152 lines
6.5 KiB
Rust
152 lines
6.5 KiB
Rust
use clippy_utils::diagnostics::span_lint_hir_and_then;
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use rustc_data_structures::fx::FxHashMap;
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use rustc_hir::def::{DefKind, Res};
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use rustc_hir::{HirId, Impl, ItemKind, Node, Path, QPath, TraitRef, TyKind};
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use rustc_lint::{LateContext, LateLintPass};
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use rustc_middle::ty::{AssocItem, AssocKind};
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use rustc_session::declare_lint_pass;
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use rustc_span::Span;
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use rustc_span::symbol::Symbol;
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use std::collections::{BTreeMap, BTreeSet};
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declare_clippy_lint! {
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/// ### What it does
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/// It lints if a struct has two methods with the same name:
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/// one from a trait, another not from a trait.
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///
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/// ### Why restrict this?
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/// Confusing.
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///
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/// ### Example
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/// ```no_run
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/// trait T {
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/// fn foo(&self) {}
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/// }
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///
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/// struct S;
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///
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/// impl T for S {
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/// fn foo(&self) {}
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/// }
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///
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/// impl S {
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/// fn foo(&self) {}
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/// }
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/// ```
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#[clippy::version = "1.57.0"]
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pub SAME_NAME_METHOD,
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restriction,
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"two method with same name"
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}
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declare_lint_pass!(SameNameMethod => [SAME_NAME_METHOD]);
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struct ExistingName {
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impl_methods: BTreeMap<Symbol, (Span, HirId)>,
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trait_methods: BTreeMap<Symbol, Vec<Span>>,
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}
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impl<'tcx> LateLintPass<'tcx> for SameNameMethod {
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fn check_crate_post(&mut self, cx: &LateContext<'tcx>) {
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let mut map = FxHashMap::<Res, ExistingName>::default();
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for id in cx.tcx.hir_free_items() {
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if matches!(cx.tcx.def_kind(id.owner_id), DefKind::Impl { .. })
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&& let item = cx.tcx.hir_item(id)
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&& let ItemKind::Impl(Impl { of_trait, self_ty, .. }) = &item.kind
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&& let TyKind::Path(QPath::Resolved(_, Path { res, .. })) = self_ty.kind
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{
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if !map.contains_key(res) {
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map.insert(
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*res,
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ExistingName {
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impl_methods: BTreeMap::new(),
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trait_methods: BTreeMap::new(),
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},
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);
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}
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let existing_name = map.get_mut(res).unwrap();
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match of_trait {
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Some(trait_ref) => {
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let mut methods_in_trait: BTreeSet<Symbol> = if let Node::TraitRef(TraitRef { path, .. }) =
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cx.tcx.hir_node(trait_ref.hir_ref_id)
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&& let Res::Def(DefKind::Trait, did) = path.res
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{
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// FIXME: if
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// `rustc_middle::ty::assoc::AssocItems::items` is public,
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// we can iterate its keys instead of `in_definition_order`,
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// which's more efficient
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cx.tcx
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.associated_items(did)
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.in_definition_order()
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.filter(|assoc_item| assoc_item.is_fn())
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.map(AssocItem::name)
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.collect()
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} else {
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BTreeSet::new()
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};
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let mut check_trait_method = |method_name: Symbol, trait_method_span: Span| {
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if let Some((impl_span, hir_id)) = existing_name.impl_methods.get(&method_name) {
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span_lint_hir_and_then(
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cx,
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SAME_NAME_METHOD,
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*hir_id,
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*impl_span,
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"method's name is the same as an existing method in a trait",
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|diag| {
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diag.span_note(
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trait_method_span,
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format!("existing `{method_name}` defined here"),
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);
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},
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);
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}
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if let Some(v) = existing_name.trait_methods.get_mut(&method_name) {
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v.push(trait_method_span);
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} else {
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existing_name.trait_methods.insert(method_name, vec![trait_method_span]);
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}
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};
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for assoc_item in cx.tcx.associated_items(id.owner_id).in_definition_order() {
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if let AssocKind::Fn { name, .. } = assoc_item.kind {
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methods_in_trait.remove(&name);
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check_trait_method(name, cx.tcx.def_span(assoc_item.def_id));
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}
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}
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for method_name in methods_in_trait {
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check_trait_method(method_name, item.span);
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}
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},
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None => {
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for assoc_item in cx.tcx.associated_items(id.owner_id).in_definition_order() {
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let AssocKind::Fn { name, .. } = assoc_item.kind else {
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continue;
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};
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let impl_span = cx.tcx.def_span(assoc_item.def_id);
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let hir_id = cx.tcx.local_def_id_to_hir_id(assoc_item.def_id.expect_local());
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if let Some(trait_spans) = existing_name.trait_methods.get(&name) {
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span_lint_hir_and_then(
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cx,
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SAME_NAME_METHOD,
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hir_id,
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impl_span,
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"method's name is the same as an existing method in a trait",
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|diag| {
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// TODO should we `span_note` on every trait?
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// iterate on trait_spans?
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diag.span_note(trait_spans[0], format!("existing `{name}` defined here"));
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},
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);
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}
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existing_name.impl_methods.insert(name, (impl_span, hir_id));
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}
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},
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}
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}
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}
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}
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}
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