]> git.lizzy.rs Git - rust.git/blob - src/tools/clippy/clippy_lints/src/mem_replace.rs
Rollup merge of #97021 - Volker-Weissmann:patch-1, r=Dylan-DPC
[rust.git] / src / tools / clippy / clippy_lints / src / mem_replace.rs
1 use clippy_utils::diagnostics::{span_lint_and_help, span_lint_and_sugg, span_lint_and_then};
2 use clippy_utils::source::{snippet, snippet_with_applicability};
3 use clippy_utils::ty::is_non_aggregate_primitive_type;
4 use clippy_utils::{is_default_equivalent, is_lang_ctor, meets_msrv, msrvs};
5 use if_chain::if_chain;
6 use rustc_errors::Applicability;
7 use rustc_hir::LangItem::OptionNone;
8 use rustc_hir::{BorrowKind, Expr, ExprKind, Mutability, QPath};
9 use rustc_lint::{LateContext, LateLintPass};
10 use rustc_middle::lint::in_external_macro;
11 use rustc_semver::RustcVersion;
12 use rustc_session::{declare_tool_lint, impl_lint_pass};
13 use rustc_span::source_map::Span;
14 use rustc_span::symbol::sym;
15
16 declare_clippy_lint! {
17     /// ### What it does
18     /// Checks for `mem::replace()` on an `Option` with
19     /// `None`.
20     ///
21     /// ### Why is this bad?
22     /// `Option` already has the method `take()` for
23     /// taking its current value (Some(..) or None) and replacing it with
24     /// `None`.
25     ///
26     /// ### Example
27     /// ```rust
28     /// use std::mem;
29     ///
30     /// let mut an_option = Some(0);
31     /// let replaced = mem::replace(&mut an_option, None);
32     /// ```
33     /// Is better expressed with:
34     /// ```rust
35     /// let mut an_option = Some(0);
36     /// let taken = an_option.take();
37     /// ```
38     #[clippy::version = "1.31.0"]
39     pub MEM_REPLACE_OPTION_WITH_NONE,
40     style,
41     "replacing an `Option` with `None` instead of `take()`"
42 }
43
44 declare_clippy_lint! {
45     /// ### What it does
46     /// Checks for `mem::replace(&mut _, mem::uninitialized())`
47     /// and `mem::replace(&mut _, mem::zeroed())`.
48     ///
49     /// ### Why is this bad?
50     /// This will lead to undefined behavior even if the
51     /// value is overwritten later, because the uninitialized value may be
52     /// observed in the case of a panic.
53     ///
54     /// ### Example
55     /// ```
56     /// use std::mem;
57     ///# fn may_panic(v: Vec<i32>) -> Vec<i32> { v }
58     ///
59     /// #[allow(deprecated, invalid_value)]
60     /// fn myfunc (v: &mut Vec<i32>) {
61     ///     let taken_v = unsafe { mem::replace(v, mem::uninitialized()) };
62     ///     let new_v = may_panic(taken_v); // undefined behavior on panic
63     ///     mem::forget(mem::replace(v, new_v));
64     /// }
65     /// ```
66     ///
67     /// The [take_mut](https://docs.rs/take_mut) crate offers a sound solution,
68     /// at the cost of either lazily creating a replacement value or aborting
69     /// on panic, to ensure that the uninitialized value cannot be observed.
70     #[clippy::version = "1.39.0"]
71     pub MEM_REPLACE_WITH_UNINIT,
72     correctness,
73     "`mem::replace(&mut _, mem::uninitialized())` or `mem::replace(&mut _, mem::zeroed())`"
74 }
75
76 declare_clippy_lint! {
77     /// ### What it does
78     /// Checks for `std::mem::replace` on a value of type
79     /// `T` with `T::default()`.
80     ///
81     /// ### Why is this bad?
82     /// `std::mem` module already has the method `take` to
83     /// take the current value and replace it with the default value of that type.
84     ///
85     /// ### Example
86     /// ```rust
87     /// let mut text = String::from("foo");
88     /// let replaced = std::mem::replace(&mut text, String::default());
89     /// ```
90     /// Is better expressed with:
91     /// ```rust
92     /// let mut text = String::from("foo");
93     /// let taken = std::mem::take(&mut text);
94     /// ```
95     #[clippy::version = "1.42.0"]
96     pub MEM_REPLACE_WITH_DEFAULT,
97     style,
98     "replacing a value of type `T` with `T::default()` instead of using `std::mem::take`"
99 }
100
101 impl_lint_pass!(MemReplace =>
102     [MEM_REPLACE_OPTION_WITH_NONE, MEM_REPLACE_WITH_UNINIT, MEM_REPLACE_WITH_DEFAULT]);
103
104 fn check_replace_option_with_none(cx: &LateContext<'_>, src: &Expr<'_>, dest: &Expr<'_>, expr_span: Span) {
105     if let ExprKind::Path(ref replacement_qpath) = src.kind {
106         // Check that second argument is `Option::None`
107         if is_lang_ctor(cx, replacement_qpath, OptionNone) {
108             // Since this is a late pass (already type-checked),
109             // and we already know that the second argument is an
110             // `Option`, we do not need to check the first
111             // argument's type. All that's left is to get
112             // replacee's path.
113             let replaced_path = match dest.kind {
114                 ExprKind::AddrOf(BorrowKind::Ref, Mutability::Mut, replaced) => {
115                     if let ExprKind::Path(QPath::Resolved(None, replaced_path)) = replaced.kind {
116                         replaced_path
117                     } else {
118                         return;
119                     }
120                 },
121                 ExprKind::Path(QPath::Resolved(None, replaced_path)) => replaced_path,
122                 _ => return,
123             };
124
125             let mut applicability = Applicability::MachineApplicable;
126             span_lint_and_sugg(
127                 cx,
128                 MEM_REPLACE_OPTION_WITH_NONE,
129                 expr_span,
130                 "replacing an `Option` with `None`",
131                 "consider `Option::take()` instead",
132                 format!(
133                     "{}.take()",
134                     snippet_with_applicability(cx, replaced_path.span, "", &mut applicability)
135                 ),
136                 applicability,
137             );
138         }
139     }
140 }
141
142 fn check_replace_with_uninit(cx: &LateContext<'_>, src: &Expr<'_>, dest: &Expr<'_>, expr_span: Span) {
143     if_chain! {
144         // check if replacement is mem::MaybeUninit::uninit().assume_init()
145         if let Some(method_def_id) = cx.typeck_results().type_dependent_def_id(src.hir_id);
146         if cx.tcx.is_diagnostic_item(sym::assume_init, method_def_id);
147         then {
148             let mut applicability = Applicability::MachineApplicable;
149             span_lint_and_sugg(
150                 cx,
151                 MEM_REPLACE_WITH_UNINIT,
152                 expr_span,
153                 "replacing with `mem::MaybeUninit::uninit().assume_init()`",
154                 "consider using",
155                 format!(
156                     "std::ptr::read({})",
157                     snippet_with_applicability(cx, dest.span, "", &mut applicability)
158                 ),
159                 applicability,
160             );
161             return;
162         }
163     }
164
165     if_chain! {
166         if let ExprKind::Call(repl_func, repl_args) = src.kind;
167         if repl_args.is_empty();
168         if let ExprKind::Path(ref repl_func_qpath) = repl_func.kind;
169         if let Some(repl_def_id) = cx.qpath_res(repl_func_qpath, repl_func.hir_id).opt_def_id();
170         then {
171             if cx.tcx.is_diagnostic_item(sym::mem_uninitialized, repl_def_id) {
172                 let mut applicability = Applicability::MachineApplicable;
173                 span_lint_and_sugg(
174                     cx,
175                     MEM_REPLACE_WITH_UNINIT,
176                     expr_span,
177                     "replacing with `mem::uninitialized()`",
178                     "consider using",
179                     format!(
180                         "std::ptr::read({})",
181                         snippet_with_applicability(cx, dest.span, "", &mut applicability)
182                     ),
183                     applicability,
184                 );
185             } else if cx.tcx.is_diagnostic_item(sym::mem_zeroed, repl_def_id) &&
186                     !cx.typeck_results().expr_ty(src).is_primitive() {
187                 span_lint_and_help(
188                     cx,
189                     MEM_REPLACE_WITH_UNINIT,
190                     expr_span,
191                     "replacing with `mem::zeroed()`",
192                     None,
193                     "consider using a default value or the `take_mut` crate instead",
194                 );
195             }
196         }
197     }
198 }
199
200 fn check_replace_with_default(cx: &LateContext<'_>, src: &Expr<'_>, dest: &Expr<'_>, expr_span: Span) {
201     // disable lint for primitives
202     let expr_type = cx.typeck_results().expr_ty_adjusted(src);
203     if is_non_aggregate_primitive_type(expr_type) {
204         return;
205     }
206     // disable lint for Option since it is covered in another lint
207     if let ExprKind::Path(q) = &src.kind {
208         if is_lang_ctor(cx, q, OptionNone) {
209             return;
210         }
211     }
212     if is_default_equivalent(cx, src) && !in_external_macro(cx.tcx.sess, expr_span) {
213         span_lint_and_then(
214             cx,
215             MEM_REPLACE_WITH_DEFAULT,
216             expr_span,
217             "replacing a value of type `T` with `T::default()` is better expressed using `std::mem::take`",
218             |diag| {
219                 if !expr_span.from_expansion() {
220                     let suggestion = format!("std::mem::take({})", snippet(cx, dest.span, ""));
221
222                     diag.span_suggestion(
223                         expr_span,
224                         "consider using",
225                         suggestion,
226                         Applicability::MachineApplicable,
227                     );
228                 }
229             },
230         );
231     }
232 }
233
234 pub struct MemReplace {
235     msrv: Option<RustcVersion>,
236 }
237
238 impl MemReplace {
239     #[must_use]
240     pub fn new(msrv: Option<RustcVersion>) -> Self {
241         Self { msrv }
242     }
243 }
244
245 impl<'tcx> LateLintPass<'tcx> for MemReplace {
246     fn check_expr(&mut self, cx: &LateContext<'tcx>, expr: &'tcx Expr<'_>) {
247         if_chain! {
248             // Check that `expr` is a call to `mem::replace()`
249             if let ExprKind::Call(func, func_args) = expr.kind;
250             if let ExprKind::Path(ref func_qpath) = func.kind;
251             if let Some(def_id) = cx.qpath_res(func_qpath, func.hir_id).opt_def_id();
252             if cx.tcx.is_diagnostic_item(sym::mem_replace, def_id);
253             if let [dest, src] = func_args;
254             then {
255                 check_replace_option_with_none(cx, src, dest, expr.span);
256                 check_replace_with_uninit(cx, src, dest, expr.span);
257                 if meets_msrv(self.msrv.as_ref(), &msrvs::MEM_TAKE) {
258                     check_replace_with_default(cx, src, dest, expr.span);
259                 }
260             }
261         }
262     }
263     extract_msrv_attr!(LateContext);
264 }