039b1b62ac
Replaced some unwrap_or and map_or with lazy variants Replaced some `unwrap_or` and `map_or` with `unwrap_or_else` and `map_or_else`.
253 lines
9.6 KiB
Rust
253 lines
9.6 KiB
Rust
use crate::{LateContext, LateLintPass, LintContext};
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use rustc_ast as ast;
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use rustc_errors::{pluralize, Applicability};
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use rustc_hir as hir;
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use rustc_middle::ty;
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use rustc_parse_format::{ParseMode, Parser, Piece};
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use rustc_span::{sym, symbol::kw, InnerSpan, Span, Symbol};
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declare_lint! {
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/// The `non_fmt_panic` lint detects `panic!(..)` invocations where the first
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/// argument is not a formatting string.
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///
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/// ### Example
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///
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/// ```rust,no_run
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/// panic!("{}");
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/// panic!(123);
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/// ```
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///
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/// {{produces}}
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///
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/// ### Explanation
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///
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/// In Rust 2018 and earlier, `panic!(x)` directly uses `x` as the message.
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/// That means that `panic!("{}")` panics with the message `"{}"` instead
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/// of using it as a formatting string, and `panic!(123)` will panic with
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/// an `i32` as message.
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///
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/// Rust 2021 always interprets the first argument as format string.
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NON_FMT_PANIC,
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Warn,
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"detect single-argument panic!() invocations in which the argument is not a format string",
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report_in_external_macro
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}
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declare_lint_pass!(NonPanicFmt => [NON_FMT_PANIC]);
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impl<'tcx> LateLintPass<'tcx> for NonPanicFmt {
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fn check_expr(&mut self, cx: &LateContext<'tcx>, expr: &'tcx hir::Expr<'tcx>) {
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if let hir::ExprKind::Call(f, [arg]) = &expr.kind {
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if let &ty::FnDef(def_id, _) = cx.typeck_results().expr_ty(f).kind() {
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if Some(def_id) == cx.tcx.lang_items().begin_panic_fn()
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|| Some(def_id) == cx.tcx.lang_items().panic_fn()
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|| Some(def_id) == cx.tcx.lang_items().panic_str()
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{
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if let Some(id) = f.span.ctxt().outer_expn_data().macro_def_id {
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if cx.tcx.is_diagnostic_item(sym::std_panic_2015_macro, id)
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|| cx.tcx.is_diagnostic_item(sym::core_panic_2015_macro, id)
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{
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check_panic(cx, f, arg);
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}
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}
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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_panic<'tcx>(cx: &LateContext<'tcx>, f: &'tcx hir::Expr<'tcx>, arg: &'tcx hir::Expr<'tcx>) {
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if let hir::ExprKind::Lit(lit) = &arg.kind {
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if let ast::LitKind::Str(sym, _) = lit.node {
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// The argument is a string literal.
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check_panic_str(cx, f, arg, &sym.as_str());
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return;
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}
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}
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// The argument is *not* a string literal.
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let (span, panic) = panic_call(cx, f);
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// Find the span of the argument to `panic!()`, before expansion in the
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// case of `panic!(some_macro!())`.
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// We don't use source_callsite(), because this `panic!(..)` might itself
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// be expanded from another macro, in which case we want to stop at that
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// expansion.
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let mut arg_span = arg.span;
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let mut arg_macro = None;
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while !span.contains(arg_span) {
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let expn = arg_span.ctxt().outer_expn_data();
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if expn.is_root() {
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break;
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}
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arg_macro = expn.macro_def_id;
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arg_span = expn.call_site;
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}
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cx.struct_span_lint(NON_FMT_PANIC, arg_span, |lint| {
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let mut l = lint.build("panic message is not a string literal");
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l.note("this is no longer accepted in Rust 2021");
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if !span.contains(arg_span) {
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// No clue where this argument is coming from.
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l.emit();
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return;
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}
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if arg_macro.map_or(false, |id| cx.tcx.is_diagnostic_item(sym::format_macro, id)) {
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// A case of `panic!(format!(..))`.
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l.note("the panic!() macro supports formatting, so there's no need for the format!() macro here");
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if let Some((open, close, _)) = find_delimiters(cx, arg_span) {
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l.multipart_suggestion(
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"remove the `format!(..)` macro call",
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vec![
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(arg_span.until(open.shrink_to_hi()), "".into()),
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(close.until(arg_span.shrink_to_hi()), "".into()),
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],
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Applicability::MachineApplicable,
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);
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}
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} else {
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l.span_suggestion_verbose(
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arg_span.shrink_to_lo(),
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"add a \"{}\" format string to Display the message",
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"\"{}\", ".into(),
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Applicability::MaybeIncorrect,
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);
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if panic == sym::std_panic_macro {
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if let Some((open, close, del)) = find_delimiters(cx, span) {
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l.multipart_suggestion(
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"or use std::panic::panic_any instead",
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if del == '(' {
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vec![(span.until(open), "std::panic::panic_any".into())]
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} else {
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vec![
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(span.until(open.shrink_to_hi()), "std::panic::panic_any(".into()),
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(close, ")".into()),
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]
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},
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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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l.emit();
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});
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}
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fn check_panic_str<'tcx>(
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cx: &LateContext<'tcx>,
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f: &'tcx hir::Expr<'tcx>,
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arg: &'tcx hir::Expr<'tcx>,
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fmt: &str,
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) {
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if !fmt.contains(&['{', '}'][..]) {
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// No brace, no problem.
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return;
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}
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let fmt_span = arg.span.source_callsite();
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let (snippet, style) = match cx.sess().parse_sess.source_map().span_to_snippet(fmt_span) {
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Ok(snippet) => {
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// Count the number of `#`s between the `r` and `"`.
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let style = snippet.strip_prefix('r').and_then(|s| s.find('"'));
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(Some(snippet), style)
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}
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Err(_) => (None, None),
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};
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let mut fmt_parser =
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Parser::new(fmt.as_ref(), style, snippet.clone(), false, ParseMode::Format);
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let n_arguments = (&mut fmt_parser).filter(|a| matches!(a, Piece::NextArgument(_))).count();
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let (span, _) = panic_call(cx, f);
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if n_arguments > 0 && fmt_parser.errors.is_empty() {
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let arg_spans: Vec<_> = match &fmt_parser.arg_places[..] {
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[] => vec![fmt_span],
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v => v.iter().map(|span| fmt_span.from_inner(*span)).collect(),
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};
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cx.struct_span_lint(NON_FMT_PANIC, arg_spans, |lint| {
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let mut l = lint.build(match n_arguments {
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1 => "panic message contains an unused formatting placeholder",
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_ => "panic message contains unused formatting placeholders",
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});
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l.note("this message is not used as a format string when given without arguments, but will be in Rust 2021");
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if span.contains(arg.span) {
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l.span_suggestion(
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arg.span.shrink_to_hi(),
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&format!("add the missing argument{}", pluralize!(n_arguments)),
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", ...".into(),
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Applicability::HasPlaceholders,
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);
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l.span_suggestion(
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arg.span.shrink_to_lo(),
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"or add a \"{}\" format string to use the message literally",
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"\"{}\", ".into(),
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Applicability::MachineApplicable,
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);
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}
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l.emit();
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});
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} else {
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let brace_spans: Option<Vec<_>> =
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snippet.filter(|s| s.starts_with('"') || s.starts_with("r#")).map(|s| {
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s.char_indices()
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.filter(|&(_, c)| c == '{' || c == '}')
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.map(|(i, _)| fmt_span.from_inner(InnerSpan { start: i, end: i + 1 }))
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.collect()
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});
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let msg = match &brace_spans {
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Some(v) if v.len() == 1 => "panic message contains a brace",
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_ => "panic message contains braces",
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};
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cx.struct_span_lint(NON_FMT_PANIC, brace_spans.unwrap_or_else(|| vec![span]), |lint| {
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let mut l = lint.build(msg);
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l.note("this message is not used as a format string, but will be in Rust 2021");
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if span.contains(arg.span) {
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l.span_suggestion(
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arg.span.shrink_to_lo(),
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"add a \"{}\" format string to use the message literally",
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"\"{}\", ".into(),
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Applicability::MachineApplicable,
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);
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}
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l.emit();
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});
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}
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}
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/// Given the span of `some_macro!(args);`, gives the span of `(` and `)`,
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/// and the type of (opening) delimiter used.
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fn find_delimiters<'tcx>(cx: &LateContext<'tcx>, span: Span) -> Option<(Span, Span, char)> {
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let snippet = cx.sess().parse_sess.source_map().span_to_snippet(span).ok()?;
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let (open, open_ch) = snippet.char_indices().find(|&(_, c)| "([{".contains(c))?;
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let close = snippet.rfind(|c| ")]}".contains(c))?;
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Some((
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span.from_inner(InnerSpan { start: open, end: open + 1 }),
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span.from_inner(InnerSpan { start: close, end: close + 1 }),
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open_ch,
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))
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}
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fn panic_call<'tcx>(cx: &LateContext<'tcx>, f: &'tcx hir::Expr<'tcx>) -> (Span, Symbol) {
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let mut expn = f.span.ctxt().outer_expn_data();
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let mut panic_macro = kw::Empty;
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// Unwrap more levels of macro expansion, as panic_2015!()
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// was likely expanded from panic!() and possibly from
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// [debug_]assert!().
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for &i in
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&[sym::std_panic_macro, sym::core_panic_macro, sym::assert_macro, sym::debug_assert_macro]
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{
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let parent = expn.call_site.ctxt().outer_expn_data();
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if parent.macro_def_id.map_or(false, |id| cx.tcx.is_diagnostic_item(i, id)) {
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expn = parent;
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panic_macro = i;
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}
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}
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(expn.call_site, panic_macro)
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}
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