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synced 2024-11-29 02:03:53 +00:00
Fix handling of the binders in dyn/impl Trait
We need to be more careful now when substituting bound variables (previously, we didn't have anything that used bound variables except Chalk, so it was not a problem). This is obviously quite ad-hoc; Chalk has more infrastructure for handling this in a principled way, which we maybe should adopt.
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@ -224,8 +224,8 @@ impl TypeWalk for ProjectionTy {
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self.parameters.walk(f);
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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self.parameters.walk_mut(f);
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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self.parameters.walk_mut_binders(f, binders);
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}
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}
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@ -291,6 +291,20 @@ pub enum Ty {
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#[derive(Clone, PartialEq, Eq, Debug, Hash)]
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pub struct Substs(Arc<[Ty]>);
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impl TypeWalk for Substs {
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fn walk(&self, f: &mut impl FnMut(&Ty)) {
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for t in self.0.iter() {
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t.walk(f);
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}
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}
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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for t in make_mut_slice(&mut self.0) {
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t.walk_mut_binders(f, binders);
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}
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}
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}
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impl Substs {
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pub fn empty() -> Substs {
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Substs(Arc::new([]))
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@ -304,18 +318,6 @@ impl Substs {
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Substs(self.0[..std::cmp::min(self.0.len(), n)].into())
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}
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pub fn walk(&self, f: &mut impl FnMut(&Ty)) {
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for t in self.0.iter() {
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t.walk(f);
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}
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}
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pub fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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for t in make_mut_slice(&mut self.0) {
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t.walk_mut(f);
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}
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}
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pub fn as_single(&self) -> &Ty {
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if self.0.len() != 1 {
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panic!("expected substs of len 1, got {:?}", self);
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@ -440,8 +442,8 @@ impl TypeWalk for TraitRef {
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self.substs.walk(f);
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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self.substs.walk_mut(f);
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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self.substs.walk_mut_binders(f, binders);
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}
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}
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@ -491,10 +493,12 @@ impl TypeWalk for GenericPredicate {
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}
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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match self {
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GenericPredicate::Implemented(trait_ref) => trait_ref.walk_mut(f),
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GenericPredicate::Projection(projection_pred) => projection_pred.walk_mut(f),
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GenericPredicate::Implemented(trait_ref) => trait_ref.walk_mut_binders(f, binders),
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GenericPredicate::Projection(projection_pred) => {
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projection_pred.walk_mut_binders(f, binders)
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}
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GenericPredicate::Error => {}
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}
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}
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@ -544,9 +548,9 @@ impl TypeWalk for FnSig {
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}
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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for t in make_mut_slice(&mut self.params_and_return) {
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t.walk_mut(f);
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t.walk_mut_binders(f, binders);
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}
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}
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}
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@ -671,7 +675,20 @@ impl Ty {
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/// types, similar to Chalk's `Fold` trait.
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pub trait TypeWalk {
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fn walk(&self, f: &mut impl FnMut(&Ty));
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty));
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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self.walk_mut_binders(&mut |ty, _binders| f(ty), 0);
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}
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/// Walk the type, counting entered binders.
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///
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/// `Ty::Bound` variables use DeBruijn indexing, which means that 0 refers
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/// to the innermost binder, 1 to the next, etc.. So when we want to
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/// substitute a certain bound variable, we can't just walk the whole type
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/// and blindly replace each instance of a certain index; when we 'enter'
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/// things that introduce new bound variables, we have to keep track of
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/// that. Currently, the only thing that introduces bound variables on our
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/// side are `Ty::Dyn` and `Ty::Opaque`, which each introduce a bound
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/// variable for the self type.
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize);
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fn fold(mut self, f: &mut impl FnMut(Ty) -> Ty) -> Self
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where
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@ -700,14 +717,22 @@ pub trait TypeWalk {
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}
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/// Substitutes `Ty::Bound` vars (as opposed to type parameters).
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fn subst_bound_vars(self, substs: &Substs) -> Self
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fn subst_bound_vars(mut self, substs: &Substs) -> Self
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where
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Self: Sized,
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{
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self.fold(&mut |ty| match ty {
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Ty::Bound(idx) => substs.get(idx as usize).cloned().unwrap_or_else(|| Ty::Bound(idx)),
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ty => ty,
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})
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self.walk_mut_binders(
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&mut |ty, binders| match ty {
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&mut Ty::Bound(idx) => {
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if idx as usize >= binders && (idx as usize - binders) < substs.len() {
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*ty = substs.0[idx as usize - binders].clone();
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}
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}
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_ => {}
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},
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0,
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);
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self
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}
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/// Shifts up `Ty::Bound` vars by `n`.
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@ -748,22 +773,22 @@ impl TypeWalk for Ty {
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f(self);
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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match self {
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Ty::Apply(a_ty) => {
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a_ty.parameters.walk_mut(f);
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a_ty.parameters.walk_mut_binders(f, binders);
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}
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Ty::Projection(p_ty) => {
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p_ty.parameters.walk_mut(f);
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p_ty.parameters.walk_mut_binders(f, binders);
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}
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Ty::Dyn(predicates) | Ty::Opaque(predicates) => {
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for p in make_mut_slice(predicates) {
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p.walk_mut(f);
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p.walk_mut_binders(f, binders + 1);
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}
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}
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Ty::Param { .. } | Ty::Bound(_) | Ty::Infer(_) | Ty::Unknown => {}
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}
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f(self);
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f(self, binders);
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}
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}
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@ -134,17 +134,19 @@ where
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}
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impl<T> Canonicalized<T> {
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pub fn decanonicalize_ty(&self, ty: Ty) -> Ty {
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ty.fold(&mut |ty| match ty {
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Ty::Bound(idx) => {
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if (idx as usize) < self.free_vars.len() {
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Ty::Infer(self.free_vars[idx as usize])
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} else {
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Ty::Bound(idx)
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pub fn decanonicalize_ty(&self, mut ty: Ty) -> Ty {
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ty.walk_mut_binders(
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&mut |ty, binders| match ty {
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&mut Ty::Bound(idx) => {
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if idx as usize >= binders && (idx as usize - binders) < self.free_vars.len() {
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*ty = Ty::Infer(self.free_vars[idx as usize - binders]);
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}
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}
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}
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ty => ty,
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})
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_ => {}
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},
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0,
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);
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ty
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}
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pub fn apply_solution(
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@ -4184,6 +4184,49 @@ fn test<T: Trait<Type = u32>>(x: T, y: impl Trait<Type = i64>) {
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);
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}
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#[test]
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fn impl_trait_assoc_binding_projection_bug() {
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let (db, pos) = TestDB::with_position(
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r#"
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//- /main.rs crate:main deps:std
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pub trait Language {
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type Kind;
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}
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pub enum RustLanguage {}
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impl Language for RustLanguage {
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type Kind = SyntaxKind;
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}
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struct SyntaxNode<L> {}
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fn foo() -> impl Iterator<Item = SyntaxNode<RustLanguage>> {}
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trait Clone {
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fn clone(&self) -> Self;
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}
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fn api_walkthrough() {
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for node in foo() {
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node.clone()<|>;
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}
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}
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//- /std.rs crate:std
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#[prelude_import] use iter::*;
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mod iter {
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trait IntoIterator {
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type Item;
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}
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trait Iterator {
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type Item;
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}
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impl<T: Iterator> IntoIterator for T {
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type Item = <T as Iterator>::Item;
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}
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}
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"#,
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);
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assert_eq!("{unknown}", type_at_pos(&db, pos));
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}
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#[test]
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fn projection_eq_within_chalk() {
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// std::env::set_var("CHALK_DEBUG", "1");
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@ -165,9 +165,9 @@ impl TypeWalk for ProjectionPredicate {
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self.ty.walk(f);
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}
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fn walk_mut(&mut self, f: &mut impl FnMut(&mut Ty)) {
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self.projection_ty.walk_mut(f);
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self.ty.walk_mut(f);
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fn walk_mut_binders(&mut self, f: &mut impl FnMut(&mut Ty, usize), binders: usize) {
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self.projection_ty.walk_mut_binders(f, binders);
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self.ty.walk_mut_binders(f, binders);
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}
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}
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@ -188,6 +188,7 @@ pub(crate) fn trait_solve_query(
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}
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let canonical = goal.to_chalk(db).cast();
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// We currently don't deal with universes (I think / hope they're not yet
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// relevant for our use cases?)
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let u_canonical = chalk_ir::UCanonical { canonical, universes: 1 };
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