Rollup merge of #121120 - nnethercote:LitKind-Err-guar, r=fmease
Add `ErrorGuaranteed` to `ast::LitKind::Err`, `token::LitKind::Err`. Similar to recent work doing the same for `ExprKind::Err` (#120586) and `TyKind::Err` (#121109). r? `@oli-obk`
This commit is contained in:
commit
06f53dd316
@ -1846,7 +1846,7 @@ pub enum LitKind {
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/// A boolean literal (`true`, `false`).
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Bool(bool),
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/// Placeholder for a literal that wasn't well-formed in some way.
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Err,
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Err(ErrorGuaranteed),
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}
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impl LitKind {
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@ -1893,7 +1893,7 @@ impl LitKind {
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| LitKind::Int(_, LitIntType::Unsuffixed)
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| LitKind::Float(_, LitFloatType::Unsuffixed)
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| LitKind::Bool(..)
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| LitKind::Err => false,
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| LitKind::Err(_) => false,
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}
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}
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}
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@ -13,7 +13,7 @@ use rustc_macros::HashStable_Generic;
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use rustc_span::symbol::{kw, sym};
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#[allow(hidden_glob_reexports)]
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use rustc_span::symbol::{Ident, Symbol};
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use rustc_span::{edition::Edition, Span, DUMMY_SP};
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use rustc_span::{edition::Edition, ErrorGuaranteed, Span, DUMMY_SP};
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use std::borrow::Cow;
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use std::fmt;
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@ -75,7 +75,7 @@ pub enum LitKind {
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ByteStrRaw(u8), // raw byte string delimited by `n` hash symbols
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CStr,
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CStrRaw(u8),
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Err,
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Err(ErrorGuaranteed),
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}
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/// A literal token.
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@ -144,7 +144,7 @@ impl fmt::Display for Lit {
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CStrRaw(n) => {
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write!(f, "cr{delim}\"{symbol}\"{delim}", delim = "#".repeat(n as usize))?
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}
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Integer | Float | Bool | Err => write!(f, "{symbol}")?,
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Integer | Float | Bool | Err(_) => write!(f, "{symbol}")?,
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}
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if let Some(suffix) = suffix {
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@ -159,7 +159,7 @@ impl LitKind {
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/// An English article for the literal token kind.
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pub fn article(self) -> &'static str {
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match self {
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Integer | Err => "an",
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Integer | Err(_) => "an",
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_ => "a",
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}
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}
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@ -174,12 +174,12 @@ impl LitKind {
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Str | StrRaw(..) => "string",
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ByteStr | ByteStrRaw(..) => "byte string",
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CStr | CStrRaw(..) => "C string",
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Err => "error",
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Err(_) => "error",
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}
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}
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pub(crate) fn may_have_suffix(self) -> bool {
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matches!(self, Integer | Float | Err)
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matches!(self, Integer | Float | Err(_))
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}
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}
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@ -31,20 +31,21 @@ pub fn escape_byte_str_symbol(bytes: &[u8]) -> Symbol {
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#[derive(Debug)]
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pub enum LitError {
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LexerError,
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InvalidSuffix,
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InvalidIntSuffix,
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InvalidFloatSuffix,
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NonDecimalFloat(u32),
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IntTooLarge(u32),
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InvalidSuffix(Symbol),
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InvalidIntSuffix(Symbol),
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InvalidFloatSuffix(Symbol),
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NonDecimalFloat(u32), // u32 is the base
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IntTooLarge(u32), // u32 is the base
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}
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impl LitKind {
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/// Converts literal token into a semantic literal.
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pub fn from_token_lit(lit: token::Lit) -> Result<LitKind, LitError> {
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let token::Lit { kind, symbol, suffix } = lit;
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if suffix.is_some() && !kind.may_have_suffix() {
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return Err(LitError::InvalidSuffix);
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if let Some(suffix) = suffix
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&& !kind.may_have_suffix()
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{
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return Err(LitError::InvalidSuffix(suffix));
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}
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// For byte/char/string literals, chars and escapes have already been
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@ -145,7 +146,7 @@ impl LitKind {
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buf.push(0);
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LitKind::CStr(buf.into(), StrStyle::Raw(n))
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}
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token::Err => LitKind::Err,
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token::Err(guar) => LitKind::Err(guar),
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})
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}
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}
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@ -202,7 +203,7 @@ impl fmt::Display for LitKind {
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}
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}
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LitKind::Bool(b) => write!(f, "{}", if b { "true" } else { "false" })?,
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LitKind::Err => {
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LitKind::Err(_) => {
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// This only shows up in places like `-Zunpretty=hir` output, so we
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// don't bother to produce something useful.
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write!(f, "<bad-literal>")?;
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@ -238,7 +239,7 @@ impl MetaItemLit {
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LitKind::Char(_) => token::Char,
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LitKind::Int(..) => token::Integer,
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LitKind::Float(..) => token::Float,
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LitKind::Err => token::Err,
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LitKind::Err(guar) => token::Err(guar),
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};
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token::Lit::new(kind, self.symbol, self.suffix)
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@ -272,12 +273,12 @@ fn filtered_float_lit(
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return Err(LitError::NonDecimalFloat(base));
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}
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Ok(match suffix {
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Some(suf) => LitKind::Float(
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Some(suffix) => LitKind::Float(
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symbol,
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ast::LitFloatType::Suffixed(match suf {
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ast::LitFloatType::Suffixed(match suffix {
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sym::f32 => ast::FloatTy::F32,
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sym::f64 => ast::FloatTy::F64,
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_ => return Err(LitError::InvalidFloatSuffix),
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_ => return Err(LitError::InvalidFloatSuffix(suffix)),
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}),
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),
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None => LitKind::Float(symbol, ast::LitFloatType::Unsuffixed),
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@ -318,17 +319,13 @@ fn integer_lit(symbol: Symbol, suffix: Option<Symbol>) -> Result<LitKind, LitErr
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// `1f64` and `2f32` etc. are valid float literals, and
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// `fxxx` looks more like an invalid float literal than invalid integer literal.
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_ if suf.as_str().starts_with('f') => return filtered_float_lit(symbol, suffix, base),
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_ => return Err(LitError::InvalidIntSuffix),
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_ => return Err(LitError::InvalidIntSuffix(suf)),
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},
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_ => ast::LitIntType::Unsuffixed,
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};
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let s = &s[if base != 10 { 2 } else { 0 }..];
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u128::from_str_radix(s, base).map(|i| LitKind::Int(i.into(), ty)).map_err(|_| {
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// Small bases are lexed as if they were base 10, e.g, the string
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// might be `0b10201`. This will cause the conversion above to fail,
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// but these kinds of errors are already reported by the lexer.
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let from_lexer = base < 10 && s.chars().any(|c| c.to_digit(10).is_some_and(|d| d >= base));
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if from_lexer { LitError::LexerError } else { LitError::IntTooLarge(base) }
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})
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u128::from_str_radix(s, base)
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.map(|i| LitKind::Int(i.into(), ty))
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.map_err(|_| LitError::IntTooLarge(base))
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}
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@ -124,8 +124,13 @@ impl<'hir> LoweringContext<'_, 'hir> {
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let lit_kind = match LitKind::from_token_lit(*token_lit) {
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Ok(lit_kind) => lit_kind,
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Err(err) => {
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report_lit_error(&self.tcx.sess.parse_sess, err, *token_lit, e.span);
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LitKind::Err
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let guar = report_lit_error(
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&self.tcx.sess.parse_sess,
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err,
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*token_lit,
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e.span,
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);
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LitKind::Err(guar)
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}
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};
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let lit = self.arena.alloc(respan(self.lower_span(e.span), lit_kind));
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@ -966,10 +966,11 @@ impl<'a, 'hir> LoweringContext<'a, 'hir> {
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{
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lit
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} else {
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let guar = self.dcx().has_errors().unwrap();
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MetaItemLit {
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symbol: kw::Empty,
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suffix: None,
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kind: LitKind::Err,
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kind: LitKind::Err(guar),
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span: DUMMY_SP,
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}
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};
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@ -254,7 +254,7 @@ fn literal_to_string(lit: token::Lit) -> String {
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token::CStrRaw(n) => {
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format!("cr{delim}\"{symbol}\"{delim}", delim = "#".repeat(n as usize))
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}
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token::Integer | token::Float | token::Bool | token::Err => symbol.to_string(),
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token::Integer | token::Float | token::Bool | token::Err(_) => symbol.to_string(),
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};
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if let Some(suffix) = suffix {
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@ -40,7 +40,7 @@ pub fn expand_concat(
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cx.dcx().emit_err(errors::ConcatBytestr { span: e.span });
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has_errors = true;
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}
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Ok(ast::LitKind::Err) => {
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Ok(ast::LitKind::Err(_)) => {
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has_errors = true;
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}
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Err(err) => {
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@ -44,7 +44,7 @@ fn invalid_type_err(
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Ok(ast::LitKind::Bool(_)) => {
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dcx.emit_err(ConcatBytesInvalid { span, lit_kind: "boolean", sugg: None });
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}
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Ok(ast::LitKind::Err) => {}
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Ok(ast::LitKind::Err(_)) => {}
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Ok(ast::LitKind::Int(_, _)) if !is_nested => {
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let sugg =
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snippet.map(|snippet| ConcatBytesInvalidSuggestion::IntLit { span: span, snippet });
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@ -1266,7 +1266,7 @@ pub fn expr_to_spanned_string<'a>(
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);
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Some((err, true))
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}
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Ok(ast::LitKind::Err) => None,
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Ok(ast::LitKind::Err(_)) => None,
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Err(err) => {
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report_lit_error(&cx.sess.parse_sess, err, token_lit, expr.span);
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None
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@ -10,7 +10,7 @@ use rustc_ast::util::literal::escape_byte_str_symbol;
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use rustc_ast_pretty::pprust;
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use rustc_data_structures::fx::FxHashMap;
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use rustc_data_structures::sync::Lrc;
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use rustc_errors::{MultiSpan, PResult};
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use rustc_errors::{ErrorGuaranteed, MultiSpan, PResult};
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use rustc_parse::lexer::nfc_normalize;
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use rustc_parse::parse_stream_from_source_str;
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use rustc_session::parse::ParseSess;
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@ -63,7 +63,12 @@ impl FromInternal<token::LitKind> for LitKind {
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token::ByteStrRaw(n) => LitKind::ByteStrRaw(n),
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token::CStr => LitKind::CStr,
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token::CStrRaw(n) => LitKind::CStrRaw(n),
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token::Err => LitKind::Err,
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token::Err(_guar) => {
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// This is the only place a `pm::bridge::LitKind::ErrWithGuar`
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// is constructed. Note that an `ErrorGuaranteed` is available,
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// as required. See the comment in `to_internal`.
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LitKind::ErrWithGuar
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}
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token::Bool => unreachable!(),
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}
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}
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@ -82,7 +87,16 @@ impl ToInternal<token::LitKind> for LitKind {
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LitKind::ByteStrRaw(n) => token::ByteStrRaw(n),
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LitKind::CStr => token::CStr,
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LitKind::CStrRaw(n) => token::CStrRaw(n),
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LitKind::Err => token::Err,
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LitKind::ErrWithGuar => {
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// This is annoying but valid. `LitKind::ErrWithGuar` would
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// have an `ErrorGuaranteed` except that type isn't available
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// in that crate. So we have to fake one. And we don't want to
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// use a delayed bug because there might be lots of these,
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// which would be expensive.
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#[allow(deprecated)]
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let guar = ErrorGuaranteed::unchecked_error_guaranteed();
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token::Err(guar)
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}
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}
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}
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}
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@ -477,7 +491,7 @@ impl server::FreeFunctions for Rustc<'_, '_> {
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| token::LitKind::ByteStrRaw(_)
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| token::LitKind::CStr
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| token::LitKind::CStrRaw(_)
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| token::LitKind::Err => return Err(()),
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| token::LitKind::Err(_) => return Err(()),
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token::LitKind::Integer | token::LitKind::Float => {}
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}
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@ -1319,7 +1319,7 @@ impl<'a, 'tcx> FnCtxt<'a, 'tcx> {
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tcx.type_of(tcx.require_lang_item(hir::LangItem::CStr, Some(lit.span)))
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.skip_binder(),
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),
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ast::LitKind::Err => Ty::new_misc_error(tcx),
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ast::LitKind::Err(guar) => Ty::new_error(tcx, guar),
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}
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}
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@ -164,11 +164,7 @@ fn lit_to_mir_constant<'tcx>(
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})?,
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(ast::LitKind::Bool(b), ty::Bool) => ConstValue::Scalar(Scalar::from_bool(*b)),
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(ast::LitKind::Char(c), ty::Char) => ConstValue::Scalar(Scalar::from_char(*c)),
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(ast::LitKind::Err, _) => {
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return Err(LitToConstError::Reported(
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tcx.dcx().delayed_bug("encountered LitKind::Err during mir build"),
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));
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}
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(ast::LitKind::Err(guar), _) => return Err(LitToConstError::Reported(*guar)),
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_ => return Err(LitToConstError::TypeError),
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};
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|
@ -71,11 +71,7 @@ pub(crate) fn lit_to_const<'tcx>(
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ty::ValTree::from_scalar_int(bits)
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}
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(ast::LitKind::Char(c), ty::Char) => ty::ValTree::from_scalar_int((*c).into()),
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(ast::LitKind::Err, _) => {
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return Err(LitToConstError::Reported(
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tcx.dcx().delayed_bug("encountered LitKind::Err during mir build"),
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));
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}
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(ast::LitKind::Err(guar), _) => return Err(LitToConstError::Reported(*guar)),
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_ => return Err(LitToConstError::TypeError),
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};
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|
@ -897,12 +897,14 @@ impl<'tcx> Cx<'tcx> {
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let hir_id = self.tcx.local_def_id_to_hir_id(def_id.expect_local());
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let generics = self.tcx.generics_of(hir_id.owner);
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let Some(&index) = generics.param_def_id_to_index.get(&def_id) else {
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self.tcx.dcx().has_errors().unwrap();
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let guar = self.tcx.dcx().has_errors().unwrap();
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// We already errored about a late bound const
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return ExprKind::Literal {
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lit: &Spanned { span: DUMMY_SP, node: LitKind::Err },
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neg: false,
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};
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let lit = self
|
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.tcx
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.hir_arena
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.alloc(Spanned { span: DUMMY_SP, node: LitKind::Err(guar) });
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return ExprKind::Literal { lit, neg: false };
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};
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let name = self.tcx.hir().name(hir_id);
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let param = ty::ParamConst::new(index, name);
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|
@ -16,7 +16,7 @@ use rustc_session::lint::builtin::{
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};
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use rustc_session::lint::BuiltinLintDiagnostics;
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use rustc_session::parse::ParseSess;
|
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use rustc_span::symbol::{sym, Symbol};
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use rustc_span::symbol::Symbol;
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use rustc_span::{edition::Edition, BytePos, Pos, Span};
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mod diagnostics;
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@ -478,26 +478,27 @@ impl<'sess, 'src> StringReader<'sess, 'src> {
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}
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}
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rustc_lexer::LiteralKind::Int { base, empty_int } => {
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let mut kind = token::Integer;
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if empty_int {
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let span = self.mk_sp(start, end);
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self.dcx().emit_err(errors::NoDigitsLiteral { span });
|
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(token::Integer, sym::integer(0))
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} else {
|
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if matches!(base, Base::Binary | Base::Octal) {
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let base = base as u32;
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let s = self.str_from_to(start + BytePos(2), end);
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for (idx, c) in s.char_indices() {
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let span = self.mk_sp(
|
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start + BytePos::from_usize(2 + idx),
|
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start + BytePos::from_usize(2 + idx + c.len_utf8()),
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);
|
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if c != '_' && c.to_digit(base).is_none() {
|
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let guar = self.dcx().emit_err(errors::NoDigitsLiteral { span });
|
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kind = token::Err(guar);
|
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} else if matches!(base, Base::Binary | Base::Octal) {
|
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let base = base as u32;
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let s = self.str_from_to(start + BytePos(2), end);
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for (idx, c) in s.char_indices() {
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let span = self.mk_sp(
|
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start + BytePos::from_usize(2 + idx),
|
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start + BytePos::from_usize(2 + idx + c.len_utf8()),
|
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);
|
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if c != '_' && c.to_digit(base).is_none() {
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let guar =
|
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self.dcx().emit_err(errors::InvalidDigitLiteral { span, base });
|
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}
|
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kind = token::Err(guar);
|
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}
|
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}
|
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(token::Integer, self.symbol_from_to(start, end))
|
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}
|
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(kind, self.symbol_from_to(start, end))
|
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}
|
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rustc_lexer::LiteralKind::Float { base, empty_exponent } => {
|
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if empty_exponent {
|
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@ -691,7 +692,7 @@ impl<'sess, 'src> StringReader<'sess, 'src> {
|
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|
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fn cook_common(
|
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&self,
|
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kind: token::LitKind,
|
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mut kind: token::LitKind,
|
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mode: Mode,
|
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start: BytePos,
|
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end: BytePos,
|
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@ -699,7 +700,6 @@ impl<'sess, 'src> StringReader<'sess, 'src> {
|
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postfix_len: u32,
|
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unescape: fn(&str, Mode, &mut dyn FnMut(Range<usize>, Result<(), EscapeError>)),
|
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) -> (token::LitKind, Symbol) {
|
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let mut has_fatal_err = false;
|
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let content_start = start + BytePos(prefix_len);
|
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let content_end = end - BytePos(postfix_len);
|
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let lit_content = self.str_from_to(content_start, content_end);
|
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@ -711,10 +711,8 @@ impl<'sess, 'src> StringReader<'sess, 'src> {
|
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let lo = content_start + BytePos(start);
|
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let hi = lo + BytePos(end - start);
|
||||
let span = self.mk_sp(lo, hi);
|
||||
if err.is_fatal() {
|
||||
has_fatal_err = true;
|
||||
}
|
||||
emit_unescape_error(
|
||||
let is_fatal = err.is_fatal();
|
||||
if let Some(guar) = emit_unescape_error(
|
||||
self.dcx(),
|
||||
lit_content,
|
||||
span_with_quotes,
|
||||
@ -722,17 +720,21 @@ impl<'sess, 'src> StringReader<'sess, 'src> {
|
||||
mode,
|
||||
range,
|
||||
err,
|
||||
);
|
||||
) {
|
||||
assert!(is_fatal);
|
||||
kind = token::Err(guar);
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
// We normally exclude the quotes for the symbol, but for errors we
|
||||
// include it because it results in clearer error messages.
|
||||
if !has_fatal_err {
|
||||
(kind, Symbol::intern(lit_content))
|
||||
let sym = if !matches!(kind, token::Err(_)) {
|
||||
Symbol::intern(lit_content)
|
||||
} else {
|
||||
(token::Err, self.symbol_from_to(start, end))
|
||||
}
|
||||
self.symbol_from_to(start, end)
|
||||
};
|
||||
(kind, sym)
|
||||
}
|
||||
|
||||
fn cook_unicode(
|
||||
|
@ -3,7 +3,7 @@
|
||||
use std::iter::once;
|
||||
use std::ops::Range;
|
||||
|
||||
use rustc_errors::{Applicability, DiagCtxt};
|
||||
use rustc_errors::{Applicability, DiagCtxt, ErrorGuaranteed};
|
||||
use rustc_lexer::unescape::{EscapeError, Mode};
|
||||
use rustc_span::{BytePos, Span};
|
||||
|
||||
@ -21,7 +21,7 @@ pub(crate) fn emit_unescape_error(
|
||||
// range of the error inside `lit`
|
||||
range: Range<usize>,
|
||||
error: EscapeError,
|
||||
) {
|
||||
) -> Option<ErrorGuaranteed> {
|
||||
debug!(
|
||||
"emit_unescape_error: {:?}, {:?}, {:?}, {:?}, {:?}",
|
||||
lit, full_lit_span, mode, range, error
|
||||
@ -31,12 +31,12 @@ pub(crate) fn emit_unescape_error(
|
||||
let span = err_span.with_lo(err_span.hi() - BytePos(c.len_utf8() as u32));
|
||||
(c, span)
|
||||
};
|
||||
match error {
|
||||
Some(match error {
|
||||
EscapeError::LoneSurrogateUnicodeEscape => {
|
||||
dcx.emit_err(UnescapeError::InvalidUnicodeEscape { span: err_span, surrogate: true });
|
||||
dcx.emit_err(UnescapeError::InvalidUnicodeEscape { span: err_span, surrogate: true })
|
||||
}
|
||||
EscapeError::OutOfRangeUnicodeEscape => {
|
||||
dcx.emit_err(UnescapeError::InvalidUnicodeEscape { span: err_span, surrogate: false });
|
||||
dcx.emit_err(UnescapeError::InvalidUnicodeEscape { span: err_span, surrogate: false })
|
||||
}
|
||||
EscapeError::MoreThanOneChar => {
|
||||
use unicode_normalization::{char::is_combining_mark, UnicodeNormalization};
|
||||
@ -106,7 +106,7 @@ pub(crate) fn emit_unescape_error(
|
||||
span: full_lit_span,
|
||||
note,
|
||||
suggestion: sugg,
|
||||
});
|
||||
})
|
||||
}
|
||||
EscapeError::EscapeOnlyChar => {
|
||||
let (c, char_span) = last_char();
|
||||
@ -116,15 +116,15 @@ pub(crate) fn emit_unescape_error(
|
||||
escaped_sugg: c.escape_default().to_string(),
|
||||
escaped_msg: escaped_char(c),
|
||||
byte: mode == Mode::Byte,
|
||||
});
|
||||
})
|
||||
}
|
||||
EscapeError::BareCarriageReturn => {
|
||||
let double_quotes = mode.in_double_quotes();
|
||||
dcx.emit_err(UnescapeError::BareCr { span: err_span, double_quotes });
|
||||
dcx.emit_err(UnescapeError::BareCr { span: err_span, double_quotes })
|
||||
}
|
||||
EscapeError::BareCarriageReturnInRawString => {
|
||||
assert!(mode.in_double_quotes());
|
||||
dcx.emit_err(UnescapeError::BareCrRawString(err_span));
|
||||
dcx.emit_err(UnescapeError::BareCrRawString(err_span))
|
||||
}
|
||||
EscapeError::InvalidEscape => {
|
||||
let (c, span) = last_char();
|
||||
@ -161,16 +161,14 @@ pub(crate) fn emit_unescape_error(
|
||||
<https://doc.rust-lang.org/reference/tokens.html#literals>",
|
||||
);
|
||||
}
|
||||
diag.emit();
|
||||
}
|
||||
EscapeError::TooShortHexEscape => {
|
||||
dcx.emit_err(UnescapeError::TooShortHexEscape(err_span));
|
||||
diag.emit()
|
||||
}
|
||||
EscapeError::TooShortHexEscape => dcx.emit_err(UnescapeError::TooShortHexEscape(err_span)),
|
||||
EscapeError::InvalidCharInHexEscape | EscapeError::InvalidCharInUnicodeEscape => {
|
||||
let (c, span) = last_char();
|
||||
let is_hex = error == EscapeError::InvalidCharInHexEscape;
|
||||
let ch = escaped_char(c);
|
||||
dcx.emit_err(UnescapeError::InvalidCharInEscape { span, is_hex, ch });
|
||||
dcx.emit_err(UnescapeError::InvalidCharInEscape { span, is_hex, ch })
|
||||
}
|
||||
EscapeError::NonAsciiCharInByte => {
|
||||
let (c, span) = last_char();
|
||||
@ -213,23 +211,23 @@ pub(crate) fn emit_unescape_error(
|
||||
Applicability::MaybeIncorrect,
|
||||
);
|
||||
}
|
||||
err.emit();
|
||||
err.emit()
|
||||
}
|
||||
EscapeError::OutOfRangeHexEscape => {
|
||||
dcx.emit_err(UnescapeError::OutOfRangeHexEscape(err_span));
|
||||
dcx.emit_err(UnescapeError::OutOfRangeHexEscape(err_span))
|
||||
}
|
||||
EscapeError::LeadingUnderscoreUnicodeEscape => {
|
||||
let (c, span) = last_char();
|
||||
dcx.emit_err(UnescapeError::LeadingUnderscoreUnicodeEscape {
|
||||
span,
|
||||
ch: escaped_char(c),
|
||||
});
|
||||
})
|
||||
}
|
||||
EscapeError::OverlongUnicodeEscape => {
|
||||
dcx.emit_err(UnescapeError::OverlongUnicodeEscape(err_span));
|
||||
dcx.emit_err(UnescapeError::OverlongUnicodeEscape(err_span))
|
||||
}
|
||||
EscapeError::UnclosedUnicodeEscape => {
|
||||
dcx.emit_err(UnescapeError::UnclosedUnicodeEscape(err_span, err_span.shrink_to_hi()));
|
||||
dcx.emit_err(UnescapeError::UnclosedUnicodeEscape(err_span, err_span.shrink_to_hi()))
|
||||
}
|
||||
EscapeError::NoBraceInUnicodeEscape => {
|
||||
let mut suggestion = "\\u{".to_owned();
|
||||
@ -248,23 +246,17 @@ pub(crate) fn emit_unescape_error(
|
||||
} else {
|
||||
(Some(err_span), NoBraceUnicodeSub::Help)
|
||||
};
|
||||
dcx.emit_err(UnescapeError::NoBraceInUnicodeEscape { span: err_span, label, sub });
|
||||
dcx.emit_err(UnescapeError::NoBraceInUnicodeEscape { span: err_span, label, sub })
|
||||
}
|
||||
EscapeError::UnicodeEscapeInByte => {
|
||||
dcx.emit_err(UnescapeError::UnicodeEscapeInByte(err_span));
|
||||
dcx.emit_err(UnescapeError::UnicodeEscapeInByte(err_span))
|
||||
}
|
||||
EscapeError::EmptyUnicodeEscape => {
|
||||
dcx.emit_err(UnescapeError::EmptyUnicodeEscape(err_span));
|
||||
}
|
||||
EscapeError::ZeroChars => {
|
||||
dcx.emit_err(UnescapeError::ZeroChars(err_span));
|
||||
}
|
||||
EscapeError::LoneSlash => {
|
||||
dcx.emit_err(UnescapeError::LoneSlash(err_span));
|
||||
}
|
||||
EscapeError::NulInCStr => {
|
||||
dcx.emit_err(UnescapeError::NulInCStr { span: err_span });
|
||||
dcx.emit_err(UnescapeError::EmptyUnicodeEscape(err_span))
|
||||
}
|
||||
EscapeError::ZeroChars => dcx.emit_err(UnescapeError::ZeroChars(err_span)),
|
||||
EscapeError::LoneSlash => dcx.emit_err(UnescapeError::LoneSlash(err_span)),
|
||||
EscapeError::NulInCStr => dcx.emit_err(UnescapeError::NulInCStr { span: err_span }),
|
||||
EscapeError::UnskippedWhitespaceWarning => {
|
||||
let (c, char_span) = last_char();
|
||||
dcx.emit_warn(UnescapeError::UnskippedWhitespace {
|
||||
@ -272,11 +264,13 @@ pub(crate) fn emit_unescape_error(
|
||||
ch: escaped_char(c),
|
||||
char_span,
|
||||
});
|
||||
return None;
|
||||
}
|
||||
EscapeError::MultipleSkippedLinesWarning => {
|
||||
dcx.emit_warn(UnescapeError::MultipleSkippedLinesWarning(err_span));
|
||||
return None;
|
||||
}
|
||||
}
|
||||
})
|
||||
}
|
||||
|
||||
/// Pushes a character to a message string for error reporting
|
||||
|
@ -2140,12 +2140,12 @@ impl<'a> Parser<'a> {
|
||||
Err(err) => {
|
||||
let span = token.uninterpolated_span();
|
||||
self.bump();
|
||||
report_lit_error(self.sess, err, lit, span);
|
||||
let guar = report_lit_error(self.sess, err, lit, span);
|
||||
// Pack possible quotes and prefixes from the original literal into
|
||||
// the error literal's symbol so they can be pretty-printed faithfully.
|
||||
let suffixless_lit = token::Lit::new(lit.kind, lit.symbol, None);
|
||||
let symbol = Symbol::intern(&suffixless_lit.to_string());
|
||||
let lit = token::Lit::new(token::Err, symbol, lit.suffix);
|
||||
let lit = token::Lit::new(token::Err(guar), symbol, lit.suffix);
|
||||
Some(
|
||||
MetaItemLit::from_token_lit(lit, span)
|
||||
.unwrap_or_else(|_| unreachable!()),
|
||||
|
@ -1459,7 +1459,7 @@ impl<'a> Parser<'a> {
|
||||
match self.parse_str_lit() {
|
||||
Ok(str_lit) => Some(str_lit),
|
||||
Err(Some(lit)) => match lit.kind {
|
||||
ast::LitKind::Err => None,
|
||||
ast::LitKind::Err(_) => None,
|
||||
_ => {
|
||||
self.dcx().emit_err(NonStringAbiLiteral { span: lit.span });
|
||||
None
|
||||
|
@ -70,11 +70,11 @@ pub fn parse_meta<'a>(sess: &'a ParseSess, attr: &Attribute) -> PResult<'a, Meta
|
||||
}
|
||||
}
|
||||
Err(err) => {
|
||||
report_lit_error(sess, err, token_lit, expr.span);
|
||||
let guar = report_lit_error(sess, err, token_lit, expr.span);
|
||||
let lit = ast::MetaItemLit {
|
||||
symbol: token_lit.symbol,
|
||||
suffix: token_lit.suffix,
|
||||
kind: ast::LitKind::Err,
|
||||
kind: ast::LitKind::Err(guar),
|
||||
span: expr.span,
|
||||
};
|
||||
MetaItemKind::NameValue(lit)
|
||||
|
@ -3,7 +3,8 @@ use std::num::NonZeroU32;
|
||||
use rustc_ast::token;
|
||||
use rustc_ast::util::literal::LitError;
|
||||
use rustc_errors::{
|
||||
codes::*, DiagCtxt, DiagnosticBuilder, DiagnosticMessage, IntoDiagnostic, Level, MultiSpan,
|
||||
codes::*, DiagCtxt, DiagnosticBuilder, DiagnosticMessage, ErrorGuaranteed, IntoDiagnostic,
|
||||
Level, MultiSpan,
|
||||
};
|
||||
use rustc_macros::Diagnostic;
|
||||
use rustc_span::{Span, Symbol};
|
||||
@ -344,7 +345,12 @@ pub(crate) struct BinaryFloatLiteralNotSupported {
|
||||
pub span: Span,
|
||||
}
|
||||
|
||||
pub fn report_lit_error(sess: &ParseSess, err: LitError, lit: token::Lit, span: Span) {
|
||||
pub fn report_lit_error(
|
||||
sess: &ParseSess,
|
||||
err: LitError,
|
||||
lit: token::Lit,
|
||||
span: Span,
|
||||
) -> ErrorGuaranteed {
|
||||
// Checks if `s` looks like i32 or u1234 etc.
|
||||
fn looks_like_width_suffix(first_chars: &[char], s: &str) -> bool {
|
||||
s.len() > 1 && s.starts_with(first_chars) && s[1..].chars().all(|c| c.is_ascii_digit())
|
||||
@ -372,47 +378,37 @@ pub fn report_lit_error(sess: &ParseSess, err: LitError, lit: token::Lit, span:
|
||||
valid.then(|| format!("0{}{}", base_char.to_ascii_lowercase(), &suffix[1..]))
|
||||
}
|
||||
|
||||
let token::Lit { kind, symbol, suffix, .. } = lit;
|
||||
let dcx = &sess.dcx;
|
||||
match err {
|
||||
// `LexerError` is an error, but it was already reported
|
||||
// by lexer, so here we don't report it the second time.
|
||||
LitError::LexerError => {}
|
||||
LitError::InvalidSuffix => {
|
||||
if let Some(suffix) = suffix {
|
||||
dcx.emit_err(InvalidLiteralSuffix { span, kind: kind.descr(), suffix });
|
||||
}
|
||||
LitError::InvalidSuffix(suffix) => {
|
||||
dcx.emit_err(InvalidLiteralSuffix { span, kind: lit.kind.descr(), suffix })
|
||||
}
|
||||
LitError::InvalidIntSuffix => {
|
||||
let suf = suffix.expect("suffix error with no suffix");
|
||||
let suf = suf.as_str();
|
||||
LitError::InvalidIntSuffix(suffix) => {
|
||||
let suf = suffix.as_str();
|
||||
if looks_like_width_suffix(&['i', 'u'], suf) {
|
||||
// If it looks like a width, try to be helpful.
|
||||
dcx.emit_err(InvalidIntLiteralWidth { span, width: suf[1..].into() });
|
||||
} else if let Some(fixed) = fix_base_capitalisation(symbol.as_str(), suf) {
|
||||
dcx.emit_err(InvalidNumLiteralBasePrefix { span, fixed });
|
||||
dcx.emit_err(InvalidIntLiteralWidth { span, width: suf[1..].into() })
|
||||
} else if let Some(fixed) = fix_base_capitalisation(lit.symbol.as_str(), suf) {
|
||||
dcx.emit_err(InvalidNumLiteralBasePrefix { span, fixed })
|
||||
} else {
|
||||
dcx.emit_err(InvalidNumLiteralSuffix { span, suffix: suf.to_string() });
|
||||
dcx.emit_err(InvalidNumLiteralSuffix { span, suffix: suf.to_string() })
|
||||
}
|
||||
}
|
||||
LitError::InvalidFloatSuffix => {
|
||||
let suf = suffix.expect("suffix error with no suffix");
|
||||
let suf = suf.as_str();
|
||||
LitError::InvalidFloatSuffix(suffix) => {
|
||||
let suf = suffix.as_str();
|
||||
if looks_like_width_suffix(&['f'], suf) {
|
||||
// If it looks like a width, try to be helpful.
|
||||
dcx.emit_err(InvalidFloatLiteralWidth { span, width: suf[1..].to_string() });
|
||||
dcx.emit_err(InvalidFloatLiteralWidth { span, width: suf[1..].to_string() })
|
||||
} else {
|
||||
dcx.emit_err(InvalidFloatLiteralSuffix { span, suffix: suf.to_string() });
|
||||
dcx.emit_err(InvalidFloatLiteralSuffix { span, suffix: suf.to_string() })
|
||||
}
|
||||
}
|
||||
LitError::NonDecimalFloat(base) => {
|
||||
match base {
|
||||
16 => dcx.emit_err(HexadecimalFloatLiteralNotSupported { span }),
|
||||
8 => dcx.emit_err(OctalFloatLiteralNotSupported { span }),
|
||||
2 => dcx.emit_err(BinaryFloatLiteralNotSupported { span }),
|
||||
_ => unreachable!(),
|
||||
};
|
||||
}
|
||||
LitError::NonDecimalFloat(base) => match base {
|
||||
16 => dcx.emit_err(HexadecimalFloatLiteralNotSupported { span }),
|
||||
8 => dcx.emit_err(OctalFloatLiteralNotSupported { span }),
|
||||
2 => dcx.emit_err(BinaryFloatLiteralNotSupported { span }),
|
||||
_ => unreachable!(),
|
||||
},
|
||||
LitError::IntTooLarge(base) => {
|
||||
let max = u128::MAX;
|
||||
let limit = match base {
|
||||
@ -421,7 +417,7 @@ pub fn report_lit_error(sess: &ParseSess, err: LitError, lit: token::Lit, span:
|
||||
16 => format!("{max:#x}"),
|
||||
_ => format!("{max}"),
|
||||
};
|
||||
dcx.emit_err(IntLiteralTooLarge { span, limit });
|
||||
dcx.emit_err(IntLiteralTooLarge { span, limit })
|
||||
}
|
||||
}
|
||||
}
|
||||
|
@ -337,7 +337,11 @@ pub enum LitKind {
|
||||
ByteStrRaw(u8),
|
||||
CStr,
|
||||
CStrRaw(u8),
|
||||
Err,
|
||||
// This should have an `ErrorGuaranteed`, except that type isn't available
|
||||
// in this crate. (Imagine it is there.) Hence the `WithGuar` suffix. Must
|
||||
// only be constructed in `LitKind::from_internal`, where an
|
||||
// `ErrorGuaranteed` is available.
|
||||
ErrWithGuar,
|
||||
}
|
||||
|
||||
rpc_encode_decode!(
|
||||
@ -352,7 +356,7 @@ rpc_encode_decode!(
|
||||
ByteStrRaw(n),
|
||||
CStr,
|
||||
CStrRaw(n),
|
||||
Err,
|
||||
ErrWithGuar,
|
||||
}
|
||||
);
|
||||
|
||||
|
@ -1451,7 +1451,7 @@ impl Literal {
|
||||
f(&["cr", hashes, "\"", symbol, "\"", hashes, suffix])
|
||||
}
|
||||
|
||||
bridge::LitKind::Integer | bridge::LitKind::Float | bridge::LitKind::Err => {
|
||||
bridge::LitKind::Integer | bridge::LitKind::Float | bridge::LitKind::ErrWithGuar => {
|
||||
f(&[symbol, suffix])
|
||||
}
|
||||
})
|
||||
|
@ -295,7 +295,8 @@ impl<'a> NormalizedPat<'a> {
|
||||
LitKind::Char(val) => Self::LitInt(val.into()),
|
||||
LitKind::Int(val, _) => Self::LitInt(val.get()),
|
||||
LitKind::Bool(val) => Self::LitBool(val),
|
||||
LitKind::Float(..) | LitKind::Err => Self::Wild,
|
||||
LitKind::Float(..) => Self::Wild,
|
||||
LitKind::Err(guar) => Self::Err(guar),
|
||||
},
|
||||
_ => Self::Wild,
|
||||
},
|
||||
|
@ -200,7 +200,7 @@ impl LateLintPass<'_> for RedundantTypeAnnotations {
|
||||
span_lint(cx, REDUNDANT_TYPE_ANNOTATIONS, local.span, "redundant type annotation");
|
||||
}
|
||||
},
|
||||
LitKind::Err => (),
|
||||
LitKind::Err(_) => (),
|
||||
LitKind::ByteStr(..) => {
|
||||
// We only lint if the type annotation is an array type (e.g. &[u8; 4]).
|
||||
// If instead it is a slice (e.g. &[u8]) it may not be redundant, so we
|
||||
|
@ -279,7 +279,7 @@ impl<'a, 'tcx> PrintVisitor<'a, 'tcx> {
|
||||
match lit.value.node {
|
||||
LitKind::Bool(val) => kind!("Bool({val:?})"),
|
||||
LitKind::Char(c) => kind!("Char({c:?})"),
|
||||
LitKind::Err => kind!("Err"),
|
||||
LitKind::Err(_) => kind!("Err"),
|
||||
LitKind::Byte(b) => kind!("Byte({b})"),
|
||||
LitKind::Int(i, suffix) => {
|
||||
let int_ty = match suffix {
|
||||
|
@ -286,7 +286,7 @@ pub fn lit_to_mir_constant<'tcx>(lit: &LitKind, ty: Option<Ty<'tcx>>) -> Constan
|
||||
_ => bug!(),
|
||||
},
|
||||
LitKind::Bool(b) => Constant::Bool(b),
|
||||
LitKind::Err => Constant::Err,
|
||||
LitKind::Err(_) => Constant::Err,
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -72,7 +72,7 @@ impl server::FreeFunctions for RaSpanServer {
|
||||
) -> Result<bridge::Literal<Self::Span, Self::Symbol>, ()> {
|
||||
// FIXME: keep track of LitKind and Suffix
|
||||
Ok(bridge::Literal {
|
||||
kind: bridge::LitKind::Err,
|
||||
kind: bridge::LitKind::Integer, // dummy
|
||||
symbol: Symbol::intern(self.interner, s),
|
||||
suffix: None,
|
||||
span: self.call_site,
|
||||
@ -202,7 +202,7 @@ impl server::TokenStream for RaSpanServer {
|
||||
tt::TokenTree::Leaf(tt::Leaf::Literal(lit)) => {
|
||||
bridge::TokenTree::Literal(bridge::Literal {
|
||||
// FIXME: handle literal kinds
|
||||
kind: bridge::LitKind::Err,
|
||||
kind: bridge::LitKind::Integer, // dummy
|
||||
symbol: Symbol::intern(self.interner, &lit.text),
|
||||
// FIXME: handle suffixes
|
||||
suffix: None,
|
||||
|
@ -64,7 +64,7 @@ impl server::FreeFunctions for TokenIdServer {
|
||||
) -> Result<bridge::Literal<Self::Span, Self::Symbol>, ()> {
|
||||
// FIXME: keep track of LitKind and Suffix
|
||||
Ok(bridge::Literal {
|
||||
kind: bridge::LitKind::Err,
|
||||
kind: bridge::LitKind::Integer, // dummy
|
||||
symbol: Symbol::intern(self.interner, s),
|
||||
suffix: None,
|
||||
span: self.call_site,
|
||||
@ -187,7 +187,7 @@ impl server::TokenStream for TokenIdServer {
|
||||
tt::TokenTree::Leaf(tt::Leaf::Literal(lit)) => {
|
||||
bridge::TokenTree::Literal(bridge::Literal {
|
||||
// FIXME: handle literal kinds
|
||||
kind: bridge::LitKind::Err,
|
||||
kind: bridge::LitKind::Integer, // dummy
|
||||
symbol: Symbol::intern(self.interner, &lit.text),
|
||||
// FIXME: handle suffixes
|
||||
suffix: None,
|
||||
|
Loading…
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Reference in New Issue
Block a user