fsfw/src/fsfw/pus/Service3Housekeeping.cpp

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#include "fsfw/pus/Service3Housekeeping.h"
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#include "fsfw/datapoollocal/HasLocalDataPoolIF.h"
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#include "fsfw/objectmanager/ObjectManager.h"
#include "fsfw/pus/servicepackets/Service3Packets.h"
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Service3Housekeeping::Service3Housekeeping(object_id_t objectId, uint16_t apid, uint8_t serviceId)
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: CommandingServiceBase(objectId, apid, "PUS 3 HK", serviceId, NUM_OF_PARALLEL_COMMANDS,
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COMMAND_TIMEOUT_SECONDS) {}
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Service3Housekeeping::~Service3Housekeeping() {}
ReturnValue_t Service3Housekeeping::isValidSubservice(uint8_t subservice) {
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switch (static_cast<Subservice>(subservice)) {
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case Subservice::ENABLE_PERIODIC_HK_REPORT_GENERATION:
case Subservice::DISABLE_PERIODIC_HK_REPORT_GENERATION:
case Subservice::ENABLE_PERIODIC_DIAGNOSTICS_REPORT_GENERATION:
case Subservice::DISABLE_PERIODIC_DIAGNOSTICS_REPORT_GENERATION:
case Subservice::REPORT_HK_REPORT_STRUCTURES:
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case Subservice::REPORT_DIAGNOSTICS_REPORT_STRUCTURES:
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case Subservice::GENERATE_ONE_PARAMETER_REPORT:
case Subservice::GENERATE_ONE_DIAGNOSTICS_REPORT:
case Subservice::MODIFY_PARAMETER_REPORT_COLLECTION_INTERVAL:
case Subservice::MODIFY_DIAGNOSTICS_REPORT_COLLECTION_INTERVAL:
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return returnvalue::OK;
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// Telemetry or invalid subservice.
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case Subservice::HK_DEFINITIONS_REPORT:
case Subservice::DIAGNOSTICS_DEFINITION_REPORT:
case Subservice::HK_REPORT:
case Subservice::DIAGNOSTICS_REPORT:
default:
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return AcceptsTelecommandsIF::INVALID_SUBSERVICE;
}
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}
ReturnValue_t Service3Housekeeping::getMessageQueueAndObject(uint8_t subservice,
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const uint8_t* tcData,
size_t tcDataLen, MessageQueueId_t* id,
object_id_t* objectId) {
ReturnValue_t result = checkAndAcquireTargetID(objectId, tcData, tcDataLen);
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if (result != returnvalue::OK) {
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return result;
}
return checkInterfaceAndAcquireMessageQueue(id, objectId);
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}
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ReturnValue_t Service3Housekeeping::checkAndAcquireTargetID(object_id_t* objectIdToSet,
const uint8_t* tcData,
size_t tcDataLen) {
if (SerializeAdapter::deSerialize(objectIdToSet, &tcData, &tcDataLen,
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SerializeIF::Endianness::BIG) != returnvalue::OK) {
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return CommandingServiceBase::INVALID_TC;
}
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return returnvalue::OK;
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}
ReturnValue_t Service3Housekeeping::checkInterfaceAndAcquireMessageQueue(
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MessageQueueId_t* messageQueueToSet, object_id_t* objectId) {
// check HasLocalDataPoolIF property of target
HasLocalDataPoolIF* possibleTarget =
ObjectManager::instance()->get<HasLocalDataPoolIF>(*objectId);
if (possibleTarget == nullptr) {
return CommandingServiceBase::INVALID_OBJECT;
}
*messageQueueToSet = possibleTarget->getCommandQueue();
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return returnvalue::OK;
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}
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ReturnValue_t Service3Housekeeping::prepareCommand(CommandMessage* message, uint8_t subservice,
const uint8_t* tcData, size_t tcDataLen,
uint32_t* state, object_id_t objectId) {
switch (static_cast<Subservice>(subservice)) {
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case Subservice::ENABLE_PERIODIC_HK_REPORT_GENERATION:
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return prepareReportingTogglingCommand(message, objectId, true, false, tcData, tcDataLen);
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case Subservice::DISABLE_PERIODIC_HK_REPORT_GENERATION:
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return prepareReportingTogglingCommand(message, objectId, false, false, tcData, tcDataLen);
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case Subservice::ENABLE_PERIODIC_DIAGNOSTICS_REPORT_GENERATION:
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return prepareReportingTogglingCommand(message, objectId, true, true, tcData, tcDataLen);
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case Subservice::DISABLE_PERIODIC_DIAGNOSTICS_REPORT_GENERATION:
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return prepareReportingTogglingCommand(message, objectId, false, true, tcData, tcDataLen);
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case Subservice::REPORT_HK_REPORT_STRUCTURES:
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return prepareStructureReportingCommand(message, objectId, false, tcData, tcDataLen);
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case Subservice::REPORT_DIAGNOSTICS_REPORT_STRUCTURES:
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return prepareStructureReportingCommand(message, objectId, true, tcData, tcDataLen);
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case Subservice::GENERATE_ONE_PARAMETER_REPORT:
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return prepareOneShotReportCommand(message, objectId, false, tcData, tcDataLen);
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case Subservice::GENERATE_ONE_DIAGNOSTICS_REPORT:
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return prepareOneShotReportCommand(message, objectId, true, tcData, tcDataLen);
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case Subservice::MODIFY_PARAMETER_REPORT_COLLECTION_INTERVAL:
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return prepareCollectionIntervalModificationCommand(message, objectId, false, tcData,
tcDataLen);
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case Subservice::MODIFY_DIAGNOSTICS_REPORT_COLLECTION_INTERVAL:
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return prepareCollectionIntervalModificationCommand(message, objectId, true, tcData,
tcDataLen);
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case Subservice::HK_DEFINITIONS_REPORT:
case Subservice::DIAGNOSTICS_DEFINITION_REPORT:
case Subservice::HK_REPORT:
case Subservice::DIAGNOSTICS_REPORT:
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// Those are telemetry packets.
return CommandingServiceBase::INVALID_TC;
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default:
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// should never happen, subservice was already checked.
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return returnvalue::FAILED;
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}
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return returnvalue::OK;
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}
ReturnValue_t Service3Housekeeping::prepareReportingTogglingCommand(
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CommandMessage* command, object_id_t objectId, bool enableReporting, bool isDiagnostics,
const uint8_t* tcData, size_t tcDataLen) {
if (tcDataLen < sizeof(sid_t)) {
// TC data should consist of object ID and set ID.
return CommandingServiceBase::INVALID_TC;
}
sid_t targetSid = buildSid(objectId, &tcData, &tcDataLen);
HousekeepingMessage::setToggleReportingCommand(command, targetSid, enableReporting,
isDiagnostics);
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return returnvalue::OK;
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}
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ReturnValue_t Service3Housekeeping::prepareStructureReportingCommand(CommandMessage* command,
object_id_t objectId,
bool isDiagnostics,
const uint8_t* tcData,
size_t tcDataLen) {
if (tcDataLen < sizeof(sid_t)) {
// TC data should consist of object ID and set ID.
return CommandingServiceBase::INVALID_TC;
}
sid_t targetSid = buildSid(objectId, &tcData, &tcDataLen);
HousekeepingMessage::setStructureReportingCommand(command, targetSid, isDiagnostics);
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return returnvalue::OK;
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}
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ReturnValue_t Service3Housekeeping::prepareOneShotReportCommand(CommandMessage* command,
object_id_t objectId,
bool isDiagnostics,
const uint8_t* tcData,
size_t tcDataLen) {
if (tcDataLen < sizeof(sid_t)) {
// TC data should consist of object ID and set ID.
return CommandingServiceBase::INVALID_TC;
}
sid_t targetSid = buildSid(objectId, &tcData, &tcDataLen);
HousekeepingMessage::setOneShotReportCommand(command, targetSid, isDiagnostics);
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return returnvalue::OK;
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}
ReturnValue_t Service3Housekeeping::prepareCollectionIntervalModificationCommand(
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CommandMessage* command, object_id_t objectId, bool isDiagnostics, const uint8_t* tcData,
size_t tcDataLen) {
if (tcDataLen < sizeof(sid_t) + sizeof(float)) {
/* SID plus the size of the new collection interval. */
return CommandingServiceBase::INVALID_TC;
}
sid_t targetSid = buildSid(objectId, &tcData, &tcDataLen);
float newCollectionInterval = 0;
SerializeAdapter::deSerialize(&newCollectionInterval, &tcData, &tcDataLen,
SerializeIF::Endianness::BIG);
HousekeepingMessage::setCollectionIntervalModificationCommand(
command, targetSid, newCollectionInterval, isDiagnostics);
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return returnvalue::OK;
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}
ReturnValue_t Service3Housekeeping::handleReply(const CommandMessage* reply,
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Command_t previousCommand, uint32_t* state,
CommandMessage* optionalNextCommand,
object_id_t objectId, bool* isStep) {
Command_t command = reply->getCommand();
switch (command) {
case (HousekeepingMessage::HK_REPORT): {
ReturnValue_t result = generateHkReply(reply, static_cast<uint8_t>(Subservice::HK_REPORT));
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if (result != returnvalue::OK) {
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return result;
}
return CommandingServiceBase::EXECUTION_COMPLETE;
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}
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case (HousekeepingMessage::DIAGNOSTICS_REPORT): {
ReturnValue_t result =
generateHkReply(reply, static_cast<uint8_t>(Subservice::DIAGNOSTICS_REPORT));
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if (result != returnvalue::OK) {
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return result;
}
return CommandingServiceBase::EXECUTION_COMPLETE;
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}
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case (HousekeepingMessage::HK_DEFINITIONS_REPORT): {
return generateHkReply(reply, static_cast<uint8_t>(Subservice::HK_DEFINITIONS_REPORT));
break;
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}
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case (HousekeepingMessage::DIAGNOSTICS_DEFINITION_REPORT): {
return generateHkReply(reply,
static_cast<uint8_t>(Subservice::DIAGNOSTICS_DEFINITION_REPORT));
break;
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}
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case (HousekeepingMessage::HK_REQUEST_SUCCESS): {
return CommandingServiceBase::EXECUTION_COMPLETE;
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}
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case (HousekeepingMessage::HK_REQUEST_FAILURE): {
failureParameter1 = objectId;
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ReturnValue_t error = returnvalue::FAILED;
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HousekeepingMessage::getHkRequestFailureReply(reply, &error);
failureParameter2 = error;
return CommandingServiceBase::EXECUTION_COMPLETE;
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}
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default:
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::warning << "Service3Housekeeping::handleReply: Invalid reply with "
<< "reply command " << command << "!" << std::endl;
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#else
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sif::printWarning(
"Service3Housekeeping::handleReply: Invalid reply with "
"reply command %hu!\n",
command);
#endif
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return CommandingServiceBase::INVALID_REPLY;
}
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return returnvalue::OK;
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}
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void Service3Housekeeping::handleUnrequestedReply(CommandMessage* reply) {
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ReturnValue_t result = returnvalue::OK;
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Command_t command = reply->getCommand();
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switch (command) {
case (HousekeepingMessage::DIAGNOSTICS_REPORT): {
result = generateHkReply(reply, static_cast<uint8_t>(Subservice::DIAGNOSTICS_REPORT));
break;
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}
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case (HousekeepingMessage::HK_REPORT): {
result = generateHkReply(reply, static_cast<uint8_t>(Subservice::HK_REPORT));
break;
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}
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case (HousekeepingMessage::HK_REQUEST_SUCCESS): {
break;
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}
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case (HousekeepingMessage::HK_REQUEST_FAILURE): {
break;
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}
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default: {
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::warning << "Service3Housekeeping::handleUnrequestedReply: Invalid reply with reply "
"command "
<< command << "!" << std::endl;
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#else
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sif::printWarning(
"Service3Housekeeping::handleUnrequestedReply: Invalid reply with "
"reply command %hu!\n",
command);
#endif
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return;
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}
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}
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if (result != returnvalue::OK) {
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/* Configuration error */
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::warning << "Service3Housekeeping::handleUnrequestedReply: Could not generate reply!"
<< std::endl;
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#else
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sif::printWarning(
"Service3Housekeeping::handleUnrequestedReply: "
"Could not generate reply!\n");
#endif
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}
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}
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MessageQueueId_t Service3Housekeeping::getHkQueue() const { return commandQueue->getId(); }
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ReturnValue_t Service3Housekeeping::generateHkReply(const CommandMessage* hkMessage,
uint8_t subserviceId) {
store_address_t storeId;
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sid_t sid = HousekeepingMessage::getHkDataReply(hkMessage, &storeId);
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auto resultPair = ipcStore->getData(storeId);
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if (resultPair.first != returnvalue::OK) {
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return resultPair.first;
}
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HkPacket hkPacket(sid, resultPair.second.data(), resultPair.second.size());
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return sendTmPacket(static_cast<uint8_t>(subserviceId), hkPacket.hkData, hkPacket.hkSize);
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}
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sid_t Service3Housekeeping::buildSid(object_id_t objectId, const uint8_t** tcData,
size_t* tcDataLen) {
sid_t targetSid;
targetSid.objectId = objectId;
// skip deserialization of object ID, was already done.
*tcData += sizeof(object_id_t);
*tcDataLen -= sizeof(object_id_t);
// size check is expected to be performed beforehand!
SerializeAdapter::deSerialize(&targetSid.ownerSetId, tcData, tcDataLen,
SerializeIF::Endianness::BIG);
return targetSid;
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}