libstdc++
atomic_timed_wait.h
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1// -*- C++ -*- header.
2
3// Copyright (C) 2020-2025 Free Software Foundation, Inc.
4//
5// This file is part of the GNU ISO C++ Library. This library is free
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18// 3.1, as published by the Free Software Foundation.
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24
25/** @file bits/atomic_timed_wait.h
26 * This is an internal header file, included by other library headers.
27 * Do not attempt to use it directly. @headername{atomic}
28 */
29
30#ifndef _GLIBCXX_ATOMIC_TIMED_WAIT_H
31#define _GLIBCXX_ATOMIC_TIMED_WAIT_H 1
32
33#ifdef _GLIBCXX_SYSHDR
34#pragma GCC system_header
35#endif
36
37#include <bits/atomic_wait.h>
38
39#if __glibcxx_atomic_wait
41#include <bits/chrono.h>
42
43#ifdef _GLIBCXX_HAVE_LINUX_FUTEX
44#include <sys/time.h>
45#endif
46
47namespace std _GLIBCXX_VISIBILITY(default)
48{
49_GLIBCXX_BEGIN_NAMESPACE_VERSION
50
51 namespace __detail
52 {
53 using __wait_clock_t = chrono::steady_clock;
54
55 template<typename _Clock, typename _Dur>
56 __wait_clock_t::time_point
57 __to_wait_clock(const chrono::time_point<_Clock, _Dur>& __atime) noexcept
58 {
59 const typename _Clock::time_point __c_entry = _Clock::now();
60 const __wait_clock_t::time_point __w_entry = __wait_clock_t::now();
61 const auto __delta = __atime - __c_entry;
62 using __w_dur = typename __wait_clock_t::duration;
63 return __w_entry + chrono::ceil<__w_dur>(__delta);
64 }
65
66 template<typename _Dur>
67 __wait_clock_t::time_point
68 __to_wait_clock(const chrono::time_point<__wait_clock_t,
69 _Dur>& __atime) noexcept
70 {
71 using __w_dur = typename __wait_clock_t::duration;
72 if constexpr (is_same_v<__w_dur, _Dur>)
73 return __atime;
74 else
75 return chrono::ceil<__w_dur>(__atime);
76 }
77
78 // This uses a nanoseconds duration for the timeout argument.
79 // For __abi_version=0 that is the time since the steady_clock's epoch.
80 // It's possible that in future we will add new __wait_flags constants
81 // to indicate that the timeout is the time since the system_clock epoch,
82 // or is a relative timeout not an absolute time.
83 __wait_result_type
84 __wait_until_impl(const void* __addr, __wait_args_base& __args,
85 const chrono::nanoseconds& __timeout);
86
87 template<typename _Clock, typename _Dur>
88 __wait_result_type
89 __wait_until(const void* __addr, __wait_args_base& __args,
90 const chrono::time_point<_Clock, _Dur>& __atime) noexcept
91 {
92 auto __at = __detail::__to_wait_clock(__atime);
93 auto __res = __detail::__wait_until_impl(__addr, __args,
94 __at.time_since_epoch());
95
96 if constexpr (!is_same_v<__wait_clock_t, _Clock>)
97 if (__res._M_timeout)
98 {
99 // We got a timeout when measured against __clock_t but
100 // we need to check against the caller-supplied clock
101 // to tell whether we should return a timeout.
102 if (_Clock::now() < __atime)
103 __res._M_timeout = false;
104 }
105 return __res;
106 }
107
108 template<typename _Rep, typename _Period>
109 __wait_result_type
110 __wait_for(const void* __addr, __wait_args_base& __args,
111 const chrono::duration<_Rep, _Period>& __rtime) noexcept
112 {
113 if (!__rtime.count())
114 {
115 // no rtime supplied, just spin a bit
116 __args._M_flags |= __wait_flags::__do_spin | __wait_flags::__spin_only;
117 return __detail::__wait_impl(__addr, __args);
118 }
119
120 auto const __reltime = chrono::ceil<__wait_clock_t::duration>(__rtime);
121 auto const __atime = chrono::steady_clock::now() + __reltime;
122 return __detail::__wait_until(__addr, __args, __atime);
123 }
124 } // namespace __detail
125
126 // returns true if wait ended before timeout
127 template<typename _Tp,
128 typename _Pred, typename _ValFn,
129 typename _Clock, typename _Dur>
130 bool
131 __atomic_wait_address_until(const _Tp* __addr, _Pred&& __pred,
132 _ValFn&& __vfn,
134 bool __bare_wait = false) noexcept
135 {
136 __detail::__wait_args __args{ __addr, __bare_wait };
137 _Tp __val = __args._M_setup_wait(__addr, __vfn);
138 while (!__pred(__val))
139 {
140 auto __res = __detail::__wait_until(__addr, __args, __atime);
141 if (__res._M_timeout)
142 return false; // C++26 will also return last observed __val
143 __val = __args._M_setup_wait(__addr, __vfn, __res);
144 }
145 return true; // C++26 will also return last observed __val
146 }
147
148 template<typename _Clock, typename _Dur>
149 bool
150 __atomic_wait_address_until_v(const __detail::__platform_wait_t* __addr,
151 __detail::__platform_wait_t __old,
152 int __order,
154 bool __bare_wait = false) noexcept
155 {
156 // This function must not be used if __wait_impl might use a proxy wait:
157 __glibcxx_assert(__platform_wait_uses_type<__detail::__platform_wait_t>);
158
159 __detail::__wait_args __args{ __addr, __old, __order, __bare_wait };
160 auto __res = __detail::__wait_until(__addr, __args, __atime);
161 return !__res._M_timeout; // C++26 will also return last observed __val
162 }
163
164 template<typename _Tp, typename _ValFn,
165 typename _Clock, typename _Dur>
166 bool
167 __atomic_wait_address_until_v(const _Tp* __addr, _Tp&& __old,
168 _ValFn&& __vfn,
170 bool __bare_wait = false) noexcept
171 {
172 auto __pfn = [&](const _Tp& __val) {
173 return !__detail::__atomic_eq(__old, __val);
174 };
175 return std::__atomic_wait_address_until(__addr, __pfn, __vfn, __atime,
176 __bare_wait);
177 }
178
179 template<typename _Tp,
180 typename _Pred, typename _ValFn,
181 typename _Rep, typename _Period>
182 bool
183 __atomic_wait_address_for(const _Tp* __addr, _Pred&& __pred,
184 _ValFn&& __vfn,
185 const chrono::duration<_Rep, _Period>& __rtime,
186 bool __bare_wait = false) noexcept
187 {
188 __detail::__wait_args __args{ __addr, __bare_wait };
189 _Tp __val = __args._M_setup_wait(__addr, __vfn);
190 while (!__pred(__val))
191 {
192 auto __res = __detail::__wait_for(__addr, __args, __rtime);
193 if (__res._M_timeout)
194 return false; // C++26 will also return last observed __val
195 __val = __args._M_setup_wait(__addr, __vfn);
196 }
197 return true; // C++26 will also return last observed __val
198 }
199
200 template<typename _Rep, typename _Period>
201 bool
202 __atomic_wait_address_for_v(const __detail::__platform_wait_t* __addr,
203 __detail::__platform_wait_t __old,
204 int __order,
205 const chrono::duration<_Rep, _Period>& __rtime,
206 bool __bare_wait = false) noexcept
207 {
208 // This function must not be used if __wait_impl might use a proxy wait:
209 __glibcxx_assert(__platform_wait_uses_type<__detail::__platform_wait_t>);
210
211 __detail::__wait_args __args{ __addr, __old, __order, __bare_wait };
212 auto __res = __detail::__wait_for(__addr, __args, __rtime);
213 return !__res._M_timeout; // C++26 will also return last observed __val
214 }
215
216 template<typename _Tp, typename _ValFn,
217 typename _Rep, typename _Period>
218 bool
219 __atomic_wait_address_for_v(const _Tp* __addr, _Tp&& __old, _ValFn&& __vfn,
220 const chrono::duration<_Rep, _Period>& __rtime,
221 bool __bare_wait = false) noexcept
222 {
223 auto __pfn = [&](const _Tp& __val) {
224 return !__detail::__atomic_eq(__old, __val);
225 };
226 return __atomic_wait_address_for(__addr, __pfn, forward<_ValFn>(__vfn),
227 __rtime, __bare_wait);
228 }
229_GLIBCXX_END_NAMESPACE_VERSION
230} // namespace std
231#endif // __cpp_lib_atomic_wait
232#endif // _GLIBCXX_ATOMIC_TIMED_WAIT_H
duration< int64_t, nano > nanoseconds
nanoseconds
Definition chrono.h:892
constexpr __enable_if_is_duration< _ToDur > ceil(const duration< _Rep, _Period > &__d)
Definition chrono.h:412
constexpr _Tp && forward(typename std::remove_reference< _Tp >::type &__t) noexcept
Forward an lvalue.
Definition move.h:72
ISO C++ entities toplevel namespace is std.
Implementation details not part of the namespace std interface.
chrono::duration represents a distance between two points in time
Definition chrono.h:516
chrono::time_point represents a point in time as measured by a clock
Definition chrono.h:927