rust/clippy_lints/src/precedence.rs

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use clippy_utils::diagnostics::span_lint_and_sugg;
use clippy_utils::source::snippet_with_applicability;
use if_chain::if_chain;
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use rustc_ast::ast::{BinOpKind, Expr, ExprKind, LitKind, UnOp};
use rustc_errors::Applicability;
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use rustc_lint::{EarlyContext, EarlyLintPass};
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use rustc_session::{declare_lint_pass, declare_tool_lint};
use rustc_span::source_map::Spanned;
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const ALLOWED_ODD_FUNCTIONS: [&str; 14] = [
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"asin",
"asinh",
"atan",
"atanh",
"cbrt",
"fract",
"round",
"signum",
"sin",
"sinh",
"tan",
"tanh",
"to_degrees",
"to_radians",
];
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declare_clippy_lint! {
/// ### What it does
/// Checks for operations where precedence may be unclear
/// and suggests to add parentheses. Currently it catches the following:
/// * mixed usage of arithmetic and bit shifting/combining operators without
/// parentheses
/// * a "negative" numeric literal (which is really a unary `-` followed by a
/// numeric literal)
/// followed by a method call
///
/// ### Why is this bad?
/// Not everyone knows the precedence of those operators by
/// heart, so expressions like these may trip others trying to reason about the
/// code.
///
/// ### Example
/// * `1 << 2 + 3` equals 32, while `(1 << 2) + 3` equals 7
/// * `-1i32.abs()` equals -1, while `(-1i32).abs()` equals 1
pub PRECEDENCE,
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complexity,
"operations where precedence may be unclear"
}
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declare_lint_pass!(Precedence => [PRECEDENCE]);
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impl EarlyLintPass for Precedence {
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fn check_expr(&mut self, cx: &EarlyContext<'_>, expr: &Expr) {
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if expr.span.from_expansion() {
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return;
}
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if let ExprKind::Binary(Spanned { node: op, .. }, ref left, ref right) = expr.kind {
let span_sugg = |expr: &Expr, sugg, appl| {
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span_lint_and_sugg(
cx,
PRECEDENCE,
expr.span,
"operator precedence can trip the unwary",
"consider parenthesizing your expression",
sugg,
appl,
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);
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};
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if !is_bit_op(op) {
return;
}
let mut applicability = Applicability::MachineApplicable;
match (is_arith_expr(left), is_arith_expr(right)) {
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(true, true) => {
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let sugg = format!(
"({}) {} ({})",
snippet_with_applicability(cx, left.span, "..", &mut applicability),
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op.to_string(),
snippet_with_applicability(cx, right.span, "..", &mut applicability)
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);
span_sugg(expr, sugg, applicability);
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},
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(true, false) => {
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let sugg = format!(
"({}) {} {}",
snippet_with_applicability(cx, left.span, "..", &mut applicability),
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op.to_string(),
snippet_with_applicability(cx, right.span, "..", &mut applicability)
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);
span_sugg(expr, sugg, applicability);
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},
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(false, true) => {
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let sugg = format!(
"{} {} ({})",
snippet_with_applicability(cx, left.span, "..", &mut applicability),
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op.to_string(),
snippet_with_applicability(cx, right.span, "..", &mut applicability)
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);
span_sugg(expr, sugg, applicability);
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},
(false, false) => (),
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}
}
if let ExprKind::Unary(UnOp::Neg, operand) = &expr.kind {
let mut arg = operand;
let mut all_odd = true;
while let ExprKind::MethodCall(path_segment, args, _) = &arg.kind {
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let path_segment_str = path_segment.ident.name.as_str();
all_odd &= ALLOWED_ODD_FUNCTIONS
.iter()
.any(|odd_function| **odd_function == *path_segment_str);
arg = args.first().expect("A method always has a receiver.");
}
if_chain! {
if !all_odd;
if let ExprKind::Lit(lit) = &arg.kind;
if let LitKind::Int(..) | LitKind::Float(..) = &lit.kind;
then {
let mut applicability = Applicability::MachineApplicable;
span_lint_and_sugg(
cx,
PRECEDENCE,
expr.span,
"unary minus has lower precedence than method call",
"consider adding parentheses to clarify your intent",
format!(
"-({})",
snippet_with_applicability(cx, operand.span, "..", &mut applicability)
),
applicability,
);
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}
}
}
}
}
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fn is_arith_expr(expr: &Expr) -> bool {
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match expr.kind {
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ExprKind::Binary(Spanned { node: op, .. }, _, _) => is_arith_op(op),
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_ => false,
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}
}
#[must_use]
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fn is_bit_op(op: BinOpKind) -> bool {
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use rustc_ast::ast::BinOpKind::{BitAnd, BitOr, BitXor, Shl, Shr};
matches!(op, BitXor | BitAnd | BitOr | Shl | Shr)
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}
#[must_use]
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fn is_arith_op(op: BinOpKind) -> bool {
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use rustc_ast::ast::BinOpKind::{Add, Div, Mul, Rem, Sub};
matches!(op, Add | Sub | Mul | Div | Rem)
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}