Check that the types in RPITITs are WF
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@ -1,4 +1,5 @@
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use crate::constrained_generic_params::{identify_constrained_generic_params, Parameter};
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use hir::def::DefKind;
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use rustc_ast as ast;
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use rustc_data_structures::fx::{FxHashMap, FxHashSet};
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use rustc_errors::{pluralize, struct_span_err, Applicability, DiagnosticBuilder, ErrorGuaranteed};
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@ -1530,6 +1531,49 @@ fn check_fn_or_method<'tcx>(
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);
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check_where_clauses(wfcx, span, def_id);
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check_return_position_impl_trait_in_trait_bounds(
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tcx,
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wfcx,
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def_id,
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sig.output(),
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hir_decl.output.span(),
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);
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}
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/// Basically `check_associated_type_bounds`, but separated for now and should be
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/// deduplicated when RPITITs get lowered into real associated items.
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fn check_return_position_impl_trait_in_trait_bounds<'tcx>(
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tcx: TyCtxt<'tcx>,
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wfcx: &WfCheckingCtxt<'_, 'tcx>,
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fn_def_id: LocalDefId,
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fn_output: Ty<'tcx>,
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span: Span,
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) {
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if let Some(assoc_item) = tcx.opt_associated_item(fn_def_id.to_def_id())
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&& assoc_item.container == ty::AssocItemContainer::TraitContainer
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{
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for arg in fn_output.walk() {
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if let ty::GenericArgKind::Type(ty) = arg.unpack()
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&& let ty::Projection(proj) = ty.kind()
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&& tcx.def_kind(proj.item_def_id) == DefKind::ImplTraitPlaceholder
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&& tcx.impl_trait_in_trait_parent(proj.item_def_id) == fn_def_id.to_def_id()
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{
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let bounds = wfcx.tcx().explicit_item_bounds(proj.item_def_id);
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let wf_obligations = bounds.iter().flat_map(|&(bound, bound_span)| {
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let normalized_bound = wfcx.normalize(span, None, bound);
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traits::wf::predicate_obligations(
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wfcx.infcx,
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wfcx.param_env,
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wfcx.body_id,
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normalized_bound,
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bound_span,
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)
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});
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wfcx.register_obligations(wf_obligations);
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}
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}
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}
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}
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const HELP_FOR_SELF_TYPE: &str = "consider changing to `self`, `&self`, `&mut self`, `self: Box<Self>`, \
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16
src/test/ui/impl-trait/in-trait/wf-bounds.rs
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src/test/ui/impl-trait/in-trait/wf-bounds.rs
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@ -0,0 +1,16 @@
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// issue #101663
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#![feature(return_position_impl_trait_in_trait)]
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#![allow(incomplete_features)]
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trait Wf<T> {}
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trait Uwu {
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fn nya() -> impl Wf<Vec<[u8]>>;
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//~^ ERROR the size for values of type `[u8]` cannot be known at compilation time
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fn nya2() -> impl Wf<[u8]>;
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//~^ ERROR the size for values of type `[u8]` cannot be known at compilation time
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}
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fn main() {}
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src/test/ui/impl-trait/in-trait/wf-bounds.stderr
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src/test/ui/impl-trait/in-trait/wf-bounds.stderr
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error[E0277]: the size for values of type `[u8]` cannot be known at compilation time
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--> $DIR/wf-bounds.rs:9:22
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LL | fn nya() -> impl Wf<Vec<[u8]>>;
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| ^^^^^^^^^^^^^ doesn't have a size known at compile-time
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= help: the trait `Sized` is not implemented for `[u8]`
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note: required by a bound in `Vec`
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--> $SRC_DIR/alloc/src/vec/mod.rs:LL:COL
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LL | pub struct Vec<T, #[unstable(feature = "allocator_api", issue = "32838")] A: Allocator = Global> {
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| ^ required by this bound in `Vec`
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error[E0277]: the size for values of type `[u8]` cannot be known at compilation time
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--> $DIR/wf-bounds.rs:12:23
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LL | fn nya2() -> impl Wf<[u8]>;
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| ^^^^^^^^ doesn't have a size known at compile-time
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= help: the trait `Sized` is not implemented for `[u8]`
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note: required by a bound in `Wf`
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--> $DIR/wf-bounds.rs:6:10
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LL | trait Wf<T> {}
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| ^ required by this bound in `Wf`
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help: consider relaxing the implicit `Sized` restriction
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LL | trait Wf<T: ?Sized> {}
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| ++++++++
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error: aborting due to 2 previous errors
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For more information about this error, try `rustc --explain E0277`.
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