rust-clippy/clippy_lints/src/identity_op.rs

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use clippy_utils::consts::{constant_full_int, constant_simple, Constant, FullInt};
use clippy_utils::diagnostics::span_lint_and_sugg;
use clippy_utils::source::snippet_with_applicability;
use clippy_utils::{clip, unsext};
use rustc_errors::Applicability;
use rustc_hir::{BinOp, BinOpKind, Expr, ExprKind, Node};
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use rustc_lint::{LateContext, LateLintPass};
use rustc_middle::ty;
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use rustc_session::{declare_lint_pass, declare_tool_lint};
use rustc_span::source_map::Span;
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declare_clippy_lint! {
/// ### What it does
/// Checks for identity operations, e.g., `x + 0`.
///
/// ### Why is this bad?
/// This code can be removed without changing the
/// meaning. So it just obscures what's going on. Delete it mercilessly.
///
/// ### Example
/// ```rust
/// # let x = 1;
/// x / 1 + 0 * 1 - 0 | 0;
/// ```
Added `clippy::version` attribute to all normal lints So, some context for this, well, more a story. I'm not used to scripting, I've never really scripted anything, even if it's a valuable skill. I just never really needed it. Now, `@flip1995` correctly suggested using a script for this in `rust-clippy#7813`... And I decided to write a script using nushell because why not? This was a mistake... I spend way more time on this than I would like to admit. It has definitely been more than 4 hours. It shouldn't take that long, but me being new to scripting and nushell just wasn't a good mixture... Anyway, here is the script that creates another script which adds the versions. Fun... Just execute this on the `gh-pages` branch and the resulting `replacer.sh` in `clippy_lints` and it should all work. ```nu mv v0.0.212 rust-1.00.0; mv beta rust-1.57.0; mv master rust-1.58.0; let paths = (open ./rust-1.58.0/lints.json | select id id_span | flatten | select id path); let versions = ( ls | where name =~ "rust-" | select name | format {name}/lints.json | each { open $it | select id | insert version $it | str substring "5,11" version} | group-by id | rotate counter-clockwise id version | update version {get version | first 1} | flatten | select id version); $paths | each { |row| let version = ($versions | where id == ($row.id) | format {version}) let idu = ($row.id | str upcase) $"sed -i '0,/($idu),/{s/pub ($idu),/#[clippy::version = "($version)"]\n pub ($idu),/}' ($row.path)" } | str collect ";" | str find-replace --all '1.00.0' 'pre 1.29.0' | save "replacer.sh"; ``` And this still has some problems, but at this point I just want to be done -.-
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#[clippy::version = "pre 1.29.0"]
pub IDENTITY_OP,
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complexity,
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"using identity operations, e.g., `x + 0` or `y / 1`"
}
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declare_lint_pass!(IdentityOp => [IDENTITY_OP]);
impl<'tcx> LateLintPass<'tcx> for IdentityOp {
fn check_expr(&mut self, cx: &LateContext<'tcx>, expr: &'tcx Expr<'_>) {
if expr.span.from_expansion() {
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return;
}
if let ExprKind::Binary(cmp, left, right) = &expr.kind {
if !is_allowed(cx, *cmp, left, right) {
match cmp.node {
BinOpKind::Add | BinOpKind::BitOr | BinOpKind::BitXor => {
check(cx, left, 0, expr.span, right.span, needs_parenthesis(cx, expr, right));
check(cx, right, 0, expr.span, left.span, Parens::Unneeded);
},
BinOpKind::Shl | BinOpKind::Shr | BinOpKind::Sub => {
check(cx, right, 0, expr.span, left.span, Parens::Unneeded);
},
BinOpKind::Mul => {
check(cx, left, 1, expr.span, right.span, needs_parenthesis(cx, expr, right));
check(cx, right, 1, expr.span, left.span, Parens::Unneeded);
},
BinOpKind::Div => check(cx, right, 1, expr.span, left.span, Parens::Unneeded),
BinOpKind::BitAnd => {
check(cx, left, -1, expr.span, right.span, needs_parenthesis(cx, expr, right));
check(cx, right, -1, expr.span, left.span, Parens::Unneeded);
},
BinOpKind::Rem => check_remainder(cx, left, right, expr.span, left.span),
_ => (),
}
}
}
}
}
#[derive(Copy, Clone)]
enum Parens {
Needed,
Unneeded,
}
/// Checks if `left op right` needs parenthesis when reduced to `right`
/// e.g. `0 + if b { 1 } else { 2 } + if b { 3 } else { 4 }` cannot be reduced
/// to `if b { 1 } else { 2 } + if b { 3 } else { 4 }` where the `if` could be
/// interpreted as a statement
///
/// See #8724
fn needs_parenthesis(cx: &LateContext<'_>, binary: &Expr<'_>, right: &Expr<'_>) -> Parens {
match right.kind {
ExprKind::Binary(_, lhs, _) | ExprKind::Cast(lhs, _) => {
// ensure we're checking against the leftmost expression of `right`
//
// ~~~ `lhs`
// 0 + {4} * 2
// ~~~~~~~ `right`
return needs_parenthesis(cx, binary, lhs);
},
ExprKind::If(..) | ExprKind::Match(..) | ExprKind::Block(..) | ExprKind::Loop(..) => {},
_ => return Parens::Unneeded,
}
let mut prev_id = binary.hir_id;
for (_, node) in cx.tcx.hir().parent_iter(binary.hir_id) {
if let Node::Expr(expr) = node
&& let ExprKind::Binary(_, lhs, _) | ExprKind::Cast(lhs, _) = expr.kind
&& lhs.hir_id == prev_id
{
// keep going until we find a node that encompasses left of `binary`
prev_id = expr.hir_id;
continue;
}
match node {
Node::Block(_) | Node::Stmt(_) => break,
_ => return Parens::Unneeded,
};
}
Parens::Needed
}
fn is_allowed(cx: &LateContext<'_>, cmp: BinOp, left: &Expr<'_>, right: &Expr<'_>) -> bool {
// This lint applies to integers
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!cx.typeck_results().expr_ty(left).peel_refs().is_integral()
|| !cx.typeck_results().expr_ty(right).peel_refs().is_integral()
// `1 << 0` is a common pattern in bit manipulation code
|| (cmp.node == BinOpKind::Shl
&& constant_simple(cx, cx.typeck_results(), right) == Some(Constant::Int(0))
&& constant_simple(cx, cx.typeck_results(), left) == Some(Constant::Int(1)))
}
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fn check_remainder(cx: &LateContext<'_>, left: &Expr<'_>, right: &Expr<'_>, span: Span, arg: Span) {
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let lhs_const = constant_full_int(cx, cx.typeck_results(), left);
let rhs_const = constant_full_int(cx, cx.typeck_results(), right);
if match (lhs_const, rhs_const) {
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(Some(FullInt::S(lv)), Some(FullInt::S(rv))) => lv.abs() < rv.abs(),
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(Some(FullInt::U(lv)), Some(FullInt::U(rv))) => lv < rv,
_ => return,
} {
span_ineffective_operation(cx, span, arg, Parens::Unneeded);
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}
}
fn check(cx: &LateContext<'_>, e: &Expr<'_>, m: i8, span: Span, arg: Span, parens: Parens) {
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if let Some(Constant::Int(v)) = constant_simple(cx, cx.typeck_results(), e).map(Constant::peel_refs) {
let check = match *cx.typeck_results().expr_ty(e).peel_refs().kind() {
ty::Int(ity) => unsext(cx.tcx, -1_i128, ity),
ty::Uint(uty) => clip(cx.tcx, !0, uty),
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_ => return,
};
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if match m {
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0 => v == 0,
-1 => v == check,
1 => v == 1,
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_ => unreachable!(),
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} {
span_ineffective_operation(cx, span, arg, parens);
}
}
}
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fn span_ineffective_operation(cx: &LateContext<'_>, span: Span, arg: Span, parens: Parens) {
let mut applicability = Applicability::MachineApplicable;
let expr_snippet = snippet_with_applicability(cx, arg, "..", &mut applicability);
let suggestion = match parens {
Parens::Needed => format!("({expr_snippet})"),
Parens::Unneeded => expr_snippet.into_owned(),
};
span_lint_and_sugg(
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cx,
IDENTITY_OP,
span,
"this operation has no effect",
"consider reducing it to",
suggestion,
applicability,
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);
}