193 lines
6.9 KiB
Rust
193 lines
6.9 KiB
Rust
use crate::utils::{
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in_macro, is_type_diagnostic_item, match_def_path, match_qpath, paths, snippet, snippet_with_macro_callsite,
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span_lint_and_sugg,
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};
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use if_chain::if_chain;
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use rustc_errors::Applicability;
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use rustc_hir::{Expr, ExprKind, LangItem, MatchSource, QPath};
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use rustc_lint::{LateContext, LateLintPass};
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use rustc_middle::lint::in_external_macro;
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use rustc_middle::ty::{self, Ty};
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use rustc_session::{declare_lint_pass, declare_tool_lint};
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declare_clippy_lint! {
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/// **What it does:** Checks for usages of `Err(x)?`.
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///
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/// **Why is this bad?** The `?` operator is designed to allow calls that
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/// can fail to be easily chained. For example, `foo()?.bar()` or
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/// `foo(bar()?)`. Because `Err(x)?` can't be used that way (it will
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/// always return), it is more clear to write `return Err(x)`.
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///
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/// **Known problems:** None.
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///
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/// **Example:**
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/// ```rust
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/// fn foo(fail: bool) -> Result<i32, String> {
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/// if fail {
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/// Err("failed")?;
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/// }
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/// Ok(0)
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/// }
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/// ```
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/// Could be written:
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///
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/// ```rust
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/// fn foo(fail: bool) -> Result<i32, String> {
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/// if fail {
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/// return Err("failed".into());
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/// }
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/// Ok(0)
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/// }
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/// ```
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pub TRY_ERR,
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style,
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"return errors explicitly rather than hiding them behind a `?`"
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}
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declare_lint_pass!(TryErr => [TRY_ERR]);
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impl<'tcx> LateLintPass<'tcx> for TryErr {
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fn check_expr(&mut self, cx: &LateContext<'tcx>, expr: &'tcx Expr<'_>) {
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// Looks for a structure like this:
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// match ::std::ops::Try::into_result(Err(5)) {
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// ::std::result::Result::Err(err) =>
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// #[allow(unreachable_code)]
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// return ::std::ops::Try::from_error(::std::convert::From::from(err)),
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// ::std::result::Result::Ok(val) =>
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// #[allow(unreachable_code)]
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// val,
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// };
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if_chain! {
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if !in_external_macro(cx.tcx.sess, expr.span);
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if let ExprKind::Match(ref match_arg, _, MatchSource::TryDesugar) = expr.kind;
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if let ExprKind::Call(ref match_fun, ref try_args) = match_arg.kind;
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if let ExprKind::Path(ref match_fun_path) = match_fun.kind;
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if matches!(match_fun_path, QPath::LangItem(LangItem::TryIntoResult, _));
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if let Some(ref try_arg) = try_args.get(0);
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if let ExprKind::Call(ref err_fun, ref err_args) = try_arg.kind;
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if let Some(ref err_arg) = err_args.get(0);
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if let ExprKind::Path(ref err_fun_path) = err_fun.kind;
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if match_qpath(err_fun_path, &paths::RESULT_ERR);
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if let Some(return_ty) = find_return_type(cx, &expr.kind);
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then {
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let prefix;
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let suffix;
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let err_ty;
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if let Some(ty) = result_error_type(cx, return_ty) {
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prefix = "Err(";
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suffix = ")";
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err_ty = ty;
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} else if let Some(ty) = poll_result_error_type(cx, return_ty) {
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prefix = "Poll::Ready(Err(";
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suffix = "))";
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err_ty = ty;
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} else if let Some(ty) = poll_option_result_error_type(cx, return_ty) {
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prefix = "Poll::Ready(Some(Err(";
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suffix = ")))";
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err_ty = ty;
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} else {
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return;
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};
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let expr_err_ty = cx.typeck_results().expr_ty(err_arg);
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// println!("\n\n{:?}", in_macro(expr.span));
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// println!("{:#?}", snippet(cx, err_arg.span, "_"));
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let origin_snippet = if err_arg.span.from_expansion() && !in_macro(expr.span) {
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// println!("from expansion");
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snippet_with_macro_callsite(cx, err_arg.span, "_")
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} else {
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// println!("just a snippet");
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snippet(cx, err_arg.span, "_")
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};
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let suggestion = if err_ty == expr_err_ty {
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format!("return {}{}{}", prefix, origin_snippet, suffix)
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} else {
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format!("return {}{}.into(){}", prefix, origin_snippet, suffix)
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};
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// println!("origin_snippet: {:#?}", origin_snippet);
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// println!("suggestion: {:#?}", suggestion);
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span_lint_and_sugg(
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cx,
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TRY_ERR,
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expr.span,
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"returning an `Err(_)` with the `?` operator",
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"try this",
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suggestion,
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Applicability::MachineApplicable
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);
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}
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}
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}
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}
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/// Finds function return type by examining return expressions in match arms.
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fn find_return_type<'tcx>(cx: &LateContext<'tcx>, expr: &'tcx ExprKind<'_>) -> Option<Ty<'tcx>> {
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if let ExprKind::Match(_, ref arms, MatchSource::TryDesugar) = expr {
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for arm in arms.iter() {
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if let ExprKind::Ret(Some(ref ret)) = arm.body.kind {
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return Some(cx.typeck_results().expr_ty(ret));
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}
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}
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}
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None
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}
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/// Extracts the error type from Result<T, E>.
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fn result_error_type<'tcx>(cx: &LateContext<'tcx>, ty: Ty<'tcx>) -> Option<Ty<'tcx>> {
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if_chain! {
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if let ty::Adt(_, subst) = ty.kind();
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if is_type_diagnostic_item(cx, ty, sym!(result_type));
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let err_ty = subst.type_at(1);
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then {
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Some(err_ty)
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} else {
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None
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}
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}
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}
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/// Extracts the error type from Poll<Result<T, E>>.
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fn poll_result_error_type<'tcx>(cx: &LateContext<'tcx>, ty: Ty<'tcx>) -> Option<Ty<'tcx>> {
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if_chain! {
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if let ty::Adt(def, subst) = ty.kind();
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if match_def_path(cx, def.did, &paths::POLL);
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let ready_ty = subst.type_at(0);
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if let ty::Adt(ready_def, ready_subst) = ready_ty.kind();
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if cx.tcx.is_diagnostic_item(sym!(result_type), ready_def.did);
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let err_ty = ready_subst.type_at(1);
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then {
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Some(err_ty)
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} else {
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None
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}
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}
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}
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/// Extracts the error type from Poll<Option<Result<T, E>>>.
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fn poll_option_result_error_type<'tcx>(cx: &LateContext<'tcx>, ty: Ty<'tcx>) -> Option<Ty<'tcx>> {
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if_chain! {
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if let ty::Adt(def, subst) = ty.kind();
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if match_def_path(cx, def.did, &paths::POLL);
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let ready_ty = subst.type_at(0);
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if let ty::Adt(ready_def, ready_subst) = ready_ty.kind();
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if cx.tcx.is_diagnostic_item(sym!(option_type), ready_def.did);
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let some_ty = ready_subst.type_at(0);
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if let ty::Adt(some_def, some_subst) = some_ty.kind();
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if cx.tcx.is_diagnostic_item(sym!(result_type), some_def.did);
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let err_ty = some_subst.type_at(1);
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then {
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Some(err_ty)
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} else {
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None
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}
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}
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}
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