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target_extaction.cpp
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target_extaction.cpp
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/*
*
* Author: Tatiana Djaba Nya (Lead author)
* Author: Stephan C. Stilkerich
*
* Reference Architecture Model (EPiCS FP7 FET program, No. 257906)
* - Peter R. Lewis, University of Birmingham
* - Xin Yao, University of Birmingham
*
* Copyright (c) 2013, EADS Deutschland GmbH, EADS Innovation Works
*
*==============================================================================
*
*This file is part of ProprioSimEnv.
*
* ProprioSimEnv is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* ProprioSimEnv is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with ProprioSimEnv. If not, see <http://www.gnu.org/licenses/>.
*/
#define SC_INCLUDE_DYNAMIC_PROCESSES
#include "target_extaction.h"
#include "reporting.h"
#include <cstdio>
#include <stdlib.h>
using namespace std;
static const char *filename = "target_extaction.cpp"; ///< filename for reporting
static std::ostringstream msg;
//================================================================================
/// @fn target_extaction
//
/// @brief constructor
//
/// @details
/// It registers the callback for the use of convenience socket.
//
//======================================================================
target_extaction::target_extaction
( sc_core::sc_module_name module_name ///< SC module name
, const unsigned int ID ///< target ID
, sc_dt::uint64 memory_size ///< memory size (bytes)
, unsigned int memory_width ///< memory width (bytes)
, const sc_core::sc_time read_latency ///< read response delay (SC_TIME, SC_NS)
, const sc_core::sc_time write_latency ///< write response delay (SC_TIME, SC_NS)
)
:
extact_name ( name() )
, extact_id ( ID )
, extact_tsocket ( "actuator_tsocket")
, extact_outport ( "output_port" )
, extact_mem
( ID
, read_latency // delay for reads
, write_latency // delay for writes
, memory_size // memory size (bytes)
, memory_width // memory width (bytes)
)
{
extact_tsocket.register_b_transport ( this, &target_extaction::b_transport, extact_id );
extact_tsocket.register_get_direct_mem_ptr ( this, &target_extaction::get_direct_mem_ptr, extact_id );
extact_tsocket.register_nb_transport_fw ( this, &target_extaction::nb_transport_fw, extact_id );
extact_tsocket.register_transport_dbg ( this, &target_extaction::transport_dbg, extact_id );
}
//======================================================================
/// @fn b_transport
//
/// @brief implementation of the blocking transport for transactions
/// on the ExtAction's memory.
//
/// @details It calls the funtion memory::operation() function to execute
/// the requested transaction on the extaction's memory and write data
/// on the bounded fifo channel through the ouptut port.
//
//======================================================================
void target_extaction::b_transport ( int id, ///< actuator socket id through which the call arrived
tlm::tlm_generic_payload& tObj, ///< ref to transaction object
sc_core::sc_time& delay ///< ref to time delay
)
{
extact_mem.operation(id, tObj, delay);
execute_action();
return;
}
bool target_extaction::get_direct_mem_ptr( int id, ///< actuator socket id through which the call arrived
tlm::tlm_generic_payload& tObj, ///< ref to transaction object
tlm::tlm_dmi& dmi_data ///< ref to dmi descriptor
)
{
return false;
}
tlm::tlm_sync_enum target_extaction::nb_transport_fw( int id, ///< actuator socket id through which the call arrived
tlm::tlm_generic_payload& tObj, ///< ref to transaction object
tlm::tlm_phase& phase, ///< ref to transaction phase
sc_core::sc_time& delay ///< ref to time delay
)
{
return tlm::TLM_ACCEPTED;
}
unsigned int target_extaction::transport_dbg( int id, ///< actuator socket id through which the call arrived
tlm::tlm_generic_payload& tObj ///< ref to transaction object
)
{
return 0;
}
//======================================================================
/// @fn execute_action
//
/// @brief evaluates the see data and executes the corresponding action.
//
/// @details to be implemented according to the system under investigation
//
//======================================================================
void target_extaction::execute_action(void)
{
/*sc_dt::uchar out = 'E' ;
extact_outport->write(out) ;*/
}