rust-clippy/clippy_lints/src/needless_borrow.rs

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//! Checks for needless address of operations (`&`)
//!
//! This lint is **warn** by default
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use crate::utils::{in_macro, snippet_opt, span_lint_and_then};
use if_chain::if_chain;
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use rustc::hir::{BindingAnnotation, Expr, ExprKind, HirId, Item, MutImmutable, Pat, PatKind};
use rustc::lint::{LateContext, LateLintPass, LintArray, LintPass};
use rustc::ty;
use rustc::ty::adjustment::{Adjust, Adjustment};
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use rustc::{declare_tool_lint, impl_lint_pass};
use rustc_errors::Applicability;
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declare_clippy_lint! {
/// **What it does:** Checks for address of operations (`&`) that are going to
/// be dereferenced immediately by the compiler.
///
/// **Why is this bad?** Suggests that the receiver of the expression borrows
/// the expression.
///
/// **Example:**
/// ```rust
/// let x: &i32 = &&&&&&5;
/// ```
///
/// **Known problems:** None.
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pub NEEDLESS_BORROW,
nursery,
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"taking a reference that is going to be automatically dereferenced"
}
#[derive(Default)]
pub struct NeedlessBorrow {
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derived_item: Option<HirId>,
}
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impl_lint_pass!(NeedlessBorrow => [NEEDLESS_BORROW]);
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impl<'a, 'tcx> LateLintPass<'a, 'tcx> for NeedlessBorrow {
fn check_expr(&mut self, cx: &LateContext<'a, 'tcx>, e: &'tcx Expr) {
if in_macro(e.span) || self.derived_item.is_some() {
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return;
}
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if let ExprKind::AddrOf(MutImmutable, ref inner) = e.node {
if let ty::Ref(..) = cx.tables.expr_ty(inner).sty {
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for adj3 in cx.tables.expr_adjustments(e).windows(3) {
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if let [Adjustment {
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kind: Adjust::Deref(_), ..
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}, Adjustment {
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kind: Adjust::Deref(_), ..
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}, Adjustment {
kind: Adjust::Borrow(_),
..
}] = *adj3
{
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span_lint_and_then(
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cx,
NEEDLESS_BORROW,
e.span,
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"this expression borrows a reference that is immediately dereferenced \
by the compiler",
|db| {
if let Some(snippet) = snippet_opt(cx, inner.span) {
db.span_suggestion(
e.span,
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"change this to",
snippet,
Applicability::MachineApplicable,
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);
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}
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},
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);
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}
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}
}
}
}
fn check_pat(&mut self, cx: &LateContext<'a, 'tcx>, pat: &'tcx Pat) {
if in_macro(pat.span) || self.derived_item.is_some() {
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return;
}
if_chain! {
if let PatKind::Binding(BindingAnnotation::Ref, .., name, _) = pat.node;
if let ty::Ref(_, tam, mutbl) = cx.tables.pat_ty(pat).sty;
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if mutbl == MutImmutable;
if let ty::Ref(_, _, mutbl) = tam.sty;
// only lint immutable refs, because borrowed `&mut T` cannot be moved out
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if mutbl == MutImmutable;
then {
span_lint_and_then(
cx,
NEEDLESS_BORROW,
pat.span,
"this pattern creates a reference to a reference",
|db| {
if let Some(snippet) = snippet_opt(cx, name.span) {
db.span_suggestion(
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pat.span,
"change this to",
snippet,
Applicability::MachineApplicable,
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);
}
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}
)
}
}
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}
fn check_item(&mut self, _: &LateContext<'a, 'tcx>, item: &'tcx Item) {
if item.attrs.iter().any(|a| a.check_name("automatically_derived")) {
debug_assert!(self.derived_item.is_none());
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self.derived_item = Some(item.hir_id);
}
}
fn check_item_post(&mut self, _: &LateContext<'a, 'tcx>, item: &'tcx Item) {
if let Some(id) = self.derived_item {
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if item.hir_id == id {
self.derived_item = None;
}
}
}
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}