forked from Mirrors/freeswitch
467 lines
14 KiB
C
467 lines
14 KiB
C
/*
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** Copyright (C) 1999-2013 Erik de Castro Lopo <erikd@mega-nerd.com>
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** Copyright (C) 2008 George Blood Audio
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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 <ctype.h>
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#include <stdint.h>
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#include <sndfile.h>
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#include "common.h"
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#define BUFFER_LEN 4096
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#define MIN(x, y) ((x) < (y) ? (x) : (y))
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void
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sfe_copy_data_fp (SNDFILE *outfile, SNDFILE *infile, int channels, int normalize)
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{ static double data [BUFFER_LEN], max ;
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int frames, readcount, k ;
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frames = BUFFER_LEN / channels ;
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readcount = frames ;
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sf_command (infile, SFC_CALC_SIGNAL_MAX, &max, sizeof (max)) ;
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if (!normalize && max < 1.0)
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{ while (readcount > 0)
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{ readcount = sf_readf_double (infile, data, frames) ;
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sf_writef_double (outfile, data, readcount) ;
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} ;
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}
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else
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{ sf_command (infile, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ;
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while (readcount > 0)
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{ readcount = sf_readf_double (infile, data, frames) ;
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for (k = 0 ; k < readcount * channels ; k++)
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data [k] /= max ;
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sf_writef_double (outfile, data, readcount) ;
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} ;
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} ;
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return ;
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} /* sfe_copy_data_fp */
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void
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sfe_copy_data_int (SNDFILE *outfile, SNDFILE *infile, int channels)
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{ static int data [BUFFER_LEN] ;
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int frames, readcount ;
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frames = BUFFER_LEN / channels ;
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readcount = frames ;
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while (readcount > 0)
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{ readcount = sf_readf_int (infile, data, frames) ;
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sf_writef_int (outfile, data, readcount) ;
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} ;
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return ;
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} /* sfe_copy_data_int */
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/*==============================================================================
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*/
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static int
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merge_broadcast_info (SNDFILE * infile, SNDFILE * outfile, int format, const METADATA_INFO * info)
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{ SF_BROADCAST_INFO_2K binfo ;
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int infileminor ;
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memset (&binfo, 0, sizeof (binfo)) ;
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if ((SF_FORMAT_TYPEMASK & format) != SF_FORMAT_WAV)
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{ printf ("Error : This is not a WAV file and hence broadcast info cannot be added to it.\n\n") ;
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return 1 ;
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} ;
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infileminor = SF_FORMAT_SUBMASK & format ;
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switch (infileminor)
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{ case SF_FORMAT_PCM_16 :
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case SF_FORMAT_PCM_24 :
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case SF_FORMAT_PCM_32 :
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break ;
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default :
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printf (
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"Warning : The EBU Technical Recommendation R68-2000 states that the only\n"
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" allowed encodings are Linear PCM and MPEG3. This file is not in\n"
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" the right format.\n\n"
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) ;
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break ;
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} ;
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if (sf_command (infile, SFC_GET_BROADCAST_INFO, &binfo, sizeof (binfo)) == 0)
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{ if (infile == outfile)
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{ printf (
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"Error : Attempting in-place broadcast info update, but file does not\n"
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" have a 'bext' chunk to modify. The solution is to specify both\n"
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" input and output files on the command line.\n\n"
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) ;
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return 1 ;
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} ;
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} ;
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#define REPLACE_IF_NEW(x) \
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if (info->x != NULL) \
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{ memset (binfo.x, 0, sizeof (binfo.x)) ; \
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memcpy (binfo.x, info->x, MIN (strlen (info->x), sizeof (binfo.x))) ; \
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} ;
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REPLACE_IF_NEW (description) ;
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REPLACE_IF_NEW (originator) ;
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REPLACE_IF_NEW (originator_reference) ;
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REPLACE_IF_NEW (origination_date) ;
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REPLACE_IF_NEW (origination_time) ;
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REPLACE_IF_NEW (umid) ;
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/* Special case for Time Ref. */
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if (info->time_ref != NULL)
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{ uint64_t ts = atoll (info->time_ref) ;
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binfo.time_reference_high = (ts >> 32) ;
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binfo.time_reference_low = (ts & 0xffffffff) ;
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} ;
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/* Special case for coding_history because we may want to append. */
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if (info->coding_history != NULL)
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{ if (info->coding_hist_append)
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{ int slen = strlen (binfo.coding_history) ;
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while (slen > 1 && isspace (binfo.coding_history [slen - 1]))
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slen -- ;
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memcpy (binfo.coding_history + slen, info->coding_history, sizeof (binfo.coding_history) - slen) ;
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}
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else
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{ size_t slen = MIN (strlen (info->coding_history), sizeof (binfo.coding_history)) ;
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memset (binfo.coding_history, 0, sizeof (binfo.coding_history)) ;
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memcpy (binfo.coding_history, info->coding_history, slen) ;
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binfo.coding_history_size = slen ;
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} ;
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} ;
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if (sf_command (outfile, SFC_SET_BROADCAST_INFO, &binfo, sizeof (binfo)) == 0)
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{ printf ("Error : Setting of broadcast info chunks failed.\n\n") ;
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return 1 ;
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} ;
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return 0 ;
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} /* merge_broadcast_info*/
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static void
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update_strings (SNDFILE * outfile, const METADATA_INFO * info)
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{
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if (info->title != NULL)
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sf_set_string (outfile, SF_STR_TITLE, info->title) ;
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if (info->copyright != NULL)
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sf_set_string (outfile, SF_STR_COPYRIGHT, info->copyright) ;
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if (info->artist != NULL)
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sf_set_string (outfile, SF_STR_ARTIST, info->artist) ;
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if (info->comment != NULL)
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sf_set_string (outfile, SF_STR_COMMENT, info->comment) ;
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if (info->date != NULL)
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sf_set_string (outfile, SF_STR_DATE, info->date) ;
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if (info->album != NULL)
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sf_set_string (outfile, SF_STR_ALBUM, info->album) ;
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if (info->license != NULL)
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sf_set_string (outfile, SF_STR_LICENSE, info->license) ;
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} /* update_strings */
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void
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sfe_apply_metadata_changes (const char * filenames [2], const METADATA_INFO * info)
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{ SNDFILE *infile = NULL, *outfile = NULL ;
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SF_INFO sfinfo ;
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METADATA_INFO tmpinfo ;
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int error_code = 0 ;
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memset (&sfinfo, 0, sizeof (sfinfo)) ;
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memset (&tmpinfo, 0, sizeof (tmpinfo)) ;
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if (filenames [1] == NULL)
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infile = outfile = sf_open (filenames [0], SFM_RDWR, &sfinfo) ;
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else
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{ infile = sf_open (filenames [0], SFM_READ, &sfinfo) ;
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/* Output must be WAV. */
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sfinfo.format = SF_FORMAT_WAV | (SF_FORMAT_SUBMASK & sfinfo.format) ;
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outfile = sf_open (filenames [1], SFM_WRITE, &sfinfo) ;
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} ;
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if (infile == NULL)
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{ printf ("Error : Not able to open input file '%s' : %s\n", filenames [0], sf_strerror (infile)) ;
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error_code = 1 ;
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goto cleanup_exit ;
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} ;
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if (outfile == NULL)
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{ printf ("Error : Not able to open output file '%s' : %s\n", filenames [1], sf_strerror (outfile)) ;
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error_code = 1 ;
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goto cleanup_exit ;
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} ;
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if (info->has_bext_fields && merge_broadcast_info (infile, outfile, sfinfo.format, info))
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{ error_code = 1 ;
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goto cleanup_exit ;
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} ;
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if (infile != outfile)
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{ int infileminor = SF_FORMAT_SUBMASK & sfinfo.format ;
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/* If the input file is not the same as the output file, copy the data. */
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if ((infileminor == SF_FORMAT_DOUBLE) || (infileminor == SF_FORMAT_FLOAT))
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sfe_copy_data_fp (outfile, infile, sfinfo.channels, SF_FALSE) ;
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else
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sfe_copy_data_int (outfile, infile, sfinfo.channels) ;
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} ;
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update_strings (outfile, info) ;
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cleanup_exit :
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if (outfile != NULL && outfile != infile)
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sf_close (outfile) ;
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if (infile != NULL)
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sf_close (infile) ;
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if (error_code)
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exit (error_code) ;
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return ;
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} /* sfe_apply_metadata_changes */
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/*==============================================================================
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*/
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typedef struct
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{ const char *ext ;
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int len ;
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int format ;
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} OUTPUT_FORMAT_MAP ;
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static OUTPUT_FORMAT_MAP format_map [] =
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{
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{ "aif", 3, SF_FORMAT_AIFF },
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{ "wav", 0, SF_FORMAT_WAV },
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{ "au", 0, SF_FORMAT_AU },
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{ "caf", 0, SF_FORMAT_CAF },
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{ "flac", 0, SF_FORMAT_FLAC },
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{ "snd", 0, SF_FORMAT_AU },
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{ "svx", 0, SF_FORMAT_SVX },
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{ "paf", 0, SF_ENDIAN_BIG | SF_FORMAT_PAF },
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{ "fap", 0, SF_ENDIAN_LITTLE | SF_FORMAT_PAF },
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{ "gsm", 0, SF_FORMAT_RAW },
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{ "nist", 0, SF_FORMAT_NIST },
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{ "htk", 0, SF_FORMAT_HTK },
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{ "ircam", 0, SF_FORMAT_IRCAM },
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{ "sf", 0, SF_FORMAT_IRCAM },
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{ "voc", 0, SF_FORMAT_VOC },
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{ "w64", 0, SF_FORMAT_W64 },
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{ "raw", 0, SF_FORMAT_RAW },
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{ "mat4", 0, SF_FORMAT_MAT4 },
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{ "mat5", 0, SF_FORMAT_MAT5 },
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{ "mat", 0, SF_FORMAT_MAT4 },
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{ "pvf", 0, SF_FORMAT_PVF },
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{ "sds", 0, SF_FORMAT_SDS },
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{ "sd2", 0, SF_FORMAT_SD2 },
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{ "vox", 0, SF_FORMAT_RAW },
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{ "xi", 0, SF_FORMAT_XI },
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{ "wve", 0, SF_FORMAT_WVE },
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{ "oga", 0, SF_FORMAT_OGG },
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{ "ogg", 0, SF_FORMAT_OGG },
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{ "mpc", 0, SF_FORMAT_MPC2K },
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{ "rf64", 0, SF_FORMAT_RF64 },
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} ; /* format_map */
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int
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sfe_file_type_of_ext (const char *str, int format)
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{ char buffer [16], *cptr ;
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int k ;
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format &= SF_FORMAT_SUBMASK ;
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if ((cptr = strrchr (str, '.')) == NULL)
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return 0 ;
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strncpy (buffer, cptr + 1, 15) ;
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buffer [15] = 0 ;
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for (k = 0 ; buffer [k] ; k++)
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buffer [k] = tolower ((buffer [k])) ;
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if (strcmp (buffer, "gsm") == 0)
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return SF_FORMAT_RAW | SF_FORMAT_GSM610 ;
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if (strcmp (buffer, "vox") == 0)
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return SF_FORMAT_RAW | SF_FORMAT_VOX_ADPCM ;
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for (k = 0 ; k < (int) (sizeof (format_map) / sizeof (format_map [0])) ; k++)
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{ if (format_map [k].len > 0 && strncmp (buffer, format_map [k].ext, format_map [k].len) == 0)
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return format_map [k].format | format ;
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else if (strcmp (buffer, format_map [k].ext) == 0)
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return format_map [k].format | format ;
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} ;
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/* Default if all the above fails. */
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return (SF_FORMAT_WAV | SF_FORMAT_PCM_24) ;
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} /* sfe_file_type_of_ext */
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void
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sfe_dump_format_map (void)
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{ SF_FORMAT_INFO info ;
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int k ;
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for (k = 0 ; k < ARRAY_LEN (format_map) ; k++)
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{ info.format = format_map [k].format ;
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sf_command (NULL, SFC_GET_FORMAT_INFO, &info, sizeof (info)) ;
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printf (" %-10s : %s\n", format_map [k].ext, info.name == NULL ? "????" : info.name) ;
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} ;
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} /* sfe_dump_format_map */
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const char *
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program_name (const char * argv0)
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{ const char * tmp ;
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tmp = strrchr (argv0, '/') ;
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argv0 = tmp ? tmp + 1 : argv0 ;
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tmp = strrchr (argv0, '/') ;
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argv0 = tmp ? tmp + 1 : argv0 ;
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/* Remove leading libtool name mangling. */
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if (strstr (argv0, "lt-") == argv0)
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return argv0 + 3 ;
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return argv0 ;
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} /* program_name */
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const char *
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sfe_endian_name (int format)
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{
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switch (format & SF_FORMAT_ENDMASK)
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{ case SF_ENDIAN_FILE : return "file" ;
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case SF_ENDIAN_LITTLE : return "little" ;
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case SF_ENDIAN_BIG : return "big" ;
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case SF_ENDIAN_CPU : return "cpu" ;
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default : break ;
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} ;
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return "unknown" ;
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} /* sfe_endian_name */
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const char *
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sfe_container_name (int format)
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{
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switch (format & SF_FORMAT_TYPEMASK)
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{ case SF_FORMAT_WAV : return "WAV" ;
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case SF_FORMAT_AIFF : return "AIFF" ;
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case SF_FORMAT_AU : return "AU" ;
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case SF_FORMAT_RAW : return "RAW" ;
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case SF_FORMAT_PAF : return "PAF" ;
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case SF_FORMAT_SVX : return "SVX" ;
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case SF_FORMAT_NIST : return "NIST" ;
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case SF_FORMAT_VOC : return "VOC" ;
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case SF_FORMAT_IRCAM : return "IRCAM" ;
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case SF_FORMAT_W64 : return "W64" ;
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case SF_FORMAT_MAT4 : return "MAT4" ;
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case SF_FORMAT_MAT5 : return "MAT5" ;
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case SF_FORMAT_PVF : return "PVF" ;
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case SF_FORMAT_XI : return "XI" ;
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case SF_FORMAT_HTK : return "HTK" ;
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case SF_FORMAT_SDS : return "SDS" ;
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case SF_FORMAT_AVR : return "AVR" ;
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case SF_FORMAT_WAVEX : return "WAVEX" ;
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case SF_FORMAT_SD2 : return "SD2" ;
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case SF_FORMAT_FLAC : return "FLAC" ;
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case SF_FORMAT_CAF : return "CAF" ;
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case SF_FORMAT_WVE : return "WVE" ;
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case SF_FORMAT_OGG : return "OGG" ;
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case SF_FORMAT_MPC2K : return "MPC2K" ;
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case SF_FORMAT_RF64 : return "RF64" ;
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default : break ;
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} ;
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return "unknown" ;
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} /* sfe_container_name */
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const char *
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sfe_codec_name (int format)
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{
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switch (format & SF_FORMAT_SUBMASK)
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{ case SF_FORMAT_PCM_S8 : return "signed 8 bit PCM" ;
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case SF_FORMAT_PCM_16 : return "16 bit PCM" ;
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case SF_FORMAT_PCM_24 : return "24 bit PCM" ;
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case SF_FORMAT_PCM_32 : return "32 bit PCM" ;
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case SF_FORMAT_PCM_U8 : return "unsigned 8 bit PCM" ;
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case SF_FORMAT_FLOAT : return "32 bit float" ;
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case SF_FORMAT_DOUBLE : return "64 bit double" ;
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case SF_FORMAT_ULAW : return "u-law" ;
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case SF_FORMAT_ALAW : return "a-law" ;
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case SF_FORMAT_IMA_ADPCM : return "IMA ADPCM" ;
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case SF_FORMAT_MS_ADPCM : return "MS ADPCM" ;
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case SF_FORMAT_GSM610 : return "gsm610" ;
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case SF_FORMAT_VOX_ADPCM : return "Vox ADPCM" ;
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case SF_FORMAT_G721_32 : return "g721 32kbps" ;
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case SF_FORMAT_G723_24 : return "g723 24kbps" ;
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case SF_FORMAT_G723_40 : return "g723 40kbps" ;
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case SF_FORMAT_DWVW_12 : return "12 bit DWVW" ;
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case SF_FORMAT_DWVW_16 : return "16 bit DWVW" ;
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case SF_FORMAT_DWVW_24 : return "14 bit DWVW" ;
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case SF_FORMAT_DWVW_N : return "DWVW" ;
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case SF_FORMAT_DPCM_8 : return "8 bit DPCM" ;
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case SF_FORMAT_DPCM_16 : return "16 bit DPCM" ;
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case SF_FORMAT_VORBIS : return "Vorbis" ;
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case SF_FORMAT_ALAC_16 : return "16 bit ALAC" ;
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case SF_FORMAT_ALAC_20 : return "20 bit ALAC" ;
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case SF_FORMAT_ALAC_24 : return "24 bit ALAC" ;
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case SF_FORMAT_ALAC_32 : return "32 bit ALAC" ;
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default : break ;
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} ;
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return "unknown" ;
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} /* sfe_codec_name */
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