Rollup merge of #125501 - compiler-errors:opaque-opaque-anon-ct, r=BoxyUwU
Resolve anon const's parent predicates to direct parent instead of opaque's parent
When an anon const is inside of an opaque, #99801 added a hack to resolve the anon const's parent predicates *not* to the opaque's predicates, but to the opaque's *parent's* predicates. This is insufficient when considering nested opaques.
This means that the `predicates_of` an anon const might reference duplicated lifetimes (installed by `compute_bidirectional_outlives_predicates`) when computing known outlives in MIR borrowck, leading to these ICEs:
Fixes #121574
Fixes #118403
~~Instead, we should be using the `OpaqueTypeOrigin` to acquire the owner item (fn/type alias/etc) of the opaque, whose predicates we're fine to mention.~~
~~I think it's a bit sketchy that we're doing this at all, tbh; I think it *should* be fine for the anon const to inherit the predicates of the opaque it's located inside. However, that would also mean that we need to make sure the `generics_of` that anon const line up in the same way.~~
~~None of this is important to solve right now; I just want to fix these ICEs so we can land #125468, which accidentally fixes these issues in a different and unrelated way.~~
edit: We don't need this special case anyways because we install the right parent item in `generics_of` anyways:
213ad10c8f/compiler/rustc_hir_analysis/src/collect/generics_of.rs (L150)
r? `@BoxyUwU`
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commit
104e1a4bf2
@ -461,12 +461,10 @@ pub(super) fn explicit_predicates_of<'tcx>(
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}
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}
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} else {
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if matches!(def_kind, DefKind::AnonConst) && tcx.features().generic_const_exprs {
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let hir_id = tcx.local_def_id_to_hir_id(def_id);
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let parent_def_id = tcx.hir().get_parent_item(hir_id);
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if let Some(defaulted_param_def_id) =
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tcx.hir().opt_const_param_default_param_def_id(hir_id)
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if matches!(def_kind, DefKind::AnonConst)
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&& tcx.features().generic_const_exprs
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&& let Some(defaulted_param_def_id) =
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tcx.hir().opt_const_param_default_param_def_id(tcx.local_def_id_to_hir_id(def_id))
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{
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// In `generics_of` we set the generics' parent to be our parent's parent which means that
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// we lose out on the predicates of our actual parent if we dont return those predicates here.
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@ -480,6 +478,7 @@ pub(super) fn explicit_predicates_of<'tcx>(
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//
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// In the above code we want the anon const to have predicates in its param env for `T: Trait`
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// and we would be calling `explicit_predicates_of(Foo)` here
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let parent_def_id = tcx.local_parent(def_id);
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let parent_preds = tcx.explicit_predicates_of(parent_def_id);
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// If we dont filter out `ConstArgHasType` predicates then every single defaulted const parameter
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@ -512,33 +511,6 @@ pub(super) fn explicit_predicates_of<'tcx>(
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predicates: { tcx.arena.alloc_from_iter(filtered_predicates) },
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};
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}
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let parent_def_kind = tcx.def_kind(parent_def_id);
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if matches!(parent_def_kind, DefKind::OpaqueTy) {
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// In `instantiate_identity` we inherit the predicates of our parent.
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// However, opaque types do not have a parent (see `gather_explicit_predicates_of`), which means
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// that we lose out on the predicates of our actual parent if we dont return those predicates here.
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//
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//
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// fn foo<T: Trait>() -> impl Iterator<Output = Another<{ <T as Trait>::ASSOC }> > { todo!() }
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// ^^^^^^^^^^^^^^^^^^^ the def id we are calling
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// explicit_predicates_of on
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//
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// In the above code we want the anon const to have predicates in its param env for `T: Trait`.
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// However, the anon const cannot inherit predicates from its parent since it's opaque.
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//
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// To fix this, we call `explicit_predicates_of` directly on `foo`, the parent's parent.
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// In the above example this is `foo::{opaque#0}` or `impl Iterator`
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let parent_hir_id = tcx.local_def_id_to_hir_id(parent_def_id.def_id);
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// In the above example this is the function `foo`
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let item_def_id = tcx.hir().get_parent_item(parent_hir_id);
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// In the above code example we would be calling `explicit_predicates_of(foo)` here
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return tcx.explicit_predicates_of(item_def_id);
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}
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}
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gather_explicit_predicates_of(tcx, def_id)
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}
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}
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@ -1,8 +0,0 @@
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//@ known-bug: #118403
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#![feature(generic_const_exprs)]
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pub struct X<const N: usize> {}
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impl<const Z: usize> X<Z> {
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pub fn y<'a, U: 'a>(&'a self) -> impl Iterator<Item = impl Iterator<Item = [u8; Z]> + '_> {
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(0..1).map(move |_| (0..1).map(move |_| loop {}))
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}
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}
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@ -1,8 +0,0 @@
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//@ known-bug: #121574
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#![feature(generic_const_exprs)]
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pub struct DimName<const N: usize> {}
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impl<const Z: usize> X<Z> {
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pub fn y<'a, U: 'a>(&'a self) -> impl Iterator<Item = impl Iterator<Item = [u8; Z]> + '_> {
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"0".as_bytes(move |_| (0..1).map(move |_| loop {}))
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}
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}
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@ -1,6 +0,0 @@
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//@ known-bug: #121574
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#![feature(generic_const_exprs)]
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impl<const Z: usize> X<Z> {
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pub fn y<'a, U: 'a>(&'a self) -> impl Iterator<Item = impl Iterator<Item = [u8; Z]> + '_> {}
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}
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@ -0,0 +1,13 @@
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//@ check-pass
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#![feature(generic_const_exprs)]
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//~^ WARN the feature `generic_const_exprs` is incomplete and may not be safe to use
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pub fn y<'a, U: 'a>() -> impl IntoIterator<Item = impl IntoIterator<Item = [u8; { 1 + 2 }]> + 'a> {
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[[[1, 2, 3]]]
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}
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// Make sure that the `predicates_of` for `{ 1 + 2 }` don't mention the duplicated lifetimes of
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// the *outer* iterator. Whether they should mention the duplicated lifetimes of the *inner*
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// iterator are another question, but not really something we need to answer immediately.
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fn main() {}
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@ -0,0 +1,11 @@
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warning: the feature `generic_const_exprs` is incomplete and may not be safe to use and/or cause compiler crashes
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--> $DIR/double-opaque-parent-predicates.rs:3:12
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LL | #![feature(generic_const_exprs)]
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| ^^^^^^^^^^^^^^^^^^^
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= note: see issue #76560 <https://github.com/rust-lang/rust/issues/76560> for more information
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= note: `#[warn(incomplete_features)]` on by default
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warning: 1 warning emitted
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