1010use rustc_data_structures:: base_n;
1111use rustc_data_structures:: fx:: FxHashMap ;
1212use rustc_hir as hir;
13+ use rustc_infer:: traits;
1314use rustc_middle:: ty:: layout:: IntegerExt ;
15+ use rustc_middle:: ty:: TypeVisitableExt ;
1416use rustc_middle:: ty:: {
1517 self , Const , ExistentialPredicate , FloatTy , FnSig , Instance , IntTy , List , Region , RegionKind ,
1618 TermKind , Ty , TyCtxt , UintTy ,
@@ -22,6 +24,7 @@ use rustc_target::abi::call::{Conv, FnAbi, PassMode};
2224use rustc_target:: abi:: Integer ;
2325use rustc_target:: spec:: abi:: Abi ;
2426use std:: fmt:: Write as _;
27+ use std:: iter;
2528
2629use crate :: typeid:: TypeIdOptions ;
2730
@@ -1115,51 +1118,40 @@ pub fn typeid_for_instance<'tcx>(
11151118 instance. args = strip_receiver_auto ( tcx, instance. args )
11161119 }
11171120
1121+ if let Some ( impl_id) = tcx. impl_of_method ( instance. def_id ( ) )
1122+ && let Some ( trait_ref) = tcx. impl_trait_ref ( impl_id)
1123+ {
1124+ // Trait methods will have a Self polymorphic parameter, where the concreteized
1125+ // implementatation will not. We need to walk back to the more general trait method
1126+ let trait_ref = tcx. instantiate_and_normalize_erasing_regions (
1127+ instance. args ,
1128+ ty:: ParamEnv :: reveal_all ( ) ,
1129+ trait_ref,
1130+ ) ;
1131+ let invoke_ty = trait_object_ty ( tcx, ty:: Binder :: dummy ( trait_ref) ) ;
1132+ let method_id = tcx
1133+ . associated_item ( instance. def_id ( ) )
1134+ . trait_item_def_id
1135+ . expect ( "Part of a trait implementation, but not linked to the def_id?" ) ;
1136+ // At the call site, any call to this concrete function through a vtable will be
1137+ // `Virtual(method_id, idx)` with appropriate arguments for the method. Since we have the
1138+ // original method id, and we've recovered the trait arguments, we can make the callee
1139+ // instance we're computing the alias set for match the caller instance.
1140+ //
1141+ // Right now, our code ignores the vtable index everywhere, so we use 0 as a placeholder.
1142+ // If we ever *do* start encoding the vtable index, we will need to generate an alias set
1143+ // based on which vtables we are putting this method into, as there will be more than one
1144+ // index value when supertraits are involved.
1145+ instance. def = ty:: InstanceDef :: Virtual ( method_id, 0 ) ;
1146+ instance. args = tcx. mk_args_trait ( invoke_ty, trait_ref. args . into_iter ( ) . skip ( 1 ) ) ;
1147+ }
1148+
11181149 let fn_abi = tcx
11191150 . fn_abi_of_instance ( tcx. param_env ( instance. def_id ( ) ) . and ( ( instance, ty:: List :: empty ( ) ) ) )
11201151 . unwrap_or_else ( |instance| {
11211152 bug ! ( "typeid_for_instance: couldn't get fn_abi of instance {:?}" , instance)
11221153 } ) ;
11231154
1124- // If this instance is a method and self is a reference, get the impl it belongs to
1125- let impl_def_id = tcx. impl_of_method ( instance. def_id ( ) ) ;
1126- if impl_def_id. is_some ( ) && !fn_abi. args . is_empty ( ) && fn_abi. args [ 0 ] . layout . ty . is_ref ( ) {
1127- // If this impl is not an inherent impl, get the trait it implements
1128- if let Some ( trait_ref) = tcx. impl_trait_ref ( impl_def_id. unwrap ( ) ) {
1129- // Transform the concrete self into a reference to a trait object
1130- let existential_predicate = trait_ref. map_bound ( |trait_ref| {
1131- ty:: ExistentialPredicate :: Trait ( ty:: ExistentialTraitRef :: erase_self_ty (
1132- tcx, trait_ref,
1133- ) )
1134- } ) ;
1135- let existential_predicates = tcx. mk_poly_existential_predicates ( & [ ty:: Binder :: dummy (
1136- existential_predicate. skip_binder ( ) ,
1137- ) ] ) ;
1138- // Is the concrete self mutable?
1139- let self_ty = if fn_abi. args [ 0 ] . layout . ty . is_mutable_ptr ( ) {
1140- Ty :: new_mut_ref (
1141- tcx,
1142- tcx. lifetimes . re_erased ,
1143- Ty :: new_dynamic ( tcx, existential_predicates, tcx. lifetimes . re_erased , ty:: Dyn ) ,
1144- )
1145- } else {
1146- Ty :: new_imm_ref (
1147- tcx,
1148- tcx. lifetimes . re_erased ,
1149- Ty :: new_dynamic ( tcx, existential_predicates, tcx. lifetimes . re_erased , ty:: Dyn ) ,
1150- )
1151- } ;
1152-
1153- // Replace the concrete self in an fn_abi clone by the reference to a trait object
1154- let mut fn_abi = fn_abi. clone ( ) ;
1155- // HACK(rcvalle): It is okay to not replace or update the entire ArgAbi here because the
1156- // other fields are never used.
1157- fn_abi. args [ 0 ] . layout . ty = self_ty;
1158-
1159- return typeid_for_fnabi ( tcx, & fn_abi, options) ;
1160- }
1161- }
1162-
11631155 typeid_for_fnabi ( tcx, fn_abi, options)
11641156}
11651157
@@ -1182,3 +1174,36 @@ fn strip_receiver_auto<'tcx>(
11821174 let new_rcvr = Ty :: new_dynamic ( tcx, filtered_preds, * lifetime, * kind) ;
11831175 tcx. mk_args_trait ( new_rcvr, args. into_iter ( ) . skip ( 1 ) )
11841176}
1177+
1178+ fn trait_object_ty < ' tcx > ( tcx : TyCtxt < ' tcx > , poly_trait_ref : ty:: PolyTraitRef < ' tcx > ) -> Ty < ' tcx > {
1179+ assert ! ( !poly_trait_ref. has_non_region_param( ) ) ;
1180+ let principal_pred = poly_trait_ref. map_bound ( |trait_ref| {
1181+ ty:: ExistentialPredicate :: Trait ( ty:: ExistentialTraitRef :: erase_self_ty ( tcx, trait_ref) )
1182+ } ) ;
1183+ let mut assoc_preds: Vec < _ > = traits:: util:: supertraits ( tcx, poly_trait_ref)
1184+ . flat_map ( |super_poly_trait_ref| {
1185+ tcx. associated_items ( super_poly_trait_ref. def_id ( ) )
1186+ . in_definition_order ( )
1187+ . filter ( |item| item. kind == ty:: AssocKind :: Type )
1188+ . map ( move |assoc_ty| {
1189+ super_poly_trait_ref. map_bound ( |super_trait_ref| {
1190+ let alias_ty = ty:: AliasTy :: new ( tcx, assoc_ty. def_id , super_trait_ref. args ) ;
1191+ let resolved = tcx. normalize_erasing_regions (
1192+ ty:: ParamEnv :: reveal_all ( ) ,
1193+ alias_ty. to_ty ( tcx) ,
1194+ ) ;
1195+ ty:: ExistentialPredicate :: Projection ( ty:: ExistentialProjection {
1196+ def_id : assoc_ty. def_id ,
1197+ args : ty:: ExistentialTraitRef :: erase_self_ty ( tcx, super_trait_ref) . args ,
1198+ term : resolved. into ( ) ,
1199+ } )
1200+ } )
1201+ } )
1202+ } )
1203+ . collect ( ) ;
1204+ assoc_preds. sort_by ( |a, b| a. skip_binder ( ) . stable_cmp ( tcx, & b. skip_binder ( ) ) ) ;
1205+ let preds = tcx. mk_poly_existential_predicates_from_iter (
1206+ iter:: once ( principal_pred) . chain ( assoc_preds. into_iter ( ) ) ,
1207+ ) ;
1208+ Ty :: new_dynamic ( tcx, preds, tcx. lifetimes . re_erased , ty:: Dyn )
1209+ }
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