parent
6c470a557a
commit
5fdb648fc3
@ -157,18 +157,10 @@ fn fully_perform(
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}
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let mut region_constraints = QueryRegionConstraints::default();
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let (output, error_info, mut obligations) =
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Q::fully_perform_into(self, infcx, &mut region_constraints)
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.map_err(|_| {
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infcx.tcx.sess.span_delayed_bug(span, format!("error performing {self:?}"))
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})
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.and_then(|(output, error_info, obligations, certainty)| match certainty {
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Certainty::Proven => Ok((output, error_info, obligations)),
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Certainty::Ambiguous => Err(infcx
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.tcx
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.sess
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.span_delayed_bug(span, format!("ambiguity performing {self:?}"))),
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})?;
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let (output, error_info, mut obligations, _) =
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Q::fully_perform_into(self, infcx, &mut region_constraints).map_err(|_| {
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infcx.tcx.sess.span_delayed_bug(span, format!("error performing {self:?}"))
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})?;
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// Typically, instantiating NLL query results does not
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// create obligations. However, in some cases there
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24
tests/ui/wf/unnormalized-projection-guides-inference.rs
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24
tests/ui/wf/unnormalized-projection-guides-inference.rs
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@ -0,0 +1,24 @@
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// The WF requirements of the *unnormalized* form of type annotations
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// can guide inference.
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// check-pass
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pub trait EqualTo {
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type Ty;
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}
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impl<X> EqualTo for X {
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type Ty = X;
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}
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trait MyTrait<U: EqualTo<Ty = Self>> {
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type Out;
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}
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impl<T, U: EqualTo<Ty = T>> MyTrait<U> for T {
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type Out = ();
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}
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fn main() {
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let _: <_ as MyTrait<u8>>::Out;
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// We shoud be able to infer a value for the inference variable above.
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// The WF of the unnormalized projection requires `u8: EqualTo<Ty = _>`,
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// which is sufficient to guide inference.
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}
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