8 - Make more use of let_chains
This commit is contained in:
parent
08504c64aa
commit
658ff942b0
10 changed files with 146 additions and 186 deletions
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@ -606,17 +606,16 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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// don't show type `_`
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err.span_label(span, format!("this expression has type `{}`", ty));
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}
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if let Some(ty::error::ExpectedFound { found, .. }) = exp_found {
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if ty.is_box() && ty.boxed_ty() == found {
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if let Ok(snippet) = self.tcx.sess.source_map().span_to_snippet(span) {
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err.span_suggestion(
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span,
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"consider dereferencing the boxed value",
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format!("*{}", snippet),
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Applicability::MachineApplicable,
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);
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}
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}
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if let Some(ty::error::ExpectedFound { found, .. }) = exp_found
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&& ty.is_box() && ty.boxed_ty() == found
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&& let Ok(snippet) = self.tcx.sess.source_map().span_to_snippet(span)
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{
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err.span_suggestion(
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span,
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"consider dereferencing the boxed value",
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format!("*{}", snippet),
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Applicability::MachineApplicable,
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);
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}
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}
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ObligationCauseCode::Pattern { origin_expr: false, span: Some(span), .. } => {
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@ -1748,13 +1747,12 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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self.check_and_note_conflicting_crates(diag, terr);
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self.tcx.note_and_explain_type_err(diag, terr, cause, span, body_owner_def_id.to_def_id());
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if let Some(ValuePairs::PolyTraitRefs(exp_found)) = values {
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if let ty::Closure(def_id, _) = exp_found.expected.skip_binder().self_ty().kind() {
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if let Some(def_id) = def_id.as_local() {
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let span = self.tcx.def_span(def_id);
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diag.span_note(span, "this closure does not fulfill the lifetime requirements");
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}
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}
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if let Some(ValuePairs::PolyTraitRefs(exp_found)) = values
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&& let ty::Closure(def_id, _) = exp_found.expected.skip_binder().self_ty().kind()
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&& let Some(def_id) = def_id.as_local()
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{
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let span = self.tcx.def_span(def_id);
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diag.span_note(span, "this closure does not fulfill the lifetime requirements");
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}
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// It reads better to have the error origin as the final
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@ -2046,19 +2044,16 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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// containing a single character, perhaps the user meant to write `'c'` to
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// specify a character literal (issue #92479)
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(ty::Char, ty::Ref(_, r, _)) if r.is_str() => {
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if let Ok(code) = self.tcx.sess().source_map().span_to_snippet(span) {
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if let Some(code) =
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code.strip_prefix('"').and_then(|s| s.strip_suffix('"'))
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{
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if code.chars().count() == 1 {
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err.span_suggestion(
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span,
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"if you meant to write a `char` literal, use single quotes",
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format!("'{}'", code),
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Applicability::MachineApplicable,
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);
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}
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}
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if let Ok(code) = self.tcx.sess().source_map().span_to_snippet(span)
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&& let Some(code) = code.strip_prefix('"').and_then(|s| s.strip_suffix('"'))
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&& code.chars().count() == 1
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{
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err.span_suggestion(
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span,
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"if you meant to write a `char` literal, use single quotes",
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format!("'{}'", code),
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Applicability::MachineApplicable,
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);
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}
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}
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// If a string was expected and the found expression is a character literal,
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@ -2080,18 +2075,16 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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_ => {}
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}
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}
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if let MatchExpressionArm(box MatchExpressionArmCause { source, .. }) =
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*trace.cause.code()
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let code = trace.cause.code();
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if let &MatchExpressionArm(box MatchExpressionArmCause { source, .. }) = code
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&& let hir::MatchSource::TryDesugar = source
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&& let Some((expected_ty, found_ty)) = self.values_str(trace.values)
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{
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if let hir::MatchSource::TryDesugar = source {
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if let Some((expected_ty, found_ty)) = self.values_str(trace.values) {
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err.note(&format!(
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"`?` operator cannot convert from `{}` to `{}`",
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found_ty.content(),
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expected_ty.content(),
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));
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}
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}
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err.note(&format!(
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"`?` operator cannot convert from `{}` to `{}`",
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found_ty.content(),
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expected_ty.content(),
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));
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}
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err
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}
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@ -114,28 +114,25 @@ impl<'a, 'tcx> Visitor<'tcx> for FindHirNodeVisitor<'a, 'tcx> {
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}
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fn visit_expr(&mut self, expr: &'tcx Expr<'tcx>) {
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if let ExprKind::Match(scrutinee, [_, arm], MatchSource::ForLoopDesugar) = expr.kind {
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if let Some(pat) = arm.pat.for_loop_some() {
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if let Some(ty) = self.node_ty_contains_target(pat.hir_id) {
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self.found_for_loop_iter = Some(scrutinee);
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self.found_node_ty = Some(ty);
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return;
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}
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}
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if let ExprKind::Match(scrutinee, [_, arm], MatchSource::ForLoopDesugar) = expr.kind
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&& let Some(pat) = arm.pat.for_loop_some()
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&& let Some(ty) = self.node_ty_contains_target(pat.hir_id)
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{
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self.found_for_loop_iter = Some(scrutinee);
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self.found_node_ty = Some(ty);
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return;
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}
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if let ExprKind::MethodCall(segment, exprs, _) = expr.kind {
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if segment.ident.span == self.target_span
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&& Some(self.target)
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== self.infcx.in_progress_typeck_results.and_then(|typeck_results| {
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typeck_results
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.borrow()
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.node_type_opt(exprs.first().unwrap().hir_id)
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.map(Into::into)
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})
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{
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self.found_exact_method_call = Some(&expr);
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return;
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}
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if let ExprKind::MethodCall(segment, exprs, _) = expr.kind
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&& segment.ident.span == self.target_span
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&& Some(self.target) == self.infcx.in_progress_typeck_results.and_then(|typeck_results| {
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typeck_results
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.borrow()
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.node_type_opt(exprs.first().unwrap().hir_id)
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.map(Into::into)
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})
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{
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self.found_exact_method_call = Some(&expr);
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return;
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}
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// FIXME(const_generics): Currently, any uninferred `const` generics arguments
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@ -602,10 +599,8 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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);
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let use_diag = local_visitor.found_use_diagnostic.as_ref();
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if let Some(use_diag) = use_diag {
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if use_diag.applies_to(err_span) {
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use_diag.attach_note(&mut err);
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}
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if let Some(use_diag) = use_diag && use_diag.applies_to(err_span) {
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use_diag.attach_note(&mut err);
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}
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let param_type = arg_data.kind.descr();
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@ -736,29 +731,27 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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// | help: specify type like: `<Impl as Into<u32>>::into(foo_impl)`
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// |
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// = note: cannot satisfy `Impl: Into<_>`
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if !impl_candidates.is_empty() && e.span.contains(span) {
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if let Some(expr) = exprs.first() {
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if let ExprKind::Path(hir::QPath::Resolved(_, path)) = expr.kind {
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if let [path_segment] = path.segments {
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let candidate_len = impl_candidates.len();
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let suggestions = impl_candidates.iter().map(|candidate| {
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format!(
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"{}::{}({})",
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candidate, segment.ident, path_segment.ident
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)
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});
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err.span_suggestions(
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e.span,
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&format!(
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"use the fully qualified path for the potential candidate{}",
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pluralize!(candidate_len),
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),
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suggestions,
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Applicability::MaybeIncorrect,
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);
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}
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}
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};
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if !impl_candidates.is_empty() && e.span.contains(span)
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&& let Some(expr) = exprs.first()
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&& let ExprKind::Path(hir::QPath::Resolved(_, path)) = expr.kind
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&& let [path_segment] = path.segments
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{
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let candidate_len = impl_candidates.len();
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let suggestions = impl_candidates.iter().map(|candidate| {
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format!(
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"{}::{}({})",
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candidate, segment.ident, path_segment.ident
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)
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});
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err.span_suggestions(
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e.span,
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&format!(
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"use the fully qualified path for the potential candidate{}",
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pluralize!(candidate_len),
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),
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suggestions,
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Applicability::MaybeIncorrect,
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);
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}
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// Suggest specifying type params or point out the return type of the call:
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//
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@ -223,35 +223,32 @@ impl<'a, 'tcx> NiceRegionError<'a, 'tcx> {
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let fn_returns = tcx.return_type_impl_or_dyn_traits(anon_reg_sup.def_id);
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let mut override_error_code = None;
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if let SubregionOrigin::Subtype(box TypeTrace { cause, .. }) = &sup_origin {
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if let ObligationCauseCode::UnifyReceiver(ctxt) = cause.code() {
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// Handle case of `impl Foo for dyn Bar { fn qux(&self) {} }` introducing a
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// `'static` lifetime when called as a method on a binding: `bar.qux()`.
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if self.find_impl_on_dyn_trait(&mut err, param.param_ty, &ctxt) {
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override_error_code = Some(ctxt.assoc_item.name);
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}
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}
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if let SubregionOrigin::Subtype(box TypeTrace { cause, .. }) = &sup_origin
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&& let ObligationCauseCode::UnifyReceiver(ctxt) = cause.code()
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// Handle case of `impl Foo for dyn Bar { fn qux(&self) {} }` introducing a
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// `'static` lifetime when called as a method on a binding: `bar.qux()`.
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&& self.find_impl_on_dyn_trait(&mut err, param.param_ty, &ctxt)
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{
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override_error_code = Some(ctxt.assoc_item.name);
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}
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if let SubregionOrigin::Subtype(box TypeTrace { cause, .. }) = &sub_origin {
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let code = match cause.code() {
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if let SubregionOrigin::Subtype(box TypeTrace { cause, .. }) = &sub_origin
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&& let code = match cause.code() {
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ObligationCauseCode::MatchImpl(parent, ..) => parent.code(),
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_ => cause.code(),
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};
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if let (ObligationCauseCode::ItemObligation(item_def_id), None) =
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(code, override_error_code)
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}
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&& let (ObligationCauseCode::ItemObligation(item_def_id), None) = (code, override_error_code)
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{
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// Same case of `impl Foo for dyn Bar { fn qux(&self) {} }` introducing a `'static`
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// lifetime as above, but called using a fully-qualified path to the method:
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// `Foo::qux(bar)`.
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let mut v = TraitObjectVisitor(FxHashSet::default());
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v.visit_ty(param.param_ty);
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if let Some((ident, self_ty)) =
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self.get_impl_ident_and_self_ty_from_trait(*item_def_id, &v.0)
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&& self.suggest_constrain_dyn_trait_in_impl(&mut err, &v.0, ident, self_ty)
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{
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// Same case of `impl Foo for dyn Bar { fn qux(&self) {} }` introducing a `'static`
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// lifetime as above, but called using a fully-qualified path to the method:
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// `Foo::qux(bar)`.
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let mut v = TraitObjectVisitor(FxHashSet::default());
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v.visit_ty(param.param_ty);
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if let Some((ident, self_ty)) =
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self.get_impl_ident_and_self_ty_from_trait(*item_def_id, &v.0)
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{
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if self.suggest_constrain_dyn_trait_in_impl(&mut err, &v.0, ident, self_ty) {
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override_error_code = Some(ident.name);
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}
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}
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override_error_code = Some(ident.name);
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}
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}
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if let (Some(ident), true) = (override_error_code, fn_returns.is_empty()) {
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@ -23,51 +23,39 @@ impl<'a, 'tcx> NiceRegionError<'a, 'tcx> {
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let error = self.error.as_ref()?;
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debug!("try_report_impl_not_conforming_to_trait {:?}", error);
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if let RegionResolutionError::SubSupConflict(
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_,
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var_origin,
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sub_origin,
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_sub,
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sup_origin,
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_sup,
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_,
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) = error.clone()
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_, var_origin, sub_origin, _sub, sup_origin, _sup, _,
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) = error.clone()
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&& let (&Subtype(ref sup_trace), &Subtype(ref sub_trace)) = (&sup_origin, &sub_origin)
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&& let (
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sub_expected_found @ Some((sub_expected, sub_found)),
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sup_expected_found @ Some(_),
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CompareImplMethodObligation { trait_item_def_id, .. },
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) = (sub_trace.values.ty(), sup_trace.values.ty(), sub_trace.cause.code())
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&& sup_expected_found == sub_expected_found
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{
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if let (&Subtype(ref sup_trace), &Subtype(ref sub_trace)) = (&sup_origin, &sub_origin) {
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if let (
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sub_expected_found @ Some((sub_expected, sub_found)),
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sup_expected_found @ Some(_),
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CompareImplMethodObligation { trait_item_def_id, .. },
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) = (&sub_trace.values.ty(), &sup_trace.values.ty(), sub_trace.cause.code())
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{
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if sup_expected_found == sub_expected_found {
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self.emit_err(
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var_origin.span(),
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*sub_expected,
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*sub_found,
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*trait_item_def_id,
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);
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return Some(ErrorGuaranteed);
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}
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}
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}
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self.emit_err(
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var_origin.span(),
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sub_expected,
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sub_found,
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*trait_item_def_id,
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);
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return Some(ErrorGuaranteed);
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}
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if let RegionResolutionError::ConcreteFailure(origin, _, _)
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| RegionResolutionError::GenericBoundFailure(origin, _, _) = error.clone()
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{
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if let SubregionOrigin::CompareImplTypeObligation {
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| RegionResolutionError::GenericBoundFailure(origin, _, _) = error.clone()
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&& let SubregionOrigin::CompareImplTypeObligation {
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span,
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impl_item_def_id,
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trait_item_def_id,
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} = origin
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{
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self.emit_associated_type_err(
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span,
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self.infcx.tcx.item_name(impl_item_def_id),
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impl_item_def_id,
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trait_item_def_id,
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);
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return Some(ErrorGuaranteed);
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}
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{
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self.emit_associated_type_err(
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span,
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self.infcx.tcx.item_name(impl_item_def_id),
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impl_item_def_id,
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trait_item_def_id,
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);
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return Some(ErrorGuaranteed);
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}
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None
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}
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|
|
|
@ -220,12 +220,10 @@ impl<'a, 'tcx> TypeFolder<'tcx> for InferenceFudger<'a, 'tcx> {
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}
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fn fold_region(&mut self, r: ty::Region<'tcx>) -> ty::Region<'tcx> {
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if let ty::ReVar(vid) = *r {
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if self.region_vars.0.contains(&vid) {
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let idx = vid.index() - self.region_vars.0.start.index();
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let origin = self.region_vars.1[idx];
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return self.infcx.next_region_var(origin);
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}
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if let ty::ReVar(vid) = *r && self.region_vars.0.contains(&vid) {
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let idx = vid.index() - self.region_vars.0.start.index();
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let origin = self.region_vars.1[idx];
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return self.infcx.next_region_var(origin);
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}
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r
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}
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|
|
|
@ -304,10 +304,8 @@ impl<'cx, 'tcx> LexicalResolver<'cx, 'tcx> {
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// check below for a common case, here purely as an
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// optimization.
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let b_universe = self.var_infos[b_vid].universe;
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if let ReEmpty(a_universe) = *a_region {
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if a_universe == b_universe {
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return false;
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}
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if let ReEmpty(a_universe) = *a_region && a_universe == b_universe {
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return false;
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}
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let mut lub = self.lub_concrete_regions(a_region, cur_region);
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|
@ -324,10 +322,8 @@ impl<'cx, 'tcx> LexicalResolver<'cx, 'tcx> {
|
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// tighter bound than `'static`.
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//
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// (This might e.g. arise from being asked to prove `for<'a> { 'b: 'a }`.)
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if let ty::RePlaceholder(p) = *lub {
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if b_universe.cannot_name(p.universe) {
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lub = self.tcx().lifetimes.re_static;
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}
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if let ty::RePlaceholder(p) = *lub && b_universe.cannot_name(p.universe) {
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lub = self.tcx().lifetimes.re_static;
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}
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debug!("Expanding value of {:?} from {:?} to {:?}", b_vid, cur_region, lub);
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|
|
|
@ -963,10 +963,8 @@ where
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) -> RelateResult<'tcx, ty::Region<'tcx>> {
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debug!("TypeGeneralizer::regions(a={:?})", a);
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if let ty::ReLateBound(debruijn, _) = *a {
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if debruijn < self.first_free_index {
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return Ok(a);
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||||
}
|
||||
if let ty::ReLateBound(debruijn, _) = *a && debruijn < self.first_free_index {
|
||||
return Ok(a);
|
||||
}
|
||||
|
||||
// For now, we just always create a fresh region variable to
|
||||
|
|
|
@ -470,10 +470,8 @@ impl<'tcx> RegionConstraintCollector<'_, 'tcx> {
|
|||
debug!("RegionConstraintCollector: add_verify({:?})", verify);
|
||||
|
||||
// skip no-op cases known to be satisfied
|
||||
if let VerifyBound::AllBounds(ref bs) = verify.bound {
|
||||
if bs.is_empty() {
|
||||
return;
|
||||
}
|
||||
if let VerifyBound::AllBounds(ref bs) = verify.bound && bs.is_empty() {
|
||||
return;
|
||||
}
|
||||
|
||||
let index = self.data.verifys.len();
|
||||
|
|
|
@ -12,18 +12,19 @@
|
|||
//!
|
||||
//! This API is completely unstable and subject to change.
|
||||
|
||||
#![allow(rustc::potential_query_instability)]
|
||||
#![doc(html_root_url = "https://doc.rust-lang.org/nightly/nightly-rustc/")]
|
||||
#![feature(bool_to_option)]
|
||||
#![feature(box_patterns)]
|
||||
#![feature(control_flow_enum)]
|
||||
#![feature(derive_default_enum)]
|
||||
#![feature(extend_one)]
|
||||
#![feature(let_else)]
|
||||
#![feature(never_type)]
|
||||
#![feature(control_flow_enum)]
|
||||
#![feature(min_specialization)]
|
||||
#![feature(label_break_value)]
|
||||
#![feature(let_chains)]
|
||||
#![feature(let_else)]
|
||||
#![feature(min_specialization)]
|
||||
#![feature(never_type)]
|
||||
#![recursion_limit = "512"] // For rustdoc
|
||||
#![allow(rustc::potential_query_instability)]
|
||||
|
||||
#[macro_use]
|
||||
extern crate rustc_macros;
|
||||
|
|
|
@ -60,12 +60,10 @@ pub fn report_object_safety_error<'tcx>(
|
|||
let mut multi_span = vec![];
|
||||
let mut messages = vec![];
|
||||
for violation in violations {
|
||||
if let ObjectSafetyViolation::SizedSelf(sp) = &violation {
|
||||
if !sp.is_empty() {
|
||||
// Do not report `SizedSelf` without spans pointing at `SizedSelf` obligations
|
||||
// with a `Span`.
|
||||
reported_violations.insert(ObjectSafetyViolation::SizedSelf(vec![].into()));
|
||||
}
|
||||
if let ObjectSafetyViolation::SizedSelf(sp) = &violation && !sp.is_empty() {
|
||||
// Do not report `SizedSelf` without spans pointing at `SizedSelf` obligations
|
||||
// with a `Span`.
|
||||
reported_violations.insert(ObjectSafetyViolation::SizedSelf(vec![].into()));
|
||||
}
|
||||
if reported_violations.insert(violation.clone()) {
|
||||
let spans = violation.spans();
|
||||
|
|
Loading…
Add table
Reference in a new issue