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[rust.git] / clippy_lints / src / use_self.rs
1 use if_chain::if_chain;
2 use rustc::hir::map::Map;
3 use rustc::lint::in_external_macro;
4 use rustc::ty;
5 use rustc::ty::{DefIdTree, Ty};
6 use rustc_errors::Applicability;
7 use rustc_hir as hir;
8 use rustc_hir::def::{DefKind, Res};
9 use rustc_hir::intravisit::{walk_item, walk_path, walk_ty, NestedVisitorMap, Visitor};
10 use rustc_hir::*;
11 use rustc_lint::{LateContext, LateLintPass, LintContext};
12 use rustc_session::{declare_lint_pass, declare_tool_lint};
13 use rustc_span::symbol::kw;
14
15 use crate::utils::{differing_macro_contexts, span_lint_and_sugg};
16
17 declare_clippy_lint! {
18     /// **What it does:** Checks for unnecessary repetition of structure name when a
19     /// replacement with `Self` is applicable.
20     ///
21     /// **Why is this bad?** Unnecessary repetition. Mixed use of `Self` and struct
22     /// name
23     /// feels inconsistent.
24     ///
25     /// **Known problems:**
26     /// - False positive when using associated types (#2843)
27     /// - False positives in some situations when using generics (#3410)
28     ///
29     /// **Example:**
30     /// ```rust
31     /// struct Foo {}
32     /// impl Foo {
33     ///     fn new() -> Foo {
34     ///         Foo {}
35     ///     }
36     /// }
37     /// ```
38     /// could be
39     /// ```rust
40     /// struct Foo {}
41     /// impl Foo {
42     ///     fn new() -> Self {
43     ///         Self {}
44     ///     }
45     /// }
46     /// ```
47     pub USE_SELF,
48     nursery,
49     "Unnecessary structure name repetition whereas `Self` is applicable"
50 }
51
52 declare_lint_pass!(UseSelf => [USE_SELF]);
53
54 const SEGMENTS_MSG: &str = "segments should be composed of at least 1 element";
55
56 fn span_use_self_lint(cx: &LateContext<'_, '_>, path: &Path<'_>, last_segment: Option<&PathSegment<'_>>) {
57     let last_segment = last_segment.unwrap_or_else(|| path.segments.last().expect(SEGMENTS_MSG));
58
59     // Path segments only include actual path, no methods or fields.
60     let last_path_span = last_segment.ident.span;
61
62     if differing_macro_contexts(path.span, last_path_span) {
63         return;
64     }
65
66     // Only take path up to the end of last_path_span.
67     let span = path.span.with_hi(last_path_span.hi());
68
69     span_lint_and_sugg(
70         cx,
71         USE_SELF,
72         span,
73         "unnecessary structure name repetition",
74         "use the applicable keyword",
75         "Self".to_owned(),
76         Applicability::MachineApplicable,
77     );
78 }
79
80 struct TraitImplTyVisitor<'a, 'tcx> {
81     item_type: Ty<'tcx>,
82     cx: &'a LateContext<'a, 'tcx>,
83     trait_type_walker: ty::walk::TypeWalker<'tcx>,
84     impl_type_walker: ty::walk::TypeWalker<'tcx>,
85 }
86
87 impl<'a, 'tcx> Visitor<'tcx> for TraitImplTyVisitor<'a, 'tcx> {
88     type Map = Map<'tcx>;
89
90     fn visit_ty(&mut self, t: &'tcx hir::Ty<'_>) {
91         let trait_ty = self.trait_type_walker.next();
92         let impl_ty = self.impl_type_walker.next();
93
94         if_chain! {
95             if let TyKind::Path(QPath::Resolved(_, path)) = &t.kind;
96
97             // The implementation and trait types don't match which means that
98             // the concrete type was specified by the implementation
99             if impl_ty != trait_ty;
100             if let Some(impl_ty) = impl_ty;
101             if self.item_type == impl_ty;
102             then {
103                 match path.res {
104                     def::Res::SelfTy(..) => {},
105                     _ => span_use_self_lint(self.cx, path, None)
106                 }
107             }
108         }
109
110         walk_ty(self, t)
111     }
112
113     fn nested_visit_map(&mut self) -> NestedVisitorMap<'_, Self::Map> {
114         NestedVisitorMap::None
115     }
116 }
117
118 fn check_trait_method_impl_decl<'a, 'tcx>(
119     cx: &'a LateContext<'a, 'tcx>,
120     item_type: Ty<'tcx>,
121     impl_item: &ImplItem<'_>,
122     impl_decl: &'tcx FnDecl<'_>,
123     impl_trait_ref: &ty::TraitRef<'_>,
124 ) {
125     let trait_method = cx
126         .tcx
127         .associated_items(impl_trait_ref.def_id)
128         .find_by_name_and_kind(cx.tcx, impl_item.ident, ty::AssocKind::Method, impl_trait_ref.def_id)
129         .expect("impl method matches a trait method");
130
131     let trait_method_sig = cx.tcx.fn_sig(trait_method.def_id);
132     let trait_method_sig = cx.tcx.erase_late_bound_regions(&trait_method_sig);
133
134     let impl_method_def_id = cx.tcx.hir().local_def_id(impl_item.hir_id);
135     let impl_method_sig = cx.tcx.fn_sig(impl_method_def_id);
136     let impl_method_sig = cx.tcx.erase_late_bound_regions(&impl_method_sig);
137
138     let output_ty = if let FnRetTy::Return(ty) = &impl_decl.output {
139         Some(&**ty)
140     } else {
141         None
142     };
143
144     // `impl_decl_ty` (of type `hir::Ty`) represents the type declared in the signature.
145     // `impl_ty` (of type `ty:TyS`) is the concrete type that the compiler has determined for
146     // that declaration. We use `impl_decl_ty` to see if the type was declared as `Self`
147     // and use `impl_ty` to check its concrete type.
148     for (impl_decl_ty, (impl_ty, trait_ty)) in impl_decl.inputs.iter().chain(output_ty).zip(
149         impl_method_sig
150             .inputs_and_output
151             .iter()
152             .zip(trait_method_sig.inputs_and_output),
153     ) {
154         let mut visitor = TraitImplTyVisitor {
155             cx,
156             item_type,
157             trait_type_walker: trait_ty.walk(),
158             impl_type_walker: impl_ty.walk(),
159         };
160
161         visitor.visit_ty(&impl_decl_ty);
162     }
163 }
164
165 impl<'a, 'tcx> LateLintPass<'a, 'tcx> for UseSelf {
166     fn check_item(&mut self, cx: &LateContext<'a, 'tcx>, item: &'tcx Item<'_>) {
167         if in_external_macro(cx.sess(), item.span) {
168             return;
169         }
170         if_chain! {
171             if let ItemKind::Impl{ self_ty: ref item_type, items: refs, .. } = item.kind;
172             if let TyKind::Path(QPath::Resolved(_, ref item_path)) = item_type.kind;
173             then {
174                 let parameters = &item_path.segments.last().expect(SEGMENTS_MSG).args;
175                 let should_check = if let Some(ref params) = *parameters {
176                     !params.parenthesized && !params.args.iter().any(|arg| match arg {
177                         GenericArg::Lifetime(_) => true,
178                         _ => false,
179                     })
180                 } else {
181                     true
182                 };
183
184                 if should_check {
185                     let visitor = &mut UseSelfVisitor {
186                         item_path,
187                         cx,
188                     };
189                     let impl_def_id = cx.tcx.hir().local_def_id(item.hir_id);
190                     let impl_trait_ref = cx.tcx.impl_trait_ref(impl_def_id);
191
192                     if let Some(impl_trait_ref) = impl_trait_ref {
193                         for impl_item_ref in refs {
194                             let impl_item = cx.tcx.hir().impl_item(impl_item_ref.id);
195                             if let ImplItemKind::Method(FnSig{ decl: impl_decl, .. }, impl_body_id)
196                                     = &impl_item.kind {
197                                 let item_type = cx.tcx.type_of(impl_def_id);
198                                 check_trait_method_impl_decl(cx, item_type, impl_item, impl_decl, &impl_trait_ref);
199
200                                 let body = cx.tcx.hir().body(*impl_body_id);
201                                 visitor.visit_body(body);
202                             } else {
203                                 visitor.visit_impl_item(impl_item);
204                             }
205                         }
206                     } else {
207                         for impl_item_ref in refs {
208                             let impl_item = cx.tcx.hir().impl_item(impl_item_ref.id);
209                             visitor.visit_impl_item(impl_item);
210                         }
211                     }
212                 }
213             }
214         }
215     }
216 }
217
218 struct UseSelfVisitor<'a, 'tcx> {
219     item_path: &'a Path<'a>,
220     cx: &'a LateContext<'a, 'tcx>,
221 }
222
223 impl<'a, 'tcx> Visitor<'tcx> for UseSelfVisitor<'a, 'tcx> {
224     type Map = Map<'tcx>;
225
226     fn visit_path(&mut self, path: &'tcx Path<'_>, _id: HirId) {
227         if !path.segments.iter().any(|p| p.ident.span.is_dummy()) {
228             if path.segments.len() >= 2 {
229                 let last_but_one = &path.segments[path.segments.len() - 2];
230                 if last_but_one.ident.name != kw::SelfUpper {
231                     let enum_def_id = match path.res {
232                         Res::Def(DefKind::Variant, variant_def_id) => self.cx.tcx.parent(variant_def_id),
233                         Res::Def(DefKind::Ctor(def::CtorOf::Variant, _), ctor_def_id) => {
234                             let variant_def_id = self.cx.tcx.parent(ctor_def_id);
235                             variant_def_id.and_then(|def_id| self.cx.tcx.parent(def_id))
236                         },
237                         _ => None,
238                     };
239
240                     if self.item_path.res.opt_def_id() == enum_def_id {
241                         span_use_self_lint(self.cx, path, Some(last_but_one));
242                     }
243                 }
244             }
245
246             if path.segments.last().expect(SEGMENTS_MSG).ident.name != kw::SelfUpper {
247                 if self.item_path.res == path.res {
248                     span_use_self_lint(self.cx, path, None);
249                 } else if let Res::Def(DefKind::Ctor(def::CtorOf::Struct, _), ctor_def_id) = path.res {
250                     if self.item_path.res.opt_def_id() == self.cx.tcx.parent(ctor_def_id) {
251                         span_use_self_lint(self.cx, path, None);
252                     }
253                 }
254             }
255         }
256
257         walk_path(self, path);
258     }
259
260     fn visit_item(&mut self, item: &'tcx Item<'_>) {
261         match item.kind {
262             ItemKind::Use(..)
263             | ItemKind::Static(..)
264             | ItemKind::Enum(..)
265             | ItemKind::Struct(..)
266             | ItemKind::Union(..)
267             | ItemKind::Impl { .. }
268             | ItemKind::Fn(..) => {
269                 // Don't check statements that shadow `Self` or where `Self` can't be used
270             },
271             _ => walk_item(self, item),
272         }
273     }
274
275     fn nested_visit_map(&mut self) -> NestedVisitorMap<'_, Self::Map> {
276         NestedVisitorMap::All(&self.cx.tcx.hir())
277     }
278 }