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https://github.com/f4exb/sdrangel.git
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166 lines
4.2 KiB
C++
166 lines
4.2 KiB
C++
/* eq.c
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This file is part of a program that implements a Software-Defined Radio.
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Copyright (C) 2013, 2016, 2017 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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#include "comm.hpp"
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#include "eq.hpp"
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#include "eqp.hpp"
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#include "fircore.hpp"
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#include "fir.hpp"
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#include "RXA.hpp"
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#include "TXA.hpp"
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namespace WDSP {
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/********************************************************************************************************
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* *
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* Overlap-Save Equalizer *
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* *
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********************************************************************************************************/
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void EQ::eq_mults (std::vector<float>& mults, int size, int nfreqs, float* F, float* G, float samplerate, float scale, int ctfmode, int wintype)
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{
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std::vector<float> impulse;
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EQP::eq_impulse (impulse, size + 1, nfreqs, F, G, samplerate, scale, ctfmode, wintype);
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std::vector<float> _mults;
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FIR::fftcv_mults(_mults, 2 * size, impulse.data());
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mults.resize(2 * size * 2);
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std::copy(_mults.begin(), _mults.end(), mults.begin());
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}
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void EQ::calc()
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{
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scale = (float) (1.0 / (float)(2 * size));
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infilt.resize(2 * size * 2);
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product.resize(2 * size * 2);
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CFor = fftwf_plan_dft_1d(
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2 * size,
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(fftwf_complex *) infilt.data(),
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(fftwf_complex *) product.data(),
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FFTW_FORWARD,
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FFTW_PATIENT
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);
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CRev = fftwf_plan_dft_1d(
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2 * size,
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(fftwf_complex *) product.data(),
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(fftwf_complex *) out,
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FFTW_BACKWARD,
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FFTW_PATIENT
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);
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EQ::eq_mults(mults, size, nfreqs, F.data(), G.data(), samplerate, scale, ctfmode, wintype);
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}
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void EQ::decalc()
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{
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fftwf_destroy_plan(CRev);
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fftwf_destroy_plan(CFor);
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}
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EQ::EQ(
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int _run,
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int _size,
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float *_in,
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float *_out,
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int _nfreqs,
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const float* _F,
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const float* _G,
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int _ctfmode,
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int _wintype,
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int _samplerate
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) :
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run(_run),
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size(_size),
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in(_in),
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out(_out),
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nfreqs(_nfreqs),
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ctfmode(_ctfmode),
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wintype(_wintype),
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samplerate((float) _samplerate)
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{
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F.resize(nfreqs + 1);
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G.resize(nfreqs + 1);
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std::copy(_F, _F + nfreqs + 1, F.begin());
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std::copy(_G, _G + nfreqs + 1, G.begin());
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calc();
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}
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EQ::~EQ()
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{
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decalc();
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}
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void EQ::flush()
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{
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std::fill(infilt.begin(), infilt.end(), 0);
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}
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void EQ::execute()
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{
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float I;
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float Q;
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if (run)
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{
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std::copy(in, in + size * 2, &(infilt[2 * size]));
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fftwf_execute (CFor);
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for (int i = 0; i < 2 * size; i++)
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{
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I = product[2 * i + 0];
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Q = product[2 * i + 1];
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product[2 * i + 0] = I * mults[2 * i + 0] - Q * mults[2 * i + 1];
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product[2 * i + 1] = I * mults[2 * i + 1] + Q * mults[2 * i + 0];
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}
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fftwf_execute (CRev);
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std::copy(&(infilt[2 * size]), &(infilt[2 * size]) + size * 2, infilt);
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}
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else if (in != out)
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std::copy( in, in + size * 2, out);
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}
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void EQ::setBuffers(float* _in, float* _out)
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{
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decalc();
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in = _in;
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out = _out;
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calc();
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}
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void EQ::setSamplerate(int _rate)
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{
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decalc();
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samplerate = (float) _rate;
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calc();
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}
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void EQ::setSize(int _size)
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{
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decalc();
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size = _size;
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calc();
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}
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} // namespace WDSP
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