Correctly handle inlining of async fn
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parent
fcfc6afe05
commit
52f1ce17aa
@ -15,7 +15,7 @@
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};
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use itertools::{izip, Itertools};
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use syntax::{
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ast::{self, edit_in_place::Indent, HasArgList, PathExpr},
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ast::{self, edit::IndentLevel, edit_in_place::Indent, HasArgList, PathExpr},
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ted, AstNode, NodeOrToken, SyntaxKind,
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};
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@ -306,7 +306,7 @@ fn inline(
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params: &[(ast::Pat, Option<ast::Type>, hir::Param)],
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CallInfo { node, arguments, generic_arg_list }: &CallInfo,
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) -> ast::Expr {
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let body = if sema.hir_file_for(fn_body.syntax()).is_macro() {
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let mut body = if sema.hir_file_for(fn_body.syntax()).is_macro() {
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cov_mark::hit!(inline_call_defined_in_macro);
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if let Some(body) = ast::BlockExpr::cast(insert_ws_into(fn_body.syntax().clone())) {
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body
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@ -391,19 +391,19 @@ fn inline(
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}
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}
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let mut let_stmts = Vec::new();
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// Inline parameter expressions or generate `let` statements depending on whether inlining works or not.
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for ((pat, param_ty, _), usages, expr) in izip!(params, param_use_nodes, arguments).rev() {
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for ((pat, param_ty, _), usages, expr) in izip!(params, param_use_nodes, arguments) {
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// izip confuses RA due to our lack of hygiene info currently losing us type info causing incorrect errors
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let usages: &[ast::PathExpr] = &usages;
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let expr: &ast::Expr = expr;
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let insert_let_stmt = || {
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let mut insert_let_stmt = || {
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let ty = sema.type_of_expr(expr).filter(TypeInfo::has_adjustment).and(param_ty.clone());
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if let Some(stmt_list) = body.stmt_list() {
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stmt_list.push_front(
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make::let_stmt(pat.clone(), ty, Some(expr.clone())).clone_for_update().into(),
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)
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}
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let_stmts.push(
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make::let_stmt(pat.clone(), ty, Some(expr.clone())).clone_for_update().into(),
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);
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};
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// check if there is a local var in the function that conflicts with parameter
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@ -457,6 +457,24 @@ fn inline(
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}
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}
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let is_async_fn = function.is_async(sema.db);
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if is_async_fn {
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cov_mark::hit!(inline_call_async_fn);
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body = make::async_move_block_expr(body.statements(), body.tail_expr()).clone_for_update();
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// Arguments should be evaluated outside the async block, and then moved into it.
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if !let_stmts.is_empty() {
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cov_mark::hit!(inline_call_async_fn_with_let_stmts);
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body.indent(IndentLevel(1));
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body = make::block_expr(let_stmts, Some(body.into())).clone_for_update();
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}
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} else if let Some(stmt_list) = body.stmt_list() {
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ted::insert_all(
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ted::Position::after(stmt_list.l_curly_token().unwrap()),
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let_stmts.into_iter().map(|stmt| stmt.syntax().clone().into()).collect(),
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);
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}
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let original_indentation = match node {
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ast::CallableExpr::Call(it) => it.indent_level(),
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ast::CallableExpr::MethodCall(it) => it.indent_level(),
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@ -464,7 +482,7 @@ fn inline(
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body.reindent_to(original_indentation);
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match body.tail_expr() {
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Some(expr) if body.statements().next().is_none() => expr,
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Some(expr) if !is_async_fn && body.statements().next().is_none() => expr,
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_ => match node
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.syntax()
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.parent()
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@ -1351,6 +1369,109 @@ fn main() {
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bar * b * a * 6
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};
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}
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"#,
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);
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}
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#[test]
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fn async_fn_single_expression() {
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cov_mark::check!(inline_call_async_fn);
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check_assist(
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inline_call,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(arg: u32) -> u32 {
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bar(arg).await * 2
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}
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fn spawn<T>(_: T) {}
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fn main() {
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spawn(foo$0(42));
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}
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"#,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(arg: u32) -> u32 {
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bar(arg).await * 2
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}
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fn spawn<T>(_: T) {}
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fn main() {
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spawn(async move {
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bar(42).await * 2
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});
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}
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"#,
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);
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}
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#[test]
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fn async_fn_multiple_statements() {
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cov_mark::check!(inline_call_async_fn);
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check_assist(
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inline_call,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(arg: u32) -> u32 {
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bar(arg).await;
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42
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}
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fn spawn<T>(_: T) {}
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fn main() {
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spawn(foo$0(42));
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}
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"#,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(arg: u32) -> u32 {
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bar(arg).await;
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42
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}
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fn spawn<T>(_: T) {}
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fn main() {
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spawn(async move {
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bar(42).await;
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42
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});
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}
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"#,
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);
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}
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#[test]
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fn async_fn_with_let_statements() {
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cov_mark::check!(inline_call_async_fn);
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cov_mark::check!(inline_call_async_fn_with_let_stmts);
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check_assist(
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inline_call,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(x: u32, y: u32, z: &u32) -> u32 {
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bar(x).await;
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y + y + *z
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}
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fn spawn<T>(_: T) {}
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fn main() {
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let var = 42;
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spawn(foo$0(var, var + 1, &var));
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}
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"#,
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r#"
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async fn bar(x: u32) -> u32 { x + 1 }
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async fn foo(x: u32, y: u32, z: &u32) -> u32 {
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bar(x).await;
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y + y + *z
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}
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fn spawn<T>(_: T) {}
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fn main() {
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let var = 42;
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spawn({
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let y = var + 1;
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let z: &u32 = &var;
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async move {
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bar(var).await;
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y + y + *z
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}
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});
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}
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"#,
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);
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}
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@ -447,6 +447,21 @@ pub fn block_expr(
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ast_from_text(&format!("fn f() {buf}"))
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}
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pub fn async_move_block_expr(
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stmts: impl IntoIterator<Item = ast::Stmt>,
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tail_expr: Option<ast::Expr>,
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) -> ast::BlockExpr {
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let mut buf = "async move {\n".to_string();
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for stmt in stmts.into_iter() {
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format_to!(buf, " {stmt}\n");
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}
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if let Some(tail_expr) = tail_expr {
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format_to!(buf, " {tail_expr}\n");
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}
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buf += "}";
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ast_from_text(&format!("const _: () = {buf};"))
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}
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pub fn tail_only_block_expr(tail_expr: ast::Expr) -> ast::BlockExpr {
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ast_from_text(&format!("fn f() {{ {tail_expr} }}"))
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}
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