rust-clippy/clippy_lints/src/question_mark.rs

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use clippy_utils::diagnostics::span_lint_and_sugg;
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use clippy_utils::higher;
use clippy_utils::is_lang_ctor;
use clippy_utils::source::snippet_with_applicability;
use clippy_utils::sugg::Sugg;
use clippy_utils::ty::is_type_diagnostic_item;
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use clippy_utils::{eq_expr_value, path_to_local, path_to_local_id};
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use if_chain::if_chain;
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use rustc_errors::Applicability;
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use rustc_hir::LangItem::{OptionNone, OptionSome, ResultOk};
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use rustc_hir::{BindingAnnotation, Block, Expr, ExprKind, PatKind, StmtKind};
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use rustc_lint::{LateContext, LateLintPass};
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use rustc_session::{declare_lint_pass, declare_tool_lint};
use rustc_span::sym;
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declare_clippy_lint! {
/// ### What it does
/// Checks for expressions that could be replaced by the question mark operator.
///
/// ### Why is this bad?
/// Question mark usage is more idiomatic.
///
/// ### Example
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/// ```ignore
/// if option.is_none() {
/// return None;
/// }
/// ```
///
/// Could be written:
///
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/// ```ignore
/// option?;
/// ```
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pub QUESTION_MARK,
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style,
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"checks for expressions that could be replaced by the question mark operator"
}
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declare_lint_pass!(QuestionMark => [QUESTION_MARK]);
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impl QuestionMark {
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/// Checks if the given expression on the given context matches the following structure:
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///
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/// ```ignore
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/// if option.is_none() {
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/// return None;
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/// }
/// ```
///
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/// ```ignore
/// if result.is_err() {
/// return result;
/// }
/// ```
///
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/// If it matches, it will suggest to use the question mark operator instead
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fn check_is_none_or_err_and_early_return(cx: &LateContext<'_>, expr: &Expr<'_>) {
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if_chain! {
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if let Some(higher::If { cond, then, r#else }) = higher::If::hir(expr);
if let ExprKind::MethodCall(segment, _, args, _) = &cond.kind;
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if let Some(subject) = args.get(0);
if (Self::option_check_and_early_return(cx, subject, then) && segment.ident.name == sym!(is_none)) ||
(Self::result_check_and_early_return(cx, subject, then) && segment.ident.name == sym!(is_err));
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then {
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let mut applicability = Applicability::MachineApplicable;
let receiver_str = &Sugg::hir_with_applicability(cx, subject, "..", &mut applicability);
let mut replacement: Option<String> = None;
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if let Some(else_inner) = r#else {
if_chain! {
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if let ExprKind::Block(block, None) = &else_inner.kind;
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if block.stmts.is_empty();
if let Some(block_expr) = &block.expr;
if eq_expr_value(cx, subject, block_expr);
then {
replacement = Some(format!("Some({}?)", receiver_str));
}
}
} else if Self::moves_by_default(cx, subject)
&& !matches!(subject.kind, ExprKind::Call(..) | ExprKind::MethodCall(..))
{
replacement = Some(format!("{}.as_ref()?;", receiver_str));
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} else {
replacement = Some(format!("{}?;", receiver_str));
}
if let Some(replacement_str) = replacement {
span_lint_and_sugg(
cx,
QUESTION_MARK,
expr.span,
"this block may be rewritten with the `?` operator",
"replace it with",
replacement_str,
applicability,
);
}
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}
}
}
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fn check_if_let_some_or_err_and_early_return(cx: &LateContext<'_>, expr: &Expr<'_>) {
if_chain! {
if let Some(higher::IfLet { let_pat, let_expr, if_then, if_else: Some(if_else) })
= higher::IfLet::hir(cx, expr);
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if let PatKind::TupleStruct(ref path1, fields, None) = let_pat.kind;
if (Self::option_check_and_early_return(cx, let_expr, if_else) && is_lang_ctor(cx, path1, OptionSome)) ||
(Self::result_check_and_early_return(cx, let_expr, if_else) && is_lang_ctor(cx, path1, ResultOk));
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if let PatKind::Binding(annot, bind_id, _, _) = fields[0].kind;
let by_ref = matches!(annot, BindingAnnotation::Ref | BindingAnnotation::RefMut);
if let ExprKind::Block(block, None) = if_then.kind;
if block.stmts.is_empty();
if let Some(trailing_expr) = &block.expr;
if path_to_local_id(trailing_expr, bind_id);
then {
let mut applicability = Applicability::MachineApplicable;
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let receiver_str = snippet_with_applicability(cx, let_expr.span, "..", &mut applicability);
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let replacement = format!("{}{}?", receiver_str, if by_ref { ".as_ref()" } else { "" },);
span_lint_and_sugg(
cx,
QUESTION_MARK,
expr.span,
"this if-let-else may be rewritten with the `?` operator",
"replace it with",
replacement,
applicability,
);
}
}
}
fn result_check_and_early_return(cx: &LateContext<'_>, expr: &Expr<'_>, nested_expr: &Expr<'_>) -> bool {
Self::is_result(cx, expr) && Self::expression_returns_unmodified_err(cx, nested_expr, expr)
}
fn option_check_and_early_return(cx: &LateContext<'_>, expr: &Expr<'_>, nested_expr: &Expr<'_>) -> bool {
Self::is_option(cx, expr) && Self::expression_returns_none(cx, nested_expr)
}
fn moves_by_default(cx: &LateContext<'_>, expression: &Expr<'_>) -> bool {
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let expr_ty = cx.typeck_results().expr_ty(expression);
!expr_ty.is_copy_modulo_regions(cx.tcx.at(expression.span), cx.param_env)
}
fn is_option(cx: &LateContext<'_>, expression: &Expr<'_>) -> bool {
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let expr_ty = cx.typeck_results().expr_ty(expression);
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is_type_diagnostic_item(cx, expr_ty, sym::Option)
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}
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fn is_result(cx: &LateContext<'_>, expression: &Expr<'_>) -> bool {
let expr_ty = cx.typeck_results().expr_ty(expression);
is_type_diagnostic_item(cx, expr_ty, sym::Result)
}
fn expression_returns_none(cx: &LateContext<'_>, expression: &Expr<'_>) -> bool {
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match expression.kind {
ExprKind::Block(block, _) => {
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if let Some(return_expression) = Self::return_expression(block) {
return Self::expression_returns_none(cx, return_expression);
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}
false
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},
ExprKind::Ret(Some(expr)) => Self::expression_returns_none(cx, expr),
ExprKind::Path(ref qpath) => is_lang_ctor(cx, qpath, OptionNone),
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_ => false,
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}
}
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fn expression_returns_unmodified_err(cx: &LateContext<'_>, expression: &Expr<'_>, cond_expr: &Expr<'_>) -> bool {
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match expression.kind {
ExprKind::Block(block, _) => {
if let Some(return_expression) = Self::return_expression(block) {
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return Self::expression_returns_unmodified_err(cx, return_expression, cond_expr);
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}
false
},
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ExprKind::Ret(Some(expr)) => Self::expression_returns_unmodified_err(cx, expr, cond_expr),
ExprKind::Path(_) => path_to_local(expression) == path_to_local(cond_expr),
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_ => false,
}
}
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fn return_expression<'tcx>(block: &Block<'tcx>) -> Option<&'tcx Expr<'tcx>> {
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// Check if last expression is a return statement. Then, return the expression
if_chain! {
if block.stmts.len() == 1;
if let Some(expr) = block.stmts.iter().last();
if let StmtKind::Semi(expr) = expr.kind;
if let ExprKind::Ret(Some(ret_expr)) = expr.kind;
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then {
return Some(ret_expr);
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}
}
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// Check for `return` without a semicolon.
if_chain! {
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if block.stmts.is_empty();
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if let Some(ExprKind::Ret(Some(ret_expr))) = block.expr.as_ref().map(|e| &e.kind);
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then {
return Some(ret_expr);
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}
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}
None
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}
}
impl<'tcx> LateLintPass<'tcx> for QuestionMark {
fn check_expr(&mut self, cx: &LateContext<'tcx>, expr: &'tcx Expr<'_>) {
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Self::check_is_none_or_err_and_early_return(cx, expr);
Self::check_if_let_some_or_err_and_early_return(cx, expr);
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}
}