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			192 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			192 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| ///////////////////////////////////////////////////////////////////////////////////
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| // Copyright (C) 2020 Edouard Griffiths, F4EXB                                   //
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| //                                                                               //
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| // This program is free software; you can redistribute it and/or modify          //
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| // it under the terms of the GNU General Public License as published by          //
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| // the Free Software Foundation as version 3 of the License, or                  //
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| // (at your option) any later version.                                           //
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| //                                                                               //
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| // This program is distributed in the hope that it will be useful,               //
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| // but WITHOUT ANY WARRANTY; without even the implied warranty of                //
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| // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the                  //
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| // GNU General Public License V3 for more details.                               //
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| //                                                                               //
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| // You should have received a copy of the GNU General Public License             //
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| // along with this program. If not, see <http://www.gnu.org/licenses/>.          //
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| ///////////////////////////////////////////////////////////////////////////////////
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| 
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| #ifndef INCLUDE_DEMODALYZERWORKER_H
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| #define INCLUDE_DEMODALYZERWORKER_H
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| 
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| #include <vector>
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| 
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| #include <QObject>
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| #include <QRecursiveMutex>
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| #include <QByteArray>
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| 
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| #include "dsp/dsptypes.h"
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| #include "dsp/decimators.h"
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| #include "dsp/datafifo.h"
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| #include "util/movingaverage.h"
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| #include "util/message.h"
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| #include "util/messagequeue.h"
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| 
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| #include "demodanalyzersettings.h"
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| 
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| class BasebandSampleSink;
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| class ScopeVis;
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| class ChannelAPI;
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| class Feature;
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| class DemodAnalyzerWorker : public QObject {
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|     Q_OBJECT
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| public:
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|     class MsgConfigureDemodAnalyzerWorker : public Message {
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|         MESSAGE_CLASS_DECLARATION
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| 
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|     public:
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|         const DemodAnalyzerSettings& getSettings() const { return m_settings; }
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|         bool getForce() const { return m_force; }
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| 
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|         static MsgConfigureDemodAnalyzerWorker* create(const DemodAnalyzerSettings& settings, bool force)
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|         {
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|             return new MsgConfigureDemodAnalyzerWorker(settings, force);
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|         }
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| 
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|     private:
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|         DemodAnalyzerSettings m_settings;
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|         bool m_force;
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| 
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|         MsgConfigureDemodAnalyzerWorker(const DemodAnalyzerSettings& settings, bool force) :
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|             Message(),
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|             m_settings(settings),
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|             m_force(force)
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|         { }
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|     };
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| 
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|     class MsgConnectFifo : public Message {
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|         MESSAGE_CLASS_DECLARATION
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| 
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|     public:
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|         DataFifo *getFifo() { return m_fifo; }
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|         bool getConnect() const { return m_connect; }
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| 
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|         static MsgConnectFifo* create(DataFifo *fifo, bool connect) {
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|             return new MsgConnectFifo(fifo, connect);
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|         }
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|     private:
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|         DataFifo *m_fifo;
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|         bool m_connect;
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|         MsgConnectFifo(DataFifo *fifo, bool connect) :
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|             Message(),
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|             m_fifo(fifo),
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|             m_connect(connect)
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|         { }
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|     };
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| 
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|     DemodAnalyzerWorker();
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| 	~DemodAnalyzerWorker();
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|     void reset();
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|     void startWork();
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|     void stopWork();
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|     MessageQueue *getInputMessageQueue() { return &m_inputMessageQueue; }
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|     void setMessageQueueToFeature(MessageQueue *messageQueue) { m_msgQueueToFeature = messageQueue; }
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| 
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|     void feedPart(
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|         const QByteArray::const_iterator& begin,
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|         const QByteArray::const_iterator& end,
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|         DataFifo::DataType dataType
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|     );
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| 
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|     void applySampleRate(int sampleRate);
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| 	void applySettings(const DemodAnalyzerSettings& settings, bool force = false);
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| 
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| 	double getMagSq() const { return m_magsq; }
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| 	double getMagSqAvg() const { return (double) m_channelPowerAvg; }
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|     void setScopeVis(ScopeVis* scopeVis) { m_scopeVis = scopeVis; }
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| 
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|     static const unsigned int m_corrFFTLen;
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|     static const unsigned int m_ssbFftLen;
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| 
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| private:
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|     DataFifo *m_dataFifo;
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|     int m_channelSampleRate;
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|     int m_sinkSampleRate;
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| 	MessageQueue m_inputMessageQueue;  //!< Queue for asynchronous inbound communication
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|     MessageQueue *m_msgQueueToFeature; //!< Queue to report channel change to main feature object
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|     DemodAnalyzerSettings m_settings;
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| 	double m_magsq;
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| 	SampleVector m_sampleBuffer;
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|     std::vector<qint16> m_convBuffer;
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|     Decimators<qint32, qint16, SDR_RX_SAMP_SZ, 16, true> m_decimators;
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|     int m_sampleBufferSize;
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| 	MovingAverageUtil<double, double, 480> m_channelPowerAvg;
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|     ScopeVis* m_scopeVis;
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|     QRecursiveMutex m_mutex;
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| 
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|     bool handleMessage(const Message& cmd);
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|     void decimate(int countSamples);
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| 
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|     inline void processSample(
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|         DataFifo::DataType dataType,
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|         const QByteArray::const_iterator& begin,
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|         int countSamples,
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|         int i
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|     )
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|     {
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|         switch(dataType)
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|         {
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|             case DataFifo::DataTypeI16: {
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|                 int16_t *s = (int16_t*) begin;
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|                 double re = s[i] / (double) std::numeric_limits<int16_t>::max();
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|                 m_magsq = re*re;
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|                 m_channelPowerAvg(m_magsq);
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| 
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|                 if (m_settings.m_log2Decim == 0)
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|                 {
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|                     m_sampleBuffer[i].setReal(re * SDR_RX_SCALEF);
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|                     m_sampleBuffer[i].setImag(0);
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|                 }
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|                 else
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|                 {
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|                     m_convBuffer[2*i] = s[i];
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|                     m_convBuffer[2*i+1] = 0;
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| 
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|                     if (i == countSamples - 1) {
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|                         decimate(countSamples);
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|                     }
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|                 }
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|             }
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|             break;
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|             case DataFifo::DataTypeCI16: {
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|                 int16_t *s = (int16_t*) begin;
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|                 double re = s[2*i]   / (double) std::numeric_limits<int16_t>::max();
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|                 double im = s[2*i+1] / (double) std::numeric_limits<int16_t>::max();
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|                 m_magsq = re*re + im*im;
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|                 m_channelPowerAvg(m_magsq);
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| 
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|                 if (m_settings.m_log2Decim == 0)
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|                 {
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|                     m_sampleBuffer[i].setReal(re * SDR_RX_SCALEF);
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|                     m_sampleBuffer[i].setImag(im * SDR_RX_SCALEF);
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|                 }
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|                 else
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|                 {
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|                     m_convBuffer[2*i]   = s[2*i];
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|                     m_convBuffer[2*i+1] = s[2*i+1];
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| 
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|                     if (i == countSamples - 1) {
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|                         decimate(countSamples);
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|                     }
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|                 }
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|             }
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|             break;
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|         }
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|     }
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| 
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| private slots:
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|     void handleInputMessages();
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|     void handleData(); //!< Handle data when samples have to be processed
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| };
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| 
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| #endif // INCLUDE_DEMODALYZERWORKER_H
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