925dc37313
Switching them to `Break(())` and `Continue(())` instead. libs-api would like to remove these constants, so stop using them in compiler to make the removal PR later smaller.
260 lines
8.4 KiB
Rust
260 lines
8.4 KiB
Rust
/// A macro for triggering an ICE.
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/// Calling `bug` instead of panicking will result in a nicer error message and should
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/// therefore be prefered over `panic`/`unreachable` or others.
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///
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/// If you have a span available, you should use [`span_bug`] instead.
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///
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/// If the bug should only be emitted when compilation didn't fail, [`Session::delay_span_bug`] may be useful.
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///
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/// [`Session::delay_span_bug`]: rustc_session::Session::delay_span_bug
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/// [`span_bug`]: crate::span_bug
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#[macro_export]
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macro_rules! bug {
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() => ( $crate::bug!("impossible case reached") );
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($msg:expr) => ({ $crate::util::bug::bug_fmt(::std::format_args!($msg)) });
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($msg:expr,) => ({ $crate::bug!($msg) });
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($fmt:expr, $($arg:tt)+) => ({
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$crate::util::bug::bug_fmt(::std::format_args!($fmt, $($arg)+))
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});
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}
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/// A macro for triggering an ICE with a span.
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/// Calling `span_bug!` instead of panicking will result in a nicer error message and point
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/// at the code the compiler was compiling when it ICEd. This is the preferred way to trigger
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/// ICEs.
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///
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/// If the bug should only be emitted when compilation didn't fail, [`Session::delay_span_bug`] may be useful.
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///
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/// [`Session::delay_span_bug`]: rustc_session::Session::delay_span_bug
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#[macro_export]
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macro_rules! span_bug {
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($span:expr, $msg:expr) => ({ $crate::util::bug::span_bug_fmt($span, ::std::format_args!($msg)) });
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($span:expr, $msg:expr,) => ({ $crate::span_bug!($span, $msg) });
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($span:expr, $fmt:expr, $($arg:tt)+) => ({
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$crate::util::bug::span_bug_fmt($span, ::std::format_args!($fmt, $($arg)+))
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});
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}
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///////////////////////////////////////////////////////////////////////////
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// Lift and TypeFoldable/TypeVisitable macros
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//
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// When possible, use one of these (relatively) convenient macros to write
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// the impls for you.
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#[macro_export]
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macro_rules! CloneLiftImpls {
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(for <$tcx:lifetime> { $($ty:ty,)+ }) => {
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$(
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impl<$tcx> $crate::ty::Lift<$tcx> for $ty {
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type Lifted = Self;
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fn lift_to_tcx(self, _: $crate::ty::TyCtxt<$tcx>) -> Option<Self> {
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Some(self)
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}
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}
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)+
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};
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($($ty:ty,)+) => {
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CloneLiftImpls! {
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for <'tcx> {
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$($ty,)+
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}
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}
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};
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}
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/// Used for types that are `Copy` and which **do not care arena
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/// allocated data** (i.e., don't need to be folded).
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#[macro_export]
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macro_rules! TrivialTypeTraversalImpls {
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(for <$tcx:lifetime> { $($ty:ty,)+ }) => {
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$(
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impl<$tcx> $crate::ty::fold::TypeFoldable<$tcx> for $ty {
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fn try_fold_with<F: $crate::ty::fold::FallibleTypeFolder<$tcx>>(
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self,
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_: &mut F,
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) -> ::std::result::Result<Self, F::Error> {
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Ok(self)
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}
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#[inline]
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fn fold_with<F: $crate::ty::fold::TypeFolder<$tcx>>(
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self,
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_: &mut F,
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) -> Self {
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self
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}
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}
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impl<$tcx> $crate::ty::visit::TypeVisitable<$tcx> for $ty {
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#[inline]
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fn visit_with<F: $crate::ty::visit::TypeVisitor<$tcx>>(
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&self,
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_: &mut F)
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-> ::std::ops::ControlFlow<F::BreakTy>
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{
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::std::ops::ControlFlow::Continue(())
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}
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}
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)+
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};
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($($ty:ty,)+) => {
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TrivialTypeTraversalImpls! {
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for <'tcx> {
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$($ty,)+
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}
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}
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};
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}
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#[macro_export]
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macro_rules! TrivialTypeTraversalAndLiftImpls {
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($($t:tt)*) => {
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TrivialTypeTraversalImpls! { $($t)* }
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CloneLiftImpls! { $($t)* }
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}
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}
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#[macro_export]
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macro_rules! EnumTypeTraversalImpl {
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(impl<$($p:tt),*> TypeFoldable<$tcx:tt> for $s:path {
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$($variants:tt)*
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} $(where $($wc:tt)*)*) => {
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impl<$($p),*> $crate::ty::fold::TypeFoldable<$tcx> for $s
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$(where $($wc)*)*
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{
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fn try_fold_with<V: $crate::ty::fold::FallibleTypeFolder<$tcx>>(
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self,
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folder: &mut V,
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) -> ::std::result::Result<Self, V::Error> {
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EnumTypeTraversalImpl!(@FoldVariants(self, folder) input($($variants)*) output())
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}
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}
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};
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(impl<$($p:tt),*> TypeVisitable<$tcx:tt> for $s:path {
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$($variants:tt)*
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} $(where $($wc:tt)*)*) => {
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impl<$($p),*> $crate::ty::visit::TypeVisitable<$tcx> for $s
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$(where $($wc)*)*
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{
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fn visit_with<V: $crate::ty::visit::TypeVisitor<$tcx>>(
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&self,
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visitor: &mut V,
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) -> ::std::ops::ControlFlow<V::BreakTy> {
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EnumTypeTraversalImpl!(@VisitVariants(self, visitor) input($($variants)*) output())
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}
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}
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};
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(@FoldVariants($this:expr, $folder:expr) input() output($($output:tt)*)) => {
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Ok(match $this {
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$($output)*
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})
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};
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(@FoldVariants($this:expr, $folder:expr)
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input( ($variant:path) ( $($variant_arg:ident),* ) , $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@FoldVariants($this, $folder)
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input($($input)*)
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output(
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$variant ( $($variant_arg),* ) => {
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$variant (
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$($crate::ty::fold::TypeFoldable::try_fold_with($variant_arg, $folder)?),*
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)
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}
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$($output)*
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)
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)
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};
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(@FoldVariants($this:expr, $folder:expr)
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input( ($variant:path) { $($variant_arg:ident),* $(,)? } , $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@FoldVariants($this, $folder)
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input($($input)*)
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output(
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$variant { $($variant_arg),* } => {
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$variant {
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$($variant_arg: $crate::ty::fold::TypeFoldable::fold_with(
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$variant_arg, $folder
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)?),* }
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}
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$($output)*
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)
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)
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};
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(@FoldVariants($this:expr, $folder:expr)
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input( ($variant:path), $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@FoldVariants($this, $folder)
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input($($input)*)
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output(
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$variant => { $variant }
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$($output)*
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)
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)
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};
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(@VisitVariants($this:expr, $visitor:expr) input() output($($output:tt)*)) => {
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match $this {
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$($output)*
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}
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};
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(@VisitVariants($this:expr, $visitor:expr)
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input( ($variant:path) ( $($variant_arg:ident),* ) , $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@VisitVariants($this, $visitor)
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input($($input)*)
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output(
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$variant ( $($variant_arg),* ) => {
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$($crate::ty::visit::TypeVisitable::visit_with(
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$variant_arg, $visitor
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)?;)*
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::std::ops::ControlFlow::Continue(())
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}
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$($output)*
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)
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)
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};
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(@VisitVariants($this:expr, $visitor:expr)
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input( ($variant:path) { $($variant_arg:ident),* $(,)? } , $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@VisitVariants($this, $visitor)
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input($($input)*)
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output(
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$variant { $($variant_arg),* } => {
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$($crate::ty::visit::TypeVisitable::visit_with(
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$variant_arg, $visitor
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)?;)*
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::std::ops::ControlFlow::Continue(())
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}
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$($output)*
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)
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)
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};
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(@VisitVariants($this:expr, $visitor:expr)
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input( ($variant:path), $($input:tt)*)
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output( $($output:tt)*) ) => {
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EnumTypeTraversalImpl!(
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@VisitVariants($this, $visitor)
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input($($input)*)
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output(
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$variant => { ::std::ops::ControlFlow::Continue(()) }
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$($output)*
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)
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)
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};
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}
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