A lot of new features and tweaks #12
178
pus/Service2DeviceAccess.cpp
Normal file
178
pus/Service2DeviceAccess.cpp
Normal file
@ -0,0 +1,178 @@
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#include <framework/pus/Service2DeviceAccess.h>
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#include <framework/pus/servicepackets/Service2Packets.h>
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#include <framework/devicehandlers/DeviceHandlerIF.h>
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#include <framework/storagemanager/StorageManagerIF.h>
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#include <framework/devicehandlers/DeviceHandlerMessage.h>
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#include <framework/serialize/EndianConverter.h>
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#include <framework/action/ActionMessage.h>
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#include <framework/serialize/SerializeAdapter.h>
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#include <framework/serialize/SerialLinkedListAdapter.h>
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#include <framework/serviceinterface/ServiceInterfaceStream.h>
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Service2DeviceAccess::Service2DeviceAccess(object_id_t objectId,
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uint16_t apid, uint8_t serviceId, object_id_t tcSource,
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object_id_t tmDestination):
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CommandingServiceBase(objectId, apid, serviceId,
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NUM_OF_PARALLEL_COMMANDS, COMMAND_TIMEOUT_SECONDS,
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tcSource, tmDestination) {}
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Service2DeviceAccess::~Service2DeviceAccess() {}
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ReturnValue_t Service2DeviceAccess::isValidSubservice(uint8_t subservice) {
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switch(static_cast<Subservice>(subservice)){
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case Subservice::RAW_COMMANDING:
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case Subservice::TOGGLE_WIRETAPPING:
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return HasReturnvaluesIF::RETURN_OK;
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default:
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sif::error << "Invalid Subservice" << std::endl;
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return AcceptsTelecommandsIF::INVALID_SUBSERVICE;
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}
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}
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ReturnValue_t Service2DeviceAccess::getMessageQueueAndObject(
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uint8_t subservice, const uint8_t* tcData, size_t tcDataLen,
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MessageQueueId_t* id, object_id_t* objectId) {
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ReturnValue_t result = checkAndAcquireTargetID(objectId,tcData,tcDataLen);
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if(result != HasReturnvaluesIF::RETURN_OK) {
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return result;
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}
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result = checkInterfaceAndAcquireMessageQueue(id,objectId);
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return result;
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}
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ReturnValue_t Service2DeviceAccess::checkAndAcquireTargetID(
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object_id_t* objectIdToSet, const uint8_t* tcData, size_t tcDataLen) {
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if(SerializeAdapter::deSerialize(objectIdToSet, &tcData,
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&tcDataLen, SerializeIF::Endianness::BIG) != RETURN_OK) {
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sif::error << "Service 2: Target ID not found. ID: " <<
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std::hex << objectIdToSet ;
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return CommandingServiceBase::INVALID_TC;
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}
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else {
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return HasReturnvaluesIF::RETURN_OK;
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}
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}
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ReturnValue_t Service2DeviceAccess::checkInterfaceAndAcquireMessageQueue(
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MessageQueueId_t * messageQueueToSet, object_id_t *objectId) {
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DeviceHandlerIF* possibleTarget =
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objectManager->get<DeviceHandlerIF>(*objectId);
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if(possibleTarget == nullptr) {
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return CommandingServiceBase::INVALID_OBJECT;
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}
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*messageQueueToSet = possibleTarget->getCommandQueue();
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return HasReturnvaluesIF::RETURN_OK;
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}
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ReturnValue_t Service2DeviceAccess::prepareCommand(CommandMessage* message,
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uint8_t subservice, const uint8_t* tcData, size_t tcDataLen,
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uint32_t* state, object_id_t objectId) {
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switch(static_cast<Subservice>(subservice)){
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case Subservice::RAW_COMMANDING: {
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return prepareRawCommand(dynamic_cast<CommandMessage*>(message),
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tcData, tcDataLen);
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}
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break;
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case Subservice::TOGGLE_WIRETAPPING: {
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return prepareWiretappingCommand(dynamic_cast<CommandMessage*>(message),
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tcData, tcDataLen);
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}
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break;
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default:
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return HasReturnvaluesIF::RETURN_FAILED;
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}
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}
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ReturnValue_t Service2DeviceAccess::prepareRawCommand(
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CommandMessage* messageToSet, const uint8_t *tcData,size_t tcDataLen) {
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RawCommand RawCommand(tcData,tcDataLen);
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// store command into the Inter Process Communication Store
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store_address_t storeAddress;
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ReturnValue_t result = IPCStore->addData(&storeAddress,
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RawCommand.getCommand(), RawCommand.getCommandSize());
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DeviceHandlerMessage::setDeviceHandlerRawCommandMessage(messageToSet,
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storeAddress);
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return result;
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}
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ReturnValue_t Service2DeviceAccess::prepareWiretappingCommand(
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CommandMessage *messageToSet, const uint8_t *tcData,
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size_t tcDataLen) {
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if(tcDataLen != WiretappingToggle::WIRETAPPING_COMMAND_SIZE) {
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return CommandingServiceBase::INVALID_TC;
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}
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WiretappingToggle command;
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ReturnValue_t result = command.deSerialize(&tcData, &tcDataLen,
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SerializeIF::Endianness::BIG);
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DeviceHandlerMessage::setDeviceHandlerWiretappingMessage(messageToSet,
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command.getWiretappingMode());
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return result;
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}
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ReturnValue_t Service2DeviceAccess::handleReply(const CommandMessage* reply,
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Command_t previousCommand, uint32_t* state,
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CommandMessage* optionalNextCommand, object_id_t objectId,
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bool* isStep) {
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switch(reply->getCommand()) {
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case CommandMessage::REPLY_COMMAND_OK:
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return HasReturnvaluesIF::RETURN_OK;
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case CommandMessage::REPLY_REJECTED:
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return reply->getReplyRejectedReason();
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default:
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return CommandingServiceBase::INVALID_REPLY;
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}
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}
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// All device handlers set service 2 as default raw receiver for wiretapping
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// so we have to handle those unrequested messages.
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void Service2DeviceAccess::handleUnrequestedReply(CommandMessage* reply) {
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switch(reply->getCommand()) {
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case DeviceHandlerMessage::REPLY_RAW_COMMAND:
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sendWiretappingTm(reply,
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static_cast<uint8_t>(Subservice::WIRETAPPING_RAW_TC));
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break;
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case DeviceHandlerMessage::REPLY_RAW_REPLY:
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sendWiretappingTm(reply,
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static_cast<uint8_t>(Subservice::RAW_REPLY));
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break;
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default:
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sif::error << "Unknown message in Service2DeviceAccess::"
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"handleUnrequestedReply with command ID " <<
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reply->getCommand() << std::endl;
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break;
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}
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//Must be reached by all cases to clear message
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reply->clear();
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}
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void Service2DeviceAccess::sendWiretappingTm(CommandMessage *reply,
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uint8_t subservice) {
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// Raw Wiretapping
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// Get Address of Data from Message
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store_address_t storeAddress = DeviceHandlerMessage::getStoreAddress(reply);
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const uint8_t* data = nullptr;
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size_t size = 0;
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ReturnValue_t result = IPCStore->getData(storeAddress,&data,&size);
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if(result != HasReturnvaluesIF::RETURN_OK){
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sif::error << "Service2DeviceAccess::sendWiretappingTm: Data Lost in "
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"handleUnrequestedReply with failure ID "<< result
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<< std::endl;
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return;
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}
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// Init our dummy packet and correct endianness of object ID before
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// sending it back.
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WiretappingPacket TmPacket(DeviceHandlerMessage::getDeviceObjectId(reply),
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data);
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TmPacket.objectId = EndianConverter::convertBigEndian(TmPacket.objectId);
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sendTmPacket(subservice,TmPacket.data,size,reinterpret_cast<uint8_t*>(
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&TmPacket.objectId),sizeof(TmPacket.objectId));
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}
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MessageQueueId_t Service2DeviceAccess::getDeviceQueue() {
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return commandQueue->getId();
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}
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96
pus/Service2DeviceAccess.h
Normal file
96
pus/Service2DeviceAccess.h
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@ -0,0 +1,96 @@
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#ifndef FRAMEWORK_PUS_SERVICE2DEVICEACCESS_H_
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#define FRAMEWORK_PUS_SERVICE2DEVICEACCESS_H_
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#include <framework/objectmanager/SystemObjectIF.h>
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#include <framework/devicehandlers/AcceptsDeviceResponsesIF.h>
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#include <framework/tmtcservices/CommandingServiceBase.h>
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/**
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* @brief Raw Commanding and Wiretapping of devices.
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* @details
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* Full Documentation: ECSS-E-ST-70-41C or ECSS-E-70-41A
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* Dissertation Baetz p. 115, 116, 165-167.
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*
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* This service provides the capability to communicate with devices in their
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* native protocols with raw commands through the DeviceHandlerIF.
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*
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* This is a gateway service. It relays device commands using the software bus.
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* This service is very closely tied to the Commanding Service Base
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* template class. There is constant interaction between this Service Base und
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* a Subclass like this service
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* There are 4 adaption points for component implementation through the
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* Commanding Service Base.
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*
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* This service employs custom subservices exclusively. This includes a
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* wiretapping subservice to monitor all traffic between target devices and
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* this service.
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*
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* - TC[2,128]: Raw Commanding
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* - TC[2,129]: Toggle Wiretapping
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* - TM[2,130]: Wiretapping Packet TM
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* - TM[2,131]: Wiretapping Packet TC
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* @ingroup pus_services
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*/
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class Service2DeviceAccess : public CommandingServiceBase,
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public AcceptsDeviceResponsesIF
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{
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public:
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Service2DeviceAccess(object_id_t objectId, uint16_t apid,
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uint8_t serviceId, object_id_t tcSource,
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object_id_t tmDestination);
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virtual ~Service2DeviceAccess();
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static constexpr uint8_t NUM_OF_PARALLEL_COMMANDS = 4;
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static constexpr uint16_t COMMAND_TIMEOUT_SECONDS = 60;
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protected:
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//! CommandingServiceBase (CSB) abstract functions. See CSB documentation.
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ReturnValue_t isValidSubservice(uint8_t subservice) override;
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ReturnValue_t getMessageQueueAndObject(uint8_t subservice,
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const uint8_t *tcData, size_t tcDataLen, MessageQueueId_t *id,
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object_id_t *objectId) override;
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ReturnValue_t prepareCommand(CommandMessage* message, uint8_t subservice,
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const uint8_t *tcData, size_t tcDataLen, uint32_t *state,
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object_id_t objectId) override;
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ReturnValue_t handleReply(const CommandMessage* reply,
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Command_t previousCommand, uint32_t *state,
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CommandMessage* optionalNextCommand, object_id_t objectId,
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bool *isStep) override;
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/**
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* @brief Generates TM packets containing either the TC wiretapping
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* packets or the TM wiretapping packets.
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* Note that for service 2, all telemetry will be treated as an
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* unrequested reply regardless of wiretapping mode.
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* @param reply
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*/
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void handleUnrequestedReply(CommandMessage* reply) override;
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MessageQueueId_t getDeviceQueue() override;
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private:
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/**
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* Generates TM packets for Wiretapping Service
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* @param reply
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* @param subservice
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*/
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void sendWiretappingTm(CommandMessage* reply,uint8_t subservice);
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ReturnValue_t checkAndAcquireTargetID(object_id_t* objectIdToSet,
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const uint8_t* tcData, size_t tcDataLen);
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ReturnValue_t checkInterfaceAndAcquireMessageQueue(
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MessageQueueId_t* messageQueueToSet, object_id_t* objectId);
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ReturnValue_t prepareRawCommand(CommandMessage* messageToSet,
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const uint8_t* tcData, size_t tcDataLen);
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ReturnValue_t prepareWiretappingCommand(CommandMessage* messageToSet,
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const uint8_t* tcData, size_t tcDataLen);
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enum class Subservice {
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RAW_COMMANDING = 128, //!< [EXPORT] : [COMMAND] Command in device native protocol
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TOGGLE_WIRETAPPING = 129, //!< [EXPORT] : [COMMAND] Toggle wiretapping of raw communication
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RAW_REPLY = 130, //!< [EXPORT] : [REPLY] Includes wiretapping TM and normal TM raw replies from device
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WIRETAPPING_RAW_TC = 131 //!< [EXPORT] : [REPLY] Wiretapping packets of commands built by device handler
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};
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};
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#endif /* MISSION_PUS_DEVICE2DEVICECOMMANDING_H_ */
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76
pus/servicepackets/Service2Packets.h
Normal file
76
pus/servicepackets/Service2Packets.h
Normal file
@ -0,0 +1,76 @@
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#ifndef FRAMEWORK_PUS_SERVICEPACKETS_SERVICE2PACKETS_H_
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#define FRAMEWORK_PUS_SERVICEPACKETS_SERVICE2PACKETS_H_
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#include <framework/action/ActionMessage.h>
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#include <framework/objectmanager/SystemObjectIF.h>
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#include <framework/serialize/SerialLinkedListAdapter.h>
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#include <framework/serviceinterface/ServiceInterfaceStream.h>
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/**
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* @brief Subservice 128
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* @ingroup spacepackets
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*/
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class RawCommand { //!< [EXPORT] : [SUBSERVICE] 128
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public:
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RawCommand(const uint8_t* buffer, size_t size) {
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// Deserialize Adapter to get correct endianness
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SerializeAdapter::deSerialize(&objectId, &buffer, &size,
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SerializeIF::Endianness::BIG);
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commandBuffer = buffer;
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// size is decremented by AutoSerializeAdapter,
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// remaining size is data size
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dataSize = size;
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}
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object_id_t getObjectId() const {
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return objectId;
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}
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const uint8_t* getCommand() {
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return commandBuffer;
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}
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size_t getCommandSize() const {
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return dataSize;
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}
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private:
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object_id_t objectId = 0;
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const uint8_t* commandBuffer = nullptr; //!< [EXPORT] : [MAXSIZE] 256 Bytes
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size_t dataSize = 0; //!< [EXPORT] : [IGNORE]
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};
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/**
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* @brief Subservice 129: Command packet to set wiretapping mode
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* @ingroup spacepackets
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*/
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class WiretappingToggle: public SerialLinkedListAdapter<SerializeIF>{ //!< [EXPORT] : [SUBSERVICE] 129
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public:
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static const size_t WIRETAPPING_COMMAND_SIZE = 5;
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WiretappingToggle(){
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setStart(&objectId);
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objectId.setNext(&wiretappingMode);
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}
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uint8_t getWiretappingMode() const {
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return wiretappingMode.entry;
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}
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private:
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SerializeElement<object_id_t> objectId;
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SerializeElement<uint8_t> wiretappingMode; //!< [EXPORT] : [INPUT] Mode 0: OFF, Mode 1: RAW
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};
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/**
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* @brief Subservices 130 and 131: TM packets
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* @ingroup spacepackets
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*/
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class WiretappingPacket { //!< [EXPORT] : [SUBSERVICE] 130, 131
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public:
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object_id_t objectId; //!< [EXPORT] : [COMMENT] Object ID of source object
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const uint8_t* data; //!< [EXPORT] : [MAXSIZE] Raw Command Max. Size
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WiretappingPacket(object_id_t objectId, const uint8_t* buffer):
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objectId(objectId), data(buffer) {
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}
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};
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#endif /* FRAMEWORK_PUS_SERVICEPACKETS_SERVICE2PACKETS_H_ */
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@ -1,17 +1,3 @@
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/**
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* \file Service5Packets.h
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*
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* Structure of Event Report.
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* It consists of:
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* 1. Report ID(RID). This is the Event ID in the FSFW
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* 2. Object ID of the reporter (e.g. subsystem)
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* 2. Parameter 1
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* 3. Parameter 2
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*
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* Created on: 21.05.2019
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* Author: R. Mueller, J. Meier
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*/
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#ifndef MISSION_PUS_SERVICEPACKETS_SERVICE5PACKETS_H_
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#define MISSION_PUS_SERVICEPACKETS_SERVICE5PACKETS_H_
|
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@ -20,8 +6,15 @@
|
||||
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||||
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/**
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||||
* \brief Subservice 1, 2, 3, 4
|
||||
* \ingroup spacepackets
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||||
* @brief Subservice 1, 2, 3, 4
|
||||
* Structure of Event Report.
|
||||
* It consists of:
|
||||
* 1. Report ID(RID). This is the Event ID in the FSFW
|
||||
* 2. Object ID of the reporter (e.g. subsystem)
|
||||
* 2. Parameter 1
|
||||
* 3. Parameter 2
|
||||
*
|
||||
* @ingroup spacepackets
|
||||
*/
|
||||
class EventReport: public SerializeIF { //!< [EXPORT] : [SUBSERVICE] 1, 2, 3, 4
|
||||
public:
|
||||
|
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Block a user