@@ -119,60 +119,16 @@ pub fn predicates_for_generics<'tcx>(
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/// Determines whether the type `ty` is known to meet `bound` and
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/// returns true if so. Returns false if `ty` either does not meet
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- /// `bound` or is not known to meet bound (note that this is
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- /// conservative towards *no impl*, which is the opposite of the
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- /// `evaluate` methods).
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+ /// `bound` or is not known to meet bound.
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pub fn type_known_to_meet_bound_modulo_regions < ' tcx > (
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infcx : & InferCtxt < ' tcx > ,
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param_env : ty:: ParamEnv < ' tcx > ,
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ty : Ty < ' tcx > ,
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def_id : DefId ,
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) -> bool {
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let trait_ref = ty:: TraitRef :: new ( infcx. tcx , def_id, [ ty] ) ;
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- pred_known_to_hold_modulo_regions ( infcx, param_env, trait_ref)
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- }
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-
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- /// FIXME(@lcnr): this function doesn't seem right and shouldn't exist?
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- ///
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- /// Ping me on zulip if you want to use this method and need help with finding
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- /// an appropriate replacement.
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- #[ instrument( level = "debug" , skip( infcx, param_env, pred) , ret) ]
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- fn pred_known_to_hold_modulo_regions < ' tcx > (
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- infcx : & InferCtxt < ' tcx > ,
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- param_env : ty:: ParamEnv < ' tcx > ,
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- pred : impl ToPredicate < ' tcx > ,
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- ) -> bool {
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- let obligation = Obligation :: new ( infcx. tcx , ObligationCause :: dummy ( ) , param_env, pred) ;
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-
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- let result = infcx. evaluate_obligation_no_overflow ( & obligation) ;
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- debug ! ( ?result) ;
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-
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- if result. must_apply_modulo_regions ( ) {
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- true
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- } else if result. may_apply ( ) {
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- // Sometimes obligations are ambiguous because the recursive evaluator
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- // is not smart enough, so we fall back to fulfillment when we're not certain
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- // that an obligation holds or not. Even still, we must make sure that
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- // the we do no inference in the process of checking this obligation.
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- let goal = infcx. resolve_vars_if_possible ( ( obligation. predicate , obligation. param_env ) ) ;
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- infcx. probe ( |_| {
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- let ocx = ObligationCtxt :: new ( infcx) ;
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- ocx. register_obligation ( obligation) ;
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-
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- let errors = ocx. select_all_or_error ( ) ;
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- match errors. as_slice ( ) {
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- // Only known to hold if we did no inference.
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- [ ] => infcx. shallow_resolve ( goal) == goal,
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-
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- errors => {
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- debug ! ( ?errors) ;
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- false
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- }
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- }
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- } )
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- } else {
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- false
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- }
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+ let obligation = Obligation :: new ( infcx. tcx , ObligationCause :: dummy ( ) , param_env, trait_ref) ;
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+ infcx. predicate_must_hold_modulo_regions ( & obligation)
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}
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#[ instrument( level = "debug" , skip( tcx, elaborated_env) ) ]
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