kopia lustrzana https://gitlab.com/sane-project/backends
				
				
				
			
		
			
				
	
	
		
			236 wiersze
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
			
		
		
	
	
			236 wiersze
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
/*
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   Code for JPEG decompression by the Independent JPEG Group.  Please see
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   README.jpeg in the top level directory.
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 */
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#include "../include/sane/config.h"
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#ifdef HAVE_LIBJPEG
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#include "../include/sane/sanei_jpeg.h"
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typedef struct
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  {
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    struct djpeg_dest_struct pub;	/* public fields */
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    /* Usually these two pointers point to the same place: */
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    char *iobuffer;		/* fwrite's I/O buffer */
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    JSAMPROW pixrow;		/* decompressor output buffer */
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    size_t buffer_width;	/* width of I/O buffer */
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    JDIMENSION samples_per_row;	/* JSAMPLEs per output row */
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  }
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ppm_dest_struct;
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typedef ppm_dest_struct *ppm_dest_ptr;
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/*
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 * For 12-bit JPEG data, we either downscale the values to 8 bits
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 * (to write standard byte-per-sample PPM/PGM files), or output
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 * nonstandard word-per-sample PPM/PGM files.  Downscaling is done
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 * if PPM_NORAWWORD is defined (this can be done in the Makefile
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 * or in jconfig.h).
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 * (When the core library supports data precision reduction, a cleaner
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 * implementation will be to ask for that instead.)
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 */
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#if BITS_IN_JSAMPLE==8
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#define PUTPPMSAMPLE(ptr,v)  *ptr++=(char) (v)
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#define BYTESPERSAMPLE 1
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#define PPM_MAXVAL 255
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#else
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#ifdef PPM_NORAWWORD
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#define PUTPPMSAMPLE(ptr,v)  *ptr++=(char) ((v) >> (BITS_IN_JSAMPLE-8))
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#define BYTESPERSAMPLE 1
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#define PPM_MAXVAL 255
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#else
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/* The word-per-sample format always puts the LSB first. */
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#define PUTPPMSAMPLE(ptr,v)			\
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	{ register int val_=v;		\
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		*ptr++=(char) (val_ & 0xFF);	\
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		*ptr++=(char) ((val_ >> 8) & 0xFF);	\
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	}
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#define BYTESPERSAMPLE 2
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#define PPM_MAXVAL ((1<<BITS_IN_JSAMPLE)-1)
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#endif
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#endif
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METHODDEF (void)
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sanei_jpeg_start_output_ppm (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo)
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{
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  cinfo = cinfo;
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  dinfo = dinfo;
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  /* header image is supplied for us */
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}
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METHODDEF (void)
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sanei_jpeg_finish_output_ppm (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo)
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{
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  cinfo = cinfo;
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  dinfo = dinfo;
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  /* nothing to do */
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}
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/*
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 * Write some pixel data.
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 * In this module rows_supplied will always be 1.
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 *
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 * put_pixel_rows handles the "normal" 8-bit case where the decompressor
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 * output buffer is physically the same as the fwrite buffer.
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 */
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METHODDEF (void)
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sanei_jpeg_put_pixel_rows (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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			   JDIMENSION rows_supplied, char *data)
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{
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  ppm_dest_ptr dest = (ppm_dest_ptr) dinfo;
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  cinfo = cinfo;
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  dinfo = dinfo;
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  rows_supplied = rows_supplied;
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  memcpy (data, dest->iobuffer, dest->buffer_width);
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}
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/*
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 * This code is used when we have to copy the data and apply a pixel
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 * format translation.  Typically this only happens in 12-bit mode.
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 */
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METHODDEF (void)
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sanei_jpeg_copy_pixel_rows (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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			    JDIMENSION rows_supplied, char *data)
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{
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  ppm_dest_ptr dest = (ppm_dest_ptr) dinfo;
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  register char *bufferptr;
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  register JSAMPROW ptr;
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  register JDIMENSION col;
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  cinfo = cinfo;
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  dinfo = dinfo;
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  rows_supplied = rows_supplied;
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  ptr = dest->pub.buffer[0];
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  bufferptr = dest->iobuffer;
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  for (col = dest->samples_per_row; col > 0; col--)
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    {
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      PUTPPMSAMPLE (bufferptr, GETJSAMPLE (*ptr++));
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    }
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  memcpy (data, dest->iobuffer, dest->buffer_width);
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}
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/*
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 * Write some pixel data when color quantization is in effect.
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 * We have to demap the color index values to straight data.
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 */
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METHODDEF (void)
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sanei_jpeg_put_demapped_rgb (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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			     JDIMENSION rows_supplied, char *data)
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{
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  ppm_dest_ptr dest = (ppm_dest_ptr) dinfo;
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  register char *bufferptr;
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  register int pixval;
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  register JSAMPROW ptr;
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  register JSAMPROW color_map0 = cinfo->colormap[0];
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  register JSAMPROW color_map1 = cinfo->colormap[1];
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  register JSAMPROW color_map2 = cinfo->colormap[2];
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  register JDIMENSION col;
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  rows_supplied = rows_supplied;
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  ptr = dest->pub.buffer[0];
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  bufferptr = dest->iobuffer;
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  for (col = cinfo->output_width; col > 0; col--)
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    {
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      pixval = GETJSAMPLE (*ptr++);
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      PUTPPMSAMPLE (bufferptr, GETJSAMPLE (color_map0[pixval]));
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      PUTPPMSAMPLE (bufferptr, GETJSAMPLE (color_map1[pixval]));
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      PUTPPMSAMPLE (bufferptr, GETJSAMPLE (color_map2[pixval]));
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    }
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  memcpy (data, dest->iobuffer, dest->buffer_width);
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}
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METHODDEF (void)
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sanei_jpeg_put_demapped_gray (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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			      JDIMENSION rows_supplied, char *data)
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{
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  ppm_dest_ptr dest = (ppm_dest_ptr) dinfo;
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  register char *bufferptr;
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  register JSAMPROW ptr;
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  register JSAMPROW color_map = cinfo->colormap[0];
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  register JDIMENSION col;
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  rows_supplied = rows_supplied;
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  ptr = dest->pub.buffer[0];
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  bufferptr = dest->iobuffer;
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  for (col = cinfo->output_width; col > 0; col--)
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    {
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      PUTPPMSAMPLE (bufferptr,
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		    GETJSAMPLE (color_map[GETJSAMPLE (*ptr++)]));
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    }
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  memcpy (data, dest->iobuffer, dest->buffer_width);
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}
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GLOBAL (djpeg_dest_ptr)
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sanei_jpeg_jinit_write_ppm (j_decompress_ptr cinfo)
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{
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  ppm_dest_ptr dest;
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  /* Create module interface object, fill in method pointers */
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  dest = (ppm_dest_ptr)
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    (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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				SIZEOF (ppm_dest_struct));
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  dest->pub.start_output = sanei_jpeg_start_output_ppm;
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  dest->pub.finish_output = sanei_jpeg_finish_output_ppm;
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  /* Calculate output image dimensions so we can allocate space */
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  jpeg_calc_output_dimensions (cinfo);
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  /* Create physical I/O buffer.  Note we make this near on a PC. */
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  dest->samples_per_row = cinfo->output_width * cinfo->out_color_components;
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  dest->buffer_width = dest->samples_per_row * (BYTESPERSAMPLE * SIZEOF (char));
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  dest->iobuffer = (char *) (*cinfo->mem->alloc_small)
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    ((j_common_ptr) cinfo, JPOOL_IMAGE, dest->buffer_width);
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  if (cinfo->quantize_colors || BITS_IN_JSAMPLE != 8 ||
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      SIZEOF (JSAMPLE) != SIZEOF (char))
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    {
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      /* When quantizing, we need an output buffer for clrmap indexes
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       * that's separate from the physical I/O buffer.  We also need a
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       * separate buffer if pixel format translation must take place.
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       */
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      dest->pub.buffer = (*cinfo->mem->alloc_sarray)
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	((j_common_ptr) cinfo, JPOOL_IMAGE,
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	 cinfo->output_width * cinfo->output_components,
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	 (JDIMENSION) 1);
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      dest->pub.buffer_height = 1;
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      if (!cinfo->quantize_colors)
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	dest->pub.put_pixel_rows = sanei_jpeg_copy_pixel_rows;
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      else if (cinfo->out_color_space == JCS_GRAYSCALE)
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	dest->pub.put_pixel_rows = sanei_jpeg_put_demapped_gray;
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      else
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	dest->pub.put_pixel_rows = sanei_jpeg_put_demapped_rgb;
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    }
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  else
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    {
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      /* We will fwrite() directly from decompressor output buffer. */
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      /* Synthesize a JSAMPARRAY pointer structure */
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      /* Cast here implies near->far pointer conversion on PCs */
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      dest->pixrow = (JSAMPROW) dest->iobuffer;
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      dest->pub.buffer = &dest->pixrow;
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      dest->pub.buffer_height = 1;
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      dest->pub.put_pixel_rows = sanei_jpeg_put_pixel_rows;
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    }
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  return (djpeg_dest_ptr) dest;
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}
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#endif
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