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Be it "Expand Macro Recursively", "Inline macro" or few other things. We replace it with the crate name, as should've always been.
149 lines
5.3 KiB
Rust
149 lines
5.3 KiB
Rust
//! Utilities for formatting macro expanded nodes until we get a proper formatter.
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use syntax::{
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ast::make,
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ted::{self, Position},
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NodeOrToken,
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SyntaxKind::{self, *},
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SyntaxNode, SyntaxToken, WalkEvent, T,
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};
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/// Renders a [`SyntaxNode`] with whitespace inserted between tokens that require them.
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///
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/// This is an internal API that is only exported because `mbe` needs it for tests and cannot depend
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/// on `hir-expand`. For any purpose other than tests, you are supposed to use the `prettify_macro_expansion`
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/// from `hir-expand` that handles `$crate` for you.
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#[deprecated = "use `hir_expand::prettify_macro_expansion()` instead"]
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pub fn prettify_macro_expansion(
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syn: SyntaxNode,
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dollar_crate_replacement: &mut dyn FnMut(&SyntaxToken) -> SyntaxToken,
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) -> SyntaxNode {
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let mut indent = 0;
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let mut last: Option<SyntaxKind> = None;
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let mut mods = Vec::new();
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let mut dollar_crate_replacements = Vec::new();
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let syn = syn.clone_subtree().clone_for_update();
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let before = Position::before;
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let after = Position::after;
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let do_indent = |pos: fn(_) -> Position, token: &SyntaxToken, indent| {
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(pos(token.clone()), make::tokens::whitespace(&" ".repeat(4 * indent)))
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};
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let do_ws = |pos: fn(_) -> Position, token: &SyntaxToken| {
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(pos(token.clone()), make::tokens::single_space())
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};
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let do_nl = |pos: fn(_) -> Position, token: &SyntaxToken| {
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(pos(token.clone()), make::tokens::single_newline())
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};
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for event in syn.preorder_with_tokens() {
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let token = match event {
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WalkEvent::Enter(NodeOrToken::Token(token)) => token,
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WalkEvent::Leave(NodeOrToken::Node(node))
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if matches!(
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node.kind(),
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ATTR | MATCH_ARM | STRUCT | ENUM | UNION | FN | IMPL | MACRO_RULES
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) =>
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{
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if indent > 0 {
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mods.push((
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Position::after(node.clone()),
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make::tokens::whitespace(&" ".repeat(4 * indent)),
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));
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}
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if node.parent().is_some() {
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mods.push((Position::after(node), make::tokens::single_newline()));
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}
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continue;
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}
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_ => continue,
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};
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if token.kind() == SyntaxKind::IDENT && token.text() == "$crate" {
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dollar_crate_replacements.push((token.clone(), dollar_crate_replacement(&token)));
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}
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let tok = &token;
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let is_next = |f: fn(SyntaxKind) -> bool, default| -> bool {
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tok.next_token().map(|it| f(it.kind())).unwrap_or(default)
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};
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let is_last =
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|f: fn(SyntaxKind) -> bool, default| -> bool { last.map(f).unwrap_or(default) };
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match tok.kind() {
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k if is_text(k)
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&& is_next(|it| !it.is_punct() || matches!(it, T![_] | T![#]), false) =>
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{
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mods.push(do_ws(after, tok));
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}
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L_CURLY if is_next(|it| it != R_CURLY, true) => {
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indent += 1;
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if is_last(is_text, false) {
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mods.push(do_ws(before, tok));
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}
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mods.push(do_indent(after, tok, indent));
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mods.push(do_nl(after, tok));
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}
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R_CURLY if is_last(|it| it != L_CURLY, true) => {
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indent = indent.saturating_sub(1);
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if indent > 0 {
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mods.push(do_indent(before, tok, indent));
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}
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mods.push(do_nl(before, tok));
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}
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R_CURLY => {
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if indent > 0 {
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mods.push(do_indent(after, tok, indent));
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}
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mods.push(do_nl(after, tok));
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}
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LIFETIME_IDENT if is_next(is_text, true) => {
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mods.push(do_ws(after, tok));
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}
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AS_KW | DYN_KW | IMPL_KW | CONST_KW | MUT_KW => {
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mods.push(do_ws(after, tok));
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}
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T![;] if is_next(|it| it != R_CURLY, true) => {
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if indent > 0 {
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mods.push(do_indent(after, tok, indent));
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}
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mods.push(do_nl(after, tok));
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}
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T![=] if is_next(|it| it == T![>], false) => {
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// FIXME: this branch is for `=>` in macro_rules!, which is currently parsed as
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// two separate symbols.
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mods.push(do_ws(before, tok));
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mods.push(do_ws(after, &tok.next_token().unwrap()));
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}
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T![->] | T![=] | T![=>] => {
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mods.push(do_ws(before, tok));
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mods.push(do_ws(after, tok));
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}
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T![!] if is_last(|it| it == MACRO_RULES_KW, false) && is_next(is_text, false) => {
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mods.push(do_ws(after, tok));
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}
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_ => (),
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}
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last = Some(tok.kind());
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}
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for (pos, insert) in mods {
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ted::insert(pos, insert);
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}
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for (old, new) in dollar_crate_replacements {
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ted::replace(old, new);
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}
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if let Some(it) = syn.last_token().filter(|it| it.kind() == SyntaxKind::WHITESPACE) {
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ted::remove(it);
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}
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syn
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}
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fn is_text(k: SyntaxKind) -> bool {
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// Consider all keywords in all editions.
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k.is_any_identifier() || k.is_literal() || k == UNDERSCORE
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}
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