2005-06-13 22:11:33 -04:00
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/*
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* fft.c
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*
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* Original code by ulrich@Gaston.westfalen.de (Heinz Ulrich Stille).
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*
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* $Id: fft.c,v 1.5 1999/03/16 09:59:19 marcs Exp $
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*
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*/
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2005-06-13 22:40:07 -04:00
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#include <stdio.h>
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#include <string.h>
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#include <math.h>
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#include "pvf.h"
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2005-06-13 22:11:33 -04:00
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static void fft (float *real, float *imag, int n)
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{
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float a;
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float tr;
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float ti;
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float wr;
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float wi;
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int mr = 0;
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int l;
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int istep;
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int m;
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int i;
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int j;
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for (m = 1; m <= (n - 1); m++)
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{
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l = n / 2;
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while ((mr + l) > (n - 1))
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l /= 2;
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mr = (mr % l) + l;
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if (mr > m)
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{
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tr = real[m];
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real[m] = real[mr];
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real[mr] = tr;
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ti = imag[m];
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imag[m] = imag[mr];
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imag[mr] = ti;
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}
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}
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for (l = 1; l < n; l = istep)
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{
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istep = 2 * l;
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for (m = 1; m <= l; m++)
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{
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a = -M_PI * (m - 1.0) / l;
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wr = cos(a);
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wi = sin(a);
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i = m - 1;
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do
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{
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j = i + l;
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tr = wr * real[j] - wi * imag[j];
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ti = wr * imag[j] + wi * real[j];
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real[j] = real[i] - tr;
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imag[j] = imag[i] - ti;
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real[i] += tr;
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imag[i] += ti;
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i += istep;
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}
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while (i < n);
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}
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}
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}
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int pvffft (FILE *fd_in, pvf_header *header_in, int skip, int sample_size,
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double threshold, int vgetty_pid, int display)
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{
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/*
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* Read pvf data, transform it into amplitude data and
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* compute an index for the distribution of energy over the
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* frequencies.
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*/
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int i;
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int data;
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float val;
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float sum = 0.0;
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float max = 0.0;
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float *real;
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float *imag;
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for (i = sample_size; i > 0; i >>= 1)
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{
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if (((i & 0x01) != 0) && (i != 1))
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{
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fprintf(stderr, "%s: sample size (%d) must be a power of 2\n",
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2005-06-13 22:40:07 -04:00
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"libpvf", sample_size);
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return(0);
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2005-06-13 22:11:33 -04:00
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}
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}
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real = malloc((sample_size + 8) * sizeof(float));
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imag = malloc((sample_size + 8) * sizeof(float));
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if ((real == NULL) || (imag == NULL))
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{
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2005-06-13 22:40:07 -04:00
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fprintf(stderr, "%s: not enough memory\n", "libpvf");
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return(0);
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2005-06-13 22:11:33 -04:00
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}
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for(i = 0; i < sample_size; i++)
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{
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real[i] = 0;
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imag[i] = 0;
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}
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/*
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* skip the first few seconds
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*/
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for (i = 0; i < skip; i++)
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data = header_in->read_pvf_data(fd_in);
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/*
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* store a few seconds' worth of data
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*/
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for (i = 0; i < sample_size; i++)
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{
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real[i] = (float) header_in->read_pvf_data(fd_in);
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if (feof(fd_in))
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{
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/*
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* assume it isn't data
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*/
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fprintf(stderr, "%s: not enough samples available\n",
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2005-06-13 22:40:07 -04:00
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"libpvf");
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return(0);
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2005-06-13 22:11:33 -04:00
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}
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}
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/*
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* tell the calling process that it can stop writing
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*/
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if (vgetty_pid > 0)
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kill(vgetty_pid, SIGPIPE);
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/*
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* note that it will get another sigpipe once this is
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* really finished - a close won't do since other processes
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* (i.e. the calling shell) will still have the fd opened.
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*/
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fft(real, imag, sample_size);
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for (i = 10; i < sample_size; i++)
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{
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val = sqrt(real[i] * real[i] + imag[i] * imag[i]);
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sum += val;
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if (val > max)
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max = val;
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}
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sum /= sample_size;
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if (max > 1e-10)
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sum /= max;
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if (vgetty_pid > 0)
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{
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if (sum < threshold)
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kill(vgetty_pid, SIGUSR2);
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2005-06-13 22:40:07 -04:00
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return(1);
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2005-06-13 22:11:33 -04:00
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}
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if (display)
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{
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for (i = 10; i < (sample_size >> 1); i++)
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printf("%f %f\n", ((double) i / sample_size) *
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header_in->speed, sqrt(real[i] * real[i] +
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imag[i] * imag[i]) / max);
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2005-06-13 22:40:07 -04:00
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return(1);
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2005-06-13 22:11:33 -04:00
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};
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2005-06-13 22:40:07 -04:00
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printf("%s: FFT level is %g\n", "libpvf", sum);
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return(1);
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2005-06-13 22:11:33 -04:00
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}
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