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mem::scoped() and long jump resilience fixed #1963 fixed --test-nosort argument + extra test for teardown_fn memory leak Some renaming. Simplify robust test allocator handling. Pop temp allocators in test runner. `Thread` no longer allocates memory on posix. Update unprintable struct output. Correctly give an error if a character literal contains a line break.
220 lines
5.0 KiB
Plaintext
220 lines
5.0 KiB
Plaintext
module std::thread::os @if(env::POSIX);
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import std::os::posix, std::time, libc;
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struct NativeMutex
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{
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Pthread_mutex_t mutex;
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bool initialized;
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}
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def NativeConditionVariable = Pthread_cond_t;
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struct NativeThread
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{
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inline Pthread_t pthread;
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ThreadFn thread_fn;
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void* arg;
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}
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def NativeOnceFlag = Pthread_once_t;
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<*
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@require !self.is_initialized() : "Mutex is already initialized"
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@ensure self.is_initialized()
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*>
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fn void! NativeMutex.init(&self, MutexType type)
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{
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Pthread_mutexattr_t attr;
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if (posix::pthread_mutexattr_init(&attr)) return ThreadFault.INIT_FAILED?;
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defer posix::pthread_mutexattr_destroy(&attr);
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if (type & thread::MUTEX_RECURSIVE)
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{
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if (posix::pthread_mutexattr_settype(&attr, posix::PTHREAD_MUTEX_RECURSIVE)) return ThreadFault.INIT_FAILED?;
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}
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else
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{
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$if env::COMPILER_SAFE_MODE:
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if (posix::pthread_mutexattr_settype(&attr, posix::PTHREAD_MUTEX_ERRORCHECK)) return ThreadFault.INIT_FAILED?;
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$endif
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}
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if (posix::pthread_mutex_init(&self.mutex, &attr)) return ThreadFault.INIT_FAILED?;
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self.initialized = true;
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}
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fn bool NativeMutex.is_initialized(&self)
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{
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return self.initialized;
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}
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<*
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@require self.is_initialized() : "Mutex was not initialized"
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@ensure !self.is_initialized()
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*>
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fn void! NativeMutex.destroy(&self)
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{
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if (posix::pthread_mutex_destroy(&self.mutex)) return ThreadFault.DESTROY_FAILED?;
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*self = {};
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}
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<*
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@require self.is_initialized() : "Mutex was not initialized"
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*>
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fn void! NativeMutex.lock(&self)
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{
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if (posix::pthread_mutex_lock(&self.mutex)) return ThreadFault.LOCK_FAILED?;
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}
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<*
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@require self.is_initialized() : "Mutex was not initialized"
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*>
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fn void! NativeMutex.lock_timeout(&self, ulong ms)
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{
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/* Try to acquire the lock and, if we fail, sleep for 5ms. */
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Errno result;
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while ((result = posix::pthread_mutex_trylock(&self.mutex)) == errno::EBUSY)
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{
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if (!ms) break;
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ulong sleep = min(5, ms);
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if (!libc::nanosleep(&&time::ms(ms).to_timespec(), null)) return ThreadFault.LOCK_FAILED?;
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ms -= sleep;
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}
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switch (result)
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{
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case errno::OK:
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return;
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case errno::EBUSY:
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case errno::ETIMEDOUT:
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return ThreadFault.LOCK_TIMEOUT?;
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default:
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return ThreadFault.LOCK_FAILED?;
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}
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}
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<*
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@require self.is_initialized() : "Mutex was not initialized"
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*>
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fn bool NativeMutex.try_lock(&self)
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{
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return !posix::pthread_mutex_trylock(&self.mutex);
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}
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<*
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@require self.is_initialized() : "Mutex was not initialized"
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*>
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fn void! NativeMutex.unlock(&self)
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{
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if (posix::pthread_mutex_unlock(&self.mutex)) return ThreadFault.UNLOCK_FAILED?;
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}
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fn void! NativeConditionVariable.init(&cond)
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{
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if (posix::pthread_cond_init(cond, null)) return ThreadFault.INIT_FAILED?;
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}
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fn void! NativeConditionVariable.destroy(&cond)
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{
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if (posix::pthread_cond_destroy(cond)) return ThreadFault.DESTROY_FAILED?;
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}
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fn void! NativeConditionVariable.signal(&cond)
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{
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if (posix::pthread_cond_signal(cond)) return ThreadFault.SIGNAL_FAILED?;
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}
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fn void! NativeConditionVariable.broadcast(&cond)
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{
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if (posix::pthread_cond_broadcast(cond)) return ThreadFault.SIGNAL_FAILED?;
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}
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<*
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@require mtx.is_initialized()
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*>
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fn void! NativeConditionVariable.wait(&cond, NativeMutex* mtx)
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{
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if (posix::pthread_cond_wait(cond, &mtx.mutex)) return ThreadFault.WAIT_FAILED?;
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}
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<*
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@require mtx.is_initialized()
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*>
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fn void! NativeConditionVariable.wait_timeout(&cond, NativeMutex* mtx, ulong ms)
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{
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TimeSpec now;
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if (libc::timespec_get(&now, libc::TIME_UTC) != libc::TIME_UTC) return ThreadFault.WAIT_FAILED?;
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now.ns += (CLong)((ms % 1000) * 1000_000);
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now.s += (Time_t)(ms / 1000 + now.ns / 1000_000_000);
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now.ns = now.ns % 1000_000_000;
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switch (posix::pthread_cond_timedwait(cond, &mtx.mutex, &now))
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{
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case errno::ETIMEDOUT:
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return ThreadFault.WAIT_TIMEOUT?;
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case errno::OK:
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return;
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default:
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return ThreadFault.WAIT_FAILED?;
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}
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}
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tlocal NativeThread current_thread @private;
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fn void* callback(void* arg) @private
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{
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NativeThread* thread = arg;
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current_thread = *thread;
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return (void*)(iptr)thread.thread_fn(thread.arg);
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}
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fn void! NativeThread.create(&thread, ThreadFn thread_fn, void* arg)
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{
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thread.thread_fn = thread_fn;
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thread.arg = arg;
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if (posix::pthread_create(&thread.pthread, null, &callback, thread) != 0)
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{
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return ThreadFault.INIT_FAILED?;
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}
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}
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fn void! NativeThread.detach(thread)
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{
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if (posix::pthread_detach(thread.pthread)) return ThreadFault.DETACH_FAILED?;
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}
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fn void native_thread_exit(int result)
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{
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posix::pthread_exit((void*)(iptr)result);
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}
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fn NativeThread native_thread_current()
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{
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return current_thread;
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}
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fn bool NativeThread.equals(thread, NativeThread other)
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{
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return (bool)posix::pthread_equal(thread.pthread, other.pthread);
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}
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fn int! NativeThread.join(thread)
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{
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void *pres;
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if (posix::pthread_join(thread.pthread, &pres)) return ThreadFault.JOIN_FAILED?;
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return (int)(iptr)pres;
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}
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fn void NativeOnceFlag.call_once(&flag, OnceFn func)
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{
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posix::pthread_once(flag, func);
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}
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fn void native_thread_yield()
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{
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posix::sched_yield();
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}
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fn void! native_sleep_nano(NanoDuration nano)
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{
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if (nano <= 0) return;
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if (libc::nanosleep(&&nano.to_timespec(), null)) return ThreadFault.INTERRUPTED?;
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}
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