2018-12-28 17:55:49 +01:00
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// stl includes
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#include <stdexcept>
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// Qt includes
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#include <QRgb>
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2019-07-20 11:28:16 +02:00
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// flatbuffer includes
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2018-12-28 17:55:49 +01:00
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#include <flatbufserver/FlatBufferConnection.h>
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2018-12-30 22:07:53 +01:00
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FlatBufferConnection::FlatBufferConnection(const QString& origin, const QString & address, const int& priority, const bool& skipReply)
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2018-12-28 18:12:45 +01:00
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: _socket()
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2018-12-30 22:07:53 +01:00
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, _origin(origin)
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, _priority(priority)
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2018-12-28 18:12:45 +01:00
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, _prevSocketState(QAbstractSocket::UnconnectedState)
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, _log(Logger::getInstance("FLATBUFCONNECTION"))
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2018-12-30 22:07:53 +01:00
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, _registered(false)
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2018-12-28 18:12:45 +01:00
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{
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2018-12-28 17:55:49 +01:00
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QStringList parts = address.split(":");
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if (parts.size() != 2)
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{
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2018-12-28 18:12:45 +01:00
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throw std::runtime_error(QString("FLATBUFCONNECTION ERROR: Unable to parse address (%1)").arg(address).toStdString());
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2018-12-28 17:55:49 +01:00
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}
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_host = parts[0];
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bool ok;
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_port = parts[1].toUShort(&ok);
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if (!ok)
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{
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2018-12-28 18:12:45 +01:00
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throw std::runtime_error(QString("FLATBUFCONNECTION ERROR: Unable to parse the port (%1)").arg(parts[1]).toStdString());
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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if(!skipReply)
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connect(&_socket, &QTcpSocket::readyRead, this, &FlatBufferConnection::readData, Qt::UniqueConnection);
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2018-12-28 18:12:45 +01:00
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// init connect
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2018-12-28 17:55:49 +01:00
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Info(_log, "Connecting to Hyperion: %s:%d", _host.toStdString().c_str(), _port);
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connectToHost();
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// start the connection timer
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_timer.setInterval(5000);
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2018-12-28 18:12:45 +01:00
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connect(&_timer, &QTimer::timeout, this, &FlatBufferConnection::connectToHost);
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2018-12-28 17:55:49 +01:00
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_timer.start();
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}
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FlatBufferConnection::~FlatBufferConnection()
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{
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_timer.stop();
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_socket.close();
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}
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void FlatBufferConnection::readData()
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{
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2018-12-28 18:12:45 +01:00
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_receiveBuffer += _socket.readAll();
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2018-12-28 17:55:49 +01:00
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2018-12-28 18:12:45 +01:00
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// check if we can read a header
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while(_receiveBuffer.size() >= 4)
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{
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2018-12-28 17:55:49 +01:00
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uint32_t messageSize =
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2018-12-28 18:12:45 +01:00
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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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2018-12-28 17:55:49 +01:00
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2018-12-28 18:12:45 +01:00
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// check if we can read a complete message
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if((uint32_t) _receiveBuffer.size() < messageSize + 4) return;
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// extract message only and remove header + msg from buffer :: QByteArray::remove() does not return the removed data
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2020-03-01 15:37:06 +01:00
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const QByteArray msg = _receiveBuffer.mid(4, messageSize);
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2018-12-28 18:12:45 +01:00
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_receiveBuffer.remove(0, messageSize + 4);
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2018-12-28 17:55:49 +01:00
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2018-12-28 18:12:45 +01:00
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const uint8_t* msgData = reinterpret_cast<const uint8_t*>(msg.constData());
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flatbuffers::Verifier verifier(msgData, messageSize);
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2018-12-28 17:55:49 +01:00
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2018-12-30 22:07:53 +01:00
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if (hyperionnet::VerifyReplyBuffer(verifier))
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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parseReply(hyperionnet::GetReply(msgData));
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2018-12-28 18:12:45 +01:00
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continue;
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2018-12-28 17:55:49 +01:00
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}
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2018-12-28 18:12:45 +01:00
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Error(_log, "Unable to parse reply");
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2018-12-28 17:55:49 +01:00
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}
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}
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2018-12-28 18:12:45 +01:00
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void FlatBufferConnection::setSkipReply(const bool& skip)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-28 18:12:45 +01:00
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if(skip)
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disconnect(&_socket, &QTcpSocket::readyRead, 0, 0);
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else
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connect(&_socket, &QTcpSocket::readyRead, this, &FlatBufferConnection::readData, Qt::UniqueConnection);
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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void FlatBufferConnection::setRegister(const QString& origin, int priority)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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auto registerReq = hyperionnet::CreateRegister(_builder, _builder.CreateString(QSTRING_CSTR(origin)), priority);
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auto req = hyperionnet::CreateRequest(_builder, hyperionnet::Command_Register, registerReq.Union());
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2018-12-28 17:55:49 +01:00
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_builder.Finish(req);
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2019-02-05 19:55:48 +01:00
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uint32_t size = _builder.GetSize();
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const uint8_t header[] = {
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uint8_t((size >> 24) & 0xFF),
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uint8_t((size >> 16) & 0xFF),
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uint8_t((size >> 8) & 0xFF),
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uint8_t((size ) & 0xFF)};
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// write message
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int count = 0;
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count += _socket.write(reinterpret_cast<const char *>(header), 4);
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count += _socket.write(reinterpret_cast<const char *>(_builder.GetBufferPointer()), size);
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_socket.flush();
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_builder.Clear();
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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void FlatBufferConnection::setColor(const ColorRgb & color, int priority, int duration)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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auto colorReq = hyperionnet::CreateColor(_builder, (color.red << 16) | (color.green << 8) | color.blue, duration);
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auto req = hyperionnet::CreateRequest(_builder, hyperionnet::Command_Color, colorReq.Union());
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2018-12-28 17:55:49 +01:00
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_builder.Finish(req);
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2018-12-30 22:07:53 +01:00
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sendMessage(_builder.GetBufferPointer(), _builder.GetSize());
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2020-03-01 15:37:06 +01:00
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_builder.Clear();
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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void FlatBufferConnection::setImage(const Image<ColorRgb> &image)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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auto imgData = _builder.CreateVector(reinterpret_cast<const uint8_t*>(image.memptr()), image.size());
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auto rawImg = hyperionnet::CreateRawImage(_builder, imgData, image.width(), image.height());
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auto imageReq = hyperionnet::CreateImage(_builder, hyperionnet::ImageType_RawImage, rawImg.Union(), -1);
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auto req = hyperionnet::CreateRequest(_builder,hyperionnet::Command_Image,imageReq.Union());
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2018-12-28 17:55:49 +01:00
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_builder.Finish(req);
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sendMessage(_builder.GetBufferPointer(), _builder.GetSize());
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2020-03-01 15:37:06 +01:00
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_builder.Clear();
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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void FlatBufferConnection::clear(int priority)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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auto clearReq = hyperionnet::CreateClear(_builder, priority);
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auto req = hyperionnet::CreateRequest(_builder,hyperionnet::Command_Clear, clearReq.Union());
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2018-12-28 17:55:49 +01:00
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_builder.Finish(req);
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sendMessage(_builder.GetBufferPointer(), _builder.GetSize());
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2020-03-01 15:37:06 +01:00
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_builder.Clear();
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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void FlatBufferConnection::clearAll()
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{
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clear(-1);
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}
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2018-12-28 17:55:49 +01:00
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void FlatBufferConnection::connectToHost()
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{
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// try connection only when
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if (_socket.state() == QAbstractSocket::UnconnectedState)
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_socket.connectToHost(_host, _port);
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}
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void FlatBufferConnection::sendMessage(const uint8_t* buffer, uint32_t size)
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{
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// print out connection message only when state is changed
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if (_socket.state() != _prevSocketState )
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{
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2019-02-05 19:55:48 +01:00
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_registered = false;
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2018-12-30 22:07:53 +01:00
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switch (_socket.state() )
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{
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case QAbstractSocket::UnconnectedState:
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Info(_log, "No connection to Hyperion: %s:%d", _host.toStdString().c_str(), _port);
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break;
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case QAbstractSocket::ConnectedState:
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Info(_log, "Connected to Hyperion: %s:%d", _host.toStdString().c_str(), _port);
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break;
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default:
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Debug(_log, "Connecting to Hyperion: %s:%d", _host.toStdString().c_str(), _port);
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break;
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2018-12-28 17:55:49 +01:00
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}
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_prevSocketState = _socket.state();
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}
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if (_socket.state() != QAbstractSocket::ConnectedState)
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2018-12-30 22:07:53 +01:00
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return;
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if(!_registered)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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setRegister(_origin, _priority);
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2018-12-28 17:55:49 +01:00
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return;
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}
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const uint8_t header[] = {
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uint8_t((size >> 24) & 0xFF),
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uint8_t((size >> 16) & 0xFF),
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uint8_t((size >> 8) & 0xFF),
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uint8_t((size ) & 0xFF)};
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// write message
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int count = 0;
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count += _socket.write(reinterpret_cast<const char *>(header), 4);
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count += _socket.write(reinterpret_cast<const char *>(buffer), size);
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2018-12-30 22:07:53 +01:00
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_socket.flush();
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2018-12-28 17:55:49 +01:00
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}
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2018-12-30 22:07:53 +01:00
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bool FlatBufferConnection::parseReply(const hyperionnet::Reply *reply)
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2018-12-28 17:55:49 +01:00
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{
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2018-12-30 22:07:53 +01:00
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if (!reply->error())
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2018-12-28 17:55:49 +01:00
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{
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2019-02-05 19:55:48 +01:00
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// no error set must be a success or registered or video
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2018-12-30 22:07:53 +01:00
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const auto videoMode = reply->video();
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2019-02-05 19:55:48 +01:00
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const auto registered = reply->registered();
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2018-12-30 22:07:53 +01:00
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if (videoMode != -1) {
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// We got a video reply.
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emit setVideoMode(static_cast<VideoMode>(videoMode));
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return true;
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2019-02-05 19:55:48 +01:00
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}
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2018-12-28 17:55:49 +01:00
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2019-02-05 19:55:48 +01:00
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// We got a registered reply.
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2019-07-29 19:09:26 +02:00
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if (registered == -1 || registered != _priority)
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2019-02-05 19:55:48 +01:00
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_registered = false;
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else
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_registered = true;
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return true;
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}
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2019-08-02 21:12:13 +02:00
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else
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throw std::runtime_error(reply->error()->str());
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2018-12-30 22:07:53 +01:00
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return false;
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2018-12-28 17:55:49 +01:00
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}
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