EIVE upstream #29
@ -8,6 +8,7 @@
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#include "fsfw/ipc/MessageQueueMessage.h"
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#include "fsfw/ipc/QueueFactory.h"
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#include "fsfw/objectmanager/ObjectManager.h"
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#include "fsfw/serialize/SerialBufferAdapter.h"
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#include "fsfw/serviceinterface/ServiceInterface.h"
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#include "fsfw/storagemanager/StorageManagerIF.h"
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#include "fsfw/subsystem/SubsystemBase.h"
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@ -1269,40 +1270,33 @@ ReturnValue_t DeviceHandlerBase::letChildHandleMessage(CommandMessage* message)
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return returnvalue::FAILED;
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}
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void DeviceHandlerBase::handleDeviceTm(util::DataWrapper dataWrapper, DeviceCommandId_t replyId,
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bool forceDirectTm) {
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if (dataWrapper.isNull()) {
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return;
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}
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void DeviceHandlerBase::handleDeviceTm(const uint8_t* rawData, size_t rawDataLen,
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DeviceCommandId_t replyId, bool forceDirectTm) {
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SerialBufferAdapter bufferWrapper(rawData, rawDataLen);
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handleDeviceTm(bufferWrapper, replyId, forceDirectTm);
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}
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void DeviceHandlerBase::handleDeviceTm(SerializeIF& dataSet, DeviceCommandId_t replyId,
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bool forceDirectTm) {
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auto iter = deviceReplyMap.find(replyId);
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if (iter == deviceReplyMap.end()) {
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triggerEvent(DEVICE_UNKNOWN_REPLY, replyId);
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return;
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}
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auto reportData = [&](MessageQueueId_t queueId) {
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if (dataWrapper.type == util::DataTypes::SERIALIZABLE) {
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return actionHelper.reportData(queueId, replyId, dataWrapper.dataUnion.serializable);
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} else if (dataWrapper.type == util::DataTypes::RAW) {
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return actionHelper.reportData(queueId, replyId, dataWrapper.dataUnion.raw.data,
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dataWrapper.dataUnion.raw.len);
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}
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return returnvalue::FAILED;
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};
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// Regular replies to a command
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if (iter->second.command != deviceCommandMap.end()) {
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MessageQueueId_t queueId = iter->second.command->second.sendReplyTo;
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// This may fail, but we'll ignore the fault.
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if (queueId != NO_COMMANDER) {
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reportData(queueId);
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// This may fail, but we'll ignore the fault.
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actionHelper.reportData(queueId, replyId, &dataSet);
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}
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// This check should make sure we get any TM but don't get anything doubled.
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if (wiretappingMode == TM && (requestedRawTraffic != queueId)) {
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DeviceTmReportingWrapper wrapper(getObjectId(), replyId, dataWrapper);
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DeviceTmReportingWrapper wrapper(getObjectId(), replyId, dataSet);
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actionHelper.reportData(requestedRawTraffic, replyId, &wrapper);
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}
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@ -1311,12 +1305,12 @@ void DeviceHandlerBase::handleDeviceTm(util::DataWrapper dataWrapper, DeviceComm
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// hiding of sender needed so the service will handle it as
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// unexpected Data, no matter what state (progress or completed)
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// it is in
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reportData(defaultRawReceiver);
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actionHelper.reportData(defaultRawReceiver, replyId, &dataSet, true);
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}
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}
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// Unrequested or aperiodic replies
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else {
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DeviceTmReportingWrapper wrapper(getObjectId(), replyId, dataWrapper);
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DeviceTmReportingWrapper wrapper(getObjectId(), replyId, dataSet);
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if (wiretappingMode == TM) {
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actionHelper.reportData(requestedRawTraffic, replyId, &wrapper);
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}
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@ -1070,8 +1070,9 @@ class DeviceHandlerBase : public DeviceHandlerIF,
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bool isAwaitingReply();
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void handleDeviceTm(util::DataWrapper dataWrapper, DeviceCommandId_t replyId,
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void handleDeviceTm(const uint8_t *rawData, size_t rawDataLen, DeviceCommandId_t replyId,
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bool forceDirectTm = false);
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void handleDeviceTm(SerializeIF &dataSet, DeviceCommandId_t replyId, bool forceDirectTm = false);
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virtual ReturnValue_t checkModeCommand(Mode_t mode, Submode_t submode,
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uint32_t *msToReachTheMode);
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@ -3,8 +3,8 @@
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#include "fsfw/serialize/SerializeAdapter.h"
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DeviceTmReportingWrapper::DeviceTmReportingWrapper(object_id_t objectId, ActionId_t actionId,
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util::DataWrapper data)
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: objectId(objectId), actionId(actionId), dataWrapper(data) {}
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const SerializeIF& data)
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: objectId(objectId), actionId(actionId), data(data) {}
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DeviceTmReportingWrapper::~DeviceTmReportingWrapper() = default;
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@ -19,24 +19,11 @@ ReturnValue_t DeviceTmReportingWrapper::serialize(uint8_t** buffer, size_t* size
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if (result != returnvalue::OK) {
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return result;
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}
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if (dataWrapper.isNull()) {
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return returnvalue::FAILED;
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}
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if (dataWrapper.type == util::DataTypes::SERIALIZABLE) {
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return dataWrapper.dataUnion.serializable->serialize(buffer, size, maxSize, streamEndianness);
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} else if (dataWrapper.type == util::DataTypes::RAW) {
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if (*size + dataWrapper.dataUnion.raw.len > maxSize) {
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return SerializeIF::BUFFER_TOO_SHORT;
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}
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std::memcpy(*buffer, dataWrapper.dataUnion.raw.data, dataWrapper.dataUnion.raw.len);
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*buffer += dataWrapper.dataUnion.raw.len;
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*size += dataWrapper.dataUnion.raw.len;
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}
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return returnvalue::OK;
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return data.serialize(buffer, size, maxSize, streamEndianness);
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}
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size_t DeviceTmReportingWrapper::getSerializedSize() const {
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return sizeof(objectId) + sizeof(ActionId_t) + dataWrapper.getLength();
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return sizeof(objectId) + sizeof(ActionId_t) + data.getSerializedSize();
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}
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ReturnValue_t DeviceTmReportingWrapper::deSerialize(const uint8_t** buffer, size_t* size,
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class DeviceTmReportingWrapper : public SerializeIF {
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public:
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DeviceTmReportingWrapper(object_id_t objectId, ActionId_t actionId, util::DataWrapper data);
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DeviceTmReportingWrapper(object_id_t objectId, ActionId_t actionId, const SerializeIF& data);
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~DeviceTmReportingWrapper() override;
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ReturnValue_t serialize(uint8_t** buffer, size_t* size, size_t maxSize,
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@ -19,7 +19,7 @@ class DeviceTmReportingWrapper : public SerializeIF {
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private:
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object_id_t objectId;
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ActionId_t actionId;
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util::DataWrapper dataWrapper;
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const SerializeIF& data;
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// Deserialization forbidden
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ReturnValue_t deSerialize(const uint8_t** buffer, size_t* size,
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