eive-obsw/bsp_q7s/core/scheduling.cpp

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#include "scheduling.h"
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#include <fsfw/devicehandlers/DeviceCommunicationIF.h>
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#include <linux/scheduling.h>
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#include <iostream>
#include <vector>
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#include "OBSWConfig.h"
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#include "bsp_q7s/core/ObjectFactory.h"
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#include "fsfw/objectmanager/ObjectManager.h"
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#include "fsfw/objectmanager/ObjectManagerIF.h"
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#include "fsfw/platform.h"
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#include "fsfw/returnvalues/returnvalue.h"
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#include "fsfw/serviceinterface/ServiceInterfaceStream.h"
#include "fsfw/tasks/FixedTimeslotTaskIF.h"
#include "fsfw/tasks/PeriodicTaskIF.h"
#include "fsfw/tasks/TaskFactory.h"
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#include "mission/devices/devicedefinitions/Max31865Definitions.h"
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#include "mission/utility/InitMission.h"
#include "pollingsequence/pollingSequenceFactory.h"
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/* This is configured for linux without CR */
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#ifdef PLATFORM_UNIX
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ServiceInterfaceStream sif::debug("DEBUG");
ServiceInterfaceStream sif::info("INFO");
ServiceInterfaceStream sif::warning("WARNING");
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ServiceInterfaceStream sif::error("ERROR");
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#else
ServiceInterfaceStream sif::debug("DEBUG", true);
ServiceInterfaceStream sif::info("INFO", true);
ServiceInterfaceStream sif::warning("WARNING", true);
ServiceInterfaceStream sif::error("ERROR", true, false, true);
#endif
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ObjectManagerIF* objectManager = nullptr;
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void scheduling::initMission() {
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sif::info << "Building global objects.." << std::endl;
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try {
/* Instantiate global object manager and also create all objects */
ObjectManager::instance()->setObjectFactoryFunction(ObjectFactory::produce, nullptr);
} catch (const std::invalid_argument& e) {
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sif::error << "scheduling::initMission: Object Construction failed with an "
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"invalid argument: "
<< e.what();
std::exit(1);
}
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sif::info << "Initializing all objects.." << std::endl;
ObjectManager::instance()->initialize();
/* This function creates and starts all tasks */
initTasks();
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}
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void scheduling::initTasks() {
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TaskFactory* factory = TaskFactory::instance();
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ReturnValue_t result = returnvalue::OK;
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if (factory == nullptr) {
/* Should never happen ! */
return;
}
#if OBSW_PRINT_MISSED_DEADLINES == 1
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void (*missedDeadlineFunc)(void) = TaskFactory::printMissedDeadline;
#else
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void (*missedDeadlineFunc)(void) = nullptr;
#endif
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#if OBSW_ADD_SA_DEPL == 1
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// Could add this to the core controller but the core controller does so many thing that I would
// prefer to have the solar array deployment in a seprate task.
PeriodicTaskIF* solarArrayDeplTask = factory->createPeriodicTask(
"SOLAR_ARRAY_DEPL", 65, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.4, missedDeadlineFunc);
result = solarArrayDeplTask->addComponent(objects::SOLAR_ARRAY_DEPL_HANDLER);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("SOLAR_ARRAY_DEPL", objects::SOLAR_ARRAY_DEPL_HANDLER);
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}
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#endif
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PeriodicTaskIF* sysTask = factory->createPeriodicTask(
"CORE_CTRL", 60, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.4, missedDeadlineFunc);
result = sysTask->addComponent(objects::CORE_CONTROLLER);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CORE_CTRL", objects::CORE_CONTROLLER);
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}
result = sysTask->addComponent(objects::PL_SUBSYSTEM);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PL_SUBSYSTEM", objects::PL_SUBSYSTEM);
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}
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/* TMTC Distribution */
PeriodicTaskIF* tmTcDistributor = factory->createPeriodicTask(
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"DIST", 45, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.2, missedDeadlineFunc);
#if OBSW_ADD_TCPIP_BRIDGE == 1
result = tmTcDistributor->addComponent(objects::TMTC_BRIDGE);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("TMTC_BRIDGE", objects::TMTC_BRIDGE);
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}
#endif
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result = tmTcDistributor->addComponent(objects::CCSDS_PACKET_DISTRIBUTOR);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CCSDS_DISTRIB", objects::CCSDS_PACKET_DISTRIBUTOR);
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}
result = tmTcDistributor->addComponent(objects::PUS_PACKET_DISTRIBUTOR);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_PACKET_DISTRIB", objects::PUS_PACKET_DISTRIBUTOR);
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}
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result = tmTcDistributor->addComponent(objects::CFDP_DISTRIBUTOR);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CFDP_DISTRIBUTOR", objects::CFDP_DISTRIBUTOR);
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}
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result = tmTcDistributor->addComponent(objects::TM_FUNNEL);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("TM_FUNNEL", objects::TM_FUNNEL);
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}
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#if OBSW_ADD_TCPIP_BRIDGE == 1
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PeriodicTaskIF* tmtcPollingTask = factory->createPeriodicTask(
"TMTC_POLLING", 80, PeriodicTaskIF::MINIMUM_STACK_SIZE, 2.0, missedDeadlineFunc);
result = tmtcPollingTask->addComponent(objects::TMTC_POLLING_TASK);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("UDP_POLLING", objects::TMTC_POLLING_TASK);
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}
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#endif
#if OBSW_ADD_CCSDS_IP_CORES == 1
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PeriodicTaskIF* ccsdsHandlerTask = factory->createPeriodicTask(
"CCSDS_HANDLER", 50, PeriodicTaskIF::MINIMUM_STACK_SIZE, 2.0, missedDeadlineFunc);
result = ccsdsHandlerTask->addComponent(objects::CCSDS_HANDLER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CCSDS Handler", objects::CCSDS_HANDLER);
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}
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// Runs in IRQ mode, frequency does not really matter
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PeriodicTaskIF* pdecHandlerTask = factory->createPeriodicTask(
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"PDEC_HANDLER", 75, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, missedDeadlineFunc);
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result = pdecHandlerTask->addComponent(objects::PDEC_HANDLER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PDEC Handler", objects::PDEC_HANDLER);
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}
#endif /* OBSW_ADD_CCSDS_IP_CORE == 1 */
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#if OBSW_ADD_CFDP_COMPONENTS == 1
PeriodicTaskIF* cfdpTask = factory->createPeriodicTask(
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"CFDP Handler", 45, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.4, missedDeadlineFunc);
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result = cfdpTask->addComponent(objects::CFDP_HANDLER);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("CFDP Handler", objects::CFDP_HANDLER);
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}
#endif
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PeriodicTaskIF* acsCtrlTask = factory->createPeriodicTask(
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"ACS_TASK", 50, PeriodicTaskIF::MINIMUM_STACK_SIZE * 2, 0.4, missedDeadlineFunc);
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#if OBSW_ADD_GPS_CTRL == 1
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result = acsCtrlTask->addComponent(objects::GPS_CONTROLLER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("GPS_CTRL", objects::GPS_CONTROLLER);
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}
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#endif /* OBSW_ADD_GPS_CTRL */
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#if OBSW_ADD_ACS_CTRL == 1
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acsCtrlTask->addComponent(objects::ACS_CONTROLLER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("ACS_CTRL", objects::ACS_CONTROLLER);
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}
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#endif
#if OBSW_Q7S_EM == 1
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acsCtrlTask->addComponent(objects::MGM_0_LIS3_HANDLER);
acsCtrlTask->addComponent(objects::MGM_1_RM3100_HANDLER);
acsCtrlTask->addComponent(objects::MGM_2_LIS3_HANDLER);
acsCtrlTask->addComponent(objects::MGM_3_RM3100_HANDLER);
acsCtrlTask->addComponent(objects::IMTQ_HANDLER);
acsCtrlTask->addComponent(objects::SUS_0_N_LOC_XFYFZM_PT_XF);
acsCtrlTask->addComponent(objects::SUS_6_R_LOC_XFYBZM_PT_XF);
acsCtrlTask->addComponent(objects::SUS_1_N_LOC_XBYFZM_PT_XB);
acsCtrlTask->addComponent(objects::SUS_7_R_LOC_XBYBZM_PT_XB);
acsCtrlTask->addComponent(objects::SUS_2_N_LOC_XFYBZB_PT_YB);
acsCtrlTask->addComponent(objects::SUS_8_R_LOC_XBYBZB_PT_YB);
acsCtrlTask->addComponent(objects::SUS_3_N_LOC_XFYBZF_PT_YF);
acsCtrlTask->addComponent(objects::SUS_9_R_LOC_XBYBZB_PT_YF);
acsCtrlTask->addComponent(objects::SUS_4_N_LOC_XMYFZF_PT_ZF);
acsCtrlTask->addComponent(objects::SUS_10_N_LOC_XMYBZF_PT_ZF);
acsCtrlTask->addComponent(objects::SUS_5_N_LOC_XFYMZB_PT_ZB);
acsCtrlTask->addComponent(objects::SUS_11_R_LOC_XBYMZB_PT_ZB);
acsCtrlTask->addComponent(objects::GYRO_0_ADIS_HANDLER);
acsCtrlTask->addComponent(objects::GYRO_1_L3G_HANDLER);
acsCtrlTask->addComponent(objects::GYRO_2_ADIS_HANDLER);
acsCtrlTask->addComponent(objects::GYRO_3_L3G_HANDLER);
acsCtrlTask->addComponent(objects::GPS_CONTROLLER);
acsCtrlTask->addComponent(objects::STAR_TRACKER);
acsCtrlTask->addComponent(objects::RW1);
acsCtrlTask->addComponent(objects::RW2);
acsCtrlTask->addComponent(objects::RW3);
acsCtrlTask->addComponent(objects::RW4);
#endif
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PeriodicTaskIF* acsSysTask = factory->createPeriodicTask(
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"SYS_TASK", 40, PeriodicTaskIF::MINIMUM_STACK_SIZE * 2, 0.4, missedDeadlineFunc);
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static_cast<void>(acsSysTask);
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#if OBSW_ADD_ACS_BOARD == 1
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result = acsSysTask->addComponent(objects::ACS_BOARD_ASS);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("ACS_BOARD_ASS", objects::ACS_BOARD_ASS);
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}
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#endif /* OBSW_ADD_ACS_HANDLERS */
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#if OBSW_ADD_RW == 1
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result = acsSysTask->addComponent(objects::RW_ASS);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("RW_ASS", objects::RW_ASS);
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}
#endif
#if OBSW_ADD_SUS_BOARD_ASS == 1
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result = acsSysTask->addComponent(objects::SUS_BOARD_ASS);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("SUS_BOARD_ASS", objects::SUS_BOARD_ASS);
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}
#endif
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result = acsSysTask->addComponent(objects::ACS_SUBSYSTEM);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("ACS_SUBSYSTEM", objects::ACS_SUBSYSTEM);
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}
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#if OBSW_ADD_RTD_DEVICES == 1
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PeriodicTaskIF* tcsPollingTask = factory->createPeriodicTask(
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"TCS_POLLING_TASK", 70, PeriodicTaskIF::MINIMUM_STACK_SIZE * 2, 0.5, missedDeadlineFunc);
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result = tcsPollingTask->addComponent(objects::SPI_RTD_COM_IF);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("SPI_RTD_POLLING", objects::SPI_RTD_COM_IF);
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}
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PeriodicTaskIF* tcsTask = factory->createPeriodicTask(
"TCS_TASK", 45, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.8, missedDeadlineFunc);
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std::array<object_id_t, EiveMax31855::NUM_RTDS> rtdIds = {
objects::RTD_0_IC3_PLOC_HEATSPREADER,
objects::RTD_1_IC4_PLOC_MISSIONBOARD,
objects::RTD_2_IC5_4K_CAMERA,
objects::RTD_3_IC6_DAC_HEATSPREADER,
objects::RTD_4_IC7_STARTRACKER,
objects::RTD_5_IC8_RW1_MX_MY,
objects::RTD_6_IC9_DRO,
objects::RTD_7_IC10_SCEX,
objects::RTD_8_IC11_X8,
objects::RTD_9_IC12_HPA,
objects::RTD_10_IC13_PL_TX,
objects::RTD_11_IC14_MPA,
objects::RTD_12_IC15_ACU,
objects::RTD_13_IC16_PLPCDU_HEATSPREADER,
objects::RTD_14_IC17_TCS_BOARD,
objects::RTD_15_IC18_IMTQ,
};
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for (const auto& rtd : rtdIds) {
tcsTask->addComponent(rtd, DeviceHandlerIF::PERFORM_OPERATION);
tcsTask->addComponent(rtd, DeviceHandlerIF::SEND_WRITE);
tcsTask->addComponent(rtd, DeviceHandlerIF::GET_WRITE);
tcsTask->addComponent(rtd, DeviceHandlerIF::SEND_READ);
tcsTask->addComponent(rtd, DeviceHandlerIF::GET_READ);
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}
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#endif
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PeriodicTaskIF* tcsSystemTask = factory->createPeriodicTask(
"TCS_TASK", 45, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.5, missedDeadlineFunc);
#if OBSW_ADD_RTD_DEVICES == 1
result = tcsSystemTask->addComponent(objects::TCS_BOARD_ASS);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("TCS_BOARD_ASS", objects::TCS_BOARD_ASS);
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}
#endif /* OBSW_ADD_RTD_DEVICES */
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#if OBSW_ADD_TCS_CTRL == 1
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result = tcsSystemTask->addComponent(objects::THERMAL_CONTROLLER);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("THERMAL_CONTROLLER", objects::THERMAL_CONTROLLER);
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}
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#endif
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#if OBSW_ADD_HEATERS == 1
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result = tcsSystemTask->addComponent(objects::HEATER_HANDLER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("HEATER_HANDLER", objects::HEATER_HANDLER);
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}
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#endif
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#if OBSW_ADD_STAR_TRACKER == 1
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PeriodicTaskIF* strHelperTask = factory->createPeriodicTask(
"STR_HELPER", 20, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.2, missedDeadlineFunc);
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result = strHelperTask->addComponent(objects::STR_HELPER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("STR_HELPER", objects::STR_HELPER);
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}
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#endif /* OBSW_ADD_STAR_TRACKER == 1 */
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#if OBSW_ADD_PLOC_MPSOC == 1
PeriodicTaskIF* mpsocHelperTask = factory->createPeriodicTask(
"PLOC_MPSOC_HELPER", 20, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.2, missedDeadlineFunc);
result = mpsocHelperTask->addComponent(objects::PLOC_MPSOC_HELPER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PLOC_MPSOC_HELPER", objects::PLOC_MPSOC_HELPER);
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}
#endif /* OBSW_ADD_PLOC_MPSOC */
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#if OBSW_ADD_PLOC_SUPERVISOR == 1
PeriodicTaskIF* supvHelperTask = factory->createPeriodicTask(
"PLOC_SUPV_HELPER", 10, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, missedDeadlineFunc);
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result = supvHelperTask->addComponent(objects::PLOC_SUPERVISOR_HELPER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PLOC_SUPV_HELPER", objects::PLOC_SUPERVISOR_HELPER);
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}
#endif /* OBSW_ADD_PLOC_SUPERVISOR */
PeriodicTaskIF* plTask = factory->createPeriodicTask(
"PL_TASK", 25, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.0, missedDeadlineFunc);
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scheduling::addMpsocSupvHandlers(plTask);
plTask->addComponent(objects::CAM_SWITCHER);
#if OBSW_ADD_SCEX_DEVICE == 1
PeriodicTaskIF* scexDevHandler;
PeriodicTaskIF* scexReaderTask;
scheduling::schedulingScex(*factory, scexDevHandler, scexReaderTask);
#endif
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std::vector<PeriodicTaskIF*> pusTasks;
createPusTasks(*factory, missedDeadlineFunc, pusTasks);
std::vector<PeriodicTaskIF*> pstTasks;
createPstTasks(*factory, missedDeadlineFunc, pstTasks);
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#if OBSW_ADD_TEST_CODE == 1
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#if OBSW_TEST_CCSDS_BRIDGE == 1
PeriodicTaskIF* ptmeTestTask = factory->createPeriodicTask(
"PTME_TEST", 80, PeriodicTaskIF::MINIMUM_STACK_SIZE, 2.0, missedDeadlineFunc);
result = ptmeTestTask->addComponent(objects::CCSDS_IP_CORE_BRIDGE);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PTME_TEST", objects::CCSDS_IP_CORE_BRIDGE);
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}
#endif
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std::vector<PeriodicTaskIF*> testTasks;
createTestTasks(*factory, missedDeadlineFunc, testTasks);
#endif
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auto taskStarter = [](std::vector<PeriodicTaskIF*>& taskVector, std::string name) {
for (const auto& task : taskVector) {
if (task != nullptr) {
task->startTask();
} else {
sif::error << "Task in vector " << name << " is invalid!" << std::endl;
}
}
};
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sif::info << "Starting tasks.." << std::endl;
tmTcDistributor->startTask();
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#if OBSW_ADD_TCPIP_BRIDGE == 1
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tmtcPollingTask->startTask();
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#endif
#if OBSW_ADD_CCSDS_IP_CORES == 1
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ccsdsHandlerTask->startTask();
pdecHandlerTask->startTask();
#endif /* OBSW_ADD_CCSDS_IP_CORES == 1 */
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sysTask->startTask();
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#if OBSW_ADD_SA_DEPL == 1
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solarArrayDeplTask->startTask();
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#endif
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taskStarter(pstTasks, "PST task vector");
taskStarter(pusTasks, "PUS task vector");
#if OBSW_ADD_SCEX_DEVICE == 1
scexDevHandler->startTask();
scexReaderTask->startTask();
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#endif
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#if OBSW_TEST_CCSDS_BRIDGE == 1
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ptmeTestTask->startTask();
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#endif
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#if OBSW_ADD_CFDP_COMPONENTS == 1
cfdpTask->startTask();
#endif
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#if OBSW_ADD_STAR_TRACKER == 1
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strHelperTask->startTask();
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#endif /* OBSW_ADD_STAR_TRACKER == 1 */
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acsCtrlTask->startTask();
acsSysTask->startTask();
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#if OBSW_ADD_RTD_DEVICES == 1
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tcsPollingTask->startTask();
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tcsTask->startTask();
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#endif /* OBSW_ADD_RTD_DEVICES == 1 */
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if (not tcsSystemTask->isEmpty()) {
tcsSystemTask->startTask();
}
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#if OBSW_ADD_PLOC_SUPERVISOR == 1
supvHelperTask->startTask();
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#endif /* OBSW_ADD_PLOC_SUPERVISOR == 1 */
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plTask->startTask();
#if OBSW_ADD_TEST_CODE == 1
taskStarter(testTasks, "Test task vector");
#endif
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sif::info << "Tasks started.." << std::endl;
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}
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void scheduling::createPstTasks(TaskFactory& factory, TaskDeadlineMissedFunction missedDeadlineFunc,
std::vector<PeriodicTaskIF*>& taskVec) {
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ReturnValue_t result = returnvalue::OK;
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/* Polling Sequence Table Default */
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#if OBSW_ADD_SPI_TEST_CODE == 0
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FixedTimeslotTaskIF* spiPst = factory.createFixedTimeslotTask(
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"MAIN_SPI", 75, PeriodicTaskIF::MINIMUM_STACK_SIZE * 4, 0.5, missedDeadlineFunc);
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result = pst::pstSpi(spiPst);
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if (result != returnvalue::OK) {
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if (result == FixedTimeslotTaskIF::SLOT_LIST_EMPTY) {
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sif::warning << "scheduling::initTasks: SPI PST is empty" << std::endl;
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} else {
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sif::error << "scheduling::initTasks: Creating SPI PST failed!" << std::endl;
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}
} else {
taskVec.push_back(spiPst);
}
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#endif
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#if OBSW_ADD_RW == 1
FixedTimeslotTaskIF* rwPstTask = factory.createFixedTimeslotTask(
"RW_SPI", 65, PeriodicTaskIF::MINIMUM_STACK_SIZE * 2, 1.0, missedDeadlineFunc);
result = pst::pstSpiRw(rwPstTask);
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if (result != returnvalue::OK) {
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if (result == FixedTimeslotTaskIF::SLOT_LIST_EMPTY) {
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sif::warning << "scheduling::initTasks: SPI PST is empty" << std::endl;
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} else {
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sif::error << "scheduling::initTasks: Creating SPI PST failed!" << std::endl;
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}
} else {
taskVec.push_back(rwPstTask);
}
#endif
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FixedTimeslotTaskIF* uartPst = factory.createFixedTimeslotTask(
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"UART_PST", 65, PeriodicTaskIF::MINIMUM_STACK_SIZE * 4, 0.2, missedDeadlineFunc);
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result = pst::pstUart(uartPst);
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if (result != returnvalue::OK) {
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if (result == FixedTimeslotTaskIF::SLOT_LIST_EMPTY) {
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sif::warning << "scheduling::initTasks: UART PST is empty" << std::endl;
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} else {
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sif::error << "scheduling::initTasks: Creating UART PST failed!" << std::endl;
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}
} else {
taskVec.push_back(uartPst);
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}
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#if OBSW_ADD_I2C_TEST_CODE == 0
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FixedTimeslotTaskIF* i2cPst = factory.createFixedTimeslotTask(
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"I2C_PST", 65, PeriodicTaskIF::MINIMUM_STACK_SIZE * 4, 0.2, missedDeadlineFunc);
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result = pst::pstI2c(i2cPst);
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if (result != returnvalue::OK) {
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if (result == FixedTimeslotTaskIF::SLOT_LIST_EMPTY) {
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sif::warning << "scheduling::initTasks: I2C PST is empty" << std::endl;
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} else {
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sif::error << "scheduling::initTasks: Creating I2C PST failed!" << std::endl;
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}
} else {
taskVec.push_back(i2cPst);
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}
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#endif
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#if OBSW_ADD_GOMSPACE_PCDU == 1
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FixedTimeslotTaskIF* gomSpacePstTask = factory.createFixedTimeslotTask(
"GS_PST_TASK", 70, PeriodicTaskIF::MINIMUM_STACK_SIZE * 4, 1.0, missedDeadlineFunc);
result = pst::pstGompaceCan(gomSpacePstTask);
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if (result != returnvalue::OK) {
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if (result != FixedTimeslotTaskIF::SLOT_LIST_EMPTY) {
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sif::error << "scheduling::initTasks: GomSpace PST initialization failed!" << std::endl;
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}
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}
taskVec.push_back(gomSpacePstTask);
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#endif
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}
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void scheduling::createPusTasks(TaskFactory& factory, TaskDeadlineMissedFunction missedDeadlineFunc,
std::vector<PeriodicTaskIF*>& taskVec) {
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ReturnValue_t result = returnvalue::OK;
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/* PUS Services */
PeriodicTaskIF* pusVerification = factory.createPeriodicTask(
"PUS_VERIF", 40, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.200, missedDeadlineFunc);
result = pusVerification->addComponent(objects::PUS_SERVICE_1_VERIFICATION);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_VERIF", objects::PUS_SERVICE_1_VERIFICATION);
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}
taskVec.push_back(pusVerification);
PeriodicTaskIF* pusEvents = factory.createPeriodicTask(
"PUS_EVENTS", 60, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.200, missedDeadlineFunc);
result = pusEvents->addComponent(objects::PUS_SERVICE_5_EVENT_REPORTING);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_EVENTS", objects::PUS_SERVICE_5_EVENT_REPORTING);
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}
result = pusEvents->addComponent(objects::EVENT_MANAGER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_MGMT", objects::EVENT_MANAGER);
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}
taskVec.push_back(pusEvents);
PeriodicTaskIF* pusHighPrio = factory.createPeriodicTask(
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"PUS_HIGH_PRIO", 50, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.2, missedDeadlineFunc);
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result = pusHighPrio->addComponent(objects::PUS_SERVICE_2_DEVICE_ACCESS);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_2", objects::PUS_SERVICE_2_DEVICE_ACCESS);
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}
result = pusHighPrio->addComponent(objects::PUS_SERVICE_9_TIME_MGMT);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_9", objects::PUS_SERVICE_9_TIME_MGMT);
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}
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taskVec.push_back(pusHighPrio);
PeriodicTaskIF* pusMedPrio = factory.createPeriodicTask(
"PUS_MED_PRIO", 40, PeriodicTaskIF::MINIMUM_STACK_SIZE, 0.8, missedDeadlineFunc);
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result = pusMedPrio->addComponent(objects::PUS_SERVICE_3_HOUSEKEEPING);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_3", objects::PUS_SERVICE_3_HOUSEKEEPING);
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}
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result = pusMedPrio->addComponent(objects::PUS_SERVICE_8_FUNCTION_MGMT);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_8", objects::PUS_SERVICE_8_FUNCTION_MGMT);
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}
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result = pusMedPrio->addComponent(objects::PUS_SERVICE_11_TC_SCHEDULER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_11", objects::PUS_SERVICE_11_TC_SCHEDULER);
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}
result = pusMedPrio->addComponent(objects::PUS_SERVICE_20_PARAMETERS);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_20", objects::PUS_SERVICE_20_PARAMETERS);
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}
result = pusMedPrio->addComponent(objects::PUS_SERVICE_200_MODE_MGMT);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_200", objects::PUS_SERVICE_200_MODE_MGMT);
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}
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result = pusMedPrio->addComponent(objects::PUS_SERVICE_201_HEALTH);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_201", objects::PUS_SERVICE_201_HEALTH);
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}
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// Used for connection tests, therefore use higher priority
result = pusMedPrio->addComponent(objects::PUS_SERVICE_17_TEST);
if (result != returnvalue::OK) {
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scheduling::printAddObjectError("PUS_17", objects::PUS_SERVICE_17_TEST);
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}
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taskVec.push_back(pusMedPrio);
PeriodicTaskIF* pusLowPrio = factory.createPeriodicTask(
"PUS_LOW_PRIO", 30, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1.6, missedDeadlineFunc);
result = pusLowPrio->addComponent(objects::INTERNAL_ERROR_REPORTER);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("ERROR_REPORTER", objects::INTERNAL_ERROR_REPORTER);
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}
taskVec.push_back(pusLowPrio);
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}
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void scheduling::createTestTasks(TaskFactory& factory,
TaskDeadlineMissedFunction missedDeadlineFunc,
std::vector<PeriodicTaskIF*>& taskVec) {
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#if OBSW_ADD_TEST_TASK == 1 && OBSW_ADD_TEST_CODE == 1
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ReturnValue_t result = returnvalue::OK;
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static_cast<void>(result); // supress warning in case it is not used
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PeriodicTaskIF* testTask = factory.createPeriodicTask(
"TEST_TASK", 60, PeriodicTaskIF::MINIMUM_STACK_SIZE, 1, missedDeadlineFunc);
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result = testTask->addComponent(objects::TEST_TASK);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("TEST_TASK", objects::TEST_TASK);
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}
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#if OBSW_ADD_SPI_TEST_CODE == 1
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result = testTask->addComponent(objects::SPI_TEST);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("SPI_TEST", objects::SPI_TEST);
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}
#endif
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#if OBSW_ADD_I2C_TEST_CODE == 1
result = testTask->addComponent(objects::I2C_TEST);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("I2C_TEST", objects::I2C_TEST);
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}
#endif
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#if OBSW_ADD_UART_TEST_CODE == 1
result = testTask->addComponent(objects::UART_TEST);
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if (result != returnvalue::OK) {
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scheduling::printAddObjectError("UART_TEST", objects::UART_TEST);
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}
#endif
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taskVec.push_back(testTask);
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#endif // OBSW_ADD_TEST_TASK == 1 && OBSW_ADD_TEST_CODE == 1
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}
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/**
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**/