
The previous commit updated `rustfmt.toml` appropriately. This commit is the outcome of running `x fmt --all` with the new formatting options.
396 lines
14 KiB
Rust
396 lines
14 KiB
Rust
use std::collections::BTreeMap;
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use std::fmt;
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use rustc_hir as hir;
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use rustc_hir::def_id::{LocalDefId, LocalModDefId};
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use rustc_hir::intravisit::{self, Visitor};
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use rustc_hir::{Destination, Node};
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use rustc_middle::hir::nested_filter;
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use rustc_middle::query::Providers;
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use rustc_middle::span_bug;
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use rustc_middle::ty::TyCtxt;
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use rustc_session::Session;
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use rustc_span::hygiene::DesugaringKind;
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use rustc_span::{BytePos, Span};
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use Context::*;
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use crate::errors::{
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BreakInsideClosure, BreakInsideCoroutine, BreakNonLoop, ContinueLabeledBlock, OutsideLoop,
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OutsideLoopSuggestion, UnlabeledCfInWhileCondition, UnlabeledInLabeledBlock,
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};
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#[derive(Clone, Copy, Debug, PartialEq)]
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enum Context {
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Normal,
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Fn,
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Loop(hir::LoopSource),
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Closure(Span),
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Coroutine { coroutine_span: Span, kind: hir::CoroutineDesugaring, source: hir::CoroutineSource },
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UnlabeledBlock(Span),
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UnlabeledIfBlock(Span),
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LabeledBlock,
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Constant,
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}
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#[derive(Clone)]
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struct BlockInfo {
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name: String,
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spans: Vec<Span>,
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suggs: Vec<Span>,
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}
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#[derive(PartialEq)]
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enum BreakContextKind {
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Break,
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Continue,
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}
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impl fmt::Display for BreakContextKind {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self {
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BreakContextKind::Break => "break",
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BreakContextKind::Continue => "continue",
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}
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.fmt(f)
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}
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}
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#[derive(Clone)]
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struct CheckLoopVisitor<'a, 'tcx> {
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sess: &'a Session,
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tcx: TyCtxt<'tcx>,
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// Keep track of a stack of contexts, so that suggestions
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// are not made for contexts where it would be incorrect,
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// such as adding a label for an `if`.
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// e.g. `if 'foo: {}` would be incorrect.
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cx_stack: Vec<Context>,
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block_breaks: BTreeMap<Span, BlockInfo>,
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}
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fn check_mod_loops(tcx: TyCtxt<'_>, module_def_id: LocalModDefId) {
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let mut check = CheckLoopVisitor {
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sess: tcx.sess,
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tcx,
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cx_stack: vec![Normal],
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block_breaks: Default::default(),
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};
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tcx.hir().visit_item_likes_in_module(module_def_id, &mut check);
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check.report_outside_loop_error();
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}
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pub(crate) fn provide(providers: &mut Providers) {
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*providers = Providers { check_mod_loops, ..*providers };
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}
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impl<'a, 'hir> Visitor<'hir> for CheckLoopVisitor<'a, 'hir> {
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type NestedFilter = nested_filter::OnlyBodies;
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fn nested_visit_map(&mut self) -> Self::Map {
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self.tcx.hir()
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}
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fn visit_anon_const(&mut self, c: &'hir hir::AnonConst) {
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self.with_context(Constant, |v| intravisit::walk_anon_const(v, c));
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}
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fn visit_inline_const(&mut self, c: &'hir hir::ConstBlock) {
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self.with_context(Constant, |v| intravisit::walk_inline_const(v, c));
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}
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fn visit_fn(
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&mut self,
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fk: hir::intravisit::FnKind<'hir>,
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fd: &'hir hir::FnDecl<'hir>,
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b: hir::BodyId,
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_: Span,
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id: LocalDefId,
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) {
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self.with_context(Fn, |v| intravisit::walk_fn(v, fk, fd, b, id));
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}
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fn visit_trait_item(&mut self, trait_item: &'hir hir::TraitItem<'hir>) {
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self.with_context(Fn, |v| intravisit::walk_trait_item(v, trait_item));
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}
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fn visit_impl_item(&mut self, impl_item: &'hir hir::ImplItem<'hir>) {
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self.with_context(Fn, |v| intravisit::walk_impl_item(v, impl_item));
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}
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fn visit_expr(&mut self, e: &'hir hir::Expr<'hir>) {
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match e.kind {
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hir::ExprKind::If(cond, then, else_opt) => {
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self.visit_expr(cond);
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let get_block = |ck_loop: &CheckLoopVisitor<'a, 'hir>,
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expr: &hir::Expr<'hir>|
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-> Option<&hir::Block<'hir>> {
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if let hir::ExprKind::Block(b, None) = expr.kind
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&& matches!(
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ck_loop.cx_stack.last(),
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Some(&Normal)
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| Some(&Constant)
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| Some(&UnlabeledBlock(_))
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| Some(&UnlabeledIfBlock(_))
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)
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{
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Some(b)
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} else {
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None
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}
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};
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if let Some(b) = get_block(self, then) {
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self.with_context(UnlabeledIfBlock(b.span.shrink_to_lo()), |v| {
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v.visit_block(b)
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});
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} else {
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self.visit_expr(then);
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}
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if let Some(else_expr) = else_opt {
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if let Some(b) = get_block(self, else_expr) {
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self.with_context(UnlabeledIfBlock(b.span.shrink_to_lo()), |v| {
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v.visit_block(b)
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});
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} else {
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self.visit_expr(else_expr);
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}
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}
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}
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hir::ExprKind::Loop(ref b, _, source, _) => {
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self.with_context(Loop(source), |v| v.visit_block(b));
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}
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hir::ExprKind::Closure(&hir::Closure {
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ref fn_decl, body, fn_decl_span, kind, ..
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}) => {
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let cx = match kind {
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hir::ClosureKind::Coroutine(hir::CoroutineKind::Desugared(kind, source)) => {
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Coroutine { coroutine_span: fn_decl_span, kind, source }
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}
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_ => Closure(fn_decl_span),
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};
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self.visit_fn_decl(fn_decl);
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self.with_context(cx, |v| v.visit_nested_body(body));
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}
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hir::ExprKind::Block(ref b, Some(_label)) => {
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self.with_context(LabeledBlock, |v| v.visit_block(b));
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}
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hir::ExprKind::Block(ref b, None) if matches!(self.cx_stack.last(), Some(&Fn)) => {
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self.with_context(Normal, |v| v.visit_block(b));
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}
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hir::ExprKind::Block(ref b, None)
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if matches!(
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self.cx_stack.last(),
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Some(&Normal) | Some(&Constant) | Some(&UnlabeledBlock(_))
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) =>
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{
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self.with_context(UnlabeledBlock(b.span.shrink_to_lo()), |v| v.visit_block(b));
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}
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hir::ExprKind::Break(break_label, ref opt_expr) => {
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if let Some(e) = opt_expr {
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self.visit_expr(e);
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}
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if self.require_label_in_labeled_block(e.span, &break_label, "break") {
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// If we emitted an error about an unlabeled break in a labeled
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// block, we don't need any further checking for this break any more
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return;
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}
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let loop_id = match break_label.target_id {
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Ok(loop_id) => Some(loop_id),
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Err(hir::LoopIdError::OutsideLoopScope) => None,
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Err(hir::LoopIdError::UnlabeledCfInWhileCondition) => {
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self.sess.dcx().emit_err(UnlabeledCfInWhileCondition {
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span: e.span,
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cf_type: "break",
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});
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None
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}
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Err(hir::LoopIdError::UnresolvedLabel) => None,
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};
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if let Some(Node::Block(_)) = loop_id.map(|id| self.tcx.hir_node(id)) {
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return;
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}
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if let Some(break_expr) = opt_expr {
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let (head, loop_label, loop_kind) = if let Some(loop_id) = loop_id {
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match self.tcx.hir().expect_expr(loop_id).kind {
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hir::ExprKind::Loop(_, label, source, sp) => {
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(Some(sp), label, Some(source))
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}
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ref r => {
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span_bug!(e.span, "break label resolved to a non-loop: {:?}", r)
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}
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}
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} else {
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(None, None, None)
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};
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match loop_kind {
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None | Some(hir::LoopSource::Loop) => (),
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Some(kind) => {
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let suggestion = format!(
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"break{}",
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break_label
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.label
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.map_or_else(String::new, |l| format!(" {}", l.ident))
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);
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self.sess.dcx().emit_err(BreakNonLoop {
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span: e.span,
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head,
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kind: kind.name(),
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suggestion,
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loop_label,
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break_label: break_label.label,
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break_expr_kind: &break_expr.kind,
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break_expr_span: break_expr.span,
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});
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}
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}
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}
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let sp_lo = e.span.with_lo(e.span.lo() + BytePos("break".len() as u32));
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let label_sp = match break_label.label {
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Some(label) => sp_lo.with_hi(label.ident.span.hi()),
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None => sp_lo.shrink_to_lo(),
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};
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self.require_break_cx(
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BreakContextKind::Break,
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e.span,
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label_sp,
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self.cx_stack.len() - 1,
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);
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}
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hir::ExprKind::Continue(destination) => {
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self.require_label_in_labeled_block(e.span, &destination, "continue");
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match destination.target_id {
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Ok(loop_id) => {
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if let Node::Block(block) = self.tcx.hir_node(loop_id) {
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self.sess.dcx().emit_err(ContinueLabeledBlock {
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span: e.span,
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block_span: block.span,
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});
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}
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}
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Err(hir::LoopIdError::UnlabeledCfInWhileCondition) => {
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self.sess.dcx().emit_err(UnlabeledCfInWhileCondition {
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span: e.span,
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cf_type: "continue",
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});
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}
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Err(_) => {}
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}
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self.require_break_cx(
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BreakContextKind::Continue,
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e.span,
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e.span,
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self.cx_stack.len() - 1,
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)
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}
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_ => intravisit::walk_expr(self, e),
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}
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}
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}
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impl<'a, 'hir> CheckLoopVisitor<'a, 'hir> {
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fn with_context<F>(&mut self, cx: Context, f: F)
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where
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F: FnOnce(&mut CheckLoopVisitor<'a, 'hir>),
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{
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self.cx_stack.push(cx);
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f(self);
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self.cx_stack.pop();
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}
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fn require_break_cx(
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&mut self,
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br_cx_kind: BreakContextKind,
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span: Span,
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break_span: Span,
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cx_pos: usize,
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) {
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match self.cx_stack[cx_pos] {
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LabeledBlock | Loop(_) => {}
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Closure(closure_span) => {
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self.sess.dcx().emit_err(BreakInsideClosure {
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span,
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closure_span,
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name: &br_cx_kind.to_string(),
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});
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}
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Coroutine { coroutine_span, kind, source } => {
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let kind = match kind {
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hir::CoroutineDesugaring::Async => "async",
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hir::CoroutineDesugaring::Gen => "gen",
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hir::CoroutineDesugaring::AsyncGen => "async gen",
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};
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let source = match source {
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hir::CoroutineSource::Block => "block",
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hir::CoroutineSource::Closure => "closure",
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hir::CoroutineSource::Fn => "function",
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};
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self.sess.dcx().emit_err(BreakInsideCoroutine {
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span,
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coroutine_span,
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name: &br_cx_kind.to_string(),
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kind,
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source,
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});
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}
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UnlabeledBlock(block_span)
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if br_cx_kind == BreakContextKind::Break && block_span.eq_ctxt(break_span) =>
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{
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let block = self.block_breaks.entry(block_span).or_insert_with(|| BlockInfo {
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name: br_cx_kind.to_string(),
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spans: vec![],
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suggs: vec![],
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});
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block.spans.push(span);
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block.suggs.push(break_span);
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}
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UnlabeledIfBlock(_) if br_cx_kind == BreakContextKind::Break => {
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self.require_break_cx(br_cx_kind, span, break_span, cx_pos - 1);
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}
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Normal | Constant | Fn | UnlabeledBlock(_) | UnlabeledIfBlock(_) => {
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self.sess.dcx().emit_err(OutsideLoop {
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spans: vec![span],
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name: &br_cx_kind.to_string(),
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is_break: br_cx_kind == BreakContextKind::Break,
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suggestion: None,
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});
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}
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}
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}
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fn require_label_in_labeled_block(
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&mut self,
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span: Span,
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label: &Destination,
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cf_type: &str,
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) -> bool {
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if !span.is_desugaring(DesugaringKind::QuestionMark)
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&& self.cx_stack.last() == Some(&LabeledBlock)
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&& label.label.is_none()
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{
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self.sess.dcx().emit_err(UnlabeledInLabeledBlock { span, cf_type });
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return true;
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}
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false
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}
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fn report_outside_loop_error(&mut self) {
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for (s, block) in &self.block_breaks {
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self.sess.dcx().emit_err(OutsideLoop {
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spans: block.spans.clone(),
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name: &block.name,
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is_break: true,
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suggestion: Some(OutsideLoopSuggestion {
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block_span: *s,
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break_spans: block.suggs.clone(),
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}),
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});
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}
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}
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}
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