29#ifndef _GLIBCXX_SHARED_MUTEX
30#define _GLIBCXX_SHARED_MUTEX 1
33#pragma GCC system_header
38#if __cplusplus >= 201402L
46#define __glibcxx_want_shared_mutex
47#define __glibcxx_want_shared_timed_mutex
50#if ! (_GLIBCXX_USE_PTHREAD_RWLOCK_T && _GTHREAD_USE_MUTEX_TIMEDLOCK)
54namespace std _GLIBCXX_VISIBILITY(default)
56_GLIBCXX_BEGIN_NAMESPACE_VERSION
63#ifdef _GLIBCXX_HAS_GTHREADS
65#ifdef __cpp_lib_shared_mutex
73#if _GLIBCXX_USE_PTHREAD_RWLOCK_T
75#define _GLIBCXX_GTHRW(name) \
76 __gthrw(pthread_ ## name); \
78 __glibcxx_ ## name (pthread_rwlock_t *__rwlock) \
80 if (__gthread_active_p ()) \
81 return __gthrw_(pthread_ ## name) (__rwlock); \
85 _GLIBCXX_GTHRW(rwlock_rdlock)
86 _GLIBCXX_GTHRW(rwlock_tryrdlock)
87 _GLIBCXX_GTHRW(rwlock_wrlock)
88 _GLIBCXX_GTHRW(rwlock_trywrlock)
89 _GLIBCXX_GTHRW(rwlock_unlock)
90# ifndef PTHREAD_RWLOCK_INITIALIZER
91 _GLIBCXX_GTHRW(rwlock_destroy)
92 __gthrw(pthread_rwlock_init);
94 __glibcxx_rwlock_init (pthread_rwlock_t *__rwlock)
96 if (__gthread_active_p ())
97 return __gthrw_(pthread_rwlock_init) (__rwlock, NULL);
102# if _GTHREAD_USE_MUTEX_TIMEDLOCK
103 __gthrw(pthread_rwlock_timedrdlock);
105 __glibcxx_rwlock_timedrdlock (pthread_rwlock_t *__rwlock,
106 const timespec *__ts)
108 if (__gthread_active_p ())
109 return __gthrw_(pthread_rwlock_timedrdlock) (__rwlock, __ts);
113 __gthrw(pthread_rwlock_timedwrlock);
115 __glibcxx_rwlock_timedwrlock (pthread_rwlock_t *__rwlock,
116 const timespec *__ts)
118 if (__gthread_active_p ())
119 return __gthrw_(pthread_rwlock_timedwrlock) (__rwlock, __ts);
126 __glibcxx_rwlock_rdlock (pthread_rwlock_t *__rwlock)
127 {
return pthread_rwlock_rdlock (__rwlock); }
129 __glibcxx_rwlock_tryrdlock (pthread_rwlock_t *__rwlock)
130 {
return pthread_rwlock_tryrdlock (__rwlock); }
132 __glibcxx_rwlock_wrlock (pthread_rwlock_t *__rwlock)
133 {
return pthread_rwlock_wrlock (__rwlock); }
135 __glibcxx_rwlock_trywrlock (pthread_rwlock_t *__rwlock)
136 {
return pthread_rwlock_trywrlock (__rwlock); }
138 __glibcxx_rwlock_unlock (pthread_rwlock_t *__rwlock)
139 {
return pthread_rwlock_unlock (__rwlock); }
141 __glibcxx_rwlock_destroy(pthread_rwlock_t *__rwlock)
142 {
return pthread_rwlock_destroy (__rwlock); }
144 __glibcxx_rwlock_init(pthread_rwlock_t *__rwlock)
145 {
return pthread_rwlock_init (__rwlock, NULL); }
146# if _GTHREAD_USE_MUTEX_TIMEDLOCK
148 __glibcxx_rwlock_timedrdlock (pthread_rwlock_t *__rwlock,
149 const timespec *__ts)
150 {
return pthread_rwlock_timedrdlock (__rwlock, __ts); }
152 __glibcxx_rwlock_timedwrlock (pthread_rwlock_t *__rwlock,
153 const timespec *__ts)
154 {
return pthread_rwlock_timedwrlock (__rwlock, __ts); }
159 class __shared_mutex_pthread
161 friend class shared_timed_mutex;
163#ifdef PTHREAD_RWLOCK_INITIALIZER
164 pthread_rwlock_t _M_rwlock = PTHREAD_RWLOCK_INITIALIZER;
167 __shared_mutex_pthread() =
default;
168 ~__shared_mutex_pthread() =
default;
170 pthread_rwlock_t _M_rwlock;
173 __shared_mutex_pthread()
175 int __ret = __glibcxx_rwlock_init(&_M_rwlock);
178 else if (__ret == EAGAIN)
179 __throw_system_error(
int(errc::resource_unavailable_try_again));
180 else if (__ret == EPERM)
181 __throw_system_error(
int(errc::operation_not_permitted));
183 __glibcxx_assert(__ret == 0);
186 ~__shared_mutex_pthread()
188 int __ret __attribute((__unused__)) = __glibcxx_rwlock_destroy(&_M_rwlock);
190 __glibcxx_assert(__ret == 0);
194 __shared_mutex_pthread(
const __shared_mutex_pthread&) =
delete;
195 __shared_mutex_pthread& operator=(
const __shared_mutex_pthread&) =
delete;
200 int __ret = __glibcxx_rwlock_wrlock(&_M_rwlock);
201 if (__ret == EDEADLK)
202 __throw_system_error(
int(errc::resource_deadlock_would_occur));
204 __glibcxx_assert(__ret == 0);
210 int __ret = __glibcxx_rwlock_trywrlock(&_M_rwlock);
216 __glibcxx_assert(__ret == 0);
224 int __ret __attribute((__unused__)) = __glibcxx_rwlock_unlock(&_M_rwlock);
226 __glibcxx_assert(__ret == 0);
240 __ret = __glibcxx_rwlock_rdlock(&_M_rwlock);
241 while (__ret == EAGAIN);
242 if (__ret == EDEADLK)
243 __throw_system_error(
int(errc::resource_deadlock_would_occur));
245 __glibcxx_assert(__ret == 0);
251 int __ret = __glibcxx_rwlock_tryrdlock(&_M_rwlock);
255 if (__ret == EBUSY || __ret == EAGAIN)
return false;
257 __glibcxx_assert(__ret == 0);
267 void* native_handle() {
return &_M_rwlock; }
271#if ! (_GLIBCXX_USE_PTHREAD_RWLOCK_T && _GTHREAD_USE_MUTEX_TIMEDLOCK)
273 class __shared_mutex_cv
275 friend class shared_timed_mutex;
305 condition_variable _M_gate1;
307 condition_variable _M_gate2;
311 static constexpr unsigned _S_write_entered
312 = 1U << (
sizeof(unsigned)*__CHAR_BIT__ - 1);
313 static constexpr unsigned _S_max_readers = ~_S_write_entered;
316 bool _M_write_entered()
const {
return _M_state & _S_write_entered; }
319 unsigned _M_readers()
const {
return _M_state & _S_max_readers; }
322 __shared_mutex_cv() : _M_state(0) {}
326 __glibcxx_assert( _M_state == 0 );
329 __shared_mutex_cv(
const __shared_mutex_cv&) =
delete;
330 __shared_mutex_cv& operator=(
const __shared_mutex_cv&) =
delete;
337 unique_lock<mutex> __lk(_M_mut);
339 _M_gate1.wait(__lk, [
this]{
return !_M_write_entered(); });
340 _M_state |= _S_write_entered;
342 _M_gate2.wait(__lk, [
this]{
return _M_readers() == 0; });
348 unique_lock<mutex> __lk(_M_mut, try_to_lock);
349 if (__lk.owns_lock() && _M_state == 0)
351 _M_state = _S_write_entered;
360 lock_guard<mutex> __lk(_M_mut);
361 __glibcxx_assert( _M_write_entered() );
365 _M_gate1.notify_all();
373 unique_lock<mutex> __lk(_M_mut);
374 _M_gate1.wait(__lk, [
this]{
return _M_state < _S_max_readers; });
381 unique_lock<mutex> __lk(_M_mut, try_to_lock);
382 if (!__lk.owns_lock())
384 if (_M_state < _S_max_readers)
395 lock_guard<mutex> __lk(_M_mut);
396 __glibcxx_assert( _M_readers() > 0 );
397 auto __prev = _M_state--;
398 if (_M_write_entered())
401 if (_M_readers() == 0)
402 _M_gate2.notify_one();
410 if (__prev == _S_max_readers)
411 _M_gate1.notify_one();
418#ifdef __cpp_lib_shared_mutex
423 shared_mutex() =
default;
424 ~shared_mutex() =
default;
426 shared_mutex(
const shared_mutex&) =
delete;
427 shared_mutex& operator=(
const shared_mutex&) =
delete;
431 void lock() { _M_impl.lock(); }
432 [[nodiscard]]
bool try_lock() {
return _M_impl.try_lock(); }
433 void unlock() { _M_impl.unlock(); }
437 void lock_shared() { _M_impl.lock_shared(); }
438 [[nodiscard]]
bool try_lock_shared() {
return _M_impl.try_lock_shared(); }
439 void unlock_shared() { _M_impl.unlock_shared(); }
441#if _GLIBCXX_USE_PTHREAD_RWLOCK_T
442 typedef void* native_handle_type;
443 native_handle_type native_handle() {
return _M_impl.native_handle(); }
446 __shared_mutex_pthread _M_impl;
449 __shared_mutex_cv _M_impl;
455#if _GLIBCXX_USE_PTHREAD_RWLOCK_T && _GTHREAD_USE_MUTEX_TIMEDLOCK
456 using __shared_timed_mutex_base = __shared_mutex_pthread;
458 using __shared_timed_mutex_base = __shared_mutex_cv;
463 class shared_timed_mutex
464 :
private __shared_timed_mutex_base
466 using _Base = __shared_timed_mutex_base;
469#ifdef _GLIBCXX_USE_PTHREAD_RWLOCK_CLOCKLOCK
476 shared_timed_mutex() =
default;
477 ~shared_timed_mutex() =
default;
479 shared_timed_mutex(
const shared_timed_mutex&) =
delete;
480 shared_timed_mutex& operator=(
const shared_timed_mutex&) =
delete;
484 void lock() { _Base::lock(); }
485 _GLIBCXX_NODISCARD
bool try_lock() {
return _Base::try_lock(); }
486 void unlock() { _Base::unlock(); }
488 template<
typename _Rep,
typename _Period>
496 return try_lock_until(__clock_t::now() + __rt);
501 void lock_shared() { _Base::lock_shared(); }
503 bool try_lock_shared() {
return _Base::try_lock_shared(); }
504 void unlock_shared() { _Base::unlock_shared(); }
506 template<
typename _Rep,
typename _Period>
514 return try_lock_shared_until(__clock_t::now() + __rt);
517#if _GLIBCXX_USE_PTHREAD_RWLOCK_T && _GTHREAD_USE_MUTEX_TIMEDLOCK
521 template<
typename _Duration>
527 struct timespec __ts = chrono::__to_timeout_timespec(__atime);
528 int __ret = __glibcxx_rwlock_timedwrlock(&_M_rwlock, &__ts);
531 if (__ret == ETIMEDOUT)
534 __glibcxx_assert(__ret == 0);
538#ifdef _GLIBCXX_USE_PTHREAD_RWLOCK_CLOCKLOCK
539 template<
typename _Duration>
545 struct timespec __ts = chrono::__to_timeout_timespec(__atime);
546 int __ret = pthread_rwlock_clockwrlock(&_M_rwlock, CLOCK_MONOTONIC,
550 if (__ret == ETIMEDOUT)
553 __glibcxx_assert(__ret == 0);
558 template<
typename _Clock,
typename _Duration>
563#if __cplusplus > 201703L
564 static_assert(chrono::is_clock_v<_Clock>);
569 typename _Clock::time_point __now = _Clock::now();
571 auto __rtime = __atime - __now;
572 if (try_lock_for(__rtime))
574 __now = _Clock::now();
575 }
while (__atime > __now);
581 template<
typename _Duration>
587 struct timespec __ts = chrono::__to_timeout_timespec(__atime);
600 __ret = __glibcxx_rwlock_timedrdlock(&_M_rwlock, &__ts);
601 while (__ret == EAGAIN);
604 if (__ret == ETIMEDOUT)
607 __glibcxx_assert(__ret == 0);
611#ifdef _GLIBCXX_USE_PTHREAD_RWLOCK_CLOCKLOCK
612 template<
typename _Duration>
618 struct timespec __ts = chrono::__to_timeout_timespec(__atime);
619 int __ret = pthread_rwlock_clockrdlock(&_M_rwlock, CLOCK_MONOTONIC,
626 if (__ret == ETIMEDOUT)
629 __glibcxx_assert(__ret == 0);
634 template<
typename _Clock,
typename _Duration>
640#if __cplusplus > 201703L
641 static_assert(chrono::is_clock_v<_Clock>);
646 typename _Clock::time_point __now = _Clock::now();
648 auto __rtime = __atime - __now;
649 if (try_lock_shared_for(__rtime))
651 __now = _Clock::now();
652 }
while (__atime > __now);
660 template<
typename _Clock,
typename _Duration>
666 if (!_M_gate1.wait_until(__lk, __abs_time,
667 [
this]{ return !_M_write_entered(); }))
671 _M_state |= _S_write_entered;
672 if (!_M_gate2.wait_until(__lk, __abs_time,
673 [
this]{ return _M_readers() == 0; }))
675 _M_state ^= _S_write_entered;
677 _M_gate1.notify_all();
685 template <
typename _Clock,
typename _Duration>
689 _Duration>& __abs_time)
692 if (!_M_gate1.wait_until(__lk, __abs_time,
693 [
this]{ return _M_state < _S_max_readers; }))
706 template<
typename _Mutex>
710 typedef _Mutex mutex_type;
714 shared_lock() noexcept : _M_pm(
nullptr), _M_owns(
false) { }
717 shared_lock(mutex_type& __m)
719 { __m.lock_shared(); }
730 template<
typename _Clock,
typename _Duration>
731 shared_lock(mutex_type& __m,
734 _M_owns(__m.try_lock_shared_until(__abs_time)) { }
736 template<
typename _Rep,
typename _Period>
737 shared_lock(mutex_type& __m,
740 _M_owns(__m.try_lock_shared_for(__rel_time)) { }
745 _M_pm->unlock_shared();
748 shared_lock(shared_lock
const&) =
delete;
749 shared_lock& operator=(shared_lock
const&) =
delete;
751 shared_lock(shared_lock&& __sl) noexcept : shared_lock()
755 operator=(shared_lock&& __sl)
noexcept
759 shared_lock(
std::move(__sl)).swap(*
this);
767 _M_pm->lock_shared();
776 return _M_owns = _M_pm->try_lock_shared();
779 template<
typename _Rep,
typename _Period>
785 return _M_owns = _M_pm->try_lock_shared_for(__rel_time);
788 template<
typename _Clock,
typename _Duration>
794 return _M_owns = _M_pm->try_lock_shared_until(__abs_time);
801 __throw_system_error(
int(errc::operation_not_permitted));
802 _M_pm->unlock_shared();
809 swap(shared_lock& __u)
noexcept
811 std::swap(_M_pm, __u._M_pm);
812 std::swap(_M_owns, __u._M_owns);
819 return std::__exchange(_M_pm,
nullptr);
825 bool owns_lock()
const noexcept {
return _M_owns; }
827 explicit operator bool()
const noexcept {
return _M_owns; }
830 mutex_type* mutex()
const noexcept {
return _M_pm; }
836 if (_M_pm ==
nullptr)
837 __throw_system_error(
int(errc::operation_not_permitted));
839 __throw_system_error(
int(errc::resource_deadlock_would_occur));
848 template<
typename _Mutex>
854_GLIBCXX_END_NAMESPACE_VERSION
constexpr __enable_if_is_duration< _ToDur > duration_cast(const duration< _Rep, _Period > &__d)
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.
void lock(_L1 &__l1, _L2 &__l2, _L3 &... __l3)
Generic lock.
int try_lock(_L1 &__l1, _L2 &__l2, _L3 &... __l3)
Generic try_lock.
ISO C++ entities toplevel namespace is std.
The standard shared timed mutex type.
chrono::duration represents a distance between two points in time
chrono::time_point represents a point in time as measured by a clock
Do not acquire ownership of the mutex.
Try to acquire ownership of the mutex without blocking.
Assume the calling thread has already obtained mutex ownership and manage it.
A movable scoped lock type.