TAO_RTEvent
2.4.0
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Dispatching strategy that minimizes mt inversion. More...
#include <EC_MT_Dispatching.h>
Public Member Functions | |
TAO_EC_MT_Dispatching (int nthreads, int thread_creation_flags, int thread_priority, int force_activate, TAO_EC_Queue_Full_Service_Object *queue_full_service_object_name) | |
virtual void | activate (void) |
virtual void | shutdown (void) |
virtual void | push (TAO_EC_ProxyPushSupplier *proxy, RtecEventComm::PushConsumer_ptr consumer, const RtecEventComm::EventSet &event, TAO_EC_QOS_Info &qos_info) |
virtual void | push_nocopy (TAO_EC_ProxyPushSupplier *proxy, RtecEventComm::PushConsumer_ptr consumer, RtecEventComm::EventSet &event, TAO_EC_QOS_Info &qos_info) |
Public Member Functions inherited from TAO_EC_Dispatching | |
virtual | ~TAO_EC_Dispatching (void) |
Destructor... More... | |
Private Attributes | |
ACE_Thread_Manager | thread_manager_ |
Use our own thread manager. More... | |
int | nthreads_ |
The number of active tasks. More... | |
int | thread_creation_flags_ |
int | thread_priority_ |
The priority of the dispatching threads. More... | |
int | force_activate_ |
TAO_EC_Dispatching_Task | task_ |
The dispatching task. More... | |
TAO_SYNCH_MUTEX | lock_ |
Synchronize access to internal data. More... | |
int | active_ |
Are the threads running? More... | |
Dispatching strategy that minimizes mt inversion.
This strategy uses a single queue, serviced by one or more threads. It's main purpose is to decouple the suppliers from the client execution time, specially in the collocated case.
TAO_EC_MT_Dispatching::TAO_EC_MT_Dispatching | ( | int | nthreads, |
int | thread_creation_flags, | ||
int | thread_priority, | ||
int | force_activate, | ||
TAO_EC_Queue_Full_Service_Object * | queue_full_service_object_name | ||
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Constructor It will create nthreads servicing threads...
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Initialize all the data structures, activate any internal threads, etc.
Implements TAO_EC_Dispatching.
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The consumer represented by proxy should receive event. It can use the information in qos_info to determine the event priority (among other things).
Implements TAO_EC_Dispatching.
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Implements TAO_EC_Dispatching.
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Deactivate any internal threads and cleanup internal data structures, it should only return once the threads have finished their jobs.
Implements TAO_EC_Dispatching.
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Are the threads running?
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If activation at the requested priority fails then we fallback on the defaults for thread activation.
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Synchronize access to internal data.
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The number of active tasks.
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The dispatching task.
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The flags (THR_BOUND, THR_NEW_LWP, etc.) used to create the dispatching threads.
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Use our own thread manager.
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The priority of the dispatching threads.