2013-10-11 10:06:24 +02:00
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// system includes
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#include <stdexcept>
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#include <cassert>
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// stl includes
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#include <iostream>
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#include <sstream>
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#include <iterator>
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// Qt includes
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2013-10-13 20:22:32 +02:00
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#include <QRgb>
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2013-10-11 10:06:24 +02:00
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#include <QResource>
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#include <QDateTime>
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// hyperion util includes
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#include "hyperion/ImageProcessorFactory.h"
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#include "hyperion/ImageProcessor.h"
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#include "utils/RgbColor.h"
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// project includes
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#include "ProtoClientConnection.h"
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ProtoClientConnection::ProtoClientConnection(QTcpSocket *socket, Hyperion * hyperion) :
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QObject(),
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_socket(socket),
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_imageProcessor(ImageProcessorFactory::getInstance().newImageProcessor()),
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_hyperion(hyperion),
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_receiveBuffer()
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{
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// connect internal signals and slots
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connect(_socket, SIGNAL(disconnected()), this, SLOT(socketClosed()));
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connect(_socket, SIGNAL(readyRead()), this, SLOT(readData()));
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}
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ProtoClientConnection::~ProtoClientConnection()
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{
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delete _socket;
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}
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void ProtoClientConnection::readData()
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{
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_receiveBuffer += _socket->readAll();
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// check if we can read a message size
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if (_receiveBuffer.size() <= 4)
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{
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return;
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}
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// read the message size
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uint32_t messageSize =
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((_receiveBuffer[0]<<24) & 0xFF000000) |
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((_receiveBuffer[1]<<16) & 0x00FF0000) |
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((_receiveBuffer[2]<< 8) & 0x0000FF00) |
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((_receiveBuffer[3] ) & 0x000000FF);
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// check if we can read a complete message
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if ((uint32_t) _receiveBuffer.size() < messageSize + 4)
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{
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return;
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}
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// read a message
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proto::HyperionRequest message;
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2013-10-13 17:58:41 +02:00
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if (!message.ParseFromArray(_receiveBuffer.data() + 4, messageSize))
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2013-10-11 10:06:24 +02:00
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{
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2013-10-13 17:58:41 +02:00
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sendErrorReply("Unable to parse message");
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2013-10-11 10:06:24 +02:00
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}
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// handle the message
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handleMessage(message);
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// remove message data from buffer
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_receiveBuffer = _receiveBuffer.mid(messageSize + 4);
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}
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void ProtoClientConnection::socketClosed()
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{
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emit connectionClosed(this);
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}
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void ProtoClientConnection::handleMessage(const proto::HyperionRequest & message)
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{
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switch (message.command())
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{
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case proto::HyperionRequest::COLOR:
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if (!message.HasExtension(proto::ColorRequest::colorRequest))
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{
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sendErrorReply("Received COLOR command without ColorRequest");
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break;
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}
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handleColorCommand(message.GetExtension(proto::ColorRequest::colorRequest));
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break;
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case proto::HyperionRequest::IMAGE:
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if (!message.HasExtension(proto::ImageRequest::imageRequest))
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{
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sendErrorReply("Received IMAGE command without ImageRequest");
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break;
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}
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handleImageCommand(message.GetExtension(proto::ImageRequest::imageRequest));
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break;
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case proto::HyperionRequest::CLEAR:
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if (!message.HasExtension(proto::ClearRequest::clearRequest))
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{
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sendErrorReply("Received CLEAR command without ClearRequest");
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break;
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}
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handleClearCommand(message.GetExtension(proto::ClearRequest::clearRequest));
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break;
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case proto::HyperionRequest::CLEARALL:
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handleClearallCommand();
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break;
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default:
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handleNotImplemented();
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}
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}
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void ProtoClientConnection::handleColorCommand(const proto::ColorRequest &message)
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{
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// extract parameters
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int priority = message.priority();
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int duration = message.has_duration() ? message.duration() : -1;
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2013-10-13 20:22:32 +02:00
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RgbColor color;
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color.red = qRed(message.rgbcolor());
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color.green = qGreen(message.rgbcolor());
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color.blue = qBlue(message.rgbcolor());
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2013-10-11 10:06:24 +02:00
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// set output
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_hyperion->setColor(priority, color, duration);
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// send reply
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sendSuccessReply();
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}
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void ProtoClientConnection::handleImageCommand(const proto::ImageRequest &message)
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{
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// extract parameters
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int priority = message.priority();
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int duration = message.has_duration() ? message.duration() : -1;
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int width = message.imagewidth();
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int height = message.imageheight();
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const std::string & imageData = message.imagedata();
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// check consistency of the size of the received data
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if ((int) imageData.size() != width*height*3)
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{
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sendErrorReply("Size of image data does not match with the width and height");
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return;
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}
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// set width and height of the image processor
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_imageProcessor->setSize(width, height);
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// create RgbImage
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RgbImage image(width, height);
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memcpy(image.memptr(), imageData.c_str(), imageData.size());
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// process the image
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std::vector<RgbColor> ledColors = _imageProcessor->process(image);
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_hyperion->setColors(priority, ledColors, duration);
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// send reply
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sendSuccessReply();
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}
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void ProtoClientConnection::handleClearCommand(const proto::ClearRequest &message)
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{
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// extract parameters
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int priority = message.priority();
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// clear priority
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_hyperion->clear(priority);
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// send reply
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sendSuccessReply();
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}
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void ProtoClientConnection::handleClearallCommand()
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{
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// clear priority
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_hyperion->clearall();
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// send reply
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sendSuccessReply();
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}
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void ProtoClientConnection::handleNotImplemented()
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{
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sendErrorReply("Command not implemented");
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}
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void ProtoClientConnection::sendMessage(const google::protobuf::Message &message)
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{
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std::string serializedReply = message.SerializeAsString();
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uint32_t size = serializedReply.size();
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uint8_t sizeData[] = {uint8_t(size >> 24), uint8_t(size >> 16), uint8_t(size >> 8), uint8_t(size)};
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_socket->write((const char *) sizeData, sizeof(sizeData));
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_socket->write(serializedReply.data(), serializedReply.length());
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_socket->flush();
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}
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void ProtoClientConnection::sendSuccessReply()
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{
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// create reply
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proto::HyperionReply reply;
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reply.set_success(true);
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// send reply
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sendMessage(reply);
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}
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void ProtoClientConnection::sendErrorReply(const std::string &error)
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{
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// create reply
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proto::HyperionReply reply;
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reply.set_success(false);
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reply.set_error(error);
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// send reply
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sendMessage(reply);
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}
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