174 lines
5.9 KiB
Rust
174 lines
5.9 KiB
Rust
use clippy_utils::consts::{constant, Constant};
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use clippy_utils::diagnostics::span_lint;
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use rustc_hir::{BinOpKind, Expr, ExprKind};
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use rustc_lint::LateContext;
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use rustc_span::source_map::Span;
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use super::{BAD_BIT_MASK, INEFFECTIVE_BIT_MASK};
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pub(super) fn check<'tcx>(
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cx: &LateContext<'tcx>,
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e: &'tcx Expr<'_>,
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op: BinOpKind,
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left: &'tcx Expr<'_>,
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right: &'tcx Expr<'_>,
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) {
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if op.is_comparison() {
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if let Some(cmp_opt) = fetch_int_literal(cx, right) {
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check_compare(cx, left, op, cmp_opt, e.span);
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} else if let Some(cmp_val) = fetch_int_literal(cx, left) {
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check_compare(cx, right, invert_cmp(op), cmp_val, e.span);
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}
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}
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}
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#[must_use]
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fn invert_cmp(cmp: BinOpKind) -> BinOpKind {
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match cmp {
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BinOpKind::Eq => BinOpKind::Eq,
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BinOpKind::Ne => BinOpKind::Ne,
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BinOpKind::Lt => BinOpKind::Gt,
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BinOpKind::Gt => BinOpKind::Lt,
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BinOpKind::Le => BinOpKind::Ge,
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BinOpKind::Ge => BinOpKind::Le,
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_ => BinOpKind::Or, // Dummy
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}
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}
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fn check_compare(cx: &LateContext<'_>, bit_op: &Expr<'_>, cmp_op: BinOpKind, cmp_value: u128, span: Span) {
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if let ExprKind::Binary(op, left, right) = &bit_op.kind {
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if op.node != BinOpKind::BitAnd && op.node != BinOpKind::BitOr {
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return;
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}
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fetch_int_literal(cx, right)
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.or_else(|| fetch_int_literal(cx, left))
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.map_or((), |mask| check_bit_mask(cx, op.node, cmp_op, mask, cmp_value, span));
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}
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}
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#[allow(clippy::too_many_lines)]
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fn check_bit_mask(
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cx: &LateContext<'_>,
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bit_op: BinOpKind,
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cmp_op: BinOpKind,
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mask_value: u128,
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cmp_value: u128,
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span: Span,
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) {
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match cmp_op {
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BinOpKind::Eq | BinOpKind::Ne => match bit_op {
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BinOpKind::BitAnd => {
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if mask_value & cmp_value != cmp_value {
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if cmp_value != 0 {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ & {mask_value}` can never be equal to `{cmp_value}`"),
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);
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}
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} else if mask_value == 0 {
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span_lint(cx, BAD_BIT_MASK, span, "&-masking with zero");
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}
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},
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BinOpKind::BitOr => {
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if mask_value | cmp_value != cmp_value {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ | {mask_value}` can never be equal to `{cmp_value}`"),
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);
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}
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},
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_ => (),
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},
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BinOpKind::Lt | BinOpKind::Ge => match bit_op {
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BinOpKind::BitAnd => {
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if mask_value < cmp_value {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ & {mask_value}` will always be lower than `{cmp_value}`"),
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);
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} else if mask_value == 0 {
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span_lint(cx, BAD_BIT_MASK, span, "&-masking with zero");
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}
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},
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BinOpKind::BitOr => {
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if mask_value >= cmp_value {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ | {mask_value}` will never be lower than `{cmp_value}`"),
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);
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} else {
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check_ineffective_lt(cx, span, mask_value, cmp_value, "|");
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}
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},
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BinOpKind::BitXor => check_ineffective_lt(cx, span, mask_value, cmp_value, "^"),
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_ => (),
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},
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BinOpKind::Le | BinOpKind::Gt => match bit_op {
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BinOpKind::BitAnd => {
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if mask_value <= cmp_value {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ & {mask_value}` will never be higher than `{cmp_value}`"),
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);
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} else if mask_value == 0 {
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span_lint(cx, BAD_BIT_MASK, span, "&-masking with zero");
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}
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},
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BinOpKind::BitOr => {
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if mask_value > cmp_value {
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span_lint(
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cx,
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BAD_BIT_MASK,
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span,
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&format!("incompatible bit mask: `_ | {mask_value}` will always be higher than `{cmp_value}`"),
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);
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} else {
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check_ineffective_gt(cx, span, mask_value, cmp_value, "|");
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}
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},
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BinOpKind::BitXor => check_ineffective_gt(cx, span, mask_value, cmp_value, "^"),
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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_ineffective_lt(cx: &LateContext<'_>, span: Span, m: u128, c: u128, op: &str) {
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if c.is_power_of_two() && m < c {
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span_lint(
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cx,
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INEFFECTIVE_BIT_MASK,
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span,
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&format!("ineffective bit mask: `x {op} {m}` compared to `{c}`, is the same as x compared directly"),
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);
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}
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}
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fn check_ineffective_gt(cx: &LateContext<'_>, span: Span, m: u128, c: u128, op: &str) {
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if (c + 1).is_power_of_two() && m <= c {
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span_lint(
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cx,
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INEFFECTIVE_BIT_MASK,
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span,
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&format!("ineffective bit mask: `x {op} {m}` compared to `{c}`, is the same as x compared directly"),
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);
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}
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}
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fn fetch_int_literal(cx: &LateContext<'_>, lit: &Expr<'_>) -> Option<u128> {
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match constant(cx, cx.typeck_results(), lit)? {
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Constant::Int(n) => Some(n),
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_ => None,
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}
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}
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