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105 lines
4.2 KiB
C
105 lines
4.2 KiB
C
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///////////////////////////////////////////////////////////////////////////////////
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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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#ifndef PLUGINS_SAMPLEMIMO_XTRXMIMO_XTRXMIMOSETTINGS_H_
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#define PLUGINS_SAMPLEMIMO_XTRXMIMO_XTRXMIMOSETTINGS_H_
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#include <stdint.h>
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#include <QtGlobal>
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#include <QString>
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struct XTRXMIMOSettings
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{
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typedef enum {
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GAIN_AUTO,
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GAIN_MANUAL
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} GainMode;
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typedef enum {
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RXANT_LO,
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RXANT_WI,
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RXANT_HI
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} RxAntenna;
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typedef enum {
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TXANT_HI,
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TXANT_WI
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} TxAntenna;
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// common
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bool m_extClock; //!< True if external clock source
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uint32_t m_extClockFreq; //!< Frequency (Hz) of external clock source
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uint8_t m_gpioDir; //!< GPIO pin direction LSB first; 0 input, 1 output
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uint8_t m_gpioPins; //!< GPIO pins to write; LSB first
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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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// Rx
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double m_rxDevSampleRate;
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uint32_t m_log2HardDecim;
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uint32_t m_log2SoftDecim;
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uint64_t m_rxCenterFrequency;
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bool m_dcBlock;
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bool m_iqCorrection;
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bool m_ncoEnableRx; //!< Enable TSP NCO and mixing
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int m_ncoFrequencyRx; //!< Actual NCO frequency (the resulting frequency with mixing is displayed)
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RxAntenna m_antennaPathRx;
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bool m_iqOrder;
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// Rx0
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float m_lpfBWRx0; //!< LMS analog lowpass filter bandwidth (Hz)
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uint32_t m_gainRx0; //!< Optimally distributed gain (dB)
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GainMode m_gainModeRx0; //!< Gain mode: auto or manual
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uint32_t m_lnaGainRx0; //!< Manual LNA gain
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uint32_t m_tiaGainRx0; //!< Manual TIA gain
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uint32_t m_pgaGainRx0; //!< Manual PGA gain
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uint32_t m_pwrmodeRx0;
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// Rx1
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float m_lpfBWRx1; //!< LMS analog lowpass filter bandwidth (Hz)
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uint32_t m_gainRx1; //!< Optimally distributed gain (dB)
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GainMode m_gainModeRx1; //!< Gain mode: auto or manual
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uint32_t m_lnaGainRx1; //!< Manual LNA gain
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uint32_t m_tiaGainRx1; //!< Manual TIA gain
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uint32_t m_pgaGainRx1; //!< Manual PGA gain
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uint32_t m_pwrmodeRx1;
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// Tx
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double m_txDevSampleRate;
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uint32_t m_log2HardInterp;
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uint32_t m_log2SoftInterp;
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uint64_t m_txCenterFrequency;
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bool m_ncoEnableTx; //!< Enable TSP NCO and mixing
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int m_ncoFrequencyTx; //!< Actual NCO frequency (the resulting frequency with mixing is displayed)
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TxAntenna m_antennaPathTx;
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// Tx0
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float m_lpfBWTx0; //!< LMS analog lowpass filter bandwidth (Hz)
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uint32_t m_gainTx0; //!< Optimally distributed gain (dB)
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uint32_t m_pwrmodeTx0;
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// Tx1
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float m_lpfBWTx1; //!< LMS analog lowpass filter bandwidth (Hz)
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uint32_t m_gainTx1; //!< Optimally distributed gain (dB)
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uint32_t m_pwrmodeTx1;
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XTRXMIMOSettings();
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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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};
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#endif // PLUGINS_SAMPLEMIMO_XTRXMIMO_XTRXMIMOSETTINGS_H_
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