fsfw/src/fsfw/tcdistribution/PusDistributor.cpp

169 lines
5.8 KiB
C++

#include "fsfw/tcdistribution/PusDistributor.h"
#include "definitions.h"
#include "fsfw/objectmanager/ObjectManager.h"
#include "fsfw/serviceinterface/ServiceInterface.h"
#include "fsfw/tcdistribution/CCSDSDistributorIF.h"
#include "fsfw/tmtcservices/PusVerificationReport.h"
#define PUS_DISTRIBUTOR_DEBUGGING 0
PusDistributor::PusDistributor(uint16_t setApid, object_id_t setObjectId,
CCSDSDistributorIF* distributor, StorageManagerIF* store_)
: TcDistributor(setObjectId),
store(store_),
checker(setApid, ccsds::PacketType::TC),
ccsdsDistributor(distributor),
tcStatus(returnvalue::FAILED) {}
PusDistributor::~PusDistributor() = default;
PusDistributor::TcMqMapIter PusDistributor::selectDestination() {
#if FSFW_CPP_OSTREAM_ENABLED == 1 && PUS_DISTRIBUTOR_DEBUGGING == 1
store_address_t storeId = currentMessage.getStorageId();
sif::debug << "PUSDistributor::handlePacket received: " << storeId.poolIndex << ", "
<< storeId.packetIndex << std::endl;
#endif
auto queueMapIt = queueMap.end();
// TODO: Need to set the data
const uint8_t* packetPtr = nullptr;
size_t packetLen = 0;
if (store->getData(currentMessage.getStorageId(), &packetPtr, &packetLen) != returnvalue::OK) {
return queueMapIt;
}
ReturnValue_t result = reader.setReadOnlyData(packetPtr, packetLen);
if (result != returnvalue::OK) {
tcStatus = PACKET_LOST;
return queueMapIt;
}
// CRC check done by checker
result = reader.parseDataWithoutCrcCheck();
if (result != returnvalue::OK) {
tcStatus = PACKET_LOST;
return queueMapIt;
}
if (reader.getFullData() != nullptr) {
tcStatus = checker.checkPacket(reader, reader.getFullPacketLen());
if (tcStatus != returnvalue::OK) {
checkerFailurePrinter();
}
uint32_t queue_id = reader.getService();
queueMapIt = queueMap.find(queue_id);
} else {
tcStatus = PACKET_LOST;
}
if (queueMapIt == this->queueMap.end()) {
tcStatus = DESTINATION_NOT_FOUND;
#if FSFW_VERBOSE_LEVEL >= 1
#if FSFW_CPP_OSTREAM_ENABLED == 1
sif::debug << "PUSDistributor::handlePacket: Destination not found" << std::endl;
#else
sif::printDebug("PUSDistributor::handlePacket: Destination not found\n");
#endif /* !FSFW_CPP_OSTREAM_ENABLED == 1 */
#endif
}
if (tcStatus != returnvalue::OK) {
return this->queueMap.end();
} else {
return queueMapIt;
}
}
ReturnValue_t PusDistributor::registerService(AcceptsTelecommandsIF* service) {
uint16_t serviceId = service->getIdentifier();
#if PUS_DISTRIBUTOR_DEBUGGING == 1
#if FSFW_CPP_OSTREAM_ENABLED == 1
sif::info << "Service ID: " << static_cast<int>(serviceId) << std::endl;
#else
sif::printInfo("Service ID: %d\n", static_cast<int>(serviceId));
#endif
#endif
MessageQueueId_t queue = service->getRequestQueue();
auto returnPair = queueMap.emplace(serviceId, queue);
if (not returnPair.second) {
#if FSFW_VERBOSE_LEVEL >= 1
#if FSFW_CPP_OSTREAM_ENABLED == 1
sif::error << "PUSDistributor::registerService: Service ID already"
" exists in map"
<< std::endl;
#else
sif::printError("PUSDistributor::registerService: Service ID already exists in map\n");
#endif
#endif
return SERVICE_ID_ALREADY_EXISTS;
}
return returnvalue::OK;
}
MessageQueueId_t PusDistributor::getRequestQueue() const { return tcQueue->getId(); }
ReturnValue_t PusDistributor::callbackAfterSending(ReturnValue_t queueStatus) {
if (queueStatus != returnvalue::OK) {
tcStatus = queueStatus;
}
if (tcStatus != returnvalue::OK) {
verifyChannel->sendFailureReport({tcverif::ACCEPTANCE_FAILURE, reader, tcStatus});
// A failed packet is deleted immediately after reporting,
// otherwise it will block memory.
store->deleteData(currentMessage.getStorageId());
return returnvalue::FAILED;
} else {
verifyChannel->sendSuccessReport({tcverif::ACCEPTANCE_SUCCESS, reader});
return returnvalue::OK;
}
}
uint32_t PusDistributor::getIdentifier() const { return checker.getApid(); }
ReturnValue_t PusDistributor::initialize() {
if (store == nullptr) {
store = ObjectManager::instance()->get<StorageManagerIF>(objects::TC_STORE);
if (store == nullptr) {
return ObjectManagerIF::CHILD_INIT_FAILED;
}
}
if (ccsdsDistributor == nullptr) {
#if FSFW_CPP_OSTREAM_ENABLED == 1
sif::error << "PUSDistributor::initialize: Packet source invalid" << std::endl;
sif::error << " Make sure it exists and implements CCSDSDistributorIF!" << std::endl;
#else
sif::printError("PusDistributor::initialize: Packet source invalid\n");
sif::printError("Make sure it exists and implements CCSDSDistributorIF\n");
#endif
return ObjectManagerIF::CHILD_INIT_FAILED;
}
if (verifyChannel == nullptr) {
verifyChannel =
ObjectManager::instance()->get<VerificationReporterIF>(objects::VERIFICATION_REPORTER);
if (verifyChannel == nullptr) {
return ObjectManagerIF::CHILD_INIT_FAILED;
}
}
return ccsdsDistributor->registerApplication(this);
}
void PusDistributor::checkerFailurePrinter() const {
#if FSFW_VERBOSE_LEVEL >= 1
const char* keyword = "unnamed error";
if (tcStatus == tcdistrib::INCORRECT_CHECKSUM) {
keyword = "checksum";
} else if (tcStatus == tcdistrib::INCORRECT_PRIMARY_HEADER) {
keyword = "incorrect primary header";
} else if (tcStatus == tcdistrib::INVALID_APID) {
keyword = "illegal APID";
} else if (tcStatus == tcdistrib::INCORRECT_SECONDARY_HEADER) {
keyword = "incorrect secondary header";
} else if (tcStatus == tcdistrib::INCOMPLETE_PACKET) {
keyword = "incomplete packet";
}
#if FSFW_CPP_OSTREAM_ENABLED == 1
sif::warning << "PUSDistributor::handlePacket: Packet format invalid, " << keyword << " error"
<< std::endl;
#else
sif::printWarning("PUSDistributor::handlePacket: Packet format invalid, %s error\n", keyword);
#endif
#endif
}