29 #ifndef _GLIBCXX_FUTURE 30 #define _GLIBCXX_FUTURE 1 32 #ifdef _GLIBCXX_SYSHDR 33 #pragma GCC system_header 39 #if __cplusplus < 201103L 52 #include <bits/shared_ptr.h> 55 #include <bits/uses_allocator.h> 58 namespace std _GLIBCXX_VISIBILITY(default)
60 _GLIBCXX_BEGIN_NAMESPACE_VERSION
79 future_already_retrieved = 1,
80 promise_already_satisfied,
90 [[__nodiscard__, __gnu__::__const__]]
122 what()
const noexcept;
125 code()
const noexcept {
return _M_code; }
133 friend void __throw_future_error(
int);
139 template<
typename _Res>
142 template<
typename _Res>
145 template<
typename _Signature>
148 template<
typename _Res>
161 return static_cast<launch>(
162 static_cast<int>(__x) & static_cast<int>(__y));
168 return static_cast<launch>(
169 static_cast<int>(__x) | static_cast<int>(__y));
175 return static_cast<launch>(
176 static_cast<int>(__x) ^ static_cast<int>(__y));
181 {
return static_cast<launch>(~static_cast<
int>(__x)); }
185 {
return __x = __x & __y; }
189 {
return __x = __x | __y; }
193 {
return __x = __x ^ __y; }
206 template<
typename _Fn,
typename... _Args>
207 using __async_result_of =
typename __invoke_result<
208 typename decay<_Fn>::type,
typename decay<_Args>::type...>::type;
211 template<
typename _Fn,
typename... _Args>
212 future<__async_result_of<_Fn, _Args...>>
213 async(
launch __policy, _Fn&& __fn, _Args&&... __args);
215 template<
typename _Fn,
typename... _Args>
216 future<__async_result_of<_Fn, _Args...>>
217 async(_Fn&& __fn, _Args&&... __args);
219 #if defined(_GLIBCXX_HAS_GTHREADS) 231 _Result_base(
const _Result_base&) =
delete;
232 _Result_base& operator=(
const _Result_base&) =
delete;
235 virtual void _M_destroy() = 0;
239 void operator()(_Result_base* __fr)
const { __fr->_M_destroy(); }
244 virtual ~_Result_base();
248 template<
typename _Res>
252 template<
typename _Res>
253 struct _Result : _Result_base
256 __gnu_cxx::__aligned_buffer<_Res> _M_storage;
260 typedef _Res result_type;
262 _Result() noexcept : _M_initialized() { }
272 _M_value() noexcept {
return *_M_storage._M_ptr(); }
275 _M_set(
const _Res& __res)
277 ::new (_M_storage._M_addr()) _Res(__res);
278 _M_initialized =
true;
284 ::new (_M_storage._M_addr()) _Res(
std::move(__res));
285 _M_initialized =
true;
289 void _M_destroy() {
delete this; }
293 template<
typename _Res,
typename _Alloc>
294 struct _Result_alloc final : _Result<_Res>, _Alloc
296 using __allocator_type = __alloc_rebind<_Alloc, _Result_alloc>;
299 _Result_alloc(
const _Alloc& __a) : _Result<_Res>(), _Alloc(__a)
305 __allocator_type __a(*
this);
306 __allocated_ptr<__allocator_type> __guard_ptr{ __a,
this };
307 this->~_Result_alloc();
312 template<
typename _Res,
typename _Allocator>
313 static _Ptr<_Result_alloc<_Res, _Allocator>>
314 _S_allocate_result(
const _Allocator& __a)
316 using __result_type = _Result_alloc<_Res, _Allocator>;
317 typename __result_type::__allocator_type __a2(__a);
318 auto __guard = std::__allocate_guarded(__a2);
319 __result_type* __p = ::new((
void*)__guard.get()) __result_type{__a};
321 return _Ptr<__result_type>(__p);
325 template<
typename _Res,
typename _Tp>
326 static _Ptr<_Result<_Res>>
329 return _Ptr<_Result<_Res>>(
new _Result<_Res>);
337 typedef _Ptr<_Result_base> _Ptr_type;
339 enum _Status :
unsigned {
345 __atomic_futex_unsigned<> _M_status;
350 _State_baseV2() noexcept : _M_result(), _M_status(_Status::__not_ready)
352 _State_baseV2(
const _State_baseV2&) =
delete;
353 _State_baseV2& operator=(
const _State_baseV2&) =
delete;
354 virtual ~_State_baseV2() =
default;
363 _M_status._M_load_when_equal(_Status::__ready, memory_order_acquire);
367 template<
typename _Rep,
typename _Period>
373 if (_M_status._M_load(memory_order_acquire) == _Status::__ready)
374 return future_status::ready;
376 if (_M_is_deferred_future())
377 return future_status::deferred;
380 if (__rel > __rel.zero()
381 && _M_status._M_load_when_equal_for(_Status::__ready,
382 memory_order_acquire,
396 return future_status::ready;
398 return future_status::timeout;
401 template<
typename _Clock,
typename _Duration>
405 #if __cplusplus > 201703L 406 static_assert(chrono::is_clock_v<_Clock>);
410 if (_M_status._M_load(memory_order_acquire) == _Status::__ready)
411 return future_status::ready;
413 if (_M_is_deferred_future())
414 return future_status::deferred;
416 if (_M_status._M_load_when_equal_until(_Status::__ready,
417 memory_order_acquire,
425 return future_status::ready;
427 return future_status::timeout;
433 _M_set_result(
function<_Ptr_type()> __res,
bool __ignore_failure =
false)
435 bool __did_set =
false;
438 call_once(_M_once, &_State_baseV2::_M_do_set,
this,
442 _M_status._M_store_notify_all(_Status::__ready,
443 memory_order_release);
444 else if (!__ignore_failure)
445 __throw_future_error(
int(future_errc::promise_already_satisfied));
452 _M_set_delayed_result(
function<_Ptr_type()> __res,
455 bool __did_set =
false;
459 call_once(_M_once, &_State_baseV2::_M_do_set,
this,
462 __throw_future_error(
int(future_errc::promise_already_satisfied));
463 __mr->_M_shared_state =
std::move(__self);
470 _M_break_promise(_Ptr_type __res)
472 if (static_cast<bool>(__res))
480 _M_result.swap(__res);
482 _M_status._M_store_notify_all(_Status::__ready,
483 memory_order_release);
489 _M_set_retrieved_flag()
491 if (_M_retrieved.test_and_set())
492 __throw_future_error(
int(future_errc::future_already_retrieved));
495 template<
typename _Res,
typename _Arg>
499 template<
typename _Res,
typename _Arg>
500 struct _Setter<_Res, _Arg&>
506 "Invalid specialisation");
509 typename promise<_Res>::_Ptr_type operator()()
const 511 _M_promise->_M_storage->_M_set(*_M_arg);
512 return std::move(_M_promise->_M_storage);
519 template<
typename _Res>
520 struct _Setter<_Res, _Res&&>
523 typename promise<_Res>::_Ptr_type operator()()
const 525 _M_promise->_M_storage->_M_set(
std::move(*_M_arg));
526 return std::move(_M_promise->_M_storage);
533 template<
typename _Res>
534 struct _Setter<_Res, void>
538 typename promise<_Res>::_Ptr_type operator()()
const noexcept
539 {
return std::move(_M_promise->_M_storage); }
544 struct __exception_ptr_tag { };
547 template<
typename _Res>
548 struct _Setter<_Res, __exception_ptr_tag>
551 typename promise<_Res>::_Ptr_type operator()()
const noexcept
553 _M_promise->_M_storage->_M_error = *_M_ex;
554 return std::move(_M_promise->_M_storage);
561 template<
typename _Res,
typename _Arg>
562 __attribute__((__always_inline__))
563 static _Setter<_Res, _Arg&&>
569 template<
typename _Res>
570 __attribute__((__always_inline__))
571 static _Setter<_Res, __exception_ptr_tag>
574 __glibcxx_assert(__ex !=
nullptr);
575 return _Setter<_Res, __exception_ptr_tag>{ __prom, &__ex };
578 template<
typename _Res>
579 __attribute__((__always_inline__))
580 static _Setter<_Res, void>
583 return _Setter<_Res, void>{ __prom };
586 template<
typename _Tp>
590 if (!static_cast<bool>(__p))
591 __throw_future_error((
int)future_errc::no_state);
597 _M_do_set(
function<_Ptr_type()>* __f,
bool* __did_set)
599 _Ptr_type __res = (*__f)();
604 _M_result.swap(__res);
608 virtual void _M_complete_async() { }
611 virtual bool _M_is_deferred_future()
const {
return false; }
613 struct _Make_ready final : __at_thread_exit_elt
616 static void _S_run(
void*);
621 #ifdef _GLIBCXX_ASYNC_ABI_COMPAT 623 class _Async_state_common;
625 using _State_base = _State_baseV2;
626 class _Async_state_commonV2;
629 template<
typename _BoundFn,
630 typename _Res = decltype(std::declval<_BoundFn&>()())>
631 class _Deferred_state;
633 template<
typename _BoundFn,
634 typename _Res = decltype(std::declval<_BoundFn&>()())>
635 class _Async_state_impl;
637 template<
typename _Signature>
638 struct _Task_state_base;
640 template<
typename _Fn,
typename _Alloc,
typename _Signature>
643 template<
typename _Res_ptr,
typename _Fn,
644 typename _Res =
typename _Res_ptr::element_type::result_type>
647 template<
typename _Res_ptr,
typename _BoundFn>
648 static _Task_setter<_Res_ptr, _BoundFn>
649 _S_task_setter(_Res_ptr& __ptr, _BoundFn& __call)
656 template<
typename _Res>
657 struct __future_base::_Result<_Res&> : __future_base::_Result_base
659 typedef _Res& result_type;
661 _Result() noexcept : _M_value_ptr() { }
664 _M_set(_Res& __res) noexcept
667 _Res& _M_get() noexcept {
return *_M_value_ptr; }
672 void _M_destroy() {
delete this; }
677 struct __future_base::_Result<void> : __future_base::_Result_base
679 typedef void result_type;
682 void _M_destroy() {
delete this; }
687 #ifndef _GLIBCXX_ASYNC_ABI_COMPAT 691 template<
typename _Res,
typename _Arg>
693 <__future_base::_State_base::_Setter<_Res, _Arg>>
697 template<
typename _Res_ptr,
typename _Fn,
typename _Res>
699 <__future_base::_Task_setter<_Res_ptr, _Fn, _Res>>
704 template<
typename _Res>
709 typedef __future_base::_Result<_Res>& __result_type;
712 __state_type _M_state;
720 valid()
const noexcept {
return static_cast<bool>(_M_state); }
725 _State_base::_S_check(_M_state);
729 template<
typename _Rep,
typename _Period>
733 _State_base::_S_check(_M_state);
734 return _M_state->wait_for(__rel);
737 template<
typename _Clock,
typename _Duration>
741 _State_base::_S_check(_M_state);
742 return _M_state->wait_until(__abs);
750 _State_base::_S_check(_M_state);
751 _Result_base& __res = _M_state->wait();
752 if (!(__res._M_error ==
nullptr))
754 return static_cast<__result_type
>(__res);
759 _M_state.
swap(__that._M_state);
766 _State_base::_S_check(_M_state);
767 _M_state->_M_set_retrieved_flag();
786 explicit _Reset(
__basic_future& __fut) noexcept : _M_fut(__fut) { }
787 ~_Reset() { _M_fut._M_state.reset(); }
794 template<
typename _Res>
799 static_assert(!
is_array<_Res>{},
"result type must not be an array");
802 "result type must be destructible");
805 template<
typename>
friend class packaged_task;
806 template<
typename _Fn,
typename... _Args>
807 friend future<__async_result_of<_Fn, _Args...>>
814 future(
const __state_type& __state) : _Base_type(__state) { }
817 constexpr
future() noexcept : _Base_type() { }
836 typename _Base_type::_Reset __reset(*
this);
837 return std::move(this->_M_get_result()._M_value());
844 template<
typename _Res>
848 template<
typename>
friend class packaged_task;
849 template<
typename _Fn,
typename... _Args>
850 friend future<__async_result_of<_Fn, _Args...>>
857 future(
const __state_type& __state) : _Base_type(__state) { }
860 constexpr
future() noexcept : _Base_type() { }
879 typename _Base_type::_Reset __reset(*
this);
880 return this->_M_get_result()._M_get();
891 template<
typename>
friend class packaged_task;
892 template<
typename _Fn,
typename... _Args>
893 friend future<__async_result_of<_Fn, _Args...>>
900 future(
const __state_type& __state) : _Base_type(__state) { }
903 constexpr
future() noexcept : _Base_type() { }
922 typename _Base_type::_Reset __reset(*
this);
923 this->_M_get_result();
931 template<
typename _Res>
936 static_assert(!
is_array<_Res>{},
"result type must not be an array");
939 "result type must be destructible");
973 get()
const {
return this->_M_get_result()._M_value(); }
977 template<
typename _Res>
1012 get()
const {
return this->_M_get_result()._M_get(); }
1051 get()
const { this->_M_get_result(); }
1055 template<
typename _Res>
1058 : _M_state(__sf._M_state)
1061 template<
typename _Res>
1067 template<
typename _Res>
1075 template<
typename _Res>
1080 template<
typename _Res>
1090 template<
typename _Res>
1095 static_assert(!
is_array<_Res>{},
"result type must not be an array");
1098 "result type must be destructible");
1100 typedef __future_base::_State_base _State;
1101 typedef __future_base::_Result<_Res> _Res_type;
1102 typedef __future_base::_Ptr<_Res_type> _Ptr_type;
1103 template<
typename,
typename>
friend struct _State::_Setter;
1107 _Ptr_type _M_storage;
1111 : _M_future(std::make_shared<_State>()),
1112 _M_storage(
new _Res_type())
1116 : _M_future(
std::move(__rhs._M_future)),
1120 template<
typename _Allocator>
1121 promise(allocator_arg_t,
const _Allocator& __a)
1122 : _M_future(std::allocate_shared<_State>(__a)),
1123 _M_storage(__future_base::_S_allocate_result<_Res>(__a))
1126 template<
typename _Allocator>
1128 : _M_future(
std::move(__rhs._M_future)),
1136 if (static_cast<bool>(_M_future) && !_M_future.unique())
1137 _M_future->_M_break_promise(
std::move(_M_storage));
1142 operator=(
promise&& __rhs) noexcept
1153 _M_future.
swap(__rhs._M_future);
1154 _M_storage.swap(__rhs._M_storage);
1164 set_value(
const _Res& __r)
1165 { _M_state()._M_set_result(_State::__setter(
this, __r)); }
1168 set_value(_Res&& __r)
1169 { _M_state()._M_set_result(_State::__setter(
this,
std::move(__r))); }
1173 { _M_state()._M_set_result(_State::__setter(__p,
this)); }
1176 set_value_at_thread_exit(
const _Res& __r)
1178 _M_state()._M_set_delayed_result(_State::__setter(
this, __r),
1183 set_value_at_thread_exit(_Res&& __r)
1185 _M_state()._M_set_delayed_result(
1186 _State::__setter(
this,
std::move(__r)), _M_future);
1192 _M_state()._M_set_delayed_result(_State::__setter(__p,
this),
1200 __future_base::_State_base::_S_check(_M_future);
1205 template<
typename _Res>
1210 template<
typename _Res,
typename _Alloc>
1216 template<
typename _Res>
1217 class promise<_Res&>
1219 typedef __future_base::_State_base _State;
1220 typedef __future_base::_Result<_Res&> _Res_type;
1221 typedef __future_base::_Ptr<_Res_type> _Ptr_type;
1222 template<
typename,
typename>
friend struct _State::_Setter;
1226 _Ptr_type _M_storage;
1230 : _M_future(std::make_shared<_State>()),
1231 _M_storage(
new _Res_type())
1234 promise(promise&& __rhs) noexcept
1235 : _M_future(
std::move(__rhs._M_future)),
1239 template<
typename _Allocator>
1240 promise(allocator_arg_t,
const _Allocator& __a)
1241 : _M_future(std::allocate_shared<_State>(__a)),
1242 _M_storage(__future_base::_S_allocate_result<_Res&>(__a))
1245 template<
typename _Allocator>
1246 promise(allocator_arg_t,
const _Allocator&, promise&& __rhs)
1247 : _M_future(
std::move(__rhs._M_future)),
1251 promise(
const promise&) =
delete;
1255 if (static_cast<bool>(_M_future) && !_M_future.unique())
1256 _M_future->_M_break_promise(
std::move(_M_storage));
1261 operator=(promise&& __rhs) noexcept
1267 promise& operator=(
const promise&) =
delete;
1270 swap(promise& __rhs) noexcept
1272 _M_future.
swap(__rhs._M_future);
1273 _M_storage.swap(__rhs._M_storage);
1283 set_value(_Res& __r)
1284 { _M_state()._M_set_result(_State::__setter(
this, __r)); }
1288 { _M_state()._M_set_result(_State::__setter(__p,
this)); }
1291 set_value_at_thread_exit(_Res& __r)
1293 _M_state()._M_set_delayed_result(_State::__setter(
this, __r),
1300 _M_state()._M_set_delayed_result(_State::__setter(__p,
this),
1308 __future_base::_State_base::_S_check(_M_future);
1317 typedef __future_base::_State_base _State;
1318 typedef __future_base::_Result<void> _Res_type;
1319 typedef __future_base::_Ptr<_Res_type> _Ptr_type;
1320 template<
typename,
typename>
friend struct _State::_Setter;
1324 _Ptr_type _M_storage;
1328 : _M_future(std::make_shared<_State>()),
1329 _M_storage(
new _Res_type())
1332 promise(promise&& __rhs) noexcept
1333 : _M_future(
std::move(__rhs._M_future)),
1337 template<
typename _Allocator>
1338 promise(allocator_arg_t,
const _Allocator& __a)
1339 : _M_future(std::allocate_shared<_State>(__a)),
1340 _M_storage(__future_base::_S_allocate_result<void>(__a))
1345 template<
typename _Allocator>
1346 promise(allocator_arg_t,
const _Allocator&, promise&& __rhs)
1347 : _M_future(
std::move(__rhs._M_future)),
1351 promise(
const promise&) =
delete;
1355 if (static_cast<bool>(_M_future) && !_M_future.unique())
1356 _M_future->_M_break_promise(
std::move(_M_storage));
1361 operator=(promise&& __rhs) noexcept
1367 promise& operator=(
const promise&) =
delete;
1370 swap(promise& __rhs) noexcept
1372 _M_future.
swap(__rhs._M_future);
1373 _M_storage.swap(__rhs._M_storage);
1384 { _M_state()._M_set_result(_State::__setter(
this)); }
1388 { _M_state()._M_set_result(_State::__setter(__p,
this)); }
1391 set_value_at_thread_exit()
1392 { _M_state()._M_set_delayed_result(_State::__setter(
this), _M_future); }
1397 _M_state()._M_set_delayed_result(_State::__setter(__p,
this),
1405 __future_base::_State_base::_S_check(_M_future);
1411 template<
typename _Ptr_type,
typename _Fn,
typename _Res>
1412 struct __future_base::_Task_setter
1415 _Ptr_type operator()()
const 1419 (*_M_result)->_M_set((*_M_fn)());
1423 __throw_exception_again;
1431 _Ptr_type* _M_result;
1435 template<
typename _Ptr_type,
typename _Fn>
1436 struct __future_base::_Task_setter<_Ptr_type, _Fn, void>
1438 _Ptr_type operator()()
const 1446 __throw_exception_again;
1454 _Ptr_type* _M_result;
1459 template<
typename _Res,
typename... _Args>
1460 struct __future_base::_Task_state_base<_Res(_Args...)>
1461 : __future_base::_State_base
1463 typedef _Res _Res_type;
1465 template<
typename _Alloc>
1466 _Task_state_base(
const _Alloc& __a)
1467 : _M_result(_S_allocate_result<_Res>(__a))
1472 _M_run(_Args&&... __args) = 0;
1481 typedef __future_base::_Ptr<_Result<_Res>> _Ptr_type;
1482 _Ptr_type _M_result;
1486 template<
typename _Fn,
typename _Alloc,
typename _Res,
typename... _Args>
1487 struct __future_base::_Task_state<_Fn, _Alloc, _Res(_Args...)> final
1488 : __future_base::_Task_state_base<_Res(_Args...)>
1490 #ifdef __cpp_lib_is_invocable // C++ >= 17 1491 static_assert(is_invocable_r_v<_Res, _Fn&, _Args...>);
1493 static_assert(__is_invocable<_Fn&, _Args...>::value,
1494 "_Fn& is invocable with _Args...");
1497 template<
typename _Fn2>
1498 _Task_state(_Fn2&& __fn,
const _Alloc& __a)
1499 : _Task_state_base<_Res(_Args...)>(__a),
1500 _M_impl(std::forward<_Fn2>(__fn), __a)
1503 template<
typename _Fn2>
1504 static shared_ptr<_Task_state_base<_Res(_Args...)>>
1505 _S_create(_Fn2&& __fn,
const _Alloc& __a)
1507 return std::allocate_shared<_Task_state>(__a,
1508 std::forward<_Fn2>(__fn),
1514 _M_run(_Args&&... __args)
1516 auto __boundfn = [&] () -> _Res {
1517 return std::__invoke_r<_Res>(_M_impl._M_fn,
1518 std::forward<_Args>(__args)...);
1520 this->_M_set_result(_S_task_setter(this->_M_result, __boundfn));
1526 auto __boundfn = [&] () -> _Res {
1527 return std::__invoke_r<_Res>(_M_impl._M_fn,
1528 std::forward<_Args>(__args)...);
1530 this->_M_set_delayed_result(_S_task_setter(this->_M_result, __boundfn),
1534 virtual shared_ptr<_Task_state_base<_Res(_Args...)>>
1536 {
return _S_create(
std::move(_M_impl._M_fn), _M_impl); }
1538 struct _Impl : _Alloc
1540 template<
typename _Fn2>
1541 _Impl(_Fn2&& __fn,
const _Alloc& __a)
1542 : _Alloc(__a), _M_fn(std::forward<_Fn2>(__fn)) { }
1549 template<
typename _Res,
typename... _ArgTypes>
1550 class packaged_task<_Res(_ArgTypes...)>
1552 using _State_type = __future_base::_Task_state_base<_Res(_ArgTypes...)>;
1557 template<
typename _Fn,
typename _Fn2 = __remove_cvref_t<_Fn>>
1558 using __not_same = __enable_if_t<!is_same<packaged_task, _Fn2>::value>;
1563 template<
typename _Fn,
typename _Alloc = std::allocator<
int>>
1565 = __future_base::_Task_state<__decay_t<_Fn>, _Alloc,
1566 _Res(_ArgTypes...)>;
1570 packaged_task() noexcept { }
1572 template<
typename _Fn,
typename = __not_same<_Fn>>
1574 packaged_task(_Fn&& __fn)
1575 : _M_state(_Task_state<_Fn>::_S_create(std::forward<_Fn>(__fn), {}))
1578 #if __cplusplus < 201703L 1583 template<
typename _Fn,
typename _Alloc,
typename = __not_same<_Fn>>
1584 packaged_task(allocator_arg_t,
const _Alloc& __a, _Fn&& __fn)
1585 : _M_state(_Task_state<_Fn, _Alloc>::_S_create(std::forward<_Fn>(__fn),
1591 template<
typename _Allocator>
1592 packaged_task(allocator_arg_t,
const _Allocator&) noexcept
1595 template<
typename _Allocator>
1596 packaged_task(allocator_arg_t,
const _Allocator&,
1597 const packaged_task&) =
delete;
1599 template<
typename _Allocator>
1600 packaged_task(allocator_arg_t,
const _Allocator&,
1601 packaged_task&& __other) noexcept
1602 { this->swap(__other); }
1607 if (static_cast<bool>(_M_state) && !_M_state.unique())
1608 _M_state->_M_break_promise(
std::move(_M_state->_M_result));
1612 packaged_task(
const packaged_task&) =
delete;
1613 packaged_task& operator=(
const packaged_task&) =
delete;
1616 packaged_task(packaged_task&& __other) noexcept
1617 { this->swap(__other); }
1619 packaged_task& operator=(packaged_task&& __other) noexcept
1621 packaged_task(
std::move(__other)).swap(*
this);
1626 swap(packaged_task& __other) noexcept
1627 { _M_state.
swap(__other._M_state); }
1630 valid()
const noexcept
1631 {
return static_cast<bool>(_M_state); }
1640 operator()(_ArgTypes... __args)
1642 __future_base::_State_base::_S_check(_M_state);
1643 _M_state->_M_run(std::forward<_ArgTypes>(__args)...);
1647 make_ready_at_thread_exit(_ArgTypes... __args)
1649 __future_base::_State_base::_S_check(_M_state);
1650 _M_state->_M_run_delayed(std::forward<_ArgTypes>(__args)..., _M_state);
1656 __future_base::_State_base::_S_check(_M_state);
1657 packaged_task __tmp;
1658 __tmp._M_state = _M_state;
1659 _M_state = _M_state->_M_reset();
1665 #if __cpp_deduction_guides >= 201606 1666 template<
typename _Res,
typename... _ArgTypes>
1667 packaged_task(_Res(*)(_ArgTypes...)) -> packaged_task<_Res(_ArgTypes...)>;
1669 template<
typename _Fun,
typename _Signature
1670 = __function_guide_t<_Fun, decltype(&_Fun::operator())>>
1671 packaged_task(_Fun) -> packaged_task<_Signature>;
1675 template<
typename _Res,
typename... _ArgTypes>
1677 swap(packaged_task<_Res(_ArgTypes...)>& __x,
1678 packaged_task<_Res(_ArgTypes...)>& __y) noexcept
1681 #if __cplusplus < 201703L 1684 template<
typename _Res,
typename _Alloc>
1693 template<
typename _BoundFn,
typename _Res>
1694 class __future_base::_Deferred_state final
1695 :
public __future_base::_State_base
1698 template<
typename... _Args>
1700 _Deferred_state(_Args&&... __args)
1701 : _M_result(
new _Result<_Res>()),
1702 _M_fn(std::forward<_Args>(__args)...)
1706 typedef __future_base::_Ptr<_Result<_Res>> _Ptr_type;
1707 _Ptr_type _M_result;
1720 _M_set_result(_S_task_setter(_M_result, _M_fn),
true);
1725 virtual bool _M_is_deferred_future()
const {
return true; }
1729 class __future_base::_Async_state_commonV2
1730 :
public __future_base::_State_base
1733 ~_Async_state_commonV2() =
default;
1750 virtual void _M_complete_async() { _M_join(); }
1752 void _M_join() {
std::call_once(_M_once, &thread::join, &_M_thread); }
1760 template<
typename _BoundFn,
typename _Res>
1761 class __future_base::_Async_state_impl final
1762 :
public __future_base::_Async_state_commonV2
1765 template<
typename... _Args>
1767 _Async_state_impl(_Args&&... __args)
1768 : _M_result(
new _Result<_Res>()),
1769 _M_fn(std::forward<_Args>(__args)...)
1771 _M_thread =
std::thread{&_Async_state_impl::_M_run,
this};
1777 ~_Async_state_impl()
1779 if (_M_thread.joinable())
1789 _M_set_result(_S_task_setter(_M_result, _M_fn));
1794 if (static_cast<bool>(_M_result))
1795 this->_M_break_promise(
std::move(_M_result));
1796 __throw_exception_again;
1800 typedef __future_base::_Ptr<_Result<_Res>> _Ptr_type;
1801 _Ptr_type _M_result;
1807 template<
typename _Fn,
typename... _Args>
1808 _GLIBCXX_NODISCARD
future<__async_result_of<_Fn, _Args...>>
1811 using _Wr = std::thread::_Call_wrapper<_Fn, _Args...>;
1812 using _As = __future_base::_Async_state_impl<_Wr>;
1813 using _Ds = __future_base::_Deferred_state<_Wr>;
1816 if ((__policy & launch::async) == launch::async)
1820 __state = std::make_shared<_As>(std::forward<_Fn>(__fn),
1821 std::forward<_Args>(__args)...);
1823 #if __cpp_exceptions 1826 if (__e.code() != errc::resource_unavailable_try_again
1827 || (__policy & launch::deferred) != launch::deferred)
1834 __state = std::make_shared<_Ds>(std::forward<_Fn>(__fn),
1835 std::forward<_Args>(__args)...);
1841 template<
typename _Fn,
typename... _Args>
1842 _GLIBCXX_NODISCARD
inline future<__async_result_of<_Fn, _Args...>>
1845 return std::async(launch::async|launch::deferred,
1846 std::forward<_Fn>(__fn),
1847 std::forward<_Args>(__args)...);
1850 #endif // _GLIBCXX_ASYNC_ABI_COMPAT 1851 #endif // _GLIBCXX_HAS_GTHREADS 1854 _GLIBCXX_END_NAMESPACE_VERSION
1859 #endif // _GLIBCXX_FUTURE void swap(shared_ptr< _Tp > &__a, shared_ptr< _Tp > &__b) noexcept
Swap overload for shared_ptr.
An exception type that includes an error_code value.
constexpr bitset< _Nb > operator &(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.
Declare uses_allocator so it can be specialized in <queue> etc.
future_errc
Error code for futures.
A non-owning observer for a pointer owned by a shared_ptr.
A move-only smart pointer that manages unique ownership of a resource.
exception_ptr current_exception() noexcept
future_status
Status code for futures.
future< __async_result_of< _Fn, _Args... > > async(_Fn &&__fn, _Args &&... __args)
async, potential overload
shared_future(future< void > &&__uf) noexcept
Construct from a future rvalue.
launch
Launch code for futures.
__bool_constant< true > true_type
The type used as a compile-time boolean with true value.
future(future &&__uf) noexcept
Move constructor.
constexpr bitset< _Nb > operator^(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.
void rethrow_exception(exception_ptr)
Throw the object pointed to by the exception_ptr.
void call_once(once_flag &__once, _Callable &&__f, _Args &&... __args)
Invoke a callable and synchronize with other calls using the same flag.
A smart pointer with reference-counted copy semantics.
error_code make_error_code(future_errc __errc) noexcept
Overload of make_error_code for future_errc.
future(future &&__uf) noexcept
Move constructor.
ISO C++ entities toplevel namespace is std.
shared_future(const shared_future &__sf)
Copy constructor.
One of two subclasses of exception.
shared_future(future< _Res > &&__uf) noexcept
Construct from a future rvalue.
__result_type _M_get_result() const
Wait for the state to be ready and rethrow any stored exception.
Explicit specialization for future<void>
shared_future(future< _Res &> &&__uf) noexcept
Construct from a future rvalue.
chrono::time_point represents a point in time as measured by a clock
future< __async_result_of< _Fn, _Args... > > async(launch __policy, _Fn &&__fn, _Args &&... __args)
async
Exception type thrown by futures.
string message() const
The category's description of the value.
error_condition make_error_condition(future_errc __errc) noexcept
Overload of make_error_condition for future_errc.
Thrown as part of forced unwinding.A magic placeholder class that can be caught by reference to recog...
constexpr std::remove_reference< _Tp >::type && move(_Tp &&__t) noexcept
Convert a value to an rvalue.
constexpr _Tp * __addressof(_Tp &__r) noexcept
Same as C++11 std::addressof.
shared_future(const shared_future &__sf) noexcept
Copy constructor.
Common implementation for future and shared_future.
shared_future(const shared_future &__sf)
Copy constructor.
Primary template for shared_future.
const error_category & future_category() noexcept
Points to a statically-allocated object derived from error_category.
The standard allocator, as per C++03 [20.4.1].
An opaque pointer to an arbitrary exception.
future(future &&__uf) noexcept
Move constructor.
shared_future(shared_future &&__sf) noexcept
Construct from a shared_future rvalue.
constexpr _Tp * addressof(_Tp &__r) noexcept
Returns the actual address of the object or function referenced by r, even in the presence of an over...
Explicit specialization for shared_future<void>
Partial specialization for future<R&>
Primary template for promise.
constexpr bitset< _Nb > operator|(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.
chrono::duration represents a distance between two points in time
Primary template for future.
shared_future(shared_future &&__sf) noexcept
Construct from a shared_future rvalue.
shared_future(shared_future &&__sf) noexcept
Construct from a shared_future rvalue.
void swap(packaged_task< _Res(_ArgTypes...)> &__x, packaged_task< _Res(_ArgTypes...)> &__y) noexcept
swap
Partial specialization for shared_future<R&>
_GLIBCXX26_CONSTEXPR exception_ptr make_exception_ptr(_Ex) noexcept
Obtain an exception_ptr pointing to a copy of the supplied object.
Flag type used by std::call_once.