2022-02-22 20:34:25 +01:00
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#include "SusHandler.h"
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#include <fsfw/datapool/PoolReadGuard.h>
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#include <fsfw/globalfunctions/arrayprinter.h>
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#include "OBSWConfig.h"
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2022-02-22 20:47:09 +01:00
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SusHandler::SusHandler(object_id_t objectId, uint8_t susIdx, object_id_t comIF, CookieIF *comCookie)
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2022-02-22 20:34:25 +01:00
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: DeviceHandlerBase(objectId, comIF, comCookie), divider(5), dataset(this), susIdx(susIdx) {}
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SusHandler::~SusHandler() {}
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void SusHandler::doStartUp() {
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if (comState == ComStates::IDLE) {
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comState = ComStates::WRITE_SETUP;
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commandExecuted = false;
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}
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if (comState == ComStates::WRITE_SETUP) {
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if (commandExecuted) {
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if (goToNormalModeImmediately) {
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setMode(MODE_NORMAL);
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} else {
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setMode(_MODE_TO_ON);
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}
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commandExecuted = false;
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if (clkMode == ClkModes::INT_CLOCKED) {
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comState = ComStates::START_INT_CLOCKED_CONVERSIONS;
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} else {
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comState = ComStates::EXT_CLOCKED_CONVERSIONS;
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}
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}
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}
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}
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2022-04-03 20:35:49 +02:00
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void SusHandler::doShutDown() {
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setMode(_MODE_POWER_DOWN);
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comState = ComStates::IDLE;
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}
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2022-02-22 20:34:25 +01:00
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ReturnValue_t SusHandler::buildNormalDeviceCommand(DeviceCommandId_t *id) {
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switch (comState) {
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case (ComStates::IDLE): {
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break;
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}
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case (ComStates::WRITE_SETUP): {
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*id = SUS::WRITE_SETUP;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case (ComStates::EXT_CLOCKED_CONVERSIONS): {
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*id = SUS::READ_EXT_TIMED_CONVERSIONS;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case (ComStates::START_INT_CLOCKED_CONVERSIONS): {
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*id = SUS::START_INT_TIMED_CONVERSIONS;
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comState = ComStates::READ_INT_CLOCKED_CONVERSIONS;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case (ComStates::READ_INT_CLOCKED_CONVERSIONS): {
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*id = SUS::READ_INT_TIMED_CONVERSIONS;
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comState = ComStates::START_INT_CLOCKED_CONVERSIONS;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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case (ComStates::EXT_CLOCKED_TEMP): {
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*id = SUS::READ_EXT_TIMED_TEMPS;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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}
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return NOTHING_TO_SEND;
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}
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ReturnValue_t SusHandler::buildTransitionDeviceCommand(DeviceCommandId_t *id) {
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if (comState == ComStates::WRITE_SETUP) {
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*id = SUS::WRITE_SETUP;
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return buildCommandFromCommand(*id, nullptr, 0);
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}
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2022-03-22 11:07:31 +01:00
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return NOTHING_TO_SEND;
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2022-02-22 20:34:25 +01:00
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}
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ReturnValue_t SusHandler::buildCommandFromCommand(DeviceCommandId_t deviceCommand,
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const uint8_t *commandData,
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size_t commandDataLen) {
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using namespace max1227;
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switch (deviceCommand) {
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case (SUS::WRITE_SETUP): {
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if (clkMode == ClkModes::INT_CLOCKED) {
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cmdBuffer[0] = SUS::SETUP_INT_CLOKED;
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} else {
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cmdBuffer[0] = SUS::SETUP_EXT_CLOCKED;
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}
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rawPacket = cmdBuffer;
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rawPacketLen = 1;
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break;
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}
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case (SUS::START_INT_TIMED_CONVERSIONS): {
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std::memset(cmdBuffer, 0, sizeof(cmdBuffer));
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cmdBuffer[0] = max1227::buildResetByte(true);
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cmdBuffer[1] = SUS::CONVERSION;
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rawPacket = cmdBuffer;
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rawPacketLen = 2;
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break;
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}
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case (SUS::READ_INT_TIMED_CONVERSIONS): {
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std::memset(cmdBuffer, 0, sizeof(cmdBuffer));
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rawPacket = cmdBuffer;
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rawPacketLen = SUS::SIZE_READ_INT_CONVERSIONS;
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break;
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}
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case (SUS::READ_EXT_TIMED_CONVERSIONS): {
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std::memset(cmdBuffer, 0, sizeof(cmdBuffer));
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rawPacket = cmdBuffer;
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for (uint8_t idx = 0; idx < 6; idx++) {
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cmdBuffer[idx * 2] = buildConvByte(ScanModes::N_ONCE, idx, false);
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cmdBuffer[idx * 2 + 1] = 0;
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}
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cmdBuffer[12] = 0x00;
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rawPacketLen = SUS::SIZE_READ_EXT_CONVERSIONS;
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break;
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}
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case (SUS::READ_EXT_TIMED_TEMPS): {
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cmdBuffer[0] = buildConvByte(ScanModes::N_ONCE, 0, true);
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std::memset(cmdBuffer + 1, 0, 24);
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rawPacket = cmdBuffer;
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rawPacketLen = 25;
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break;
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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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return HasReturnvaluesIF::RETURN_OK;
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}
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void SusHandler::fillCommandAndReplyMap() {
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insertInCommandAndReplyMap(SUS::WRITE_SETUP, 1);
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insertInCommandAndReplyMap(SUS::START_INT_TIMED_CONVERSIONS, 1);
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insertInCommandAndReplyMap(SUS::READ_INT_TIMED_CONVERSIONS, 1, &dataset,
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SUS::SIZE_READ_INT_CONVERSIONS);
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insertInCommandAndReplyMap(SUS::READ_EXT_TIMED_CONVERSIONS, 1, &dataset,
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SUS::SIZE_READ_EXT_CONVERSIONS);
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insertInCommandAndReplyMap(SUS::READ_EXT_TIMED_TEMPS, 1);
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}
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ReturnValue_t SusHandler::scanForReply(const uint8_t *start, size_t remainingSize,
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DeviceCommandId_t *foundId, size_t *foundLen) {
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*foundId = this->getPendingCommand();
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*foundLen = remainingSize;
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t SusHandler::interpretDeviceReply(DeviceCommandId_t id, const uint8_t *packet) {
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switch (id) {
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case SUS::WRITE_SETUP: {
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if (mode == _MODE_START_UP) {
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commandExecuted = true;
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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case SUS::START_INT_TIMED_CONVERSIONS: {
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return HasReturnvaluesIF::RETURN_OK;
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}
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case SUS::READ_INT_TIMED_CONVERSIONS: {
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PoolReadGuard readSet(&dataset);
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dataset.temperatureCelcius = max1227::getTemperature(((packet[0] & 0x0f) << 8) | packet[1]);
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for (uint8_t idx = 0; idx < 6; idx++) {
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dataset.channels[idx] = packet[idx * 2 + 2] << 8 | packet[idx * 2 + 3];
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}
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2022-06-03 18:03:25 +02:00
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dataset.setValidity(true, true);
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2022-02-22 20:34:25 +01:00
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printDataset();
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break;
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}
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case (SUS::READ_EXT_TIMED_CONVERSIONS): {
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PoolReadGuard readSet(&dataset);
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for (uint8_t idx = 0; idx < 6; idx++) {
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dataset.channels[idx] = packet[idx * 2 + 1] << 8 | packet[idx * 2 + 2];
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}
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2022-06-03 18:03:25 +02:00
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dataset.channels.setValid(true);
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2022-02-22 20:34:25 +01:00
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// Read temperature in next read cycle
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if (clkMode == ClkModes::EXT_CLOCKED_WITH_TEMP) {
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comState = ComStates::EXT_CLOCKED_TEMP;
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}
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printDataset();
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break;
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}
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case (SUS::READ_EXT_TIMED_TEMPS): {
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PoolReadGuard readSet(&dataset);
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dataset.temperatureCelcius = max1227::getTemperature(((packet[23] & 0x0f) << 8) | packet[24]);
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2022-06-03 18:03:25 +02:00
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dataset.temperatureCelcius.setValid(true);
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2022-02-22 20:34:25 +01:00
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comState = ComStates::EXT_CLOCKED_CONVERSIONS;
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break;
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}
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default: {
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sif::debug << "SusHandler::interpretDeviceReply: Unknown reply id" << std::endl;
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return DeviceHandlerIF::UNKNOWN_DEVICE_REPLY;
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}
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}
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return HasReturnvaluesIF::RETURN_OK;
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}
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2022-04-03 20:35:49 +02:00
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uint32_t SusHandler::getTransitionDelayMs(Mode_t modeFrom, Mode_t modeTo) { return 3000; }
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2022-02-22 20:34:25 +01:00
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ReturnValue_t SusHandler::initializeLocalDataPool(localpool::DataPool &localDataPoolMap,
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LocalDataPoolManager &poolManager) {
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localDataPoolMap.emplace(SUS::TEMPERATURE_C, &tempC);
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localDataPoolMap.emplace(SUS::CHANNEL_VEC, &channelVec);
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2022-08-15 11:57:57 +02:00
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poolManager.subscribeForDiagPeriodicPacket(
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subdp::DiagnosticsHkPeriodicParams(dataset.getSid(), false, 5.0));
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2022-02-22 20:34:25 +01:00
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return HasReturnvaluesIF::RETURN_OK;
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}
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void SusHandler::setToGoToNormalMode(bool enable) { this->goToNormalModeImmediately = enable; }
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void SusHandler::printDataset() {
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if (periodicPrintout) {
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if (divider.checkAndIncrement()) {
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2022-02-24 11:47:32 +01:00
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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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2022-02-22 20:34:25 +01:00
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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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sif::info << ",";
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}
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}
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sif::info << "] | T[C] " << std::dec << dataset.temperatureCelcius.value << std::endl;
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}
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}
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}
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void SusHandler::enablePeriodicPrintout(bool enable, uint8_t divider) {
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this->periodicPrintout = enable;
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this->divider.setDivider(divider);
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}
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