Rollup merge of #118346 - compiler-errors:deeply-normalize-for-diagnostic, r=lcnr

Add `deeply_normalize_for_diagnostics`, use it in coherence

r? lcnr

Normalize trait refs used for coherence error reporting with `-Ztrait-solver=next-coherence`.

Two things:
1. I said before that we can't add this to `TyErrCtxt` because we compute `OverlapResult`s even if there are no diagnostics being emitted, e.g. for a reservation impl.
2. I didn't want to add this to an `InferCtxtExt` trait because I felt it was unnecessary. I don't particularly care about the API though.
This commit is contained in:
Michael Goulet 2023-12-05 14:52:42 -05:00 committed by GitHub
commit 598ca0ea3f
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6 changed files with 106 additions and 5 deletions

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@ -41,7 +41,9 @@
pub use eval_ctxt::{EvalCtxt, GenerateProofTree, InferCtxtEvalExt, InferCtxtSelectExt};
pub use fulfill::FulfillmentCtxt;
pub(crate) use normalize::{deeply_normalize, deeply_normalize_with_skipped_universes};
pub(crate) use normalize::{
deeply_normalize, deeply_normalize_for_diagnostics, deeply_normalize_with_skipped_universes,
};
#[derive(Debug, Clone, Copy)]
enum SolverMode {

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@ -4,12 +4,13 @@
use rustc_data_structures::stack::ensure_sufficient_stack;
use rustc_infer::infer::at::At;
use rustc_infer::infer::type_variable::{TypeVariableOrigin, TypeVariableOriginKind};
use rustc_infer::infer::InferCtxt;
use rustc_infer::traits::TraitEngineExt;
use rustc_infer::traits::{FulfillmentError, Obligation, TraitEngine};
use rustc_middle::infer::unify_key::{ConstVariableOrigin, ConstVariableOriginKind};
use rustc_middle::traits::Reveal;
use rustc_middle::traits::{ObligationCause, Reveal};
use rustc_middle::ty::{self, AliasTy, Ty, TyCtxt, UniverseIndex};
use rustc_middle::ty::{FallibleTypeFolder, TypeSuperFoldable};
use rustc_middle::ty::{FallibleTypeFolder, TypeFolder, TypeSuperFoldable};
use rustc_middle::ty::{TypeFoldable, TypeVisitableExt};
use super::FulfillmentCtxt;
@ -230,3 +231,42 @@ fn try_fold_const(&mut self, ct: ty::Const<'tcx>) -> Result<ty::Const<'tcx>, Sel
}
}
}
// Deeply normalize a value and return it
pub(crate) fn deeply_normalize_for_diagnostics<'tcx, T: TypeFoldable<TyCtxt<'tcx>>>(
infcx: &InferCtxt<'tcx>,
param_env: ty::ParamEnv<'tcx>,
t: T,
) -> T {
t.fold_with(&mut DeeplyNormalizeForDiagnosticsFolder {
at: infcx.at(&ObligationCause::dummy(), param_env),
})
}
struct DeeplyNormalizeForDiagnosticsFolder<'a, 'tcx> {
at: At<'a, 'tcx>,
}
impl<'tcx> TypeFolder<TyCtxt<'tcx>> for DeeplyNormalizeForDiagnosticsFolder<'_, 'tcx> {
fn interner(&self) -> TyCtxt<'tcx> {
self.at.infcx.tcx
}
fn fold_ty(&mut self, ty: Ty<'tcx>) -> Ty<'tcx> {
deeply_normalize_with_skipped_universes(
self.at,
ty,
vec![None; ty.outer_exclusive_binder().as_usize()],
)
.unwrap_or_else(|_| ty.super_fold_with(self))
}
fn fold_const(&mut self, ct: ty::Const<'tcx>) -> ty::Const<'tcx> {
deeply_normalize_with_skipped_universes(
self.at,
ct,
vec![None; ct.outer_exclusive_binder().as_usize()],
)
.unwrap_or_else(|_| ct.super_fold_with(self))
}
}

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@ -6,8 +6,8 @@
use crate::infer::outlives::env::OutlivesEnvironment;
use crate::infer::InferOk;
use crate::solve::inspect;
use crate::solve::inspect::{InspectGoal, ProofTreeInferCtxtExt, ProofTreeVisitor};
use crate::solve::{deeply_normalize_for_diagnostics, inspect};
use crate::traits::engine::TraitEngineExt;
use crate::traits::query::evaluate_obligation::InferCtxtExt;
use crate::traits::select::{IntercrateAmbiguityCause, TreatInductiveCycleAs};
@ -308,7 +308,13 @@ fn overlap<'tcx>(
.iter()
.any(|c| c.0.involves_placeholders());
let impl_header = selcx.infcx.resolve_vars_if_possible(impl1_header);
let mut impl_header = infcx.resolve_vars_if_possible(impl1_header);
// Deeply normalize the impl header for diagnostics, ignoring any errors if this fails.
if infcx.next_trait_solver() {
impl_header = deeply_normalize_for_diagnostics(&infcx, param_env, impl_header);
}
Some(OverlapResult { impl_header, intercrate_ambiguity_causes, involves_placeholder })
}
@ -1084,6 +1090,10 @@ fn visit_goal(&mut self, goal: &InspectGoal<'_, 'tcx>) -> ControlFlow<Self::Brea
Ok(Ok(())) => warn!("expected an unknowable trait ref: {trait_ref:?}"),
Ok(Err(conflict)) => {
if !trait_ref.references_error() {
// Normalize the trait ref for diagnostics, ignoring any errors if this fails.
let trait_ref =
deeply_normalize_for_diagnostics(infcx, param_env, trait_ref);
let self_ty = trait_ref.self_ty();
let self_ty = self_ty.has_concrete_skeleton().then(|| self_ty);
ambiguity_cause = Some(match conflict {

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@ -0,0 +1,14 @@
error[E0119]: conflicting implementations of trait `MyTrait<_>` for type `(Box<(MyType,)>, _)`
--> $DIR/normalize-for-errors.rs:16:1
|
LL | impl<T: Copy, S: Iterator> MyTrait<S> for (T, S::Item) {}
| ------------------------------------------------------ first implementation here
LL |
LL | impl<S: Iterator> MyTrait<S> for (Box<<(MyType,) as Mirror>::Assoc>, S::Item) {}
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ conflicting implementation for `(Box<(MyType,)>, _)`
|
= note: upstream crates may add a new impl of trait `std::marker::Copy` for type `std::boxed::Box<(MyType,)>` in future versions
error: aborting due to 1 previous error
For more information about this error, try `rustc --explain E0119`.

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@ -0,0 +1,14 @@
error[E0119]: conflicting implementations of trait `MyTrait<_>` for type `(Box<(MyType,)>, <_ as Iterator>::Item)`
--> $DIR/normalize-for-errors.rs:16:1
|
LL | impl<T: Copy, S: Iterator> MyTrait<S> for (T, S::Item) {}
| ------------------------------------------------------ first implementation here
LL |
LL | impl<S: Iterator> MyTrait<S> for (Box<<(MyType,) as Mirror>::Assoc>, S::Item) {}
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ conflicting implementation for `(Box<(MyType,)>, <_ as Iterator>::Item)`
|
= note: upstream crates may add a new impl of trait `std::marker::Copy` for type `std::boxed::Box<(MyType,)>` in future versions
error: aborting due to 1 previous error
For more information about this error, try `rustc --explain E0119`.

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@ -0,0 +1,21 @@
// revisions: current next
//[next] compile-flags: -Ztrait-solver=next
struct MyType;
trait MyTrait<S> {}
trait Mirror {
type Assoc;
}
impl<T> Mirror for T {
type Assoc = T;
}
impl<T: Copy, S: Iterator> MyTrait<S> for (T, S::Item) {}
//~^ NOTE first implementation here
impl<S: Iterator> MyTrait<S> for (Box<<(MyType,) as Mirror>::Assoc>, S::Item) {}
//~^ ERROR conflicting implementations of trait `MyTrait<_>` for type `(Box<(MyType,)>,
//~| NOTE conflicting implementation for `(Box<(MyType,)>,
//~| NOTE upstream crates may add a new impl of trait `std::marker::Copy` for type `std::boxed::Box<(MyType,)>` in future versions
fn main() {}