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//fsf_implementation_specific.h
//===================================================
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//
// FSF(FIRST Scheduling Framework)
//implementation-defined optional functionality
//================================================

#include "fsf_basic_types.h"
#include "fsf_core.h"


#ifndef _FSF_IMPLEMENTATION_SPECIFIC_H_
#define _FSF_IMPLEMENTATION_SPECIFIC_H_

#define FSF_IMPLEMENTATION_SPECIFIC_MODULE_SUPPORTED     1


// The operations defined in this module are of optional use. They
// only work in the fixed priority implementation, and they may be
// used to enhance the behavior of the applications running under the
// fsf scheduler.

//// The definition of this type is in fsf_basic_types.h
//
//typedef unsigned long      fsf_preemption_level_t;
//                           // range 1..2**32-1


//fsf_set_contract_preemption_level: The operation updates the
//specified contract parameters object by setting its preemption level
//to the specified input parameter.

int
fsf_set_contract_preemption_level
  (fsf_contract_parameters_t     *contract,
   fsf_preemption_level_t         preemption_level);


//fsf_get_contract_preemption_level: The operation obtains from the
//specified contract parameters object its preemption level and copies
//it to the place pointed to by the specified input parameter.

int
fsf_get_contract_preemption_level
  (const fsf_contract_parameters_t *contract,
   fsf_preemption_level_t          *preemption_level);


//fsf_set_service_thread_preemption_level: this function sets the
//preemption level of the service thread to the specified value. The
//initial preemption level is a configurable parameter

int
fsf_set_service_thread_preemption_level
  (fsf_preemption_level_t         preemption_level);

//fsf_get_service_thread_preemption_level: this function stores the
//current preemption level of the service thread in the variable
//pointed to by preemption_level

int
fsf_get_service_thread_preemption_level
  (fsf_preemption_level_t        *preemption_level);


//fsf_thread_exit: There is a limitation in the current version of the
//MaRTE implementation that causes the information of a terminated
//thread to continue to be stored in the fsf scheduler, and the thread
//to continue to be counted in the number of threads. The
//fsf_thread_exit operation allows the implementation to delete the
//thread's information, and then terminate the thread. Therefore, it
//is recommended to use this function to terminate a thread under fsf.

//This operation shall terminate the calling thread, make the value
//value_ptr available to any successful join with the terminating
//thread, and unbind the thread from its associated server. After
//cleaning up the thread management data, it is unbound and the
//scheduling policy is changed to fixed priority before the posix
//pthread_exit() function is called.

void
fsf_thread_exit (void *value_ptr);


#endif // _FSF_IMPLEMENTATION_SPECIFIC_H_