nac3core: toplevel cleanup and add list and tuple support
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@ -99,7 +99,6 @@ impl Default for TopLevelComposer {
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impl TopLevelComposer {
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impl TopLevelComposer {
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/// return a composer and things to make a "primitive" symbol resolver, so that the symbol
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/// return a composer and things to make a "primitive" symbol resolver, so that the symbol
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/// resolver can later figure out primitive type definitions when passed a primitive type name
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/// resolver can later figure out primitive type definitions when passed a primitive type name
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// TODO: add list and tuples?
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pub fn new() -> Self {
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pub fn new() -> Self {
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let primitives = Self::make_primitives();
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let primitives = Self::make_primitives();
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@ -397,15 +396,13 @@ impl TopLevelComposer {
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// first, only push direct parent into the list
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// first, only push direct parent into the list
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for (class_def, class_ast) in self.definition_ast_list.iter_mut() {
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for (class_def, class_ast) in self.definition_ast_list.iter_mut() {
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let mut class_def = class_def.write();
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let mut class_def = class_def.write();
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let (class_bases, class_ancestors, class_resolver, class_id, class_type_vars) = {
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let (class_bases, class_ancestors, class_resolver) = {
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if let TopLevelDef::Class { ancestors, resolver, object_id, type_vars, .. } =
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if let TopLevelDef::Class { ancestors, resolver, .. } = class_def.deref_mut() {
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class_def.deref_mut()
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{
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if let Some(ast::Located {
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if let Some(ast::Located {
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node: ast::StmtKind::ClassDef { bases, .. }, ..
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node: ast::StmtKind::ClassDef { bases, .. }, ..
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}) = class_ast
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}) = class_ast
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{
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{
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(bases, ancestors, resolver, *object_id, type_vars)
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(bases, ancestors, resolver)
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} else {
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} else {
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unreachable!("must be both class")
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unreachable!("must be both class")
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}
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}
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@ -453,10 +450,6 @@ impl TopLevelComposer {
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return Err("class base declaration can only be custom class".into());
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return Err("class base declaration can only be custom class".into());
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}
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}
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}
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}
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// TODO: ancestors should include all bases, need to rewrite
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// push self to the ancestors
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// class_ancestors.push(make_self_type_annotation(&temp_def_list, class_id)?)
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}
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}
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// second get all ancestors
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// second get all ancestors
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@ -531,9 +524,6 @@ impl TopLevelComposer {
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)?
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)?
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}
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}
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// base class methods add and check
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// TODO:
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// unification of previously assigned typevar
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// unification of previously assigned typevar
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for (ty, def) in type_var_to_concrete_def {
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for (ty, def) in type_var_to_concrete_def {
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let target_ty =
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let target_ty =
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@ -629,7 +619,6 @@ impl TopLevelComposer {
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&type_annotation,
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&type_annotation,
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)?;
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)?;
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// TODO: default value?
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Ok(FuncArg {
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Ok(FuncArg {
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name: x.node.arg.clone(),
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name: x.node.arg.clone(),
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ty,
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ty,
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@ -867,14 +856,10 @@ impl TopLevelComposer {
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// handle the class type var and the method type var
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// handle the class type var and the method type var
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for type_var_within in type_vars_within {
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for type_var_within in type_vars_within {
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if let TypeAnnotation::TypeVarKind(ty) = type_var_within {
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if let TypeAnnotation::TypeVarKind(ty) = type_var_within {
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if let TypeAnnotation::TypeVarKind(ty) = type_var_within {
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let id = get_var_id(ty, unifier)?;
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let id = get_var_id(ty, unifier)?;
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if let Some(prev_ty) = method_var_map.insert(id, ty) {
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if let Some(prev_ty) = method_var_map.insert(id, ty) {
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// if already in the list, make sure they are the same?
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// if already in the list, make sure they are the same?
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assert_eq!(prev_ty, ty);
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assert_eq!(prev_ty, ty);
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}
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} else {
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unreachable!("must be type var annotation");
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}
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}
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} else {
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} else {
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unreachable!("must be type var annotation");
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unreachable!("must be type var annotation");
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@ -12,6 +12,8 @@ pub enum TypeAnnotation {
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// can only be CustomClassKind
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// can only be CustomClassKind
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VirtualKind(Box<TypeAnnotation>),
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VirtualKind(Box<TypeAnnotation>),
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TypeVarKind(Type),
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TypeVarKind(Type),
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ListKind(Box<TypeAnnotation>),
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TupleKind(Vec<TypeAnnotation>),
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}
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}
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pub fn parse_ast_to_type_annotation_kinds<T>(
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pub fn parse_ast_to_type_annotation_kinds<T>(
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@ -55,7 +57,7 @@ pub fn parse_ast_to_type_annotation_kinds<T>(
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}
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}
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},
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},
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// TODO: subscript or call for virtual?
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// virtual
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ast::ExprKind::Subscript { value, slice, .. }
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ast::ExprKind::Subscript { value, slice, .. }
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if { matches!(&value.node, ast::ExprKind::Name { id, .. } if id == "virtual") } =>
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if { matches!(&value.node, ast::ExprKind::Name { id, .. } if id == "virtual") } =>
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{
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{
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@ -72,9 +74,47 @@ pub fn parse_ast_to_type_annotation_kinds<T>(
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Ok(TypeAnnotation::VirtualKind(def.into()))
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Ok(TypeAnnotation::VirtualKind(def.into()))
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}
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}
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// list
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ast::ExprKind::Subscript { value, slice, .. }
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if { matches!(&value.node, ast::ExprKind::Name { id, .. } if id == "list") } =>
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{
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let def_ann = parse_ast_to_type_annotation_kinds(
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resolver,
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top_level_defs,
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unifier,
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primitives,
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slice.as_ref(),
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)?;
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Ok(TypeAnnotation::ListKind(def_ann.into()))
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}
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// tuple
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ast::ExprKind::Subscript { value, slice, .. }
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if { matches!(&value.node, ast::ExprKind::Name { id, .. } if id == "tuple") } =>
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{
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if let ast::ExprKind::Tuple { elts, .. } = &slice.node {
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let type_annotations = elts
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.iter()
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.map(|e| {
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parse_ast_to_type_annotation_kinds(
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resolver,
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top_level_defs,
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unifier,
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primitives,
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e,
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)
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})
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.collect::<Result<Vec<_>, _>>()?;
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Ok(TypeAnnotation::TupleKind(type_annotations))
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} else {
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Err("Expect multiple elements for tuple".into())
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}
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}
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// custom class
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ast::ExprKind::Subscript { value, slice, .. } => {
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ast::ExprKind::Subscript { value, slice, .. } => {
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if let ast::ExprKind::Name { id, .. } = &value.node {
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if let ast::ExprKind::Name { id, .. } = &value.node {
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if vec!["virtual", "Generic"].contains(&id.as_str()) {
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if vec!["virtual", "Generic", "list", "tuple"].contains(&id.as_str()) {
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return Err("keywords cannot be class name".into());
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return Err("keywords cannot be class name".into());
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}
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}
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let obj_id = resolver
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let obj_id = resolver
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@ -206,6 +246,24 @@ pub fn get_type_from_type_annotation_kinds(
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)?;
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)?;
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Ok(unifier.add_ty(TypeEnum::TVirtual { ty }))
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Ok(unifier.add_ty(TypeEnum::TVirtual { ty }))
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}
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}
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TypeAnnotation::ListKind(ty) => {
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let ty = get_type_from_type_annotation_kinds(
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top_level_defs,
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unifier,
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primitives,
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ty.as_ref(),
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)?;
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Ok(unifier.add_ty(TypeEnum::TList { ty }))
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}
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TypeAnnotation::TupleKind(tys) => {
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let tys = tys
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.iter()
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.map(|x| {
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get_type_from_type_annotation_kinds(top_level_defs, unifier, primitives, x)
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})
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.collect::<Result<Vec<_>, _>>()?;
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Ok(unifier.add_ty(TypeEnum::TTuple { ty: tys }))
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}
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}
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}
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}
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}
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