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constructors.rs
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2176 lines (1814 loc) · 76 KB
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//! Wrappers over [`make`] constructors
use either::Either;
use crate::{
AstNode, NodeOrToken, SyntaxKind, SyntaxNode, SyntaxToken,
ast::{
self, HasArgList, HasAttrs, HasGenericArgs, HasGenericParams, HasLoopBody, HasModuleItem,
HasName, HasTypeBounds, HasVisibility, Lifetime, Param, RangeItem, make,
},
syntax_editor::SyntaxMappingBuilder,
};
use super::SyntaxFactory;
impl SyntaxFactory {
pub fn name(&self, name: &str) -> ast::Name {
make::name(name).clone_for_update()
}
pub fn name_ref(&self, name: &str) -> ast::NameRef {
make::name_ref(name).clone_for_update()
}
pub fn name_ref_self_ty(&self) -> ast::NameRef {
make::name_ref_self_ty().clone_for_update()
}
pub fn expr_todo(&self) -> ast::Expr {
make::ext::expr_todo().clone_for_update()
}
pub fn expr_self(&self) -> ast::Expr {
make::ext::expr_self().clone_for_update()
}
pub fn lifetime(&self, text: &str) -> ast::Lifetime {
make::lifetime(text).clone_for_update()
}
pub fn ty(&self, text: &str) -> ast::Type {
make::ty(text).clone_for_update()
}
pub fn ty_infer(&self) -> ast::InferType {
let ast::Type::InferType(ast) = make::ty_placeholder().clone_for_update() else {
unreachable!()
};
ast
}
pub fn ty_path(&self, path: ast::Path) -> ast::PathType {
let ast::Type::PathType(ast) = make::ty_path(path.clone()).clone_for_update() else {
unreachable!()
};
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn type_bound(&self, bound: ast::Type) -> ast::TypeBound {
make::type_bound(bound).clone_for_update()
}
pub fn type_bound_list(
&self,
bounds: impl IntoIterator<Item = ast::TypeBound>,
) -> Option<ast::TypeBoundList> {
let (bounds, input) = iterator_input(bounds);
let ast = make::type_bound_list(bounds)?.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.bounds().map(|b| b.syntax().clone()));
builder.finish(&mut mapping);
}
Some(ast)
}
pub fn type_param(
&self,
name: ast::Name,
bounds: Option<ast::TypeBoundList>,
) -> ast::TypeParam {
let ast = make::type_param(name.clone(), bounds.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name.syntax().clone(), ast.name().unwrap().syntax().clone());
if let Some(input) = bounds {
builder.map_node(
input.syntax().clone(),
ast.type_bound_list().unwrap().syntax().clone(),
);
}
builder.finish(&mut mapping);
}
ast
}
pub fn path_from_text(&self, text: &str) -> ast::Path {
make::path_from_text(text).clone_for_update()
}
pub fn path_concat(&self, first: ast::Path, second: ast::Path) -> ast::Path {
make::path_concat(first, second).clone_for_update()
}
pub fn visibility_pub_crate(&self) -> ast::Visibility {
make::visibility_pub_crate().clone_for_update()
}
pub fn visibility_pub(&self) -> ast::Visibility {
make::visibility_pub().clone_for_update()
}
pub fn struct_(
&self,
visibility: Option<ast::Visibility>,
strukt_name: ast::Name,
generic_param_list: Option<ast::GenericParamList>,
field_list: ast::FieldList,
) -> ast::Struct {
let ast = make::struct_(
visibility.clone(),
strukt_name.clone(),
generic_param_list.clone(),
field_list.clone(),
)
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
if let Some(visibility) = visibility {
builder.map_node(
visibility.syntax().clone(),
ast.visibility().unwrap().syntax().clone(),
);
}
builder.map_node(strukt_name.syntax().clone(), ast.name().unwrap().syntax().clone());
if let Some(generic_param_list) = generic_param_list {
builder.map_node(
generic_param_list.syntax().clone(),
ast.generic_param_list().unwrap().syntax().clone(),
);
}
builder
.map_node(field_list.syntax().clone(), ast.field_list().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn unnamed_param(&self, ty: ast::Type) -> ast::Param {
let ast = make::unnamed_param(ty.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(ty.syntax().clone(), ast.ty().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn ty_fn_ptr<I: Iterator<Item = Param>>(
&self,
is_unsafe: bool,
abi: Option<ast::Abi>,
params: I,
ret_type: Option<ast::RetType>,
) -> ast::FnPtrType {
let (params, params_input) = iterator_input(params);
let ast = make::ty_fn_ptr(is_unsafe, abi.clone(), params.into_iter(), ret_type.clone())
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
if let Some(abi) = abi {
builder.map_node(abi.syntax().clone(), ast.abi().unwrap().syntax().clone());
}
builder.map_children(
params_input,
ast.param_list().unwrap().params().map(|p| p.syntax().clone()),
);
if let Some(ret_type) = ret_type {
builder
.map_node(ret_type.syntax().clone(), ast.ret_type().unwrap().syntax().clone());
}
builder.finish(&mut mapping);
}
ast
}
pub fn where_pred(
&self,
path: Either<ast::Lifetime, ast::Type>,
bounds: impl IntoIterator<Item = ast::TypeBound>,
) -> ast::WherePred {
let (bounds, bounds_input) = iterator_input(bounds);
let ast = make::where_pred(path.clone(), bounds).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
match &path {
Either::Left(lifetime) => {
builder.map_node(
lifetime.syntax().clone(),
ast.lifetime().unwrap().syntax().clone(),
);
}
Either::Right(ty) => {
builder.map_node(ty.syntax().clone(), ast.ty().unwrap().syntax().clone());
}
}
if let Some(type_bound_list) = ast.type_bound_list() {
builder.map_children(
bounds_input,
type_bound_list.bounds().map(|b| b.syntax().clone()),
);
}
builder.finish(&mut mapping);
}
ast
}
pub fn where_clause(
&self,
predicates: impl IntoIterator<Item = ast::WherePred>,
) -> ast::WhereClause {
let (predicates, input) = iterator_input(predicates);
let ast = make::where_clause(predicates).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.predicates().map(|p| p.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn impl_trait_type(&self, bounds: ast::TypeBoundList) -> ast::ImplTraitType {
let ast = make::impl_trait_type(bounds.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder
.map_node(bounds.syntax().clone(), ast.type_bound_list().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_field(&self, receiver: ast::Expr, field: &str) -> ast::FieldExpr {
let ast::Expr::FieldExpr(ast) =
make::expr_field(receiver.clone(), field).clone_for_update()
else {
unreachable!()
};
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(receiver.syntax().clone(), ast.expr().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn impl_trait(
&self,
attrs: impl IntoIterator<Item = ast::Attr>,
is_unsafe: bool,
trait_gen_params: Option<ast::GenericParamList>,
trait_gen_args: Option<ast::GenericArgList>,
type_gen_params: Option<ast::GenericParamList>,
type_gen_args: Option<ast::GenericArgList>,
is_negative: bool,
path_type: ast::Type,
ty: ast::Type,
trait_where_clause: Option<ast::WhereClause>,
ty_where_clause: Option<ast::WhereClause>,
body: Option<ast::AssocItemList>,
) -> ast::Impl {
let (attrs, attrs_input) = iterator_input(attrs);
let ast = make::impl_trait(
attrs,
is_unsafe,
trait_gen_params.clone(),
trait_gen_args.clone(),
type_gen_params.clone(),
type_gen_args.clone(),
is_negative,
path_type.clone(),
ty.clone(),
trait_where_clause.clone(),
ty_where_clause.clone(),
body.clone(),
)
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(attrs_input, ast.attrs().map(|attr| attr.syntax().clone()));
if let Some(trait_gen_params) = trait_gen_params {
builder.map_node(
trait_gen_params.syntax().clone(),
ast.generic_param_list().unwrap().syntax().clone(),
);
}
builder.map_node(path_type.syntax().clone(), ast.trait_().unwrap().syntax().clone());
builder.map_node(ty.syntax().clone(), ast.self_ty().unwrap().syntax().clone());
if let Some(ty_where_clause) = ty_where_clause {
builder.map_node(
ty_where_clause.syntax().clone(),
ast.where_clause().unwrap().syntax().clone(),
);
}
if let Some(body) = body {
builder.map_node(
body.syntax().clone(),
ast.assoc_item_list().unwrap().syntax().clone(),
);
}
builder.finish(&mut mapping);
}
ast
}
pub fn ty_alias(
&self,
attrs: impl IntoIterator<Item = ast::Attr>,
ident: &str,
generic_param_list: Option<ast::GenericParamList>,
type_param_bounds: Option<ast::TypeParam>,
where_clause: Option<ast::WhereClause>,
assignment: Option<(ast::Type, Option<ast::WhereClause>)>,
) -> ast::TypeAlias {
let (attrs, attrs_input) = iterator_input(attrs);
let ast = make::ty_alias(
attrs,
ident,
generic_param_list.clone(),
type_param_bounds.clone(),
where_clause.clone(),
assignment.clone(),
)
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(attrs_input, ast.attrs().map(|attr| attr.syntax().clone()));
if let Some(generic_param_list) = generic_param_list {
builder.map_node(
generic_param_list.syntax().clone(),
ast.generic_param_list().unwrap().syntax().clone(),
);
}
if let Some(type_param_bounds) = type_param_bounds {
builder.map_node(
type_param_bounds.syntax().clone(),
ast.type_bound_list().unwrap().syntax().clone(),
);
}
if let Some(where_clause) = where_clause {
builder.map_node(
where_clause.syntax().clone(),
ast.where_clause().unwrap().syntax().clone(),
);
}
if let Some((ty, _)) = assignment {
builder.map_node(ty.syntax().clone(), ast.ty().unwrap().syntax().clone());
}
builder.finish(&mut mapping);
}
ast
}
pub fn param_list(
&self,
self_param: Option<ast::SelfParam>,
params: impl IntoIterator<Item = ast::Param>,
) -> ast::ParamList {
let (params, input) = iterator_input(params);
let ast = make::param_list(self_param.clone(), params).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
if let Some(self_param) = self_param
&& let Some(new_self_param) = ast.self_param()
{
builder.map_node(self_param.syntax().clone(), new_self_param.syntax().clone());
}
builder.map_children(input, ast.params().map(|p| p.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn const_param(&self, name: ast::Name, ty: ast::Type) -> ast::ConstParam {
let ast = make::const_param(name.clone(), ty.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name.syntax().clone(), ast.name().unwrap().syntax().clone());
builder.map_node(ty.syntax().clone(), ast.ty().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn generic_param_list(
&self,
params: impl IntoIterator<Item = ast::GenericParam>,
) -> ast::GenericParamList {
let (params, input) = iterator_input(params);
let ast = make::generic_param_list(params).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.generic_params().map(|p| p.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn path_segment(&self, name_ref: ast::NameRef) -> ast::PathSegment {
let ast = make::path_segment(name_ref.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name_ref.syntax().clone(), ast.name_ref().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn generic_ty_path_segment(
&self,
name_ref: ast::NameRef,
generic_args: impl IntoIterator<Item = ast::GenericArg>,
) -> ast::PathSegment {
let (generic_args, input) = iterator_input(generic_args);
let ast = make::generic_ty_path_segment(name_ref.clone(), generic_args).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name_ref.syntax().clone(), ast.name_ref().unwrap().syntax().clone());
builder.map_children(
input,
ast.generic_arg_list().unwrap().generic_args().map(|a| a.syntax().clone()),
);
builder.finish(&mut mapping);
}
ast
}
pub fn tail_only_block_expr(&self, tail_expr: ast::Expr) -> ast::BlockExpr {
let ast = make::tail_only_block_expr(tail_expr.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let stmt_list = ast.stmt_list().unwrap();
let mut builder = SyntaxMappingBuilder::new(stmt_list.syntax().clone());
builder.map_node(
tail_expr.syntax().clone(),
stmt_list.tail_expr().unwrap().syntax().clone(),
);
builder.finish(&mut mapping);
}
ast
}
pub fn expr_bin_op(&self, lhs: ast::Expr, op: ast::BinaryOp, rhs: ast::Expr) -> ast::Expr {
let ast::Expr::BinExpr(ast) =
make::expr_bin_op(lhs.clone(), op, rhs.clone()).clone_for_update()
else {
unreachable!()
};
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(lhs.syntax().clone(), ast.lhs().unwrap().syntax().clone());
builder.map_node(rhs.syntax().clone(), ast.rhs().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast.into()
}
pub fn ty_placeholder(&self) -> ast::Type {
make::ty_placeholder().clone_for_update()
}
pub fn path_segment_generics(
&self,
name_ref: ast::NameRef,
generic_arg_list: ast::GenericArgList,
) -> ast::PathSegment {
let ast::Type::PathType(path) = make::ty(&format!("{name_ref}{generic_arg_list}")) else {
unreachable!();
};
let ast = path.path().unwrap().segment().unwrap().clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name_ref.syntax().clone(), ast.name_ref().unwrap().syntax().clone());
builder.map_node(
generic_arg_list.syntax().clone(),
ast.generic_arg_list().unwrap().syntax().clone(),
);
builder.finish(&mut mapping);
}
ast
}
pub fn use_(
&self,
attrs: impl IntoIterator<Item = ast::Attr>,
visibility: Option<ast::Visibility>,
use_tree: ast::UseTree,
) -> ast::Use {
let (attrs, attrs_input) = iterator_input(attrs);
let ast = make::use_(attrs, visibility.clone(), use_tree.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(attrs_input, ast.attrs().map(|attr| attr.syntax().clone()));
if let Some(visibility) = visibility {
builder.map_node(
visibility.syntax().clone(),
ast.visibility().unwrap().syntax().clone(),
);
}
builder.map_node(use_tree.syntax().clone(), ast.use_tree().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn use_tree(
&self,
path: ast::Path,
use_tree_list: Option<ast::UseTreeList>,
alias: Option<ast::Rename>,
add_star: bool,
) -> ast::UseTree {
let ast = make::use_tree(path.clone(), use_tree_list.clone(), alias.clone(), add_star)
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
if let Some(use_tree_list) = use_tree_list {
builder.map_node(
use_tree_list.syntax().clone(),
ast.use_tree_list().unwrap().syntax().clone(),
);
}
if let Some(alias) = alias {
builder.map_node(alias.syntax().clone(), ast.rename().unwrap().syntax().clone());
}
builder.finish(&mut mapping);
}
ast
}
pub fn path_unqualified(&self, segment: ast::PathSegment) -> ast::Path {
let ast = make::path_unqualified(segment.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(segment.syntax().clone(), ast.segment().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn path_from_segments(
&self,
segments: impl IntoIterator<Item = ast::PathSegment>,
is_abs: bool,
) -> ast::Path {
let (segments, input) = iterator_input(segments);
let ast = make::path_from_segments(segments, is_abs).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.segments().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn ident_pat(&self, ref_: bool, mut_: bool, name: ast::Name) -> ast::IdentPat {
let ast = make::ident_pat(ref_, mut_, name.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name.syntax().clone(), ast.name().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn wildcard_pat(&self) -> ast::WildcardPat {
make::wildcard_pat().clone_for_update()
}
pub fn literal_pat(&self, text: &str) -> ast::LiteralPat {
make::literal_pat(text).clone_for_update()
}
pub fn slice_pat(&self, pats: impl IntoIterator<Item = ast::Pat>) -> ast::SlicePat {
let (pats, input) = iterator_input(pats);
let ast = make::slice_pat(pats).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.pats().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn tuple_pat(&self, pats: impl IntoIterator<Item = ast::Pat>) -> ast::TuplePat {
let (pats, input) = iterator_input(pats);
let ast = make::tuple_pat(pats).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.fields().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn tuple_struct_pat(
&self,
path: ast::Path,
fields: impl IntoIterator<Item = ast::Pat>,
) -> ast::TupleStructPat {
let (fields, input) = iterator_input(fields);
let ast = make::tuple_struct_pat(path.clone(), fields).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
builder.map_children(input, ast.fields().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn record_pat_with_fields(
&self,
path: ast::Path,
fields: ast::RecordPatFieldList,
) -> ast::RecordPat {
let ast = make::record_pat_with_fields(path.clone(), fields.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
builder.map_node(
fields.syntax().clone(),
ast.record_pat_field_list().unwrap().syntax().clone(),
);
builder.finish(&mut mapping);
}
ast
}
pub fn record_pat_field_list(
&self,
fields: impl IntoIterator<Item = ast::RecordPatField>,
rest_pat: Option<ast::RestPat>,
) -> ast::RecordPatFieldList {
let (fields, input) = iterator_input(fields);
let ast = make::record_pat_field_list(fields, rest_pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.fields().map(|it| it.syntax().clone()));
if let Some(rest_pat) = rest_pat {
builder
.map_node(rest_pat.syntax().clone(), ast.rest_pat().unwrap().syntax().clone());
}
builder.finish(&mut mapping);
}
ast
}
pub fn record_pat_field(&self, name_ref: ast::NameRef, pat: ast::Pat) -> ast::RecordPatField {
let ast = make::record_pat_field(name_ref.clone(), pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(name_ref.syntax().clone(), ast.name_ref().unwrap().syntax().clone());
builder.map_node(pat.syntax().clone(), ast.pat().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn record_pat_field_shorthand(&self, pat: ast::Pat) -> ast::RecordPatField {
let ast = make::record_pat_field_shorthand(pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(pat.syntax().clone(), ast.pat().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn path_pat(&self, path: ast::Path) -> ast::Pat {
let ast = make::path_pat(path.clone()).clone_for_update();
match &ast {
ast::Pat::PathPat(ast) => {
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
builder.finish(&mut mapping)
}
}
ast::Pat::IdentPat(ast) => {
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.name().unwrap().syntax().clone());
builder.finish(&mut mapping)
}
}
_ => unreachable!(),
}
ast
}
pub fn rest_pat(&self) -> ast::RestPat {
make::rest_pat().clone_for_update()
}
pub fn or_pat(
&self,
pats: impl IntoIterator<Item = ast::Pat>,
leading_pipe: bool,
) -> ast::OrPat {
let (pats, input) = iterator_input(pats);
let ast = make::or_pat(pats, leading_pipe).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.pats().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn box_pat(&self, pat: ast::Pat) -> ast::BoxPat {
let ast = make::box_pat(pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(pat.syntax().clone(), ast.pat().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn paren_pat(&self, pat: ast::Pat) -> ast::ParenPat {
let ast = make::paren_pat(pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(pat.syntax().clone(), ast.pat().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn range_pat(&self, start: Option<ast::Pat>, end: Option<ast::Pat>) -> ast::RangePat {
let ast = make::range_pat(start.clone(), end.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
if let Some(start) = start {
builder.map_node(start.syntax().clone(), ast.start().unwrap().syntax().clone());
}
if let Some(end) = end {
builder.map_node(end.syntax().clone(), ast.end().unwrap().syntax().clone());
}
builder.finish(&mut mapping);
}
ast
}
pub fn ref_pat(&self, pat: ast::Pat) -> ast::RefPat {
let ast = make::ref_pat(pat.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(pat.syntax().clone(), ast.pat().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn block_expr(
&self,
statements: impl IntoIterator<Item = ast::Stmt>,
tail_expr: Option<ast::Expr>,
) -> ast::BlockExpr {
let (statements, mut input) = iterator_input(statements);
let ast = make::block_expr(statements, tail_expr.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let stmt_list = ast.stmt_list().unwrap();
let mut builder = SyntaxMappingBuilder::new(stmt_list.syntax().clone());
if let Some(input) = tail_expr {
builder.map_node(
input.syntax().clone(),
stmt_list.tail_expr().unwrap().syntax().clone(),
);
} else if let Some(ast_tail) = stmt_list.tail_expr() {
// The parser interpreted the last statement (probably a statement with a block) as an Expr
let last_stmt = input.pop().unwrap();
builder.map_node(last_stmt, ast_tail.syntax().clone());
}
builder.map_children(input, stmt_list.statements().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn expr_empty_block(&self) -> ast::BlockExpr {
make::expr_empty_block().clone_for_update()
}
pub fn expr_paren(&self, expr: ast::Expr) -> ast::ParenExpr {
let ast = make::expr_paren(expr.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(expr.syntax().clone(), ast.expr().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_tuple(&self, fields: impl IntoIterator<Item = ast::Expr>) -> ast::TupleExpr {
let (fields, input) = iterator_input(fields);
let ast = make::expr_tuple(fields).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_children(input, ast.fields().map(|it| it.syntax().clone()));
builder.finish(&mut mapping);
}
ast
}
pub fn expr_assignment(&self, lhs: ast::Expr, rhs: ast::Expr) -> ast::BinExpr {
let ast = make::expr_assignment(lhs.clone(), rhs.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(lhs.syntax().clone(), ast.lhs().unwrap().syntax().clone());
builder.map_node(rhs.syntax().clone(), ast.rhs().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_bin(&self, lhs: ast::Expr, op: ast::BinaryOp, rhs: ast::Expr) -> ast::BinExpr {
let ast::Expr::BinExpr(ast) =
make::expr_bin_op(lhs.clone(), op, rhs.clone()).clone_for_update()
else {
unreachable!()
};
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(lhs.syntax().clone(), ast.lhs().unwrap().syntax().clone());
builder.map_node(rhs.syntax().clone(), ast.rhs().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_literal(&self, text: &str) -> ast::Literal {
make::expr_literal(text).clone_for_update()
}
pub fn expr_path(&self, path: ast::Path) -> ast::Expr {
let ast::Expr::PathExpr(ast) = make::expr_path(path.clone()).clone_for_update() else {
unreachable!()
};
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(path.syntax().clone(), ast.path().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast.into()
}
pub fn expr_prefix(&self, op: SyntaxKind, expr: ast::Expr) -> ast::PrefixExpr {
let ast = make::expr_prefix(op, expr.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(expr.syntax().clone(), ast.expr().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_call(&self, expr: ast::Expr, arg_list: ast::ArgList) -> ast::CallExpr {
let ast = make::expr_call(expr.clone(), arg_list.clone()).clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(expr.syntax().clone(), ast.expr().unwrap().syntax().clone());
builder.map_node(arg_list.syntax().clone(), ast.arg_list().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast
}
pub fn expr_method_call(
&self,
receiver: ast::Expr,
method: ast::NameRef,
arg_list: ast::ArgList,
) -> ast::MethodCallExpr {
let ast = make::expr_method_call(receiver.clone(), method.clone(), arg_list.clone())
.clone_for_update();
if let Some(mut mapping) = self.mappings() {
let mut builder = SyntaxMappingBuilder::new(ast.syntax().clone());
builder.map_node(receiver.syntax().clone(), ast.receiver().unwrap().syntax().clone());
builder.map_node(method.syntax().clone(), ast.name_ref().unwrap().syntax().clone());
builder.map_node(arg_list.syntax().clone(), ast.arg_list().unwrap().syntax().clone());
builder.finish(&mut mapping);
}
ast