moved gps handler and deployment handler #152
@ -67,6 +67,7 @@ static constexpr char EN_RW_3[] = "enable_rw_3";
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static constexpr char EN_RW_4[] = "enable_rw_4";
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static constexpr char GNSS_MUX_SELECT[] = "gnss_mux_select";
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static constexpr char RAD_SENSOR_CHIP_SELECT[] = "rad_sensor_chip_select";
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static constexpr char ENABLE_RADFET[] = "enable_radfet";
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static constexpr char PAPB_BUSY_SIGNAL_VC0[] = "papb_busy_signal_vc0";
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static constexpr char PAPB_EMPTY_SIGNAL_VC0[] = "papb_empty_signal_vc0";
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static constexpr char PAPB_BUSY_SIGNAL_VC1[] = "papb_busy_signal_vc1";
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@ -295,12 +295,21 @@ void ObjectFactory::createRadSensorComponent(LinuxLibgpioIF* gpioComIF) {
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GpiodRegularByLineName* gpio = new GpiodRegularByLineName(
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q7s::gpioNames::RAD_SENSOR_CHIP_SELECT, consumer.str(), gpio::DIR_OUT, gpio::HIGH);
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gpioCookieRadSensor->addGpio(gpioIds::CS_RAD_SENSOR, gpio);
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gpio = new GpiodRegularByLineName(q7s::gpioNames::ENABLE_RADFET, consumer.str(), gpio::DIR_OUT,
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gpio::LOW);
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gpioCookieRadSensor->addGpio(gpioIds::ENABLE_RADFET, gpio);
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gpioComIF->addGpios(gpioCookieRadSensor);
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SpiCookie* spiCookieRadSensor = new SpiCookie(
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addresses::RAD_SENSOR, gpioIds::CS_RAD_SENSOR, std::string(q7s::SPI_DEFAULT_DEV),
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RAD_SENSOR::READ_SIZE, spi::DEFAULT_MAX_1227_MODE, spi::DEFAULT_MAX_1227_SPEED);
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new RadiationSensorHandler(objects::RAD_SENSOR, objects::SPI_COM_IF, spiCookieRadSensor);
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auto radSensor = new RadiationSensorHandler(objects::RAD_SENSOR, objects::SPI_COM_IF,
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spiCookieRadSensor, gpioComIF);
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static_cast<void>(radSensor);
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#if OBSW_TEST_RAD_SENSOR == 1
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radSensor->setStartUpImmediately();
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radSensor->setToGoToNormalModeImmediately();
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#endif
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}
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void ObjectFactory::createSunSensorComponents(LinuxLibgpioIF* gpioComIF, SpiComIF* spiComIF) {
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@ -1,7 +1,6 @@
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#include "simple.h"
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#include "iostream"
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#include "q7sConfig.h"
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#if Q7S_SIMPLE_ADD_FILE_SYSTEM_TEST == 1
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@ -76,6 +76,7 @@ enum gpioId_t {
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SPI_MUX_BIT_6,
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CS_RAD_SENSOR,
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ENABLE_RADFET,
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PAPB_BUSY_N,
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PAPB_EMPTY,
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@ -7,8 +7,6 @@
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#include <fsfw/serviceinterface/ServiceInterfaceStream.h>
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#include <fsfw/tasks/FixedTimeslotTaskIF.h>
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ReturnValue_t pst::pstGpio(FixedTimeslotTaskIF *thisSequence) {
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// Length of a communication cycle
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uint32_t length = thisSequence->getPeriodMs();
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@ -1,11 +1,12 @@
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#include <OBSWConfig.h>
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#include <devices/gpioIds.h>
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#include <fsfw/datapool/PoolReadGuard.h>
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#include <mission/devices/RadiationSensorHandler.h>
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RadiationSensorHandler::RadiationSensorHandler(object_id_t objectId, object_id_t comIF,
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CookieIF *comCookie)
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: DeviceHandlerBase(objectId, comIF, comCookie), dataset(this) {
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if (comCookie == NULL) {
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CookieIF *comCookie, GpioIF *gpioIF)
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: DeviceHandlerBase(objectId, comIF, comCookie), dataset(this), gpioIF(gpioIF) {
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if (comCookie == nullptr) {
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sif::error << "RadiationSensorHandler: Invalid com cookie" << std::endl;
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}
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}
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@ -14,11 +15,13 @@ RadiationSensorHandler::~RadiationSensorHandler() {}
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void RadiationSensorHandler::doStartUp() {
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if (internalState == InternalState::CONFIGURED) {
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#if OBSW_SWITCH_TO_NORMAL_MODE_AFTER_STARTUP == 1
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if (goToNormalMode) {
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setMode(MODE_NORMAL);
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#else
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}
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else {
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setMode(_MODE_TO_ON);
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#endif
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}
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}
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}
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@ -66,6 +69,14 @@ ReturnValue_t RadiationSensorHandler::buildCommandFromCommand(DeviceCommandId_t
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return RETURN_OK;
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}
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case (RAD_SENSOR::START_CONVERSION): {
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ReturnValue_t result = gpioIF->pullHigh(gpioIds::ENABLE_RADFET);
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if (result != HasReturnvaluesIF::RETURN_OK) {
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#if OBSW_VERBOSE_LEVEL >= 1
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sif::warning << "RadiationSensorHandler::buildCommandFromCommand; Pulling RADFET Enale pin "
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"high failed"
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<< std::endl;
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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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@ -80,14 +91,6 @@ ReturnValue_t RadiationSensorHandler::buildCommandFromCommand(DeviceCommandId_t
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rawPacketLen = RAD_SENSOR::READ_SIZE;
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return RETURN_OK;
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}
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// case(RAD_SENSOR::AIN0_AND_TMP_CONVERSION): {
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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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// rawPacket = cmdBuffer;
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// rawPacketLen = 2;
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// return RETURN_OK;
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// }
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default:
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return DeviceHandlerIF::COMMAND_NOT_IMPLEMENTED;
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}
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@ -109,6 +112,17 @@ ReturnValue_t RadiationSensorHandler::scanForReply(const uint8_t *start, size_t
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case RAD_SENSOR::START_CONVERSION:
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case RAD_SENSOR::WRITE_SETUP:
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return IGNORE_REPLY_DATA;
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case RAD_SENSOR::READ_CONVERSIONS: {
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ReturnValue_t result = gpioIF->pullLow(gpioIds::ENABLE_RADFET);
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if (result != HasReturnvaluesIF::RETURN_OK) {
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#if OBSW_VERBOSE_LEVEL >= 1
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sif::warning << "RadiationSensorHandler::buildCommandFromCommand; Pulling RADFET Enale pin "
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"low failed"
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<< std::endl;
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#endif
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}
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break;
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}
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default:
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break;
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}
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@ -124,7 +138,8 @@ ReturnValue_t RadiationSensorHandler::interpretDeviceReply(DeviceCommandId_t id,
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case RAD_SENSOR::READ_CONVERSIONS: {
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uint8_t offset = 0;
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PoolReadGuard readSet(&dataset);
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dataset.temperatureCelcius = (*(packet + offset) << 8 | *(packet + offset + 1)) * 0.125;
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int16_t tempRaw = ((packet[offset] & 0x0f) << 8) | packet[offset + 1];
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dataset.temperatureCelcius = tempRaw * 0.125;
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offset += 2;
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dataset.ain0 = (*(packet + offset) << 8 | *(packet + offset + 1));
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offset += 2;
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@ -138,7 +153,7 @@ ReturnValue_t RadiationSensorHandler::interpretDeviceReply(DeviceCommandId_t id,
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offset += 2;
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dataset.ain7 = (*(packet + offset) << 8 | *(packet + offset + 1));
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#if OBSW_VERBOSE_LEVEL >= 1 && OBSW_DEBUG_RAD_SENSOR
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#if OBSW_VERBOSE_LEVEL >= 1 && OBSW_DEBUG_RAD_SENSOR == 1
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sif::info << "Radiation sensor temperature: " << dataset.temperatureCelcius << " °C"
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<< std::endl;
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sif::info << "Radiation sensor ADC value channel 0: " << dataset.ain0 << std::endl;
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@ -158,8 +173,6 @@ ReturnValue_t RadiationSensorHandler::interpretDeviceReply(DeviceCommandId_t id,
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return HasReturnvaluesIF::RETURN_OK;
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}
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void RadiationSensorHandler::setNormalDatapoolEntriesInvalid() {}
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uint32_t RadiationSensorHandler::getTransitionDelayMs(Mode_t modeFrom, Mode_t modeTo) {
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return 5000;
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}
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@ -175,3 +188,5 @@ ReturnValue_t RadiationSensorHandler::initializeLocalDataPool(localpool::DataPoo
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localDataPoolMap.emplace(RAD_SENSOR::AIN7, new PoolEntry<uint16_t>({0}));
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return HasReturnvaluesIF::RETURN_OK;
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}
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void RadiationSensorHandler::setToGoToNormalModeImmediately() { this->goToNormalMode = true; }
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@ -4,6 +4,8 @@
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#include <fsfw/devicehandlers/DeviceHandlerBase.h>
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#include <mission/devices/devicedefinitions/RadSensorDefinitions.h>
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class GpioIF;
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/**
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* @brief This is the device handler class for radiation sensor on the OBC IF Board. The
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* sensor is based on the MAX1227 ADC converter.
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@ -14,8 +16,10 @@
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*/
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class RadiationSensorHandler : public DeviceHandlerBase {
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public:
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RadiationSensorHandler(object_id_t objectId, object_id_t comIF, CookieIF *comCookie);
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RadiationSensorHandler(object_id_t objectId, object_id_t comIF, CookieIF *comCookie,
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GpioIF *gpioIF);
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virtual ~RadiationSensorHandler();
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void setToGoToNormalModeImmediately();
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protected:
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void doStartUp() override;
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@ -28,7 +32,6 @@ class RadiationSensorHandler : public DeviceHandlerBase {
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ReturnValue_t scanForReply(const uint8_t *start, size_t remainingSize, 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 setNormalDatapoolEntriesInvalid() 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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@ -39,9 +42,10 @@ class RadiationSensorHandler : public DeviceHandlerBase {
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enum class InternalState { SETUP, CONFIGURED };
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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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GpioIF *gpioIF = nullptr;
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bool goToNormalMode = false;
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uint8_t cmdBuffer[MAX_CMD_LEN];
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InternalState internalState = InternalState::SETUP;
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CommunicationStep communicationStep = CommunicationStep::START_CONVERSION;
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@ -214,7 +214,8 @@ void SusHandler::setToGoToNormalMode(bool enable) { this->goToNormalModeImmediat
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void SusHandler::printDataset() {
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if (periodicPrintout) {
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if (divider.checkAndIncrement()) {
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sif::info << "SUS ADC " << static_cast<int>(susIdx) << " hex [" << std::setfill('0') << std::hex;
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sif::info << "SUS ADC " << static_cast<int>(susIdx) << " hex [" << std::setfill('0')
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<< std::hex;
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for (uint8_t idx = 0; idx < 6; idx++) {
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sif::info << std::setw(3) << dataset.channels[idx];
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if (idx < 6 - 1) {
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Loading…
Reference in New Issue
Block a user