161 lines
5.9 KiB
Rust
161 lines
5.9 KiB
Rust
use rustc_ast::token::{self, Delimiter};
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use rustc_ast::tokenstream::{CursorRef, TokenStream, TokenTree};
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use rustc_ast::{LitIntType, LitKind};
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use rustc_ast_pretty::pprust;
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use rustc_errors::{Applicability, PResult};
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use rustc_session::parse::ParseSess;
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use rustc_span::symbol::Ident;
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use rustc_span::Span;
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/// A meta-variable expression, for expansions based on properties of meta-variables.
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#[derive(Debug, Clone, PartialEq, Encodable, Decodable)]
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pub(crate) enum MetaVarExpr {
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/// The number of repetitions of an identifier, optionally limited to a number
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/// of outer-most repetition depths. If the depth limit is `None` then the depth is unlimited.
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Count(Ident, Option<usize>),
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/// Ignore a meta-variable for repetition without expansion.
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Ignore(Ident),
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/// The index of the repetition at a particular depth, where 0 is the inner-most
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/// repetition. The `usize` is the depth.
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Index(usize),
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/// The length of the repetition at a particular depth, where 0 is the inner-most
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/// repetition. The `usize` is the depth.
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Length(usize),
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}
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impl MetaVarExpr {
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/// Attempt to parse a meta-variable expression from a token stream.
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pub(crate) fn parse<'sess>(
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input: &TokenStream,
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outer_span: Span,
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sess: &'sess ParseSess,
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) -> PResult<'sess, MetaVarExpr> {
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let mut tts = input.trees();
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let ident = parse_ident(&mut tts, sess, outer_span)?;
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let Some(TokenTree::Delimited(_, Delimiter::Parenthesis, args)) = tts.next() else {
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let msg = "meta-variable expression parameter must be wrapped in parentheses";
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return Err(sess.span_diagnostic.struct_span_err(ident.span, msg));
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};
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check_trailing_token(&mut tts, sess)?;
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let mut iter = args.trees();
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let rslt = match &*ident.as_str() {
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"count" => parse_count(&mut iter, sess, ident.span)?,
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"ignore" => MetaVarExpr::Ignore(parse_ident(&mut iter, sess, ident.span)?),
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"index" => MetaVarExpr::Index(parse_depth(&mut iter, sess, ident.span)?),
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"length" => MetaVarExpr::Length(parse_depth(&mut iter, sess, ident.span)?),
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_ => {
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let err_msg = "unrecognized meta-variable expression";
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let mut err = sess.span_diagnostic.struct_span_err(ident.span, err_msg);
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err.span_suggestion(
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ident.span,
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"supported expressions are count, ignore, index and length",
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String::new(),
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Applicability::MachineApplicable,
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);
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return Err(err);
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}
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};
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check_trailing_token(&mut iter, sess)?;
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Ok(rslt)
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}
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pub(crate) fn ident(&self) -> Option<Ident> {
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match *self {
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MetaVarExpr::Count(ident, _) | MetaVarExpr::Ignore(ident) => Some(ident),
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MetaVarExpr::Index(..) | MetaVarExpr::Length(..) => None,
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}
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}
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}
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// Checks if there are any remaining tokens. For example, `${ignore(ident ... a b c ...)}`
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fn check_trailing_token<'sess>(
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iter: &mut CursorRef<'_>,
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sess: &'sess ParseSess,
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) -> PResult<'sess, ()> {
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if let Some(tt) = iter.next() {
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let mut diag = sess
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.span_diagnostic
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.struct_span_err(tt.span(), &format!("unexpected token: {}", pprust::tt_to_string(tt)));
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diag.span_note(tt.span(), "meta-variable expression must not have trailing tokens");
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Err(diag)
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} else {
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Ok(())
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}
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}
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/// Parse a meta-variable `count` expression: `count(ident[, depth])`
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fn parse_count<'sess>(
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iter: &mut CursorRef<'_>,
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sess: &'sess ParseSess,
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span: Span,
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) -> PResult<'sess, MetaVarExpr> {
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let ident = parse_ident(iter, sess, span)?;
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let depth = if try_eat_comma(iter) { Some(parse_depth(iter, sess, span)?) } else { None };
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Ok(MetaVarExpr::Count(ident, depth))
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}
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/// Parses the depth used by index(depth) and length(depth).
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fn parse_depth<'sess>(
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iter: &mut CursorRef<'_>,
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sess: &'sess ParseSess,
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span: Span,
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) -> PResult<'sess, usize> {
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let Some(tt) = iter.next() else { return Ok(0) };
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let TokenTree::Token(token::Token {
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kind: token::TokenKind::Literal(lit), ..
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}) = tt else {
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return Err(sess.span_diagnostic.struct_span_err(
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span,
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"meta-variable expression depth must be a literal"
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));
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};
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if let Ok(lit_kind) = LitKind::from_lit_token(*lit)
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&& let LitKind::Int(n_u128, LitIntType::Unsuffixed) = lit_kind
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&& let Ok(n_usize) = usize::try_from(n_u128)
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{
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Ok(n_usize)
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}
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else {
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let msg = "only unsuffixes integer literals are supported in meta-variable expressions";
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Err(sess.span_diagnostic.struct_span_err(span, msg))
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}
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}
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/// Parses an generic ident
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fn parse_ident<'sess>(
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iter: &mut CursorRef<'_>,
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sess: &'sess ParseSess,
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span: Span,
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) -> PResult<'sess, Ident> {
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if let Some(tt) = iter.next() && let TokenTree::Token(token) = tt {
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if let Some((elem, false)) = token.ident() {
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return Ok(elem);
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}
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let token_str = pprust::token_to_string(token);
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let mut err = sess.span_diagnostic.struct_span_err(
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span,
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&format!("expected identifier, found `{}`", &token_str)
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);
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err.span_suggestion(
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token.span,
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&format!("try removing `{}`", &token_str),
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String::new(),
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Applicability::MaybeIncorrect,
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);
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return Err(err);
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}
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Err(sess.span_diagnostic.struct_span_err(span, "expected identifier"))
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}
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/// Tries to move the iterator forward returning `true` if there is a comma. If not, then the
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/// iterator is not modified and the result is `false`.
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fn try_eat_comma(iter: &mut CursorRef<'_>) -> bool {
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if let Some(TokenTree::Token(token::Token { kind: token::Comma, .. })) = iter.look_ahead(0) {
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let _ = iter.next();
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return true;
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}
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false
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}
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