@@ -86,12 +86,7 @@ pub trait Delegate: Sized {
8686 kind : PathKind ,
8787 input : <Self :: Cx as Cx >:: Input ,
8888 ) -> <Self :: Cx as Cx >:: Result ;
89- fn is_initial_provisional_result (
90- cx : Self :: Cx ,
91- kind : PathKind ,
92- input : <Self :: Cx as Cx >:: Input ,
93- result : <Self :: Cx as Cx >:: Result ,
94- ) -> bool ;
89+ fn is_initial_provisional_result ( result : <Self :: Cx as Cx >:: Result ) -> Option < PathKind > ;
9590 fn on_stack_overflow ( cx : Self :: Cx , input : <Self :: Cx as Cx >:: Input ) -> <Self :: Cx as Cx >:: Result ;
9691 fn on_fixpoint_overflow (
9792 cx : Self :: Cx ,
@@ -215,6 +210,27 @@ impl HeadUsages {
215210 let HeadUsages { inductive, unknown, coinductive, forced_ambiguity } = self ;
216211 inductive == 0 && unknown == 0 && coinductive == 0 && forced_ambiguity == 0
217212 }
213+
214+ fn is_single ( self , path_kind : PathKind ) -> bool {
215+ match path_kind {
216+ PathKind :: Inductive => matches ! (
217+ self ,
218+ HeadUsages { inductive: _, unknown: 0 , coinductive: 0 , forced_ambiguity: 0 } ,
219+ ) ,
220+ PathKind :: Unknown => matches ! (
221+ self ,
222+ HeadUsages { inductive: 0 , unknown: _, coinductive: 0 , forced_ambiguity: 0 } ,
223+ ) ,
224+ PathKind :: Coinductive => matches ! (
225+ self ,
226+ HeadUsages { inductive: 0 , unknown: 0 , coinductive: _, forced_ambiguity: 0 } ,
227+ ) ,
228+ PathKind :: ForcedAmbiguity => matches ! (
229+ self ,
230+ HeadUsages { inductive: 0 , unknown: 0 , coinductive: 0 , forced_ambiguity: _ } ,
231+ ) ,
232+ }
233+ }
218234}
219235
220236#[ derive( Debug , Default ) ]
@@ -888,7 +904,29 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
888904 !entries. is_empty ( )
889905 } ) ;
890906 }
907+ }
908+
909+ /// We need to rebase provisional cache entries when popping one of their cycle
910+ /// heads from the stack. This may not necessarily mean that we've actually
911+ /// reached a fixpoint for that cycle head, which impacts the way we rebase
912+ /// provisional cache entries.
913+ enum RebaseReason {
914+ NoCycleUsages ,
915+ Ambiguity ,
916+ Overflow ,
917+ /// We've actually reached a fixpoint.
918+ ///
919+ /// This either happens in the first evaluation step for the cycle head.
920+ /// In this case the used provisional result depends on the cycle `PathKind`.
921+ /// We store this path kind to check whether the the provisional cache entry
922+ /// we're rebasing relied on the same cycles.
923+ ///
924+ /// In later iterations cycles always return `stack_entry.provisional_result`
925+ /// so we no longer depend on the `PathKind`. We store `None` in that case.
926+ ReachedFixpoint ( Option < PathKind > ) ,
927+ }
891928
929+ impl < D : Delegate < Cx = X > , X : Cx > SearchGraph < D , X > {
892930 /// A necessary optimization to handle complex solver cycles. A provisional cache entry
893931 /// relies on a set of cycle heads and the path towards these heads. When popping a cycle
894932 /// head from the stack after we've finished computing it, we can't be sure that the
@@ -908,8 +946,9 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
908946 /// to me.
909947 fn rebase_provisional_cache_entries (
910948 & mut self ,
949+ cx : X ,
911950 stack_entry : & StackEntry < X > ,
912- mut mutate_result : impl FnMut ( X :: Input , X :: Result ) -> X :: Result ,
951+ rebase_reason : RebaseReason ,
913952 ) {
914953 let popped_head_index = self . stack . next_index ( ) ;
915954 #[ allow( rustc:: potential_query_instability) ]
@@ -927,6 +966,10 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
927966 return true ;
928967 } ;
929968
969+ let Some ( new_highest_head_index) = heads. opt_highest_cycle_head_index ( ) else {
970+ return false ;
971+ } ;
972+
930973 // We're rebasing an entry `e` over a head `p`. This head
931974 // has a number of own heads `h` it depends on.
932975 //
@@ -977,22 +1020,37 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
9771020 let eph = ep. extend_with_paths ( ph) ;
9781021 heads. insert ( head_index, eph, head. usages ) ;
9791022 }
980- }
9811023
982- let Some ( head_index) = heads. opt_highest_cycle_head_index ( ) else {
983- return false ;
984- } ;
1024+ // The provisional cache entry does depend on the provisional result
1025+ // of the popped cycle head. We need to mutate the result of our
1026+ // provisional cache entry in case we did not reach a fixpoint.
1027+ match rebase_reason {
1028+ // If the cycle head does not actually depend on itself, then
1029+ // the provisional result used by the provisional cache entry
1030+ // is not actually equal to the final provisional result. We
1031+ // need to discard the provisional cache entry in this case.
1032+ RebaseReason :: NoCycleUsages => return false ,
1033+ RebaseReason :: Ambiguity => {
1034+ * result = D :: propagate_ambiguity ( cx, input, * result) ;
1035+ }
1036+ RebaseReason :: Overflow => * result = D :: on_fixpoint_overflow ( cx, input) ,
1037+ RebaseReason :: ReachedFixpoint ( None ) => { }
1038+ RebaseReason :: ReachedFixpoint ( Some ( path_kind) ) => {
1039+ if !popped_head. usages . is_single ( path_kind) {
1040+ return false ;
1041+ }
1042+ }
1043+ } ;
1044+ }
9851045
9861046 // We now care about the path from the next highest cycle head to the
9871047 // provisional cache entry.
9881048 * path_from_head = path_from_head. extend ( Self :: cycle_path_kind (
9891049 & self . stack ,
9901050 stack_entry. step_kind_from_parent ,
991- head_index ,
1051+ new_highest_head_index ,
9921052 ) ) ;
993- // Mutate the result of the provisional cache entry in case we did
994- // not reach a fixpoint.
995- * result = mutate_result ( input, * result) ;
1053+
9961054 true
9971055 } ) ;
9981056 !entries. is_empty ( )
@@ -1209,33 +1267,19 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
12091267 /// Whether we've reached a fixpoint when evaluating a cycle head.
12101268 fn reached_fixpoint (
12111269 & mut self ,
1212- cx : X ,
12131270 stack_entry : & StackEntry < X > ,
12141271 usages : HeadUsages ,
12151272 result : X :: Result ,
1216- ) -> bool {
1273+ ) -> Result < Option < PathKind > , ( ) > {
12171274 let provisional_result = stack_entry. provisional_result ;
1218- if usages. is_empty ( ) {
1219- true
1220- } else if let Some ( provisional_result) = provisional_result {
1221- provisional_result == result
1275+ if let Some ( provisional_result) = provisional_result {
1276+ if provisional_result == result { Ok ( None ) } else { Err ( ( ) ) }
1277+ } else if let Some ( path_kind) = D :: is_initial_provisional_result ( result)
1278+ . filter ( |& path_kind| usages. is_single ( path_kind) )
1279+ {
1280+ Ok ( Some ( path_kind) )
12221281 } else {
1223- let check = |k| D :: is_initial_provisional_result ( cx, k, stack_entry. input , result) ;
1224- match usages {
1225- HeadUsages { inductive : _, unknown : 0 , coinductive : 0 , forced_ambiguity : 0 } => {
1226- check ( PathKind :: Inductive )
1227- }
1228- HeadUsages { inductive : 0 , unknown : _, coinductive : 0 , forced_ambiguity : 0 } => {
1229- check ( PathKind :: Unknown )
1230- }
1231- HeadUsages { inductive : 0 , unknown : 0 , coinductive : _, forced_ambiguity : 0 } => {
1232- check ( PathKind :: Coinductive )
1233- }
1234- HeadUsages { inductive : 0 , unknown : 0 , coinductive : 0 , forced_ambiguity : _ } => {
1235- check ( PathKind :: ForcedAmbiguity )
1236- }
1237- _ => false ,
1238- }
1282+ Err ( ( ) )
12391283 }
12401284 }
12411285
@@ -1280,8 +1324,19 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
12801324 // is equal to the provisional result of the previous iteration, or because
12811325 // this was only the head of either coinductive or inductive cycles, and the
12821326 // final result is equal to the initial response for that case.
1283- if self . reached_fixpoint ( cx, & stack_entry, usages, result) {
1284- self . rebase_provisional_cache_entries ( & stack_entry, |_, result| result) ;
1327+ if let Ok ( fixpoint) = self . reached_fixpoint ( & stack_entry, usages, result) {
1328+ self . rebase_provisional_cache_entries (
1329+ cx,
1330+ & stack_entry,
1331+ RebaseReason :: ReachedFixpoint ( fixpoint) ,
1332+ ) ;
1333+ return EvaluationResult :: finalize ( stack_entry, encountered_overflow, result) ;
1334+ } else if usages. is_empty ( ) {
1335+ self . rebase_provisional_cache_entries (
1336+ cx,
1337+ & stack_entry,
1338+ RebaseReason :: NoCycleUsages ,
1339+ ) ;
12851340 return EvaluationResult :: finalize ( stack_entry, encountered_overflow, result) ;
12861341 }
12871342
@@ -1298,9 +1353,7 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
12981353 // we also taint all provisional cache entries which depend on the
12991354 // current goal.
13001355 if D :: is_ambiguous_result ( result) {
1301- self . rebase_provisional_cache_entries ( & stack_entry, |input, _| {
1302- D :: propagate_ambiguity ( cx, input, result)
1303- } ) ;
1356+ self . rebase_provisional_cache_entries ( cx, & stack_entry, RebaseReason :: Ambiguity ) ;
13041357 return EvaluationResult :: finalize ( stack_entry, encountered_overflow, result) ;
13051358 } ;
13061359
@@ -1310,9 +1363,7 @@ impl<D: Delegate<Cx = X>, X: Cx> SearchGraph<D> {
13101363 if i >= D :: FIXPOINT_STEP_LIMIT {
13111364 debug ! ( "canonical cycle overflow" ) ;
13121365 let result = D :: on_fixpoint_overflow ( cx, input) ;
1313- self . rebase_provisional_cache_entries ( & stack_entry, |input, _| {
1314- D :: on_fixpoint_overflow ( cx, input)
1315- } ) ;
1366+ self . rebase_provisional_cache_entries ( cx, & stack_entry, RebaseReason :: Overflow ) ;
13161367 return EvaluationResult :: finalize ( stack_entry, encountered_overflow, result) ;
13171368 }
13181369
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