Add RAD sensor dummy #745
@ -249,7 +249,7 @@ ReturnValue_t ObjectFactory::createRadSensorComponent(LinuxLibgpioIF* gpioComIF,
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createRadSensorChipSelect(gpioComIF);
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SpiCookie* spiCookieRadSensor =
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new SpiCookie(addresses::RAD_SENSOR, gpioIds::CS_RAD_SENSOR, RAD_SENSOR::READ_SIZE,
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new SpiCookie(addresses::RAD_SENSOR, gpioIds::CS_RAD_SENSOR, radSens::READ_SIZE,
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spi::DEFAULT_MAX_1227_MODE, spi::DEFAULT_MAX_1227_SPEED);
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spiCookieRadSensor->setMutexParams(MutexIF::TimeoutType::WAITING, spi::RAD_SENSOR_CS_TIMEOUT);
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auto radSensor = new RadiationSensorHandler(objects::RAD_SENSOR, objects::SPI_MAIN_COM_IF,
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53
dummies/RadSensorDummy.cpp
Normal file
53
dummies/RadSensorDummy.cpp
Normal file
@ -0,0 +1,53 @@
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#include "RadSensorDummy.h"
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RadSensorDummy::RadSensorDummy(object_id_t objectId, object_id_t comif, CookieIF *comCookie)
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: DeviceHandlerBase(objectId, comif, comCookie), sensorSet(this) {}
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RadSensorDummy::~RadSensorDummy() {}
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void RadSensorDummy::doStartUp() { setMode(MODE_ON); }
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void RadSensorDummy::doShutDown() { setMode(MODE_OFF); }
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ReturnValue_t RadSensorDummy::buildNormalDeviceCommand(DeviceCommandId_t *id) {
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return NOTHING_TO_SEND;
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}
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ReturnValue_t RadSensorDummy::buildTransitionDeviceCommand(DeviceCommandId_t *id) {
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return NOTHING_TO_SEND;
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}
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ReturnValue_t RadSensorDummy::buildCommandFromCommand(DeviceCommandId_t deviceCommand,
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const uint8_t *commandData,
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size_t commandDataLen) {
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return returnvalue::OK;
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}
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ReturnValue_t RadSensorDummy::scanForReply(const uint8_t *start, size_t len,
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DeviceCommandId_t *foundId, size_t *foundLen) {
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return returnvalue::OK;
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}
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ReturnValue_t RadSensorDummy::interpretDeviceReply(DeviceCommandId_t id, const uint8_t *packet) {
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return returnvalue::OK;
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}
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void RadSensorDummy::fillCommandAndReplyMap() {}
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uint32_t RadSensorDummy::getTransitionDelayMs(Mode_t modeFrom, Mode_t modeTo) { return 500; }
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ReturnValue_t RadSensorDummy::initializeLocalDataPool(localpool::DataPool &localDataPoolMap,
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LocalDataPoolManager &poolManager) {
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localDataPoolMap.emplace(radSens::TEMPERATURE_C, new PoolEntry<float>({0.0}));
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localDataPoolMap.emplace(radSens::AIN0, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN1, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN4, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN5, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN6, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN7, new PoolEntry<uint16_t>({0}));
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poolManager.subscribeForRegularPeriodicPacket(
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subdp::RegularHkPeriodicParams(sensorSet.getSid(), false, 20.0));
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return returnvalue::OK;
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return returnvalue::OK;
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}
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37
dummies/RadSensorDummy.h
Normal file
37
dummies/RadSensorDummy.h
Normal file
@ -0,0 +1,37 @@
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#ifndef DUMMIES_SUSDUMMY_H_
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#define DUMMIES_SUSDUMMY_H_
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#include <fsfw/devicehandlers/DeviceHandlerBase.h>
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#include "mission/payload/radSensorDefinitions.h"
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class RadSensorDummy : public DeviceHandlerBase {
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public:
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static const DeviceCommandId_t SIMPLE_COMMAND = 1;
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static const DeviceCommandId_t PERIODIC_REPLY = 2;
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static const uint8_t SIMPLE_COMMAND_DATA = 1;
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static const uint8_t PERIODIC_REPLY_DATA = 2;
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RadSensorDummy(object_id_t objectId, object_id_t comif, CookieIF *comCookie);
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virtual ~RadSensorDummy();
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protected:
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radSens::RadSensorDataset sensorSet;
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void doStartUp() override;
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void doShutDown() override;
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ReturnValue_t buildNormalDeviceCommand(DeviceCommandId_t *id) override;
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ReturnValue_t buildTransitionDeviceCommand(DeviceCommandId_t *id) override;
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ReturnValue_t buildCommandFromCommand(DeviceCommandId_t deviceCommand, const uint8_t *commandData,
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size_t commandDataLen) override;
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ReturnValue_t scanForReply(const uint8_t *start, size_t len, DeviceCommandId_t *foundId,
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size_t *foundLen) override;
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ReturnValue_t interpretDeviceReply(DeviceCommandId_t id, const uint8_t *packet) override;
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void fillCommandAndReplyMap() override;
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uint32_t getTransitionDelayMs(Mode_t modeFrom, Mode_t modeTo) override;
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ReturnValue_t initializeLocalDataPool(localpool::DataPool &localDataPoolMap,
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LocalDataPoolManager &poolManager) override;
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};
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#endif /* DUMMIES_SUSDUMMY_H_ */
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2
fsfw
2
fsfw
@ -1 +1 @@
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Subproject commit d575da85407e029dabecaffa5368f0c9f1034941
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Subproject commit 8e62143ac87a35ce2d9c4e40ae3b52a73cbe11c5
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@ -53,12 +53,12 @@ void RadiationSensorHandler::doShutDown() {
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ReturnValue_t RadiationSensorHandler::buildNormalDeviceCommand(DeviceCommandId_t *id) {
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switch (communicationStep) {
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case CommunicationStep::START_CONVERSION: {
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*id = RAD_SENSOR::START_CONVERSION;
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*id = radSens::START_CONVERSION;
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communicationStep = CommunicationStep::READ_CONVERSIONS;
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break;
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}
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case CommunicationStep::READ_CONVERSIONS: {
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*id = RAD_SENSOR::READ_CONVERSIONS;
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*id = radSens::READ_CONVERSIONS;
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communicationStep = CommunicationStep::START_CONVERSION;
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break;
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}
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@ -73,7 +73,7 @@ ReturnValue_t RadiationSensorHandler::buildNormalDeviceCommand(DeviceCommandId_t
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ReturnValue_t RadiationSensorHandler::buildTransitionDeviceCommand(DeviceCommandId_t *id) {
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if (internalState == InternalState::SETUP) {
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*id = RAD_SENSOR::WRITE_SETUP;
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*id = radSens::WRITE_SETUP;
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} else {
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return NOTHING_TO_SEND;
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}
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@ -84,14 +84,14 @@ ReturnValue_t RadiationSensorHandler::buildCommandFromCommand(DeviceCommandId_t
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const uint8_t *commandData,
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size_t commandDataLen) {
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switch (deviceCommand) {
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case (RAD_SENSOR::WRITE_SETUP): {
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cmdBuffer[0] = RAD_SENSOR::SETUP_DEFINITION;
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case (radSens::WRITE_SETUP): {
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cmdBuffer[0] = radSens::SETUP_DEFINITION;
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rawPacket = cmdBuffer;
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rawPacketLen = 1;
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internalState = InternalState::CONFIGURED;
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return returnvalue::OK;
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}
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case (RAD_SENSOR::START_CONVERSION): {
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case (radSens::START_CONVERSION): {
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ReturnValue_t result = gpioIF->pullHigh(gpioIds::ENABLE_RADFET);
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if (result != returnvalue::OK) {
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#if OBSW_VERBOSE_LEVEL >= 1
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@ -102,25 +102,25 @@ ReturnValue_t RadiationSensorHandler::buildCommandFromCommand(DeviceCommandId_t
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#endif
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}
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/* First the fifo will be reset here */
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cmdBuffer[0] = RAD_SENSOR::RESET_DEFINITION;
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cmdBuffer[1] = RAD_SENSOR::CONVERSION_DEFINITION;
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cmdBuffer[0] = radSens::RESET_DEFINITION;
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cmdBuffer[1] = radSens::CONVERSION_DEFINITION;
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rawPacket = cmdBuffer;
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rawPacketLen = 2;
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return returnvalue::OK;
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}
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case (RAD_SENSOR::READ_CONVERSIONS): {
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cmdBuffer[0] = RAD_SENSOR::DUMMY_BYTE;
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std::memset(cmdBuffer, RAD_SENSOR::DUMMY_BYTE, RAD_SENSOR::READ_SIZE);
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case (radSens::READ_CONVERSIONS): {
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cmdBuffer[0] = radSens::DUMMY_BYTE;
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std::memset(cmdBuffer, radSens::DUMMY_BYTE, radSens::READ_SIZE);
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rawPacket = cmdBuffer;
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rawPacketLen = RAD_SENSOR::READ_SIZE;
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rawPacketLen = radSens::READ_SIZE;
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return returnvalue::OK;
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}
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case RAD_SENSOR::ENABLE_DEBUG_OUTPUT: {
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case radSens::ENABLE_DEBUG_OUTPUT: {
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printPeriodicData = true;
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rawPacketLen = 0;
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return returnvalue::OK;
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}
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case RAD_SENSOR::DISABLE_DEBUG_OUTPUT: {
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case radSens::DISABLE_DEBUG_OUTPUT: {
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rawPacketLen = 0;
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printPeriodicData = false;
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return returnvalue::OK;
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@ -132,12 +132,11 @@ ReturnValue_t RadiationSensorHandler::buildCommandFromCommand(DeviceCommandId_t
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}
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void RadiationSensorHandler::fillCommandAndReplyMap() {
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this->insertInCommandMap(RAD_SENSOR::WRITE_SETUP);
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this->insertInCommandMap(RAD_SENSOR::START_CONVERSION);
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this->insertInCommandMap(RAD_SENSOR::ENABLE_DEBUG_OUTPUT);
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this->insertInCommandMap(RAD_SENSOR::DISABLE_DEBUG_OUTPUT);
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this->insertInCommandAndReplyMap(RAD_SENSOR::READ_CONVERSIONS, 1, &dataset,
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RAD_SENSOR::READ_SIZE);
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this->insertInCommandMap(radSens::WRITE_SETUP);
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this->insertInCommandMap(radSens::START_CONVERSION);
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this->insertInCommandMap(radSens::ENABLE_DEBUG_OUTPUT);
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this->insertInCommandMap(radSens::DISABLE_DEBUG_OUTPUT);
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this->insertInCommandAndReplyMap(radSens::READ_CONVERSIONS, 1, &dataset, radSens::READ_SIZE);
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}
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ReturnValue_t RadiationSensorHandler::scanForReply(const uint8_t *start, size_t remainingSize,
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@ -145,11 +144,11 @@ ReturnValue_t RadiationSensorHandler::scanForReply(const uint8_t *start, size_t
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*foundId = this->getPendingCommand();
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switch (*foundId) {
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case RAD_SENSOR::START_CONVERSION:
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case RAD_SENSOR::WRITE_SETUP:
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case radSens::START_CONVERSION:
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case radSens::WRITE_SETUP:
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*foundLen = remainingSize;
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return IGNORE_REPLY_DATA;
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case RAD_SENSOR::READ_CONVERSIONS: {
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case radSens::READ_CONVERSIONS: {
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ReturnValue_t result = gpioIF->pullLow(gpioIds::ENABLE_RADFET);
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if (result != returnvalue::OK) {
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#if OBSW_VERBOSE_LEVEL >= 1
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@ -160,8 +159,8 @@ ReturnValue_t RadiationSensorHandler::scanForReply(const uint8_t *start, size_t
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}
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break;
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}
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case RAD_SENSOR::ENABLE_DEBUG_OUTPUT:
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case RAD_SENSOR::DISABLE_DEBUG_OUTPUT:
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case radSens::ENABLE_DEBUG_OUTPUT:
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case radSens::DISABLE_DEBUG_OUTPUT:
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sif::info << "RadiationSensorHandler::scanForReply: " << remainingSize << std::endl;
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break;
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default:
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@ -176,7 +175,7 @@ ReturnValue_t RadiationSensorHandler::scanForReply(const uint8_t *start, size_t
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ReturnValue_t RadiationSensorHandler::interpretDeviceReply(DeviceCommandId_t id,
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const uint8_t *packet) {
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switch (id) {
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case RAD_SENSOR::READ_CONVERSIONS: {
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case radSens::READ_CONVERSIONS: {
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uint8_t offset = 0;
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PoolReadGuard readSet(&dataset);
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uint16_t tempRaw = ((packet[offset] & 0x0f) << 8) | packet[offset + 1];
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@ -220,13 +219,13 @@ uint32_t RadiationSensorHandler::getTransitionDelayMs(Mode_t modeFrom, Mode_t mo
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ReturnValue_t RadiationSensorHandler::initializeLocalDataPool(localpool::DataPool &localDataPoolMap,
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LocalDataPoolManager &poolManager) {
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localDataPoolMap.emplace(RAD_SENSOR::TEMPERATURE_C, new PoolEntry<float>({0.0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN0, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN1, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN4, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN5, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN6, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(RAD_SENSOR::AIN7, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::TEMPERATURE_C, new PoolEntry<float>({0.0}));
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localDataPoolMap.emplace(radSens::AIN0, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN1, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN4, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN5, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN6, new PoolEntry<uint16_t>({0}));
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localDataPoolMap.emplace(radSens::AIN7, new PoolEntry<uint16_t>({0}));
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poolManager.subscribeForRegularPeriodicPacket(
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subdp::RegularHkPeriodicParams(dataset.getSid(), false, 20.0));
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return returnvalue::OK;
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@ -43,8 +43,8 @@ class RadiationSensorHandler : public DeviceHandlerBase {
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enum class InternalState { OFF, POWER_SWITCHING, SETUP, CONFIGURED };
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bool printPeriodicData = false;
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RAD_SENSOR::RadSensorDataset dataset;
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static const uint8_t MAX_CMD_LEN = RAD_SENSOR::READ_SIZE;
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radSens::RadSensorDataset dataset;
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static const uint8_t MAX_CMD_LEN = radSens::READ_SIZE;
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GpioIF *gpioIF = nullptr;
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Stack5VHandler &stackHandler;
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@ -1,7 +1,7 @@
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#ifndef MISSION_DEVICES_DEVICEDEFINITIONS_RADSENSOR_H_
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#define MISSION_DEVICES_DEVICEDEFINITIONS_RADSENSOR_H_
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namespace RAD_SENSOR {
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namespace radSens {
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static const DeviceCommandId_t NONE = 0x0; // Set when no command is pending
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@ -78,6 +78,6 @@ class RadSensorDataset : public StaticLocalDataSet<DATASET_ENTRIES> {
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lp_var_t<uint16_t> ain6 = lp_var_t<uint16_t>(sid.objectId, AIN6, this);
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lp_var_t<uint16_t> ain7 = lp_var_t<uint16_t>(sid.objectId, AIN7, this);
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};
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} // namespace RAD_SENSOR
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} // namespace radSens
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#endif /* MISSION_DEVICES_DEVICEDEFINITIONS_RADSENSOR_H_ */
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Reference in New Issue
Block a user