split up huge function to be more readable
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bb9a299e33
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3268806f75
@ -56,7 +56,7 @@ ReturnValue_t CommandingServiceBase::initialize() {
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objectManager->get<AcceptsTelemetryIF>(packetDestination);
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PUSDistributorIF* distributor = objectManager->get<PUSDistributorIF>(
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packetSource);
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if ((packetForwarding == NULL) && (distributor == NULL)) {
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if (packetForwarding == nullptr or distributor == nullptr) {
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return RETURN_FAILED;
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}
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@ -67,7 +67,7 @@ ReturnValue_t CommandingServiceBase::initialize() {
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IPCStore = objectManager->get<StorageManagerIF>(objects::IPC_STORE);
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TCStore = objectManager->get<StorageManagerIF>(objects::TC_STORE);
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if ((IPCStore == NULL) || (TCStore == NULL)) {
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if (IPCStore == nullptr or TCStore == nullptr) {
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return RETURN_FAILED;
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}
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@ -76,97 +76,116 @@ ReturnValue_t CommandingServiceBase::initialize() {
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}
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void CommandingServiceBase::handleCommandQueue() {
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CommandMessage reply, nextCommand;
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ReturnValue_t result, sendResult = RETURN_OK;
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bool isStep = false;
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CommandMessage reply;
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ReturnValue_t result = RETURN_FAILED;
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for (result = commandQueue->receiveMessage(&reply); result == RETURN_OK;
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result = commandQueue->receiveMessage(&reply)) {
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isStep = false;
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typename FixedMap<MessageQueueId_t,
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CommandingServiceBase::CommandInfo>::Iterator iter;
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if (reply.getSender() == MessageQueueIF::NO_QUEUE) {
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handleUnrequestedReply(&reply);
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continue;
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}
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if ((iter = commandMap.find(reply.getSender())) == commandMap.end()) {
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handleUnrequestedReply(&reply);
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continue;
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}
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nextCommand.setCommand(CommandMessage::CMD_NONE);
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result = handleReply(&reply, iter->command, &iter->state, &nextCommand,
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iter->objectId, &isStep);
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switch (result) {
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case EXECUTION_COMPLETE:
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case RETURN_OK:
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case NO_STEP_MESSAGE:
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iter->command = nextCommand.getCommand();
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if (nextCommand.getCommand() != CommandMessage::CMD_NONE) {
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sendResult = commandQueue->sendMessage(reply.getSender(),
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&nextCommand);
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}
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if (sendResult == RETURN_OK) {
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if (isStep) {
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if (result != NO_STEP_MESSAGE) {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::PROGRESS_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, ++iter->step);
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}
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} else {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::COMPLETION_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, 0);
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checkAndExecuteFifo(&iter);
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}
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} else {
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if (isStep) {
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nextCommand.clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult,
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++iter->step, failureParameter1, failureParameter2);
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} else {
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nextCommand.clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult, 0,
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failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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failureParameter2 = 0;
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checkAndExecuteFifo(&iter);
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}
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break;
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case INVALID_REPLY:
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//might be just an unrequested reply at a bad moment
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handleUnrequestedReply(&reply);
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break;
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default:
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if (isStep) {
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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result, ++iter->step, failureParameter1,
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failureParameter2);
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} else {
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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result, 0, failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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failureParameter2 = 0;
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checkAndExecuteFifo(&iter);
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break;
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}
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handleCommandMessage(reply);
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}
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}
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void CommandingServiceBase::handleCommandMessage(CommandMessage& reply) {
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bool isStep = false;
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CommandMessage nextCommand;
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CommandMapIter iter;
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if (reply.getSender() == MessageQueueIF::NO_QUEUE) {
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handleUnrequestedReply(&reply);
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return;
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}
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if ((iter = commandMap.find(reply.getSender())) == commandMap.end()) {
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handleUnrequestedReply(&reply);
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return;
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}
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nextCommand.setCommand(CommandMessage::CMD_NONE);
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// Implemented by child class, specifies what to do with reply.
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ReturnValue_t result = handleReply(&reply, iter->command, &iter->state,
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&nextCommand, iter->objectId, &isStep);
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switch (result) {
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case EXECUTION_COMPLETE:
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case RETURN_OK:
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case NO_STEP_MESSAGE:
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// handle result of reply handler implemented by developer.
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handleReplyHandlerResult(result, iter, nextCommand, reply, isStep);
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break;
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case INVALID_REPLY:
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//might be just an unrequested reply at a bad moment
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handleUnrequestedReply(&reply);
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break;
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default:
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if (isStep) {
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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result, ++iter->step, failureParameter1,
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failureParameter2);
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} else {
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId, iter->tcInfo.tcSequenceControl,
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result, 0, failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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failureParameter2 = 0;
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checkAndExecuteFifo(&iter);
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break;
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}
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}
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void CommandingServiceBase::handleReplyHandlerResult(ReturnValue_t result,
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CommandMapIter iter, CommandMessage& nextCommand, CommandMessage& reply,
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bool& isStep) {
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iter->command = nextCommand.getCommand();
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// In case a new command is to be sent immediately, this is performed here.
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// If no new command is sent, only analyse reply result by initializing
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// sendResult as RETURN_OK
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ReturnValue_t sendResult = RETURN_OK;
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if (nextCommand.getCommand() != CommandMessage::CMD_NONE) {
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sendResult = commandQueue->sendMessage(reply.getSender(),
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&nextCommand);
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}
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if (sendResult == RETURN_OK) {
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if (isStep and result != NO_STEP_MESSAGE) {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::PROGRESS_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, ++iter->step);
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}
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else {
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verificationReporter.sendSuccessReport(
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TC_VERIFY::COMPLETION_SUCCESS,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, 0);
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checkAndExecuteFifo(&iter);
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}
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}
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else {
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if (isStep) {
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nextCommand.clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::PROGRESS_FAILURE, iter->tcInfo.ackFlags,
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iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult,
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++iter->step, failureParameter1, failureParameter2);
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} else {
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nextCommand.clearCommandMessage();
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verificationReporter.sendFailureReport(
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TC_VERIFY::COMPLETION_FAILURE,
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iter->tcInfo.ackFlags, iter->tcInfo.tcPacketId,
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iter->tcInfo.tcSequenceControl, sendResult, 0,
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failureParameter1, failureParameter2);
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}
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failureParameter1 = 0;
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failureParameter2 = 0;
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checkAndExecuteFifo(&iter);
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}
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}
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void CommandingServiceBase::handleRequestQueue() {
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TmTcMessage message;
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ReturnValue_t result;
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@ -267,6 +267,9 @@ protected:
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typename FixedMap<MessageQueueId_t, CommandInfo>::Iterator *iter);
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private:
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using CommandMapIter = FixedMap<MessageQueueId_t,
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CommandingServiceBase::CommandInfo>::Iterator;
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/**
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* This method handles internal execution of a command,
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* once it has been started by @sa{startExecution()} in the Request Queue handler.
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@ -298,6 +301,10 @@ private:
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void startExecution(TcPacketStored *storedPacket,
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typename FixedMap<MessageQueueId_t, CommandInfo>::Iterator *iter);
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void handleCommandMessage(CommandMessage& reply);
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void handleReplyHandlerResult(ReturnValue_t result, CommandMapIter iter,
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CommandMessage& nextCommand,CommandMessage& reply, bool& isStep);
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void checkTimeout();
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};
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