2016-04-17 23:33:21 +02:00
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use rustc::hir::*;
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use rustc::lint::*;
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use syntax::codemap::{Span, Spanned};
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use consts::{self, Constant};
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use utils::span_lint;
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/// **What it does:** Checks for multiplication by -1 as a form of negation.
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///
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/// **Why is this bad?** It's more readable to just negate.
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///
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2016-08-06 09:55:04 +02:00
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/// **Known problems:** This only catches integers (for now).
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2016-04-17 23:33:21 +02:00
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///
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2016-07-16 00:25:44 +02:00
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/// **Example:**
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/// ```rust
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/// x * -1
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/// ```
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2016-04-17 23:33:21 +02:00
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declare_lint! {
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pub NEG_MULTIPLY,
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Warn,
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2016-08-06 10:18:36 +02:00
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"multiplying integers with -1"
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2016-04-17 23:33:21 +02:00
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}
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#[derive(Copy, Clone)]
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pub struct NegMultiply;
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impl LintPass for NegMultiply {
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fn get_lints(&self) -> LintArray {
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lint_array!(NEG_MULTIPLY)
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}
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}
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#[allow(match_same_arms)]
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2016-12-07 13:13:40 +01:00
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impl<'a, 'tcx> LateLintPass<'a, 'tcx> for NegMultiply {
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fn check_expr(&mut self, cx: &LateContext<'a, 'tcx>, e: &'tcx Expr) {
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2016-04-17 23:33:21 +02:00
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if let ExprBinary(Spanned { node: BiMul, .. }, ref l, ref r) = e.node {
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match (&l.node, &r.node) {
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(&ExprUnary(..), &ExprUnary(..)) => (),
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(&ExprUnary(UnNeg, ref lit), _) => check_mul(cx, e.span, lit, r),
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(_, &ExprUnary(UnNeg, ref lit)) => check_mul(cx, e.span, lit, l),
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2016-06-06 01:42:39 +02:00
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_ => (),
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2016-04-17 23:33:21 +02:00
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}
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}
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}
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}
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fn check_mul(cx: &LateContext, span: Span, lit: &Expr, exp: &Expr) {
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2017-10-23 21:18:02 +02:00
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if_chain! {
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if let ExprLit(ref l) = lit.node;
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if let Constant::Int(ref ci) = consts::lit_to_constant(&l.node, cx.tcx, cx.tables.expr_ty(lit));
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if let Some(val) = ci.to_u64();
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if val == 1;
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if cx.tables.expr_ty(exp).is_integral();
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then {
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span_lint(cx,
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NEG_MULTIPLY,
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span,
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"Negation by multiplying with -1");
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}
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}
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2016-04-17 23:33:21 +02:00
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}
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