1 // This file is Copyright its original authors, visible in version control
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
10 //! Utilities for scoring payment channels.
12 //! [`ProbabilisticScorer`] may be given to [`find_route`] to score payment channels during path
13 //! finding when a custom [`ScoreLookUp`] implementation is not needed.
18 //! # extern crate bitcoin;
20 //! # use lightning::routing::gossip::NetworkGraph;
21 //! # use lightning::routing::router::{RouteParameters, find_route};
22 //! # use lightning::routing::scoring::{ProbabilisticScorer, ProbabilisticScoringFeeParameters, ProbabilisticScoringDecayParameters};
23 //! # use lightning::sign::KeysManager;
24 //! # use lightning::util::logger::{Logger, Record};
25 //! # use bitcoin::secp256k1::PublicKey;
27 //! # struct FakeLogger {};
28 //! # impl Logger for FakeLogger {
29 //! # fn log(&self, record: &Record) { unimplemented!() }
31 //! # fn find_scored_route(payer: PublicKey, route_params: RouteParameters, network_graph: NetworkGraph<&FakeLogger>) {
32 //! # let logger = FakeLogger {};
34 //! // Use the default channel penalties.
35 //! let params = ProbabilisticScoringFeeParameters::default();
36 //! let decay_params = ProbabilisticScoringDecayParameters::default();
37 //! let scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
39 //! // Or use custom channel penalties.
40 //! let params = ProbabilisticScoringFeeParameters {
41 //! liquidity_penalty_multiplier_msat: 2 * 1000,
42 //! ..ProbabilisticScoringFeeParameters::default()
44 //! let decay_params = ProbabilisticScoringDecayParameters::default();
45 //! let scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
46 //! # let random_seed_bytes = [42u8; 32];
48 //! let route = find_route(&payer, &route_params, &network_graph, None, &logger, &scorer, ¶ms, &random_seed_bytes);
54 //! Persisting when built with feature `no-std` and restoring without it, or vice versa, uses
55 //! different types and thus is undefined.
57 //! [`find_route`]: crate::routing::router::find_route
59 use crate::ln::msgs::DecodeError;
60 use crate::routing::gossip::{EffectiveCapacity, NetworkGraph, NodeId};
61 use crate::routing::router::Path;
62 use crate::util::ser::{Readable, ReadableArgs, Writeable, Writer};
63 use crate::util::logger::Logger;
64 use crate::util::time::Time;
66 use crate::prelude::*;
68 use core::cell::{RefCell, RefMut, Ref};
69 use core::convert::TryInto;
70 use core::ops::{Deref, DerefMut};
71 use core::time::Duration;
72 use crate::io::{self, Read};
73 use crate::sync::{Mutex, MutexGuard, RwLock, RwLockReadGuard, RwLockWriteGuard};
75 /// We define Score ever-so-slightly differently based on whether we are being built for C bindings
76 /// or not. For users, `LockableScore` must somehow be writeable to disk. For Rust users, this is
77 /// no problem - you move a `Score` that implements `Writeable` into a `Mutex`, lock it, and now
78 /// you have the original, concrete, `Score` type, which presumably implements `Writeable`.
80 /// For C users, once you've moved the `Score` into a `LockableScore` all you have after locking it
81 /// is an opaque trait object with an opaque pointer with no type info. Users could take the unsafe
82 /// approach of blindly casting that opaque pointer to a concrete type and calling `Writeable` from
83 /// there, but other languages downstream of the C bindings (e.g. Java) can't even do that.
84 /// Instead, we really want `Score` and `LockableScore` to implement `Writeable` directly, which we
85 /// do here by defining `Score` differently for `cfg(c_bindings)`.
86 macro_rules! define_score { ($($supertrait: path)*) => {
87 /// An interface used to score payment channels for path finding.
89 /// `ScoreLookUp` is used to determine the penalty for a given channel.
91 /// Scoring is in terms of fees willing to be paid in order to avoid routing through a channel.
92 pub trait ScoreLookUp $(: $supertrait)* {
93 /// A configurable type which should contain various passed-in parameters for configuring the scorer,
94 /// on a per-routefinding-call basis through to the scorer methods,
95 /// which are used to determine the parameters for the suitability of channels for use.
97 /// Returns the fee in msats willing to be paid to avoid routing `send_amt_msat` through the
98 /// given channel in the direction from `source` to `target`.
100 /// The channel's capacity (less any other MPP parts that are also being considered for use in
101 /// the same payment) is given by `capacity_msat`. It may be determined from various sources
102 /// such as a chain data, network gossip, or invoice hints. For invoice hints, a capacity near
103 /// [`u64::max_value`] is given to indicate sufficient capacity for the invoice's full amount.
104 /// Thus, implementations should be overflow-safe.
105 fn channel_penalty_msat(
106 &self, short_channel_id: u64, source: &NodeId, target: &NodeId, usage: ChannelUsage, score_params: &Self::ScoreParams
110 /// `ScoreUpdate` is used to update the scorer's internal state after a payment attempt.
111 pub trait ScoreUpdate $(: $supertrait)* {
112 /// Handles updating channel penalties after failing to route through a channel.
113 fn payment_path_failed(&mut self, path: &Path, short_channel_id: u64);
115 /// Handles updating channel penalties after successfully routing along a path.
116 fn payment_path_successful(&mut self, path: &Path);
118 /// Handles updating channel penalties after a probe over the given path failed.
119 fn probe_failed(&mut self, path: &Path, short_channel_id: u64);
121 /// Handles updating channel penalties after a probe over the given path succeeded.
122 fn probe_successful(&mut self, path: &Path);
125 impl<SP: Sized, S: ScoreLookUp<ScoreParams = SP>, T: Deref<Target=S> $(+ $supertrait)*> ScoreLookUp for T {
126 type ScoreParams = SP;
127 fn channel_penalty_msat(
128 &self, short_channel_id: u64, source: &NodeId, target: &NodeId, usage: ChannelUsage, score_params: &Self::ScoreParams
130 self.deref().channel_penalty_msat(short_channel_id, source, target, usage, score_params)
134 impl<S: ScoreUpdate, T: DerefMut<Target=S> $(+ $supertrait)*> ScoreUpdate for T {
135 fn payment_path_failed(&mut self, path: &Path, short_channel_id: u64) {
136 self.deref_mut().payment_path_failed(path, short_channel_id)
139 fn payment_path_successful(&mut self, path: &Path) {
140 self.deref_mut().payment_path_successful(path)
143 fn probe_failed(&mut self, path: &Path, short_channel_id: u64) {
144 self.deref_mut().probe_failed(path, short_channel_id)
147 fn probe_successful(&mut self, path: &Path) {
148 self.deref_mut().probe_successful(path)
154 define_score!(Writeable);
156 #[cfg(not(c_bindings))]
159 /// A scorer that is accessed under a lock.
161 /// Needed so that calls to [`ScoreLookUp::channel_penalty_msat`] in [`find_route`] can be made while
162 /// having shared ownership of a scorer but without requiring internal locking in [`ScoreUpdate`]
163 /// implementations. Internal locking would be detrimental to route finding performance and could
164 /// result in [`ScoreLookUp::channel_penalty_msat`] returning a different value for the same channel.
166 /// [`find_route`]: crate::routing::router::find_route
167 pub trait LockableScore<'a> {
168 /// The [`ScoreUpdate`] type.
169 type ScoreUpdate: 'a + ScoreUpdate;
170 /// The [`ScoreLookUp`] type.
171 type ScoreLookUp: 'a + ScoreLookUp;
173 /// The write locked [`ScoreUpdate`] type.
174 type WriteLocked: DerefMut<Target = Self::ScoreUpdate> + Sized;
176 /// The read locked [`ScoreLookUp`] type.
177 type ReadLocked: Deref<Target = Self::ScoreLookUp> + Sized;
179 /// Returns read locked scorer.
180 fn read_lock(&'a self) -> Self::ReadLocked;
182 /// Returns write locked scorer.
183 fn write_lock(&'a self) -> Self::WriteLocked;
186 /// Refers to a scorer that is accessible under lock and also writeable to disk
188 /// We need this trait to be able to pass in a scorer to `lightning-background-processor` that will enable us to
189 /// use the Persister to persist it.
190 pub trait WriteableScore<'a>: LockableScore<'a> + Writeable {}
192 #[cfg(not(c_bindings))]
193 impl<'a, T> WriteableScore<'a> for T where T: LockableScore<'a> + Writeable {}
194 #[cfg(not(c_bindings))]
195 impl<'a, T: 'a + ScoreLookUp + ScoreUpdate> LockableScore<'a> for Mutex<T> {
196 type ScoreUpdate = T;
197 type ScoreLookUp = T;
199 type WriteLocked = MutexGuard<'a, Self::ScoreUpdate>;
200 type ReadLocked = MutexGuard<'a, Self::ScoreLookUp>;
202 fn read_lock(&'a self) -> Self::ReadLocked {
203 Mutex::lock(self).unwrap()
206 fn write_lock(&'a self) -> Self::WriteLocked {
207 Mutex::lock(self).unwrap()
211 #[cfg(not(c_bindings))]
212 impl<'a, T: 'a + ScoreUpdate + ScoreLookUp> LockableScore<'a> for RefCell<T> {
213 type ScoreUpdate = T;
214 type ScoreLookUp = T;
216 type WriteLocked = RefMut<'a, Self::ScoreUpdate>;
217 type ReadLocked = Ref<'a, Self::ScoreLookUp>;
219 fn write_lock(&'a self) -> Self::WriteLocked {
223 fn read_lock(&'a self) -> Self::ReadLocked {
228 #[cfg(not(c_bindings))]
229 impl<'a, SP:Sized, T: 'a + ScoreUpdate + ScoreLookUp<ScoreParams = SP>> LockableScore<'a> for RwLock<T> {
230 type ScoreUpdate = T;
231 type ScoreLookUp = T;
233 type WriteLocked = RwLockWriteGuard<'a, Self::ScoreLookUp>;
234 type ReadLocked = RwLockReadGuard<'a, Self::ScoreUpdate>;
236 fn read_lock(&'a self) -> Self::ReadLocked {
237 RwLock::read(self).unwrap()
240 fn write_lock(&'a self) -> Self::WriteLocked {
241 RwLock::write(self).unwrap()
246 /// A concrete implementation of [`LockableScore`] which supports multi-threading.
247 pub struct MultiThreadedLockableScore<T: ScoreLookUp + ScoreUpdate> {
252 impl<'a, SP:Sized, T: 'a + ScoreLookUp<ScoreParams = SP> + ScoreUpdate> LockableScore<'a> for MultiThreadedLockableScore<T> {
253 type ScoreUpdate = T;
254 type ScoreLookUp = T;
255 type WriteLocked = MultiThreadedScoreLockWrite<'a, Self::ScoreUpdate>;
256 type ReadLocked = MultiThreadedScoreLockRead<'a, Self::ScoreLookUp>;
258 fn read_lock(&'a self) -> Self::ReadLocked {
259 MultiThreadedScoreLockRead(self.score.read().unwrap())
262 fn write_lock(&'a self) -> Self::WriteLocked {
263 MultiThreadedScoreLockWrite(self.score.write().unwrap())
268 impl<T: ScoreUpdate + ScoreLookUp> Writeable for MultiThreadedLockableScore<T> {
269 fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
270 self.score.read().unwrap().write(writer)
275 impl<'a, T: 'a + ScoreUpdate + ScoreLookUp> WriteableScore<'a> for MultiThreadedLockableScore<T> {}
278 impl<T: ScoreLookUp + ScoreUpdate> MultiThreadedLockableScore<T> {
279 /// Creates a new [`MultiThreadedLockableScore`] given an underlying [`Score`].
280 pub fn new(score: T) -> Self {
281 MultiThreadedLockableScore { score: RwLock::new(score) }
286 /// A locked `MultiThreadedLockableScore`.
287 pub struct MultiThreadedScoreLockRead<'a, T: ScoreLookUp>(RwLockReadGuard<'a, T>);
290 /// A locked `MultiThreadedLockableScore`.
291 pub struct MultiThreadedScoreLockWrite<'a, T: ScoreUpdate>(RwLockWriteGuard<'a, T>);
294 impl<'a, T: 'a + ScoreLookUp> Deref for MultiThreadedScoreLockRead<'a, T> {
297 fn deref(&self) -> &Self::Target {
303 impl<'a, T: 'a + ScoreUpdate> Writeable for MultiThreadedScoreLockWrite<'a, T> {
304 fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
310 impl<'a, T: 'a + ScoreUpdate> Deref for MultiThreadedScoreLockWrite<'a, T> {
313 fn deref(&self) -> &Self::Target {
319 impl<'a, T: 'a + ScoreUpdate> DerefMut for MultiThreadedScoreLockWrite<'a, T> {
320 fn deref_mut(&mut self) -> &mut Self::Target {
326 /// Proposed use of a channel passed as a parameter to [`ScoreLookUp::channel_penalty_msat`].
327 #[derive(Clone, Copy, Debug, PartialEq)]
328 pub struct ChannelUsage {
329 /// The amount to send through the channel, denominated in millisatoshis.
330 pub amount_msat: u64,
332 /// Total amount, denominated in millisatoshis, already allocated to send through the channel
333 /// as part of a multi-path payment.
334 pub inflight_htlc_msat: u64,
336 /// The effective capacity of the channel.
337 pub effective_capacity: EffectiveCapacity,
341 /// [`ScoreLookUp`] implementation that uses a fixed penalty.
342 pub struct FixedPenaltyScorer {
346 impl FixedPenaltyScorer {
347 /// Creates a new scorer using `penalty_msat`.
348 pub fn with_penalty(penalty_msat: u64) -> Self {
349 Self { penalty_msat }
353 impl ScoreLookUp for FixedPenaltyScorer {
354 type ScoreParams = ();
355 fn channel_penalty_msat(&self, _: u64, _: &NodeId, _: &NodeId, _: ChannelUsage, _score_params: &Self::ScoreParams) -> u64 {
360 impl ScoreUpdate for FixedPenaltyScorer {
361 fn payment_path_failed(&mut self, _path: &Path, _short_channel_id: u64) {}
363 fn payment_path_successful(&mut self, _path: &Path) {}
365 fn probe_failed(&mut self, _path: &Path, _short_channel_id: u64) {}
367 fn probe_successful(&mut self, _path: &Path) {}
370 impl Writeable for FixedPenaltyScorer {
372 fn write<W: Writer>(&self, w: &mut W) -> Result<(), io::Error> {
373 write_tlv_fields!(w, {});
378 impl ReadableArgs<u64> for FixedPenaltyScorer {
380 fn read<R: Read>(r: &mut R, penalty_msat: u64) -> Result<Self, DecodeError> {
381 read_tlv_fields!(r, {});
382 Ok(Self { penalty_msat })
386 #[cfg(not(feature = "no-std"))]
387 type ConfiguredTime = crate::util::time::MonotonicTime;
388 #[cfg(feature = "no-std")]
389 use crate::util::time::Eternity;
390 #[cfg(feature = "no-std")]
391 type ConfiguredTime = Eternity;
393 /// [`ScoreLookUp`] implementation using channel success probability distributions.
395 /// Channels are tracked with upper and lower liquidity bounds - when an HTLC fails at a channel,
396 /// we learn that the upper-bound on the available liquidity is lower than the amount of the HTLC.
397 /// When a payment is forwarded through a channel (but fails later in the route), we learn the
398 /// lower-bound on the channel's available liquidity must be at least the value of the HTLC.
400 /// These bounds are then used to determine a success probability using the formula from
401 /// *Optimally Reliable & Cheap Payment Flows on the Lightning Network* by Rene Pickhardt
402 /// and Stefan Richter [[1]] (i.e. `(upper_bound - payment_amount) / (upper_bound - lower_bound)`).
404 /// This probability is combined with the [`liquidity_penalty_multiplier_msat`] and
405 /// [`liquidity_penalty_amount_multiplier_msat`] parameters to calculate a concrete penalty in
406 /// milli-satoshis. The penalties, when added across all hops, have the property of being linear in
407 /// terms of the entire path's success probability. This allows the router to directly compare
408 /// penalties for different paths. See the documentation of those parameters for the exact formulas.
410 /// The liquidity bounds are decayed by halving them every [`liquidity_offset_half_life`].
412 /// Further, we track the history of our upper and lower liquidity bounds for each channel,
413 /// allowing us to assign a second penalty (using [`historical_liquidity_penalty_multiplier_msat`]
414 /// and [`historical_liquidity_penalty_amount_multiplier_msat`]) based on the same probability
415 /// formula, but using the history of a channel rather than our latest estimates for the liquidity
420 /// Mixing the `no-std` feature between serialization and deserialization results in undefined
423 /// [1]: https://arxiv.org/abs/2107.05322
424 /// [`liquidity_penalty_multiplier_msat`]: ProbabilisticScoringFeeParameters::liquidity_penalty_multiplier_msat
425 /// [`liquidity_penalty_amount_multiplier_msat`]: ProbabilisticScoringFeeParameters::liquidity_penalty_amount_multiplier_msat
426 /// [`liquidity_offset_half_life`]: ProbabilisticScoringDecayParameters::liquidity_offset_half_life
427 /// [`historical_liquidity_penalty_multiplier_msat`]: ProbabilisticScoringFeeParameters::historical_liquidity_penalty_multiplier_msat
428 /// [`historical_liquidity_penalty_amount_multiplier_msat`]: ProbabilisticScoringFeeParameters::historical_liquidity_penalty_amount_multiplier_msat
429 pub type ProbabilisticScorer<G, L> = ProbabilisticScorerUsingTime::<G, L, ConfiguredTime>;
431 /// Probabilistic [`ScoreLookUp`] implementation.
433 /// This is not exported to bindings users generally all users should use the [`ProbabilisticScorer`] type alias.
434 pub struct ProbabilisticScorerUsingTime<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time>
435 where L::Target: Logger {
436 decay_params: ProbabilisticScoringDecayParameters,
439 // TODO: Remove entries of closed channels.
440 channel_liquidities: HashMap<u64, ChannelLiquidity<T>>,
443 /// Parameters for configuring [`ProbabilisticScorer`].
445 /// Used to configure base, liquidity, and amount penalties, the sum of which comprises the channel
446 /// penalty (i.e., the amount in msats willing to be paid to avoid routing through the channel).
448 /// The penalty applied to any channel by the [`ProbabilisticScorer`] is the sum of each of the
451 pub struct ProbabilisticScoringFeeParameters {
452 /// A fixed penalty in msats to apply to each channel.
454 /// Default value: 500 msat
455 pub base_penalty_msat: u64,
457 /// A multiplier used with the total amount flowing over a channel to calculate a fixed penalty
458 /// applied to each channel, in excess of the [`base_penalty_msat`].
460 /// The purpose of the amount penalty is to avoid having fees dominate the channel cost (i.e.,
461 /// fees plus penalty) for large payments. The penalty is computed as the product of this
462 /// multiplier and `2^30`ths of the total amount flowing over a channel (i.e. the payment
463 /// amount plus the amount of any other HTLCs flowing we sent over the same channel).
465 /// ie `base_penalty_amount_multiplier_msat * amount_msat / 2^30`
467 /// Default value: 8,192 msat
469 /// [`base_penalty_msat`]: Self::base_penalty_msat
470 pub base_penalty_amount_multiplier_msat: u64,
472 /// A multiplier used in conjunction with the negative `log10` of the channel's success
473 /// probability for a payment, as determined by our latest estimates of the channel's
474 /// liquidity, to determine the liquidity penalty.
476 /// The penalty is based in part on the knowledge learned from prior successful and unsuccessful
477 /// payments. This knowledge is decayed over time based on [`liquidity_offset_half_life`]. The
478 /// penalty is effectively limited to `2 * liquidity_penalty_multiplier_msat` (corresponding to
479 /// lower bounding the success probability to `0.01`) when the amount falls within the
480 /// uncertainty bounds of the channel liquidity balance. Amounts above the upper bound will
481 /// result in a `u64::max_value` penalty, however.
483 /// `-log10(success_probability) * liquidity_penalty_multiplier_msat`
485 /// Default value: 30,000 msat
487 /// [`liquidity_offset_half_life`]: ProbabilisticScoringDecayParameters::liquidity_offset_half_life
488 pub liquidity_penalty_multiplier_msat: u64,
490 /// A multiplier used in conjunction with the total amount flowing over a channel and the
491 /// negative `log10` of the channel's success probability for the payment, as determined by our
492 /// latest estimates of the channel's liquidity, to determine the amount penalty.
494 /// The purpose of the amount penalty is to avoid having fees dominate the channel cost (i.e.,
495 /// fees plus penalty) for large payments. The penalty is computed as the product of this
496 /// multiplier and `2^20`ths of the amount flowing over this channel, weighted by the negative
497 /// `log10` of the success probability.
499 /// `-log10(success_probability) * liquidity_penalty_amount_multiplier_msat * amount_msat / 2^20`
501 /// In practice, this means for 0.1 success probability (`-log10(0.1) == 1`) each `2^20`th of
502 /// the amount will result in a penalty of the multiplier. And, as the success probability
503 /// decreases, the negative `log10` weighting will increase dramatically. For higher success
504 /// probabilities, the multiplier will have a decreasing effect as the negative `log10` will
507 /// Default value: 192 msat
508 pub liquidity_penalty_amount_multiplier_msat: u64,
510 /// A multiplier used in conjunction with the negative `log10` of the channel's success
511 /// probability for the payment, as determined based on the history of our estimates of the
512 /// channel's available liquidity, to determine a penalty.
514 /// This penalty is similar to [`liquidity_penalty_multiplier_msat`], however, instead of using
515 /// only our latest estimate for the current liquidity available in the channel, it estimates
516 /// success probability based on the estimated liquidity available in the channel through
517 /// history. Specifically, every time we update our liquidity bounds on a given channel, we
518 /// track which of several buckets those bounds fall into, exponentially decaying the
519 /// probability of each bucket as new samples are added.
521 /// Default value: 10,000 msat
523 /// [`liquidity_penalty_multiplier_msat`]: Self::liquidity_penalty_multiplier_msat
524 pub historical_liquidity_penalty_multiplier_msat: u64,
526 /// A multiplier used in conjunction with the total amount flowing over a channel and the
527 /// negative `log10` of the channel's success probability for the payment, as determined based
528 /// on the history of our estimates of the channel's available liquidity, to determine a
531 /// The purpose of the amount penalty is to avoid having fees dominate the channel cost for
532 /// large payments. The penalty is computed as the product of this multiplier and `2^20`ths
533 /// of the amount flowing over this channel, weighted by the negative `log10` of the success
536 /// This penalty is similar to [`liquidity_penalty_amount_multiplier_msat`], however, instead
537 /// of using only our latest estimate for the current liquidity available in the channel, it
538 /// estimates success probability based on the estimated liquidity available in the channel
539 /// through history. Specifically, every time we update our liquidity bounds on a given
540 /// channel, we track which of several buckets those bounds fall into, exponentially decaying
541 /// the probability of each bucket as new samples are added.
543 /// Default value: 64 msat
545 /// [`liquidity_penalty_amount_multiplier_msat`]: Self::liquidity_penalty_amount_multiplier_msat
546 pub historical_liquidity_penalty_amount_multiplier_msat: u64,
548 /// Manual penalties used for the given nodes. Allows to set a particular penalty for a given
549 /// node. Note that a manual penalty of `u64::max_value()` means the node would not ever be
550 /// considered during path finding.
552 /// This is not exported to bindings users
553 pub manual_node_penalties: HashMap<NodeId, u64>,
555 /// This penalty is applied when `htlc_maximum_msat` is equal to or larger than half of the
556 /// channel's capacity, (ie. htlc_maximum_msat >= 0.5 * channel_capacity) which makes us
557 /// prefer nodes with a smaller `htlc_maximum_msat`. We treat such nodes preferentially
558 /// as this makes balance discovery attacks harder to execute, thereby creating an incentive
559 /// to restrict `htlc_maximum_msat` and improve privacy.
561 /// Default value: 250 msat
562 pub anti_probing_penalty_msat: u64,
564 /// This penalty is applied when the total amount flowing over a channel exceeds our current
565 /// estimate of the channel's available liquidity. The total amount is the amount of the
566 /// current HTLC plus any HTLCs which we've sent over the same channel.
568 /// Note that in this case all other penalties, including the
569 /// [`liquidity_penalty_multiplier_msat`] and [`liquidity_penalty_amount_multiplier_msat`]-based
570 /// penalties, as well as the [`base_penalty_msat`] and the [`anti_probing_penalty_msat`], if
571 /// applicable, are still included in the overall penalty.
573 /// If you wish to avoid creating paths with such channels entirely, setting this to a value of
574 /// `u64::max_value()` will guarantee that.
576 /// Default value: 1_0000_0000_000 msat (1 Bitcoin)
578 /// [`liquidity_penalty_multiplier_msat`]: Self::liquidity_penalty_multiplier_msat
579 /// [`liquidity_penalty_amount_multiplier_msat`]: Self::liquidity_penalty_amount_multiplier_msat
580 /// [`base_penalty_msat`]: Self::base_penalty_msat
581 /// [`anti_probing_penalty_msat`]: Self::anti_probing_penalty_msat
582 pub considered_impossible_penalty_msat: u64,
584 /// In order to calculate most of the scores above, we must first convert a lower and upper
585 /// bound on the available liquidity in a channel into the probability that we think a payment
586 /// will succeed. That probability is derived from a Probability Density Function for where we
587 /// think the liquidity in a channel likely lies, given such bounds.
589 /// If this flag is set, that PDF is simply a constant - we assume that the actual available
590 /// liquidity in a channel is just as likely to be at any point between our lower and upper
593 /// If this flag is *not* set, that PDF is `(x - 0.5*capacity) ^ 2`. That is, we use an
594 /// exponential curve which expects the liquidity of a channel to lie "at the edges". This
595 /// matches experimental results - most routing nodes do not aggressively rebalance their
596 /// channels and flows in the network are often unbalanced, leaving liquidity usually
599 /// Thus, for the "best" routes, leave this flag `false`. However, the flag does imply a number
600 /// of floating-point multiplications in the hottest routing code, which may lead to routing
601 /// performance degradation on some machines.
603 /// Default value: false
604 pub linear_success_probability: bool,
607 impl Default for ProbabilisticScoringFeeParameters {
608 fn default() -> Self {
610 base_penalty_msat: 500,
611 base_penalty_amount_multiplier_msat: 8192,
612 liquidity_penalty_multiplier_msat: 30_000,
613 liquidity_penalty_amount_multiplier_msat: 192,
614 manual_node_penalties: HashMap::new(),
615 anti_probing_penalty_msat: 250,
616 considered_impossible_penalty_msat: 1_0000_0000_000,
617 historical_liquidity_penalty_multiplier_msat: 10_000,
618 historical_liquidity_penalty_amount_multiplier_msat: 64,
619 linear_success_probability: false,
624 impl ProbabilisticScoringFeeParameters {
625 /// Marks the node with the given `node_id` as banned,
626 /// i.e it will be avoided during path finding.
627 pub fn add_banned(&mut self, node_id: &NodeId) {
628 self.manual_node_penalties.insert(*node_id, u64::max_value());
631 /// Marks all nodes in the given list as banned, i.e.,
632 /// they will be avoided during path finding.
633 pub fn add_banned_from_list(&mut self, node_ids: Vec<NodeId>) {
635 self.manual_node_penalties.insert(id, u64::max_value());
639 /// Removes the node with the given `node_id` from the list of nodes to avoid.
640 pub fn remove_banned(&mut self, node_id: &NodeId) {
641 self.manual_node_penalties.remove(node_id);
644 /// Sets a manual penalty for the given node.
645 pub fn set_manual_penalty(&mut self, node_id: &NodeId, penalty: u64) {
646 self.manual_node_penalties.insert(*node_id, penalty);
649 /// Removes the node with the given `node_id` from the list of manual penalties.
650 pub fn remove_manual_penalty(&mut self, node_id: &NodeId) {
651 self.manual_node_penalties.remove(node_id);
654 /// Clears the list of manual penalties that are applied during path finding.
655 pub fn clear_manual_penalties(&mut self) {
656 self.manual_node_penalties = HashMap::new();
661 impl ProbabilisticScoringFeeParameters {
662 fn zero_penalty() -> Self {
664 base_penalty_msat: 0,
665 base_penalty_amount_multiplier_msat: 0,
666 liquidity_penalty_multiplier_msat: 0,
667 liquidity_penalty_amount_multiplier_msat: 0,
668 historical_liquidity_penalty_multiplier_msat: 0,
669 historical_liquidity_penalty_amount_multiplier_msat: 0,
670 manual_node_penalties: HashMap::new(),
671 anti_probing_penalty_msat: 0,
672 considered_impossible_penalty_msat: 0,
673 linear_success_probability: true,
678 /// Parameters for configuring [`ProbabilisticScorer`].
680 /// Used to configure decay parameters that are static throughout the lifetime of the scorer.
681 /// these decay parameters affect the score of the channel penalty and are not changed on a
682 /// per-route penalty cost call.
683 #[derive(Copy, Clone)]
684 pub struct ProbabilisticScoringDecayParameters {
685 /// If we aren't learning any new datapoints for a channel, the historical liquidity bounds
686 /// tracking can simply live on with increasingly stale data. Instead, when a channel has not
687 /// seen a liquidity estimate update for this amount of time, the historical datapoints are
689 /// For an example of historical_no_updates_half_life being used see [`historical_estimated_channel_liquidity_probabilities`]
691 /// Note that after 16 or more half lives all historical data will be completely gone.
693 /// Default value: 14 days
695 /// [`historical_estimated_channel_liquidity_probabilities`]: ProbabilisticScorerUsingTime::historical_estimated_channel_liquidity_probabilities
696 pub historical_no_updates_half_life: Duration,
698 /// Whenever this amount of time elapses since the last update to a channel's liquidity bounds,
699 /// the distance from the bounds to "zero" is cut in half. In other words, the lower-bound on
700 /// the available liquidity is halved and the upper-bound moves half-way to the channel's total
703 /// Because halving the liquidity bounds grows the uncertainty on the channel's liquidity,
704 /// the penalty for an amount within the new bounds may change. See the [`ProbabilisticScorer`]
705 /// struct documentation for more info on the way the liquidity bounds are used.
707 /// For example, if the channel's capacity is 1 million sats, and the current upper and lower
708 /// liquidity bounds are 200,000 sats and 600,000 sats, after this amount of time the upper
709 /// and lower liquidity bounds will be decayed to 100,000 and 800,000 sats.
711 /// Default value: 6 hours
715 /// When built with the `no-std` feature, time will never elapse. Therefore, the channel
716 /// liquidity knowledge will never decay except when the bounds cross.
717 pub liquidity_offset_half_life: Duration,
720 impl Default for ProbabilisticScoringDecayParameters {
721 fn default() -> Self {
723 liquidity_offset_half_life: Duration::from_secs(6 * 60 * 60),
724 historical_no_updates_half_life: Duration::from_secs(60 * 60 * 24 * 14),
730 impl ProbabilisticScoringDecayParameters {
731 fn zero_penalty() -> Self {
733 liquidity_offset_half_life: Duration::from_secs(6 * 60 * 60),
734 historical_no_updates_half_life: Duration::from_secs(60 * 60 * 24 * 14),
739 /// Accounting for channel liquidity balance uncertainty.
741 /// Direction is defined in terms of [`NodeId`] partial ordering, where the source node is the
742 /// first node in the ordering of the channel's counterparties. Thus, swapping the two liquidity
743 /// offset fields gives the opposite direction.
744 struct ChannelLiquidity<T: Time> {
745 /// Lower channel liquidity bound in terms of an offset from zero.
746 min_liquidity_offset_msat: u64,
748 /// Upper channel liquidity bound in terms of an offset from the effective capacity.
749 max_liquidity_offset_msat: u64,
751 /// Time when the liquidity bounds were last modified.
754 min_liquidity_offset_history: HistoricalBucketRangeTracker,
755 max_liquidity_offset_history: HistoricalBucketRangeTracker,
758 /// A snapshot of [`ChannelLiquidity`] in one direction assuming a certain channel capacity and
759 /// decayed with a given half life.
760 struct DirectedChannelLiquidity<L: Deref<Target = u64>, BRT: Deref<Target = HistoricalBucketRangeTracker>, T: Time, U: Deref<Target = T>> {
761 min_liquidity_offset_msat: L,
762 max_liquidity_offset_msat: L,
763 liquidity_history: HistoricalMinMaxBuckets<BRT>,
767 decay_params: ProbabilisticScoringDecayParameters,
770 impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ProbabilisticScorerUsingTime<G, L, T> where L::Target: Logger {
771 /// Creates a new scorer using the given scoring parameters for sending payments from a node
772 /// through a network graph.
773 pub fn new(decay_params: ProbabilisticScoringDecayParameters, network_graph: G, logger: L) -> Self {
778 channel_liquidities: HashMap::new(),
783 fn with_channel(mut self, short_channel_id: u64, liquidity: ChannelLiquidity<T>) -> Self {
784 assert!(self.channel_liquidities.insert(short_channel_id, liquidity).is_none());
788 /// Dump the contents of this scorer into the configured logger.
790 /// Note that this writes roughly one line per channel for which we have a liquidity estimate,
791 /// which may be a substantial amount of log output.
792 pub fn debug_log_liquidity_stats(&self) {
795 let graph = self.network_graph.read_only();
796 for (scid, liq) in self.channel_liquidities.iter() {
797 if let Some(chan_debug) = graph.channels().get(scid) {
798 let log_direction = |source, target| {
799 if let Some((directed_info, _)) = chan_debug.as_directed_to(target) {
800 let amt = directed_info.effective_capacity().as_msat();
801 let dir_liq = liq.as_directed(source, target, amt, self.decay_params);
803 let (min_buckets, max_buckets) = dir_liq.liquidity_history
804 .get_decayed_buckets(now, *dir_liq.last_updated,
805 self.decay_params.historical_no_updates_half_life)
806 .unwrap_or(([0; 32], [0; 32]));
808 log_debug!(self.logger, core::concat!(
809 "Liquidity from {} to {} via {} is in the range ({}, {}).\n",
810 "\tHistorical min liquidity bucket relative probabilities:\n",
811 "\t\t{} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {}\n",
812 "\tHistorical max liquidity bucket relative probabilities:\n",
813 "\t\t{} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {} {}"),
814 source, target, scid, dir_liq.min_liquidity_msat(), dir_liq.max_liquidity_msat(),
815 min_buckets[ 0], min_buckets[ 1], min_buckets[ 2], min_buckets[ 3],
816 min_buckets[ 4], min_buckets[ 5], min_buckets[ 6], min_buckets[ 7],
817 min_buckets[ 8], min_buckets[ 9], min_buckets[10], min_buckets[11],
818 min_buckets[12], min_buckets[13], min_buckets[14], min_buckets[15],
819 min_buckets[16], min_buckets[17], min_buckets[18], min_buckets[19],
820 min_buckets[20], min_buckets[21], min_buckets[22], min_buckets[23],
821 min_buckets[24], min_buckets[25], min_buckets[26], min_buckets[27],
822 min_buckets[28], min_buckets[29], min_buckets[30], min_buckets[31],
823 // Note that the liquidity buckets are an offset from the edge, so we
824 // inverse the max order to get the probabilities from zero.
825 max_buckets[31], max_buckets[30], max_buckets[29], max_buckets[28],
826 max_buckets[27], max_buckets[26], max_buckets[25], max_buckets[24],
827 max_buckets[23], max_buckets[22], max_buckets[21], max_buckets[20],
828 max_buckets[19], max_buckets[18], max_buckets[17], max_buckets[16],
829 max_buckets[15], max_buckets[14], max_buckets[13], max_buckets[12],
830 max_buckets[11], max_buckets[10], max_buckets[ 9], max_buckets[ 8],
831 max_buckets[ 7], max_buckets[ 6], max_buckets[ 5], max_buckets[ 4],
832 max_buckets[ 3], max_buckets[ 2], max_buckets[ 1], max_buckets[ 0]);
834 log_debug!(self.logger, "No amount known for SCID {} from {:?} to {:?}", scid, source, target);
838 log_direction(&chan_debug.node_one, &chan_debug.node_two);
839 log_direction(&chan_debug.node_two, &chan_debug.node_one);
841 log_debug!(self.logger, "No network graph entry for SCID {}", scid);
846 /// Query the estimated minimum and maximum liquidity available for sending a payment over the
847 /// channel with `scid` towards the given `target` node.
848 pub fn estimated_channel_liquidity_range(&self, scid: u64, target: &NodeId) -> Option<(u64, u64)> {
849 let graph = self.network_graph.read_only();
851 if let Some(chan) = graph.channels().get(&scid) {
852 if let Some(liq) = self.channel_liquidities.get(&scid) {
853 if let Some((directed_info, source)) = chan.as_directed_to(target) {
854 let amt = directed_info.effective_capacity().as_msat();
855 let dir_liq = liq.as_directed(source, target, amt, self.decay_params);
856 return Some((dir_liq.min_liquidity_msat(), dir_liq.max_liquidity_msat()));
863 /// Query the historical estimated minimum and maximum liquidity available for sending a
864 /// payment over the channel with `scid` towards the given `target` node.
866 /// Returns two sets of 32 buckets. The first set describes the lower-bound liquidity history,
867 /// the second set describes the upper-bound liquidity history. Each bucket describes the
868 /// relative frequency at which we've seen a liquidity bound in the bucket's range relative to
869 /// the channel's total capacity, on an arbitrary scale. Because the values are slowly decayed,
870 /// more recent data points are weighted more heavily than older datapoints.
872 /// Note that the range of each bucket varies by its location to provide more granular results
873 /// at the edges of a channel's capacity, where it is more likely to sit.
875 /// When scoring, the estimated probability that an upper-/lower-bound lies in a given bucket
876 /// is calculated by dividing that bucket's value with the total value of all buckets.
878 /// For example, using a lower bucket count for illustrative purposes, a value of
879 /// `[0, 0, 0, ..., 0, 32]` indicates that we believe the probability of a bound being very
880 /// close to the channel's capacity to be 100%, and have never (recently) seen it in any other
881 /// bucket. A value of `[31, 0, 0, ..., 0, 0, 32]` indicates we've seen the bound being both
882 /// in the top and bottom bucket, and roughly with similar (recent) frequency.
884 /// Because the datapoints are decayed slowly over time, values will eventually return to
885 /// `Some(([1; 32], [1; 32]))` and then to `None` once no datapoints remain.
887 /// In order to fetch a single success probability from the buckets provided here, as used in
888 /// the scoring model, see [`Self::historical_estimated_payment_success_probability`].
889 pub fn historical_estimated_channel_liquidity_probabilities(&self, scid: u64, target: &NodeId)
890 -> Option<([u16; 32], [u16; 32])> {
891 let graph = self.network_graph.read_only();
893 if let Some(chan) = graph.channels().get(&scid) {
894 if let Some(liq) = self.channel_liquidities.get(&scid) {
895 if let Some((directed_info, source)) = chan.as_directed_to(target) {
896 let amt = directed_info.effective_capacity().as_msat();
897 let dir_liq = liq.as_directed(source, target, amt, self.decay_params);
899 let (min_buckets, mut max_buckets) =
900 dir_liq.liquidity_history.get_decayed_buckets(
901 dir_liq.now, *dir_liq.last_updated,
902 self.decay_params.historical_no_updates_half_life
905 // Note that the liquidity buckets are an offset from the edge, so we inverse
906 // the max order to get the probabilities from zero.
907 max_buckets.reverse();
908 return Some((min_buckets, max_buckets));
915 /// Query the probability of payment success sending the given `amount_msat` over the channel
916 /// with `scid` towards the given `target` node, based on the historical estimated liquidity
919 /// These are the same bounds as returned by
920 /// [`Self::historical_estimated_channel_liquidity_probabilities`] (but not those returned by
921 /// [`Self::estimated_channel_liquidity_range`]).
922 pub fn historical_estimated_payment_success_probability(
923 &self, scid: u64, target: &NodeId, amount_msat: u64, params: &ProbabilisticScoringFeeParameters)
925 let graph = self.network_graph.read_only();
927 if let Some(chan) = graph.channels().get(&scid) {
928 if let Some(liq) = self.channel_liquidities.get(&scid) {
929 if let Some((directed_info, source)) = chan.as_directed_to(target) {
930 let capacity_msat = directed_info.effective_capacity().as_msat();
931 let dir_liq = liq.as_directed(source, target, capacity_msat, self.decay_params);
933 return dir_liq.liquidity_history.calculate_success_probability_times_billion(
934 dir_liq.now, *dir_liq.last_updated,
935 self.decay_params.historical_no_updates_half_life, ¶ms, amount_msat,
937 ).map(|p| p as f64 / (1024 * 1024 * 1024) as f64);
945 impl<T: Time> ChannelLiquidity<T> {
949 min_liquidity_offset_msat: 0,
950 max_liquidity_offset_msat: 0,
951 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
952 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
953 last_updated: T::now(),
957 /// Returns a view of the channel liquidity directed from `source` to `target` assuming
960 &self, source: &NodeId, target: &NodeId, capacity_msat: u64, decay_params: ProbabilisticScoringDecayParameters
961 ) -> DirectedChannelLiquidity<&u64, &HistoricalBucketRangeTracker, T, &T> {
962 let (min_liquidity_offset_msat, max_liquidity_offset_msat, min_liquidity_offset_history, max_liquidity_offset_history) =
964 (&self.min_liquidity_offset_msat, &self.max_liquidity_offset_msat,
965 &self.min_liquidity_offset_history, &self.max_liquidity_offset_history)
967 (&self.max_liquidity_offset_msat, &self.min_liquidity_offset_msat,
968 &self.max_liquidity_offset_history, &self.min_liquidity_offset_history)
971 DirectedChannelLiquidity {
972 min_liquidity_offset_msat,
973 max_liquidity_offset_msat,
974 liquidity_history: HistoricalMinMaxBuckets {
975 min_liquidity_offset_history,
976 max_liquidity_offset_history,
979 last_updated: &self.last_updated,
981 decay_params: decay_params,
985 /// Returns a mutable view of the channel liquidity directed from `source` to `target` assuming
988 &mut self, source: &NodeId, target: &NodeId, capacity_msat: u64, decay_params: ProbabilisticScoringDecayParameters
989 ) -> DirectedChannelLiquidity<&mut u64, &mut HistoricalBucketRangeTracker, T, &mut T> {
990 let (min_liquidity_offset_msat, max_liquidity_offset_msat, min_liquidity_offset_history, max_liquidity_offset_history) =
992 (&mut self.min_liquidity_offset_msat, &mut self.max_liquidity_offset_msat,
993 &mut self.min_liquidity_offset_history, &mut self.max_liquidity_offset_history)
995 (&mut self.max_liquidity_offset_msat, &mut self.min_liquidity_offset_msat,
996 &mut self.max_liquidity_offset_history, &mut self.min_liquidity_offset_history)
999 DirectedChannelLiquidity {
1000 min_liquidity_offset_msat,
1001 max_liquidity_offset_msat,
1002 liquidity_history: HistoricalMinMaxBuckets {
1003 min_liquidity_offset_history,
1004 max_liquidity_offset_history,
1007 last_updated: &mut self.last_updated,
1009 decay_params: decay_params,
1014 /// Bounds `-log10` to avoid excessive liquidity penalties for payments with low success
1016 const NEGATIVE_LOG10_UPPER_BOUND: u64 = 2;
1018 /// The rough cutoff at which our precision falls off and we should stop bothering to try to log a
1019 /// ratio, as X in 1/X.
1020 const PRECISION_LOWER_BOUND_DENOMINATOR: u64 = approx::LOWER_BITS_BOUND;
1022 /// The divisor used when computing the amount penalty.
1023 const AMOUNT_PENALTY_DIVISOR: u64 = 1 << 20;
1024 const BASE_AMOUNT_PENALTY_DIVISOR: u64 = 1 << 30;
1026 /// Raises three `f64`s to the 3rd power, without `powi` because it requires `std` (dunno why).
1028 fn three_f64_pow_3(a: f64, b: f64, c: f64) -> (f64, f64, f64) {
1029 (a * a * a, b * b * b, c * c * c)
1032 /// Given liquidity bounds, calculates the success probability (in the form of a numerator and
1033 /// denominator) of an HTLC. This is a key assumption in our scoring models.
1035 /// Must not return a numerator or denominator greater than 2^31 for arguments less than 2^31.
1037 /// min_zero_implies_no_successes signals that a `min_liquidity_msat` of 0 means we've not
1038 /// (recently) seen an HTLC successfully complete over this channel.
1040 fn success_probability(
1041 amount_msat: u64, min_liquidity_msat: u64, max_liquidity_msat: u64, capacity_msat: u64,
1042 params: &ProbabilisticScoringFeeParameters, min_zero_implies_no_successes: bool,
1044 debug_assert!(min_liquidity_msat <= amount_msat);
1045 debug_assert!(amount_msat < max_liquidity_msat);
1046 debug_assert!(max_liquidity_msat <= capacity_msat);
1048 let (numerator, mut denominator) =
1049 if params.linear_success_probability {
1050 (max_liquidity_msat - amount_msat,
1051 (max_liquidity_msat - min_liquidity_msat).saturating_add(1))
1053 let capacity = capacity_msat as f64;
1054 let min = (min_liquidity_msat as f64) / capacity;
1055 let max = (max_liquidity_msat as f64) / capacity;
1056 let amount = (amount_msat as f64) / capacity;
1058 // Assume the channel has a probability density function of (x - 0.5)^2 for values from
1059 // 0 to 1 (where 1 is the channel's full capacity). The success probability given some
1060 // liquidity bounds is thus the integral under the curve from the amount to maximum
1061 // estimated liquidity, divided by the same integral from the minimum to the maximum
1062 // estimated liquidity bounds.
1064 // Because the integral from x to y is simply (y - 0.5)^3 - (x - 0.5)^3, we can
1065 // calculate the cumulative density function between the min/max bounds trivially. Note
1066 // that we don't bother to normalize the CDF to total to 1, as it will come out in the
1067 // division of num / den.
1068 let (max_pow, amt_pow, min_pow) = three_f64_pow_3(max - 0.5, amount - 0.5, min - 0.5);
1069 let num = max_pow - amt_pow;
1070 let den = max_pow - min_pow;
1072 // Because our numerator and denominator max out at 0.5^3 we need to multiply them by
1073 // quite a large factor to get something useful (ideally in the 2^30 range).
1074 const BILLIONISH: f64 = 1024.0 * 1024.0 * 1024.0;
1075 let numerator = (num * BILLIONISH) as u64 + 1;
1076 let denominator = (den * BILLIONISH) as u64 + 1;
1077 debug_assert!(numerator <= 1 << 30, "Got large numerator ({}) from float {}.", numerator, num);
1078 debug_assert!(denominator <= 1 << 30, "Got large denominator ({}) from float {}.", denominator, den);
1079 (numerator, denominator)
1082 if min_zero_implies_no_successes && min_liquidity_msat == 0 &&
1083 denominator < u64::max_value() / 21
1085 // If we have no knowledge of the channel, scale probability down by ~75%
1086 // Note that we prefer to increase the denominator rather than decrease the numerator as
1087 // the denominator is more likely to be larger and thus provide greater precision. This is
1088 // mostly an overoptimization but makes a large difference in tests.
1089 denominator = denominator * 21 / 16
1092 (numerator, denominator)
1095 impl<L: Deref<Target = u64>, BRT: Deref<Target = HistoricalBucketRangeTracker>, T: Time, U: Deref<Target = T>> DirectedChannelLiquidity< L, BRT, T, U> {
1096 /// Returns a liquidity penalty for routing the given HTLC `amount_msat` through the channel in
1098 fn penalty_msat(&self, amount_msat: u64, score_params: &ProbabilisticScoringFeeParameters) -> u64 {
1099 let available_capacity = self.capacity_msat;
1100 let max_liquidity_msat = self.max_liquidity_msat();
1101 let min_liquidity_msat = core::cmp::min(self.min_liquidity_msat(), max_liquidity_msat);
1103 let mut res = if amount_msat <= min_liquidity_msat {
1105 } else if amount_msat >= max_liquidity_msat {
1106 // Equivalent to hitting the else clause below with the amount equal to the effective
1107 // capacity and without any certainty on the liquidity upper bound, plus the
1108 // impossibility penalty.
1109 let negative_log10_times_2048 = NEGATIVE_LOG10_UPPER_BOUND * 2048;
1110 Self::combined_penalty_msat(amount_msat, negative_log10_times_2048,
1111 score_params.liquidity_penalty_multiplier_msat,
1112 score_params.liquidity_penalty_amount_multiplier_msat)
1113 .saturating_add(score_params.considered_impossible_penalty_msat)
1115 let (numerator, denominator) = success_probability(amount_msat,
1116 min_liquidity_msat, max_liquidity_msat, available_capacity, score_params, false);
1117 if denominator - numerator < denominator / PRECISION_LOWER_BOUND_DENOMINATOR {
1118 // If the failure probability is < 1.5625% (as 1 - numerator/denominator < 1/64),
1119 // don't bother trying to use the log approximation as it gets too noisy to be
1120 // particularly helpful, instead just round down to 0.
1123 let negative_log10_times_2048 =
1124 approx::negative_log10_times_2048(numerator, denominator);
1125 Self::combined_penalty_msat(amount_msat, negative_log10_times_2048,
1126 score_params.liquidity_penalty_multiplier_msat,
1127 score_params.liquidity_penalty_amount_multiplier_msat)
1131 if amount_msat >= available_capacity {
1132 // We're trying to send more than the capacity, use a max penalty.
1133 res = res.saturating_add(Self::combined_penalty_msat(amount_msat,
1134 NEGATIVE_LOG10_UPPER_BOUND * 2048,
1135 score_params.historical_liquidity_penalty_multiplier_msat,
1136 score_params.historical_liquidity_penalty_amount_multiplier_msat));
1140 if score_params.historical_liquidity_penalty_multiplier_msat != 0 ||
1141 score_params.historical_liquidity_penalty_amount_multiplier_msat != 0 {
1142 if let Some(cumulative_success_prob_times_billion) = self.liquidity_history
1143 .calculate_success_probability_times_billion(self.now, *self.last_updated,
1144 self.decay_params.historical_no_updates_half_life, score_params, amount_msat,
1147 let historical_negative_log10_times_2048 = approx::negative_log10_times_2048(cumulative_success_prob_times_billion + 1, 1024 * 1024 * 1024);
1148 res = res.saturating_add(Self::combined_penalty_msat(amount_msat,
1149 historical_negative_log10_times_2048, score_params.historical_liquidity_penalty_multiplier_msat,
1150 score_params.historical_liquidity_penalty_amount_multiplier_msat));
1152 // If we don't have any valid points (or, once decayed, we have less than a full
1153 // point), redo the non-historical calculation with no liquidity bounds tracked and
1154 // the historical penalty multipliers.
1155 let (numerator, denominator) = success_probability(amount_msat, 0,
1156 available_capacity, available_capacity, score_params, true);
1157 let negative_log10_times_2048 =
1158 approx::negative_log10_times_2048(numerator, denominator);
1159 res = res.saturating_add(Self::combined_penalty_msat(amount_msat, negative_log10_times_2048,
1160 score_params.historical_liquidity_penalty_multiplier_msat,
1161 score_params.historical_liquidity_penalty_amount_multiplier_msat));
1168 /// Computes the liquidity penalty from the penalty multipliers.
1170 fn combined_penalty_msat(amount_msat: u64, mut negative_log10_times_2048: u64,
1171 liquidity_penalty_multiplier_msat: u64, liquidity_penalty_amount_multiplier_msat: u64,
1173 negative_log10_times_2048 =
1174 negative_log10_times_2048.min(NEGATIVE_LOG10_UPPER_BOUND * 2048);
1176 // Upper bound the liquidity penalty to ensure some channel is selected.
1177 let liquidity_penalty_msat = negative_log10_times_2048
1178 .saturating_mul(liquidity_penalty_multiplier_msat) / 2048;
1179 let amount_penalty_msat = negative_log10_times_2048
1180 .saturating_mul(liquidity_penalty_amount_multiplier_msat)
1181 .saturating_mul(amount_msat) / 2048 / AMOUNT_PENALTY_DIVISOR;
1183 liquidity_penalty_msat.saturating_add(amount_penalty_msat)
1186 /// Returns the lower bound of the channel liquidity balance in this direction.
1188 fn min_liquidity_msat(&self) -> u64 {
1189 self.decayed_offset_msat(*self.min_liquidity_offset_msat)
1192 /// Returns the upper bound of the channel liquidity balance in this direction.
1194 fn max_liquidity_msat(&self) -> u64 {
1196 .saturating_sub(self.decayed_offset_msat(*self.max_liquidity_offset_msat))
1199 fn decayed_offset_msat(&self, offset_msat: u64) -> u64 {
1200 let half_life = self.decay_params.liquidity_offset_half_life.as_secs();
1202 // Decay the offset by the appropriate number of half lives. If half of the next half
1203 // life has passed, approximate an additional three-quarter life to help smooth out the
1205 let elapsed_time = self.now.duration_since(*self.last_updated).as_secs();
1206 let half_decays = elapsed_time / (half_life / 2);
1207 let decays = half_decays / 2;
1208 let decayed_offset_msat = offset_msat.checked_shr(decays as u32).unwrap_or(0);
1209 if half_decays % 2 == 0 {
1212 // 11_585 / 16_384 ~= core::f64::consts::FRAC_1_SQRT_2
1214 (decayed_offset_msat as u128 * 11_585 / 16_384) as u64
1222 impl<L: DerefMut<Target = u64>, BRT: DerefMut<Target = HistoricalBucketRangeTracker>, T: Time, U: DerefMut<Target = T>> DirectedChannelLiquidity<L, BRT, T, U> {
1223 /// Adjusts the channel liquidity balance bounds when failing to route `amount_msat`.
1224 fn failed_at_channel<Log: Deref>(&mut self, amount_msat: u64, chan_descr: fmt::Arguments, logger: &Log) where Log::Target: Logger {
1225 let existing_max_msat = self.max_liquidity_msat();
1226 if amount_msat < existing_max_msat {
1227 log_debug!(logger, "Setting max liquidity of {} from {} to {}", chan_descr, existing_max_msat, amount_msat);
1228 self.set_max_liquidity_msat(amount_msat);
1230 log_trace!(logger, "Max liquidity of {} is {} (already less than or equal to {})",
1231 chan_descr, existing_max_msat, amount_msat);
1233 self.update_history_buckets(0);
1236 /// Adjusts the channel liquidity balance bounds when failing to route `amount_msat` downstream.
1237 fn failed_downstream<Log: Deref>(&mut self, amount_msat: u64, chan_descr: fmt::Arguments, logger: &Log) where Log::Target: Logger {
1238 let existing_min_msat = self.min_liquidity_msat();
1239 if amount_msat > existing_min_msat {
1240 log_debug!(logger, "Setting min liquidity of {} from {} to {}", existing_min_msat, chan_descr, amount_msat);
1241 self.set_min_liquidity_msat(amount_msat);
1243 log_trace!(logger, "Min liquidity of {} is {} (already greater than or equal to {})",
1244 chan_descr, existing_min_msat, amount_msat);
1246 self.update_history_buckets(0);
1249 /// Adjusts the channel liquidity balance bounds when successfully routing `amount_msat`.
1250 fn successful<Log: Deref>(&mut self, amount_msat: u64, chan_descr: fmt::Arguments, logger: &Log) where Log::Target: Logger {
1251 let max_liquidity_msat = self.max_liquidity_msat().checked_sub(amount_msat).unwrap_or(0);
1252 log_debug!(logger, "Subtracting {} from max liquidity of {} (setting it to {})", amount_msat, chan_descr, max_liquidity_msat);
1253 self.set_max_liquidity_msat(max_liquidity_msat);
1254 self.update_history_buckets(amount_msat);
1257 /// Updates the history buckets for this channel. Because the history buckets track what we now
1258 /// know about the channel's state *prior to our payment* (i.e. what we assume is "steady
1259 /// state"), we allow the caller to set an offset applied to our liquidity bounds which
1260 /// represents the amount of the successful payment we just made.
1261 fn update_history_buckets(&mut self, bucket_offset_msat: u64) {
1262 let half_lives = self.now.duration_since(*self.last_updated).as_secs()
1263 .checked_div(self.decay_params.historical_no_updates_half_life.as_secs())
1264 .map(|v| v.try_into().unwrap_or(u32::max_value())).unwrap_or(u32::max_value());
1265 self.liquidity_history.min_liquidity_offset_history.time_decay_data(half_lives);
1266 self.liquidity_history.max_liquidity_offset_history.time_decay_data(half_lives);
1268 let min_liquidity_offset_msat = self.decayed_offset_msat(*self.min_liquidity_offset_msat);
1269 self.liquidity_history.min_liquidity_offset_history.track_datapoint(
1270 min_liquidity_offset_msat + bucket_offset_msat, self.capacity_msat
1272 let max_liquidity_offset_msat = self.decayed_offset_msat(*self.max_liquidity_offset_msat);
1273 self.liquidity_history.max_liquidity_offset_history.track_datapoint(
1274 max_liquidity_offset_msat.saturating_sub(bucket_offset_msat), self.capacity_msat
1278 /// Adjusts the lower bound of the channel liquidity balance in this direction.
1279 fn set_min_liquidity_msat(&mut self, amount_msat: u64) {
1280 *self.min_liquidity_offset_msat = amount_msat;
1281 *self.max_liquidity_offset_msat = if amount_msat > self.max_liquidity_msat() {
1284 self.decayed_offset_msat(*self.max_liquidity_offset_msat)
1286 *self.last_updated = self.now;
1289 /// Adjusts the upper bound of the channel liquidity balance in this direction.
1290 fn set_max_liquidity_msat(&mut self, amount_msat: u64) {
1291 *self.max_liquidity_offset_msat = self.capacity_msat.checked_sub(amount_msat).unwrap_or(0);
1292 *self.min_liquidity_offset_msat = if amount_msat < self.min_liquidity_msat() {
1295 self.decayed_offset_msat(*self.min_liquidity_offset_msat)
1297 *self.last_updated = self.now;
1301 impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ScoreLookUp for ProbabilisticScorerUsingTime<G, L, T> where L::Target: Logger {
1302 type ScoreParams = ProbabilisticScoringFeeParameters;
1303 fn channel_penalty_msat(
1304 &self, short_channel_id: u64, source: &NodeId, target: &NodeId, usage: ChannelUsage, score_params: &ProbabilisticScoringFeeParameters
1306 if let Some(penalty) = score_params.manual_node_penalties.get(target) {
1310 let base_penalty_msat = score_params.base_penalty_msat.saturating_add(
1311 score_params.base_penalty_amount_multiplier_msat
1312 .saturating_mul(usage.amount_msat) / BASE_AMOUNT_PENALTY_DIVISOR);
1314 let mut anti_probing_penalty_msat = 0;
1315 match usage.effective_capacity {
1316 EffectiveCapacity::ExactLiquidity { liquidity_msat: amount_msat } |
1317 EffectiveCapacity::HintMaxHTLC { amount_msat } =>
1319 if usage.amount_msat > amount_msat {
1320 return u64::max_value();
1322 return base_penalty_msat;
1325 EffectiveCapacity::Total { capacity_msat, htlc_maximum_msat } => {
1326 if htlc_maximum_msat >= capacity_msat/2 {
1327 anti_probing_penalty_msat = score_params.anti_probing_penalty_msat;
1333 let amount_msat = usage.amount_msat.saturating_add(usage.inflight_htlc_msat);
1334 let capacity_msat = usage.effective_capacity.as_msat();
1335 self.channel_liquidities
1336 .get(&short_channel_id)
1337 .unwrap_or(&ChannelLiquidity::new())
1338 .as_directed(source, target, capacity_msat, self.decay_params)
1339 .penalty_msat(amount_msat, score_params)
1340 .saturating_add(anti_probing_penalty_msat)
1341 .saturating_add(base_penalty_msat)
1345 impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ScoreUpdate for ProbabilisticScorerUsingTime<G, L, T> where L::Target: Logger {
1346 fn payment_path_failed(&mut self, path: &Path, short_channel_id: u64) {
1347 let amount_msat = path.final_value_msat();
1348 log_trace!(self.logger, "Scoring path through to SCID {} as having failed at {} msat", short_channel_id, amount_msat);
1349 let network_graph = self.network_graph.read_only();
1350 for (hop_idx, hop) in path.hops.iter().enumerate() {
1351 let target = NodeId::from_pubkey(&hop.pubkey);
1352 let channel_directed_from_source = network_graph.channels()
1353 .get(&hop.short_channel_id)
1354 .and_then(|channel| channel.as_directed_to(&target));
1356 let at_failed_channel = hop.short_channel_id == short_channel_id;
1357 if at_failed_channel && hop_idx == 0 {
1358 log_warn!(self.logger, "Payment failed at the first hop - we do not attempt to learn channel info in such cases as we can directly observe local state.\n\tBecause we know the local state, we should generally not see failures here - this may be an indication that your channel peer on channel {} is broken and you may wish to close the channel.", hop.short_channel_id);
1361 // Only score announced channels.
1362 if let Some((channel, source)) = channel_directed_from_source {
1363 let capacity_msat = channel.effective_capacity().as_msat();
1364 if at_failed_channel {
1365 self.channel_liquidities
1366 .entry(hop.short_channel_id)
1367 .or_insert_with(ChannelLiquidity::new)
1368 .as_directed_mut(source, &target, capacity_msat, self.decay_params)
1369 .failed_at_channel(amount_msat, format_args!("SCID {}, towards {:?}", hop.short_channel_id, target), &self.logger);
1371 self.channel_liquidities
1372 .entry(hop.short_channel_id)
1373 .or_insert_with(ChannelLiquidity::new)
1374 .as_directed_mut(source, &target, capacity_msat, self.decay_params)
1375 .failed_downstream(amount_msat, format_args!("SCID {}, towards {:?}", hop.short_channel_id, target), &self.logger);
1378 log_debug!(self.logger, "Not able to penalize channel with SCID {} as we do not have graph info for it (likely a route-hint last-hop).",
1379 hop.short_channel_id);
1381 if at_failed_channel { break; }
1385 fn payment_path_successful(&mut self, path: &Path) {
1386 let amount_msat = path.final_value_msat();
1387 log_trace!(self.logger, "Scoring path through SCID {} as having succeeded at {} msat.",
1388 path.hops.split_last().map(|(hop, _)| hop.short_channel_id).unwrap_or(0), amount_msat);
1389 let network_graph = self.network_graph.read_only();
1390 for hop in &path.hops {
1391 let target = NodeId::from_pubkey(&hop.pubkey);
1392 let channel_directed_from_source = network_graph.channels()
1393 .get(&hop.short_channel_id)
1394 .and_then(|channel| channel.as_directed_to(&target));
1396 // Only score announced channels.
1397 if let Some((channel, source)) = channel_directed_from_source {
1398 let capacity_msat = channel.effective_capacity().as_msat();
1399 self.channel_liquidities
1400 .entry(hop.short_channel_id)
1401 .or_insert_with(ChannelLiquidity::new)
1402 .as_directed_mut(source, &target, capacity_msat, self.decay_params)
1403 .successful(amount_msat, format_args!("SCID {}, towards {:?}", hop.short_channel_id, target), &self.logger);
1405 log_debug!(self.logger, "Not able to learn for channel with SCID {} as we do not have graph info for it (likely a route-hint last-hop).",
1406 hop.short_channel_id);
1411 fn probe_failed(&mut self, path: &Path, short_channel_id: u64) {
1412 self.payment_path_failed(path, short_channel_id)
1415 fn probe_successful(&mut self, path: &Path) {
1416 self.payment_path_failed(path, u64::max_value())
1421 const BITS: u32 = 64;
1422 const HIGHEST_BIT: u32 = BITS - 1;
1423 const LOWER_BITS: u32 = 6;
1424 pub(super) const LOWER_BITS_BOUND: u64 = 1 << LOWER_BITS;
1425 const LOWER_BITMASK: u64 = (1 << LOWER_BITS) - 1;
1427 /// Look-up table for `log10(x) * 2048` where row `i` is used for each `x` having `i` as the
1428 /// most significant bit. The next 4 bits of `x`, if applicable, are used for the second index.
1429 const LOG10_TIMES_2048: [[u16; (LOWER_BITS_BOUND) as usize]; BITS as usize] = [
1430 [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1431 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1432 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1433 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
1434 [617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617,
1435 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617, 617,
1436 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977,
1437 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977, 977],
1438 [1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233, 1233,
1439 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431, 1431,
1440 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594, 1594,
1441 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731, 1731],
1442 [1850, 1850, 1850, 1850, 1850, 1850, 1850, 1850, 1954, 1954, 1954, 1954, 1954, 1954, 1954, 1954,
1443 2048, 2048, 2048, 2048, 2048, 2048, 2048, 2048, 2133, 2133, 2133, 2133, 2133, 2133, 2133, 2133,
1444 2210, 2210, 2210, 2210, 2210, 2210, 2210, 2210, 2281, 2281, 2281, 2281, 2281, 2281, 2281, 2281,
1445 2347, 2347, 2347, 2347, 2347, 2347, 2347, 2347, 2409, 2409, 2409, 2409, 2409, 2409, 2409, 2409],
1446 [2466, 2466, 2466, 2466, 2520, 2520, 2520, 2520, 2571, 2571, 2571, 2571, 2619, 2619, 2619, 2619,
1447 2665, 2665, 2665, 2665, 2708, 2708, 2708, 2708, 2749, 2749, 2749, 2749, 2789, 2789, 2789, 2789,
1448 2827, 2827, 2827, 2827, 2863, 2863, 2863, 2863, 2898, 2898, 2898, 2898, 2931, 2931, 2931, 2931,
1449 2964, 2964, 2964, 2964, 2995, 2995, 2995, 2995, 3025, 3025, 3025, 3025, 3054, 3054, 3054, 3054],
1450 [3083, 3083, 3110, 3110, 3136, 3136, 3162, 3162, 3187, 3187, 3212, 3212, 3235, 3235, 3259, 3259,
1451 3281, 3281, 3303, 3303, 3324, 3324, 3345, 3345, 3366, 3366, 3386, 3386, 3405, 3405, 3424, 3424,
1452 3443, 3443, 3462, 3462, 3479, 3479, 3497, 3497, 3514, 3514, 3531, 3531, 3548, 3548, 3564, 3564,
1453 3580, 3580, 3596, 3596, 3612, 3612, 3627, 3627, 3642, 3642, 3656, 3656, 3671, 3671, 3685, 3685],
1454 [3699, 3713, 3726, 3740, 3753, 3766, 3779, 3791, 3804, 3816, 3828, 3840, 3852, 3864, 3875, 3886,
1455 3898, 3909, 3919, 3930, 3941, 3951, 3962, 3972, 3982, 3992, 4002, 4012, 4022, 4031, 4041, 4050,
1456 4060, 4069, 4078, 4087, 4096, 4105, 4114, 4122, 4131, 4139, 4148, 4156, 4164, 4173, 4181, 4189,
1457 4197, 4205, 4213, 4220, 4228, 4236, 4243, 4251, 4258, 4266, 4273, 4280, 4287, 4294, 4302, 4309],
1458 [4316, 4329, 4343, 4356, 4369, 4382, 4395, 4408, 4420, 4433, 4445, 4457, 4468, 4480, 4492, 4503,
1459 4514, 4525, 4536, 4547, 4557, 4568, 4578, 4589, 4599, 4609, 4619, 4629, 4638, 4648, 4657, 4667,
1460 4676, 4685, 4695, 4704, 4713, 4721, 4730, 4739, 4747, 4756, 4764, 4773, 4781, 4789, 4797, 4805,
1461 4813, 4821, 4829, 4837, 4845, 4852, 4860, 4867, 4875, 4882, 4889, 4897, 4904, 4911, 4918, 4925],
1462 [4932, 4946, 4959, 4973, 4986, 4999, 5012, 5024, 5037, 5049, 5061, 5073, 5085, 5097, 5108, 5119,
1463 5131, 5142, 5153, 5163, 5174, 5184, 5195, 5205, 5215, 5225, 5235, 5245, 5255, 5264, 5274, 5283,
1464 5293, 5302, 5311, 5320, 5329, 5338, 5347, 5355, 5364, 5372, 5381, 5389, 5397, 5406, 5414, 5422,
1465 5430, 5438, 5446, 5453, 5461, 5469, 5476, 5484, 5491, 5499, 5506, 5513, 5520, 5527, 5535, 5542],
1466 [5549, 5562, 5576, 5589, 5603, 5615, 5628, 5641, 5653, 5666, 5678, 5690, 5701, 5713, 5725, 5736,
1467 5747, 5758, 5769, 5780, 5790, 5801, 5811, 5822, 5832, 5842, 5852, 5862, 5871, 5881, 5890, 5900,
1468 5909, 5918, 5928, 5937, 5946, 5954, 5963, 5972, 5980, 5989, 5997, 6006, 6014, 6022, 6030, 6038,
1469 6046, 6054, 6062, 6070, 6078, 6085, 6093, 6100, 6108, 6115, 6122, 6130, 6137, 6144, 6151, 6158],
1470 [6165, 6179, 6192, 6206, 6219, 6232, 6245, 6257, 6270, 6282, 6294, 6306, 6318, 6330, 6341, 6352,
1471 6364, 6375, 6386, 6396, 6407, 6417, 6428, 6438, 6448, 6458, 6468, 6478, 6488, 6497, 6507, 6516,
1472 6526, 6535, 6544, 6553, 6562, 6571, 6580, 6588, 6597, 6605, 6614, 6622, 6630, 6639, 6647, 6655,
1473 6663, 6671, 6679, 6686, 6694, 6702, 6709, 6717, 6724, 6732, 6739, 6746, 6753, 6761, 6768, 6775],
1474 [6782, 6795, 6809, 6822, 6836, 6849, 6861, 6874, 6886, 6899, 6911, 6923, 6934, 6946, 6958, 6969,
1475 6980, 6991, 7002, 7013, 7023, 7034, 7044, 7055, 7065, 7075, 7085, 7095, 7104, 7114, 7124, 7133,
1476 7142, 7151, 7161, 7170, 7179, 7187, 7196, 7205, 7213, 7222, 7230, 7239, 7247, 7255, 7263, 7271,
1477 7279, 7287, 7295, 7303, 7311, 7318, 7326, 7333, 7341, 7348, 7355, 7363, 7370, 7377, 7384, 7391],
1478 [7398, 7412, 7425, 7439, 7452, 7465, 7478, 7490, 7503, 7515, 7527, 7539, 7551, 7563, 7574, 7585,
1479 7597, 7608, 7619, 7629, 7640, 7651, 7661, 7671, 7681, 7691, 7701, 7711, 7721, 7731, 7740, 7749,
1480 7759, 7768, 7777, 7786, 7795, 7804, 7813, 7821, 7830, 7838, 7847, 7855, 7864, 7872, 7880, 7888,
1481 7896, 7904, 7912, 7919, 7927, 7935, 7942, 7950, 7957, 7965, 7972, 7979, 7986, 7994, 8001, 8008],
1482 [8015, 8028, 8042, 8055, 8069, 8082, 8094, 8107, 8119, 8132, 8144, 8156, 8167, 8179, 8191, 8202,
1483 8213, 8224, 8235, 8246, 8256, 8267, 8277, 8288, 8298, 8308, 8318, 8328, 8337, 8347, 8357, 8366,
1484 8375, 8384, 8394, 8403, 8412, 8420, 8429, 8438, 8446, 8455, 8463, 8472, 8480, 8488, 8496, 8504,
1485 8512, 8520, 8528, 8536, 8544, 8551, 8559, 8566, 8574, 8581, 8588, 8596, 8603, 8610, 8617, 8624],
1486 [8631, 8645, 8659, 8672, 8685, 8698, 8711, 8723, 8736, 8748, 8760, 8772, 8784, 8796, 8807, 8818,
1487 8830, 8841, 8852, 8862, 8873, 8884, 8894, 8904, 8914, 8924, 8934, 8944, 8954, 8964, 8973, 8982,
1488 8992, 9001, 9010, 9019, 9028, 9037, 9046, 9054, 9063, 9071, 9080, 9088, 9097, 9105, 9113, 9121,
1489 9129, 9137, 9145, 9152, 9160, 9168, 9175, 9183, 9190, 9198, 9205, 9212, 9219, 9227, 9234, 9241],
1490 [9248, 9261, 9275, 9288, 9302, 9315, 9327, 9340, 9352, 9365, 9377, 9389, 9400, 9412, 9424, 9435,
1491 9446, 9457, 9468, 9479, 9490, 9500, 9510, 9521, 9531, 9541, 9551, 9561, 9570, 9580, 9590, 9599,
1492 9608, 9617, 9627, 9636, 9645, 9653, 9662, 9671, 9679, 9688, 9696, 9705, 9713, 9721, 9729, 9737,
1493 9745, 9753, 9761, 9769, 9777, 9784, 9792, 9799, 9807, 9814, 9821, 9829, 9836, 9843, 9850, 9857],
1494 [9864, 9878, 9892, 9905, 9918, 9931, 9944, 9956, 9969, 9981, 9993, 10005, 10017, 10029, 10040, 10051,
1495 10063, 10074, 10085, 10095, 10106, 10117, 10127, 10137, 10147, 10157, 10167, 10177, 10187, 10197, 10206, 10215,
1496 10225, 10234, 10243, 10252, 10261, 10270, 10279, 10287, 10296, 10304, 10313, 10321, 10330, 10338, 10346, 10354,
1497 10362, 10370, 10378, 10385, 10393, 10401, 10408, 10416, 10423, 10431, 10438, 10445, 10452, 10460, 10467, 10474],
1498 [10481, 10494, 10508, 10521, 10535, 10548, 10560, 10573, 10585, 10598, 10610, 10622, 10634, 10645, 10657, 10668,
1499 10679, 10690, 10701, 10712, 10723, 10733, 10743, 10754, 10764, 10774, 10784, 10794, 10803, 10813, 10823, 10832,
1500 10841, 10851, 10860, 10869, 10878, 10886, 10895, 10904, 10912, 10921, 10929, 10938, 10946, 10954, 10962, 10970,
1501 10978, 10986, 10994, 11002, 11010, 11017, 11025, 11032, 11040, 11047, 11054, 11062, 11069, 11076, 11083, 11090],
1502 [11097, 11111, 11125, 11138, 11151, 11164, 11177, 11189, 11202, 11214, 11226, 11238, 11250, 11262, 11273, 11284,
1503 11296, 11307, 11318, 11328, 11339, 11350, 11360, 11370, 11380, 11390, 11400, 11410, 11420, 11430, 11439, 11448,
1504 11458, 11467, 11476, 11485, 11494, 11503, 11512, 11520, 11529, 11538, 11546, 11554, 11563, 11571, 11579, 11587,
1505 11595, 11603, 11611, 11618, 11626, 11634, 11641, 11649, 11656, 11664, 11671, 11678, 11685, 11693, 11700, 11707],
1506 [11714, 11727, 11741, 11754, 11768, 11781, 11793, 11806, 11818, 11831, 11843, 11855, 11867, 11878, 11890, 11901,
1507 11912, 11923, 11934, 11945, 11956, 11966, 11976, 11987, 11997, 12007, 12017, 12027, 12036, 12046, 12056, 12065,
1508 12074, 12084, 12093, 12102, 12111, 12119, 12128, 12137, 12146, 12154, 12162, 12171, 12179, 12187, 12195, 12203,
1509 12211, 12219, 12227, 12235, 12243, 12250, 12258, 12265, 12273, 12280, 12287, 12295, 12302, 12309, 12316, 12323],
1510 [12330, 12344, 12358, 12371, 12384, 12397, 12410, 12423, 12435, 12447, 12459, 12471, 12483, 12495, 12506, 12517,
1511 12529, 12540, 12551, 12561, 12572, 12583, 12593, 12603, 12613, 12623, 12633, 12643, 12653, 12663, 12672, 12682,
1512 12691, 12700, 12709, 12718, 12727, 12736, 12745, 12753, 12762, 12771, 12779, 12787, 12796, 12804, 12812, 12820,
1513 12828, 12836, 12844, 12851, 12859, 12867, 12874, 12882, 12889, 12897, 12904, 12911, 12918, 12926, 12933, 12940],
1514 [12947, 12960, 12974, 12987, 13001, 13014, 13026, 13039, 13051, 13064, 13076, 13088, 13100, 13111, 13123, 13134,
1515 13145, 13156, 13167, 13178, 13189, 13199, 13209, 13220, 13230, 13240, 13250, 13260, 13269, 13279, 13289, 13298,
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1545 17760, 17768, 17776, 17784, 17791, 17799, 17806, 17814, 17821, 17829, 17836, 17843, 17851, 17858, 17865, 17872],
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1557 19610, 19617, 19625, 19633, 19641, 19648, 19656, 19663, 19671, 19678, 19686, 19693, 19700, 19707, 19714, 19721],
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1560 20089, 20098, 20107, 20116, 20125, 20134, 20143, 20152, 20160, 20169, 20177, 20185, 20194, 20202, 20210, 20218,
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1564 20705, 20715, 20724, 20733, 20742, 20751, 20759, 20768, 20777, 20785, 20794, 20802, 20810, 20818, 20827, 20835,
1565 20843, 20850, 20858, 20866, 20874, 20881, 20889, 20896, 20904, 20911, 20919, 20926, 20933, 20940, 20947, 20954],
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1568 21322, 21331, 21340, 21349, 21358, 21367, 21376, 21385, 21393, 21402, 21410, 21418, 21427, 21435, 21443, 21451,
1569 21459, 21467, 21475, 21483, 21490, 21498, 21505, 21513, 21520, 21528, 21535, 21542, 21550, 21557, 21564, 21571],
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1573 22076, 22083, 22091, 22099, 22107, 22114, 22122, 22129, 22137, 22144, 22152, 22159, 22166, 22173, 22180, 22187],
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1576 22555, 22564, 22573, 22582, 22591, 22600, 22609, 22618, 22626, 22635, 22643, 22651, 22660, 22668, 22676, 22684,
1577 22692, 22700, 22708, 22716, 22723, 22731, 22738, 22746, 22753, 22761, 22768, 22775, 22783, 22790, 22797, 22804],
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1579 23009, 23020, 23031, 23042, 23053, 23063, 23074, 23084, 23094, 23104, 23114, 23124, 23134, 23143, 23153, 23162,
1580 23171, 23181, 23190, 23199, 23208, 23217, 23225, 23234, 23243, 23251, 23260, 23268, 23276, 23284, 23293, 23301,
1581 23309, 23316, 23324, 23332, 23340, 23347, 23355, 23363, 23370, 23377, 23385, 23392, 23399, 23406, 23413, 23420],
1582 [23427, 23441, 23455, 23468, 23481, 23494, 23507, 23520, 23532, 23544, 23556, 23568, 23580, 23592, 23603, 23615,
1583 23626, 23637, 23648, 23659, 23669, 23680, 23690, 23700, 23711, 23721, 23731, 23740, 23750, 23760, 23769, 23779,
1584 23788, 23797, 23806, 23815, 23824, 23833, 23842, 23851, 23859, 23868, 23876, 23884, 23893, 23901, 23909, 23917,
1585 23925, 23933, 23941, 23949, 23956, 23964, 23972, 23979, 23986, 23994, 24001, 24008, 24016, 24023, 24030, 24037],
1586 [24044, 24058, 24071, 24085, 24098, 24111, 24124, 24136, 24149, 24161, 24173, 24185, 24197, 24208, 24220, 24231,
1587 24242, 24253, 24264, 24275, 24286, 24296, 24307, 24317, 24327, 24337, 24347, 24357, 24367, 24376, 24386, 24395,
1588 24405, 24414, 24423, 24432, 24441, 24450, 24458, 24467, 24476, 24484, 24493, 24501, 24509, 24517, 24526, 24534,
1589 24542, 24550, 24557, 24565, 24573, 24580, 24588, 24596, 24603, 24610, 24618, 24625, 24632, 24639, 24646, 24653],
1590 [24660, 24674, 24688, 24701, 24714, 24727, 24740, 24753, 24765, 24777, 24790, 24801, 24813, 24825, 24836, 24848,
1591 24859, 24870, 24881, 24892, 24902, 24913, 24923, 24933, 24944, 24954, 24964, 24973, 24983, 24993, 25002, 25012,
1592 25021, 25030, 25039, 25048, 25057, 25066, 25075, 25084, 25092, 25101, 25109, 25117, 25126, 25134, 25142, 25150,
1593 25158, 25166, 25174, 25182, 25189, 25197, 25205, 25212, 25219, 25227, 25234, 25241, 25249, 25256, 25263, 25270],
1594 [25277, 25291, 25304, 25318, 25331, 25344, 25357, 25369, 25382, 25394, 25406, 25418, 25430, 25441, 25453, 25464,
1595 25475, 25486, 25497, 25508, 25519, 25529, 25540, 25550, 25560, 25570, 25580, 25590, 25600, 25609, 25619, 25628,
1596 25638, 25647, 25656, 25665, 25674, 25683, 25691, 25700, 25709, 25717, 25726, 25734, 25742, 25750, 25759, 25767,
1597 25775, 25783, 25790, 25798, 25806, 25813, 25821, 25829, 25836, 25843, 25851, 25858, 25865, 25872, 25879, 25886],
1598 [25893, 25907, 25921, 25934, 25947, 25960, 25973, 25986, 25998, 26010, 26023, 26034, 26046, 26058, 26069, 26081,
1599 26092, 26103, 26114, 26125, 26135, 26146, 26156, 26166, 26177, 26187, 26197, 26206, 26216, 26226, 26235, 26245,
1600 26254, 26263, 26272, 26281, 26290, 26299, 26308, 26317, 26325, 26334, 26342, 26351, 26359, 26367, 26375, 26383,
1601 26391, 26399, 26407, 26415, 26422, 26430, 26438, 26445, 26453, 26460, 26467, 26474, 26482, 26489, 26496, 26503],
1602 [26510, 26524, 26537, 26551, 26564, 26577, 26590, 26602, 26615, 26627, 26639, 26651, 26663, 26674, 26686, 26697,
1603 26708, 26719, 26730, 26741, 26752, 26762, 26773, 26783, 26793, 26803, 26813, 26823, 26833, 26842, 26852, 26861,
1604 26871, 26880, 26889, 26898, 26907, 26916, 26924, 26933, 26942, 26950, 26959, 26967, 26975, 26983, 26992, 27000,
1605 27008, 27016, 27023, 27031, 27039, 27046, 27054, 27062, 27069, 27076, 27084, 27091, 27098, 27105, 27112, 27119],
1606 [27126, 27140, 27154, 27167, 27180, 27193, 27206, 27219, 27231, 27243, 27256, 27267, 27279, 27291, 27302, 27314,
1607 27325, 27336, 27347, 27358, 27368, 27379, 27389, 27399, 27410, 27420, 27430, 27439, 27449, 27459, 27468, 27478,
1608 27487, 27496, 27505, 27514, 27523, 27532, 27541, 27550, 27558, 27567, 27575, 27584, 27592, 27600, 27608, 27616,
1609 27624, 27632, 27640, 27648, 27655, 27663, 27671, 27678, 27686, 27693, 27700, 27707, 27715, 27722, 27729, 27736],
1610 [27743, 27757, 27770, 27784, 27797, 27810, 27823, 27835, 27848, 27860, 27872, 27884, 27896, 27907, 27919, 27930,
1611 27941, 27952, 27963, 27974, 27985, 27995, 28006, 28016, 28026, 28036, 28046, 28056, 28066, 28075, 28085, 28094,
1612 28104, 28113, 28122, 28131, 28140, 28149, 28157, 28166, 28175, 28183, 28192, 28200, 28208, 28217, 28225, 28233,
1613 28241, 28249, 28256, 28264, 28272, 28280, 28287, 28295, 28302, 28309, 28317, 28324, 28331, 28338, 28345, 28352],
1614 [28359, 28373, 28387, 28400, 28413, 28426, 28439, 28452, 28464, 28476, 28489, 28501, 28512, 28524, 28535, 28547,
1615 28558, 28569, 28580, 28591, 28601, 28612, 28622, 28633, 28643, 28653, 28663, 28672, 28682, 28692, 28701, 28711,
1616 28720, 28729, 28738, 28747, 28756, 28765, 28774, 28783, 28791, 28800, 28808, 28817, 28825, 28833, 28841, 28849,
1617 28857, 28865, 28873, 28881, 28888, 28896, 28904, 28911, 28919, 28926, 28933, 28941, 28948, 28955, 28962, 28969],
1618 [28976, 28990, 29003, 29017, 29030, 29043, 29056, 29068, 29081, 29093, 29105, 29117, 29129, 29140, 29152, 29163,
1619 29174, 29185, 29196, 29207, 29218, 29228, 29239, 29249, 29259, 29269, 29279, 29289, 29299, 29308, 29318, 29327,
1620 29337, 29346, 29355, 29364, 29373, 29382, 29390, 29399, 29408, 29416, 29425, 29433, 29441, 29450, 29458, 29466,
1621 29474, 29482, 29489, 29497, 29505, 29513, 29520, 29528, 29535, 29542, 29550, 29557, 29564, 29571, 29578, 29585],
1622 [29592, 29606, 29620, 29633, 29646, 29659, 29672, 29685, 29697, 29709, 29722, 29734, 29745, 29757, 29768, 29780,
1623 29791, 29802, 29813, 29824, 29834, 29845, 29855, 29866, 29876, 29886, 29896, 29906, 29915, 29925, 29934, 29944,
1624 29953, 29962, 29971, 29980, 29989, 29998, 30007, 30016, 30024, 30033, 30041, 30050, 30058, 30066, 30074, 30082,
1625 30090, 30098, 30106, 30114, 30121, 30129, 30137, 30144, 30152, 30159, 30166, 30174, 30181, 30188, 30195, 30202],
1626 [30209, 30223, 30236, 30250, 30263, 30276, 30289, 30301, 30314, 30326, 30338, 30350, 30362, 30373, 30385, 30396,
1627 30407, 30418, 30429, 30440, 30451, 30461, 30472, 30482, 30492, 30502, 30512, 30522, 30532, 30541, 30551, 30560,
1628 30570, 30579, 30588, 30597, 30606, 30615, 30624, 30632, 30641, 30649, 30658, 30666, 30674, 30683, 30691, 30699,
1629 30707, 30715, 30722, 30730, 30738, 30746, 30753, 30761, 30768, 30775, 30783, 30790, 30797, 30804, 30811, 30818],
1630 [30825, 30839, 30853, 30866, 30879, 30892, 30905, 30918, 30930, 30943, 30955, 30967, 30978, 30990, 31001, 31013,
1631 31024, 31035, 31046, 31057, 31067, 31078, 31088, 31099, 31109, 31119, 31129, 31139, 31148, 31158, 31167, 31177,
1632 31186, 31195, 31204, 31213, 31222, 31231, 31240, 31249, 31257, 31266, 31274, 31283, 31291, 31299, 31307, 31315,
1633 31323, 31331, 31339, 31347, 31354, 31362, 31370, 31377, 31385, 31392, 31399, 31407, 31414, 31421, 31428, 31435],
1634 [31442, 31456, 31469, 31483, 31496, 31509, 31522, 31534, 31547, 31559, 31571, 31583, 31595, 31606, 31618, 31629,
1635 31640, 31652, 31662, 31673, 31684, 31694, 31705, 31715, 31725, 31735, 31745, 31755, 31765, 31774, 31784, 31793,
1636 31803, 31812, 31821, 31830, 31839, 31848, 31857, 31865, 31874, 31882, 31891, 31899, 31907, 31916, 31924, 31932,
1637 31940, 31948, 31955, 31963, 31971, 31979, 31986, 31994, 32001, 32008, 32016, 32023, 32030, 32037, 32044, 32052],
1638 [32058, 32072, 32086, 32099, 32112, 32125, 32138, 32151, 32163, 32176, 32188, 32200, 32211, 32223, 32234, 32246,
1639 32257, 32268, 32279, 32290, 32300, 32311, 32321, 32332, 32342, 32352, 32362, 32372, 32381, 32391, 32400, 32410,
1640 32419, 32428, 32437, 32446, 32455, 32464, 32473, 32482, 32490, 32499, 32507, 32516, 32524, 32532, 32540, 32548,
1641 32556, 32564, 32572, 32580, 32587, 32595, 32603, 32610, 32618, 32625, 32632, 32640, 32647, 32654, 32661, 32668],
1642 [32675, 32689, 32702, 32716, 32729, 32742, 32755, 32767, 32780, 32792, 32804, 32816, 32828, 32839, 32851, 32862,
1643 32873, 32885, 32895, 32906, 32917, 32927, 32938, 32948, 32958, 32968, 32978, 32988, 32998, 33007, 33017, 33026,
1644 33036, 33045, 33054, 33063, 33072, 33081, 33090, 33098, 33107, 33115, 33124, 33132, 33140, 33149, 33157, 33165,
1645 33173, 33181, 33188, 33196, 33204, 33212, 33219, 33227, 33234, 33241, 33249, 33256, 33263, 33270, 33278, 33285],
1646 [33292, 33305, 33319, 33332, 33345, 33358, 33371, 33384, 33396, 33409, 33421, 33433, 33444, 33456, 33467, 33479,
1647 33490, 33501, 33512, 33523, 33533, 33544, 33554, 33565, 33575, 33585, 33595, 33605, 33614, 33624, 33633, 33643,
1648 33652, 33661, 33670, 33680, 33688, 33697, 33706, 33715, 33723, 33732, 33740, 33749, 33757, 33765, 33773, 33781,
1649 33789, 33797, 33805, 33813, 33820, 33828, 33836, 33843, 33851, 33858, 33865, 33873, 33880, 33887, 33894, 33901],
1650 [33908, 33922, 33935, 33949, 33962, 33975, 33988, 34000, 34013, 34025, 34037, 34049, 34061, 34072, 34084, 34095,
1651 34106, 34118, 34128, 34139, 34150, 34160, 34171, 34181, 34191, 34201, 34211, 34221, 34231, 34240, 34250, 34259,
1652 34269, 34278, 34287, 34296, 34305, 34314, 34323, 34331, 34340, 34348, 34357, 34365, 34373, 34382, 34390, 34398,
1653 34406, 34414, 34422, 34429, 34437, 34445, 34452, 34460, 34467, 34475, 34482, 34489, 34496, 34503, 34511, 34518],
1654 [34525, 34538, 34552, 34565, 34578, 34591, 34604, 34617, 34629, 34642, 34654, 34666, 34677, 34689, 34700, 34712,
1655 34723, 34734, 34745, 34756, 34766, 34777, 34787, 34798, 34808, 34818, 34828, 34838, 34847, 34857, 34866, 34876,
1656 34885, 34894, 34904, 34913, 34921, 34930, 34939, 34948, 34956, 34965, 34973, 34982, 34990, 34998, 35006, 35014,
1657 35022, 35030, 35038, 35046, 35053, 35061, 35069, 35076, 35084, 35091, 35098, 35106, 35113, 35120, 35127, 35134],
1658 [35141, 35155, 35168, 35182, 35195, 35208, 35221, 35233, 35246, 35258, 35270, 35282, 35294, 35306, 35317, 35328,
1659 35340, 35351, 35361, 35372, 35383, 35393, 35404, 35414, 35424, 35434, 35444, 35454, 35464, 35473, 35483, 35492,
1660 35502, 35511, 35520, 35529, 35538, 35547, 35556, 35564, 35573, 35581, 35590, 35598, 35606, 35615, 35623, 35631,
1661 35639, 35647, 35655, 35662, 35670, 35678, 35685, 35693, 35700, 35708, 35715, 35722, 35729, 35736, 35744, 35751],
1662 [35758, 35771, 35785, 35798, 35811, 35824, 35837, 35850, 35862, 35875, 35887, 35899, 35910, 35922, 35934, 35945,
1663 35956, 35967, 35978, 35989, 35999, 36010, 36020, 36031, 36041, 36051, 36061, 36071, 36080, 36090, 36099, 36109,
1664 36118, 36127, 36137, 36146, 36154, 36163, 36172, 36181, 36189, 36198, 36206, 36215, 36223, 36231, 36239, 36247,
1665 36255, 36263, 36271, 36279, 36287, 36294, 36302, 36309, 36317, 36324, 36331, 36339, 36346, 36353, 36360, 36367],
1666 [36374, 36388, 36401, 36415, 36428, 36441, 36454, 36466, 36479, 36491, 36503, 36515, 36527, 36539, 36550, 36561,
1667 36573, 36584, 36594, 36605, 36616, 36626, 36637, 36647, 36657, 36667, 36677, 36687, 36697, 36706, 36716, 36725,
1668 36735, 36744, 36753, 36762, 36771, 36780, 36789, 36797, 36806, 36814, 36823, 36831, 36839, 36848, 36856, 36864,
1669 36872, 36880, 36888, 36895, 36903, 36911, 36918, 36926, 36933, 36941, 36948, 36955, 36962, 36969, 36977, 36984],
1670 [36991, 37004, 37018, 37031, 37044, 37057, 37070, 37083, 37095, 37108, 37120, 37132, 37143, 37155, 37167, 37178,
1671 37189, 37200, 37211, 37222, 37232, 37243, 37253, 37264, 37274, 37284, 37294, 37304, 37313, 37323, 37332, 37342,
1672 37351, 37360, 37370, 37379, 37388, 37396, 37405, 37414, 37422, 37431, 37439, 37448, 37456, 37464, 37472, 37480,
1673 37488, 37496, 37504, 37512, 37520, 37527, 37535, 37542, 37550, 37557, 37564, 37572, 37579, 37586, 37593, 37600],
1674 [37607, 37621, 37634, 37648, 37661, 37674, 37687, 37699, 37712, 37724, 37736, 37748, 37760, 37772, 37783, 37794,
1675 37806, 37817, 37828, 37838, 37849, 37859, 37870, 37880, 37890, 37900, 37910, 37920, 37930, 37939, 37949, 37958,
1676 37968, 37977, 37986, 37995, 38004, 38013, 38022, 38030, 38039, 38047, 38056, 38064, 38072, 38081, 38089, 38097,
1677 38105, 38113, 38121, 38128, 38136, 38144, 38151, 38159, 38166, 38174, 38181, 38188, 38195, 38202, 38210, 38217],
1678 [38224, 38237, 38251, 38264, 38278, 38290, 38303, 38316, 38328, 38341, 38353, 38365, 38376, 38388, 38400, 38411,
1679 38422, 38433, 38444, 38455, 38465, 38476, 38486, 38497, 38507, 38517, 38527, 38537, 38546, 38556, 38565, 38575,
1680 38584, 38593, 38603, 38612, 38621, 38629, 38638, 38647, 38655, 38664, 38672, 38681, 38689, 38697, 38705, 38713,
1681 38721, 38729, 38737, 38745, 38753, 38760, 38768, 38775, 38783, 38790, 38797, 38805, 38812, 38819, 38826, 38833],
1682 [38840, 38854, 38867, 38881, 38894, 38907, 38920, 38932, 38945, 38957, 38969, 38981, 38993, 39005, 39016, 39027,
1683 39039, 39050, 39061, 39071, 39082, 39092, 39103, 39113, 39123, 39133, 39143, 39153, 39163, 39172, 39182, 39191,
1684 39201, 39210, 39219, 39228, 39237, 39246, 39255, 39263, 39272, 39280, 39289, 39297, 39305, 39314, 39322, 39330,
1685 39338, 39346, 39354, 39361, 39369, 39377, 39384, 39392, 39399, 39407, 39414, 39421, 39428, 39436, 39443, 39450],
1688 /// Approximate `log10(numerator / denominator) * 2048` using a look-up table.
1690 pub fn negative_log10_times_2048(numerator: u64, denominator: u64) -> u64 {
1691 // Multiply the -1 through to avoid needing to use signed numbers.
1692 (log10_times_2048(denominator) - log10_times_2048(numerator)) as u64
1696 fn log10_times_2048(x: u64) -> u16 {
1697 debug_assert_ne!(x, 0);
1698 let most_significant_bit = HIGHEST_BIT - x.leading_zeros();
1699 let lower_bits = (x >> most_significant_bit.saturating_sub(LOWER_BITS)) & LOWER_BITMASK;
1700 LOG10_TIMES_2048[most_significant_bit as usize][lower_bits as usize]
1708 fn prints_negative_log10_times_2048_lookup_table() {
1709 for msb in 0..BITS {
1710 for i in 0..LOWER_BITS_BOUND {
1711 let x = ((LOWER_BITS_BOUND + i) << (HIGHEST_BIT - LOWER_BITS)) >> (HIGHEST_BIT - msb);
1712 let log10_times_2048 = ((x as f64).log10() * 2048.0).round() as u16;
1713 assert_eq!(log10_times_2048, LOG10_TIMES_2048[msb as usize][i as usize]);
1715 if i % LOWER_BITS_BOUND == 0 {
1716 print!("\t\t[{}, ", log10_times_2048);
1717 } else if i % LOWER_BITS_BOUND == LOWER_BITS_BOUND - 1 {
1718 println!("{}],", log10_times_2048);
1719 } else if i % (LOWER_BITS_BOUND/4) == LOWER_BITS_BOUND/4 - 1 {
1720 print!("{},\n\t\t\t", log10_times_2048);
1722 print!("{}, ", log10_times_2048);
1730 mod bucketed_history {
1733 // Because liquidity is often skewed heavily in one direction, we store historical state
1734 // distribution in buckets of different size. For backwards compatibility, buckets of size 1/8th
1735 // must fit evenly into the buckets here.
1737 // The smallest bucket is 2^-14th of the channel, for each of our 32 buckets here we define the
1738 // width of the bucket in 2^14'ths of the channel. This increases exponentially until we reach
1739 // a full 16th of the channel's capacity, which is reapeated a few times for backwards
1740 // compatibility. The four middle buckets represent full octiles of the channel's capacity.
1742 // For a 1 BTC channel, this let's us differentiate between failures in the bottom 6k sats, or
1743 // between the 12,000th sat and 24,000th sat, while only needing to store and operate on 32
1744 // buckets in total.
1746 const BUCKET_START_POS: [u16; 33] = [
1747 0, 1, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048, 3072, 4096, 6144, 8192, 10240, 12288,
1748 13312, 14336, 15360, 15872, 16128, 16256, 16320, 16352, 16368, 16376, 16380, 16382, 16383, 16384,
1751 const LEGACY_TO_BUCKET_RANGE: [(u8, u8); 8] = [
1752 (0, 12), (12, 14), (14, 15), (15, 16), (16, 17), (17, 18), (18, 20), (20, 32)
1755 const POSITION_TICKS: u16 = 1 << 14;
1757 fn pos_to_bucket(pos: u16) -> usize {
1758 for bucket in 0..32 {
1759 if pos < BUCKET_START_POS[bucket + 1] {
1763 debug_assert!(false);
1769 fn check_bucket_maps() {
1770 const BUCKET_WIDTH_IN_16384S: [u16; 32] = [
1771 1, 1, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 1024, 1024, 2048, 2048,
1772 2048, 2048, 1024, 1024, 1024, 512, 256, 128, 64, 32, 16, 8, 4, 2, 1, 1];
1774 let mut min_size_iter = 0;
1775 let mut legacy_bucket_iter = 0;
1776 for (bucket, width) in BUCKET_WIDTH_IN_16384S.iter().enumerate() {
1777 assert_eq!(BUCKET_START_POS[bucket], min_size_iter);
1778 for i in 0..*width {
1779 assert_eq!(pos_to_bucket(min_size_iter + i) as usize, bucket);
1781 min_size_iter += *width;
1782 if min_size_iter % (POSITION_TICKS / 8) == 0 {
1783 assert_eq!(LEGACY_TO_BUCKET_RANGE[legacy_bucket_iter].1 as usize, bucket + 1);
1784 if legacy_bucket_iter + 1 < 8 {
1785 assert_eq!(LEGACY_TO_BUCKET_RANGE[legacy_bucket_iter + 1].0 as usize, bucket + 1);
1787 legacy_bucket_iter += 1;
1790 assert_eq!(BUCKET_START_POS[32], POSITION_TICKS);
1791 assert_eq!(min_size_iter, POSITION_TICKS);
1795 fn amount_to_pos(amount_msat: u64, capacity_msat: u64) -> u16 {
1796 let pos = if amount_msat < u64::max_value() / (POSITION_TICKS as u64) {
1797 (amount_msat * (POSITION_TICKS as u64) / capacity_msat.saturating_add(1))
1798 .try_into().unwrap_or(POSITION_TICKS)
1800 // Only use 128-bit arithmetic when multiplication will overflow to avoid 128-bit
1801 // division. This branch should only be hit in fuzz testing since the amount would
1802 // need to be over 2.88 million BTC in practice.
1803 ((amount_msat as u128) * (POSITION_TICKS as u128)
1804 / (capacity_msat as u128).saturating_add(1))
1805 .try_into().unwrap_or(POSITION_TICKS)
1807 // If we are running in a client that doesn't validate gossip, its possible for a channel's
1808 // capacity to change due to a `channel_update` message which, if received while a payment
1809 // is in-flight, could cause this to fail. Thus, we only assert in test.
1811 debug_assert!(pos < POSITION_TICKS);
1815 /// Prior to LDK 0.0.117 we used eight buckets which were split evenly across the either
1816 /// octiles. This was changed to use 32 buckets for accuracy reasons in 0.0.117, however we
1817 /// support reading the legacy values here for backwards compatibility.
1818 pub(super) struct LegacyHistoricalBucketRangeTracker {
1822 impl LegacyHistoricalBucketRangeTracker {
1823 pub(crate) fn into_current(&self) -> HistoricalBucketRangeTracker {
1824 let mut buckets = [0; 32];
1825 for (idx, legacy_bucket) in self.buckets.iter().enumerate() {
1826 let mut new_val = *legacy_bucket;
1827 let (start, end) = LEGACY_TO_BUCKET_RANGE[idx];
1828 new_val /= (end - start) as u16;
1829 for i in start..end {
1830 buckets[i as usize] = new_val;
1833 HistoricalBucketRangeTracker { buckets }
1837 /// Tracks the historical state of a distribution as a weighted average of how much time was spent
1838 /// in each of 32 buckets.
1839 #[derive(Clone, Copy)]
1840 pub(super) struct HistoricalBucketRangeTracker {
1844 /// Buckets are stored in fixed point numbers with a 5 bit fractional part. Thus, the value
1845 /// "one" is 32, or this constant.
1846 pub const BUCKET_FIXED_POINT_ONE: u16 = 32;
1848 impl HistoricalBucketRangeTracker {
1849 pub(super) fn new() -> Self { Self { buckets: [0; 32] } }
1850 pub(super) fn track_datapoint(&mut self, liquidity_offset_msat: u64, capacity_msat: u64) {
1851 // We have 32 leaky buckets for min and max liquidity. Each bucket tracks the amount of time
1852 // we spend in each bucket as a 16-bit fixed-point number with a 5 bit fractional part.
1854 // Each time we update our liquidity estimate, we add 32 (1.0 in our fixed-point system) to
1855 // the buckets for the current min and max liquidity offset positions.
1857 // We then decay each bucket by multiplying by 2047/2048 (avoiding dividing by a
1858 // non-power-of-two). This ensures we can't actually overflow the u16 - when we get to
1859 // 63,457 adding 32 and decaying by 2047/2048 leaves us back at 63,457.
1861 // In total, this allows us to track data for the last 8,000 or so payments across a given
1864 // These constants are a balance - we try to fit in 2 bytes per bucket to reduce overhead,
1865 // and need to balance having more bits in the decimal part (to ensure decay isn't too
1866 // non-linear) with having too few bits in the mantissa, causing us to not store very many
1869 // The constants were picked experimentally, selecting a decay amount that restricts us
1870 // from overflowing buckets without having to cap them manually.
1872 let pos: u16 = amount_to_pos(liquidity_offset_msat, capacity_msat);
1873 if pos < POSITION_TICKS {
1874 for e in self.buckets.iter_mut() {
1875 *e = ((*e as u32) * 2047 / 2048) as u16;
1877 let bucket = pos_to_bucket(pos);
1878 self.buckets[bucket] = self.buckets[bucket].saturating_add(BUCKET_FIXED_POINT_ONE);
1881 /// Decay all buckets by the given number of half-lives. Used to more aggressively remove old
1882 /// datapoints as we receive newer information.
1884 pub(super) fn time_decay_data(&mut self, half_lives: u32) {
1885 for e in self.buckets.iter_mut() {
1886 *e = e.checked_shr(half_lives).unwrap_or(0);
1891 impl_writeable_tlv_based!(HistoricalBucketRangeTracker, { (0, buckets, required) });
1892 impl_writeable_tlv_based!(LegacyHistoricalBucketRangeTracker, { (0, buckets, required) });
1894 /// A set of buckets representing the history of where we've seen the minimum- and maximum-
1895 /// liquidity bounds for a given channel.
1896 pub(super) struct HistoricalMinMaxBuckets<D: Deref<Target = HistoricalBucketRangeTracker>> {
1897 /// Buckets tracking where and how often we've seen the minimum liquidity bound for a
1899 pub(super) min_liquidity_offset_history: D,
1900 /// Buckets tracking where and how often we've seen the maximum liquidity bound for a
1902 pub(super) max_liquidity_offset_history: D,
1905 impl<D: Deref<Target = HistoricalBucketRangeTracker>> HistoricalMinMaxBuckets<D> {
1906 pub(super) fn get_decayed_buckets<T: Time>(&self, now: T, last_updated: T, half_life: Duration)
1907 -> Option<([u16; 32], [u16; 32])> {
1908 let (_, required_decays) = self.get_total_valid_points(now, last_updated, half_life)?;
1910 let mut min_buckets = *self.min_liquidity_offset_history;
1911 min_buckets.time_decay_data(required_decays);
1912 let mut max_buckets = *self.max_liquidity_offset_history;
1913 max_buckets.time_decay_data(required_decays);
1914 Some((min_buckets.buckets, max_buckets.buckets))
1917 pub(super) fn get_total_valid_points<T: Time>(&self, now: T, last_updated: T, half_life: Duration)
1918 -> Option<(u64, u32)> {
1919 let required_decays = now.duration_since(last_updated).as_secs()
1920 .checked_div(half_life.as_secs())
1921 .map_or(u32::max_value(), |decays| cmp::min(decays, u32::max_value() as u64) as u32);
1923 let mut total_valid_points_tracked = 0;
1924 for (min_idx, min_bucket) in self.min_liquidity_offset_history.buckets.iter().enumerate() {
1925 for max_bucket in self.max_liquidity_offset_history.buckets.iter().take(32 - min_idx) {
1926 total_valid_points_tracked += (*min_bucket as u64) * (*max_bucket as u64);
1930 // If the total valid points is smaller than 1.0 (i.e. 32 in our fixed-point scheme),
1931 // treat it as if we were fully decayed.
1932 const FULLY_DECAYED: u16 = BUCKET_FIXED_POINT_ONE * BUCKET_FIXED_POINT_ONE;
1933 if total_valid_points_tracked.checked_shr(required_decays).unwrap_or(0) < FULLY_DECAYED.into() {
1937 Some((total_valid_points_tracked, required_decays))
1941 pub(super) fn calculate_success_probability_times_billion<T: Time>(
1942 &self, now: T, last_updated: T, half_life: Duration,
1943 params: &ProbabilisticScoringFeeParameters, amount_msat: u64, capacity_msat: u64
1945 // If historical penalties are enabled, we try to calculate a probability of success
1946 // given our historical distribution of min- and max-liquidity bounds in a channel.
1947 // To do so, we walk the set of historical liquidity bucket (min, max) combinations
1948 // (where min_idx < max_idx, as having a minimum above our maximum is an invalid
1949 // state). For each pair, we calculate the probability as if the bucket's corresponding
1950 // min- and max- liquidity bounds were our current liquidity bounds and then multiply
1951 // that probability by the weight of the selected buckets.
1952 let payment_pos = amount_to_pos(amount_msat, capacity_msat);
1953 if payment_pos >= POSITION_TICKS { return None; }
1955 // Check if all our buckets are zero, once decayed and treat it as if we had no data. We
1956 // don't actually use the decayed buckets, though, as that would lose precision.
1957 let (total_valid_points_tracked, _)
1958 = self.get_total_valid_points(now, last_updated, half_life)?;
1960 let mut cumulative_success_prob_times_billion = 0;
1961 // Special-case the 0th min bucket - it generally means we failed a payment, so only
1962 // consider the highest (i.e. largest-offset-from-max-capacity) max bucket for all
1963 // points against the 0th min bucket. This avoids the case where we fail to route
1964 // increasingly lower values over a channel, but treat each failure as a separate
1965 // datapoint, many of which may have relatively high maximum-available-liquidity
1966 // values, which will result in us thinking we have some nontrivial probability of
1967 // routing up to that amount.
1968 if self.min_liquidity_offset_history.buckets[0] != 0 {
1969 let mut highest_max_bucket_with_points = 0; // The highest max-bucket with any data
1970 let mut total_max_points = 0; // Total points in max-buckets to consider
1971 for (max_idx, max_bucket) in self.max_liquidity_offset_history.buckets.iter().enumerate() {
1972 if *max_bucket >= BUCKET_FIXED_POINT_ONE {
1973 highest_max_bucket_with_points = cmp::max(highest_max_bucket_with_points, max_idx);
1975 total_max_points += *max_bucket as u64;
1977 let max_bucket_end_pos = BUCKET_START_POS[32 - highest_max_bucket_with_points] - 1;
1978 if payment_pos < max_bucket_end_pos {
1979 let (numerator, denominator) = success_probability(payment_pos as u64, 0,
1980 max_bucket_end_pos as u64, POSITION_TICKS as u64 - 1, params, true);
1981 let bucket_prob_times_billion =
1982 (self.min_liquidity_offset_history.buckets[0] as u64) * total_max_points
1983 * 1024 * 1024 * 1024 / total_valid_points_tracked;
1984 cumulative_success_prob_times_billion += bucket_prob_times_billion *
1985 numerator / denominator;
1989 for (min_idx, min_bucket) in self.min_liquidity_offset_history.buckets.iter().enumerate().skip(1) {
1990 let min_bucket_start_pos = BUCKET_START_POS[min_idx];
1991 for (max_idx, max_bucket) in self.max_liquidity_offset_history.buckets.iter().enumerate().take(32 - min_idx) {
1992 let max_bucket_end_pos = BUCKET_START_POS[32 - max_idx] - 1;
1993 // Note that this multiply can only barely not overflow - two 16 bit ints plus
1994 // 30 bits is 62 bits.
1995 let bucket_prob_times_billion = (*min_bucket as u64) * (*max_bucket as u64)
1996 * 1024 * 1024 * 1024 / total_valid_points_tracked;
1997 if payment_pos >= max_bucket_end_pos {
1998 // Success probability 0, the payment amount may be above the max liquidity
2000 } else if payment_pos < min_bucket_start_pos {
2001 cumulative_success_prob_times_billion += bucket_prob_times_billion;
2003 let (numerator, denominator) = success_probability(payment_pos as u64,
2004 min_bucket_start_pos as u64, max_bucket_end_pos as u64,
2005 POSITION_TICKS as u64 - 1, params, true);
2006 cumulative_success_prob_times_billion += bucket_prob_times_billion *
2007 numerator / denominator;
2012 Some(cumulative_success_prob_times_billion)
2016 use bucketed_history::{LegacyHistoricalBucketRangeTracker, HistoricalBucketRangeTracker, HistoricalMinMaxBuckets};
2018 impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> Writeable for ProbabilisticScorerUsingTime<G, L, T> where L::Target: Logger {
2020 fn write<W: Writer>(&self, w: &mut W) -> Result<(), io::Error> {
2021 write_tlv_fields!(w, {
2022 (0, self.channel_liquidities, required),
2028 impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time>
2029 ReadableArgs<(ProbabilisticScoringDecayParameters, G, L)> for ProbabilisticScorerUsingTime<G, L, T> where L::Target: Logger {
2032 r: &mut R, args: (ProbabilisticScoringDecayParameters, G, L)
2033 ) -> Result<Self, DecodeError> {
2034 let (decay_params, network_graph, logger) = args;
2035 let mut channel_liquidities = HashMap::new();
2036 read_tlv_fields!(r, {
2037 (0, channel_liquidities, required),
2043 channel_liquidities,
2048 impl<T: Time> Writeable for ChannelLiquidity<T> {
2050 fn write<W: Writer>(&self, w: &mut W) -> Result<(), io::Error> {
2051 let duration_since_epoch = T::duration_since_epoch() - self.last_updated.elapsed();
2052 write_tlv_fields!(w, {
2053 (0, self.min_liquidity_offset_msat, required),
2054 // 1 was the min_liquidity_offset_history in octile form
2055 (2, self.max_liquidity_offset_msat, required),
2056 // 3 was the max_liquidity_offset_history in octile form
2057 (4, duration_since_epoch, required),
2058 (5, Some(self.min_liquidity_offset_history), option),
2059 (7, Some(self.max_liquidity_offset_history), option),
2065 impl<T: Time> Readable for ChannelLiquidity<T> {
2067 fn read<R: Read>(r: &mut R) -> Result<Self, DecodeError> {
2068 let mut min_liquidity_offset_msat = 0;
2069 let mut max_liquidity_offset_msat = 0;
2070 let mut legacy_min_liq_offset_history: Option<LegacyHistoricalBucketRangeTracker> = None;
2071 let mut legacy_max_liq_offset_history: Option<LegacyHistoricalBucketRangeTracker> = None;
2072 let mut min_liquidity_offset_history: Option<HistoricalBucketRangeTracker> = None;
2073 let mut max_liquidity_offset_history: Option<HistoricalBucketRangeTracker> = None;
2074 let mut duration_since_epoch = Duration::from_secs(0);
2075 read_tlv_fields!(r, {
2076 (0, min_liquidity_offset_msat, required),
2077 (1, legacy_min_liq_offset_history, option),
2078 (2, max_liquidity_offset_msat, required),
2079 (3, legacy_max_liq_offset_history, option),
2080 (4, duration_since_epoch, required),
2081 (5, min_liquidity_offset_history, option),
2082 (7, max_liquidity_offset_history, option),
2084 // On rust prior to 1.60 `Instant::duration_since` will panic if time goes backwards.
2085 // We write `last_updated` as wallclock time even though its ultimately an `Instant` (which
2086 // is a time from a monotonic clock usually represented as an offset against boot time).
2087 // Thus, we have to construct an `Instant` by subtracting the difference in wallclock time
2088 // from the one that was written. However, because `Instant` can panic if we construct one
2089 // in the future, we must handle wallclock time jumping backwards, which we do by simply
2090 // using `Instant::now()` in that case.
2091 let wall_clock_now = T::duration_since_epoch();
2093 let last_updated = if wall_clock_now > duration_since_epoch {
2094 now - (wall_clock_now - duration_since_epoch)
2096 if min_liquidity_offset_history.is_none() {
2097 if let Some(legacy_buckets) = legacy_min_liq_offset_history {
2098 min_liquidity_offset_history = Some(legacy_buckets.into_current());
2100 min_liquidity_offset_history = Some(HistoricalBucketRangeTracker::new());
2103 if max_liquidity_offset_history.is_none() {
2104 if let Some(legacy_buckets) = legacy_max_liq_offset_history {
2105 max_liquidity_offset_history = Some(legacy_buckets.into_current());
2107 max_liquidity_offset_history = Some(HistoricalBucketRangeTracker::new());
2111 min_liquidity_offset_msat,
2112 max_liquidity_offset_msat,
2113 min_liquidity_offset_history: min_liquidity_offset_history.unwrap(),
2114 max_liquidity_offset_history: max_liquidity_offset_history.unwrap(),
2122 use super::{ChannelLiquidity, HistoricalBucketRangeTracker, ProbabilisticScoringFeeParameters, ProbabilisticScoringDecayParameters, ProbabilisticScorerUsingTime};
2123 use crate::blinded_path::{BlindedHop, BlindedPath};
2124 use crate::util::config::UserConfig;
2125 use crate::util::time::Time;
2126 use crate::util::time::tests::SinceEpoch;
2128 use crate::ln::channelmanager;
2129 use crate::ln::msgs::{ChannelAnnouncement, ChannelUpdate, UnsignedChannelAnnouncement, UnsignedChannelUpdate};
2130 use crate::routing::gossip::{EffectiveCapacity, NetworkGraph, NodeId};
2131 use crate::routing::router::{BlindedTail, Path, RouteHop};
2132 use crate::routing::scoring::{ChannelUsage, ScoreLookUp, ScoreUpdate};
2133 use crate::util::ser::{ReadableArgs, Writeable};
2134 use crate::util::test_utils::{self, TestLogger};
2136 use bitcoin::blockdata::constants::genesis_block;
2137 use bitcoin::hashes::Hash;
2138 use bitcoin::hashes::sha256d::Hash as Sha256dHash;
2139 use bitcoin::network::constants::Network;
2140 use bitcoin::secp256k1::{PublicKey, Secp256k1, SecretKey};
2141 use core::time::Duration;
2144 fn source_privkey() -> SecretKey {
2145 SecretKey::from_slice(&[42; 32]).unwrap()
2148 fn target_privkey() -> SecretKey {
2149 SecretKey::from_slice(&[43; 32]).unwrap()
2152 fn source_pubkey() -> PublicKey {
2153 let secp_ctx = Secp256k1::new();
2154 PublicKey::from_secret_key(&secp_ctx, &source_privkey())
2157 fn target_pubkey() -> PublicKey {
2158 let secp_ctx = Secp256k1::new();
2159 PublicKey::from_secret_key(&secp_ctx, &target_privkey())
2162 fn source_node_id() -> NodeId {
2163 NodeId::from_pubkey(&source_pubkey())
2166 fn target_node_id() -> NodeId {
2167 NodeId::from_pubkey(&target_pubkey())
2170 // `ProbabilisticScorer` tests
2172 /// A probabilistic scorer for testing with time that can be manually advanced.
2173 type ProbabilisticScorer<'a> = ProbabilisticScorerUsingTime::<&'a NetworkGraph<&'a TestLogger>, &'a TestLogger, SinceEpoch>;
2175 fn sender_privkey() -> SecretKey {
2176 SecretKey::from_slice(&[41; 32]).unwrap()
2179 fn recipient_privkey() -> SecretKey {
2180 SecretKey::from_slice(&[45; 32]).unwrap()
2183 fn sender_pubkey() -> PublicKey {
2184 let secp_ctx = Secp256k1::new();
2185 PublicKey::from_secret_key(&secp_ctx, &sender_privkey())
2188 fn recipient_pubkey() -> PublicKey {
2189 let secp_ctx = Secp256k1::new();
2190 PublicKey::from_secret_key(&secp_ctx, &recipient_privkey())
2193 fn sender_node_id() -> NodeId {
2194 NodeId::from_pubkey(&sender_pubkey())
2197 fn recipient_node_id() -> NodeId {
2198 NodeId::from_pubkey(&recipient_pubkey())
2201 fn network_graph(logger: &TestLogger) -> NetworkGraph<&TestLogger> {
2202 let mut network_graph = NetworkGraph::new(Network::Testnet, logger);
2203 add_channel(&mut network_graph, 42, source_privkey(), target_privkey());
2204 add_channel(&mut network_graph, 43, target_privkey(), recipient_privkey());
2210 network_graph: &mut NetworkGraph<&TestLogger>, short_channel_id: u64, node_1_key: SecretKey,
2211 node_2_key: SecretKey
2213 let genesis_hash = genesis_block(Network::Testnet).header.block_hash();
2214 let node_1_secret = &SecretKey::from_slice(&[39; 32]).unwrap();
2215 let node_2_secret = &SecretKey::from_slice(&[40; 32]).unwrap();
2216 let secp_ctx = Secp256k1::new();
2217 let unsigned_announcement = UnsignedChannelAnnouncement {
2218 features: channelmanager::provided_channel_features(&UserConfig::default()),
2219 chain_hash: genesis_hash,
2221 node_id_1: NodeId::from_pubkey(&PublicKey::from_secret_key(&secp_ctx, &node_1_key)),
2222 node_id_2: NodeId::from_pubkey(&PublicKey::from_secret_key(&secp_ctx, &node_2_key)),
2223 bitcoin_key_1: NodeId::from_pubkey(&PublicKey::from_secret_key(&secp_ctx, &node_1_secret)),
2224 bitcoin_key_2: NodeId::from_pubkey(&PublicKey::from_secret_key(&secp_ctx, &node_2_secret)),
2225 excess_data: Vec::new(),
2227 let msghash = hash_to_message!(&Sha256dHash::hash(&unsigned_announcement.encode()[..])[..]);
2228 let signed_announcement = ChannelAnnouncement {
2229 node_signature_1: secp_ctx.sign_ecdsa(&msghash, &node_1_key),
2230 node_signature_2: secp_ctx.sign_ecdsa(&msghash, &node_2_key),
2231 bitcoin_signature_1: secp_ctx.sign_ecdsa(&msghash, &node_1_secret),
2232 bitcoin_signature_2: secp_ctx.sign_ecdsa(&msghash, &node_2_secret),
2233 contents: unsigned_announcement,
2235 let chain_source: Option<&crate::util::test_utils::TestChainSource> = None;
2236 network_graph.update_channel_from_announcement(
2237 &signed_announcement, &chain_source).unwrap();
2238 update_channel(network_graph, short_channel_id, node_1_key, 0, 1_000, 100);
2239 update_channel(network_graph, short_channel_id, node_2_key, 1, 0, 100);
2243 network_graph: &mut NetworkGraph<&TestLogger>, short_channel_id: u64, node_key: SecretKey,
2244 flags: u8, htlc_maximum_msat: u64, timestamp: u32,
2246 let genesis_hash = genesis_block(Network::Testnet).header.block_hash();
2247 let secp_ctx = Secp256k1::new();
2248 let unsigned_update = UnsignedChannelUpdate {
2249 chain_hash: genesis_hash,
2253 cltv_expiry_delta: 18,
2254 htlc_minimum_msat: 0,
2257 fee_proportional_millionths: 0,
2258 excess_data: Vec::new(),
2260 let msghash = hash_to_message!(&Sha256dHash::hash(&unsigned_update.encode()[..])[..]);
2261 let signed_update = ChannelUpdate {
2262 signature: secp_ctx.sign_ecdsa(&msghash, &node_key),
2263 contents: unsigned_update,
2265 network_graph.update_channel(&signed_update).unwrap();
2268 fn path_hop(pubkey: PublicKey, short_channel_id: u64, fee_msat: u64) -> RouteHop {
2269 let config = UserConfig::default();
2272 node_features: channelmanager::provided_node_features(&config),
2274 channel_features: channelmanager::provided_channel_features(&config),
2276 cltv_expiry_delta: 18,
2277 maybe_announced_channel: true,
2281 fn payment_path_for_amount(amount_msat: u64) -> Path {
2284 path_hop(source_pubkey(), 41, 1),
2285 path_hop(target_pubkey(), 42, 2),
2286 path_hop(recipient_pubkey(), 43, amount_msat),
2287 ], blinded_tail: None,
2292 fn liquidity_bounds_directed_from_lowest_node_id() {
2293 let logger = TestLogger::new();
2294 let last_updated = SinceEpoch::now();
2295 let network_graph = network_graph(&logger);
2296 let decay_params = ProbabilisticScoringDecayParameters::default();
2297 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger)
2300 min_liquidity_offset_msat: 700, max_liquidity_offset_msat: 100, last_updated,
2301 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2302 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2306 min_liquidity_offset_msat: 700, max_liquidity_offset_msat: 100, last_updated,
2307 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2308 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2310 let source = source_node_id();
2311 let target = target_node_id();
2312 let recipient = recipient_node_id();
2313 assert!(source > target);
2314 assert!(target < recipient);
2316 // Update minimum liquidity.
2318 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2319 .as_directed(&source, &target, 1_000, decay_params);
2320 assert_eq!(liquidity.min_liquidity_msat(), 100);
2321 assert_eq!(liquidity.max_liquidity_msat(), 300);
2323 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2324 .as_directed(&target, &source, 1_000, decay_params);
2325 assert_eq!(liquidity.min_liquidity_msat(), 700);
2326 assert_eq!(liquidity.max_liquidity_msat(), 900);
2328 scorer.channel_liquidities.get_mut(&42).unwrap()
2329 .as_directed_mut(&source, &target, 1_000, decay_params)
2330 .set_min_liquidity_msat(200);
2332 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2333 .as_directed(&source, &target, 1_000, decay_params);
2334 assert_eq!(liquidity.min_liquidity_msat(), 200);
2335 assert_eq!(liquidity.max_liquidity_msat(), 300);
2337 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2338 .as_directed(&target, &source, 1_000, decay_params);
2339 assert_eq!(liquidity.min_liquidity_msat(), 700);
2340 assert_eq!(liquidity.max_liquidity_msat(), 800);
2342 // Update maximum liquidity.
2344 let liquidity = scorer.channel_liquidities.get(&43).unwrap()
2345 .as_directed(&target, &recipient, 1_000, decay_params);
2346 assert_eq!(liquidity.min_liquidity_msat(), 700);
2347 assert_eq!(liquidity.max_liquidity_msat(), 900);
2349 let liquidity = scorer.channel_liquidities.get(&43).unwrap()
2350 .as_directed(&recipient, &target, 1_000, decay_params);
2351 assert_eq!(liquidity.min_liquidity_msat(), 100);
2352 assert_eq!(liquidity.max_liquidity_msat(), 300);
2354 scorer.channel_liquidities.get_mut(&43).unwrap()
2355 .as_directed_mut(&target, &recipient, 1_000, decay_params)
2356 .set_max_liquidity_msat(200);
2358 let liquidity = scorer.channel_liquidities.get(&43).unwrap()
2359 .as_directed(&target, &recipient, 1_000, decay_params);
2360 assert_eq!(liquidity.min_liquidity_msat(), 0);
2361 assert_eq!(liquidity.max_liquidity_msat(), 200);
2363 let liquidity = scorer.channel_liquidities.get(&43).unwrap()
2364 .as_directed(&recipient, &target, 1_000, decay_params);
2365 assert_eq!(liquidity.min_liquidity_msat(), 800);
2366 assert_eq!(liquidity.max_liquidity_msat(), 1000);
2370 fn resets_liquidity_upper_bound_when_crossed_by_lower_bound() {
2371 let logger = TestLogger::new();
2372 let last_updated = SinceEpoch::now();
2373 let network_graph = network_graph(&logger);
2374 let decay_params = ProbabilisticScoringDecayParameters::default();
2375 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger)
2378 min_liquidity_offset_msat: 200, max_liquidity_offset_msat: 400, last_updated,
2379 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2380 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2382 let source = source_node_id();
2383 let target = target_node_id();
2384 assert!(source > target);
2386 // Check initial bounds.
2387 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2388 .as_directed(&source, &target, 1_000, decay_params);
2389 assert_eq!(liquidity.min_liquidity_msat(), 400);
2390 assert_eq!(liquidity.max_liquidity_msat(), 800);
2392 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2393 .as_directed(&target, &source, 1_000, decay_params);
2394 assert_eq!(liquidity.min_liquidity_msat(), 200);
2395 assert_eq!(liquidity.max_liquidity_msat(), 600);
2397 // Reset from source to target.
2398 scorer.channel_liquidities.get_mut(&42).unwrap()
2399 .as_directed_mut(&source, &target, 1_000, decay_params)
2400 .set_min_liquidity_msat(900);
2402 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2403 .as_directed(&source, &target, 1_000, decay_params);
2404 assert_eq!(liquidity.min_liquidity_msat(), 900);
2405 assert_eq!(liquidity.max_liquidity_msat(), 1_000);
2407 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2408 .as_directed(&target, &source, 1_000, decay_params);
2409 assert_eq!(liquidity.min_liquidity_msat(), 0);
2410 assert_eq!(liquidity.max_liquidity_msat(), 100);
2412 // Reset from target to source.
2413 scorer.channel_liquidities.get_mut(&42).unwrap()
2414 .as_directed_mut(&target, &source, 1_000, decay_params)
2415 .set_min_liquidity_msat(400);
2417 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2418 .as_directed(&source, &target, 1_000, decay_params);
2419 assert_eq!(liquidity.min_liquidity_msat(), 0);
2420 assert_eq!(liquidity.max_liquidity_msat(), 600);
2422 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2423 .as_directed(&target, &source, 1_000, decay_params);
2424 assert_eq!(liquidity.min_liquidity_msat(), 400);
2425 assert_eq!(liquidity.max_liquidity_msat(), 1_000);
2429 fn resets_liquidity_lower_bound_when_crossed_by_upper_bound() {
2430 let logger = TestLogger::new();
2431 let last_updated = SinceEpoch::now();
2432 let network_graph = network_graph(&logger);
2433 let decay_params = ProbabilisticScoringDecayParameters::default();
2434 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger)
2437 min_liquidity_offset_msat: 200, max_liquidity_offset_msat: 400, last_updated,
2438 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2439 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2441 let source = source_node_id();
2442 let target = target_node_id();
2443 assert!(source > target);
2445 // Check initial bounds.
2446 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2447 .as_directed(&source, &target, 1_000, decay_params);
2448 assert_eq!(liquidity.min_liquidity_msat(), 400);
2449 assert_eq!(liquidity.max_liquidity_msat(), 800);
2451 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2452 .as_directed(&target, &source, 1_000, decay_params);
2453 assert_eq!(liquidity.min_liquidity_msat(), 200);
2454 assert_eq!(liquidity.max_liquidity_msat(), 600);
2456 // Reset from source to target.
2457 scorer.channel_liquidities.get_mut(&42).unwrap()
2458 .as_directed_mut(&source, &target, 1_000, decay_params)
2459 .set_max_liquidity_msat(300);
2461 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2462 .as_directed(&source, &target, 1_000, decay_params);
2463 assert_eq!(liquidity.min_liquidity_msat(), 0);
2464 assert_eq!(liquidity.max_liquidity_msat(), 300);
2466 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2467 .as_directed(&target, &source, 1_000, decay_params);
2468 assert_eq!(liquidity.min_liquidity_msat(), 700);
2469 assert_eq!(liquidity.max_liquidity_msat(), 1_000);
2471 // Reset from target to source.
2472 scorer.channel_liquidities.get_mut(&42).unwrap()
2473 .as_directed_mut(&target, &source, 1_000, decay_params)
2474 .set_max_liquidity_msat(600);
2476 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2477 .as_directed(&source, &target, 1_000, decay_params);
2478 assert_eq!(liquidity.min_liquidity_msat(), 400);
2479 assert_eq!(liquidity.max_liquidity_msat(), 1_000);
2481 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
2482 .as_directed(&target, &source, 1_000, decay_params);
2483 assert_eq!(liquidity.min_liquidity_msat(), 0);
2484 assert_eq!(liquidity.max_liquidity_msat(), 600);
2488 fn increased_penalty_nearing_liquidity_upper_bound() {
2489 let logger = TestLogger::new();
2490 let network_graph = network_graph(&logger);
2491 let params = ProbabilisticScoringFeeParameters {
2492 liquidity_penalty_multiplier_msat: 1_000,
2493 ..ProbabilisticScoringFeeParameters::zero_penalty()
2495 let decay_params = ProbabilisticScoringDecayParameters::default();
2496 let scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2497 let source = source_node_id();
2498 let target = target_node_id();
2500 let usage = ChannelUsage {
2502 inflight_htlc_msat: 0,
2503 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 1_000 },
2505 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2506 let usage = ChannelUsage { amount_msat: 10_240, ..usage };
2507 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2508 let usage = ChannelUsage { amount_msat: 102_400, ..usage };
2509 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 47);
2510 let usage = ChannelUsage { amount_msat: 1_023_999, ..usage };
2511 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 2_000);
2513 let usage = ChannelUsage {
2515 inflight_htlc_msat: 0,
2516 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_000 },
2518 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 58);
2519 let usage = ChannelUsage { amount_msat: 256, ..usage };
2520 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 125);
2521 let usage = ChannelUsage { amount_msat: 374, ..usage };
2522 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 198);
2523 let usage = ChannelUsage { amount_msat: 512, ..usage };
2524 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2525 let usage = ChannelUsage { amount_msat: 640, ..usage };
2526 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 425);
2527 let usage = ChannelUsage { amount_msat: 768, ..usage };
2528 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 602);
2529 let usage = ChannelUsage { amount_msat: 896, ..usage };
2530 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 902);
2534 fn constant_penalty_outside_liquidity_bounds() {
2535 let logger = TestLogger::new();
2536 let last_updated = SinceEpoch::now();
2537 let network_graph = network_graph(&logger);
2538 let params = ProbabilisticScoringFeeParameters {
2539 liquidity_penalty_multiplier_msat: 1_000,
2540 considered_impossible_penalty_msat: u64::max_value(),
2541 ..ProbabilisticScoringFeeParameters::zero_penalty()
2543 let decay_params = ProbabilisticScoringDecayParameters {
2544 ..ProbabilisticScoringDecayParameters::zero_penalty()
2546 let scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger)
2549 min_liquidity_offset_msat: 40, max_liquidity_offset_msat: 40, last_updated,
2550 min_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2551 max_liquidity_offset_history: HistoricalBucketRangeTracker::new(),
2553 let source = source_node_id();
2554 let target = target_node_id();
2556 let usage = ChannelUsage {
2558 inflight_htlc_msat: 0,
2559 effective_capacity: EffectiveCapacity::Total { capacity_msat: 100, htlc_maximum_msat: 1_000 },
2561 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2562 let usage = ChannelUsage { amount_msat: 50, ..usage };
2563 assert_ne!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2564 assert_ne!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2565 let usage = ChannelUsage { amount_msat: 61, ..usage };
2566 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2570 fn does_not_further_penalize_own_channel() {
2571 let logger = TestLogger::new();
2572 let network_graph = network_graph(&logger);
2573 let params = ProbabilisticScoringFeeParameters {
2574 liquidity_penalty_multiplier_msat: 1_000,
2575 ..ProbabilisticScoringFeeParameters::zero_penalty()
2577 let mut scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
2578 let sender = sender_node_id();
2579 let source = source_node_id();
2580 let usage = ChannelUsage {
2582 inflight_htlc_msat: 0,
2583 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2585 let failed_path = payment_path_for_amount(500);
2586 let successful_path = payment_path_for_amount(200);
2588 assert_eq!(scorer.channel_penalty_msat(41, &sender, &source, usage, ¶ms), 301);
2590 scorer.payment_path_failed(&failed_path, 41);
2591 assert_eq!(scorer.channel_penalty_msat(41, &sender, &source, usage, ¶ms), 301);
2593 scorer.payment_path_successful(&successful_path);
2594 assert_eq!(scorer.channel_penalty_msat(41, &sender, &source, usage, ¶ms), 301);
2598 fn sets_liquidity_lower_bound_on_downstream_failure() {
2599 let logger = TestLogger::new();
2600 let network_graph = network_graph(&logger);
2601 let params = ProbabilisticScoringFeeParameters {
2602 liquidity_penalty_multiplier_msat: 1_000,
2603 ..ProbabilisticScoringFeeParameters::zero_penalty()
2605 let mut scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
2606 let source = source_node_id();
2607 let target = target_node_id();
2608 let path = payment_path_for_amount(500);
2610 let usage = ChannelUsage {
2612 inflight_htlc_msat: 0,
2613 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2615 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 128);
2616 let usage = ChannelUsage { amount_msat: 500, ..usage };
2617 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 301);
2618 let usage = ChannelUsage { amount_msat: 750, ..usage };
2619 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 602);
2621 scorer.payment_path_failed(&path, 43);
2623 let usage = ChannelUsage { amount_msat: 250, ..usage };
2624 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2625 let usage = ChannelUsage { amount_msat: 500, ..usage };
2626 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2627 let usage = ChannelUsage { amount_msat: 750, ..usage };
2628 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2632 fn sets_liquidity_upper_bound_on_failure() {
2633 let logger = TestLogger::new();
2634 let network_graph = network_graph(&logger);
2635 let params = ProbabilisticScoringFeeParameters {
2636 liquidity_penalty_multiplier_msat: 1_000,
2637 considered_impossible_penalty_msat: u64::max_value(),
2638 ..ProbabilisticScoringFeeParameters::zero_penalty()
2640 let mut scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
2641 let source = source_node_id();
2642 let target = target_node_id();
2643 let path = payment_path_for_amount(500);
2645 let usage = ChannelUsage {
2647 inflight_htlc_msat: 0,
2648 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2650 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 128);
2651 let usage = ChannelUsage { amount_msat: 500, ..usage };
2652 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 301);
2653 let usage = ChannelUsage { amount_msat: 750, ..usage };
2654 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 602);
2656 scorer.payment_path_failed(&path, 42);
2658 let usage = ChannelUsage { amount_msat: 250, ..usage };
2659 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2660 let usage = ChannelUsage { amount_msat: 500, ..usage };
2661 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2662 let usage = ChannelUsage { amount_msat: 750, ..usage };
2663 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2667 fn ignores_channels_after_removed_failed_channel() {
2668 // Previously, if we'd tried to send over a channel which was removed from the network
2669 // graph before we call `payment_path_failed` (which is the default if the we get a "no
2670 // such channel" error in the `InvoicePayer`), we would call `failed_downstream` on all
2671 // channels in the route, even ones which they payment never reached. This tests to ensure
2672 // we do not score such channels.
2673 let secp_ctx = Secp256k1::new();
2674 let logger = TestLogger::new();
2675 let mut network_graph = NetworkGraph::new(Network::Testnet, &logger);
2676 let secret_a = SecretKey::from_slice(&[42; 32]).unwrap();
2677 let secret_b = SecretKey::from_slice(&[43; 32]).unwrap();
2678 let secret_c = SecretKey::from_slice(&[44; 32]).unwrap();
2679 let secret_d = SecretKey::from_slice(&[45; 32]).unwrap();
2680 add_channel(&mut network_graph, 42, secret_a, secret_b);
2681 // Don't add the channel from B -> C.
2682 add_channel(&mut network_graph, 44, secret_c, secret_d);
2684 let pub_a = PublicKey::from_secret_key(&secp_ctx, &secret_a);
2685 let pub_b = PublicKey::from_secret_key(&secp_ctx, &secret_b);
2686 let pub_c = PublicKey::from_secret_key(&secp_ctx, &secret_c);
2687 let pub_d = PublicKey::from_secret_key(&secp_ctx, &secret_d);
2690 path_hop(pub_b, 42, 1),
2691 path_hop(pub_c, 43, 2),
2692 path_hop(pub_d, 44, 100),
2695 let node_a = NodeId::from_pubkey(&pub_a);
2696 let node_b = NodeId::from_pubkey(&pub_b);
2697 let node_c = NodeId::from_pubkey(&pub_c);
2698 let node_d = NodeId::from_pubkey(&pub_d);
2700 let params = ProbabilisticScoringFeeParameters {
2701 liquidity_penalty_multiplier_msat: 1_000,
2702 ..ProbabilisticScoringFeeParameters::zero_penalty()
2704 let mut scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
2706 let usage = ChannelUsage {
2708 inflight_htlc_msat: 0,
2709 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2711 assert_eq!(scorer.channel_penalty_msat(42, &node_a, &node_b, usage, ¶ms), 128);
2712 // Note that a default liquidity bound is used for B -> C as no channel exists
2713 assert_eq!(scorer.channel_penalty_msat(43, &node_b, &node_c, usage, ¶ms), 128);
2714 assert_eq!(scorer.channel_penalty_msat(44, &node_c, &node_d, usage, ¶ms), 128);
2716 scorer.payment_path_failed(&Path { hops: path, blinded_tail: None }, 43);
2718 assert_eq!(scorer.channel_penalty_msat(42, &node_a, &node_b, usage, ¶ms), 80);
2719 // Note that a default liquidity bound is used for B -> C as no channel exists
2720 assert_eq!(scorer.channel_penalty_msat(43, &node_b, &node_c, usage, ¶ms), 128);
2721 assert_eq!(scorer.channel_penalty_msat(44, &node_c, &node_d, usage, ¶ms), 128);
2725 fn reduces_liquidity_upper_bound_along_path_on_success() {
2726 let logger = TestLogger::new();
2727 let network_graph = network_graph(&logger);
2728 let params = ProbabilisticScoringFeeParameters {
2729 liquidity_penalty_multiplier_msat: 1_000,
2730 ..ProbabilisticScoringFeeParameters::zero_penalty()
2732 let mut scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
2733 let sender = sender_node_id();
2734 let source = source_node_id();
2735 let target = target_node_id();
2736 let recipient = recipient_node_id();
2737 let usage = ChannelUsage {
2739 inflight_htlc_msat: 0,
2740 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2743 assert_eq!(scorer.channel_penalty_msat(41, &sender, &source, usage, ¶ms), 128);
2744 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 128);
2745 assert_eq!(scorer.channel_penalty_msat(43, &target, &recipient, usage, ¶ms), 128);
2747 scorer.payment_path_successful(&payment_path_for_amount(500));
2749 assert_eq!(scorer.channel_penalty_msat(41, &sender, &source, usage, ¶ms), 128);
2750 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2751 assert_eq!(scorer.channel_penalty_msat(43, &target, &recipient, usage, ¶ms), 300);
2755 fn decays_liquidity_bounds_over_time() {
2756 let logger = TestLogger::new();
2757 let network_graph = network_graph(&logger);
2758 let params = ProbabilisticScoringFeeParameters {
2759 liquidity_penalty_multiplier_msat: 1_000,
2760 considered_impossible_penalty_msat: u64::max_value(),
2761 ..ProbabilisticScoringFeeParameters::zero_penalty()
2763 let decay_params = ProbabilisticScoringDecayParameters {
2764 liquidity_offset_half_life: Duration::from_secs(10),
2765 ..ProbabilisticScoringDecayParameters::zero_penalty()
2767 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2768 let source = source_node_id();
2769 let target = target_node_id();
2771 let usage = ChannelUsage {
2773 inflight_htlc_msat: 0,
2774 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_024 },
2776 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2777 let usage = ChannelUsage { amount_msat: 1_023, ..usage };
2778 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 2_000);
2780 scorer.payment_path_failed(&payment_path_for_amount(768), 42);
2781 scorer.payment_path_failed(&payment_path_for_amount(128), 43);
2783 // Initial penalties
2784 let usage = ChannelUsage { amount_msat: 128, ..usage };
2785 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2786 let usage = ChannelUsage { amount_msat: 256, ..usage };
2787 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 93);
2788 let usage = ChannelUsage { amount_msat: 768, ..usage };
2789 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 1_479);
2790 let usage = ChannelUsage { amount_msat: 896, ..usage };
2791 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2794 SinceEpoch::advance(Duration::from_secs(4));
2795 let usage = ChannelUsage { amount_msat: 128, ..usage };
2796 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2797 let usage = ChannelUsage { amount_msat: 256, ..usage };
2798 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 93);
2799 let usage = ChannelUsage { amount_msat: 768, ..usage };
2800 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 1_479);
2801 let usage = ChannelUsage { amount_msat: 896, ..usage };
2802 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2804 // Half decay (i.e., three-quarter life)
2805 SinceEpoch::advance(Duration::from_secs(1));
2806 let usage = ChannelUsage { amount_msat: 128, ..usage };
2807 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 22);
2808 let usage = ChannelUsage { amount_msat: 256, ..usage };
2809 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 106);
2810 let usage = ChannelUsage { amount_msat: 768, ..usage };
2811 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 921);
2812 let usage = ChannelUsage { amount_msat: 896, ..usage };
2813 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2815 // One decay (i.e., half life)
2816 SinceEpoch::advance(Duration::from_secs(5));
2817 let usage = ChannelUsage { amount_msat: 64, ..usage };
2818 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2819 let usage = ChannelUsage { amount_msat: 128, ..usage };
2820 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 34);
2821 let usage = ChannelUsage { amount_msat: 896, ..usage };
2822 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 1_970);
2823 let usage = ChannelUsage { amount_msat: 960, ..usage };
2824 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2826 // Fully decay liquidity lower bound.
2827 SinceEpoch::advance(Duration::from_secs(10 * 7));
2828 let usage = ChannelUsage { amount_msat: 0, ..usage };
2829 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2830 let usage = ChannelUsage { amount_msat: 1, ..usage };
2831 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2832 let usage = ChannelUsage { amount_msat: 1_023, ..usage };
2833 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 2_000);
2834 let usage = ChannelUsage { amount_msat: 1_024, ..usage };
2835 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2837 // Fully decay liquidity upper bound.
2838 SinceEpoch::advance(Duration::from_secs(10));
2839 let usage = ChannelUsage { amount_msat: 0, ..usage };
2840 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2841 let usage = ChannelUsage { amount_msat: 1_024, ..usage };
2842 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2844 SinceEpoch::advance(Duration::from_secs(10));
2845 let usage = ChannelUsage { amount_msat: 0, ..usage };
2846 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
2847 let usage = ChannelUsage { amount_msat: 1_024, ..usage };
2848 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2852 fn decays_liquidity_bounds_without_shift_overflow() {
2853 let logger = TestLogger::new();
2854 let network_graph = network_graph(&logger);
2855 let params = ProbabilisticScoringFeeParameters {
2856 liquidity_penalty_multiplier_msat: 1_000,
2857 ..ProbabilisticScoringFeeParameters::zero_penalty()
2859 let decay_params = ProbabilisticScoringDecayParameters {
2860 liquidity_offset_half_life: Duration::from_secs(10),
2861 ..ProbabilisticScoringDecayParameters::default()
2863 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2864 let source = source_node_id();
2865 let target = target_node_id();
2866 let usage = ChannelUsage {
2868 inflight_htlc_msat: 0,
2869 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_000 },
2871 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 125);
2873 scorer.payment_path_failed(&payment_path_for_amount(512), 42);
2874 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 281);
2876 // An unchecked right shift 64 bits or more in DirectedChannelLiquidity::decayed_offset_msat
2877 // would cause an overflow.
2878 SinceEpoch::advance(Duration::from_secs(10 * 64));
2879 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 125);
2881 SinceEpoch::advance(Duration::from_secs(10));
2882 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 125);
2886 fn restricts_liquidity_bounds_after_decay() {
2887 let logger = TestLogger::new();
2888 let network_graph = network_graph(&logger);
2889 let params = ProbabilisticScoringFeeParameters {
2890 liquidity_penalty_multiplier_msat: 1_000,
2891 ..ProbabilisticScoringFeeParameters::zero_penalty()
2893 let decay_params = ProbabilisticScoringDecayParameters {
2894 liquidity_offset_half_life: Duration::from_secs(10),
2895 ..ProbabilisticScoringDecayParameters::default()
2897 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2898 let source = source_node_id();
2899 let target = target_node_id();
2900 let usage = ChannelUsage {
2902 inflight_htlc_msat: 0,
2903 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_000 },
2906 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2908 // More knowledge gives higher confidence (256, 768), meaning a lower penalty.
2909 scorer.payment_path_failed(&payment_path_for_amount(768), 42);
2910 scorer.payment_path_failed(&payment_path_for_amount(256), 43);
2911 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 281);
2913 // Decaying knowledge gives less confidence (128, 896), meaning a higher penalty.
2914 SinceEpoch::advance(Duration::from_secs(10));
2915 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 291);
2917 // Reducing the upper bound gives more confidence (128, 832) that the payment amount (512)
2918 // is closer to the upper bound, meaning a higher penalty.
2919 scorer.payment_path_successful(&payment_path_for_amount(64));
2920 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 331);
2922 // Increasing the lower bound gives more confidence (256, 832) that the payment amount (512)
2923 // is closer to the lower bound, meaning a lower penalty.
2924 scorer.payment_path_failed(&payment_path_for_amount(256), 43);
2925 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 245);
2927 // Further decaying affects the lower bound more than the upper bound (128, 928).
2928 SinceEpoch::advance(Duration::from_secs(10));
2929 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 280);
2933 fn restores_persisted_liquidity_bounds() {
2934 let logger = TestLogger::new();
2935 let network_graph = network_graph(&logger);
2936 let params = ProbabilisticScoringFeeParameters {
2937 liquidity_penalty_multiplier_msat: 1_000,
2938 considered_impossible_penalty_msat: u64::max_value(),
2939 ..ProbabilisticScoringFeeParameters::zero_penalty()
2941 let decay_params = ProbabilisticScoringDecayParameters {
2942 liquidity_offset_half_life: Duration::from_secs(10),
2943 ..ProbabilisticScoringDecayParameters::default()
2945 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2946 let source = source_node_id();
2947 let target = target_node_id();
2948 let usage = ChannelUsage {
2950 inflight_htlc_msat: 0,
2951 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2954 scorer.payment_path_failed(&payment_path_for_amount(500), 42);
2955 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2957 SinceEpoch::advance(Duration::from_secs(10));
2958 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 473);
2960 scorer.payment_path_failed(&payment_path_for_amount(250), 43);
2961 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2963 let mut serialized_scorer = Vec::new();
2964 scorer.write(&mut serialized_scorer).unwrap();
2966 let mut serialized_scorer = io::Cursor::new(&serialized_scorer);
2967 let deserialized_scorer =
2968 <ProbabilisticScorer>::read(&mut serialized_scorer, (decay_params, &network_graph, &logger)).unwrap();
2969 assert_eq!(deserialized_scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
2973 fn decays_persisted_liquidity_bounds() {
2974 let logger = TestLogger::new();
2975 let network_graph = network_graph(&logger);
2976 let params = ProbabilisticScoringFeeParameters {
2977 liquidity_penalty_multiplier_msat: 1_000,
2978 considered_impossible_penalty_msat: u64::max_value(),
2979 ..ProbabilisticScoringFeeParameters::zero_penalty()
2981 let decay_params = ProbabilisticScoringDecayParameters {
2982 liquidity_offset_half_life: Duration::from_secs(10),
2983 ..ProbabilisticScoringDecayParameters::zero_penalty()
2985 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
2986 let source = source_node_id();
2987 let target = target_node_id();
2988 let usage = ChannelUsage {
2990 inflight_htlc_msat: 0,
2991 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
2994 scorer.payment_path_failed(&payment_path_for_amount(500), 42);
2995 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
2997 let mut serialized_scorer = Vec::new();
2998 scorer.write(&mut serialized_scorer).unwrap();
3000 SinceEpoch::advance(Duration::from_secs(10));
3002 let mut serialized_scorer = io::Cursor::new(&serialized_scorer);
3003 let deserialized_scorer =
3004 <ProbabilisticScorer>::read(&mut serialized_scorer, (decay_params, &network_graph, &logger)).unwrap();
3005 assert_eq!(deserialized_scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 473);
3007 scorer.payment_path_failed(&payment_path_for_amount(250), 43);
3008 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
3010 SinceEpoch::advance(Duration::from_secs(10));
3011 assert_eq!(deserialized_scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 370);
3015 fn scores_realistic_payments() {
3016 // Shows the scores of "realistic" sends of 100k sats over channels of 1-10m sats (with a
3017 // 50k sat reserve).
3018 let logger = TestLogger::new();
3019 let network_graph = network_graph(&logger);
3020 let params = ProbabilisticScoringFeeParameters::default();
3021 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3022 let source = source_node_id();
3023 let target = target_node_id();
3025 let usage = ChannelUsage {
3026 amount_msat: 100_000_000,
3027 inflight_htlc_msat: 0,
3028 effective_capacity: EffectiveCapacity::Total { capacity_msat: 950_000_000, htlc_maximum_msat: 1_000 },
3030 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 11497);
3031 let usage = ChannelUsage {
3032 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3034 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 7408);
3035 let usage = ChannelUsage {
3036 effective_capacity: EffectiveCapacity::Total { capacity_msat: 2_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3038 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 6151);
3039 let usage = ChannelUsage {
3040 effective_capacity: EffectiveCapacity::Total { capacity_msat: 3_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3042 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 5427);
3043 let usage = ChannelUsage {
3044 effective_capacity: EffectiveCapacity::Total { capacity_msat: 4_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3046 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4955);
3047 let usage = ChannelUsage {
3048 effective_capacity: EffectiveCapacity::Total { capacity_msat: 5_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3050 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4736);
3051 let usage = ChannelUsage {
3052 effective_capacity: EffectiveCapacity::Total { capacity_msat: 6_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3054 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4484);
3055 let usage = ChannelUsage {
3056 effective_capacity: EffectiveCapacity::Total { capacity_msat: 7_450_000_000, htlc_maximum_msat: 1_000 }, ..usage
3058 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4484);
3059 let usage = ChannelUsage {
3060 effective_capacity: EffectiveCapacity::Total { capacity_msat: 7_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3062 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4263);
3063 let usage = ChannelUsage {
3064 effective_capacity: EffectiveCapacity::Total { capacity_msat: 8_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3066 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4263);
3067 let usage = ChannelUsage {
3068 effective_capacity: EffectiveCapacity::Total { capacity_msat: 9_950_000_000, htlc_maximum_msat: 1_000 }, ..usage
3070 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 4044);
3074 fn adds_base_penalty_to_liquidity_penalty() {
3075 let logger = TestLogger::new();
3076 let network_graph = network_graph(&logger);
3077 let source = source_node_id();
3078 let target = target_node_id();
3079 let usage = ChannelUsage {
3081 inflight_htlc_msat: 0,
3082 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_000 },
3085 let params = ProbabilisticScoringFeeParameters {
3086 liquidity_penalty_multiplier_msat: 1_000,
3087 ..ProbabilisticScoringFeeParameters::zero_penalty()
3089 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3090 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 58);
3092 let params = ProbabilisticScoringFeeParameters {
3093 base_penalty_msat: 500, liquidity_penalty_multiplier_msat: 1_000,
3094 anti_probing_penalty_msat: 0, ..ProbabilisticScoringFeeParameters::zero_penalty()
3096 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3097 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 558);
3099 let params = ProbabilisticScoringFeeParameters {
3100 base_penalty_msat: 500, liquidity_penalty_multiplier_msat: 1_000,
3101 base_penalty_amount_multiplier_msat: (1 << 30),
3102 anti_probing_penalty_msat: 0, ..ProbabilisticScoringFeeParameters::zero_penalty()
3105 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3106 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 558 + 128);
3110 fn adds_amount_penalty_to_liquidity_penalty() {
3111 let logger = TestLogger::new();
3112 let network_graph = network_graph(&logger);
3113 let source = source_node_id();
3114 let target = target_node_id();
3115 let usage = ChannelUsage {
3116 amount_msat: 512_000,
3117 inflight_htlc_msat: 0,
3118 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 1_000 },
3121 let params = ProbabilisticScoringFeeParameters {
3122 liquidity_penalty_multiplier_msat: 1_000,
3123 liquidity_penalty_amount_multiplier_msat: 0,
3124 ..ProbabilisticScoringFeeParameters::zero_penalty()
3126 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3127 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
3129 let params = ProbabilisticScoringFeeParameters {
3130 liquidity_penalty_multiplier_msat: 1_000,
3131 liquidity_penalty_amount_multiplier_msat: 256,
3132 ..ProbabilisticScoringFeeParameters::zero_penalty()
3134 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3135 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 337);
3139 fn calculates_log10_without_overflowing_u64_max_value() {
3140 let logger = TestLogger::new();
3141 let network_graph = network_graph(&logger);
3142 let source = source_node_id();
3143 let target = target_node_id();
3144 let usage = ChannelUsage {
3145 amount_msat: u64::max_value(),
3146 inflight_htlc_msat: 0,
3147 effective_capacity: EffectiveCapacity::Infinite,
3150 let params = ProbabilisticScoringFeeParameters {
3151 liquidity_penalty_multiplier_msat: 40_000,
3152 ..ProbabilisticScoringFeeParameters::zero_penalty()
3154 let decay_params = ProbabilisticScoringDecayParameters::zero_penalty();
3155 let scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
3156 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 80_000);
3160 fn accounts_for_inflight_htlc_usage() {
3161 let logger = TestLogger::new();
3162 let network_graph = network_graph(&logger);
3163 let params = ProbabilisticScoringFeeParameters {
3164 considered_impossible_penalty_msat: u64::max_value(),
3165 ..ProbabilisticScoringFeeParameters::zero_penalty()
3167 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3168 let source = source_node_id();
3169 let target = target_node_id();
3171 let usage = ChannelUsage {
3173 inflight_htlc_msat: 0,
3174 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_000, htlc_maximum_msat: 1_000 },
3176 assert_ne!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
3178 let usage = ChannelUsage { inflight_htlc_msat: 251, ..usage };
3179 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
3183 fn removes_uncertainity_when_exact_liquidity_known() {
3184 let logger = TestLogger::new();
3185 let network_graph = network_graph(&logger);
3186 let params = ProbabilisticScoringFeeParameters::default();
3187 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3188 let source = source_node_id();
3189 let target = target_node_id();
3191 let base_penalty_msat = params.base_penalty_msat;
3192 let usage = ChannelUsage {
3194 inflight_htlc_msat: 0,
3195 effective_capacity: EffectiveCapacity::ExactLiquidity { liquidity_msat: 1_000 },
3197 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), base_penalty_msat);
3199 let usage = ChannelUsage { amount_msat: 1_000, ..usage };
3200 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), base_penalty_msat);
3202 let usage = ChannelUsage { amount_msat: 1_001, ..usage };
3203 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), u64::max_value());
3207 fn remembers_historical_failures() {
3208 let logger = TestLogger::new();
3209 let network_graph = network_graph(&logger);
3210 let params = ProbabilisticScoringFeeParameters {
3211 historical_liquidity_penalty_multiplier_msat: 1024,
3212 historical_liquidity_penalty_amount_multiplier_msat: 1024,
3213 ..ProbabilisticScoringFeeParameters::zero_penalty()
3215 let decay_params = ProbabilisticScoringDecayParameters {
3216 liquidity_offset_half_life: Duration::from_secs(60 * 60),
3217 historical_no_updates_half_life: Duration::from_secs(10),
3219 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
3220 let source = source_node_id();
3221 let target = target_node_id();
3223 let usage = ChannelUsage {
3225 inflight_htlc_msat: 0,
3226 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_024 },
3228 let usage_1 = ChannelUsage {
3230 inflight_htlc_msat: 0,
3231 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_024 },
3234 // With no historical data the normal liquidity penalty calculation is used.
3235 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 168);
3236 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3238 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, 42, ¶ms),
3241 scorer.payment_path_failed(&payment_path_for_amount(1), 42);
3242 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 2048);
3243 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage_1, ¶ms), 249);
3244 // The "it failed" increment is 32, where the probability should lie several buckets into
3245 // the first octile.
3246 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3247 Some(([32, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
3248 [0, 0, 0, 0, 0, 0, 32, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0])));
3249 assert!(scorer.historical_estimated_payment_success_probability(42, &target, 1, ¶ms)
3251 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, 500, ¶ms),
3254 // Even after we tell the scorer we definitely have enough available liquidity, it will
3255 // still remember that there was some failure in the past, and assign a non-0 penalty.
3256 scorer.payment_path_failed(&payment_path_for_amount(1000), 43);
3257 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 105);
3258 // The first points should be decayed just slightly and the last bucket has a new point.
3259 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3260 Some(([31, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 32, 0, 0, 0, 0, 0],
3261 [0, 0, 0, 0, 0, 0, 31, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 32])));
3263 // The exact success probability is a bit complicated and involves integer rounding, so we
3264 // simply check bounds here.
3265 let five_hundred_prob =
3266 scorer.historical_estimated_payment_success_probability(42, &target, 500, ¶ms).unwrap();
3267 assert!(five_hundred_prob > 0.59);
3268 assert!(five_hundred_prob < 0.60);
3270 scorer.historical_estimated_payment_success_probability(42, &target, 1, ¶ms).unwrap();
3271 assert!(one_prob < 0.85);
3272 assert!(one_prob > 0.84);
3274 // Advance the time forward 16 half-lives (which the docs claim will ensure all data is
3275 // gone), and check that we're back to where we started.
3276 SinceEpoch::advance(Duration::from_secs(10 * 16));
3277 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 168);
3278 // Once fully decayed we still have data, but its all-0s. In the future we may remove the
3279 // data entirely instead.
3280 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3282 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, 1, ¶ms), None);
3284 let mut usage = ChannelUsage {
3286 inflight_htlc_msat: 1024,
3287 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_024 },
3289 scorer.payment_path_failed(&payment_path_for_amount(1), 42);
3290 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 2050);
3291 usage.inflight_htlc_msat = 0;
3292 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 866);
3294 let usage = ChannelUsage {
3296 inflight_htlc_msat: 0,
3297 effective_capacity: EffectiveCapacity::AdvertisedMaxHTLC { amount_msat: 0 },
3299 assert_eq!(scorer.channel_penalty_msat(42, &target, &source, usage, ¶ms), 2048);
3301 // Advance to decay all liquidity offsets to zero.
3302 SinceEpoch::advance(Duration::from_secs(60 * 60 * 10));
3304 // Use a path in the opposite direction, which have zero for htlc_maximum_msat. This will
3305 // ensure that the effective capacity is zero to test division-by-zero edge cases.
3307 path_hop(target_pubkey(), 43, 2),
3308 path_hop(source_pubkey(), 42, 1),
3309 path_hop(sender_pubkey(), 41, 0),
3311 scorer.payment_path_failed(&Path { hops: path, blinded_tail: None }, 42);
3315 fn adds_anti_probing_penalty() {
3316 let logger = TestLogger::new();
3317 let network_graph = network_graph(&logger);
3318 let source = source_node_id();
3319 let target = target_node_id();
3320 let params = ProbabilisticScoringFeeParameters {
3321 anti_probing_penalty_msat: 500,
3322 ..ProbabilisticScoringFeeParameters::zero_penalty()
3324 let scorer = ProbabilisticScorer::new(ProbabilisticScoringDecayParameters::default(), &network_graph, &logger);
3326 // Check we receive no penalty for a low htlc_maximum_msat.
3327 let usage = ChannelUsage {
3328 amount_msat: 512_000,
3329 inflight_htlc_msat: 0,
3330 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 1_000 },
3332 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
3334 // Check we receive anti-probing penalty for htlc_maximum_msat == channel_capacity.
3335 let usage = ChannelUsage {
3336 amount_msat: 512_000,
3337 inflight_htlc_msat: 0,
3338 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 1_024_000 },
3340 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 500);
3342 // Check we receive anti-probing penalty for htlc_maximum_msat == channel_capacity/2.
3343 let usage = ChannelUsage {
3344 amount_msat: 512_000,
3345 inflight_htlc_msat: 0,
3346 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 512_000 },
3348 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 500);
3350 // Check we receive no anti-probing penalty for htlc_maximum_msat == channel_capacity/2 - 1.
3351 let usage = ChannelUsage {
3352 amount_msat: 512_000,
3353 inflight_htlc_msat: 0,
3354 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024_000, htlc_maximum_msat: 511_999 },
3356 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 0);
3360 fn scores_with_blinded_path() {
3361 // Make sure we'll account for a blinded path's final_value_msat in scoring
3362 let logger = TestLogger::new();
3363 let network_graph = network_graph(&logger);
3364 let params = ProbabilisticScoringFeeParameters {
3365 liquidity_penalty_multiplier_msat: 1_000,
3366 ..ProbabilisticScoringFeeParameters::zero_penalty()
3368 let decay_params = ProbabilisticScoringDecayParameters::default();
3369 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
3370 let source = source_node_id();
3371 let target = target_node_id();
3372 let usage = ChannelUsage {
3374 inflight_htlc_msat: 0,
3375 effective_capacity: EffectiveCapacity::Total { capacity_msat: 1_024, htlc_maximum_msat: 1_000 },
3377 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 300);
3379 let mut path = payment_path_for_amount(768);
3380 let recipient_hop = path.hops.pop().unwrap();
3381 let blinded_path = BlindedPath {
3382 introduction_node_id: path.hops.last().as_ref().unwrap().pubkey,
3383 blinding_point: test_utils::pubkey(42),
3385 BlindedHop { blinded_node_id: test_utils::pubkey(44), encrypted_payload: Vec::new() }
3388 path.blinded_tail = Some(BlindedTail {
3389 hops: blinded_path.blinded_hops,
3390 blinding_point: blinded_path.blinding_point,
3391 excess_final_cltv_expiry_delta: recipient_hop.cltv_expiry_delta,
3392 final_value_msat: recipient_hop.fee_msat,
3395 // Check the liquidity before and after scoring payment failures to ensure the blinded path's
3396 // final value is taken into account.
3397 assert!(scorer.channel_liquidities.get(&42).is_none());
3399 scorer.payment_path_failed(&path, 42);
3400 path.blinded_tail.as_mut().unwrap().final_value_msat = 256;
3401 scorer.payment_path_failed(&path, 43);
3403 let liquidity = scorer.channel_liquidities.get(&42).unwrap()
3404 .as_directed(&source, &target, 1_000, decay_params);
3405 assert_eq!(liquidity.min_liquidity_msat(), 256);
3406 assert_eq!(liquidity.max_liquidity_msat(), 768);
3410 fn realistic_historical_failures() {
3411 // The motivation for the unequal sized buckets came largely from attempting to pay 10k
3412 // sats over a one bitcoin channel. This tests that case explicitly, ensuring that we score
3414 let logger = TestLogger::new();
3415 let mut network_graph = network_graph(&logger);
3416 let params = ProbabilisticScoringFeeParameters {
3417 historical_liquidity_penalty_multiplier_msat: 1024,
3418 historical_liquidity_penalty_amount_multiplier_msat: 1024,
3419 ..ProbabilisticScoringFeeParameters::zero_penalty()
3421 let decay_params = ProbabilisticScoringDecayParameters {
3422 liquidity_offset_half_life: Duration::from_secs(60 * 60),
3423 historical_no_updates_half_life: Duration::from_secs(10),
3424 ..ProbabilisticScoringDecayParameters::default()
3427 let capacity_msat = 100_000_000_000;
3428 update_channel(&mut network_graph, 42, source_privkey(), 0, capacity_msat, 200);
3429 update_channel(&mut network_graph, 42, target_privkey(), 1, capacity_msat, 200);
3431 let mut scorer = ProbabilisticScorer::new(decay_params, &network_graph, &logger);
3432 let source = source_node_id();
3433 let target = target_node_id();
3435 let mut amount_msat = 10_000_000;
3436 let usage = ChannelUsage {
3438 inflight_htlc_msat: 0,
3439 effective_capacity: EffectiveCapacity::Total { capacity_msat, htlc_maximum_msat: capacity_msat },
3441 // With no historical data the normal liquidity penalty calculation is used, which results
3442 // in a success probability of ~75%.
3443 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms), 1269);
3444 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3446 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, 42, ¶ms),
3449 // Fail to pay once, and then check the buckets and penalty.
3450 scorer.payment_path_failed(&payment_path_for_amount(amount_msat), 42);
3451 // The penalty should be the maximum penalty, as the payment we're scoring is now in the
3452 // same bucket which is the only maximum datapoint.
3453 assert_eq!(scorer.channel_penalty_msat(42, &source, &target, usage, ¶ms),
3454 2048 + 2048 * amount_msat / super::AMOUNT_PENALTY_DIVISOR);
3455 // The "it failed" increment is 32, which we should apply to the first upper-bound (between
3456 // 6k sats and 12k sats).
3457 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3458 Some(([32, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
3459 [0, 32, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0])));
3460 // The success probability estimate itself should be zero.
3461 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, amount_msat, ¶ms),
3464 // Now test again with the amount in the bottom bucket.
3466 // The new amount is entirely within the only minimum bucket with score, so the probability
3467 // we assign is 1/2.
3468 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, amount_msat, ¶ms),
3471 // ...but once we see a failure, we consider the payment to be substantially less likely,
3472 // even though not a probability of zero as we still look at the second max bucket which
3474 scorer.payment_path_failed(&payment_path_for_amount(amount_msat), 42);
3475 assert_eq!(scorer.historical_estimated_channel_liquidity_probabilities(42, &target),
3476 Some(([63, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
3477 [32, 31, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0])));
3478 assert_eq!(scorer.historical_estimated_payment_success_probability(42, &target, amount_msat, ¶ms),