Rollup merge of #106172 - estebank:suggest-impl-trait, r=compiler-errors

Suggest `impl Iterator` when possible for `_` return type

Address #106096.
This commit is contained in:
Matthias Krüger 2022-12-28 14:40:00 +01:00 committed by GitHub
commit 31f5e753fb
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GPG Key ID: 4AEE18F83AFDEB23
7 changed files with 101 additions and 10 deletions

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@ -24,6 +24,8 @@ use rustc_hir as hir;
use rustc_hir::def_id::{DefId, LocalDefId};
use rustc_hir::intravisit::{self, Visitor};
use rustc_hir::{GenericParamKind, Node};
use rustc_infer::infer::type_variable::{TypeVariableOrigin, TypeVariableOriginKind};
use rustc_infer::infer::TyCtxtInferExt;
use rustc_middle::hir::nested_filter;
use rustc_middle::ty::query::Providers;
use rustc_middle::ty::util::{Discr, IntTypeExt};
@ -31,7 +33,9 @@ use rustc_middle::ty::{self, AdtKind, Const, IsSuggestable, ToPredicate, Ty, TyC
use rustc_span::symbol::{kw, sym, Ident, Symbol};
use rustc_span::Span;
use rustc_target::spec::abi;
use rustc_trait_selection::infer::InferCtxtExt;
use rustc_trait_selection::traits::error_reporting::suggestions::NextTypeParamName;
use rustc_trait_selection::traits::ObligationCtxt;
use std::iter;
mod generics_of;
@ -1224,7 +1228,17 @@ fn infer_return_ty_for_fn_sig<'tcx>(
// to prevent the user from getting a papercut while trying to use the unique closure
// syntax (e.g. `[closure@src/lib.rs:2:5: 2:9]`).
diag.help("consider using an `Fn`, `FnMut`, or `FnOnce` trait bound");
diag.note("for more information on `Fn` traits and closure types, see https://doc.rust-lang.org/book/ch13-01-closures.html");
diag.note(
"for more information on `Fn` traits and closure types, see \
https://doc.rust-lang.org/book/ch13-01-closures.html",
);
} else if let Some(i_ty) = suggest_impl_iterator(tcx, ret_ty, ty.span, hir_id, def_id) {
diag.span_suggestion(
ty.span,
"replace with an appropriate return type",
format!("impl Iterator<Item = {}>", i_ty),
Applicability::MachineApplicable,
);
}
diag.emit();
@ -1242,6 +1256,51 @@ fn infer_return_ty_for_fn_sig<'tcx>(
}
}
fn suggest_impl_iterator<'tcx>(
tcx: TyCtxt<'tcx>,
ret_ty: Ty<'tcx>,
span: Span,
hir_id: hir::HirId,
def_id: LocalDefId,
) -> Option<Ty<'tcx>> {
let Some(iter_trait) = tcx.get_diagnostic_item(sym::Iterator) else { return None; };
let Some(iterator_item) = tcx.get_diagnostic_item(sym::IteratorItem) else { return None; };
if !tcx
.infer_ctxt()
.build()
.type_implements_trait(iter_trait, [ret_ty], tcx.param_env(def_id))
.must_apply_modulo_regions()
{
return None;
}
let infcx = tcx.infer_ctxt().build();
let ocx = ObligationCtxt::new_in_snapshot(&infcx);
// Find the type of `Iterator::Item`.
let origin = TypeVariableOrigin { kind: TypeVariableOriginKind::TypeInference, span };
let ty_var = infcx.next_ty_var(origin);
let projection = ty::Binder::dummy(ty::PredicateKind::Clause(ty::Clause::Projection(
ty::ProjectionPredicate {
projection_ty: tcx.mk_alias_ty(iterator_item, tcx.mk_substs([ret_ty.into()].iter())),
term: ty_var.into(),
},
)));
// Add `<ret_ty as Iterator>::Item = _` obligation.
ocx.register_obligation(crate::traits::Obligation::misc(
tcx,
span,
hir_id,
tcx.param_env(def_id),
projection,
));
if ocx.select_where_possible().is_empty()
&& let item_ty = infcx.resolve_vars_if_possible(ty_var)
&& item_ty.is_suggestable(tcx, false)
{
return Some(item_ty);
}
None
}
fn impl_trait_ref(tcx: TyCtxt<'_>, def_id: DefId) -> Option<ty::TraitRef<'_>> {
let icx = ItemCtxt::new(tcx, def_id);
let item = tcx.hir().expect_item(def_id.expect_local());

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@ -5,6 +5,7 @@ use rustc_hir::intravisit;
use rustc_hir::intravisit::Visitor;
use rustc_hir::{HirId, Node};
use rustc_middle::hir::nested_filter;
use rustc_middle::ty::print::with_forced_trimmed_paths;
use rustc_middle::ty::subst::InternalSubsts;
use rustc_middle::ty::util::IntTypeExt;
use rustc_middle::ty::{self, DefIdTree, Ty, TyCtxt, TypeFolder, TypeSuperFoldable, TypeVisitable};
@ -907,10 +908,10 @@ fn infer_placeholder_type<'a>(
Applicability::MachineApplicable,
);
} else {
err.span_note(
with_forced_trimmed_paths!(err.span_note(
tcx.hir().body(body_id).value.span,
&format!("however, the inferred type `{}` cannot be named", ty),
);
&format!("however, the inferred type `{ty}` cannot be named"),
));
}
}
@ -931,10 +932,10 @@ fn infer_placeholder_type<'a>(
Applicability::MaybeIncorrect,
);
} else {
diag.span_note(
with_forced_trimmed_paths!(diag.span_note(
tcx.hir().body(body_id).value.span,
&format!("however, the inferred type `{}` cannot be named", ty),
);
&format!("however, the inferred type `{ty}` cannot be named"),
));
}
}

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@ -213,6 +213,7 @@ symbols! {
Is,
ItemContext,
Iterator,
IteratorItem,
Layout,
Left,
LinkedList,

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@ -66,6 +66,7 @@ fn _assert_is_object_safe(_: &dyn Iterator<Item = ()>) {}
#[must_use = "iterators are lazy and do nothing unless consumed"]
pub trait Iterator {
/// The type of the elements being iterated over.
#[rustc_diagnostic_item = "IteratorItem"]
#[stable(feature = "rust1", since = "1.0.0")]
type Item;

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@ -19,7 +19,7 @@ error[E0121]: the placeholder `_` is not allowed within types on item signatures
LL | const C: _ = || 42;
| ^ not allowed in type signatures
|
note: however, the inferred type `[closure@$DIR/unnamable-types.rs:17:14: 17:16]` cannot be named
note: however, the inferred type `[closure@unnamable-types.rs:17:14]` cannot be named
--> $DIR/unnamable-types.rs:17:14
|
LL | const C: _ = || 42;
@ -31,7 +31,7 @@ error: missing type for `const` item
LL | const D = S { t: { let i = 0; move || -> i32 { i } } };
| ^
|
note: however, the inferred type `S<[closure@$DIR/unnamable-types.rs:23:31: 23:45]>` cannot be named
note: however, the inferred type `S<[closure@unnamable-types.rs:23:31]>` cannot be named
--> $DIR/unnamable-types.rs:23:11
|
LL | const D = S { t: { let i = 0; move || -> i32 { i } } };

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@ -220,3 +220,11 @@ fn value() -> Option<&'static _> {
const _: Option<_> = map(value);
//~^ ERROR the placeholder `_` is not allowed within types on item signatures for constants
fn evens_squared(n: usize) -> _ {
//~^ ERROR the placeholder `_` is not allowed within types on item signatures for return types
(1..n).filter(|x| x % 2 == 0).map(|x| x * x)
}
const _: _ = (1..10).filter(|x| x % 2 == 0).map(|x| x * x);
//~^ ERROR the placeholder `_` is not allowed within types on item signatures for constants

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@ -428,6 +428,27 @@ LL | const _: Option<_> = map(value);
| not allowed in type signatures
| help: replace with the correct type: `Option<u8>`
error[E0121]: the placeholder `_` is not allowed within types on item signatures for return types
--> $DIR/typeck_type_placeholder_item.rs:224:31
|
LL | fn evens_squared(n: usize) -> _ {
| ^
| |
| not allowed in type signatures
| help: replace with an appropriate return type: `impl Iterator<Item = usize>`
error[E0121]: the placeholder `_` is not allowed within types on item signatures for constants
--> $DIR/typeck_type_placeholder_item.rs:229:10
|
LL | const _: _ = (1..10).filter(|x| x % 2 == 0).map(|x| x * x);
| ^ not allowed in type signatures
|
note: however, the inferred type `Map<Filter<Range<i32>, [closure@typeck_type_placeholder_item.rs:229:29]>, [closure@typeck_type_placeholder_item.rs:229:49]>` cannot be named
--> $DIR/typeck_type_placeholder_item.rs:229:14
|
LL | const _: _ = (1..10).filter(|x| x % 2 == 0).map(|x| x * x);
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
error[E0121]: the placeholder `_` is not allowed within types on item signatures for functions
--> $DIR/typeck_type_placeholder_item.rs:140:31
|
@ -636,7 +657,7 @@ LL | const D: _ = 42;
| not allowed in type signatures
| help: replace with the correct type: `i32`
error: aborting due to 69 previous errors
error: aborting due to 71 previous errors
Some errors have detailed explanations: E0121, E0282, E0403.
For more information about an error, try `rustc --explain E0121`.