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3 changes: 2 additions & 1 deletion compiler/rustc_expand/src/mbe/macro_rules.rs
Original file line number Diff line number Diff line change
@@ -223,7 +223,8 @@ fn expand_macro<'cx>(
let arm_span = rhses[i].span();

// rhs has holes ( `$id` and `$(...)` that need filled)
let tts = match transcribe(cx, &named_matches, rhs, rhs_span, transparency) {
let id = cx.current_expansion.id;
let tts = match transcribe(psess, &named_matches, rhs, rhs_span, transparency, id) {
Ok(tts) => tts,
Err(err) => {
let guar = err.emit();
60 changes: 29 additions & 31 deletions compiler/rustc_expand/src/mbe/transcribe.rs
Original file line number Diff line number Diff line change
@@ -1,4 +1,3 @@
use crate::base::ExtCtxt;
use crate::errors::{
CountRepetitionMisplaced, MetaVarExprUnrecognizedVar, MetaVarsDifSeqMatchers, MustRepeatOnce,
NoSyntaxVarsExprRepeat, VarStillRepeating,
@@ -9,12 +8,13 @@ use rustc_ast::mut_visit::{self, MutVisitor};
use rustc_ast::token::{self, Delimiter, Token, TokenKind};
use rustc_ast::tokenstream::{DelimSpacing, DelimSpan, Spacing, TokenStream, TokenTree};
use rustc_data_structures::fx::FxHashMap;
use rustc_errors::{pluralize, Diag, PResult};
use rustc_errors::{pluralize, Diag, DiagCtxt, PResult};
use rustc_parse::parser::ParseNtResult;
use rustc_span::hygiene::{LocalExpnId, Transparency};
use rustc_span::symbol::{sym, Ident, MacroRulesNormalizedIdent};
use rustc_span::{with_metavar_spans, Span, SyntaxContext};

use rustc_session::parse::ParseSess;
use smallvec::{smallvec, SmallVec};
use std::mem;

@@ -99,11 +99,12 @@ impl<'a> Iterator for Frame<'a> {
///
/// Along the way, we do some additional error checking.
pub(super) fn transcribe<'a>(
cx: &ExtCtxt<'a>,
psess: &'a ParseSess,
interp: &FxHashMap<MacroRulesNormalizedIdent, NamedMatch>,
src: &mbe::Delimited,
src_span: DelimSpan,
transparency: Transparency,
expand_id: LocalExpnId,
) -> PResult<'a, TokenStream> {
// Nothing for us to transcribe...
if src.tts.is_empty() {
@@ -137,8 +138,9 @@ pub(super) fn transcribe<'a>(
// again, and we are done transcribing.
let mut result: Vec<TokenTree> = Vec::new();
let mut result_stack = Vec::new();
let mut marker = Marker(cx.current_expansion.id, transparency, Default::default());
let mut marker = Marker(expand_id, transparency, Default::default());

let dcx = &psess.dcx;
loop {
// Look at the last frame on the stack.
// If it still has a TokenTree we have not looked at yet, use that tree.
@@ -201,19 +203,17 @@ pub(super) fn transcribe<'a>(
seq @ mbe::TokenTree::Sequence(_, seq_rep) => {
match lockstep_iter_size(seq, interp, &repeats) {
LockstepIterSize::Unconstrained => {
return Err(cx
.dcx()
.create_err(NoSyntaxVarsExprRepeat { span: seq.span() }));
return Err(dcx.create_err(NoSyntaxVarsExprRepeat { span: seq.span() }));
}

LockstepIterSize::Contradiction(msg) => {
// FIXME: this really ought to be caught at macro definition time... It
// happens when two meta-variables are used in the same repetition in a
// sequence, but they come from different sequence matchers and repeat
// different amounts.
return Err(cx
.dcx()
.create_err(MetaVarsDifSeqMatchers { span: seq.span(), msg }));
return Err(
dcx.create_err(MetaVarsDifSeqMatchers { span: seq.span(), msg })
);
}

LockstepIterSize::Constraint(len, _) => {
@@ -227,9 +227,7 @@ pub(super) fn transcribe<'a>(
// FIXME: this really ought to be caught at macro definition
// time... It happens when the Kleene operator in the matcher and
// the body for the same meta-variable do not match.
return Err(cx
.dcx()
.create_err(MustRepeatOnce { span: sp.entire() }));
return Err(dcx.create_err(MustRepeatOnce { span: sp.entire() }));
}
} else {
// 0 is the initial counter (we have done 0 repetitions so far). `len`
@@ -274,7 +272,7 @@ pub(super) fn transcribe<'a>(
MatchedSingle(ParseNtResult::Tt(tt)) => {
// `tt`s are emitted into the output stream directly as "raw tokens",
// without wrapping them into groups.
maybe_use_metavar_location(cx, &stack, sp, tt, &mut marker)
maybe_use_metavar_location(psess, &stack, sp, tt, &mut marker)
}
MatchedSingle(ParseNtResult::Ident(ident, is_raw)) => {
marker.visit_span(&mut sp);
@@ -295,7 +293,7 @@ pub(super) fn transcribe<'a>(
}
MatchedSeq(..) => {
// We were unable to descend far enough. This is an error.
return Err(cx.dcx().create_err(VarStillRepeating { span: sp, ident }));
return Err(dcx.create_err(VarStillRepeating { span: sp, ident }));
}
};
result.push(tt)
@@ -314,7 +312,7 @@ pub(super) fn transcribe<'a>(

// Replace meta-variable expressions with the result of their expansion.
mbe::TokenTree::MetaVarExpr(sp, expr) => {
transcribe_metavar_expr(cx, expr, interp, &mut marker, &repeats, &mut result, sp)?;
transcribe_metavar_expr(dcx, expr, interp, &mut marker, &repeats, &mut result, sp)?;
}

// If we are entering a new delimiter, we push its contents to the `stack` to be
@@ -374,7 +372,7 @@ pub(super) fn transcribe<'a>(
/// combine with each other and not with tokens outside of the sequence.
/// - The metavariable span comes from a different crate, then we prefer the more local span.
fn maybe_use_metavar_location(
cx: &ExtCtxt<'_>,
psess: &ParseSess,
stack: &[Frame<'_>],
mut metavar_span: Span,
orig_tt: &TokenTree,
@@ -412,7 +410,7 @@ fn maybe_use_metavar_location(
&& insert(mspans, dspan.entire(), metavar_span)
}),
};
if no_collision || cx.source_map().is_imported(metavar_span) {
if no_collision || psess.source_map().is_imported(metavar_span) {
return orig_tt.clone();
}

@@ -573,7 +571,7 @@ fn lockstep_iter_size(
/// * `[ $( ${count(foo, 1)} ),* ]` will return an error because `${count(foo, 1)}` is
/// declared inside a single repetition and the index `1` implies two nested repetitions.
fn count_repetitions<'a>(
cx: &ExtCtxt<'a>,
dcx: &'a DiagCtxt,
depth_user: usize,
mut matched: &NamedMatch,
repeats: &[(usize, usize)],
@@ -610,7 +608,7 @@ fn count_repetitions<'a>(
.and_then(|el| el.checked_sub(repeats.len()))
.unwrap_or_default();
if depth_user > depth_max {
return Err(out_of_bounds_err(cx, depth_max + 1, sp.entire(), "count"));
return Err(out_of_bounds_err(dcx, depth_max + 1, sp.entire(), "count"));
}

// `repeats` records all of the nested levels at which we are currently
@@ -626,15 +624,15 @@ fn count_repetitions<'a>(
}

if let MatchedSingle(_) = matched {
return Err(cx.dcx().create_err(CountRepetitionMisplaced { span: sp.entire() }));
return Err(dcx.create_err(CountRepetitionMisplaced { span: sp.entire() }));
}

count(depth_user, depth_max, matched)
}

/// Returns a `NamedMatch` item declared on the LHS given an arbitrary [Ident]
fn matched_from_ident<'ctx, 'interp, 'rslt>(
cx: &ExtCtxt<'ctx>,
dcx: &'ctx DiagCtxt,
ident: Ident,
interp: &'interp FxHashMap<MacroRulesNormalizedIdent, NamedMatch>,
) -> PResult<'ctx, &'rslt NamedMatch>
@@ -643,12 +641,12 @@ where
{
let span = ident.span;
let key = MacroRulesNormalizedIdent::new(ident);
interp.get(&key).ok_or_else(|| cx.dcx().create_err(MetaVarExprUnrecognizedVar { span, key }))
interp.get(&key).ok_or_else(|| dcx.create_err(MetaVarExprUnrecognizedVar { span, key }))
}

/// Used by meta-variable expressions when an user input is out of the actual declared bounds. For
/// example, index(999999) in an repetition of only three elements.
fn out_of_bounds_err<'a>(cx: &ExtCtxt<'a>, max: usize, span: Span, ty: &str) -> Diag<'a> {
fn out_of_bounds_err<'a>(dcx: &'a DiagCtxt, max: usize, span: Span, ty: &str) -> Diag<'a> {
let msg = if max == 0 {
format!(
"meta-variable expression `{ty}` with depth parameter \
@@ -660,11 +658,11 @@ fn out_of_bounds_err<'a>(cx: &ExtCtxt<'a>, max: usize, span: Span, ty: &str) ->
must be less than {max}"
)
};
cx.dcx().struct_span_err(span, msg)
dcx.struct_span_err(span, msg)
}

fn transcribe_metavar_expr<'a>(
cx: &ExtCtxt<'a>,
dcx: &'a DiagCtxt,
expr: &MetaVarExpr,
interp: &FxHashMap<MacroRulesNormalizedIdent, NamedMatch>,
marker: &mut Marker,
@@ -679,8 +677,8 @@ fn transcribe_metavar_expr<'a>(
};
match *expr {
MetaVarExpr::Count(original_ident, depth) => {
let matched = matched_from_ident(cx, original_ident, interp)?;
let count = count_repetitions(cx, depth, matched, repeats, sp)?;
let matched = matched_from_ident(dcx, original_ident, interp)?;
let count = count_repetitions(dcx, depth, matched, repeats, sp)?;
let tt = TokenTree::token_alone(
TokenKind::lit(token::Integer, sym::integer(count), None),
visited_span(),
@@ -689,7 +687,7 @@ fn transcribe_metavar_expr<'a>(
}
MetaVarExpr::Ignore(original_ident) => {
// Used to ensure that `original_ident` is present in the LHS
let _ = matched_from_ident(cx, original_ident, interp)?;
let _ = matched_from_ident(dcx, original_ident, interp)?;
}
MetaVarExpr::Index(depth) => match repeats.iter().nth_back(depth) {
Some((index, _)) => {
@@ -698,7 +696,7 @@ fn transcribe_metavar_expr<'a>(
visited_span(),
));
}
None => return Err(out_of_bounds_err(cx, repeats.len(), sp.entire(), "index")),
None => return Err(out_of_bounds_err(dcx, repeats.len(), sp.entire(), "index")),
},
MetaVarExpr::Len(depth) => match repeats.iter().nth_back(depth) {
Some((_, length)) => {
@@ -707,7 +705,7 @@ fn transcribe_metavar_expr<'a>(
visited_span(),
));
}
None => return Err(out_of_bounds_err(cx, repeats.len(), sp.entire(), "len")),
None => return Err(out_of_bounds_err(dcx, repeats.len(), sp.entire(), "len")),
},
}
Ok(())
1 change: 1 addition & 0 deletions compiler/rustc_lint/messages.ftl
Original file line number Diff line number Diff line change
@@ -233,6 +233,7 @@ lint_drop_trait_constraints =
lint_dropping_copy_types = calls to `std::mem::drop` with a value that implements `Copy` does nothing
.label = argument has type `{$arg_ty}`
.note = use `let _ = ...` to ignore the expression or result
.suggestion = use `let _ = ...` to ignore the expression or result

lint_dropping_references = calls to `std::mem::drop` with a reference instead of an owned value does nothing
.label = argument has type `{$arg_ty}`
21 changes: 17 additions & 4 deletions compiler/rustc_lint/src/drop_forget_useless.rs
Original file line number Diff line number Diff line change
@@ -1,12 +1,12 @@
use rustc_hir::{Arm, Expr, ExprKind, Node};
use rustc_hir::{Arm, Expr, ExprKind, Node, StmtKind};
use rustc_middle::ty;
use rustc_session::{declare_lint, declare_lint_pass};
use rustc_span::sym;

use crate::{
lints::{
DropCopyDiag, DropRefDiag, ForgetCopyDiag, ForgetRefDiag, UndroppedManuallyDropsDiag,
UndroppedManuallyDropsSuggestion,
DropCopyDiag, DropCopySuggestion, DropRefDiag, ForgetCopyDiag, ForgetRefDiag,
UndroppedManuallyDropsDiag, UndroppedManuallyDropsSuggestion,
},
LateContext, LateLintPass, LintContext,
};
@@ -164,10 +164,23 @@ impl<'tcx> LateLintPass<'tcx> for DropForgetUseless {
);
}
sym::mem_drop if is_copy && !drop_is_single_call_in_arm => {
let sugg = if let Some((_, node)) = cx.tcx.hir().parent_iter(expr.hir_id).nth(0)
&& let Node::Stmt(stmt) = node
&& let StmtKind::Semi(e) = stmt.kind
&& e.hir_id == expr.hir_id
{
DropCopySuggestion::Suggestion {
start_span: expr.span.shrink_to_lo().until(arg.span),
end_span: arg.span.shrink_to_hi().until(expr.span.shrink_to_hi()),
}
} else {
DropCopySuggestion::Note
};

cx.emit_span_lint(
DROPPING_COPY_TYPES,
expr.span,
DropCopyDiag { arg_ty, label: arg.span },
DropCopyDiag { arg_ty, label: arg.span, sugg },
);
}
sym::mem_forget if is_copy => {
16 changes: 15 additions & 1 deletion compiler/rustc_lint/src/lints.rs
Original file line number Diff line number Diff line change
@@ -677,11 +677,25 @@ pub struct DropRefDiag<'a> {

#[derive(LintDiagnostic)]
#[diag(lint_dropping_copy_types)]
#[note]
pub struct DropCopyDiag<'a> {
pub arg_ty: Ty<'a>,
#[label]
pub label: Span,
#[subdiagnostic]
pub sugg: DropCopySuggestion,
}

#[derive(Subdiagnostic)]
pub enum DropCopySuggestion {
#[note(lint_note)]
Note,
#[multipart_suggestion(lint_suggestion, style = "verbose", applicability = "maybe-incorrect")]
Suggestion {
#[suggestion_part(code = "let _ = ")]
start_span: Span,
#[suggestion_part(code = "")]
end_span: Span,
},
}

#[derive(LintDiagnostic)]
5 changes: 5 additions & 0 deletions compiler/rustc_mir_transform/src/sroa.rs
Original file line number Diff line number Diff line change
@@ -70,6 +70,11 @@ fn escaping_locals<'tcx>(
// Exclude #[repr(simd)] types so that they are not de-optimized into an array
return true;
}
if Some(def.did()) == tcx.lang_items().dyn_metadata() {
// codegen wants to see the `DynMetadata<T>`,
// not the inner reference-to-opaque-type.
return true;
}
// We already excluded unions and enums, so this ADT must have one variant
let variant = def.variant(FIRST_VARIANT);
if variant.fields.len() > 1 {
6 changes: 2 additions & 4 deletions library/core/src/num/int_macros.rs
Original file line number Diff line number Diff line change
@@ -1282,8 +1282,7 @@ macro_rules! int_impl {
concat!(stringify!($SelfT), "::unchecked_shl cannot overflow"),
(
rhs: u32 = rhs,
bits: u32 = Self::BITS,
) => rhs < bits,
) => rhs < <$ActualT>::BITS,
);

// SAFETY: this is guaranteed to be safe by the caller.
@@ -1381,8 +1380,7 @@ macro_rules! int_impl {
concat!(stringify!($SelfT), "::unchecked_shr cannot overflow"),
(
rhs: u32 = rhs,
bits: u32 = Self::BITS,
) => rhs < bits,
) => rhs < <$ActualT>::BITS,
);

// SAFETY: this is guaranteed to be safe by the caller.
6 changes: 2 additions & 4 deletions library/core/src/num/uint_macros.rs
Original file line number Diff line number Diff line change
@@ -1369,8 +1369,7 @@ macro_rules! uint_impl {
concat!(stringify!($SelfT), "::unchecked_shl cannot overflow"),
(
rhs: u32 = rhs,
bits: u32 = Self::BITS,
) => rhs < bits,
) => rhs < <$ActualT>::BITS,
);

// SAFETY: this is guaranteed to be safe by the caller.
@@ -1468,8 +1467,7 @@ macro_rules! uint_impl {
concat!(stringify!($SelfT), "::unchecked_shr cannot overflow"),
(
rhs: u32 = rhs,
bits: u32 = Self::BITS,
) => rhs < bits,
) => rhs < <$ActualT>::BITS,
);

// SAFETY: this is guaranteed to be safe by the caller.
Loading