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https://github.com/rust-lang/rust-analyzer
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Use Chalk built-in representation for array types
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parent
2a4166501d
commit
94f5f69ff4
1 changed files with 36 additions and 7 deletions
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@ -29,6 +29,7 @@ impl ToChalk for Ty {
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match self {
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Ty::Apply(apply_ty) => match apply_ty.ctor {
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TypeCtor::Ref(m) => ref_to_chalk(db, m, apply_ty.parameters),
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TypeCtor::Array => array_to_chalk(db, apply_ty.parameters),
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TypeCtor::FnPtr { num_args: _ } => {
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let substitution = apply_ty.parameters.to_chalk(db).shifted_in(&Interner);
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chalk_ir::TyData::Function(chalk_ir::Fn { num_binders: 0, substitution })
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@ -67,7 +68,7 @@ impl ToChalk for Ty {
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);
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let bounded_ty = chalk_ir::DynTy {
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bounds: make_binders(where_clauses, 1),
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lifetime: LIFETIME_PLACEHOLDER.to_lifetime(&Interner),
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lifetime: FAKE_PLACEHOLDER.to_lifetime(&Interner),
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};
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chalk_ir::TyData::Dyn(bounded_ty).intern(&Interner)
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}
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@ -92,6 +93,7 @@ impl ToChalk for Ty {
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chalk_ir::TyData::Apply(apply_ty) => match apply_ty.name {
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TypeName::Error => Ty::Unknown,
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TypeName::Ref(m) => ref_from_chalk(db, m, apply_ty.substitution),
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TypeName::Array => array_from_chalk(db, apply_ty.substitution),
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_ => {
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let ctor = from_chalk(db, apply_ty.name);
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let parameters = from_chalk(db, apply_ty.substitution);
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@ -138,7 +140,7 @@ impl ToChalk for Ty {
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}
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}
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const LIFETIME_PLACEHOLDER: PlaceholderIndex =
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const FAKE_PLACEHOLDER: PlaceholderIndex =
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PlaceholderIndex { ui: UniverseIndex::ROOT, idx: usize::MAX };
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/// We currently don't model lifetimes, but Chalk does. So, we have to insert a
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@ -149,7 +151,7 @@ fn ref_to_chalk(
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subst: Substs,
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) -> chalk_ir::Ty<Interner> {
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let arg = subst[0].clone().to_chalk(db);
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let lifetime = LIFETIME_PLACEHOLDER.to_lifetime(&Interner);
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let lifetime = FAKE_PLACEHOLDER.to_lifetime(&Interner);
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chalk_ir::ApplicationTy {
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name: TypeName::Ref(mutability.to_chalk(db)),
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substitution: chalk_ir::Substitution::from_iter(
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@ -173,6 +175,35 @@ fn ref_from_chalk(
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Ty::apply(TypeCtor::Ref(from_chalk(db, mutability)), Substs(tys))
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}
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/// We currently don't model constants, but Chalk does. So, we have to insert a
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/// fake constant here, because Chalks built-in logic may expect it to be there.
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fn array_to_chalk(db: &dyn HirDatabase, subst: Substs) -> chalk_ir::Ty<Interner> {
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let arg = subst[0].clone().to_chalk(db);
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let usize_ty = chalk_ir::ApplicationTy {
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name: TypeName::Scalar(Scalar::Uint(chalk_ir::UintTy::Usize)),
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substitution: chalk_ir::Substitution::empty(&Interner),
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}
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.intern(&Interner);
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let const_ = FAKE_PLACEHOLDER.to_const(&Interner, usize_ty);
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chalk_ir::ApplicationTy {
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name: TypeName::Array,
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substitution: chalk_ir::Substitution::from_iter(
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&Interner,
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vec![arg.cast(&Interner), const_.cast(&Interner)],
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),
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}
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.intern(&Interner)
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}
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/// Here we remove the const from the type we got from Chalk.
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fn array_from_chalk(db: &dyn HirDatabase, subst: chalk_ir::Substitution<Interner>) -> Ty {
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let tys = subst
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.iter(&Interner)
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.filter_map(|p| Some(from_chalk(db, p.ty(&Interner)?.clone())))
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.collect();
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Ty::apply(TypeCtor::Array, Substs(tys))
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}
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impl ToChalk for Substs {
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type Chalk = chalk_ir::Substitution<Interner>;
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@ -263,6 +294,7 @@ impl ToChalk for TypeCtor {
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TypeCtor::Tuple { cardinality } => TypeName::Tuple(cardinality.into()),
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TypeCtor::RawPtr(mutability) => TypeName::Raw(mutability.to_chalk(db)),
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TypeCtor::Slice => TypeName::Slice,
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TypeCtor::Array => TypeName::Array,
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TypeCtor::Ref(mutability) => TypeName::Ref(mutability.to_chalk(db)),
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TypeCtor::Str => TypeName::Str,
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TypeCtor::FnDef(callable_def) => {
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@ -272,10 +304,7 @@ impl ToChalk for TypeCtor {
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TypeCtor::Never => TypeName::Never,
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// FIXME convert these
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TypeCtor::Adt(_)
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| TypeCtor::Array
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| TypeCtor::FnPtr { .. }
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| TypeCtor::Closure { .. } => {
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TypeCtor::Adt(_) | TypeCtor::FnPtr { .. } | TypeCtor::Closure { .. } => {
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// other TypeCtors get interned and turned into a chalk StructId
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let struct_id = db.intern_type_ctor(self).into();
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TypeName::Adt(struct_id)
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