read(reader)?,
358                                 }))
359                         },
360                         4 => {
361                                 Ok(Ok(NetAddress::OnionV3 {
362                                         ed25519_pubkey: Readable::read(reader)?,
363                                         checksum: Readable::read(reader)?,
364                                         version: Readable::read(reader)?,
365                                         port: Readable::read(reader)?,
366                                 }))
367                         },
368                         _ => return Ok(Err(byte)),
369                 }
370         }
371 }
372
373 // Only exposed as broadcast of node_announcement should be filtered by node_id
374 /// The unsigned part of a node_announcement
375 #[derive(PartialEq, Clone, Debug)]
376 pub struct UnsignedNodeAnnouncement {
377         pub(crate) features: NodeFeatures,
378         pub(crate) timestamp: u32,
379         /// The node_id this announcement originated from (don't rebroadcast the node_announcement back
380         /// to this node).
381         pub        node_id: PublicKey,
382         pub(crate) rgb: [u8; 3],
383         pub(crate) alias: [u8; 32],
384         /// List of addresses on which this node is reachable. Note that you may only have up to one
385         /// address of each type, if you have more, they may be silently discarded or we may panic!
386         pub(crate) addresses: Vec<NetAddress>,
387         pub(crate) excess_address_data: Vec<u8>,
388         pub(crate) excess_data: Vec<u8>,
389 }
390 #[derive(PartialEq, Clone)]
391 /// A node_announcement message to be sent or received from a peer
392 pub struct NodeAnnouncement {
393         pub(crate) signature: Signature,
394         pub(crate) contents: UnsignedNodeAnnouncement,
395 }
396
397 // Only exposed as broadcast of channel_announcement should be filtered by node_id
398 /// The unsigned part of a channel_announcement
399 #[derive(PartialEq, Clone, Debug)]
400 pub struct UnsignedChannelAnnouncement {
401         pub(crate) features: ChannelFeatures,
402         pub(crate) chain_hash: Sha256dHash,
403         pub(crate) short_channel_id: u64,
404         /// One of the two node_ids which are endpoints of this channel
405         pub        node_id_1: PublicKey,
406         /// The other of the two node_ids which are endpoints of this channel
407         pub        node_id_2: PublicKey,
408         pub(crate) bitcoin_key_1: PublicKey,
409         pub(crate) bitcoin_key_2: PublicKey,
410         pub(crate) excess_data: Vec<u8>,
411 }
412 /// A channel_announcement message to be sent or received from a peer
413 #[derive(PartialEq, Clone, Debug)]
414 pub struct ChannelAnnouncement {
415         pub(crate) node_signature_1: Signature,
416         pub(crate) node_signature_2: Signature,
417         pub(crate) bitcoin_signature_1: Signature,
418         pub(crate) bitcoin_signature_2: Signature,
419         pub(crate) contents: UnsignedChannelAnnouncement,
420 }
421
422 #[derive(PartialEq, Clone, Debug)]
423 pub(crate) struct UnsignedChannelUpdate {
424         pub(crate) chain_hash: Sha256dHash,
425         pub(crate) short_channel_id: u64,
426         pub(crate) timestamp: u32,
427         pub(crate) flags: u16,
428         pub(crate) cltv_expiry_delta: u16,
429         pub(crate) htlc_minimum_msat: u64,
430         pub(crate) fee_base_msat: u32,
431         pub(crate) fee_proportional_millionths: u32,
432         pub(crate) excess_data: Vec<u8>,
433 }
434 /// A channel_update message to be sent or received from a peer
435 #[derive(PartialEq, Clone, Debug)]
436 pub struct ChannelUpdate {
437         pub(crate) signature: Signature,
438         pub(crate) contents: UnsignedChannelUpdate,
439 }
440
441 /// Used to put an error message in a LightningError
442 #[derive(Clone)]
443 pub enum ErrorAction {
444         /// The peer took some action which made us think they were useless. Disconnect them.
445         DisconnectPeer {
446                 /// An error message which we should make an effort to send before we disconnect.
447                 msg: Option<ErrorMessage>
448         },
449         /// The peer did something harmless that we weren't able to process, just log and ignore
450         IgnoreError,
451         /// The peer did something incorrect. Tell them.
452         SendErrorMessage {
453                 /// The message to send.
454                 msg: ErrorMessage
455         },
456 }
457
458 /// An Err type for failure to process messages.
459 pub struct LightningError {
460         /// A human-readable message describing the error
461         pub err: &'static str,
462         /// The action which should be taken against the offending peer.
463         pub action: ErrorAction,
464 }
465
466 /// Struct used to return values from revoke_and_ack messages, containing a bunch of commitment
467 /// transaction updates if they were pending.
468 #[derive(PartialEq, Clone)]
469 pub struct CommitmentUpdate {
470         /// update_add_htlc messages which should be sent
471         pub update_add_htlcs: Vec<UpdateAddHTLC>,
472         /// update_fulfill_htlc messages which should be sent
473         pub update_fulfill_htlcs: Vec<UpdateFulfillHTLC>,
474         /// update_fail_htlc messages which should be sent
475         pub update_fail_htlcs: Vec<UpdateFailHTLC>,
476         /// update_fail_malformed_htlc messages which should be sent
477         pub update_fail_malformed_htlcs: Vec<UpdateFailMalformedHTLC>,
478         /// An update_fee message which should be sent
479         pub update_fee: Option<UpdateFee>,
480         /// Finally, the commitment_signed message which should be sent
481         pub commitment_signed: CommitmentSigned,
482 }
483
484 /// The information we received from a peer along the route of a payment we originated. This is
485 /// returned by ChannelMessageHandler::handle_update_fail_htlc to be passed into
486 /// RoutingMessageHandler::handle_htlc_fail_channel_update to update our network map.
487 #[derive(Clone)]
488 pub enum HTLCFailChannelUpdate {
489         /// We received an error which included a full ChannelUpdate message.
490         ChannelUpdateMessage {
491                 /// The unwrapped message we received
492                 msg: ChannelUpdate,
493         },
494         /// We received an error which indicated only that a channel has been closed
495         ChannelClosed {
496                 /// The short_channel_id which has now closed.
497                 short_channel_id: u64,
498                 /// when this true, this channel should be permanently removed from the
499                 /// consideration. Otherwise, this channel can be restored as new channel_update is received
500                 is_permanent: bool,
501         },
502         /// We received an error which indicated only that a node has failed
503         NodeFailure {
504                 /// The node_id that has failed.
505                 node_id: PublicKey,
506                 /// when this true, node should be permanently removed from the
507                 /// consideration. Otherwise, the channels connected to this node can be
508                 /// restored as new channel_update is received
509                 is_permanent: bool,
510         }
511 }
512
513 /// Messages could have optional fields to use with extended features
514 /// As we wish to serialize these differently from Option<T>s (Options get a tag byte, but
515 /// OptionalFeild simply gets Present if there are enough bytes to read into it), we have a
516 /// separate enum type for them.
517 #[derive(Clone, PartialEq)]
518 pub enum OptionalField<T> {
519         /// Optional field is included in message
520         Present(T),
521         /// Optional field is absent in message
522         Absent
523 }
524
525 /// A trait to describe an object which can receive channel messages.
526 ///
527 /// Messages MAY be called in parallel when they originate from different their_node_ids, however
528 /// they MUST NOT be called in parallel when the two calls have the same their_node_id.
529 pub trait ChannelMessageHandler : events::MessageSendEventsProvider + Send + Sync {
530         //Channel init:
531         /// Handle an incoming open_channel message from the given peer.
532         fn handle_open_channel(&self, their_node_id: &PublicKey, their_features: InitFeatures, msg: &OpenChannel);
533         /// Handle an incoming accept_channel message from the given peer.
534         fn handle_accept_channel(&self, their_node_id: &PublicKey, their_features: InitFeatures, msg: &AcceptChannel);
535         /// Handle an incoming funding_created message from the given peer.
536         fn handle_funding_created(&self, their_node_id: &PublicKey, msg: &FundingCreated);
537         /// Handle an incoming funding_signed message from the given peer.
538         fn handle_funding_signed(&self, their_node_id: &PublicKey, msg: &FundingSigned);
539         /// Handle an incoming funding_locked message from the given peer.
540         fn handle_funding_locked(&self, their_node_id: &PublicKey, msg: &FundingLocked);
541
542         // Channl close:
543         /// Handle an incoming shutdown message from the given peer.
544         fn handle_shutdown(&self, their_node_id: &PublicKey, msg: &Shutdown);
545         /// Handle an incoming closing_signed message from the given peer.
546         fn handle_closing_signed(&self, their_node_id: &PublicKey, msg: &ClosingSigned);
547
548         // HTLC handling:
549         /// Handle an incoming update_add_htlc message from the given peer.
550         fn handle_update_add_htlc(&self, their_node_id: &PublicKey, msg: &UpdateAddHTLC);
551         /// Handle an incoming update_fulfill_htlc message from the given peer.
552         fn handle_update_fulfill_htlc(&self, their_node_id: &PublicKey, msg: &UpdateFulfillHTLC);
553         /// Handle an incoming update_fail_htlc message from the given peer.
554         fn handle_update_fail_htlc(&self, their_node_id: &PublicKey, msg: &UpdateFailHTLC);
555         /// Handle an incoming update_fail_malformed_htlc message from the given peer.
556         fn handle_update_fail_malformed_htlc(&self, their_node_id: &PublicKey, msg: &UpdateFailMalformedHTLC);
557         /// Handle an incoming commitment_signed message from the given peer.
558         fn handle_commitment_signed(&self, their_node_id: &PublicKey, msg: &CommitmentSigned);
559         /// Handle an incoming revoke_and_ack message from the given peer.
560         fn handle_revoke_and_ack(&self, their_node_id: &PublicKey, msg: &RevokeAndACK);
561
562         /// Handle an incoming update_fee message from the given peer.
563         fn handle_update_fee(&self, their_node_id: &PublicKey, msg: &UpdateFee);
564
565         // Channel-to-announce:
566         /// Handle an incoming announcement_signatures message from the given peer.
567         fn handle_announcement_signatures(&self, their_node_id: &PublicKey, msg: &AnnouncementSignatures);
568
569         // Connection loss/reestablish:
570         /// Indicates a connection to the peer failed/an existing connection was lost. If no connection
571         /// is believed to be possible in the future (eg they're sending us messages we don't
572         /// understand or indicate they require unknown feature bits), no_connection_possible is set
573         /// and any outstanding channels should be failed.
574         fn peer_disconnected(&self, their_node_id: &PublicKey, no_connection_possible: bool);
575
576         /// Handle a peer reconnecting, possibly generating channel_reestablish message(s).
577         fn peer_connected(&self, their_node_id: &PublicKey, msg: &Init);
578         /// Handle an incoming channel_reestablish message from the given peer.
579         fn handle_channel_reestablish(&self, their_node_id: &PublicKey, msg: &ChannelReestablish);
580
581         // Error:
582         /// Handle an incoming error message from the given peer.
583         fn handle_error(&self, their_node_id: &PublicKey, msg: &ErrorMessage);
584 }
585
586 /// A trait to describe an object which can receive routing messages.
587 pub trait RoutingMessageHandler : Send + Sync {
588         /// Handle an incoming node_announcement message, returning true if it should be forwarded on,
589         /// false or returning an Err otherwise.
590         fn handle_node_announcement(&self, msg: &NodeAnnouncement) -> Result<bool, LightningError>;
591         /// Handle a channel_announcement message, returning true if it should be forwarded on, false
592         /// or returning an Err otherwise.
593         fn handle_channel_announcement(&self, msg: &ChannelAnnouncement) -> Result<bool, LightningError>;
594         /// Handle an incoming channel_update message, returning true if it should be forwarded on,
595         /// false or returning an Err otherwise.
596         fn handle_channel_update(&self, msg: &ChannelUpdate) -> Result<bool, LightningError>;
597         /// Handle some updates to the route graph that we learned due to an outbound failed payment.
598         fn handle_htlc_fail_channel_update(&self, update: &HTLCFailChannelUpdate);
599         /// Gets a subset of the channel announcements and updates required to dump our routing table
600         /// to a remote node, starting at the short_channel_id indicated by starting_point and
601         /// including batch_amount entries.
602         fn get_next_channel_announcements(&self, starting_point: u64, batch_amount: u8) -> Vec<(ChannelAnnouncement, ChannelUpdate, ChannelUpdate)>;
603         /// Gets a subset of the node announcements required to dump our routing table to a remote node,
604         /// starting at the node *after* the provided publickey and including batch_amount entries.
605         /// If None is provided for starting_point, we start at the first node.
606         fn get_next_node_announcements(&self, starting_point: Option<&PublicKey>, batch_amount: u8) -> Vec<NodeAnnouncement>;
607 }
608
609 mod fuzzy_internal_msgs {
610         // These types aren't intended to be pub, but are exposed for direct fuzzing (as we deserialize
611         // them from untrusted input):
612
613         pub(crate) enum OnionHopDataFormat {
614                 Legacy, // aka Realm-0
615                 // Some tests expect to be able to generate bogus non-deserializable OnionHopDatas. In the
616                 // future we can use bogus TLV attributes, but for now we have to expose a "bogus realm"
617                 // option.
618                 #[cfg(test)]
619                 BogusRealm(u8),
620         }
621
622         pub struct OnionHopData {
623                 pub(crate) format: OnionHopDataFormat,
624                 pub(crate) short_channel_id: u64,
625                 pub(crate) amt_to_forward: u64,
626                 pub(crate) outgoing_cltv_value: u32,
627                 // 12 bytes of 0-padding
628                 pub(crate) hmac: [u8; 32],
629         }
630
631         pub struct DecodedOnionErrorPacket {
632                 pub(crate) hmac: [u8; 32],
633                 pub(crate) failuremsg: Vec<u8>,
634                 pub(crate) pad: Vec<u8>,
635         }
636 }
637 #[cfg(feature = "fuzztarget")]
638 pub use self::fuzzy_internal_msgs::*;
639 #[cfg(not(feature = "fuzztarget"))]
640 pub(crate) use self::fuzzy_internal_msgs::*;
641
642 #[derive(Clone)]
643 pub(crate) struct OnionPacket {
644         pub(crate) version: u8,
645         /// In order to ensure we always return an error on Onion decode in compliance with BOLT 4, we
646         /// have to deserialize OnionPackets contained in UpdateAddHTLCs even if the ephemeral public
647         /// key (here) is bogus, so we hold a Result instead of a PublicKey as we'd like.
648         pub(crate) public_key: Result<PublicKey, secp256k1::Error>,
649         pub(crate) hop_data: [u8; 20*65],
650         pub(crate) hmac: [u8; 32],
651 }
652
653 impl PartialEq for OnionPacket {
654         fn eq(&self, other: &OnionPacket) -> bool {
655                 for (i, j) in self.hop_data.iter().zip(other.hop_data.iter()) {
656                         if i != j { return false; }
657                 }
658                 self.version == other.version &&
659                         self.public_key == other.public_key &&
660                         self.hmac == other.hmac
661         }
662 }
663
664 #[derive(Clone, PartialEq)]
665 pub(crate) struct OnionErrorPacket {
666         // This really should be a constant size slice, but the spec lets these things be up to 128KB?
667         // (TODO) We limit it in decode to much lower...
668         pub(crate) data: Vec<u8>,
669 }
670
671 impl Error for DecodeError {
672         fn description(&self) -> &str {
673                 match *self {
674                         DecodeError::UnknownVersion => "Unknown realm byte in Onion packet",
675                         DecodeError::UnknownRequiredFeature => "Unknown required feature preventing decode",
676                         DecodeError::InvalidValue => "Nonsense bytes didn't map to the type they were interpreted as",
677                         DecodeError::ShortRead => "Packet extended beyond the provided bytes",
678                         DecodeError::ExtraAddressesPerType => "More than one address of a single type",
679                         DecodeError::BadLengthDescriptor => "A length descriptor in the packet didn't describe the later data correctly",
680                         DecodeError::Io(ref e) => e.description(),
681                 }
682         }
683 }
684 impl fmt::Display for DecodeError {
685         fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
686                 f.write_str(self.description())
687         }
688 }
689
690 impl fmt::Debug for LightningError {
691         fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
692                 f.write_str(self.err)
693         }
694 }
695
696 impl From<::std::io::Error> for DecodeError {
697         fn from(e: ::std::io::Error) -> Self {
698                 if e.kind() == ::std::io::ErrorKind::UnexpectedEof {
699                         DecodeError::ShortRead
700                 } else {
701                         DecodeError::Io(e)
702                 }
703         }
704 }
705
706 impl Writeable for OptionalField<Script> {
707         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
708                 match *self {
709                         OptionalField::Present(ref script) => {
710                                 // Note that Writeable for script includes the 16-bit length tag for us
711                                 script.write(w)?;
712                         },
713                         OptionalField::Absent => {}
714                 }
715                 Ok(())
716         }
717 }
718
719 impl<R: Read> Readable<R> for OptionalField<Script> {
720         fn read(r: &mut R) -> Result<Self, DecodeError> {
721                 match <u16 as Readable<R>>::read(r) {
722                         Ok(len) => {
723                                 let mut buf = vec![0; len as usize];
724                                 r.read_exact(&mut buf)?;
725                                 Ok(OptionalField::Present(Script::from(buf)))
726                         },
727                         Err(DecodeError::ShortRead) => Ok(OptionalField::Absent),
728                         Err(e) => Err(e)
729                 }
730         }
731 }
732
733 impl_writeable_len_match!(AcceptChannel, {
734                 {AcceptChannel{ shutdown_scriptpubkey: OptionalField::Present(ref script), .. }, 270 + 2 + script.len()},
735                 {_, 270}
736         }, {
737         temporary_channel_id,
738         dust_limit_satoshis,
739         max_htlc_value_in_flight_msat,
740         channel_reserve_satoshis,
741         htlc_minimum_msat,
742         minimum_depth,
743         to_self_delay,
744         max_accepted_htlcs,
745         funding_pubkey,
746         revocation_basepoint,
747         payment_basepoint,
748         delayed_payment_basepoint,
749         htlc_basepoint,
750         first_per_commitment_point,
751         shutdown_scriptpubkey
752 });
753
754 impl_writeable!(AnnouncementSignatures, 32+8+64*2, {
755         channel_id,
756         short_channel_id,
757         node_signature,
758         bitcoin_signature
759 });
760
761 impl Writeable for ChannelReestablish {
762         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
763                 w.size_hint(if let OptionalField::Present(..) = self.data_loss_protect { 32+2*8+33+32 } else { 32+2*8 });
764                 self.channel_id.write(w)?;
765                 self.next_local_commitment_number.write(w)?;
766                 self.next_remote_commitment_number.write(w)?;
767                 match self.data_loss_protect {
768                         OptionalField::Present(ref data_loss_protect) => {
769                                 (*data_loss_protect).your_last_per_commitment_secret.write(w)?;
770                                 (*data_loss_protect).my_current_per_commitment_point.write(w)?;
771                         },
772                         OptionalField::Absent => {}
773                 }
774                 Ok(())
775         }
776 }
777
778 impl<R: Read> Readable<R> for ChannelReestablish{
779         fn read(r: &mut R) -> Result<Self, DecodeError> {
780                 Ok(Self {
781                         channel_id: Readable::read(r)?,
782                         next_local_commitment_number: Readable::read(r)?,
783                         next_remote_commitment_number: Readable::read(r)?,
784                         data_loss_protect: {
785                                 match <[u8; 32] as Readable<R>>::read(r) {
786                                         Ok(your_last_per_commitment_secret) =>
787                                                 OptionalField::Present(DataLossProtect {
788                                                         your_last_per_commitment_secret,
789                                                         my_current_per_commitment_point: Readable::read(r)?,
790                                                 }),
791                                         Err(DecodeError::ShortRead) => OptionalField::Absent,
792                                         Err(e) => return Err(e)
793                                 }
794                         }
795                 })
796         }
797 }
798
799 impl_writeable!(ClosingSigned, 32+8+64, {
800         channel_id,
801         fee_satoshis,
802         signature
803 });
804
805 impl_writeable_len_match!(CommitmentSigned, {
806                 { CommitmentSigned { ref htlc_signatures, .. }, 32+64+2+htlc_signatures.len()*64 }
807         }, {
808         channel_id,
809         signature,
810         htlc_signatures
811 });
812
813 impl_writeable_len_match!(DecodedOnionErrorPacket, {
814                 { DecodedOnionErrorPacket { ref failuremsg, ref pad, .. }, 32 + 4 + failuremsg.len() + pad.len() }
815         }, {
816         hmac,
817         failuremsg,
818         pad
819 });
820
821 impl_writeable!(FundingCreated, 32+32+2+64, {
822         temporary_channel_id,
823         funding_txid,
824         funding_output_index,
825         signature
826 });
827
828 impl_writeable!(FundingSigned, 32+64, {
829         channel_id,
830         signature
831 });
832
833 impl_writeable!(FundingLocked, 32+33, {
834         channel_id,
835         next_per_commitment_point
836 });
837
838 impl Writeable for Init {
839         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
840                 // global_features gets the bottom 13 bits of our features, and local_features gets all of
841                 // our relevant feature bits. This keeps us compatible with old nodes.
842                 self.features.write_up_to_13(w)?;
843                 self.features.write(w)
844         }
845 }
846
847 impl<R: Read> Readable<R> for Init {
848         fn read(r: &mut R) -> Result<Self, DecodeError> {
849                 let global_features: InitFeatures = Readable::read(r)?;
850                 let features: InitFeatures = Readable::read(r)?;
851                 Ok(Init {
852                         features: features.or(global_features),
853                 })
854         }
855 }
856
857 impl_writeable_len_match!(OpenChannel, {
858                 { OpenChannel { shutdown_scriptpubkey: OptionalField::Present(ref script), .. }, 319 + 2 + script.len() },
859                 { _, 319 }
860         }, {
861         chain_hash,
862         temporary_channel_id,
863         funding_satoshis,
864         push_msat,
865         dust_limit_satoshis,
866         max_htlc_value_in_flight_msat,
867         channel_reserve_satoshis,
868         htlc_minimum_msat,
869         feerate_per_kw,
870         to_self_delay,
871         max_accepted_htlcs,
872         funding_pubkey,
873         revocation_basepoint,
874         payment_basepoint,
875         delayed_payment_basepoint,
876         htlc_basepoint,
877         first_per_commitment_point,
878         channel_flags,
879         shutdown_scriptpubkey
880 });
881
882 impl_writeable!(RevokeAndACK, 32+32+33, {
883         channel_id,
884         per_commitment_secret,
885         next_per_commitment_point
886 });
887
888 impl_writeable_len_match!(Shutdown, {
889                 { Shutdown { ref scriptpubkey, .. }, 32 + 2 + scriptpubkey.len() }
890         }, {
891         channel_id,
892         scriptpubkey
893 });
894
895 impl_writeable_len_match!(UpdateFailHTLC, {
896                 { UpdateFailHTLC { ref reason, .. }, 32 + 10 + reason.data.len() }
897         }, {
898         channel_id,
899         htlc_id,
900         reason
901 });
902
903 impl_writeable!(UpdateFailMalformedHTLC, 32+8+32+2, {
904         channel_id,
905         htlc_id,
906         sha256_of_onion,
907         failure_code
908 });
909
910 impl_writeable!(UpdateFee, 32+4, {
911         channel_id,
912         feerate_per_kw
913 });
914
915 impl_writeable!(UpdateFulfillHTLC, 32+8+32, {
916         channel_id,
917         htlc_id,
918         payment_preimage
919 });
920
921 impl_writeable_len_match!(OnionErrorPacket, {
922                 { OnionErrorPacket { ref data, .. }, 2 + data.len() }
923         }, {
924         data
925 });
926
927 impl Writeable for OnionPacket {
928         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
929                 w.size_hint(1 + 33 + 20*65 + 32);
930                 self.version.write(w)?;
931                 match self.public_key {
932                         Ok(pubkey) => pubkey.write(w)?,
933                         Err(_) => [0u8;33].write(w)?,
934                 }
935                 w.write_all(&self.hop_data)?;
936                 self.hmac.write(w)?;
937                 Ok(())
938         }
939 }
940
941 impl<R: Read> Readable<R> for OnionPacket {
942         fn read(r: &mut R) -> Result<Self, DecodeError> {
943                 Ok(OnionPacket {
944                         version: Readable::read(r)?,
945                         public_key: {
946                                 let mut buf = [0u8;33];
947                                 r.read_exact(&mut buf)?;
948                                 PublicKey::from_slice(&buf)
949                         },
950                         hop_data: Readable::read(r)?,
951                         hmac: Readable::read(r)?,
952                 })
953         }
954 }
955
956 impl_writeable!(UpdateAddHTLC, 32+8+8+32+4+1366, {
957         channel_id,
958         htlc_id,
959         amount_msat,
960         payment_hash,
961         cltv_expiry,
962         onion_routing_packet
963 });
964
965 impl Writeable for OnionHopData {
966         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
967                 w.size_hint(65);
968                 match self.format {
969                         OnionHopDataFormat::Legacy => 0u8.write(w)?,
970                         #[cfg(test)]
971                         OnionHopDataFormat::BogusRealm(v) => v.write(w)?,
972                 }
973                 self.short_channel_id.write(w)?;
974                 self.amt_to_forward.write(w)?;
975                 self.outgoing_cltv_value.write(w)?;
976                 w.write_all(&[0;12])?;
977                 self.hmac.write(w)?;
978                 Ok(())
979         }
980 }
981
982 impl<R: Read> Readable<R> for OnionHopData {
983         fn read(r: &mut R) -> Result<Self, DecodeError> {
984                 Ok(OnionHopData {
985                         format: {
986                                 let r: u8 = Readable::read(r)?;
987                                 if r != 0 {
988                                         return Err(DecodeError::UnknownVersion);
989                                 }
990                                 OnionHopDataFormat::Legacy
991                         },
992                         short_channel_id: Readable::read(r)?,
993                         amt_to_forward: Readable::read(r)?,
994                         outgoing_cltv_value: {
995                                 let v: u32 = Readable::read(r)?;
996                                 r.read_exact(&mut [0; 12])?;
997                                 v
998                         },
999                         hmac: Readable::read(r)?,
1000                 })
1001         }
1002 }
1003
1004 impl Writeable for Ping {
1005         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1006                 w.size_hint(self.byteslen as usize + 4);
1007                 self.ponglen.write(w)?;
1008                 vec![0u8; self.byteslen as usize].write(w)?; // size-unchecked write
1009                 Ok(())
1010         }
1011 }
1012
1013 impl<R: Read> Readable<R> for Ping {
1014         fn read(r: &mut R) -> Result<Self, DecodeError> {
1015                 Ok(Ping {
1016                         ponglen: Readable::read(r)?,
1017                         byteslen: {
1018                                 let byteslen = Readable::read(r)?;
1019                                 r.read_exact(&mut vec![0u8; byteslen as usize][..])?;
1020                                 byteslen
1021                         }
1022                 })
1023         }
1024 }
1025
1026 impl Writeable for Pong {
1027         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1028                 w.size_hint(self.byteslen as usize + 2);
1029                 vec![0u8; self.byteslen as usize].write(w)?; // size-unchecked write
1030                 Ok(())
1031         }
1032 }
1033
1034 impl<R: Read> Readable<R> for Pong {
1035         fn read(r: &mut R) -> Result<Self, DecodeError> {
1036                 Ok(Pong {
1037                         byteslen: {
1038                                 let byteslen = Readable::read(r)?;
1039                                 r.read_exact(&mut vec![0u8; byteslen as usize][..])?;
1040                                 byteslen
1041                         }
1042                 })
1043         }
1044 }
1045
1046 impl Writeable for UnsignedChannelAnnouncement {
1047         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1048                 w.size_hint(2 + 2*32 + 4*33 + self.features.byte_count() + self.excess_data.len());
1049                 self.features.write(w)?;
1050                 self.chain_hash.write(w)?;
1051                 self.short_channel_id.write(w)?;
1052                 self.node_id_1.write(w)?;
1053                 self.node_id_2.write(w)?;
1054                 self.bitcoin_key_1.write(w)?;
1055                 self.bitcoin_key_2.write(w)?;
1056                 w.write_all(&self.excess_data[..])?;
1057                 Ok(())
1058         }
1059 }
1060
1061 impl<R: Read> Readable<R> for UnsignedChannelAnnouncement {
1062         fn read(r: &mut R) -> Result<Self, DecodeError> {
1063                 Ok(Self {
1064                         features: Readable::read(r)?,
1065                         chain_hash: Readable::read(r)?,
1066                         short_channel_id: Readable::read(r)?,
1067                         node_id_1: Readable::read(r)?,
1068                         node_id_2: Readable::read(r)?,
1069                         bitcoin_key_1: Readable::read(r)?,
1070                         bitcoin_key_2: Readable::read(r)?,
1071                         excess_data: {
1072                                 let mut excess_data = vec![];
1073                                 r.read_to_end(&mut excess_data)?;
1074                                 excess_data
1075                         },
1076                 })
1077         }
1078 }
1079
1080 impl_writeable_len_match!(ChannelAnnouncement, {
1081                 { ChannelAnnouncement { contents: UnsignedChannelAnnouncement {ref features, ref excess_data, ..}, .. },
1082                         2 + 2*32 + 4*33 + features.byte_count() + excess_data.len() + 4*64 }
1083         }, {
1084         node_signature_1,
1085         node_signature_2,
1086         bitcoin_signature_1,
1087         bitcoin_signature_2,
1088         contents
1089 });
1090
1091 impl Writeable for UnsignedChannelUpdate {
1092         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1093                 w.size_hint(64 + self.excess_data.len());
1094                 self.chain_hash.write(w)?;
1095                 self.short_channel_id.write(w)?;
1096                 self.timestamp.write(w)?;
1097                 self.flags.write(w)?;
1098                 self.cltv_expiry_delta.write(w)?;
1099                 self.htlc_minimum_msat.write(w)?;
1100                 self.fee_base_msat.write(w)?;
1101                 self.fee_proportional_millionths.write(w)?;
1102                 w.write_all(&self.excess_data[..])?;
1103                 Ok(())
1104         }
1105 }
1106
1107 impl<R: Read> Readable<R> for UnsignedChannelUpdate {
1108         fn read(r: &mut R) -> Result<Self, DecodeError> {
1109                 Ok(Self {
1110                         chain_hash: Readable::read(r)?,
1111                         short_channel_id: Readable::read(r)?,
1112                         timestamp: Readable::read(r)?,
1113                         flags: Readable::read(r)?,
1114                         cltv_expiry_delta: Readable::read(r)?,
1115                         htlc_minimum_msat: Readable::read(r)?,
1116                         fee_base_msat: Readable::read(r)?,
1117                         fee_proportional_millionths: Readable::read(r)?,
1118                         excess_data: {
1119                                 let mut excess_data = vec![];
1120                                 r.read_to_end(&mut excess_data)?;
1121                                 excess_data
1122                         },
1123                 })
1124         }
1125 }
1126
1127 impl_writeable_len_match!(ChannelUpdate, {
1128                 { ChannelUpdate { contents: UnsignedChannelUpdate {ref excess_data, ..}, .. },
1129                         64 + excess_data.len() + 64 }
1130         }, {
1131         signature,
1132         contents
1133 });
1134
1135 impl Writeable for ErrorMessage {
1136         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1137                 w.size_hint(32 + 2 + self.data.len());
1138                 self.channel_id.write(w)?;
1139                 (self.data.len() as u16).write(w)?;
1140                 w.write_all(self.data.as_bytes())?;
1141                 Ok(())
1142         }
1143 }
1144
1145 impl<R: Read> Readable<R> for ErrorMessage {
1146         fn read(r: &mut R) -> Result<Self, DecodeError> {
1147                 Ok(Self {
1148                         channel_id: Readable::read(r)?,
1149                         data: {
1150                                 let mut sz: usize = <u16 as Readable<R>>::read(r)? as usize;
1151                                 let mut data = vec![];
1152                                 let data_len = r.read_to_end(&mut data)?;
1153                                 sz = cmp::min(data_len, sz);
1154                                 match String::from_utf8(data[..sz as usize].to_vec()) {
1155                                         Ok(s) => s,
1156                                         Err(_) => return Err(DecodeError::InvalidValue),
1157                                 }
1158                         }
1159                 })
1160         }
1161 }
1162
1163 impl Writeable for UnsignedNodeAnnouncement {
1164         fn write<W: Writer>(&self, w: &mut W) -> Result<(), ::std::io::Error> {
1165                 w.size_hint(64 + 76 + self.features.byte_count() + self.addresses.len()*38 + self.excess_address_data.len() + self.excess_data.len());
1166                 self.features.write(w)?;
1167                 self.timestamp.write(w)?;
1168                 self.node_id.write(w)?;
1169                 w.write_all(&self.rgb)?;
1170                 self.alias.write(w)?;
1171
1172                 let mut addrs_to_encode = self.addresses.clone();
1173                 addrs_to_encode.sort_unstable_by(|a, b| { a.get_id().cmp(&b.get_id()) });
1174                 addrs_to_encode.dedup_by(|a, b| { a.get_id() == b.get_id() });
1175                 let mut addr_len = 0;
1176                 for addr in &addrs_to_encode {
1177                         addr_len += 1 + addr.len();
1178                 }
1179                 (addr_len + self.excess_address_data.len() as u16).write(w)?;
1180                 for addr in addrs_to_encode {
1181                         addr.write(w)?;
1182                 }
1183                 w.write_all(&self.excess_address_data[..])?;
1184                 w.write_all(&self.excess_data[..])?;
1185                 Ok(())
1186         }
1187 }
1188
1189 impl<R: Read> Readable<R> for UnsignedNodeAnnouncement {
1190         fn read(r: &mut R) -> Result<Self, DecodeError> {
1191                 let features: NodeFeatures = Readable::read(r)?;
1192                 let timestamp: u32 = Readable::read(r)?;
1193                 let node_id: PublicKey = Readable::read(r)?;
1194                 let mut rgb = [0; 3];
1195                 r.read_exact(&mut rgb)?;
1196                 let alias: [u8; 32] = Readable::read(r)?;
1197
1198                 let addr_len: u16 = Readable::read(r)?;
1199                 let mut addresses: Vec<NetAddress> = Vec::with_capacity(4);
1200                 let mut addr_readpos = 0;
1201                 let mut excess = false;
1202                 let mut excess_byte = 0;
1203                 loop {
1204                         if addr_len <= addr_readpos { break; }
1205                         match Readable::read(r) {
1206                                 Ok(Ok(addr)) => {
1207                                         match addr {
1208                                                 NetAddress::IPv4 { .. } => {
1209                                                         if addresses.len() > 0 {
1210                                                                 return Err(DecodeError::ExtraAddressesPerType);
1211                                                         }
1212                                                 },
1213                                                 NetAddress::IPv6 { .. } => {
1214                                                         if addresses.len() > 1 || (addresses.len() == 1 && addresses[0].get_id() != 1) {
1215                                                                 return Err(DecodeError::ExtraAddressesPerType);
1216                                                         }
1217                                                 },
1218                                                 NetAddress::OnionV2 { .. } => {
1219                                                         if addresses.len() > 2 || (addresses.len() > 0 && addresses.last().unwrap().get_id() > 2) {
1220                                                                 return Err(DecodeError::ExtraAddressesPerType);
1221                                                         }
1222                                                 },
1223                                                 NetAddress::OnionV3 { .. } => {
1224                                                         if addresses.len() > 3 || (addresses.len() > 0 && addresses.last().unwrap().get_id() > 3) {
1225                                                                 return Err(DecodeError::ExtraAddressesPerType);
1226                                                         }
1227                                                 },
1228                                         }
1229                                         if addr_len < addr_readpos + 1 + addr.len() {
1230                                                 return Err(DecodeError::BadLengthDescriptor);
1231                                         }
1232                                         addr_readpos += (1 + addr.len()) as u16;
1233                                         addresses.push(addr);
1234                                 },
1235                                 Ok(Err(unknown_descriptor)) => {
1236                                         excess = true;
1237                                         excess_byte = unknown_descriptor;
1238                                         break;
1239                                 },
1240                                 Err(DecodeError::ShortRead) => return Err(DecodeError::BadLengthDescriptor),
1241                                 Err(e) => return Err(e),
1242                         }
1243                 }
1244
1245                 let mut excess_data = vec![];
1246                 let excess_address_data = if addr_readpos < addr_len {
1247                         let mut excess_address_data = vec![0; (addr_len - addr_readpos) as usize];
1248                         r.read_exact(&mut excess_address_data[if excess { 1 } else { 0 }..])?;
1249                         if excess {
1250                                 excess_address_data[0] = excess_byte;
1251                         }
1252                         excess_address_data
1253                 } else {
1254                         if excess {
1255                                 excess_data.push(excess_byte);
1256                         }
1257                         Vec::new()
1258                 };
1259                 r.read_to_end(&mut excess_data)?;
1260                 Ok(UnsignedNodeAnnouncement {
1261                         features,
1262                         timestamp,
1263                         node_id,
1264                         rgb,
1265                         alias,
1266                         addresses,
1267                         excess_address_data,
1268                         excess_data,
1269                 })
1270         }
1271 }
1272
1273 impl_writeable_len_match!(NodeAnnouncement, {
1274                 { NodeAnnouncement { contents: UnsignedNodeAnnouncement { ref features, ref addresses, ref excess_address_data, ref excess_data, ..}, .. },
1275                         64 + 76 + features.byte_count() + addresses.len()*38 + excess_address_data.len() + excess_data.len() }
1276         }, {
1277         signature,
1278         contents
1279 });
1280
1281 #[cfg(test)]
1282 mod tests {
1283         use hex;
1284         use ln::msgs;
1285         use ln::msgs::{ChannelFeatures, InitFeatures, NodeFeatures, OptionalField, OnionErrorPacket};
1286         use ln::channelmanager::{PaymentPreimage, PaymentHash};
1287         use util::ser::Writeable;
1288
1289         use bitcoin_hashes::sha256d::Hash as Sha256dHash;
1290         use bitcoin_hashes::hex::FromHex;
1291         use bitcoin::util::address::Address;
1292         use bitcoin::network::constants::Network;
1293         use bitcoin::blockdata::script::Builder;
1294         use bitcoin::blockdata::opcodes;
1295
1296         use secp256k1::key::{PublicKey,SecretKey};
1297         use secp256k1::{Secp256k1, Message};
1298
1299         #[test]
1300         fn encoding_channel_reestablish_no_secret() {
1301                 let cr = msgs::ChannelReestablish {
1302                         channel_id: [4, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0],
1303                         next_local_commitment_number: 3,
1304                         next_remote_commitment_number: 4,
1305                         data_loss_protect: OptionalField::Absent,
1306                 };
1307
1308                 let encoded_value = cr.encode();
1309                 assert_eq!(
1310                         encoded_value,
1311                         vec![4, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 0, 0, 0, 0, 0, 4]
1312                 );
1313         }
1314
1315         #[test]
1316         fn encoding_channel_reestablish_with_secret() {
1317                 let public_key = {
1318                         let secp_ctx = Secp256k1::new();
1319                         PublicKey::from_secret_key(&secp_ctx, &SecretKey::from_slice(&hex::decode("0101010101010101010101010101010101010101010101010101010101010101").unwrap()[..]).unwrap())
1320                 };
1321
1322                 let cr = msgs::ChannelReestablish {
1323                         channel_id: [4, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0],
1324                         next_local_commitment_number: 3,
1325                         next_remote_commitment_number: 4,
1326                         data_loss_protect: OptionalField::Present(msgs::DataLossProtect { your_last_per_commitment_secret: [9;32], my_current_per_commitment_point: public_key}),
1327                 };
1328
1329                 let encoded_value = cr.encode();
1330                 assert_eq!(
1331                         encoded_value,
1332                         vec![4, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 0, 0, 0, 0, 0, 4, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 9, 3, 27, 132, 197, 86, 123, 18, 100, 64, 153, 93, 62, 213, 170, 186, 5, 101, 215, 30, 24, 52, 96, 72, 25, 255, 156, 23, 245, 233, 213, 221, 7, 143]
1333                 );
1334         }
1335
1336         macro_rules! get_keys_from {
1337                 ($slice: expr, $secp_ctx: expr) => {
1338                         {
1339                                 let privkey = SecretKey::from_slice(&hex::decode($slice).unwrap()[..]).unwrap();
1340                                 let pubkey = PublicKey::from_secret_key(&$secp_ctx, &privkey);
1341                                 (privkey, pubkey)
1342                         }
1343                 }
1344         }
1345
1346         macro_rules! get_sig_on {
1347                 ($privkey: expr, $ctx: expr, $string: expr) => {
1348                         {
1349                                 let sighash = Message::from_slice(&$string.into_bytes()[..]).unwrap();
1350                                 $ctx.sign(&sighash, &$privkey)
1351                         }
1352                 }
1353         }
1354
1355         #[test]
1356         fn encoding_announcement_signatures() {
1357                 let secp_ctx = Secp256k1::new();
1358                 let (privkey, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1359                 let sig_1 = get_sig_on!(privkey, secp_ctx, String::from("01010101010101010101010101010101"));
1360                 let sig_2 = get_sig_on!(privkey, secp_ctx, String::from("02020202020202020202020202020202"));
1361                 let announcement_signatures = msgs::AnnouncementSignatures {
1362                         channel_id: [4, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0],
1363                         short_channel_id: 2316138423780173,
1364                         node_signature: sig_1,
1365                         bitcoin_signature: sig_2,
1366                 };
1367
1368                 let encoded_value = announcement_signatures.encode();
1369                 assert_eq!(encoded_value, hex::decode("040000000000000005000000000000000600000000000000070000000000000000083a840000034dd977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073acf9953cef4700860f5967838eba2bae89288ad188ebf8b20bf995c3ea53a26df1876d0a3a0e13172ba286a673140190c02ba9da60a2e43a745188c8a83c7f3ef").unwrap());
1370         }
1371
1372         fn do_encoding_channel_announcement(unknown_features_bits: bool, non_bitcoin_chain_hash: bool, excess_data: bool) {
1373                 let secp_ctx = Secp256k1::new();
1374                 let (privkey_1, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1375                 let (privkey_2, pubkey_2) = get_keys_from!("0202020202020202020202020202020202020202020202020202020202020202", secp_ctx);
1376                 let (privkey_3, pubkey_3) = get_keys_from!("0303030303030303030303030303030303030303030303030303030303030303", secp_ctx);
1377                 let (privkey_4, pubkey_4) = get_keys_from!("0404040404040404040404040404040404040404040404040404040404040404", secp_ctx);
1378                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1379                 let sig_2 = get_sig_on!(privkey_2, secp_ctx, String::from("01010101010101010101010101010101"));
1380                 let sig_3 = get_sig_on!(privkey_3, secp_ctx, String::from("01010101010101010101010101010101"));
1381                 let sig_4 = get_sig_on!(privkey_4, secp_ctx, String::from("01010101010101010101010101010101"));
1382                 let mut features = ChannelFeatures::supported();
1383                 if unknown_features_bits {
1384                         features = ChannelFeatures::from_le_bytes(vec![0xFF, 0xFF]);
1385                 }
1386                 let unsigned_channel_announcement = msgs::UnsignedChannelAnnouncement {
1387                         features,
1388                         chain_hash: if !non_bitcoin_chain_hash { Sha256dHash::from_hex("6fe28c0ab6f1b372c1a6a246ae63f74f931e8365e15a089c68d6190000000000").unwrap() } else { Sha256dHash::from_hex("000000000933ea01ad0ee984209779baaec3ced90fa3f408719526f8d77f4943").unwrap() },
1389                         short_channel_id: 2316138423780173,
1390                         node_id_1: pubkey_1,
1391                         node_id_2: pubkey_2,
1392                         bitcoin_key_1: pubkey_3,
1393                         bitcoin_key_2: pubkey_4,
1394                         excess_data: if excess_data { vec![10, 0, 0, 20, 0, 0, 30, 0, 0, 40] } else { Vec::new() },
1395                 };
1396                 let channel_announcement = msgs::ChannelAnnouncement {
1397                         node_signature_1: sig_1,
1398                         node_signature_2: sig_2,
1399                         bitcoin_signature_1: sig_3,
1400                         bitcoin_signature_2: sig_4,
1401                         contents: unsigned_channel_announcement,
1402                 };
1403                 let encoded_value = channel_announcement.encode();
1404                 let mut target_value = hex::decode("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").unwrap();
1405                 if unknown_features_bits {
1406                         target_value.append(&mut hex::decode("0002ffff").unwrap());
1407                 } else {
1408                         target_value.append(&mut hex::decode("0000").unwrap());
1409                 }
1410                 if non_bitcoin_chain_hash {
1411                         target_value.append(&mut hex::decode("43497fd7f826957108f4a30fd9cec3aeba79972084e90ead01ea330900000000").unwrap());
1412                 } else {
1413                         target_value.append(&mut hex::decode("000000000019d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f").unwrap());
1414                 }
1415                 target_value.append(&mut hex::decode("00083a840000034d031b84c5567b126440995d3ed5aaba0565d71e1834604819ff9c17f5e9d5dd078f024d4b6cd1361032ca9bd2aeb9d900aa4d45d9ead80ac9423374c451a7254d076602531fe6068134503d2723133227c867ac8fa6c83c537e9a44c3c5bdbdcb1fe33703462779ad4aad39514614751a71085f2f10e1c7a593e4e030efb5b8721ce55b0b").unwrap());
1416                 if excess_data {
1417                         target_value.append(&mut hex::decode("0a00001400001e000028").unwrap());
1418                 }
1419                 assert_eq!(encoded_value, target_value);
1420         }
1421
1422         #[test]
1423         fn encoding_channel_announcement() {
1424                 do_encoding_channel_announcement(false, false, false);
1425                 do_encoding_channel_announcement(true, false, false);
1426                 do_encoding_channel_announcement(true, true, false);
1427                 do_encoding_channel_announcement(true, true, true);
1428                 do_encoding_channel_announcement(false, true, true);
1429                 do_encoding_channel_announcement(false, false, true);
1430                 do_encoding_channel_announcement(false, true, false);
1431                 do_encoding_channel_announcement(true, false, true);
1432         }
1433
1434         fn do_encoding_node_announcement(unknown_features_bits: bool, ipv4: bool, ipv6: bool, onionv2: bool, onionv3: bool, excess_address_data: bool, excess_data: bool) {
1435                 let secp_ctx = Secp256k1::new();
1436                 let (privkey_1, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1437                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1438                 let features = if unknown_features_bits {
1439                         NodeFeatures::from_le_bytes(vec![0xFF, 0xFF])
1440                 } else {
1441                         // Set to some features we may support
1442                         NodeFeatures::from_le_bytes(vec![2 | 1 << 5])
1443                 };
1444                 let mut addresses = Vec::new();
1445                 if ipv4 {
1446                         addresses.push(msgs::NetAddress::IPv4 {
1447                                 addr: [255, 254, 253, 252],
1448                                 port: 9735
1449                         });
1450                 }
1451                 if ipv6 {
1452                         addresses.push(msgs::NetAddress::IPv6 {
1453                                 addr: [255, 254, 253, 252, 251, 250, 249, 248, 247, 246, 245, 244, 243, 242, 241, 240],
1454                                 port: 9735
1455                         });
1456                 }
1457                 if onionv2 {
1458                         addresses.push(msgs::NetAddress::OnionV2 {
1459                                 addr: [255, 254, 253, 252, 251, 250, 249, 248, 247, 246],
1460                                 port: 9735
1461                         });
1462                 }
1463                 if onionv3 {
1464                         addresses.push(msgs::NetAddress::OnionV3 {
1465                                 ed25519_pubkey: [255, 254, 253, 252, 251, 250, 249, 248, 247, 246, 245, 244, 243, 242, 241, 240, 239, 238, 237, 236, 235, 234, 233, 232, 231, 230, 229, 228, 227, 226, 225, 224],
1466                                 checksum: 32,
1467                                 version: 16,
1468                                 port: 9735
1469                         });
1470                 }
1471                 let mut addr_len = 0;
1472                 for addr in &addresses {
1473                         addr_len += addr.len() + 1;
1474                 }
1475                 let unsigned_node_announcement = msgs::UnsignedNodeAnnouncement {
1476                         features,
1477                         timestamp: 20190119,
1478                         node_id: pubkey_1,
1479                         rgb: [32; 3],
1480                         alias: [16;32],
1481                         addresses,
1482                         excess_address_data: if excess_address_data { vec![33, 108, 40, 11, 83, 149, 162, 84, 110, 126, 75, 38, 99, 224, 79, 129, 22, 34, 241, 90, 79, 146, 232, 58, 162, 233, 43, 162, 165, 115, 193, 57, 20, 44, 84, 174, 99, 7, 42, 30, 193, 238, 125, 192, 192, 75, 222, 92, 132, 120, 6, 23, 42, 160, 92, 146, 194, 42, 232, 227, 8, 209, 210, 105] } else { Vec::new() },
1483                         excess_data: if excess_data { vec![59, 18, 204, 25, 92, 224, 162, 209, 189, 166, 168, 139, 239, 161, 159, 160, 127, 81, 202, 167, 92, 232, 56, 55, 242, 137, 101, 96, 11, 138, 172, 171, 8, 85, 255, 176, 231, 65, 236, 95, 124, 65, 66, 30, 152, 41, 169, 212, 134, 17, 200, 200, 49, 247, 27, 229, 234, 115, 230, 101, 148, 151, 127, 253] } else { Vec::new() },
1484                 };
1485                 addr_len += unsigned_node_announcement.excess_address_data.len() as u16;
1486                 let node_announcement = msgs::NodeAnnouncement {
1487                         signature: sig_1,
1488                         contents: unsigned_node_announcement,
1489                 };
1490                 let encoded_value = node_announcement.encode();
1491                 let mut target_value = hex::decode("d977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1492                 if unknown_features_bits {
1493                         target_value.append(&mut hex::decode("0002ffff").unwrap());
1494                 } else {
1495                         target_value.append(&mut hex::decode("000122").unwrap());
1496                 }
1497                 target_value.append(&mut hex::decode("013413a7031b84c5567b126440995d3ed5aaba0565d71e1834604819ff9c17f5e9d5dd078f2020201010101010101010101010101010101010101010101010101010101010101010").unwrap());
1498                 target_value.append(&mut vec![(addr_len >> 8) as u8, addr_len as u8]);
1499                 if ipv4 {
1500                         target_value.append(&mut hex::decode("01fffefdfc2607").unwrap());
1501                 }
1502                 if ipv6 {
1503                         target_value.append(&mut hex::decode("02fffefdfcfbfaf9f8f7f6f5f4f3f2f1f02607").unwrap());
1504                 }
1505                 if onionv2 {
1506                         target_value.append(&mut hex::decode("03fffefdfcfbfaf9f8f7f62607").unwrap());
1507                 }
1508                 if onionv3 {
1509                         target_value.append(&mut hex::decode("04fffefdfcfbfaf9f8f7f6f5f4f3f2f1f0efeeedecebeae9e8e7e6e5e4e3e2e1e00020102607").unwrap());
1510                 }
1511                 if excess_address_data {
1512                         target_value.append(&mut hex::decode("216c280b5395a2546e7e4b2663e04f811622f15a4f92e83aa2e92ba2a573c139142c54ae63072a1ec1ee7dc0c04bde5c847806172aa05c92c22ae8e308d1d269").unwrap());
1513                 }
1514                 if excess_data {
1515                         target_value.append(&mut hex::decode("3b12cc195ce0a2d1bda6a88befa19fa07f51caa75ce83837f28965600b8aacab0855ffb0e741ec5f7c41421e9829a9d48611c8c831f71be5ea73e66594977ffd").unwrap());
1516                 }
1517                 assert_eq!(encoded_value, target_value);
1518         }
1519
1520         #[test]
1521         fn encoding_node_announcement() {
1522                 do_encoding_node_announcement(true, true, true, true, true, true, true);
1523                 do_encoding_node_announcement(false, false, false, false, false, false, false);
1524                 do_encoding_node_announcement(false, true, false, false, false, false, false);
1525                 do_encoding_node_announcement(false, false, true, false, false, false, false);
1526                 do_encoding_node_announcement(false, false, false, true, false, false, false);
1527                 do_encoding_node_announcement(false, false, false, false, true, false, false);
1528                 do_encoding_node_announcement(false, false, false, false, false, true, false);
1529                 do_encoding_node_announcement(false, true, false, true, false, true, false);
1530                 do_encoding_node_announcement(false, false, true, false, true, false, false);
1531         }
1532
1533         fn do_encoding_channel_update(non_bitcoin_chain_hash: bool, direction: bool, disable: bool, htlc_maximum_msat: bool) {
1534                 let secp_ctx = Secp256k1::new();
1535                 let (privkey_1, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1536                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1537                 let unsigned_channel_update = msgs::UnsignedChannelUpdate {
1538                         chain_hash: if !non_bitcoin_chain_hash { Sha256dHash::from_hex("6fe28c0ab6f1b372c1a6a246ae63f74f931e8365e15a089c68d6190000000000").unwrap() } else { Sha256dHash::from_hex("000000000933ea01ad0ee984209779baaec3ced90fa3f408719526f8d77f4943").unwrap() },
1539                         short_channel_id: 2316138423780173,
1540                         timestamp: 20190119,
1541                         flags: if direction { 1 } else { 0 } | if disable { 1 << 1 } else { 0 } | if htlc_maximum_msat { 1 << 8 } else { 0 },
1542                         cltv_expiry_delta: 144,
1543                         htlc_minimum_msat: 1000000,
1544                         fee_base_msat: 10000,
1545                         fee_proportional_millionths: 20,
1546                         excess_data: if htlc_maximum_msat { vec![0, 0, 0, 0, 59, 154, 202, 0] } else { Vec::new() }
1547                 };
1548                 let channel_update = msgs::ChannelUpdate {
1549                         signature: sig_1,
1550                         contents: unsigned_channel_update
1551                 };
1552                 let encoded_value = channel_update.encode();
1553                 let mut target_value = hex::decode("d977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1554                 if non_bitcoin_chain_hash {
1555                         target_value.append(&mut hex::decode("43497fd7f826957108f4a30fd9cec3aeba79972084e90ead01ea330900000000").unwrap());
1556                 } else {
1557                         target_value.append(&mut hex::decode("000000000019d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f").unwrap());
1558                 }
1559                 target_value.append(&mut hex::decode("00083a840000034d013413a7").unwrap());
1560                 if htlc_maximum_msat {
1561                         target_value.append(&mut hex::decode("01").unwrap());
1562                 } else {
1563                         target_value.append(&mut hex::decode("00").unwrap());
1564                 }
1565                 target_value.append(&mut hex::decode("00").unwrap());
1566                 if direction {
1567                         let flag = target_value.last_mut().unwrap();
1568                         *flag = 1;
1569                 }
1570                 if disable {
1571                         let flag = target_value.last_mut().unwrap();
1572                         *flag = *flag | 1 << 1;
1573                 }
1574                 target_value.append(&mut hex::decode("009000000000000f42400000271000000014").unwrap());
1575                 if htlc_maximum_msat {
1576                         target_value.append(&mut hex::decode("000000003b9aca00").unwrap());
1577                 }
1578                 assert_eq!(encoded_value, target_value);
1579         }
1580
1581         #[test]
1582         fn encoding_channel_update() {
1583                 do_encoding_channel_update(false, false, false, false);
1584                 do_encoding_channel_update(true, false, false, false);
1585                 do_encoding_channel_update(false, true, false, false);
1586                 do_encoding_channel_update(false, false, true, false);
1587                 do_encoding_channel_update(false, false, false, true);
1588                 do_encoding_channel_update(true, true, true, true);
1589         }
1590
1591         fn do_encoding_open_channel(non_bitcoin_chain_hash: bool, random_bit: bool, shutdown: bool) {
1592                 let secp_ctx = Secp256k1::new();
1593                 let (_, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1594                 let (_, pubkey_2) = get_keys_from!("0202020202020202020202020202020202020202020202020202020202020202", secp_ctx);
1595                 let (_, pubkey_3) = get_keys_from!("0303030303030303030303030303030303030303030303030303030303030303", secp_ctx);
1596                 let (_, pubkey_4) = get_keys_from!("0404040404040404040404040404040404040404040404040404040404040404", secp_ctx);
1597                 let (_, pubkey_5) = get_keys_from!("0505050505050505050505050505050505050505050505050505050505050505", secp_ctx);
1598                 let (_, pubkey_6) = get_keys_from!("0606060606060606060606060606060606060606060606060606060606060606", secp_ctx);
1599                 let open_channel = msgs::OpenChannel {
1600                         chain_hash: if !non_bitcoin_chain_hash { Sha256dHash::from_hex("6fe28c0ab6f1b372c1a6a246ae63f74f931e8365e15a089c68d6190000000000").unwrap() } else { Sha256dHash::from_hex("000000000933ea01ad0ee984209779baaec3ced90fa3f408719526f8d77f4943").unwrap() },
1601                         temporary_channel_id: [2; 32],
1602                         funding_satoshis: 1311768467284833366,
1603                         push_msat: 2536655962884945560,
1604                         dust_limit_satoshis: 3608586615801332854,
1605                         max_htlc_value_in_flight_msat: 8517154655701053848,
1606                         channel_reserve_satoshis: 8665828695742877976,
1607                         htlc_minimum_msat: 2316138423780173,
1608                         feerate_per_kw: 821716,
1609                         to_self_delay: 49340,
1610                         max_accepted_htlcs: 49340,
1611                         funding_pubkey: pubkey_1,
1612                         revocation_basepoint: pubkey_2,
1613                         payment_basepoint: pubkey_3,
1614                         delayed_payment_basepoint: pubkey_4,
1615                         htlc_basepoint: pubkey_5,
1616                         first_per_commitment_point: pubkey_6,
1617                         channel_flags: if random_bit { 1 << 5 } else { 0 },
1618                         shutdown_scriptpubkey: if shutdown { OptionalField::Present(Address::p2pkh(&::bitcoin::PublicKey{compressed: true, key: pubkey_1}, Network::Testnet).script_pubkey()) } else { OptionalField::Absent }
1619                 };
1620                 let encoded_value = open_channel.encode();
1621                 let mut target_value = Vec::new();
1622                 if non_bitcoin_chain_hash {
1623                         target_value.append(&mut hex::decode("43497fd7f826957108f4a30fd9cec3aeba79972084e90ead01ea330900000000").unwrap());
1624                 } else {
1625                         target_value.append(&mut hex::decode("000000000019d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f").unwrap());
1626                 }
1627                 target_value.append(&mut hex::decode("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").unwrap());
1628                 if random_bit {
1629                         target_value.append(&mut hex::decode("20").unwrap());
1630                 } else {
1631                         target_value.append(&mut hex::decode("00").unwrap());
1632                 }
1633                 if shutdown {
1634                         target_value.append(&mut hex::decode("001976a91479b000887626b294a914501a4cd226b58b23598388ac").unwrap());
1635                 }
1636                 assert_eq!(encoded_value, target_value);
1637         }
1638
1639         #[test]
1640         fn encoding_open_channel() {
1641                 do_encoding_open_channel(false, false, false);
1642                 do_encoding_open_channel(true, false, false);
1643                 do_encoding_open_channel(false, true, false);
1644                 do_encoding_open_channel(false, false, true);
1645                 do_encoding_open_channel(true, true, true);
1646         }
1647
1648         fn do_encoding_accept_channel(shutdown: bool) {
1649                 let secp_ctx = Secp256k1::new();
1650                 let (_, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1651                 let (_, pubkey_2) = get_keys_from!("0202020202020202020202020202020202020202020202020202020202020202", secp_ctx);
1652                 let (_, pubkey_3) = get_keys_from!("0303030303030303030303030303030303030303030303030303030303030303", secp_ctx);
1653                 let (_, pubkey_4) = get_keys_from!("0404040404040404040404040404040404040404040404040404040404040404", secp_ctx);
1654                 let (_, pubkey_5) = get_keys_from!("0505050505050505050505050505050505050505050505050505050505050505", secp_ctx);
1655                 let (_, pubkey_6) = get_keys_from!("0606060606060606060606060606060606060606060606060606060606060606", secp_ctx);
1656                 let accept_channel = msgs::AcceptChannel {
1657                         temporary_channel_id: [2; 32],
1658                         dust_limit_satoshis: 1311768467284833366,
1659                         max_htlc_value_in_flight_msat: 2536655962884945560,
1660                         channel_reserve_satoshis: 3608586615801332854,
1661                         htlc_minimum_msat: 2316138423780173,
1662                         minimum_depth: 821716,
1663                         to_self_delay: 49340,
1664                         max_accepted_htlcs: 49340,
1665                         funding_pubkey: pubkey_1,
1666                         revocation_basepoint: pubkey_2,
1667                         payment_basepoint: pubkey_3,
1668                         delayed_payment_basepoint: pubkey_4,
1669                         htlc_basepoint: pubkey_5,
1670                         first_per_commitment_point: pubkey_6,
1671                         shutdown_scriptpubkey: if shutdown { OptionalField::Present(Address::p2pkh(&::bitcoin::PublicKey{compressed: true, key: pubkey_1}, Network::Testnet).script_pubkey()) } else { OptionalField::Absent }
1672                 };
1673                 let encoded_value = accept_channel.encode();
1674                 let mut target_value = hex::decode("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").unwrap();
1675                 if shutdown {
1676                         target_value.append(&mut hex::decode("001976a91479b000887626b294a914501a4cd226b58b23598388ac").unwrap());
1677                 }
1678                 assert_eq!(encoded_value, target_value);
1679         }
1680
1681         #[test]
1682         fn encoding_accept_channel() {
1683                 do_encoding_accept_channel(false);
1684                 do_encoding_accept_channel(true);
1685         }
1686
1687         #[test]
1688         fn encoding_funding_created() {
1689                 let secp_ctx = Secp256k1::new();
1690                 let (privkey_1, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1691                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1692                 let funding_created = msgs::FundingCreated {
1693                         temporary_channel_id: [2; 32],
1694                         funding_txid: Sha256dHash::from_hex("c2d4449afa8d26140898dd54d3390b057ba2a5afcf03ba29d7dc0d8b9ffe966e").unwrap(),
1695                         funding_output_index: 255,
1696                         signature: sig_1,
1697                 };
1698                 let encoded_value = funding_created.encode();
1699                 let target_value = hex::decode("02020202020202020202020202020202020202020202020202020202020202026e96fe9f8b0ddcd729ba03cfafa5a27b050b39d354dd980814268dfa9a44d4c200ffd977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1700                 assert_eq!(encoded_value, target_value);
1701         }
1702
1703         #[test]
1704         fn encoding_funding_signed() {
1705                 let secp_ctx = Secp256k1::new();
1706                 let (privkey_1, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1707                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1708                 let funding_signed = msgs::FundingSigned {
1709                         channel_id: [2; 32],
1710                         signature: sig_1,
1711                 };
1712                 let encoded_value = funding_signed.encode();
1713                 let target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202d977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1714                 assert_eq!(encoded_value, target_value);
1715         }
1716
1717         #[test]
1718         fn encoding_funding_locked() {
1719                 let secp_ctx = Secp256k1::new();
1720                 let (_, pubkey_1,) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1721                 let funding_locked = msgs::FundingLocked {
1722                         channel_id: [2; 32],
1723                         next_per_commitment_point: pubkey_1,
1724                 };
1725                 let encoded_value = funding_locked.encode();
1726                 let target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202031b84c5567b126440995d3ed5aaba0565d71e1834604819ff9c17f5e9d5dd078f").unwrap();
1727                 assert_eq!(encoded_value, target_value);
1728         }
1729
1730         fn do_encoding_shutdown(script_type: u8) {
1731                 let secp_ctx = Secp256k1::new();
1732                 let (_, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1733                 let script = Builder::new().push_opcode(opcodes::OP_TRUE).into_script();
1734                 let shutdown = msgs::Shutdown {
1735                         channel_id: [2; 32],
1736                         scriptpubkey: if script_type == 1 { Address::p2pkh(&::bitcoin::PublicKey{compressed: true, key: pubkey_1}, Network::Testnet).script_pubkey() } else if script_type == 2 { Address::p2sh(&script, Network::Testnet).script_pubkey() } else if script_type == 3 { Address::p2wpkh(&::bitcoin::PublicKey{compressed: true, key: pubkey_1}, Network::Testnet).script_pubkey() } else { Address::p2wsh(&script, Network::Testnet).script_pubkey() },
1737                 };
1738                 let encoded_value = shutdown.encode();
1739                 let mut target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202").unwrap();
1740                 if script_type == 1 {
1741                         target_value.append(&mut hex::decode("001976a91479b000887626b294a914501a4cd226b58b23598388ac").unwrap());
1742                 } else if script_type == 2 {
1743                         target_value.append(&mut hex::decode("0017a914da1745e9b549bd0bfa1a569971c77eba30cd5a4b87").unwrap());
1744                 } else if script_type == 3 {
1745                         target_value.append(&mut hex::decode("0016001479b000887626b294a914501a4cd226b58b235983").unwrap());
1746                 } else if script_type == 4 {
1747                         target_value.append(&mut hex::decode("002200204ae81572f06e1b88fd5ced7a1a000945432e83e1551e6f721ee9c00b8cc33260").unwrap());
1748                 }
1749                 assert_eq!(encoded_value, target_value);
1750         }
1751
1752         #[test]
1753         fn encoding_shutdown() {
1754                 do_encoding_shutdown(1);
1755                 do_encoding_shutdown(2);
1756                 do_encoding_shutdown(3);
1757                 do_encoding_shutdown(4);
1758         }
1759
1760         #[test]
1761         fn encoding_closing_signed() {
1762                 let secp_ctx = Secp256k1::new();
1763                 let (privkey_1, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1764                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1765                 let closing_signed = msgs::ClosingSigned {
1766                         channel_id: [2; 32],
1767                         fee_satoshis: 2316138423780173,
1768                         signature: sig_1,
1769                 };
1770                 let encoded_value = closing_signed.encode();
1771                 let target_value = hex::decode("020202020202020202020202020202020202020202020202020202020202020200083a840000034dd977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1772                 assert_eq!(encoded_value, target_value);
1773         }
1774
1775         #[test]
1776         fn encoding_update_add_htlc() {
1777                 let secp_ctx = Secp256k1::new();
1778                 let (_, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1779                 let onion_routing_packet = msgs::OnionPacket {
1780                         version: 255,
1781                         public_key: Ok(pubkey_1),
1782                         hop_data: [1; 20*65],
1783                         hmac: [2; 32]
1784                 };
1785                 let update_add_htlc = msgs::UpdateAddHTLC {
1786                         channel_id: [2; 32],
1787                         htlc_id: 2316138423780173,
1788                         amount_msat: 3608586615801332854,
1789                         payment_hash: PaymentHash([1; 32]),
1790                         cltv_expiry: 821716,
1791                         onion_routing_packet
1792                 };
1793                 let encoded_value = update_add_htlc.encode();
1794                 let target_value = hex::decode("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").unwrap();
1795                 assert_eq!(encoded_value, target_value);
1796         }
1797
1798         #[test]
1799         fn encoding_update_fulfill_htlc() {
1800                 let update_fulfill_htlc = msgs::UpdateFulfillHTLC {
1801                         channel_id: [2; 32],
1802                         htlc_id: 2316138423780173,
1803                         payment_preimage: PaymentPreimage([1; 32]),
1804                 };
1805                 let encoded_value = update_fulfill_htlc.encode();
1806                 let target_value = hex::decode("020202020202020202020202020202020202020202020202020202020202020200083a840000034d0101010101010101010101010101010101010101010101010101010101010101").unwrap();
1807                 assert_eq!(encoded_value, target_value);
1808         }
1809
1810         #[test]
1811         fn encoding_update_fail_htlc() {
1812                 let reason = OnionErrorPacket {
1813                         data: [1; 32].to_vec(),
1814                 };
1815                 let update_fail_htlc = msgs::UpdateFailHTLC {
1816                         channel_id: [2; 32],
1817                         htlc_id: 2316138423780173,
1818                         reason
1819                 };
1820                 let encoded_value = update_fail_htlc.encode();
1821                 let target_value = hex::decode("020202020202020202020202020202020202020202020202020202020202020200083a840000034d00200101010101010101010101010101010101010101010101010101010101010101").unwrap();
1822                 assert_eq!(encoded_value, target_value);
1823         }
1824
1825         #[test]
1826         fn encoding_update_fail_malformed_htlc() {
1827                 let update_fail_malformed_htlc = msgs::UpdateFailMalformedHTLC {
1828                         channel_id: [2; 32],
1829                         htlc_id: 2316138423780173,
1830                         sha256_of_onion: [1; 32],
1831                         failure_code: 255
1832                 };
1833                 let encoded_value = update_fail_malformed_htlc.encode();
1834                 let target_value = hex::decode("020202020202020202020202020202020202020202020202020202020202020200083a840000034d010101010101010101010101010101010101010101010101010101010101010100ff").unwrap();
1835                 assert_eq!(encoded_value, target_value);
1836         }
1837
1838         fn do_encoding_commitment_signed(htlcs: bool) {
1839                 let secp_ctx = Secp256k1::new();
1840                 let (privkey_1, _) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1841                 let (privkey_2, _) = get_keys_from!("0202020202020202020202020202020202020202020202020202020202020202", secp_ctx);
1842                 let (privkey_3, _) = get_keys_from!("0303030303030303030303030303030303030303030303030303030303030303", secp_ctx);
1843                 let (privkey_4, _) = get_keys_from!("0404040404040404040404040404040404040404040404040404040404040404", secp_ctx);
1844                 let sig_1 = get_sig_on!(privkey_1, secp_ctx, String::from("01010101010101010101010101010101"));
1845                 let sig_2 = get_sig_on!(privkey_2, secp_ctx, String::from("01010101010101010101010101010101"));
1846                 let sig_3 = get_sig_on!(privkey_3, secp_ctx, String::from("01010101010101010101010101010101"));
1847                 let sig_4 = get_sig_on!(privkey_4, secp_ctx, String::from("01010101010101010101010101010101"));
1848                 let commitment_signed = msgs::CommitmentSigned {
1849                         channel_id: [2; 32],
1850                         signature: sig_1,
1851                         htlc_signatures: if htlcs { vec![sig_2, sig_3, sig_4] } else { Vec::new() },
1852                 };
1853                 let encoded_value = commitment_signed.encode();
1854                 let mut target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202d977cb9b53d93a6ff64bb5f1e158b4094b66e798fb12911168a3ccdf80a83096340a6a95da0ae8d9f776528eecdbb747eb6b545495a4319ed5378e35b21e073a").unwrap();
1855                 if htlcs {
1856                         target_value.append(&mut hex::decode("00031735b6a427e80d5fe7cd90a2f4ee08dc9c27cda7c35a4172e5d85b12c49d4232537e98f9b1f3c5e6989a8b9644e90e8918127680dbd0d4043510840fc0f1e11a216c280b5395a2546e7e4b2663e04f811622f15a4f91e83aa2e92ba2a573c139142c54ae63072a1ec1ee7dc0c04bde5c847806172aa05c92c22ae8e308d1d2692b12cc195ce0a2d1bda6a88befa19fa07f51caa75ce83837f28965600b8aacab0855ffb0e741ec5f7c41421e9829a9d48611c8c831f71be5ea73e66594977ffd").unwrap());
1857                 } else {
1858                         target_value.append(&mut hex::decode("0000").unwrap());
1859                 }
1860                 assert_eq!(encoded_value, target_value);
1861         }
1862
1863         #[test]
1864         fn encoding_commitment_signed() {
1865                 do_encoding_commitment_signed(true);
1866                 do_encoding_commitment_signed(false);
1867         }
1868
1869         #[test]
1870         fn encoding_revoke_and_ack() {
1871                 let secp_ctx = Secp256k1::new();
1872                 let (_, pubkey_1) = get_keys_from!("0101010101010101010101010101010101010101010101010101010101010101", secp_ctx);
1873                 let raa = msgs::RevokeAndACK {
1874                         channel_id: [2; 32],
1875                         per_commitment_secret: [1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1],
1876                         next_per_commitment_point: pubkey_1,
1877                 };
1878                 let encoded_value = raa.encode();
1879                 let target_value = hex::decode("02020202020202020202020202020202020202020202020202020202020202020101010101010101010101010101010101010101010101010101010101010101031b84c5567b126440995d3ed5aaba0565d71e1834604819ff9c17f5e9d5dd078f").unwrap();
1880                 assert_eq!(encoded_value, target_value);
1881         }
1882
1883         #[test]
1884         fn encoding_update_fee() {
1885                 let update_fee = msgs::UpdateFee {
1886                         channel_id: [2; 32],
1887                         feerate_per_kw: 20190119,
1888                 };
1889                 let encoded_value = update_fee.encode();
1890                 let target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202013413a7").unwrap();
1891                 assert_eq!(encoded_value, target_value);
1892         }
1893
1894         #[test]
1895         fn encoding_init() {
1896                 assert_eq!(msgs::Init {
1897                         features: InitFeatures::from_le_bytes(vec![0xFF, 0xFF, 0xFF]),
1898                 }.encode(), hex::decode("00023fff0003ffffff").unwrap());
1899                 assert_eq!(msgs::Init {
1900                         features: InitFeatures::from_le_bytes(vec![0xFF]),
1901                 }.encode(), hex::decode("0001ff0001ff").unwrap());
1902                 assert_eq!(msgs::Init {
1903                         features: InitFeatures::from_le_bytes(vec![]),
1904                 }.encode(), hex::decode("00000000").unwrap());
1905         }
1906
1907         #[test]
1908         fn encoding_error() {
1909                 let error = msgs::ErrorMessage {
1910                         channel_id: [2; 32],
1911                         data: String::from("rust-lightning"),
1912                 };
1913                 let encoded_value = error.encode();
1914                 let target_value = hex::decode("0202020202020202020202020202020202020202020202020202020202020202000e727573742d6c696768746e696e67").unwrap();
1915                 assert_eq!(encoded_value, target_value);
1916         }
1917
1918         #[test]
1919         fn encoding_ping() {
1920                 let ping = msgs::Ping {
1921                         ponglen: 64,
1922                         byteslen: 64
1923                 };
1924                 let encoded_value = ping.encode();
1925                 let target_value = hex::decode("0040004000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000").unwrap();
1926                 assert_eq!(encoded_value, target_value);
1927         }
1928
1929         #[test]
1930         fn encoding_pong() {
1931                 let pong = msgs::Pong {
1932                         byteslen: 64
1933                 };
1934                 let encoded_value = pong.encode();
1935                 let target_value = hex::decode("004000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000").unwrap();
1936                 assert_eq!(encoded_value, target_value);
1937         }
1938 }