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https://github.com/f4exb/sdrangel.git
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195 lines
6.7 KiB
C++
195 lines
6.7 KiB
C++
/* rmatch.h
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This file is part of a program that implements a Software-Defined Radio.
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Copyright (C) 2017, 2022 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_rmatch_h
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#define wdsp_rmatch_h
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#include "export.h"
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namespace WDSP {
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class VARSAMP;
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class WDSP_API MAV
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{
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public:
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int ringmin;
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int ringmax; // must be a power of two
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int* ring;
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int mask;
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int i;
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int load;
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int sum;
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float nom_value;
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static MAV* create_mav (int ringmin, int ringmax, float nom_value);
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static void destroy_mav (MAV *a);
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static void flush_mav (MAV *a);
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static void xmav (MAV *a, int input, float* output);
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};
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class WDSP_API AAMAV
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{
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public:
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int ringmin;
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int ringmax; // must be a power of two
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int* ring;
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int mask;
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int i;
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int load;
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int pos;
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int neg;
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float nom_ratio;
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static AAMAV* create_aamav (int ringmin, int ringmax, float nom_ratio);
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static void destroy_aamav (AAMAV *a);
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static void flush_aamav (AAMAV *a);
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static void xaamav (AAMAV *a, int input, float* output);
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};
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class WDSP_API RMATCH
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{
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public:
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long run;
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float* in;
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float* out;
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int insize;
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int outsize;
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float* resout;
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int nom_inrate;
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int nom_outrate;
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float nom_ratio;
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float inv_nom_ratio;
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float fc_high;
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float fc_low;
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float gain;
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float startup_delay;
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int auto_ringsize;
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int ringsize;
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int rsize;
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float* ring;
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int n_ring;
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int iin;
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int iout;
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float var;
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int R;
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AAMAV *ffmav;
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MAV *propmav;
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int ff_ringmin;
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int ff_ringmax; // must be a power of two
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float ff_alpha;
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float feed_forward;
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int prop_ringmin;
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int prop_ringmax; // must be a power of two
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float prop_gain;
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float pr_gain;
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float av_deviation;
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VARSAMP *v;
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int varmode;
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// blend / slew
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float tslew;
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int ntslew;
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float* cslew;
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float* baux;
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float dlast[2];
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int ucnt;
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// variables to check start-up time for control to become active
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unsigned int readsamps;
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unsigned int writesamps;
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unsigned int read_startup;
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unsigned int write_startup;
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int control_flag;
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// diagnostics
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long underflows;
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long overflows;
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int force;
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float fvar;
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static RMATCH* create_rmatch (
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int run, // 0 - input and output calls do nothing; 1 - operates normally
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float* in, // pointer to input buffer
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float* out, // pointer to output buffer
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int insize, // size of input buffer
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int outsize, // size of output buffer
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int nom_inrate, // nominal input samplerate
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int nom_outrate, // nominal output samplerate
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float fc_high, // high cutoff frequency if lower than max
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float fc_low, // low cutoff frequency if higher than zero
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float gain, // gain to be applied during this process
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float startup_delay, // time (seconds) to delay before beginning measurements to control variable resampler
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int auto_ringsize, // 0 specified ringsize is used; 1 ringsize is auto-optimized - FEATURE NOT IMPLEMENTED!!
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int ringsize, // specified ringsize; max ringsize if 'auto' is enabled
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int R, // density factor for varsamp coefficients
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float var, // initial value of variable resampler ratio (value of ~1.0)
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int ffmav_min, // minimum feed-forward moving average size to put full weight on data in the ring
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int ffmav_max, // maximum feed-forward moving average size - MUST BE A POWER OF TWO!
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float ff_alpha, // feed-forward exponential averaging multiplier
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int prop_ringmin, // proportional feedback min moving average ringsize
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int prop_ringmax, // proportional feedback max moving average ringsize - MUST BE A POWER OF TWO!
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float prop_gain, // proportional feedback gain factor
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int varmode, // 0 - use same var for all samples of the buffer; 1 - interpolate from old_var to this var
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float tslew // slew/blend time (seconds)
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);
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static void destroy_rmatch (RMATCH *a);
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static void reset_rmatch (RMATCH *a);
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static void* create_rmatchV(int in_size, int out_size, int nom_inrate, int nom_outrate, int ringsize, float var);
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static void* create_rmatchLegacyV(int in_size, int out_size, int nom_inrate, int nom_outrate, int ringsize);
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static void destroy_rmatchV (void* ptr);
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static void xrmatchOUT (void* b, float* out);
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static void xrmatchIN (void* b, float* in);
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static void setRMatchInsize (void* ptr, int insize);
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static void setRMatchOutsize (void* ptr, int outsize);
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static void setRMatchNomInrate (void* ptr, int nom_inrate);
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static void setRMatchNomOutrate (void* ptr, int nom_outrate);
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static void setRMatchRingsize (void* ptr, int ringsize);
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static void getRMatchDiags (void* b, int* underflows, int* overflows, float* var, int* ringsize, int* nring);
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static void resetRMatchDiags (void* b);
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static void forceRMatchVar (void* b, int force, float fvar);
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static void setRMatchFeedbackGain(void* b, float feedback_gain);
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static void setRMatchSlewTime(void* b, float slew_time);
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static void setRMatchSlewTime1(void* b, float slew_time);
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static void setRMatchPropRingMin(void* ptr, int prop_min);
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static void setRMatchPropRingMax(void* ptr, int prop_max);
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static void setRMatchFFRingMin(void* ptr, int ff_ringmin);
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static void setRMatchFFRingMax(void* ptr, int ff_ringmax);
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static void setRMatchFFAlpha(void* ptr, float ff_alpha);
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static void getControlFlag(void* ptr, int* control_flag);
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private:
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static void calc_rmatch (RMATCH *a);
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static void decalc_rmatch (RMATCH *a);
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static void control (RMATCH *a, int change);
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static void blend (RMATCH *a);
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static void upslew (RMATCH *a, int newsamps);
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static void dslew (RMATCH *a);
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};
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} // namespace WDSP
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#endif
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