423 lines
24 KiB
C++
423 lines
24 KiB
C++
#include "pollingSequenceFactory.h"
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#include <OBSWConfig.h>
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#include <fsfw/objectmanager/ObjectManagerIF.h>
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#include <fsfw/serviceinterface/ServiceInterfaceStream.h>
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#include <fsfw/devicehandlers/DeviceHandlerIF.h>
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#include <fsfw/tasks/FixedTimeslotTaskIF.h>
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#include <fsfwconfig/objects/systemObjectList.h>
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#include <fsfwconfig/OBSWConfig.h>
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ReturnValue_t pst::pollingSequenceInitDefault(FixedTimeslotTaskIF *thisSequence)
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{
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/* Length of a communication cycle */
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uint32_t length = thisSequence->getPeriodMs();
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thisSequence->addSlot(objects::TMP1075_HANDLER_1, length * 0,
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DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::TMP1075_HANDLER_2, length * 0,
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DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::HEATER_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::SOLAR_ARRAY_DEPL_HANDLER, length * 0,
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DeviceHandlerIF::PERFORM_OPERATION);
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#if Q7S_ADD_RTD_DEVICES == 1
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thisSequence->addSlot(objects::RTD_IC3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC5, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC6, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC7, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC8, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC9, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC10, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC11, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC12, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC13, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC14, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC15, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC16, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC17, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RTD_IC18, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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#endif /* Q7S_ADD_RTD_DEVICES */
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thisSequence->addSlot(objects::IMTQ_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::PLOC_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::TMP1075_HANDLER_1, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::TMP1075_HANDLER_2, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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#if Q7S_ADD_RTD_DEVICES == 1
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thisSequence->addSlot(objects::RTD_IC3, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC4, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC5, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC6, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC7, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC8, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC9, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC10, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC11, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC12, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC13, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC14, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC15, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC16, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC17, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RTD_IC18, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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#endif /* Q7S_ADD_RTD_DEVICES */
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thisSequence->addSlot(objects::IMTQ_HANDLER, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::TMP1075_HANDLER_1, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::TMP1075_HANDLER_2, length * 0.4, DeviceHandlerIF::GET_WRITE);
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#if Q7S_ADD_RTD_DEVICES == 1
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thisSequence->addSlot(objects::RTD_IC3, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC4, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC5, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC6, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC7, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC8, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC9, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC10, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC11, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC12, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC13, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC14, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC15, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC16, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC17, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RTD_IC18, length * 0.4, DeviceHandlerIF::GET_WRITE);
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#endif /* Q7S_ADD_RTD_DEVICES */
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thisSequence->addSlot(objects::IMTQ_HANDLER, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::TMP1075_HANDLER_1, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::TMP1075_HANDLER_2, length * 0.6, DeviceHandlerIF::SEND_READ);
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#if Q7S_ADD_RTD_DEVICES == 1
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thisSequence->addSlot(objects::RTD_IC3, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC4, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC5, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC6, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC7, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC8, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC9, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC10, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC11, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC12, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC13, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC14, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC15, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC16, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC17, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RTD_IC18, length * 0.6, DeviceHandlerIF::SEND_READ);
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#endif /* Q7S_ADD_RTD_DEVICES */
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thisSequence->addSlot(objects::IMTQ_HANDLER, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::TMP1075_HANDLER_1, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::TMP1075_HANDLER_2, length * 0.8, DeviceHandlerIF::GET_READ);
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#if Q7S_ADD_RTD_DEVICES == 1
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thisSequence->addSlot(objects::RTD_IC3, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC4, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC5, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC6, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC7, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC8, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC9, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC10, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC11, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC12, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC13, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC14, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC15, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC16, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC17, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RTD_IC18, length * 0.8, DeviceHandlerIF::GET_READ);
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#endif /* Q7S_ADD_RTD_DEVICES */
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thisSequence->addSlot(objects::IMTQ_HANDLER, length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.8, DeviceHandlerIF::GET_READ);
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/* Radiation sensor */
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// thisSequence->addSlot(objects::RAD_SENSOR, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RAD_SENSOR, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RAD_SENSOR, length * 0.4, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RAD_SENSOR, length * 0.6, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RAD_SENSOR, length * 0.8, DeviceHandlerIF::GET_READ);
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/* Sun sensor 1 */
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// thisSequence->addSlot(objects::SUS_1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::SUS_1, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::SUS_1, length * 0.4, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::SUS_1, length * 0.6, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::SUS_1, length * 0.8, DeviceHandlerIF::GET_READ);
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if (length != 3) {
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sif::waring << "pollingSequenceInitDefault: Frequency changed. Make sure timing critical "
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<< "SUS sensors still produce correct values" << std::endl;
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}
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/**
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* The sun sensor will be shutdown as soon as the chip select is pulled high. Thus all
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* requests to a sun sensor must be performed consecutively. Another reason for calling multiple
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* device handler cycles is that some ADC conversions need a small delay before the results can
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* be read.
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* One sun sensor communication sequence also blocks the SPI bus. So other devices can not be
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* inserted between the device handler cycles of one SUS.
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*/
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/* Write setup */
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thisSequence->addSlot(objects::SUS_8, length * 0.991, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::SUS_8, length * 0.992, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.993, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.994, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::SUS_8, length * 0.995, DeviceHandlerIF::GET_READ);
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/* Request temperature */
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thisSequence->addSlot(objects::SUS_8, length * 0.996, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::SUS_8, length * 0.997, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.998, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.999, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::SUS_8, length * 0.9, DeviceHandlerIF::GET_READ);
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/* Read temperature */
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thisSequence->addSlot(objects::SUS_8, length * 0.901, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::SUS_8, length * 0.902, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.903, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.904, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::SUS_8, length * 0.905, DeviceHandlerIF::GET_READ);
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/* Request and read ADC conversions */
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thisSequence->addSlot(objects::SUS_8, length * 0.906, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::SUS_8, length * 0.907, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.908, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::SUS_8, length * 0.909, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::SUS_8, length * 0.91, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::SUS_11, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::SUS_11, length * 0.2, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::SUS_11, length * 0.4, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::SUS_11, length * 0.6, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::SUS_11, length * 0.8, DeviceHandlerIF::GET_READ);
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if (thisSequence->checkSequence() == HasReturnvaluesIF::RETURN_OK) {
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return HasReturnvaluesIF::RETURN_OK;
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}
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sif::error << "PollingSequence::initialize has errors!" << std::endl;
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return HasReturnvaluesIF::RETURN_FAILED;
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}
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ReturnValue_t pst::gomspacePstInit(FixedTimeslotTaskIF *thisSequence){
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uint32_t length = thisSequence->getPeriodMs();
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thisSequence->addSlot(objects::PCDU_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::PCDU_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::P60DOCK_HANDLER,
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length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::PDU1_HANDLER,
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length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::PDU2_HANDLER,
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length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::ACU_HANDLER,
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length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::P60DOCK_HANDLER,
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length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::PDU1_HANDLER,
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length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::PDU2_HANDLER,
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length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::ACU_HANDLER,
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length * 0.2, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::P60DOCK_HANDLER,
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length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::PDU1_HANDLER,
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length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::PDU2_HANDLER,
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length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::ACU_HANDLER,
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length * 0.4, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::P60DOCK_HANDLER,
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length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::PDU1_HANDLER,
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length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::PDU2_HANDLER,
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length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::ACU_HANDLER,
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length * 0.6, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::P60DOCK_HANDLER,
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length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::PDU1_HANDLER,
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length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::PDU2_HANDLER,
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length * 0.8, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::ACU_HANDLER,
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length * 0.8, DeviceHandlerIF::GET_READ);
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#if OBSW_ADD_ACS_BOARD == 1
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// thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0,
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// DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.2,
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// DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.4,
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// DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.6,
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// DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.8,
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// DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0,
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// DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.2,
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// DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.4,
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// DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.6,
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// DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.8,
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// DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::MGM_2_LIS3_HANDLER, length * 0,
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// DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::MGM_2_LIS3_HANDLER, length * 0.2,
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// DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::MGM_2_LIS3_HANDLER, length * 0.4,
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// DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::MGM_2_LIS3_HANDLER, length * 0.6,
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// DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::MGM_2_LIS3_HANDLER, length * 0.8,
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// DeviceHandlerIF::GET_READ);
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//
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//
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// thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0,
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// DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.2,
|
|
// DeviceHandlerIF::SEND_WRITE);
|
|
// thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.4,
|
|
// DeviceHandlerIF::GET_WRITE);
|
|
// thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.6,
|
|
// DeviceHandlerIF::SEND_READ);
|
|
// thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.8,
|
|
// DeviceHandlerIF::GET_READ);
|
|
|
|
|
|
// thisSequence->addSlot(objects::GYRO_2_L3G_HANDLER, length * 0,
|
|
// DeviceHandlerIF::PERFORM_OPERATION);
|
|
// thisSequence->addSlot(objects::GYRO_2_L3G_HANDLER, length * 0.2,
|
|
// DeviceHandlerIF::SEND_WRITE);
|
|
// thisSequence->addSlot(objects::GYRO_2_L3G_HANDLER, length * 0.4,
|
|
// DeviceHandlerIF::GET_WRITE);
|
|
// thisSequence->addSlot(objects::GYRO_2_L3G_HANDLER, length * 0.6,
|
|
// DeviceHandlerIF::SEND_READ);
|
|
// thisSequence->addSlot(objects::GYRO_2_L3G_HANDLER, length * 0.8,
|
|
// DeviceHandlerIF::GET_READ);
|
|
|
|
|
|
thisSequence->addSlot(objects::MGM_3_RM3100_HANDLER, length * 0,
|
|
DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::MGM_3_RM3100_HANDLER, length * 0.2,
|
|
DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::MGM_3_RM3100_HANDLER, length * 0.4,
|
|
DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::MGM_3_RM3100_HANDLER, length * 0.6,
|
|
DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::MGM_3_RM3100_HANDLER, length * 0.8,
|
|
DeviceHandlerIF::GET_READ);
|
|
|
|
#endif
|
|
|
|
if (thisSequence->checkSequence() != HasReturnvaluesIF::RETURN_OK) {
|
|
sif::error << "Initialization of GomSpace PST failed" << std::endl;
|
|
return HasReturnvaluesIF::RETURN_FAILED;
|
|
}
|
|
return HasReturnvaluesIF::RETURN_OK;
|
|
}
|
|
|
|
ReturnValue_t pst::pollingSequenceAcsTest(FixedTimeslotTaskIF *thisSequence) {
|
|
uint32_t length = thisSequence->getPeriodMs();
|
|
|
|
thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0,
|
|
DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.2,
|
|
DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.4,
|
|
DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.6,
|
|
DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::MGM_0_LIS3_HANDLER, length * 0.8,
|
|
DeviceHandlerIF::GET_READ);
|
|
|
|
// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0,
|
|
// DeviceHandlerIF::PERFORM_OPERATION);
|
|
// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.2,
|
|
// DeviceHandlerIF::SEND_WRITE);
|
|
// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.4,
|
|
// DeviceHandlerIF::GET_WRITE);
|
|
// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.6,
|
|
// DeviceHandlerIF::SEND_READ);
|
|
// thisSequence->addSlot(objects::MGM_1_RM3100_HANDLER, length * 0.8,
|
|
// DeviceHandlerIF::GET_READ);
|
|
|
|
thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0,
|
|
DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.2,
|
|
DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.4,
|
|
DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.6,
|
|
DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::GYRO_1_L3G_HANDLER, length * 0.8,
|
|
DeviceHandlerIF::GET_READ);
|
|
if (thisSequence->checkSequence() != HasReturnvaluesIF::RETURN_OK) {
|
|
sif::error << "Initialization of ACS Board PST failed" << std::endl;
|
|
return HasReturnvaluesIF::RETURN_FAILED;
|
|
}
|
|
return HasReturnvaluesIF::RETURN_OK;
|
|
}
|
|
|
|
ReturnValue_t pst::pollingSequenceTE0720(FixedTimeslotTaskIF *thisSequence) {
|
|
uint32_t length = thisSequence->getPeriodMs();
|
|
|
|
#if TEST_PLOC_HANDLER == 1
|
|
thisSequence->addSlot(objects::PLOC_HANDLER, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.2, DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.4, DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.6, DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::PLOC_HANDLER, length * 0.8, DeviceHandlerIF::GET_READ);
|
|
#endif
|
|
|
|
#if TEST_SUS_HANDLER == 1
|
|
thisSequence->addSlot(objects::SUS_1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::SUS_1, length * 0.2, DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::SUS_1, length * 0.4, DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::SUS_1, length * 0.6, DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::SUS_1, length * 0.8, DeviceHandlerIF::GET_READ);
|
|
#endif
|
|
|
|
#if TEST_RADIATION_SENSOR_HANDLER == 1
|
|
thisSequence->addSlot(objects::RAD_SENSOR, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
|
|
thisSequence->addSlot(objects::RAD_SENSOR, length * 0.2, DeviceHandlerIF::SEND_WRITE);
|
|
thisSequence->addSlot(objects::RAD_SENSOR, length * 0.4, DeviceHandlerIF::GET_WRITE);
|
|
thisSequence->addSlot(objects::RAD_SENSOR, length * 0.6, DeviceHandlerIF::SEND_READ);
|
|
thisSequence->addSlot(objects::RAD_SENSOR, length * 0.8, DeviceHandlerIF::GET_READ);
|
|
#endif
|
|
|
|
|
|
if (thisSequence->checkSequence() != HasReturnvaluesIF::RETURN_OK) {
|
|
sif::error << "Initialization of TE0720 PST failed" << std::endl;
|
|
return HasReturnvaluesIF::RETURN_FAILED;
|
|
}
|
|
return HasReturnvaluesIF::RETURN_OK;
|
|
}
|
|
|