Add better diagnostic for missing where clause

Previously, it's not clear what exactly should be added in the suggested where clause,
so this adds an example to demonstrate.
This commit is contained in:
kadmin 2021-01-30 03:45:18 +00:00
parent 04caa632dd
commit 65256717f2
7 changed files with 93 additions and 18 deletions

View file

@ -16,8 +16,7 @@ use rustc_infer::infer::InferCtxt;
use rustc_middle::mir::abstract_const::{Node, NodeId}; use rustc_middle::mir::abstract_const::{Node, NodeId};
use rustc_middle::mir::interpret::ErrorHandled; use rustc_middle::mir::interpret::ErrorHandled;
use rustc_middle::mir::{self, Rvalue, StatementKind, TerminatorKind}; use rustc_middle::mir::{self, Rvalue, StatementKind, TerminatorKind};
use rustc_middle::ty::subst::Subst; use rustc_middle::ty::subst::{Subst, SubstsRef};
use rustc_middle::ty::subst::SubstsRef;
use rustc_middle::ty::{self, TyCtxt, TypeFoldable}; use rustc_middle::ty::{self, TyCtxt, TypeFoldable};
use rustc_session::lint; use rustc_session::lint;
use rustc_span::def_id::{DefId, LocalDefId}; use rustc_span::def_id::{DefId, LocalDefId};
@ -43,10 +42,6 @@ pub fn is_const_evaluatable<'cx, 'tcx>(
for pred in param_env.caller_bounds() { for pred in param_env.caller_bounds() {
match pred.kind().skip_binder() { match pred.kind().skip_binder() {
ty::PredicateKind::ConstEvaluatable(b_def, b_substs) => { ty::PredicateKind::ConstEvaluatable(b_def, b_substs) => {
debug!(
"is_const_evaluatable: caller_bound={:?}, {:?}",
b_def, b_substs
);
if b_def == def && b_substs == substs { if b_def == def && b_substs == substs {
debug!("is_const_evaluatable: caller_bound ~~> ok"); debug!("is_const_evaluatable: caller_bound ~~> ok");
return Ok(()); return Ok(());
@ -100,15 +95,24 @@ pub fn is_const_evaluatable<'cx, 'tcx>(
} }
FailureKind::MentionsParam => { FailureKind::MentionsParam => {
// FIXME(const_evaluatable_checked): Better error message. // FIXME(const_evaluatable_checked): Better error message.
infcx let mut err =
.tcx infcx.tcx.sess.struct_span_err(span, "unconstrained generic constant");
.sess let const_span = tcx.def_span(def.did);
.struct_span_err(span, "unconstrained generic constant") // FIXME(const_evaluatable_checked): Update this suggestion once
.span_help( // explicit const evaluatable bounds are implemented.
if let Ok(snippet) = infcx.tcx.sess.source_map().span_to_snippet(const_span)
{
err.span_help(
tcx.def_span(def.did), tcx.def_span(def.did),
&format!("try adding a `where` bound using this expression: where [u8; {}]: Sized", snippet),
);
} else {
err.span_help(
const_span,
"consider adding a `where` bound for this expression", "consider adding a `where` bound for this expression",
) );
.emit(); }
err.emit();
return Err(ErrorHandled::Reported(ErrorReported)); return Err(ErrorHandled::Reported(ErrorReported));
} }
FailureKind::Concrete => { FailureKind::Concrete => {

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@ -4,7 +4,7 @@ error: unconstrained generic constant
LL | let _ = const_evaluatable_lib::test1::<T>(); LL | let _ = const_evaluatable_lib::test1::<T>();
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ | ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
| |
help: consider adding a `where` bound for this expression help: try adding a `where` bound using this expression: where [u8; std::mem::size_of::<T>() - 1]: Sized
--> $DIR/auxiliary/const_evaluatable_lib.rs:6:10 --> $DIR/auxiliary/const_evaluatable_lib.rs:6:10
| |
LL | [u8; std::mem::size_of::<T>() - 1]: Sized, LL | [u8; std::mem::size_of::<T>() - 1]: Sized,
@ -16,7 +16,7 @@ error: unconstrained generic constant
LL | let _ = const_evaluatable_lib::test1::<T>(); LL | let _ = const_evaluatable_lib::test1::<T>();
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ | ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
| |
help: consider adding a `where` bound for this expression help: try adding a `where` bound using this expression: where [u8; std::mem::size_of::<T>() - 1]: Sized
--> $DIR/auxiliary/const_evaluatable_lib.rs:4:27 --> $DIR/auxiliary/const_evaluatable_lib.rs:4:27
| |
LL | pub fn test1<T>() -> [u8; std::mem::size_of::<T>() - 1] LL | pub fn test1<T>() -> [u8; std::mem::size_of::<T>() - 1]
@ -28,7 +28,7 @@ error: unconstrained generic constant
LL | let _ = const_evaluatable_lib::test1::<T>(); LL | let _ = const_evaluatable_lib::test1::<T>();
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ | ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
| |
help: consider adding a `where` bound for this expression help: try adding a `where` bound using this expression: where [u8; std::mem::size_of::<T>() - 1]: Sized
--> $DIR/auxiliary/const_evaluatable_lib.rs:6:10 --> $DIR/auxiliary/const_evaluatable_lib.rs:6:10
| |
LL | [u8; std::mem::size_of::<T>() - 1]: Sized, LL | [u8; std::mem::size_of::<T>() - 1]: Sized,
@ -40,7 +40,7 @@ error: unconstrained generic constant
LL | let _ = const_evaluatable_lib::test1::<T>(); LL | let _ = const_evaluatable_lib::test1::<T>();
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ | ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
| |
help: consider adding a `where` bound for this expression help: try adding a `where` bound using this expression: where [u8; std::mem::size_of::<T>() - 1]: Sized
--> $DIR/auxiliary/const_evaluatable_lib.rs:4:27 --> $DIR/auxiliary/const_evaluatable_lib.rs:4:27
| |
LL | pub fn test1<T>() -> [u8; std::mem::size_of::<T>() - 1] LL | pub fn test1<T>() -> [u8; std::mem::size_of::<T>() - 1]

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@ -4,7 +4,7 @@ error: unconstrained generic constant
LL | [0; size_of::<Foo<T>>()] LL | [0; size_of::<Foo<T>>()]
| ^^^^^^^^^^^^^^^^^^^ | ^^^^^^^^^^^^^^^^^^^
| |
help: consider adding a `where` bound for this expression help: try adding a `where` bound using this expression: where [u8; size_of::<Foo<T>>()]: Sized
--> $DIR/different-fn.rs:10:9 --> $DIR/different-fn.rs:10:9
| |
LL | [0; size_of::<Foo<T>>()] LL | [0; size_of::<Foo<T>>()]

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@ -0,0 +1,14 @@
#![crate_type = "lib"]
#![feature(const_generics, const_evaluatable_checked)]
#![allow(incomplete_features)]
const fn complex_maths<T>(n : usize) -> usize {
2 * n + 1
}
struct Example<T, const N: usize> {
a: [f32; N],
b: [f32; complex_maths::<T>(N)],
//~^ ERROR unconstrained
c: T,
}

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@ -0,0 +1,14 @@
error: unconstrained generic constant
--> $DIR/needs_where_clause.rs:11:6
|
LL | b: [f32; complex_maths::<T>(N)],
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^
|
help: try adding a `where` bound using this expression: where [u8; complex_maths::<T>(N)]: Sized
--> $DIR/needs_where_clause.rs:11:12
|
LL | b: [f32; complex_maths::<T>(N)],
| ^^^^^^^^^^^^^^^^^^^^^
error: aborting due to previous error

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@ -0,0 +1,29 @@
#![feature(const_generics, const_evaluatable_checked)]
#![allow(incomplete_features, unused)]
const fn complex_maths(n : usize) -> usize {
2 * n + 1
}
pub struct Example<const N: usize> {
a: [f32; N],
b: [f32; complex_maths(N)],
//~^ ERROR unconstrained generic
}
impl<const N: usize> Example<N> {
pub fn new() -> Self {
Self {
a: [0.; N],
b: [0.; complex_maths(N)],
}
}
}
impl Example<2> {
pub fn sum(&self) -> f32 {
self.a.iter().sum::<f32>() + self.b.iter().sum::<f32>()
}
}
fn main() {}

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@ -0,0 +1,14 @@
error: unconstrained generic constant
--> $DIR/no_where_clause.rs:10:6
|
LL | b: [f32; complex_maths(N)],
| ^^^^^^^^^^^^^^^^^^^^^^^
|
help: try adding a `where` bound using this expression: where [u8; complex_maths(N)]: Sized
--> $DIR/no_where_clause.rs:10:12
|
LL | b: [f32; complex_maths(N)],
| ^^^^^^^^^^^^^^^^
error: aborting due to previous error