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			137 lines
		
	
	
		
			4.9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			137 lines
		
	
	
		
			4.9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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								///////////////////////////////////////////////////////////////////////////////////
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								// Copyright (C) 2021 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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								#ifndef _PLUTOSDR_PLUTOSDRMIMOSETTINGS_H_
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								#define _PLUTOSDR_PLUTOSDRMIMOSETTINGS_H_
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								#include <QtGlobal>
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								#include <QString>
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								#include <stdint.h>
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								struct PlutoSDRMIMOSettings {
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									typedef enum {
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										FC_POS_INFRA = 0,
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										FC_POS_SUPRA,
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										FC_POS_CENTER,
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										FC_POS_END
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									} fcPos_t;
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								    enum RFPathRx
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								    {
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								        RFPATHRX_A_BAL = 0,
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								        RFPATHRX_B_BAL,
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								        RFPATHRX_C_BAL,
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								        RFPATHRX_A_NEG,
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								        RFPATHRX_A_POS,
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								        RFPATHRX_B_NEG,
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								        RFPATHRX_B_POS,
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								        RFPATHRX_C_NEG,
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								        RFPATHRX_C_POS,
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								        RFPATHRX_TX1MON,
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								        RFPATHRX_TX2MON,
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								        RFPATHRX_TX3MON,
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								        RFPATHRX_END
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								    };
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								    enum RFPathTx
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								    {
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								        RFPATHTX_A = 0,
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								        RFPATHTX_B,
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								        RFPATHTX_END
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								    };
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								    typedef enum {
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								        GAIN_MANUAL,
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								        GAIN_AGC_SLOW,
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								        GAIN_AGC_FAST,
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								        GAIN_HYBRID,
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								        GAIN_END
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								    } GainMode;
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								    // Common
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								    quint64 m_devSampleRate;      //!< Host interface sample rate
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								    qint32  m_LOppmTenths;        //!< XO correction
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								    // Common Rx
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									quint64 m_rxCenterFrequency;
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								    bool    m_dcBlock;
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								    bool    m_iqCorrection;
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								    bool    m_hwBBDCBlock;     //!< Hardware baseband DC blocking
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								    bool    m_hwRFDCBlock;     //!< Hardware RF DC blocking
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								    bool    m_hwIQCorrection;  //!< Hardware IQ correction
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								    fcPos_t m_fcPosRx;
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								    bool    m_rxTransverterMode;
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								    qint64  m_rxTransverterDeltaFrequency;
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								    bool    m_iqOrder;
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								    quint32 m_lpfBWRx;              //!< analog lowpass filter bandwidth (Hz)
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								    bool    m_lpfRxFIREnable;       //!< enable digital lowpass FIR filter
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								    quint32 m_lpfRxFIRBW;           //!< digital lowpass FIR filter bandwidth (Hz)
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								    quint32 m_lpfRxFIRlog2Decim;    //!< digital lowpass FIR filter log2 of decimation factor (0..2)
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								    int     m_lpfRxFIRGain;         //!< digital lowpass FIR filter gain (dB)
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								    quint32 m_log2Decim;
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								    // Rx0
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								    quint32  m_rx0Gain;              //!< "hardware" gain
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								    GainMode m_rx0GainMode;
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								    RFPathRx m_rx0AntennaPath;
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								    // Rx1
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								    quint32  m_rx1Gain;              //!< "hardware" gain
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								    GainMode m_rx1GainMode;
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								    RFPathRx m_rx1AntennaPath;
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								    // Common Tx
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								    quint64 m_txCenterFrequency;
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								    fcPos_t m_fcPosTx;
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								    bool    m_txTransverterMode;
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								    qint64  m_txTransverterDeltaFrequency;
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								    quint32 m_lpfBWTx;              //!< analog lowpass filter bandwidth (Hz)
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								    bool    m_lpfTxFIREnable;       //!< enable digital lowpass FIR filter
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								    quint32 m_lpfTxFIRBW;           //!< digital lowpass FIR filter bandwidth (Hz)
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								    quint32 m_lpfTxFIRlog2Interp;   //!< digital lowpass FIR filter log2 of interpolation factor (0..2)
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								    int     m_lpfTxFIRGain;         //!< digital lowpass FIR filter gain (dB)
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								    quint32 m_log2Interp;
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								    // Tx0
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								    qint32   m_tx0Att;                //!< "hardware" attenuation in dB fourths
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								    RFPathTx m_tx0AntennaPath;
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								    // Tx1
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								    qint32   m_tx1Att;                //!< "hardware" attenuation in dB fourths
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								    RFPathTx m_tx1AntennaPath;
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								    // global settings to be saved
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									// common device settings
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								    // individual channel settings
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								    bool     m_useReverseAPI;
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								    QString  m_reverseAPIAddress;
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								    uint16_t m_reverseAPIPort;
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								    uint16_t m_reverseAPIDeviceIndex;
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								    static const int m_plutoSDRBlockSizeSamples = 64*256; //complex samples per buffer (must be multiple of 64)
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									PlutoSDRMIMOSettings();
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									void resetToDefaults();
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									QByteArray serialize() const;
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									bool deserialize(const QByteArray& data);
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								    static void translateRFPathRx(RFPathRx path, QString& s);
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								    static void translateGainMode(GainMode mod, QString& s);
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								    static void translateRFPathTx(RFPathTx path, QString& s);
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								};
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								#endif /* _PLUTOSDR_PLUTOSDRMIMOSETTINGS_H_ */
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