kopia lustrzana https://gitlab.com/eliggett/wfview
496 wiersze
14 KiB
C++
496 wiersze
14 KiB
C++
#ifndef RIGCOMMANDER_H
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#define RIGCOMMANDER_H
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#include <QObject>
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#include <QMutexLocker>
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#include <QDebug>
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#include "commhandler.h"
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#include "pttyhandler.h"
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#include "udphandler.h"
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#include "rigidentities.h"
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#include "repeaterattributes.h"
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#include "freqmemory.h"
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#include "tcpserver.h"
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#include "rigstate.h"
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// This file figures out what to send to the comm and also
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// parses returns into useful things.
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// 0xE1 is new default, 0xE0 was before.
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// note: using a define because switch case doesn't even work with const unsigned char. Surprised me.
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#define compCivAddr 0xE1
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enum meterKind {
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meterNone=0,
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meterS,
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meterCenter,
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meterSWR,
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meterPower,
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meterALC,
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meterComp,
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meterVoltage,
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meterCurrent,
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meterRxdB,
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meterTxMod,
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meterRxAudio,
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meterAudio,
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meterLatency
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};
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enum spectrumMode {
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spectModeCenter=0x00,
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spectModeFixed=0x01,
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spectModeScrollC=0x02,
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spectModeScrollF=0x03,
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spectModeUnknown=0xff
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};
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struct freqt {
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quint64 Hz;
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double MHzDouble;
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};
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struct datekind {
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uint16_t year;
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unsigned char month;
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unsigned char day;
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};
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struct timekind {
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unsigned char hours;
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unsigned char minutes;
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bool isMinus;
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};
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class rigCommander : public QObject
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{
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Q_OBJECT
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public:
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explicit rigCommander(QObject* parent=nullptr);
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explicit rigCommander(quint8 guid[GUIDLEN], QObject* parent = nullptr);
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~rigCommander();
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bool usingLAN();
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quint8* getGUID();
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public slots:
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void process();
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void commSetup(unsigned char rigCivAddr, QString rigSerialPort, quint32 rigBaudRate, QString vsp, quint16 tcp, quint8 wf);
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void commSetup(unsigned char rigCivAddr, udpPreferences prefs, audioSetup rxSetup, audioSetup txSetup, QString vsp, quint16 tcp);
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void closeComm();
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void stateUpdated();
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void setRTSforPTT(bool enabled);
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// Power:
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void powerOn();
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void powerOff();
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// Spectrum:
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void enableSpectOutput();
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void disableSpectOutput();
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void enableSpectrumDisplay();
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void disableSpectrumDisplay();
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void setSpectrumBounds(double startFreq, double endFreq, unsigned char edgeNumber);
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void setSpectrumMode(spectrumMode spectMode);
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void getSpectrumCenterMode();
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void getSpectrumMode();
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void setSpectrumRefLevel(int level);
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void getSpectrumRefLevel();
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void getSpectrumRefLevel(unsigned char mainSub);
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void setScopeSpan(char span);
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void getScopeSpan(bool isSub);
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void getScopeSpan();
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void setScopeEdge(char edge);
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void getScopeEdge();
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void getScopeMode();
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// Frequency, Mode, BSR:
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void setFrequency(unsigned char vfo, freqt freq);
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void getFrequency();
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void setMode(unsigned char mode, unsigned char modeFilter);
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void setMode(mode_info);
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void getMode();
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void setDataMode(bool dataOn, unsigned char filter);
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void getDataMode();
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void getBandStackReg(char band, char regCode);
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void getRitEnabled();
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void getRitValue();
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void setRitValue(int ritValue);
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void setRitEnable(bool ritEnabled);
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// PTT, ATU, ATT, Antenna, and Preamp:
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void getPTT();
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void setPTT(bool pttOn);
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void startATU();
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void setATU(bool enabled);
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void getATUStatus();
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void getAttenuator();
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void getPreamp();
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void getAntenna();
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void setAttenuator(unsigned char att);
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void setPreamp(unsigned char pre);
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void setAntenna(unsigned char ant, bool rx);
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void setNb(bool enabled);
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void getNb();
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void setNr(bool enabled);
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void getNr();
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void setAutoNotch(bool enabled);
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void getAutoNotch();
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void setToneEnabled(bool enabled);
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void getToneEnabled();
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void setToneSql(bool enabled);
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void getToneSql();
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void setCompressor(bool enabled);
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void getCompressor();
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void setMonitor(bool enabled);
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void getMonitor();
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void setVox(bool enabled);
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void getVox();
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void setBreakIn(unsigned char type);
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void getBreakIn();
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void setManualNotch(bool enabled);
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void getManualNotch();
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// Repeater:
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void setDuplexMode(duplexMode dm);
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void getDuplexMode();
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void getTransmitFrequency();
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void setTone(quint16 tone);
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void setTSQL(quint16 tsql);
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void getTSQL();
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void getTone();
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void setDTCS(quint16 dcscode, bool tinv, bool rinv);
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void getDTCS();
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void setRptAccessMode(rptAccessTxRx ratr);
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void getRptAccessMode();
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// Get Levels:
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void getLevels(); // all supported levels
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void getRfGain();
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void getAfGain();
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void getSql();
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void getIFShift();
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void getTPBFInner();
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void getTPBFOuter();
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void getTxLevel();
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void getMicGain();
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void getCompLevel();
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void getMonitorLevel();
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void getVoxGain();
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void getAntiVoxGain();
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void getUSBGain();
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void getLANGain();
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void getACCGain();
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void getACCGain(unsigned char ab);
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void getModInput(bool dataOn);
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void getModInputLevel(rigInput input);
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void getAfMute();
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void getDialLock();
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// Set Levels:
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void setSquelch(unsigned char level);
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void setRfGain(unsigned char level);
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void setAfGain(unsigned char level);
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void setIFShift(unsigned char level);
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void setTPBFInner(unsigned char level);
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void setTPBFOuter(unsigned char level);
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void setTxPower(unsigned char power);
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void setMicGain(unsigned char gain);
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void setUSBGain(unsigned char gain);
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void setLANGain(unsigned char gain);
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void setACCGain(unsigned char gain);
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void setACCGain(unsigned char gain, unsigned char ab);
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void setCompLevel(unsigned char compLevel);
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void setMonitorLevel(unsigned char monitorLevel);
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void setVoxGain(unsigned char gain);
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void setAntiVoxGain(unsigned char gain);
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void setModInput(rigInput input, bool dataOn);
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void setModInputLevel(rigInput input, unsigned char level);
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void setAfMute(bool muteOn);
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void setDialLock(bool lockOn);
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// NB, NR, IP+:
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void setIPP(bool enabled);
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void getIPP();
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// Maybe put some of these into a struct?
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// setReceiverDSPParam(dspParam param);
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//void getNRLevel();
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//void getNREnabled();
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//void getNBLevel();
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//void getNBEnabled();
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//void getNotchEnabled();
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//void getNotchLevel();
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//void setNotchEnabled(bool enabled);
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//void setNotchLevel(unsigned char level);
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// Meters:
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void getSMeter();
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void getCenterMeter();
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void getRFPowerMeter();
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void getSWRMeter();
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void getALCMeter();
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void getCompReductionMeter();
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void getVdMeter();
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void getIDMeter();
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void getMeters(meterKind meter); // all supported meters per transmit or receive
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// Rig ID and CIV:
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void getRigID();
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void findRigs();
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void setRigID(unsigned char rigID);
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void setCIVAddr(unsigned char civAddr);
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// Calibration:
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void getRefAdjustCourse();
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void getRefAdjustFine();
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void setRefAdjustCourse(unsigned char level);
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void setRefAdjustFine(unsigned char level);
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// Time and Date:
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void setTime(timekind t);
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void setDate(datekind d);
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void setUTCOffset(timekind t);
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// Satellite:
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void setSatelliteMode(bool enabled);
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void getSatelliteMode();
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// UDP:
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void handleNewData(const QByteArray& data);
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void receiveAudioData(const audioPacket& data);
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void handleSerialPortError(const QString port, const QString errorText);
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void changeLatency(const quint16 value);
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void dataFromServer(QByteArray data);
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void receiveBaudRate(quint32 baudrate);
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// Speech:
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void sayFrequency();
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void sayMode();
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void sayAll();
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// Housekeeping:
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void handleStatusUpdate(const networkStatus status);
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void handleNetworkAudioLevels(networkAudioLevels);
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void radioSelection(QList<radio_cap_packet> radios);
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void radioUsage(quint8 radio, quint8 busy, QString name, QString ip);
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void setCurrentRadio(quint8 radio);
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void sendState();
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void getDebug();
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signals:
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// Communication:
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void commReady();
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void haveSerialPortError(const QString port, const QString errorText);
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void haveStatusUpdate(const networkStatus status);
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void haveNetworkAudioLevels(const networkAudioLevels l);
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void dataForComm(const QByteArray &outData);
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void toggleRTS(bool rtsOn);
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// UDP:
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void haveChangeLatency(quint16 value);
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void haveDataForServer(QByteArray outData);
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void haveAudioData(audioPacket data);
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void initUdpHandler();
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void haveSetVolume(unsigned char level);
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void haveBaudRate(quint32 baudrate);
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// Spectrum:
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void haveSpectrumData(QByteArray spectrum, double startFreq, double endFreq); // pass along data to UI
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void haveSpectrumBounds();
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void haveScopeSpan(freqt span, bool isSub);
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void haveSpectrumMode(spectrumMode spectmode);
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void haveScopeEdge(char edge);
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void haveSpectrumRefLevel(int level);
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// Rig ID:
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void haveRigID(rigCapabilities rigCaps);
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void discoveredRigID(rigCapabilities rigCaps);
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// Frequency, Mode, data, and bandstack:
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void haveFrequency(freqt freqStruct);
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void haveMode(unsigned char mode, unsigned char filter);
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void haveDataMode(bool dataModeEnabled);
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void haveBandStackReg(freqt f, char mode, char filter, bool dataOn);
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void haveRitEnabled(bool ritEnabled);
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void haveRitFrequency(int ritHz);
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// Repeater:
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void haveDuplexMode(duplexMode);
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void haveRptAccessMode(rptAccessTxRx ratr);
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void haveTone(quint16 tone);
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void haveTSQL(quint16 tsql);
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void haveDTCS(quint16 dcscode, bool tinv, bool rinv);
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// Levels:
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void haveRfGain(unsigned char level);
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void haveAfGain(unsigned char level);
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void haveSql(unsigned char level);
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void haveTPBFInner(unsigned char level);
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void haveTPBFOuter(unsigned char level);
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void haveIFShift(unsigned char level);
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void haveTxPower(unsigned char level);
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void haveMicGain(unsigned char level);
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void haveCompLevel(unsigned char level);
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void haveMonitorLevel(unsigned char level);
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void haveVoxGain(unsigned char gain);
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void haveAntiVoxGain(unsigned char gain);
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// Modulation source and gain:
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void haveModInput(rigInput input, bool isData);
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void haveLANGain(unsigned char gain);
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void haveUSBGain(unsigned char gain);
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void haveACCGain(unsigned char gain, unsigned char ab);
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void haveModSrcGain(rigInput input, unsigned char gain);
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// Meters:
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void haveMeter(meterKind meter, unsigned char level);
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void haveSMeter(unsigned char level);
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void haveRFMeter(unsigned char level);
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void haveSWRMeter(unsigned char);
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void haveALCMeter(unsigned char);
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void haveCompMeter(unsigned char dbreduction);
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void haveVdMeter(unsigned char voltage);
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void haveIdMeter(unsigned char current);
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// Calibration:
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void haveRefAdjustCourse(unsigned char level);
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void haveRefAdjustFine(unsigned char level);
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// PTT and ATU:
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void havePTTStatus(bool pttOn);
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void haveATUStatus(unsigned char status);
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void haveAttenuator(unsigned char att);
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void havePreamp(unsigned char pre);
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void haveAntenna(unsigned char ant,bool rx);
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// Rig State
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void stateInfo(rigstate* state);
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// Housekeeping:
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void requestRadioSelection(QList<radio_cap_packet> radios);
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void setRadioUsage(quint8 radio, quint8 busy, QString user, QString ip);
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void selectedRadio(quint8 radio);
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void getMoreDebug();
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void finished();
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private:
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void setup();
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QByteArray stripData(const QByteArray &data, unsigned char cutPosition);
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void parseData(QByteArray data); // new data come here
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void parseCommand();
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unsigned char bcdHexToUChar(unsigned char in);
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unsigned char bcdHexToUChar(unsigned char hundreds, unsigned char tensunits);
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unsigned int bcdHexToUInt(unsigned char hundreds, unsigned char tensunits);
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QByteArray bcdEncodeInt(unsigned int);
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void parseFrequency();
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freqt parseFrequency(QByteArray data, unsigned char lastPosition); // supply index where Mhz is found
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QByteArray makeFreqPayload(double frequency);
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QByteArray makeFreqPayload(freqt freq);
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QByteArray encodeTone(quint16 tone, bool tinv, bool rinv);
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QByteArray encodeTone(quint16 tone);
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unsigned char convertNumberToHex(unsigned char num);
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quint16 decodeTone(QByteArray eTone);
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quint16 decodeTone(QByteArray eTone, bool &tinv, bool &rinv);
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unsigned char audioLevelRxMean[50];
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unsigned char audioLevelRxPeak[50];
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unsigned char audioLevelTxMean[50];
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unsigned char audioLevelTxPeak[50];
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void parseMode();
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void parseSpectrum();
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void parseWFData();
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void parseSpectrumRefLevel();
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void parseDetailedRegisters1A05();
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void parseRegisters1A();
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void parseRegister1B();
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void parseRegisters1C();
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void parseRegister16();
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void parseRegister21();
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void parseBandStackReg();
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void parsePTT();
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void parseATU();
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void parseLevels(); // register 0x14
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void sendLevelCmd(unsigned char levAddr, unsigned char level);
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QByteArray getLANAddr();
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QByteArray getUSBAddr();
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QByteArray getACCAddr(unsigned char ab);
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void setModInput(rigInput input, bool dataOn, bool isQuery);
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void sendDataOut();
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void prepDataAndSend(QByteArray data);
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void debugMe();
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void printHex(const QByteArray &pdata);
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void printHex(const QByteArray &pdata, bool printVert, bool printHoriz);
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mode_info createMode(mode_kind m, unsigned char reg, QString name);
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centerSpanData createScopeCenter(centerSpansType s, QString name);
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commHandler* comm = Q_NULLPTR;
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pttyHandler* ptty = Q_NULLPTR;
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tcpServer* tcp = Q_NULLPTR;
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udpHandler* udp=Q_NULLPTR;
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QThread* udpHandlerThread = Q_NULLPTR;
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void determineRigCaps();
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QByteArray payloadIn;
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QByteArray echoPerfix;
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QByteArray replyPrefix;
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QByteArray genericReplyPrefix;
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QByteArray payloadPrefix;
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QByteArray payloadSuffix;
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QByteArray rigData;
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QByteArray spectrumLine;
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double spectrumStartFreq;
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double spectrumEndFreq;
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struct rigCapabilities rigCaps;
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rigstate state;
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bool haveRigCaps;
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model_kind model;
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quint8 spectSeqMax;
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quint16 spectAmpMax;
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quint16 spectLenMax;
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spectrumMode oldScopeMode;
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bool usingNativeLAN; // indicates using OEM LAN connection (705,7610,9700,7850)
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bool lookingForRig;
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bool foundRig;
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double frequencyMhz;
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unsigned char civAddr;
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unsigned char incomingCIVAddr; // place to store the incoming CIV.
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bool pttAllowed;
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bool useRTSforPTT_isSet = false;
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bool useRTSforPTT_manual = false;
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QString rigSerialPort;
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quint32 rigBaudRate;
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QString ip;
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int cport;
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int sport;
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int aport;
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QString username;
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QString password;
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QString serialPortError;
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unsigned char localVolume=0;
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quint8 guid[GUIDLEN] = { 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 };
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};
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#endif // RIGCOMMANDER_H
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