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https://github.com/f4exb/sdrangel.git
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200 lines
4.8 KiB
C++
200 lines
4.8 KiB
C++
/* RXA.h
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This file is part of a program that implements a Software-Defined Radio.
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Copyright (C) 2013, 2014, 2015, 2016 Warren Pratt, NR0V
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Copyright (C) 2024 Edouard Griffiths, F4EXB Adapted to SDRangel
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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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 for more details.
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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, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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The author can be reached by email at
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warren@wpratt.com
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*/
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#ifndef wdsp_rxa_h
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#define wdsp_rxa_h
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#include <array>
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#include "comm.hpp"
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#include "unit.hpp"
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#include "export.h"
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namespace WDSP {
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class METER;
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class SHIFT;
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class RESAMPLE;
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class BANDPASS;
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class BPS;
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class NOTCHDB;
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class NBP;
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class BPSNBA;
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class SNBA;
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class SENDER;
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class AMSQ;
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class AMD;
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class FMD;
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class FMSQ;
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class EQP;
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class ANF;
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class ANR;
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class EMNR;
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class WCPAGC;
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class SPEAK;
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class MPEAK;
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class PANEL;
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class SIPHON;
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class CBL;
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class SSQL;
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class ANB;
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class NOB;
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class BufferProbe;
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class WDSP_API RXA : public Unit
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{
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public:
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enum rxaMode
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{
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RXA_LSB,
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RXA_USB,
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RXA_DSB,
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RXA_CWL,
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RXA_CWU,
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RXA_FM,
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RXA_AM,
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RXA_DIGU,
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RXA_SPEC,
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RXA_DIGL,
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RXA_SAM,
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RXA_DRM
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};
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enum rxaMeterType
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{
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RXA_S_PK,
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RXA_S_AV,
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RXA_ADC_PK,
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RXA_ADC_AV,
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RXA_AGC_GAIN,
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RXA_AGC_PK,
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RXA_AGC_AV,
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RXA_METERTYPE_LAST
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};
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int mode;
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std::array<double, RXA_METERTYPE_LAST> meter;
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ANB *anb;
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NOB *nob;
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SHIFT *shift;
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RESAMPLE *rsmpin;
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METER *adcmeter;
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NOTCHDB *ndb;
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NBP *nbp0;
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BPSNBA *bpsnba;
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SENDER *sender;
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METER *smeter;
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AMSQ *amsq;
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AMD *amd;
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FMD *fmd;
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FMSQ *fmsq;
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SNBA *snba;
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EQP *eqp;
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ANF *anf;
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ANR *anr;
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EMNR *emnr;
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WCPAGC *agc;
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METER *agcmeter;
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BANDPASS *bp1;
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SIPHON *sip1;
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CBL *cbl;
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SPEAK *speak;
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MPEAK *mpeak;
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SSQL *ssql;
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PANEL *panel;
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RESAMPLE *rsmpout;
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RXA(
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int in_rate, // input samplerate
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int out_rate, // output samplerate
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int dsp_rate, // sample rate for mainstream dsp processing
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int dsp_size // number complex samples processed per buffer in mainstream dsp processing
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);
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RXA(const RXA&) = delete;
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RXA& operator=(const RXA& other) = delete;
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virtual ~RXA();
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void flush();
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void execute();
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void setInputSamplerate(int _in_rate);
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void setOutputSamplerate(int _out_rate);
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void setDSPSamplerate(int _dsp_rate);
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void setDSPBuffsize(int _dsp_size);
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int get_insize() const { return Unit::dsp_insize; }
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int get_outsize() const { return Unit::dsp_outsize; }
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float *get_inbuff() { return Unit::inbuff; }
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float *get_outbuff() { return Unit::outbuff; }
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void setSpectrumProbe(BufferProbe *_spectrumProbe);
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// RXA Properties
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void setMode (int mode);
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void resCheck ();
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void bp1Check (int amd_run, int snba_run, int emnr_run, int anf_run, int anr_run);
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void bp1Set ();
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void bpsnbaCheck (int mode, int notch_run);
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void bpsnbaSet ();
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// NOTCHDB, NBP, SNBA
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void updateNBPFiltersLightWeight();
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void updateNBPFilters();
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int nbpAddNotch(int notch, double fcenter, double fwidth, int active);
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int nbpGetNotch(int notch, double* fcenter, double* fwidth, int* active) const;
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int nbpDeleteNotch(int notch);
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int nbpEditNotch(int notch, double fcenter, double fwidth, int active);
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void nbpGetNumNotches(int* nnotches) const;
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void nbpSetTuneFrequency(double tunefreq);
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void nbpSetShiftFrequency(double shift);
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void nbpSetNotchesRun(int run);
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void nbpSetWindow(int wintype);
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void nbpSetAutoIncrease(int autoincr);
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// AMD
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void setAMDRun(int run);
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// SNBA
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void setSNBARun(int run);
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// ANF
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void setANFRun(int run);
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void setANFPosition(int position);
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// ANR
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void setANRRun(int run);
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void setANRPosition(int position);
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// EMNR
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void setEMNRRun(int run);
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void setEMNRPosition(int position);
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// WCPAGC
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void setAGCThresh(double thresh, double size, double rate);
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void getAGCThresh(double *thresh, double size, double rate) const;
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// Collectives
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void setPassband(float f_low, float f_high);
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void setNC(int nc);
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void setMP(int mp);
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};
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} // namespace WDSP
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#endif
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