831 lines
23 KiB
C
831 lines
23 KiB
C
/*
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** Copyright (C) 1999-2009 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 Lesser General Public License as published by
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** the Free Software Foundation; either version 2.1 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 Lesser General Public License for more details.
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**
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** You should have received a copy of the GNU Lesser 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 "sfconfig.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <fcntl.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 "sndfile.h"
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#include "sfendian.h"
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#include "common.h"
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/*------------------------------------------------------------------------------
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** Macros to handle big/little endian issues.
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*/
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#define FAP_MARKER (MAKE_MARKER ('f', 'a', 'p', ' '))
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#define PAF_MARKER (MAKE_MARKER (' ', 'p', 'a', 'f'))
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/*------------------------------------------------------------------------------
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** Other defines.
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*/
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#define PAF_HEADER_LENGTH 2048
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#define PAF24_SAMPLES_PER_BLOCK 10
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#define PAF24_BLOCK_SIZE 32
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/*------------------------------------------------------------------------------
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** Typedefs.
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*/
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typedef struct
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{ int version ;
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int endianness ;
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int samplerate ;
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int format ;
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int channels ;
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int source ;
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} PAF_FMT ;
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typedef struct
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{ int max_blocks, channels, samplesperblock, blocksize ;
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int read_block, write_block, read_count, write_count ;
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sf_count_t sample_count ;
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int *samples ;
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unsigned char *block ;
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#if HAVE_FLEXIBLE_ARRAY
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int data [] ; /* ISO C99 struct flexible array. */
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#else
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int data [1] ; /* This is a hack and may not work. */
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#endif
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} PAF24_PRIVATE ;
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/*------------------------------------------------------------------------------
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** Private static functions.
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*/
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static int paf24_init (SF_PRIVATE *psf) ;
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static int paf_read_header (SF_PRIVATE *psf) ;
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static int paf_write_header (SF_PRIVATE *psf, int calc_length) ;
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static sf_count_t paf24_read_s (SF_PRIVATE *psf, short *ptr, sf_count_t len) ;
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static sf_count_t paf24_read_i (SF_PRIVATE *psf, int *ptr, sf_count_t len) ;
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static sf_count_t paf24_read_f (SF_PRIVATE *psf, float *ptr, sf_count_t len) ;
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static sf_count_t paf24_read_d (SF_PRIVATE *psf, double *ptr, sf_count_t len) ;
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static sf_count_t paf24_write_s (SF_PRIVATE *psf, const short *ptr, sf_count_t len) ;
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static sf_count_t paf24_write_i (SF_PRIVATE *psf, const int *ptr, sf_count_t len) ;
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static sf_count_t paf24_write_f (SF_PRIVATE *psf, const float *ptr, sf_count_t len) ;
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static sf_count_t paf24_write_d (SF_PRIVATE *psf, const double *ptr, sf_count_t len) ;
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static sf_count_t paf24_seek (SF_PRIVATE *psf, int mode, sf_count_t offset) ;
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enum
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{ PAF_PCM_16 = 0,
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PAF_PCM_24 = 1,
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PAF_PCM_S8 = 2
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} ;
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/*------------------------------------------------------------------------------
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** Public function.
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*/
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int
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paf_open (SF_PRIVATE *psf)
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{ int subformat, error, endian ;
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psf->dataoffset = PAF_HEADER_LENGTH ;
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if (psf->mode == SFM_READ || (psf->mode == SFM_RDWR && psf->filelength > 0))
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{ if ((error = paf_read_header (psf)))
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return error ;
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} ;
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subformat = SF_CODEC (psf->sf.format) ;
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if (psf->mode == SFM_WRITE || psf->mode == SFM_RDWR)
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{ if ((SF_CONTAINER (psf->sf.format)) != SF_FORMAT_PAF)
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return SFE_BAD_OPEN_FORMAT ;
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endian = SF_ENDIAN (psf->sf.format) ;
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/* PAF is by default big endian. */
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psf->endian = SF_ENDIAN_BIG ;
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if (endian == SF_ENDIAN_LITTLE || (CPU_IS_LITTLE_ENDIAN && (endian == SF_ENDIAN_CPU)))
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psf->endian = SF_ENDIAN_LITTLE ;
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if ((error = paf_write_header (psf, SF_FALSE)))
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return error ;
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psf->write_header = paf_write_header ;
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} ;
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switch (subformat)
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{ case SF_FORMAT_PCM_S8 :
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psf->bytewidth = 1 ;
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error = pcm_init (psf) ;
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break ;
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case SF_FORMAT_PCM_16 :
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psf->bytewidth = 2 ;
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error = pcm_init (psf) ;
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break ;
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case SF_FORMAT_PCM_24 :
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/* No bytewidth because of whacky 24 bit encoding. */
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error = paf24_init (psf) ;
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break ;
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default : return SFE_PAF_UNKNOWN_FORMAT ;
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} ;
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return error ;
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} /* paf_open */
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/*------------------------------------------------------------------------------
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*/
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static int
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paf_read_header (SF_PRIVATE *psf)
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{ PAF_FMT paf_fmt ;
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int marker ;
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memset (&paf_fmt, 0, sizeof (paf_fmt)) ;
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psf_binheader_readf (psf, "pm", 0, &marker) ;
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psf_log_printf (psf, "Signature : '%M'\n", marker) ;
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if (marker == PAF_MARKER)
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{ psf_binheader_readf (psf, "E444444", &(paf_fmt.version), &(paf_fmt.endianness),
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&(paf_fmt.samplerate), &(paf_fmt.format), &(paf_fmt.channels), &(paf_fmt.source)) ;
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}
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else if (marker == FAP_MARKER)
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{ psf_binheader_readf (psf, "e444444", &(paf_fmt.version), &(paf_fmt.endianness),
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&(paf_fmt.samplerate), &(paf_fmt.format), &(paf_fmt.channels), &(paf_fmt.source)) ;
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}
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else
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return SFE_PAF_NO_MARKER ;
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psf_log_printf (psf, "Version : %d\n", paf_fmt.version) ;
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if (paf_fmt.version != 0)
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{ psf_log_printf (psf, "*** Bad version number. should be zero.\n") ;
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return SFE_PAF_VERSION ;
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} ;
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psf_log_printf (psf, "Sample Rate : %d\n", paf_fmt.samplerate) ;
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psf_log_printf (psf, "Channels : %d\n", paf_fmt.channels) ;
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psf_log_printf (psf, "Endianness : %d => ", paf_fmt.endianness) ;
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if (paf_fmt.endianness)
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{ psf_log_printf (psf, "Little\n", paf_fmt.endianness) ;
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psf->endian = SF_ENDIAN_LITTLE ;
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}
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else
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{ psf_log_printf (psf, "Big\n", paf_fmt.endianness) ;
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psf->endian = SF_ENDIAN_BIG ;
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} ;
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if (psf->filelength < PAF_HEADER_LENGTH)
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return SFE_PAF_SHORT_HEADER ;
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psf->datalength = psf->filelength - psf->dataoffset ;
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psf_binheader_readf (psf, "p", (int) psf->dataoffset) ;
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psf->sf.samplerate = paf_fmt.samplerate ;
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psf->sf.channels = paf_fmt.channels ;
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/* Only fill in type major. */
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psf->sf.format = SF_FORMAT_PAF ;
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psf_log_printf (psf, "Format : %d => ", paf_fmt.format) ;
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/* PAF is by default big endian. */
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psf->sf.format |= paf_fmt.endianness ? SF_ENDIAN_LITTLE : SF_ENDIAN_BIG ;
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switch (paf_fmt.format)
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{ case PAF_PCM_S8 :
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psf_log_printf (psf, "8 bit linear PCM\n") ;
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psf->bytewidth = 1 ;
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psf->sf.format |= SF_FORMAT_PCM_S8 ;
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psf->blockwidth = psf->bytewidth * psf->sf.channels ;
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psf->sf.frames = psf->datalength / psf->blockwidth ;
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break ;
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case PAF_PCM_16 :
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psf_log_printf (psf, "16 bit linear PCM\n") ;
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psf->bytewidth = 2 ;
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psf->sf.format |= SF_FORMAT_PCM_16 ;
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psf->blockwidth = psf->bytewidth * psf->sf.channels ;
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psf->sf.frames = psf->datalength / psf->blockwidth ;
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break ;
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case PAF_PCM_24 :
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psf_log_printf (psf, "24 bit linear PCM\n") ;
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psf->bytewidth = 3 ;
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psf->sf.format |= SF_FORMAT_PCM_24 ;
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psf->blockwidth = 0 ;
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psf->sf.frames = PAF24_SAMPLES_PER_BLOCK * psf->datalength /
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(PAF24_BLOCK_SIZE * psf->sf.channels) ;
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break ;
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default : psf_log_printf (psf, "Unknown\n") ;
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return SFE_PAF_UNKNOWN_FORMAT ;
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break ;
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} ;
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psf_log_printf (psf, "Source : %d => ", paf_fmt.source) ;
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switch (paf_fmt.source)
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{ case 1 : psf_log_printf (psf, "Analog Recording\n") ;
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break ;
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case 2 : psf_log_printf (psf, "Digital Transfer\n") ;
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break ;
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case 3 : psf_log_printf (psf, "Multi-track Mixdown\n") ;
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break ;
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case 5 : psf_log_printf (psf, "Audio Resulting From DSP Processing\n") ;
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break ;
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default : psf_log_printf (psf, "Unknown\n") ;
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break ;
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} ;
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return 0 ;
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} /* paf_read_header */
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static int
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paf_write_header (SF_PRIVATE *psf, int UNUSED (calc_length))
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{ int paf_format ;
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/* PAF header already written so no need to re-write. */
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if (psf_ftell (psf) >= PAF_HEADER_LENGTH)
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return 0 ;
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psf->dataoffset = PAF_HEADER_LENGTH ;
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switch (SF_CODEC (psf->sf.format))
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{ case SF_FORMAT_PCM_S8 :
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paf_format = PAF_PCM_S8 ;
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break ;
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case SF_FORMAT_PCM_16 :
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paf_format = PAF_PCM_16 ;
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break ;
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case SF_FORMAT_PCM_24 :
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paf_format = PAF_PCM_24 ;
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break ;
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default : return SFE_PAF_UNKNOWN_FORMAT ;
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} ;
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/* Reset the current header length to zero. */
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psf->header [0] = 0 ;
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psf->headindex = 0 ;
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if (psf->endian == SF_ENDIAN_BIG)
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{ /* Marker, version, endianness, samplerate */
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psf_binheader_writef (psf, "Em444", PAF_MARKER, 0, 0, psf->sf.samplerate) ;
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/* format, channels, source */
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psf_binheader_writef (psf, "E444", paf_format, psf->sf.channels, 0) ;
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}
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else if (psf->endian == SF_ENDIAN_LITTLE)
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{ /* Marker, version, endianness, samplerate */
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psf_binheader_writef (psf, "em444", FAP_MARKER, 0, 1, psf->sf.samplerate) ;
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/* format, channels, source */
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psf_binheader_writef (psf, "e444", paf_format, psf->sf.channels, 0) ;
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} ;
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/* Zero fill to dataoffset. */
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psf_binheader_writef (psf, "z", (size_t) (psf->dataoffset - psf->headindex)) ;
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psf_fwrite (psf->header, psf->headindex, 1, psf) ;
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return psf->error ;
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} /* paf_write_header */
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/*===============================================================================
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** 24 bit PAF files have a really weird encoding.
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** For a mono file, 10 samples (each being 3 bytes) are packed into a 32 byte
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** block. The 8 ints in this 32 byte block are then endian swapped (as ints)
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** if necessary before being written to disk.
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** For a stereo file, blocks of 10 samples from the same channel are encoded
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** into 32 bytes as for the mono case. The 32 byte blocks are then interleaved
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** on disk.
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** Reading has to reverse the above process :-).
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** Weird!!!
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**
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** The code below attempts to gain efficiency while maintaining readability.
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*/
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static int paf24_read_block (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24) ;
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static int paf24_write_block (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24) ;
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static int paf24_close (SF_PRIVATE *psf) ;
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static int
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paf24_init (SF_PRIVATE *psf)
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{ PAF24_PRIVATE *ppaf24 ;
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int paf24size ;
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paf24size = sizeof (PAF24_PRIVATE) + psf->sf.channels *
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(PAF24_BLOCK_SIZE + PAF24_SAMPLES_PER_BLOCK * sizeof (int)) ;
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/*
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** Not exatly sure why this needs to be here but the tests
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** fail without it.
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*/
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psf->last_op = 0 ;
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if (! (psf->codec_data = malloc (paf24size)))
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return SFE_MALLOC_FAILED ;
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ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
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memset (ppaf24, 0, paf24size) ;
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ppaf24->channels = psf->sf.channels ;
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ppaf24->samples = ppaf24->data ;
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ppaf24->block = (unsigned char*) (ppaf24->data + PAF24_SAMPLES_PER_BLOCK * ppaf24->channels) ;
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ppaf24->blocksize = PAF24_BLOCK_SIZE * ppaf24->channels ;
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ppaf24->samplesperblock = PAF24_SAMPLES_PER_BLOCK ;
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if (psf->mode == SFM_READ || psf->mode == SFM_RDWR)
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{ paf24_read_block (psf, ppaf24) ; /* Read first block. */
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psf->read_short = paf24_read_s ;
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psf->read_int = paf24_read_i ;
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psf->read_float = paf24_read_f ;
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psf->read_double = paf24_read_d ;
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} ;
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if (psf->mode == SFM_WRITE || psf->mode == SFM_RDWR)
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{ psf->write_short = paf24_write_s ;
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psf->write_int = paf24_write_i ;
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psf->write_float = paf24_write_f ;
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psf->write_double = paf24_write_d ;
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} ;
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psf->seek = paf24_seek ;
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psf->container_close = paf24_close ;
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psf->filelength = psf_get_filelen (psf) ;
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psf->datalength = psf->filelength - psf->dataoffset ;
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if (psf->datalength % PAF24_BLOCK_SIZE)
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{ if (psf->mode == SFM_READ)
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psf_log_printf (psf, "*** Warning : file seems to be truncated.\n") ;
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ppaf24->max_blocks = psf->datalength / ppaf24->blocksize + 1 ;
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}
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else
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ppaf24->max_blocks = psf->datalength / ppaf24->blocksize ;
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ppaf24->read_block = 0 ;
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if (psf->mode == SFM_RDWR)
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ppaf24->write_block = ppaf24->max_blocks ;
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else
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ppaf24->write_block = 0 ;
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psf->sf.frames = ppaf24->samplesperblock * ppaf24->max_blocks ;
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ppaf24->sample_count = psf->sf.frames ;
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return 0 ;
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} /* paf24_init */
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static sf_count_t
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paf24_seek (SF_PRIVATE *psf, int mode, sf_count_t offset)
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{ PAF24_PRIVATE *ppaf24 ;
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int newblock, newsample ;
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if (psf->codec_data == NULL)
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{ psf->error = SFE_INTERNAL ;
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return PSF_SEEK_ERROR ;
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} ;
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ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
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if (mode == SFM_READ && ppaf24->write_count > 0)
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paf24_write_block (psf, ppaf24) ;
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newblock = offset / ppaf24->samplesperblock ;
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newsample = offset % ppaf24->samplesperblock ;
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switch (mode)
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{ case SFM_READ :
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if (psf->last_op == SFM_WRITE && ppaf24->write_count)
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paf24_write_block (psf, ppaf24) ;
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psf_fseek (psf, psf->dataoffset + newblock * ppaf24->blocksize, SEEK_SET) ;
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ppaf24->read_block = newblock ;
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paf24_read_block (psf, ppaf24) ;
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ppaf24->read_count = newsample ;
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break ;
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case SFM_WRITE :
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if (offset > ppaf24->sample_count)
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{ psf->error = SFE_BAD_SEEK ;
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return PSF_SEEK_ERROR ;
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} ;
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if (psf->last_op == SFM_WRITE && ppaf24->write_count)
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paf24_write_block (psf, ppaf24) ;
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psf_fseek (psf, psf->dataoffset + newblock * ppaf24->blocksize, SEEK_SET) ;
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ppaf24->write_block = newblock ;
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paf24_read_block (psf, ppaf24) ;
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ppaf24->write_count = newsample ;
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break ;
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default :
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psf->error = SFE_BAD_SEEK ;
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return PSF_SEEK_ERROR ;
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} ;
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return newblock * ppaf24->samplesperblock + newsample ;
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} /* paf24_seek */
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static int
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paf24_close (SF_PRIVATE *psf)
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{ PAF24_PRIVATE *ppaf24 ;
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if (psf->codec_data == NULL)
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return 0 ;
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ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
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|
|
if (psf->mode == SFM_WRITE || psf->mode == SFM_RDWR)
|
|
{ if (ppaf24->write_count > 0)
|
|
paf24_write_block (psf, ppaf24) ;
|
|
} ;
|
|
|
|
return 0 ;
|
|
} /* paf24_close */
|
|
|
|
/*---------------------------------------------------------------------------
|
|
*/
|
|
static int
|
|
paf24_read_block (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24)
|
|
{ int k, channel ;
|
|
unsigned char *cptr ;
|
|
|
|
ppaf24->read_block ++ ;
|
|
ppaf24->read_count = 0 ;
|
|
|
|
if (ppaf24->read_block * ppaf24->samplesperblock > ppaf24->sample_count)
|
|
{ memset (ppaf24->samples, 0, ppaf24->samplesperblock * ppaf24->channels) ;
|
|
return 1 ;
|
|
} ;
|
|
|
|
/* Read the block. */
|
|
if ((k = psf_fread (ppaf24->block, 1, ppaf24->blocksize, psf)) != ppaf24->blocksize)
|
|
psf_log_printf (psf, "*** Warning : short read (%d != %d).\n", k, ppaf24->blocksize) ;
|
|
|
|
|
|
if (CPU_IS_LITTLE_ENDIAN)
|
|
{ /* Do endian swapping if necessary. */
|
|
if (psf->endian == SF_ENDIAN_BIG)
|
|
endswap_int_array (ppaf24->data, 8 * ppaf24->channels) ;
|
|
|
|
/* Unpack block. */
|
|
for (k = 0 ; k < PAF24_SAMPLES_PER_BLOCK * ppaf24->channels ; k++)
|
|
{ channel = k % ppaf24->channels ;
|
|
cptr = ppaf24->block + PAF24_BLOCK_SIZE * channel + 3 * (k / ppaf24->channels) ;
|
|
ppaf24->samples [k] = (cptr [0] << 8) | (cptr [1] << 16) | (cptr [2] << 24) ;
|
|
} ;
|
|
}
|
|
else
|
|
{ /* Do endian swapping if necessary. */
|
|
if (psf->endian == SF_ENDIAN_BIG)
|
|
endswap_int_array (ppaf24->data, 8 * ppaf24->channels) ;
|
|
|
|
/* Unpack block. */
|
|
for (k = 0 ; k < PAF24_SAMPLES_PER_BLOCK * ppaf24->channels ; k++)
|
|
{ channel = k % ppaf24->channels ;
|
|
cptr = ppaf24->block + PAF24_BLOCK_SIZE * channel + 3 * (k / ppaf24->channels) ;
|
|
ppaf24->samples [k] = (cptr [0] << 8) | (cptr [1] << 16) | (cptr [2] << 24) ;
|
|
} ;
|
|
} ;
|
|
|
|
return 1 ;
|
|
} /* paf24_read_block */
|
|
|
|
static int
|
|
paf24_read (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24, int *ptr, int len)
|
|
{ int count, total = 0 ;
|
|
|
|
while (total < len)
|
|
{ if (ppaf24->read_block * ppaf24->samplesperblock >= ppaf24->sample_count)
|
|
{ memset (&(ptr [total]), 0, (len - total) * sizeof (int)) ;
|
|
return total ;
|
|
} ;
|
|
|
|
if (ppaf24->read_count >= ppaf24->samplesperblock)
|
|
paf24_read_block (psf, ppaf24) ;
|
|
|
|
count = (ppaf24->samplesperblock - ppaf24->read_count) * ppaf24->channels ;
|
|
count = (len - total > count) ? count : len - total ;
|
|
|
|
memcpy (&(ptr [total]), &(ppaf24->samples [ppaf24->read_count * ppaf24->channels]), count * sizeof (int)) ;
|
|
total += count ;
|
|
ppaf24->read_count += count / ppaf24->channels ;
|
|
} ;
|
|
|
|
return total ;
|
|
} /* paf24_read */
|
|
|
|
static sf_count_t
|
|
paf24_read_s (SF_PRIVATE *psf, short *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, readcount, count ;
|
|
sf_count_t total = 0 ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ readcount = (len >= bufferlen) ? bufferlen : len ;
|
|
count = paf24_read (psf, ppaf24, iptr, readcount) ;
|
|
for (k = 0 ; k < readcount ; k++)
|
|
ptr [total + k] = iptr [k] >> 16 ;
|
|
total += count ;
|
|
len -= readcount ;
|
|
} ;
|
|
return total ;
|
|
} /* paf24_read_s */
|
|
|
|
static sf_count_t
|
|
paf24_read_i (SF_PRIVATE *psf, int *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int total ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
total = paf24_read (psf, ppaf24, ptr, len) ;
|
|
|
|
return total ;
|
|
} /* paf24_read_i */
|
|
|
|
static sf_count_t
|
|
paf24_read_f (SF_PRIVATE *psf, float *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, readcount, count ;
|
|
sf_count_t total = 0 ;
|
|
float normfact ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
normfact = (psf->norm_float == SF_TRUE) ? (1.0 / 0x80000000) : (1.0 / 0x100) ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ readcount = (len >= bufferlen) ? bufferlen : len ;
|
|
count = paf24_read (psf, ppaf24, iptr, readcount) ;
|
|
for (k = 0 ; k < readcount ; k++)
|
|
ptr [total + k] = normfact * iptr [k] ;
|
|
total += count ;
|
|
len -= readcount ;
|
|
} ;
|
|
return total ;
|
|
} /* paf24_read_f */
|
|
|
|
static sf_count_t
|
|
paf24_read_d (SF_PRIVATE *psf, double *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, readcount, count ;
|
|
sf_count_t total = 0 ;
|
|
double normfact ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
normfact = (psf->norm_double == SF_TRUE) ? (1.0 / 0x80000000) : (1.0 / 0x100) ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ readcount = (len >= bufferlen) ? bufferlen : len ;
|
|
count = paf24_read (psf, ppaf24, iptr, readcount) ;
|
|
for (k = 0 ; k < readcount ; k++)
|
|
ptr [total + k] = normfact * iptr [k] ;
|
|
total += count ;
|
|
len -= readcount ;
|
|
} ;
|
|
return total ;
|
|
} /* paf24_read_d */
|
|
|
|
/*---------------------------------------------------------------------------
|
|
*/
|
|
|
|
static int
|
|
paf24_write_block (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24)
|
|
{ int k, nextsample, channel ;
|
|
unsigned char *cptr ;
|
|
|
|
/* First pack block. */
|
|
|
|
if (CPU_IS_LITTLE_ENDIAN)
|
|
{ for (k = 0 ; k < PAF24_SAMPLES_PER_BLOCK * ppaf24->channels ; k++)
|
|
{ channel = k % ppaf24->channels ;
|
|
cptr = ppaf24->block + PAF24_BLOCK_SIZE * channel + 3 * (k / ppaf24->channels) ;
|
|
nextsample = ppaf24->samples [k] >> 8 ;
|
|
cptr [0] = nextsample ;
|
|
cptr [1] = nextsample >> 8 ;
|
|
cptr [2] = nextsample >> 16 ;
|
|
} ;
|
|
|
|
/* Do endian swapping if necessary. */
|
|
if (psf->endian == SF_ENDIAN_BIG)
|
|
endswap_int_array (ppaf24->data, 8 * ppaf24->channels) ;
|
|
}
|
|
else if (CPU_IS_BIG_ENDIAN)
|
|
{ /* This is correct. */
|
|
for (k = 0 ; k < PAF24_SAMPLES_PER_BLOCK * ppaf24->channels ; k++)
|
|
{ channel = k % ppaf24->channels ;
|
|
cptr = ppaf24->block + PAF24_BLOCK_SIZE * channel + 3 * (k / ppaf24->channels) ;
|
|
nextsample = ppaf24->samples [k] >> 8 ;
|
|
cptr [0] = nextsample ;
|
|
cptr [1] = nextsample >> 8 ;
|
|
cptr [2] = nextsample >> 16 ;
|
|
} ;
|
|
if (psf->endian == SF_ENDIAN_BIG)
|
|
endswap_int_array (ppaf24->data, 8 * ppaf24->channels) ;
|
|
} ;
|
|
|
|
/* Write block to disk. */
|
|
if ((k = psf_fwrite (ppaf24->block, 1, ppaf24->blocksize, psf)) != ppaf24->blocksize)
|
|
psf_log_printf (psf, "*** Warning : short write (%d != %d).\n", k, ppaf24->blocksize) ;
|
|
|
|
if (ppaf24->sample_count < ppaf24->write_block * ppaf24->samplesperblock + ppaf24->write_count)
|
|
ppaf24->sample_count = ppaf24->write_block * ppaf24->samplesperblock + ppaf24->write_count ;
|
|
|
|
if (ppaf24->write_count == ppaf24->samplesperblock)
|
|
{ ppaf24->write_block ++ ;
|
|
ppaf24->write_count = 0 ;
|
|
} ;
|
|
|
|
return 1 ;
|
|
} /* paf24_write_block */
|
|
|
|
static int
|
|
paf24_write (SF_PRIVATE *psf, PAF24_PRIVATE *ppaf24, const int *ptr, int len)
|
|
{ int count, total = 0 ;
|
|
|
|
while (total < len)
|
|
{ count = (ppaf24->samplesperblock - ppaf24->write_count) * ppaf24->channels ;
|
|
|
|
if (count > len - total)
|
|
count = len - total ;
|
|
|
|
memcpy (&(ppaf24->samples [ppaf24->write_count * ppaf24->channels]), &(ptr [total]), count * sizeof (int)) ;
|
|
total += count ;
|
|
ppaf24->write_count += count / ppaf24->channels ;
|
|
|
|
if (ppaf24->write_count >= ppaf24->samplesperblock)
|
|
paf24_write_block (psf, ppaf24) ;
|
|
} ;
|
|
|
|
return total ;
|
|
} /* paf24_write */
|
|
|
|
static sf_count_t
|
|
paf24_write_s (SF_PRIVATE *psf, const short *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, writecount = 0, count ;
|
|
sf_count_t total = 0 ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ writecount = (len >= bufferlen) ? bufferlen : len ;
|
|
for (k = 0 ; k < writecount ; k++)
|
|
iptr [k] = ptr [total + k] << 16 ;
|
|
count = paf24_write (psf, ppaf24, iptr, writecount) ;
|
|
total += count ;
|
|
len -= writecount ;
|
|
if (count != writecount)
|
|
break ;
|
|
} ;
|
|
return total ;
|
|
} /* paf24_write_s */
|
|
|
|
static sf_count_t
|
|
paf24_write_i (SF_PRIVATE *psf, const int *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int writecount, count ;
|
|
sf_count_t total = 0 ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
while (len > 0)
|
|
{ writecount = (len > 0x10000000) ? 0x10000000 : (int) len ;
|
|
|
|
count = paf24_write (psf, ppaf24, ptr, writecount) ;
|
|
|
|
total += count ;
|
|
len -= count ;
|
|
if (count != writecount)
|
|
break ;
|
|
} ;
|
|
|
|
return total ;
|
|
} /* paf24_write_i */
|
|
|
|
static sf_count_t
|
|
paf24_write_f (SF_PRIVATE *psf, const float *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, writecount = 0, count ;
|
|
sf_count_t total = 0 ;
|
|
float normfact ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
normfact = (psf->norm_float == SF_TRUE) ? (1.0 * 0x7FFFFFFF) : (1.0 / 0x100) ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ writecount = (len >= bufferlen) ? bufferlen : len ;
|
|
for (k = 0 ; k < writecount ; k++)
|
|
iptr [k] = lrintf (normfact * ptr [total + k]) ;
|
|
count = paf24_write (psf, ppaf24, iptr, writecount) ;
|
|
total += count ;
|
|
len -= writecount ;
|
|
if (count != writecount)
|
|
break ;
|
|
} ;
|
|
|
|
return total ;
|
|
} /* paf24_write_f */
|
|
|
|
static sf_count_t
|
|
paf24_write_d (SF_PRIVATE *psf, const double *ptr, sf_count_t len)
|
|
{ PAF24_PRIVATE *ppaf24 ;
|
|
int *iptr ;
|
|
int k, bufferlen, writecount = 0, count ;
|
|
sf_count_t total = 0 ;
|
|
double normfact ;
|
|
|
|
if (psf->codec_data == NULL)
|
|
return 0 ;
|
|
ppaf24 = (PAF24_PRIVATE*) psf->codec_data ;
|
|
|
|
normfact = (psf->norm_double == SF_TRUE) ? (1.0 * 0x7FFFFFFF) : (1.0 / 0x100) ;
|
|
|
|
iptr = psf->u.ibuf ;
|
|
bufferlen = ARRAY_LEN (psf->u.ibuf) ;
|
|
while (len > 0)
|
|
{ writecount = (len >= bufferlen) ? bufferlen : len ;
|
|
for (k = 0 ; k < writecount ; k++)
|
|
iptr [k] = lrint (normfact * ptr [total+k]) ;
|
|
count = paf24_write (psf, ppaf24, iptr, writecount) ;
|
|
total += count ;
|
|
len -= writecount ;
|
|
if (count != writecount)
|
|
break ;
|
|
} ;
|
|
|
|
return total ;
|
|
} /* paf24_write_d */
|
|
|