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Rename some OwnerId fields.

spastorino noticed some silly expressions like `item_id.def_id.def_id`.

This commit renames several `def_id: OwnerId` fields as `owner_id`, so
those expressions become `item_id.owner_id.def_id`.

`item_id.owner_id.local_def_id` would be even clearer, but the use of
`def_id` for values of type `LocalDefId` is *very* widespread, so I left
that alone.
This commit is contained in:
Nicholas Nethercote 2022-10-27 14:02:18 +11:00
parent 26eeeeec76
commit efca32e23a
46 changed files with 115 additions and 115 deletions

View file

@ -43,7 +43,7 @@ impl<'tcx> LateLintPass<'tcx> for CopyIterator {
of_trait: Some(ref trait_ref),
..
}) = item.kind;
let ty = cx.tcx.type_of(item.def_id);
let ty = cx.tcx.type_of(item.owner_id);
if is_copy(cx, ty);
if let Some(trait_id) = trait_ref.trait_def_id();
if cx.tcx.is_diagnostic_item(sym::Iterator, trait_id);

View file

@ -61,7 +61,7 @@ impl<'tcx> LateLintPass<'tcx> for DefaultUnionRepresentation {
None,
&format!(
"consider annotating `{}` with `#[repr(C)]` to explicitly specify memory layout",
cx.tcx.def_path_str(item.def_id.to_def_id())
cx.tcx.def_path_str(item.owner_id.to_def_id())
),
);
}

View file

@ -715,47 +715,47 @@ fn walk_parents<'tcx>(
},
Node::Item(&Item {
kind: ItemKind::Static(..) | ItemKind::Const(..),
def_id,
owner_id,
span,
..
})
| Node::TraitItem(&TraitItem {
kind: TraitItemKind::Const(..),
def_id,
owner_id,
span,
..
})
| Node::ImplItem(&ImplItem {
kind: ImplItemKind::Const(..),
def_id,
owner_id,
span,
..
}) if span.ctxt() == ctxt => {
let ty = cx.tcx.type_of(def_id.def_id);
let ty = cx.tcx.type_of(owner_id.def_id);
Some(ty_auto_deref_stability(cx, ty, precedence).position_for_result(cx))
},
Node::Item(&Item {
kind: ItemKind::Fn(..),
def_id,
owner_id,
span,
..
})
| Node::TraitItem(&TraitItem {
kind: TraitItemKind::Fn(..),
def_id,
owner_id,
span,
..
})
| Node::ImplItem(&ImplItem {
kind: ImplItemKind::Fn(..),
def_id,
owner_id,
span,
..
}) if span.ctxt() == ctxt => {
let output = cx
.tcx
.erase_late_bound_regions(cx.tcx.fn_sig(def_id.to_def_id()).output());
.erase_late_bound_regions(cx.tcx.fn_sig(owner_id.to_def_id()).output());
Some(ty_auto_deref_stability(cx, output, precedence).position_for_result(cx))
},

View file

@ -70,7 +70,7 @@ impl<'tcx> LateLintPass<'tcx> for DerivableImpls {
self_ty,
..
}) = item.kind;
if !cx.tcx.has_attr(item.def_id.to_def_id(), sym::automatically_derived);
if !cx.tcx.has_attr(item.owner_id.to_def_id(), sym::automatically_derived);
if !item.span.from_expansion();
if let Some(def_id) = trait_ref.trait_def_id();
if cx.tcx.is_diagnostic_item(sym::Default, def_id);
@ -78,7 +78,7 @@ impl<'tcx> LateLintPass<'tcx> for DerivableImpls {
if let Some(Node::ImplItem(impl_item)) = cx.tcx.hir().find(impl_item_hir);
if let ImplItemKind::Fn(_, b) = &impl_item.kind;
if let Body { value: func_expr, .. } = cx.tcx.hir().body(*b);
if let Some(adt_def) = cx.tcx.type_of(item.def_id).ty_adt_def();
if let Some(adt_def) = cx.tcx.type_of(item.owner_id).ty_adt_def();
if let attrs = cx.tcx.hir().attrs(item.hir_id());
if !attrs.iter().any(|attr| attr.doc_str().is_some());
if let child_attrs = cx.tcx.hir().attrs(impl_item_hir);

View file

@ -210,8 +210,8 @@ impl<'tcx> LateLintPass<'tcx> for Derive {
..
}) = item.kind
{
let ty = cx.tcx.type_of(item.def_id);
let is_automatically_derived = cx.tcx.has_attr(item.def_id.to_def_id(), sym::automatically_derived);
let ty = cx.tcx.type_of(item.owner_id);
let is_automatically_derived = cx.tcx.has_attr(item.owner_id.to_def_id(), sym::automatically_derived);
check_hash_peq(cx, item.span, trait_ref, ty, is_automatically_derived);
check_ord_partial_ord(cx, item.span, trait_ref, ty, is_automatically_derived);

View file

@ -257,17 +257,17 @@ impl<'tcx> LateLintPass<'tcx> for DocMarkdown {
let headers = check_attrs(cx, &self.valid_idents, attrs);
match item.kind {
hir::ItemKind::Fn(ref sig, _, body_id) => {
if !(is_entrypoint_fn(cx, item.def_id.to_def_id()) || in_external_macro(cx.tcx.sess, item.span)) {
if !(is_entrypoint_fn(cx, item.owner_id.to_def_id()) || in_external_macro(cx.tcx.sess, item.span)) {
let body = cx.tcx.hir().body(body_id);
let mut fpu = FindPanicUnwrap {
cx,
typeck_results: cx.tcx.typeck(item.def_id.def_id),
typeck_results: cx.tcx.typeck(item.owner_id.def_id),
panic_span: None,
};
fpu.visit_expr(body.value);
lint_for_missing_headers(
cx,
item.def_id.def_id,
item.owner_id.def_id,
item.span,
sig,
headers,
@ -304,7 +304,7 @@ impl<'tcx> LateLintPass<'tcx> for DocMarkdown {
let headers = check_attrs(cx, &self.valid_idents, attrs);
if let hir::TraitItemKind::Fn(ref sig, ..) = item.kind {
if !in_external_macro(cx.tcx.sess, item.span) {
lint_for_missing_headers(cx, item.def_id.def_id, item.span, sig, headers, None, None);
lint_for_missing_headers(cx, item.owner_id.def_id, item.span, sig, headers, None, None);
}
}
}
@ -319,13 +319,13 @@ impl<'tcx> LateLintPass<'tcx> for DocMarkdown {
let body = cx.tcx.hir().body(body_id);
let mut fpu = FindPanicUnwrap {
cx,
typeck_results: cx.tcx.typeck(item.def_id.def_id),
typeck_results: cx.tcx.typeck(item.owner_id.def_id),
panic_span: None,
};
fpu.visit_expr(body.value);
lint_for_missing_headers(
cx,
item.def_id.def_id,
item.owner_id.def_id,
item.span,
sig,
headers,

View file

@ -49,7 +49,7 @@ impl<'tcx> LateLintPass<'tcx> for EmptyEnum {
}
if let ItemKind::Enum(..) = item.kind {
let ty = cx.tcx.type_of(item.def_id);
let ty = cx.tcx.type_of(item.owner_id);
let adt = ty.ty_adt_def().expect("already checked whether this is an enum");
if adt.variants().is_empty() {
span_lint_and_help(

View file

@ -265,7 +265,7 @@ impl LateLintPass<'_> for EnumVariantNames {
}
// The `module_name_repetitions` lint should only trigger if the item has the module in its
// name. Having the same name is accepted.
if cx.tcx.visibility(item.def_id).is_public() && item_camel.len() > mod_camel.len() {
if cx.tcx.visibility(item.owner_id).is_public() && item_camel.len() > mod_camel.len() {
let matching = count_match_start(mod_camel, &item_camel);
let rmatching = count_match_end(mod_camel, &item_camel);
let nchars = mod_camel.chars().count();
@ -296,7 +296,7 @@ impl LateLintPass<'_> for EnumVariantNames {
}
}
if let ItemKind::Enum(ref def, _) = item.kind {
if !(self.avoid_breaking_exported_api && cx.effective_visibilities.is_exported(item.def_id.def_id)) {
if !(self.avoid_breaking_exported_api && cx.effective_visibilities.is_exported(item.owner_id.def_id)) {
check_variant(cx, self.threshold, def, item_name, item.span);
}
}

View file

@ -88,7 +88,7 @@ impl<'tcx> LateLintPass<'tcx> for BoxedLocal {
// be sure we have `self` parameter in this function
if trait_item.kind == (AssocItemKind::Fn { has_self: true }) {
trait_self_ty = Some(
TraitRef::identity(cx.tcx, trait_item.id.def_id.to_def_id())
TraitRef::identity(cx.tcx, trait_item.id.owner_id.to_def_id())
.self_ty()
.skip_binder(),
);

View file

@ -73,7 +73,7 @@ impl LateLintPass<'_> for ExhaustiveItems {
fn check_item(&mut self, cx: &LateContext<'_>, item: &Item<'_>) {
if_chain! {
if let ItemKind::Enum(..) | ItemKind::Struct(..) = item.kind;
if cx.effective_visibilities.is_exported(item.def_id.def_id);
if cx.effective_visibilities.is_exported(item.owner_id.def_id);
let attrs = cx.tcx.hir().attrs(item.hir_id());
if !attrs.iter().any(|a| a.has_name(sym::non_exhaustive));
then {

View file

@ -55,7 +55,7 @@ impl<'tcx> LateLintPass<'tcx> for FallibleImplFrom {
// check for `impl From<???> for ..`
if_chain! {
if let hir::ItemKind::Impl(impl_) = &item.kind;
if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(item.def_id);
if let Some(impl_trait_ref) = cx.tcx.impl_trait_ref(item.owner_id);
if cx.tcx.is_diagnostic_item(sym::From, impl_trait_ref.def_id);
then {
lint_impl_body(cx, item.span, impl_.items);
@ -107,7 +107,7 @@ fn lint_impl_body<'tcx>(cx: &LateContext<'tcx>, impl_span: Span, impl_items: &[h
let body = cx.tcx.hir().body(body_id);
let mut fpu = FindPanicUnwrap {
lcx: cx,
typeck_results: cx.tcx.typeck(impl_item.id.def_id.def_id),
typeck_results: cx.tcx.typeck(impl_item.id.owner_id.def_id),
result: Vec::new(),
};
fpu.visit_expr(body.value);

View file

@ -76,7 +76,7 @@ impl<'tcx> LateLintPass<'tcx> for FromOverInto {
&& let Some(into_trait_seg) = hir_trait_ref.path.segments.last()
// `impl Into<target_ty> for self_ty`
&& let Some(GenericArgs { args: [GenericArg::Type(target_ty)], .. }) = into_trait_seg.args
&& let Some(middle_trait_ref) = cx.tcx.impl_trait_ref(item.def_id)
&& let Some(middle_trait_ref) = cx.tcx.impl_trait_ref(item.owner_id)
&& cx.tcx.is_diagnostic_item(sym::Into, middle_trait_ref.def_id)
{
span_lint_and_then(

View file

@ -22,9 +22,9 @@ use super::{DOUBLE_MUST_USE, MUST_USE_CANDIDATE, MUST_USE_UNIT};
pub(super) fn check_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::Item<'_>) {
let attrs = cx.tcx.hir().attrs(item.hir_id());
let attr = cx.tcx.get_attr(item.def_id.to_def_id(), sym::must_use);
let attr = cx.tcx.get_attr(item.owner_id.to_def_id(), sym::must_use);
if let hir::ItemKind::Fn(ref sig, _generics, ref body_id) = item.kind {
let is_public = cx.effective_visibilities.is_exported(item.def_id.def_id);
let is_public = cx.effective_visibilities.is_exported(item.owner_id.def_id);
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
if let Some(attr) = attr {
check_needless_must_use(cx, sig.decl, item.hir_id(), item.span, fn_header_span, attr);
@ -34,7 +34,7 @@ pub(super) fn check_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::Item<'_>
sig.decl,
cx.tcx.hir().body(*body_id),
item.span,
item.def_id.def_id,
item.owner_id.def_id,
item.span.with_hi(sig.decl.output.span().hi()),
"this function could have a `#[must_use]` attribute",
);
@ -44,20 +44,20 @@ pub(super) fn check_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::Item<'_>
pub(super) fn check_impl_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::ImplItem<'_>) {
if let hir::ImplItemKind::Fn(ref sig, ref body_id) = item.kind {
let is_public = cx.effective_visibilities.is_exported(item.def_id.def_id);
let is_public = cx.effective_visibilities.is_exported(item.owner_id.def_id);
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
let attrs = cx.tcx.hir().attrs(item.hir_id());
let attr = cx.tcx.get_attr(item.def_id.to_def_id(), sym::must_use);
let attr = cx.tcx.get_attr(item.owner_id.to_def_id(), sym::must_use);
if let Some(attr) = attr {
check_needless_must_use(cx, sig.decl, item.hir_id(), item.span, fn_header_span, attr);
} else if is_public && !is_proc_macro(cx.sess(), attrs) && trait_ref_of_method(cx, item.def_id.def_id).is_none()
} else if is_public && !is_proc_macro(cx.sess(), attrs) && trait_ref_of_method(cx, item.owner_id.def_id).is_none()
{
check_must_use_candidate(
cx,
sig.decl,
cx.tcx.hir().body(*body_id),
item.span,
item.def_id.def_id,
item.owner_id.def_id,
item.span.with_hi(sig.decl.output.span().hi()),
"this method could have a `#[must_use]` attribute",
);
@ -67,11 +67,11 @@ pub(super) fn check_impl_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::Imp
pub(super) fn check_trait_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::TraitItem<'_>) {
if let hir::TraitItemKind::Fn(ref sig, ref eid) = item.kind {
let is_public = cx.effective_visibilities.is_exported(item.def_id.def_id);
let is_public = cx.effective_visibilities.is_exported(item.owner_id.def_id);
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
let attrs = cx.tcx.hir().attrs(item.hir_id());
let attr = cx.tcx.get_attr(item.def_id.to_def_id(), sym::must_use);
let attr = cx.tcx.get_attr(item.owner_id.to_def_id(), sym::must_use);
if let Some(attr) = attr {
check_needless_must_use(cx, sig.decl, item.hir_id(), item.span, fn_header_span, attr);
} else if let hir::TraitFn::Provided(eid) = *eid {
@ -82,7 +82,7 @@ pub(super) fn check_trait_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::Tr
sig.decl,
body,
item.span,
item.def_id.def_id,
item.owner_id.def_id,
item.span.with_hi(sig.decl.output.span().hi()),
"this method could have a `#[must_use]` attribute",
);

View file

@ -31,7 +31,7 @@ pub(super) fn check_fn<'tcx>(
pub(super) fn check_trait_item<'tcx>(cx: &LateContext<'tcx>, item: &'tcx hir::TraitItem<'_>) {
if let hir::TraitItemKind::Fn(ref sig, hir::TraitFn::Provided(eid)) = item.kind {
let body = cx.tcx.hir().body(eid);
check_raw_ptr(cx, sig.header.unsafety, sig.decl, body, item.def_id.def_id);
check_raw_ptr(cx, sig.header.unsafety, sig.decl, body, item.owner_id.def_id);
}
}

View file

@ -34,9 +34,9 @@ fn result_err_ty<'tcx>(
pub(super) fn check_item<'tcx>(cx: &LateContext<'tcx>, item: &hir::Item<'tcx>, large_err_threshold: u64) {
if let hir::ItemKind::Fn(ref sig, _generics, _) = item.kind
&& let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.def_id.def_id, item.span)
&& let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.owner_id.def_id, item.span)
{
if cx.effective_visibilities.is_exported(item.def_id.def_id) {
if cx.effective_visibilities.is_exported(item.owner_id.def_id) {
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
check_result_unit_err(cx, err_ty, fn_header_span);
}
@ -47,10 +47,10 @@ pub(super) fn check_item<'tcx>(cx: &LateContext<'tcx>, item: &hir::Item<'tcx>, l
pub(super) fn check_impl_item<'tcx>(cx: &LateContext<'tcx>, item: &hir::ImplItem<'tcx>, large_err_threshold: u64) {
// Don't lint if method is a trait's implementation, we can't do anything about those
if let hir::ImplItemKind::Fn(ref sig, _) = item.kind
&& let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.def_id.def_id, item.span)
&& trait_ref_of_method(cx, item.def_id.def_id).is_none()
&& let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.owner_id.def_id, item.span)
&& trait_ref_of_method(cx, item.owner_id.def_id).is_none()
{
if cx.effective_visibilities.is_exported(item.def_id.def_id) {
if cx.effective_visibilities.is_exported(item.owner_id.def_id) {
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
check_result_unit_err(cx, err_ty, fn_header_span);
}
@ -61,8 +61,8 @@ pub(super) fn check_impl_item<'tcx>(cx: &LateContext<'tcx>, item: &hir::ImplItem
pub(super) fn check_trait_item<'tcx>(cx: &LateContext<'tcx>, item: &hir::TraitItem<'tcx>, large_err_threshold: u64) {
if let hir::TraitItemKind::Fn(ref sig, _) = item.kind {
let fn_header_span = item.span.with_hi(sig.decl.output.span().hi());
if let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.def_id.def_id, item.span) {
if cx.effective_visibilities.is_exported(item.def_id.def_id) {
if let Some((hir_ty, err_ty)) = result_err_ty(cx, sig.decl, item.owner_id.def_id, item.span) {
if cx.effective_visibilities.is_exported(item.owner_id.def_id) {
check_result_unit_err(cx, err_ty, fn_header_span);
}
check_result_large_err(cx, err_ty, hir_ty.span, large_err_threshold);

View file

@ -111,7 +111,7 @@ impl<'tcx> LateLintPass<'tcx> for ImplicitHasher {
}
}
if !cx.effective_visibilities.is_exported(item.def_id.def_id) {
if !cx.effective_visibilities.is_exported(item.owner_id.def_id) {
return;
}

View file

@ -108,7 +108,7 @@ impl<'tcx> LateLintPass<'tcx> for InherentToString {
if is_type_diagnostic_item(cx, return_ty(cx, impl_item.hir_id()), sym::String);
// Filters instances of to_string which are required by a trait
if trait_ref_of_method(cx, impl_item.def_id.def_id).is_none();
if trait_ref_of_method(cx, impl_item.owner_id.def_id).is_none();
then {
show_lint(cx, impl_item);
@ -124,7 +124,7 @@ fn show_lint(cx: &LateContext<'_>, item: &ImplItem<'_>) {
.expect("Failed to get trait ID of `Display`!");
// Get the real type of 'self'
let self_type = cx.tcx.fn_sig(item.def_id).input(0);
let self_type = cx.tcx.fn_sig(item.owner_id).input(0);
let self_type = self_type.skip_binder().peel_refs();
// Emit either a warning or an error

View file

@ -44,7 +44,7 @@ impl<'tcx> LateLintPass<'tcx> for IterNotReturningIterator {
let name = item.ident.name.as_str();
if matches!(name, "iter" | "iter_mut") {
if let TraitItemKind::Fn(fn_sig, _) = &item.kind {
check_sig(cx, name, fn_sig, item.def_id.def_id);
check_sig(cx, name, fn_sig, item.owner_id.def_id);
}
}
}
@ -58,7 +58,7 @@ impl<'tcx> LateLintPass<'tcx> for IterNotReturningIterator {
)
{
if let ImplItemKind::Fn(fn_sig, _) = &item.kind {
check_sig(cx, name, fn_sig, item.def_id.def_id);
check_sig(cx, name, fn_sig, item.owner_id.def_id);
}
}
}

View file

@ -123,7 +123,7 @@ impl<'tcx> LateLintPass<'tcx> for LargeEnumVariant {
return;
}
if let ItemKind::Enum(ref def, _) = item.kind {
let ty = cx.tcx.type_of(item.def_id);
let ty = cx.tcx.type_of(item.owner_id);
let Adt(adt, subst) = ty.kind() else {
panic!("already checked whether this is an enum")
};

View file

@ -134,7 +134,7 @@ impl<'tcx> LateLintPass<'tcx> for LenZero {
if item.ident.name == sym::len;
if let ImplItemKind::Fn(sig, _) = &item.kind;
if sig.decl.implicit_self.has_implicit_self();
if cx.effective_visibilities.is_exported(item.def_id.def_id);
if cx.effective_visibilities.is_exported(item.owner_id.def_id);
if matches!(sig.decl.output, FnRetTy::Return(_));
if let Some(imp) = get_parent_as_impl(cx.tcx, item.hir_id());
if imp.of_trait.is_none();
@ -143,7 +143,7 @@ impl<'tcx> LateLintPass<'tcx> for LenZero {
if let Some(local_id) = ty_id.as_local();
let ty_hir_id = cx.tcx.hir().local_def_id_to_hir_id(local_id);
if !is_lint_allowed(cx, LEN_WITHOUT_IS_EMPTY, ty_hir_id);
if let Some(output) = parse_len_output(cx, cx.tcx.fn_sig(item.def_id).skip_binder());
if let Some(output) = parse_len_output(cx, cx.tcx.fn_sig(item.owner_id).skip_binder());
then {
let (name, kind) = match cx.tcx.hir().find(ty_hir_id) {
Some(Node::ForeignItem(x)) => (x.ident.name, "extern type"),
@ -195,7 +195,7 @@ fn check_trait_items(cx: &LateContext<'_>, visited_trait: &Item<'_>, trait_items
fn is_named_self(cx: &LateContext<'_>, item: &TraitItemRef, name: Symbol) -> bool {
item.ident.name == name
&& if let AssocItemKind::Fn { has_self } = item.kind {
has_self && { cx.tcx.fn_sig(item.id.def_id).inputs().skip_binder().len() == 1 }
has_self && { cx.tcx.fn_sig(item.id.owner_id).inputs().skip_binder().len() == 1 }
} else {
false
}
@ -210,11 +210,11 @@ fn check_trait_items(cx: &LateContext<'_>, visited_trait: &Item<'_>, trait_items
}
}
if cx.effective_visibilities.is_exported(visited_trait.def_id.def_id)
if cx.effective_visibilities.is_exported(visited_trait.owner_id.def_id)
&& trait_items.iter().any(|i| is_named_self(cx, i, sym::len))
{
let mut current_and_super_traits = DefIdSet::default();
fill_trait_set(visited_trait.def_id.to_def_id(), &mut current_and_super_traits, cx);
fill_trait_set(visited_trait.owner_id.to_def_id(), &mut current_and_super_traits, cx);
let is_empty = sym!(is_empty);
let is_empty_method_found = current_and_super_traits

View file

@ -102,7 +102,7 @@ impl<'tcx> LateLintPass<'tcx> for Lifetimes {
fn check_impl_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx ImplItem<'_>) {
if let ImplItemKind::Fn(ref sig, id) = item.kind {
let report_extra_lifetimes = trait_ref_of_method(cx, item.def_id.def_id).is_none();
let report_extra_lifetimes = trait_ref_of_method(cx, item.owner_id.def_id).is_none();
check_fn_inner(
cx,
sig.decl,

View file

@ -166,7 +166,7 @@ impl<'tcx> LateLintPass<'tcx> for ManualNonExhaustiveEnum {
if let Some((id, span)) = iter.next()
&& iter.next().is_none()
{
self.potential_enums.push((item.def_id.def_id, id, item.span, span));
self.potential_enums.push((item.owner_id.def_id, id, item.span, span));
}
}
}

View file

@ -3250,15 +3250,15 @@ impl<'tcx> LateLintPass<'tcx> for Methods {
let name = impl_item.ident.name.as_str();
let parent = cx.tcx.hir().get_parent_item(impl_item.hir_id()).def_id;
let item = cx.tcx.hir().expect_item(parent);
let self_ty = cx.tcx.type_of(item.def_id);
let self_ty = cx.tcx.type_of(item.owner_id);
let implements_trait = matches!(item.kind, hir::ItemKind::Impl(hir::Impl { of_trait: Some(_), .. }));
if let hir::ImplItemKind::Fn(ref sig, id) = impl_item.kind {
let method_sig = cx.tcx.fn_sig(impl_item.def_id);
let method_sig = cx.tcx.fn_sig(impl_item.owner_id);
let method_sig = cx.tcx.erase_late_bound_regions(method_sig);
let first_arg_ty_opt = method_sig.inputs().iter().next().copied();
// if this impl block implements a trait, lint in trait definition instead
if !implements_trait && cx.effective_visibilities.is_exported(impl_item.def_id.def_id) {
if !implements_trait && cx.effective_visibilities.is_exported(impl_item.owner_id.def_id) {
// check missing trait implementations
for method_config in &TRAIT_METHODS {
if name == method_config.method_name
@ -3292,7 +3292,7 @@ impl<'tcx> LateLintPass<'tcx> for Methods {
if sig.decl.implicit_self.has_implicit_self()
&& !(self.avoid_breaking_exported_api
&& cx.effective_visibilities.is_exported(impl_item.def_id.def_id))
&& cx.effective_visibilities.is_exported(impl_item.owner_id.def_id))
&& let Some(first_arg) = iter_input_pats(sig.decl, cx.tcx.hir().body(id)).next()
&& let Some(first_arg_ty) = first_arg_ty_opt
{
@ -3370,7 +3370,7 @@ impl<'tcx> LateLintPass<'tcx> for Methods {
then {
let first_arg_span = first_arg_ty.span;
let first_arg_ty = hir_ty_to_ty(cx.tcx, first_arg_ty);
let self_ty = TraitRef::identity(cx.tcx, item.def_id.to_def_id())
let self_ty = TraitRef::identity(cx.tcx, item.owner_id.to_def_id())
.self_ty()
.skip_binder();
wrong_self_convention::check(
@ -3389,7 +3389,7 @@ impl<'tcx> LateLintPass<'tcx> for Methods {
if item.ident.name == sym::new;
if let TraitItemKind::Fn(_, _) = item.kind;
let ret_ty = return_ty(cx, item.hir_id());
let self_ty = TraitRef::identity(cx.tcx, item.def_id.to_def_id())
let self_ty = TraitRef::identity(cx.tcx, item.owner_id.to_def_id())
.self_ty()
.skip_binder();
if !ret_ty.contains(self_ty);

View file

@ -131,7 +131,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
hir::ItemKind::Fn(..) => {
// ignore main()
if it.ident.name == sym::main {
let at_root = cx.tcx.local_parent(it.def_id.def_id) == CRATE_DEF_ID;
let at_root = cx.tcx.local_parent(it.owner_id.def_id) == CRATE_DEF_ID;
if at_root {
return;
}
@ -155,7 +155,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
| hir::ItemKind::Use(..) => return,
};
let (article, desc) = cx.tcx.article_and_description(it.def_id.to_def_id());
let (article, desc) = cx.tcx.article_and_description(it.owner_id.to_def_id());
let attrs = cx.tcx.hir().attrs(it.hir_id());
if !is_from_proc_macro(cx, it) {
@ -164,7 +164,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
}
fn check_trait_item(&mut self, cx: &LateContext<'tcx>, trait_item: &'tcx hir::TraitItem<'_>) {
let (article, desc) = cx.tcx.article_and_description(trait_item.def_id.to_def_id());
let (article, desc) = cx.tcx.article_and_description(trait_item.owner_id.to_def_id());
let attrs = cx.tcx.hir().attrs(trait_item.hir_id());
if !is_from_proc_macro(cx, trait_item) {
@ -174,7 +174,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
fn check_impl_item(&mut self, cx: &LateContext<'tcx>, impl_item: &'tcx hir::ImplItem<'_>) {
// If the method is an impl for a trait, don't doc.
if let Some(cid) = cx.tcx.associated_item(impl_item.def_id).impl_container(cx.tcx) {
if let Some(cid) = cx.tcx.associated_item(impl_item.owner_id).impl_container(cx.tcx) {
if cx.tcx.impl_trait_ref(cid).is_some() {
return;
}
@ -182,7 +182,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingDoc {
return;
}
let (article, desc) = cx.tcx.article_and_description(impl_item.def_id.to_def_id());
let (article, desc) = cx.tcx.article_and_description(impl_item.owner_id.to_def_id());
let attrs = cx.tcx.hir().attrs(impl_item.hir_id());
if !is_from_proc_macro(cx, impl_item) {
self.check_missing_docs_attrs(cx, attrs, impl_item.span, article, desc);

View file

@ -88,7 +88,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
return;
}
if !cx.effective_visibilities.is_exported(it.def_id.def_id) {
if !cx.effective_visibilities.is_exported(it.owner_id.def_id) {
return;
}
match it.kind {
@ -105,7 +105,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
match tit_.kind {
hir::TraitItemKind::Const(..) | hir::TraitItemKind::Type(..) => {},
hir::TraitItemKind::Fn(..) => {
if cx.tcx.impl_defaultness(tit.id.def_id).has_value() {
if cx.tcx.impl_defaultness(tit.id.owner_id).has_value() {
// trait method with default body needs inline in case
// an impl is not provided
let desc = "a default trait method";
@ -142,7 +142,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
}
// If the item being implemented is not exported, then we don't need #[inline]
if !cx.effective_visibilities.is_exported(impl_item.def_id.def_id) {
if !cx.effective_visibilities.is_exported(impl_item.owner_id.def_id) {
return;
}
@ -151,7 +151,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
hir::ImplItemKind::Const(..) | hir::ImplItemKind::Type(_) => return,
};
let assoc_item = cx.tcx.associated_item(impl_item.def_id);
let assoc_item = cx.tcx.associated_item(impl_item.owner_id);
let container_id = assoc_item.container_id(cx.tcx);
let trait_def_id = match assoc_item.container {
TraitContainer => Some(container_id),
@ -159,7 +159,7 @@ impl<'tcx> LateLintPass<'tcx> for MissingInline {
};
if let Some(trait_def_id) = trait_def_id {
if trait_def_id.is_local() && !cx.effective_visibilities.is_exported(impl_item.def_id.def_id) {
if trait_def_id.is_local() && !cx.effective_visibilities.is_exported(impl_item.owner_id.def_id) {
// If a trait is being implemented for an item, and the
// trait is not exported, we don't need #[inline]
return;

View file

@ -89,7 +89,7 @@ impl<'tcx> LateLintPass<'tcx> for MutableKeyType {
fn check_impl_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx hir::ImplItem<'tcx>) {
if let hir::ImplItemKind::Fn(ref sig, ..) = item.kind {
if trait_ref_of_method(cx, item.def_id.def_id).is_none() {
if trait_ref_of_method(cx, item.owner_id.def_id).is_none() {
check_sig(cx, item.hir_id(), sig.decl);
}
}

View file

@ -84,7 +84,7 @@ impl<'tcx> LateLintPass<'tcx> for NewWithoutDefault {
// can't be implemented for unsafe new
return;
}
if cx.tcx.is_doc_hidden(impl_item.def_id.def_id) {
if cx.tcx.is_doc_hidden(impl_item.owner_id.def_id) {
// shouldn't be implemented when it is hidden in docs
return;
}
@ -96,7 +96,7 @@ impl<'tcx> LateLintPass<'tcx> for NewWithoutDefault {
if_chain! {
if sig.decl.inputs.is_empty();
if name == sym::new;
if cx.effective_visibilities.is_reachable(impl_item.def_id.def_id);
if cx.effective_visibilities.is_reachable(impl_item.owner_id.def_id);
let self_def_id = cx.tcx.hir().get_parent_item(id);
let self_ty = cx.tcx.type_of(self_def_id);
if self_ty == return_ty(cx, id);

View file

@ -303,7 +303,7 @@ impl<'tcx> LateLintPass<'tcx> for NonCopyConst {
if let Some(of_trait_def_id) = of_trait_ref.trait_def_id();
if let Some(of_assoc_item) = cx
.tcx
.associated_item(impl_item.def_id)
.associated_item(impl_item.owner_id)
.trait_item_def_id;
if cx
.tcx

View file

@ -89,7 +89,7 @@ impl<'tcx> LateLintPass<'tcx> for NonSendFieldInSendTy {
if let Some(trait_id) = trait_ref.trait_def_id();
if send_trait == trait_id;
if hir_impl.polarity == ImplPolarity::Positive;
if let Some(ty_trait_ref) = cx.tcx.impl_trait_ref(item.def_id);
if let Some(ty_trait_ref) = cx.tcx.impl_trait_ref(item.owner_id);
if let self_ty = ty_trait_ref.self_ty();
if let ty::Adt(adt_def, impl_trait_substs) = self_ty.kind();
then {

View file

@ -227,25 +227,25 @@ impl<'tcx> LateLintPass<'tcx> for OnlyUsedInRecursion {
// `skip_params` is either `0` or `1` to skip the `self` parameter in trait functions.
// It can't be renamed, and it can't be removed without removing it from multiple functions.
let (fn_id, fn_kind, skip_params) = match get_parent_node(cx.tcx, body.value.hir_id) {
Some(Node::Item(i)) => (i.def_id.to_def_id(), FnKind::Fn, 0),
Some(Node::Item(i)) => (i.owner_id.to_def_id(), FnKind::Fn, 0),
Some(Node::TraitItem(&TraitItem {
kind: TraitItemKind::Fn(ref sig, _),
def_id,
owner_id,
..
})) => (
def_id.to_def_id(),
owner_id.to_def_id(),
FnKind::TraitFn,
usize::from(sig.decl.implicit_self.has_implicit_self()),
),
Some(Node::ImplItem(&ImplItem {
kind: ImplItemKind::Fn(ref sig, _),
def_id,
owner_id,
..
})) => {
#[allow(trivial_casts)]
if let Some(Node::Item(item)) = get_parent_node(cx.tcx, def_id.into())
&& let Some(trait_ref) = cx.tcx.impl_trait_ref(item.def_id)
&& let Some(trait_item_id) = cx.tcx.associated_item(def_id).trait_item_def_id
if let Some(Node::Item(item)) = get_parent_node(cx.tcx, owner_id.into())
&& let Some(trait_ref) = cx.tcx.impl_trait_ref(item.owner_id)
&& let Some(trait_item_id) = cx.tcx.associated_item(owner_id).trait_item_def_id
{
(
trait_item_id,
@ -253,7 +253,7 @@ impl<'tcx> LateLintPass<'tcx> for OnlyUsedInRecursion {
usize::from(sig.decl.implicit_self.has_implicit_self()),
)
} else {
(def_id.to_def_id(), FnKind::Fn, 0)
(owner_id.to_def_id(), FnKind::Fn, 0)
}
},
_ => return,

View file

@ -204,7 +204,7 @@ fn are_equal<'tcx>(cx: &LateContext<'tcx>, middle_ty: Ty<'_>, hir_ty: &rustc_hir
if let ty::Adt(adt_def, _) = middle_ty.kind();
if let Some(local_did) = adt_def.did().as_local();
let item = cx.tcx.hir().expect_item(local_did);
let middle_ty_id = item.def_id.to_def_id();
let middle_ty_id = item.owner_id.to_def_id();
if let TyKind::Path(QPath::Resolved(_, path)) = hir_ty.kind;
if let Res::Def(_, hir_ty_id) = path.res;

View file

@ -36,7 +36,7 @@ impl<'tcx> LateLintPass<'tcx> for PartialEqNeImpl {
fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx Item<'_>) {
if_chain! {
if let ItemKind::Impl(Impl { of_trait: Some(ref trait_ref), items: impl_items, .. }) = item.kind;
if !cx.tcx.has_attr(item.def_id.to_def_id(), sym::automatically_derived);
if !cx.tcx.has_attr(item.owner_id.to_def_id(), sym::automatically_derived);
if let Some(eq_trait) = cx.tcx.lang_items().eq_trait();
if trait_ref.path.res.def_id() == eq_trait;
then {

View file

@ -261,7 +261,7 @@ impl<'tcx> LateLintPass<'tcx> for PassByRefOrValue {
}
if let hir::TraitItemKind::Fn(method_sig, _) = &item.kind {
self.check_poly_fn(cx, item.def_id.def_id, method_sig.decl, None);
self.check_poly_fn(cx, item.owner_id.def_id, method_sig.decl, None);
}
}

View file

@ -164,7 +164,7 @@ impl<'tcx> LateLintPass<'tcx> for Ptr {
check_mut_from_ref(cx, sig, None);
for arg in check_fn_args(
cx,
cx.tcx.fn_sig(item.def_id).skip_binder().inputs(),
cx.tcx.fn_sig(item.owner_id).skip_binder().inputs(),
sig.decl.inputs,
&[],
)
@ -188,7 +188,7 @@ impl<'tcx> LateLintPass<'tcx> for Ptr {
let (item_id, sig, is_trait_item) = match parents.next() {
Some((_, Node::Item(i))) => {
if let ItemKind::Fn(sig, ..) = &i.kind {
(i.def_id, sig, false)
(i.owner_id, sig, false)
} else {
return;
}
@ -200,14 +200,14 @@ impl<'tcx> LateLintPass<'tcx> for Ptr {
return;
}
if let ImplItemKind::Fn(sig, _) = &i.kind {
(i.def_id, sig, false)
(i.owner_id, sig, false)
} else {
return;
}
},
Some((_, Node::TraitItem(i))) => {
if let TraitItemKind::Fn(sig, _) = &i.kind {
(i.def_id, sig, true)
(i.owner_id, sig, true)
} else {
return;
}

View file

@ -46,12 +46,12 @@ impl_lint_pass!(RedundantPubCrate => [REDUNDANT_PUB_CRATE]);
impl<'tcx> LateLintPass<'tcx> for RedundantPubCrate {
fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx Item<'tcx>) {
if_chain! {
if cx.tcx.visibility(item.def_id.def_id) == ty::Visibility::Restricted(CRATE_DEF_ID.to_def_id());
if !cx.effective_visibilities.is_exported(item.def_id.def_id) && self.is_exported.last() == Some(&false);
if cx.tcx.visibility(item.owner_id.def_id) == ty::Visibility::Restricted(CRATE_DEF_ID.to_def_id());
if !cx.effective_visibilities.is_exported(item.owner_id.def_id) && self.is_exported.last() == Some(&false);
if is_not_macro_export(item);
then {
let span = item.span.with_hi(item.ident.span.hi());
let descr = cx.tcx.def_kind(item.def_id).descr(item.def_id.to_def_id());
let descr = cx.tcx.def_kind(item.owner_id).descr(item.owner_id.to_def_id());
span_lint_and_then(
cx,
REDUNDANT_PUB_CRATE,
@ -70,7 +70,7 @@ impl<'tcx> LateLintPass<'tcx> for RedundantPubCrate {
}
if let ItemKind::Mod { .. } = item.kind {
self.is_exported.push(cx.effective_visibilities.is_exported(item.def_id.def_id));
self.is_exported.push(cx.effective_visibilities.is_exported(item.owner_id.def_id));
}
}

View file

@ -128,7 +128,7 @@ impl<'tcx> LateLintPass<'tcx> for ReturnSelfNotMustUse {
fn check_trait_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx TraitItem<'tcx>) {
if let TraitItemKind::Fn(ref sig, _) = item.kind {
check_method(cx, sig.decl, item.def_id.def_id, item.span, item.hir_id());
check_method(cx, sig.decl, item.owner_id.def_id, item.span, item.hir_id());
}
}
}

View file

@ -52,7 +52,7 @@ impl<'tcx> LateLintPass<'tcx> for SameNameMethod {
let mut map = FxHashMap::<Res, ExistingName>::default();
for id in cx.tcx.hir().items() {
if matches!(cx.tcx.def_kind(id.def_id), DefKind::Impl)
if matches!(cx.tcx.def_kind(id.owner_id), DefKind::Impl)
&& let item = cx.tcx.hir().item(id)
&& let ItemKind::Impl(Impl {
items,

View file

@ -53,7 +53,7 @@ impl<'tcx> LateLintPass<'tcx> for SelfNamedConstructors {
let parent = cx.tcx.hir().get_parent_item(impl_item.hir_id()).def_id;
let item = cx.tcx.hir().expect_item(parent);
let self_ty = cx.tcx.type_of(item.def_id);
let self_ty = cx.tcx.type_of(item.owner_id);
let ret_ty = return_ty(cx, impl_item.hir_id());
// Do not check trait impls

View file

@ -46,7 +46,7 @@ impl<'tcx> LateLintPass<'tcx> for TrailingEmptyArray {
None,
&format!(
"consider annotating `{}` with `#[repr(C)]` or another `repr` attribute",
cx.tcx.def_path_str(item.def_id.to_def_id())
cx.tcx.def_path_str(item.owner_id.to_def_id())
),
);
}

View file

@ -333,7 +333,7 @@ impl<'tcx> LateLintPass<'tcx> for Types {
}
fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx Item<'_>) {
let is_exported = cx.effective_visibilities.is_exported(item.def_id.def_id);
let is_exported = cx.effective_visibilities.is_exported(item.owner_id.def_id);
match item.kind {
ItemKind::Static(ty, _, _) | ItemKind::Const(ty, _) => self.check_ty(
@ -392,7 +392,7 @@ impl<'tcx> LateLintPass<'tcx> for Types {
}
fn check_trait_item(&mut self, cx: &LateContext<'tcx>, item: &TraitItem<'_>) {
let is_exported = cx.effective_visibilities.is_exported(item.def_id.def_id);
let is_exported = cx.effective_visibilities.is_exported(item.owner_id.def_id);
let context = CheckTyContext {
is_exported,

View file

@ -56,12 +56,12 @@ impl<'tcx> LateLintPass<'tcx> for UnusedSelf {
}
let parent = cx.tcx.hir().get_parent_item(impl_item.hir_id()).def_id;
let parent_item = cx.tcx.hir().expect_item(parent);
let assoc_item = cx.tcx.associated_item(impl_item.def_id);
let assoc_item = cx.tcx.associated_item(impl_item.owner_id);
if_chain! {
if let ItemKind::Impl(Impl { of_trait: None, .. }) = parent_item.kind;
if assoc_item.fn_has_self_parameter;
if let ImplItemKind::Fn(.., body_id) = &impl_item.kind;
if !cx.effective_visibilities.is_exported(impl_item.def_id.def_id) || !self.avoid_breaking_exported_api;
if !cx.effective_visibilities.is_exported(impl_item.owner_id.def_id) || !self.avoid_breaking_exported_api;
let body = cx.tcx.hir().body(*body_id);
if let [self_param, ..] = body.params;
if !is_local_used(cx, body, self_param.pat.hir_id);

View file

@ -76,7 +76,7 @@ impl<'tcx> LateLintPass<'tcx> for UnwrapInResult {
fn lint_impl_body<'tcx>(cx: &LateContext<'tcx>, impl_span: Span, impl_item: &'tcx hir::ImplItem<'_>) {
if let ImplItemKind::Fn(_, body_id) = impl_item.kind {
let body = cx.tcx.hir().body(body_id);
let typeck = cx.tcx.typeck(impl_item.def_id.def_id);
let typeck = cx.tcx.typeck(impl_item.owner_id.def_id);
let mut result = Vec::new();
let _: Option<!> = for_each_expr(body.value, |e| {
// check for `expect`

View file

@ -105,7 +105,7 @@ impl LateLintPass<'_> for UpperCaseAcronyms {
fn check_item(&mut self, cx: &LateContext<'_>, it: &Item<'_>) {
// do not lint public items or in macros
if in_external_macro(cx.sess(), it.span)
|| (self.avoid_breaking_exported_api && cx.effective_visibilities.is_exported(it.def_id.def_id))
|| (self.avoid_breaking_exported_api && cx.effective_visibilities.is_exported(it.owner_id.def_id))
{
return;
}

View file

@ -106,7 +106,7 @@ impl<'tcx> LateLintPass<'tcx> for UseSelf {
if !is_from_proc_macro(cx, item); // expensive, should be last check
then {
StackItem::Check {
impl_id: item.def_id.def_id,
impl_id: item.owner_id.def_id,
in_body: 0,
types_to_skip: std::iter::once(self_ty.hir_id).collect(),
}
@ -143,7 +143,7 @@ impl<'tcx> LateLintPass<'tcx> for UseSelf {
// trait, not in the impl of the trait.
let trait_method = cx
.tcx
.associated_item(impl_item.def_id)
.associated_item(impl_item.owner_id)
.trait_item_def_id
.expect("impl method matches a trait method");
let trait_method_sig = cx.tcx.fn_sig(trait_method);

View file

@ -120,14 +120,14 @@ impl LateLintPass<'_> for WildcardImports {
if is_test_module_or_function(cx.tcx, item) {
self.test_modules_deep = self.test_modules_deep.saturating_add(1);
}
let module = cx.tcx.parent_module_from_def_id(item.def_id.def_id);
if cx.tcx.visibility(item.def_id.def_id) != ty::Visibility::Restricted(module.to_def_id()) {
let module = cx.tcx.parent_module_from_def_id(item.owner_id.def_id);
if cx.tcx.visibility(item.owner_id.def_id) != ty::Visibility::Restricted(module.to_def_id()) {
return;
}
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.def_id.def_id);
let used_imports = cx.tcx.names_imported_by_glob_use(item.owner_id.def_id);
if !used_imports.is_empty(); // Already handled by `unused_imports`
then {
let mut applicability = Applicability::MachineApplicable;

View file

@ -2281,7 +2281,7 @@ fn with_test_item_names(tcx: TyCtxt<'_>, module: LocalDefId, f: impl Fn(&[Symbol
Entry::Vacant(entry) => {
let mut names = Vec::new();
for id in tcx.hir().module_items(module) {
if matches!(tcx.def_kind(id.def_id), DefKind::Const)
if matches!(tcx.def_kind(id.owner_id), DefKind::Const)
&& let item = tcx.hir().item(id)
&& let ItemKind::Const(ty, _body) = item.kind {
if let TyKind::Path(QPath::Resolved(_, path)) = ty.kind {