mirror of https://github.com/AxioDL/boo.git
231 lines
5.5 KiB
C
231 lines
5.5 KiB
C
/*
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** Copyright (C) 2002-2011 Erik de Castro Lopo <erikd@mega-nerd.com>
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**
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** This program is free software; you can redistribute it and/or modify
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** it under the terms of the GNU General Public License as published by
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** the Free Software Foundation; either version 2 of the License, or
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** (at your option) any later version.
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**
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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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**
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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., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <ctype.h>
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#include <math.h>
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#include "util.h"
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#ifndef M_PI
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#define M_PI 3.14159265358979323846264338
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#endif
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void
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gen_windowed_sines (int freq_count, const double *freqs, double max, float *output, int output_len)
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{ int k, freq ;
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double amplitude, phase ;
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amplitude = max / freq_count ;
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for (k = 0 ; k < output_len ; k++)
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output [k] = 0.0 ;
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for (freq = 0 ; freq < freq_count ; freq++)
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{ phase = 0.9 * M_PI / freq_count ;
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if (freqs [freq] <= 0.0 || freqs [freq] >= 0.5)
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{ printf ("\n%s : Error : freq [%d] == %g is out of range. Should be < 0.5.\n", __FILE__, freq, freqs [freq]) ;
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exit (1) ;
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} ;
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for (k = 0 ; k < output_len ; k++)
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output [k] += amplitude * sin (freqs [freq] * (2 * k) * M_PI + phase) ;
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} ;
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/* Apply Hanning Window. */
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for (k = 0 ; k < output_len ; k++)
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output [k] *= 0.5 - 0.5 * cos ((2 * k) * M_PI / (output_len - 1)) ;
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/* data [k] *= 0.3635819 - 0.4891775 * cos ((2 * k) * M_PI / (output_len - 1))
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+ 0.1365995 * cos ((4 * k) * M_PI / (output_len - 1))
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- 0.0106411 * cos ((6 * k) * M_PI / (output_len - 1)) ;
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*/
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return ;
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} /* gen_windowed_sines */
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void
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save_oct_float (char *filename, float *input, int in_len, float *output, int out_len)
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{ FILE *file ;
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int k ;
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printf ("Dumping input and output data to file : %s.\n\n", filename) ;
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if (! (file = fopen (filename, "w")))
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return ;
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fprintf (file, "# Not created by Octave\n") ;
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fprintf (file, "# name: input\n") ;
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fprintf (file, "# type: matrix\n") ;
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fprintf (file, "# rows: %d\n", in_len) ;
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fprintf (file, "# columns: 1\n") ;
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for (k = 0 ; k < in_len ; k++)
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fprintf (file, "% g\n", input [k]) ;
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fprintf (file, "# name: output\n") ;
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fprintf (file, "# type: matrix\n") ;
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fprintf (file, "# rows: %d\n", out_len) ;
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fprintf (file, "# columns: 1\n") ;
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for (k = 0 ; k < out_len ; k++)
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fprintf (file, "% g\n", output [k]) ;
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fclose (file) ;
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return ;
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} /* save_oct_float */
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void
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save_oct_double (char *filename, double *input, int in_len, double *output, int out_len)
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{ FILE *file ;
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int k ;
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printf ("Dumping input and output data to file : %s.\n\n", filename) ;
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if (! (file = fopen (filename, "w")))
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return ;
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fprintf (file, "# Not created by Octave\n") ;
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fprintf (file, "# name: input\n") ;
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fprintf (file, "# type: matrix\n") ;
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fprintf (file, "# rows: %d\n", in_len) ;
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fprintf (file, "# columns: 1\n") ;
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for (k = 0 ; k < in_len ; k++)
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fprintf (file, "% g\n", input [k]) ;
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fprintf (file, "# name: output\n") ;
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fprintf (file, "# type: matrix\n") ;
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fprintf (file, "# rows: %d\n", out_len) ;
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fprintf (file, "# columns: 1\n") ;
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for (k = 0 ; k < out_len ; k++)
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fprintf (file, "% g\n", output [k]) ;
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fclose (file) ;
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return ;
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} /* save_oct_double */
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void
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interleave_data (const float *in, float *out, int frames, int channels)
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{ int fr, ch ;
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for (fr = 0 ; fr < frames ; fr++)
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for (ch = 0 ; ch < channels ; ch++)
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out [ch + channels * fr] = in [fr + frames * ch] ;
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return ;
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} /* interleave_data */
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void
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deinterleave_data (const float *in, float *out, int frames, int channels)
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{ int fr, ch ;
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for (ch = 0 ; ch < channels ; ch++)
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for (fr = 0 ; fr < frames ; fr++)
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out [fr + frames * ch] = in [ch + channels * fr] ;
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return ;
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} /* deinterleave_data */
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void
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reverse_data (float *data, int datalen)
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{ int left, right ;
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float temp ;
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left = 0 ;
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right = datalen - 1 ;
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while (left < right)
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{ temp = data [left] ;
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data [left] = data [right] ;
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data [right] = temp ;
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left ++ ;
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right -- ;
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} ;
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} /* reverse_data */
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const char *
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get_cpu_name (void)
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{
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const char *name = "Unknown", *search = NULL ;
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static char buffer [512] ;
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FILE * file = NULL ;
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int is_pipe = 0 ;
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#if defined (__linux__)
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file = fopen ("/proc/cpuinfo", "r") ;
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search = "model name" ;
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#elif defined (__APPLE__)
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file = popen ("/usr/sbin/system_profiler -detailLevel full SPHardwareDataType", "r") ;
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search = "Processor Name" ;
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is_pipe = 1 ;
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#elif defined (__FreeBSD__)
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file = popen ("sysctl -a", "r") ;
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search = "hw.model" ;
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is_pipe = 1 ;
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#else
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file = NULL ;
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#endif
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if (file == NULL)
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return name ;
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if (search == NULL)
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{ printf ("Error : search is NULL in function %s.\n", __func__) ;
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return name ;
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} ;
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while (fgets (buffer, sizeof (buffer), file) != NULL)
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if (strstr (buffer, search))
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{ char *src, *dest ;
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if ((src = strchr (buffer, ':')) != NULL)
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{ src ++ ;
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while (isspace (src [0]))
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src ++ ;
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name = src ;
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/* Remove consecutive spaces. */
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src ++ ;
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for (dest = src ; src [0] ; src ++)
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{ if (isspace (src [0]) && isspace (dest [-1]))
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continue ;
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dest [0] = src [0] ;
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dest ++ ;
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} ;
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dest [0] = 0 ;
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break ;
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} ;
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} ;
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if (is_pipe)
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pclose (file) ;
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else
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fclose (file) ;
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return name ;
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} /* get_cpu_name */
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