rustc_attr_parsing/context.rs
1//! Context given to attribute parsers when parsing.
2use std::cell::RefCell;
3use std::collections::BTreeMap;
4use std::collections::btree_map::Entry;
5use std::mem;
6use std::ops::{Deref, DerefMut};
7use std::sync::LazyLock;
8#[cfg(debug_assertions)]
9use std::sync::atomic::{AtomicBool, Ordering};
10
11use rustc_ast::{AttrStyle, MetaItemLit, Safety};
12use rustc_data_structures::sync::{DynSend, DynSync};
13use rustc_errors::{Diag, DiagCtxtHandle, Diagnostic, Level, MultiSpan};
14use rustc_feature::AttributeStability;
15use rustc_hir::attrs::AttributeKind;
16use rustc_hir::{AttrPath, Attribute};
17use rustc_parse::parser::Recovery;
18use rustc_session::Session;
19use rustc_session::lint::{Lint, LintId};
20use rustc_span::{ErrorGuaranteed, Ident, Span, Symbol};
21
22// Glob imports to avoid big, bitrotty import lists
23use crate::attributes::allow_unstable::*;
24use crate::attributes::autodiff::*;
25use crate::attributes::body::*;
26use crate::attributes::cfi_encoding::*;
27use crate::attributes::codegen_attrs::*;
28use crate::attributes::confusables::*;
29use crate::attributes::crate_level::*;
30use crate::attributes::debugger::*;
31use crate::attributes::deprecation::*;
32use crate::attributes::diagnostic::do_not_recommend::*;
33use crate::attributes::diagnostic::on_const::*;
34use crate::attributes::diagnostic::on_move::*;
35use crate::attributes::diagnostic::on_type_error::*;
36use crate::attributes::diagnostic::on_unimplemented::*;
37use crate::attributes::diagnostic::on_unknown::*;
38use crate::attributes::diagnostic::on_unmatched_args::*;
39use crate::attributes::diagnostic::opaque::*;
40use crate::attributes::doc::*;
41use crate::attributes::dummy::*;
42use crate::attributes::inline::*;
43use crate::attributes::instruction_set::*;
44use crate::attributes::link_attrs::*;
45use crate::attributes::lint_helpers::*;
46use crate::attributes::loop_match::*;
47use crate::attributes::macro_attrs::*;
48use crate::attributes::must_not_suspend::*;
49use crate::attributes::must_use::*;
50use crate::attributes::no_implicit_prelude::*;
51use crate::attributes::no_link::*;
52use crate::attributes::non_exhaustive::*;
53use crate::attributes::path::PathParser as PathAttributeParser;
54use crate::attributes::pin_v2::*;
55use crate::attributes::proc_macro_attrs::*;
56use crate::attributes::prototype::*;
57use crate::attributes::repr::*;
58use crate::attributes::rustc_allocator::*;
59use crate::attributes::rustc_dump::*;
60use crate::attributes::rustc_internal::*;
61use crate::attributes::semantics::{ComptimeParser, *};
62use crate::attributes::splat::*;
63use crate::attributes::stability::*;
64use crate::attributes::test_attrs::*;
65use crate::attributes::traits::*;
66use crate::attributes::transparency::*;
67use crate::attributes::unroll::*;
68use crate::attributes::{AttributeParser as _, AttributeSafety, Combine, Single, WithoutArgs};
69use crate::parser::{
70 ArgParser, MetaItemListParser, MetaItemOrLitParser, MetaItemParser, NameValueParser,
71 RefPathParser,
72};
73use crate::session_diagnostics::{
74 AttributeParseError, AttributeParseErrorReason, AttributeParseErrorSuggestions,
75 ParsedDescription, UnusedDuplicate,
76};
77use crate::target_checking::AllowedTargets;
78use crate::{AttrSuggestionStyle, AttributeParser, AttributeTemplate, EmitAttribute};
79
80type GroupType = LazyLock<GroupTypeInner>;
81
82pub(super) struct GroupTypeInner {
83 pub(super) accepters: BTreeMap<&'static [Symbol], GroupTypeInnerAccept>,
84}
85
86pub(super) struct GroupTypeInnerAccept {
87 pub(super) template: AttributeTemplate,
88 pub(super) accept_fn: AcceptFn,
89 pub(super) allowed_targets: AllowedTargets<'static>,
90 pub(super) safety: AttributeSafety,
91 pub(super) stability: AttributeStability,
92 pub(super) finalizer: FinalizeFn,
93}
94
95pub(crate) type AcceptFn =
96 Box<dyn for<'sess> Fn(&mut AcceptContext<'_, 'sess>, &ArgParser) + Send + Sync>;
97
98pub(crate) type FinalizeFn = fn(&mut FinalizeContext<'_, '_>) -> FinalizeOutput;
99
100/// A cross-attribute check that runs *after* all attributes on an item have been
101/// finalized, so it can inspect the fully parsed attributes via
102/// [`FinalizeCheckContext::parsed_attrs`]. The [`Span`] is the span of the attribute the
103/// check is associated with, used for diagnostics.
104pub(crate) type FinalizeCheckFn = fn(&FinalizeCheckContext<'_, '_>, Span);
105
106/// The result of finalizing a single attribute parser.
107pub(crate) struct FinalizeOutput {
108 /// The attribute the parser produced, if any.
109 pub(crate) attr: Option<AttributeKind>,
110 /// A check to run once *all* attributes on the item have been finalized, together
111 /// with the span it should be reported at. Deferred so that it can inspect the fully
112 /// parsed attributes via [`FinalizeCheckContext::parsed_attrs`].
113 pub(crate) deferred_check: Option<(FinalizeCheckFn, Span)>,
114}
115
116macro_rules! attribute_parsers {
117 (
118 pub(crate) static $name: ident = [$($names: ty),* $(,)?];
119 ) => {
120 pub(crate) static $name: GroupType = LazyLock::new(|| {
121 let mut accepters = BTreeMap::<_, GroupTypeInnerAccept>::new();
122 $(
123 {
124 thread_local! {
125 static STATE_OBJECT: RefCell<$names> = RefCell::new(<$names>::default());
126 };
127
128 for (path, template, stability, accept_fn) in <$names>::ATTRIBUTES {
129 match accepters.entry(*path) {
130 Entry::Vacant(e) => {
131 e.insert(GroupTypeInnerAccept {
132 template: *template,
133 accept_fn: Box::new(|cx, args| {
134 STATE_OBJECT.with_borrow_mut(|s| {
135 accept_fn(s, cx, args)
136 })
137 }),
138 safety: <$names as crate::attributes::AttributeParser>::SAFETY,
139 stability: *stability,
140 allowed_targets: <$names as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
141 finalizer: |cx| {
142 let state = STATE_OBJECT.take();
143 // Compute the deferred check (if any) before consuming
144 // the state in `finalize`.
145 let deferred_check = state.deferred_finalize_check();
146 let attr = state.finalize(cx);
147 FinalizeOutput { attr, deferred_check }
148 }
149 });
150 }
151 Entry::Occupied(_) => panic!("Attribute {path:?} has multiple accepters"),
152 }
153 }
154 }
155 )*
156
157 GroupTypeInner { accepters }
158 });
159 };
160}
161pub(crate) static ATTRIBUTE_PARSERS: GroupType =
LazyLock::new(||
{
let mut accepters =
BTreeMap::<_, GroupTypeInnerAccept>::new();
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<BodyStabilityParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<BodyStabilityParser> {
RefCell::new(<BodyStabilityParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<BodyStabilityParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<BodyStabilityParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<BodyStabilityParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<BodyStabilityParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <BodyStabilityParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <BodyStabilityParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<ConfusablesParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<ConfusablesParser> {
RefCell::new(<ConfusablesParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<ConfusablesParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<ConfusablesParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<ConfusablesParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<ConfusablesParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <ConfusablesParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <ConfusablesParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<ConstStabilityParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<ConstStabilityParser> {
RefCell::new(<ConstStabilityParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<ConstStabilityParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<ConstStabilityParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<ConstStabilityParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<ConstStabilityParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <ConstStabilityParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <ConstStabilityParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<DocParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<DocParser> {
RefCell::new(<DocParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<DocParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<DocParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<DocParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<DocParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <DocParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <DocParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<MacroUseParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<MacroUseParser> {
RefCell::new(<MacroUseParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<MacroUseParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<MacroUseParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<MacroUseParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<MacroUseParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <MacroUseParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <MacroUseParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<NakedParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<NakedParser> {
RefCell::new(<NakedParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<NakedParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<NakedParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<NakedParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<NakedParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <NakedParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <NakedParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnConstParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<OnConstParser> {
RefCell::new(<OnConstParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnConstParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnConstParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnConstParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnConstParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnConstParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnConstParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnMoveParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<OnMoveParser> {
RefCell::new(<OnMoveParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnMoveParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnMoveParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnMoveParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnMoveParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnMoveParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnMoveParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnTypeErrorParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<OnTypeErrorParser> {
RefCell::new(<OnTypeErrorParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnTypeErrorParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnTypeErrorParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnTypeErrorParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnTypeErrorParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnTypeErrorParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnTypeErrorParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnUnimplementedParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<OnUnimplementedParser> {
RefCell::new(<OnUnimplementedParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnUnimplementedParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnimplementedParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnimplementedParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnUnimplementedParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnUnimplementedParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnUnimplementedParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnUnknownParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<OnUnknownParser> {
RefCell::new(<OnUnknownParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnUnknownParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnknownParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnknownParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnUnknownParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnUnknownParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnUnknownParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OnUnmatchedArgsParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<OnUnmatchedArgsParser> {
RefCell::new(<OnUnmatchedArgsParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OnUnmatchedArgsParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnmatchedArgsParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OnUnmatchedArgsParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OnUnmatchedArgsParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OnUnmatchedArgsParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OnUnmatchedArgsParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<OpaqueParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<OpaqueParser> {
RefCell::new(<OpaqueParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<OpaqueParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OpaqueParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<OpaqueParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<OpaqueParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <OpaqueParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <OpaqueParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<RustcAlignParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<RustcAlignParser> {
RefCell::new(<RustcAlignParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<RustcAlignParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcAlignParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcAlignParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<RustcAlignParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <RustcAlignParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <RustcAlignParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<RustcAlignStaticParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<RustcAlignStaticParser> {
RefCell::new(<RustcAlignStaticParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<RustcAlignStaticParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcAlignStaticParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcAlignStaticParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<RustcAlignStaticParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <RustcAlignStaticParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <RustcAlignStaticParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<RustcCguTestAttributeParser>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<RustcCguTestAttributeParser> {
RefCell::new(<RustcCguTestAttributeParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<RustcCguTestAttributeParser>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcCguTestAttributeParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<RustcCguTestAttributeParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<RustcCguTestAttributeParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <RustcCguTestAttributeParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <RustcCguTestAttributeParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<StabilityParser>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<StabilityParser> {
RefCell::new(<StabilityParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<StabilityParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<StabilityParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<StabilityParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<StabilityParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <StabilityParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <StabilityParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<UsedParser>> =
{
#[inline]
fn __rust_std_internal_init_fn() -> RefCell<UsedParser> {
RefCell::new(<UsedParser>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<UsedParser>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<UsedParser>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<UsedParser>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<UsedParser>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <UsedParser as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <UsedParser as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<AllowInternalUnstableParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<AllowInternalUnstableParser>> {
RefCell::new(<Combine<AllowInternalUnstableParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<AllowInternalUnstableParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<AllowInternalUnstableParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<AllowInternalUnstableParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<AllowInternalUnstableParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<AllowInternalUnstableParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<AllowInternalUnstableParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<CrateTypeParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<CrateTypeParser>> {
RefCell::new(<Combine<CrateTypeParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<CrateTypeParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<CrateTypeParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<CrateTypeParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<CrateTypeParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<CrateTypeParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<CrateTypeParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<DebuggerVisualizerParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<DebuggerVisualizerParser>> {
RefCell::new(<Combine<DebuggerVisualizerParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<DebuggerVisualizerParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<DebuggerVisualizerParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<DebuggerVisualizerParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<DebuggerVisualizerParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<DebuggerVisualizerParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<DebuggerVisualizerParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<FeatureParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<FeatureParser>> {
RefCell::new(<Combine<FeatureParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<FeatureParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<FeatureParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<FeatureParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<FeatureParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<FeatureParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<FeatureParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<ForceTargetFeatureParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<ForceTargetFeatureParser>> {
RefCell::new(<Combine<ForceTargetFeatureParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<ForceTargetFeatureParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<ForceTargetFeatureParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<ForceTargetFeatureParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<ForceTargetFeatureParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<ForceTargetFeatureParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<ForceTargetFeatureParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<LinkParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<LinkParser>> {
RefCell::new(<Combine<LinkParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<LinkParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<LinkParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<LinkParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<LinkParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<LinkParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<LinkParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RegisterToolParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RegisterToolParser>> {
RefCell::new(<Combine<RegisterToolParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RegisterToolParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RegisterToolParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RegisterToolParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RegisterToolParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RegisterToolParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RegisterToolParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<ReprParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<ReprParser>> {
RefCell::new(<Combine<ReprParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<ReprParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<ReprParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<ReprParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<ReprParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<ReprParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<ReprParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RustcAllowConstFnUnstableParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RustcAllowConstFnUnstableParser>> {
RefCell::new(<Combine<RustcAllowConstFnUnstableParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RustcAllowConstFnUnstableParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcAllowConstFnUnstableParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcAllowConstFnUnstableParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RustcAllowConstFnUnstableParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RustcAllowConstFnUnstableParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RustcAllowConstFnUnstableParser>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RustcCleanParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RustcCleanParser>> {
RefCell::new(<Combine<RustcCleanParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RustcCleanParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcCleanParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcCleanParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RustcCleanParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RustcCleanParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RustcCleanParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RustcDumpLayoutParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RustcDumpLayoutParser>> {
RefCell::new(<Combine<RustcDumpLayoutParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RustcDumpLayoutParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcDumpLayoutParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcDumpLayoutParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RustcDumpLayoutParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RustcDumpLayoutParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RustcDumpLayoutParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RustcMirParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RustcMirParser>> {
RefCell::new(<Combine<RustcMirParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RustcMirParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcMirParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcMirParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RustcMirParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RustcMirParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RustcMirParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<RustcThenThisWouldNeedParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<RustcThenThisWouldNeedParser>> {
RefCell::new(<Combine<RustcThenThisWouldNeedParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<RustcThenThisWouldNeedParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcThenThisWouldNeedParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<RustcThenThisWouldNeedParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<RustcThenThisWouldNeedParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<RustcThenThisWouldNeedParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<RustcThenThisWouldNeedParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<TargetFeatureParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<TargetFeatureParser>> {
RefCell::new(<Combine<TargetFeatureParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<TargetFeatureParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<TargetFeatureParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<TargetFeatureParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<TargetFeatureParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<TargetFeatureParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<TargetFeatureParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<UnstableFeatureBoundParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<UnstableFeatureBoundParser>> {
RefCell::new(<Combine<UnstableFeatureBoundParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<UnstableFeatureBoundParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<UnstableFeatureBoundParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<UnstableFeatureBoundParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<UnstableFeatureBoundParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<UnstableFeatureBoundParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<UnstableFeatureBoundParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Combine<UnstableRemovedParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Combine<UnstableRemovedParser>> {
RefCell::new(<Combine<UnstableRemovedParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Combine<UnstableRemovedParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<UnstableRemovedParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Combine<UnstableRemovedParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Combine<UnstableRemovedParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Combine<UnstableRemovedParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Combine<UnstableRemovedParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<CfiEncodingParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<CfiEncodingParser>> {
RefCell::new(<Single<CfiEncodingParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<CfiEncodingParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CfiEncodingParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CfiEncodingParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<CfiEncodingParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<CfiEncodingParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<CfiEncodingParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<CollapseDebugInfoParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<CollapseDebugInfoParser>> {
RefCell::new(<Single<CollapseDebugInfoParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<CollapseDebugInfoParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CollapseDebugInfoParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CollapseDebugInfoParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<CollapseDebugInfoParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<CollapseDebugInfoParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<CollapseDebugInfoParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<CoverageParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<CoverageParser>> {
RefCell::new(<Single<CoverageParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<CoverageParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CoverageParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CoverageParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<CoverageParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<CoverageParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<CoverageParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<CrateNameParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<CrateNameParser>> {
RefCell::new(<Single<CrateNameParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<CrateNameParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CrateNameParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CrateNameParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<CrateNameParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<CrateNameParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<CrateNameParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<CustomMirParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<CustomMirParser>> {
RefCell::new(<Single<CustomMirParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<CustomMirParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CustomMirParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<CustomMirParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<CustomMirParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<CustomMirParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<CustomMirParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<DeprecatedParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<DeprecatedParser>> {
RefCell::new(<Single<DeprecatedParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<DeprecatedParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<DeprecatedParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<DeprecatedParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<DeprecatedParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<DeprecatedParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<DeprecatedParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<DoNotRecommendParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<DoNotRecommendParser>> {
RefCell::new(<Single<DoNotRecommendParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<DoNotRecommendParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<DoNotRecommendParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<DoNotRecommendParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<DoNotRecommendParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<DoNotRecommendParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<DoNotRecommendParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<ExportNameParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<ExportNameParser>> {
RefCell::new(<Single<ExportNameParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<ExportNameParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ExportNameParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ExportNameParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<ExportNameParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<ExportNameParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<ExportNameParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<IgnoreParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<IgnoreParser>> {
RefCell::new(<Single<IgnoreParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<IgnoreParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<IgnoreParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<IgnoreParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<IgnoreParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<IgnoreParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<IgnoreParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<InlineParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<InlineParser>> {
RefCell::new(<Single<InlineParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<InlineParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InlineParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InlineParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<InlineParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<InlineParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<InlineParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<InstructionSetParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<InstructionSetParser>> {
RefCell::new(<Single<InstructionSetParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<InstructionSetParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InstructionSetParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InstructionSetParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<InstructionSetParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<InstructionSetParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<InstructionSetParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<InstrumentFnParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<InstrumentFnParser>> {
RefCell::new(<Single<InstrumentFnParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<InstrumentFnParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InstrumentFnParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<InstrumentFnParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<InstrumentFnParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<InstrumentFnParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<InstrumentFnParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<LangParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<LangParser>> {
RefCell::new(<Single<LangParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<LangParser>>>() {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LangParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LangParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<LangParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<LangParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<LangParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<LinkNameParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<LinkNameParser>> {
RefCell::new(<Single<LinkNameParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<LinkNameParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkNameParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkNameParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<LinkNameParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<LinkNameParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<LinkNameParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<LinkOrdinalParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<LinkOrdinalParser>> {
RefCell::new(<Single<LinkOrdinalParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<LinkOrdinalParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkOrdinalParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkOrdinalParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<LinkOrdinalParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<LinkOrdinalParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<LinkOrdinalParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<LinkSectionParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<LinkSectionParser>> {
RefCell::new(<Single<LinkSectionParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<LinkSectionParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkSectionParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkSectionParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<LinkSectionParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<LinkSectionParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<LinkSectionParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<LinkageParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<LinkageParser>> {
RefCell::new(<Single<LinkageParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<LinkageParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkageParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<LinkageParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<LinkageParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<LinkageParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<LinkageParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<MacroExportParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<MacroExportParser>> {
RefCell::new(<Single<MacroExportParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<MacroExportParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MacroExportParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MacroExportParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<MacroExportParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<MacroExportParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<MacroExportParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<MoveSizeLimitParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<MoveSizeLimitParser>> {
RefCell::new(<Single<MoveSizeLimitParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<MoveSizeLimitParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MoveSizeLimitParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MoveSizeLimitParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<MoveSizeLimitParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<MoveSizeLimitParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<MoveSizeLimitParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<MustNotSuspendParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<MustNotSuspendParser>> {
RefCell::new(<Single<MustNotSuspendParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<MustNotSuspendParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MustNotSuspendParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MustNotSuspendParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<MustNotSuspendParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<MustNotSuspendParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<MustNotSuspendParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<MustUseParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<MustUseParser>> {
RefCell::new(<Single<MustUseParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<MustUseParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MustUseParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<MustUseParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<MustUseParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<MustUseParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<MustUseParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<OptimizeParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<OptimizeParser>> {
RefCell::new(<Single<OptimizeParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<OptimizeParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<OptimizeParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<OptimizeParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<OptimizeParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<OptimizeParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<OptimizeParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<PatchableFunctionEntryParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<PatchableFunctionEntryParser>> {
RefCell::new(<Single<PatchableFunctionEntryParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<PatchableFunctionEntryParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PatchableFunctionEntryParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PatchableFunctionEntryParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<PatchableFunctionEntryParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<PatchableFunctionEntryParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<PatchableFunctionEntryParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<PathAttributeParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<PathAttributeParser>> {
RefCell::new(<Single<PathAttributeParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<PathAttributeParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PathAttributeParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PathAttributeParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<PathAttributeParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<PathAttributeParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<PathAttributeParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<PatternComplexityLimitParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<PatternComplexityLimitParser>> {
RefCell::new(<Single<PatternComplexityLimitParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<PatternComplexityLimitParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PatternComplexityLimitParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<PatternComplexityLimitParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<PatternComplexityLimitParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<PatternComplexityLimitParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<PatternComplexityLimitParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<ProcMacroDeriveParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<ProcMacroDeriveParser>> {
RefCell::new(<Single<ProcMacroDeriveParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<ProcMacroDeriveParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ProcMacroDeriveParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ProcMacroDeriveParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<ProcMacroDeriveParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<ProcMacroDeriveParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<ProcMacroDeriveParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RecursionLimitParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RecursionLimitParser>> {
RefCell::new(<Single<RecursionLimitParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RecursionLimitParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RecursionLimitParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RecursionLimitParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RecursionLimitParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RecursionLimitParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RecursionLimitParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<ReexportTestHarnessMainParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<ReexportTestHarnessMainParser>> {
RefCell::new(<Single<ReexportTestHarnessMainParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<ReexportTestHarnessMainParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ReexportTestHarnessMainParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ReexportTestHarnessMainParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<ReexportTestHarnessMainParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<ReexportTestHarnessMainParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<ReexportTestHarnessMainParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcAbiParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcAbiParser>> {
RefCell::new(<Single<RustcAbiParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcAbiParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAbiParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAbiParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcAbiParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcAbiParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcAbiParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcAllocatorZeroedVariantParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcAllocatorZeroedVariantParser>> {
RefCell::new(<Single<RustcAllocatorZeroedVariantParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcAllocatorZeroedVariantParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAllocatorZeroedVariantParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAllocatorZeroedVariantParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcAllocatorZeroedVariantParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcAllocatorZeroedVariantParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcAllocatorZeroedVariantParser>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcAutodiffParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcAutodiffParser>> {
RefCell::new(<Single<RustcAutodiffParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcAutodiffParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAutodiffParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcAutodiffParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcAutodiffParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcAutodiffParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcAutodiffParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcBuiltinMacroParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcBuiltinMacroParser>> {
RefCell::new(<Single<RustcBuiltinMacroParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcBuiltinMacroParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcBuiltinMacroParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcBuiltinMacroParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcBuiltinMacroParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcBuiltinMacroParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcBuiltinMacroParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDeprecatedSafe2024Parser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDeprecatedSafe2024Parser>> {
RefCell::new(<Single<RustcDeprecatedSafe2024Parser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDeprecatedSafe2024Parser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDeprecatedSafe2024Parser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDeprecatedSafe2024Parser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDeprecatedSafe2024Parser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDeprecatedSafe2024Parser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDeprecatedSafe2024Parser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDiagnosticItemParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDiagnosticItemParser>> {
RefCell::new(<Single<RustcDiagnosticItemParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDiagnosticItemParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDiagnosticItemParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDiagnosticItemParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDiagnosticItemParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDiagnosticItemParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDiagnosticItemParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDocPrimitiveParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDocPrimitiveParser>> {
RefCell::new(<Single<RustcDocPrimitiveParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDocPrimitiveParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDocPrimitiveParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDocPrimitiveParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDocPrimitiveParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDocPrimitiveParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDocPrimitiveParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDummyParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDummyParser>> {
RefCell::new(<Single<RustcDummyParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDummyParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDummyParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDummyParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDummyParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDummyParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDummyParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDumpDefPathParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDumpDefPathParser>> {
RefCell::new(<Single<RustcDumpDefPathParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDumpDefPathParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDumpDefPathParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDumpDefPathParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDumpDefPathParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDumpDefPathParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDumpDefPathParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcDumpSymbolNameParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcDumpSymbolNameParser>> {
RefCell::new(<Single<RustcDumpSymbolNameParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcDumpSymbolNameParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDumpSymbolNameParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcDumpSymbolNameParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcDumpSymbolNameParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcDumpSymbolNameParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcDumpSymbolNameParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcForceInlineParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcForceInlineParser>> {
RefCell::new(<Single<RustcForceInlineParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcForceInlineParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcForceInlineParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcForceInlineParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcForceInlineParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcForceInlineParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcForceInlineParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcIfThisChangedParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcIfThisChangedParser>> {
RefCell::new(<Single<RustcIfThisChangedParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcIfThisChangedParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcIfThisChangedParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcIfThisChangedParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcIfThisChangedParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcIfThisChangedParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcIfThisChangedParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcLegacyConstGenericsParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcLegacyConstGenericsParser>> {
RefCell::new(<Single<RustcLegacyConstGenericsParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcLegacyConstGenericsParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcLegacyConstGenericsParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcLegacyConstGenericsParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcLegacyConstGenericsParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcLegacyConstGenericsParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcLegacyConstGenericsParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcLintOptDenyFieldAccessParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcLintOptDenyFieldAccessParser>> {
RefCell::new(<Single<RustcLintOptDenyFieldAccessParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcLintOptDenyFieldAccessParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcLintOptDenyFieldAccessParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcLintOptDenyFieldAccessParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcLintOptDenyFieldAccessParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcLintOptDenyFieldAccessParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcLintOptDenyFieldAccessParser>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcMacroTransparencyParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcMacroTransparencyParser>> {
RefCell::new(<Single<RustcMacroTransparencyParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcMacroTransparencyParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcMacroTransparencyParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcMacroTransparencyParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcMacroTransparencyParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcMacroTransparencyParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcMacroTransparencyParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcMustImplementOneOfParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcMustImplementOneOfParser>> {
RefCell::new(<Single<RustcMustImplementOneOfParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcMustImplementOneOfParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcMustImplementOneOfParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcMustImplementOneOfParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcMustImplementOneOfParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcMustImplementOneOfParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcMustImplementOneOfParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcNeverTypeOptionsParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcNeverTypeOptionsParser>> {
RefCell::new(<Single<RustcNeverTypeOptionsParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcNeverTypeOptionsParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcNeverTypeOptionsParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcNeverTypeOptionsParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcNeverTypeOptionsParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcNeverTypeOptionsParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcNeverTypeOptionsParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcObjcClassParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcObjcClassParser>> {
RefCell::new(<Single<RustcObjcClassParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcObjcClassParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcObjcClassParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcObjcClassParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcObjcClassParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcObjcClassParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcObjcClassParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcObjcSelectorParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcObjcSelectorParser>> {
RefCell::new(<Single<RustcObjcSelectorParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcObjcSelectorParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcObjcSelectorParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcObjcSelectorParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcObjcSelectorParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcObjcSelectorParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcObjcSelectorParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcReservationImplParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcReservationImplParser>> {
RefCell::new(<Single<RustcReservationImplParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcReservationImplParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcReservationImplParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcReservationImplParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcReservationImplParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcReservationImplParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcReservationImplParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcScalableVectorParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcScalableVectorParser>> {
RefCell::new(<Single<RustcScalableVectorParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcScalableVectorParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcScalableVectorParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcScalableVectorParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcScalableVectorParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcScalableVectorParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcScalableVectorParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcSimdMonomorphizeLaneLimitParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcSimdMonomorphizeLaneLimitParser>> {
RefCell::new(<Single<RustcSimdMonomorphizeLaneLimitParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcSimdMonomorphizeLaneLimitParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcSimdMonomorphizeLaneLimitParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcSimdMonomorphizeLaneLimitParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcSimdMonomorphizeLaneLimitParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcSimdMonomorphizeLaneLimitParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcSimdMonomorphizeLaneLimitParser>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcSkipDuringMethodDispatchParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcSkipDuringMethodDispatchParser>> {
RefCell::new(<Single<RustcSkipDuringMethodDispatchParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcSkipDuringMethodDispatchParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcSkipDuringMethodDispatchParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcSkipDuringMethodDispatchParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcSkipDuringMethodDispatchParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcSkipDuringMethodDispatchParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcSkipDuringMethodDispatchParser>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<RustcTestMarkerParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<RustcTestMarkerParser>> {
RefCell::new(<Single<RustcTestMarkerParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<RustcTestMarkerParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcTestMarkerParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<RustcTestMarkerParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<RustcTestMarkerParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<RustcTestMarkerParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<RustcTestMarkerParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<SanitizeParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<SanitizeParser>> {
RefCell::new(<Single<SanitizeParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<SanitizeParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<SanitizeParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<SanitizeParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<SanitizeParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<SanitizeParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<SanitizeParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<ShouldPanicParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<ShouldPanicParser>> {
RefCell::new(<Single<ShouldPanicParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<ShouldPanicParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ShouldPanicParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<ShouldPanicParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<ShouldPanicParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<ShouldPanicParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<ShouldPanicParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<TestRunnerParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<TestRunnerParser>> {
RefCell::new(<Single<TestRunnerParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<TestRunnerParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<TestRunnerParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<TestRunnerParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<TestRunnerParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<TestRunnerParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<TestRunnerParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<TypeLengthLimitParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<TypeLengthLimitParser>> {
RefCell::new(<Single<TypeLengthLimitParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<TypeLengthLimitParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<TypeLengthLimitParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<TypeLengthLimitParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<TypeLengthLimitParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<TypeLengthLimitParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<TypeLengthLimitParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<UnrollParser>>> =
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<UnrollParser>> {
RefCell::new(<Single<UnrollParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<UnrollParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<UnrollParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<UnrollParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<UnrollParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<UnrollParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<UnrollParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WindowsSubsystemParser>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WindowsSubsystemParser>> {
RefCell::new(<Single<WindowsSubsystemParser>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WindowsSubsystemParser>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WindowsSubsystemParser>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WindowsSubsystemParser>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WindowsSubsystemParser>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WindowsSubsystemParser> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WindowsSubsystemParser> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<AllowInternalUnsafeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<AllowInternalUnsafeParser>>> {
RefCell::new(<Single<WithoutArgs<AllowInternalUnsafeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<AllowInternalUnsafeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<AllowInternalUnsafeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<AllowInternalUnsafeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<AllowInternalUnsafeParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<AllowInternalUnsafeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<AllowInternalUnsafeParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<AutomaticallyDerivedParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<AutomaticallyDerivedParser>>> {
RefCell::new(<Single<WithoutArgs<AutomaticallyDerivedParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<AutomaticallyDerivedParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<AutomaticallyDerivedParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<AutomaticallyDerivedParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<AutomaticallyDerivedParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<AutomaticallyDerivedParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<AutomaticallyDerivedParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ColdParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ColdParser>>> {
RefCell::new(<Single<WithoutArgs<ColdParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ColdParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ColdParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ColdParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ColdParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ColdParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ColdParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<CompilerBuiltinsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<CompilerBuiltinsParser>>> {
RefCell::new(<Single<WithoutArgs<CompilerBuiltinsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<CompilerBuiltinsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<CompilerBuiltinsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<CompilerBuiltinsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<CompilerBuiltinsParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<CompilerBuiltinsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<CompilerBuiltinsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ComptimeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ComptimeParser>>> {
RefCell::new(<Single<WithoutArgs<ComptimeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ComptimeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ComptimeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ComptimeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ComptimeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ComptimeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ComptimeParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ConstContinueParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ConstContinueParser>>> {
RefCell::new(<Single<WithoutArgs<ConstContinueParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ConstContinueParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ConstContinueParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ConstContinueParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ConstContinueParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ConstContinueParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ConstContinueParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<CoroutineParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<CoroutineParser>>> {
RefCell::new(<Single<WithoutArgs<CoroutineParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<CoroutineParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<CoroutineParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<CoroutineParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<CoroutineParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<CoroutineParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<CoroutineParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<DefaultLibAllocatorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<DefaultLibAllocatorParser>>> {
RefCell::new(<Single<WithoutArgs<DefaultLibAllocatorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<DefaultLibAllocatorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<DefaultLibAllocatorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<DefaultLibAllocatorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<DefaultLibAllocatorParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<DefaultLibAllocatorParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<DefaultLibAllocatorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ExportStableParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ExportStableParser>>> {
RefCell::new(<Single<WithoutArgs<ExportStableParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ExportStableParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ExportStableParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ExportStableParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ExportStableParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ExportStableParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ExportStableParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<FfiConstParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<FfiConstParser>>> {
RefCell::new(<Single<WithoutArgs<FfiConstParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<FfiConstParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FfiConstParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FfiConstParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<FfiConstParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<FfiConstParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<FfiConstParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<FfiPureParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<FfiPureParser>>> {
RefCell::new(<Single<WithoutArgs<FfiPureParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<FfiPureParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FfiPureParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FfiPureParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<FfiPureParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<FfiPureParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<FfiPureParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<FundamentalParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<FundamentalParser>>> {
RefCell::new(<Single<WithoutArgs<FundamentalParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<FundamentalParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FundamentalParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<FundamentalParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<FundamentalParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<FundamentalParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<FundamentalParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<LoopMatchParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<LoopMatchParser>>> {
RefCell::new(<Single<WithoutArgs<LoopMatchParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<LoopMatchParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<LoopMatchParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<LoopMatchParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<LoopMatchParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<LoopMatchParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<LoopMatchParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<MacroEscapeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<MacroEscapeParser>>> {
RefCell::new(<Single<WithoutArgs<MacroEscapeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<MacroEscapeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MacroEscapeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MacroEscapeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<MacroEscapeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<MacroEscapeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<MacroEscapeParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<MarkerParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<MarkerParser>>> {
RefCell::new(<Single<WithoutArgs<MarkerParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<MarkerParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MarkerParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MarkerParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<MarkerParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<MarkerParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<MarkerParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<MayDangleParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<MayDangleParser>>> {
RefCell::new(<Single<WithoutArgs<MayDangleParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<MayDangleParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MayDangleParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<MayDangleParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<MayDangleParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<MayDangleParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<MayDangleParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NeedsAllocatorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NeedsAllocatorParser>>> {
RefCell::new(<Single<WithoutArgs<NeedsAllocatorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NeedsAllocatorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NeedsAllocatorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NeedsAllocatorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NeedsAllocatorParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NeedsAllocatorParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NeedsAllocatorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NeedsPanicRuntimeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NeedsPanicRuntimeParser>>> {
RefCell::new(<Single<WithoutArgs<NeedsPanicRuntimeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NeedsPanicRuntimeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NeedsPanicRuntimeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NeedsPanicRuntimeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NeedsPanicRuntimeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NeedsPanicRuntimeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NeedsPanicRuntimeParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoBuiltinsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoBuiltinsParser>>> {
RefCell::new(<Single<WithoutArgs<NoBuiltinsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoBuiltinsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoBuiltinsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoBuiltinsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoBuiltinsParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoBuiltinsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoBuiltinsParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoCoreParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoCoreParser>>> {
RefCell::new(<Single<WithoutArgs<NoCoreParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoCoreParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoCoreParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoCoreParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoCoreParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoCoreParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoCoreParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoImplicitPreludeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoImplicitPreludeParser>>> {
RefCell::new(<Single<WithoutArgs<NoImplicitPreludeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoImplicitPreludeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoImplicitPreludeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoImplicitPreludeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoImplicitPreludeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoImplicitPreludeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoImplicitPreludeParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoLinkParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoLinkParser>>> {
RefCell::new(<Single<WithoutArgs<NoLinkParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoLinkParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoLinkParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoLinkParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoLinkParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoLinkParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoLinkParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoMainParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoMainParser>>> {
RefCell::new(<Single<WithoutArgs<NoMainParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoMainParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoMainParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoMainParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoMainParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoMainParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoMainParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoMangleParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoMangleParser>>> {
RefCell::new(<Single<WithoutArgs<NoMangleParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoMangleParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoMangleParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoMangleParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoMangleParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoMangleParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoMangleParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NoStdParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NoStdParser>>> {
RefCell::new(<Single<WithoutArgs<NoStdParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NoStdParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoStdParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NoStdParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NoStdParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NoStdParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NoStdParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<NonExhaustiveParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<NonExhaustiveParser>>> {
RefCell::new(<Single<WithoutArgs<NonExhaustiveParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<NonExhaustiveParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NonExhaustiveParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<NonExhaustiveParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<NonExhaustiveParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<NonExhaustiveParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<NonExhaustiveParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<PanicHandlerParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<PanicHandlerParser>>> {
RefCell::new(<Single<WithoutArgs<PanicHandlerParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<PanicHandlerParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PanicHandlerParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PanicHandlerParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<PanicHandlerParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<PanicHandlerParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<PanicHandlerParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<PanicRuntimeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<PanicRuntimeParser>>> {
RefCell::new(<Single<WithoutArgs<PanicRuntimeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<PanicRuntimeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PanicRuntimeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PanicRuntimeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<PanicRuntimeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<PanicRuntimeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<PanicRuntimeParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<PinV2Parser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<PinV2Parser>>> {
RefCell::new(<Single<WithoutArgs<PinV2Parser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<PinV2Parser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PinV2Parser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PinV2Parser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<PinV2Parser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<PinV2Parser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<PinV2Parser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<PreludeImportParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<PreludeImportParser>>> {
RefCell::new(<Single<WithoutArgs<PreludeImportParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<PreludeImportParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PreludeImportParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<PreludeImportParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<PreludeImportParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<PreludeImportParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<PreludeImportParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ProcMacroAttributeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ProcMacroAttributeParser>>> {
RefCell::new(<Single<WithoutArgs<ProcMacroAttributeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ProcMacroAttributeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProcMacroAttributeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProcMacroAttributeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ProcMacroAttributeParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ProcMacroAttributeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ProcMacroAttributeParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ProcMacroParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ProcMacroParser>>> {
RefCell::new(<Single<WithoutArgs<ProcMacroParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ProcMacroParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProcMacroParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProcMacroParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ProcMacroParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ProcMacroParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ProcMacroParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ProfilerRuntimeParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ProfilerRuntimeParser>>> {
RefCell::new(<Single<WithoutArgs<ProfilerRuntimeParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ProfilerRuntimeParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProfilerRuntimeParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ProfilerRuntimeParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ProfilerRuntimeParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ProfilerRuntimeParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ProfilerRuntimeParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcAllocatorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcAllocatorParser>>> {
RefCell::new(<Single<WithoutArgs<RustcAllocatorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcAllocatorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllocatorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllocatorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcAllocatorParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcAllocatorParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcAllocatorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcAllocatorZeroedParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcAllocatorZeroedParser>>> {
RefCell::new(<Single<WithoutArgs<RustcAllocatorZeroedParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcAllocatorZeroedParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllocatorZeroedParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllocatorZeroedParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcAllocatorZeroedParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcAllocatorZeroedParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcAllocatorZeroedParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcAllowIncoherentImplParser>>> {
RefCell::new(<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcAllowIncoherentImplParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcAllowIncoherentImplParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcAllowIncoherentImplParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcAsPtrParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcAsPtrParser>>> {
RefCell::new(<Single<WithoutArgs<RustcAsPtrParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcAsPtrParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAsPtrParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcAsPtrParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcAsPtrParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcAsPtrParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcAsPtrParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcCanonicalSymbolParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcCanonicalSymbolParser>>> {
RefCell::new(<Single<WithoutArgs<RustcCanonicalSymbolParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcCanonicalSymbolParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCanonicalSymbolParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCanonicalSymbolParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcCanonicalSymbolParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcCanonicalSymbolParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcCanonicalSymbolParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcCaptureAnalysisParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcCaptureAnalysisParser>>> {
RefCell::new(<Single<WithoutArgs<RustcCaptureAnalysisParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcCaptureAnalysisParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCaptureAnalysisParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCaptureAnalysisParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcCaptureAnalysisParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcCaptureAnalysisParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcCaptureAnalysisParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcCoherenceIsCoreParser>>> {
RefCell::new(<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcCoherenceIsCoreParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcCoherenceIsCoreParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcCoherenceIsCoreParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcCoinductiveParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcCoinductiveParser>>> {
RefCell::new(<Single<WithoutArgs<RustcCoinductiveParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcCoinductiveParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCoinductiveParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcCoinductiveParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcCoinductiveParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcCoinductiveParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcCoinductiveParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcConstStableIndirectParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcConstStableIndirectParser>>> {
RefCell::new(<Single<WithoutArgs<RustcConstStableIndirectParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcConstStableIndirectParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcConstStableIndirectParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcConstStableIndirectParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcConstStableIndirectParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcConstStableIndirectParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcConstStableIndirectParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcConversionSuggestionParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcConversionSuggestionParser>>> {
RefCell::new(<Single<WithoutArgs<RustcConversionSuggestionParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcConversionSuggestionParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcConversionSuggestionParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcConversionSuggestionParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcConversionSuggestionParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcConversionSuggestionParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcConversionSuggestionParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDeallocatorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDeallocatorParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDeallocatorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDeallocatorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDeallocatorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDeallocatorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDeallocatorParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDeallocatorParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDeallocatorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDenyExplicitImplParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDenyExplicitImplParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDenyExplicitImplParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDenyExplicitImplParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDenyExplicitImplParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDenyExplicitImplParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDenyExplicitImplParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDenyExplicitImplParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDenyExplicitImplParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDoNotConstCheckParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDoNotConstCheckParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDoNotConstCheckParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDoNotConstCheckParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDoNotConstCheckParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDoNotConstCheckParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDoNotConstCheckParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDoNotConstCheckParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDoNotConstCheckParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpDefParentsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpDefParentsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpDefParentsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpDefParentsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpDefParentsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpDefParentsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpDefParentsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpDefParentsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpDefParentsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpGenericsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpGenericsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpGenericsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpGenericsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpGenericsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpGenericsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpGenericsParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpGenericsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpGenericsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpInferredOutlivesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpInferredOutlivesParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpInferredOutlivesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpItemBoundsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpItemBoundsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpItemBoundsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpItemBoundsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpItemBoundsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpItemBoundsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpItemBoundsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpItemBoundsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpItemBoundsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpPredicatesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpPredicatesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpPredicatesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpPredicatesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpPredicatesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpPredicatesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpPredicatesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpPredicatesParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpPredicatesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpUserArgsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpUserArgsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpUserArgsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpUserArgsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpUserArgsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpUserArgsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpUserArgsParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpUserArgsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpUserArgsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpVariancesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpVariancesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpVariancesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpVariancesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVariancesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVariancesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpVariancesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpVariancesParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpVariancesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDumpVtableParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcDumpVtableParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDumpVtableParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDumpVtableParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVtableParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDumpVtableParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDumpVtableParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDumpVtableParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDumpVtableParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>> {
RefCell::new(<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcDynIncompatibleTraitParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcDynIncompatibleTraitParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcDynIncompatibleTraitParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcEffectiveVisibilityParser>>> {
RefCell::new(<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcEffectiveVisibilityParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcEffectiveVisibilityParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcEffectiveVisibilityParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcEiiForeignItemParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcEiiForeignItemParser>>> {
RefCell::new(<Single<WithoutArgs<RustcEiiForeignItemParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcEiiForeignItemParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEiiForeignItemParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEiiForeignItemParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcEiiForeignItemParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcEiiForeignItemParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcEiiForeignItemParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>> {
RefCell::new(<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcEvaluateWhereClausesParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcEvaluateWhereClausesParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcEvaluateWhereClausesParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcExhaustiveParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcExhaustiveParser>>> {
RefCell::new(<Single<WithoutArgs<RustcExhaustiveParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcExhaustiveParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcExhaustiveParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcExhaustiveParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcExhaustiveParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcExhaustiveParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcExhaustiveParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcInheritOverflowChecksParser>>> {
RefCell::new(<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcInheritOverflowChecksParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcInheritOverflowChecksParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcInheritOverflowChecksParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcInsignificantDtorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcInsignificantDtorParser>>> {
RefCell::new(<Single<WithoutArgs<RustcInsignificantDtorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcInsignificantDtorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcInsignificantDtorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcInsignificantDtorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcInsignificantDtorParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcInsignificantDtorParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcInsignificantDtorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>> {
RefCell::new(<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcIntrinsicParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcIntrinsicParser>>> {
RefCell::new(<Single<WithoutArgs<RustcIntrinsicParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcIntrinsicParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcIntrinsicParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcIntrinsicParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcIntrinsicParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcIntrinsicParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcIntrinsicParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcLintOptTyParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcLintOptTyParser>>> {
RefCell::new(<Single<WithoutArgs<RustcLintOptTyParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcLintOptTyParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintOptTyParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintOptTyParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcLintOptTyParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcLintOptTyParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcLintOptTyParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcLintQueryInstabilityParser>>> {
RefCell::new(<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcLintQueryInstabilityParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcLintQueryInstabilityParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcLintQueryInstabilityParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>> {
RefCell::new(<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcMainParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcMainParser>>> {
RefCell::new(<Single<WithoutArgs<RustcMainParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcMainParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcMainParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcMainParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcMainParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcMainParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcMainParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNoImplicitAutorefsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNoImplicitAutorefsParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNoImplicitAutorefsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcNoImplicitBoundsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNoImplicitBoundsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNoImplicitBoundsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNoImplicitBoundsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNoMirInlineParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcNoMirInlineParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNoMirInlineParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNoMirInlineParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoMirInlineParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoMirInlineParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNoMirInlineParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNoMirInlineParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNoMirInlineParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNoWritableParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcNoWritableParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNoWritableParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNoWritableParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoWritableParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNoWritableParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNoWritableParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNoWritableParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNoWritableParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcNonConstTraitMethodParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNonConstTraitMethodParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNonConstTraitMethodParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNonConstTraitMethodParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcNounwindParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcNounwindParser>>> {
RefCell::new(<Single<WithoutArgs<RustcNounwindParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcNounwindParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNounwindParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcNounwindParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcNounwindParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcNounwindParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcNounwindParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcOffloadKernelParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcOffloadKernelParser>>> {
RefCell::new(<Single<WithoutArgs<RustcOffloadKernelParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcOffloadKernelParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcOffloadKernelParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcOffloadKernelParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcOffloadKernelParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcOffloadKernelParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcOffloadKernelParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcParenSugarParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcParenSugarParser>>> {
RefCell::new(<Single<WithoutArgs<RustcParenSugarParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcParenSugarParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcParenSugarParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcParenSugarParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcParenSugarParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcParenSugarParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcParenSugarParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcPassByValueParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcPassByValueParser>>> {
RefCell::new(<Single<WithoutArgs<RustcPassByValueParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcPassByValueParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPassByValueParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPassByValueParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcPassByValueParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcPassByValueParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcPassByValueParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>> {
RefCell::new(<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcPreserveUbChecksParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcPreserveUbChecksParser>>> {
RefCell::new(<Single<WithoutArgs<RustcPreserveUbChecksParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcPreserveUbChecksParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPreserveUbChecksParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPreserveUbChecksParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcPreserveUbChecksParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcPreserveUbChecksParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcPreserveUbChecksParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcProcMacroDeclsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcProcMacroDeclsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcProcMacroDeclsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcProcMacroDeclsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcProcMacroDeclsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcProcMacroDeclsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcProcMacroDeclsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcProcMacroDeclsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcProcMacroDeclsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcPubTransparentParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcPubTransparentParser>>> {
RefCell::new(<Single<WithoutArgs<RustcPubTransparentParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcPubTransparentParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPubTransparentParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcPubTransparentParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcPubTransparentParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcPubTransparentParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcPubTransparentParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcReallocatorParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcReallocatorParser>>> {
RefCell::new(<Single<WithoutArgs<RustcReallocatorParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcReallocatorParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcReallocatorParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcReallocatorParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcReallocatorParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcReallocatorParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcReallocatorParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcRegionsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<RustcRegionsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcRegionsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcRegionsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcRegionsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcRegionsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcRegionsParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcRegionsParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcRegionsParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcSpecializationTraitParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcSpecializationTraitParser>>> {
RefCell::new(<Single<WithoutArgs<RustcSpecializationTraitParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcSpecializationTraitParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcSpecializationTraitParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcSpecializationTraitParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcSpecializationTraitParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcSpecializationTraitParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcSpecializationTraitParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcStdInternalSymbolParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcStdInternalSymbolParser>>> {
RefCell::new(<Single<WithoutArgs<RustcStdInternalSymbolParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcStdInternalSymbolParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcStdInternalSymbolParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcStdInternalSymbolParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcStdInternalSymbolParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcStdInternalSymbolParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcStdInternalSymbolParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcStrictCoherenceParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcStrictCoherenceParser>>> {
RefCell::new(<Single<WithoutArgs<RustcStrictCoherenceParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcStrictCoherenceParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcStrictCoherenceParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcStrictCoherenceParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcStrictCoherenceParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcStrictCoherenceParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcStrictCoherenceParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>> {
RefCell::new(<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcTestEntrypointMarkerParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcTestEntrypointMarkerParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcTestEntrypointMarkerParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcTrivialFieldReadsParser>>> {
RefCell::new(<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcTrivialFieldReadsParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcTrivialFieldReadsParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcTrivialFieldReadsParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
->
RefCell<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>> {
RefCell::new(<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>>::ATTRIBUTES
{
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>
as crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>
as crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<SplatParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<SplatParser>>> {
RefCell::new(<Single<WithoutArgs<SplatParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<SplatParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<SplatParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<SplatParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<SplatParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<SplatParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<SplatParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<ThreadLocalParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<ThreadLocalParser>>> {
RefCell::new(<Single<WithoutArgs<ThreadLocalParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<ThreadLocalParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ThreadLocalParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<ThreadLocalParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<ThreadLocalParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<ThreadLocalParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<ThreadLocalParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
{
const STATE_OBJECT:
::std::thread::LocalKey<RefCell<Single<WithoutArgs<TrackCallerParser>>>>
=
{
#[inline]
fn __rust_std_internal_init_fn()
-> RefCell<Single<WithoutArgs<TrackCallerParser>>> {
RefCell::new(<Single<WithoutArgs<TrackCallerParser>>>::default())
}
unsafe {
::std::thread::LocalKey::new(const {
if ::std::mem::needs_drop::<RefCell<Single<WithoutArgs<TrackCallerParser>>>>()
{
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<TrackCallerParser>>>,
()> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
} else {
|__rust_std_internal_init|
{
#[thread_local]
static __RUST_STD_INTERNAL_VAL:
::std::thread::local_impl::LazyStorage<RefCell<Single<WithoutArgs<TrackCallerParser>>>,
!> =
::std::thread::local_impl::LazyStorage::new();
__RUST_STD_INTERNAL_VAL.get_or_init(__rust_std_internal_init,
__rust_std_internal_init_fn)
}
}
})
}
};
for (path, template, stability, accept_fn) in
<Single<WithoutArgs<TrackCallerParser>>>::ATTRIBUTES {
match accepters.entry(*path) {
Entry::Vacant(e) => {
e.insert(GroupTypeInnerAccept {
template: *template,
accept_fn: Box::new(|cx, args|
{
STATE_OBJECT.with_borrow_mut(|s| { accept_fn(s, cx, args) })
}),
safety: <Single<WithoutArgs<TrackCallerParser>> as
crate::attributes::AttributeParser>::SAFETY,
stability: *stability,
allowed_targets: <Single<WithoutArgs<TrackCallerParser>> as
crate::attributes::AttributeParser>::ALLOWED_TARGETS,
finalizer: |cx|
{
let state = STATE_OBJECT.take();
let deferred_check = state.deferred_finalize_check();
let attr = state.finalize(cx);
FinalizeOutput { attr, deferred_check }
},
});
}
Entry::Occupied(_) => {
::core::panicking::panic_fmt(format_args!("Attribute {0:?} has multiple accepters",
path));
}
}
}
}
GroupTypeInner { accepters }
});attribute_parsers!(
162 pub(crate) static ATTRIBUTE_PARSERS = [
163 // tidy-alphabetical-start
164 BodyStabilityParser,
165 ConfusablesParser,
166 ConstStabilityParser,
167 DocParser,
168 MacroUseParser,
169 NakedParser,
170 OnConstParser,
171 OnMoveParser,
172 OnTypeErrorParser,
173 OnUnimplementedParser,
174 OnUnknownParser,
175 OnUnmatchedArgsParser,
176 OpaqueParser,
177 RustcAlignParser,
178 RustcAlignStaticParser,
179 RustcCguTestAttributeParser,
180 StabilityParser,
181 UsedParser,
182 // tidy-alphabetical-end
183
184 // tidy-alphabetical-start
185 Combine<AllowInternalUnstableParser>,
186 Combine<CrateTypeParser>,
187 Combine<DebuggerVisualizerParser>,
188 Combine<FeatureParser>,
189 Combine<ForceTargetFeatureParser>,
190 Combine<LinkParser>,
191 Combine<RegisterToolParser>,
192 Combine<ReprParser>,
193 Combine<RustcAllowConstFnUnstableParser>,
194 Combine<RustcCleanParser>,
195 Combine<RustcDumpLayoutParser>,
196 Combine<RustcMirParser>,
197 Combine<RustcThenThisWouldNeedParser>,
198 Combine<TargetFeatureParser>,
199 Combine<UnstableFeatureBoundParser>,
200 Combine<UnstableRemovedParser>,
201 // tidy-alphabetical-end
202
203 // tidy-alphabetical-start
204 Single<CfiEncodingParser>,
205 Single<CollapseDebugInfoParser>,
206 Single<CoverageParser>,
207 Single<CrateNameParser>,
208 Single<CustomMirParser>,
209 Single<DeprecatedParser>,
210 Single<DoNotRecommendParser>,
211 Single<ExportNameParser>,
212 Single<IgnoreParser>,
213 Single<InlineParser>,
214 Single<InstructionSetParser>,
215 Single<InstrumentFnParser>,
216 Single<LangParser>,
217 Single<LinkNameParser>,
218 Single<LinkOrdinalParser>,
219 Single<LinkSectionParser>,
220 Single<LinkageParser>,
221 Single<MacroExportParser>,
222 Single<MoveSizeLimitParser>,
223 Single<MustNotSuspendParser>,
224 Single<MustUseParser>,
225 Single<OptimizeParser>,
226 Single<PatchableFunctionEntryParser>,
227 Single<PathAttributeParser>,
228 Single<PatternComplexityLimitParser>,
229 Single<ProcMacroDeriveParser>,
230 Single<RecursionLimitParser>,
231 Single<ReexportTestHarnessMainParser>,
232 Single<RustcAbiParser>,
233 Single<RustcAllocatorZeroedVariantParser>,
234 Single<RustcAutodiffParser>,
235 Single<RustcBuiltinMacroParser>,
236 Single<RustcDeprecatedSafe2024Parser>,
237 Single<RustcDiagnosticItemParser>,
238 Single<RustcDocPrimitiveParser>,
239 Single<RustcDummyParser>,
240 Single<RustcDumpDefPathParser>,
241 Single<RustcDumpSymbolNameParser>,
242 Single<RustcForceInlineParser>,
243 Single<RustcIfThisChangedParser>,
244 Single<RustcLegacyConstGenericsParser>,
245 Single<RustcLintOptDenyFieldAccessParser>,
246 Single<RustcMacroTransparencyParser>,
247 Single<RustcMustImplementOneOfParser>,
248 Single<RustcNeverTypeOptionsParser>,
249 Single<RustcObjcClassParser>,
250 Single<RustcObjcSelectorParser>,
251 Single<RustcReservationImplParser>,
252 Single<RustcScalableVectorParser>,
253 Single<RustcSimdMonomorphizeLaneLimitParser>,
254 Single<RustcSkipDuringMethodDispatchParser>,
255 Single<RustcTestMarkerParser>,
256 Single<SanitizeParser>,
257 Single<ShouldPanicParser>,
258 Single<TestRunnerParser>,
259 Single<TypeLengthLimitParser>,
260 Single<UnrollParser>,
261 Single<WindowsSubsystemParser>,
262 Single<WithoutArgs<AllowInternalUnsafeParser>>,
263 Single<WithoutArgs<AutomaticallyDerivedParser>>,
264 Single<WithoutArgs<ColdParser>>,
265 Single<WithoutArgs<CompilerBuiltinsParser>>,
266 Single<WithoutArgs<ComptimeParser>>,
267 Single<WithoutArgs<ConstContinueParser>>,
268 Single<WithoutArgs<CoroutineParser>>,
269 Single<WithoutArgs<DefaultLibAllocatorParser>>,
270 Single<WithoutArgs<ExportStableParser>>,
271 Single<WithoutArgs<FfiConstParser>>,
272 Single<WithoutArgs<FfiPureParser>>,
273 Single<WithoutArgs<FundamentalParser>>,
274 Single<WithoutArgs<LoopMatchParser>>,
275 Single<WithoutArgs<MacroEscapeParser>>,
276 Single<WithoutArgs<MarkerParser>>,
277 Single<WithoutArgs<MayDangleParser>>,
278 Single<WithoutArgs<NeedsAllocatorParser>>,
279 Single<WithoutArgs<NeedsPanicRuntimeParser>>,
280 Single<WithoutArgs<NoBuiltinsParser>>,
281 Single<WithoutArgs<NoCoreParser>>,
282 Single<WithoutArgs<NoImplicitPreludeParser>>,
283 Single<WithoutArgs<NoLinkParser>>,
284 Single<WithoutArgs<NoMainParser>>,
285 Single<WithoutArgs<NoMangleParser>>,
286 Single<WithoutArgs<NoStdParser>>,
287 Single<WithoutArgs<NonExhaustiveParser>>,
288 Single<WithoutArgs<PanicHandlerParser>>,
289 Single<WithoutArgs<PanicRuntimeParser>>,
290 Single<WithoutArgs<PinV2Parser>>,
291 Single<WithoutArgs<PreludeImportParser>>,
292 Single<WithoutArgs<ProcMacroAttributeParser>>,
293 Single<WithoutArgs<ProcMacroParser>>,
294 Single<WithoutArgs<ProfilerRuntimeParser>>,
295 Single<WithoutArgs<RustcAllocatorParser>>,
296 Single<WithoutArgs<RustcAllocatorZeroedParser>>,
297 Single<WithoutArgs<RustcAllowIncoherentImplParser>>,
298 Single<WithoutArgs<RustcAsPtrParser>>,
299 Single<WithoutArgs<RustcCanonicalSymbolParser>>,
300 Single<WithoutArgs<RustcCaptureAnalysisParser>>,
301 Single<WithoutArgs<RustcCoherenceIsCoreParser>>,
302 Single<WithoutArgs<RustcCoinductiveParser>>,
303 Single<WithoutArgs<RustcConstStableIndirectParser>>,
304 Single<WithoutArgs<RustcConversionSuggestionParser>>,
305 Single<WithoutArgs<RustcDeallocatorParser>>,
306 Single<WithoutArgs<RustcDelayedBugFromInsideQueryParser>>,
307 Single<WithoutArgs<RustcDenyExplicitImplParser>>,
308 Single<WithoutArgs<RustcDoNotConstCheckParser>>,
309 Single<WithoutArgs<RustcDumpDefParentsParser>>,
310 Single<WithoutArgs<RustcDumpGenericsParser>>,
311 Single<WithoutArgs<RustcDumpHiddenTypeOfOpaquesParser>>,
312 Single<WithoutArgs<RustcDumpInferredOutlivesParser>>,
313 Single<WithoutArgs<RustcDumpItemBoundsParser>>,
314 Single<WithoutArgs<RustcDumpObjectLifetimeDefaultsParser>>,
315 Single<WithoutArgs<RustcDumpPredicatesParser>>,
316 Single<WithoutArgs<RustcDumpUserArgsParser>>,
317 Single<WithoutArgs<RustcDumpVariancesOfOpaquesParser>>,
318 Single<WithoutArgs<RustcDumpVariancesParser>>,
319 Single<WithoutArgs<RustcDumpVtableParser>>,
320 Single<WithoutArgs<RustcDynIncompatibleTraitParser>>,
321 Single<WithoutArgs<RustcEffectiveVisibilityParser>>,
322 Single<WithoutArgs<RustcEiiForeignItemParser>>,
323 Single<WithoutArgs<RustcEvaluateWhereClausesParser>>,
324 Single<WithoutArgs<RustcExhaustiveParser>>,
325 Single<WithoutArgs<RustcHasIncoherentInherentImplsParser>>,
326 Single<WithoutArgs<RustcInheritOverflowChecksParser>>,
327 Single<WithoutArgs<RustcInsignificantDtorParser>>,
328 Single<WithoutArgs<RustcIntrinsicConstStableIndirectParser>>,
329 Single<WithoutArgs<RustcIntrinsicParser>>,
330 Single<WithoutArgs<RustcLintOptTyParser>>,
331 Single<WithoutArgs<RustcLintQueryInstabilityParser>>,
332 Single<WithoutArgs<RustcLintUntrackedQueryInformationParser>>,
333 Single<WithoutArgs<RustcMainParser>>,
334 Single<WithoutArgs<RustcNeverReturnsNullPtrParser>>,
335 Single<WithoutArgs<RustcNoImplicitAutorefsParser>>,
336 Single<WithoutArgs<RustcNoImplicitBoundsParser>>,
337 Single<WithoutArgs<RustcNoMirInlineParser>>,
338 Single<WithoutArgs<RustcNoWritableParser>>,
339 Single<WithoutArgs<RustcNonConstTraitMethodParser>>,
340 Single<WithoutArgs<RustcNonnullOptimizationGuaranteedParser>>,
341 Single<WithoutArgs<RustcNounwindParser>>,
342 Single<WithoutArgs<RustcOffloadKernelParser>>,
343 Single<WithoutArgs<RustcParenSugarParser>>,
344 Single<WithoutArgs<RustcPassByValueParser>>,
345 Single<WithoutArgs<RustcPassIndirectlyInNonRusticAbisParser>>,
346 Single<WithoutArgs<RustcPreserveUbChecksParser>>,
347 Single<WithoutArgs<RustcProcMacroDeclsParser>>,
348 Single<WithoutArgs<RustcPubTransparentParser>>,
349 Single<WithoutArgs<RustcReallocatorParser>>,
350 Single<WithoutArgs<RustcRegionsParser>>,
351 Single<WithoutArgs<RustcShouldNotBeCalledOnConstItemsParser>>,
352 Single<WithoutArgs<RustcSpecializationTraitParser>>,
353 Single<WithoutArgs<RustcStdInternalSymbolParser>>,
354 Single<WithoutArgs<RustcStrictCoherenceParser>>,
355 Single<WithoutArgs<RustcTestEntrypointMarkerParser>>,
356 Single<WithoutArgs<RustcTrivialFieldReadsParser>>,
357 Single<WithoutArgs<RustcUnsafeSpecializationMarkerParser>>,
358 Single<WithoutArgs<SplatParser>>,
359 Single<WithoutArgs<ThreadLocalParser>>,
360 Single<WithoutArgs<TrackCallerParser>>,
361 // tidy-alphabetical-end
362 ];
363);
364
365/// Context given to every attribute parser when accepting
366///
367/// Gives [`AttributeParser`]s enough information to create errors, for example.
368pub struct AcceptContext<'f, 'sess> {
369 pub(crate) shared: SharedContext<'f, 'sess>,
370
371 /// The outer span of the attribute currently being parsed
372 ///
373 /// ```none
374 /// #[attribute(...)]
375 /// ^^^^^^^^^^^^^^^^^ outer span
376 /// ```
377 /// For attributes in `cfg_attr`, the outer span and inner spans are equal.
378 pub(crate) attr_span: Span,
379 /// The inner span of the attribute currently being parsed.
380 ///
381 /// ```none
382 /// #[attribute(...)]
383 /// ^^^^^^^^^^^^^^ inner span
384 /// ```
385 pub(crate) inner_span: Span,
386
387 /// Whether it is an inner or outer attribute.
388 pub(crate) attr_style: AttrStyle,
389
390 /// A description of the thing we are parsing using this attribute parser.
391 /// We are not only using these parsers for attributes, but also for macros such as the `cfg!()` macro.
392 pub(crate) parsed_description: ParsedDescription,
393
394 /// The expected structure of the attribute.
395 ///
396 /// Used in reporting errors to give a hint to users what the attribute *should* look like.
397 pub(crate) template: &'f AttributeTemplate,
398
399 /// The safety attribute (if any) applied to the attribute.
400 pub(crate) attr_safety: Safety,
401
402 /// The name of the attribute we're currently accepting.
403 pub(crate) attr_path: AttrPath,
404
405 /// Used for `AllowedTargets::ManuallyChecked`, to assert that the manual target check has been done
406 #[cfg(debug_assertions)]
407 pub(crate) has_target_been_checked: bool,
408}
409
410impl<'f, 'sess: 'f> SharedContext<'f, 'sess> {
411 pub(crate) fn emit_err(&self, diag: impl for<'x> Diagnostic<'x>) -> ErrorGuaranteed {
412 self.cx.emit_err(diag)
413 }
414
415 /// Emit a lint. This method is somewhat special, since lints emitted during attribute parsing
416 /// must be delayed until after HIR is built. This method will take care of the details of
417 /// that.
418 pub(crate) fn emit_lint(
419 &mut self,
420 lint: &'static Lint,
421 diagnostic: impl for<'x> Diagnostic<'x, ()> + DynSend + DynSync + 'static,
422 span: impl Into<MultiSpan>,
423 ) {
424 self.emit_lint_inner(
425 lint,
426 EmitAttribute(Box::new(move |dcx, level, _| diagnostic.into_diag(dcx, level))),
427 span,
428 );
429 }
430
431 pub(crate) fn emit_lint_with_sess<
432 F: for<'a> FnOnce(DiagCtxtHandle<'a>, Level, &Session) -> Diag<'a, ()>
433 + DynSend
434 + DynSync
435 + 'static,
436 >(
437 &mut self,
438 lint: &'static Lint,
439 callback: F,
440 span: impl Into<MultiSpan>,
441 ) {
442 self.emit_lint_inner(lint, EmitAttribute(Box::new(callback)), span);
443 }
444
445 fn emit_lint_inner(
446 &mut self,
447 lint: &'static Lint,
448 kind: EmitAttribute,
449 span: impl Into<MultiSpan>,
450 ) {
451 #[cfg(debug_assertions)]
452 self.has_lint_been_emitted.store(true, Ordering::Relaxed);
453 if !#[allow(non_exhaustive_omitted_patterns)] match self.should_emit {
ShouldEmit::ErrorsAndLints { .. } | ShouldEmit::EarlyFatal {
also_emit_lints: true } => true,
_ => false,
}matches!(
454 self.should_emit,
455 ShouldEmit::ErrorsAndLints { .. } | ShouldEmit::EarlyFatal { also_emit_lints: true }
456 ) {
457 return;
458 }
459 (self.emit_lint)(LintId::of(lint), span.into(), kind);
460 }
461
462 pub(crate) fn warn_unused_duplicate(&mut self, used_span: Span, unused_span: Span) {
463 self.emit_lint(
464 rustc_session::lint::builtin::UNUSED_ATTRIBUTES,
465 UnusedDuplicate { this: unused_span, other: used_span, warning: false },
466 unused_span,
467 )
468 }
469
470 pub(crate) fn warn_unused_duplicate_future_error(
471 &mut self,
472 used_span: Span,
473 unused_span: Span,
474 ) {
475 self.emit_lint(
476 rustc_session::lint::builtin::UNUSED_ATTRIBUTES,
477 UnusedDuplicate { this: unused_span, other: used_span, warning: true },
478 unused_span,
479 )
480 }
481}
482
483impl<'f, 'sess: 'f> AcceptContext<'f, 'sess> {
484 pub(crate) fn adcx(&mut self) -> AttributeDiagnosticContext<'_, 'f, 'sess> {
485 AttributeDiagnosticContext { ctx: self, custom_suggestions: Vec::new() }
486 }
487
488 /// Asserts that this `MetaItem` is a list that contains a single element. Emits an error and
489 /// returns `None` if it is not the case.
490 ///
491 /// Some examples:
492 ///
493 /// - In `#[allow(warnings)]`, `warnings` is returned
494 /// - In `#[cfg_attr(docsrs, doc = "foo")]`, `None` is returned, "expected a single argument
495 /// here" is emitted.
496 /// - In `#[cfg()]`, `None` is returned, "expected an argument here" is emitted.
497 ///
498 /// The provided span is used as a fallback for diagnostic generation in case `arg` does not
499 /// contain any. It should be the span of the node that contains `arg`.
500 pub(crate) fn expect_single_element_list<'arg>(
501 &mut self,
502 arg: &'arg ArgParser,
503 span: Span,
504 ) -> Option<&'arg MetaItemOrLitParser> {
505 let ArgParser::List(l) = arg else {
506 self.adcx().expected_list(span, arg);
507 return None;
508 };
509
510 let Some(single) = l.as_single() else {
511 self.adcx().expected_single_argument(l.span, l.len());
512 return None;
513 };
514
515 Some(single)
516 }
517
518 /// Asserts that an [`ArgParser`] is a list and returns it, or emits an error and returns
519 /// `None`.
520 ///
521 /// Some examples:
522 ///
523 /// - `#[allow(clippy::complexity)]`: `(clippy::complexity)` is a list
524 /// - `#[rustfmt::skip::macros(target_macro_name)]`: `(target_macro_name)` is a list
525 ///
526 /// This is a higher-level (and harder to misuse) wrapper over [`ArgParser::as_list`] that
527 /// allows using `?` when the attribute parsing function allows it. You may still want to use
528 /// [`ArgParser::as_list`] for the following reasons:
529 ///
530 /// - You want to emit your own diagnostics (for instance, with [`SharedContext::emit_err`]).
531 /// - The attribute can be parsed in multiple ways and it does not make sense to emit an error.
532 pub(crate) fn expect_list<'arg>(
533 &mut self,
534 args: &'arg ArgParser,
535 span: Span,
536 ) -> Option<&'arg MetaItemListParser> {
537 let list = args.as_list();
538 if list.is_none() {
539 self.adcx().expected_list(span, args);
540 }
541 list
542 }
543
544 /// Asserts that a [`MetaItemListParser`] contains a single element and returns it, or emits an
545 /// error and returns `None`.
546 ///
547 /// This is a higher-level (and harder to misuse) wrapper over [`MetaItemListParser::as_single`],
548 /// that allows using `?` to early return. You may still want to use
549 /// [`MetaItemListParser::as_single`] for the following reasons:
550 ///
551 /// - You want to emit your own diagnostics (for instance, with [`SharedContext::emit_err`]).
552 /// - The attribute can be parsed in multiple ways and it does not make sense to emit an error.
553 pub(crate) fn expect_single<'arg>(
554 &mut self,
555 list: &'arg MetaItemListParser,
556 ) -> Option<&'arg MetaItemOrLitParser> {
557 let single = list.as_single();
558 if single.is_none() {
559 self.adcx().expected_single_argument(list.span, list.len());
560 }
561 single
562 }
563
564 /// Asserts that a node is a name-value pair.
565 ///
566 /// Some examples:
567 ///
568 /// - `#[clippy::cyclomatic_complexity = "100"]`: `clippy::cyclomatic_complexity = "100"` is a
569 /// name-value pair, where the name is a path (`clippy::cyclomatic_complexity`). You already
570 /// checked the path to get an `ArgParser`, so this method will effectively only assert that
571 /// the `= "100"` is there and returns it.
572 /// - `#[doc = "hello"]`: `doc = "hello` is also a name value pair. `= "hello"` is returned.
573 /// - `#[serde(rename_all = "lowercase")]`: `rename_all = "lowercase"` is a name value pair,
574 /// where the name is an identifier (`rename_all`) and the value is a literal (`"lowercase"`).
575 /// This returns both the path and the value.
576 ///
577 /// `arg` must be a reference to any node that may contain a name-value pair, that is:
578 ///
579 /// - [`MetaItemOrLitParser`],
580 /// - [`MetaItemParser`],
581 /// - [`ArgParser`].
582 ///
583 /// `name` can be set to `Some` for a nicer error message talking about the specific name that
584 /// was found lacking a value.
585 ///
586 /// This is a higher-level (and harder to misuse) wrapper over multiple `as_` methods in the
587 /// [`parser`][crate::parser] module. You may still want to use the lower-level methods for the
588 /// following reasons:
589 ///
590 /// - You want to emit your own diagnostics (for instance, with [`SharedContext::emit_err`]).
591 /// - The attribute can be parsed in multiple ways and it does not make sense to emit an error.
592 pub(crate) fn expect_name_value<'arg, Arg>(
593 &mut self,
594 arg: &'arg Arg,
595 span: Span,
596 name: Option<Symbol>,
597 ) -> Option<Arg::Output<'arg>>
598 where
599 Arg: ExpectNameValue,
600 {
601 arg.expect_name_value(self, span, name)
602 }
603
604 /// Assert that an [`ArgParser`] has no args, or emits an error and return `None`.
605 ///
606 /// This is a higher-level (and harder to misuse) wrapper over multiple
607 /// [`ArgParser::as_no_args`]. You may still want to use the lower-level methods for the
608 /// following reasons:
609 ///
610 /// - You want to emit your own diagnostics (for instance, with [`SharedContext::emit_err`]).
611 /// - The attribute can be parsed in multiple ways and it does not make sense to emit an error.
612 pub(crate) fn expect_no_args<'arg>(&mut self, arg: &'arg ArgParser) -> Option<()> {
613 if let Err(span) = arg.as_no_args() {
614 self.adcx().expected_no_args(span);
615 return None;
616 }
617
618 Some(())
619 }
620
621 /// Asserts that a node is a string literal, or emits an error and return `None`
622 ///
623 /// `arg` must be a reference to any node that may contain a name-value pair, that is:
624 ///
625 /// - [`NameValueParser`],
626 /// - [`MetaItemOrLitParser`],
627 ///
628 /// This is a higher-level (and harder to misuse) wrapper over multiple `as_` methods in the
629 /// [`parser`][crate::parser] module. You may still want to use the lower-level methods for the
630 /// following reasons:
631 ///
632 /// - You want to emit your own diagnostics (for instance, with [`SharedContext::emit_err`]).
633 /// - The attribute can be parsed in multiple ways and it does not make sense to emit an error.
634 pub(crate) fn expect_string_literal<'arg, Arg>(&mut self, arg: &'arg Arg) -> Option<Symbol>
635 where
636 Arg: ExpectStringLiteral,
637 {
638 arg.expect_string_literal(self)
639 }
640}
641
642pub(crate) trait ExpectNameValue {
643 type Output<'a>
644 where
645 Self: 'a;
646
647 fn expect_name_value<'a, 'f, 'sess>(
648 &'a self,
649 cx: &mut AcceptContext<'f, 'sess>,
650 span: Span,
651 name: Option<Symbol>,
652 ) -> Option<Self::Output<'a>>;
653}
654
655impl ExpectNameValue for MetaItemOrLitParser {
656 type Output<'a> = (Ident, &'a NameValueParser);
657
658 fn expect_name_value<'a, 'f, 'sess>(
659 &'a self,
660 cx: &mut AcceptContext<'f, 'sess>,
661 span: Span,
662 name: Option<Symbol>,
663 ) -> Option<Self::Output<'a>> {
664 let Some(meta_item) = self.meta_item() else {
665 cx.adcx().expected_name_value(self.span(), name);
666 return None;
667 };
668
669 meta_item.expect_name_value(cx, span, name)
670 }
671}
672
673impl ExpectNameValue for MetaItemParser {
674 type Output<'a> = (Ident, &'a NameValueParser);
675
676 fn expect_name_value<'a, 'f, 'sess>(
677 &'a self,
678 cx: &mut AcceptContext<'f, 'sess>,
679 _span: Span, // Not needed: `MetaItemOrLitParser` carry its own span.
680 name: Option<Symbol>,
681 ) -> Option<Self::Output<'a>> {
682 let word = self.path().word();
683 let arg = self.args().as_name_value();
684
685 if word.is_none() {
686 cx.adcx().expected_identifier(self.path().span());
687 }
688
689 if arg.is_none() {
690 cx.adcx().expected_name_value(self.span(), name);
691 }
692
693 word.zip(arg)
694 }
695}
696
697impl ExpectNameValue for ArgParser {
698 type Output<'a> = &'a NameValueParser;
699
700 fn expect_name_value<'a, 'f, 'sess>(
701 &'a self,
702 cx: &mut AcceptContext<'f, 'sess>,
703 span: Span,
704 name: Option<Symbol>,
705 ) -> Option<Self::Output<'a>> {
706 let Some(nv) = self.as_name_value() else {
707 cx.adcx().expected_name_value(span, name);
708 return None;
709 };
710
711 Some(nv)
712 }
713}
714
715pub(crate) trait ExpectStringLiteral {
716 fn expect_string_literal<'f, 'sess>(&self, cx: &mut AcceptContext<'f, 'sess>)
717 -> Option<Symbol>;
718}
719
720impl ExpectStringLiteral for NameValueParser {
721 fn expect_string_literal<'f, 'sess>(
722 &self,
723 cx: &mut AcceptContext<'f, 'sess>,
724 ) -> Option<Symbol> {
725 let value = self.value_as_str();
726 if value.is_none() {
727 cx.adcx().expected_string_literal(self.value_span, Some(self.value_as_lit()));
728 }
729 value
730 }
731}
732
733impl ExpectStringLiteral for MetaItemOrLitParser {
734 fn expect_string_literal<'f, 'sess>(
735 &self,
736 cx: &mut AcceptContext<'f, 'sess>,
737 ) -> Option<Symbol> {
738 let Some(lit) = self.as_lit() else {
739 cx.adcx().expected_string_literal(self.span(), None);
740 return None;
741 };
742
743 let str = lit.value_as_str();
744
745 if str.is_none() {
746 cx.adcx().expected_string_literal(self.span(), Some(lit));
747 }
748
749 str
750 }
751}
752
753impl<'f, 'sess> Deref for AcceptContext<'f, 'sess> {
754 type Target = SharedContext<'f, 'sess>;
755
756 fn deref(&self) -> &Self::Target {
757 &self.shared
758 }
759}
760
761impl DerefMut for AcceptContext<'_, '_> {
762 fn deref_mut(&mut self) -> &mut Self::Target {
763 &mut self.shared
764 }
765}
766
767/// Context given to every attribute parser during finalization.
768///
769/// Gives [`AttributeParser`](crate::attributes::AttributeParser)s enough information to create
770/// errors, for example.
771pub struct SharedContext<'p, 'sess> {
772 /// The parse context, gives access to the session and the
773 /// diagnostics context.
774 pub(crate) cx: &'p mut AttributeParser<'sess>,
775 /// The span of the syntactical component this attribute was applied to
776 pub(crate) target_span: Span,
777 pub(crate) target: rustc_hir::Target,
778
779 pub(crate) emit_lint: &'p mut dyn FnMut(LintId, MultiSpan, EmitAttribute),
780
781 /// This atomic bool keeps track of whether any lint has been emitted.
782 /// This is used for the arguments-used check.
783 #[cfg(debug_assertions)]
784 pub(crate) has_lint_been_emitted: AtomicBool,
785}
786
787/// Context given to every attribute parser during finalization.
788///
789/// Gives [`AttributeParser`](crate::attributes::AttributeParser)s enough information to create
790/// errors, for example.
791pub(crate) struct FinalizeContext<'p, 'sess> {
792 pub(crate) shared: SharedContext<'p, 'sess>,
793
794 /// A list of all attribute on this syntax node.
795 ///
796 /// Useful for compatibility checks with other attributes in [`finalize`](crate::attributes::AttributeParser::finalize)
797 ///
798 /// Usually, you should use normal attribute parsing logic instead,
799 /// especially when making a *denylist* of other attributes.
800 pub(crate) all_attrs: &'p [RefPathParser<'p>],
801}
802
803impl<'p, 'sess: 'p> Deref for FinalizeContext<'p, 'sess> {
804 type Target = SharedContext<'p, 'sess>;
805
806 fn deref(&self) -> &Self::Target {
807 &self.shared
808 }
809}
810
811impl<'p, 'sess: 'p> DerefMut for FinalizeContext<'p, 'sess> {
812 fn deref_mut(&mut self) -> &mut Self::Target {
813 &mut self.shared
814 }
815}
816
817/// Context given to deferred cross-attribute checks (`finalize_check`).
818///
819/// These checks run *after* every attribute on an item has been finalized, so unlike
820/// [`FinalizeContext`] this context can also inspect the fully parsed attributes via
821/// [`parsed_attrs`](Self::parsed_attrs).
822pub(crate) struct FinalizeCheckContext<'p, 'sess> {
823 pub(crate) shared: SharedContext<'p, 'sess>,
824
825 /// A list of all attribute on this syntax node.
826 ///
827 /// Useful for compatibility checks with other attributes.
828 ///
829 /// Unlike [`parsed_attrs`](Self::parsed_attrs), this only contains the *paths* of the
830 /// attributes.
831 pub(crate) all_attrs: &'p [RefPathParser<'p>],
832
833 /// All attributes that have been parsed on this syntax node.
834 ///
835 /// Unlike [`all_attrs`](Self::all_attrs), this contains the fully parsed attributes.
836 pub(crate) parsed_attrs: &'p [Attribute],
837}
838
839impl<'p, 'sess: 'p> Deref for FinalizeCheckContext<'p, 'sess> {
840 type Target = SharedContext<'p, 'sess>;
841
842 fn deref(&self) -> &Self::Target {
843 &self.shared
844 }
845}
846
847impl<'p, 'sess: 'p> DerefMut for FinalizeCheckContext<'p, 'sess> {
848 fn deref_mut(&mut self) -> &mut Self::Target {
849 &mut self.shared
850 }
851}
852
853impl<'p, 'sess: 'p> Deref for SharedContext<'p, 'sess> {
854 type Target = AttributeParser<'sess>;
855
856 fn deref(&self) -> &Self::Target {
857 self.cx
858 }
859}
860
861impl<'p, 'sess: 'p> DerefMut for SharedContext<'p, 'sess> {
862 fn deref_mut(&mut self) -> &mut Self::Target {
863 self.cx
864 }
865}
866
867#[derive(#[automatically_derived]
impl ::core::cmp::PartialEq for OmitDoc {
#[inline]
fn eq(&self, other: &OmitDoc) -> bool {
let __self_discr = ::core::intrinsics::discriminant_value(self);
let __arg1_discr = ::core::intrinsics::discriminant_value(other);
__self_discr == __arg1_discr
}
}PartialEq, #[automatically_derived]
impl ::core::clone::Clone for OmitDoc {
#[inline]
fn clone(&self) -> OmitDoc { *self }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for OmitDoc { }Copy, #[automatically_derived]
impl ::core::fmt::Debug for OmitDoc {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
::core::fmt::Formatter::write_str(f,
match self {
OmitDoc::Lower => "Lower",
OmitDoc::Skip => "Skip",
})
}
}Debug)]
868pub enum OmitDoc {
869 Lower,
870 Skip,
871}
872
873#[derive(#[automatically_derived]
impl ::core::marker::Copy for ShouldEmit { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ShouldEmit {
#[inline]
fn clone(&self) -> ShouldEmit {
let _: ::core::clone::AssertParamIsClone<bool>;
let _: ::core::clone::AssertParamIsClone<Recovery>;
*self
}
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for ShouldEmit {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
match self {
ShouldEmit::EarlyFatal { also_emit_lints: __self_0 } =>
::core::fmt::Formatter::debug_struct_field1_finish(f,
"EarlyFatal", "also_emit_lints", &__self_0),
ShouldEmit::ErrorsAndLints { recovery: __self_0 } =>
::core::fmt::Formatter::debug_struct_field1_finish(f,
"ErrorsAndLints", "recovery", &__self_0),
ShouldEmit::Nothing =>
::core::fmt::Formatter::write_str(f, "Nothing"),
}
}
}Debug)]
874pub enum ShouldEmit {
875 /// The operations will emit errors, and lints, and errors are fatal.
876 ///
877 /// Only relevant when early parsing, in late parsing equivalent to `ErrorsAndLints`.
878 /// Late parsing is never fatal, and instead tries to emit as many diagnostics as possible.
879 EarlyFatal { also_emit_lints: bool },
880 /// The operation will emit errors and lints.
881 /// This is usually what you need.
882 ErrorsAndLints {
883 /// Whether [`ArgParser`] will attempt to recover from errors.
884 ///
885 /// Whether it is allowed to recover from bad input (like an invalid literal). Setting
886 /// this to `Forbidden` will instead return early, and not raise errors except at the top
887 /// level (in [`ArgParser::from_attr_args`]).
888 recovery: Recovery,
889 },
890 /// The operation will *not* emit errors and lints.
891 ///
892 /// The parser can still call `delay_bug`, so you *must* ensure that this operation will also be
893 /// called with `ShouldEmit::ErrorsAndLints`.
894 Nothing,
895}
896
897impl ShouldEmit {
898 pub(crate) fn emit_err(self, diag: Diag<'_>) -> ErrorGuaranteed {
899 match self {
900 ShouldEmit::EarlyFatal { .. } if diag.level() == Level::DelayedBug => diag.emit(),
901 ShouldEmit::EarlyFatal { .. } => diag.upgrade_to_fatal().emit(),
902 ShouldEmit::ErrorsAndLints { .. } => diag.emit(),
903 ShouldEmit::Nothing => diag.delay_as_bug(),
904 }
905 }
906}
907
908/// The interface for issuing argument parsing related diagnostics.
909///
910/// It can be obtained through the [`adcx`](AcceptContext::adcx) method on [`AcceptContext`].
911pub(crate) struct AttributeDiagnosticContext<'a, 'f, 'sess> {
912 ctx: &'a mut AcceptContext<'f, 'sess>,
913 custom_suggestions: Vec<Suggestion>,
914}
915
916impl<'a, 'f, 'sess: 'f> AttributeDiagnosticContext<'a, 'f, 'sess> {
917 fn emit_parse_error(
918 &mut self,
919 span: Span,
920 reason: AttributeParseErrorReason<'_>,
921 ) -> ErrorGuaranteed {
922 let suggestions = if self.custom_suggestions.is_empty() {
923 AttributeParseErrorSuggestions::CreatedByTemplate(self.template_suggestions())
924 } else {
925 AttributeParseErrorSuggestions::CreatedByParser(mem::take(&mut self.custom_suggestions))
926 };
927
928 self.emit_err(AttributeParseError {
929 span,
930 attr_span: self.attr_span,
931 template: *self.template,
932 path: self.attr_path.clone(),
933 description: self.parsed_description,
934 reason,
935 suggestions,
936 })
937 }
938
939 /// Adds a custom suggestion to the diagnostic. This also prevents the default (template-based)
940 /// suggestion to be emitted.
941 pub(crate) fn push_suggestion(&mut self, msg: String, span: Span, code: String) -> &mut Self {
942 self.custom_suggestions.push(Suggestion { msg, sp: span, code });
943 self
944 }
945
946 pub(crate) fn template_suggestions(&self) -> Vec<String> {
947 let style = match self.parsed_description {
948 // If the outer and inner spans are equal, we are parsing an embedded attribute
949 ParsedDescription::Attribute if self.attr_span == self.inner_span => {
950 AttrSuggestionStyle::EmbeddedAttribute
951 }
952 ParsedDescription::Attribute => AttrSuggestionStyle::Attribute(self.attr_style),
953 ParsedDescription::Macro => AttrSuggestionStyle::Macro,
954 };
955
956 self.template.suggestions(style, self.attr_safety, &self.attr_path)
957 }
958}
959
960/// Helpers that can be used to generate errors during attribute parsing.
961impl<'a, 'f, 'sess: 'f> AttributeDiagnosticContext<'a, 'f, 'sess> {
962 pub(crate) fn expected_integer_literal_in_range(
963 &mut self,
964 span: Span,
965 lower_bound: isize,
966 upper_bound: isize,
967 ) -> ErrorGuaranteed {
968 self.emit_parse_error(
969 span,
970 AttributeParseErrorReason::ExpectedIntegerLiteralInRange { lower_bound, upper_bound },
971 )
972 }
973
974 /// The provided span is used as a fallback in case `args` does not contain any. It should be
975 /// the span of the node that contains `args`.
976 pub(crate) fn expected_list(&mut self, span: Span, args: &ArgParser) -> ErrorGuaranteed {
977 let span = match args {
978 ArgParser::NoArgs => span,
979 ArgParser::List(list) => list.span,
980 ArgParser::NameValue(nv) => nv.args_span(),
981 };
982 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedList)
983 }
984
985 pub(crate) fn expected_list_with_num_args_or_more(
986 &mut self,
987 args: usize,
988 span: Span,
989 ) -> ErrorGuaranteed {
990 self.emit_parse_error(
991 span,
992 AttributeParseErrorReason::ExpectedListWithNumArgsOrMore { args },
993 )
994 }
995
996 pub(crate) fn expected_list_or_no_args(&mut self, span: Span) -> ErrorGuaranteed {
997 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedListOrNoArgs)
998 }
999
1000 pub(crate) fn expected_nv_or_no_args(&mut self, span: Span) -> ErrorGuaranteed {
1001 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedNameValueOrNoArgs)
1002 }
1003
1004 pub(crate) fn expected_non_empty_string_literal(&mut self, span: Span) -> ErrorGuaranteed {
1005 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedNonEmptyStringLiteral)
1006 }
1007
1008 pub(crate) fn expected_no_args(&mut self, span: Span) -> ErrorGuaranteed {
1009 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedNoArgs)
1010 }
1011
1012 /// Emit an error that a `name` was expected here
1013 pub(crate) fn expected_identifier(&mut self, span: Span) -> ErrorGuaranteed {
1014 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedIdentifier)
1015 }
1016
1017 /// Emit an error that a `name = value` pair was expected at this span. The symbol can be given for
1018 /// a nicer error message talking about the specific name that was found lacking a value.
1019 fn expected_name_value(&mut self, span: Span, name: Option<Symbol>) -> ErrorGuaranteed {
1020 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedNameValue(name))
1021 }
1022
1023 /// Emit an error that a `name = value` argument is missing in a list of name-value pairs.
1024 pub(crate) fn missing_name_value(&mut self, span: Span, name: Symbol) -> ErrorGuaranteed {
1025 self.emit_parse_error(span, AttributeParseErrorReason::MissingNameValue(name))
1026 }
1027
1028 /// Emit an error that a `name = value` pair was found where that name was already seen.
1029 pub(crate) fn duplicate_key(&mut self, span: Span, key: Symbol) -> ErrorGuaranteed {
1030 self.emit_parse_error(span, AttributeParseErrorReason::DuplicateKey(key))
1031 }
1032
1033 /// An error that should be emitted when a [`MetaItemOrLitParser`]
1034 /// was expected *not* to be a literal, but instead a meta item.
1035 pub(crate) fn expected_not_literal(&mut self, span: Span) -> ErrorGuaranteed {
1036 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedNotLiteral)
1037 }
1038
1039 /// Signals that we expected exactly one argument and that we got either zero or two or more.
1040 /// The `provided_arguments` argument allows distinguishing between "expected an argument here"
1041 /// (when zero arguments are provided) and "expect a single argument here" (when two or more
1042 /// arguments are provided).
1043 pub(crate) fn expected_single_argument(
1044 &mut self,
1045 span: Span,
1046 provided_arguments: usize,
1047 ) -> ErrorGuaranteed {
1048 let reason = if provided_arguments == 0 {
1049 AttributeParseErrorReason::ExpectedArgument
1050 } else {
1051 AttributeParseErrorReason::ExpectedSingleArgument
1052 };
1053
1054 self.emit_parse_error(span, reason)
1055 }
1056
1057 pub(crate) fn expected_at_least_one_argument(&mut self, span: Span) -> ErrorGuaranteed {
1058 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedAtLeastOneArgument)
1059 }
1060
1061 /// Produces an error along the lines of `expected one of [foo, meow]`
1062 pub(crate) fn expected_specific_argument(
1063 &mut self,
1064 span: Span,
1065 possibilities: &[Symbol],
1066 ) -> ErrorGuaranteed {
1067 self.emit_parse_error(
1068 span,
1069 AttributeParseErrorReason::ExpectedSpecificArgument {
1070 possibilities,
1071 strings: false,
1072 list: false,
1073 },
1074 )
1075 }
1076
1077 /// Produces an error along the lines of `expected one of [foo, meow] as an argument`.
1078 /// i.e. slightly different wording to [`expected_specific_argument`](Self::expected_specific_argument).
1079 pub(crate) fn expected_specific_argument_and_list(
1080 &mut self,
1081 span: Span,
1082 possibilities: &[Symbol],
1083 ) -> ErrorGuaranteed {
1084 self.emit_parse_error(
1085 span,
1086 AttributeParseErrorReason::ExpectedSpecificArgument {
1087 possibilities,
1088 strings: false,
1089 list: true,
1090 },
1091 )
1092 }
1093
1094 /// produces an error along the lines of `expected one of ["foo", "meow"]`
1095 pub(crate) fn expected_specific_argument_strings(
1096 &mut self,
1097 span: Span,
1098 possibilities: &[Symbol],
1099 ) -> ErrorGuaranteed {
1100 self.emit_parse_error(
1101 span,
1102 AttributeParseErrorReason::ExpectedSpecificArgument {
1103 possibilities,
1104 strings: true,
1105 list: false,
1106 },
1107 )
1108 }
1109
1110 pub(crate) fn warn_empty_attribute(&mut self, span: Span) {
1111 let attr_path = self.attr_path.to_string();
1112 let valid_without_list = self.template.word;
1113 self.emit_lint(
1114 rustc_session::lint::builtin::UNUSED_ATTRIBUTES,
1115 crate::diagnostics::EmptyAttributeList {
1116 attr_span: span,
1117 attr_path,
1118 valid_without_list,
1119 },
1120 span,
1121 );
1122 }
1123
1124 pub(crate) fn warn_ill_formed_attribute_input(&mut self, lint: &'static Lint) {
1125 self.warn_ill_formed_attribute_input_with_help(lint, None)
1126 }
1127 pub(crate) fn warn_ill_formed_attribute_input_with_help(
1128 &mut self,
1129 lint: &'static Lint,
1130 help: Option<String>,
1131 ) {
1132 let suggestions = self.suggestions();
1133 let span = self.attr_span;
1134 self.emit_lint(
1135 lint,
1136 crate::diagnostics::IllFormedAttributeInput::new(&suggestions, None, help.as_deref()),
1137 span,
1138 );
1139 }
1140
1141 pub(crate) fn suggestions(&self) -> Vec<String> {
1142 let style = match self.parsed_description {
1143 // If the outer and inner spans are equal, we are parsing an embedded attribute
1144 ParsedDescription::Attribute if self.attr_span == self.inner_span => {
1145 AttrSuggestionStyle::EmbeddedAttribute
1146 }
1147 ParsedDescription::Attribute => AttrSuggestionStyle::Attribute(self.attr_style),
1148 ParsedDescription::Macro => AttrSuggestionStyle::Macro,
1149 };
1150
1151 self.template.suggestions(style, self.attr_safety, &self.attr_path)
1152 }
1153 /// Error that a string literal was expected.
1154 /// You can optionally give the literal you did find (which you found not to be a string literal)
1155 /// which can make better errors. For example, if the literal was a byte string it will suggest
1156 /// removing the `b` prefix.
1157 pub(crate) fn expected_string_literal(
1158 &mut self,
1159 span: Span,
1160 actual_literal: Option<&MetaItemLit>,
1161 ) -> ErrorGuaranteed {
1162 self.emit_parse_error(
1163 span,
1164 AttributeParseErrorReason::ExpectedStringLiteral {
1165 byte_string: actual_literal.and_then(|i| {
1166 i.kind.is_bytestr().then(|| self.sess().source_map().start_point(i.span))
1167 }),
1168 },
1169 )
1170 }
1171
1172 /// Error that a filename string literal was expected.
1173 pub(crate) fn expected_filename_literal(&mut self, span: Span) {
1174 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedFilenameLiteral);
1175 }
1176
1177 pub(crate) fn expected_integer_literal(&mut self, span: Span) -> ErrorGuaranteed {
1178 self.emit_parse_error(span, AttributeParseErrorReason::ExpectedIntegerLiteral)
1179 }
1180}
1181
1182impl<'f, 'sess: 'f> Deref for AttributeDiagnosticContext<'_, 'f, 'sess> {
1183 type Target = AcceptContext<'f, 'sess>;
1184
1185 fn deref(&self) -> &Self::Target {
1186 self.ctx
1187 }
1188}
1189
1190impl<'f, 'sess: 'f> DerefMut for AttributeDiagnosticContext<'_, 'f, 'sess> {
1191 fn deref_mut(&mut self) -> &mut Self::Target {
1192 self.ctx
1193 }
1194}
1195
1196/// Represents a custom suggestion that an attribute parser can emit.
1197pub(crate) struct Suggestion {
1198 pub(crate) msg: String,
1199 pub(crate) sp: Span,
1200 pub(crate) code: String,
1201}