mirror of
https://gitee.com/openharmony/third_party_libsnd
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530 lines
16 KiB
C
530 lines
16 KiB
C
/*
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** Copyright (C) 1999-2019 Erik de Castro Lopo <erikd@mega-nerd.com>
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**
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** All rights reserved.
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**
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** Redistribution and use in source and binary forms, with or without
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** modification, are permitted provided that the following conditions are
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** met:
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**
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** * Redistributions of source code must retain the above copyright
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** notice, this list of conditions and the following disclaimer.
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** * Redistributions in binary form must reproduce the above copyright
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** notice, this list of conditions and the following disclaimer in
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** the documentation and/or other materials provided with the
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** distribution.
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** * Neither the author nor the names of any contributors may be used
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** to endorse or promote products derived from this software without
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** specific prior written permission.
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**
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** THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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** "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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** TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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** PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
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** CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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** EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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** PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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** OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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** WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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** OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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** ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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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 <inttypes.h>
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#include <ctype.h>
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#include <math.h>
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#include <sndfile.h>
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#include "common.h"
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#define BUFFER_LEN (1 << 16)
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#if (defined (WIN32) || defined (_WIN32))
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#include <windows.h>
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#endif
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static void usage_exit (const char *progname) ;
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static void info_dump (const char *filename) ;
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static int instrument_dump (const char *filename) ;
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static int broadcast_dump (const char *filename) ;
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static int chanmap_dump (const char *filename) ;
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static int cart_dump (const char *filename) ;
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static void total_dump (void) ;
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static double total_seconds = 0.0 ;
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int
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main (int argc, char *argv [])
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{ int k ;
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if (argc < 2 || strcmp (argv [1], "--help") == 0 || strcmp (argv [1], "-h") == 0)
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usage_exit (program_name (argv [0])) ;
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if (strcmp (argv [1], "--instrument") == 0)
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{ int error = 0 ;
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for (k = 2 ; k < argc ; k++)
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error += instrument_dump (argv [k]) ;
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return error ;
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} ;
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if (strcmp (argv [1], "--broadcast") == 0)
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{ int error = 0 ;
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for (k = 2 ; k < argc ; k++)
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error += broadcast_dump (argv [k]) ;
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return error ;
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} ;
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if (strcmp (argv [1], "--channel-map") == 0)
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{ int error = 0 ;
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for (k = 2 ; k < argc ; k++)
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error += chanmap_dump (argv [k]) ;
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return error ;
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} ;
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if (strcmp (argv [1], "--cart") == 0)
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{ int error = 0 ;
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for (k = 2 ; k < argc ; k++)
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error += cart_dump (argv [k]) ;
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return error ;
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} ;
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for (k = 1 ; k < argc ; k++)
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info_dump (argv [k]) ;
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if (argc > 2)
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total_dump () ;
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return 0 ;
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} /* main */
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/*==============================================================================
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** Print version and usage.
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*/
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static void
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usage_exit (const char *progname)
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{ printf ("Usage :\n %s <file> ...\n", progname) ;
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printf (" Prints out information about one or more sound files.\n\n") ;
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printf (" %s --instrument <file>\n", progname) ;
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printf (" Prints out the instrument data for the given file.\n\n") ;
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printf (" %s --broadcast <file>\n", progname) ;
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printf (" Prints out the broadcast WAV info for the given file.\n\n") ;
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printf (" %s --channel-map <file>\n", progname) ;
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printf (" Prints out the channel map for the given file.\n\n") ;
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printf (" %s --cart <file>\n", progname) ;
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printf (" Prints out the cart chunk WAV info for the given file.\n\n") ;
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printf ("Using %s.\n\n", sf_version_string ()) ;
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#if (defined (_WIN32) || defined (WIN32))
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printf ("This is a Unix style command line application which\n"
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"should be run in a MSDOS box or Command Shell window.\n\n") ;
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printf ("Sleeping for 5 seconds before exiting.\n\n") ;
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fflush (stdout) ;
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Sleep (5 * 1000) ;
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#endif
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exit (1) ;
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} /* usage_exit */
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/*==============================================================================
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** Dumping of sndfile info.
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*/
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static double data [BUFFER_LEN] ;
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static double
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calc_decibels (SF_INFO * sfinfo, double max)
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{ double decibels ;
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switch (sfinfo->format & SF_FORMAT_SUBMASK)
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{ case SF_FORMAT_PCM_U8 :
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case SF_FORMAT_PCM_S8 :
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decibels = max / 0x80 ;
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break ;
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case SF_FORMAT_PCM_16 :
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decibels = max / 0x8000 ;
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break ;
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case SF_FORMAT_PCM_24 :
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decibels = max / 0x800000 ;
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break ;
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case SF_FORMAT_PCM_32 :
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decibels = max / 0x80000000 ;
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break ;
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case SF_FORMAT_FLOAT :
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case SF_FORMAT_DOUBLE :
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case SF_FORMAT_VORBIS :
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case SF_FORMAT_OPUS :
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decibels = max / 1.0 ;
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break ;
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default :
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decibels = max / 0x8000 ;
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break ;
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} ;
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return 20.0 * log10 (decibels) ;
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} /* calc_decibels */
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static const char *
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format_duration_str (double seconds)
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{ static char str [128] ;
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int hrs, min ;
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double sec ;
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memset (str, 0, sizeof (str)) ;
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hrs = (int) (seconds / 3600.0) ;
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min = (int) ((seconds - (hrs * 3600.0)) / 60.0) ;
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sec = seconds - (hrs * 3600.0) - (min * 60.0) ;
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snprintf (str, sizeof (str) - 1, "%02d:%02d:%06.3f", hrs, min, sec) ;
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return str ;
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} /* format_duration_str */
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static const char *
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generate_duration_str (SF_INFO *sfinfo)
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{
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double seconds ;
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if (sfinfo->samplerate < 1)
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return NULL ;
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if (sfinfo->frames / sfinfo->samplerate > 0x7FFFFFFF)
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return "unknown" ;
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seconds = (1.0 * sfinfo->frames) / sfinfo->samplerate ;
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/* Accumulate the total of all known file durations */
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total_seconds += seconds ;
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return format_duration_str (seconds) ;
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} /* generate_duration_str */
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static void
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info_dump (const char *filename)
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{ static char strbuffer [BUFFER_LEN] ;
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SNDFILE *file ;
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SF_INFO sfinfo ;
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double signal_max, decibels ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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if ((file = sf_open (filename, SFM_READ, &sfinfo)) == NULL)
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{ printf ("Error : Not able to open input file %s.\n", filename) ;
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fflush (stdout) ;
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memset (data, 0, sizeof (data)) ;
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sf_command (file, SFC_GET_LOG_INFO, strbuffer, BUFFER_LEN) ;
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puts (strbuffer) ;
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puts (sf_strerror (NULL)) ;
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return ;
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} ;
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printf ("========================================\n") ;
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sf_command (file, SFC_GET_LOG_INFO, strbuffer, BUFFER_LEN) ;
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puts (strbuffer) ;
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printf ("----------------------------------------\n") ;
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printf ("Sample Rate : %d\n", sfinfo.samplerate) ;
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if (sfinfo.frames == SF_COUNT_MAX)
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printf ("Frames : unknown\n") ;
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else
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printf ("Frames : %" PRId64 "\n", sfinfo.frames) ;
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printf ("Channels : %d\n", sfinfo.channels) ;
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printf ("Format : 0x%08X\n", sfinfo.format) ;
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printf ("Sections : %d\n", sfinfo.sections) ;
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printf ("Seekable : %s\n", (sfinfo.seekable ? "TRUE" : "FALSE")) ;
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printf ("Duration : %s\n", generate_duration_str (&sfinfo)) ;
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if (sfinfo.frames < 100 * 1024 * 1024)
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{ /* Do not use sf_signal_max because it doesn't work for non-seekable files . */
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sf_command (file, SFC_CALC_SIGNAL_MAX, &signal_max, sizeof (signal_max)) ;
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decibels = calc_decibels (&sfinfo, signal_max) ;
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printf ("Signal Max : %g (%4.2f dB)\n", signal_max, decibels) ;
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} ;
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putchar ('\n') ;
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sf_close (file) ;
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} /* info_dump */
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/*==============================================================================
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** Dumping of SF_INSTRUMENT data.
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*/
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static const char *
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str_of_type (int mode)
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{ switch (mode)
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{ case SF_LOOP_NONE : return "none" ;
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case SF_LOOP_FORWARD : return "fwd " ;
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case SF_LOOP_BACKWARD : return "back" ;
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case SF_LOOP_ALTERNATING : return "alt " ;
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default : break ;
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} ;
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return "????" ;
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} /* str_of_mode */
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static int
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instrument_dump (const char *filename)
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{ SNDFILE *file ;
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SF_INFO sfinfo ;
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SF_INSTRUMENT inst ;
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int got_inst, k ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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if ((file = sf_open (filename, SFM_READ, &sfinfo)) == NULL)
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{ printf ("Error : Not able to open input file %s.\n", filename) ;
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fflush (stdout) ;
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memset (data, 0, sizeof (data)) ;
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puts (sf_strerror (NULL)) ;
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return 1 ;
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} ;
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got_inst = sf_command (file, SFC_GET_INSTRUMENT, &inst, sizeof (inst)) ;
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sf_close (file) ;
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if (got_inst == SF_FALSE)
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{ printf ("Error : File '%s' does not contain instrument data.\n\n", filename) ;
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return 1 ;
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} ;
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printf ("Instrument : %s\n\n", filename) ;
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printf (" Gain : %d\n", inst.gain) ;
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printf (" Base note : %d\n", inst.basenote) ;
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printf (" Velocity : %d - %d\n", (int) inst.velocity_lo, (int) inst.velocity_hi) ;
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printf (" Key : %d - %d\n", (int) inst.key_lo, (int) inst.key_hi) ;
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printf (" Loop points : %d\n", inst.loop_count) ;
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for (k = 0 ; k < inst.loop_count ; k++)
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printf (" %-2d Mode : %s Start : %6" PRIu32 " End : %6" PRIu32
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" Count : %6" PRIu32 "\n", k, str_of_type (inst.loops [k].mode),
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inst.loops [k].start, inst.loops [k].end, inst.loops [k].count) ;
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putchar ('\n') ;
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return 0 ;
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} /* instrument_dump */
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static int
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broadcast_dump (const char *filename)
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{ SNDFILE *file ;
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SF_INFO sfinfo ;
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SF_BROADCAST_INFO_2K bext ;
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double time_ref_sec ;
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int got_bext ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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if ((file = sf_open (filename, SFM_READ, &sfinfo)) == NULL)
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{ printf ("Error : Not able to open input file %s.\n", filename) ;
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fflush (stdout) ;
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memset (data, 0, sizeof (data)) ;
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puts (sf_strerror (NULL)) ;
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return 1 ;
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} ;
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memset (&bext, 0, sizeof (SF_BROADCAST_INFO_2K)) ;
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got_bext = sf_command (file, SFC_GET_BROADCAST_INFO, &bext, sizeof (bext)) ;
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sf_close (file) ;
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if (got_bext == SF_FALSE)
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{ printf ("Error : File '%s' does not contain broadcast information.\n\n", filename) ;
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return 1 ;
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} ;
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/*
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** From : http://www.ebu.ch/en/technical/publications/userguides/bwf_user_guide.php
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**
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** Time Reference:
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** This field is a count from midnight in samples to the first sample
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** of the audio sequence.
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*/
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time_ref_sec = ((pow (2.0, 32) * bext.time_reference_high) + (1.0 * bext.time_reference_low)) / sfinfo.samplerate ;
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printf ("Description : %.*s\n", (int) sizeof (bext.description), bext.description) ;
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printf ("Originator : %.*s\n", (int) sizeof (bext.originator), bext.originator) ;
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printf ("Origination ref : %.*s\n", (int) sizeof (bext.originator_reference), bext.originator_reference) ;
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printf ("Origination date : %.*s\n", (int) sizeof (bext.origination_date), bext.origination_date) ;
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printf ("Origination time : %.*s\n", (int) sizeof (bext.origination_time), bext.origination_time) ;
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if (bext.time_reference_high == 0 && bext.time_reference_low == 0)
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printf ("Time ref : 0\n") ;
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else
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printf ("Time ref : 0x%x%08x (%.6f seconds)\n", bext.time_reference_high, bext.time_reference_low, time_ref_sec) ;
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printf ("BWF version : %d\n", bext.version) ;
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if (bext.version >= 1)
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printf ("UMID : %.*s\n", (int) sizeof (bext.umid), bext.umid) ;
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if (bext.version >= 2)
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{ /* 0x7fff shall be used to designate an unused value */
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/* valid range: -99.99 .. 99.99 */
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printf ("Loudness value : %6.2f LUFS\n", bext.loudness_value / 100.0) ;
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/* valid range: 0.00 .. 99.99 */
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printf ("Loudness range : %6.2f LU\n", bext.loudness_range / 100.0) ;
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/* valid range: -99.99 .. 99.99 */
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printf ("Max. true peak level : %6.2f dBTP\n", bext.max_true_peak_level / 100.0) ;
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printf ("Max. momentary loudness : %6.2f LUFS\n", bext.max_momentary_loudness / 100.0) ;
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printf ("Max. short term loudness : %6.2f LUFS\n", bext.max_shortterm_loudness / 100.0) ;
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} ;
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printf ("Coding history : %.*s\n", bext.coding_history_size, bext.coding_history) ;
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return 0 ;
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} /* broadcast_dump */
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static int
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chanmap_dump (const char *filename)
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{ SNDFILE *file ;
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SF_INFO sfinfo ;
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int * channel_map ;
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int got_chanmap, k ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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if ((file = sf_open (filename, SFM_READ, &sfinfo)) == NULL)
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{ printf ("Error : Not able to open input file %s.\n", filename) ;
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fflush (stdout) ;
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memset (data, 0, sizeof (data)) ;
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puts (sf_strerror (NULL)) ;
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return 1 ;
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} ;
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if ((channel_map = calloc (sfinfo.channels, sizeof (int))) == NULL)
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{ printf ("Error : malloc failed.\n\n") ;
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return 1 ;
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} ;
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got_chanmap = sf_command (file, SFC_GET_CHANNEL_MAP_INFO, channel_map, sfinfo.channels * sizeof (int)) ;
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sf_close (file) ;
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if (got_chanmap == SF_FALSE)
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{ printf ("Error : File '%s' does not contain channel map information.\n\n", filename) ;
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free (channel_map) ;
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return 1 ;
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} ;
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printf ("File : %s\n\n", filename) ;
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puts (" Chan Position") ;
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for (k = 0 ; k < sfinfo.channels ; k ++)
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{ const char * name ;
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#define CASE_NAME(x) case x : name = #x ; break ;
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switch (channel_map [k])
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{ CASE_NAME (SF_CHANNEL_MAP_INVALID) ;
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CASE_NAME (SF_CHANNEL_MAP_MONO) ;
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CASE_NAME (SF_CHANNEL_MAP_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_FRONT_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_FRONT_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_FRONT_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_REAR_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_REAR_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_REAR_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_LFE) ;
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CASE_NAME (SF_CHANNEL_MAP_FRONT_LEFT_OF_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_FRONT_RIGHT_OF_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_SIDE_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_SIDE_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_FRONT_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_FRONT_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_FRONT_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_REAR_LEFT) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_REAR_RIGHT) ;
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CASE_NAME (SF_CHANNEL_MAP_TOP_REAR_CENTER) ;
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CASE_NAME (SF_CHANNEL_MAP_MAX) ;
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default : name = "default" ;
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break ;
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} ;
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printf (" %3d %s\n", k, name) ;
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} ;
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putchar ('\n') ;
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free (channel_map) ;
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return 0 ;
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} /* chanmap_dump */
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static int
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cart_dump (const char *filename)
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{ SNDFILE *file ;
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SF_INFO sfinfo ;
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SF_CART_INFO_VAR (1024) cart ;
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int got_cart, k ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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memset (&cart, 0, sizeof (cart)) ;
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if ((file = sf_open (filename, SFM_READ, &sfinfo)) == NULL)
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{ printf ("Error : Not able to open input file %s.\n", filename) ;
|
|
fflush (stdout) ;
|
|
memset (data, 0, sizeof (data)) ;
|
|
puts (sf_strerror (NULL)) ;
|
|
return 1 ;
|
|
} ;
|
|
|
|
got_cart = sf_command (file, SFC_GET_CART_INFO, &cart, sizeof (cart)) ;
|
|
sf_close (file) ;
|
|
|
|
if (got_cart == SF_FALSE)
|
|
{ printf ("Error : File '%s' does not contain cart information.\n\n", filename) ;
|
|
return 1 ;
|
|
} ;
|
|
|
|
printf ("Version : %.*s\n", (int) sizeof (cart.version), cart.version) ;
|
|
printf ("Title : %.*s\n", (int) sizeof (cart.title), cart.title) ;
|
|
printf ("Artist : %.*s\n", (int) sizeof (cart.artist), cart.artist) ;
|
|
printf ("Cut id : %.*s\n", (int) sizeof (cart.cut_id), cart.cut_id) ;
|
|
printf ("Category : %.*s\n", (int) sizeof (cart.category), cart.category) ;
|
|
printf ("Classification : %.*s\n", (int) sizeof (cart.classification), cart.classification) ;
|
|
printf ("Out cue : %.*s\n", (int) sizeof (cart.out_cue), cart.out_cue) ;
|
|
printf ("Start date : %.*s\n", (int) sizeof (cart.start_date), cart.start_date) ;
|
|
printf ("Start time : %.*s\n", (int) sizeof (cart.start_time), cart.start_time) ;
|
|
printf ("End date : %.*s\n", (int) sizeof (cart.end_date), cart.end_date) ;
|
|
printf ("End time : %.*s\n", (int) sizeof (cart.end_time), cart.end_time) ;
|
|
printf ("App id : %.*s\n", (int) sizeof (cart.producer_app_id), cart.producer_app_id) ;
|
|
printf ("App version : %.*s\n", (int) sizeof (cart.producer_app_version), cart.producer_app_version) ;
|
|
printf ("User defined : %.*s\n", (int) sizeof (cart.user_def), cart.user_def) ;
|
|
printf ("Level ref. : %d\n", cart.level_reference) ;
|
|
printf ("Post timers :\n") ;
|
|
|
|
for (k = 0 ; k < ARRAY_LEN (cart.post_timers) ; k++)
|
|
if (cart.post_timers [k].usage [0])
|
|
printf (" %d %.*s %d\n", k, (int) sizeof (cart.post_timers [k].usage), cart.post_timers [k].usage, cart.post_timers [k].value) ;
|
|
|
|
printf ("Reserved : %.*s\n", (int) sizeof (cart.reserved), cart.reserved) ;
|
|
printf ("Url : %.*s\n", (int) sizeof (cart.url), cart.url) ;
|
|
printf ("Tag text : %.*s\n", cart.tag_text_size, cart.tag_text) ;
|
|
|
|
return 0 ;
|
|
} /* cart_dump */
|
|
|
|
static void
|
|
total_dump (void)
|
|
{ printf ("========================================\n") ;
|
|
printf ("Total Duration : %s\n", format_duration_str (total_seconds)) ;
|
|
} /* total_dump */
|