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181c78d482
This enforces the use of unsigned 64-bit values for time in the duration type, the timeout framework, the timer session, the userland timer-drivers, and the alarm framework on all platforms. The commit also adapts the code that uses these tools accross all basic repositories (base, base-*, os. gems, libports, ports, dde_*) to use unsigned 64-bit values for time as well as far as this does not imply profound modifications. Fixes #3208
261 lines
6.0 KiB
C++
261 lines
6.0 KiB
C++
/*
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* \brief Semaphore implementation with timeout facility
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* \author Stefan Kalkowski
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* \date 2010-03-05
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*
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* This semaphore implementation allows to block on a semaphore for a
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* given time instead of blocking indefinetely.
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*
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* For the timeout functionality the alarm framework is used.
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*/
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/*
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* Copyright (C) 2010-2017 Genode Labs GmbH
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*
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* This file is part of the Genode OS framework, which is distributed
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* under the terms of the GNU Affero General Public License version 3.
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*/
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#ifndef _INCLUDE__RUMP__TIMED_SEMAPHORE_H_
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#define _INCLUDE__RUMP__TIMED_SEMAPHORE_H_
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#include <base/thread.h>
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#include <base/semaphore.h>
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#include <base/alarm.h>
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#include <timer_session/connection.h>
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using Genode::Exception;
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using Genode::Entrypoint;
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using Genode::Alarm;
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using Genode::Alarm_scheduler;
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using Genode::Semaphore;
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using Genode::Signal_handler;
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/**
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* Exception types
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*/
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class Timeout_exception : public Exception { };
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class Nonblocking_exception : public Exception { };
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/**
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* Alarm thread, which counts jiffies and triggers timeout events.
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*/
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class Timeout_entrypoint : private Entrypoint
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{
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private:
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enum { JIFFIES_STEP_MS = 10 };
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Alarm_scheduler _alarm_scheduler { };
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Timer::Connection _timer;
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Signal_handler<Timeout_entrypoint> _timer_handler;
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void _handle_timer() { _alarm_scheduler.handle(_timer.elapsed_ms()); }
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static Genode::size_t constexpr STACK_SIZE = 2048*sizeof(long);
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public:
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Timeout_entrypoint(Genode::Env &env)
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:
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Entrypoint(env, STACK_SIZE, "alarm-timer", Genode::Affinity::Location()),
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_timer(env),
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_timer_handler(*this, *this, &Timeout_entrypoint::_handle_timer)
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{
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_timer.sigh(_timer_handler);
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_timer.trigger_periodic(JIFFIES_STEP_MS*1000);
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}
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Alarm::Time time(void) { return _timer.elapsed_ms(); }
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void schedule_absolute(Alarm &alarm, Alarm::Time timeout)
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{
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_alarm_scheduler.schedule_absolute(&alarm, timeout);
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}
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void discard(Alarm &alarm) { _alarm_scheduler.discard(&alarm); }
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};
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/**
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* Semaphore with timeout on down operation.
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*/
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class Timed_semaphore : public Semaphore
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{
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private:
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typedef Semaphore::Element Element;
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Timeout_entrypoint &_timeout_ep;
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/**
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* Aborts blocking on the semaphore, raised when a timeout occured.
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*
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* \param element the waiting-queue element associated with a timeout.
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* \return true if a thread was aborted/woken up
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*/
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bool _abort(Element &element)
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{
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Genode::Lock::Guard lock_guard(Semaphore::_meta_lock);
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/* potentially, the queue is empty */
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if (++Semaphore::_cnt <= 0) {
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/*
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* Iterate through the queue and find the thread,
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* with the corresponding timeout.
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*/
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Element *first = nullptr;
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Semaphore::_queue.dequeue([&first] (Element &e) {
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first = &e; });
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Element *e = first;
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while (e) {
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/*
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* Wakeup the thread.
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*/
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if (&element == e) {
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e->wake_up();
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return true;
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}
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/*
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* Noninvolved threads are enqueued again.
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*/
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Semaphore::_queue.enqueue(*e);
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e = nullptr;
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Semaphore::_queue.dequeue([&e] (Element &next) {
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e = &next; });
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/*
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* Maybe, the alarm was triggered just after the corresponding
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* thread was already dequeued, that's why we have to track
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* whether we processed the whole queue.
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*/
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if (e == first)
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break;
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}
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}
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/* The right element was not found, so decrease counter again */
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--Semaphore::_cnt;
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return false;
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}
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/**
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* Represents a timeout associated with the blocking
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* operation on a semaphore.
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*/
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class Timeout : public Alarm
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{
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private:
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Timed_semaphore &_sem; /* semaphore we block on */
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Element &_element; /* queue element timeout belongs to */
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bool _triggered { false };
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Time const _start;
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public:
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Timeout(Time start, Timed_semaphore &s, Element &e)
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: _sem(s), _element(e), _triggered(false), _start(start)
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{ }
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bool triggered(void) { return _triggered; }
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Time start() { return _start; }
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protected:
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bool on_alarm(Genode::uint64_t) override
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{
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_triggered = _sem._abort(_element);
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return false;
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}
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};
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public:
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/**
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* Constructor
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*
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* \param n initial counter value of the semphore
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*/
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Timed_semaphore(Timeout_entrypoint &timeout_ep, int n = 0)
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: Semaphore(n), _timeout_ep(timeout_ep) { }
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/**
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* Decrements semaphore and blocks when it's already zero.
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*
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* \param t after t milliseconds of blocking a Timeout_exception is thrown.
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* if t is zero do not block, instead raise an
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* Nonblocking_exception.
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* \return milliseconds the caller was blocked
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*/
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Alarm::Time down(Alarm::Time t)
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{
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Semaphore::_meta_lock.lock();
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if (--Semaphore::_cnt < 0) {
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/* If t==0 we shall not block */
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if (t == 0) {
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++_cnt;
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Semaphore::_meta_lock.unlock();
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throw Nonblocking_exception();
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}
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/*
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* Create semaphore queue element representing the thread
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* in the wait queue.
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*/
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Element queue_element;
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Semaphore::_queue.enqueue(queue_element);
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Semaphore::_meta_lock.unlock();
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/* Create the timeout */
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Alarm::Time const curr_time = _timeout_ep.time();
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Timeout timeout(curr_time, *this, queue_element);
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_timeout_ep.schedule_absolute(timeout, curr_time + t);
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/*
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* The thread is going to block on a local lock now,
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* waiting for getting waked from another thread
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* calling 'up()'
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* */
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queue_element.block();
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/* Deactivate timeout */
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_timeout_ep.discard(timeout);
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/*
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* When we were only woken up, because of a timeout,
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* throw an exception.
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*/
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if (timeout.triggered())
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throw Timeout_exception();
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/* return blocking time */
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return _timeout_ep.time() - timeout.start();
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} else {
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Semaphore::_meta_lock.unlock();
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}
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return 0;
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}
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/********************************
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** Base class implementations **
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********************************/
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void down() { Semaphore::down(); }
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void up() { Semaphore::up(); }
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};
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#endif /* _INCLUDE__RUMP__TIMED_SEMAPHORE_H_ */
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