working on thermal controller unit test.
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@ -1,20 +1,50 @@
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#include "ThermalController.h"
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#include "ThermalController.h"
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ThermalController::ThermalController(object_id_t objectId, object_id_t parentId) :ExtendedControllerBase(objectId, parentId) {}
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ThermalController::ThermalController(object_id_t objectId, object_id_t parentId)
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: ExtendedControllerBase(objectId, parentId),
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sensorTemperatures(this),
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componentTemperatures(this) {}
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ReturnValue_t ThermalController::perform() { return HasReturnvaluesIF::RETURN_FAILED; }
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ReturnValue_t ThermalController::perform() { return HasReturnvaluesIF::RETURN_FAILED; }
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ReturnValue_t ThermalController::handleCommandMessage(CommandMessage* message) {
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ReturnValue_t ThermalController::handleCommandMessage(CommandMessage* message) {
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return RETURN_FAILED;
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return RETURN_FAILED;
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}
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}
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void ThermalController::performControlOperation() {}
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void ThermalController::performControlOperation() {
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sif::info << "tc performOperation()" << std::endl;
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ReturnValue_t result = sensorTemperatures.read();
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if (result != RETURN_OK) {
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return;
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}
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result = componentTemperatures.read();
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if (result != RETURN_OK) {
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return;
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}
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componentTemperatures.rw = (sensorTemperatures.rw.value + sensorTemperatures.gps.value) / 2;
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sensorTemperatures.commit();
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componentTemperatures.commit();
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}
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ReturnValue_t ThermalController::initializeLocalDataPool(localpool::DataPool& localDataPoolMap,
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ReturnValue_t ThermalController::initializeLocalDataPool(localpool::DataPool& localDataPoolMap,
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LocalDataPoolManager& poolManager) {
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LocalDataPoolManager& poolManager) {
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localDataPoolMap.emplace(thermalControllerDefinitions::SENSOR_RW, new PoolEntry<float>({0.0}));
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localDataPoolMap.emplace(thermalControllerDefinitions::SENSOR_GPS, new PoolEntry<float>({0.0}));
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localDataPoolMap.emplace(thermalControllerDefinitions::COMPONENT_RW, new PoolEntry<float>({0.0}));
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return RETURN_OK;
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return RETURN_OK;
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}
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}
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LocalPoolDataSetBase* ThermalController::getDataSetHandle(sid_t sid) { return nullptr; }
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LocalPoolDataSetBase* ThermalController::getDataSetHandle(sid_t sid) { return nullptr; }
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ReturnValue_t ThermalController::checkModeCommand(Mode_t mode, Submode_t submode,
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ReturnValue_t ThermalController::checkModeCommand(Mode_t mode, Submode_t submode,
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uint32_t* msToReachTheMode) {
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uint32_t* msToReachTheMode) {
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return RETURN_FAILED;
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if (submode != SUBMODE_NONE) {
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return INVALID_SUBMODE;
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}
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if ((mode != MODE_OFF) && (mode != MODE_ON) && (mode != MODE_NORMAL)) {
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return INVALID_MODE;
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}
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return RETURN_OK;
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}
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}
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@ -2,8 +2,7 @@
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#define MISSION_CONTROLLER_THERMALCONTROLLER_H_
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#define MISSION_CONTROLLER_THERMALCONTROLLER_H_
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#include <fsfw/controller/ExtendedControllerBase.h>
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#include <fsfw/controller/ExtendedControllerBase.h>
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#include <mission/controller/controllerdefinitions/ThermalControllerDefinitions.h>
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class ThermalController : public ExtendedControllerBase {
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class ThermalController : public ExtendedControllerBase {
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public:
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public:
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@ -11,7 +10,7 @@ class ThermalController : public ExtendedControllerBase {
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ReturnValue_t perform();
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ReturnValue_t perform();
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protected:
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protected:
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virtual ReturnValue_t handleCommandMessage(CommandMessage* message) override;
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virtual ReturnValue_t handleCommandMessage(CommandMessage* message) override;
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virtual void performControlOperation() override;
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virtual void performControlOperation() override;
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virtual ReturnValue_t initializeLocalDataPool(localpool::DataPool& localDataPoolMap,
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virtual ReturnValue_t initializeLocalDataPool(localpool::DataPool& localDataPoolMap,
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@ -21,6 +20,10 @@ protected:
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// Mode abstract functions
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// Mode abstract functions
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virtual ReturnValue_t checkModeCommand(Mode_t mode, Submode_t submode,
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virtual ReturnValue_t checkModeCommand(Mode_t mode, Submode_t submode,
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uint32_t* msToReachTheMode) override;
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uint32_t* msToReachTheMode) override;
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private:
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thermalControllerDefinitions::SensorTemperatures sensorTemperatures;
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thermalControllerDefinitions::ComponentTemperatures componentTemperatures;
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};
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};
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#endif /* MISSION_CONTROLLER_THERMALCONTROLLER_H_ */
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#endif /* MISSION_CONTROLLER_THERMALCONTROLLER_H_ */
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@ -0,0 +1,43 @@
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#ifndef MISSION_CONTROLLER_CONTROLLERDEFINITIONS_THERMALCONTROLLERDEFINITIONS_H_
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#define MISSION_CONTROLLER_CONTROLLERDEFINITIONS_THERMALCONTROLLERDEFINITIONS_H_
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#include <fsfw/datapoollocal/LocalPoolVariable.h>
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#include <fsfw/datapoollocal/StaticLocalDataSet.h>
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namespace thermalControllerDefinitions {
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enum SetIds : uint32_t { SENSOR_TEMPERATURES, COMPONENT_TEMPERATURES };
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enum PoolIds : lp_id_t { SENSOR_RW, SENSOR_GPS, COMPONENT_RW };
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/**
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* @brief This dataset can be used to store the collected temperatures of all temperature sensors
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*/
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class SensorTemperatures : public StaticLocalDataSet<2> {
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public:
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SensorTemperatures(HasLocalDataPoolIF* owner) : StaticLocalDataSet(owner, SENSOR_TEMPERATURES) {}
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SensorTemperatures(object_id_t objectId)
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: StaticLocalDataSet(sid_t(objectId, SENSOR_TEMPERATURES)) {}
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lp_var_t<float> rw = lp_var_t<float>(sid.objectId, PoolIds::SENSOR_RW, this);
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lp_var_t<float> gps = lp_var_t<float>(sid.objectId, PoolIds::SENSOR_GPS, this);
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};
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/**
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* @brief This dataset can be used to store the collected temperatures of all components
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*/
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class ComponentTemperatures : public StaticLocalDataSet<2> {
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public:
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ComponentTemperatures(HasLocalDataPoolIF* owner)
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: StaticLocalDataSet(owner, SENSOR_TEMPERATURES) {}
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ComponentTemperatures(object_id_t objectId)
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: StaticLocalDataSet(sid_t(objectId, SENSOR_TEMPERATURES)) {}
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lp_var_t<float> rw = lp_var_t<float>(sid.objectId, PoolIds::COMPONENT_RW, this);
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};
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} // namespace thermalControllerDefinitions
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#endif /* MISSION_CONTROLLER_CONTROLLERDEFINITIONS_THERMALCONTROLLERDEFINITIONS_H_ */
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@ -1,13 +1,11 @@
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#include <fsfw/events/EventManagerIF.h>
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#include <fsfw/health/HealthTable.h>
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#include <fsfw/health/HealthTable.h>
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#include <fsfw/housekeeping/AcceptsHkPacketsIF.h>
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#include <fsfw/housekeeping/AcceptsHkPacketsIF.h>
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#include <fsfw/internalerror/InternalErrorReporter.h>
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#include <fsfw/internalerror/InternalErrorReporter.h>
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#include <fsfw/ipc/QueueFactory.h>
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#include <fsfw/objectmanager.h>
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#include <fsfw/objectmanager.h>
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#include <fsfw/storagemanager/PoolManager.h>
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#include <fsfw/storagemanager/PoolManager.h>
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#include <fsfw/timemanager/TimeStamper.h>
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#include <fsfw/timemanager/TimeStamper.h>
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#include <fsfw/events/EventManagerIF.h>
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#include <mission/controller/ThermalController.h>
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#include <mission/controller/ThermalController.h>
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#include <catch2/catch_test_macros.hpp>
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#include <catch2/catch_test_macros.hpp>
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@ -34,14 +32,38 @@ void factory(void* args) {
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}
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}
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TEST_CASE("Thermal Controller", "[ThermalController]") {
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TEST_CASE("Thermal Controller", "[ThermalController]") {
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bool test = true;
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REQUIRE(test == true);
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ThermalController controller(0x123, objects::NO_OBJECT);
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const object_id_t THERMAL_CONTROLLER_ID = 0x123;
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ThermalController controller(THERMAL_CONTROLLER_ID, objects::NO_OBJECT);
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ObjectManager::instance()->setObjectFactoryFunction(factory, nullptr);
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ObjectManager::instance()->setObjectFactoryFunction(factory, nullptr);
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ObjectManager::instance()->initialize();
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ObjectManager::instance()->initialize();
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ObjectManager::instance()->printList();
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ObjectManager::instance()->printList();
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controller.initializeAfterTaskCreation();
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MessageQueueId_t controllerQueue = controller.getCommandQueue();
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CommandMessage modeMessage;
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ModeMessage::setModeMessage(&modeMessage, ModeMessage::CMD_MODE_COMMAND,
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ControllerBase::MODE_NORMAL, HasModesIF::SUBMODE_NONE);
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MessageQueueIF* commandQueue = QueueFactory::instance()->createMessageQueue(
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5, MessageQueueMessage::MAX_MESSAGE_SIZE);
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commandQueue->sendMessage(controllerQueue,&modeMessage);
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REQUIRE(controller.performOperation(0) == HasReturnvaluesIF::RETURN_OK);
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REQUIRE(controller.performOperation(0) == HasReturnvaluesIF::RETURN_OK);
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thermalControllerDefinitions::ComponentTemperatures componentTemperatures(THERMAL_CONTROLLER_ID);
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componentTemperatures.read();
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REQUIRE(componentTemperatures.rw == 0);
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componentTemperatures.commit();
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QueueFactory::instance()->deleteMessageQueue(commandQueue);
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}
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}
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@ -1,10 +1,6 @@
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#include <stdio.h>
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#include <catch2/catch_session.hpp>
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#include <catch2/catch_session.hpp>
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int main(int argc, char* argv[]) {
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int main(int argc, char* argv[]) {
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puts("unittests");
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// Catch internal function call
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// Catch internal function call
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int result = Catch::Session().run(argc, argv);
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int result = Catch::Session().run(argc, argv);
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