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1 27 unneback
/*
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 * wrtarga.c
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 *
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 * Copyright (C) 1991-1996, Thomas G. Lane.
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 * This file is part of the Independent JPEG Group's software.
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 * For conditions of distribution and use, see the accompanying README file.
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 *
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 * This file contains routines to write output images in Targa format.
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 *
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 * These routines may need modification for non-Unix environments or
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 * specialized applications.  As they stand, they assume output to
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 * an ordinary stdio stream.
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 *
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 * Based on code contributed by Lee Daniel Crocker.
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 */
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#include "cdjpeg.h"             /* Common decls for cjpeg/djpeg applications */
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#ifdef TARGA_SUPPORTED
20
 
21
 
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/*
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 * To support 12-bit JPEG data, we'd have to scale output down to 8 bits.
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 * This is not yet implemented.
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 */
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#if BITS_IN_JSAMPLE != 8
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  Sorry, this code only copes with 8-bit JSAMPLEs. /* deliberate syntax err */
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#endif
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/*
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 * The output buffer needs to be writable by fwrite().  On PCs, we must
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 * allocate the buffer in near data space, because we are assuming small-data
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 * memory model, wherein fwrite() can't reach far memory.  If you need to
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 * process very wide images on a PC, you might have to compile in large-memory
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 * model, or else replace fwrite() with a putc() loop --- which will be much
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 * slower.
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 */
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40
 
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/* Private version of data destination object */
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typedef struct {
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  struct djpeg_dest_struct pub; /* public fields */
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  char *iobuffer;               /* physical I/O buffer */
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  JDIMENSION buffer_width;      /* width of one row */
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} tga_dest_struct;
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typedef tga_dest_struct * tga_dest_ptr;
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LOCAL(void)
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write_header (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo, int num_colors)
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/* Create and write a Targa header */
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{
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  char targaheader[18];
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  /* Set unused fields of header to 0 */
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  MEMZERO(targaheader, SIZEOF(targaheader));
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  if (num_colors > 0) {
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    targaheader[1] = 1;         /* color map type 1 */
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    targaheader[5] = (char) (num_colors & 0xFF);
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    targaheader[6] = (char) (num_colors >> 8);
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    targaheader[7] = 24;        /* 24 bits per cmap entry */
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  }
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  targaheader[12] = (char) (cinfo->output_width & 0xFF);
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  targaheader[13] = (char) (cinfo->output_width >> 8);
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  targaheader[14] = (char) (cinfo->output_height & 0xFF);
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  targaheader[15] = (char) (cinfo->output_height >> 8);
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  targaheader[17] = 0x20;       /* Top-down, non-interlaced */
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  if (cinfo->out_color_space == JCS_GRAYSCALE) {
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    targaheader[2] = 3;         /* image type = uncompressed gray-scale */
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    targaheader[16] = 8;        /* bits per pixel */
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  } else {                      /* must be RGB */
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    if (num_colors > 0) {
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      targaheader[2] = 1;       /* image type = colormapped RGB */
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      targaheader[16] = 8;
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    } else {
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      targaheader[2] = 2;       /* image type = uncompressed RGB */
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      targaheader[16] = 24;
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    }
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  }
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  if (JFWRITE(dinfo->output_file, targaheader, 18) != (size_t) 18)
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    ERREXIT(cinfo, JERR_FILE_WRITE);
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}
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92
 
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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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METHODDEF(void)
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put_pixel_rows (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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                JDIMENSION rows_supplied)
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/* used for unquantized full-color output */
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{
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  tga_dest_ptr dest = (tga_dest_ptr) dinfo;
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  register JSAMPROW inptr;
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  register char * outptr;
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  register JDIMENSION col;
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  inptr = dest->pub.buffer[0];
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  outptr = dest->iobuffer;
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  for (col = cinfo->output_width; col > 0; col--) {
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    outptr[0] = (char) GETJSAMPLE(inptr[2]); /* RGB to BGR order */
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    outptr[1] = (char) GETJSAMPLE(inptr[1]);
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    outptr[2] = (char) GETJSAMPLE(inptr[0]);
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    inptr += 3, outptr += 3;
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  }
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  (void) JFWRITE(dest->pub.output_file, dest->iobuffer, dest->buffer_width);
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}
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METHODDEF(void)
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put_gray_rows (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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               JDIMENSION rows_supplied)
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/* used for grayscale OR quantized color output */
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{
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  tga_dest_ptr dest = (tga_dest_ptr) dinfo;
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  register JSAMPROW inptr;
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  register char * outptr;
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  register JDIMENSION col;
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  inptr = dest->pub.buffer[0];
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  outptr = dest->iobuffer;
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  for (col = cinfo->output_width; col > 0; col--) {
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    *outptr++ = (char) GETJSAMPLE(*inptr++);
133
  }
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  (void) JFWRITE(dest->pub.output_file, dest->iobuffer, dest->buffer_width);
135
}
136
 
137
 
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/*
139
 * Write some demapped pixel data when color quantization is in effect.
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 * For Targa, this is only applied to grayscale data.
141
 */
142
 
143
METHODDEF(void)
144
put_demapped_gray (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo,
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                   JDIMENSION rows_supplied)
146
{
147
  tga_dest_ptr dest = (tga_dest_ptr) dinfo;
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  register JSAMPROW inptr;
149
  register char * outptr;
150
  register JSAMPROW color_map0 = cinfo->colormap[0];
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  register JDIMENSION col;
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  inptr = dest->pub.buffer[0];
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  outptr = dest->iobuffer;
155
  for (col = cinfo->output_width; col > 0; col--) {
156
    *outptr++ = (char) GETJSAMPLE(color_map0[GETJSAMPLE(*inptr++)]);
157
  }
158
  (void) JFWRITE(dest->pub.output_file, dest->iobuffer, dest->buffer_width);
159
}
160
 
161
 
162
/*
163
 * Startup: write the file header.
164
 */
165
 
166
METHODDEF(void)
167
start_output_tga (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo)
168
{
169
  tga_dest_ptr dest = (tga_dest_ptr) dinfo;
170
  int num_colors, i;
171
  FILE *outfile;
172
 
173
  if (cinfo->out_color_space == JCS_GRAYSCALE) {
174
    /* Targa doesn't have a mapped grayscale format, so we will */
175
    /* demap quantized gray output.  Never emit a colormap. */
176
    write_header(cinfo, dinfo, 0);
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    if (cinfo->quantize_colors)
178
      dest->pub.put_pixel_rows = put_demapped_gray;
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    else
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      dest->pub.put_pixel_rows = put_gray_rows;
181
  } else if (cinfo->out_color_space == JCS_RGB) {
182
    if (cinfo->quantize_colors) {
183
      /* We only support 8-bit colormap indexes, so only 256 colors */
184
      num_colors = cinfo->actual_number_of_colors;
185
      if (num_colors > 256)
186
        ERREXIT1(cinfo, JERR_TOO_MANY_COLORS, num_colors);
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      write_header(cinfo, dinfo, num_colors);
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      /* Write the colormap.  Note Targa uses BGR byte order */
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      outfile = dest->pub.output_file;
190
      for (i = 0; i < num_colors; i++) {
191
        putc(GETJSAMPLE(cinfo->colormap[2][i]), outfile);
192
        putc(GETJSAMPLE(cinfo->colormap[1][i]), outfile);
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        putc(GETJSAMPLE(cinfo->colormap[0][i]), outfile);
194
      }
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      dest->pub.put_pixel_rows = put_gray_rows;
196
    } else {
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      write_header(cinfo, dinfo, 0);
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      dest->pub.put_pixel_rows = put_pixel_rows;
199
    }
200
  } else {
201
    ERREXIT(cinfo, JERR_TGA_COLORSPACE);
202
  }
203
}
204
 
205
 
206
/*
207
 * Finish up at the end of the file.
208
 */
209
 
210
METHODDEF(void)
211
finish_output_tga (j_decompress_ptr cinfo, djpeg_dest_ptr dinfo)
212
{
213
  /* Make sure we wrote the output file OK */
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  fflush(dinfo->output_file);
215
  if (ferror(dinfo->output_file))
216
    ERREXIT(cinfo, JERR_FILE_WRITE);
217
}
218
 
219
 
220
/*
221
 * The module selection routine for Targa format output.
222
 */
223
 
224
GLOBAL(djpeg_dest_ptr)
225
jinit_write_targa (j_decompress_ptr cinfo)
226
{
227
  tga_dest_ptr dest;
228
 
229
  /* Create module interface object, fill in method pointers */
230
  dest = (tga_dest_ptr)
231
      (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
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                                  SIZEOF(tga_dest_struct));
233
  dest->pub.start_output = start_output_tga;
234
  dest->pub.finish_output = finish_output_tga;
235
 
236
  /* Calculate output image dimensions so we can allocate space */
237
  jpeg_calc_output_dimensions(cinfo);
238
 
239
  /* Create I/O buffer.  Note we make this near on a PC. */
240
  dest->buffer_width = cinfo->output_width * cinfo->output_components;
241
  dest->iobuffer = (char *)
242
    (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
243
                                (size_t) (dest->buffer_width * SIZEOF(char)));
244
 
245
  /* Create decompressor output buffer. */
246
  dest->pub.buffer = (*cinfo->mem->alloc_sarray)
247
    ((j_common_ptr) cinfo, JPOOL_IMAGE, dest->buffer_width, (JDIMENSION) 1);
248
  dest->pub.buffer_height = 1;
249
 
250
  return (djpeg_dest_ptr) dest;
251
}
252
 
253
#endif /* TARGA_SUPPORTED */

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