mirror of
https://github.com/rust-lang/rust-analyzer
synced 2024-12-25 12:33:33 +00:00
Merge #5613
5613: Use ty to access most TypeRefs r=matklad a=matklad
bors r+
🤖
Co-authored-by: Aleksey Kladov <aleksey.kladov@gmail.com>
This commit is contained in:
commit
239dd506f6
11 changed files with 39 additions and 41 deletions
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@ -22,7 +22,7 @@ pub(crate) fn change_return_type_to_result(acc: &mut Assists, ctx: &AssistContex
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// FIXME: extend to lambdas as well
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let fn_def = ret_type.syntax().parent().and_then(ast::Fn::cast)?;
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let type_ref = &ret_type.type_ref()?;
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let type_ref = &ret_type.ty()?;
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let ret_type_str = type_ref.syntax().text().to_string();
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let first_part_ret_type = ret_type_str.splitn(2, '<').next();
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if let Some(ret_type_first_part) = first_part_ret_type {
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@ -32,7 +32,7 @@ pub(crate) fn generate_from_impl_for_enum(acc: &mut Assists, ctx: &AssistContext
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if field_list.fields().count() != 1 {
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return None;
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}
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let field_type = field_list.fields().next()?.type_ref()?;
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let field_type = field_list.fields().next()?.ty()?;
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let path = match field_type {
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ast::TypeRef::PathType(it) => it,
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_ => return None,
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@ -234,7 +234,7 @@ fn lower_struct(
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|| Either::Left(fd.clone()),
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|| FieldData {
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name: Name::new_tuple_field(i),
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type_ref: TypeRef::from_ast_opt(&ctx, fd.type_ref()),
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type_ref: TypeRef::from_ast_opt(&ctx, fd.ty()),
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visibility: RawVisibility::from_ast(db, ast.with_value(fd.visibility())),
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},
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);
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@ -432,7 +432,7 @@ impl ExprCollector<'_> {
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}
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ast::Expr::CastExpr(e) => {
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let expr = self.collect_expr_opt(e.expr());
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let type_ref = TypeRef::from_ast_opt(&self.ctx(), e.type_ref());
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let type_ref = TypeRef::from_ast_opt(&self.ctx(), e.ty());
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self.alloc_expr(Expr::Cast { expr, type_ref }, syntax_ptr)
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}
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ast::Expr::RefExpr(e) => {
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@ -471,10 +471,8 @@ impl ExprCollector<'_> {
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arg_types.push(type_ref);
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}
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}
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let ret_type = e
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.ret_type()
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.and_then(|r| r.type_ref())
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.map(|it| TypeRef::from_ast(&self.ctx(), it));
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let ret_type =
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e.ret_type().and_then(|r| r.ty()).map(|it| TypeRef::from_ast(&self.ctx(), it));
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let body = self.collect_expr_opt(e.body());
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self.alloc_expr(Expr::Lambda { args, arg_types, ret_type, body }, syntax_ptr)
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}
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@ -228,7 +228,7 @@ impl Ctx {
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fn lower_tuple_field(&mut self, idx: usize, field: &ast::TupleField) -> Field {
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let name = Name::new_tuple_field(idx);
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let visibility = self.lower_visibility(field);
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let type_ref = self.lower_type_ref_opt(field.type_ref());
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let type_ref = self.lower_type_ref_opt(field.ty());
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let res = Field { name, type_ref, visibility };
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res
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}
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@ -317,7 +317,7 @@ impl Ctx {
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}
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}
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let ret_type = match func.ret_type().and_then(|rt| rt.type_ref()) {
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let ret_type = match func.ret_type().and_then(|rt| rt.ty()) {
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Some(type_ref) => TypeRef::from_ast(&self.body_ctx, type_ref),
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_ => TypeRef::unit(),
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};
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@ -352,7 +352,7 @@ impl Ctx {
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type_alias: &ast::TypeAlias,
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) -> Option<FileItemTreeId<TypeAlias>> {
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let name = type_alias.name()?.as_name();
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let type_ref = type_alias.type_ref().map(|it| self.lower_type_ref(&it));
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let type_ref = type_alias.ty().map(|it| self.lower_type_ref(&it));
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let visibility = self.lower_visibility(type_alias);
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let bounds = self.lower_type_bounds(type_alias);
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let generic_params = self.lower_generic_params(GenericsOwner::TypeAlias, type_alias);
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@ -196,7 +196,7 @@ fn lower_generic_args_from_fn_path(
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args.push(arg);
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}
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if let Some(ret_type) = ret_type {
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let type_ref = TypeRef::from_ast_opt(&ctx, ret_type.type_ref());
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let type_ref = TypeRef::from_ast_opt(&ctx, ret_type.ty());
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bindings.push(AssociatedTypeBinding {
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name: name![Output],
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type_ref: Some(type_ref),
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@ -82,7 +82,7 @@ impl TypeRef {
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/// Converts an `ast::TypeRef` to a `hir::TypeRef`.
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pub(crate) fn from_ast(ctx: &LowerCtx, node: ast::TypeRef) -> Self {
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match node {
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ast::TypeRef::ParenType(inner) => TypeRef::from_ast_opt(&ctx, inner.type_ref()),
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ast::TypeRef::ParenType(inner) => TypeRef::from_ast_opt(&ctx, inner.ty()),
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ast::TypeRef::TupleType(inner) => {
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TypeRef::Tuple(inner.fields().map(|it| TypeRef::from_ast(ctx, it)).collect())
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}
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@ -96,18 +96,18 @@ impl TypeRef {
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.unwrap_or(TypeRef::Error)
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}
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ast::TypeRef::PointerType(inner) => {
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let inner_ty = TypeRef::from_ast_opt(&ctx, inner.type_ref());
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let inner_ty = TypeRef::from_ast_opt(&ctx, inner.ty());
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let mutability = Mutability::from_mutable(inner.mut_token().is_some());
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TypeRef::RawPtr(Box::new(inner_ty), mutability)
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}
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ast::TypeRef::ArrayType(inner) => {
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TypeRef::Array(Box::new(TypeRef::from_ast_opt(&ctx, inner.type_ref())))
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TypeRef::Array(Box::new(TypeRef::from_ast_opt(&ctx, inner.ty())))
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}
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ast::TypeRef::SliceType(inner) => {
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TypeRef::Slice(Box::new(TypeRef::from_ast_opt(&ctx, inner.type_ref())))
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TypeRef::Slice(Box::new(TypeRef::from_ast_opt(&ctx, inner.ty())))
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}
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ast::TypeRef::ReferenceType(inner) => {
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let inner_ty = TypeRef::from_ast_opt(&ctx, inner.type_ref());
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let inner_ty = TypeRef::from_ast_opt(&ctx, inner.ty());
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let mutability = Mutability::from_mutable(inner.mut_token().is_some());
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TypeRef::Reference(Box::new(inner_ty), mutability)
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}
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@ -115,7 +115,7 @@ impl TypeRef {
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ast::TypeRef::FnPointerType(inner) => {
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let ret_ty = inner
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.ret_type()
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.and_then(|rt| rt.type_ref())
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.and_then(|rt| rt.ty())
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.map(|it| TypeRef::from_ast(ctx, it))
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.unwrap_or_else(|| TypeRef::Tuple(Vec::new()));
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let mut is_varargs = false;
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@ -132,7 +132,7 @@ impl TypeRef {
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TypeRef::Fn(params, is_varargs)
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}
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// for types are close enough for our purposes to the inner type for now...
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ast::TypeRef::ForType(inner) => TypeRef::from_ast_opt(&ctx, inner.type_ref()),
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ast::TypeRef::ForType(inner) => TypeRef::from_ast_opt(&ctx, inner.ty()),
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ast::TypeRef::ImplTraitType(inner) => {
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TypeRef::ImplTrait(type_bounds_from_ast(ctx, inner.type_bound_list()))
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}
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@ -44,7 +44,7 @@ pub(crate) fn function_declaration(node: &ast::Fn) -> String {
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format_to!(buf, "{}", param_list);
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}
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if let Some(ret_type) = node.ret_type() {
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if ret_type.type_ref().is_some() {
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if ret_type.ty().is_some() {
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format_to!(buf, " {}", ret_type);
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}
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}
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@ -125,7 +125,7 @@ fn structure_node(node: &SyntaxNode) -> Option<StructureNode> {
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ast::Variant(it) => decl(it),
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ast::Trait(it) => decl(it),
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ast::Module(it) => decl(it),
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ast::TypeAlias(it) => decl_with_type_ref(&it, it.type_ref()),
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ast::TypeAlias(it) => decl_with_type_ref(&it, it.ty()),
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ast::RecordField(it) => decl_with_type_ref(&it, it.ty()),
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ast::Const(it) => decl_with_type_ref(&it, it.ty()),
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ast::Static(it) => decl_with_type_ref(&it, it.ty()),
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@ -198,7 +198,7 @@ impl TypeAlias {
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pub fn default_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![default]) }
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pub fn type_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![type]) }
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pub fn eq_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![=]) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn semicolon_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![;]) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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@ -333,7 +333,7 @@ pub struct RetType {
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}
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impl RetType {
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pub fn thin_arrow_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![->]) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct WhereClause {
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@ -425,7 +425,7 @@ pub struct TupleField {
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impl ast::AttrsOwner for TupleField {}
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impl ast::VisibilityOwner for TupleField {}
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impl TupleField {
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct VariantList {
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@ -525,7 +525,7 @@ pub struct ParenType {
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}
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impl ParenType {
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pub fn l_paren_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T!['(']) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn r_paren_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![')']) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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@ -559,7 +559,7 @@ impl PointerType {
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pub fn star_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![*]) }
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pub fn const_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![const]) }
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pub fn mut_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![mut]) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct ArrayType {
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@ -567,7 +567,7 @@ pub struct ArrayType {
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}
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impl ArrayType {
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pub fn l_brack_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T!['[']) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn semicolon_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![;]) }
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pub fn expr(&self) -> Option<Expr> { support::child(&self.syntax) }
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pub fn r_brack_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![']']) }
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@ -578,7 +578,7 @@ pub struct SliceType {
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}
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impl SliceType {
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pub fn l_brack_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T!['[']) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn r_brack_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![']']) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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@ -591,7 +591,7 @@ impl ReferenceType {
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support::token(&self.syntax, T![lifetime])
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}
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pub fn mut_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![mut]) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct PlaceholderType {
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@ -618,7 +618,7 @@ pub struct ForType {
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impl ForType {
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pub fn for_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![for]) }
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pub fn generic_param_list(&self) -> Option<GenericParamList> { support::child(&self.syntax) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct ImplTraitType {
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@ -882,7 +882,7 @@ impl ast::AttrsOwner for CastExpr {}
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impl CastExpr {
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pub fn expr(&self) -> Option<Expr> { support::child(&self.syntax) }
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pub fn as_token(&self) -> Option<SyntaxToken> { support::token(&self.syntax, T![as]) }
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pub fn type_ref(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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pub fn ty(&self) -> Option<TypeRef> { support::child(&self.syntax) }
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct RefExpr {
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@ -72,11 +72,11 @@ Param =
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)
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RetType =
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'->' TypeRef
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'->' ty:TypeRef
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TypeAlias =
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Attr* Visibility? 'default'? 'type' Name GenericParamList? (':' TypeBoundList?)? WhereClause?
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'=' TypeRef ';'
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'=' ty:TypeRef ';'
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Struct =
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Attr* Visibility? 'struct' Name GenericParamList? (
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@ -94,7 +94,7 @@ TupleFieldList =
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'(' fields:(TupleField (',' TupleField)* ','?)? ')'
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TupleField =
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Attr* Visibility? TypeRef
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Attr* Visibility? ty:TypeRef
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FieldList =
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RecordFieldList
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@ -184,7 +184,7 @@ Attr =
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'#' '!'? '[' Path ('=' Literal | TokenTree)? ']'
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ParenType =
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'(' TypeRef ')'
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'(' ty:TypeRef ')'
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TupleType =
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'(' fields:TypeRef* ')'
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@ -196,16 +196,16 @@ PathType =
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Path
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PointerType =
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'*' ('const' | 'mut') TypeRef
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'*' ('const' | 'mut') ty:TypeRef
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ArrayType =
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'[' TypeRef ';' Expr ']'
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'[' ty:TypeRef ';' Expr ']'
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SliceType =
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'[' TypeRef ']'
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'[' ty:TypeRef ']'
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ReferenceType =
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'&' 'lifetime'? 'mut'? TypeRef
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'&' 'lifetime'? 'mut'? ty:TypeRef
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PlaceholderType =
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'_'
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@ -214,7 +214,7 @@ FnPointerType =
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Abi 'unsafe'? 'fn' ParamList RetType?
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ForType =
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'for' GenericParamList TypeRef
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'for' GenericParamList ty:TypeRef
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ImplTraitType =
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'impl' TypeBoundList
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@ -302,7 +302,7 @@ TryExpr =
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Attr* Expr '?'
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CastExpr =
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Attr* Expr 'as' TypeRef
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Attr* Expr 'as' ty:TypeRef
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RefExpr =
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Attr* '&' ('raw' | 'mut' | 'const') Expr
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