- merge v0.01 --> Añadido fileselector - Añadidas fuentes de Gem y Pure Data - pix2jpg incluído en Gem. Archivos de construcción de Gem modificados. - Añadido fichero ompiling.txt con instrucciones de compilación
243 lines
9 KiB
C
243 lines
9 KiB
C
/* Copyright (c) 1999 Miller Puckette. The
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contents of this file are free for any use, but BOTH THE AUTHOR AND UCSD
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DISCLAIM ALL WARRANTIES related to it. Although not written in Java, this
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still should not be used to control any machinery containing a sharp blade or
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combustible materiel, or as part of any life support system or weapon. */
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#include "m_pd.h"
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#include <math.h>
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#include <stdio.h>
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/* These pragmas are only used for MSVC, not MinGW or Cygwin <hans@at.or.at> */
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#ifdef _MSC_VER
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#pragma warning( disable : 4244 )
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#pragma warning( disable : 4305 )
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#endif
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static t_class *pique_class;
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typedef struct _pique
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{
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t_object x_obj;
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int x_n;
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t_float x_errthresh;
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t_float *x_freq;
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t_float *x_amp;
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t_float *x_ampre;
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t_float *x_ampim;
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} t_pique;
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static void *pique_new(t_floatarg f)
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{
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int n = f;
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t_pique *x = (t_pique *)pd_new(pique_class);
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if (n < 1) n = 100;
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x->x_n = n;
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x->x_errthresh = 0;
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x->x_freq = t_getbytes(n * sizeof(*x->x_freq));
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x->x_amp = t_getbytes(n * sizeof(*x->x_amp));
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x->x_ampre = t_getbytes(n * sizeof(*x->x_ampre));
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x->x_ampim = t_getbytes(n * sizeof(*x->x_ampim));
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outlet_new(&x->x_obj, &s_list);
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return (x);
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}
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static t_float hanning(t_float pidetune, t_float sinpidetune)
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{
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t_float pi = 3.141592653589793;
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if (pidetune < 0.01 && pidetune > -0.01) return (1);
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else if (pidetune > 3.14 && pidetune < 3.143) return (0.5);
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else if (pidetune < -3.14 && pidetune > -3.143) return (0.5);
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else return (sinpidetune/pidetune - 0.5 *
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(sinpidetune/(pidetune+pi) + sinpidetune/(pidetune-pi)));
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}
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static t_float peakerror(t_word *fpreal, t_word *fpimag, t_float pidetune,
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t_float norm, t_float peakreal, t_float peakimag)
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{
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t_float sinpidetune = sin(pidetune);
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t_float cospidetune = cos(pidetune);
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t_float windowshould = hanning(pidetune, sinpidetune);
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t_float realshould = windowshould * (
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peakreal * cospidetune + peakimag * sinpidetune);
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t_float imagshould = windowshould * (
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peakimag * cospidetune - peakreal * sinpidetune);
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t_float realgot = norm * (fpreal[0].w_float -
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0.5 * (fpreal[1].w_float + fpreal[-1].w_float));
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t_float imaggot = norm * (fpimag[0].w_float -
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0.5 * (fpimag[1].w_float + fpimag[-1].w_float));
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t_float realdev = realshould - realgot, imagdev = imagshould - imaggot;
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/* post("real %f->%f; imag %f->%f", realshould, realgot,
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imagshould, imaggot); */
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return (realdev * realdev + imagdev * imagdev);
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}
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static void pique_doit(int npts, t_word *fpreal, t_word *fpimag,
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int npeak, int *nfound, t_float *fpfreq, t_float *fpamp,
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t_float *fpampre, t_float *fpampim, t_float errthresh)
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{
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t_float srate = sys_getsr(); /* not sure how to get this correctly */
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t_float oneovern = 1.0/ (t_float)npts;
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t_float fperbin = srate * oneovern;
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t_float pow1, pow2 = 0, pow3 = 0, pow4 = 0, pow5 = 0;
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t_float re1, re2 = 0, re3 = fpreal->w_float;
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t_float im1, im2 = 0, im3 = 0, powthresh, relativeerror;
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int count, peakcount = 0, n2 = (npts >> 1);
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t_float *fp1, *fp2;
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t_word *wp1, *wp2;
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for (count = n2, wp1 = fpreal, wp2 = fpimag, powthresh = 0;
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count--; wp1++, wp2++)
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powthresh += (wp1->w_float) * (wp1->w_float) +
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(wp2->w_float) * (wp2->w_float) ;
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powthresh *= 0.00001;
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for (count = 1; count < n2; count++)
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{
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t_float windreal, windimag, pi = 3.141592653589793;
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t_float detune, pidetune, sinpidetune, cospidetune,
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ampcorrect, freqout, ampout, ampoutreal, ampoutimag;
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t_float rpeak, rpeaknext, rpeakprev;
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t_float ipeak, ipeaknext, ipeakprev;
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t_float errleft, errright;
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fpreal++;
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fpimag++;
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re1 = re2;
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re2 = re3;
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re3 = fpreal->w_float;
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im1 = im2;
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im2 = im3;
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im3 = fpimag->w_float;
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if (count < 2) continue;
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pow1 = pow2;
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pow2 = pow3;
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pow3 = pow4;
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pow4 = pow5;
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/* get Hanning-windowed spectrum by convolution */
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windreal = re2 - 0.5 * (re1 + re3);
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windimag = im2 - 0.5 * (im1 + im3);
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pow5 = windreal * windreal + windimag * windimag;
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/* if (count < 30) post("power %f", pow5); */
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if (count < 5) continue;
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/* check for a peak. The actual bin is count-3. */
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if (pow3 <= pow2 || pow3 <= pow4 || pow3 <= pow1 || pow3 <= pow5
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|| pow3 < powthresh)
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continue;
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/* go back for the raw FFT values around the peak. */
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rpeak = fpreal[-3].w_float;
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rpeaknext = fpreal[-2].w_float;
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rpeakprev = fpreal[-4].w_float;
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ipeak = fpimag[-3].w_float;
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ipeaknext = fpimag[-2].w_float;
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ipeakprev = fpimag[-4].w_float;
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/* recalculate Hanning-windowed spectrum by convolution */
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windreal = rpeak - 0.5 * (rpeaknext + rpeakprev);
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windimag = ipeak - 0.5 * (ipeaknext + ipeakprev);
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detune = ((rpeakprev - rpeaknext) *
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(2.0 * rpeak - rpeakprev - rpeaknext) +
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(ipeakprev - ipeaknext) *
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(2.0 * ipeak - ipeakprev - ipeaknext)) /
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(4.0 * pow3);
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/* if (count < 30) post("detune %f", detune); */
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if (detune > 0.7 || detune < -0.7) continue;
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/* the frequency is the sum of the bin frequency and detuning */
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freqout = fperbin * ((t_float)(count-3) + detune);
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pidetune = pi * detune;
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sinpidetune = sin(pidetune);
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cospidetune = cos(pidetune);
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ampcorrect = 1.0 / hanning(pidetune, sinpidetune);
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/* Multiply by 2 to get real-sinusoid peak amplitude
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and divide by N to normalize FFT */
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ampcorrect *= 2. * oneovern;
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/* amplitude is peak height, corrected for Hanning window shape */
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ampout = ampcorrect * sqrt(pow3);
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ampoutreal = ampcorrect *
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(windreal * cospidetune - windimag * sinpidetune);
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ampoutimag = ampcorrect *
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(windreal * sinpidetune + windimag * cospidetune);
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if (errthresh > 0)
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{
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/* post("peak %f %f", freqout, ampout); */
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errleft = peakerror(fpreal-4, fpimag-4, pidetune+pi,
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2. * oneovern, ampoutreal, ampoutimag);
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errright = peakerror(fpreal-2, fpimag-2, pidetune-pi,
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2. * oneovern, ampoutreal, ampoutimag);
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relativeerror = (errleft + errright)/(ampout * ampout);
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if (relativeerror > errthresh) continue;
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}
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/* post("power %f, error %f, relative %f",
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pow3, errleft + errright, relativeerror); */
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*fpfreq++ = freqout;
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*fpamp++ = ampout;
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*fpampre++ = ampoutreal;
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*fpampim++ = ampoutimag;
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if (++peakcount == npeak) break;
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}
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*nfound = peakcount;
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}
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static void pique_list(t_pique *x, t_symbol *s, int argc, t_atom *argv)
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{
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int npts = atom_getintarg(0, argc, argv);
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t_symbol *symreal = atom_getsymbolarg(1, argc, argv);
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t_symbol *symimag = atom_getsymbolarg(2, argc, argv);
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int npeak = atom_getintarg(3, argc, argv);
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int n;
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t_garray *a;
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t_word *fpreal, *fpimag;
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if (npts < 8 || npeak < 1) error("pique: bad npoints or npeak");
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if (npeak > x->x_n) npeak = x->x_n;
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if (!(a = (t_garray *)pd_findbyclass(symreal, garray_class)) ||
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!garray_getfloatwords(a, &n, &fpreal) ||
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n < npts)
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error("%s: missing or bad array", symreal->s_name);
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else if (!(a = (t_garray *)pd_findbyclass(symimag, garray_class)) ||
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!garray_getfloatwords(a, &n, &fpimag) ||
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n < npts)
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error("%s: missing or bad array", symimag->s_name);
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else
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{
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int nfound, i;
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t_float *fpfreq = x->x_freq;
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t_float *fpamp = x->x_amp;
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t_float *fpampre = x->x_ampre;
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t_float *fpampim = x->x_ampim;
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pique_doit(npts, fpreal, fpimag, npeak,
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&nfound, fpfreq, fpamp, fpampre, fpampim, x->x_errthresh);
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for (i = 0; i < nfound; i++, fpamp++, fpfreq++, fpampre++, fpampim++)
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{
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t_atom at[5];
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SETFLOAT(at, (t_float)i);
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SETFLOAT(at+1, *fpfreq);
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SETFLOAT(at+2, *fpamp);
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SETFLOAT(at+3, *fpampre);
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SETFLOAT(at+4, *fpampim);
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outlet_list(x->x_obj.ob_outlet, &s_list, 5, at);
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}
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}
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}
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static void pique_errthresh(t_pique *x, t_floatarg f)
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{
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x->x_errthresh = f;
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}
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static void pique_free(t_pique *x)
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{
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int n = x->x_n;
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t_freebytes(x->x_freq, n * sizeof(*x->x_freq));
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t_freebytes(x->x_amp, n * sizeof(*x->x_amp));
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t_freebytes(x->x_ampre, n * sizeof(*x->x_ampre));
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t_freebytes(x->x_ampim, n * sizeof(*x->x_ampim));
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}
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void pique_setup(void)
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{
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pique_class = class_new(gensym("pique"), (t_newmethod)pique_new,
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(t_method)pique_free, sizeof(t_pique),0, A_DEFFLOAT, 0);
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class_addlist(pique_class, pique_list);
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class_addmethod(pique_class, (t_method)pique_errthresh,
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gensym("errthresh"), A_FLOAT, 0);
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post("pique 0.1 for PD version 23");
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}
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