Generation working and Compilation of MARTe components
This commit is contained in:
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/**
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* @file JASDNRTStateMachineGAM.cpp
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* @brief Source file for class JASDNRTStateMachineGAM
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* @date Nov 26, 2018
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* @author aneto
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*
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* @copyright Copyright 2015 F4E | European Joint Undertaking for ITER and
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* the Development of Fusion Energy ('Fusion for Energy').
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* Licensed under the EUPL, Version 1.1 or - as soon they will be approved
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* by the European Commission - subsequent versions of the EUPL (the "Licence")
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* You may not use this work except in compliance with the Licence.
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* You may obtain a copy of the Licence at: http://ec.europa.eu/idabc/eupl
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*
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* @warning Unless required by applicable law or agreed to in writing,
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* software distributed under the Licence is distributed on an "AS IS"
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* basis, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express
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* or implied. See the Licence permissions and limitations under the Licence.
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* @details This source file contains the definition of all the methods for
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* the class JASDNRTStateMachineGAM (public, protected, and private). Be aware that some
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* methods, such as those inline could be defined on the header file, instead.
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*/
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/*---------------------------------------------------------------------------*/
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/* Standard header includes */
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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/* Project header includes */
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/*---------------------------------------------------------------------------*/
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#include "JASDNRTStateMachineGAM.h"
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#include "AdvancedErrorManagement.h"
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/*---------------------------------------------------------------------------*/
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/* Static definitions */
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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/* Method definitions */
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/*---------------------------------------------------------------------------*/
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JASDNRTStateMachineGAM::JASDNRTStateMachineGAM() {
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currentState = WaitTrigger; // Set Entry state.
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plcOnTime = 0; // Triggered time holder.
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sdnTriggerTime = 0;
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//Output and condition in a given state.
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conditionTrigger = 1;
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aps_hvon = 0;
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aps_swon = 0;
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bps_hvon = 0;
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bps_swon = 0;
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mhvps_hvon = 0;
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// Parameters which get from Input signals.
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triggerSignal = NULL_PTR(MARTe::uint32 *);
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currentTime = NULL_PTR(MARTe::uint32 *);
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triggerDelay_mhvps_hvon = NULL_PTR(MARTe::uint32 *);
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triggerDelay_aps_hvon = NULL_PTR(MARTe::uint32 *);
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triggerDelay_aps_swon = NULL_PTR(MARTe::uint32 *);
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triggerDelay_bps_hvon = NULL_PTR(MARTe::uint32 *);
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triggerDelay_bps_swon = NULL_PTR(MARTe::uint32 *);
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triggerDelay_shotlen = NULL_PTR(MARTe::uint32 *);
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stopRequest = NULL_PTR(MARTe::uint32 *);
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modePulseLengthLimit = NULL_PTR(MARTe::uint32 *);
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sdnCommand = NULL_PTR(MARTe::uint16 *);
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// write out target.
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outputSignal = NULL_PTR(MARTe::uint32 *);
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outputBeamON = NULL_PTR(MARTe::uint32 *);
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outputHVArmed = NULL_PTR(MARTe::uint32 *);
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outputHVInjection = NULL_PTR(MARTe::uint32 *);
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outputRFON = NULL_PTR(MARTe::uint32 *);
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outputBeamONTime = NULL_PTR(MARTe::uint32 *);
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outputRFONTime = NULL_PTR(MARTe::uint32 *);
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shotCounter = NULL_PTR(MARTe::uint32 *);
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mhvps_hvon_is_on = false;
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aps_hvon_is_on = false;
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aps_swon_is_on = false;
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bps_hvon_is_on = false;
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bps_swon_is_on = false;
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}
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JASDNRTStateMachineGAM::~JASDNRTStateMachineGAM() {
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}
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bool JASDNRTStateMachineGAM::Initialise(MARTe::StructuredDataI & data) {
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using namespace MARTe;
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bool ok = GAM::Initialise(data);
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if (ok) {
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ok = data.Read("ConditionTrigger", conditionTrigger);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The Condition1 shall be specified");
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}
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}
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if (ok) {
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ok = data.Read("mhvps_hvon", mhvps_hvon);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The mhvps_hvon shall be specified");
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}
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}
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if (ok) {
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ok = data.Read("aps_hvon", aps_hvon);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The aps_hvon shall be specified");
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}
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}
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if (ok) {
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ok = data.Read("aps_swon", aps_swon);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The aps_swon shall be specified");
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}
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}
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if (ok) {
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ok = data.Read("bps_hvon", bps_hvon);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The bps_hvon shall be specified");
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}
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}
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if (ok) {
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ok = data.Read("bps_swon", bps_swon);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "The bps_swon shall be specified");
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}
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}
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return ok;
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}
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bool JASDNRTStateMachineGAM::PrepareNextState(const MARTe::char8 * const currentStateName, const MARTe::char8 * const nextStateName) {
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return true;
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}
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bool JASDNRTStateMachineGAM::Setup() {
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using namespace MARTe;
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bool ok = (numberOfInputSignals == 11u);
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if (ok) {
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ok = (numberOfOutputSignals == 8u);
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if (!ok) {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "Seven output signals shall be defined");
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}
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}
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else {
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "Nine input signals shall be defined");
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}
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if (ok) {
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uint32 c;
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for (c = 0u; c < numberOfInputSignals; c++) {
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TypeDescriptor inputType = GetSignalType(InputSignals, c);
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ok = (inputType == UnsignedInteger32Bit || inputType == UnsignedInteger16Bit);
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if (!ok) {
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StreamString signalName;
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(void) GetSignalName(InputSignals, c, signalName);
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "Signal %s shall be defined as uint32 or uint16", signalName.Buffer());
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}
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}
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}
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if (ok) {
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uint32 c;
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for (c = 0u; c < numberOfOutputSignals; c++) {
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TypeDescriptor outputType = GetSignalType(OutputSignals, c);
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ok = (outputType == UnsignedInteger32Bit);
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if (!ok) {
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StreamString signalName;
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(void) GetSignalName(InputSignals, c, signalName);
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REPORT_ERROR(MARTe::ErrorManagement::ParametersError, "Signal %s shall be defined as uint32", signalName.Buffer());
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}
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}
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}
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if (ok) {
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currentTime = reinterpret_cast<uint32 *>(GetInputSignalMemory(0));
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triggerSignal = reinterpret_cast<uint32 *>(GetInputSignalMemory(1));
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triggerDelay_mhvps_hvon = reinterpret_cast<uint32 *>(GetInputSignalMemory(2));
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triggerDelay_aps_hvon = reinterpret_cast<uint32 *>(GetInputSignalMemory(3));
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triggerDelay_aps_swon = reinterpret_cast<uint32 *>(GetInputSignalMemory(4));
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triggerDelay_bps_hvon = reinterpret_cast<uint32 *>(GetInputSignalMemory(5));
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triggerDelay_bps_swon = reinterpret_cast<uint32 *>(GetInputSignalMemory(6));
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triggerDelay_shotlen = reinterpret_cast<uint32 *>(GetInputSignalMemory(7));
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stopRequest = reinterpret_cast<uint32 *>(GetInputSignalMemory(8));
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modePulseLengthLimit = reinterpret_cast<uint32 *>(GetInputSignalMemory(9));
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sdnCommand = reinterpret_cast<uint16 *>(GetInputSignalMemory(10));
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outputSignal = reinterpret_cast<uint32 *>(GetOutputSignalMemory(0));
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outputBeamON = reinterpret_cast<uint32 *>(GetOutputSignalMemory(1));
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outputHVArmed = reinterpret_cast<uint32 *>(GetOutputSignalMemory(2));
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outputHVInjection = reinterpret_cast<uint32 *>(GetOutputSignalMemory(3));
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outputRFON = reinterpret_cast<uint32 *>(GetOutputSignalMemory(4));
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outputBeamONTime = reinterpret_cast<uint32 *>(GetOutputSignalMemory(5));
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outputRFONTime = reinterpret_cast<uint32 *>(GetOutputSignalMemory(6));
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shotCounter = reinterpret_cast<uint32 *>(GetOutputSignalMemory(7));
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*shotCounter = 0;
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}
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return ok;
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}
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bool JASDNRTStateMachineGAM::Execute() {
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using namespace MARTe;
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if (currentState == WaitTrigger) {
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//State Transition condition
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if ((*triggerSignal == conditionTrigger)) {
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REPORT_ERROR(ErrorManagement::Debug, "Start beam-on sequence in SDN mode.");
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plcOnTime = *currentTime; //Save pulse start time.
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*outputBeamON = 0;
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//State transition.
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currentState = SwitchingHVPS_HVON;
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}
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}
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else if (currentState == SwitchingHVPS_HVON) {
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//Actions in this state.
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if (*stopRequest != 0 || *triggerSignal != conditionTrigger) {
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*outputSignal -= aps_swon;
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currentState = HVTerminate;
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}
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if (*currentTime >= (plcOnTime + *triggerDelay_bps_hvon) && bps_hvon_is_on == false){
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//Do action
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*outputSignal += bps_hvon;
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bps_hvon_is_on = true;
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REPORT_ERROR(ErrorManagement::Debug, "bps_hvon was set to outputSignal at %d.", *currentTime);
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}
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if (*currentTime >= (plcOnTime + *triggerDelay_aps_hvon) && aps_hvon_is_on == false) {
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//Do action
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*outputSignal += aps_hvon;
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aps_hvon_is_on = true;
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REPORT_ERROR(ErrorManagement::Debug, "aps_hvon was set to outputSignal.");
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}
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*outputBeamONTime = *currentTime - plcOnTime; //Save RFON start time.
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if (bps_hvon_is_on && aps_hvon_is_on){
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*outputHVArmed = 0;
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currentState = WaitSDNTrigger;
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}
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}
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else if (currentState == WaitSDNTrigger) {
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// Action in this state
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*outputBeamONTime = *currentTime - plcOnTime; //Save RFON start time.
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// State change conditions
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if (*sdnCommand == 1){
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sdnTriggerTime = *currentTime;
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currentState = SwitchingHVPS_SWON;
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}
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if (*stopRequest != 0 || *triggerSignal != conditionTrigger) {
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*outputSignal = 0;
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currentState = HVTerminate;
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}
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}
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else if (currentState == SwitchingHVPS_SWON) {
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//Actions in this state.
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if (*stopRequest != 0 || *triggerSignal != conditionTrigger) {
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*outputSignal = 0;
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currentState = HVTerminate;
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}
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if (*currentTime >= (sdnTriggerTime + *triggerDelay_bps_swon) && bps_swon_is_on==false){
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//Do action
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*outputSignal += bps_swon;
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bps_swon_is_on = true;
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REPORT_ERROR(ErrorManagement::Debug, "bps_swon was set to outputSignal at %d.", *currentTime);
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}
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if (*currentTime >= (sdnTriggerTime + *triggerDelay_mhvps_hvon) && mhvps_hvon_is_on==false) {
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//Do action
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*outputSignal += mhvps_hvon;
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mhvps_hvon_is_on = true;
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REPORT_ERROR(ErrorManagement::Debug, "mhvps_hvon was set to outputSignal at %d.", *currentTime);
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}
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if (bps_swon_is_on && mhvps_hvon_is_on && *currentTime >= (sdnTriggerTime + *triggerDelay_aps_swon)){
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//Do action
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*outputSignal += aps_swon;
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aps_swon_is_on = true;
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apsSwonTime = *currentTime;
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REPORT_ERROR(ErrorManagement::Debug, "aps_swon was set to outputSignal at %d.", *currentTime);
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}
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*outputBeamONTime = *currentTime - plcOnTime; //Save RFON start time.
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if (bps_swon_is_on || mhvps_hvon_is_on){
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*outputHVInjection = 0;
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}
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//State transition condition
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if (aps_swon_is_on){
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currentState = RFON;
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*outputRFON = 0;
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*shotCounter += 1;
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REPORT_ERROR(ErrorManagement::Debug, "state was changed to RFON");
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}
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}
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else if (currentState == RFON) {
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//SDN command processing.
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if (*sdnCommand == 4 && aps_swon_is_on) {
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*outputSignal -= aps_swon;
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aps_swon_is_on = false;
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REPORT_ERROR(ErrorManagement::Debug, "sdn command was 4");
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}
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if (*sdnCommand == 3 && !aps_swon_is_on) {
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*outputSignal += aps_swon;
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aps_swon_is_on = true;
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REPORT_ERROR(ErrorManagement::Debug, "sdn command was 3");
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}
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//Action in this state.
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if ((*sdnCommand == 2) || (*modePulseLengthLimit == 1u) || (*currentTime >= (sdnTriggerTime + *triggerDelay_aps_swon + *triggerDelay_shotlen))) {
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REPORT_ERROR(ErrorManagement::Debug, "shotlen: %d", *triggerDelay_shotlen);
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if (*sdnCommand == 2) {
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REPORT_ERROR(ErrorManagement::Information, "sdn command was 2");
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} else if (*currentTime >= (sdnTriggerTime + *triggerDelay_aps_swon + *triggerDelay_shotlen)){
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REPORT_ERROR(ErrorManagement::Information, "pulse length reached setpoint.");
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}
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//Do action
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*outputSignal -= aps_swon; //Turn off only aps_swon
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mhvps_hvon_is_on = false;
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aps_hvon_is_on = false;
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aps_swon_is_on = false;
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bps_hvon_is_on = false;
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bps_swon_is_on = false;
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REPORT_ERROR(ErrorManagement::Debug, "0 was set to outputSignal at %d.", *currentTime);
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}
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*outputRFON = 0;
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*outputBeamONTime = *currentTime - plcOnTime;
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*outputRFONTime = *currentTime - apsSwonTime;
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//State transition condition
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if (!aps_swon_is_on && !bps_swon_is_on && !mhvps_hvon_is_on) {
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currentState = HVTerminate;
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apsSwoffTime = *currentTime;
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REPORT_ERROR(ErrorManagement::Information, "state was changed to HVTerminate");
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}
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}
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else if (currentState == HVTerminate) {
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//Action in this state.
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*outputBeamON = 1;
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*outputHVArmed = 1;
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*outputHVInjection = 1;
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*outputRFON = 1;
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// State transition condition.
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if (*currentTime - apsSwoffTime >= turn_off_delay){
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*outputSignal = 0;
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}
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if (*triggerSignal == false){
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//Check PLC_ON is reset
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currentState = WaitTrigger;
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*outputSignal = 0;
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REPORT_ERROR(ErrorManagement::Debug, "state was changed to WaitTrigger");
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}
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}
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return true;
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}
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CLASS_REGISTER(JASDNRTStateMachineGAM, "1.0")
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@@ -0,0 +1,250 @@
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/**
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||||
* @file JARTStateMachineGAM.h
|
||||
* @brief Header file for class JASDNRTStateMachineGAM
|
||||
* @date Nov 26, 2018
|
||||
* @author aneto
|
||||
*
|
||||
* @copyright Copyright 2015 F4E | European Joint Undertaking for ITER and
|
||||
* the Development of Fusion Energy ('Fusion for Energy').
|
||||
* Licensed under the EUPL, Version 1.1 or - as soon they will be approved
|
||||
* by the European Commission - subsequent versions of the EUPL (the "Licence")
|
||||
* You may not use this work except in compliance with the Licence.
|
||||
* You may obtain a copy of the Licence at: http://ec.europa.eu/idabc/eupl
|
||||
*
|
||||
* @warning Unless required by applicable law or agreed to in writing,
|
||||
* software distributed under the Licence is distributed on an "AS IS"
|
||||
* basis, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express
|
||||
* or implied. See the Licence permissions and limitations under the Licence.
|
||||
|
||||
* @details This header file contains the declaration of the class JARTStateMachineGAM
|
||||
* with all of its public, protected and private members. It may also include
|
||||
* definitions for inline methods which need to be visible to the compiler.
|
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*/
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#ifndef GAMS_JASDNRTSTATEMACHINEGAM_H_
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#define GAMS_JASDNRTSTATEMACHINEGAM_H_
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||||
/*---------------------------------------------------------------------------*/
|
||||
/* Standard header includes */
|
||||
/*---------------------------------------------------------------------------*/
|
||||
|
||||
/*---------------------------------------------------------------------------*/
|
||||
/* Project header includes */
|
||||
/*---------------------------------------------------------------------------*/
|
||||
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#include "GAM.h"
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/*---------------------------------------------------------------------------*/
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||||
/* Class declaration */
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/*---------------------------------------------------------------------------*/
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||||
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/**
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* @brief GAM provides real-time state machine that communicate with SDN packet.
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*
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* The configuration syntax is (names and signal quantity are only given as an example):
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* <pre>
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* +GAMSDNRealTimeStateMachine = {
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* Class = JASDNRTStateMachineGAM
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* ConditionTrigger = 1
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* mhvps_hvon = 4
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* aps_hvon = 1
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* aps_swon = 16
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* bps_hvon = 2
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* bps_swon = 8
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* InputSignals = {
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* Time = {
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* DataSource = DDB1
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* Type = uint32
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* }
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* PLC_ON = {
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* DataSource = DDB1
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* Type = uint32
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* }
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* MHVPS_DT = {
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* DataSource = DDB1
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* Type = uint32
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* }
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* APS_HVON_DT = {
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* DataSource = DDB1
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* Type = uint32
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* }
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* APS_SWON_DT = {
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* DataSource = DDB1
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||||
* Type = uint32
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||||
* }
|
||||
* BPS_HVON_DT = {
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||||
* DataSource = DDB1
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||||
* Type = uint32
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||||
* }
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||||
* BPS_SWON_DT = {
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||||
* DataSource = DDB1
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||||
* Type = uint32
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||||
* }
|
||||
* SHOTLEN = {
|
||||
* DataSource = DDB1
|
||||
* Type = uint32
|
||||
* }
|
||||
* StopRequest = {
|
||||
* DataSource = DDB1
|
||||
* Type = uint32
|
||||
* }
|
||||
* MODE_SHOTLEN_FLAG = {
|
||||
* DataSource = DDB1
|
||||
* Type = uint32
|
||||
* }
|
||||
* Command = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint16
|
||||
* }
|
||||
* }
|
||||
* OutputSignals = {
|
||||
* Value = {
|
||||
* //DataSource = NI6259
|
||||
* DataSource = Display
|
||||
* Type = uint32
|
||||
* Trigger = 1
|
||||
* }
|
||||
* BeamON = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* HVARMED = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* HVINJECTION = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* RFON = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* BeamONTime = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* RFONTime = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* SHOT_ID = {
|
||||
* DataSource = RealTimeThreadAsyncBridge
|
||||
* Type = uint32
|
||||
* }
|
||||
* }
|
||||
* }
|
||||
* </pre>
|
||||
*
|
||||
*/
|
||||
|
||||
class JASDNRTStateMachineGAM : public MARTe::GAM, public MARTe::StatefulI {
|
||||
public:
|
||||
CLASS_REGISTER_DECLARATION()
|
||||
|
||||
JASDNRTStateMachineGAM();
|
||||
|
||||
virtual ~JASDNRTStateMachineGAM();
|
||||
|
||||
virtual bool Initialise(MARTe::StructuredDataI & data);
|
||||
|
||||
virtual bool Setup();
|
||||
|
||||
virtual bool Execute();
|
||||
|
||||
virtual bool PrepareNextState(const MARTe::char8 * const currentStateName,
|
||||
const MARTe::char8 * const nextStateName);
|
||||
|
||||
private:
|
||||
//The list of possible states
|
||||
enum JARealTimeState {
|
||||
WaitTrigger = 0,
|
||||
SwitchingHVPS_HVON = 1,
|
||||
WaitSDNTrigger = 2,
|
||||
SwitchingHVPS_SWON = 3,
|
||||
RFON = 4,
|
||||
HVTerminate = 5
|
||||
};
|
||||
|
||||
//The current rtState
|
||||
JARealTimeState currentState;
|
||||
|
||||
/////////////////////////////////////////////////
|
||||
// Static parameter given by cfg File
|
||||
/////////////////////////////////////////////////
|
||||
//A given condition
|
||||
MARTe::uint32 conditionTrigger;
|
||||
//What to output in a given state and condition
|
||||
MARTe::uint32 mhvps_hvon;
|
||||
MARTe::uint32 aps_hvon;
|
||||
MARTe::uint32 aps_swon;
|
||||
MARTe::uint32 bps_hvon;
|
||||
MARTe::uint32 bps_swon;
|
||||
|
||||
/////////////////////////////////////////////////
|
||||
// Input signals
|
||||
/////////////////////////////////////////////////
|
||||
//The trigger signal (PLC_ON)
|
||||
MARTe::uint32 *triggerSignal;
|
||||
//Time signal (Time from TimerGAM)
|
||||
MARTe::uint32 *currentTime;
|
||||
// Input signals for trigger delay parameters
|
||||
MARTe::uint32 *triggerDelay_mhvps_hvon;
|
||||
MARTe::uint32 *triggerDelay_aps_hvon;
|
||||
MARTe::uint32 *triggerDelay_aps_swon;
|
||||
MARTe::uint32 *triggerDelay_bps_hvon;
|
||||
MARTe::uint32 *triggerDelay_bps_swon;
|
||||
MARTe::uint32 *triggerDelay_shotlen;
|
||||
// Input signal for sequence stop request.
|
||||
MARTe::uint32 *stopRequest;
|
||||
// Input signal for pulse length limit by mode.
|
||||
MARTe::uint32 *modePulseLengthLimit;
|
||||
// Input signal for SDN commands.
|
||||
MARTe::uint16 *sdnCommand;
|
||||
|
||||
/////////////////////////////////////////////////////////////
|
||||
// Output signal to which the output value will be written.
|
||||
/////////////////////////////////////////////////////////////
|
||||
// One state write One signal.
|
||||
MARTe::uint32 *outputSignal;
|
||||
// state notify output
|
||||
MARTe::uint32 *outputBeamON;
|
||||
MARTe::uint32 *outputHVArmed;
|
||||
MARTe::uint32 *outputHVInjection;
|
||||
MARTe::uint32 *outputRFON;
|
||||
// elapsed time notify output;
|
||||
MARTe::uint32 *outputBeamONTime;
|
||||
MARTe::uint32 *outputRFONTime;
|
||||
// shot counter (coutup every RFON time.)
|
||||
MARTe::uint32 *shotCounter;
|
||||
|
||||
//////////////////////////////
|
||||
//Internal Parameters
|
||||
//////////////////////////////
|
||||
//PLC_ON time holder
|
||||
MARTe::uint32 plcOnTime;
|
||||
//APS_SWON time holder
|
||||
MARTe::uint32 apsSwonTime;
|
||||
MARTe::uint32 apsSwoffTime;
|
||||
|
||||
//PS turn off delay
|
||||
MARTe::uint32 turn_off_delay;
|
||||
|
||||
//SDN trigger command arrival time.
|
||||
MARTe::uint32 sdnTriggerTime;
|
||||
//HVPS state holder
|
||||
bool mhvps_hvon_is_on;
|
||||
bool aps_hvon_is_on;
|
||||
bool aps_swon_is_on;
|
||||
bool bps_hvon_is_on;
|
||||
bool bps_swon_is_on;
|
||||
|
||||
};
|
||||
|
||||
|
||||
|
||||
/*---------------------------------------------------------------------------*/
|
||||
/* Inline method definitions */
|
||||
/*---------------------------------------------------------------------------*/
|
||||
|
||||
#endif /* GAMS_JASDNRTSTATEMACHINEGAM_H_ */
|
||||
@@ -0,0 +1,27 @@
|
||||
#############################################################
|
||||
#
|
||||
# Copyright 2015 F4E | European Joint Undertaking for ITER
|
||||
# and the Development of Fusion Energy ('Fusion for Energy')
|
||||
#
|
||||
# Licensed under the EUPL, Version 1.1 or - as soon they
|
||||
# will be approved by the European Commission - subsequent
|
||||
# versions of the EUPL (the "Licence");
|
||||
# You may not use this work except in compliance with the
|
||||
# Licence.
|
||||
# You may obtain a copy of the Licence at:
|
||||
#
|
||||
# http://ec.europa.eu/idabc/eupl
|
||||
#
|
||||
# Unless required by applicable law or agreed to in
|
||||
# writing, software distributed under the Licence is
|
||||
# distributed on an "AS IS" basis,
|
||||
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either
|
||||
# express or implied.
|
||||
# See the Licence for the specific language governing
|
||||
# permissions and limitations under the Licence.
|
||||
#
|
||||
# $Id: Makefile.gcc 3 2012-01-15 16:26:07Z aneto $
|
||||
#
|
||||
#############################################################
|
||||
|
||||
include Makefile.inc
|
||||
@@ -0,0 +1,55 @@
|
||||
#############################################################
|
||||
#
|
||||
# Copyright 2015 F4E | European Joint Undertaking for ITER
|
||||
# and the Development of Fusion Energy ('Fusion for Energy')
|
||||
#
|
||||
# Licensed under the EUPL, Version 1.1 or - as soon they
|
||||
# will be approved by the European Commission - subsequent
|
||||
# versions of the EUPL (the "Licence");
|
||||
# You may not use this work except in compliance with the
|
||||
# Licence.
|
||||
# You may obtain a copy of the Licence at:
|
||||
#
|
||||
# http://ec.europa.eu/idabc/eupl
|
||||
#
|
||||
# Unless required by applicable law or agreed to in
|
||||
# writing, software distributed under the Licence is
|
||||
# distributed on an "AS IS" basis,
|
||||
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either
|
||||
# express or implied.
|
||||
# See the Licence for the specific language governing
|
||||
# permissions and limitations under the Licence.
|
||||
#
|
||||
# $Id: Makefile.inc 3 2012-01-15 16:26:07Z aneto $
|
||||
#
|
||||
#############################################################
|
||||
OBJSX=JASDNRTStateMachineGAM.x
|
||||
|
||||
PACKAGE=GAMs
|
||||
|
||||
ROOT_DIR=../../../../obj
|
||||
MAKEDEFAULTDIR=$(MARTe2_DIR)/MakeDefaults
|
||||
include $(MAKEDEFAULTDIR)/MakeStdLibDefs.$(TARGET)
|
||||
|
||||
INCLUDES += -I.
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L0Types
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L1Portability
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L2Objects
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L3Streams
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L4Messages
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L4Configuration
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/BareMetal/L5GAMs
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/Scheduler/L1Portability
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/Scheduler/L3Services
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/Scheduler/L4Messages
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/FileSystem/L1Portability
|
||||
INCLUDES += -I$(MARTe2_DIR)/Source/Core/FileSystem/L3Streams
|
||||
|
||||
|
||||
|
||||
all: $(OBJS) $(SUBPROJ) \
|
||||
$(BUILD_DIR)/JASDNRTStateMachineGAM$(LIBEXT) \
|
||||
$(BUILD_DIR)/JASDNRTStateMachineGAM$(DLLEXT)
|
||||
echo $(OBJS)
|
||||
|
||||
include $(MAKEDEFAULTDIR)/MakeStdLibRules.$(TARGET)
|
||||
Reference in New Issue
Block a user