271 lines
7.5 KiB
C
271 lines
7.5 KiB
C
/* emph.c
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This file is part of a program that implements a Software-Defined Radio.
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Copyright (C) 2014, 2016, 2023 Warren Pratt, NR0V
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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.h"
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/********************************************************************************************************
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* *
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* Partitioned Overlap-Save FM Pre-Emphasis *
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* *
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********************************************************************************************************/
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EMPHP create_emphp (int run, int position, int size, int nc, int mp, double* in, double* out, int rate, int ctype, double f_low, double f_high)
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{
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EMPHP a = (EMPHP) malloc0 (sizeof (emphp));
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double* impulse;
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a->run = run;
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a->position = position;
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a->size = size;
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a->nc = nc;
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a->mp = mp;
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a->in = in;
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a->out = out;
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a->rate = rate;
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a->ctype = ctype;
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a->f_low = f_low;
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a->f_high = f_high;
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impulse = fc_impulse (a->nc, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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a->p = create_fircore (a->size, a->in, a->out, a->nc, a->mp, impulse);
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_aligned_free (impulse);
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return a;
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}
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void destroy_emphp (EMPHP a)
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{
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destroy_fircore (a->p);
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_aligned_free (a);
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}
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void flush_emphp (EMPHP a)
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{
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flush_fircore (a->p);
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}
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void xemphp (EMPHP a, int position)
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{
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if (a->run && a->position == position)
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xfircore (a->p);
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else if (a->in != a->out)
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memcpy (a->out, a->in, a->size * sizeof (complex));
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}
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void setBuffers_emphp (EMPHP a, double* in, double* out)
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{
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a->in = in;
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a->out = out;
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setBuffers_fircore (a->p, a->in, a->out);
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}
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void setSamplerate_emphp (EMPHP a, int rate)
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{
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double* impulse;
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a->rate = rate;
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impulse = fc_impulse (a->nc, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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setImpulse_fircore (a->p, impulse, 1);
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_aligned_free (impulse);
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}
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void setSize_emphp (EMPHP a, int size)
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{
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double* impulse;
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a->size = size;
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setSize_fircore (a->p, a->size);
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impulse = fc_impulse (a->nc, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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setImpulse_fircore (a->p, impulse, 1);
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_aligned_free (impulse);
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}
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/********************************************************************************************************
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* *
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* Partitioned Overlap-Save FM Pre-Emphasis: TXA Properties *
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* *
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********************************************************************************************************/
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PORT
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void SetTXAFMEmphPosition (int channel, int position)
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{
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EnterCriticalSection (&ch[channel].csDSP);
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txa[channel].preemph.p->position = position;
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LeaveCriticalSection (&ch[channel].csDSP);
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}
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PORT
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void SetTXAFMEmphMP (int channel, int mp)
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{
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EMPHP a;
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a = txa[channel].preemph.p;
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if (a->mp != mp)
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{
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a->mp = mp;
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setMp_fircore (a->p, a->mp);
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}
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}
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PORT
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void SetTXAFMEmphNC (int channel, int nc)
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{
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EMPHP a;
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double* impulse;
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EnterCriticalSection (&ch[channel].csDSP);
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a = txa[channel].preemph.p;
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if (a->nc != nc)
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{
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a->nc = nc;
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impulse = fc_impulse (a->nc, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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setNc_fircore (a->p, a->nc, impulse);
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_aligned_free (impulse);
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}
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LeaveCriticalSection (&ch[channel].csDSP);
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}
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PORT
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void SetTXAFMPreEmphFreqs (int channel, double low, double high)
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{
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EMPHP a;
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double* impulse;
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EnterCriticalSection (&ch[channel].csDSP);
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a = txa[channel].preemph.p;
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if (a->f_low != low || a->f_high != high)
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{
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a->f_low = low;
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a->f_high = high;
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impulse = fc_impulse (a->nc, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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setImpulse_fircore (a->p, impulse, 1);
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_aligned_free (impulse);
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}
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LeaveCriticalSection (&ch[channel].csDSP);
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}
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/********************************************************************************************************
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* *
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* Overlap-Save FM Pre-Emphasis *
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* *
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********************************************************************************************************/
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void calc_emph (EMPH a)
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{
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a->infilt = (double *)malloc0(2 * a->size * sizeof(complex));
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a->product = (double *)malloc0(2 * a->size * sizeof(complex));
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a->mults = fc_mults(a->size, a->f_low, a->f_high, -20.0 * log10(a->f_high / a->f_low), 0.0, a->ctype, a->rate, 1.0 / (2.0 * a->size), 0, 0);
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a->CFor = fftw_plan_dft_1d(2 * a->size, (fftw_complex *)a->infilt, (fftw_complex *)a->product, FFTW_FORWARD, FFTW_PATIENT);
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a->CRev = fftw_plan_dft_1d(2 * a->size, (fftw_complex *)a->product, (fftw_complex *)a->out, FFTW_BACKWARD, FFTW_PATIENT);
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}
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void decalc_emph (EMPH a)
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{
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fftw_destroy_plan(a->CRev);
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fftw_destroy_plan(a->CFor);
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_aligned_free(a->mults);
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_aligned_free(a->product);
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_aligned_free(a->infilt);
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}
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EMPH create_emph (int run, int position, int size, double* in, double* out, int rate, int ctype, double f_low, double f_high)
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{
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EMPH a = (EMPH) malloc0 (sizeof (emph));
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a->run = run;
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a->position = position;
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a->size = size;
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a->in = in;
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a->out = out;
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a->rate = (double)rate;
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a->ctype = ctype;
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a->f_low = f_low;
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a->f_high = f_high;
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calc_emph (a);
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return a;
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}
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void destroy_emph (EMPH a)
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{
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decalc_emph (a);
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_aligned_free (a);
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}
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void flush_emph (EMPH a)
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{
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memset (a->infilt, 0, 2 * a->size * sizeof (complex));
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}
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void xemph (EMPH a, int position)
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{
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int i;
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double I, Q;
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if (a->run && a->position == position)
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{
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memcpy (&(a->infilt[2 * a->size]), a->in, a->size * sizeof (complex));
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fftw_execute (a->CFor);
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for (i = 0; i < 2 * a->size; i++)
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{
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I = a->product[2 * i + 0];
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Q = a->product[2 * i + 1];
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a->product[2 * i + 0] = I * a->mults[2 * i + 0] - Q * a->mults[2 * i + 1];
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a->product[2 * i + 1] = I * a->mults[2 * i + 1] + Q * a->mults[2 * i + 0];
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}
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fftw_execute (a->CRev);
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memcpy (a->infilt, &(a->infilt[2 * a->size]), a->size * sizeof(complex));
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}
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else if (a->in != a->out)
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memcpy (a->out, a->in, a->size * sizeof (complex));
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}
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void setBuffers_emph (EMPH a, double* in, double* out)
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{
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decalc_emph (a);
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a->in = in;
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a->out = out;
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calc_emph (a);
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}
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void setSamplerate_emph (EMPH a, int rate)
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{
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decalc_emph (a);
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a->rate = rate;
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calc_emph (a);
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}
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void setSize_emph (EMPH a, int size)
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{
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decalc_emph(a);
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a->size = size;
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calc_emph(a);
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}
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/********************************************************************************************************
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* *
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* Overlap-Save FM Pre-Emphasis: TXA Properties *
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* *
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********************************************************************************************************/
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/* // Uncomment when needed
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PORT
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void SetTXAFMEmphPosition (int channel, int position)
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{
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EnterCriticalSection (&ch[channel].csDSP);
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txa[channel].preemph.p->position = position;
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LeaveCriticalSection (&ch[channel].csDSP);
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}
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*/
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