@@ -706,10 +706,17 @@ impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ProbabilisticScorerU
706706 let amt = directed_info. effective_capacity ( ) . as_msat ( ) ;
707707 let dir_liq = liq. as_directed ( source, target, 0 , amt, self . decay_params ) ;
708708
709- let ( min_buckets , max_buckets , _ ) = dir_liq. liquidity_history
709+ let decayed_buckets = dir_liq. liquidity_history
710710 . get_decayed_buckets ( now, * dir_liq. last_updated ,
711711 self . decay_params . historical_no_updates_half_life ) ;
712712
713+ let ( min_buckets, max_buckets, _, _) =
714+ if let Some ( buckets) = decayed_buckets { buckets } else {
715+ // If the buckets, once decayed, end up being zero, print them out
716+ // as zeros.
717+ ( [ 0 ; 32 ] , [ 0 ; 32 ] , 0 , 0 )
718+ } ;
719+
713720 log_debug ! ( self . logger, core:: concat!(
714721 "Liquidity from {} to {} via {} is in the range ({}, {}).\n " ,
715722 "\t Historical min liquidity bucket relative probabilities:\n " ,
@@ -787,7 +794,7 @@ impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ProbabilisticScorerU
787794 /// in the top and bottom bucket, and roughly with similar (recent) frequency.
788795 ///
789796 /// Because the datapoints are decayed slowly over time, values will eventually return to
790- /// `Some(([0 ; 32], [0 ; 32]))`.
797+ /// `Some(([1 ; 32], [1 ; 32]))` and then to `None` once no datapoints remain .
791798 ///
792799 /// In order to fetch a single success probability from the buckets provided here, as used in
793800 /// the scoring model, see [`Self::historical_estimated_payment_success_probability`].
@@ -801,9 +808,12 @@ impl<G: Deref<Target = NetworkGraph<L>>, L: Deref, T: Time> ProbabilisticScorerU
801808 let amt = directed_info. effective_capacity ( ) . as_msat ( ) ;
802809 let dir_liq = liq. as_directed ( source, target, 0 , amt, self . decay_params ) ;
803810
804- let ( min_buckets, mut max_buckets, _) = dir_liq. liquidity_history
805- . get_decayed_buckets ( dir_liq. now , * dir_liq. last_updated ,
806- self . decay_params . historical_no_updates_half_life ) ;
811+ let ( min_buckets, mut max_buckets, valid_points, required_decays) =
812+ dir_liq. liquidity_history . get_decayed_buckets (
813+ dir_liq. now , * dir_liq. last_updated ,
814+ self . decay_params . historical_no_updates_half_life
815+ ) ?;
816+
807817 // Note that the liquidity buckets are an offset from the edge, so we inverse
808818 // the max order to get the probabilities from zero.
809819 max_buckets. reverse ( ) ;
@@ -1740,15 +1750,29 @@ mod bucketed_history {
17401750 impl < D : Deref < Target = HistoricalBucketRangeTracker > > HistoricalMinMaxBuckets < D > {
17411751 #[ inline]
17421752 pub ( super ) fn get_decayed_buckets < T : Time > ( & self , now : T , last_updated : T , half_life : Duration )
1743- -> ( [ u16 ; 32 ] , [ u16 ; 32 ] , u32 ) {
1753+ -> Option < ( [ u16 ; 32 ] , [ u16 ; 32 ] , u64 , u32 ) > {
17441754 let required_decays = now. duration_since ( last_updated) . as_secs ( )
17451755 . checked_div ( half_life. as_secs ( ) )
17461756 . map_or ( u32:: max_value ( ) , |decays| cmp:: min ( decays, u32:: max_value ( ) as u64 ) as u32 ) ;
1757+
1758+ let mut total_valid_points_tracked = 0 ;
1759+ for ( min_idx, min_bucket) in self . min_liquidity_offset_history . buckets . iter ( ) . enumerate ( ) {
1760+ for max_bucket in self . max_liquidity_offset_history . buckets . iter ( ) . take ( 32 - min_idx) {
1761+ total_valid_points_tracked += ( * min_bucket as u64 ) * ( * max_bucket as u64 ) ;
1762+ }
1763+ }
1764+
1765+ // If the total valid points is smaller than 1.0 (i.e. 32 in our fixed-point scheme),
1766+ // treat it as if we were fully decayed.
1767+ if total_valid_points_tracked. checked_shr ( required_decays) . unwrap_or ( 0 ) < 32 * 32 {
1768+ return None ;
1769+ }
1770+
17471771 let mut min_buckets = * self . min_liquidity_offset_history ;
17481772 min_buckets. time_decay_data ( required_decays) ;
17491773 let mut max_buckets = * self . max_liquidity_offset_history ;
17501774 max_buckets. time_decay_data ( required_decays) ;
1751- ( min_buckets. buckets , max_buckets. buckets , required_decays)
1775+ Some ( ( min_buckets. buckets , max_buckets. buckets , total_valid_points_tracked , required_decays) )
17521776 }
17531777
17541778 #[ inline]
@@ -1762,29 +1786,13 @@ mod bucketed_history {
17621786 // state). For each pair, we calculate the probability as if the bucket's corresponding
17631787 // min- and max- liquidity bounds were our current liquidity bounds and then multiply
17641788 // that probability by the weight of the selected buckets.
1765- let mut total_valid_points_tracked = 0 ;
1766-
17671789 let payment_pos = amount_to_pos ( amount_msat, capacity_msat) ;
17681790 if payment_pos >= POSITION_TICKS { return None ; }
17691791
17701792 // Check if all our buckets are zero, once decayed and treat it as if we had no data. We
17711793 // don't actually use the decayed buckets, though, as that would lose precision.
1772- let ( decayed_min_buckets, decayed_max_buckets, required_decays) =
1773- self . get_decayed_buckets ( now, last_updated, half_life) ;
1774- if decayed_min_buckets. iter ( ) . all ( |v| * v == 0 ) || decayed_max_buckets. iter ( ) . all ( |v| * v == 0 ) {
1775- return None ;
1776- }
1777-
1778- for ( min_idx, min_bucket) in self . min_liquidity_offset_history . buckets . iter ( ) . enumerate ( ) {
1779- for max_bucket in self . max_liquidity_offset_history . buckets . iter ( ) . take ( 32 - min_idx) {
1780- total_valid_points_tracked += ( * min_bucket as u64 ) * ( * max_bucket as u64 ) ;
1781- }
1782- }
1783- // If the total valid points is smaller than 1.0 (i.e. 32 in our fixed-point scheme), treat
1784- // it as if we were fully decayed.
1785- if total_valid_points_tracked. checked_shr ( required_decays) . unwrap_or ( 0 ) < 32 * 32 {
1786- return None ;
1787- }
1794+ let ( decayed_min_buckets, decayed_max_buckets, total_valid_points_tracked, required_decays)
1795+ = self . get_decayed_buckets ( now, last_updated, half_life) ?;
17881796
17891797 let mut cumulative_success_prob_times_billion = 0 ;
17901798 // Special-case the 0th min bucket - it generally means we failed a payment, so only
@@ -3107,7 +3115,7 @@ mod tests {
31073115 // Once fully decayed we still have data, but its all-0s. In the future we may remove the
31083116 // data entirely instead.
31093117 assert_eq ! ( scorer. historical_estimated_channel_liquidity_probabilities( 42 , & target) ,
3110- Some ( ( [ 0 ; 32 ] , [ 0 ; 32 ] ) ) ) ;
3118+ None ) ;
31113119 assert_eq ! ( scorer. historical_estimated_payment_success_probability( 42 , & target, 1 ) , None ) ;
31123120
31133121 let mut usage = ChannelUsage {
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