#ifndef PLATFORM_PUBLIC_SCHEDULED_EXECUTOR_H_ #define PLATFORM_PUBLIC_SCHEDULED_EXECUTOR_H_ #include #include #include #include "platform/api/platform.h" #include "platform/api/scheduled_executor.h" #include "platform/base/runnable.h" #include "platform/public/cancelable.h" #include "platform/public/mutex.h" #include "platform/public/mutex_lock.h" #include "absl/time/time.h" namespace location { namespace nearby { // An Executor that can schedule commands to run after a given delay, or to // execute periodically. // // https://docs.oracle.com/javase/8/docs/api/java/util/concurrent/ScheduledExecutorService.html class ScheduledExecutor final { public: using Platform = api::ImplementationPlatform; ScheduledExecutor() : impl_(Platform::CreateScheduledExecutor()) {} ScheduledExecutor(ScheduledExecutor&& other) { *this = std::move(other); } ~ScheduledExecutor() { MutexLock lock(&mutex_); DoShutdown(); } ScheduledExecutor& operator=(ScheduledExecutor&& other) ABSL_LOCKS_EXCLUDED(mutex_) { MutexLock lock(&mutex_); { MutexLock other_lock(&other.mutex_); impl_ = std::move(other.impl_); } return *this; } void Execute(Runnable&& runnable) ABSL_LOCKS_EXCLUDED(mutex_) { MutexLock lock(&mutex_); if (impl_) impl_->Execute(std::move(runnable)); } void Shutdown() ABSL_LOCKS_EXCLUDED(mutex_) { MutexLock lock(&mutex_); DoShutdown(); } int GetTid(int index) const { MutexLock lock(&mutex_); return impl_->GetTid(index); } int Tid() const { return GetTid(0); } Cancelable Schedule(Runnable&& runnable, absl::Duration duration) ABSL_LOCKS_EXCLUDED(mutex_) { MutexLock lock(&mutex_); return impl_ ? Cancelable(impl_->Schedule(std::move(runnable), duration)) : Cancelable(); } private: void DoShutdown() ABSL_EXCLUSIVE_LOCKS_REQUIRED(mutex_) { if (impl_) { impl_->Shutdown(); impl_.reset(); } } mutable Mutex mutex_; std::unique_ptr ABSL_GUARDED_BY(mutex_) impl_; }; } // namespace nearby } // namespace location #endif // PLATFORM_PUBLIC_SCHEDULED_EXECUTOR_H_