meier/ImtqHandler #44
@ -454,7 +454,7 @@ void ObjectFactory::produce(){
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SpiCookie* spiRtdIc3 = new SpiCookie(addresses::RTD_IC3, gpioIds::RTD_IC3,
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std::string("/dev/spidev2.0"), Max31865Definitions::MAX_REPLY_SIZE,
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spi::SpiModes::MODE_1, 2000000);
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spi::SpiModes::MODE_3, 2000000);
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SpiCookie* spiRtdIc4 = new SpiCookie(addresses::RTD_IC4, gpioIds::RTD_IC4,
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std::string("/dev/spidev2.0"), Max31865Definitions::MAX_REPLY_SIZE,
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spi::SpiModes::MODE_1, 2000000);
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@ -490,7 +490,7 @@ void ObjectFactory::produce(){
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spi::SpiModes::MODE_1, 2000000);
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SpiCookie* spiRtdIc15 = new SpiCookie(addresses::RTD_IC15, gpioIds::RTD_IC15,
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std::string("/dev/spidev2.0"), Max31865Definitions::MAX_REPLY_SIZE,
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spi::SpiModes::MODE_1, 2000000);
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spi::SpiModes::MODE_1, 3900000);
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SpiCookie* spiRtdIc16 = new SpiCookie(addresses::RTD_IC16, gpioIds::RTD_IC16,
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std::string("/dev/spidev2.0"), Max31865Definitions::MAX_REPLY_SIZE,
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spi::SpiModes::MODE_1, 2000000);
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@ -517,10 +517,10 @@ void ObjectFactory::produce(){
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Max31865PT1000Handler* rtdIc16 = new Max31865PT1000Handler(objects::RTD_IC16, objects::SPI_COM_IF, spiRtdIc16, 0);
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Max31865PT1000Handler* rtdIc17 = new Max31865PT1000Handler(objects::RTD_IC17, objects::SPI_COM_IF, spiRtdIc17, 0);
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Max31865PT1000Handler* rtdIc18 = new Max31865PT1000Handler(objects::RTD_IC18, objects::SPI_COM_IF, spiRtdIc18, 0);
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rtdIc3->setStartUpImmediately();
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rtdIc17->setStartUpImmediately();
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// rtdIc4->setStartUpImmediately();
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// (void) rtdIc3;
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(void) rtdIc3;
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(void) rtdIc4;
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(void) rtdIc5;
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(void) rtdIc6;
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@ -534,7 +534,7 @@ void ObjectFactory::produce(){
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(void) rtdIc14;
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(void) rtdIc15;
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(void) rtdIc16;
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(void) rtdIc17;
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// (void) rtdIc17;
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(void) rtdIc18;
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#endif /* Q7S_ADD_RTD_DEVICES == 1 */
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@ -41,6 +41,7 @@ debugging. */
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#define L3GD20_GYRO_DEBUG 0
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#define DEBUG_RAD_SENSOR 1
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#define DEBUG_SUS 1
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#define DEBUG_RTD 1
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// Leave at one as the BSP is linux. Used by the ADIS16507 device handler
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#define OBSW_ADIS16507_LINUX_COM_IF 1
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@ -8,7 +8,7 @@ Max31865PT1000Handler::Max31865PT1000Handler(object_id_t objectId,
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DeviceHandlerBase(objectId, comIF, comCookie), switchId(switchId),
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sensorDataset(this), sensorDatasetSid(sensorDataset.getSid()) {
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#if OBSW_VERBOSE_LEVEL >= 1
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debugDivider = new PeriodicOperationDivider(10);
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debugDivider = new PeriodicOperationDivider(0);
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#endif
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}
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@ -37,11 +37,39 @@ void Max31865PT1000Handler::doStartUp() {
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}
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if(internalState == InternalState::REQUEST_CONFIG) {
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if (commandExecuted) {
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commandExecuted = false;
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internalState = InternalState::CONFIG_HIGH_THRESHOLD;
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}
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}
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if(internalState == InternalState::CONFIG_HIGH_THRESHOLD) {
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if(commandExecuted) {
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internalState = InternalState::REQUEST_HIGH_THRESHOLD;
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commandExecuted = false;
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}
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}
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if(internalState == InternalState::REQUEST_HIGH_THRESHOLD) {
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if(commandExecuted) {
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internalState = InternalState::CONFIG_LOW_THRESHOLD;
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commandExecuted = false;
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}
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}
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if(internalState == InternalState::CONFIG_LOW_THRESHOLD) {
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if(commandExecuted) {
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internalState = InternalState::REQUEST_LOW_THRESHOLD;
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commandExecuted = false;
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}
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}
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if(internalState == InternalState::REQUEST_LOW_THRESHOLD) {
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if(commandExecuted) {
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setMode(MODE_ON);
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setMode(MODE_NORMAL);
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commandExecuted = false;
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internalState = InternalState::RUNNING;
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commandExecuted = false;
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}
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}
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}
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@ -82,6 +110,22 @@ ReturnValue_t Max31865PT1000Handler::buildTransitionDeviceCommand(
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*id = Max31865Definitions::REQUEST_CONFIG;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case(InternalState::CONFIG_HIGH_THRESHOLD): {
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*id = Max31865Definitions::WRITE_HIGH_THRESHOLD;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case(InternalState::REQUEST_HIGH_THRESHOLD): {
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*id = Max31865Definitions::REQUEST_HIGH_THRESHOLD;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case(InternalState::CONFIG_LOW_THRESHOLD): {
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*id = Max31865Definitions::WRITE_LOW_THRESHOLD;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case(InternalState::REQUEST_LOW_THRESHOLD): {
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*id = Max31865Definitions::REQUEST_LOW_THRESHOLD;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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default:
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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@ -110,13 +154,49 @@ ReturnValue_t Max31865PT1000Handler::buildCommandFromCommand(
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}
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}
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case(Max31865Definitions::REQUEST_CONFIG): {
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commandBuffer[0] = 0x00; // dummy byte
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commandBuffer[1] = static_cast<uint8_t>(
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::REQUEST_CONFIG);
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commandBuffer[1] = 0x00; // dummy byte
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DeviceHandlerBase::rawPacketLen = 2;
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DeviceHandlerBase::rawPacket = commandBuffer.data();
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(Max31865Definitions::WRITE_HIGH_THRESHOLD): {
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::WRITE_HIGH_THRESHOLD);
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commandBuffer[1] = static_cast<uint8_t>(HIGH_THRESHOLD >> 8);
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commandBuffer[2] = static_cast<uint8_t>(HIGH_THRESHOLD & 0xFF);
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DeviceHandlerBase::rawPacketLen = 3;
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DeviceHandlerBase::rawPacket = commandBuffer.data();
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(Max31865Definitions::REQUEST_HIGH_THRESHOLD): {
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::REQUEST_HIGH_THRESHOLD);
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commandBuffer[1] = 0x00; //dummy byte
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commandBuffer[2] = 0x00; //dummy byte
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DeviceHandlerBase::rawPacketLen = 3;
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DeviceHandlerBase::rawPacket = commandBuffer.data();
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(Max31865Definitions::WRITE_LOW_THRESHOLD): {
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::WRITE_LOW_THRESHOLD);
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commandBuffer[1] = static_cast<uint8_t>(LOW_THRESHOLD >> 8);
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commandBuffer[2] = static_cast<uint8_t>(LOW_THRESHOLD & 0xFF);
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DeviceHandlerBase::rawPacketLen = 3;
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DeviceHandlerBase::rawPacket = commandBuffer.data();
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(Max31865Definitions::REQUEST_LOW_THRESHOLD): {
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::REQUEST_LOW_THRESHOLD);
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commandBuffer[1] = 0x00; //dummy byte
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commandBuffer[2] = 0x00; //dummy byte
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DeviceHandlerBase::rawPacketLen = 3;
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DeviceHandlerBase::rawPacket = commandBuffer.data();
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(Max31865Definitions::REQUEST_RTD): {
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commandBuffer[0] = static_cast<uint8_t>(
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Max31865Definitions::REQUEST_RTD);
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@ -144,6 +224,10 @@ ReturnValue_t Max31865PT1000Handler::buildCommandFromCommand(
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void Max31865PT1000Handler::fillCommandAndReplyMap() {
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insertInCommandAndReplyMap(Max31865Definitions::CONFIG_CMD, 3);
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insertInCommandAndReplyMap(Max31865Definitions::REQUEST_CONFIG, 3);
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insertInCommandAndReplyMap(Max31865Definitions::WRITE_LOW_THRESHOLD, 3);
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insertInCommandAndReplyMap(Max31865Definitions::REQUEST_LOW_THRESHOLD, 3);
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insertInCommandAndReplyMap(Max31865Definitions::WRITE_HIGH_THRESHOLD, 3);
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insertInCommandAndReplyMap(Max31865Definitions::REQUEST_HIGH_THRESHOLD, 3);
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insertInCommandAndReplyMap(Max31865Definitions::REQUEST_RTD, 3,
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&sensorDataset);
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insertInCommandAndReplyMap(Max31865Definitions::REQUEST_FAULT_BYTE, 3);
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@ -158,6 +242,39 @@ ReturnValue_t Max31865PT1000Handler::scanForReply(const uint8_t *start,
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internalState == InternalState::RUNNING) {
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*foundId = Max31865Definitions::REQUEST_RTD;
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*foundLen = rtdReplySize;
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return RETURN_OK;
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}
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if(remainingSize == 3) {
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switch(internalState) {
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case(InternalState::CONFIG_HIGH_THRESHOLD): {
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*foundLen = 3;
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*foundId = Max31865Definitions::WRITE_HIGH_THRESHOLD;
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commandExecuted = true;
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return RETURN_OK;
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}
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case(InternalState::REQUEST_HIGH_THRESHOLD): {
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*foundLen = 3;
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*foundId = Max31865Definitions::REQUEST_HIGH_THRESHOLD;
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return RETURN_OK;
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}
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case(InternalState::CONFIG_LOW_THRESHOLD): {
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*foundLen = 3;
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*foundId = Max31865Definitions::WRITE_LOW_THRESHOLD;
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commandExecuted = true;
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return RETURN_OK;
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}
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case(InternalState::REQUEST_LOW_THRESHOLD): {
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*foundLen = 3;
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*foundId = Max31865Definitions::REQUEST_LOW_THRESHOLD;
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return RETURN_OK;
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}
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default: {
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sif::debug << "Max31865PT1000Handler::scanForReply: Unknown internal state"
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<< std::endl;
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return RETURN_OK;
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}
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}
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}
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if(remainingSize == configReplySize) {
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@ -203,15 +320,39 @@ ReturnValue_t Max31865PT1000Handler::interpretDeviceReply(
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}
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break;
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}
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case(Max31865Definitions::REQUEST_LOW_THRESHOLD): {
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uint16_t readLowThreshold = packet[0] << 8 | packet[1];
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if(readLowThreshold != LOW_THRESHOLD) {
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#if FSFW_CPP_OSTREAM_ENABLED == 1 && DEBUG_RTD == 1
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sif::error
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<< "Max31865PT1000Handler::interpretDeviceReply: Missmatch between written "
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<< "and readback value of low threshold register"
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<< std::endl;
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#endif
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}
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commandExecuted = true;
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break;
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}
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case(Max31865Definitions::REQUEST_HIGH_THRESHOLD): {
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uint16_t readHighThreshold = packet[0] << 8 | packet[1];
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if(readHighThreshold != HIGH_THRESHOLD) {
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#if FSFW_CPP_OSTREAM_ENABLED == 1 && DEBUG_RTD == 1
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sif::error
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<< "Max31865PT1000Handler::interpretDeviceReply: Missmatch between written "
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<< "and readback value of high threshold register"
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<< std::endl;
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#endif
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}
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commandExecuted = true;
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break;
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}
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case(Max31865Definitions::REQUEST_RTD): {
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// first bit of LSB reply byte is the fault bit
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uint8_t faultBit = packet[2] & 0b0000'0001;
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if(faultBit == 1) {
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// Maybe we should attempt to restart it?
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if(faultByte == 0) {
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internalState = InternalState::REQUEST_FAULT_BYTE;
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}
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}
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// RTD value consists of last seven bits of the LSB reply byte and
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// the MSB reply byte
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@ -329,7 +470,7 @@ void Max31865PT1000Handler::debugInterface(uint8_t positionTracker,
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uint32_t Max31865PT1000Handler::getTransitionDelayMs(
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Mode_t modeFrom, Mode_t modeTo) {
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return 10000;
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return 20000;
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}
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ReturnValue_t Max31865PT1000Handler::getSwitches(
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@ -37,16 +37,27 @@ public:
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// Configuration in 8 digit code:
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// 1. 1 for V_BIAS enabled, 0 for disabled
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// 2. 1 for Auto-conversion, 0 for off
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// 3. 1 for 1-shot enabled, 0 for disabled
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// 3. 1 for 1-shot enabled, 0 for disabled (self-clearing bit)
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// 4. 1 for 3-wire disabled, 0 for disabled
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// 5./6. Fault detection: 00 for no action, 01 for automatic delay, 1
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// 0 for run fault detection with manual delay,
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// 11 for finish fault detection with manual delay
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// 7. Fault status: 1 for auto-clear, 0 for auto-clear off
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// 7. Fault status: Write 1 to reset fault status register (Bit is self cleared afterwards)
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// 8. 1 for 50 Hz filter, 0 for 60 Hz filter (noise rejection filter)
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static constexpr uint8_t DEFAULT_CONFIG = 0b11000001;
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static constexpr float RTD_RREF_PT1000 = 4000.0; //!< Ohm
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/**
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* Expected temperature range is -100°C and 100°C.
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* If there are temperatures beyond this range there must be a fault.
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* The threshold variables cause the MAX1385 to signal an error in case the measured resistance
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* indicates a temperature higher than 100°C or lower than -100°C.
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* Default settings of MAX13865 are 0xFFFF for the high threshold register and 0x0 for the
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* low threshold register.
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*/
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static constexpr uint16_t HIGH_THRESHOLD = 11298; // = 100°C
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static constexpr uint16_t LOW_THRESHOLD = 4902; // = -100°C
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static constexpr float RTD_RREF_PT1000 = 4020.0; //!< Ohm
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static constexpr float RTD_RESISTANCE0_PT1000 = 1000.0; //!< Ohm
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protected:
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/* DeviceHandlerBase abstract function implementation */
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@ -80,6 +91,10 @@ private:
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NONE,
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WARMUP,
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CONFIGURE,
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CONFIG_HIGH_THRESHOLD,
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REQUEST_HIGH_THRESHOLD,
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CONFIG_LOW_THRESHOLD,
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REQUEST_LOW_THRESHOLD,
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REQUEST_CONFIG,
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RUNNING,
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REQUEST_FAULT_BYTE
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@ -14,8 +14,12 @@ enum PoolIds: lp_id_t {
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};
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static constexpr DeviceCommandId_t CONFIG_CMD = 0x80;
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static constexpr DeviceCommandId_t WRITE_HIGH_THRESHOLD = 0x83;
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static constexpr DeviceCommandId_t WRITE_LOW_THRESHOLD = 0x85;
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static constexpr DeviceCommandId_t REQUEST_CONFIG = 0x00;
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static constexpr DeviceCommandId_t REQUEST_RTD = 0x01;
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static constexpr DeviceCommandId_t REQUEST_HIGH_THRESHOLD = 0x03;
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static constexpr DeviceCommandId_t REQUEST_LOW_THRESHOLD = 0x05;
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static constexpr DeviceCommandId_t REQUEST_FAULT_BYTE = 0x07;
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static constexpr uint32_t MAX31865_SET_ID = REQUEST_RTD;
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|
Loading…
Reference in New Issue
Block a user