cd0cb08eab3522c00a057a7e9043c45c6a2a43a0
[rust-lightning] / lightning / src / chain / onchaintx.rs
1 // This file is Copyright its original authors, visible in version control
2 // history.
3 //
4 // This file is licensed under the Apache License, Version 2.0 <LICENSE-APACHE
5 // or http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
6 // <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your option.
7 // You may not use this file except in accordance with one or both of these
8 // licenses.
9
10 //! The logic to build claims and bump in-flight transactions until confirmations.
11 //!
12 //! OnchainTxHandler objects are fully-part of ChannelMonitor and encapsulates all
13 //! building, tracking, bumping and notifications functions.
14
15 #[cfg(anchors)]
16 use bitcoin::PackedLockTime;
17 use bitcoin::blockdata::transaction::Transaction;
18 use bitcoin::blockdata::transaction::OutPoint as BitcoinOutPoint;
19 use bitcoin::blockdata::script::Script;
20
21 use bitcoin::hash_types::{Txid, BlockHash};
22
23 use bitcoin::secp256k1::{Secp256k1, ecdsa::Signature};
24 use bitcoin::secp256k1;
25
26 use crate::chain::keysinterface::{ChannelSigner, EntropySource, SignerProvider};
27 use crate::ln::msgs::DecodeError;
28 use crate::ln::PaymentPreimage;
29 #[cfg(anchors)]
30 use crate::ln::chan_utils::{self, HTLCOutputInCommitment};
31 use crate::ln::chan_utils::{ChannelTransactionParameters, HolderCommitmentTransaction};
32 #[cfg(anchors)]
33 use crate::chain::chaininterface::ConfirmationTarget;
34 use crate::chain::chaininterface::{FeeEstimator, BroadcasterInterface, LowerBoundedFeeEstimator};
35 use crate::chain::channelmonitor::{ANTI_REORG_DELAY, CLTV_SHARED_CLAIM_BUFFER};
36 use crate::chain::keysinterface::WriteableEcdsaChannelSigner;
37 #[cfg(anchors)]
38 use crate::chain::package::PackageSolvingData;
39 use crate::chain::package::PackageTemplate;
40 use crate::util::logger::Logger;
41 use crate::util::ser::{Readable, ReadableArgs, MaybeReadable, UpgradableRequired, Writer, Writeable, VecWriter};
42
43 use crate::io;
44 use crate::prelude::*;
45 use alloc::collections::BTreeMap;
46 use core::cmp;
47 use core::ops::Deref;
48 use core::mem::replace;
49 #[cfg(anchors)]
50 use core::mem::swap;
51 use bitcoin::hashes::Hash;
52
53 const MAX_ALLOC_SIZE: usize = 64*1024;
54
55 /// An entry for an [`OnchainEvent`], stating the block height when the event was observed and the
56 /// transaction causing it.
57 ///
58 /// Used to determine when the on-chain event can be considered safe from a chain reorganization.
59 #[derive(PartialEq, Eq)]
60 struct OnchainEventEntry {
61         txid: Txid,
62         height: u32,
63         block_hash: Option<BlockHash>, // Added as optional, will be filled in for any entry generated on 0.0.113 or after
64         event: OnchainEvent,
65 }
66
67 impl OnchainEventEntry {
68         fn confirmation_threshold(&self) -> u32 {
69                 self.height + ANTI_REORG_DELAY - 1
70         }
71
72         fn has_reached_confirmation_threshold(&self, height: u32) -> bool {
73                 height >= self.confirmation_threshold()
74         }
75 }
76
77 /// Events for claims the [`OnchainTxHandler`] has generated. Once the events are considered safe
78 /// from a chain reorg, the [`OnchainTxHandler`] will act accordingly.
79 #[derive(PartialEq, Eq)]
80 enum OnchainEvent {
81         /// A pending request has been claimed by a transaction spending the exact same set of outpoints
82         /// as the request. This claim can either be ours or from the counterparty. Once the claiming
83         /// transaction has met [`ANTI_REORG_DELAY`] confirmations, we consider it final and remove the
84         /// pending request.
85         Claim {
86                 package_id: PackageID,
87         },
88         /// The counterparty has claimed an outpoint from one of our pending requests through a
89         /// different transaction than ours. If our transaction was attempting to claim multiple
90         /// outputs, we need to drop the outpoint claimed by the counterparty and regenerate a new claim
91         /// transaction for ourselves. We keep tracking, separately, the outpoint claimed by the
92         /// counterparty up to [`ANTI_REORG_DELAY`] confirmations to ensure we attempt to re-claim it
93         /// if the counterparty's claim is reorged from the chain.
94         ContentiousOutpoint {
95                 package: PackageTemplate,
96         }
97 }
98
99 impl Writeable for OnchainEventEntry {
100         fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
101                 write_tlv_fields!(writer, {
102                         (0, self.txid, required),
103                         (1, self.block_hash, option),
104                         (2, self.height, required),
105                         (4, self.event, required),
106                 });
107                 Ok(())
108         }
109 }
110
111 impl MaybeReadable for OnchainEventEntry {
112         fn read<R: io::Read>(reader: &mut R) -> Result<Option<Self>, DecodeError> {
113                 let mut txid = Txid::all_zeros();
114                 let mut height = 0;
115                 let mut block_hash = None;
116                 let mut event = UpgradableRequired(None);
117                 read_tlv_fields!(reader, {
118                         (0, txid, required),
119                         (1, block_hash, option),
120                         (2, height, required),
121                         (4, event, upgradable_required),
122                 });
123                 Ok(Some(Self { txid, height, block_hash, event: _init_tlv_based_struct_field!(event, upgradable_required) }))
124         }
125 }
126
127 impl_writeable_tlv_based_enum_upgradable!(OnchainEvent,
128         (0, Claim) => {
129                 (0, package_id, required),
130         },
131         (1, ContentiousOutpoint) => {
132                 (0, package, required),
133         },
134 );
135
136 impl Readable for Option<Vec<Option<(usize, Signature)>>> {
137         fn read<R: io::Read>(reader: &mut R) -> Result<Self, DecodeError> {
138                 match Readable::read(reader)? {
139                         0u8 => Ok(None),
140                         1u8 => {
141                                 let vlen: u64 = Readable::read(reader)?;
142                                 let mut ret = Vec::with_capacity(cmp::min(vlen as usize, MAX_ALLOC_SIZE / ::core::mem::size_of::<Option<(usize, Signature)>>()));
143                                 for _ in 0..vlen {
144                                         ret.push(match Readable::read(reader)? {
145                                                 0u8 => None,
146                                                 1u8 => Some((<u64 as Readable>::read(reader)? as usize, Readable::read(reader)?)),
147                                                 _ => return Err(DecodeError::InvalidValue)
148                                         });
149                                 }
150                                 Ok(Some(ret))
151                         },
152                         _ => Err(DecodeError::InvalidValue),
153                 }
154         }
155 }
156
157 impl Writeable for Option<Vec<Option<(usize, Signature)>>> {
158         fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
159                 match self {
160                         &Some(ref vec) => {
161                                 1u8.write(writer)?;
162                                 (vec.len() as u64).write(writer)?;
163                                 for opt in vec.iter() {
164                                         match opt {
165                                                 &Some((ref idx, ref sig)) => {
166                                                         1u8.write(writer)?;
167                                                         (*idx as u64).write(writer)?;
168                                                         sig.write(writer)?;
169                                                 },
170                                                 &None => 0u8.write(writer)?,
171                                         }
172                                 }
173                         },
174                         &None => 0u8.write(writer)?,
175                 }
176                 Ok(())
177         }
178 }
179
180 #[cfg(anchors)]
181 /// The claim commonly referred to as the pre-signed second-stage HTLC transaction.
182 pub(crate) struct ExternalHTLCClaim {
183         pub(crate) commitment_txid: Txid,
184         pub(crate) per_commitment_number: u64,
185         pub(crate) htlc: HTLCOutputInCommitment,
186         pub(crate) preimage: Option<PaymentPreimage>,
187         pub(crate) counterparty_sig: Signature,
188 }
189
190 // Represents the different types of claims for which events are yielded externally to satisfy said
191 // claims.
192 #[cfg(anchors)]
193 pub(crate) enum ClaimEvent {
194         /// Event yielded to signal that the commitment transaction fee must be bumped to claim any
195         /// encumbered funds and proceed to HTLC resolution, if any HTLCs exist.
196         BumpCommitment {
197                 package_target_feerate_sat_per_1000_weight: u32,
198                 commitment_tx: Transaction,
199                 anchor_output_idx: u32,
200         },
201         /// Event yielded to signal that the commitment transaction has confirmed and its HTLCs must be
202         /// resolved by broadcasting a transaction with sufficient fee to claim them.
203         BumpHTLC {
204                 target_feerate_sat_per_1000_weight: u32,
205                 htlcs: Vec<ExternalHTLCClaim>,
206                 tx_lock_time: PackedLockTime,
207         },
208 }
209
210 /// Represents the different ways an output can be claimed (i.e., spent to an address under our
211 /// control) onchain.
212 pub(crate) enum OnchainClaim {
213         /// A finalized transaction pending confirmation spending the output to claim.
214         Tx(Transaction),
215         #[cfg(anchors)]
216         /// An event yielded externally to signal additional inputs must be added to a transaction
217         /// pending confirmation spending the output to claim.
218         Event(ClaimEvent),
219 }
220
221 /// An internal identifier to track pending package claims within the `OnchainTxHandler`.
222 type PackageID = [u8; 32];
223
224 /// OnchainTxHandler receives claiming requests, aggregates them if it's sound, broadcast and
225 /// do RBF bumping if possible.
226 pub struct OnchainTxHandler<ChannelSigner: WriteableEcdsaChannelSigner> {
227         destination_script: Script,
228         holder_commitment: HolderCommitmentTransaction,
229         // holder_htlc_sigs and prev_holder_htlc_sigs are in the order as they appear in the commitment
230         // transaction outputs (hence the Option<>s inside the Vec). The first usize is the index in
231         // the set of HTLCs in the HolderCommitmentTransaction.
232         holder_htlc_sigs: Option<Vec<Option<(usize, Signature)>>>,
233         prev_holder_commitment: Option<HolderCommitmentTransaction>,
234         prev_holder_htlc_sigs: Option<Vec<Option<(usize, Signature)>>>,
235
236         pub(super) signer: ChannelSigner,
237         pub(crate) channel_transaction_parameters: ChannelTransactionParameters,
238
239         // Used to track claiming requests. If claim tx doesn't confirm before height timer expiration we need to bump
240         // it (RBF or CPFP). If an input has been part of an aggregate tx at first claim try, we need to keep it within
241         // another bumped aggregate tx to comply with RBF rules. We may have multiple claiming txn in the flight for the
242         // same set of outpoints. One of the outpoints may be spent by a transaction not issued by us. That's why at
243         // block connection we scan all inputs and if any of them is among a set of a claiming request we test for set
244         // equality between spending transaction and claim request. If true, it means transaction was one our claiming one
245         // after a security delay of 6 blocks we remove pending claim request. If false, it means transaction wasn't and
246         // we need to regenerate new claim request with reduced set of still-claimable outpoints.
247         // Key is identifier of the pending claim request, i.e the txid of the initial claiming transaction generated by
248         // us and is immutable until all outpoint of the claimable set are post-anti-reorg-delay solved.
249         // Entry is cache of elements need to generate a bumped claiming transaction (see ClaimTxBumpMaterial)
250         #[cfg(test)] // Used in functional_test to verify sanitization
251         pub(crate) pending_claim_requests: HashMap<PackageID, PackageTemplate>,
252         #[cfg(not(test))]
253         pending_claim_requests: HashMap<PackageID, PackageTemplate>,
254
255         // Used to track external events that need to be forwarded to the `ChainMonitor`. This `Vec`
256         // essentially acts as an insertion-ordered `HashMap` â€“ there should only ever be one occurrence
257         // of a `PackageID`, which tracks its latest `ClaimEvent`, i.e., if a pending claim exists, and
258         // a new block has been connected, resulting in a new claim, the previous will be replaced with
259         // the new.
260         //
261         // These external events may be generated in the following cases:
262         //      - A channel has been force closed by broadcasting the holder's latest commitment transaction
263         //      - A block being connected/disconnected
264         //      - Learning the preimage for an HTLC we can claim onchain
265         #[cfg(anchors)]
266         pending_claim_events: Vec<(PackageID, ClaimEvent)>,
267
268         // Used to link outpoints claimed in a connected block to a pending claim request. The keys
269         // represent the outpoints that our `ChannelMonitor` has detected we have keys/scripts to
270         // claim. The values track the pending claim request identifier and the initial confirmation
271         // block height, and are immutable until the outpoint has enough confirmations to meet our
272         // [`ANTI_REORG_DELAY`]. The initial confirmation block height is used to remove the entry if
273         // the block gets disconnected.
274         #[cfg(test)] // Used in functional_test to verify sanitization
275         pub claimable_outpoints: HashMap<BitcoinOutPoint, (PackageID, u32)>,
276         #[cfg(not(test))]
277         claimable_outpoints: HashMap<BitcoinOutPoint, (PackageID, u32)>,
278
279         locktimed_packages: BTreeMap<u32, Vec<PackageTemplate>>,
280
281         onchain_events_awaiting_threshold_conf: Vec<OnchainEventEntry>,
282
283         pub(super) secp_ctx: Secp256k1<secp256k1::All>,
284 }
285
286 impl<ChannelSigner: WriteableEcdsaChannelSigner> PartialEq for OnchainTxHandler<ChannelSigner> {
287         fn eq(&self, other: &Self) -> bool {
288                 // `signer`, `secp_ctx`, and `pending_claim_events` are excluded on purpose.
289                 self.destination_script == other.destination_script &&
290                         self.holder_commitment == other.holder_commitment &&
291                         self.holder_htlc_sigs == other.holder_htlc_sigs &&
292                         self.prev_holder_commitment == other.prev_holder_commitment &&
293                         self.prev_holder_htlc_sigs == other.prev_holder_htlc_sigs &&
294                         self.channel_transaction_parameters == other.channel_transaction_parameters &&
295                         self.pending_claim_requests == other.pending_claim_requests &&
296                         self.claimable_outpoints == other.claimable_outpoints &&
297                         self.locktimed_packages == other.locktimed_packages &&
298                         self.onchain_events_awaiting_threshold_conf == other.onchain_events_awaiting_threshold_conf
299         }
300 }
301
302 const SERIALIZATION_VERSION: u8 = 1;
303 const MIN_SERIALIZATION_VERSION: u8 = 1;
304
305 impl<ChannelSigner: WriteableEcdsaChannelSigner> OnchainTxHandler<ChannelSigner> {
306         pub(crate) fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
307                 write_ver_prefix!(writer, SERIALIZATION_VERSION, MIN_SERIALIZATION_VERSION);
308
309                 self.destination_script.write(writer)?;
310                 self.holder_commitment.write(writer)?;
311                 self.holder_htlc_sigs.write(writer)?;
312                 self.prev_holder_commitment.write(writer)?;
313                 self.prev_holder_htlc_sigs.write(writer)?;
314
315                 self.channel_transaction_parameters.write(writer)?;
316
317                 let mut key_data = VecWriter(Vec::new());
318                 self.signer.write(&mut key_data)?;
319                 assert!(key_data.0.len() < core::usize::MAX);
320                 assert!(key_data.0.len() < core::u32::MAX as usize);
321                 (key_data.0.len() as u32).write(writer)?;
322                 writer.write_all(&key_data.0[..])?;
323
324                 writer.write_all(&(self.pending_claim_requests.len() as u64).to_be_bytes())?;
325                 for (ref ancestor_claim_txid, request) in self.pending_claim_requests.iter() {
326                         ancestor_claim_txid.write(writer)?;
327                         request.write(writer)?;
328                 }
329
330                 writer.write_all(&(self.claimable_outpoints.len() as u64).to_be_bytes())?;
331                 for (ref outp, ref claim_and_height) in self.claimable_outpoints.iter() {
332                         outp.write(writer)?;
333                         claim_and_height.0.write(writer)?;
334                         claim_and_height.1.write(writer)?;
335                 }
336
337                 writer.write_all(&(self.locktimed_packages.len() as u64).to_be_bytes())?;
338                 for (ref locktime, ref packages) in self.locktimed_packages.iter() {
339                         locktime.write(writer)?;
340                         writer.write_all(&(packages.len() as u64).to_be_bytes())?;
341                         for ref package in packages.iter() {
342                                 package.write(writer)?;
343                         }
344                 }
345
346                 writer.write_all(&(self.onchain_events_awaiting_threshold_conf.len() as u64).to_be_bytes())?;
347                 for ref entry in self.onchain_events_awaiting_threshold_conf.iter() {
348                         entry.write(writer)?;
349                 }
350
351                 write_tlv_fields!(writer, {});
352                 Ok(())
353         }
354 }
355
356 impl<'a, 'b, ES: EntropySource, SP: SignerProvider> ReadableArgs<(&'a ES, &'b SP, u64, [u8; 32])> for OnchainTxHandler<SP::Signer> {
357         fn read<R: io::Read>(reader: &mut R, args: (&'a ES, &'b SP, u64, [u8; 32])) -> Result<Self, DecodeError> {
358                 let entropy_source = args.0;
359                 let signer_provider = args.1;
360                 let channel_value_satoshis = args.2;
361                 let channel_keys_id = args.3;
362
363                 let _ver = read_ver_prefix!(reader, SERIALIZATION_VERSION);
364
365                 let destination_script = Readable::read(reader)?;
366
367                 let holder_commitment = Readable::read(reader)?;
368                 let holder_htlc_sigs = Readable::read(reader)?;
369                 let prev_holder_commitment = Readable::read(reader)?;
370                 let prev_holder_htlc_sigs = Readable::read(reader)?;
371
372                 let channel_parameters = Readable::read(reader)?;
373
374                 // Read the serialized signer bytes, but don't deserialize them, as we'll obtain our signer
375                 // by re-deriving the private key material.
376                 let keys_len: u32 = Readable::read(reader)?;
377                 let mut bytes_read = 0;
378                 while bytes_read != keys_len as usize {
379                         // Read 1KB at a time to avoid accidentally allocating 4GB on corrupted channel keys
380                         let mut data = [0; 1024];
381                         let bytes_to_read = cmp::min(1024, keys_len as usize - bytes_read);
382                         let read_slice = &mut data[0..bytes_to_read];
383                         reader.read_exact(read_slice)?;
384                         bytes_read += bytes_to_read;
385                 }
386
387                 let mut signer = signer_provider.derive_channel_signer(channel_value_satoshis, channel_keys_id);
388                 signer.provide_channel_parameters(&channel_parameters);
389
390                 let pending_claim_requests_len: u64 = Readable::read(reader)?;
391                 let mut pending_claim_requests = HashMap::with_capacity(cmp::min(pending_claim_requests_len as usize, MAX_ALLOC_SIZE / 128));
392                 for _ in 0..pending_claim_requests_len {
393                         pending_claim_requests.insert(Readable::read(reader)?, Readable::read(reader)?);
394                 }
395
396                 let claimable_outpoints_len: u64 = Readable::read(reader)?;
397                 let mut claimable_outpoints = HashMap::with_capacity(cmp::min(pending_claim_requests_len as usize, MAX_ALLOC_SIZE / 128));
398                 for _ in 0..claimable_outpoints_len {
399                         let outpoint = Readable::read(reader)?;
400                         let ancestor_claim_txid = Readable::read(reader)?;
401                         let height = Readable::read(reader)?;
402                         claimable_outpoints.insert(outpoint, (ancestor_claim_txid, height));
403                 }
404
405                 let locktimed_packages_len: u64 = Readable::read(reader)?;
406                 let mut locktimed_packages = BTreeMap::new();
407                 for _ in 0..locktimed_packages_len {
408                         let locktime = Readable::read(reader)?;
409                         let packages_len: u64 = Readable::read(reader)?;
410                         let mut packages = Vec::with_capacity(cmp::min(packages_len as usize, MAX_ALLOC_SIZE / core::mem::size_of::<PackageTemplate>()));
411                         for _ in 0..packages_len {
412                                 packages.push(Readable::read(reader)?);
413                         }
414                         locktimed_packages.insert(locktime, packages);
415                 }
416
417                 let waiting_threshold_conf_len: u64 = Readable::read(reader)?;
418                 let mut onchain_events_awaiting_threshold_conf = Vec::with_capacity(cmp::min(waiting_threshold_conf_len as usize, MAX_ALLOC_SIZE / 128));
419                 for _ in 0..waiting_threshold_conf_len {
420                         if let Some(val) = MaybeReadable::read(reader)? {
421                                 onchain_events_awaiting_threshold_conf.push(val);
422                         }
423                 }
424
425                 read_tlv_fields!(reader, {});
426
427                 let mut secp_ctx = Secp256k1::new();
428                 secp_ctx.seeded_randomize(&entropy_source.get_secure_random_bytes());
429
430                 Ok(OnchainTxHandler {
431                         destination_script,
432                         holder_commitment,
433                         holder_htlc_sigs,
434                         prev_holder_commitment,
435                         prev_holder_htlc_sigs,
436                         signer,
437                         channel_transaction_parameters: channel_parameters,
438                         claimable_outpoints,
439                         locktimed_packages,
440                         pending_claim_requests,
441                         onchain_events_awaiting_threshold_conf,
442                         #[cfg(anchors)]
443                         pending_claim_events: Vec::new(),
444                         secp_ctx,
445                 })
446         }
447 }
448
449 impl<ChannelSigner: WriteableEcdsaChannelSigner> OnchainTxHandler<ChannelSigner> {
450         pub(crate) fn new(destination_script: Script, signer: ChannelSigner, channel_parameters: ChannelTransactionParameters, holder_commitment: HolderCommitmentTransaction, secp_ctx: Secp256k1<secp256k1::All>) -> Self {
451                 OnchainTxHandler {
452                         destination_script,
453                         holder_commitment,
454                         holder_htlc_sigs: None,
455                         prev_holder_commitment: None,
456                         prev_holder_htlc_sigs: None,
457                         signer,
458                         channel_transaction_parameters: channel_parameters,
459                         pending_claim_requests: HashMap::new(),
460                         claimable_outpoints: HashMap::new(),
461                         locktimed_packages: BTreeMap::new(),
462                         onchain_events_awaiting_threshold_conf: Vec::new(),
463                         #[cfg(anchors)]
464                         pending_claim_events: Vec::new(),
465                         secp_ctx,
466                 }
467         }
468
469         pub(crate) fn get_prev_holder_commitment_to_self_value(&self) -> Option<u64> {
470                 self.prev_holder_commitment.as_ref().map(|commitment| commitment.to_broadcaster_value_sat())
471         }
472
473         pub(crate) fn get_cur_holder_commitment_to_self_value(&self) -> u64 {
474                 self.holder_commitment.to_broadcaster_value_sat()
475         }
476
477         #[cfg(anchors)]
478         pub(crate) fn get_and_clear_pending_claim_events(&mut self) -> Vec<ClaimEvent> {
479                 let mut events = Vec::new();
480                 swap(&mut events, &mut self.pending_claim_events);
481                 events.into_iter().map(|(_, event)| event).collect()
482         }
483
484         /// Lightning security model (i.e being able to redeem/timeout HTLC or penalize counterparty
485         /// onchain) lays on the assumption of claim transactions getting confirmed before timelock
486         /// expiration (CSV or CLTV following cases). In case of high-fee spikes, claim tx may get stuck
487         /// in the mempool, so you need to bump its feerate quickly using Replace-By-Fee or
488         /// Child-Pay-For-Parent.
489         ///
490         /// Panics if there are signing errors, because signing operations in reaction to on-chain
491         /// events are not expected to fail, and if they do, we may lose funds.
492         fn generate_claim<F: Deref, L: Deref>(&mut self, cur_height: u32, cached_request: &PackageTemplate, fee_estimator: &LowerBoundedFeeEstimator<F>, logger: &L) -> Option<(u32, u64, OnchainClaim)>
493                 where F::Target: FeeEstimator,
494                                         L::Target: Logger,
495         {
496                 let request_outpoints = cached_request.outpoints();
497                 if request_outpoints.is_empty() {
498                         // Don't prune pending claiming request yet, we may have to resurrect HTLCs. Untractable
499                         // packages cannot be aggregated and will never be split, so we cannot end up with an
500                         // empty claim.
501                         debug_assert!(cached_request.is_malleable());
502                         return None;
503                 }
504                 // If we've seen transaction inclusion in the chain for all outpoints in our request, we
505                 // don't need to continue generating more claims. We'll keep tracking the request to fully
506                 // remove it once it reaches the confirmation threshold, or to generate a new claim if the
507                 // transaction is reorged out.
508                 let mut all_inputs_have_confirmed_spend = true;
509                 for outpoint in request_outpoints.iter() {
510                         if let Some((request_package_id, _)) = self.claimable_outpoints.get(*outpoint) {
511                                 // We check for outpoint spends within claims individually rather than as a set
512                                 // since requests can have outpoints split off.
513                                 if !self.onchain_events_awaiting_threshold_conf.iter()
514                                         .any(|event_entry| if let OnchainEvent::Claim { package_id } = event_entry.event {
515                                                 *request_package_id == package_id
516                                         } else {
517                                                 // The onchain event is not a claim, keep seeking until we find one.
518                                                 false
519                                         })
520                                 {
521                                         // Either we had no `OnchainEvent::Claim`, or we did but none matched the
522                                         // outpoint's registered spend.
523                                         all_inputs_have_confirmed_spend = false;
524                                 }
525                         } else {
526                                 // The request's outpoint spend does not exist yet.
527                                 all_inputs_have_confirmed_spend = false;
528                         }
529                 }
530                 if all_inputs_have_confirmed_spend {
531                         return None;
532                 }
533
534                 // Compute new height timer to decide when we need to regenerate a new bumped version of the claim tx (if we
535                 // didn't receive confirmation of it before, or not enough reorg-safe depth on top of it).
536                 let new_timer = cached_request.get_height_timer(cur_height);
537                 if cached_request.is_malleable() {
538                         #[cfg(anchors)]
539                         { // Attributes are not allowed on if expressions on our current MSRV of 1.41.
540                                 if cached_request.requires_external_funding() {
541                                         let target_feerate_sat_per_1000_weight = cached_request
542                                                 .compute_package_feerate(fee_estimator, ConfirmationTarget::HighPriority);
543                                         if let Some(htlcs) = cached_request.construct_malleable_package_with_external_funding(self) {
544                                                 return Some((
545                                                         new_timer,
546                                                         target_feerate_sat_per_1000_weight as u64,
547                                                         OnchainClaim::Event(ClaimEvent::BumpHTLC {
548                                                                 target_feerate_sat_per_1000_weight,
549                                                                 htlcs,
550                                                                 tx_lock_time: PackedLockTime(cached_request.package_locktime(cur_height)),
551                                                         }),
552                                                 ));
553                                         } else {
554                                                 return None;
555                                         }
556                                 }
557                         }
558
559                         let predicted_weight = cached_request.package_weight(&self.destination_script);
560                         if let Some((output_value, new_feerate)) = cached_request.compute_package_output(
561                                 predicted_weight, self.destination_script.dust_value().to_sat(), fee_estimator, logger,
562                         ) {
563                                 assert!(new_feerate != 0);
564
565                                 let transaction = cached_request.finalize_malleable_package(
566                                         cur_height, self, output_value, self.destination_script.clone(), logger
567                                 ).unwrap();
568                                 log_trace!(logger, "...with timer {} and feerate {}", new_timer, new_feerate);
569                                 assert!(predicted_weight >= transaction.weight());
570                                 return Some((new_timer, new_feerate, OnchainClaim::Tx(transaction)));
571                         }
572                 } else {
573                         // Untractable packages cannot have their fees bumped through Replace-By-Fee. Some
574                         // packages may support fee bumping through Child-Pays-For-Parent, indicated by those
575                         // which require external funding.
576                         #[cfg(not(anchors))]
577                         let inputs = cached_request.inputs();
578                         #[cfg(anchors)]
579                         let mut inputs = cached_request.inputs();
580                         debug_assert_eq!(inputs.len(), 1);
581                         let tx = match cached_request.finalize_untractable_package(self, logger) {
582                                 Some(tx) => tx,
583                                 None => return None,
584                         };
585                         if !cached_request.requires_external_funding() {
586                                 return Some((new_timer, 0, OnchainClaim::Tx(tx)));
587                         }
588                         #[cfg(anchors)]
589                         return inputs.find_map(|input| match input {
590                                 // Commitment inputs with anchors support are the only untractable inputs supported
591                                 // thus far that require external funding.
592                                 PackageSolvingData::HolderFundingOutput(..) => {
593                                         debug_assert_eq!(tx.txid(), self.holder_commitment.trust().txid(),
594                                                 "Holder commitment transaction mismatch");
595                                         // We'll locate an anchor output we can spend within the commitment transaction.
596                                         let funding_pubkey = &self.channel_transaction_parameters.holder_pubkeys.funding_pubkey;
597                                         match chan_utils::get_anchor_output(&tx, funding_pubkey) {
598                                                 // An anchor output was found, so we should yield a funding event externally.
599                                                 Some((idx, _)) => {
600                                                         // TODO: Use a lower confirmation target when both our and the
601                                                         // counterparty's latest commitment don't have any HTLCs present.
602                                                         let conf_target = ConfirmationTarget::HighPriority;
603                                                         let package_target_feerate_sat_per_1000_weight = cached_request
604                                                                 .compute_package_feerate(fee_estimator, conf_target);
605                                                         Some((
606                                                                 new_timer,
607                                                                 package_target_feerate_sat_per_1000_weight as u64,
608                                                                 OnchainClaim::Event(ClaimEvent::BumpCommitment {
609                                                                         package_target_feerate_sat_per_1000_weight,
610                                                                         commitment_tx: tx.clone(),
611                                                                         anchor_output_idx: idx,
612                                                                 }),
613                                                         ))
614                                                 },
615                                                 // An anchor output was not found. There's nothing we can do other than
616                                                 // attempt to broadcast the transaction with its current fee rate and hope
617                                                 // it confirms. This is essentially the same behavior as a commitment
618                                                 // transaction without anchor outputs.
619                                                 None => Some((new_timer, 0, OnchainClaim::Tx(tx.clone()))),
620                                         }
621                                 },
622                                 _ => {
623                                         debug_assert!(false, "Only HolderFundingOutput inputs should be untractable and require external funding");
624                                         None
625                                 },
626                         })
627                 }
628                 None
629         }
630
631         /// Upon channelmonitor.block_connected(..) or upon provision of a preimage on the forward link
632         /// for this channel, provide new relevant on-chain transactions and/or new claim requests.
633         /// Together with `update_claims_view_from_matched_txn` this used to be named
634         /// `block_connected`, but it is now also used for claiming an HTLC output if we receive a
635         /// preimage after force-close.
636         ///
637         /// `conf_height` represents the height at which the request was generated. This
638         /// does not need to equal the current blockchain tip height, which should be provided via
639         /// `cur_height`, however it must never be higher than `cur_height`.
640         pub(crate) fn update_claims_view_from_requests<B: Deref, F: Deref, L: Deref>(
641                 &mut self, requests: Vec<PackageTemplate>, conf_height: u32, cur_height: u32,
642                 broadcaster: &B, fee_estimator: &LowerBoundedFeeEstimator<F>, logger: &L
643         ) where
644                 B::Target: BroadcasterInterface,
645                 F::Target: FeeEstimator,
646                 L::Target: Logger,
647         {
648                 log_debug!(logger, "Updating claims view at height {} with {} claim requests", cur_height, requests.len());
649                 let mut preprocessed_requests = Vec::with_capacity(requests.len());
650                 let mut aggregated_request = None;
651
652                 // Try to aggregate outputs if their timelock expiration isn't imminent (package timelock
653                 // <= CLTV_SHARED_CLAIM_BUFFER) and they don't require an immediate nLockTime (aggregable).
654                 for req in requests {
655                         // Don't claim a outpoint twice that would be bad for privacy and may uselessly lock a CPFP input for a while
656                         if let Some(_) = self.claimable_outpoints.get(req.outpoints()[0]) {
657                                 log_info!(logger, "Ignoring second claim for outpoint {}:{}, already registered its claiming request", req.outpoints()[0].txid, req.outpoints()[0].vout);
658                         } else {
659                                 let timelocked_equivalent_package = self.locktimed_packages.iter().map(|v| v.1.iter()).flatten()
660                                         .find(|locked_package| locked_package.outpoints() == req.outpoints());
661                                 if let Some(package) = timelocked_equivalent_package {
662                                         log_info!(logger, "Ignoring second claim for outpoint {}:{}, we already have one which we're waiting on a timelock at {} for.",
663                                                 req.outpoints()[0].txid, req.outpoints()[0].vout, package.package_locktime(cur_height));
664                                         continue;
665                                 }
666
667                                 let package_locktime = req.package_locktime(cur_height);
668                                 if package_locktime > cur_height + 1 {
669                                         log_info!(logger, "Delaying claim of package until its timelock at {} (current height {}), the following outpoints are spent:", package_locktime, cur_height);
670                                         for outpoint in req.outpoints() {
671                                                 log_info!(logger, "  Outpoint {}", outpoint);
672                                         }
673                                         self.locktimed_packages.entry(package_locktime).or_insert(Vec::new()).push(req);
674                                         continue;
675                                 }
676
677                                 log_trace!(logger, "Test if outpoint can be aggregated with expiration {} against {}", req.timelock(), cur_height + CLTV_SHARED_CLAIM_BUFFER);
678                                 if req.timelock() <= cur_height + CLTV_SHARED_CLAIM_BUFFER || !req.aggregable() {
679                                         // Don't aggregate if outpoint package timelock is soon or marked as non-aggregable
680                                         preprocessed_requests.push(req);
681                                 } else if aggregated_request.is_none() {
682                                         aggregated_request = Some(req);
683                                 } else {
684                                         aggregated_request.as_mut().unwrap().merge_package(req);
685                                 }
686                         }
687                 }
688                 if let Some(req) = aggregated_request {
689                         preprocessed_requests.push(req);
690                 }
691
692                 // Claim everything up to and including cur_height + 1
693                 let remaining_locked_packages = self.locktimed_packages.split_off(&(cur_height + 2));
694                 for (pop_height, mut entry) in self.locktimed_packages.iter_mut() {
695                         log_trace!(logger, "Restoring delayed claim of package(s) at their timelock at {}.", pop_height);
696                         preprocessed_requests.append(&mut entry);
697                 }
698                 self.locktimed_packages = remaining_locked_packages;
699
700                 // Generate claim transactions and track them to bump if necessary at
701                 // height timer expiration (i.e in how many blocks we're going to take action).
702                 for mut req in preprocessed_requests {
703                         if let Some((new_timer, new_feerate, claim)) = self.generate_claim(cur_height, &req, &*fee_estimator, &*logger) {
704                                 req.set_timer(new_timer);
705                                 req.set_feerate(new_feerate);
706                                 let package_id = match claim {
707                                         OnchainClaim::Tx(tx) => {
708                                                 log_info!(logger, "Broadcasting onchain {}", log_tx!(tx));
709                                                 broadcaster.broadcast_transaction(&tx);
710                                                 tx.txid().into_inner()
711                                         },
712                                         #[cfg(anchors)]
713                                         OnchainClaim::Event(claim_event) => {
714                                                 log_info!(logger, "Yielding onchain event to spend inputs {:?}", req.outpoints());
715                                                 let package_id = match claim_event {
716                                                         ClaimEvent::BumpCommitment { ref commitment_tx, .. } => commitment_tx.txid().into_inner(),
717                                                         ClaimEvent::BumpHTLC { ref htlcs, .. } => {
718                                                                 // Use the same construction as a lightning channel id to generate
719                                                                 // the package id for this request based on the first HTLC. It
720                                                                 // doesn't matter what we use as long as it's unique per request.
721                                                                 let mut package_id = [0; 32];
722                                                                 package_id[..].copy_from_slice(&htlcs[0].commitment_txid[..]);
723                                                                 let htlc_output_index = htlcs[0].htlc.transaction_output_index.unwrap();
724                                                                 package_id[30] ^= ((htlc_output_index >> 8) & 0xff) as u8;
725                                                                 package_id[31] ^= ((htlc_output_index >> 0) & 0xff) as u8;
726                                                                 package_id
727                                                         },
728                                                 };
729                                                 debug_assert_eq!(self.pending_claim_events.iter().filter(|entry| entry.0 == package_id).count(), 0);
730                                                 self.pending_claim_events.push((package_id, claim_event));
731                                                 package_id
732                                         },
733                                 };
734                                 for k in req.outpoints() {
735                                         log_info!(logger, "Registering claiming request for {}:{}", k.txid, k.vout);
736                                         self.claimable_outpoints.insert(k.clone(), (package_id, conf_height));
737                                 }
738                                 self.pending_claim_requests.insert(package_id, req);
739                         }
740                 }
741         }
742
743         /// Upon channelmonitor.block_connected(..) or upon provision of a preimage on the forward link
744         /// for this channel, provide new relevant on-chain transactions and/or new claim requests.
745         /// Together with `update_claims_view_from_requests` this used to be named `block_connected`,
746         /// but it is now also used for claiming an HTLC output if we receive a preimage after force-close.
747         ///
748         /// `conf_height` represents the height at which the transactions in `txn_matched` were
749         /// confirmed. This does not need to equal the current blockchain tip height, which should be
750         /// provided via `cur_height`, however it must never be higher than `cur_height`.
751         pub(crate) fn update_claims_view_from_matched_txn<B: Deref, F: Deref, L: Deref>(
752                 &mut self, txn_matched: &[&Transaction], conf_height: u32, conf_hash: BlockHash,
753                 cur_height: u32, broadcaster: &B, fee_estimator: &LowerBoundedFeeEstimator<F>, logger: &L
754         ) where
755                 B::Target: BroadcasterInterface,
756                 F::Target: FeeEstimator,
757                 L::Target: Logger,
758         {
759                 log_debug!(logger, "Updating claims view at height {} with {} matched transactions in block {}", cur_height, txn_matched.len(), conf_height);
760                 let mut bump_candidates = HashMap::new();
761                 for tx in txn_matched {
762                         // Scan all input to verify is one of the outpoint spent is of interest for us
763                         let mut claimed_outputs_material = Vec::new();
764                         for inp in &tx.input {
765                                 if let Some((package_id, _)) = self.claimable_outpoints.get(&inp.previous_output) {
766                                         // If outpoint has claim request pending on it...
767                                         if let Some(request) = self.pending_claim_requests.get_mut(package_id) {
768                                                 //... we need to verify equality between transaction outpoints and claim request
769                                                 // outpoints to know if transaction is the original claim or a bumped one issued
770                                                 // by us.
771                                                 let mut are_sets_equal = true;
772                                                 let mut tx_inputs = tx.input.iter().map(|input| &input.previous_output).collect::<Vec<_>>();
773                                                 tx_inputs.sort_unstable();
774                                                 for request_input in request.outpoints() {
775                                                         if tx_inputs.binary_search(&request_input).is_err() {
776                                                                 are_sets_equal = false;
777                                                                 break;
778                                                         }
779                                                 }
780
781                                                 macro_rules! clean_claim_request_after_safety_delay {
782                                                         () => {
783                                                                 let entry = OnchainEventEntry {
784                                                                         txid: tx.txid(),
785                                                                         height: conf_height,
786                                                                         block_hash: Some(conf_hash),
787                                                                         event: OnchainEvent::Claim { package_id: *package_id }
788                                                                 };
789                                                                 if !self.onchain_events_awaiting_threshold_conf.contains(&entry) {
790                                                                         self.onchain_events_awaiting_threshold_conf.push(entry);
791                                                                 }
792                                                         }
793                                                 }
794
795                                                 // If this is our transaction (or our counterparty spent all the outputs
796                                                 // before we could anyway with same inputs order than us), wait for
797                                                 // ANTI_REORG_DELAY and clean the RBF tracking map.
798                                                 if are_sets_equal {
799                                                         clean_claim_request_after_safety_delay!();
800                                                 } else { // If false, generate new claim request with update outpoint set
801                                                         let mut at_least_one_drop = false;
802                                                         for input in tx.input.iter() {
803                                                                 if let Some(package) = request.split_package(&input.previous_output) {
804                                                                         claimed_outputs_material.push(package);
805                                                                         at_least_one_drop = true;
806                                                                 }
807                                                                 // If there are no outpoints left to claim in this request, drop it entirely after ANTI_REORG_DELAY.
808                                                                 if request.outpoints().is_empty() {
809                                                                         clean_claim_request_after_safety_delay!();
810                                                                 }
811                                                         }
812                                                         //TODO: recompute soonest_timelock to avoid wasting a bit on fees
813                                                         if at_least_one_drop {
814                                                                 bump_candidates.insert(*package_id, request.clone());
815                                                                 // If we have any pending claim events for the request being updated
816                                                                 // that have yet to be consumed, we'll remove them since they will
817                                                                 // end up producing an invalid transaction by double spending
818                                                                 // input(s) that already have a confirmed spend. If such spend is
819                                                                 // reorged out of the chain, then we'll attempt to re-spend the
820                                                                 // inputs once we see it.
821                                                                 #[cfg(anchors)] {
822                                                                         #[cfg(debug_assertions)] {
823                                                                                 let existing = self.pending_claim_events.iter()
824                                                                                         .filter(|entry| entry.0 == *package_id).count();
825                                                                                 assert!(existing == 0 || existing == 1);
826                                                                         }
827                                                                         self.pending_claim_events.retain(|entry| entry.0 != *package_id);
828                                                                 }
829                                                         }
830                                                 }
831                                                 break; //No need to iterate further, either tx is our or their
832                                         } else {
833                                                 panic!("Inconsistencies between pending_claim_requests map and claimable_outpoints map");
834                                         }
835                                 }
836                         }
837                         for package in claimed_outputs_material.drain(..) {
838                                 let entry = OnchainEventEntry {
839                                         txid: tx.txid(),
840                                         height: conf_height,
841                                         block_hash: Some(conf_hash),
842                                         event: OnchainEvent::ContentiousOutpoint { package },
843                                 };
844                                 if !self.onchain_events_awaiting_threshold_conf.contains(&entry) {
845                                         self.onchain_events_awaiting_threshold_conf.push(entry);
846                                 }
847                         }
848                 }
849
850                 // After security delay, either our claim tx got enough confs or outpoint is definetely out of reach
851                 let onchain_events_awaiting_threshold_conf =
852                         self.onchain_events_awaiting_threshold_conf.drain(..).collect::<Vec<_>>();
853                 for entry in onchain_events_awaiting_threshold_conf {
854                         if entry.has_reached_confirmation_threshold(cur_height) {
855                                 match entry.event {
856                                         OnchainEvent::Claim { package_id } => {
857                                                 // We may remove a whole set of claim outpoints here, as these one may have
858                                                 // been aggregated in a single tx and claimed so atomically
859                                                 if let Some(request) = self.pending_claim_requests.remove(&package_id) {
860                                                         for outpoint in request.outpoints() {
861                                                                 log_debug!(logger, "Removing claim tracking for {} due to maturation of claim package {}.",
862                                                                         outpoint, log_bytes!(package_id));
863                                                                 self.claimable_outpoints.remove(outpoint);
864                                                         }
865                                                         #[cfg(anchors)] {
866                                                                 #[cfg(debug_assertions)] {
867                                                                         let num_existing = self.pending_claim_events.iter()
868                                                                                 .filter(|entry| entry.0 == package_id).count();
869                                                                         assert!(num_existing == 0 || num_existing == 1);
870                                                                 }
871                                                                 self.pending_claim_events.retain(|(id, _)| *id != package_id);
872                                                         }
873                                                 }
874                                         },
875                                         OnchainEvent::ContentiousOutpoint { package } => {
876                                                 log_debug!(logger, "Removing claim tracking due to maturation of claim tx for outpoints:");
877                                                 log_debug!(logger, " {:?}", package.outpoints());
878                                                 self.claimable_outpoints.remove(package.outpoints()[0]);
879                                         }
880                                 }
881                         } else {
882                                 self.onchain_events_awaiting_threshold_conf.push(entry);
883                         }
884                 }
885
886                 // Check if any pending claim request must be rescheduled
887                 for (package_id, request) in self.pending_claim_requests.iter() {
888                         if cur_height >= request.timer() {
889                                 bump_candidates.insert(*package_id, request.clone());
890                         }
891                 }
892
893                 // Build, bump and rebroadcast tx accordingly
894                 log_trace!(logger, "Bumping {} candidates", bump_candidates.len());
895                 for (package_id, request) in bump_candidates.iter() {
896                         if let Some((new_timer, new_feerate, bump_claim)) = self.generate_claim(cur_height, &request, &*fee_estimator, &*logger) {
897                                 match bump_claim {
898                                         OnchainClaim::Tx(bump_tx) => {
899                                                 log_info!(logger, "Broadcasting RBF-bumped onchain {}", log_tx!(bump_tx));
900                                                 broadcaster.broadcast_transaction(&bump_tx);
901                                         },
902                                         #[cfg(anchors)]
903                                         OnchainClaim::Event(claim_event) => {
904                                                 log_info!(logger, "Yielding RBF-bumped onchain event to spend inputs {:?}", request.outpoints());
905                                                 #[cfg(debug_assertions)] {
906                                                         let num_existing = self.pending_claim_events.iter().
907                                                                 filter(|entry| entry.0 == *package_id).count();
908                                                         assert!(num_existing == 0 || num_existing == 1);
909                                                 }
910                                                 self.pending_claim_events.retain(|event| event.0 != *package_id);
911                                                 self.pending_claim_events.push((*package_id, claim_event));
912                                         },
913                                 }
914                                 if let Some(request) = self.pending_claim_requests.get_mut(package_id) {
915                                         request.set_timer(new_timer);
916                                         request.set_feerate(new_feerate);
917                                 }
918                         }
919                 }
920         }
921
922         pub(crate) fn transaction_unconfirmed<B: Deref, F: Deref, L: Deref>(
923                 &mut self,
924                 txid: &Txid,
925                 broadcaster: B,
926                 fee_estimator: &LowerBoundedFeeEstimator<F>,
927                 logger: L,
928         ) where
929                 B::Target: BroadcasterInterface,
930                 F::Target: FeeEstimator,
931                 L::Target: Logger,
932         {
933                 let mut height = None;
934                 for entry in self.onchain_events_awaiting_threshold_conf.iter() {
935                         if entry.txid == *txid {
936                                 height = Some(entry.height);
937                                 break;
938                         }
939                 }
940
941                 if let Some(height) = height {
942                         self.block_disconnected(height, broadcaster, fee_estimator, logger);
943                 }
944         }
945
946         pub(crate) fn block_disconnected<B: Deref, F: Deref, L: Deref>(&mut self, height: u32, broadcaster: B, fee_estimator: &LowerBoundedFeeEstimator<F>, logger: L)
947                 where B::Target: BroadcasterInterface,
948                       F::Target: FeeEstimator,
949                                         L::Target: Logger,
950         {
951                 let mut bump_candidates = HashMap::new();
952                 let onchain_events_awaiting_threshold_conf =
953                         self.onchain_events_awaiting_threshold_conf.drain(..).collect::<Vec<_>>();
954                 for entry in onchain_events_awaiting_threshold_conf {
955                         if entry.height >= height {
956                                 //- our claim tx on a commitment tx output
957                                 //- resurect outpoint back in its claimable set and regenerate tx
958                                 match entry.event {
959                                         OnchainEvent::ContentiousOutpoint { package } => {
960                                                 if let Some(pending_claim) = self.claimable_outpoints.get(package.outpoints()[0]) {
961                                                         if let Some(request) = self.pending_claim_requests.get_mut(&pending_claim.0) {
962                                                                 request.merge_package(package);
963                                                                 // Using a HashMap guarantee us than if we have multiple outpoints getting
964                                                                 // resurrected only one bump claim tx is going to be broadcast
965                                                                 bump_candidates.insert(pending_claim.clone(), request.clone());
966                                                         }
967                                                 }
968                                         },
969                                         _ => {},
970                                 }
971                         } else {
972                                 self.onchain_events_awaiting_threshold_conf.push(entry);
973                         }
974                 }
975                 for ((_package_id, _), ref mut request) in bump_candidates.iter_mut() {
976                         if let Some((new_timer, new_feerate, bump_claim)) = self.generate_claim(height, &request, fee_estimator, &&*logger) {
977                                 request.set_timer(new_timer);
978                                 request.set_feerate(new_feerate);
979                                 match bump_claim {
980                                         OnchainClaim::Tx(bump_tx) => {
981                                                 log_info!(logger, "Broadcasting onchain {}", log_tx!(bump_tx));
982                                                 broadcaster.broadcast_transaction(&bump_tx);
983                                         },
984                                         #[cfg(anchors)]
985                                         OnchainClaim::Event(claim_event) => {
986                                                 log_info!(logger, "Yielding onchain event after reorg to spend inputs {:?}", request.outpoints());
987                                                 #[cfg(debug_assertions)] {
988                                                         let num_existing = self.pending_claim_events.iter()
989                                                                 .filter(|entry| entry.0 == *_package_id).count();
990                                                         assert!(num_existing == 0 || num_existing == 1);
991                                                 }
992                                                 self.pending_claim_events.retain(|event| event.0 != *_package_id);
993                                                 self.pending_claim_events.push((*_package_id, claim_event));
994                                         },
995                                 }
996                         }
997                 }
998                 for (ancestor_claim_txid, request) in bump_candidates.drain() {
999                         self.pending_claim_requests.insert(ancestor_claim_txid.0, request);
1000                 }
1001                 //TODO: if we implement cross-block aggregated claim transaction we need to refresh set of outpoints and regenerate tx but
1002                 // right now if one of the outpoint get disconnected, just erase whole pending claim request.
1003                 let mut remove_request = Vec::new();
1004                 self.claimable_outpoints.retain(|_, ref v|
1005                         if v.1 >= height {
1006                         remove_request.push(v.0.clone());
1007                         false
1008                         } else { true });
1009                 for req in remove_request {
1010                         self.pending_claim_requests.remove(&req);
1011                 }
1012         }
1013
1014         pub(crate) fn is_output_spend_pending(&self, outpoint: &BitcoinOutPoint) -> bool {
1015                 self.claimable_outpoints.get(outpoint).is_some()
1016         }
1017
1018         pub(crate) fn get_relevant_txids(&self) -> Vec<(Txid, Option<BlockHash>)> {
1019                 let mut txids: Vec<(Txid, Option<BlockHash>)> = self.onchain_events_awaiting_threshold_conf
1020                         .iter()
1021                         .map(|entry| (entry.txid, entry.block_hash))
1022                         .collect();
1023                 txids.sort_unstable_by_key(|(txid, _)| *txid);
1024                 txids.dedup();
1025                 txids
1026         }
1027
1028         pub(crate) fn provide_latest_holder_tx(&mut self, tx: HolderCommitmentTransaction) {
1029                 self.prev_holder_commitment = Some(replace(&mut self.holder_commitment, tx));
1030                 self.holder_htlc_sigs = None;
1031         }
1032
1033         // Normally holder HTLCs are signed at the same time as the holder commitment tx.  However,
1034         // in some configurations, the holder commitment tx has been signed and broadcast by a
1035         // ChannelMonitor replica, so we handle that case here.
1036         fn sign_latest_holder_htlcs(&mut self) {
1037                 if self.holder_htlc_sigs.is_none() {
1038                         let (_sig, sigs) = self.signer.sign_holder_commitment_and_htlcs(&self.holder_commitment, &self.secp_ctx).expect("sign holder commitment");
1039                         self.holder_htlc_sigs = Some(Self::extract_holder_sigs(&self.holder_commitment, sigs));
1040                 }
1041         }
1042
1043         // Normally only the latest commitment tx and HTLCs need to be signed.  However, in some
1044         // configurations we may have updated our holder commitment but a replica of the ChannelMonitor
1045         // broadcast the previous one before we sync with it.  We handle that case here.
1046         fn sign_prev_holder_htlcs(&mut self) {
1047                 if self.prev_holder_htlc_sigs.is_none() {
1048                         if let Some(ref holder_commitment) = self.prev_holder_commitment {
1049                                 let (_sig, sigs) = self.signer.sign_holder_commitment_and_htlcs(holder_commitment, &self.secp_ctx).expect("sign previous holder commitment");
1050                                 self.prev_holder_htlc_sigs = Some(Self::extract_holder_sigs(holder_commitment, sigs));
1051                         }
1052                 }
1053         }
1054
1055         fn extract_holder_sigs(holder_commitment: &HolderCommitmentTransaction, sigs: Vec<Signature>) -> Vec<Option<(usize, Signature)>> {
1056                 let mut ret = Vec::new();
1057                 for (htlc_idx, (holder_sig, htlc)) in sigs.iter().zip(holder_commitment.htlcs().iter()).enumerate() {
1058                         let tx_idx = htlc.transaction_output_index.unwrap();
1059                         if ret.len() <= tx_idx as usize { ret.resize(tx_idx as usize + 1, None); }
1060                         ret[tx_idx as usize] = Some((htlc_idx, holder_sig.clone()));
1061                 }
1062                 ret
1063         }
1064
1065         //TODO: getting lastest holder transactions should be infallible and result in us "force-closing the channel", but we may
1066         // have empty holder commitment transaction if a ChannelMonitor is asked to force-close just after Channel::get_outbound_funding_created,
1067         // before providing a initial commitment transaction. For outbound channel, init ChannelMonitor at Channel::funding_signed, there is nothing
1068         // to monitor before.
1069         pub(crate) fn get_fully_signed_holder_tx(&mut self, funding_redeemscript: &Script) -> Transaction {
1070                 let (sig, htlc_sigs) = self.signer.sign_holder_commitment_and_htlcs(&self.holder_commitment, &self.secp_ctx).expect("signing holder commitment");
1071                 self.holder_htlc_sigs = Some(Self::extract_holder_sigs(&self.holder_commitment, htlc_sigs));
1072                 self.holder_commitment.add_holder_sig(funding_redeemscript, sig)
1073         }
1074
1075         #[cfg(any(test, feature="unsafe_revoked_tx_signing"))]
1076         pub(crate) fn get_fully_signed_copy_holder_tx(&mut self, funding_redeemscript: &Script) -> Transaction {
1077                 let (sig, htlc_sigs) = self.signer.unsafe_sign_holder_commitment_and_htlcs(&self.holder_commitment, &self.secp_ctx).expect("sign holder commitment");
1078                 self.holder_htlc_sigs = Some(Self::extract_holder_sigs(&self.holder_commitment, htlc_sigs));
1079                 self.holder_commitment.add_holder_sig(funding_redeemscript, sig)
1080         }
1081
1082         pub(crate) fn get_fully_signed_htlc_tx(&mut self, outp: &::bitcoin::OutPoint, preimage: &Option<PaymentPreimage>) -> Option<Transaction> {
1083                 let mut htlc_tx = None;
1084                 let commitment_txid = self.holder_commitment.trust().txid();
1085                 // Check if the HTLC spends from the current holder commitment
1086                 if commitment_txid == outp.txid {
1087                         self.sign_latest_holder_htlcs();
1088                         if let &Some(ref htlc_sigs) = &self.holder_htlc_sigs {
1089                                 let &(ref htlc_idx, ref htlc_sig) = htlc_sigs[outp.vout as usize].as_ref().unwrap();
1090                                 let trusted_tx = self.holder_commitment.trust();
1091                                 let counterparty_htlc_sig = self.holder_commitment.counterparty_htlc_sigs[*htlc_idx];
1092                                 htlc_tx = Some(trusted_tx
1093                                         .get_signed_htlc_tx(&self.channel_transaction_parameters.as_holder_broadcastable(), *htlc_idx, &counterparty_htlc_sig, htlc_sig, preimage));
1094                         }
1095                 }
1096                 // If the HTLC doesn't spend the current holder commitment, check if it spends the previous one
1097                 if htlc_tx.is_none() && self.prev_holder_commitment.is_some() {
1098                         let commitment_txid = self.prev_holder_commitment.as_ref().unwrap().trust().txid();
1099                         if commitment_txid == outp.txid {
1100                                 self.sign_prev_holder_htlcs();
1101                                 if let &Some(ref htlc_sigs) = &self.prev_holder_htlc_sigs {
1102                                         let &(ref htlc_idx, ref htlc_sig) = htlc_sigs[outp.vout as usize].as_ref().unwrap();
1103                                         let holder_commitment = self.prev_holder_commitment.as_ref().unwrap();
1104                                         let trusted_tx = holder_commitment.trust();
1105                                         let counterparty_htlc_sig = holder_commitment.counterparty_htlc_sigs[*htlc_idx];
1106                                         htlc_tx = Some(trusted_tx
1107                                                 .get_signed_htlc_tx(&self.channel_transaction_parameters.as_holder_broadcastable(), *htlc_idx, &counterparty_htlc_sig, htlc_sig, preimage));
1108                                 }
1109                         }
1110                 }
1111                 htlc_tx
1112         }
1113
1114         #[cfg(anchors)]
1115         pub(crate) fn generate_external_htlc_claim(
1116                 &self, outp: &::bitcoin::OutPoint, preimage: &Option<PaymentPreimage>
1117         ) -> Option<ExternalHTLCClaim> {
1118                 let find_htlc = |holder_commitment: &HolderCommitmentTransaction| -> Option<ExternalHTLCClaim> {
1119                         let trusted_tx = holder_commitment.trust();
1120                         if outp.txid != trusted_tx.txid() {
1121                                 return None;
1122                         }
1123                         trusted_tx.htlcs().iter().enumerate()
1124                                 .find(|(_, htlc)| if let Some(output_index) = htlc.transaction_output_index {
1125                                         output_index == outp.vout
1126                                 } else {
1127                                         false
1128                                 })
1129                                 .map(|(htlc_idx, htlc)| {
1130                                         let counterparty_htlc_sig = holder_commitment.counterparty_htlc_sigs[htlc_idx];
1131                                         ExternalHTLCClaim {
1132                                                 commitment_txid: trusted_tx.txid(),
1133                                                 per_commitment_number: trusted_tx.commitment_number(),
1134                                                 htlc: htlc.clone(),
1135                                                 preimage: *preimage,
1136                                                 counterparty_sig: counterparty_htlc_sig,
1137                                         }
1138                                 })
1139                 };
1140                 // Check if the HTLC spends from the current holder commitment or the previous one otherwise.
1141                 find_htlc(&self.holder_commitment)
1142                         .or_else(|| self.prev_holder_commitment.as_ref().map(|c| find_htlc(c)).flatten())
1143         }
1144
1145         pub(crate) fn opt_anchors(&self) -> bool {
1146                 self.channel_transaction_parameters.opt_anchors.is_some()
1147         }
1148
1149         #[cfg(any(test,feature = "unsafe_revoked_tx_signing"))]
1150         pub(crate) fn unsafe_get_fully_signed_htlc_tx(&mut self, outp: &::bitcoin::OutPoint, preimage: &Option<PaymentPreimage>) -> Option<Transaction> {
1151                 let latest_had_sigs = self.holder_htlc_sigs.is_some();
1152                 let prev_had_sigs = self.prev_holder_htlc_sigs.is_some();
1153                 let ret = self.get_fully_signed_htlc_tx(outp, preimage);
1154                 if !latest_had_sigs {
1155                         self.holder_htlc_sigs = None;
1156                 }
1157                 if !prev_had_sigs {
1158                         self.prev_holder_htlc_sigs = None;
1159                 }
1160                 ret
1161         }
1162 }