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			233 lines
		
	
	
		
			6.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			233 lines
		
	
	
		
			6.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| #include "soundin.h"
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| #include <math.h>
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| 
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| #ifdef Q_OS_WIN32
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| #include <windows.h>
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| #else
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| #include <sys/socket.h>
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| #endif
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| 
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| #define NFFT 32768
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| #define FRAMES_PER_BUFFER 1024
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| 
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| extern "C"
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| {
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|   struct
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|   {
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|     double d8[60*96000];              //This is "common/datcom/..." in fortran
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|     float ss[400*NFFT];
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|     float savg[NFFT];                 //Avg spectra at 0,45,90,135 deg pol
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|     double fcenter;                   //Center freq from Linrad (MHz)
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|     int nutc;                         //UTC as integer, HHMM
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|     float fselected;                  //Selected frequency for nagain decodes
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|     int mousedf;                      //User-selected DF
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|     int mousefqso;                    //User-selected QSO freq (kHz)
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|     int nagain;                       //1 ==> decode only at fQSO +/- Tol
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|     int ndepth;                       //How much hinted decoding to do?
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|     int ndiskdat;                     //1 ==> data read from *.iq file
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|     int ntx60;                        //Number of seconds transmitted in Q65-60x
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|     int newdat;                       //1 ==> new data, must do long FFT
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|     int nfa;                          //Low decode limit (kHz)
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|     int nfb;                          //High decode limit (kHz)
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|     int nfcal;                        //Frequency correction, for calibration (Hz)
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|     int nfshift;                      //Shift of displayed center freq (kHz)
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|     int ntx30a;                       //Number of seconds transmitted in first half minute , Q65-30x
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|     int ntx30b;                       //Number of seconds transmitted in second half minute, Q65-30x
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|     int ntol;                         //+/- decoding range around fQSO (Hz)
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|     int junk5;                        //
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|     int junk4;                        //
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|     int nfsample;                     //Input sample rate
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|     int junk3;                        //
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|     int nBaseSubmode;                 //Base submode for Q65-60x (aka m_modeQ65)
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|     int ndop00;                       //EME Self Doppler
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|     int nsave;                        //Number of s3(64,63) spectra saved
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|     int max_drift;                    //Maximum Q65 drift: units symbol_rate/TxT
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|     int offset;                       //Offset in Hz
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|     int nhsym;                        //Number of available JT65 half-symbols
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|     char mycall[12];
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|     char mygrid[6];
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|     char hiscall[12];
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|     char hisgrid[6];
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|     char datetime[20];
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|     int junk1;                        //Used to test extent of copy to shared memory
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|     int junk2;
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|     bool bAlso30;                     //Process for 30-second submode as well as 60-second
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|   } datcom_;
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| }
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| 
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| namespace
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| {
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|   struct COMWrapper
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|   {
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|     explicit COMWrapper ()
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|     {
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| #ifdef Q_OS_WIN32
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|       // required because Qt only does this for GUI thread
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|       CoInitializeEx (nullptr, COINIT_APARTMENTTHREADED | COINIT_DISABLE_OLE1DDE);
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| #endif
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|     }
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|     ~COMWrapper ()
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|     {
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| #ifdef Q_OS_WIN32
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|       CoUninitialize ();
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| #endif
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|     }
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|   };
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| }
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| 
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| void SoundInThread::run()                           //SoundInThread::run()
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| {
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|   quitExecution = false;
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| 
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|   if (m_net) {
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|     inputUDP();
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|     return;
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|   }
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| }
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| 
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| void SoundInThread::setScale(qint32 n)
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| {
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|   m_dB=n;
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| }
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| void SoundInThread::setPort(int n)                              //setPort()
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| {
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|   if (isRunning()) return;
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|   this->m_udpPort=n;
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| }
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| 
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| void SoundInThread::setRate(double rate)                         //setRate()
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| {
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|   if (isRunning()) return;
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|   this->m_rate = rate;
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| }
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| 
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| void SoundInThread::setBufSize(unsigned n)                      //setBufSize()
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| {
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|   if (isRunning()) return;
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|   this->bufSize = n;
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| }
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| 
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| void SoundInThread::setFadd(double x)
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| {
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|   m_fAdd=x;
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| }
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| 
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| 
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| void SoundInThread::quit()                                       //quit()
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| {
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|   quitExecution = true;
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| }
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| 
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| void SoundInThread::setNetwork(bool b)                          //setNetwork()
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| {
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|   m_net = b;
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| }
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| 
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| void SoundInThread::setMonitoring(bool b)                    //setMonitoring()
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| {
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|   m_monitoring = b;
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| }
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| 
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| void SoundInThread::setNrx(int n)                              //setNrx()
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| {
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|   m_nrx = n;
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| }
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| 
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| int SoundInThread::nrx()
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| {
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|   return m_nrx;
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| }
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| 
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| int SoundInThread::mhsym()
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| {
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|   return m_hsym;
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| }
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| 
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| void SoundInThread::setPeriod(int n)
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| {
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|   m_TRperiod=n;
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| }
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| 
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| //--------------------------------------------------------------- inputUDP()
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| void SoundInThread::inputUDP()
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| {
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|   udpSocket = new QUdpSocket();
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|   if(!udpSocket->bind(m_udpPort,QUdpSocket::ShareAddress) )
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|   {
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|     emit error(tr("UDP Socket bind failed."));
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|     return;
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|   }
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| 
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|   // Set this socket's total buffer space for received UDP packets
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|   udpSocket->setSocketOption (QUdpSocket::ReceiveBufferSizeSocketOption, 141600);
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| 
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|   bool qe = quitExecution;
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|   struct linradBuffer {
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|     double cfreq;
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|     int msec;
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|     float userfreq;
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|     int iptr;
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|     quint16 iblk;
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|     qint8 nrx;
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|     char iusb;
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|     double d8[174];
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|   } b;
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| 
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|   int ntr0=99;
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|   int k=0;
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|   int nsec;
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|   int ntr;
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|   int nhsym0=0;
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|   int iz=174;
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| 
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|   // Main loop for input of UDP packets over the network:
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|   while (!qe) {
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|     qe = quitExecution;
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|     if (qe) break;
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|     if (!udpSocket->hasPendingDatagrams()) {
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| //      msleep(2);                  // Sleep if no packet available
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|       QObject().thread()->usleep(2000);
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|     } else {
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|       int nBytesRead = udpSocket->readDatagram((char *)&b,1416);
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|       if (nBytesRead != 1416) qDebug() << "UDP Read Error:" << nBytesRead;
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| 
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|       qint64 ms = QDateTime::currentMSecsSinceEpoch() % 86400000;
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|       nsec = ms/1000;             // Time according to this computer
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|       ntr = nsec % m_TRperiod;
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| 
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| // Reset buffer pointer and symbol number at start of minute
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|       if(ntr < ntr0 or !m_monitoring or m_TRperiod!=m_TRperiod0) {
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|         k=0;
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|         nhsym0=0;
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|         m_TRperiod0=m_TRperiod;
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|       }
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| 
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|       ntr0=ntr;
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| 
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|       if(m_monitoring) {
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|         m_nrx=b.nrx;
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|         if(m_nrx == +1) iz=348;                 //One RF channel, i*2 data
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|         if(m_nrx == -1 or m_nrx == +2) iz=174;  //One Rf channel, r*4 data
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|                                                 // or 2 RF channels, i*2 data
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|         if(m_nrx == -2) iz=87;                  // Two RF channels, r*4 data
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| 
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|         // If buffer will not overflow, move data into datcom_
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|         if ((k+iz) <= 60*96000) {
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|           int nsam=-1;
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|           recvpkt_(&nsam, &b.iblk, &b.nrx, &k, b.d8, b.d8, &m_dB);
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|           datcom_.fcenter=b.cfreq + m_fAdd;
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|         }
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|         m_hsym=(k-2048)/14400;           //14400 = 0.15 * 96000
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|         if(m_hsym != nhsym0) {
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|           if(!m_dataSinkBusy) {
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|             m_dataSinkBusy=true;
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|             emit readyForFFT(k);         //Signal to compute new FFTs
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|           }
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|           nhsym0=m_hsym;
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|         }
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|       }
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|     }
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|   }
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|   delete udpSocket;
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| }
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