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1// <future> -*- C++ -*-
2
7a0269de 3// Copyright (C) 2009, 2010, 2011 Free Software Foundation, Inc.
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4//
5// This file is part of the GNU ISO C++ Library. This library is free
6// software; you can redistribute it and/or modify it under the
7// terms of the GNU General Public License as published by the
8// Free Software Foundation; either version 3, or (at your option)
9// any later version.
10
11// This library is distributed in the hope that it will be useful,
12// but WITHOUT ANY WARRANTY; without even the implied warranty of
13// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14// GNU General Public License for more details.
15
16// Under Section 7 of GPL version 3, you are granted additional
17// permissions described in the GCC Runtime Library Exception, version
18// 3.1, as published by the Free Software Foundation.
19
20// You should have received a copy of the GNU General Public License and
21// a copy of the GCC Runtime Library Exception along with this program;
22// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
23// <http://www.gnu.org/licenses/>.
24
f910786b 25/** @file include/future
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26 * This is a Standard C++ Library header.
27 */
28
29#ifndef _GLIBCXX_FUTURE
30#define _GLIBCXX_FUTURE 1
31
32#pragma GCC system_header
33
34#ifndef __GXX_EXPERIMENTAL_CXX0X__
ab65a4c7 35# include <bits/c++0x_warning.h>
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36#else
37
38#include <functional>
39#include <memory>
40#include <mutex>
b3eed6fe 41#include <thread>
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42#include <condition_variable>
43#include <system_error>
44#include <exception>
afd88205 45#include <atomic>
abcd7e08 46#include <bits/functexcept.h>
c910ceff 47
12ffa228
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48namespace std _GLIBCXX_VISIBILITY(default)
49{
50_GLIBCXX_BEGIN_NAMESPACE_VERSION
53dc5044 51
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52 /**
53 * @defgroup futures Futures
54 * @ingroup concurrency
55 *
56 * Classes for futures support.
57 * @{
58 */
59
60 /// Error code for futures
61 enum class future_errc
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62 {
63 broken_promise,
64 future_already_retrieved,
65 promise_already_satisfied,
66 no_state
67 };
c910ceff 68
94a86be0 69 /// Specialization.
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70 template<>
71 struct is_error_code_enum<future_errc> : public true_type { };
72
73 /// Points to a statically-allocated object derived from error_category.
94a86be0 74 const error_category&
84b63c01 75 future_category() noexcept;
c910ceff 76
94a86be0 77 /// Overload for make_error_code.
faa00511 78 inline error_code
84b63c01 79 make_error_code(future_errc __errc) noexcept
94a86be0 80 { return error_code(static_cast<int>(__errc), future_category()); }
c910ceff 81
94a86be0 82 /// Overload for make_error_condition.
faa00511 83 inline error_condition
84b63c01 84 make_error_condition(future_errc __errc) noexcept
94a86be0 85 { return error_condition(static_cast<int>(__errc), future_category()); }
c910ceff 86
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87 /**
88 * @brief Exception type thrown by futures.
89 * @ingroup exceptions
90 */
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91 class future_error : public logic_error
92 {
c36abf03 93 error_code _M_code;
8d1b99e2 94
c910ceff 95 public:
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96 explicit future_error(error_code __ec)
97 : logic_error("std::future_error"), _M_code(__ec)
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98 { }
99
84b63c01 100 virtual ~future_error() noexcept;
c910ceff 101
faa00511 102 virtual const char*
84b63c01 103 what() const noexcept;
c910ceff 104
faa00511 105 const error_code&
84b63c01 106 code() const noexcept { return _M_code; }
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107 };
108
3259554a 109 // Forward declarations.
c36abf03 110 template<typename _Res>
b3eed6fe 111 class future;
3259554a 112
c36abf03 113 template<typename _Res>
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114 class shared_future;
115
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116 template<typename _Res>
117 class atomic_future;
118
faa00511 119 template<typename _Signature>
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120 class packaged_task;
121
c36abf03 122 template<typename _Res>
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123 class promise;
124
94a86be0 125 /// Launch code for futures
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126 enum class launch
127 {
128 async = 1,
129 deferred = 2
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130 };
131
a4eeb822 132 constexpr launch operator&(launch __x, launch __y)
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133 {
134 return static_cast<launch>(
135 static_cast<int>(__x) & static_cast<int>(__y));
136 }
137
a4eeb822 138 constexpr launch operator|(launch __x, launch __y)
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139 {
140 return static_cast<launch>(
141 static_cast<int>(__x) | static_cast<int>(__y));
142 }
143
a4eeb822 144 constexpr launch operator^(launch __x, launch __y)
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145 {
146 return static_cast<launch>(
147 static_cast<int>(__x) ^ static_cast<int>(__y));
148 }
149
a4eeb822 150 constexpr launch operator~(launch __x)
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151 { return static_cast<launch>(~static_cast<int>(__x)); }
152
153 inline launch& operator&=(launch& __x, launch __y)
154 { return __x = __x & __y; }
155
156 inline launch& operator|=(launch& __x, launch __y)
157 { return __x = __x | __y; }
158
159 inline launch& operator^=(launch& __x, launch __y)
160 { return __x = __x ^ __y; }
161
94a86be0 162 /// Status code for futures
faa00511 163 enum class future_status
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164 {
165 ready,
166 timeout,
167 deferred
168 };
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169
170 template<typename _Fn, typename... _Args>
73c5c5bb 171 future<typename result_of<_Fn(_Args...)>::type>
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172 async(launch __policy, _Fn&& __fn, _Args&&... __args);
173
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174 template<typename _FnCheck, typename _Fn, typename... _Args>
175 struct __async_sfinae_helper
176 {
177 typedef future<typename result_of<_Fn(_Args...)>::type> type;
178 };
179
180 template<typename _Fn, typename... _Args>
181 struct __async_sfinae_helper<launch, _Fn, _Args...>
182 { };
183
b3eed6fe 184 template<typename _Fn, typename... _Args>
73c5c5bb 185 typename
be7f7822 186 __async_sfinae_helper<typename decay<_Fn>::type, _Fn, _Args...>::type
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187 async(_Fn&& __fn, _Args&&... __args);
188
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189#if defined(_GLIBCXX_HAS_GTHREADS) && defined(_GLIBCXX_USE_C99_STDINT_TR1) \
190 && defined(_GLIBCXX_ATOMIC_BUILTINS_4)
191
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192 /// Base class and enclosing scope.
193 struct __future_base
c910ceff 194 {
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195 /// Base class for results.
196 struct _Result_base
197 {
198 exception_ptr _M_error;
c910ceff 199
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200 _Result_base(const _Result_base&) = delete;
201 _Result_base& operator=(const _Result_base&) = delete;
c910ceff 202
b3eed6fe 203 // _M_destroy() allows derived classes to control deallocation
c36abf03 204 virtual void _M_destroy() = 0;
c910ceff 205
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206 struct _Deleter
207 {
208 void operator()(_Result_base* __fr) const { __fr->_M_destroy(); }
209 };
c910ceff 210
c36abf03 211 protected:
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212 _Result_base();
213 virtual ~_Result_base();
c36abf03 214 };
20f2653e 215
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216 /// Result.
217 template<typename _Res>
218 struct _Result : _Result_base
219 {
220 private:
221 typedef alignment_of<_Res> __a_of;
222 typedef aligned_storage<sizeof(_Res), __a_of::value> __align_storage;
223 typedef typename __align_storage::type __align_type;
224
225 __align_type _M_storage;
226 bool _M_initialized;
227
228 public:
84b63c01 229 _Result() noexcept : _M_initialized() { }
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230
231 ~_Result()
232 {
233 if (_M_initialized)
234 _M_value().~_Res();
235 }
236
237 // Return lvalue, future will add const or rvalue-reference
faa00511 238 _Res&
84b63c01 239 _M_value() noexcept { return *static_cast<_Res*>(_M_addr()); }
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240
241 void
242 _M_set(const _Res& __res)
243 {
244 ::new (_M_addr()) _Res(__res);
245 _M_initialized = true;
246 }
247
248 void
249 _M_set(_Res&& __res)
250 {
abcd7e08 251 ::new (_M_addr()) _Res(std::move(__res));
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252 _M_initialized = true;
253 }
254
255 private:
256 void _M_destroy() { delete this; }
257
84b63c01 258 void* _M_addr() noexcept { return static_cast<void*>(&_M_storage); }
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259 };
260
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261 // TODO: use template alias when available
262 /*
263 template<typename _Res>
264 using _Ptr = unique_ptr<_Res, _Result_base::_Deleter>;
265 */
266 /// A unique_ptr based on the instantiating type.
267 template<typename _Res>
268 struct _Ptr
269 {
270 typedef unique_ptr<_Res, _Result_base::_Deleter> type;
271 };
c910ceff 272
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273 /// Result_alloc.
274 template<typename _Res, typename _Alloc>
0fd76d8e 275 struct _Result_alloc : _Result<_Res>, _Alloc
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276 {
277 typedef typename _Alloc::template rebind<_Result_alloc>::other
278 __allocator_type;
279
280 explicit
0fd76d8e 281 _Result_alloc(const _Alloc& __a) : _Result<_Res>(), _Alloc(__a)
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282 { }
283
284 private:
285 void _M_destroy()
286 {
0fd76d8e 287 __allocator_type __a(*this);
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288 __a.destroy(this);
289 __a.deallocate(this, 1);
290 }
135a0d0a 291 };
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292
293 template<typename _Res, typename _Allocator>
294 static typename _Ptr<_Result_alloc<_Res, _Allocator>>::type
295 _S_allocate_result(const _Allocator& __a)
296 {
297 typedef _Result_alloc<_Res, _Allocator> __result_type;
298 typename __result_type::__allocator_type __a2(__a);
299 __result_type* __p = __a2.allocate(1);
300 __try
135a0d0a 301 {
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302 __a2.construct(__p, __a);
303 }
304 __catch(...)
305 {
306 __a2.deallocate(__p, 1);
307 __throw_exception_again;
308 }
309 return typename _Ptr<__result_type>::type(__p);
310 }
b3eed6fe 311
c910ceff 312
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313 /// Base class for state between a promise and one or more
314 /// associated futures.
315 class _State_base
c910ceff 316 {
c36abf03 317 typedef _Ptr<_Result_base>::type _Ptr_type;
c910ceff 318
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319 _Ptr_type _M_result;
320 mutex _M_mutex;
321 condition_variable _M_cond;
322 atomic_flag _M_retrieved;
b3eed6fe 323 once_flag _M_once;
c910ceff 324
c36abf03 325 public:
84b63c01 326 _State_base() noexcept : _M_result(), _M_retrieved(ATOMIC_FLAG_INIT) { }
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327 _State_base(const _State_base&) = delete;
328 _State_base& operator=(const _State_base&) = delete;
329 virtual ~_State_base();
c910ceff 330
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331 _Result_base&
332 wait()
c910ceff 333 {
b3eed6fe 334 _M_run_deferred();
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335 unique_lock<mutex> __lock(_M_mutex);
336 if (!_M_ready())
e9599233 337 _M_cond.wait(__lock, std::bind<bool>(&_State_base::_M_ready, this));
c36abf03 338 return *_M_result;
c910ceff 339 }
c910ceff 340
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341 template<typename _Rep, typename _Period>
342 bool
343 wait_for(const chrono::duration<_Rep, _Period>& __rel)
344 {
345 unique_lock<mutex> __lock(_M_mutex);
e9599233 346 auto __bound = std::bind<bool>(&_State_base::_M_ready, this);
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347 return _M_ready() || _M_cond.wait_for(__lock, __rel, __bound);
348 }
c910ceff 349
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350 template<typename _Clock, typename _Duration>
351 bool
352 wait_until(const chrono::time_point<_Clock, _Duration>& __abs)
353 {
354 unique_lock<mutex> __lock(_M_mutex);
e9599233 355 auto __bound = std::bind<bool>(&_State_base::_M_ready, this);
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356 return _M_ready() || _M_cond.wait_until(__lock, __abs, __bound);
357 }
c910ceff 358
c36abf03 359 void
b3eed6fe 360 _M_set_result(function<_Ptr_type()> __res, bool __ignore_failure = false)
c910ceff 361 {
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362 bool __set = __ignore_failure;
363 // all calls to this function are serialized,
364 // side-effects of invoking __res only happen once
e9599233 365 call_once(_M_once, &_State_base::_M_do_set, this, ref(__res),
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366 ref(__set));
367 if (!__set)
368 __throw_future_error(int(future_errc::promise_already_satisfied));
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369 }
370
c910ceff 371 void
c36abf03 372 _M_break_promise(_Ptr_type __res)
c910ceff 373 {
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374 if (static_cast<bool>(__res))
375 {
b3eed6fe 376 error_code __ec(make_error_code(future_errc::broken_promise));
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377 __res->_M_error = copy_exception(future_error(__ec));
378 {
379 lock_guard<mutex> __lock(_M_mutex);
380 _M_result.swap(__res);
381 }
382 _M_cond.notify_all();
383 }
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384 }
385
b3eed6fe 386 // Called when this object is passed to a future.
c910ceff 387 void
c36abf03 388 _M_set_retrieved_flag()
c910ceff 389 {
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390 if (_M_retrieved.test_and_set())
391 __throw_future_error(int(future_errc::future_already_retrieved));
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392 }
393
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394 template<typename _Res, typename _Arg>
395 struct _Setter;
396
397 // set lvalues
398 template<typename _Res, typename _Arg>
399 struct _Setter<_Res, _Arg&>
400 {
401 // check this is only used by promise<R>::set_value(const R&)
402 // or promise<R>::set_value(R&)
403 static_assert(is_same<_Res, _Arg&>::value // promise<R&>
404 || is_same<const _Res, _Arg>::value, // promise<R>
405 "Invalid specialisation");
406
407 typename promise<_Res>::_Ptr_type operator()()
408 {
e9599233 409 _State_base::_S_check(_M_promise->_M_future);
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410 _M_promise->_M_storage->_M_set(_M_arg);
411 return std::move(_M_promise->_M_storage);
412 }
413 promise<_Res>* _M_promise;
414 _Arg& _M_arg;
415 };
416
417 // set rvalues
418 template<typename _Res>
419 struct _Setter<_Res, _Res&&>
420 {
421 typename promise<_Res>::_Ptr_type operator()()
422 {
e9599233 423 _State_base::_S_check(_M_promise->_M_future);
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424 _M_promise->_M_storage->_M_set(std::move(_M_arg));
425 return std::move(_M_promise->_M_storage);
426 }
427 promise<_Res>* _M_promise;
428 _Res& _M_arg;
429 };
430
431 struct __exception_ptr_tag { };
432
433 // set exceptions
434 template<typename _Res>
435 struct _Setter<_Res, __exception_ptr_tag>
436 {
437 typename promise<_Res>::_Ptr_type operator()()
438 {
e9599233 439 _State_base::_S_check(_M_promise->_M_future);
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440 _M_promise->_M_storage->_M_error = _M_ex;
441 return std::move(_M_promise->_M_storage);
442 }
443
444 promise<_Res>* _M_promise;
445 exception_ptr& _M_ex;
446 };
447
448 template<typename _Res, typename _Arg>
449 static _Setter<_Res, _Arg&&>
450 __setter(promise<_Res>* __prom, _Arg&& __arg)
451 {
452 return _Setter<_Res, _Arg&&>{ __prom, __arg };
453 }
454
455 template<typename _Res>
456 static _Setter<_Res, __exception_ptr_tag>
457 __setter(exception_ptr& __ex, promise<_Res>* __prom)
458 {
459 return _Setter<_Res, __exception_ptr_tag>{ __prom, __ex };
460 }
461
462 static _Setter<void, void>
463 __setter(promise<void>* __prom);
464
465 template<typename _Tp>
466 static bool
467 _S_check(const shared_ptr<_Tp>& __p)
468 {
469 if (!static_cast<bool>(__p))
470 __throw_future_error((int)future_errc::no_state);
471 }
472
c910ceff 473 private:
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474 void
475 _M_do_set(function<_Ptr_type()>& __f, bool& __set)
c36abf03 476 {
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477 _Ptr_type __res = __f();
478 {
479 lock_guard<mutex> __lock(_M_mutex);
480 _M_result.swap(__res);
481 }
482 _M_cond.notify_all();
483 __set = true;
c36abf03 484 }
c910ceff 485
84b63c01 486 bool _M_ready() const noexcept { return static_cast<bool>(_M_result); }
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487
488 virtual void _M_run_deferred() { }
c910ceff 489 };
b3eed6fe 490
4880236e 491 template<typename _BoundFn, typename = typename _BoundFn::result_type>
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492 class _Deferred_state;
493
4880236e 494 template<typename _BoundFn, typename = typename _BoundFn::result_type>
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495 class _Async_state;
496
497 template<typename _Signature>
498 class _Task_state;
499
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500 template<typename _BoundFn>
501 static std::shared_ptr<_State_base>
502 _S_make_deferred_state(_BoundFn&& __fn);
503
504 template<typename _BoundFn>
505 static std::shared_ptr<_State_base>
506 _S_make_async_state(_BoundFn&& __fn);
507
508 template<typename _Res_ptr, typename _Res>
b3eed6fe 509 struct _Task_setter;
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510
511 template<typename _Res_ptr, typename _BoundFn>
512 class _Task_setter_helper
513 {
514 typedef typename remove_reference<_BoundFn>::type::result_type __res;
515 public:
516 typedef _Task_setter<_Res_ptr, __res> __type;
517 };
518
519 template<typename _Res_ptr, typename _BoundFn>
520 static typename _Task_setter_helper<_Res_ptr, _BoundFn>::__type
521 _S_task_setter(_Res_ptr& __ptr, _BoundFn&& __call)
522 {
523 typedef _Task_setter_helper<_Res_ptr, _BoundFn> __helper_type;
524 typedef typename __helper_type::__type _Setter;
525 return _Setter{ __ptr, std::ref(__call) };
526 }
c36abf03 527 };
c910ceff 528
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529 /// Partial specialization for reference types.
530 template<typename _Res>
531 struct __future_base::_Result<_Res&> : __future_base::_Result_base
532 {
84b63c01 533 _Result() noexcept : _M_value_ptr() { }
c910ceff 534
84b63c01 535 void _M_set(_Res& __res) noexcept { _M_value_ptr = &__res; }
b3eed6fe 536
84b63c01 537 _Res& _M_get() noexcept { return *_M_value_ptr; }
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538
539 private:
c36abf03 540 _Res* _M_value_ptr;
faa00511 541
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542 void _M_destroy() { delete this; }
543 };
544
c36abf03 545 /// Explicit specialization for void.
c910ceff 546 template<>
c36abf03 547 struct __future_base::_Result<void> : __future_base::_Result_base
c910ceff 548 {
c36abf03 549 private:
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550 void _M_destroy() { delete this; }
551 };
552
c36abf03 553
b3eed6fe 554 /// Common implementation for future and shared_future.
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555 template<typename _Res>
556 class __basic_future : public __future_base
c910ceff 557 {
c36abf03 558 protected:
e9599233 559 typedef shared_ptr<_State_base> __state_type;
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560 typedef __future_base::_Result<_Res>& __result_type;
561
562 private:
563 __state_type _M_state;
564
c910ceff 565 public:
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566 // Disable copying.
567 __basic_future(const __basic_future&) = delete;
568 __basic_future& operator=(const __basic_future&) = delete;
c910ceff 569
faa00511 570 bool
84b63c01 571 valid() const noexcept { return static_cast<bool>(_M_state); }
c910ceff 572
faa00511 573 void
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574 wait() const
575 {
e9599233 576 _State_base::_S_check(_M_state);
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577 _M_state->wait();
578 }
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579
580 template<typename _Rep, typename _Period>
581 bool
582 wait_for(const chrono::duration<_Rep, _Period>& __rel) const
5262c72a 583 {
e9599233 584 _State_base::_S_check(_M_state);
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585 return _M_state->wait_for(__rel);
586 }
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587
588 template<typename _Clock, typename _Duration>
589 bool
590 wait_until(const chrono::time_point<_Clock, _Duration>& __abs) const
5262c72a 591 {
e9599233 592 _State_base::_S_check(_M_state);
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593 return _M_state->wait_until(__abs);
594 }
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595
596 protected:
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597 /// Wait for the state to be ready and rethrow any stored exception
598 __result_type
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599 _M_get_result()
600 {
e9599233 601 _State_base::_S_check(_M_state);
b3eed6fe 602 _Result_base& __res = _M_state->wait();
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603 if (!(__res._M_error == 0))
604 rethrow_exception(__res._M_error);
c36abf03 605 return static_cast<__result_type>(__res);
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606 }
607
84b63c01 608 void _M_swap(__basic_future& __that) noexcept
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609 {
610 _M_state.swap(__that._M_state);
611 }
612
613 // Construction of a future by promise::get_future()
c910ceff 614 explicit
c36abf03 615 __basic_future(const __state_type& __state) : _M_state(__state)
c910ceff 616 {
e9599233 617 _State_base::_S_check(_M_state);
b3eed6fe 618 _M_state->_M_set_retrieved_flag();
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619 }
620
c36abf03 621 // Copy construction from a shared_future
c910ceff 622 explicit
84b63c01 623 __basic_future(const shared_future<_Res>&) noexcept;
c910ceff 624
b3eed6fe 625 // Move construction from a shared_future
c910ceff 626 explicit
84b63c01 627 __basic_future(shared_future<_Res>&&) noexcept;
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628
629 // Move construction from a future
630 explicit
84b63c01 631 __basic_future(future<_Res>&&) noexcept;
b3eed6fe 632
84b63c01 633 constexpr __basic_future() noexcept : _M_state() { }
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634
635 struct _Reset
636 {
84b63c01 637 explicit _Reset(__basic_future& __fut) noexcept : _M_fut(__fut) { }
b3eed6fe
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638 ~_Reset() { _M_fut._M_state.reset(); }
639 __basic_future& _M_fut;
640 };
c910ceff
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641 };
642
c36abf03 643
b3eed6fe 644 /// Primary template for future.
c36abf03 645 template<typename _Res>
b3eed6fe 646 class future : public __basic_future<_Res>
c910ceff 647 {
c36abf03 648 friend class promise<_Res>;
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649 template<typename> friend class packaged_task;
650 template<typename _Fn, typename... _Args>
73c5c5bb 651 friend future<typename result_of<_Fn(_Args...)>::type>
b3eed6fe 652 async(launch, _Fn&&, _Args&&...);
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653
654 typedef __basic_future<_Res> _Base_type;
655 typedef typename _Base_type::__state_type __state_type;
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656
657 explicit
b3eed6fe 658 future(const __state_type& __state) : _Base_type(__state) { }
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659
660 public:
84b63c01 661 constexpr future() noexcept : _Base_type() { }
b3eed6fe 662
c910ceff 663 /// Move constructor
84b63c01 664 future(future&& __uf) noexcept : _Base_type(std::move(__uf)) { }
c910ceff 665
c36abf03 666 // Disable copying
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667 future(const future&) = delete;
668 future& operator=(const future&) = delete;
669
84b63c01 670 future& operator=(future&& __fut) noexcept
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671 {
672 future(std::move(__fut))._M_swap(*this);
673 return *this;
674 }
c910ceff 675
c36abf03 676 /// Retrieving the value
b3eed6fe 677 _Res
c910ceff 678 get()
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679 {
680 typename _Base_type::_Reset __reset(*this);
681 return std::move(this->_M_get_result()._M_value());
682 }
e3e08a1d
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683
684 shared_future<_Res> share();
c910ceff 685 };
faa00511 686
b3eed6fe 687 /// Partial specialization for future<R&>
c36abf03 688 template<typename _Res>
b3eed6fe 689 class future<_Res&> : public __basic_future<_Res&>
c910ceff 690 {
c36abf03 691 friend class promise<_Res&>;
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692 template<typename> friend class packaged_task;
693 template<typename _Fn, typename... _Args>
73c5c5bb 694 friend future<typename result_of<_Fn(_Args...)>::type>
b3eed6fe 695 async(launch, _Fn&&, _Args&&...);
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696
697 typedef __basic_future<_Res&> _Base_type;
698 typedef typename _Base_type::__state_type __state_type;
699
700 explicit
b3eed6fe 701 future(const __state_type& __state) : _Base_type(__state) { }
c36abf03 702
c910ceff 703 public:
84b63c01 704 constexpr future() noexcept : _Base_type() { }
b3eed6fe 705
c910ceff 706 /// Move constructor
84b63c01 707 future(future&& __uf) noexcept : _Base_type(std::move(__uf)) { }
c910ceff 708
c36abf03 709 // Disable copying
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710 future(const future&) = delete;
711 future& operator=(const future&) = delete;
712
84b63c01 713 future& operator=(future&& __fut) noexcept
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714 {
715 future(std::move(__fut))._M_swap(*this);
716 return *this;
717 }
c910ceff 718
c36abf03 719 /// Retrieving the value
faa00511 720 _Res&
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721 get()
722 {
723 typename _Base_type::_Reset __reset(*this);
724 return this->_M_get_result()._M_get();
725 }
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726
727 shared_future<_Res&> share();
c36abf03 728 };
c910ceff 729
b3eed6fe 730 /// Explicit specialization for future<void>
c36abf03 731 template<>
b3eed6fe 732 class future<void> : public __basic_future<void>
c36abf03
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733 {
734 friend class promise<void>;
b3eed6fe
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735 template<typename> friend class packaged_task;
736 template<typename _Fn, typename... _Args>
73c5c5bb 737 friend future<typename result_of<_Fn(_Args...)>::type>
b3eed6fe 738 async(launch, _Fn&&, _Args&&...);
c910ceff 739
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740 typedef __basic_future<void> _Base_type;
741 typedef typename _Base_type::__state_type __state_type;
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742
743 explicit
b3eed6fe 744 future(const __state_type& __state) : _Base_type(__state) { }
c910ceff 745
c910ceff 746 public:
84b63c01 747 constexpr future() noexcept : _Base_type() { }
b3eed6fe 748
c910ceff 749 /// Move constructor
84b63c01 750 future(future&& __uf) noexcept : _Base_type(std::move(__uf)) { }
c910ceff 751
c36abf03 752 // Disable copying
b3eed6fe
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753 future(const future&) = delete;
754 future& operator=(const future&) = delete;
755
84b63c01 756 future& operator=(future&& __fut) noexcept
b3eed6fe
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757 {
758 future(std::move(__fut))._M_swap(*this);
759 return *this;
760 }
c910ceff 761
c36abf03 762 /// Retrieving the value
faa00511 763 void
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764 get()
765 {
766 typename _Base_type::_Reset __reset(*this);
767 this->_M_get_result();
768 }
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769
770 shared_future<void> share();
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771 };
772
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773
774 /// Primary template for shared_future.
775 template<typename _Res>
776 class shared_future : public __basic_future<_Res>
c910ceff 777 {
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778 typedef __basic_future<_Res> _Base_type;
779
c910ceff 780 public:
84b63c01 781 constexpr shared_future() noexcept : _Base_type() { }
b3eed6fe 782
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783 /// Copy constructor
784 shared_future(const shared_future& __sf) : _Base_type(__sf) { }
785
b3eed6fe 786 /// Construct from a future rvalue
84b63c01 787 shared_future(future<_Res>&& __uf) noexcept
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788 : _Base_type(std::move(__uf))
789 { }
790
b3eed6fe 791 /// Construct from a shared_future rvalue
84b63c01 792 shared_future(shared_future&& __sf) noexcept
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793 : _Base_type(std::move(__sf))
794 { }
795
796 shared_future& operator=(const shared_future& __sf)
797 {
798 shared_future(__sf)._M_swap(*this);
799 return *this;
800 }
801
84b63c01 802 shared_future& operator=(shared_future&& __sf) noexcept
b3eed6fe
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803 {
804 shared_future(std::move(__sf))._M_swap(*this);
805 return *this;
806 }
c910ceff 807
c36abf03
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808 /// Retrieving the value
809 const _Res&
c910ceff 810 get()
b3eed6fe 811 {
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812 typename _Base_type::__result_type __r = this->_M_get_result();
813 _Res& __rs(__r._M_value());
814 return __rs;
815 }
c910ceff 816 };
faa00511 817
c36abf03
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818 /// Partial specialization for shared_future<R&>
819 template<typename _Res>
820 class shared_future<_Res&> : public __basic_future<_Res&>
c910ceff 821 {
c36abf03
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822 typedef __basic_future<_Res&> _Base_type;
823
c910ceff 824 public:
84b63c01 825 constexpr shared_future() noexcept : _Base_type() { }
b3eed6fe 826
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827 /// Copy constructor
828 shared_future(const shared_future& __sf) : _Base_type(__sf) { }
829
b3eed6fe 830 /// Construct from a future rvalue
84b63c01 831 shared_future(future<_Res&>&& __uf) noexcept
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832 : _Base_type(std::move(__uf))
833 { }
834
b3eed6fe 835 /// Construct from a shared_future rvalue
84b63c01 836 shared_future(shared_future&& __sf) noexcept
b3eed6fe
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837 : _Base_type(std::move(__sf))
838 { }
839
840 shared_future& operator=(const shared_future& __sf)
841 {
842 shared_future(__sf)._M_swap(*this);
843 return *this;
844 }
845
84b63c01 846 shared_future& operator=(shared_future&& __sf) noexcept
b3eed6fe
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847 {
848 shared_future(std::move(__sf))._M_swap(*this);
849 return *this;
850 }
c910ceff 851
c36abf03 852 /// Retrieving the value
faa00511 853 _Res&
b3eed6fe 854 get() { return this->_M_get_result()._M_get(); }
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855 };
856
c36abf03 857 /// Explicit specialization for shared_future<void>
c910ceff 858 template<>
c36abf03 859 class shared_future<void> : public __basic_future<void>
c910ceff 860 {
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861 typedef __basic_future<void> _Base_type;
862
c910ceff 863 public:
84b63c01 864 constexpr shared_future() noexcept : _Base_type() { }
b3eed6fe 865
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866 /// Copy constructor
867 shared_future(const shared_future& __sf) : _Base_type(__sf) { }
868
b3eed6fe 869 /// Construct from a future rvalue
84b63c01 870 shared_future(future<void>&& __uf) noexcept
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871 : _Base_type(std::move(__uf))
872 { }
873
b3eed6fe 874 /// Construct from a shared_future rvalue
84b63c01 875 shared_future(shared_future&& __sf) noexcept
b3eed6fe
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876 : _Base_type(std::move(__sf))
877 { }
878
879 shared_future& operator=(const shared_future& __sf)
880 {
881 shared_future(__sf)._M_swap(*this);
882 return *this;
883 }
884
84b63c01 885 shared_future& operator=(shared_future&& __sf) noexcept
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886 {
887 shared_future(std::move(__sf))._M_swap(*this);
888 return *this;
889 }
c910ceff 890
c36abf03 891 // Retrieving the value
faa00511 892 void
c36abf03 893 get() { this->_M_get_result(); }
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894 };
895
c36abf03
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896 // Now we can define the protected __basic_future constructors.
897 template<typename _Res>
19501406 898 inline __basic_future<_Res>::
84b63c01 899 __basic_future(const shared_future<_Res>& __sf) noexcept
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900 : _M_state(__sf._M_state)
901 { }
902
c36abf03 903 template<typename _Res>
19501406 904 inline __basic_future<_Res>::
84b63c01 905 __basic_future(shared_future<_Res>&& __sf) noexcept
b3eed6fe
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906 : _M_state(std::move(__sf._M_state))
907 { }
908
909 template<typename _Res>
19501406 910 inline __basic_future<_Res>::
84b63c01 911 __basic_future(future<_Res>&& __uf) noexcept
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912 : _M_state(std::move(__uf._M_state))
913 { }
914
e3e08a1d
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915 template<typename _Res>
916 inline shared_future<_Res>
917 future<_Res>::share()
918 { return shared_future<_Res>(std::move(*this)); }
919
920 template<typename _Res>
921 inline shared_future<_Res&>
922 future<_Res&>::share()
923 { return shared_future<_Res&>(std::move(*this)); }
924
925 inline shared_future<void>
926 future<void>::share()
927 { return shared_future<void>(std::move(*this)); }
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928
929 /// Primary template for promise
930 template<typename _Res>
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931 class promise
932 {
e9599233
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933 typedef __future_base::_State_base _State;
934 typedef __future_base::_Result<_Res> _Res_type;
935 typedef typename __future_base::_Ptr<_Res_type>::type _Ptr_type;
b3eed6fe 936 template<typename, typename> friend class _State::_Setter;
faa00511 937
c36abf03 938 shared_ptr<_State> _M_future;
b3eed6fe 939 _Ptr_type _M_storage;
c36abf03 940
c910ceff
JW
941 public:
942 promise()
19501406
PC
943 : _M_future(std::make_shared<_State>()),
944 _M_storage(new _Res_type())
c910ceff
JW
945 { }
946
84b63c01 947 promise(promise&& __rhs) noexcept
c910ceff 948 : _M_future(std::move(__rhs._M_future)),
19501406 949 _M_storage(std::move(__rhs._M_storage))
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950 { }
951
c910ceff 952 template<typename _Allocator>
b3eed6fe
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953 promise(allocator_arg_t, const _Allocator& __a)
954 : _M_future(std::allocate_shared<_State>(__a)),
135a0d0a 955 _M_storage(__future_base::_S_allocate_result<_Res>(__a))
b3eed6fe 956 { }
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957
958 promise(const promise&) = delete;
959
960 ~promise()
961 {
962 if (static_cast<bool>(_M_future) && !_M_future.unique())
963 _M_future->_M_break_promise(std::move(_M_storage));
964 }
965
c36abf03 966 // Assignment
c910ceff 967 promise&
84b63c01 968 operator=(promise&& __rhs) noexcept
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969 {
970 promise(std::move(__rhs)).swap(*this);
971 return *this;
972 }
973
974 promise& operator=(const promise&) = delete;
975
976 void
84b63c01 977 swap(promise& __rhs) noexcept
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978 {
979 _M_future.swap(__rhs._M_future);
980 _M_storage.swap(__rhs._M_storage);
981 }
982
c36abf03 983 // Retrieving the result
b3eed6fe 984 future<_Res>
c910ceff 985 get_future()
b3eed6fe 986 { return future<_Res>(_M_future); }
c910ceff 987
c36abf03 988 // Setting the result
c910ceff 989 void
c36abf03 990 set_value(const _Res& __r)
c910ceff 991 {
b3eed6fe
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992 auto __setter = _State::__setter(this, __r);
993 _M_future->_M_set_result(std::move(__setter));
c910ceff
JW
994 }
995
996 void
c36abf03 997 set_value(_Res&& __r)
c910ceff 998 {
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999 auto __setter = _State::__setter(this, std::move(__r));
1000 _M_future->_M_set_result(std::move(__setter));
c910ceff
JW
1001 }
1002
1003 void
1004 set_exception(exception_ptr __p)
1005 {
b3eed6fe
JW
1006 auto __setter = _State::__setter(__p, this);
1007 _M_future->_M_set_result(std::move(__setter));
c910ceff 1008 }
c910ceff
JW
1009 };
1010
19501406
PC
1011 template<typename _Res>
1012 inline void
84b63c01 1013 swap(promise<_Res>& __x, promise<_Res>& __y) noexcept
19501406
PC
1014 { __x.swap(__y); }
1015
135a0d0a
PC
1016 template<typename _Res, typename _Alloc>
1017 struct uses_allocator<promise<_Res>, _Alloc>
1018 : public true_type { };
1019
1020
c36abf03
BK
1021 /// Partial specialization for promise<R&>
1022 template<typename _Res>
1023 class promise<_Res&>
c910ceff 1024 {
e9599233
BK
1025 typedef __future_base::_State_base _State;
1026 typedef __future_base::_Result<_Res&> _Res_type;
1027 typedef typename __future_base::_Ptr<_Res_type>::type _Ptr_type;
b3eed6fe 1028 template<typename, typename> friend class _State::_Setter;
c36abf03
BK
1029
1030 shared_ptr<_State> _M_future;
b3eed6fe 1031 _Ptr_type _M_storage;
c36abf03 1032
c910ceff
JW
1033 public:
1034 promise()
19501406
PC
1035 : _M_future(std::make_shared<_State>()),
1036 _M_storage(new _Res_type())
c910ceff
JW
1037 { }
1038
84b63c01 1039 promise(promise&& __rhs) noexcept
faa00511 1040 : _M_future(std::move(__rhs._M_future)),
c36abf03 1041 _M_storage(std::move(__rhs._M_storage))
c910ceff
JW
1042 { }
1043
c910ceff 1044 template<typename _Allocator>
b3eed6fe
JW
1045 promise(allocator_arg_t, const _Allocator& __a)
1046 : _M_future(std::allocate_shared<_State>(__a)),
135a0d0a 1047 _M_storage(__future_base::_S_allocate_result<_Res&>(__a))
b3eed6fe 1048 { }
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1049
1050 promise(const promise&) = delete;
1051
1052 ~promise()
1053 {
1054 if (static_cast<bool>(_M_future) && !_M_future.unique())
1055 _M_future->_M_break_promise(std::move(_M_storage));
1056 }
1057
c36abf03 1058 // Assignment
c910ceff 1059 promise&
84b63c01 1060 operator=(promise&& __rhs) noexcept
c910ceff
JW
1061 {
1062 promise(std::move(__rhs)).swap(*this);
1063 return *this;
1064 }
1065
1066 promise& operator=(const promise&) = delete;
1067
1068 void
84b63c01 1069 swap(promise& __rhs) noexcept
c910ceff
JW
1070 {
1071 _M_future.swap(__rhs._M_future);
1072 _M_storage.swap(__rhs._M_storage);
1073 }
1074
c36abf03 1075 // Retrieving the result
b3eed6fe 1076 future<_Res&>
c910ceff 1077 get_future()
b3eed6fe 1078 { return future<_Res&>(_M_future); }
c910ceff 1079
c36abf03 1080 // Setting the result
c910ceff 1081 void
c36abf03 1082 set_value(_Res& __r)
c910ceff 1083 {
b3eed6fe
JW
1084 auto __setter = _State::__setter(this, __r);
1085 _M_future->_M_set_result(std::move(__setter));
c910ceff
JW
1086 }
1087
1088 void
1089 set_exception(exception_ptr __p)
1090 {
b3eed6fe
JW
1091 auto __setter = _State::__setter(__p, this);
1092 _M_future->_M_set_result(std::move(__setter));
c910ceff 1093 }
c910ceff
JW
1094 };
1095
c36abf03 1096 /// Explicit specialization for promise<void>
c910ceff
JW
1097 template<>
1098 class promise<void>
1099 {
e9599233
BK
1100 typedef __future_base::_State_base _State;
1101 typedef __future_base::_Result<void> _Res_type;
1102 typedef typename __future_base::_Ptr<_Res_type>::type _Ptr_type;
b3eed6fe 1103 template<typename, typename> friend class _State::_Setter;
c36abf03 1104
b3eed6fe
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1105 shared_ptr<_State> _M_future;
1106 _Ptr_type _M_storage;
c36abf03 1107
c910ceff
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1108 public:
1109 promise()
c36abf03 1110 : _M_future(std::make_shared<_State>()),
b3eed6fe 1111 _M_storage(new _Res_type())
c910ceff
JW
1112 { }
1113
84b63c01 1114 promise(promise&& __rhs) noexcept
c910ceff 1115 : _M_future(std::move(__rhs._M_future)),
19501406 1116 _M_storage(std::move(__rhs._M_storage))
c910ceff
JW
1117 { }
1118
c910ceff 1119 template<typename _Allocator>
b3eed6fe
JW
1120 promise(allocator_arg_t, const _Allocator& __a)
1121 : _M_future(std::allocate_shared<_State>(__a)),
135a0d0a 1122 _M_storage(__future_base::_S_allocate_result<void>(__a))
b3eed6fe 1123 { }
c910ceff
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1124
1125 promise(const promise&) = delete;
1126
1127 ~promise()
1128 {
1129 if (static_cast<bool>(_M_future) && !_M_future.unique())
1130 _M_future->_M_break_promise(std::move(_M_storage));
1131 }
1132
c36abf03 1133 // Assignment
c910ceff 1134 promise&
84b63c01 1135 operator=(promise&& __rhs) noexcept
c910ceff
JW
1136 {
1137 promise(std::move(__rhs)).swap(*this);
1138 return *this;
1139 }
1140
1141 promise& operator=(const promise&) = delete;
1142
1143 void
84b63c01 1144 swap(promise& __rhs) noexcept
c910ceff
JW
1145 {
1146 _M_future.swap(__rhs._M_future);
1147 _M_storage.swap(__rhs._M_storage);
1148 }
1149
c36abf03 1150 // Retrieving the result
b3eed6fe 1151 future<void>
c910ceff 1152 get_future()
b3eed6fe 1153 { return future<void>(_M_future); }
c910ceff 1154
c36abf03 1155 // Setting the result
b3eed6fe
JW
1156 void set_value();
1157
c910ceff 1158 void
b3eed6fe 1159 set_exception(exception_ptr __p)
c910ceff 1160 {
b3eed6fe
JW
1161 auto __setter = _State::__setter(__p, this);
1162 _M_future->_M_set_result(std::move(__setter));
c910ceff 1163 }
b3eed6fe 1164 };
c910ceff 1165
b3eed6fe
JW
1166 // set void
1167 template<>
e9599233 1168 struct __future_base::_State_base::_Setter<void, void>
b3eed6fe
JW
1169 {
1170 promise<void>::_Ptr_type operator()()
c910ceff 1171 {
e9599233 1172 _State_base::_S_check(_M_promise->_M_future);
b3eed6fe 1173 return std::move(_M_promise->_M_storage);
c910ceff
JW
1174 }
1175
b3eed6fe 1176 promise<void>* _M_promise;
c910ceff
JW
1177 };
1178
e9599233
BK
1179 inline __future_base::_State_base::_Setter<void, void>
1180 __future_base::_State_base::__setter(promise<void>* __prom)
b3eed6fe
JW
1181 {
1182 return _Setter<void, void>{ __prom };
1183 }
1184
1185 inline void
1186 promise<void>::set_value()
1187 {
1188 auto __setter = _State::__setter(this);
1189 _M_future->_M_set_result(std::move(__setter));
1190 }
1191
b3eed6fe 1192
4880236e 1193 template<typename _Ptr_type, typename _Res>
b3eed6fe 1194 struct __future_base::_Task_setter
c910ceff 1195 {
4880236e 1196 _Ptr_type operator()()
c910ceff 1197 {
19501406
PC
1198 __try
1199 {
4880236e 1200 _M_result->_M_set(_M_fn());
19501406
PC
1201 }
1202 __catch(...)
1203 {
4880236e 1204 _M_result->_M_error = current_exception();
19501406 1205 }
4880236e 1206 return std::move(_M_result);
c910ceff 1207 }
4880236e 1208 _Ptr_type& _M_result;
b3eed6fe 1209 std::function<_Res()> _M_fn;
c910ceff
JW
1210 };
1211
4880236e
JW
1212 template<typename _Ptr_type>
1213 struct __future_base::_Task_setter<_Ptr_type, void>
c910ceff 1214 {
4880236e 1215 _Ptr_type operator()()
c910ceff 1216 {
19501406
PC
1217 __try
1218 {
1219 _M_fn();
1220 }
1221 __catch(...)
1222 {
4880236e 1223 _M_result->_M_error = current_exception();
19501406 1224 }
4880236e 1225 return std::move(_M_result);
c910ceff 1226 }
4880236e 1227 _Ptr_type& _M_result;
b3eed6fe 1228 std::function<void()> _M_fn;
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1229 };
1230
b3eed6fe 1231 template<typename _Res, typename... _Args>
faa00511 1232 struct __future_base::_Task_state<_Res(_Args...)>
e9599233 1233 : __future_base::_State_base
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1234 {
1235 typedef _Res _Res_type;
1236
1237 _Task_state(std::function<_Res(_Args...)> __task)
1238 : _M_result(new _Result<_Res>()), _M_task(std::move(__task))
1239 { }
1240
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1241 template<typename _Func, typename _Alloc>
1242 _Task_state(_Func&& __task, const _Alloc& __a)
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1243 : _M_result(_S_allocate_result<_Res>(__a)),
1244 _M_task(allocator_arg, __a, std::move(__task))
b3eed6fe 1245 { }
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1246
1247 void
1248 _M_run(_Args... __args)
1249 {
1250 // bound arguments decay so wrap lvalue references
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1251 auto __boundfn = std::__bind_simple(std::ref(_M_task),
1252 _S_maybe_wrap_ref(std::forward<_Args>(__args))...);
1253 auto __setter = _S_task_setter(_M_result, std::move(__boundfn));
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1254 _M_set_result(std::move(__setter));
1255 }
1256
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1257 typedef typename __future_base::_Ptr<_Result<_Res>>::type _Ptr_type;
1258 _Ptr_type _M_result;
1259 std::function<_Res(_Args...)> _M_task;
1260
1261 template<typename _Tp>
1262 static reference_wrapper<_Tp>
1263 _S_maybe_wrap_ref(_Tp& __t)
1264 { return std::ref(__t); }
1265
1266 template<typename _Tp>
1267 static typename enable_if<!is_lvalue_reference<_Tp>::value,
1268 _Tp>::type&&
1269 _S_maybe_wrap_ref(_Tp&& __t)
1270 { return std::forward<_Tp>(__t); }
1271 };
c36abf03 1272
3259554a 1273 /// packaged_task
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1274 template<typename _Res, typename... _ArgTypes>
1275 class packaged_task<_Res(_ArgTypes...)>
c910ceff 1276 {
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1277 typedef __future_base::_Task_state<_Res(_ArgTypes...)> _State_type;
1278 shared_ptr<_State_type> _M_state;
c36abf03 1279
c910ceff 1280 public:
c36abf03 1281 // Construction and destruction
84b63c01 1282 packaged_task() noexcept { }
c910ceff 1283
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1284 template<typename _Fn>
1285 explicit
b3eed6fe 1286 packaged_task(_Fn&& __fn)
e3e08a1d 1287 : _M_state(std::make_shared<_State_type>(std::forward<_Fn>(__fn)))
b3eed6fe 1288 { }
c910ceff 1289
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1290 template<typename _Fn, typename _Allocator>
1291 explicit
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1292 packaged_task(allocator_arg_t, const _Allocator& __a, _Fn&& __fn)
1293 : _M_state(std::allocate_shared<_State_type>(__a,
1294 std::forward<_Fn>(__fn)))
c910ceff 1295 { }
c910ceff 1296
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1297 ~packaged_task()
1298 {
1299 if (static_cast<bool>(_M_state) && !_M_state.unique())
1300 _M_state->_M_break_promise(std::move(_M_state->_M_result));
1301 }
c910ceff 1302
c36abf03 1303 // No copy
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1304 packaged_task(packaged_task&) = delete;
1305 packaged_task& operator=(packaged_task&) = delete;
1306
c36abf03 1307 // Move support
84b63c01 1308 packaged_task(packaged_task&& __other) noexcept
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1309 { this->swap(__other); }
1310
84b63c01 1311 packaged_task& operator=(packaged_task&& __other) noexcept
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1312 {
1313 packaged_task(std::move(__other)).swap(*this);
1314 return *this;
1315 }
1316
1317 void
84b63c01 1318 swap(packaged_task& __other) noexcept
b3eed6fe 1319 { _M_state.swap(__other._M_state); }
c910ceff 1320
7a0269de 1321 bool
84b63c01 1322 valid() const noexcept
7a0269de 1323 { return static_cast<bool>(_M_state); }
c910ceff 1324
c36abf03 1325 // Result retrieval
b3eed6fe 1326 future<_Res>
c910ceff 1327 get_future()
b3eed6fe 1328 { return future<_Res>(_M_state); }
c910ceff 1329
c36abf03 1330 // Execution
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1331 void
1332 operator()(_ArgTypes... __args)
1333 {
e9599233 1334 __future_base::_State_base::_S_check(_M_state);
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1335 _M_state->_M_run(std::forward<_ArgTypes>(__args)...);
1336 }
8d1b99e2 1337
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1338 void
1339 reset()
1340 {
e9599233 1341 __future_base::_State_base::_S_check(_M_state);
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1342 packaged_task(std::move(_M_state->_M_task)).swap(*this);
1343 }
1344 };
1345
94a86be0 1346 /// swap
19501406 1347 template<typename _Res, typename... _ArgTypes>
4e4d27aa 1348 inline void
19501406 1349 swap(packaged_task<_Res(_ArgTypes...)>& __x,
84b63c01 1350 packaged_task<_Res(_ArgTypes...)>& __y) noexcept
19501406 1351 { __x.swap(__y); }
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1352
1353 template<typename _Res, typename _Alloc>
1354 struct uses_allocator<packaged_task<_Res>, _Alloc>
1355 : public true_type { };
1356
1357
4880236e 1358 template<typename _BoundFn, typename _Res>
e9599233 1359 class __future_base::_Deferred_state : public __future_base::_State_base
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1360 {
1361 public:
b3eed6fe 1362 explicit
4880236e 1363 _Deferred_state(_BoundFn&& __fn)
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1364 : _M_result(new _Result<_Res>()), _M_fn(std::move(__fn))
1365 { }
1366
1367 private:
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1368 typedef typename __future_base::_Ptr<_Result<_Res>>::type _Ptr_type;
1369 _Ptr_type _M_result;
4880236e 1370 _BoundFn _M_fn;
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1371
1372 virtual void
1373 _M_run_deferred()
1374 {
b3eed6fe 1375 // safe to call multiple times so ignore failure
4880236e 1376 _M_set_result(_S_task_setter(_M_result, _M_fn), true);
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1377 }
1378 };
1379
4880236e 1380 template<typename _BoundFn, typename _Res>
e9599233 1381 class __future_base::_Async_state : public __future_base::_State_base
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1382 {
1383 public:
faa00511 1384 explicit
4880236e 1385 _Async_state(_BoundFn&& __fn)
b3eed6fe 1386 : _M_result(new _Result<_Res>()), _M_fn(std::move(__fn)),
19501406 1387 _M_thread(mem_fn(&_Async_state::_M_do_run), this)
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1388 { }
1389
1390 ~_Async_state() { _M_thread.join(); }
1391
1392 private:
1393 void _M_do_run()
1394 {
4880236e 1395 _M_set_result(_S_task_setter(_M_result, _M_fn));
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1396 }
1397
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1398 typedef typename __future_base::_Ptr<_Result<_Res>>::type _Ptr_type;
1399 _Ptr_type _M_result;
4880236e 1400 _BoundFn _M_fn;
b3eed6fe 1401 thread _M_thread;
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1402 };
1403
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1404 template<typename _BoundFn>
1405 inline std::shared_ptr<__future_base::_State_base>
1406 __future_base::_S_make_deferred_state(_BoundFn&& __fn)
1407 {
1408 typedef typename remove_reference<_BoundFn>::type __fn_type;
1409 typedef _Deferred_state<__fn_type> __state_type;
1410 return std::make_shared<__state_type>(std::move(__fn));
1411 }
1412
1413 template<typename _BoundFn>
1414 inline std::shared_ptr<__future_base::_State_base>
1415 __future_base::_S_make_async_state(_BoundFn&& __fn)
1416 {
1417 typedef typename remove_reference<_BoundFn>::type __fn_type;
1418 typedef _Async_state<__fn_type> __state_type;
1419 return std::make_shared<__state_type>(std::move(__fn));
1420 }
1421
1422
faa00511 1423 /// async
b3eed6fe 1424 template<typename _Fn, typename... _Args>
73c5c5bb 1425 future<typename result_of<_Fn(_Args...)>::type>
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1426 async(launch __policy, _Fn&& __fn, _Args&&... __args)
1427 {
73c5c5bb 1428 typedef typename result_of<_Fn(_Args...)>::type result_type;
e9599233 1429 std::shared_ptr<__future_base::_State_base> __state;
faa00511 1430 if ((__policy & (launch::async|launch::deferred)) == launch::async)
19501406 1431 {
4880236e 1432 __state = __future_base::_S_make_async_state(std::__bind_simple(
b3eed6fe 1433 std::forward<_Fn>(__fn), std::forward<_Args>(__args)...));
19501406 1434 }
b3eed6fe 1435 else
19501406 1436 {
4880236e 1437 __state = __future_base::_S_make_deferred_state(std::__bind_simple(
b3eed6fe 1438 std::forward<_Fn>(__fn), std::forward<_Args>(__args)...));
19501406 1439 }
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1440 return future<result_type>(__state);
1441 }
1442
94a86be0 1443 /// async, potential overload
b3eed6fe 1444 template<typename _Fn, typename... _Args>
73c5c5bb 1445 inline typename
be7f7822 1446 __async_sfinae_helper<typename decay<_Fn>::type, _Fn, _Args...>::type
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1447 async(_Fn&& __fn, _Args&&... __args)
1448 {
faa00511 1449 return async(launch::async|launch::deferred, std::forward<_Fn>(__fn),
19501406 1450 std::forward<_Args>(__args)...);
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1451 }
1452
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1453#endif // _GLIBCXX_HAS_GTHREADS && _GLIBCXX_USE_C99_STDINT_TR1
1454 // && _GLIBCXX_ATOMIC_BUILTINS_4
1455
41ca4246 1456 // @} group futures
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1457_GLIBCXX_END_NAMESPACE_VERSION
1458} // namespace
41ca4246 1459
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1460#endif // __GXX_EXPERIMENTAL_CXX0X__
1461
1462#endif // _GLIBCXX_FUTURE