Only store a LocalDefId in hir::Item.
Items are guaranteed to be HIR owner.
This commit is contained in:
parent
5b68fc16ed
commit
2dc65397ee
22 changed files with 41 additions and 56 deletions
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@ -38,7 +38,7 @@ impl<'tcx> LateLintPass<'tcx> for CopyIterator {
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..
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}) = item.kind
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{
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let ty = cx.tcx.type_of(cx.tcx.hir().local_def_id(item.hir_id));
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let ty = cx.tcx.type_of(item.def_id);
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if is_copy(cx, ty) && match_path(&trait_ref.path, &paths::ITERATOR) {
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span_lint_and_note(
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@ -169,7 +169,7 @@ impl<'tcx> LateLintPass<'tcx> for Derive {
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..
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}) = item.kind
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{
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let ty = cx.tcx.type_of(cx.tcx.hir().local_def_id(item.hir_id));
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let ty = cx.tcx.type_of(item.def_id);
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let is_automatically_derived = is_automatically_derived(&*item.attrs);
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check_hash_peq(cx, item.span, trait_ref, ty, is_automatically_derived);
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@ -216,18 +216,17 @@ impl<'tcx> LateLintPass<'tcx> for DocMarkdown {
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let headers = check_attrs(cx, &self.valid_idents, &item.attrs);
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match item.kind {
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hir::ItemKind::Fn(ref sig, _, body_id) => {
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if !(is_entrypoint_fn(cx, cx.tcx.hir().local_def_id(item.hir_id).to_def_id())
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if !(is_entrypoint_fn(cx, item.def_id.to_def_id())
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|| in_external_macro(cx.tcx.sess, item.span))
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{
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let body = cx.tcx.hir().body(body_id);
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let impl_item_def_id = cx.tcx.hir().local_def_id(item.hir_id);
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let mut fpu = FindPanicUnwrap {
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cx,
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typeck_results: cx.tcx.typeck(impl_item_def_id),
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typeck_results: cx.tcx.typeck(item.def_id),
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panic_span: None,
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};
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fpu.visit_expr(&body.value);
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lint_for_missing_headers(cx, item.hir_id, item.span, sig, headers, Some(body_id), fpu.panic_span);
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lint_for_missing_headers(cx, item.hir_id(), item.span, sig, headers, Some(body_id), fpu.panic_span);
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}
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},
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hir::ItemKind::Impl(ref impl_) => {
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@ -49,9 +49,8 @@ impl<'tcx> LateLintPass<'tcx> for EmptyEnum {
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return;
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}
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let did = cx.tcx.hir().local_def_id(item.hir_id);
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if let ItemKind::Enum(..) = item.kind {
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let ty = cx.tcx.type_of(did);
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let ty = cx.tcx.type_of(item.def_id);
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let adt = ty.ty_adt_def().expect("already checked whether this is an enum");
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if adt.variants.is_empty() {
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span_lint_and_help(
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@ -72,7 +72,7 @@ impl LateLintPass<'_> for ExhaustiveItems {
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fn check_item(&mut self, cx: &LateContext<'_>, item: &Item<'_>) {
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if_chain! {
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if let ItemKind::Enum(..) | ItemKind::Struct(..) = item.kind;
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if cx.access_levels.is_exported(item.hir_id);
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if cx.access_levels.is_exported(item.hir_id());
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if !item.attrs.iter().any(|a| a.has_name(sym::non_exhaustive));
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then {
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let (lint, msg) = if let ItemKind::Struct(ref v, ..) = item.kind {
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@ -52,10 +52,9 @@ declare_lint_pass!(FallibleImplFrom => [FALLIBLE_IMPL_FROM]);
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impl<'tcx> LateLintPass<'tcx> for FallibleImplFrom {
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fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx hir::Item<'_>) {
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// check for `impl From<???> for ..`
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let impl_def_id = cx.tcx.hir().local_def_id(item.hir_id);
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if_chain! {
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if let hir::ItemKind::Impl(impl_) = &item.kind;
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if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(impl_def_id);
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if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(item.def_id);
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if cx.tcx.is_diagnostic_item(sym::from_trait, impl_trait_ref.def_id);
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then {
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lint_impl_body(cx, item.span, impl_.items);
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@ -60,10 +60,9 @@ impl LateLintPass<'_> for FromOverInto {
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return;
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}
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let impl_def_id = cx.tcx.hir().local_def_id(item.hir_id);
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if_chain! {
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if let hir::ItemKind::Impl{ .. } = &item.kind;
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if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(impl_def_id);
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if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(item.def_id);
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if match_def_path(cx, impl_trait_ref.def_id, &INTO);
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then {
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@ -283,13 +283,13 @@ impl<'tcx> LateLintPass<'tcx> for Functions {
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fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx hir::Item<'_>) {
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let attr = must_use_attr(&item.attrs);
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if let hir::ItemKind::Fn(ref sig, ref _generics, ref body_id) = item.kind {
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let is_public = cx.access_levels.is_exported(item.hir_id);
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let is_public = cx.access_levels.is_exported(item.hir_id());
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let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
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if is_public {
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check_result_unit_err(cx, &sig.decl, item.span, fn_header_span);
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}
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if let Some(attr) = attr {
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check_needless_must_use(cx, &sig.decl, item.hir_id, item.span, fn_header_span, attr);
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check_needless_must_use(cx, &sig.decl, item.hir_id(), item.span, fn_header_span, attr);
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return;
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}
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if is_public && !is_proc_macro(cx.sess(), &item.attrs) && attr_by_name(&item.attrs, "no_mangle").is_none() {
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@ -298,7 +298,7 @@ impl<'tcx> LateLintPass<'tcx> for Functions {
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&sig.decl,
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cx.tcx.hir().body(*body_id),
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item.span,
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item.hir_id,
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item.hir_id(),
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item.span.with_hi(sig.decl.output.span().hi()),
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"this function could have a `#[must_use]` attribute",
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);
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@ -59,20 +59,15 @@ impl<'tcx> LateLintPass<'tcx> for MultipleInherentImpl {
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// but filter out implementations that have generic params (type or lifetime)
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// or are derived from a macro
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if !in_macro(item.span) && generics.params.is_empty() {
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self.impls.insert(item.hir_id.owner.to_def_id(), item.span);
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self.impls.insert(item.def_id.to_def_id(), item.span);
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}
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}
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}
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fn check_crate_post(&mut self, cx: &LateContext<'tcx>, krate: &'tcx Crate<'_>) {
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if let Some(item) = krate.items.values().next() {
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if !krate.items.is_empty() {
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// Retrieve all inherent implementations from the crate, grouped by type
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for impls in cx
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.tcx
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.crate_inherent_impls(item.hir_id.owner.to_def_id().krate)
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.inherent_impls
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.values()
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{
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for impls in cx.tcx.crate_inherent_impls(def_id::LOCAL_CRATE).inherent_impls.values() {
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// Filter out implementations that have generic params (type or lifetime)
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let mut impl_spans = impls.iter().filter_map(|impl_def| self.impls.get(impl_def));
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if let Some(initial_span) = impl_spans.next() {
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@ -62,9 +62,8 @@ impl<'tcx> LateLintPass<'tcx> for LargeEnumVariant {
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if in_external_macro(cx.tcx.sess, item.span) {
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return;
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}
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let did = cx.tcx.hir().local_def_id(item.hir_id);
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if let ItemKind::Enum(ref def, _) = item.kind {
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let ty = cx.tcx.type_of(did);
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let ty = cx.tcx.type_of(item.def_id);
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let adt = ty.ty_adt_def().expect("already checked whether this is an enum");
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let mut largest_variant: Option<(_, _)> = None;
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@ -177,10 +177,9 @@ fn check_trait_items(cx: &LateContext<'_>, visited_trait: &Item<'_>, trait_items
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}
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}
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if cx.access_levels.is_exported(visited_trait.hir_id) && trait_items.iter().any(|i| is_named_self(cx, i, "len")) {
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if cx.access_levels.is_exported(visited_trait.hir_id()) && trait_items.iter().any(|i| is_named_self(cx, i, "len")) {
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let mut current_and_super_traits = FxHashSet::default();
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let visited_trait_def_id = cx.tcx.hir().local_def_id(visited_trait.hir_id);
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fill_trait_set(visited_trait_def_id.to_def_id(), &mut current_and_super_traits, cx);
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fill_trait_set(visited_trait.def_id.to_def_id(), &mut current_and_super_traits, cx);
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let is_empty_method_found = current_and_super_traits
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.iter()
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@ -230,8 +229,7 @@ fn check_impl_items(cx: &LateContext<'_>, item: &Item<'_>, impl_items: &[ImplIte
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if let Some(i) = impl_items.iter().find(|i| is_named_self(cx, i, "len")) {
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if cx.access_levels.is_exported(i.id.hir_id) {
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let def_id = cx.tcx.hir().local_def_id(item.hir_id);
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let ty = cx.tcx.type_of(def_id);
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let ty = cx.tcx.type_of(item.def_id);
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span_lint(
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cx,
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@ -1687,8 +1687,7 @@ impl<'tcx> LateLintPass<'tcx> for Methods {
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let name = impl_item.ident.name.as_str();
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let parent = cx.tcx.hir().get_parent_item(impl_item.hir_id);
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let item = cx.tcx.hir().expect_item(parent);
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let def_id = cx.tcx.hir().local_def_id(item.hir_id);
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let self_ty = cx.tcx.type_of(def_id);
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let self_ty = cx.tcx.type_of(item.def_id);
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// if this impl block implements a trait, lint in trait definition instead
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if let hir::ItemKind::Impl(hir::Impl { of_trait: Some(_), .. }) = item.kind {
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@ -135,8 +135,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
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hir::ItemKind::Fn(..) => {
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// ignore main()
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if it.ident.name == sym::main {
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let def_id = it.hir_id.owner;
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let def_key = cx.tcx.hir().def_key(def_id);
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let def_key = cx.tcx.hir().def_key(it.def_id);
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if def_key.parent == Some(hir::def_id::CRATE_DEF_INDEX) {
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return;
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}
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@ -159,8 +158,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
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| hir::ItemKind::Use(..) => return,
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};
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let def_id = cx.tcx.hir().local_def_id(it.hir_id);
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let (article, desc) = cx.tcx.article_and_description(def_id.to_def_id());
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let (article, desc) = cx.tcx.article_and_description(it.def_id.to_def_id());
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self.check_missing_docs_attrs(cx, &it.attrs, it.span, article, desc);
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}
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@ -87,7 +87,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
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return;
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}
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if !cx.access_levels.is_exported(it.hir_id) {
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if !cx.access_levels.is_exported(it.hir_id()) {
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return;
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}
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match it.kind {
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@ -57,7 +57,7 @@ declare_lint_pass!(MutableKeyType => [ MUTABLE_KEY_TYPE ]);
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impl<'tcx> LateLintPass<'tcx> for MutableKeyType {
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fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx hir::Item<'tcx>) {
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if let hir::ItemKind::Fn(ref sig, ..) = item.kind {
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check_sig(cx, item.hir_id, &sig.decl);
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check_sig(cx, item.hir_id(), &sig.decl);
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}
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}
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@ -5,11 +5,12 @@
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use crate::utils::{is_automatically_derived, snippet_opt, span_lint_and_then};
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use if_chain::if_chain;
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use rustc_errors::Applicability;
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use rustc_hir::{BindingAnnotation, BorrowKind, Expr, ExprKind, HirId, Item, Mutability, Pat, PatKind};
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use rustc_hir::{BindingAnnotation, BorrowKind, Expr, ExprKind, Item, Mutability, Pat, PatKind};
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use rustc_lint::{LateContext, LateLintPass};
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use rustc_middle::ty;
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use rustc_middle::ty::adjustment::{Adjust, Adjustment};
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use rustc_session::{declare_tool_lint, impl_lint_pass};
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use rustc_span::def_id::LocalDefId;
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declare_clippy_lint! {
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/// **What it does:** Checks for address of operations (`&`) that are going to
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@ -35,7 +36,7 @@ declare_clippy_lint! {
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#[derive(Default)]
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pub struct NeedlessBorrow {
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derived_item: Option<HirId>,
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derived_item: Option<LocalDefId>,
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}
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impl_lint_pass!(NeedlessBorrow => [NEEDLESS_BORROW]);
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@ -117,13 +118,13 @@ impl<'tcx> LateLintPass<'tcx> for NeedlessBorrow {
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fn check_item(&mut self, _: &LateContext<'tcx>, item: &'tcx Item<'_>) {
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if is_automatically_derived(item.attrs) {
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debug_assert!(self.derived_item.is_none());
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self.derived_item = Some(item.hir_id);
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self.derived_item = Some(item.def_id);
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}
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}
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fn check_item_post(&mut self, _: &LateContext<'tcx>, item: &'tcx Item<'_>) {
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if let Some(id) = self.derived_item {
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if item.hir_id == id {
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if item.def_id == id {
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self.derived_item = None;
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}
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}
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@ -124,7 +124,7 @@ declare_lint_pass!(Ptr => [PTR_ARG, CMP_NULL, MUT_FROM_REF]);
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impl<'tcx> LateLintPass<'tcx> for Ptr {
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fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx Item<'_>) {
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if let ItemKind::Fn(ref sig, _, body_id) = item.kind {
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check_fn(cx, &sig.decl, item.hir_id, Some(body_id));
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check_fn(cx, &sig.decl, item.hir_id(), Some(body_id));
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}
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}
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@ -42,11 +42,10 @@ impl_lint_pass!(RedundantPubCrate => [REDUNDANT_PUB_CRATE]);
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impl<'tcx> LateLintPass<'tcx> for RedundantPubCrate {
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fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx Item<'tcx>) {
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if let VisibilityKind::Crate { .. } = item.vis.node {
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if !cx.access_levels.is_exported(item.hir_id) {
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if !cx.access_levels.is_exported(item.hir_id()) {
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if let Some(false) = self.is_exported.last() {
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let span = item.span.with_hi(item.ident.span.hi());
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let def_id = cx.tcx.hir().local_def_id(item.hir_id);
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let descr = cx.tcx.def_kind(def_id).descr(def_id.to_def_id());
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let descr = cx.tcx.def_kind(item.def_id).descr(item.def_id.to_def_id());
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span_lint_and_then(
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cx,
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REDUNDANT_PUB_CRATE,
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@ -66,7 +65,7 @@ impl<'tcx> LateLintPass<'tcx> for RedundantPubCrate {
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}
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if let ItemKind::Mod { .. } = item.kind {
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self.is_exported.push(cx.access_levels.is_exported(item.hir_id));
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self.is_exported.push(cx.access_levels.is_exported(item.hir_id()));
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}
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}
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@ -1106,7 +1106,9 @@ fn is_empty_block(expr: &Expr<'_>) -> bool {
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expr.kind,
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ExprKind::Block(
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Block {
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stmts: &[], expr: None, ..
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stmts: &[],
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expr: None,
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..
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},
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_,
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)
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@ -2565,7 +2567,7 @@ impl<'tcx> LateLintPass<'tcx> for ImplicitHasher {
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}
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}
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if !cx.access_levels.is_exported(item.hir_id) {
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if !cx.access_levels.is_exported(item.hir_id()) {
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return;
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}
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@ -196,8 +196,7 @@ impl<'tcx> LateLintPass<'tcx> for UseSelf {
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item_path,
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cx,
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};
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let impl_def_id = cx.tcx.hir().local_def_id(item.hir_id);
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let impl_trait_ref = cx.tcx.impl_trait_ref(impl_def_id);
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let impl_trait_ref = cx.tcx.impl_trait_ref(item.def_id);
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if let Some(impl_trait_ref) = impl_trait_ref {
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for impl_item_ref in impl_.items {
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@ -370,7 +370,7 @@ fn print_expr(cx: &LateContext<'_>, expr: &hir::Expr<'_>, indent: usize) {
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}
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fn print_item(cx: &LateContext<'_>, item: &hir::Item<'_>) {
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let did = cx.tcx.hir().local_def_id(item.hir_id);
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let did = item.def_id;
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println!("item `{}`", item.ident.name);
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match item.vis.node {
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hir::VisibilityKind::Public => println!("public"),
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@ -383,8 +383,7 @@ fn print_item(cx: &LateContext<'_>, item: &hir::Item<'_>) {
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}
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match item.kind {
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hir::ItemKind::ExternCrate(ref _renamed_from) => {
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let def_id = cx.tcx.hir().local_def_id(item.hir_id);
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if let Some(crate_id) = cx.tcx.extern_mod_stmt_cnum(def_id) {
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if let Some(crate_id) = cx.tcx.extern_mod_stmt_cnum(did) {
|
||||
let source = cx.tcx.used_crate_source(crate_id);
|
||||
if let Some(ref src) = source.dylib {
|
||||
println!("extern crate dylib source: {:?}", src.0);
|
||||
|
|
|
@ -113,7 +113,7 @@ impl LateLintPass<'_> for WildcardImports {
|
|||
if_chain! {
|
||||
if let ItemKind::Use(use_path, UseKind::Glob) = &item.kind;
|
||||
if self.warn_on_all || !self.check_exceptions(item, use_path.segments);
|
||||
let used_imports = cx.tcx.names_imported_by_glob_use(item.hir_id.owner);
|
||||
let used_imports = cx.tcx.names_imported_by_glob_use(item.def_id);
|
||||
if !used_imports.is_empty(); // Already handled by `unused_imports`
|
||||
then {
|
||||
let mut applicability = Applicability::MachineApplicable;
|
||||
|
|
Loading…
Reference in a new issue