435 lines
15 KiB
C++
435 lines
15 KiB
C++
#include <cstring>
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#include <sstream>
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#include <sys/mman.h>
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#include <fcntl.h>
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#include "PdecHandler.h"
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#include "OBSWConfig.h"
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#include "fsfw/serviceinterface/ServiceInterface.h"
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#include "fsfw/tmtcservices/TmTcMessage.h"
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#include "fsfw/objectmanager/ObjectManager.h"
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PdecHandler::PdecHandler(object_id_t objectId, object_id_t tcDestinationId,
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LinuxLibgpioIF* gpioComIF, gpioId_t pdecReset, std::string uioConfigMemory,
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std::string uioRamMemory, std::string uioRegisters) :
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SystemObject(objectId), tcDestinationId(tcDestinationId), gpioComIF(gpioComIF), pdecReset(
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pdecReset), uioConfigMemory(uioConfigMemory), uioRamMemory(uioRamMemory), uioRegisters(
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uioRegisters) {
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}
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PdecHandler::~PdecHandler() {
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}
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ReturnValue_t PdecHandler::initialize() {
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tcStore = ObjectManager::instance()->get<StorageManagerIF>(objects::TC_STORE);
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if (tcStore == nullptr) {
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sif::error << "PdecHandler::initialize: Invalid TC store" << std::endl;
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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tcDestination = ObjectManager::instance()->get<AcceptsTelecommandsIF>(
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tcDestinationId);
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if (tcDestination == nullptr) {
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sif::error << "PdecHandler::initialize: Invalid tc destination specified" << std::endl;
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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ReturnValue_t result = RETURN_OK;
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result = getRegisterAddress();
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if (result != RETURN_OK) {
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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result = getConfigMemoryBaseAddress();
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if (result != RETURN_OK) {
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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result = getRamBaseAddress();
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if (result != RETURN_OK) {
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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writePdecConfig();
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result = releasePdec();
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if (result != RETURN_OK) {
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return ObjectManagerIF::CHILD_INIT_FAILED;
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}
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return RETURN_OK;
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}
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ReturnValue_t PdecHandler::getRegisterAddress() {
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int fd = open(uioRegisters.c_str(), O_RDWR);
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if (fd < 1) {
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sif::warning << "PdecHandler::getRegisterAddress: Invalid UIO device file" << std::endl;
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return RETURN_FAILED;
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}
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registerBaseAddress = static_cast<uint32_t*>(mmap(NULL, REGISTER_MAP_SIZE,
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PROT_WRITE | PROT_READ, MAP_SHARED, fd, 0));
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if (registerBaseAddress == MAP_FAILED) {
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sif::error << "PdecHandler::getRegisterAddress: Failed to map uio address" << std::endl;
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return RETURN_FAILED;
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}
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return RETURN_OK;
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}
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ReturnValue_t PdecHandler::getConfigMemoryBaseAddress() {
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int fd = open(uioConfigMemory.c_str(), O_RDWR);
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if (fd < 1) {
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sif::warning << "PdecHandler::getConfigMemoryBaseAddress: Invalid UIO device file" << std::endl;
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return RETURN_FAILED;
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}
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memoryBaseAddress = static_cast<uint32_t*>(mmap(NULL, CONFIG_MEMORY_MAP_SIZE, PROT_WRITE | PROT_READ,
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MAP_SHARED, fd, 0));
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if (memoryBaseAddress == MAP_FAILED) {
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sif::error << "PdecHandler::getConfigMemoryBaseAddress: Failed to map uio address" << std::endl;
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return RETURN_FAILED;
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}
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return RETURN_OK;
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}
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ReturnValue_t PdecHandler::getRamBaseAddress() {
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int fd = open(uioRamMemory.c_str(), O_RDWR);
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ramBaseAddress = static_cast<uint32_t*>(mmap(NULL, RAM_MAP_SIZE, PROT_WRITE | PROT_READ,
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MAP_SHARED, fd, 0));
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if (ramBaseAddress == MAP_FAILED) {
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sif::error << "PdecHandler::getRamBaseAddress: Failed to map RAM base address" << std::endl;
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return RETURN_FAILED;
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}
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return RETURN_OK;
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}
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void PdecHandler::writePdecConfig() {
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PdecConfig pdecConfig;
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*(memoryBaseAddress + FRAME_HEADER_OFFSET)= pdecConfig.getConfigWord(0);
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*(memoryBaseAddress + FRAME_HEADER_OFFSET + 1) = pdecConfig.getConfigWord(1);
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// Configure all MAP IDs as invalid
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for (int idx = 0; idx <= MAX_MAP_ADDR; idx += 4) {
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*(memoryBaseAddress + MAP_ADDR_LUT_OFFSET + idx + 1 / 4) = NO_DESTINATION << 24
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| NO_DESTINATION << 16 | NO_DESTINATION << 8 | NO_DESTINATION;
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}
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// All TCs with MAP ID 7 will be routed to the PM module (can then be read from memory)
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uint8_t routeToPm = calcMapAddrEntry(PM_BUFFER);
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*(memoryBaseAddress + MAP_ADDR_LUT_OFFSET + 1) = (NO_DESTINATION << 24) | (NO_DESTINATION << 16) | (NO_DESTINATION << 8)
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| routeToPm;
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// Write map id clock frequencies
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for (int idx = 0; idx <= MAX_MAP_ADDR; idx += 4) {
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*(memoryBaseAddress + MAP_CLK_FREQ_OFFSET + idx / 4) = MAP_CLK_FREQ << 24
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| MAP_CLK_FREQ << 16 | MAP_CLK_FREQ << 8 | MAP_CLK_FREQ;
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}
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}
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ReturnValue_t PdecHandler::resetFarStatFlag() {
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uint32_t pdecFar = *(registerBaseAddress + PDEC_FAR_OFFSET);
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if (pdecFar != FAR_RESET) {
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sif::warning << "PdecHandler::resetFarStatFlag: FAR register did not match expected value."
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<< " Read value: 0x" << std::hex << static_cast<unsigned int>(pdecFar) << std::endl;
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return RETURN_FAILED;
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}
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#if OBSW_DEBUG_PDEC_HANDLER == 1
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sif::debug << "PdecHandler::resetFarStatFlag: read FAR with value: 0x" << std::hex << pdecFar
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<< std::endl;
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#endif /* OBSW_DEBUG_PDEC_HANDLER == 1 */
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return RETURN_OK;
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}
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ReturnValue_t PdecHandler::releasePdec() {
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ReturnValue_t result = RETURN_OK;
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result = gpioComIF->pullHigh(pdecReset);
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if (result != RETURN_OK) {
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sif::error << "PdecHandler::releasePdec: Failed to release PDEC reset signal" << std::endl;
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}
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return result;
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}
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ReturnValue_t PdecHandler::performOperation(uint8_t operationCode) {
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ReturnValue_t result = RETURN_OK;
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switch(state) {
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case State::INIT:
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resetFarStatFlag();
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if (result != RETURN_OK) {
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// Requires reconfiguration and reinitialization of PDEC
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triggerEvent(INVALID_FAR);
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state = State::WAIT_FOR_RECOVERY;
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return result;
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}
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state = State::RUNNING;
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break;
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case State::RUNNING:
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if (newTcReceived()) {
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handleNewTc();
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}
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break;
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case State::WAIT_FOR_RECOVERY:
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break;
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default:
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sif::debug << "PdecHandler::performOperation: Invalid state" << std::endl;
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break;
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}
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return RETURN_OK;
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}
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bool PdecHandler::newTcReceived() {
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uint32_t pdecFar = *(registerBaseAddress + PDEC_FAR_OFFSET);
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if (pdecFar >> STAT_POSITION != NEW_FAR_RECEIVED) {
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return false;
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}
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if (!checkFrameAna(pdecFar)) {
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return false;
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}
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return true;
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}
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bool PdecHandler::checkFrameAna(uint32_t pdecFar) {
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bool frameValid = false;
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FrameAna_t frameAna = static_cast<FrameAna_t>((pdecFar & FRAME_ANA_MASK) >> FRAME_ANA_POSITION);
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switch(frameAna) {
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case(FrameAna_t::ABANDONED_CLTU): {
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triggerEvent(INVALID_TC_FRAME, ABANDONED_CLTU);
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sif::debug << "PdecHandler::checkFrameAna: Abondoned CLTU" << std::endl;
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break;
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}
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case(FrameAna_t::FRAME_DIRTY): {
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triggerEvent(INVALID_TC_FRAME, FRAME_DIRTY);
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sif::debug << "PdecHandler::checkFrameAna: Frame dirty" << std::endl;
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break;
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}
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case(FrameAna_t::FRAME_ILLEGAL): {
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sif::debug << "PdecHandler::checkFrameAna: Frame illegal for one reason" << std::endl;
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handleIReason(pdecFar, FRAME_ILLEGAL_ONE_REASON);
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break;
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}
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case(FrameAna_t::FRAME_ILLEGAL_MULTI_REASON): {
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sif::debug << "PdecHandler::checkFrameAna: Frame illegal for multiple reasons"
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<< std::endl;
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handleIReason(pdecFar, FRAME_ILLEGAL_MULTIPLE_REASONS);
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break;
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}
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case(FrameAna_t::AD_DISCARDED_LOCKOUT): {
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triggerEvent(INVALID_TC_FRAME, AD_DISCARDED_LOCKOUT);
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sif::debug << "PdecHandler::checkFrameAna: AD frame discarded because of lockout"
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<< std::endl;
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break;
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}
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case(FrameAna_t::AD_DISCARDED_WAIT): {
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triggerEvent(INVALID_TC_FRAME, AD_DISCARDED_LOCKOUT);
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sif::debug << "PdecHandler::checkFrameAna: AD frame discarded because of wait"
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<< std::endl;
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break;
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}
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case(FrameAna_t::AD_DISCARDED_NS_VR): {
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triggerEvent(INVALID_TC_FRAME, AD_DISCARDED_NS_VS);
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sif::debug << "PdecHandler::checkFrameAna: AD frame discarded because N(S) or V(R)"
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<< std::endl;
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break;
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}
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case(FrameAna_t::FRAME_ACCEPTED): {
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sif::debug << "PdecHandler::checkFrameAna: Accepted TC frame" << std::endl;
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frameValid = true;
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break;
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}
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default: {
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sif::debug << "PdecHandler::checkFrameAna: Invaid frame analysis report" << std::endl;
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break;
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}
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}
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return frameValid;
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}
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void PdecHandler::handleIReason(uint32_t pdecFar, ReturnValue_t parameter1) {
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IReason_t ireason = static_cast<IReason_t>((pdecFar & IREASON_MASK) >> IREASON_POSITION);
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switch(ireason) {
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case(IReason_t::NO_REPORT): {
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triggerEvent(INVALID_TC_FRAME, parameter1, NO_REPORT);
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sif::debug << "PdecHandler::handleIReason: No illegal report" << std::endl;
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break;
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}
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case(IReason_t::ERROR_VERSION_NUMBER): {
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triggerEvent(INVALID_TC_FRAME, parameter1, ERROR_VERSION_NUMBER);
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sif::debug << "PdecHandler::handleIReason: Error in version number and reserved A and B "
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<< "fields" << std::endl;
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break;
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}
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case(IReason_t::ILLEGAL_COMBINATION): {
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triggerEvent(INVALID_TC_FRAME, parameter1, ILLEGAL_COMBINATION);
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sif::debug << "PdecHandler::handleIReason: Illegal combination (AC) of bypass and control "
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<< "command flags" << std::endl;
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break;
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}
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case(IReason_t::INVALID_SC_ID): {
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triggerEvent(INVALID_TC_FRAME, parameter1, INVALID_SC_ID);
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sif::debug << "PdecHandler::handleIReason: Invalid spacecraft identifier " << std::endl;
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break;
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}
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case(IReason_t::INVALID_VC_ID_MSB): {
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triggerEvent(INVALID_TC_FRAME, parameter1, INVALID_VC_ID_MSB);
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sif::debug << "PdecHandler::handleIReason: VC identifier bit 0 to 4 did not match "
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<< std::endl;
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break;
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}
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case(IReason_t::INVALID_VC_ID_LSB): {
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triggerEvent(INVALID_TC_FRAME, parameter1, INVALID_VC_ID_LSB);
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sif::debug << "PdecHandler::handleIReason: VC identifier bit 5 did not match " << std::endl;
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break;
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}
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case(IReason_t::NS_NOT_ZERO): {
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triggerEvent(INVALID_TC_FRAME, parameter1, NS_NOT_ZERO);
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sif::debug << "PdecHandler::handleIReason: N(S) of BC or BD frame not set to all zeros"
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<< std::endl;
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break;
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}
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case(IReason_t::INCORRECT_BC_CC): {
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triggerEvent(INVALID_TC_FRAME, parameter1, INVALID_BC_CC);
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sif::debug << "PdecHandler::handleIReason: Invalid BC control command format" << std::endl;
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break;
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}
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default: {
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sif::debug << "PdecHandler::handleIReason: Invaid reason id" << std::endl;
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break;
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}
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}
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}
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void PdecHandler::handleNewTc() {
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ReturnValue_t result = RETURN_OK;
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uint32_t tcLength = 0;
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result = readTc(tcLength);
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if (result != RETURN_OK) {
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return;
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}
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#if OBSW_DEBUG_PDEC_HANDLER == 1
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unsigned int mapId = tcSegment[0] & MAP_ID_MASK;
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sif::debug << "PdecHandler::handleNewTc: Received TC segment with map ID" << mapId
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<< std::endl;
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printTC(tcLength);
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#endif /* OBSW_DEBUG_PDEC_HANDLER */
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store_address_t storeId;
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result = tcStore->addData(&storeId, tcSegment + 1, tcLength - 1);
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if (result != RETURN_OK) {
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sif::warning << "PdecHandler::handleNewTc: Failed to add received space packet to store"
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<< std::endl;
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return;
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}
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TmTcMessage message(storeId);
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result = MessageQueueSenderIF::sendMessage(tcDestination->getRequestQueue(), &message);
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if (result != HasReturnvaluesIF::RETURN_OK) {
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sif::warning << "PdecHandler::handleNewTc: Failed to send message to TC destination"
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<< std::endl;
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tcStore->deleteData(storeId);
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return;
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}
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return;
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}
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ReturnValue_t PdecHandler::readTc(uint32_t& tcLength) {
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uint32_t tcOffset = (*(registerBaseAddress + PDEC_BPTR_OFFSET) - PHYSICAL_RAM_BASE_ADDRESS) / 4;
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#if OBSW_DEBUG_PDEC_HANDLER == 1
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sif::debug << "PdecHandler::readTc: TC offset: 0x" << std::hex << tcOffset << std::endl;
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#endif /* OBSW_DEBUG_PDEC_HANDLER */
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tcLength = *(registerBaseAddress + PDEC_SLEN_OFFSET);
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#if OBSW_DEBUG_PDEC_HANDLER == 1
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sif::debug << "PdecHandler::readTc: TC segment length: " << std::dec << tcLength << std::endl;
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#endif /* OBSW_DEBUG_PDEC_HANDLER */
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if (tcLength > MAX_TC_SEGMENT_SIZE) {
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sif::warning << "PdecHandler::handleNewTc: Read invalid TC length from PDEC register"
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<< std::endl;
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return RETURN_FAILED;
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}
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uint32_t idx = 0;
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uint32_t tcData = 0;
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for (idx = 0; idx <= tcLength; idx = idx + 4) {
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tcData = *(ramBaseAddress + tcOffset + idx / 4);
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if (idx == 0) {
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tcSegment[idx] = static_cast<uint8_t>((tcData >> 16) & 0xFF);
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tcSegment[idx + 1] = static_cast<uint8_t>((tcData >> 8) & 0xFF);
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tcSegment[idx + 2] = static_cast<uint8_t>(tcData & 0xFF);
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}
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else if (tcLength - idx + 1 == 3) {
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tcSegment[idx - 1] = static_cast<uint8_t>((tcData >> 16) & 0xFF);
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tcSegment[idx] = static_cast<uint8_t>((tcData >> 8) & 0xFF);
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tcSegment[idx + 1] = static_cast<uint8_t>(tcData & 0xFF);
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}
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else if (tcLength - idx + 1 == 2) {
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tcSegment[idx - 1] = static_cast<uint8_t>((tcData >> 8) & 0xFF);
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tcSegment[idx + 1] = static_cast<uint8_t>(tcData & 0xFF);
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}
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else if (tcLength - idx + 1 == 1) {
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tcSegment[idx - 1] = static_cast<uint8_t>(tcData & 0xFF);
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}
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else {
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tcSegment[idx - 1] = static_cast<uint8_t>((tcData >> 24) & 0xFF);
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tcSegment[idx] = static_cast<uint8_t>((tcData >> 16) & 0xFF);
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tcSegment[idx + 1] = static_cast<uint8_t>((tcData >> 8) & 0xFF);
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tcSegment[idx + 2] = static_cast<uint8_t>(tcData & 0xFF);
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}
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}
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// Backend buffer is handled back to PDEC3
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*(registerBaseAddress + PDEC_BFREE_OFFSET) = 0;
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return RETURN_OK;
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}
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void PdecHandler::printTC(uint32_t tcLength) {
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std::stringstream tcSegmentStream;
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tcSegmentStream << "TC segment data: 0x";
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for (uint32_t idx = 0; idx < tcLength; idx++) {
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tcSegmentStream << std::setfill('0') << std::setw(2) << std::hex
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<< static_cast<unsigned int>(tcSegment[idx]);
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}
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sif::debug << tcSegmentStream.str() << std::endl;
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}
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uint8_t PdecHandler::calcMapAddrEntry(uint8_t moduleId) {
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uint8_t lutEntry = 0;
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uint8_t parity = getOddParity(moduleId | (1 << VALID_POSITION));
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lutEntry = (parity << PARITY_POSITION) | (1 << VALID_POSITION) | moduleId;
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return lutEntry;
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}
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uint8_t PdecHandler::getOddParity(uint8_t number) {
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uint8_t parityBit = 0;
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uint8_t countBits = 0;
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for (unsigned int idx = 0; idx < sizeof(number) * 8; idx++) {
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countBits += (number >> idx) & 0x1;
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}
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parityBit = ~(countBits & 0x1) & 0x1;
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return parityBit;
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}
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