202 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			202 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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								/*
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								** Copyright (C) 2002-2012 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	<fcntl.h>
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								#include	<string.h>
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								#include	<ctype.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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								#if (ENABLE_EXPERIMENTAL_CODE == 0)
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								int
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								dwd_open	(SF_PRIVATE *psf)
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								{	if (psf)
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										return SFE_UNIMPLEMENTED ;
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									return 0 ;
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								} /* dwd_open */
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								#else
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								/*------------------------------------------------------------------------------
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								** Macros to handle big/little endian issues.
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								*/
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								#define SFE_DWD_NO_DWD			1666
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								#define SFE_DWD_BAND_BIT_WIDTH 	1667
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								#define SFE_DWD_COMPRESSION		1668
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								#define	DWD_IDENTIFIER		"DiamondWare Digitized\n\0\x1a"
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								#define	DWD_IDENTIFIER_LEN	24
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								#define	DWD_HEADER_LEN		57
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								/*------------------------------------------------------------------------------
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								** Typedefs.
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								*/
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								/*------------------------------------------------------------------------------
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								** Private static functions.
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								*/
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								static int	dwd_read_header (SF_PRIVATE *psf) ;
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								static int	dwd_close		(SF_PRIVATE *psf) ;
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								/*------------------------------------------------------------------------------
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								** Public function.
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								*/
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								int
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								dwd_open (SF_PRIVATE *psf)
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								{	int	error = 0 ;
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									if (psf->file.mode == SFM_READ || (psf->file.mode == SFM_RDWR && psf->filelength > 0))
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									{	if ((error = dwd_read_header (psf)))
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											return error ;
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										} ;
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									if ((SF_CONTAINER (psf->sf.format)) != SF_FORMAT_DWD)
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										return	SFE_BAD_OPEN_FORMAT ;
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									if (psf->file.mode == SFM_WRITE || psf->file.mode == SFM_RDWR)
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									{
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										/*-psf->endian = SF_ENDIAN (psf->sf.format) ;
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										if (CPU_IS_LITTLE_ENDIAN && psf->endian == SF_ENDIAN_CPU)
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											psf->endian = SF_ENDIAN_LITTLE ;
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										else if (psf->endian != SF_ENDIAN_LITTLE)
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											psf->endian = SF_ENDIAN_BIG ;
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										if (! (encoding = dwd_write_header (psf, SF_FALSE)))
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											return psf->error ;
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										psf->write_header = dwd_write_header ;
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										-*/
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										} ;
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									psf->container_close = dwd_close ;
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									/*-psf->blockwidth = psf->bytewidth * psf->sf.channels ;-*/
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									return error ;
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								} /* dwd_open */
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								/*------------------------------------------------------------------------------
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								*/
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								static int
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								dwd_close	(SF_PRIVATE * UNUSED (psf))
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								{
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									return 0 ;
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								} /* dwd_close */
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								/* This struct contains all the fields of interest om the DWD header, but does not
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								** do so in the same order and layout as the actual file, header.
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								** No assumptions are made about the packing of this struct.
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								*/
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								typedef struct
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								{	uint8_t major, minor, compression, channels, bitwidth ;
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									uint16_t srate, maxval ;
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									uint32_t id, datalen, frames, offset ;
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								} DWD_HEADER ;
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								static int
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								dwd_read_header (SF_PRIVATE *psf)
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								{	BUF_UNION	ubuf ;
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									DWD_HEADER	dwdh ;
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									memset (ubuf.cbuf, 0, sizeof (ubuf.cbuf)) ;
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									/* Set position to start of file to begin reading header. */
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									psf_binheader_readf (psf, "pb", 0, ubuf.cbuf, DWD_IDENTIFIER_LEN) ;
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									if (memcmp (ubuf.cbuf, DWD_IDENTIFIER, DWD_IDENTIFIER_LEN) != 0)
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										return SFE_DWD_NO_DWD ;
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									psf_log_printf (psf, "Read only : DiamondWare Digitized (.dwd)\n", ubuf.cbuf) ;
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									psf_binheader_readf (psf, "11", &dwdh.major, &dwdh.minor) ;
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									psf_binheader_readf (psf, "e4j1", &dwdh.id, 1, &dwdh.compression) ;
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									psf_binheader_readf (psf, "e211", &dwdh.srate, &dwdh.channels, &dwdh.bitwidth) ;
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									psf_binheader_readf (psf, "e24", &dwdh.maxval, &dwdh.datalen) ;
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									psf_binheader_readf (psf, "e44", &dwdh.frames, &dwdh.offset) ;
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									psf_log_printf (psf, "  Version Major : %d\n  Version Minor : %d\n  Unique ID     : %08X\n",
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														dwdh.major, dwdh.minor, dwdh.id) ;
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									psf_log_printf (psf, "  Compression   : %d => ", dwdh.compression) ;
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									if (dwdh.compression != 0)
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									{	psf_log_printf (psf, "Unsupported compression\n") ;
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										return SFE_DWD_COMPRESSION ;
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										}
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									else
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										psf_log_printf (psf, "None\n") ;
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									psf_log_printf (psf,	"  Sample Rate   : %d\n  Channels      : %d\n"
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															"  Bit Width     : %d\n",
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														dwdh.srate, dwdh.channels, dwdh.bitwidth) ;
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									switch (dwdh.bitwidth)
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									{	case 8 :
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												psf->sf.format = SF_FORMAT_DWD | SF_FORMAT_PCM_S8 ;
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												psf->bytewidth = 1 ;
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												break ;
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										case 16 :
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												psf->sf.format = SF_FORMAT_DWD | SF_FORMAT_PCM_16 ;
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												psf->bytewidth = 2 ;
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												break ;
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										default :
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												psf_log_printf (psf, "*** Bad bit width %d\n", dwdh.bitwidth) ;
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												return SFE_DWD_BAND_BIT_WIDTH ;
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												} ;
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									if (psf->filelength != dwdh.offset + dwdh.datalen)
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									{	psf_log_printf (psf, "  Data Length   : %d (should be %D)\n", dwdh.datalen, psf->filelength - dwdh.offset) ;
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										dwdh.datalen = (uint32_t) (psf->filelength - dwdh.offset) ;
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										}
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									else
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										psf_log_printf (psf, "  Data Length   : %d\n", dwdh.datalen) ;
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									psf_log_printf (psf, "  Max Value     : %d\n", dwdh.maxval) ;
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									psf_log_printf (psf, "  Frames        : %d\n", dwdh.frames) ;
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									psf_log_printf (psf, "  Data Offset   : %d\n", dwdh.offset) ;
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									psf->datalength = dwdh.datalen ;
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									psf->dataoffset = dwdh.offset ;
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									psf->endian = SF_ENDIAN_LITTLE ;
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									psf->sf.samplerate = dwdh.srate ;
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									psf->sf.channels = dwdh.channels ;
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									psf->sf.sections = 1 ;
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									return pcm_init (psf) ;
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								} /* dwd_read_header */
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								/*------------------------------------------------------------------------------
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								*/
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								#endif
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