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Side by Side Diff: third_party/libpng/pngrtran.c

Issue 1509773004: CL for perf tryjob on android Base URL: https://chromium.googlesource.com/chromium/src.git@master
Patch Set: Created 5 years ago
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1 1
2 /* pngrtran.c - transforms the data in a row for PNG readers 2 /* pngrtran.c - transforms the data in a row for PNG readers
3 * 3 *
4 * Last changed in libpng 1.2.53 [February 26, 2015] 4 * Last changed in libpng 1.6.19 [November 12, 2015]
5 * Copyright (c) 1998-2015 Glenn Randers-Pehrson 5 * Copyright (c) 1998-2015 Glenn Randers-Pehrson
6 * (Version 0.96 Copyright (c) 1996, 1997 Andreas Dilger) 6 * (Version 0.96 Copyright (c) 1996, 1997 Andreas Dilger)
7 * (Version 0.88 Copyright (c) 1995, 1996 Guy Eric Schalnat, Group 42, Inc.) 7 * (Version 0.88 Copyright (c) 1995, 1996 Guy Eric Schalnat, Group 42, Inc.)
8 * 8 *
9 * This code is released under the libpng license. 9 * This code is released under the libpng license.
10 * For conditions of distribution and use, see the disclaimer 10 * For conditions of distribution and use, see the disclaimer
11 * and license in png.h 11 * and license in png.h
12 * 12 *
13 * This file contains functions optionally called by an application 13 * This file contains functions optionally called by an application
14 * in order to tell libpng how to handle data when reading a PNG. 14 * in order to tell libpng how to handle data when reading a PNG.
15 * Transformations that are used in both reading and writing are 15 * Transformations that are used in both reading and writing are
16 * in pngtrans.c. 16 * in pngtrans.c.
17 */ 17 */
18 18
19 #define PNG_INTERNAL 19 #include "pngpriv.h"
20 #define PNG_NO_PEDANTIC_WARNINGS 20
21 #include "png.h"
22 #ifdef PNG_READ_SUPPORTED 21 #ifdef PNG_READ_SUPPORTED
23 22
24 /* Set the action on getting a CRC error for an ancillary or critical chunk. */ 23 /* Set the action on getting a CRC error for an ancillary or critical chunk. */
25 void PNGAPI 24 void PNGAPI
26 png_set_crc_action(png_structp png_ptr, int crit_action, int ancil_action) 25 png_set_crc_action(png_structrp png_ptr, int crit_action, int ancil_action)
27 { 26 {
28 png_debug(1, "in png_set_crc_action"); 27 png_debug(1, "in png_set_crc_action");
29 28
30 if (png_ptr == NULL) 29 if (png_ptr == NULL)
31 return; 30 return;
32 31
33 /* Tell libpng how we react to CRC errors in critical chunks */ 32 /* Tell libpng how we react to CRC errors in critical chunks */
34 switch (crit_action) 33 switch (crit_action)
35 { 34 {
36 case PNG_CRC_NO_CHANGE: /* Leave setting as is */ 35 case PNG_CRC_NO_CHANGE: /* Leave setting as is */
37 break; 36 break;
38 37
39 case PNG_CRC_WARN_USE: /* Warn/use data */ 38 case PNG_CRC_WARN_USE: /* Warn/use data */
40 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK; 39 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK;
41 png_ptr->flags |= PNG_FLAG_CRC_CRITICAL_USE; 40 png_ptr->flags |= PNG_FLAG_CRC_CRITICAL_USE;
42 break; 41 break;
43 42
44 case PNG_CRC_QUIET_USE: /* Quiet/use data */ 43 case PNG_CRC_QUIET_USE: /* Quiet/use data */
45 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK; 44 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK;
46 png_ptr->flags |= PNG_FLAG_CRC_CRITICAL_USE | 45 png_ptr->flags |= PNG_FLAG_CRC_CRITICAL_USE |
47 PNG_FLAG_CRC_CRITICAL_IGNORE; 46 PNG_FLAG_CRC_CRITICAL_IGNORE;
48 break; 47 break;
49 48
50 case PNG_CRC_WARN_DISCARD: /* Not a valid action for critical data */ 49 case PNG_CRC_WARN_DISCARD: /* Not a valid action for critical data */
51 png_warning(png_ptr, 50 png_warning(png_ptr,
52 "Can't discard critical data on CRC error."); 51 "Can't discard critical data on CRC error");
53 case PNG_CRC_ERROR_QUIT: /* Error/quit */ 52 case PNG_CRC_ERROR_QUIT: /* Error/quit */
54 53
55 case PNG_CRC_DEFAULT: 54 case PNG_CRC_DEFAULT:
56 default: 55 default:
57 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK; 56 png_ptr->flags &= ~PNG_FLAG_CRC_CRITICAL_MASK;
58 break; 57 break;
59 } 58 }
60 59
61 /* Tell libpng how we react to CRC errors in ancillary chunks */ 60 /* Tell libpng how we react to CRC errors in ancillary chunks */
62 switch (ancil_action) 61 switch (ancil_action)
(...skipping 19 matching lines...) Expand all
82 81
83 case PNG_CRC_WARN_DISCARD: /* Warn/discard data */ 82 case PNG_CRC_WARN_DISCARD: /* Warn/discard data */
84 83
85 case PNG_CRC_DEFAULT: 84 case PNG_CRC_DEFAULT:
86 default: 85 default:
87 png_ptr->flags &= ~PNG_FLAG_CRC_ANCILLARY_MASK; 86 png_ptr->flags &= ~PNG_FLAG_CRC_ANCILLARY_MASK;
88 break; 87 break;
89 } 88 }
90 } 89 }
91 90
92 #if defined(PNG_READ_BACKGROUND_SUPPORTED) && \ 91 #ifdef PNG_READ_TRANSFORMS_SUPPORTED
93 defined(PNG_FLOATING_POINT_SUPPORTED) 92 /* Is it OK to set a transformation now? Only if png_start_read_image or
93 * png_read_update_info have not been called. It is not necessary for the IHDR
94 * to have been read in all cases; the need_IHDR parameter allows for this
95 * check too.
96 */
97 static int
98 png_rtran_ok(png_structrp png_ptr, int need_IHDR)
99 {
100 if (png_ptr != NULL)
101 {
102 if ((png_ptr->flags & PNG_FLAG_ROW_INIT) != 0)
103 png_app_error(png_ptr,
104 "invalid after png_start_read_image or png_read_update_info");
105
106 else if (need_IHDR && (png_ptr->mode & PNG_HAVE_IHDR) == 0)
107 png_app_error(png_ptr, "invalid before the PNG header has been read");
108
109 else
110 {
111 /* Turn on failure to initialize correctly for all transforms. */
112 png_ptr->flags |= PNG_FLAG_DETECT_UNINITIALIZED;
113
114 return 1; /* Ok */
115 }
116 }
117
118 return 0; /* no png_error possible! */
119 }
120 #endif
121
122 #ifdef PNG_READ_BACKGROUND_SUPPORTED
94 /* Handle alpha and tRNS via a background color */ 123 /* Handle alpha and tRNS via a background color */
95 void PNGAPI 124 void PNGFAPI
96 png_set_background(png_structp png_ptr, 125 png_set_background_fixed(png_structrp png_ptr,
97 png_color_16p background_color, int background_gamma_code, 126 png_const_color_16p background_color, int background_gamma_code,
98 int need_expand, double background_gamma) 127 int need_expand, png_fixed_point background_gamma)
99 { 128 {
100 png_debug(1, "in png_set_background"); 129 png_debug(1, "in png_set_background_fixed");
101 130
102 if (png_ptr == NULL) 131 if (png_rtran_ok(png_ptr, 0) == 0 || background_color == NULL)
103 return; 132 return;
133
104 if (background_gamma_code == PNG_BACKGROUND_GAMMA_UNKNOWN) 134 if (background_gamma_code == PNG_BACKGROUND_GAMMA_UNKNOWN)
105 { 135 {
106 png_warning(png_ptr, "Application must supply a known background gamma"); 136 png_warning(png_ptr, "Application must supply a known background gamma");
107 return; 137 return;
108 } 138 }
109 139
110 png_ptr->transformations |= PNG_BACKGROUND; 140 png_ptr->transformations |= PNG_COMPOSE | PNG_STRIP_ALPHA;
111 png_memcpy(&(png_ptr->background), background_color, 141 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
112 png_sizeof(png_color_16)); 142 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
113 png_ptr->background_gamma = (float)background_gamma; 143
144 png_ptr->background = *background_color;
145 png_ptr->background_gamma = background_gamma;
114 png_ptr->background_gamma_type = (png_byte)(background_gamma_code); 146 png_ptr->background_gamma_type = (png_byte)(background_gamma_code);
115 png_ptr->transformations |= (need_expand ? PNG_BACKGROUND_EXPAND : 0); 147 if (need_expand != 0)
116 } 148 png_ptr->transformations |= PNG_BACKGROUND_EXPAND;
117 #endif 149 else
118 150 png_ptr->transformations &= ~PNG_BACKGROUND_EXPAND;
119 #ifdef PNG_READ_16_TO_8_SUPPORTED 151 }
120 /* Strip 16 bit depth files to 8 bit depth */ 152
121 void PNGAPI 153 # ifdef PNG_FLOATING_POINT_SUPPORTED
122 png_set_strip_16(png_structp png_ptr) 154 void PNGAPI
155 png_set_background(png_structrp png_ptr,
156 png_const_color_16p background_color, int background_gamma_code,
157 int need_expand, double background_gamma)
158 {
159 png_set_background_fixed(png_ptr, background_color, background_gamma_code,
160 need_expand, png_fixed(png_ptr, background_gamma, "png_set_background"));
161 }
162 # endif /* FLOATING_POINT */
163 #endif /* READ_BACKGROUND */
164
165 /* Scale 16-bit depth files to 8-bit depth. If both of these are set then the
166 * one that pngrtran does first (scale) happens. This is necessary to allow the
167 * TRANSFORM and API behavior to be somewhat consistent, and it's simpler.
168 */
169 #ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
170 void PNGAPI
171 png_set_scale_16(png_structrp png_ptr)
172 {
173 png_debug(1, "in png_set_scale_16");
174
175 if (png_rtran_ok(png_ptr, 0) == 0)
176 return;
177
178 png_ptr->transformations |= PNG_SCALE_16_TO_8;
179 }
180 #endif
181
182 #ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
183 /* Chop 16-bit depth files to 8-bit depth */
184 void PNGAPI
185 png_set_strip_16(png_structrp png_ptr)
123 { 186 {
124 png_debug(1, "in png_set_strip_16"); 187 png_debug(1, "in png_set_strip_16");
125 188
126 if (png_ptr == NULL) 189 if (png_rtran_ok(png_ptr, 0) == 0)
127 return; 190 return;
191
128 png_ptr->transformations |= PNG_16_TO_8; 192 png_ptr->transformations |= PNG_16_TO_8;
129 } 193 }
130 #endif 194 #endif
131 195
132 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED 196 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
133 void PNGAPI 197 void PNGAPI
134 png_set_strip_alpha(png_structp png_ptr) 198 png_set_strip_alpha(png_structrp png_ptr)
135 { 199 {
136 png_debug(1, "in png_set_strip_alpha"); 200 png_debug(1, "in png_set_strip_alpha");
137 201
138 if (png_ptr == NULL) 202 if (png_rtran_ok(png_ptr, 0) == 0)
139 return; 203 return;
140 png_ptr->flags |= PNG_FLAG_STRIP_ALPHA; 204
141 } 205 png_ptr->transformations |= PNG_STRIP_ALPHA;
142 #endif 206 }
143 207 #endif
144 #ifdef PNG_READ_DITHER_SUPPORTED 208
145 /* Dither file to 8 bit. Supply a palette, the current number 209 #if defined(PNG_READ_ALPHA_MODE_SUPPORTED) || defined(PNG_READ_GAMMA_SUPPORTED)
210 static png_fixed_point
211 translate_gamma_flags(png_structrp png_ptr, png_fixed_point output_gamma,
212 int is_screen)
213 {
214 /* Check for flag values. The main reason for having the old Mac value as a
215 * flag is that it is pretty near impossible to work out what the correct
216 * value is from Apple documentation - a working Mac system is needed to
217 * discover the value!
218 */
219 if (output_gamma == PNG_DEFAULT_sRGB ||
220 output_gamma == PNG_FP_1 / PNG_DEFAULT_sRGB)
221 {
222 /* If there is no sRGB support this just sets the gamma to the standard
223 * sRGB value. (This is a side effect of using this function!)
224 */
225 # ifdef PNG_READ_sRGB_SUPPORTED
226 png_ptr->flags |= PNG_FLAG_ASSUME_sRGB;
227 # else
228 PNG_UNUSED(png_ptr)
229 # endif
230 if (is_screen != 0)
231 output_gamma = PNG_GAMMA_sRGB;
232 else
233 output_gamma = PNG_GAMMA_sRGB_INVERSE;
234 }
235
236 else if (output_gamma == PNG_GAMMA_MAC_18 ||
237 output_gamma == PNG_FP_1 / PNG_GAMMA_MAC_18)
238 {
239 if (is_screen != 0)
240 output_gamma = PNG_GAMMA_MAC_OLD;
241 else
242 output_gamma = PNG_GAMMA_MAC_INVERSE;
243 }
244
245 return output_gamma;
246 }
247
248 # ifdef PNG_FLOATING_POINT_SUPPORTED
249 static png_fixed_point
250 convert_gamma_value(png_structrp png_ptr, double output_gamma)
251 {
252 /* The following silently ignores cases where fixed point (times 100,000)
253 * gamma values are passed to the floating point API. This is safe and it
254 * means the fixed point constants work just fine with the floating point
255 * API. The alternative would just lead to undetected errors and spurious
256 * bug reports. Negative values fail inside the _fixed API unless they
257 * correspond to the flag values.
258 */
259 if (output_gamma > 0 && output_gamma < 128)
260 output_gamma *= PNG_FP_1;
261
262 /* This preserves -1 and -2 exactly: */
263 output_gamma = floor(output_gamma + .5);
264
265 if (output_gamma > PNG_FP_MAX || output_gamma < PNG_FP_MIN)
266 png_fixed_error(png_ptr, "gamma value");
267
268 return (png_fixed_point)output_gamma;
269 }
270 # endif
271 #endif /* READ_ALPHA_MODE || READ_GAMMA */
272
273 #ifdef PNG_READ_ALPHA_MODE_SUPPORTED
274 void PNGFAPI
275 png_set_alpha_mode_fixed(png_structrp png_ptr, int mode,
276 png_fixed_point output_gamma)
277 {
278 int compose = 0;
279 png_fixed_point file_gamma;
280
281 png_debug(1, "in png_set_alpha_mode");
282
283 if (png_rtran_ok(png_ptr, 0) == 0)
284 return;
285
286 output_gamma = translate_gamma_flags(png_ptr, output_gamma, 1/*screen*/);
287
288 /* Validate the value to ensure it is in a reasonable range. The value
289 * is expected to be 1 or greater, but this range test allows for some
290 * viewing correction values. The intent is to weed out users of this API
291 * who use the inverse of the gamma value accidentally! Since some of these
292 * values are reasonable this may have to be changed.
293 */
294 if (output_gamma < 70000 || output_gamma > 300000)
295 png_error(png_ptr, "output gamma out of expected range");
296
297 /* The default file gamma is the inverse of the output gamma; the output
298 * gamma may be changed below so get the file value first:
299 */
300 file_gamma = png_reciprocal(output_gamma);
301
302 /* There are really 8 possibilities here, composed of any combination
303 * of:
304 *
305 * premultiply the color channels
306 * do not encode non-opaque pixels
307 * encode the alpha as well as the color channels
308 *
309 * The differences disappear if the input/output ('screen') gamma is 1.0,
310 * because then the encoding is a no-op and there is only the choice of
311 * premultiplying the color channels or not.
312 *
313 * png_set_alpha_mode and png_set_background interact because both use
314 * png_compose to do the work. Calling both is only useful when
315 * png_set_alpha_mode is used to set the default mode - PNG_ALPHA_PNG - along
316 * with a default gamma value. Otherwise PNG_COMPOSE must not be set.
317 */
318 switch (mode)
319 {
320 case PNG_ALPHA_PNG: /* default: png standard */
321 /* No compose, but it may be set by png_set_background! */
322 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
323 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
324 break;
325
326 case PNG_ALPHA_ASSOCIATED: /* color channels premultiplied */
327 compose = 1;
328 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
329 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
330 /* The output is linear: */
331 output_gamma = PNG_FP_1;
332 break;
333
334 case PNG_ALPHA_OPTIMIZED: /* associated, non-opaque pixels linear */
335 compose = 1;
336 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
337 png_ptr->flags |= PNG_FLAG_OPTIMIZE_ALPHA;
338 /* output_gamma records the encoding of opaque pixels! */
339 break;
340
341 case PNG_ALPHA_BROKEN: /* associated, non-linear, alpha encoded */
342 compose = 1;
343 png_ptr->transformations |= PNG_ENCODE_ALPHA;
344 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
345 break;
346
347 default:
348 png_error(png_ptr, "invalid alpha mode");
349 }
350
351 /* Only set the default gamma if the file gamma has not been set (this has
352 * the side effect that the gamma in a second call to png_set_alpha_mode will
353 * be ignored.)
354 */
355 if (png_ptr->colorspace.gamma == 0)
356 {
357 png_ptr->colorspace.gamma = file_gamma;
358 png_ptr->colorspace.flags |= PNG_COLORSPACE_HAVE_GAMMA;
359 }
360
361 /* But always set the output gamma: */
362 png_ptr->screen_gamma = output_gamma;
363
364 /* Finally, if pre-multiplying, set the background fields to achieve the
365 * desired result.
366 */
367 if (compose != 0)
368 {
369 /* And obtain alpha pre-multiplication by composing on black: */
370 memset(&png_ptr->background, 0, (sizeof png_ptr->background));
371 png_ptr->background_gamma = png_ptr->colorspace.gamma; /* just in case */
372 png_ptr->background_gamma_type = PNG_BACKGROUND_GAMMA_FILE;
373 png_ptr->transformations &= ~PNG_BACKGROUND_EXPAND;
374
375 if ((png_ptr->transformations & PNG_COMPOSE) != 0)
376 png_error(png_ptr,
377 "conflicting calls to set alpha mode and background");
378
379 png_ptr->transformations |= PNG_COMPOSE;
380 }
381 }
382
383 # ifdef PNG_FLOATING_POINT_SUPPORTED
384 void PNGAPI
385 png_set_alpha_mode(png_structrp png_ptr, int mode, double output_gamma)
386 {
387 png_set_alpha_mode_fixed(png_ptr, mode, convert_gamma_value(png_ptr,
388 output_gamma));
389 }
390 # endif
391 #endif
392
393 #ifdef PNG_READ_QUANTIZE_SUPPORTED
394 /* Dither file to 8-bit. Supply a palette, the current number
146 * of elements in the palette, the maximum number of elements 395 * of elements in the palette, the maximum number of elements
147 * allowed, and a histogram if possible. If the current number 396 * allowed, and a histogram if possible. If the current number
148 * of colors is greater then the maximum number, the palette will be 397 * of colors is greater than the maximum number, the palette will be
149 * modified to fit in the maximum number. "full_dither" indicates 398 * modified to fit in the maximum number. "full_quantize" indicates
150 * whether we need a dithering cube set up for RGB images, or if we 399 * whether we need a quantizing cube set up for RGB images, or if we
151 * simply are reducing the number of colors in a paletted image. 400 * simply are reducing the number of colors in a paletted image.
152 */ 401 */
153 402
154 typedef struct png_dsort_struct 403 typedef struct png_dsort_struct
155 { 404 {
156 struct png_dsort_struct FAR * next; 405 struct png_dsort_struct * next;
157 png_byte left; 406 png_byte left;
158 png_byte right; 407 png_byte right;
159 } png_dsort; 408 } png_dsort;
160 typedef png_dsort FAR * png_dsortp; 409 typedef png_dsort * png_dsortp;
161 typedef png_dsort FAR * FAR * png_dsortpp; 410 typedef png_dsort * * png_dsortpp;
162 411
163 void PNGAPI 412 void PNGAPI
164 png_set_dither(png_structp png_ptr, png_colorp palette, 413 png_set_quantize(png_structrp png_ptr, png_colorp palette,
165 int num_palette, int maximum_colors, png_uint_16p histogram, 414 int num_palette, int maximum_colors, png_const_uint_16p histogram,
166 int full_dither) 415 int full_quantize)
167 { 416 {
168 png_debug(1, "in png_set_dither"); 417 png_debug(1, "in png_set_quantize");
169 418
170 if (png_ptr == NULL) 419 if (png_rtran_ok(png_ptr, 0) == 0)
171 return; 420 return;
172 png_ptr->transformations |= PNG_DITHER; 421
173 422 png_ptr->transformations |= PNG_QUANTIZE;
174 if (!full_dither) 423
424 if (full_quantize == 0)
175 { 425 {
176 int i; 426 int i;
177 427
178 png_ptr->dither_index = (png_bytep)png_malloc(png_ptr, 428 png_ptr->quantize_index = (png_bytep)png_malloc(png_ptr,
179 (png_uint_32)(num_palette * png_sizeof(png_byte))); 429 (png_uint_32)(num_palette * (sizeof (png_byte))));
180 for (i = 0; i < num_palette; i++) 430 for (i = 0; i < num_palette; i++)
181 png_ptr->dither_index[i] = (png_byte)i; 431 png_ptr->quantize_index[i] = (png_byte)i;
182 } 432 }
183 433
184 if (num_palette > maximum_colors) 434 if (num_palette > maximum_colors)
185 { 435 {
186 if (histogram != NULL) 436 if (histogram != NULL)
187 { 437 {
188 /* This is easy enough, just throw out the least used colors. 438 /* This is easy enough, just throw out the least used colors.
189 * Perhaps not the best solution, but good enough. 439 * Perhaps not the best solution, but good enough.
190 */ 440 */
191 441
192 int i; 442 int i;
193 443
194 /* Initialize an array to sort colors */ 444 /* Initialize an array to sort colors */
195 png_ptr->dither_sort = (png_bytep)png_malloc(png_ptr, 445 png_ptr->quantize_sort = (png_bytep)png_malloc(png_ptr,
196 (png_uint_32)(num_palette * png_sizeof(png_byte))); 446 (png_uint_32)(num_palette * (sizeof (png_byte))));
197 447
198 /* Initialize the dither_sort array */ 448 /* Initialize the quantize_sort array */
199 for (i = 0; i < num_palette; i++) 449 for (i = 0; i < num_palette; i++)
200 png_ptr->dither_sort[i] = (png_byte)i; 450 png_ptr->quantize_sort[i] = (png_byte)i;
201 451
202 /* Find the least used palette entries by starting a 452 /* Find the least used palette entries by starting a
203 * bubble sort, and running it until we have sorted 453 * bubble sort, and running it until we have sorted
204 * out enough colors. Note that we don't care about 454 * out enough colors. Note that we don't care about
205 * sorting all the colors, just finding which are 455 * sorting all the colors, just finding which are
206 * least used. 456 * least used.
207 */ 457 */
208 458
209 for (i = num_palette - 1; i >= maximum_colors; i--) 459 for (i = num_palette - 1; i >= maximum_colors; i--)
210 { 460 {
211 int done; /* To stop early if the list is pre-sorted */ 461 int done; /* To stop early if the list is pre-sorted */
212 int j; 462 int j;
213 463
214 done = 1; 464 done = 1;
215 for (j = 0; j < i; j++) 465 for (j = 0; j < i; j++)
216 { 466 {
217 if (histogram[png_ptr->dither_sort[j]] 467 if (histogram[png_ptr->quantize_sort[j]]
218 < histogram[png_ptr->dither_sort[j + 1]]) 468 < histogram[png_ptr->quantize_sort[j + 1]])
219 { 469 {
220 png_byte t; 470 png_byte t;
221 471
222 t = png_ptr->dither_sort[j]; 472 t = png_ptr->quantize_sort[j];
223 png_ptr->dither_sort[j] = png_ptr->dither_sort[j + 1]; 473 png_ptr->quantize_sort[j] = png_ptr->quantize_sort[j + 1];
224 png_ptr->dither_sort[j + 1] = t; 474 png_ptr->quantize_sort[j + 1] = t;
225 done = 0; 475 done = 0;
226 } 476 }
227 } 477 }
228 if (done) 478
479 if (done != 0)
229 break; 480 break;
230 } 481 }
231 482
232 /* Swap the palette around, and set up a table, if necessary */ 483 /* Swap the palette around, and set up a table, if necessary */
233 if (full_dither) 484 if (full_quantize != 0)
234 { 485 {
235 int j = num_palette; 486 int j = num_palette;
236 487
237 /* Put all the useful colors within the max, but don't 488 /* Put all the useful colors within the max, but don't
238 * move the others. 489 * move the others.
239 */ 490 */
240 for (i = 0; i < maximum_colors; i++) 491 for (i = 0; i < maximum_colors; i++)
241 { 492 {
242 if ((int)png_ptr->dither_sort[i] >= maximum_colors) 493 if ((int)png_ptr->quantize_sort[i] >= maximum_colors)
243 { 494 {
244 do 495 do
245 j--; 496 j--;
246 while ((int)png_ptr->dither_sort[j] >= maximum_colors); 497 while ((int)png_ptr->quantize_sort[j] >= maximum_colors);
498
247 palette[i] = palette[j]; 499 palette[i] = palette[j];
248 } 500 }
249 } 501 }
250 } 502 }
251 else 503 else
252 { 504 {
253 int j = num_palette; 505 int j = num_palette;
254 506
255 /* Move all the used colors inside the max limit, and 507 /* Move all the used colors inside the max limit, and
256 * develop a translation table. 508 * develop a translation table.
257 */ 509 */
258 for (i = 0; i < maximum_colors; i++) 510 for (i = 0; i < maximum_colors; i++)
259 { 511 {
260 /* Only move the colors we need to */ 512 /* Only move the colors we need to */
261 if ((int)png_ptr->dither_sort[i] >= maximum_colors) 513 if ((int)png_ptr->quantize_sort[i] >= maximum_colors)
262 { 514 {
263 png_color tmp_color; 515 png_color tmp_color;
264 516
265 do 517 do
266 j--; 518 j--;
267 while ((int)png_ptr->dither_sort[j] >= maximum_colors); 519 while ((int)png_ptr->quantize_sort[j] >= maximum_colors);
268 520
269 tmp_color = palette[j]; 521 tmp_color = palette[j];
270 palette[j] = palette[i]; 522 palette[j] = palette[i];
271 palette[i] = tmp_color; 523 palette[i] = tmp_color;
272 /* Indicate where the color went */ 524 /* Indicate where the color went */
273 png_ptr->dither_index[j] = (png_byte)i; 525 png_ptr->quantize_index[j] = (png_byte)i;
274 png_ptr->dither_index[i] = (png_byte)j; 526 png_ptr->quantize_index[i] = (png_byte)j;
275 } 527 }
276 } 528 }
277 529
278 /* Find closest color for those colors we are not using */ 530 /* Find closest color for those colors we are not using */
279 for (i = 0; i < num_palette; i++) 531 for (i = 0; i < num_palette; i++)
280 { 532 {
281 if ((int)png_ptr->dither_index[i] >= maximum_colors) 533 if ((int)png_ptr->quantize_index[i] >= maximum_colors)
282 { 534 {
283 int min_d, k, min_k, d_index; 535 int min_d, k, min_k, d_index;
284 536
285 /* Find the closest color to one we threw out */ 537 /* Find the closest color to one we threw out */
286 d_index = png_ptr->dither_index[i]; 538 d_index = png_ptr->quantize_index[i];
287 min_d = PNG_COLOR_DIST(palette[d_index], palette[0]); 539 min_d = PNG_COLOR_DIST(palette[d_index], palette[0]);
288 for (k = 1, min_k = 0; k < maximum_colors; k++) 540 for (k = 1, min_k = 0; k < maximum_colors; k++)
289 { 541 {
290 int d; 542 int d;
291 543
292 d = PNG_COLOR_DIST(palette[d_index], palette[k]); 544 d = PNG_COLOR_DIST(palette[d_index], palette[k]);
293 545
294 if (d < min_d) 546 if (d < min_d)
295 { 547 {
296 min_d = d; 548 min_d = d;
297 min_k = k; 549 min_k = k;
298 } 550 }
299 } 551 }
300 /* Point to closest color */ 552 /* Point to closest color */
301 png_ptr->dither_index[i] = (png_byte)min_k; 553 png_ptr->quantize_index[i] = (png_byte)min_k;
302 } 554 }
303 } 555 }
304 } 556 }
305 png_free(png_ptr, png_ptr->dither_sort); 557 png_free(png_ptr, png_ptr->quantize_sort);
306 png_ptr->dither_sort = NULL; 558 png_ptr->quantize_sort = NULL;
307 } 559 }
308 else 560 else
309 { 561 {
310 /* This is much harder to do simply (and quickly). Perhaps 562 /* This is much harder to do simply (and quickly). Perhaps
311 * we need to go through a median cut routine, but those 563 * we need to go through a median cut routine, but those
312 * don't always behave themselves with only a few colors 564 * don't always behave themselves with only a few colors
313 * as input. So we will just find the closest two colors, 565 * as input. So we will just find the closest two colors,
314 * and throw out one of them (chosen somewhat randomly). 566 * and throw out one of them (chosen somewhat randomly).
315 * [We don't understand this at all, so if someone wants to 567 * [We don't understand this at all, so if someone wants to
316 * work on improving it, be our guest - AED, GRP] 568 * work on improving it, be our guest - AED, GRP]
317 */ 569 */
318 int i; 570 int i;
319 int max_d; 571 int max_d;
320 int num_new_palette; 572 int num_new_palette;
321 png_dsortp t; 573 png_dsortp t;
322 png_dsortpp hash; 574 png_dsortpp hash;
323 575
324 t = NULL; 576 t = NULL;
325 577
326 /* Initialize palette index arrays */ 578 /* Initialize palette index arrays */
327 png_ptr->index_to_palette = (png_bytep)png_malloc(png_ptr, 579 png_ptr->index_to_palette = (png_bytep)png_malloc(png_ptr,
328 (png_uint_32)(num_palette * png_sizeof(png_byte))); 580 (png_uint_32)(num_palette * (sizeof (png_byte))));
329 png_ptr->palette_to_index = (png_bytep)png_malloc(png_ptr, 581 png_ptr->palette_to_index = (png_bytep)png_malloc(png_ptr,
330 (png_uint_32)(num_palette * png_sizeof(png_byte))); 582 (png_uint_32)(num_palette * (sizeof (png_byte))));
331 583
332 /* Initialize the sort array */ 584 /* Initialize the sort array */
333 for (i = 0; i < num_palette; i++) 585 for (i = 0; i < num_palette; i++)
334 { 586 {
335 png_ptr->index_to_palette[i] = (png_byte)i; 587 png_ptr->index_to_palette[i] = (png_byte)i;
336 png_ptr->palette_to_index[i] = (png_byte)i; 588 png_ptr->palette_to_index[i] = (png_byte)i;
337 } 589 }
338 590
339 hash = (png_dsortpp)png_calloc(png_ptr, (png_uint_32)(769 * 591 hash = (png_dsortpp)png_calloc(png_ptr, (png_uint_32)(769 *
340 png_sizeof(png_dsortp))); 592 (sizeof (png_dsortp))));
341 593
342 num_new_palette = num_palette; 594 num_new_palette = num_palette;
343 595
344 /* Initial wild guess at how far apart the farthest pixel 596 /* Initial wild guess at how far apart the farthest pixel
345 * pair we will be eliminating will be. Larger 597 * pair we will be eliminating will be. Larger
346 * numbers mean more areas will be allocated, Smaller 598 * numbers mean more areas will be allocated, Smaller
347 * numbers run the risk of not saving enough data, and 599 * numbers run the risk of not saving enough data, and
348 * having to do this all over again. 600 * having to do this all over again.
349 * 601 *
350 * I have not done extensive checking on this number. 602 * I have not done extensive checking on this number.
351 */ 603 */
352 max_d = 96; 604 max_d = 96;
353 605
354 while (num_new_palette > maximum_colors) 606 while (num_new_palette > maximum_colors)
355 { 607 {
356 for (i = 0; i < num_new_palette - 1; i++) 608 for (i = 0; i < num_new_palette - 1; i++)
357 { 609 {
358 int j; 610 int j;
359 611
360 for (j = i + 1; j < num_new_palette; j++) 612 for (j = i + 1; j < num_new_palette; j++)
361 { 613 {
362 int d; 614 int d;
363 615
364 d = PNG_COLOR_DIST(palette[i], palette[j]); 616 d = PNG_COLOR_DIST(palette[i], palette[j]);
365 617
366 if (d <= max_d) 618 if (d <= max_d)
367 { 619 {
368 620
369 t = (png_dsortp)png_malloc_warn(png_ptr, 621 t = (png_dsortp)png_malloc_warn(png_ptr,
370 (png_uint_32)(png_sizeof(png_dsort))); 622 (png_uint_32)(sizeof (png_dsort)));
623
371 if (t == NULL) 624 if (t == NULL)
372 break; 625 break;
626
373 t->next = hash[d]; 627 t->next = hash[d];
374 t->left = (png_byte)i; 628 t->left = (png_byte)i;
375 t->right = (png_byte)j; 629 t->right = (png_byte)j;
376 hash[d] = t; 630 hash[d] = t;
377 } 631 }
378 } 632 }
379 if (t == NULL) 633 if (t == NULL)
380 break; 634 break;
381 } 635 }
382 636
383 if (t != NULL) 637 if (t != NULL)
384 for (i = 0; i <= max_d; i++) 638 for (i = 0; i <= max_d; i++)
385 { 639 {
386 if (hash[i] != NULL) 640 if (hash[i] != NULL)
387 { 641 {
388 png_dsortp p; 642 png_dsortp p;
389 643
390 for (p = hash[i]; p; p = p->next) 644 for (p = hash[i]; p; p = p->next)
391 { 645 {
392 if ((int)png_ptr->index_to_palette[p->left] 646 if ((int)png_ptr->index_to_palette[p->left]
393 < num_new_palette && 647 < num_new_palette &&
394 (int)png_ptr->index_to_palette[p->right] 648 (int)png_ptr->index_to_palette[p->right]
395 < num_new_palette) 649 < num_new_palette)
396 { 650 {
397 int j, next_j; 651 int j, next_j;
398 652
399 if (num_new_palette & 0x01) 653 if (num_new_palette & 0x01)
400 { 654 {
401 j = p->left; 655 j = p->left;
402 next_j = p->right; 656 next_j = p->right;
403 } 657 }
404 else 658 else
405 { 659 {
406 j = p->right; 660 j = p->right;
407 next_j = p->left; 661 next_j = p->left;
408 } 662 }
409 663
410 num_new_palette--; 664 num_new_palette--;
411 palette[png_ptr->index_to_palette[j]] 665 palette[png_ptr->index_to_palette[j]]
412 = palette[num_new_palette]; 666 = palette[num_new_palette];
413 if (!full_dither) 667 if (full_quantize == 0)
414 { 668 {
415 int k; 669 int k;
416 670
417 for (k = 0; k < num_palette; k++) 671 for (k = 0; k < num_palette; k++)
418 { 672 {
419 if (png_ptr->dither_index[k] == 673 if (png_ptr->quantize_index[k] ==
420 png_ptr->index_to_palette[j]) 674 png_ptr->index_to_palette[j])
421 png_ptr->dither_index[k] = 675 png_ptr->quantize_index[k] =
422 png_ptr->index_to_palette[next_j]; 676 png_ptr->index_to_palette[next_j];
423 if ((int)png_ptr->dither_index[k] == 677
424 num_new_palette) 678 if ((int)png_ptr->quantize_index[k] ==
425 png_ptr->dither_index[k] = 679 num_new_palette)
426 png_ptr->index_to_palette[j]; 680 png_ptr->quantize_index[k] =
681 png_ptr->index_to_palette[j];
427 } 682 }
428 } 683 }
429 684
430 png_ptr->index_to_palette[png_ptr->palette_to_index 685 png_ptr->index_to_palette[png_ptr->palette_to_index
431 [num_new_palette]] = png_ptr->index_to_palette[j]; 686 [num_new_palette]] = png_ptr->index_to_palette[j];
687
432 png_ptr->palette_to_index[png_ptr->index_to_palette[j]] 688 png_ptr->palette_to_index[png_ptr->index_to_palette[j]]
433 = png_ptr->palette_to_index[num_new_palette]; 689 = png_ptr->palette_to_index[num_new_palette];
434 690
435 png_ptr->index_to_palette[j] = 691 png_ptr->index_to_palette[j] =
436 (png_byte)num_new_palette; 692 (png_byte)num_new_palette;
693
437 png_ptr->palette_to_index[num_new_palette] = 694 png_ptr->palette_to_index[num_new_palette] =
438 (png_byte)j; 695 (png_byte)j;
439 } 696 }
440 if (num_new_palette <= maximum_colors) 697 if (num_new_palette <= maximum_colors)
441 break; 698 break;
442 } 699 }
443 if (num_new_palette <= maximum_colors) 700 if (num_new_palette <= maximum_colors)
444 break; 701 break;
445 } 702 }
446 } 703 }
(...skipping 21 matching lines...) Expand all
468 png_ptr->index_to_palette = NULL; 725 png_ptr->index_to_palette = NULL;
469 } 726 }
470 num_palette = maximum_colors; 727 num_palette = maximum_colors;
471 } 728 }
472 if (png_ptr->palette == NULL) 729 if (png_ptr->palette == NULL)
473 { 730 {
474 png_ptr->palette = palette; 731 png_ptr->palette = palette;
475 } 732 }
476 png_ptr->num_palette = (png_uint_16)num_palette; 733 png_ptr->num_palette = (png_uint_16)num_palette;
477 734
478 if (full_dither) 735 if (full_quantize != 0)
479 { 736 {
480 int i; 737 int i;
481 png_bytep distance; 738 png_bytep distance;
482 int total_bits = PNG_DITHER_RED_BITS + PNG_DITHER_GREEN_BITS + 739 int total_bits = PNG_QUANTIZE_RED_BITS + PNG_QUANTIZE_GREEN_BITS +
483 PNG_DITHER_BLUE_BITS; 740 PNG_QUANTIZE_BLUE_BITS;
484 int num_red = (1 << PNG_DITHER_RED_BITS); 741 int num_red = (1 << PNG_QUANTIZE_RED_BITS);
485 int num_green = (1 << PNG_DITHER_GREEN_BITS); 742 int num_green = (1 << PNG_QUANTIZE_GREEN_BITS);
486 int num_blue = (1 << PNG_DITHER_BLUE_BITS); 743 int num_blue = (1 << PNG_QUANTIZE_BLUE_BITS);
487 png_size_t num_entries = ((png_size_t)1 << total_bits); 744 png_size_t num_entries = ((png_size_t)1 << total_bits);
488 745
489 png_ptr->palette_lookup = (png_bytep )png_calloc(png_ptr, 746 png_ptr->palette_lookup = (png_bytep)png_calloc(png_ptr,
490 (png_uint_32)(num_entries * png_sizeof(png_byte))); 747 (png_uint_32)(num_entries * (sizeof (png_byte))));
491 748
492 distance = (png_bytep)png_malloc(png_ptr, (png_uint_32)(num_entries * 749 distance = (png_bytep)png_malloc(png_ptr, (png_uint_32)(num_entries *
493 png_sizeof(png_byte))); 750 (sizeof (png_byte))));
494 png_memset(distance, 0xff, num_entries * png_sizeof(png_byte)); 751
752 memset(distance, 0xff, num_entries * (sizeof (png_byte)));
495 753
496 for (i = 0; i < num_palette; i++) 754 for (i = 0; i < num_palette; i++)
497 { 755 {
498 int ir, ig, ib; 756 int ir, ig, ib;
499 int r = (palette[i].red >> (8 - PNG_DITHER_RED_BITS)); 757 int r = (palette[i].red >> (8 - PNG_QUANTIZE_RED_BITS));
500 int g = (palette[i].green >> (8 - PNG_DITHER_GREEN_BITS)); 758 int g = (palette[i].green >> (8 - PNG_QUANTIZE_GREEN_BITS));
501 int b = (palette[i].blue >> (8 - PNG_DITHER_BLUE_BITS)); 759 int b = (palette[i].blue >> (8 - PNG_QUANTIZE_BLUE_BITS));
502 760
503 for (ir = 0; ir < num_red; ir++) 761 for (ir = 0; ir < num_red; ir++)
504 { 762 {
505 /* int dr = abs(ir - r); */ 763 /* int dr = abs(ir - r); */
506 int dr = ((ir > r) ? ir - r : r - ir); 764 int dr = ((ir > r) ? ir - r : r - ir);
507 int index_r = (ir << (PNG_DITHER_BLUE_BITS + 765 int index_r = (ir << (PNG_QUANTIZE_BLUE_BITS +
508 PNG_DITHER_GREEN_BITS)); 766 PNG_QUANTIZE_GREEN_BITS));
509 767
510 for (ig = 0; ig < num_green; ig++) 768 for (ig = 0; ig < num_green; ig++)
511 { 769 {
512 /* int dg = abs(ig - g); */ 770 /* int dg = abs(ig - g); */
513 int dg = ((ig > g) ? ig - g : g - ig); 771 int dg = ((ig > g) ? ig - g : g - ig);
514 int dt = dr + dg; 772 int dt = dr + dg;
515 int dm = ((dr > dg) ? dr : dg); 773 int dm = ((dr > dg) ? dr : dg);
516 int index_g = index_r | (ig << PNG_DITHER_BLUE_BITS); 774 int index_g = index_r | (ig << PNG_QUANTIZE_BLUE_BITS);
517 775
518 for (ib = 0; ib < num_blue; ib++) 776 for (ib = 0; ib < num_blue; ib++)
519 { 777 {
520 int d_index = index_g | ib; 778 int d_index = index_g | ib;
521 /* int db = abs(ib - b); */ 779 /* int db = abs(ib - b); */
522 int db = ((ib > b) ? ib - b : b - ib); 780 int db = ((ib > b) ? ib - b : b - ib);
523 int dmax = ((dm > db) ? dm : db); 781 int dmax = ((dm > db) ? dm : db);
524 int d = dmax + dt + db; 782 int d = dmax + dt + db;
525 783
526 if (d < (int)distance[d_index]) 784 if (d < (int)distance[d_index])
527 { 785 {
528 distance[d_index] = (png_byte)d; 786 distance[d_index] = (png_byte)d;
529 png_ptr->palette_lookup[d_index] = (png_byte)i; 787 png_ptr->palette_lookup[d_index] = (png_byte)i;
530 } 788 }
531 } 789 }
532 } 790 }
533 } 791 }
534 } 792 }
535 793
536 png_free(png_ptr, distance); 794 png_free(png_ptr, distance);
537 } 795 }
538 } 796 }
539 #endif 797 #endif /* READ_QUANTIZE */
540 798
541 #if defined(PNG_READ_GAMMA_SUPPORTED) && defined(PNG_FLOATING_POINT_SUPPORTED) 799 #ifdef PNG_READ_GAMMA_SUPPORTED
542 /* Transform the image from the file_gamma to the screen_gamma. We 800 void PNGFAPI
543 * only do transformations on images where the file_gamma and screen_gamma 801 png_set_gamma_fixed(png_structrp png_ptr, png_fixed_point scrn_gamma,
544 * are not close reciprocals, otherwise it slows things down slightly, and 802 png_fixed_point file_gamma)
545 * also needlessly introduces small errors.
546 *
547 * We will turn off gamma transformation later if no semitransparent entries
548 * are present in the tRNS array for palette images. We can't do it here
549 * because we don't necessarily have the tRNS chunk yet.
550 */
551 void PNGAPI
552 png_set_gamma(png_structp png_ptr, double scrn_gamma, double file_gamma)
553 { 803 {
554 png_debug(1, "in png_set_gamma"); 804 png_debug(1, "in png_set_gamma_fixed");
555 805
556 if (png_ptr == NULL) 806 if (png_rtran_ok(png_ptr, 0) == 0)
557 return; 807 return;
558 808
559 if ((fabs(scrn_gamma * file_gamma - 1.0) > PNG_GAMMA_THRESHOLD) || 809 /* New in libpng-1.5.4 - reserve particular negative values as flags. */
560 (png_ptr->color_type & PNG_COLOR_MASK_ALPHA) || 810 scrn_gamma = translate_gamma_flags(png_ptr, scrn_gamma, 1/*screen*/);
561 (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)) 811 file_gamma = translate_gamma_flags(png_ptr, file_gamma, 0/*file*/);
562 png_ptr->transformations |= PNG_GAMMA; 812
563 png_ptr->gamma = (float)file_gamma; 813 /* Checking the gamma values for being >0 was added in 1.5.4 along with the
564 png_ptr->screen_gamma = (float)scrn_gamma; 814 * premultiplied alpha support; this actually hides an undocumented feature
815 * of the previous implementation which allowed gamma processing to be
816 * disabled in background handling. There is no evidence (so far) that this
817 * was being used; however, png_set_background itself accepted and must still
818 * accept '0' for the gamma value it takes, because it isn't always used.
819 *
820 * Since this is an API change (albeit a very minor one that removes an
821 * undocumented API feature) the following checks were only enabled in
822 * libpng-1.6.0.
823 */
824 if (file_gamma <= 0)
825 png_error(png_ptr, "invalid file gamma in png_set_gamma");
826
827 if (scrn_gamma <= 0)
828 png_error(png_ptr, "invalid screen gamma in png_set_gamma");
829
830 /* Set the gamma values unconditionally - this overrides the value in the PNG
831 * file if a gAMA chunk was present. png_set_alpha_mode provides a
832 * different, easier, way to default the file gamma.
833 */
834 png_ptr->colorspace.gamma = file_gamma;
835 png_ptr->colorspace.flags |= PNG_COLORSPACE_HAVE_GAMMA;
836 png_ptr->screen_gamma = scrn_gamma;
565 } 837 }
566 #endif 838
839 # ifdef PNG_FLOATING_POINT_SUPPORTED
840 void PNGAPI
841 png_set_gamma(png_structrp png_ptr, double scrn_gamma, double file_gamma)
842 {
843 png_set_gamma_fixed(png_ptr, convert_gamma_value(png_ptr, scrn_gamma),
844 convert_gamma_value(png_ptr, file_gamma));
845 }
846 # endif /* FLOATING_POINT */
847 #endif /* READ_GAMMA */
567 848
568 #ifdef PNG_READ_EXPAND_SUPPORTED 849 #ifdef PNG_READ_EXPAND_SUPPORTED
569 /* Expand paletted images to RGB, expand grayscale images of 850 /* Expand paletted images to RGB, expand grayscale images of
570 * less than 8-bit depth to 8-bit depth, and expand tRNS chunks 851 * less than 8-bit depth to 8-bit depth, and expand tRNS chunks
571 * to alpha channels. 852 * to alpha channels.
572 */ 853 */
573 void PNGAPI 854 void PNGAPI
574 png_set_expand(png_structp png_ptr) 855 png_set_expand(png_structrp png_ptr)
575 { 856 {
576 png_debug(1, "in png_set_expand"); 857 png_debug(1, "in png_set_expand");
577 858
578 if (png_ptr == NULL) 859 if (png_rtran_ok(png_ptr, 0) == 0)
579 return; 860 return;
580 861
581 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS); 862 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS);
582 png_ptr->flags &= ~PNG_FLAG_ROW_INIT;
583 } 863 }
584 864
585 /* GRR 19990627: the following three functions currently are identical 865 /* GRR 19990627: the following three functions currently are identical
586 * to png_set_expand(). However, it is entirely reasonable that someone 866 * to png_set_expand(). However, it is entirely reasonable that someone
587 * might wish to expand an indexed image to RGB but *not* expand a single, 867 * might wish to expand an indexed image to RGB but *not* expand a single,
588 * fully transparent palette entry to a full alpha channel--perhaps instead 868 * fully transparent palette entry to a full alpha channel--perhaps instead
589 * convert tRNS to the grayscale/RGB format (16-bit RGB value), or replace 869 * convert tRNS to the grayscale/RGB format (16-bit RGB value), or replace
590 * the transparent color with a particular RGB value, or drop tRNS entirely. 870 * the transparent color with a particular RGB value, or drop tRNS entirely.
591 * IOW, a future version of the library may make the transformations flag 871 * IOW, a future version of the library may make the transformations flag
592 * a bit more fine-grained, with separate bits for each of these three 872 * a bit more fine-grained, with separate bits for each of these three
593 * functions. 873 * functions.
594 * 874 *
595 * More to the point, these functions make it obvious what libpng will be 875 * More to the point, these functions make it obvious what libpng will be
596 * doing, whereas "expand" can (and does) mean any number of things. 876 * doing, whereas "expand" can (and does) mean any number of things.
597 * 877 *
598 * GRP 20060307: In libpng-1.2.9, png_set_gray_1_2_4_to_8() was modified 878 * GRP 20060307: In libpng-1.2.9, png_set_gray_1_2_4_to_8() was modified
599 * to expand only the sample depth but not to expand the tRNS to alpha 879 * to expand only the sample depth but not to expand the tRNS to alpha
600 * and its name was changed to png_set_expand_gray_1_2_4_to_8(). 880 * and its name was changed to png_set_expand_gray_1_2_4_to_8().
601 */ 881 */
602 882
603 /* Expand paletted images to RGB. */ 883 /* Expand paletted images to RGB. */
604 void PNGAPI 884 void PNGAPI
605 png_set_palette_to_rgb(png_structp png_ptr) 885 png_set_palette_to_rgb(png_structrp png_ptr)
606 { 886 {
607 png_debug(1, "in png_set_palette_to_rgb"); 887 png_debug(1, "in png_set_palette_to_rgb");
608 888
609 if (png_ptr == NULL) 889 if (png_rtran_ok(png_ptr, 0) == 0)
610 return; 890 return;
611 891
612 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS); 892 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS);
613 png_ptr->flags &= ~PNG_FLAG_ROW_INIT; 893 }
614 } 894
615
616 #ifndef PNG_1_0_X
617 /* Expand grayscale images of less than 8-bit depth to 8 bits. */ 895 /* Expand grayscale images of less than 8-bit depth to 8 bits. */
618 void PNGAPI 896 void PNGAPI
619 png_set_expand_gray_1_2_4_to_8(png_structp png_ptr) 897 png_set_expand_gray_1_2_4_to_8(png_structrp png_ptr)
620 { 898 {
621 png_debug(1, "in png_set_expand_gray_1_2_4_to_8"); 899 png_debug(1, "in png_set_expand_gray_1_2_4_to_8");
622 900
623 if (png_ptr == NULL) 901 if (png_rtran_ok(png_ptr, 0) == 0)
624 return; 902 return;
625 903
626 png_ptr->transformations |= PNG_EXPAND; 904 png_ptr->transformations |= PNG_EXPAND;
627 png_ptr->flags &= ~PNG_FLAG_ROW_INIT; 905 }
628 }
629 #endif
630
631 #if defined(PNG_1_0_X) || defined(PNG_1_2_X)
632 /* Expand grayscale images of less than 8-bit depth to 8 bits. */
633 /* Deprecated as of libpng-1.2.9 */
634 void PNGAPI
635 png_set_gray_1_2_4_to_8(png_structp png_ptr)
636 {
637 png_debug(1, "in png_set_gray_1_2_4_to_8");
638
639 if (png_ptr == NULL)
640 return;
641
642 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS);
643 }
644 #endif
645
646 906
647 /* Expand tRNS chunks to alpha channels. */ 907 /* Expand tRNS chunks to alpha channels. */
648 void PNGAPI 908 void PNGAPI
649 png_set_tRNS_to_alpha(png_structp png_ptr) 909 png_set_tRNS_to_alpha(png_structrp png_ptr)
650 { 910 {
651 png_debug(1, "in png_set_tRNS_to_alpha"); 911 png_debug(1, "in png_set_tRNS_to_alpha");
652 912
913 if (png_rtran_ok(png_ptr, 0) == 0)
914 return;
915
653 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS); 916 png_ptr->transformations |= (PNG_EXPAND | PNG_EXPAND_tRNS);
654 png_ptr->flags &= ~PNG_FLAG_ROW_INIT; 917 }
655 } 918 #endif /* READ_EXPAND */
656 #endif /* defined(PNG_READ_EXPAND_SUPPORTED) */ 919
920 #ifdef PNG_READ_EXPAND_16_SUPPORTED
921 /* Expand to 16-bit channels, expand the tRNS chunk too (because otherwise
922 * it may not work correctly.)
923 */
924 void PNGAPI
925 png_set_expand_16(png_structrp png_ptr)
926 {
927 png_debug(1, "in png_set_expand_16");
928
929 if (png_rtran_ok(png_ptr, 0) == 0)
930 return;
931
932 png_ptr->transformations |= (PNG_EXPAND_16 | PNG_EXPAND | PNG_EXPAND_tRNS);
933 }
934 #endif
657 935
658 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED 936 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
659 void PNGAPI 937 void PNGAPI
660 png_set_gray_to_rgb(png_structp png_ptr) 938 png_set_gray_to_rgb(png_structrp png_ptr)
661 { 939 {
662 png_debug(1, "in png_set_gray_to_rgb"); 940 png_debug(1, "in png_set_gray_to_rgb");
663 941
942 if (png_rtran_ok(png_ptr, 0) == 0)
943 return;
944
945 /* Because rgb must be 8 bits or more: */
946 png_set_expand_gray_1_2_4_to_8(png_ptr);
664 png_ptr->transformations |= PNG_GRAY_TO_RGB; 947 png_ptr->transformations |= PNG_GRAY_TO_RGB;
665 png_ptr->flags &= ~PNG_FLAG_ROW_INIT;
666 } 948 }
667 #endif 949 #endif
668 950
669 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED 951 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
952 void PNGFAPI
953 png_set_rgb_to_gray_fixed(png_structrp png_ptr, int error_action,
954 png_fixed_point red, png_fixed_point green)
955 {
956 png_debug(1, "in png_set_rgb_to_gray");
957
958 /* Need the IHDR here because of the check on color_type below. */
959 /* TODO: fix this */
960 if (png_rtran_ok(png_ptr, 1) == 0)
961 return;
962
963 switch (error_action)
964 {
965 case PNG_ERROR_ACTION_NONE:
966 png_ptr->transformations |= PNG_RGB_TO_GRAY;
967 break;
968
969 case PNG_ERROR_ACTION_WARN:
970 png_ptr->transformations |= PNG_RGB_TO_GRAY_WARN;
971 break;
972
973 case PNG_ERROR_ACTION_ERROR:
974 png_ptr->transformations |= PNG_RGB_TO_GRAY_ERR;
975 break;
976
977 default:
978 png_error(png_ptr, "invalid error action to rgb_to_gray");
979 }
980
981 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
982 #ifdef PNG_READ_EXPAND_SUPPORTED
983 png_ptr->transformations |= PNG_EXPAND;
984 #else
985 {
986 /* Make this an error in 1.6 because otherwise the application may assume
987 * that it just worked and get a memory overwrite.
988 */
989 png_error(png_ptr,
990 "Cannot do RGB_TO_GRAY without EXPAND_SUPPORTED");
991
992 /* png_ptr->transformations &= ~PNG_RGB_TO_GRAY; */
993 }
994 #endif
995 {
996 if (red >= 0 && green >= 0 && red + green <= PNG_FP_1)
997 {
998 png_uint_16 red_int, green_int;
999
1000 /* NOTE: this calculation does not round, but this behavior is retained
1001 * for consistency; the inaccuracy is very small. The code here always
1002 * overwrites the coefficients, regardless of whether they have been
1003 * defaulted or set already.
1004 */
1005 red_int = (png_uint_16)(((png_uint_32)red*32768)/100000);
1006 green_int = (png_uint_16)(((png_uint_32)green*32768)/100000);
1007
1008 png_ptr->rgb_to_gray_red_coeff = red_int;
1009 png_ptr->rgb_to_gray_green_coeff = green_int;
1010 png_ptr->rgb_to_gray_coefficients_set = 1;
1011 }
1012
1013 else
1014 {
1015 if (red >= 0 && green >= 0)
1016 png_app_warning(png_ptr,
1017 "ignoring out of range rgb_to_gray coefficients");
1018
1019 /* Use the defaults, from the cHRM chunk if set, else the historical
1020 * values which are close to the sRGB/HDTV/ITU-Rec 709 values. See
1021 * png_do_rgb_to_gray for more discussion of the values. In this case
1022 * the coefficients are not marked as 'set' and are not overwritten if
1023 * something has already provided a default.
1024 */
1025 if (png_ptr->rgb_to_gray_red_coeff == 0 &&
1026 png_ptr->rgb_to_gray_green_coeff == 0)
1027 {
1028 png_ptr->rgb_to_gray_red_coeff = 6968;
1029 png_ptr->rgb_to_gray_green_coeff = 23434;
1030 /* png_ptr->rgb_to_gray_blue_coeff = 2366; */
1031 }
1032 }
1033 }
1034 }
1035
670 #ifdef PNG_FLOATING_POINT_SUPPORTED 1036 #ifdef PNG_FLOATING_POINT_SUPPORTED
671 /* Convert a RGB image to a grayscale of the same width. This allows us, 1037 /* Convert a RGB image to a grayscale of the same width. This allows us,
672 * for example, to convert a 24 bpp RGB image into an 8 bpp grayscale image. 1038 * for example, to convert a 24 bpp RGB image into an 8 bpp grayscale image.
673 */ 1039 */
674 1040
675 void PNGAPI 1041 void PNGAPI
676 png_set_rgb_to_gray(png_structp png_ptr, int error_action, double red, 1042 png_set_rgb_to_gray(png_structrp png_ptr, int error_action, double red,
677 double green) 1043 double green)
678 { 1044 {
679 int red_fixed, green_fixed; 1045 png_set_rgb_to_gray_fixed(png_ptr, error_action,
680 if (png_ptr == NULL) 1046 png_fixed(png_ptr, red, "rgb to gray red coefficient"),
681 return; 1047 png_fixed(png_ptr, green, "rgb to gray green coefficient"));
682 if (red > 21474.83647 || red < -21474.83648 || 1048 }
683 green > 21474.83647 || green < -21474.83648) 1049 #endif /* FLOATING POINT */
684 { 1050
685 png_warning(png_ptr, "ignoring out of range rgb_to_gray coefficients"); 1051 #endif /* RGB_TO_GRAY */
686 red_fixed = -1;
687 green_fixed = -1;
688 }
689 else
690 {
691 red_fixed = (int)((float)red*100000.0 + 0.5);
692 green_fixed = (int)((float)green*100000.0 + 0.5);
693 }
694 png_set_rgb_to_gray_fixed(png_ptr, error_action, red_fixed, green_fixed);
695 }
696 #endif
697
698 void PNGAPI
699 png_set_rgb_to_gray_fixed(png_structp png_ptr, int error_action,
700 png_fixed_point red, png_fixed_point green)
701 {
702 png_debug(1, "in png_set_rgb_to_gray");
703
704 if (png_ptr == NULL)
705 return;
706
707 switch(error_action)
708 {
709 case 1: png_ptr->transformations |= PNG_RGB_TO_GRAY;
710 break;
711
712 case 2: png_ptr->transformations |= PNG_RGB_TO_GRAY_WARN;
713 break;
714
715 case 3: png_ptr->transformations |= PNG_RGB_TO_GRAY_ERR;
716 }
717 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
718 #ifdef PNG_READ_EXPAND_SUPPORTED
719 png_ptr->transformations |= PNG_EXPAND;
720 #else
721 {
722 png_warning(png_ptr,
723 "Cannot do RGB_TO_GRAY without EXPAND_SUPPORTED.");
724 png_ptr->transformations &= ~PNG_RGB_TO_GRAY;
725 }
726 #endif
727 {
728 png_uint_16 red_int, green_int;
729 if (red < 0 || green < 0)
730 {
731 red_int = 6968; /* .212671 * 32768 + .5 */
732 green_int = 23434; /* .715160 * 32768 + .5 */
733 }
734 else if (red + green < 100000L)
735 {
736 red_int = (png_uint_16)(((png_uint_32)red*32768L)/100000L);
737 green_int = (png_uint_16)(((png_uint_32)green*32768L)/100000L);
738 }
739 else
740 {
741 png_warning(png_ptr, "ignoring out of range rgb_to_gray coefficients");
742 red_int = 6968;
743 green_int = 23434;
744 }
745 png_ptr->rgb_to_gray_red_coeff = red_int;
746 png_ptr->rgb_to_gray_green_coeff = green_int;
747 png_ptr->rgb_to_gray_blue_coeff =
748 (png_uint_16)(32768 - red_int - green_int);
749 }
750 }
751 #endif
752 1052
753 #if defined(PNG_READ_USER_TRANSFORM_SUPPORTED) || \ 1053 #if defined(PNG_READ_USER_TRANSFORM_SUPPORTED) || \
754 defined(PNG_LEGACY_SUPPORTED) || \
755 defined(PNG_WRITE_USER_TRANSFORM_SUPPORTED) 1054 defined(PNG_WRITE_USER_TRANSFORM_SUPPORTED)
756 void PNGAPI 1055 void PNGAPI
757 png_set_read_user_transform_fn(png_structp png_ptr, png_user_transform_ptr 1056 png_set_read_user_transform_fn(png_structrp png_ptr, png_user_transform_ptr
758 read_user_transform_fn) 1057 read_user_transform_fn)
759 { 1058 {
760 png_debug(1, "in png_set_read_user_transform_fn"); 1059 png_debug(1, "in png_set_read_user_transform_fn");
761 1060
762 if (png_ptr == NULL)
763 return;
764
765 #ifdef PNG_READ_USER_TRANSFORM_SUPPORTED 1061 #ifdef PNG_READ_USER_TRANSFORM_SUPPORTED
766 png_ptr->transformations |= PNG_USER_TRANSFORM; 1062 png_ptr->transformations |= PNG_USER_TRANSFORM;
767 png_ptr->read_user_transform_fn = read_user_transform_fn; 1063 png_ptr->read_user_transform_fn = read_user_transform_fn;
768 #endif 1064 #endif
769 #ifdef PNG_LEGACY_SUPPORTED 1065 }
770 if (read_user_transform_fn) 1066 #endif
771 png_warning(png_ptr, 1067
772 "This version of libpng does not support user transforms"); 1068 #ifdef PNG_READ_TRANSFORMS_SUPPORTED
773 #endif 1069 #ifdef PNG_READ_GAMMA_SUPPORTED
1070 /* In the case of gamma transformations only do transformations on images where
1071 * the [file] gamma and screen_gamma are not close reciprocals, otherwise it
1072 * slows things down slightly, and also needlessly introduces small errors.
1073 */
1074 static int /* PRIVATE */
1075 png_gamma_threshold(png_fixed_point screen_gamma, png_fixed_point file_gamma)
1076 {
1077 /* PNG_GAMMA_THRESHOLD is the threshold for performing gamma
1078 * correction as a difference of the overall transform from 1.0
1079 *
1080 * We want to compare the threshold with s*f - 1, if we get
1081 * overflow here it is because of wacky gamma values so we
1082 * turn on processing anyway.
1083 */
1084 png_fixed_point gtest;
1085 return !png_muldiv(&gtest, screen_gamma, file_gamma, PNG_FP_1) ||
1086 png_gamma_significant(gtest);
774 } 1087 }
775 #endif 1088 #endif
776 1089
777 /* Initialize everything needed for the read. This includes modifying 1090 /* Initialize everything needed for the read. This includes modifying
778 * the palette. 1091 * the palette.
779 */ 1092 */
1093
1094 /* For the moment 'png_init_palette_transformations' and
1095 * 'png_init_rgb_transformations' only do some flag canceling optimizations.
1096 * The intent is that these two routines should have palette or rgb operations
1097 * extracted from 'png_init_read_transformations'.
1098 */
1099 static void /* PRIVATE */
1100 png_init_palette_transformations(png_structrp png_ptr)
1101 {
1102 /* Called to handle the (input) palette case. In png_do_read_transformations
1103 * the first step is to expand the palette if requested, so this code must
1104 * take care to only make changes that are invariant with respect to the
1105 * palette expansion, or only do them if there is no expansion.
1106 *
1107 * STRIP_ALPHA has already been handled in the caller (by setting num_trans
1108 * to 0.)
1109 */
1110 int input_has_alpha = 0;
1111 int input_has_transparency = 0;
1112
1113 if (png_ptr->num_trans > 0)
1114 {
1115 int i;
1116
1117 /* Ignore if all the entries are opaque (unlikely!) */
1118 for (i=0; i<png_ptr->num_trans; ++i)
1119 {
1120 if (png_ptr->trans_alpha[i] == 255)
1121 continue;
1122 else if (png_ptr->trans_alpha[i] == 0)
1123 input_has_transparency = 1;
1124 else
1125 {
1126 input_has_transparency = 1;
1127 input_has_alpha = 1;
1128 break;
1129 }
1130 }
1131 }
1132
1133 /* If no alpha we can optimize. */
1134 if (input_has_alpha == 0)
1135 {
1136 /* Any alpha means background and associative alpha processing is
1137 * required, however if the alpha is 0 or 1 throughout OPTIMIZE_ALPHA
1138 * and ENCODE_ALPHA are irrelevant.
1139 */
1140 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
1141 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
1142
1143 if (input_has_transparency == 0)
1144 png_ptr->transformations &= ~(PNG_COMPOSE | PNG_BACKGROUND_EXPAND);
1145 }
1146
1147 #if defined(PNG_READ_EXPAND_SUPPORTED) && defined(PNG_READ_BACKGROUND_SUPPORTED)
1148 /* png_set_background handling - deals with the complexity of whether the
1149 * background color is in the file format or the screen format in the case
1150 * where an 'expand' will happen.
1151 */
1152
1153 /* The following code cannot be entered in the alpha pre-multiplication case
1154 * because PNG_BACKGROUND_EXPAND is cancelled below.
1155 */
1156 if ((png_ptr->transformations & PNG_BACKGROUND_EXPAND) != 0 &&
1157 (png_ptr->transformations & PNG_EXPAND) != 0)
1158 {
1159 {
1160 png_ptr->background.red =
1161 png_ptr->palette[png_ptr->background.index].red;
1162 png_ptr->background.green =
1163 png_ptr->palette[png_ptr->background.index].green;
1164 png_ptr->background.blue =
1165 png_ptr->palette[png_ptr->background.index].blue;
1166
1167 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED
1168 if ((png_ptr->transformations & PNG_INVERT_ALPHA) != 0)
1169 {
1170 if ((png_ptr->transformations & PNG_EXPAND_tRNS) == 0)
1171 {
1172 /* Invert the alpha channel (in tRNS) unless the pixels are
1173 * going to be expanded, in which case leave it for later
1174 */
1175 int i, istop = png_ptr->num_trans;
1176
1177 for (i=0; i<istop; i++)
1178 png_ptr->trans_alpha[i] = (png_byte)(255 -
1179 png_ptr->trans_alpha[i]);
1180 }
1181 }
1182 #endif /* READ_INVERT_ALPHA */
1183 }
1184 } /* background expand and (therefore) no alpha association. */
1185 #endif /* READ_EXPAND && READ_BACKGROUND */
1186 }
1187
1188 static void /* PRIVATE */
1189 png_init_rgb_transformations(png_structrp png_ptr)
1190 {
1191 /* Added to libpng-1.5.4: check the color type to determine whether there
1192 * is any alpha or transparency in the image and simply cancel the
1193 * background and alpha mode stuff if there isn't.
1194 */
1195 int input_has_alpha = (png_ptr->color_type & PNG_COLOR_MASK_ALPHA) != 0;
1196 int input_has_transparency = png_ptr->num_trans > 0;
1197
1198 /* If no alpha we can optimize. */
1199 if (input_has_alpha == 0)
1200 {
1201 /* Any alpha means background and associative alpha processing is
1202 * required, however if the alpha is 0 or 1 throughout OPTIMIZE_ALPHA
1203 * and ENCODE_ALPHA are irrelevant.
1204 */
1205 # ifdef PNG_READ_ALPHA_MODE_SUPPORTED
1206 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
1207 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
1208 # endif
1209
1210 if (input_has_transparency == 0)
1211 png_ptr->transformations &= ~(PNG_COMPOSE | PNG_BACKGROUND_EXPAND);
1212 }
1213
1214 #if defined(PNG_READ_EXPAND_SUPPORTED) && defined(PNG_READ_BACKGROUND_SUPPORTED)
1215 /* png_set_background handling - deals with the complexity of whether the
1216 * background color is in the file format or the screen format in the case
1217 * where an 'expand' will happen.
1218 */
1219
1220 /* The following code cannot be entered in the alpha pre-multiplication case
1221 * because PNG_BACKGROUND_EXPAND is cancelled below.
1222 */
1223 if ((png_ptr->transformations & PNG_BACKGROUND_EXPAND) != 0 &&
1224 (png_ptr->transformations & PNG_EXPAND) != 0 &&
1225 (png_ptr->color_type & PNG_COLOR_MASK_COLOR) == 0)
1226 /* i.e., GRAY or GRAY_ALPHA */
1227 {
1228 {
1229 /* Expand background and tRNS chunks */
1230 int gray = png_ptr->background.gray;
1231 int trans_gray = png_ptr->trans_color.gray;
1232
1233 switch (png_ptr->bit_depth)
1234 {
1235 case 1:
1236 gray *= 0xff;
1237 trans_gray *= 0xff;
1238 break;
1239
1240 case 2:
1241 gray *= 0x55;
1242 trans_gray *= 0x55;
1243 break;
1244
1245 case 4:
1246 gray *= 0x11;
1247 trans_gray *= 0x11;
1248 break;
1249
1250 default:
1251
1252 case 8:
1253 /* FALL THROUGH (Already 8 bits) */
1254
1255 case 16:
1256 /* Already a full 16 bits */
1257 break;
1258 }
1259
1260 png_ptr->background.red = png_ptr->background.green =
1261 png_ptr->background.blue = (png_uint_16)gray;
1262
1263 if ((png_ptr->transformations & PNG_EXPAND_tRNS) == 0)
1264 {
1265 png_ptr->trans_color.red = png_ptr->trans_color.green =
1266 png_ptr->trans_color.blue = (png_uint_16)trans_gray;
1267 }
1268 }
1269 } /* background expand and (therefore) no alpha association. */
1270 #endif /* READ_EXPAND && READ_BACKGROUND */
1271 }
1272
780 void /* PRIVATE */ 1273 void /* PRIVATE */
781 png_init_read_transformations(png_structp png_ptr) 1274 png_init_read_transformations(png_structrp png_ptr)
782 { 1275 {
783 png_debug(1, "in png_init_read_transformations"); 1276 png_debug(1, "in png_init_read_transformations");
784 1277
785 #ifdef PNG_USELESS_TESTS_SUPPORTED 1278 /* This internal function is called from png_read_start_row in pngrutil.c
786 if (png_ptr != NULL) 1279 * and it is called before the 'rowbytes' calculation is done, so the code
787 #endif 1280 * in here can change or update the transformations flags.
788 { 1281 *
789 #if defined(PNG_READ_BACKGROUND_SUPPORTED) || \ 1282 * First do updates that do not depend on the details of the PNG image data
790 defined(PNG_READ_SHIFT_SUPPORTED) || \ 1283 * being processed.
791 defined(PNG_READ_GAMMA_SUPPORTED) 1284 */
792 int color_type = png_ptr->color_type; 1285
793 #endif 1286 #ifdef PNG_READ_GAMMA_SUPPORTED
794 1287 /* Prior to 1.5.4 these tests were performed from png_set_gamma, 1.5.4 adds
1288 * png_set_alpha_mode and this is another source for a default file gamma so
1289 * the test needs to be performed later - here. In addition prior to 1.5.4
1290 * the tests were repeated for the PALETTE color type here - this is no
1291 * longer necessary (and doesn't seem to have been necessary before.)
1292 */
1293 {
1294 /* The following temporary indicates if overall gamma correction is
1295 * required.
1296 */
1297 int gamma_correction = 0;
1298
1299 if (png_ptr->colorspace.gamma != 0) /* has been set */
1300 {
1301 if (png_ptr->screen_gamma != 0) /* screen set too */
1302 gamma_correction = png_gamma_threshold(png_ptr->colorspace.gamma,
1303 png_ptr->screen_gamma);
1304
1305 else
1306 /* Assume the output matches the input; a long time default behavior
1307 * of libpng, although the standard has nothing to say about this.
1308 */
1309 png_ptr->screen_gamma = png_reciprocal(png_ptr->colorspace.gamma);
1310 }
1311
1312 else if (png_ptr->screen_gamma != 0)
1313 /* The converse - assume the file matches the screen, note that this
1314 * perhaps undesireable default can (from 1.5.4) be changed by calling
1315 * png_set_alpha_mode (even if the alpha handling mode isn't required
1316 * or isn't changed from the default.)
1317 */
1318 png_ptr->colorspace.gamma = png_reciprocal(png_ptr->screen_gamma);
1319
1320 else /* neither are set */
1321 /* Just in case the following prevents any processing - file and screen
1322 * are both assumed to be linear and there is no way to introduce a
1323 * third gamma value other than png_set_background with 'UNIQUE', and,
1324 * prior to 1.5.4
1325 */
1326 png_ptr->screen_gamma = png_ptr->colorspace.gamma = PNG_FP_1;
1327
1328 /* We have a gamma value now. */
1329 png_ptr->colorspace.flags |= PNG_COLORSPACE_HAVE_GAMMA;
1330
1331 /* Now turn the gamma transformation on or off as appropriate. Notice
1332 * that PNG_GAMMA just refers to the file->screen correction. Alpha
1333 * composition may independently cause gamma correction because it needs
1334 * linear data (e.g. if the file has a gAMA chunk but the screen gamma
1335 * hasn't been specified.) In any case this flag may get turned off in
1336 * the code immediately below if the transform can be handled outside the
1337 * row loop.
1338 */
1339 if (gamma_correction != 0)
1340 png_ptr->transformations |= PNG_GAMMA;
1341
1342 else
1343 png_ptr->transformations &= ~PNG_GAMMA;
1344 }
1345 #endif
1346
1347 /* Certain transformations have the effect of preventing other
1348 * transformations that happen afterward in png_do_read_transformations;
1349 * resolve the interdependencies here. From the code of
1350 * png_do_read_transformations the order is:
1351 *
1352 * 1) PNG_EXPAND (including PNG_EXPAND_tRNS)
1353 * 2) PNG_STRIP_ALPHA (if no compose)
1354 * 3) PNG_RGB_TO_GRAY
1355 * 4) PNG_GRAY_TO_RGB iff !PNG_BACKGROUND_IS_GRAY
1356 * 5) PNG_COMPOSE
1357 * 6) PNG_GAMMA
1358 * 7) PNG_STRIP_ALPHA (if compose)
1359 * 8) PNG_ENCODE_ALPHA
1360 * 9) PNG_SCALE_16_TO_8
1361 * 10) PNG_16_TO_8
1362 * 11) PNG_QUANTIZE (converts to palette)
1363 * 12) PNG_EXPAND_16
1364 * 13) PNG_GRAY_TO_RGB iff PNG_BACKGROUND_IS_GRAY
1365 * 14) PNG_INVERT_MONO
1366 * 15) PNG_INVERT_ALPHA
1367 * 16) PNG_SHIFT
1368 * 17) PNG_PACK
1369 * 18) PNG_BGR
1370 * 19) PNG_PACKSWAP
1371 * 20) PNG_FILLER (includes PNG_ADD_ALPHA)
1372 * 21) PNG_SWAP_ALPHA
1373 * 22) PNG_SWAP_BYTES
1374 * 23) PNG_USER_TRANSFORM [must be last]
1375 */
1376 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
1377 if ((png_ptr->transformations & PNG_STRIP_ALPHA) != 0 &&
1378 (png_ptr->transformations & PNG_COMPOSE) == 0)
1379 {
1380 /* Stripping the alpha channel happens immediately after the 'expand'
1381 * transformations, before all other transformation, so it cancels out
1382 * the alpha handling. It has the side effect negating the effect of
1383 * PNG_EXPAND_tRNS too:
1384 */
1385 png_ptr->transformations &= ~(PNG_BACKGROUND_EXPAND | PNG_ENCODE_ALPHA |
1386 PNG_EXPAND_tRNS);
1387 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
1388
1389 /* Kill the tRNS chunk itself too. Prior to 1.5.4 this did not happen
1390 * so transparency information would remain just so long as it wasn't
1391 * expanded. This produces unexpected API changes if the set of things
1392 * that do PNG_EXPAND_tRNS changes (perfectly possible given the
1393 * documentation - which says ask for what you want, accept what you
1394 * get.) This makes the behavior consistent from 1.5.4:
1395 */
1396 png_ptr->num_trans = 0;
1397 }
1398 #endif /* STRIP_ALPHA supported, no COMPOSE */
1399
1400 #ifdef PNG_READ_ALPHA_MODE_SUPPORTED
1401 /* If the screen gamma is about 1.0 then the OPTIMIZE_ALPHA and ENCODE_ALPHA
1402 * settings will have no effect.
1403 */
1404 if (png_gamma_significant(png_ptr->screen_gamma) == 0)
1405 {
1406 png_ptr->transformations &= ~PNG_ENCODE_ALPHA;
1407 png_ptr->flags &= ~PNG_FLAG_OPTIMIZE_ALPHA;
1408 }
1409 #endif
1410
1411 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
1412 /* Make sure the coefficients for the rgb to gray conversion are set
1413 * appropriately.
1414 */
1415 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) != 0)
1416 png_colorspace_set_rgb_coefficients(png_ptr);
1417 #endif
1418
1419 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
795 #if defined(PNG_READ_EXPAND_SUPPORTED) && defined(PNG_READ_BACKGROUND_SUPPORTED) 1420 #if defined(PNG_READ_EXPAND_SUPPORTED) && defined(PNG_READ_BACKGROUND_SUPPORTED)
796 1421 /* Detect gray background and attempt to enable optimization for
797 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED 1422 * gray --> RGB case.
798 /* Detect gray background and attempt to enable optimization
799 * for gray --> RGB case
800 * 1423 *
801 * Note: if PNG_BACKGROUND_EXPAND is set and color_type is either RGB or 1424 * Note: if PNG_BACKGROUND_EXPAND is set and color_type is either RGB or
802 * RGB_ALPHA (in which case need_expand is superfluous anyway), the 1425 * RGB_ALPHA (in which case need_expand is superfluous anyway), the
803 * background color might actually be gray yet not be flagged as such. 1426 * background color might actually be gray yet not be flagged as such.
804 * This is not a problem for the current code, which uses 1427 * This is not a problem for the current code, which uses
805 * PNG_BACKGROUND_IS_GRAY only to decide when to do the 1428 * PNG_BACKGROUND_IS_GRAY only to decide when to do the
806 * png_do_gray_to_rgb() transformation. 1429 * png_do_gray_to_rgb() transformation.
807 */ 1430 *
808 if ((png_ptr->transformations & PNG_BACKGROUND_EXPAND) && 1431 * TODO: this code needs to be revised to avoid the complexity and
809 !(color_type & PNG_COLOR_MASK_COLOR)) 1432 * interdependencies. The color type of the background should be recorded in
810 { 1433 * png_set_background, along with the bit depth, then the code has a record
811 png_ptr->mode |= PNG_BACKGROUND_IS_GRAY; 1434 * of exactly what color space the background is currently in.
812 } else if ((png_ptr->transformations & PNG_BACKGROUND) && 1435 */
813 !(png_ptr->transformations & PNG_BACKGROUND_EXPAND) && 1436 if ((png_ptr->transformations & PNG_BACKGROUND_EXPAND) != 0)
814 (png_ptr->transformations & PNG_GRAY_TO_RGB) && 1437 {
815 png_ptr->background.red == png_ptr->background.green && 1438 /* PNG_BACKGROUND_EXPAND: the background is in the file color space, so if
816 png_ptr->background.red == png_ptr->background.blue) 1439 * the file was grayscale the background value is gray.
817 { 1440 */
818 png_ptr->mode |= PNG_BACKGROUND_IS_GRAY; 1441 if ((png_ptr->color_type & PNG_COLOR_MASK_COLOR) == 0)
819 png_ptr->background.gray = png_ptr->background.red; 1442 png_ptr->mode |= PNG_BACKGROUND_IS_GRAY;
820 } 1443 }
821 #endif 1444
822 1445 else if ((png_ptr->transformations & PNG_COMPOSE) != 0)
823 if ((png_ptr->transformations & PNG_BACKGROUND_EXPAND) && 1446 {
824 (png_ptr->transformations & PNG_EXPAND)) 1447 /* PNG_COMPOSE: png_set_background was called with need_expand false,
825 { 1448 * so the color is in the color space of the output or png_set_alpha_mode
826 if (!(color_type & PNG_COLOR_MASK_COLOR)) /* i.e., GRAY or GRAY_ALPHA */ 1449 * was called and the color is black. Ignore RGB_TO_GRAY because that
1450 * happens before GRAY_TO_RGB.
1451 */
1452 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) != 0)
827 { 1453 {
828 /* Expand background and tRNS chunks */ 1454 if (png_ptr->background.red == png_ptr->background.green &&
829 switch (png_ptr->bit_depth) 1455 png_ptr->background.red == png_ptr->background.blue)
830 { 1456 {
831 case 1: 1457 png_ptr->mode |= PNG_BACKGROUND_IS_GRAY;
832 png_ptr->background.gray *= (png_uint_16)0xff; 1458 png_ptr->background.gray = png_ptr->background.red;
833 png_ptr->background.red = png_ptr->background.green
834 = png_ptr->background.blue = png_ptr->background.gray;
835 if (!(png_ptr->transformations & PNG_EXPAND_tRNS))
836 {
837 png_ptr->trans_values.gray *= (png_uint_16)0xff;
838 png_ptr->trans_values.red = png_ptr->trans_values.green
839 = png_ptr->trans_values.blue = png_ptr->trans_values.gray;
840 }
841 break;
842
843 case 2:
844 png_ptr->background.gray *= (png_uint_16)0x55;
845 png_ptr->background.red = png_ptr->background.green
846 = png_ptr->background.blue = png_ptr->background.gray;
847 if (!(png_ptr->transformations & PNG_EXPAND_tRNS))
848 {
849 png_ptr->trans_values.gray *= (png_uint_16)0x55;
850 png_ptr->trans_values.red = png_ptr->trans_values.green
851 = png_ptr->trans_values.blue = png_ptr->trans_values.gray;
852 }
853 break;
854
855 case 4:
856 png_ptr->background.gray *= (png_uint_16)0x11;
857 png_ptr->background.red = png_ptr->background.green
858 = png_ptr->background.blue = png_ptr->background.gray;
859 if (!(png_ptr->transformations & PNG_EXPAND_tRNS))
860 {
861 png_ptr->trans_values.gray *= (png_uint_16)0x11;
862 png_ptr->trans_values.red = png_ptr->trans_values.green
863 = png_ptr->trans_values.blue = png_ptr->trans_values.gray;
864 }
865 break;
866
867 case 8:
868
869 case 16:
870 png_ptr->background.red = png_ptr->background.green
871 = png_ptr->background.blue = png_ptr->background.gray;
872 break;
873 } 1459 }
874 } 1460 }
875 else if (color_type == PNG_COLOR_TYPE_PALETTE) 1461 }
1462 #endif /* READ_EXPAND && READ_BACKGROUND */
1463 #endif /* READ_GRAY_TO_RGB */
1464
1465 /* For indexed PNG data (PNG_COLOR_TYPE_PALETTE) many of the transformations
1466 * can be performed directly on the palette, and some (such as rgb to gray)
1467 * can be optimized inside the palette. This is particularly true of the
1468 * composite (background and alpha) stuff, which can be pretty much all done
1469 * in the palette even if the result is expanded to RGB or gray afterward.
1470 *
1471 * NOTE: this is Not Yet Implemented, the code behaves as in 1.5.1 and
1472 * earlier and the palette stuff is actually handled on the first row. This
1473 * leads to the reported bug that the palette returned by png_get_PLTE is not
1474 * updated.
1475 */
1476 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
1477 png_init_palette_transformations(png_ptr);
1478
1479 else
1480 png_init_rgb_transformations(png_ptr);
1481
1482 #if defined(PNG_READ_BACKGROUND_SUPPORTED) && \
1483 defined(PNG_READ_EXPAND_16_SUPPORTED)
1484 if ((png_ptr->transformations & PNG_EXPAND_16) != 0 &&
1485 (png_ptr->transformations & PNG_COMPOSE) != 0 &&
1486 (png_ptr->transformations & PNG_BACKGROUND_EXPAND) == 0 &&
1487 png_ptr->bit_depth != 16)
1488 {
1489 /* TODO: fix this. Because the expand_16 operation is after the compose
1490 * handling the background color must be 8, not 16, bits deep, but the
1491 * application will supply a 16-bit value so reduce it here.
1492 *
1493 * The PNG_BACKGROUND_EXPAND code above does not expand to 16 bits at
1494 * present, so that case is ok (until do_expand_16 is moved.)
1495 *
1496 * NOTE: this discards the low 16 bits of the user supplied background
1497 * color, but until expand_16 works properly there is no choice!
1498 */
1499 # define CHOP(x) (x)=((png_uint_16)PNG_DIV257(x))
1500 CHOP(png_ptr->background.red);
1501 CHOP(png_ptr->background.green);
1502 CHOP(png_ptr->background.blue);
1503 CHOP(png_ptr->background.gray);
1504 # undef CHOP
1505 }
1506 #endif /* READ_BACKGROUND && READ_EXPAND_16 */
1507
1508 #if defined(PNG_READ_BACKGROUND_SUPPORTED) && \
1509 (defined(PNG_READ_SCALE_16_TO_8_SUPPORTED) || \
1510 defined(PNG_READ_STRIP_16_TO_8_SUPPORTED))
1511 if ((png_ptr->transformations & (PNG_16_TO_8|PNG_SCALE_16_TO_8)) != 0 &&
1512 (png_ptr->transformations & PNG_COMPOSE) != 0 &&
1513 (png_ptr->transformations & PNG_BACKGROUND_EXPAND) == 0 &&
1514 png_ptr->bit_depth == 16)
1515 {
1516 /* On the other hand, if a 16-bit file is to be reduced to 8-bits per
1517 * component this will also happen after PNG_COMPOSE and so the background
1518 * color must be pre-expanded here.
1519 *
1520 * TODO: fix this too.
1521 */
1522 png_ptr->background.red = (png_uint_16)(png_ptr->background.red * 257);
1523 png_ptr->background.green =
1524 (png_uint_16)(png_ptr->background.green * 257);
1525 png_ptr->background.blue = (png_uint_16)(png_ptr->background.blue * 257);
1526 png_ptr->background.gray = (png_uint_16)(png_ptr->background.gray * 257);
1527 }
1528 #endif
1529
1530 /* NOTE: below 'PNG_READ_ALPHA_MODE_SUPPORTED' is presumed to also enable the
1531 * background support (see the comments in scripts/pnglibconf.dfa), this
1532 * allows pre-multiplication of the alpha channel to be implemented as
1533 * compositing on black. This is probably sub-optimal and has been done in
1534 * 1.5.4 betas simply to enable external critique and testing (i.e. to
1535 * implement the new API quickly, without lots of internal changes.)
1536 */
1537
1538 #ifdef PNG_READ_GAMMA_SUPPORTED
1539 # ifdef PNG_READ_BACKGROUND_SUPPORTED
1540 /* Includes ALPHA_MODE */
1541 png_ptr->background_1 = png_ptr->background;
1542 # endif
1543
1544 /* This needs to change - in the palette image case a whole set of tables are
1545 * built when it would be quicker to just calculate the correct value for
1546 * each palette entry directly. Also, the test is too tricky - why check
1547 * PNG_RGB_TO_GRAY if PNG_GAMMA is not set? The answer seems to be that
1548 * PNG_GAMMA is cancelled even if the gamma is known? The test excludes the
1549 * PNG_COMPOSE case, so apparently if there is no *overall* gamma correction
1550 * the gamma tables will not be built even if composition is required on a
1551 * gamma encoded value.
1552 *
1553 * In 1.5.4 this is addressed below by an additional check on the individual
1554 * file gamma - if it is not 1.0 both RGB_TO_GRAY and COMPOSE need the
1555 * tables.
1556 */
1557 if ((png_ptr->transformations & PNG_GAMMA) != 0 ||
1558 ((png_ptr->transformations & PNG_RGB_TO_GRAY) != 0 &&
1559 (png_gamma_significant(png_ptr->colorspace.gamma) != 0 ||
1560 png_gamma_significant(png_ptr->screen_gamma) != 0)) ||
1561 ((png_ptr->transformations & PNG_COMPOSE) != 0 &&
1562 (png_gamma_significant(png_ptr->colorspace.gamma) != 0 ||
1563 png_gamma_significant(png_ptr->screen_gamma) != 0
1564 # ifdef PNG_READ_BACKGROUND_SUPPORTED
1565 || (png_ptr->background_gamma_type == PNG_BACKGROUND_GAMMA_UNIQUE &&
1566 png_gamma_significant(png_ptr->background_gamma) != 0)
1567 # endif
1568 )) || ((png_ptr->transformations & PNG_ENCODE_ALPHA) != 0 &&
1569 png_gamma_significant(png_ptr->screen_gamma) != 0))
1570 {
1571 png_build_gamma_table(png_ptr, png_ptr->bit_depth);
1572
1573 #ifdef PNG_READ_BACKGROUND_SUPPORTED
1574 if ((png_ptr->transformations & PNG_COMPOSE) != 0)
876 { 1575 {
877 png_ptr->background.red = 1576 /* Issue a warning about this combination: because RGB_TO_GRAY is
878 png_ptr->palette[png_ptr->background.index].red; 1577 * optimized to do the gamma transform if present yet do_background has
879 png_ptr->background.green = 1578 * to do the same thing if both options are set a
880 png_ptr->palette[png_ptr->background.index].green; 1579 * double-gamma-correction happens. This is true in all versions of
881 png_ptr->background.blue = 1580 * libpng to date.
882 png_ptr->palette[png_ptr->background.index].blue; 1581 */
883 1582 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) != 0)
884 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED 1583 png_warning(png_ptr,
885 if (png_ptr->transformations & PNG_INVERT_ALPHA) 1584 "libpng does not support gamma+background+rgb_to_gray");
886 { 1585
887 #ifdef PNG_READ_EXPAND_SUPPORTED 1586 if ((png_ptr->color_type == PNG_COLOR_TYPE_PALETTE) != 0)
888 if (!(png_ptr->transformations & PNG_EXPAND_tRNS))
889 #endif
890 {
891 /* Invert the alpha channel (in tRNS) unless the pixels are
892 * going to be expanded, in which case leave it for later
893 */
894 int i, istop;
895 istop=(int)png_ptr->num_trans;
896 for (i=0; i<istop; i++)
897 png_ptr->trans[i] = (png_byte)(255 - png_ptr->trans[i]);
898 }
899 }
900 #endif
901
902 }
903 }
904 #endif
905
906 #if defined(PNG_READ_BACKGROUND_SUPPORTED) && defined(PNG_READ_GAMMA_SUPPORTED)
907 png_ptr->background_1 = png_ptr->background;
908 #endif
909 #if defined(PNG_READ_GAMMA_SUPPORTED) && defined(PNG_FLOATING_POINT_SUPPORTED)
910
911 if ((color_type == PNG_COLOR_TYPE_PALETTE && png_ptr->num_trans != 0)
912 && (fabs(png_ptr->screen_gamma * png_ptr->gamma - 1.0)
913 < PNG_GAMMA_THRESHOLD))
914 {
915 int i, k;
916 k=0;
917 for (i=0; i<png_ptr->num_trans; i++)
918 {
919 if (png_ptr->trans[i] != 0 && png_ptr->trans[i] != 0xff)
920 {
921 k=1; /* Partial transparency is present */
922 break;
923 }
924 }
925 if (k == 0)
926 png_ptr->transformations &= ~PNG_GAMMA;
927 }
928
929 if ((png_ptr->transformations & (PNG_GAMMA | PNG_RGB_TO_GRAY)) &&
930 png_ptr->gamma != 0.0)
931 {
932 png_build_gamma_table(png_ptr);
933
934 #ifdef PNG_READ_BACKGROUND_SUPPORTED
935 if (png_ptr->transformations & PNG_BACKGROUND)
936 {
937 if (color_type == PNG_COLOR_TYPE_PALETTE)
938 { 1587 {
939 /* Could skip if no transparency */ 1588 /* We don't get to here unless there is a tRNS chunk with non-opaque
1589 * entries - see the checking code at the start of this function.
1590 */
940 png_color back, back_1; 1591 png_color back, back_1;
941 png_colorp palette = png_ptr->palette; 1592 png_colorp palette = png_ptr->palette;
942 int num_palette = png_ptr->num_palette; 1593 int num_palette = png_ptr->num_palette;
943 int i; 1594 int i;
944 if (png_ptr->background_gamma_type == PNG_BACKGROUND_GAMMA_FILE) 1595 if (png_ptr->background_gamma_type == PNG_BACKGROUND_GAMMA_FILE)
945 { 1596 {
1597
946 back.red = png_ptr->gamma_table[png_ptr->background.red]; 1598 back.red = png_ptr->gamma_table[png_ptr->background.red];
947 back.green = png_ptr->gamma_table[png_ptr->background.green]; 1599 back.green = png_ptr->gamma_table[png_ptr->background.green];
948 back.blue = png_ptr->gamma_table[png_ptr->background.blue]; 1600 back.blue = png_ptr->gamma_table[png_ptr->background.blue];
949 1601
950 back_1.red = png_ptr->gamma_to_1[png_ptr->background.red]; 1602 back_1.red = png_ptr->gamma_to_1[png_ptr->background.red];
951 back_1.green = png_ptr->gamma_to_1[png_ptr->background.green]; 1603 back_1.green = png_ptr->gamma_to_1[png_ptr->background.green];
952 back_1.blue = png_ptr->gamma_to_1[png_ptr->background.blue]; 1604 back_1.blue = png_ptr->gamma_to_1[png_ptr->background.blue];
953 } 1605 }
954 else 1606 else
955 { 1607 {
956 double g, gs; 1608 png_fixed_point g, gs;
957 1609
958 switch (png_ptr->background_gamma_type) 1610 switch (png_ptr->background_gamma_type)
959 { 1611 {
960 case PNG_BACKGROUND_GAMMA_SCREEN: 1612 case PNG_BACKGROUND_GAMMA_SCREEN:
961 g = (png_ptr->screen_gamma); 1613 g = (png_ptr->screen_gamma);
962 gs = 1.0; 1614 gs = PNG_FP_1;
963 break; 1615 break;
964 1616
965 case PNG_BACKGROUND_GAMMA_FILE: 1617 case PNG_BACKGROUND_GAMMA_FILE:
966 g = 1.0 / (png_ptr->gamma); 1618 g = png_reciprocal(png_ptr->colorspace.gamma);
967 gs = 1.0 / (png_ptr->gamma * png_ptr->screen_gamma); 1619 gs = png_reciprocal2(png_ptr->colorspace.gamma,
1620 png_ptr->screen_gamma);
968 break; 1621 break;
969 1622
970 case PNG_BACKGROUND_GAMMA_UNIQUE: 1623 case PNG_BACKGROUND_GAMMA_UNIQUE:
971 g = 1.0 / (png_ptr->background_gamma); 1624 g = png_reciprocal(png_ptr->background_gamma);
972 gs = 1.0 / (png_ptr->background_gamma * 1625 gs = png_reciprocal2(png_ptr->background_gamma,
973 png_ptr->screen_gamma); 1626 png_ptr->screen_gamma);
974 break; 1627 break;
975 default: 1628 default:
976 g = 1.0; /* back_1 */ 1629 g = PNG_FP_1; /* back_1 */
977 gs = 1.0; /* back */ 1630 gs = PNG_FP_1; /* back */
1631 break;
978 } 1632 }
979 1633
980 if ( fabs(gs - 1.0) < PNG_GAMMA_THRESHOLD) 1634 if (png_gamma_significant(gs) != 0)
1635 {
1636 back.red = png_gamma_8bit_correct(png_ptr->background.red,
1637 gs);
1638 back.green = png_gamma_8bit_correct(png_ptr->background.green,
1639 gs);
1640 back.blue = png_gamma_8bit_correct(png_ptr->background.blue,
1641 gs);
1642 }
1643
1644 else
981 { 1645 {
982 back.red = (png_byte)png_ptr->background.red; 1646 back.red = (png_byte)png_ptr->background.red;
983 back.green = (png_byte)png_ptr->background.green; 1647 back.green = (png_byte)png_ptr->background.green;
984 back.blue = (png_byte)png_ptr->background.blue; 1648 back.blue = (png_byte)png_ptr->background.blue;
985 } 1649 }
1650
1651 if (png_gamma_significant(g) != 0)
1652 {
1653 back_1.red = png_gamma_8bit_correct(png_ptr->background.red,
1654 g);
1655 back_1.green = png_gamma_8bit_correct(
1656 png_ptr->background.green, g);
1657 back_1.blue = png_gamma_8bit_correct(png_ptr->background.blue,
1658 g);
1659 }
1660
986 else 1661 else
987 { 1662 {
988 back.red = (png_byte)(pow( 1663 back_1.red = (png_byte)png_ptr->background.red;
989 (double)png_ptr->background.red/255, gs) * 255.0 + .5); 1664 back_1.green = (png_byte)png_ptr->background.green;
990 back.green = (png_byte)(pow( 1665 back_1.blue = (png_byte)png_ptr->background.blue;
991 (double)png_ptr->background.green/255, gs) * 255.0
992 + .5);
993 back.blue = (png_byte)(pow(
994 (double)png_ptr->background.blue/255, gs) * 255.0 + .5);
995 } 1666 }
1667 }
996 1668
997 back_1.red = (png_byte)(pow(
998 (double)png_ptr->background.red/255, g) * 255.0 + .5);
999 back_1.green = (png_byte)(pow(
1000 (double)png_ptr->background.green/255, g) * 255.0 + .5);
1001 back_1.blue = (png_byte)(pow(
1002 (double)png_ptr->background.blue/255, g) * 255.0 + .5);
1003 }
1004 for (i = 0; i < num_palette; i++) 1669 for (i = 0; i < num_palette; i++)
1005 { 1670 {
1006 if (i < (int)png_ptr->num_trans && png_ptr->trans[i] != 0xff) 1671 if (i < (int)png_ptr->num_trans &&
1672 png_ptr->trans_alpha[i] != 0xff)
1007 { 1673 {
1008 if (png_ptr->trans[i] == 0) 1674 if (png_ptr->trans_alpha[i] == 0)
1009 { 1675 {
1010 palette[i] = back; 1676 palette[i] = back;
1011 } 1677 }
1012 else /* if (png_ptr->trans[i] != 0xff) */ 1678 else /* if (png_ptr->trans_alpha[i] != 0xff) */
1013 { 1679 {
1014 png_byte v, w; 1680 png_byte v, w;
1015 1681
1016 v = png_ptr->gamma_to_1[palette[i].red]; 1682 v = png_ptr->gamma_to_1[palette[i].red];
1017 png_composite(w, v, png_ptr->trans[i], back_1.red); 1683 png_composite(w, v, png_ptr->trans_alpha[i], back_1.red);
1018 palette[i].red = png_ptr->gamma_from_1[w]; 1684 palette[i].red = png_ptr->gamma_from_1[w];
1019 1685
1020 v = png_ptr->gamma_to_1[palette[i].green]; 1686 v = png_ptr->gamma_to_1[palette[i].green];
1021 png_composite(w, v, png_ptr->trans[i], back_1.green); 1687 png_composite(w, v, png_ptr->trans_alpha[i], back_1.green);
1022 palette[i].green = png_ptr->gamma_from_1[w]; 1688 palette[i].green = png_ptr->gamma_from_1[w];
1023 1689
1024 v = png_ptr->gamma_to_1[palette[i].blue]; 1690 v = png_ptr->gamma_to_1[palette[i].blue];
1025 png_composite(w, v, png_ptr->trans[i], back_1.blue); 1691 png_composite(w, v, png_ptr->trans_alpha[i], back_1.blue);
1026 palette[i].blue = png_ptr->gamma_from_1[w]; 1692 palette[i].blue = png_ptr->gamma_from_1[w];
1027 } 1693 }
1028 } 1694 }
1029 else 1695 else
1030 { 1696 {
1031 palette[i].red = png_ptr->gamma_table[palette[i].red]; 1697 palette[i].red = png_ptr->gamma_table[palette[i].red];
1032 palette[i].green = png_ptr->gamma_table[palette[i].green]; 1698 palette[i].green = png_ptr->gamma_table[palette[i].green];
1033 palette[i].blue = png_ptr->gamma_table[palette[i].blue]; 1699 palette[i].blue = png_ptr->gamma_table[palette[i].blue];
1034 } 1700 }
1035 } 1701 }
1036 /* Prevent the transformations being done again, and make sure 1702
1037 * that the now spurious alpha channel is stripped - the code 1703 /* Prevent the transformations being done again.
1038 * has just reduced background composition and gamma correction 1704 *
1039 * to a simple alpha channel strip. 1705 * NOTE: this is highly dubious; it removes the transformations in
1706 * place. This seems inconsistent with the general treatment of the
1707 * transformations elsewhere.
1040 */ 1708 */
1041 png_ptr->transformations &= ~PNG_BACKGROUND; 1709 png_ptr->transformations &= ~(PNG_COMPOSE | PNG_GAMMA);
1042 png_ptr->transformations &= ~PNG_GAMMA; 1710 } /* color_type == PNG_COLOR_TYPE_PALETTE */
1043 png_ptr->transformations |= PNG_STRIP_ALPHA; 1711
1044 }
1045 /* if (png_ptr->background_gamma_type!=PNG_BACKGROUND_GAMMA_UNKNOWN) */ 1712 /* if (png_ptr->background_gamma_type!=PNG_BACKGROUND_GAMMA_UNKNOWN) */
1046 else 1713 else /* color_type != PNG_COLOR_TYPE_PALETTE */
1047 /* color_type != PNG_COLOR_TYPE_PALETTE */
1048 { 1714 {
1049 double m = (double)(((png_uint_32)1 << png_ptr->bit_depth) - 1); 1715 int gs_sig, g_sig;
1050 double g = 1.0; 1716 png_fixed_point g = PNG_FP_1; /* Correction to linear */
1051 double gs = 1.0; 1717 png_fixed_point gs = PNG_FP_1; /* Correction to screen */
1052 1718
1053 switch (png_ptr->background_gamma_type) 1719 switch (png_ptr->background_gamma_type)
1054 { 1720 {
1055 case PNG_BACKGROUND_GAMMA_SCREEN: 1721 case PNG_BACKGROUND_GAMMA_SCREEN:
1056 g = (png_ptr->screen_gamma); 1722 g = png_ptr->screen_gamma;
1057 gs = 1.0; 1723 /* gs = PNG_FP_1; */
1058 break; 1724 break;
1059 1725
1060 case PNG_BACKGROUND_GAMMA_FILE: 1726 case PNG_BACKGROUND_GAMMA_FILE:
1061 g = 1.0 / (png_ptr->gamma); 1727 g = png_reciprocal(png_ptr->colorspace.gamma);
1062 gs = 1.0 / (png_ptr->gamma * png_ptr->screen_gamma); 1728 gs = png_reciprocal2(png_ptr->colorspace.gamma,
1729 png_ptr->screen_gamma);
1063 break; 1730 break;
1064 1731
1065 case PNG_BACKGROUND_GAMMA_UNIQUE: 1732 case PNG_BACKGROUND_GAMMA_UNIQUE:
1066 g = 1.0 / (png_ptr->background_gamma); 1733 g = png_reciprocal(png_ptr->background_gamma);
1067 gs = 1.0 / (png_ptr->background_gamma * 1734 gs = png_reciprocal2(png_ptr->background_gamma,
1068 png_ptr->screen_gamma); 1735 png_ptr->screen_gamma);
1069 break; 1736 break;
1737
1738 default:
1739 png_error(png_ptr, "invalid background gamma type");
1070 } 1740 }
1071 1741
1072 png_ptr->background_1.gray = (png_uint_16)(pow( 1742 g_sig = png_gamma_significant(g);
1073 (double)png_ptr->background.gray / m, g) * m + .5); 1743 gs_sig = png_gamma_significant(gs);
1074 png_ptr->background.gray = (png_uint_16)(pow( 1744
1075 (double)png_ptr->background.gray / m, gs) * m + .5); 1745 if (g_sig != 0)
1746 png_ptr->background_1.gray = png_gamma_correct(png_ptr,
1747 png_ptr->background.gray, g);
1748
1749 if (gs_sig != 0)
1750 png_ptr->background.gray = png_gamma_correct(png_ptr,
1751 png_ptr->background.gray, gs);
1076 1752
1077 if ((png_ptr->background.red != png_ptr->background.green) || 1753 if ((png_ptr->background.red != png_ptr->background.green) ||
1078 (png_ptr->background.red != png_ptr->background.blue) || 1754 (png_ptr->background.red != png_ptr->background.blue) ||
1079 (png_ptr->background.red != png_ptr->background.gray)) 1755 (png_ptr->background.red != png_ptr->background.gray))
1080 { 1756 {
1081 /* RGB or RGBA with color background */ 1757 /* RGB or RGBA with color background */
1082 png_ptr->background_1.red = (png_uint_16)(pow( 1758 if (g_sig != 0)
1083 (double)png_ptr->background.red / m, g) * m + .5); 1759 {
1084 png_ptr->background_1.green = (png_uint_16)(pow( 1760 png_ptr->background_1.red = png_gamma_correct(png_ptr,
1085 (double)png_ptr->background.green / m, g) * m + .5); 1761 png_ptr->background.red, g);
1086 png_ptr->background_1.blue = (png_uint_16)(pow( 1762
1087 (double)png_ptr->background.blue / m, g) * m + .5); 1763 png_ptr->background_1.green = png_gamma_correct(png_ptr,
1088 png_ptr->background.red = (png_uint_16)(pow( 1764 png_ptr->background.green, g);
1089 (double)png_ptr->background.red / m, gs) * m + .5); 1765
1090 png_ptr->background.green = (png_uint_16)(pow( 1766 png_ptr->background_1.blue = png_gamma_correct(png_ptr,
1091 (double)png_ptr->background.green / m, gs) * m + .5); 1767 png_ptr->background.blue, g);
1092 png_ptr->background.blue = (png_uint_16)(pow( 1768 }
1093 (double)png_ptr->background.blue / m, gs) * m + .5); 1769
1770 if (gs_sig != 0)
1771 {
1772 png_ptr->background.red = png_gamma_correct(png_ptr,
1773 png_ptr->background.red, gs);
1774
1775 png_ptr->background.green = png_gamma_correct(png_ptr,
1776 png_ptr->background.green, gs);
1777
1778 png_ptr->background.blue = png_gamma_correct(png_ptr,
1779 png_ptr->background.blue, gs);
1780 }
1094 } 1781 }
1782
1095 else 1783 else
1096 { 1784 {
1097 /* GRAY, GRAY ALPHA, RGB, or RGBA with gray background */ 1785 /* GRAY, GRAY ALPHA, RGB, or RGBA with gray background */
1098 png_ptr->background_1.red = png_ptr->background_1.green 1786 png_ptr->background_1.red = png_ptr->background_1.green
1099 = png_ptr->background_1.blue = png_ptr->background_1.gray; 1787 = png_ptr->background_1.blue = png_ptr->background_1.gray;
1788
1100 png_ptr->background.red = png_ptr->background.green 1789 png_ptr->background.red = png_ptr->background.green
1101 = png_ptr->background.blue = png_ptr->background.gray; 1790 = png_ptr->background.blue = png_ptr->background.gray;
1102 } 1791 }
1103 } 1792
1104 } 1793 /* The background is now in screen gamma: */
1794 png_ptr->background_gamma_type = PNG_BACKGROUND_GAMMA_SCREEN;
1795 } /* color_type != PNG_COLOR_TYPE_PALETTE */
1796 }/* png_ptr->transformations & PNG_BACKGROUND */
1797
1105 else 1798 else
1106 /* Transformation does not include PNG_BACKGROUND */ 1799 /* Transformation does not include PNG_BACKGROUND */
1107 #endif /* PNG_READ_BACKGROUND_SUPPORTED */ 1800 #endif /* READ_BACKGROUND */
1108 if (color_type == PNG_COLOR_TYPE_PALETTE) 1801 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE
1802 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
1803 /* RGB_TO_GRAY needs to have non-gamma-corrected values! */
1804 && ((png_ptr->transformations & PNG_EXPAND) == 0 ||
1805 (png_ptr->transformations & PNG_RGB_TO_GRAY) == 0)
1806 #endif
1807 )
1109 { 1808 {
1110 png_colorp palette = png_ptr->palette; 1809 png_colorp palette = png_ptr->palette;
1111 int num_palette = png_ptr->num_palette; 1810 int num_palette = png_ptr->num_palette;
1112 int i; 1811 int i;
1113 1812
1813 /* NOTE: there are other transformations that should probably be in
1814 * here too.
1815 */
1114 for (i = 0; i < num_palette; i++) 1816 for (i = 0; i < num_palette; i++)
1115 { 1817 {
1116 palette[i].red = png_ptr->gamma_table[palette[i].red]; 1818 palette[i].red = png_ptr->gamma_table[palette[i].red];
1117 palette[i].green = png_ptr->gamma_table[palette[i].green]; 1819 palette[i].green = png_ptr->gamma_table[palette[i].green];
1118 palette[i].blue = png_ptr->gamma_table[palette[i].blue]; 1820 palette[i].blue = png_ptr->gamma_table[palette[i].blue];
1119 } 1821 }
1120 1822
1121 /* Done the gamma correction. */ 1823 /* Done the gamma correction. */
1122 png_ptr->transformations &= ~PNG_GAMMA; 1824 png_ptr->transformations &= ~PNG_GAMMA;
1123 } 1825 } /* color_type == PALETTE && !PNG_BACKGROUND transformation */
1124 } 1826 }
1125 #ifdef PNG_READ_BACKGROUND_SUPPORTED 1827 #ifdef PNG_READ_BACKGROUND_SUPPORTED
1126 else 1828 else
1127 #endif 1829 #endif
1128 #endif /* PNG_READ_GAMMA_SUPPORTED && PNG_FLOATING_POINT_SUPPORTED */ 1830 #endif /* READ_GAMMA */
1831
1129 #ifdef PNG_READ_BACKGROUND_SUPPORTED 1832 #ifdef PNG_READ_BACKGROUND_SUPPORTED
1130 /* No GAMMA transformation */ 1833 /* No GAMMA transformation (see the hanging else 4 lines above) */
1131 if ((png_ptr->transformations & PNG_BACKGROUND) && 1834 if ((png_ptr->transformations & PNG_COMPOSE) != 0 &&
1132 (color_type == PNG_COLOR_TYPE_PALETTE)) 1835 (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE))
1133 { 1836 {
1134 int i; 1837 int i;
1135 int istop = (int)png_ptr->num_trans; 1838 int istop = (int)png_ptr->num_trans;
1136 png_color back; 1839 png_color back;
1137 png_colorp palette = png_ptr->palette; 1840 png_colorp palette = png_ptr->palette;
1138 1841
1139 back.red = (png_byte)png_ptr->background.red; 1842 back.red = (png_byte)png_ptr->background.red;
1140 back.green = (png_byte)png_ptr->background.green; 1843 back.green = (png_byte)png_ptr->background.green;
1141 back.blue = (png_byte)png_ptr->background.blue; 1844 back.blue = (png_byte)png_ptr->background.blue;
1142 1845
1143 for (i = 0; i < istop; i++) 1846 for (i = 0; i < istop; i++)
1144 { 1847 {
1145 if (png_ptr->trans[i] == 0) 1848 if (png_ptr->trans_alpha[i] == 0)
1146 { 1849 {
1147 palette[i] = back; 1850 palette[i] = back;
1148 } 1851 }
1149 else if (png_ptr->trans[i] != 0xff) 1852
1853 else if (png_ptr->trans_alpha[i] != 0xff)
1150 { 1854 {
1151 /* The png_composite() macro is defined in png.h */ 1855 /* The png_composite() macro is defined in png.h */
1152 png_composite(palette[i].red, palette[i].red, 1856 png_composite(palette[i].red, palette[i].red,
1153 png_ptr->trans[i], back.red); 1857 png_ptr->trans_alpha[i], back.red);
1858
1154 png_composite(palette[i].green, palette[i].green, 1859 png_composite(palette[i].green, palette[i].green,
1155 png_ptr->trans[i], back.green); 1860 png_ptr->trans_alpha[i], back.green);
1861
1156 png_composite(palette[i].blue, palette[i].blue, 1862 png_composite(palette[i].blue, palette[i].blue,
1157 png_ptr->trans[i], back.blue); 1863 png_ptr->trans_alpha[i], back.blue);
1158 } 1864 }
1159 } 1865 }
1160 1866
1161 /* Handled alpha, still need to strip the channel. */ 1867 png_ptr->transformations &= ~PNG_COMPOSE;
1162 png_ptr->transformations &= ~PNG_BACKGROUND; 1868 }
1163 png_ptr->transformations |= PNG_STRIP_ALPHA; 1869 #endif /* READ_BACKGROUND */
1164 }
1165 #endif /* PNG_READ_BACKGROUND_SUPPORTED */
1166 1870
1167 #ifdef PNG_READ_SHIFT_SUPPORTED 1871 #ifdef PNG_READ_SHIFT_SUPPORTED
1168 if ((png_ptr->transformations & PNG_SHIFT) && 1872 if ((png_ptr->transformations & PNG_SHIFT) != 0 &&
1169 !(png_ptr->transformations & PNG_EXPAND) && 1873 (png_ptr->transformations & PNG_EXPAND) == 0 &&
1170 (color_type == PNG_COLOR_TYPE_PALETTE)) 1874 (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE))
1171 { 1875 {
1172 png_uint_16 i; 1876 int i;
1173 png_uint_16 istop = png_ptr->num_palette; 1877 int istop = png_ptr->num_palette;
1174 int sr = 8 - png_ptr->sig_bit.red; 1878 int shift = 8 - png_ptr->sig_bit.red;
1175 int sg = 8 - png_ptr->sig_bit.green;
1176 int sb = 8 - png_ptr->sig_bit.blue;
1177
1178 if (sr < 0 || sr > 8)
1179 sr = 0;
1180 if (sg < 0 || sg > 8)
1181 sg = 0;
1182 if (sb < 0 || sb > 8)
1183 sb = 0;
1184 for (i = 0; i < istop; i++)
1185 {
1186 png_ptr->palette[i].red >>= sr;
1187 png_ptr->palette[i].green >>= sg;
1188 png_ptr->palette[i].blue >>= sb;
1189 }
1190 1879
1191 png_ptr->transformations &= ~PNG_SHIFT; 1880 png_ptr->transformations &= ~PNG_SHIFT;
1192 } 1881
1193 #endif /* PNG_READ_SHIFT_SUPPORTED */ 1882 /* significant bits can be in the range 1 to 7 for a meaninful result, if
1194 } 1883 * the number of significant bits is 0 then no shift is done (this is an
1195 #if !defined(PNG_READ_GAMMA_SUPPORTED) && !defined(PNG_READ_SHIFT_SUPPORTED) \ 1884 * error condition which is silently ignored.)
1196 && !defined(PNG_READ_BACKGROUND_SUPPORTED) 1885 */
1197 if (png_ptr) 1886 if (shift > 0 && shift < 8)
1198 return; 1887 for (i=0; i<istop; ++i)
1199 #endif 1888 {
1889 int component = png_ptr->palette[i].red;
1890
1891 component >>= shift;
1892 png_ptr->palette[i].red = (png_byte)component;
1893 }
1894
1895 shift = 8 - png_ptr->sig_bit.green;
1896 if (shift > 0 && shift < 8)
1897 for (i=0; i<istop; ++i)
1898 {
1899 int component = png_ptr->palette[i].green;
1900
1901 component >>= shift;
1902 png_ptr->palette[i].green = (png_byte)component;
1903 }
1904
1905 shift = 8 - png_ptr->sig_bit.blue;
1906 if (shift > 0 && shift < 8)
1907 for (i=0; i<istop; ++i)
1908 {
1909 int component = png_ptr->palette[i].blue;
1910
1911 component >>= shift;
1912 png_ptr->palette[i].blue = (png_byte)component;
1913 }
1914 }
1915 #endif /* READ_SHIFT */
1200 } 1916 }
1201 1917
1202 /* Modify the info structure to reflect the transformations. The 1918 /* Modify the info structure to reflect the transformations. The
1203 * info should be updated so a PNG file could be written with it, 1919 * info should be updated so a PNG file could be written with it,
1204 * assuming the transformations result in valid PNG data. 1920 * assuming the transformations result in valid PNG data.
1205 */ 1921 */
1206 void /* PRIVATE */ 1922 void /* PRIVATE */
1207 png_read_transform_info(png_structp png_ptr, png_infop info_ptr) 1923 png_read_transform_info(png_structrp png_ptr, png_inforp info_ptr)
1208 { 1924 {
1209 png_debug(1, "in png_read_transform_info"); 1925 png_debug(1, "in png_read_transform_info");
1210 1926
1211 #ifdef PNG_READ_EXPAND_SUPPORTED 1927 #ifdef PNG_READ_EXPAND_SUPPORTED
1212 if (png_ptr->transformations & PNG_EXPAND) 1928 if ((png_ptr->transformations & PNG_EXPAND) != 0)
1213 { 1929 {
1214 if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) 1930 if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
1215 { 1931 {
1216 if (png_ptr->num_trans) 1932 /* This check must match what actually happens in
1933 * png_do_expand_palette; if it ever checks the tRNS chunk to see if
1934 * it is all opaque we must do the same (at present it does not.)
1935 */
1936 if (png_ptr->num_trans > 0)
1217 info_ptr->color_type = PNG_COLOR_TYPE_RGB_ALPHA; 1937 info_ptr->color_type = PNG_COLOR_TYPE_RGB_ALPHA;
1938
1218 else 1939 else
1219 info_ptr->color_type = PNG_COLOR_TYPE_RGB; 1940 info_ptr->color_type = PNG_COLOR_TYPE_RGB;
1941
1220 info_ptr->bit_depth = 8; 1942 info_ptr->bit_depth = 8;
1221 info_ptr->num_trans = 0; 1943 info_ptr->num_trans = 0;
1944
1945 if (png_ptr->palette == NULL)
1946 png_error (png_ptr, "Palette is NULL in indexed image");
1222 } 1947 }
1223 else 1948 else
1224 { 1949 {
1225 if (png_ptr->num_trans) 1950 if (png_ptr->num_trans != 0)
1226 { 1951 {
1227 if (png_ptr->transformations & PNG_EXPAND_tRNS) 1952 if ((png_ptr->transformations & PNG_EXPAND_tRNS) != 0)
1228 info_ptr->color_type |= PNG_COLOR_MASK_ALPHA; 1953 info_ptr->color_type |= PNG_COLOR_MASK_ALPHA;
1229 } 1954 }
1230 if (info_ptr->bit_depth < 8) 1955 if (info_ptr->bit_depth < 8)
1231 info_ptr->bit_depth = 8; 1956 info_ptr->bit_depth = 8;
1957
1232 info_ptr->num_trans = 0; 1958 info_ptr->num_trans = 0;
1233 } 1959 }
1234 } 1960 }
1235 #endif 1961 #endif
1236 1962
1237 #ifdef PNG_READ_BACKGROUND_SUPPORTED 1963 #if defined(PNG_READ_BACKGROUND_SUPPORTED) ||\
1238 if (png_ptr->transformations & PNG_BACKGROUND) 1964 defined(PNG_READ_ALPHA_MODE_SUPPORTED)
1239 { 1965 /* The following is almost certainly wrong unless the background value is in
1240 info_ptr->color_type &= ~PNG_COLOR_MASK_ALPHA; 1966 * the screen space!
1241 info_ptr->num_trans = 0; 1967 */
1968 if ((png_ptr->transformations & PNG_COMPOSE) != 0)
1242 info_ptr->background = png_ptr->background; 1969 info_ptr->background = png_ptr->background;
1243 }
1244 #endif 1970 #endif
1245 1971
1246 #ifdef PNG_READ_GAMMA_SUPPORTED 1972 #ifdef PNG_READ_GAMMA_SUPPORTED
1247 if (png_ptr->transformations & PNG_GAMMA) 1973 /* The following used to be conditional on PNG_GAMMA (prior to 1.5.4),
1248 { 1974 * however it seems that the code in png_init_read_transformations, which has
1249 #ifdef PNG_FLOATING_POINT_SUPPORTED 1975 * been called before this from png_read_update_info->png_read_start_row
1250 info_ptr->gamma = png_ptr->gamma; 1976 * sometimes does the gamma transform and cancels the flag.
1251 #endif 1977 *
1252 #ifdef PNG_FIXED_POINT_SUPPORTED 1978 * TODO: this looks wrong; the info_ptr should end up with a gamma equal to
1253 info_ptr->int_gamma = png_ptr->int_gamma; 1979 * the screen_gamma value. The following probably results in weirdness if
1254 #endif 1980 * the info_ptr is used by the app after the rows have been read.
1255 } 1981 */
1256 #endif 1982 info_ptr->colorspace.gamma = png_ptr->colorspace.gamma;
1257 1983 #endif
1258 #ifdef PNG_READ_16_TO_8_SUPPORTED 1984
1259 if ((png_ptr->transformations & PNG_16_TO_8) && (info_ptr->bit_depth == 16)) 1985 if (info_ptr->bit_depth == 16)
1260 info_ptr->bit_depth = 8; 1986 {
1261 #endif 1987 # ifdef PNG_READ_16BIT_SUPPORTED
1988 # ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
1989 if ((png_ptr->transformations & PNG_SCALE_16_TO_8) != 0)
1990 info_ptr->bit_depth = 8;
1991 # endif
1992
1993 # ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
1994 if ((png_ptr->transformations & PNG_16_TO_8) != 0)
1995 info_ptr->bit_depth = 8;
1996 # endif
1997
1998 # else
1999 /* No 16-bit support: force chopping 16-bit input down to 8, in this case
2000 * the app program can chose if both APIs are available by setting the
2001 * correct scaling to use.
2002 */
2003 # ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
2004 /* For compatibility with previous versions use the strip method by
2005 * default. This code works because if PNG_SCALE_16_TO_8 is already
2006 * set the code below will do that in preference to the chop.
2007 */
2008 png_ptr->transformations |= PNG_16_TO_8;
2009 info_ptr->bit_depth = 8;
2010 # else
2011
2012 # ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
2013 png_ptr->transformations |= PNG_SCALE_16_TO_8;
2014 info_ptr->bit_depth = 8;
2015 # else
2016
2017 CONFIGURATION ERROR: you must enable at least one 16 to 8 method
2018 # endif
2019 # endif
2020 #endif /* !READ_16BIT */
2021 }
1262 2022
1263 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED 2023 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
1264 if (png_ptr->transformations & PNG_GRAY_TO_RGB) 2024 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) != 0)
1265 info_ptr->color_type |= PNG_COLOR_MASK_COLOR; 2025 info_ptr->color_type = (png_byte)(info_ptr->color_type |
2026 PNG_COLOR_MASK_COLOR);
1266 #endif 2027 #endif
1267 2028
1268 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED 2029 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
1269 if (png_ptr->transformations & PNG_RGB_TO_GRAY) 2030 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) != 0)
1270 info_ptr->color_type &= ~PNG_COLOR_MASK_COLOR; 2031 info_ptr->color_type = (png_byte)(info_ptr->color_type &
1271 #endif 2032 ~PNG_COLOR_MASK_COLOR);
1272 2033 #endif
1273 #ifdef PNG_READ_DITHER_SUPPORTED 2034
1274 if (png_ptr->transformations & PNG_DITHER) 2035 #ifdef PNG_READ_QUANTIZE_SUPPORTED
2036 if ((png_ptr->transformations & PNG_QUANTIZE) != 0)
1275 { 2037 {
1276 if (((info_ptr->color_type == PNG_COLOR_TYPE_RGB) || 2038 if (((info_ptr->color_type == PNG_COLOR_TYPE_RGB) ||
1277 (info_ptr->color_type == PNG_COLOR_TYPE_RGB_ALPHA)) && 2039 (info_ptr->color_type == PNG_COLOR_TYPE_RGB_ALPHA)) &&
1278 png_ptr->palette_lookup && info_ptr->bit_depth == 8) 2040 png_ptr->palette_lookup != 0 && info_ptr->bit_depth == 8)
1279 { 2041 {
1280 info_ptr->color_type = PNG_COLOR_TYPE_PALETTE; 2042 info_ptr->color_type = PNG_COLOR_TYPE_PALETTE;
1281 } 2043 }
1282 } 2044 }
1283 #endif 2045 #endif
1284 2046
2047 #ifdef PNG_READ_EXPAND_16_SUPPORTED
2048 if ((png_ptr->transformations & PNG_EXPAND_16) != 0 &&
2049 info_ptr->bit_depth == 8 &&
2050 info_ptr->color_type != PNG_COLOR_TYPE_PALETTE)
2051 {
2052 info_ptr->bit_depth = 16;
2053 }
2054 #endif
2055
1285 #ifdef PNG_READ_PACK_SUPPORTED 2056 #ifdef PNG_READ_PACK_SUPPORTED
1286 if ((png_ptr->transformations & PNG_PACK) && (info_ptr->bit_depth < 8)) 2057 if ((png_ptr->transformations & PNG_PACK) != 0 &&
2058 (info_ptr->bit_depth < 8))
1287 info_ptr->bit_depth = 8; 2059 info_ptr->bit_depth = 8;
1288 #endif 2060 #endif
1289 2061
1290 if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) 2062 if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
1291 info_ptr->channels = 1; 2063 info_ptr->channels = 1;
1292 else if (info_ptr->color_type & PNG_COLOR_MASK_COLOR) 2064
2065 else if ((info_ptr->color_type & PNG_COLOR_MASK_COLOR) != 0)
1293 info_ptr->channels = 3; 2066 info_ptr->channels = 3;
2067
1294 else 2068 else
1295 info_ptr->channels = 1; 2069 info_ptr->channels = 1;
1296 2070
1297 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED 2071 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
1298 if (png_ptr->flags & PNG_FLAG_STRIP_ALPHA) 2072 if ((png_ptr->transformations & PNG_STRIP_ALPHA) != 0)
1299 info_ptr->color_type &= ~PNG_COLOR_MASK_ALPHA; 2073 {
1300 #endif 2074 info_ptr->color_type = (png_byte)(info_ptr->color_type &
1301 2075 ~PNG_COLOR_MASK_ALPHA);
1302 if (info_ptr->color_type & PNG_COLOR_MASK_ALPHA) 2076 info_ptr->num_trans = 0;
2077 }
2078 #endif
2079
2080 if ((info_ptr->color_type & PNG_COLOR_MASK_ALPHA) != 0)
1303 info_ptr->channels++; 2081 info_ptr->channels++;
1304 2082
1305 #ifdef PNG_READ_FILLER_SUPPORTED 2083 #ifdef PNG_READ_FILLER_SUPPORTED
1306 /* STRIP_ALPHA and FILLER allowed: MASK_ALPHA bit stripped above */ 2084 /* STRIP_ALPHA and FILLER allowed: MASK_ALPHA bit stripped above */
1307 if ((png_ptr->transformations & PNG_FILLER) && 2085 if ((png_ptr->transformations & PNG_FILLER) != 0 &&
1308 ((info_ptr->color_type == PNG_COLOR_TYPE_RGB) || 2086 (info_ptr->color_type == PNG_COLOR_TYPE_RGB ||
1309 (info_ptr->color_type == PNG_COLOR_TYPE_GRAY))) 2087 info_ptr->color_type == PNG_COLOR_TYPE_GRAY))
1310 { 2088 {
1311 info_ptr->channels++; 2089 info_ptr->channels++;
1312 /* If adding a true alpha channel not just filler */ 2090 /* If adding a true alpha channel not just filler */
1313 #ifndef PNG_1_0_X 2091 if ((png_ptr->transformations & PNG_ADD_ALPHA) != 0)
1314 if (png_ptr->transformations & PNG_ADD_ALPHA) 2092 info_ptr->color_type |= PNG_COLOR_MASK_ALPHA;
1315 info_ptr->color_type |= PNG_COLOR_MASK_ALPHA;
1316 #endif
1317 } 2093 }
1318 #endif 2094 #endif
1319 2095
1320 #if defined(PNG_USER_TRANSFORM_PTR_SUPPORTED) && \ 2096 #if defined(PNG_USER_TRANSFORM_PTR_SUPPORTED) && \
1321 defined(PNG_READ_USER_TRANSFORM_SUPPORTED) 2097 defined(PNG_READ_USER_TRANSFORM_SUPPORTED)
1322 if (png_ptr->transformations & PNG_USER_TRANSFORM) 2098 if ((png_ptr->transformations & PNG_USER_TRANSFORM) != 0)
1323 { 2099 {
1324 if (info_ptr->bit_depth < png_ptr->user_transform_depth) 2100 if (png_ptr->user_transform_depth != 0)
1325 info_ptr->bit_depth = png_ptr->user_transform_depth; 2101 info_ptr->bit_depth = png_ptr->user_transform_depth;
1326 if (info_ptr->channels < png_ptr->user_transform_channels) 2102
2103 if (png_ptr->user_transform_channels != 0)
1327 info_ptr->channels = png_ptr->user_transform_channels; 2104 info_ptr->channels = png_ptr->user_transform_channels;
1328 } 2105 }
1329 #endif 2106 #endif
1330 2107
1331 info_ptr->pixel_depth = (png_byte)(info_ptr->channels * 2108 info_ptr->pixel_depth = (png_byte)(info_ptr->channels *
1332 info_ptr->bit_depth); 2109 info_ptr->bit_depth);
1333 2110
1334 info_ptr->rowbytes = PNG_ROWBYTES(info_ptr->pixel_depth, info_ptr->width); 2111 info_ptr->rowbytes = PNG_ROWBYTES(info_ptr->pixel_depth, info_ptr->width);
1335 2112
2113 /* Adding in 1.5.4: cache the above value in png_struct so that we can later
2114 * check in png_rowbytes that the user buffer won't get overwritten. Note
2115 * that the field is not always set - if png_read_update_info isn't called
2116 * the application has to either not do any transforms or get the calculation
2117 * right itself.
2118 */
2119 png_ptr->info_rowbytes = info_ptr->rowbytes;
2120
1336 #ifndef PNG_READ_EXPAND_SUPPORTED 2121 #ifndef PNG_READ_EXPAND_SUPPORTED
1337 if (png_ptr) 2122 if (png_ptr != NULL)
1338 return; 2123 return;
1339 #endif 2124 #endif
1340 } 2125 }
1341 2126
1342 /* Transform the row. The order of transformations is significant,
1343 * and is very touchy. If you add a transformation, take care to
1344 * decide how it fits in with the other transformations here.
1345 */
1346 void /* PRIVATE */
1347 png_do_read_transformations(png_structp png_ptr)
1348 {
1349 png_debug(1, "in png_do_read_transformations");
1350
1351 if (png_ptr->row_buf == NULL)
1352 {
1353 #if defined(PNG_STDIO_SUPPORTED) && !defined(_WIN32_WCE)
1354 char msg[50];
1355
1356 png_snprintf2(msg, 50,
1357 "NULL row buffer for row %ld, pass %d", (long)png_ptr->row_number,
1358 png_ptr->pass);
1359 png_error(png_ptr, msg);
1360 #else
1361 png_error(png_ptr, "NULL row buffer");
1362 #endif
1363 }
1364 #ifdef PNG_WARN_UNINITIALIZED_ROW
1365 if (!(png_ptr->flags & PNG_FLAG_ROW_INIT))
1366 /* Application has failed to call either png_read_start_image()
1367 * or png_read_update_info() after setting transforms that expand
1368 * pixels. This check added to libpng-1.2.19
1369 */
1370 #if (PNG_WARN_UNINITIALIZED_ROW==1)
1371 png_error(png_ptr, "Uninitialized row");
1372 #else
1373 png_warning(png_ptr, "Uninitialized row");
1374 #endif
1375 #endif
1376
1377 #ifdef PNG_READ_EXPAND_SUPPORTED
1378 if (png_ptr->transformations & PNG_EXPAND)
1379 {
1380 if (png_ptr->row_info.color_type == PNG_COLOR_TYPE_PALETTE)
1381 {
1382 if (png_ptr->palette == NULL)
1383 png_error (png_ptr, "Palette is NULL in indexed image");
1384
1385 png_do_expand_palette(&(png_ptr->row_info), png_ptr->row_buf + 1,
1386 png_ptr->palette, png_ptr->trans, png_ptr->num_trans);
1387 }
1388 else
1389 {
1390 if (png_ptr->num_trans &&
1391 (png_ptr->transformations & PNG_EXPAND_tRNS))
1392 png_do_expand(&(png_ptr->row_info), png_ptr->row_buf + 1,
1393 &(png_ptr->trans_values));
1394 else
1395 png_do_expand(&(png_ptr->row_info), png_ptr->row_buf + 1,
1396 NULL);
1397 }
1398 }
1399 #endif
1400
1401 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
1402 if (png_ptr->flags & PNG_FLAG_STRIP_ALPHA)
1403 png_do_strip_filler(&(png_ptr->row_info), png_ptr->row_buf + 1,
1404 PNG_FLAG_FILLER_AFTER | (png_ptr->flags & PNG_FLAG_STRIP_ALPHA));
1405 #endif
1406
1407 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
1408 if (png_ptr->transformations & PNG_RGB_TO_GRAY)
1409 {
1410 int rgb_error =
1411 png_do_rgb_to_gray(png_ptr, &(png_ptr->row_info),
1412 png_ptr->row_buf + 1);
1413 if (rgb_error)
1414 {
1415 png_ptr->rgb_to_gray_status=1;
1416 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) ==
1417 PNG_RGB_TO_GRAY_WARN)
1418 png_warning(png_ptr, "png_do_rgb_to_gray found nongray pixel");
1419 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) ==
1420 PNG_RGB_TO_GRAY_ERR)
1421 png_error(png_ptr, "png_do_rgb_to_gray found nongray pixel");
1422 }
1423 }
1424 #endif
1425
1426 /* From Andreas Dilger e-mail to png-implement, 26 March 1998:
1427 *
1428 * In most cases, the "simple transparency" should be done prior to doing
1429 * gray-to-RGB, or you will have to test 3x as many bytes to check if a
1430 * pixel is transparent. You would also need to make sure that the
1431 * transparency information is upgraded to RGB.
1432 *
1433 * To summarize, the current flow is:
1434 * - Gray + simple transparency -> compare 1 or 2 gray bytes and composite
1435 * with background "in place" if transparent,
1436 * convert to RGB if necessary
1437 * - Gray + alpha -> composite with gray background and remove alpha bytes,
1438 * convert to RGB if necessary
1439 *
1440 * To support RGB backgrounds for gray images we need:
1441 * - Gray + simple transparency -> convert to RGB + simple transparency,
1442 * compare 3 or 6 bytes and composite with
1443 * background "in place" if transparent
1444 * (3x compare/pixel compared to doing
1445 * composite with gray bkgrnd)
1446 * - Gray + alpha -> convert to RGB + alpha, composite with background and
1447 * remove alpha bytes (3x float
1448 * operations/pixel compared with composite
1449 * on gray background)
1450 *
1451 * Greg's change will do this. The reason it wasn't done before is for
1452 * performance, as this increases the per-pixel operations. If we would check
1453 * in advance if the background was gray or RGB, and position the gray-to-RGB
1454 * transform appropriately, then it would save a lot of work/time.
1455 */
1456
1457 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
1458 /* If gray -> RGB, do so now only if background is non-gray; else do later
1459 * for performance reasons
1460 */
1461 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) &&
1462 !(png_ptr->mode & PNG_BACKGROUND_IS_GRAY))
1463 png_do_gray_to_rgb(&(png_ptr->row_info), png_ptr->row_buf + 1);
1464 #endif
1465
1466 #ifdef PNG_READ_BACKGROUND_SUPPORTED
1467 if ((png_ptr->transformations & PNG_BACKGROUND) &&
1468 ((png_ptr->num_trans != 0 ) ||
1469 (png_ptr->color_type & PNG_COLOR_MASK_ALPHA)))
1470 png_do_background(&(png_ptr->row_info), png_ptr->row_buf + 1,
1471 &(png_ptr->trans_values), &(png_ptr->background)
1472 #ifdef PNG_READ_GAMMA_SUPPORTED
1473 , &(png_ptr->background_1),
1474 png_ptr->gamma_table, png_ptr->gamma_from_1,
1475 png_ptr->gamma_to_1, png_ptr->gamma_16_table,
1476 png_ptr->gamma_16_from_1, png_ptr->gamma_16_to_1,
1477 png_ptr->gamma_shift
1478 #endif
1479 );
1480 #endif
1481
1482 #ifdef PNG_READ_GAMMA_SUPPORTED
1483 if ((png_ptr->transformations & PNG_GAMMA) &&
1484 #ifdef PNG_READ_BACKGROUND_SUPPORTED
1485 !((png_ptr->transformations & PNG_BACKGROUND) &&
1486 ((png_ptr->num_trans != 0) ||
1487 (png_ptr->color_type & PNG_COLOR_MASK_ALPHA))) &&
1488 #endif
1489 (png_ptr->color_type != PNG_COLOR_TYPE_PALETTE))
1490 png_do_gamma(&(png_ptr->row_info), png_ptr->row_buf + 1,
1491 png_ptr->gamma_table, png_ptr->gamma_16_table,
1492 png_ptr->gamma_shift);
1493 #endif
1494
1495 #ifdef PNG_READ_16_TO_8_SUPPORTED
1496 if (png_ptr->transformations & PNG_16_TO_8)
1497 png_do_chop(&(png_ptr->row_info), png_ptr->row_buf + 1);
1498 #endif
1499
1500 #ifdef PNG_READ_DITHER_SUPPORTED
1501 if (png_ptr->transformations & PNG_DITHER)
1502 {
1503 png_do_dither((png_row_infop)&(png_ptr->row_info), png_ptr->row_buf + 1,
1504 png_ptr->palette_lookup, png_ptr->dither_index);
1505 if (png_ptr->row_info.rowbytes == (png_uint_32)0)
1506 png_error(png_ptr, "png_do_dither returned rowbytes=0");
1507 }
1508 #endif
1509
1510 #ifdef PNG_READ_INVERT_SUPPORTED
1511 if (png_ptr->transformations & PNG_INVERT_MONO)
1512 png_do_invert(&(png_ptr->row_info), png_ptr->row_buf + 1);
1513 #endif
1514
1515 #ifdef PNG_READ_SHIFT_SUPPORTED
1516 if (png_ptr->transformations & PNG_SHIFT)
1517 png_do_unshift(&(png_ptr->row_info), png_ptr->row_buf + 1,
1518 &(png_ptr->shift));
1519 #endif
1520
1521 #ifdef PNG_READ_PACK_SUPPORTED 2127 #ifdef PNG_READ_PACK_SUPPORTED
1522 if (png_ptr->transformations & PNG_PACK)
1523 png_do_unpack(&(png_ptr->row_info), png_ptr->row_buf + 1);
1524 #endif
1525
1526 #ifdef PNG_READ_BGR_SUPPORTED
1527 if (png_ptr->transformations & PNG_BGR)
1528 png_do_bgr(&(png_ptr->row_info), png_ptr->row_buf + 1);
1529 #endif
1530
1531 #ifdef PNG_READ_PACKSWAP_SUPPORTED
1532 if (png_ptr->transformations & PNG_PACKSWAP)
1533 png_do_packswap(&(png_ptr->row_info), png_ptr->row_buf + 1);
1534 #endif
1535
1536 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
1537 /* If gray -> RGB, do so now only if we did not do so above */
1538 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) &&
1539 (png_ptr->mode & PNG_BACKGROUND_IS_GRAY))
1540 png_do_gray_to_rgb(&(png_ptr->row_info), png_ptr->row_buf + 1);
1541 #endif
1542
1543 #ifdef PNG_READ_FILLER_SUPPORTED
1544 if (png_ptr->transformations & PNG_FILLER)
1545 png_do_read_filler(&(png_ptr->row_info), png_ptr->row_buf + 1,
1546 (png_uint_32)png_ptr->filler, png_ptr->flags);
1547 #endif
1548
1549 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED
1550 if (png_ptr->transformations & PNG_INVERT_ALPHA)
1551 png_do_read_invert_alpha(&(png_ptr->row_info), png_ptr->row_buf + 1);
1552 #endif
1553
1554 #ifdef PNG_READ_SWAP_ALPHA_SUPPORTED
1555 if (png_ptr->transformations & PNG_SWAP_ALPHA)
1556 png_do_read_swap_alpha(&(png_ptr->row_info), png_ptr->row_buf + 1);
1557 #endif
1558
1559 #ifdef PNG_READ_SWAP_SUPPORTED
1560 if (png_ptr->transformations & PNG_SWAP_BYTES)
1561 png_do_swap(&(png_ptr->row_info), png_ptr->row_buf + 1);
1562 #endif
1563
1564 #ifdef PNG_READ_USER_TRANSFORM_SUPPORTED
1565 if (png_ptr->transformations & PNG_USER_TRANSFORM)
1566 {
1567 if (png_ptr->read_user_transform_fn != NULL)
1568 (*(png_ptr->read_user_transform_fn)) /* User read transform function */
1569 (png_ptr, /* png_ptr */
1570 &(png_ptr->row_info), /* row_info: */
1571 /* png_uint_32 width; width of row */
1572 /* png_uint_32 rowbytes; number of bytes in row */
1573 /* png_byte color_type; color type of pixels */
1574 /* png_byte bit_depth; bit depth of samples */
1575 /* png_byte channels; number of channels (1-4) */
1576 /* png_byte pixel_depth; bits per pixel (depth*channels) */
1577 png_ptr->row_buf + 1); /* start of pixel data for row */
1578 #ifdef PNG_USER_TRANSFORM_PTR_SUPPORTED
1579 if (png_ptr->user_transform_depth)
1580 png_ptr->row_info.bit_depth = png_ptr->user_transform_depth;
1581 if (png_ptr->user_transform_channels)
1582 png_ptr->row_info.channels = png_ptr->user_transform_channels;
1583 #endif
1584 png_ptr->row_info.pixel_depth = (png_byte)(png_ptr->row_info.bit_depth *
1585 png_ptr->row_info.channels);
1586 png_ptr->row_info.rowbytes = PNG_ROWBYTES(png_ptr->row_info.pixel_depth,
1587 png_ptr->row_info.width);
1588 }
1589 #endif
1590
1591 }
1592
1593 #ifdef PNG_READ_PACK_SUPPORTED
1594 /* Unpack pixels of 1, 2, or 4 bits per pixel into 1 byte per pixel, 2128 /* Unpack pixels of 1, 2, or 4 bits per pixel into 1 byte per pixel,
1595 * without changing the actual values. Thus, if you had a row with 2129 * without changing the actual values. Thus, if you had a row with
1596 * a bit depth of 1, you would end up with bytes that only contained 2130 * a bit depth of 1, you would end up with bytes that only contained
1597 * the numbers 0 or 1. If you would rather they contain 0 and 255, use 2131 * the numbers 0 or 1. If you would rather they contain 0 and 255, use
1598 * png_do_shift() after this. 2132 * png_do_shift() after this.
1599 */ 2133 */
1600 void /* PRIVATE */ 2134 static void
1601 png_do_unpack(png_row_infop row_info, png_bytep row) 2135 png_do_unpack(png_row_infop row_info, png_bytep row)
1602 { 2136 {
1603 png_debug(1, "in png_do_unpack"); 2137 png_debug(1, "in png_do_unpack");
1604 2138
1605 #ifdef PNG_USELESS_TESTS_SUPPORTED
1606 if (row != NULL && row_info != NULL && row_info->bit_depth < 8)
1607 #else
1608 if (row_info->bit_depth < 8) 2139 if (row_info->bit_depth < 8)
1609 #endif
1610 { 2140 {
1611 png_uint_32 i; 2141 png_uint_32 i;
1612 png_uint_32 row_width=row_info->width; 2142 png_uint_32 row_width=row_info->width;
1613 2143
1614 switch (row_info->bit_depth) 2144 switch (row_info->bit_depth)
1615 { 2145 {
1616 case 1: 2146 case 1:
1617 { 2147 {
1618 png_bytep sp = row + (png_size_t)((row_width - 1) >> 3); 2148 png_bytep sp = row + (png_size_t)((row_width - 1) >> 3);
1619 png_bytep dp = row + (png_size_t)row_width - 1; 2149 png_bytep dp = row + (png_size_t)row_width - 1;
1620 png_uint_32 shift = 7 - (int)((row_width + 7) & 0x07); 2150 png_uint_32 shift = 7 - (int)((row_width + 7) & 0x07);
1621 for (i = 0; i < row_width; i++) 2151 for (i = 0; i < row_width; i++)
1622 { 2152 {
1623 *dp = (png_byte)((*sp >> shift) & 0x01); 2153 *dp = (png_byte)((*sp >> shift) & 0x01);
2154
1624 if (shift == 7) 2155 if (shift == 7)
1625 { 2156 {
1626 shift = 0; 2157 shift = 0;
1627 sp--; 2158 sp--;
1628 } 2159 }
2160
1629 else 2161 else
1630 shift++; 2162 shift++;
1631 2163
1632 dp--; 2164 dp--;
1633 } 2165 }
1634 break; 2166 break;
1635 } 2167 }
1636 2168
1637 case 2: 2169 case 2:
1638 { 2170 {
1639 2171
1640 png_bytep sp = row + (png_size_t)((row_width - 1) >> 2); 2172 png_bytep sp = row + (png_size_t)((row_width - 1) >> 2);
1641 png_bytep dp = row + (png_size_t)row_width - 1; 2173 png_bytep dp = row + (png_size_t)row_width - 1;
1642 png_uint_32 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1); 2174 png_uint_32 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1);
1643 for (i = 0; i < row_width; i++) 2175 for (i = 0; i < row_width; i++)
1644 { 2176 {
1645 *dp = (png_byte)((*sp >> shift) & 0x03); 2177 *dp = (png_byte)((*sp >> shift) & 0x03);
2178
1646 if (shift == 6) 2179 if (shift == 6)
1647 { 2180 {
1648 shift = 0; 2181 shift = 0;
1649 sp--; 2182 sp--;
1650 } 2183 }
2184
1651 else 2185 else
1652 shift += 2; 2186 shift += 2;
1653 2187
1654 dp--; 2188 dp--;
1655 } 2189 }
1656 break; 2190 break;
1657 } 2191 }
1658 2192
1659 case 4: 2193 case 4:
1660 { 2194 {
1661 png_bytep sp = row + (png_size_t)((row_width - 1) >> 1); 2195 png_bytep sp = row + (png_size_t)((row_width - 1) >> 1);
1662 png_bytep dp = row + (png_size_t)row_width - 1; 2196 png_bytep dp = row + (png_size_t)row_width - 1;
1663 png_uint_32 shift = (int)((1 - ((row_width + 1) & 0x01)) << 2); 2197 png_uint_32 shift = (int)((1 - ((row_width + 1) & 0x01)) << 2);
1664 for (i = 0; i < row_width; i++) 2198 for (i = 0; i < row_width; i++)
1665 { 2199 {
1666 *dp = (png_byte)((*sp >> shift) & 0x0f); 2200 *dp = (png_byte)((*sp >> shift) & 0x0f);
2201
1667 if (shift == 4) 2202 if (shift == 4)
1668 { 2203 {
1669 shift = 0; 2204 shift = 0;
1670 sp--; 2205 sp--;
1671 } 2206 }
2207
1672 else 2208 else
1673 shift = 4; 2209 shift = 4;
1674 2210
1675 dp--; 2211 dp--;
1676 } 2212 }
1677 break; 2213 break;
1678 } 2214 }
2215
2216 default:
2217 break;
1679 } 2218 }
1680 row_info->bit_depth = 8; 2219 row_info->bit_depth = 8;
1681 row_info->pixel_depth = (png_byte)(8 * row_info->channels); 2220 row_info->pixel_depth = (png_byte)(8 * row_info->channels);
1682 row_info->rowbytes = row_width * row_info->channels; 2221 row_info->rowbytes = row_width * row_info->channels;
1683 } 2222 }
1684 } 2223 }
1685 #endif 2224 #endif
1686 2225
1687 #ifdef PNG_READ_SHIFT_SUPPORTED 2226 #ifdef PNG_READ_SHIFT_SUPPORTED
1688 /* Reverse the effects of png_do_shift. This routine merely shifts the 2227 /* Reverse the effects of png_do_shift. This routine merely shifts the
1689 * pixels back to their significant bits values. Thus, if you have 2228 * pixels back to their significant bits values. Thus, if you have
1690 * a row of bit depth 8, but only 5 are significant, this will shift 2229 * a row of bit depth 8, but only 5 are significant, this will shift
1691 * the values back to 0 through 31. 2230 * the values back to 0 through 31.
1692 */ 2231 */
1693 void /* PRIVATE */ 2232 static void
1694 png_do_unshift(png_row_infop row_info, png_bytep row, png_color_8p sig_bits) 2233 png_do_unshift(png_row_infop row_info, png_bytep row,
2234 png_const_color_8p sig_bits)
1695 { 2235 {
2236 int color_type;
2237
1696 png_debug(1, "in png_do_unshift"); 2238 png_debug(1, "in png_do_unshift");
1697 2239
1698 if ( 2240 /* The palette case has already been handled in the _init routine. */
1699 #ifdef PNG_USELESS_TESTS_SUPPORTED 2241 color_type = row_info->color_type;
1700 row != NULL && row_info != NULL && sig_bits != NULL && 2242
1701 #endif 2243 if (color_type != PNG_COLOR_TYPE_PALETTE)
1702 row_info->color_type != PNG_COLOR_TYPE_PALETTE)
1703 { 2244 {
1704 int shift[4]; 2245 int shift[4];
1705 int channels = 0; 2246 int channels = 0;
1706 int c; 2247 int bit_depth = row_info->bit_depth;
1707 png_uint_16 value = 0; 2248
1708 png_uint_32 row_width = row_info->width; 2249 if ((color_type & PNG_COLOR_MASK_COLOR) != 0)
1709 2250 {
1710 if (row_info->color_type & PNG_COLOR_MASK_COLOR) 2251 shift[channels++] = bit_depth - sig_bits->red;
1711 { 2252 shift[channels++] = bit_depth - sig_bits->green;
1712 shift[channels++] = row_info->bit_depth - sig_bits->red; 2253 shift[channels++] = bit_depth - sig_bits->blue;
1713 shift[channels++] = row_info->bit_depth - sig_bits->green; 2254 }
1714 shift[channels++] = row_info->bit_depth - sig_bits->blue; 2255
1715 }
1716 else 2256 else
1717 { 2257 {
1718 shift[channels++] = row_info->bit_depth - sig_bits->gray; 2258 shift[channels++] = bit_depth - sig_bits->gray;
1719 } 2259 }
1720 if (row_info->color_type & PNG_COLOR_MASK_ALPHA) 2260
1721 { 2261 if ((color_type & PNG_COLOR_MASK_ALPHA) != 0)
1722 shift[channels++] = row_info->bit_depth - sig_bits->alpha; 2262 {
1723 } 2263 shift[channels++] = bit_depth - sig_bits->alpha;
1724 2264 }
1725 for (c = 0; c < channels; c++) 2265
1726 { 2266 {
1727 if (shift[c] <= 0) 2267 int c, have_shift;
1728 shift[c] = 0; 2268
1729 else 2269 for (c = have_shift = 0; c < channels; ++c)
1730 value = 1; 2270 {
1731 } 2271 /* A shift of more than the bit depth is an error condition but it
1732 2272 * gets ignored here.
1733 if (!value) 2273 */
1734 return; 2274 if (shift[c] <= 0 || shift[c] >= bit_depth)
1735 2275 shift[c] = 0;
1736 switch (row_info->bit_depth) 2276
1737 { 2277 else
2278 have_shift = 1;
2279 }
2280
2281 if (have_shift == 0)
2282 return;
2283 }
2284
2285 switch (bit_depth)
2286 {
2287 default:
2288 /* Must be 1bpp gray: should not be here! */
2289 /* NOTREACHED */
2290 break;
2291
1738 case 2: 2292 case 2:
1739 { 2293 /* Must be 2bpp gray */
1740 png_bytep bp; 2294 /* assert(channels == 1 && shift[0] == 1) */
1741 png_uint_32 i; 2295 {
1742 png_uint_32 istop = row_info->rowbytes; 2296 png_bytep bp = row;
1743 2297 png_bytep bp_end = bp + row_info->rowbytes;
1744 for (bp = row, i = 0; i < istop; i++) 2298
1745 { 2299 while (bp < bp_end)
1746 *bp >>= 1; 2300 {
1747 *bp++ &= 0x55; 2301 int b = (*bp >> 1) & 0x55;
2302 *bp++ = (png_byte)b;
1748 } 2303 }
1749 break; 2304 break;
1750 } 2305 }
1751 2306
1752 case 4: 2307 case 4:
1753 { 2308 /* Must be 4bpp gray */
1754 png_bytep bp = row; 2309 /* assert(channels == 1) */
1755 png_uint_32 i; 2310 {
1756 png_uint_32 istop = row_info->rowbytes; 2311 png_bytep bp = row;
1757 png_byte mask = (png_byte)((((int)0xf0 >> shift[0]) & (int)0xf0) | 2312 png_bytep bp_end = bp + row_info->rowbytes;
1758 (png_byte)((int)0xf >> shift[0])); 2313 int gray_shift = shift[0];
1759 2314 int mask = 0xf >> gray_shift;
1760 for (i = 0; i < istop; i++) 2315
1761 { 2316 mask |= mask << 4;
1762 *bp >>= shift[0]; 2317
1763 *bp++ &= mask; 2318 while (bp < bp_end)
2319 {
2320 int b = (*bp >> gray_shift) & mask;
2321 *bp++ = (png_byte)b;
1764 } 2322 }
1765 break; 2323 break;
1766 } 2324 }
1767 2325
1768 case 8: 2326 case 8:
1769 { 2327 /* Single byte components, G, GA, RGB, RGBA */
1770 png_bytep bp = row; 2328 {
1771 png_uint_32 i; 2329 png_bytep bp = row;
1772 png_uint_32 istop = row_width * channels; 2330 png_bytep bp_end = bp + row_info->rowbytes;
1773 2331 int channel = 0;
1774 for (i = 0; i < istop; i++) 2332
1775 { 2333 while (bp < bp_end)
1776 *bp++ >>= shift[i%channels]; 2334 {
1777 } 2335 int b = *bp >> shift[channel];
1778 break; 2336 if (++channel >= channels)
1779 } 2337 channel = 0;
1780 2338 *bp++ = (png_byte)b;
2339 }
2340 break;
2341 }
2342
2343 #ifdef PNG_READ_16BIT_SUPPORTED
1781 case 16: 2344 case 16:
1782 { 2345 /* Double byte components, G, GA, RGB, RGBA */
1783 png_bytep bp = row; 2346 {
1784 png_uint_32 i; 2347 png_bytep bp = row;
1785 png_uint_32 istop = channels * row_width; 2348 png_bytep bp_end = bp + row_info->rowbytes;
1786 2349 int channel = 0;
1787 for (i = 0; i < istop; i++) 2350
1788 { 2351 while (bp < bp_end)
1789 value = (png_uint_16)((*bp << 8) + *(bp + 1)); 2352 {
1790 value >>= shift[i%channels]; 2353 int value = (bp[0] << 8) + bp[1];
2354
2355 value >>= shift[channel];
2356 if (++channel >= channels)
2357 channel = 0;
1791 *bp++ = (png_byte)(value >> 8); 2358 *bp++ = (png_byte)(value >> 8);
1792 *bp++ = (png_byte)(value & 0xff); 2359 *bp++ = (png_byte)value;
1793 } 2360 }
1794 break; 2361 break;
1795 } 2362 }
2363 #endif
1796 } 2364 }
1797 } 2365 }
1798 } 2366 }
1799 #endif 2367 #endif
1800 2368
1801 #ifdef PNG_READ_16_TO_8_SUPPORTED 2369 #ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
1802 /* Chop rows of bit depth 16 down to 8 */ 2370 /* Scale rows of bit depth 16 down to 8 accurately */
1803 void /* PRIVATE */ 2371 static void
2372 png_do_scale_16_to_8(png_row_infop row_info, png_bytep row)
2373 {
2374 png_debug(1, "in png_do_scale_16_to_8");
2375
2376 if (row_info->bit_depth == 16)
2377 {
2378 png_bytep sp = row; /* source */
2379 png_bytep dp = row; /* destination */
2380 png_bytep ep = sp + row_info->rowbytes; /* end+1 */
2381
2382 while (sp < ep)
2383 {
2384 /* The input is an array of 16-bit components, these must be scaled to
2385 * 8 bits each. For a 16-bit value V the required value (from the PNG
2386 * specification) is:
2387 *
2388 * (V * 255) / 65535
2389 *
2390 * This reduces to round(V / 257), or floor((V + 128.5)/257)
2391 *
2392 * Represent V as the two byte value vhi.vlo. Make a guess that the
2393 * result is the top byte of V, vhi, then the correction to this value
2394 * is:
2395 *
2396 * error = floor(((V-vhi.vhi) + 128.5) / 257)
2397 * = floor(((vlo-vhi) + 128.5) / 257)
2398 *
2399 * This can be approximated using integer arithmetic (and a signed
2400 * shift):
2401 *
2402 * error = (vlo-vhi+128) >> 8;
2403 *
2404 * The approximate differs from the exact answer only when (vlo-vhi) is
2405 * 128; it then gives a correction of +1 when the exact correction is
2406 * 0. This gives 128 errors. The exact answer (correct for all 16-bit
2407 * input values) is:
2408 *
2409 * error = (vlo-vhi+128)*65535 >> 24;
2410 *
2411 * An alternative arithmetic calculation which also gives no errors is:
2412 *
2413 * (V * 255 + 32895) >> 16
2414 */
2415
2416 png_int_32 tmp = *sp++; /* must be signed! */
2417 tmp += (((int)*sp++ - tmp + 128) * 65535) >> 24;
2418 *dp++ = (png_byte)tmp;
2419 }
2420
2421 row_info->bit_depth = 8;
2422 row_info->pixel_depth = (png_byte)(8 * row_info->channels);
2423 row_info->rowbytes = row_info->width * row_info->channels;
2424 }
2425 }
2426 #endif
2427
2428 #ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
2429 static void
2430 /* Simply discard the low byte. This was the default behavior prior
2431 * to libpng-1.5.4.
2432 */
1804 png_do_chop(png_row_infop row_info, png_bytep row) 2433 png_do_chop(png_row_infop row_info, png_bytep row)
1805 { 2434 {
1806 png_debug(1, "in png_do_chop"); 2435 png_debug(1, "in png_do_chop");
1807 2436
1808 #ifdef PNG_USELESS_TESTS_SUPPORTED
1809 if (row != NULL && row_info != NULL && row_info->bit_depth == 16)
1810 #else
1811 if (row_info->bit_depth == 16) 2437 if (row_info->bit_depth == 16)
1812 #endif
1813 { 2438 {
1814 png_bytep sp = row; 2439 png_bytep sp = row; /* source */
1815 png_bytep dp = row; 2440 png_bytep dp = row; /* destination */
1816 png_uint_32 i; 2441 png_bytep ep = sp + row_info->rowbytes; /* end+1 */
1817 png_uint_32 istop = row_info->width * row_info->channels; 2442
1818 2443 while (sp < ep)
1819 for (i = 0; i<istop; i++, sp += 2, dp++) 2444 {
1820 { 2445 *dp++ = *sp;
1821 #ifdef PNG_READ_16_TO_8_ACCURATE_SCALE_SUPPORTED 2446 sp += 2; /* skip low byte */
1822 /* This does a more accurate scaling of the 16-bit color 2447 }
1823 * value, rather than a simple low-byte truncation. 2448
1824 *
1825 * What the ideal calculation should be:
1826 * *dp = (((((png_uint_32)(*sp) << 8) |
1827 * (png_uint_32)(*(sp + 1))) * 255 + 127)
1828 * / (png_uint_32)65535L;
1829 *
1830 * GRR: no, I think this is what it really should be:
1831 * *dp = (((((png_uint_32)(*sp) << 8) |
1832 * (png_uint_32)(*(sp + 1))) + 128L)
1833 * / (png_uint_32)257L;
1834 *
1835 * GRR: here's the exact calculation with shifts:
1836 * temp = (((png_uint_32)(*sp) << 8) |
1837 * (png_uint_32)(*(sp + 1))) + 128L;
1838 * *dp = (temp - (temp >> 8)) >> 8;
1839 *
1840 * Approximate calculation with shift/add instead of multiply/divide:
1841 * *dp = ((((png_uint_32)(*sp) << 8) |
1842 * (png_uint_32)((int)(*(sp + 1)) - *sp)) + 128) >> 8;
1843 *
1844 * What we actually do to avoid extra shifting and conversion:
1845 */
1846
1847 *dp = *sp + ((((int)(*(sp + 1)) - *sp) > 128) ? 1 : 0);
1848 #else
1849 /* Simply discard the low order byte */
1850 *dp = *sp;
1851 #endif
1852 }
1853 row_info->bit_depth = 8; 2449 row_info->bit_depth = 8;
1854 row_info->pixel_depth = (png_byte)(8 * row_info->channels); 2450 row_info->pixel_depth = (png_byte)(8 * row_info->channels);
1855 row_info->rowbytes = row_info->width * row_info->channels; 2451 row_info->rowbytes = row_info->width * row_info->channels;
1856 } 2452 }
1857 } 2453 }
1858 #endif 2454 #endif
1859 2455
1860 #ifdef PNG_READ_SWAP_ALPHA_SUPPORTED 2456 #ifdef PNG_READ_SWAP_ALPHA_SUPPORTED
1861 void /* PRIVATE */ 2457 static void
1862 png_do_read_swap_alpha(png_row_infop row_info, png_bytep row) 2458 png_do_read_swap_alpha(png_row_infop row_info, png_bytep row)
1863 { 2459 {
1864 png_debug(1, "in png_do_read_swap_alpha"); 2460 png_debug(1, "in png_do_read_swap_alpha");
1865 2461
1866 #ifdef PNG_USELESS_TESTS_SUPPORTED
1867 if (row != NULL && row_info != NULL)
1868 #endif
1869 { 2462 {
1870 png_uint_32 row_width = row_info->width; 2463 png_uint_32 row_width = row_info->width;
1871 if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA) 2464 if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
1872 { 2465 {
1873 /* This converts from RGBA to ARGB */ 2466 /* This converts from RGBA to ARGB */
1874 if (row_info->bit_depth == 8) 2467 if (row_info->bit_depth == 8)
1875 { 2468 {
1876 png_bytep sp = row + row_info->rowbytes; 2469 png_bytep sp = row + row_info->rowbytes;
1877 png_bytep dp = sp; 2470 png_bytep dp = sp;
1878 png_byte save; 2471 png_byte save;
1879 png_uint_32 i; 2472 png_uint_32 i;
1880 2473
1881 for (i = 0; i < row_width; i++) 2474 for (i = 0; i < row_width; i++)
1882 { 2475 {
1883 save = *(--sp); 2476 save = *(--sp);
1884 *(--dp) = *(--sp); 2477 *(--dp) = *(--sp);
1885 *(--dp) = *(--sp); 2478 *(--dp) = *(--sp);
1886 *(--dp) = *(--sp); 2479 *(--dp) = *(--sp);
1887 *(--dp) = save; 2480 *(--dp) = save;
1888 } 2481 }
1889 } 2482 }
2483
2484 #ifdef PNG_READ_16BIT_SUPPORTED
1890 /* This converts from RRGGBBAA to AARRGGBB */ 2485 /* This converts from RRGGBBAA to AARRGGBB */
1891 else 2486 else
1892 { 2487 {
1893 png_bytep sp = row + row_info->rowbytes; 2488 png_bytep sp = row + row_info->rowbytes;
1894 png_bytep dp = sp; 2489 png_bytep dp = sp;
1895 png_byte save[2]; 2490 png_byte save[2];
1896 png_uint_32 i; 2491 png_uint_32 i;
1897 2492
1898 for (i = 0; i < row_width; i++) 2493 for (i = 0; i < row_width; i++)
1899 { 2494 {
1900 save[0] = *(--sp); 2495 save[0] = *(--sp);
1901 save[1] = *(--sp); 2496 save[1] = *(--sp);
1902 *(--dp) = *(--sp); 2497 *(--dp) = *(--sp);
1903 *(--dp) = *(--sp); 2498 *(--dp) = *(--sp);
1904 *(--dp) = *(--sp); 2499 *(--dp) = *(--sp);
1905 *(--dp) = *(--sp); 2500 *(--dp) = *(--sp);
1906 *(--dp) = *(--sp); 2501 *(--dp) = *(--sp);
1907 *(--dp) = *(--sp); 2502 *(--dp) = *(--sp);
1908 *(--dp) = save[0]; 2503 *(--dp) = save[0];
1909 *(--dp) = save[1]; 2504 *(--dp) = save[1];
1910 } 2505 }
1911 } 2506 }
2507 #endif
1912 } 2508 }
2509
1913 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA) 2510 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
1914 { 2511 {
1915 /* This converts from GA to AG */ 2512 /* This converts from GA to AG */
1916 if (row_info->bit_depth == 8) 2513 if (row_info->bit_depth == 8)
1917 { 2514 {
1918 png_bytep sp = row + row_info->rowbytes; 2515 png_bytep sp = row + row_info->rowbytes;
1919 png_bytep dp = sp; 2516 png_bytep dp = sp;
1920 png_byte save; 2517 png_byte save;
1921 png_uint_32 i; 2518 png_uint_32 i;
1922 2519
1923 for (i = 0; i < row_width; i++) 2520 for (i = 0; i < row_width; i++)
1924 { 2521 {
1925 save = *(--sp); 2522 save = *(--sp);
1926 *(--dp) = *(--sp); 2523 *(--dp) = *(--sp);
1927 *(--dp) = save; 2524 *(--dp) = save;
1928 } 2525 }
1929 } 2526 }
2527
2528 #ifdef PNG_READ_16BIT_SUPPORTED
1930 /* This converts from GGAA to AAGG */ 2529 /* This converts from GGAA to AAGG */
1931 else 2530 else
1932 { 2531 {
1933 png_bytep sp = row + row_info->rowbytes; 2532 png_bytep sp = row + row_info->rowbytes;
1934 png_bytep dp = sp; 2533 png_bytep dp = sp;
1935 png_byte save[2]; 2534 png_byte save[2];
1936 png_uint_32 i; 2535 png_uint_32 i;
1937 2536
1938 for (i = 0; i < row_width; i++) 2537 for (i = 0; i < row_width; i++)
1939 { 2538 {
1940 save[0] = *(--sp); 2539 save[0] = *(--sp);
1941 save[1] = *(--sp); 2540 save[1] = *(--sp);
1942 *(--dp) = *(--sp); 2541 *(--dp) = *(--sp);
1943 *(--dp) = *(--sp); 2542 *(--dp) = *(--sp);
1944 *(--dp) = save[0]; 2543 *(--dp) = save[0];
1945 *(--dp) = save[1]; 2544 *(--dp) = save[1];
1946 } 2545 }
1947 } 2546 }
2547 #endif
1948 } 2548 }
1949 } 2549 }
1950 } 2550 }
1951 #endif 2551 #endif
1952 2552
1953 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED 2553 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED
1954 void /* PRIVATE */ 2554 static void
1955 png_do_read_invert_alpha(png_row_infop row_info, png_bytep row) 2555 png_do_read_invert_alpha(png_row_infop row_info, png_bytep row)
1956 { 2556 {
2557 png_uint_32 row_width;
1957 png_debug(1, "in png_do_read_invert_alpha"); 2558 png_debug(1, "in png_do_read_invert_alpha");
1958 2559
1959 #ifdef PNG_USELESS_TESTS_SUPPORTED 2560 row_width = row_info->width;
1960 if (row != NULL && row_info != NULL) 2561 if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
1961 #endif
1962 { 2562 {
1963 png_uint_32 row_width = row_info->width; 2563 if (row_info->bit_depth == 8)
1964 if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
1965 { 2564 {
1966 /* This inverts the alpha channel in RGBA */ 2565 /* This inverts the alpha channel in RGBA */
1967 if (row_info->bit_depth == 8) 2566 png_bytep sp = row + row_info->rowbytes;
2567 png_bytep dp = sp;
2568 png_uint_32 i;
2569
2570 for (i = 0; i < row_width; i++)
1968 { 2571 {
1969 png_bytep sp = row + row_info->rowbytes; 2572 *(--dp) = (png_byte)(255 - *(--sp));
1970 png_bytep dp = sp;
1971 png_uint_32 i;
1972 2573
1973 for (i = 0; i < row_width; i++) 2574 /* This does nothing:
1974 { 2575 *(--dp) = *(--sp);
1975 *(--dp) = (png_byte)(255 - *(--sp)); 2576 *(--dp) = *(--sp);
1976 2577 *(--dp) = *(--sp);
1977 /* This does nothing: 2578 We can replace it with:
1978 *(--dp) = *(--sp);
1979 *(--dp) = *(--sp);
1980 *(--dp) = *(--sp);
1981 We can replace it with:
1982 */ 2579 */
1983 sp-=3; 2580 sp-=3;
1984 dp=sp; 2581 dp=sp;
1985 }
1986 }
1987 /* This inverts the alpha channel in RRGGBBAA */
1988 else
1989 {
1990 png_bytep sp = row + row_info->rowbytes;
1991 png_bytep dp = sp;
1992 png_uint_32 i;
1993
1994 for (i = 0; i < row_width; i++)
1995 {
1996 *(--dp) = (png_byte)(255 - *(--sp));
1997 *(--dp) = (png_byte)(255 - *(--sp));
1998
1999 /* This does nothing:
2000 *(--dp) = *(--sp);
2001 *(--dp) = *(--sp);
2002 *(--dp) = *(--sp);
2003 *(--dp) = *(--sp);
2004 *(--dp) = *(--sp);
2005 *(--dp) = *(--sp);
2006 We can replace it with:
2007 */
2008 sp-=6;
2009 dp=sp;
2010 }
2011 } 2582 }
2012 } 2583 }
2013 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA) 2584
2585 #ifdef PNG_READ_16BIT_SUPPORTED
2586 /* This inverts the alpha channel in RRGGBBAA */
2587 else
2588 {
2589 png_bytep sp = row + row_info->rowbytes;
2590 png_bytep dp = sp;
2591 png_uint_32 i;
2592
2593 for (i = 0; i < row_width; i++)
2594 {
2595 *(--dp) = (png_byte)(255 - *(--sp));
2596 *(--dp) = (png_byte)(255 - *(--sp));
2597
2598 /* This does nothing:
2599 *(--dp) = *(--sp);
2600 *(--dp) = *(--sp);
2601 *(--dp) = *(--sp);
2602 *(--dp) = *(--sp);
2603 *(--dp) = *(--sp);
2604 *(--dp) = *(--sp);
2605 We can replace it with:
2606 */
2607 sp-=6;
2608 dp=sp;
2609 }
2610 }
2611 #endif
2612 }
2613 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
2614 {
2615 if (row_info->bit_depth == 8)
2014 { 2616 {
2015 /* This inverts the alpha channel in GA */ 2617 /* This inverts the alpha channel in GA */
2016 if (row_info->bit_depth == 8) 2618 png_bytep sp = row + row_info->rowbytes;
2619 png_bytep dp = sp;
2620 png_uint_32 i;
2621
2622 for (i = 0; i < row_width; i++)
2017 { 2623 {
2018 png_bytep sp = row + row_info->rowbytes; 2624 *(--dp) = (png_byte)(255 - *(--sp));
2019 png_bytep dp = sp; 2625 *(--dp) = *(--sp);
2020 png_uint_32 i;
2021
2022 for (i = 0; i < row_width; i++)
2023 {
2024 *(--dp) = (png_byte)(255 - *(--sp));
2025 *(--dp) = *(--sp);
2026 }
2027 }
2028 /* This inverts the alpha channel in GGAA */
2029 else
2030 {
2031 png_bytep sp = row + row_info->rowbytes;
2032 png_bytep dp = sp;
2033 png_uint_32 i;
2034
2035 for (i = 0; i < row_width; i++)
2036 {
2037 *(--dp) = (png_byte)(255 - *(--sp));
2038 *(--dp) = (png_byte)(255 - *(--sp));
2039 /*
2040 *(--dp) = *(--sp);
2041 *(--dp) = *(--sp);
2042 */
2043 sp-=2;
2044 dp=sp;
2045 }
2046 } 2626 }
2047 } 2627 }
2628
2629 #ifdef PNG_READ_16BIT_SUPPORTED
2630 else
2631 {
2632 /* This inverts the alpha channel in GGAA */
2633 png_bytep sp = row + row_info->rowbytes;
2634 png_bytep dp = sp;
2635 png_uint_32 i;
2636
2637 for (i = 0; i < row_width; i++)
2638 {
2639 *(--dp) = (png_byte)(255 - *(--sp));
2640 *(--dp) = (png_byte)(255 - *(--sp));
2641 /*
2642 *(--dp) = *(--sp);
2643 *(--dp) = *(--sp);
2644 */
2645 sp-=2;
2646 dp=sp;
2647 }
2648 }
2649 #endif
2048 } 2650 }
2049 } 2651 }
2050 #endif 2652 #endif
2051 2653
2052 #ifdef PNG_READ_FILLER_SUPPORTED 2654 #ifdef PNG_READ_FILLER_SUPPORTED
2053 /* Add filler channel if we have RGB color */ 2655 /* Add filler channel if we have RGB color */
2054 void /* PRIVATE */ 2656 static void
2055 png_do_read_filler(png_row_infop row_info, png_bytep row, 2657 png_do_read_filler(png_row_infop row_info, png_bytep row,
2056 png_uint_32 filler, png_uint_32 flags) 2658 png_uint_32 filler, png_uint_32 flags)
2057 { 2659 {
2058 png_uint_32 i; 2660 png_uint_32 i;
2059 png_uint_32 row_width = row_info->width; 2661 png_uint_32 row_width = row_info->width;
2060 2662
2061 png_byte hi_filler = (png_byte)((filler>>8) & 0xff); 2663 #ifdef PNG_READ_16BIT_SUPPORTED
2062 png_byte lo_filler = (png_byte)(filler & 0xff); 2664 png_byte hi_filler = (png_byte)(filler>>8);
2665 #endif
2666 png_byte lo_filler = (png_byte)filler;
2063 2667
2064 png_debug(1, "in png_do_read_filler"); 2668 png_debug(1, "in png_do_read_filler");
2065 2669
2066 if ( 2670 if (
2067 #ifdef PNG_USELESS_TESTS_SUPPORTED
2068 row != NULL && row_info != NULL &&
2069 #endif
2070 row_info->color_type == PNG_COLOR_TYPE_GRAY) 2671 row_info->color_type == PNG_COLOR_TYPE_GRAY)
2071 { 2672 {
2072 if (row_info->bit_depth == 8) 2673 if (row_info->bit_depth == 8)
2073 { 2674 {
2074 /* This changes the data from G to GX */ 2675 if ((flags & PNG_FLAG_FILLER_AFTER) != 0)
2075 if (flags & PNG_FLAG_FILLER_AFTER)
2076 { 2676 {
2677 /* This changes the data from G to GX */
2077 png_bytep sp = row + (png_size_t)row_width; 2678 png_bytep sp = row + (png_size_t)row_width;
2078 png_bytep dp = sp + (png_size_t)row_width; 2679 png_bytep dp = sp + (png_size_t)row_width;
2079 for (i = 1; i < row_width; i++) 2680 for (i = 1; i < row_width; i++)
2080 { 2681 {
2081 *(--dp) = lo_filler; 2682 *(--dp) = lo_filler;
2082 *(--dp) = *(--sp); 2683 *(--dp) = *(--sp);
2083 } 2684 }
2084 *(--dp) = lo_filler; 2685 *(--dp) = lo_filler;
2085 row_info->channels = 2; 2686 row_info->channels = 2;
2086 row_info->pixel_depth = 16; 2687 row_info->pixel_depth = 16;
2087 row_info->rowbytes = row_width * 2; 2688 row_info->rowbytes = row_width * 2;
2088 } 2689 }
2089 /* This changes the data from G to XG */ 2690
2090 else 2691 else
2091 { 2692 {
2693 /* This changes the data from G to XG */
2092 png_bytep sp = row + (png_size_t)row_width; 2694 png_bytep sp = row + (png_size_t)row_width;
2093 png_bytep dp = sp + (png_size_t)row_width; 2695 png_bytep dp = sp + (png_size_t)row_width;
2094 for (i = 0; i < row_width; i++) 2696 for (i = 0; i < row_width; i++)
2095 { 2697 {
2096 *(--dp) = *(--sp); 2698 *(--dp) = *(--sp);
2097 *(--dp) = lo_filler; 2699 *(--dp) = lo_filler;
2098 } 2700 }
2099 row_info->channels = 2; 2701 row_info->channels = 2;
2100 row_info->pixel_depth = 16; 2702 row_info->pixel_depth = 16;
2101 row_info->rowbytes = row_width * 2; 2703 row_info->rowbytes = row_width * 2;
2102 } 2704 }
2103 } 2705 }
2706
2707 #ifdef PNG_READ_16BIT_SUPPORTED
2104 else if (row_info->bit_depth == 16) 2708 else if (row_info->bit_depth == 16)
2105 { 2709 {
2106 /* This changes the data from GG to GGXX */ 2710 if ((flags & PNG_FLAG_FILLER_AFTER) != 0)
2107 if (flags & PNG_FLAG_FILLER_AFTER)
2108 { 2711 {
2712 /* This changes the data from GG to GGXX */
2109 png_bytep sp = row + (png_size_t)row_width * 2; 2713 png_bytep sp = row + (png_size_t)row_width * 2;
2110 png_bytep dp = sp + (png_size_t)row_width * 2; 2714 png_bytep dp = sp + (png_size_t)row_width * 2;
2111 for (i = 1; i < row_width; i++) 2715 for (i = 1; i < row_width; i++)
2112 { 2716 {
2717 *(--dp) = lo_filler;
2113 *(--dp) = hi_filler; 2718 *(--dp) = hi_filler;
2114 *(--dp) = lo_filler;
2115 *(--dp) = *(--sp); 2719 *(--dp) = *(--sp);
2116 *(--dp) = *(--sp); 2720 *(--dp) = *(--sp);
2117 } 2721 }
2722 *(--dp) = lo_filler;
2118 *(--dp) = hi_filler; 2723 *(--dp) = hi_filler;
2119 *(--dp) = lo_filler;
2120 row_info->channels = 2; 2724 row_info->channels = 2;
2121 row_info->pixel_depth = 32; 2725 row_info->pixel_depth = 32;
2122 row_info->rowbytes = row_width * 4; 2726 row_info->rowbytes = row_width * 4;
2123 } 2727 }
2124 /* This changes the data from GG to XXGG */ 2728
2125 else 2729 else
2126 { 2730 {
2731 /* This changes the data from GG to XXGG */
2127 png_bytep sp = row + (png_size_t)row_width * 2; 2732 png_bytep sp = row + (png_size_t)row_width * 2;
2128 png_bytep dp = sp + (png_size_t)row_width * 2; 2733 png_bytep dp = sp + (png_size_t)row_width * 2;
2129 for (i = 0; i < row_width; i++) 2734 for (i = 0; i < row_width; i++)
2130 { 2735 {
2131 *(--dp) = *(--sp); 2736 *(--dp) = *(--sp);
2132 *(--dp) = *(--sp); 2737 *(--dp) = *(--sp);
2738 *(--dp) = lo_filler;
2133 *(--dp) = hi_filler; 2739 *(--dp) = hi_filler;
2134 *(--dp) = lo_filler;
2135 } 2740 }
2136 row_info->channels = 2; 2741 row_info->channels = 2;
2137 row_info->pixel_depth = 32; 2742 row_info->pixel_depth = 32;
2138 row_info->rowbytes = row_width * 4; 2743 row_info->rowbytes = row_width * 4;
2139 } 2744 }
2140 } 2745 }
2746 #endif
2141 } /* COLOR_TYPE == GRAY */ 2747 } /* COLOR_TYPE == GRAY */
2142 else if (row_info->color_type == PNG_COLOR_TYPE_RGB) 2748 else if (row_info->color_type == PNG_COLOR_TYPE_RGB)
2143 { 2749 {
2144 if (row_info->bit_depth == 8) 2750 if (row_info->bit_depth == 8)
2145 { 2751 {
2146 /* This changes the data from RGB to RGBX */ 2752 if ((flags & PNG_FLAG_FILLER_AFTER) != 0)
2147 if (flags & PNG_FLAG_FILLER_AFTER)
2148 { 2753 {
2754 /* This changes the data from RGB to RGBX */
2149 png_bytep sp = row + (png_size_t)row_width * 3; 2755 png_bytep sp = row + (png_size_t)row_width * 3;
2150 png_bytep dp = sp + (png_size_t)row_width; 2756 png_bytep dp = sp + (png_size_t)row_width;
2151 for (i = 1; i < row_width; i++) 2757 for (i = 1; i < row_width; i++)
2152 { 2758 {
2153 *(--dp) = lo_filler; 2759 *(--dp) = lo_filler;
2154 *(--dp) = *(--sp); 2760 *(--dp) = *(--sp);
2155 *(--dp) = *(--sp); 2761 *(--dp) = *(--sp);
2156 *(--dp) = *(--sp); 2762 *(--dp) = *(--sp);
2157 } 2763 }
2158 *(--dp) = lo_filler; 2764 *(--dp) = lo_filler;
2159 row_info->channels = 4; 2765 row_info->channels = 4;
2160 row_info->pixel_depth = 32; 2766 row_info->pixel_depth = 32;
2161 row_info->rowbytes = row_width * 4; 2767 row_info->rowbytes = row_width * 4;
2162 } 2768 }
2163 /* This changes the data from RGB to XRGB */ 2769
2164 else 2770 else
2165 { 2771 {
2772 /* This changes the data from RGB to XRGB */
2166 png_bytep sp = row + (png_size_t)row_width * 3; 2773 png_bytep sp = row + (png_size_t)row_width * 3;
2167 png_bytep dp = sp + (png_size_t)row_width; 2774 png_bytep dp = sp + (png_size_t)row_width;
2168 for (i = 0; i < row_width; i++) 2775 for (i = 0; i < row_width; i++)
2169 { 2776 {
2170 *(--dp) = *(--sp); 2777 *(--dp) = *(--sp);
2171 *(--dp) = *(--sp); 2778 *(--dp) = *(--sp);
2172 *(--dp) = *(--sp); 2779 *(--dp) = *(--sp);
2173 *(--dp) = lo_filler; 2780 *(--dp) = lo_filler;
2174 } 2781 }
2175 row_info->channels = 4; 2782 row_info->channels = 4;
2176 row_info->pixel_depth = 32; 2783 row_info->pixel_depth = 32;
2177 row_info->rowbytes = row_width * 4; 2784 row_info->rowbytes = row_width * 4;
2178 } 2785 }
2179 } 2786 }
2787
2788 #ifdef PNG_READ_16BIT_SUPPORTED
2180 else if (row_info->bit_depth == 16) 2789 else if (row_info->bit_depth == 16)
2181 { 2790 {
2182 /* This changes the data from RRGGBB to RRGGBBXX */ 2791 if ((flags & PNG_FLAG_FILLER_AFTER) != 0)
2183 if (flags & PNG_FLAG_FILLER_AFTER)
2184 { 2792 {
2793 /* This changes the data from RRGGBB to RRGGBBXX */
2185 png_bytep sp = row + (png_size_t)row_width * 6; 2794 png_bytep sp = row + (png_size_t)row_width * 6;
2186 png_bytep dp = sp + (png_size_t)row_width * 2; 2795 png_bytep dp = sp + (png_size_t)row_width * 2;
2187 for (i = 1; i < row_width; i++) 2796 for (i = 1; i < row_width; i++)
2188 { 2797 {
2798 *(--dp) = lo_filler;
2189 *(--dp) = hi_filler; 2799 *(--dp) = hi_filler;
2190 *(--dp) = lo_filler;
2191 *(--dp) = *(--sp); 2800 *(--dp) = *(--sp);
2192 *(--dp) = *(--sp); 2801 *(--dp) = *(--sp);
2193 *(--dp) = *(--sp); 2802 *(--dp) = *(--sp);
2194 *(--dp) = *(--sp); 2803 *(--dp) = *(--sp);
2195 *(--dp) = *(--sp); 2804 *(--dp) = *(--sp);
2196 *(--dp) = *(--sp); 2805 *(--dp) = *(--sp);
2197 } 2806 }
2807 *(--dp) = lo_filler;
2198 *(--dp) = hi_filler; 2808 *(--dp) = hi_filler;
2199 *(--dp) = lo_filler;
2200 row_info->channels = 4; 2809 row_info->channels = 4;
2201 row_info->pixel_depth = 64; 2810 row_info->pixel_depth = 64;
2202 row_info->rowbytes = row_width * 8; 2811 row_info->rowbytes = row_width * 8;
2203 } 2812 }
2204 /* This changes the data from RRGGBB to XXRRGGBB */ 2813
2205 else 2814 else
2206 { 2815 {
2816 /* This changes the data from RRGGBB to XXRRGGBB */
2207 png_bytep sp = row + (png_size_t)row_width * 6; 2817 png_bytep sp = row + (png_size_t)row_width * 6;
2208 png_bytep dp = sp + (png_size_t)row_width * 2; 2818 png_bytep dp = sp + (png_size_t)row_width * 2;
2209 for (i = 0; i < row_width; i++) 2819 for (i = 0; i < row_width; i++)
2210 { 2820 {
2211 *(--dp) = *(--sp); 2821 *(--dp) = *(--sp);
2212 *(--dp) = *(--sp); 2822 *(--dp) = *(--sp);
2213 *(--dp) = *(--sp); 2823 *(--dp) = *(--sp);
2214 *(--dp) = *(--sp); 2824 *(--dp) = *(--sp);
2215 *(--dp) = *(--sp); 2825 *(--dp) = *(--sp);
2216 *(--dp) = *(--sp); 2826 *(--dp) = *(--sp);
2827 *(--dp) = lo_filler;
2217 *(--dp) = hi_filler; 2828 *(--dp) = hi_filler;
2218 *(--dp) = lo_filler;
2219 } 2829 }
2830
2220 row_info->channels = 4; 2831 row_info->channels = 4;
2221 row_info->pixel_depth = 64; 2832 row_info->pixel_depth = 64;
2222 row_info->rowbytes = row_width * 8; 2833 row_info->rowbytes = row_width * 8;
2223 } 2834 }
2224 } 2835 }
2836 #endif
2225 } /* COLOR_TYPE == RGB */ 2837 } /* COLOR_TYPE == RGB */
2226 } 2838 }
2227 #endif 2839 #endif
2228 2840
2229 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED 2841 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
2230 /* Expand grayscale files to RGB, with or without alpha */ 2842 /* Expand grayscale files to RGB, with or without alpha */
2231 void /* PRIVATE */ 2843 static void
2232 png_do_gray_to_rgb(png_row_infop row_info, png_bytep row) 2844 png_do_gray_to_rgb(png_row_infop row_info, png_bytep row)
2233 { 2845 {
2234 png_uint_32 i; 2846 png_uint_32 i;
2235 png_uint_32 row_width = row_info->width; 2847 png_uint_32 row_width = row_info->width;
2236 2848
2237 png_debug(1, "in png_do_gray_to_rgb"); 2849 png_debug(1, "in png_do_gray_to_rgb");
2238 2850
2239 if (row_info->bit_depth >= 8 && 2851 if (row_info->bit_depth >= 8 &&
2240 #ifdef PNG_USELESS_TESTS_SUPPORTED 2852 (row_info->color_type & PNG_COLOR_MASK_COLOR) == 0)
2241 row != NULL && row_info != NULL &&
2242 #endif
2243 !(row_info->color_type & PNG_COLOR_MASK_COLOR))
2244 { 2853 {
2245 if (row_info->color_type == PNG_COLOR_TYPE_GRAY) 2854 if (row_info->color_type == PNG_COLOR_TYPE_GRAY)
2246 { 2855 {
2247 if (row_info->bit_depth == 8) 2856 if (row_info->bit_depth == 8)
2248 { 2857 {
2858 /* This changes G to RGB */
2249 png_bytep sp = row + (png_size_t)row_width - 1; 2859 png_bytep sp = row + (png_size_t)row_width - 1;
2250 png_bytep dp = sp + (png_size_t)row_width * 2; 2860 png_bytep dp = sp + (png_size_t)row_width * 2;
2251 for (i = 0; i < row_width; i++) 2861 for (i = 0; i < row_width; i++)
2252 { 2862 {
2253 *(dp--) = *sp; 2863 *(dp--) = *sp;
2254 *(dp--) = *sp; 2864 *(dp--) = *sp;
2255 *(dp--) = *(sp--); 2865 *(dp--) = *(sp--);
2256 } 2866 }
2257 } 2867 }
2868
2258 else 2869 else
2259 { 2870 {
2871 /* This changes GG to RRGGBB */
2260 png_bytep sp = row + (png_size_t)row_width * 2 - 1; 2872 png_bytep sp = row + (png_size_t)row_width * 2 - 1;
2261 png_bytep dp = sp + (png_size_t)row_width * 4; 2873 png_bytep dp = sp + (png_size_t)row_width * 4;
2262 for (i = 0; i < row_width; i++) 2874 for (i = 0; i < row_width; i++)
2263 { 2875 {
2264 *(dp--) = *sp; 2876 *(dp--) = *sp;
2265 *(dp--) = *(sp - 1); 2877 *(dp--) = *(sp - 1);
2266 *(dp--) = *sp; 2878 *(dp--) = *sp;
2267 *(dp--) = *(sp - 1); 2879 *(dp--) = *(sp - 1);
2268 *(dp--) = *(sp--); 2880 *(dp--) = *(sp--);
2269 *(dp--) = *(sp--); 2881 *(dp--) = *(sp--);
2270 } 2882 }
2271 } 2883 }
2272 } 2884 }
2885
2273 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA) 2886 else if (row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA)
2274 { 2887 {
2275 if (row_info->bit_depth == 8) 2888 if (row_info->bit_depth == 8)
2276 { 2889 {
2890 /* This changes GA to RGBA */
2277 png_bytep sp = row + (png_size_t)row_width * 2 - 1; 2891 png_bytep sp = row + (png_size_t)row_width * 2 - 1;
2278 png_bytep dp = sp + (png_size_t)row_width * 2; 2892 png_bytep dp = sp + (png_size_t)row_width * 2;
2279 for (i = 0; i < row_width; i++) 2893 for (i = 0; i < row_width; i++)
2280 { 2894 {
2281 *(dp--) = *(sp--); 2895 *(dp--) = *(sp--);
2282 *(dp--) = *sp; 2896 *(dp--) = *sp;
2283 *(dp--) = *sp; 2897 *(dp--) = *sp;
2284 *(dp--) = *(sp--); 2898 *(dp--) = *(sp--);
2285 } 2899 }
2286 } 2900 }
2901
2287 else 2902 else
2288 { 2903 {
2904 /* This changes GGAA to RRGGBBAA */
2289 png_bytep sp = row + (png_size_t)row_width * 4 - 1; 2905 png_bytep sp = row + (png_size_t)row_width * 4 - 1;
2290 png_bytep dp = sp + (png_size_t)row_width * 4; 2906 png_bytep dp = sp + (png_size_t)row_width * 4;
2291 for (i = 0; i < row_width; i++) 2907 for (i = 0; i < row_width; i++)
2292 { 2908 {
2293 *(dp--) = *(sp--); 2909 *(dp--) = *(sp--);
2294 *(dp--) = *(sp--); 2910 *(dp--) = *(sp--);
2295 *(dp--) = *sp; 2911 *(dp--) = *sp;
2296 *(dp--) = *(sp - 1); 2912 *(dp--) = *(sp - 1);
2297 *(dp--) = *sp; 2913 *(dp--) = *sp;
2298 *(dp--) = *(sp - 1); 2914 *(dp--) = *(sp - 1);
2299 *(dp--) = *(sp--); 2915 *(dp--) = *(sp--);
2300 *(dp--) = *(sp--); 2916 *(dp--) = *(sp--);
2301 } 2917 }
2302 } 2918 }
2303 } 2919 }
2304 row_info->channels += (png_byte)2; 2920 row_info->channels = (png_byte)(row_info->channels + 2);
2305 row_info->color_type |= PNG_COLOR_MASK_COLOR; 2921 row_info->color_type |= PNG_COLOR_MASK_COLOR;
2306 row_info->pixel_depth = (png_byte)(row_info->channels * 2922 row_info->pixel_depth = (png_byte)(row_info->channels *
2307 row_info->bit_depth); 2923 row_info->bit_depth);
2308 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width); 2924 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
2309 } 2925 }
2310 } 2926 }
2311 #endif 2927 #endif
2312 2928
2313 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED 2929 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
2314 /* Reduce RGB files to grayscale, with or without alpha 2930 /* Reduce RGB files to grayscale, with or without alpha
2315 * using the equation given in Poynton's ColorFAQ at 2931 * using the equation given in Poynton's ColorFAQ of 1998-01-04 at
2316 * <http://www.inforamp.net/~poynton/> (THIS LINK IS DEAD June 2008) 2932 * <http://www.inforamp.net/~poynton/> (THIS LINK IS DEAD June 2008 but
2317 * New link: 2933 * versions dated 1998 through November 2002 have been archived at
2934 * http://web.archive.org/web/20000816232553/http://www.inforamp.net/
2935 * ~poynton/notes/colour_and_gamma/ColorFAQ.txt )
2936 * Charles Poynton poynton at poynton.com
2937 *
2938 * Y = 0.212671 * R + 0.715160 * G + 0.072169 * B
2939 *
2940 * which can be expressed with integers as
2941 *
2942 * Y = (6969 * R + 23434 * G + 2365 * B)/32768
2943 *
2944 * Poynton's current link (as of January 2003 through July 2011):
2318 * <http://www.poynton.com/notes/colour_and_gamma/> 2945 * <http://www.poynton.com/notes/colour_and_gamma/>
2319 * Charles Poynton poynton at poynton.com 2946 * has changed the numbers slightly:
2320 * 2947 *
2321 * Y = 0.212671 * R + 0.715160 * G + 0.072169 * B 2948 * Y = 0.2126*R + 0.7152*G + 0.0722*B
2322 *
2323 * We approximate this with
2324 *
2325 * Y = 0.21268 * R + 0.7151 * G + 0.07217 * B
2326 * 2949 *
2327 * which can be expressed with integers as 2950 * which can be expressed with integers as
2328 * 2951 *
2329 * Y = (6969 * R + 23434 * G + 2365 * B)/32768 2952 * Y = (6966 * R + 23436 * G + 2366 * B)/32768
2330 * 2953 *
2331 * The calculation is to be done in a linear colorspace. 2954 * Historically, however, libpng uses numbers derived from the ITU-R Rec 709
2332 * 2955 * end point chromaticities and the D65 white point. Depending on the
2333 * Other integer coefficents can be used via png_set_rgb_to_gray(). 2956 * precision used for the D65 white point this produces a variety of different
2957 * numbers, however if the four decimal place value used in ITU-R Rec 709 is
2958 * used (0.3127,0.3290) the Y calculation would be:
2959 *
2960 * Y = (6968 * R + 23435 * G + 2366 * B)/32768
2961 *
2962 * While this is correct the rounding results in an overflow for white, because
2963 * the sum of the rounded coefficients is 32769, not 32768. Consequently
2964 * libpng uses, instead, the closest non-overflowing approximation:
2965 *
2966 * Y = (6968 * R + 23434 * G + 2366 * B)/32768
2967 *
2968 * Starting with libpng-1.5.5, if the image being converted has a cHRM chunk
2969 * (including an sRGB chunk) then the chromaticities are used to calculate the
2970 * coefficients. See the chunk handling in pngrutil.c for more information.
2971 *
2972 * In all cases the calculation is to be done in a linear colorspace. If no
2973 * gamma information is available to correct the encoding of the original RGB
2974 * values this results in an implicit assumption that the original PNG RGB
2975 * values were linear.
2976 *
2977 * Other integer coefficents can be used via png_set_rgb_to_gray(). Because
2978 * the API takes just red and green coefficients the blue coefficient is
2979 * calculated to make the sum 32768. This will result in different rounding
2980 * to that used above.
2334 */ 2981 */
2335 int /* PRIVATE */ 2982 static int
2336 png_do_rgb_to_gray(png_structp png_ptr, png_row_infop row_info, png_bytep row) 2983 png_do_rgb_to_gray(png_structrp png_ptr, png_row_infop row_info, png_bytep row)
2337 2984
2338 { 2985 {
2339 png_uint_32 i;
2340
2341 png_uint_32 row_width = row_info->width;
2342 int rgb_error = 0; 2986 int rgb_error = 0;
2343 2987
2344 png_debug(1, "in png_do_rgb_to_gray"); 2988 png_debug(1, "in png_do_rgb_to_gray");
2345 2989
2346 if ( 2990 if ((row_info->color_type & PNG_COLOR_MASK_PALETTE) == 0 &&
2347 #ifdef PNG_USELESS_TESTS_SUPPORTED 2991 (row_info->color_type & PNG_COLOR_MASK_COLOR) != 0)
2348 row != NULL && row_info != NULL &&
2349 #endif
2350 (row_info->color_type & PNG_COLOR_MASK_COLOR))
2351 { 2992 {
2352 png_uint_32 rc = png_ptr->rgb_to_gray_red_coeff; 2993 PNG_CONST png_uint_32 rc = png_ptr->rgb_to_gray_red_coeff;
2353 png_uint_32 gc = png_ptr->rgb_to_gray_green_coeff; 2994 PNG_CONST png_uint_32 gc = png_ptr->rgb_to_gray_green_coeff;
2354 png_uint_32 bc = png_ptr->rgb_to_gray_blue_coeff; 2995 PNG_CONST png_uint_32 bc = 32768 - rc - gc;
2355 2996 PNG_CONST png_uint_32 row_width = row_info->width;
2356 if (row_info->color_type == PNG_COLOR_TYPE_RGB) 2997 PNG_CONST int have_alpha =
2998 (row_info->color_type & PNG_COLOR_MASK_ALPHA) != 0;
2999
3000 if (row_info->bit_depth == 8)
2357 { 3001 {
2358 if (row_info->bit_depth == 8) 3002 #ifdef PNG_READ_GAMMA_SUPPORTED
2359 { 3003 /* Notice that gamma to/from 1 are not necessarily inverses (if
2360 #if defined(PNG_READ_GAMMA_SUPPORTED) || defined(PNG_READ_BACKGROUND_SUPPORTED) 3004 * there is an overall gamma correction). Prior to 1.5.5 this code
2361 if (png_ptr->gamma_from_1 != NULL && png_ptr->gamma_to_1 != NULL) 3005 * checked the linearized values for equality; this doesn't match
2362 { 3006 * the documentation, the original values must be checked.
2363 png_bytep sp = row; 3007 */
2364 png_bytep dp = row; 3008 if (png_ptr->gamma_from_1 != NULL && png_ptr->gamma_to_1 != NULL)
2365 3009 {
2366 for (i = 0; i < row_width; i++) 3010 png_bytep sp = row;
2367 { 3011 png_bytep dp = row;
2368 png_byte red = png_ptr->gamma_to_1[*(sp++)]; 3012 png_uint_32 i;
2369 png_byte green = png_ptr->gamma_to_1[*(sp++)]; 3013
2370 png_byte blue = png_ptr->gamma_to_1[*(sp++)]; 3014 for (i = 0; i < row_width; i++)
2371 if (red != green || red != blue) 3015 {
2372 { 3016 png_byte red = *(sp++);
2373 rgb_error |= 1; 3017 png_byte green = *(sp++);
2374 *(dp++) = png_ptr->gamma_from_1[ 3018 png_byte blue = *(sp++);
2375 (rc*red + gc*green + bc*blue)>>15]; 3019
2376 } 3020 if (red != green || red != blue)
3021 {
3022 red = png_ptr->gamma_to_1[red];
3023 green = png_ptr->gamma_to_1[green];
3024 blue = png_ptr->gamma_to_1[blue];
3025
3026 rgb_error |= 1;
3027 *(dp++) = png_ptr->gamma_from_1[
3028 (rc*red + gc*green + bc*blue + 16384)>>15];
3029 }
3030
3031 else
3032 {
3033 /* If there is no overall correction the table will not be
3034 * set.
3035 */
3036 if (png_ptr->gamma_table != NULL)
3037 red = png_ptr->gamma_table[red];
3038
3039 *(dp++) = red;
3040 }
3041
3042 if (have_alpha != 0)
3043 *(dp++) = *(sp++);
3044 }
3045 }
3046 else
3047 #endif
3048 {
3049 png_bytep sp = row;
3050 png_bytep dp = row;
3051 png_uint_32 i;
3052
3053 for (i = 0; i < row_width; i++)
3054 {
3055 png_byte red = *(sp++);
3056 png_byte green = *(sp++);
3057 png_byte blue = *(sp++);
3058
3059 if (red != green || red != blue)
3060 {
3061 rgb_error |= 1;
3062 /* NOTE: this is the historical approach which simply
3063 * truncates the results.
3064 */
3065 *(dp++) = (png_byte)((rc*red + gc*green + bc*blue)>>15);
3066 }
3067
3068 else
3069 *(dp++) = red;
3070
3071 if (have_alpha != 0)
3072 *(dp++) = *(sp++);
3073 }
3074 }
3075 }
3076
3077 else /* RGB bit_depth == 16 */
3078 {
3079 #ifdef PNG_READ_GAMMA_SUPPORTED
3080 if (png_ptr->gamma_16_to_1 != NULL && png_ptr->gamma_16_from_1 != NULL)
3081 {
3082 png_bytep sp = row;
3083 png_bytep dp = row;
3084 png_uint_32 i;
3085
3086 for (i = 0; i < row_width; i++)
3087 {
3088 png_uint_16 red, green, blue, w;
3089 png_byte hi,lo;
3090
3091 hi=*(sp)++; lo=*(sp)++; red = (png_uint_16)((hi << 8) | (lo));
3092 hi=*(sp)++; lo=*(sp)++; green = (png_uint_16)((hi << 8) | (lo));
3093 hi=*(sp)++; lo=*(sp)++; blue = (png_uint_16)((hi << 8) | (lo));
3094
3095 if (red == green && red == blue)
3096 {
3097 if (png_ptr->gamma_16_table != NULL)
3098 w = png_ptr->gamma_16_table[(red & 0xff)
3099 >> png_ptr->gamma_shift][red >> 8];
3100
2377 else 3101 else
2378 *(dp++) = *(sp - 1);
2379 }
2380 }
2381 else
2382 #endif
2383 {
2384 png_bytep sp = row;
2385 png_bytep dp = row;
2386 for (i = 0; i < row_width; i++)
2387 {
2388 png_byte red = *(sp++);
2389 png_byte green = *(sp++);
2390 png_byte blue = *(sp++);
2391 if (red != green || red != blue)
2392 {
2393 rgb_error |= 1;
2394 *(dp++) = (png_byte)((rc*red + gc*green + bc*blue)>>15);
2395 }
2396 else
2397 *(dp++) = *(sp - 1);
2398 }
2399 }
2400 }
2401
2402 else /* RGB bit_depth == 16 */
2403 {
2404 #if defined(PNG_READ_GAMMA_SUPPORTED) || defined(PNG_READ_BACKGROUND_SUPPORTED)
2405 if (png_ptr->gamma_16_to_1 != NULL &&
2406 png_ptr->gamma_16_from_1 != NULL)
2407 {
2408 png_bytep sp = row;
2409 png_bytep dp = row;
2410 for (i = 0; i < row_width; i++)
2411 {
2412 png_uint_16 red, green, blue, w;
2413 png_byte hi,lo;
2414
2415 hi=*(sp)++; lo=*(sp)++;
2416 red = (png_uint_16)((hi << 8) | (lo));
2417 hi=*(sp)++; lo=*(sp)++;
2418 green = (png_uint_16)((hi << 8) | (lo));
2419 hi=*(sp)++; lo=*(sp)++;
2420 blue = (png_uint_16)((hi << 8) | (lo));
2421
2422 if (red == green && red == blue)
2423 w = red; 3102 w = red;
2424 else 3103 }
2425 { 3104
2426 png_uint_16 red_1 = png_ptr->gamma_16_to_1[(red&0xff) >> 3105 else
2427 png_ptr->gamma_shift][red>>8]; 3106 {
2428 png_uint_16 green_1 = 3107 png_uint_16 red_1 = png_ptr->gamma_16_to_1[(red & 0xff)
2429 png_ptr->gamma_16_to_1[(green&0xff) >> 3108 >> png_ptr->gamma_shift][red>>8];
2430 png_ptr->gamma_shift][green>>8]; 3109 png_uint_16 green_1 =
2431 png_uint_16 blue_1 = png_ptr->gamma_16_to_1[(blue&0xff) >> 3110 png_ptr->gamma_16_to_1[(green & 0xff) >>
2432 png_ptr->gamma_shift][blue>>8]; 3111 png_ptr->gamma_shift][green>>8];
2433 png_uint_16 gray16 = (png_uint_16)((rc*red_1 + gc*green_1 3112 png_uint_16 blue_1 = png_ptr->gamma_16_to_1[(blue & 0xff)
2434 + bc*blue_1)>>15); 3113 >> png_ptr->gamma_shift][blue>>8];
2435 w = png_ptr->gamma_16_from_1[(gray16&0xff) >> 3114 png_uint_16 gray16 = (png_uint_16)((rc*red_1 + gc*green_1
2436 png_ptr->gamma_shift][gray16 >> 8]; 3115 + bc*blue_1 + 16384)>>15);
2437 rgb_error |= 1; 3116 w = png_ptr->gamma_16_from_1[(gray16 & 0xff) >>
2438 } 3117 png_ptr->gamma_shift][gray16 >> 8];
2439 3118 rgb_error |= 1;
2440 *(dp++) = (png_byte)((w>>8) & 0xff); 3119 }
2441 *(dp++) = (png_byte)(w & 0xff); 3120
2442 } 3121 *(dp++) = (png_byte)((w>>8) & 0xff);
2443 } 3122 *(dp++) = (png_byte)(w & 0xff);
2444 else 3123
2445 #endif 3124 if (have_alpha != 0)
2446 { 3125 {
2447 png_bytep sp = row; 3126 *(dp++) = *(sp++);
2448 png_bytep dp = row; 3127 *(dp++) = *(sp++);
2449 for (i = 0; i < row_width; i++) 3128 }
2450 { 3129 }
2451 png_uint_16 red, green, blue, gray16; 3130 }
2452 png_byte hi,lo; 3131 else
2453 3132 #endif
2454 hi=*(sp)++; lo=*(sp)++; 3133 {
2455 red = (png_uint_16)((hi << 8) | (lo)); 3134 png_bytep sp = row;
2456 hi=*(sp)++; lo=*(sp)++; 3135 png_bytep dp = row;
2457 green = (png_uint_16)((hi << 8) | (lo)); 3136 png_uint_32 i;
2458 hi=*(sp)++; lo=*(sp)++; 3137
2459 blue = (png_uint_16)((hi << 8) | (lo)); 3138 for (i = 0; i < row_width; i++)
2460 3139 {
2461 if (red != green || red != blue) 3140 png_uint_16 red, green, blue, gray16;
2462 rgb_error |= 1; 3141 png_byte hi,lo;
2463 gray16 = (png_uint_16)((rc*red + gc*green + bc*blue)>>15); 3142
2464 *(dp++) = (png_byte)((gray16>>8) & 0xff); 3143 hi=*(sp)++; lo=*(sp)++; red = (png_uint_16)((hi << 8) | (lo));
2465 *(dp++) = (png_byte)(gray16 & 0xff); 3144 hi=*(sp)++; lo=*(sp)++; green = (png_uint_16)((hi << 8) | (lo));
3145 hi=*(sp)++; lo=*(sp)++; blue = (png_uint_16)((hi << 8) | (lo));
3146
3147 if (red != green || red != blue)
3148 rgb_error |= 1;
3149
3150 /* From 1.5.5 in the 16-bit case do the accurate conversion even
3151 * in the 'fast' case - this is because this is where the code
3152 * ends up when handling linear 16-bit data.
3153 */
3154 gray16 = (png_uint_16)((rc*red + gc*green + bc*blue + 16384) >>
3155 15);
3156 *(dp++) = (png_byte)((gray16 >> 8) & 0xff);
3157 *(dp++) = (png_byte)(gray16 & 0xff);
3158
3159 if (have_alpha != 0)
3160 {
3161 *(dp++) = *(sp++);
3162 *(dp++) = *(sp++);
2466 } 3163 }
2467 } 3164 }
2468 } 3165 }
2469 } 3166 }
2470 if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA) 3167
2471 { 3168 row_info->channels = (png_byte)(row_info->channels - 2);
2472 if (row_info->bit_depth == 8) 3169 row_info->color_type = (png_byte)(row_info->color_type &
2473 { 3170 ~PNG_COLOR_MASK_COLOR);
2474 #if defined(PNG_READ_GAMMA_SUPPORTED) || defined(PNG_READ_BACKGROUND_SUPPORTED)
2475 if (png_ptr->gamma_from_1 != NULL && png_ptr->gamma_to_1 != NULL)
2476 {
2477 png_bytep sp = row;
2478 png_bytep dp = row;
2479 for (i = 0; i < row_width; i++)
2480 {
2481 png_byte red = png_ptr->gamma_to_1[*(sp++)];
2482 png_byte green = png_ptr->gamma_to_1[*(sp++)];
2483 png_byte blue = png_ptr->gamma_to_1[*(sp++)];
2484 if (red != green || red != blue)
2485 rgb_error |= 1;
2486 *(dp++) = png_ptr->gamma_from_1
2487 [(rc*red + gc*green + bc*blue)>>15];
2488 *(dp++) = *(sp++); /* alpha */
2489 }
2490 }
2491 else
2492 #endif
2493 {
2494 png_bytep sp = row;
2495 png_bytep dp = row;
2496 for (i = 0; i < row_width; i++)
2497 {
2498 png_byte red = *(sp++);
2499 png_byte green = *(sp++);
2500 png_byte blue = *(sp++);
2501 if (red != green || red != blue)
2502 rgb_error |= 1;
2503 *(dp++) = (png_byte)((rc*red + gc*green + bc*blue)>>15);
2504 *(dp++) = *(sp++); /* alpha */
2505 }
2506 }
2507 }
2508 else /* RGBA bit_depth == 16 */
2509 {
2510 #if defined(PNG_READ_GAMMA_SUPPORTED) || defined(PNG_READ_BACKGROUND_SUPPORTED)
2511 if (png_ptr->gamma_16_to_1 != NULL &&
2512 png_ptr->gamma_16_from_1 != NULL)
2513 {
2514 png_bytep sp = row;
2515 png_bytep dp = row;
2516 for (i = 0; i < row_width; i++)
2517 {
2518 png_uint_16 red, green, blue, w;
2519 png_byte hi,lo;
2520
2521 hi=*(sp)++; lo=*(sp)++;
2522 red = (png_uint_16)((hi << 8) | (lo));
2523 hi=*(sp)++; lo=*(sp)++;
2524 green = (png_uint_16)((hi << 8) | (lo));
2525 hi=*(sp)++; lo=*(sp)++;
2526 blue = (png_uint_16)((hi << 8) | (lo));
2527
2528 if (red == green && red == blue)
2529 w = red;
2530 else
2531 {
2532 png_uint_16 red_1 = png_ptr->gamma_16_to_1[(red&0xff) >>
2533 png_ptr->gamma_shift][red>>8];
2534 png_uint_16 green_1 =
2535 png_ptr->gamma_16_to_1[(green&0xff) >>
2536 png_ptr->gamma_shift][green>>8];
2537 png_uint_16 blue_1 = png_ptr->gamma_16_to_1[(blue&0xff) >>
2538 png_ptr->gamma_shift][blue>>8];
2539 png_uint_16 gray16 = (png_uint_16)((rc * red_1
2540 + gc * green_1 + bc * blue_1)>>15);
2541 w = png_ptr->gamma_16_from_1[(gray16&0xff) >>
2542 png_ptr->gamma_shift][gray16 >> 8];
2543 rgb_error |= 1;
2544 }
2545
2546 *(dp++) = (png_byte)((w>>8) & 0xff);
2547 *(dp++) = (png_byte)(w & 0xff);
2548 *(dp++) = *(sp++); /* alpha */
2549 *(dp++) = *(sp++);
2550 }
2551 }
2552 else
2553 #endif
2554 {
2555 png_bytep sp = row;
2556 png_bytep dp = row;
2557 for (i = 0; i < row_width; i++)
2558 {
2559 png_uint_16 red, green, blue, gray16;
2560 red = (png_uint_16)((*(sp)<<8) | *(sp+1)); sp+=2;
2561 green = (png_uint_16)((*(sp)<<8) | *(sp+1)); sp+=2;
2562 blue = (png_uint_16)((*(sp)<<8) | *(sp+1)); sp+=2;
2563 if (red != green || red != blue)
2564 rgb_error |= 1;
2565 gray16 = (png_uint_16)((rc*red + gc*green + bc*blue)>>15);
2566 *(dp++) = (png_byte)((gray16>>8) & 0xff);
2567 *(dp++) = (png_byte)(gray16 & 0xff);
2568 *(dp++) = *(sp++); /* alpha */
2569 *(dp++) = *(sp++);
2570 }
2571 }
2572 }
2573 }
2574 row_info->channels -= (png_byte)2;
2575 row_info->color_type &= ~PNG_COLOR_MASK_COLOR;
2576 row_info->pixel_depth = (png_byte)(row_info->channels * 3171 row_info->pixel_depth = (png_byte)(row_info->channels *
2577 row_info->bit_depth); 3172 row_info->bit_depth);
2578 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width); 3173 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
2579 } 3174 }
2580 return rgb_error; 3175 return rgb_error;
2581 } 3176 }
2582 #endif 3177 #endif
2583 3178
2584 /* Build a grayscale palette. Palette is assumed to be 1 << bit_depth 3179 #if defined(PNG_READ_BACKGROUND_SUPPORTED) ||\
2585 * large of png_color. This lets grayscale images be treated as 3180 defined(PNG_READ_ALPHA_MODE_SUPPORTED)
2586 * paletted. Most useful for gamma correction and simplification
2587 * of code.
2588 */
2589 void PNGAPI
2590 png_build_grayscale_palette(int bit_depth, png_colorp palette)
2591 {
2592 int num_palette;
2593 int color_inc;
2594 int i;
2595 int v;
2596
2597 png_debug(1, "in png_do_build_grayscale_palette");
2598
2599 if (palette == NULL)
2600 return;
2601
2602 switch (bit_depth)
2603 {
2604 case 1:
2605 num_palette = 2;
2606 color_inc = 0xff;
2607 break;
2608
2609 case 2:
2610 num_palette = 4;
2611 color_inc = 0x55;
2612 break;
2613
2614 case 4:
2615 num_palette = 16;
2616 color_inc = 0x11;
2617 break;
2618
2619 case 8:
2620 num_palette = 256;
2621 color_inc = 1;
2622 break;
2623
2624 default:
2625 num_palette = 0;
2626 color_inc = 0;
2627 break;
2628 }
2629
2630 for (i = 0, v = 0; i < num_palette; i++, v += color_inc)
2631 {
2632 palette[i].red = (png_byte)v;
2633 palette[i].green = (png_byte)v;
2634 palette[i].blue = (png_byte)v;
2635 }
2636 }
2637
2638 /* This function is currently unused. Do we really need it? */
2639 #if defined(PNG_READ_DITHER_SUPPORTED) && \
2640 defined(PNG_CORRECT_PALETTE_SUPPORTED)
2641 void /* PRIVATE */
2642 png_correct_palette(png_structp png_ptr, png_colorp palette,
2643 int num_palette)
2644 {
2645 png_debug(1, "in png_correct_palette");
2646
2647 #if defined(PNG_READ_BACKGROUND_SUPPORTED) && \
2648 defined(PNG_READ_GAMMA_SUPPORTED) && \
2649 defined(PNG_FLOATING_POINT_SUPPORTED)
2650 if (png_ptr->transformations & (PNG_GAMMA | PNG_BACKGROUND))
2651 {
2652 png_color back, back_1;
2653
2654 if (png_ptr->background_gamma_type == PNG_BACKGROUND_GAMMA_FILE)
2655 {
2656 back.red = png_ptr->gamma_table[png_ptr->background.red];
2657 back.green = png_ptr->gamma_table[png_ptr->background.green];
2658 back.blue = png_ptr->gamma_table[png_ptr->background.blue];
2659
2660 back_1.red = png_ptr->gamma_to_1[png_ptr->background.red];
2661 back_1.green = png_ptr->gamma_to_1[png_ptr->background.green];
2662 back_1.blue = png_ptr->gamma_to_1[png_ptr->background.blue];
2663 }
2664 else
2665 {
2666 double g;
2667
2668 g = 1.0 / (png_ptr->background_gamma * png_ptr->screen_gamma);
2669
2670 if (png_ptr->background_gamma_type == PNG_BACKGROUND_GAMMA_SCREEN
2671 || fabs(g - 1.0) < PNG_GAMMA_THRESHOLD)
2672 {
2673 back.red = png_ptr->background.red;
2674 back.green = png_ptr->background.green;
2675 back.blue = png_ptr->background.blue;
2676 }
2677 else
2678 {
2679 back.red =
2680 (png_byte)(pow((double)png_ptr->background.red/255, g) *
2681 255.0 + 0.5);
2682 back.green =
2683 (png_byte)(pow((double)png_ptr->background.green/255, g) *
2684 255.0 + 0.5);
2685 back.blue =
2686 (png_byte)(pow((double)png_ptr->background.blue/255, g) *
2687 255.0 + 0.5);
2688 }
2689
2690 g = 1.0 / png_ptr->background_gamma;
2691
2692 back_1.red =
2693 (png_byte)(pow((double)png_ptr->background.red/255, g) *
2694 255.0 + 0.5);
2695 back_1.green =
2696 (png_byte)(pow((double)png_ptr->background.green/255, g) *
2697 255.0 + 0.5);
2698 back_1.blue =
2699 (png_byte)(pow((double)png_ptr->background.blue/255, g) *
2700 255.0 + 0.5);
2701 }
2702
2703 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
2704 {
2705 png_uint_32 i;
2706
2707 for (i = 0; i < (png_uint_32)num_palette; i++)
2708 {
2709 if (i < png_ptr->num_trans && png_ptr->trans[i] == 0)
2710 {
2711 palette[i] = back;
2712 }
2713 else if (i < png_ptr->num_trans && png_ptr->trans[i] != 0xff)
2714 {
2715 png_byte v, w;
2716
2717 v = png_ptr->gamma_to_1[png_ptr->palette[i].red];
2718 png_composite(w, v, png_ptr->trans[i], back_1.red);
2719 palette[i].red = png_ptr->gamma_from_1[w];
2720
2721 v = png_ptr->gamma_to_1[png_ptr->palette[i].green];
2722 png_composite(w, v, png_ptr->trans[i], back_1.green);
2723 palette[i].green = png_ptr->gamma_from_1[w];
2724
2725 v = png_ptr->gamma_to_1[png_ptr->palette[i].blue];
2726 png_composite(w, v, png_ptr->trans[i], back_1.blue);
2727 palette[i].blue = png_ptr->gamma_from_1[w];
2728 }
2729 else
2730 {
2731 palette[i].red = png_ptr->gamma_table[palette[i].red];
2732 palette[i].green = png_ptr->gamma_table[palette[i].green];
2733 palette[i].blue = png_ptr->gamma_table[palette[i].blue];
2734 }
2735 }
2736 }
2737 else
2738 {
2739 int i;
2740
2741 for (i = 0; i < num_palette; i++)
2742 {
2743 if (palette[i].red == (png_byte)png_ptr->trans_values.gray)
2744 {
2745 palette[i] = back;
2746 }
2747 else
2748 {
2749 palette[i].red = png_ptr->gamma_table[palette[i].red];
2750 palette[i].green = png_ptr->gamma_table[palette[i].green];
2751 palette[i].blue = png_ptr->gamma_table[palette[i].blue];
2752 }
2753 }
2754 }
2755 }
2756 else
2757 #endif
2758 #ifdef PNG_READ_GAMMA_SUPPORTED
2759 if (png_ptr->transformations & PNG_GAMMA)
2760 {
2761 int i;
2762
2763 for (i = 0; i < num_palette; i++)
2764 {
2765 palette[i].red = png_ptr->gamma_table[palette[i].red];
2766 palette[i].green = png_ptr->gamma_table[palette[i].green];
2767 palette[i].blue = png_ptr->gamma_table[palette[i].blue];
2768 }
2769 }
2770 #ifdef PNG_READ_BACKGROUND_SUPPORTED
2771 else
2772 #endif
2773 #endif
2774 #ifdef PNG_READ_BACKGROUND_SUPPORTED
2775 if (png_ptr->transformations & PNG_BACKGROUND)
2776 {
2777 if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
2778 {
2779 png_color back;
2780
2781 back.red = (png_byte)png_ptr->background.red;
2782 back.green = (png_byte)png_ptr->background.green;
2783 back.blue = (png_byte)png_ptr->background.blue;
2784
2785 for (i = 0; i < (int)png_ptr->num_trans; i++)
2786 {
2787 if (png_ptr->trans[i] == 0)
2788 {
2789 palette[i].red = back.red;
2790 palette[i].green = back.green;
2791 palette[i].blue = back.blue;
2792 }
2793 else if (png_ptr->trans[i] != 0xff)
2794 {
2795 png_composite(palette[i].red, png_ptr->palette[i].red,
2796 png_ptr->trans[i], back.red);
2797 png_composite(palette[i].green, png_ptr->palette[i].green,
2798 png_ptr->trans[i], back.green);
2799 png_composite(palette[i].blue, png_ptr->palette[i].blue,
2800 png_ptr->trans[i], back.blue);
2801 }
2802 }
2803 }
2804 else /* Assume grayscale palette (what else could it be?) */
2805 {
2806 int i;
2807
2808 for (i = 0; i < num_palette; i++)
2809 {
2810 if (i == (png_byte)png_ptr->trans_values.gray)
2811 {
2812 palette[i].red = (png_byte)png_ptr->background.red;
2813 palette[i].green = (png_byte)png_ptr->background.green;
2814 palette[i].blue = (png_byte)png_ptr->background.blue;
2815 }
2816 }
2817 }
2818 }
2819 #endif
2820 }
2821 #endif
2822
2823 #ifdef PNG_READ_BACKGROUND_SUPPORTED
2824 /* Replace any alpha or transparency with the supplied background color. 3181 /* Replace any alpha or transparency with the supplied background color.
2825 * "background" is already in the screen gamma, while "background_1" is 3182 * "background" is already in the screen gamma, while "background_1" is
2826 * at a gamma of 1.0. Paletted files have already been taken care of. 3183 * at a gamma of 1.0. Paletted files have already been taken care of.
2827 */ 3184 */
2828 void /* PRIVATE */ 3185 static void
2829 png_do_background(png_row_infop row_info, png_bytep row, 3186 png_do_compose(png_row_infop row_info, png_bytep row, png_structrp png_ptr)
2830 png_color_16p trans_values, png_color_16p background 3187 {
2831 #ifdef PNG_READ_GAMMA_SUPPORTED 3188 #ifdef PNG_READ_GAMMA_SUPPORTED
2832 , png_color_16p background_1, 3189 png_const_bytep gamma_table = png_ptr->gamma_table;
2833 png_bytep gamma_table, png_bytep gamma_from_1, png_bytep gamma_to_1, 3190 png_const_bytep gamma_from_1 = png_ptr->gamma_from_1;
2834 png_uint_16pp gamma_16, png_uint_16pp gamma_16_from_1, 3191 png_const_bytep gamma_to_1 = png_ptr->gamma_to_1;
2835 png_uint_16pp gamma_16_to_1, int gamma_shift 3192 png_const_uint_16pp gamma_16 = png_ptr->gamma_16_table;
2836 #endif 3193 png_const_uint_16pp gamma_16_from_1 = png_ptr->gamma_16_from_1;
2837 ) 3194 png_const_uint_16pp gamma_16_to_1 = png_ptr->gamma_16_to_1;
2838 { 3195 int gamma_shift = png_ptr->gamma_shift;
2839 png_bytep sp, dp; 3196 int optimize = (png_ptr->flags & PNG_FLAG_OPTIMIZE_ALPHA) != 0;
3197 #endif
3198
3199 png_bytep sp;
2840 png_uint_32 i; 3200 png_uint_32 i;
2841 png_uint_32 row_width=row_info->width; 3201 png_uint_32 row_width = row_info->width;
2842 int shift; 3202 int shift;
2843 3203
2844 png_debug(1, "in png_do_background"); 3204 png_debug(1, "in png_do_compose");
2845 3205
2846 if (background != NULL &&
2847 #ifdef PNG_USELESS_TESTS_SUPPORTED
2848 row != NULL && row_info != NULL &&
2849 #endif
2850 (!(row_info->color_type & PNG_COLOR_MASK_ALPHA) ||
2851 (row_info->color_type != PNG_COLOR_TYPE_PALETTE && trans_values)))
2852 { 3206 {
2853 switch (row_info->color_type) 3207 switch (row_info->color_type)
2854 { 3208 {
2855 case PNG_COLOR_TYPE_GRAY: 3209 case PNG_COLOR_TYPE_GRAY:
2856 { 3210 {
2857 switch (row_info->bit_depth) 3211 switch (row_info->bit_depth)
2858 { 3212 {
2859 case 1: 3213 case 1:
2860 { 3214 {
2861 sp = row; 3215 sp = row;
2862 shift = 7; 3216 shift = 7;
2863 for (i = 0; i < row_width; i++) 3217 for (i = 0; i < row_width; i++)
2864 { 3218 {
2865 if ((png_uint_16)((*sp >> shift) & 0x01) 3219 if ((png_uint_16)((*sp >> shift) & 0x01)
2866 == trans_values->gray) 3220 == png_ptr->trans_color.gray)
2867 { 3221 {
2868 *sp &= (png_byte)((0x7f7f >> (7 - shift)) & 0xff); 3222 unsigned int tmp = *sp & (0x7f7f >> (7 - shift));
2869 *sp |= (png_byte)(background->gray << shift); 3223 tmp |= png_ptr->background.gray << shift;
3224 *sp = (png_byte)(tmp & 0xff);
2870 } 3225 }
2871 if (!shift) 3226
3227 if (shift == 0)
2872 { 3228 {
2873 shift = 7; 3229 shift = 7;
2874 sp++; 3230 sp++;
2875 } 3231 }
3232
2876 else 3233 else
2877 shift--; 3234 shift--;
2878 } 3235 }
2879 break; 3236 break;
2880 } 3237 }
2881 3238
2882 case 2: 3239 case 2:
2883 { 3240 {
2884 #ifdef PNG_READ_GAMMA_SUPPORTED 3241 #ifdef PNG_READ_GAMMA_SUPPORTED
2885 if (gamma_table != NULL) 3242 if (gamma_table != NULL)
2886 { 3243 {
2887 sp = row; 3244 sp = row;
2888 shift = 6; 3245 shift = 6;
2889 for (i = 0; i < row_width; i++) 3246 for (i = 0; i < row_width; i++)
2890 { 3247 {
2891 if ((png_uint_16)((*sp >> shift) & 0x03) 3248 if ((png_uint_16)((*sp >> shift) & 0x03)
2892 == trans_values->gray) 3249 == png_ptr->trans_color.gray)
2893 { 3250 {
2894 *sp &= (png_byte)((0x3f3f >> (6 - shift)) & 0xff); 3251 unsigned int tmp = *sp & (0x3f3f >> (6 - shift));
2895 *sp |= (png_byte)(background->gray << shift); 3252 tmp |= png_ptr->background.gray << shift;
3253 *sp = (png_byte)(tmp & 0xff);
2896 } 3254 }
3255
2897 else 3256 else
2898 { 3257 {
2899 png_byte p = (png_byte)((*sp >> shift) & 0x03); 3258 unsigned int p = (*sp >> shift) & 0x03;
2900 png_byte g = (png_byte)((gamma_table [p | (p << 2) | 3259 unsigned int g = (gamma_table [p | (p << 2) |
2901 (p << 4) | (p << 6)] >> 6) & 0x03); 3260 (p << 4) | (p << 6)] >> 6) & 0x03;
2902 *sp &= (png_byte)((0x3f3f >> (6 - shift)) & 0xff); 3261 unsigned int tmp = *sp & (0x3f3f >> (6 - shift));
2903 *sp |= (png_byte)(g << shift); 3262 tmp |= g << shift;
3263 *sp = (png_byte)(tmp & 0xff);
2904 } 3264 }
2905 if (!shift) 3265
3266 if (shift == 0)
2906 { 3267 {
2907 shift = 6; 3268 shift = 6;
2908 sp++; 3269 sp++;
2909 } 3270 }
3271
2910 else 3272 else
2911 shift -= 2; 3273 shift -= 2;
2912 } 3274 }
2913 } 3275 }
3276
2914 else 3277 else
2915 #endif 3278 #endif
2916 { 3279 {
2917 sp = row; 3280 sp = row;
2918 shift = 6; 3281 shift = 6;
2919 for (i = 0; i < row_width; i++) 3282 for (i = 0; i < row_width; i++)
2920 { 3283 {
2921 if ((png_uint_16)((*sp >> shift) & 0x03) 3284 if ((png_uint_16)((*sp >> shift) & 0x03)
2922 == trans_values->gray) 3285 == png_ptr->trans_color.gray)
2923 { 3286 {
2924 *sp &= (png_byte)((0x3f3f >> (6 - shift)) & 0xff); 3287 unsigned int tmp = *sp & (0x3f3f >> (6 - shift));
2925 *sp |= (png_byte)(background->gray << shift); 3288 tmp |= png_ptr->background.gray << shift;
3289 *sp = (png_byte)(tmp & 0xff);
2926 } 3290 }
2927 if (!shift) 3291
3292 if (shift == 0)
2928 { 3293 {
2929 shift = 6; 3294 shift = 6;
2930 sp++; 3295 sp++;
2931 } 3296 }
3297
2932 else 3298 else
2933 shift -= 2; 3299 shift -= 2;
2934 } 3300 }
2935 } 3301 }
2936 break; 3302 break;
2937 } 3303 }
2938 3304
2939 case 4: 3305 case 4:
2940 { 3306 {
2941 #ifdef PNG_READ_GAMMA_SUPPORTED 3307 #ifdef PNG_READ_GAMMA_SUPPORTED
2942 if (gamma_table != NULL) 3308 if (gamma_table != NULL)
2943 { 3309 {
2944 sp = row; 3310 sp = row;
2945 shift = 4; 3311 shift = 4;
2946 for (i = 0; i < row_width; i++) 3312 for (i = 0; i < row_width; i++)
2947 { 3313 {
2948 if ((png_uint_16)((*sp >> shift) & 0x0f) 3314 if ((png_uint_16)((*sp >> shift) & 0x0f)
2949 == trans_values->gray) 3315 == png_ptr->trans_color.gray)
2950 { 3316 {
2951 *sp &= (png_byte)((0xf0f >> (4 - shift)) & 0xff); 3317 unsigned int tmp = *sp & (0x0f0f >> (4 - shift));
2952 *sp |= (png_byte)(background->gray << shift); 3318 tmp |= png_ptr->background.gray << shift;
3319 *sp = (png_byte)(tmp & 0xff);
2953 } 3320 }
3321
2954 else 3322 else
2955 { 3323 {
2956 png_byte p = (png_byte)((*sp >> shift) & 0x0f); 3324 unsigned int p = (*sp >> shift) & 0x0f;
2957 png_byte g = (png_byte)((gamma_table[p | 3325 unsigned int g = (gamma_table[p | (p << 4)] >> 4) &
2958 (p << 4)] >> 4) & 0x0f); 3326 0x0f;
2959 *sp &= (png_byte)((0xf0f >> (4 - shift)) & 0xff); 3327 unsigned int tmp = *sp & (0x0f0f >> (4 - shift));
2960 *sp |= (png_byte)(g << shift); 3328 tmp |= g << shift;
3329 *sp = (png_byte)(tmp & 0xff);
2961 } 3330 }
2962 if (!shift) 3331
3332 if (shift == 0)
2963 { 3333 {
2964 shift = 4; 3334 shift = 4;
2965 sp++; 3335 sp++;
2966 } 3336 }
3337
2967 else 3338 else
2968 shift -= 4; 3339 shift -= 4;
2969 } 3340 }
2970 } 3341 }
3342
2971 else 3343 else
2972 #endif 3344 #endif
2973 { 3345 {
2974 sp = row; 3346 sp = row;
2975 shift = 4; 3347 shift = 4;
2976 for (i = 0; i < row_width; i++) 3348 for (i = 0; i < row_width; i++)
2977 { 3349 {
2978 if ((png_uint_16)((*sp >> shift) & 0x0f) 3350 if ((png_uint_16)((*sp >> shift) & 0x0f)
2979 == trans_values->gray) 3351 == png_ptr->trans_color.gray)
2980 { 3352 {
2981 *sp &= (png_byte)((0xf0f >> (4 - shift)) & 0xff); 3353 unsigned int tmp = *sp & (0x0f0f >> (4 - shift));
2982 *sp |= (png_byte)(background->gray << shift); 3354 tmp |= png_ptr->background.gray << shift;
3355 *sp = (png_byte)(tmp & 0xff);
2983 } 3356 }
2984 if (!shift) 3357
3358 if (shift == 0)
2985 { 3359 {
2986 shift = 4; 3360 shift = 4;
2987 sp++; 3361 sp++;
2988 } 3362 }
3363
2989 else 3364 else
2990 shift -= 4; 3365 shift -= 4;
2991 } 3366 }
2992 } 3367 }
2993 break; 3368 break;
2994 } 3369 }
2995 3370
2996 case 8: 3371 case 8:
2997 { 3372 {
2998 #ifdef PNG_READ_GAMMA_SUPPORTED 3373 #ifdef PNG_READ_GAMMA_SUPPORTED
2999 if (gamma_table != NULL) 3374 if (gamma_table != NULL)
3000 { 3375 {
3001 sp = row; 3376 sp = row;
3002 for (i = 0; i < row_width; i++, sp++) 3377 for (i = 0; i < row_width; i++, sp++)
3003 { 3378 {
3004 if (*sp == trans_values->gray) 3379 if (*sp == png_ptr->trans_color.gray)
3005 { 3380 *sp = (png_byte)png_ptr->background.gray;
3006 *sp = (png_byte)background->gray; 3381
3007 }
3008 else 3382 else
3009 {
3010 *sp = gamma_table[*sp]; 3383 *sp = gamma_table[*sp];
3011 }
3012 } 3384 }
3013 } 3385 }
3014 else 3386 else
3015 #endif 3387 #endif
3016 { 3388 {
3017 sp = row; 3389 sp = row;
3018 for (i = 0; i < row_width; i++, sp++) 3390 for (i = 0; i < row_width; i++, sp++)
3019 { 3391 {
3020 if (*sp == trans_values->gray) 3392 if (*sp == png_ptr->trans_color.gray)
3021 { 3393 *sp = (png_byte)png_ptr->background.gray;
3022 *sp = (png_byte)background->gray;
3023 }
3024 } 3394 }
3025 } 3395 }
3026 break; 3396 break;
3027 } 3397 }
3028 3398
3029 case 16: 3399 case 16:
3030 { 3400 {
3031 #ifdef PNG_READ_GAMMA_SUPPORTED 3401 #ifdef PNG_READ_GAMMA_SUPPORTED
3032 if (gamma_16 != NULL) 3402 if (gamma_16 != NULL)
3033 { 3403 {
3034 sp = row; 3404 sp = row;
3035 for (i = 0; i < row_width; i++, sp += 2) 3405 for (i = 0; i < row_width; i++, sp += 2)
3036 { 3406 {
3037 png_uint_16 v; 3407 png_uint_16 v;
3038 3408
3039 v = (png_uint_16)(((*sp) << 8) + *(sp + 1)); 3409 v = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3040 if (v == trans_values->gray) 3410
3411 if (v == png_ptr->trans_color.gray)
3041 { 3412 {
3042 /* Background is already in screen gamma */ 3413 /* Background is already in screen gamma */
3043 *sp = (png_byte)((background->gray >> 8) & 0xff); 3414 *sp = (png_byte)((png_ptr->background.gray >> 8)
3044 *(sp + 1) = (png_byte)(background->gray & 0xff); 3415 & 0xff);
3416 *(sp + 1) = (png_byte)(png_ptr->background.gray
3417 & 0xff);
3045 } 3418 }
3419
3046 else 3420 else
3047 { 3421 {
3048 v = gamma_16[*(sp + 1) >> gamma_shift][*sp]; 3422 v = gamma_16[*(sp + 1) >> gamma_shift][*sp];
3049 *sp = (png_byte)((v >> 8) & 0xff); 3423 *sp = (png_byte)((v >> 8) & 0xff);
3050 *(sp + 1) = (png_byte)(v & 0xff); 3424 *(sp + 1) = (png_byte)(v & 0xff);
3051 } 3425 }
3052 } 3426 }
3053 } 3427 }
3054 else 3428 else
3055 #endif 3429 #endif
3056 { 3430 {
3057 sp = row; 3431 sp = row;
3058 for (i = 0; i < row_width; i++, sp += 2) 3432 for (i = 0; i < row_width; i++, sp += 2)
3059 { 3433 {
3060 png_uint_16 v; 3434 png_uint_16 v;
3061 3435
3062 v = (png_uint_16)(((*sp) << 8) + *(sp + 1)); 3436 v = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3063 if (v == trans_values->gray) 3437
3438 if (v == png_ptr->trans_color.gray)
3064 { 3439 {
3065 *sp = (png_byte)((background->gray >> 8) & 0xff); 3440 *sp = (png_byte)((png_ptr->background.gray >> 8)
3066 *(sp + 1) = (png_byte)(background->gray & 0xff); 3441 & 0xff);
3442 *(sp + 1) = (png_byte)(png_ptr->background.gray
3443 & 0xff);
3067 } 3444 }
3068 } 3445 }
3069 } 3446 }
3070 break; 3447 break;
3071 } 3448 }
3449
3450 default:
3451 break;
3072 } 3452 }
3073 break; 3453 break;
3074 } 3454 }
3075 3455
3076 case PNG_COLOR_TYPE_RGB: 3456 case PNG_COLOR_TYPE_RGB:
3077 { 3457 {
3078 if (row_info->bit_depth == 8) 3458 if (row_info->bit_depth == 8)
3079 { 3459 {
3080 #ifdef PNG_READ_GAMMA_SUPPORTED 3460 #ifdef PNG_READ_GAMMA_SUPPORTED
3081 if (gamma_table != NULL) 3461 if (gamma_table != NULL)
3082 { 3462 {
3083 sp = row; 3463 sp = row;
3084 for (i = 0; i < row_width; i++, sp += 3) 3464 for (i = 0; i < row_width; i++, sp += 3)
3085 { 3465 {
3086 if (*sp == trans_values->red && 3466 if (*sp == png_ptr->trans_color.red &&
3087 *(sp + 1) == trans_values->green && 3467 *(sp + 1) == png_ptr->trans_color.green &&
3088 *(sp + 2) == trans_values->blue) 3468 *(sp + 2) == png_ptr->trans_color.blue)
3089 { 3469 {
3090 *sp = (png_byte)background->red; 3470 *sp = (png_byte)png_ptr->background.red;
3091 *(sp + 1) = (png_byte)background->green; 3471 *(sp + 1) = (png_byte)png_ptr->background.green;
3092 *(sp + 2) = (png_byte)background->blue; 3472 *(sp + 2) = (png_byte)png_ptr->background.blue;
3093 } 3473 }
3474
3094 else 3475 else
3095 { 3476 {
3096 *sp = gamma_table[*sp]; 3477 *sp = gamma_table[*sp];
3097 *(sp + 1) = gamma_table[*(sp + 1)]; 3478 *(sp + 1) = gamma_table[*(sp + 1)];
3098 *(sp + 2) = gamma_table[*(sp + 2)]; 3479 *(sp + 2) = gamma_table[*(sp + 2)];
3099 } 3480 }
3100 } 3481 }
3101 } 3482 }
3102 else 3483 else
3103 #endif 3484 #endif
3104 { 3485 {
3105 sp = row; 3486 sp = row;
3106 for (i = 0; i < row_width; i++, sp += 3) 3487 for (i = 0; i < row_width; i++, sp += 3)
3107 { 3488 {
3108 if (*sp == trans_values->red && 3489 if (*sp == png_ptr->trans_color.red &&
3109 *(sp + 1) == trans_values->green && 3490 *(sp + 1) == png_ptr->trans_color.green &&
3110 *(sp + 2) == trans_values->blue) 3491 *(sp + 2) == png_ptr->trans_color.blue)
3111 { 3492 {
3112 *sp = (png_byte)background->red; 3493 *sp = (png_byte)png_ptr->background.red;
3113 *(sp + 1) = (png_byte)background->green; 3494 *(sp + 1) = (png_byte)png_ptr->background.green;
3114 *(sp + 2) = (png_byte)background->blue; 3495 *(sp + 2) = (png_byte)png_ptr->background.blue;
3115 } 3496 }
3116 } 3497 }
3117 } 3498 }
3118 } 3499 }
3119 else /* if (row_info->bit_depth == 16) */ 3500 else /* if (row_info->bit_depth == 16) */
3120 { 3501 {
3121 #ifdef PNG_READ_GAMMA_SUPPORTED 3502 #ifdef PNG_READ_GAMMA_SUPPORTED
3122 if (gamma_16 != NULL) 3503 if (gamma_16 != NULL)
3123 { 3504 {
3124 sp = row; 3505 sp = row;
3125 for (i = 0; i < row_width; i++, sp += 6) 3506 for (i = 0; i < row_width; i++, sp += 6)
3126 { 3507 {
3127 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp + 1)); 3508 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3128 png_uint_16 g = (png_uint_16)(((*(sp+2)) << 8) + *(sp+3)); 3509
3129 png_uint_16 b = (png_uint_16)(((*(sp+4)) << 8) + *(sp+5)); 3510 png_uint_16 g = (png_uint_16)(((*(sp + 2)) << 8)
3130 if (r == trans_values->red && g == trans_values->green && 3511 + *(sp + 3));
3131 b == trans_values->blue) 3512
3513 png_uint_16 b = (png_uint_16)(((*(sp + 4)) << 8)
3514 + *(sp + 5));
3515
3516 if (r == png_ptr->trans_color.red &&
3517 g == png_ptr->trans_color.green &&
3518 b == png_ptr->trans_color.blue)
3132 { 3519 {
3133 /* Background is already in screen gamma */ 3520 /* Background is already in screen gamma */
3134 *sp = (png_byte)((background->red >> 8) & 0xff); 3521 *sp = (png_byte)((png_ptr->background.red >> 8) & 0xff);
3135 *(sp + 1) = (png_byte)(background->red & 0xff); 3522 *(sp + 1) = (png_byte)(png_ptr->background.red & 0xff);
3136 *(sp + 2) = (png_byte)((background->green >> 8) & 0xff); 3523 *(sp + 2) = (png_byte)((png_ptr->background.green >> 8)
3137 *(sp + 3) = (png_byte)(background->green & 0xff); 3524 & 0xff);
3138 *(sp + 4) = (png_byte)((background->blue >> 8) & 0xff); 3525 *(sp + 3) = (png_byte)(png_ptr->background.green
3139 *(sp + 5) = (png_byte)(background->blue & 0xff); 3526 & 0xff);
3527 *(sp + 4) = (png_byte)((png_ptr->background.blue >> 8)
3528 & 0xff);
3529 *(sp + 5) = (png_byte)(png_ptr->background.blue & 0xff);
3140 } 3530 }
3531
3141 else 3532 else
3142 { 3533 {
3143 png_uint_16 v = gamma_16[*(sp + 1) >> gamma_shift][*sp]; 3534 png_uint_16 v = gamma_16[*(sp + 1) >> gamma_shift][*sp];
3144 *sp = (png_byte)((v >> 8) & 0xff); 3535 *sp = (png_byte)((v >> 8) & 0xff);
3145 *(sp + 1) = (png_byte)(v & 0xff); 3536 *(sp + 1) = (png_byte)(v & 0xff);
3537
3146 v = gamma_16[*(sp + 3) >> gamma_shift][*(sp + 2)]; 3538 v = gamma_16[*(sp + 3) >> gamma_shift][*(sp + 2)];
3147 *(sp + 2) = (png_byte)((v >> 8) & 0xff); 3539 *(sp + 2) = (png_byte)((v >> 8) & 0xff);
3148 *(sp + 3) = (png_byte)(v & 0xff); 3540 *(sp + 3) = (png_byte)(v & 0xff);
3541
3149 v = gamma_16[*(sp + 5) >> gamma_shift][*(sp + 4)]; 3542 v = gamma_16[*(sp + 5) >> gamma_shift][*(sp + 4)];
3150 *(sp + 4) = (png_byte)((v >> 8) & 0xff); 3543 *(sp + 4) = (png_byte)((v >> 8) & 0xff);
3151 *(sp + 5) = (png_byte)(v & 0xff); 3544 *(sp + 5) = (png_byte)(v & 0xff);
3152 } 3545 }
3153 } 3546 }
3154 } 3547 }
3548
3155 else 3549 else
3156 #endif 3550 #endif
3157 { 3551 {
3158 sp = row; 3552 sp = row;
3159 for (i = 0; i < row_width; i++, sp += 6) 3553 for (i = 0; i < row_width; i++, sp += 6)
3160 { 3554 {
3161 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp+1)); 3555 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3162 png_uint_16 g = (png_uint_16)(((*(sp+2)) << 8) + *(sp+3));
3163 png_uint_16 b = (png_uint_16)(((*(sp+4)) << 8) + *(sp+5));
3164 3556
3165 if (r == trans_values->red && g == trans_values->green && 3557 png_uint_16 g = (png_uint_16)(((*(sp + 2)) << 8)
3166 b == trans_values->blue) 3558 + *(sp + 3));
3559
3560 png_uint_16 b = (png_uint_16)(((*(sp + 4)) << 8)
3561 + *(sp + 5));
3562
3563 if (r == png_ptr->trans_color.red &&
3564 g == png_ptr->trans_color.green &&
3565 b == png_ptr->trans_color.blue)
3167 { 3566 {
3168 *sp = (png_byte)((background->red >> 8) & 0xff); 3567 *sp = (png_byte)((png_ptr->background.red >> 8) & 0xff);
3169 *(sp + 1) = (png_byte)(background->red & 0xff); 3568 *(sp + 1) = (png_byte)(png_ptr->background.red & 0xff);
3170 *(sp + 2) = (png_byte)((background->green >> 8) & 0xff); 3569 *(sp + 2) = (png_byte)((png_ptr->background.green >> 8)
3171 *(sp + 3) = (png_byte)(background->green & 0xff); 3570 & 0xff);
3172 *(sp + 4) = (png_byte)((background->blue >> 8) & 0xff); 3571 *(sp + 3) = (png_byte)(png_ptr->background.green
3173 *(sp + 5) = (png_byte)(background->blue & 0xff); 3572 & 0xff);
3573 *(sp + 4) = (png_byte)((png_ptr->background.blue >> 8)
3574 & 0xff);
3575 *(sp + 5) = (png_byte)(png_ptr->background.blue & 0xff);
3174 } 3576 }
3175 } 3577 }
3176 } 3578 }
3177 } 3579 }
3178 break; 3580 break;
3179 } 3581 }
3180 3582
3181 case PNG_COLOR_TYPE_GRAY_ALPHA: 3583 case PNG_COLOR_TYPE_GRAY_ALPHA:
3182 { 3584 {
3183 if (row_info->bit_depth == 8) 3585 if (row_info->bit_depth == 8)
3184 { 3586 {
3185 #ifdef PNG_READ_GAMMA_SUPPORTED 3587 #ifdef PNG_READ_GAMMA_SUPPORTED
3186 if (gamma_to_1 != NULL && gamma_from_1 != NULL && 3588 if (gamma_to_1 != NULL && gamma_from_1 != NULL &&
3187 gamma_table != NULL) 3589 gamma_table != NULL)
3188 { 3590 {
3189 sp = row; 3591 sp = row;
3190 dp = row; 3592 for (i = 0; i < row_width; i++, sp += 2)
3191 for (i = 0; i < row_width; i++, sp += 2, dp++)
3192 { 3593 {
3193 png_uint_16 a = *(sp + 1); 3594 png_uint_16 a = *(sp + 1);
3194 3595
3195 if (a == 0xff) 3596 if (a == 0xff)
3196 { 3597 *sp = gamma_table[*sp];
3197 *dp = gamma_table[*sp]; 3598
3198 }
3199 else if (a == 0) 3599 else if (a == 0)
3200 { 3600 {
3201 /* Background is already in screen gamma */ 3601 /* Background is already in screen gamma */
3202 *dp = (png_byte)background->gray; 3602 *sp = (png_byte)png_ptr->background.gray;
3203 } 3603 }
3604
3204 else 3605 else
3205 { 3606 {
3206 png_byte v, w; 3607 png_byte v, w;
3207 3608
3208 v = gamma_to_1[*sp]; 3609 v = gamma_to_1[*sp];
3209 png_composite(w, v, a, background_1->gray); 3610 png_composite(w, v, a, png_ptr->background_1.gray);
3210 *dp = gamma_from_1[w]; 3611 if (optimize == 0)
3612 w = gamma_from_1[w];
3613 *sp = w;
3211 } 3614 }
3212 } 3615 }
3213 } 3616 }
3214 else 3617 else
3215 #endif 3618 #endif
3216 { 3619 {
3217 sp = row; 3620 sp = row;
3218 dp = row; 3621 for (i = 0; i < row_width; i++, sp += 2)
3219 for (i = 0; i < row_width; i++, sp += 2, dp++)
3220 { 3622 {
3221 png_byte a = *(sp + 1); 3623 png_byte a = *(sp + 1);
3222 3624
3223 if (a == 0xff) 3625 if (a == 0)
3224 { 3626 *sp = (png_byte)png_ptr->background.gray;
3225 *dp = *sp; 3627
3226 } 3628 else if (a < 0xff)
3227 #ifdef PNG_READ_GAMMA_SUPPORTED 3629 png_composite(*sp, *sp, a, png_ptr->background.gray);
3228 else if (a == 0)
3229 {
3230 *dp = (png_byte)background->gray;
3231 }
3232 else
3233 {
3234 png_composite(*dp, *sp, a, background_1->gray);
3235 }
3236 #else
3237 *dp = (png_byte)background->gray;
3238 #endif
3239 } 3630 }
3240 } 3631 }
3241 } 3632 }
3242 else /* if (png_ptr->bit_depth == 16) */ 3633 else /* if (png_ptr->bit_depth == 16) */
3243 { 3634 {
3244 #ifdef PNG_READ_GAMMA_SUPPORTED 3635 #ifdef PNG_READ_GAMMA_SUPPORTED
3245 if (gamma_16 != NULL && gamma_16_from_1 != NULL && 3636 if (gamma_16 != NULL && gamma_16_from_1 != NULL &&
3246 gamma_16_to_1 != NULL) 3637 gamma_16_to_1 != NULL)
3247 { 3638 {
3248 sp = row; 3639 sp = row;
3249 dp = row; 3640 for (i = 0; i < row_width; i++, sp += 4)
3250 for (i = 0; i < row_width; i++, sp += 4, dp += 2)
3251 { 3641 {
3252 png_uint_16 a = (png_uint_16)(((*(sp+2)) << 8) + *(sp+3)); 3642 png_uint_16 a = (png_uint_16)(((*(sp + 2)) << 8)
3643 + *(sp + 3));
3253 3644
3254 if (a == (png_uint_16)0xffff) 3645 if (a == (png_uint_16)0xffff)
3255 { 3646 {
3256 png_uint_16 v; 3647 png_uint_16 v;
3257 3648
3258 v = gamma_16[*(sp + 1) >> gamma_shift][*sp]; 3649 v = gamma_16[*(sp + 1) >> gamma_shift][*sp];
3259 *dp = (png_byte)((v >> 8) & 0xff); 3650 *sp = (png_byte)((v >> 8) & 0xff);
3260 *(dp + 1) = (png_byte)(v & 0xff); 3651 *(sp + 1) = (png_byte)(v & 0xff);
3261 } 3652 }
3262 #ifdef PNG_READ_GAMMA_SUPPORTED 3653
3263 else if (a == 0) 3654 else if (a == 0)
3264 #else
3265 else
3266 #endif
3267 { 3655 {
3268 /* Background is already in screen gamma */ 3656 /* Background is already in screen gamma */
3269 *dp = (png_byte)((background->gray >> 8) & 0xff); 3657 *sp = (png_byte)((png_ptr->background.gray >> 8)
3270 *(dp + 1) = (png_byte)(background->gray & 0xff); 3658 & 0xff);
3659 *(sp + 1) = (png_byte)(png_ptr->background.gray & 0xff);
3271 } 3660 }
3272 #ifdef PNG_READ_GAMMA_SUPPORTED 3661
3273 else 3662 else
3274 { 3663 {
3275 png_uint_16 g, v, w; 3664 png_uint_16 g, v, w;
3276 3665
3277 g = gamma_16_to_1[*(sp + 1) >> gamma_shift][*sp]; 3666 g = gamma_16_to_1[*(sp + 1) >> gamma_shift][*sp];
3278 png_composite_16(v, g, a, background_1->gray); 3667 png_composite_16(v, g, a, png_ptr->background_1.gray);
3279 w = gamma_16_from_1[(v&0xff) >> gamma_shift][v >> 8]; 3668 if (optimize != 0)
3280 *dp = (png_byte)((w >> 8) & 0xff); 3669 w = v;
3281 *(dp + 1) = (png_byte)(w & 0xff); 3670 else
3671 w = gamma_16_from_1[(v & 0xff) >>
3672 gamma_shift][v >> 8];
3673 *sp = (png_byte)((w >> 8) & 0xff);
3674 *(sp + 1) = (png_byte)(w & 0xff);
3282 } 3675 }
3283 #endif
3284 } 3676 }
3285 } 3677 }
3286 else 3678 else
3287 #endif 3679 #endif
3288 { 3680 {
3289 sp = row; 3681 sp = row;
3290 dp = row; 3682 for (i = 0; i < row_width; i++, sp += 4)
3291 for (i = 0; i < row_width; i++, sp += 4, dp += 2)
3292 { 3683 {
3293 png_uint_16 a = (png_uint_16)(((*(sp+2)) << 8) + *(sp+3)); 3684 png_uint_16 a = (png_uint_16)(((*(sp + 2)) << 8)
3294 if (a == (png_uint_16)0xffff) 3685 + *(sp + 3));
3686
3687 if (a == 0)
3295 { 3688 {
3296 png_memcpy(dp, sp, 2); 3689 *sp = (png_byte)((png_ptr->background.gray >> 8)
3690 & 0xff);
3691 *(sp + 1) = (png_byte)(png_ptr->background.gray & 0xff);
3297 } 3692 }
3298 #ifdef PNG_READ_GAMMA_SUPPORTED 3693
3299 else if (a == 0) 3694 else if (a < 0xffff)
3300 #else
3301 else
3302 #endif
3303 {
3304 *dp = (png_byte)((background->gray >> 8) & 0xff);
3305 *(dp + 1) = (png_byte)(background->gray & 0xff);
3306 }
3307 #ifdef PNG_READ_GAMMA_SUPPORTED
3308 else
3309 { 3695 {
3310 png_uint_16 g, v; 3696 png_uint_16 g, v;
3311 3697
3312 g = (png_uint_16)(((*sp) << 8) + *(sp + 1)); 3698 g = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3313 png_composite_16(v, g, a, background_1->gray); 3699 png_composite_16(v, g, a, png_ptr->background.gray);
3314 *dp = (png_byte)((v >> 8) & 0xff); 3700 *sp = (png_byte)((v >> 8) & 0xff);
3315 *(dp + 1) = (png_byte)(v & 0xff); 3701 *(sp + 1) = (png_byte)(v & 0xff);
3316 } 3702 }
3317 #endif
3318 } 3703 }
3319 } 3704 }
3320 } 3705 }
3321 break; 3706 break;
3322 } 3707 }
3323 3708
3324 case PNG_COLOR_TYPE_RGB_ALPHA: 3709 case PNG_COLOR_TYPE_RGB_ALPHA:
3325 { 3710 {
3326 if (row_info->bit_depth == 8) 3711 if (row_info->bit_depth == 8)
3327 { 3712 {
3328 #ifdef PNG_READ_GAMMA_SUPPORTED 3713 #ifdef PNG_READ_GAMMA_SUPPORTED
3329 if (gamma_to_1 != NULL && gamma_from_1 != NULL && 3714 if (gamma_to_1 != NULL && gamma_from_1 != NULL &&
3330 gamma_table != NULL) 3715 gamma_table != NULL)
3331 { 3716 {
3332 sp = row; 3717 sp = row;
3333 dp = row; 3718 for (i = 0; i < row_width; i++, sp += 4)
3334 for (i = 0; i < row_width; i++, sp += 4, dp += 3)
3335 { 3719 {
3336 png_byte a = *(sp + 3); 3720 png_byte a = *(sp + 3);
3337 3721
3338 if (a == 0xff) 3722 if (a == 0xff)
3339 { 3723 {
3340 *dp = gamma_table[*sp]; 3724 *sp = gamma_table[*sp];
3341 *(dp + 1) = gamma_table[*(sp + 1)]; 3725 *(sp + 1) = gamma_table[*(sp + 1)];
3342 *(dp + 2) = gamma_table[*(sp + 2)]; 3726 *(sp + 2) = gamma_table[*(sp + 2)];
3343 } 3727 }
3728
3344 else if (a == 0) 3729 else if (a == 0)
3345 { 3730 {
3346 /* Background is already in screen gamma */ 3731 /* Background is already in screen gamma */
3347 *dp = (png_byte)background->red; 3732 *sp = (png_byte)png_ptr->background.red;
3348 *(dp + 1) = (png_byte)background->green; 3733 *(sp + 1) = (png_byte)png_ptr->background.green;
3349 *(dp + 2) = (png_byte)background->blue; 3734 *(sp + 2) = (png_byte)png_ptr->background.blue;
3350 } 3735 }
3736
3351 else 3737 else
3352 { 3738 {
3353 png_byte v, w; 3739 png_byte v, w;
3354 3740
3355 v = gamma_to_1[*sp]; 3741 v = gamma_to_1[*sp];
3356 png_composite(w, v, a, background_1->red); 3742 png_composite(w, v, a, png_ptr->background_1.red);
3357 *dp = gamma_from_1[w]; 3743 if (optimize == 0) w = gamma_from_1[w];
3744 *sp = w;
3745
3358 v = gamma_to_1[*(sp + 1)]; 3746 v = gamma_to_1[*(sp + 1)];
3359 png_composite(w, v, a, background_1->green); 3747 png_composite(w, v, a, png_ptr->background_1.green);
3360 *(dp + 1) = gamma_from_1[w]; 3748 if (optimize == 0) w = gamma_from_1[w];
3749 *(sp + 1) = w;
3750
3361 v = gamma_to_1[*(sp + 2)]; 3751 v = gamma_to_1[*(sp + 2)];
3362 png_composite(w, v, a, background_1->blue); 3752 png_composite(w, v, a, png_ptr->background_1.blue);
3363 *(dp + 2) = gamma_from_1[w]; 3753 if (optimize == 0) w = gamma_from_1[w];
3754 *(sp + 2) = w;
3364 } 3755 }
3365 } 3756 }
3366 } 3757 }
3367 else 3758 else
3368 #endif 3759 #endif
3369 { 3760 {
3370 sp = row; 3761 sp = row;
3371 dp = row; 3762 for (i = 0; i < row_width; i++, sp += 4)
3372 for (i = 0; i < row_width; i++, sp += 4, dp += 3)
3373 { 3763 {
3374 png_byte a = *(sp + 3); 3764 png_byte a = *(sp + 3);
3375 3765
3376 if (a == 0xff) 3766 if (a == 0)
3377 { 3767 {
3378 *dp = *sp; 3768 *sp = (png_byte)png_ptr->background.red;
3379 *(dp + 1) = *(sp + 1); 3769 *(sp + 1) = (png_byte)png_ptr->background.green;
3380 *(dp + 2) = *(sp + 2); 3770 *(sp + 2) = (png_byte)png_ptr->background.blue;
3381 } 3771 }
3382 else if (a == 0) 3772
3773 else if (a < 0xff)
3383 { 3774 {
3384 *dp = (png_byte)background->red; 3775 png_composite(*sp, *sp, a, png_ptr->background.red);
3385 *(dp + 1) = (png_byte)background->green; 3776
3386 *(dp + 2) = (png_byte)background->blue; 3777 png_composite(*(sp + 1), *(sp + 1), a,
3387 } 3778 png_ptr->background.green);
3388 else 3779
3389 { 3780 png_composite(*(sp + 2), *(sp + 2), a,
3390 png_composite(*dp, *sp, a, background->red); 3781 png_ptr->background.blue);
3391 png_composite(*(dp + 1), *(sp + 1), a,
3392 background->green);
3393 png_composite(*(dp + 2), *(sp + 2), a,
3394 background->blue);
3395 } 3782 }
3396 } 3783 }
3397 } 3784 }
3398 } 3785 }
3399 else /* if (row_info->bit_depth == 16) */ 3786 else /* if (row_info->bit_depth == 16) */
3400 { 3787 {
3401 #ifdef PNG_READ_GAMMA_SUPPORTED 3788 #ifdef PNG_READ_GAMMA_SUPPORTED
3402 if (gamma_16 != NULL && gamma_16_from_1 != NULL && 3789 if (gamma_16 != NULL && gamma_16_from_1 != NULL &&
3403 gamma_16_to_1 != NULL) 3790 gamma_16_to_1 != NULL)
3404 { 3791 {
3405 sp = row; 3792 sp = row;
3406 dp = row; 3793 for (i = 0; i < row_width; i++, sp += 8)
3407 for (i = 0; i < row_width; i++, sp += 8, dp += 6)
3408 { 3794 {
3409 png_uint_16 a = (png_uint_16)(((png_uint_16)(*(sp + 6)) 3795 png_uint_16 a = (png_uint_16)(((png_uint_16)(*(sp + 6))
3410 << 8) + (png_uint_16)(*(sp + 7))); 3796 << 8) + (png_uint_16)(*(sp + 7)));
3797
3411 if (a == (png_uint_16)0xffff) 3798 if (a == (png_uint_16)0xffff)
3412 { 3799 {
3413 png_uint_16 v; 3800 png_uint_16 v;
3414 3801
3415 v = gamma_16[*(sp + 1) >> gamma_shift][*sp]; 3802 v = gamma_16[*(sp + 1) >> gamma_shift][*sp];
3416 *dp = (png_byte)((v >> 8) & 0xff); 3803 *sp = (png_byte)((v >> 8) & 0xff);
3417 *(dp + 1) = (png_byte)(v & 0xff); 3804 *(sp + 1) = (png_byte)(v & 0xff);
3805
3418 v = gamma_16[*(sp + 3) >> gamma_shift][*(sp + 2)]; 3806 v = gamma_16[*(sp + 3) >> gamma_shift][*(sp + 2)];
3419 *(dp + 2) = (png_byte)((v >> 8) & 0xff); 3807 *(sp + 2) = (png_byte)((v >> 8) & 0xff);
3420 *(dp + 3) = (png_byte)(v & 0xff); 3808 *(sp + 3) = (png_byte)(v & 0xff);
3809
3421 v = gamma_16[*(sp + 5) >> gamma_shift][*(sp + 4)]; 3810 v = gamma_16[*(sp + 5) >> gamma_shift][*(sp + 4)];
3422 *(dp + 4) = (png_byte)((v >> 8) & 0xff); 3811 *(sp + 4) = (png_byte)((v >> 8) & 0xff);
3423 *(dp + 5) = (png_byte)(v & 0xff); 3812 *(sp + 5) = (png_byte)(v & 0xff);
3424 } 3813 }
3814
3425 else if (a == 0) 3815 else if (a == 0)
3426 { 3816 {
3427 /* Background is already in screen gamma */ 3817 /* Background is already in screen gamma */
3428 *dp = (png_byte)((background->red >> 8) & 0xff); 3818 *sp = (png_byte)((png_ptr->background.red >> 8) & 0xff);
3429 *(dp + 1) = (png_byte)(background->red & 0xff); 3819 *(sp + 1) = (png_byte)(png_ptr->background.red & 0xff);
3430 *(dp + 2) = (png_byte)((background->green >> 8) & 0xff); 3820 *(sp + 2) = (png_byte)((png_ptr->background.green >> 8)
3431 *(dp + 3) = (png_byte)(background->green & 0xff); 3821 & 0xff);
3432 *(dp + 4) = (png_byte)((background->blue >> 8) & 0xff); 3822 *(sp + 3) = (png_byte)(png_ptr->background.green
3433 *(dp + 5) = (png_byte)(background->blue & 0xff); 3823 & 0xff);
3824 *(sp + 4) = (png_byte)((png_ptr->background.blue >> 8)
3825 & 0xff);
3826 *(sp + 5) = (png_byte)(png_ptr->background.blue & 0xff);
3434 } 3827 }
3828
3435 else 3829 else
3436 { 3830 {
3437 png_uint_16 v, w, x; 3831 png_uint_16 v, w;
3438 3832
3439 v = gamma_16_to_1[*(sp + 1) >> gamma_shift][*sp]; 3833 v = gamma_16_to_1[*(sp + 1) >> gamma_shift][*sp];
3440 png_composite_16(w, v, a, background_1->red); 3834 png_composite_16(w, v, a, png_ptr->background_1.red);
3441 x = gamma_16_from_1[((w&0xff) >> gamma_shift)][w >> 8]; 3835 if (optimize == 0)
3442 *dp = (png_byte)((x >> 8) & 0xff); 3836 w = gamma_16_from_1[((w & 0xff) >> gamma_shift)][w >>
3443 *(dp + 1) = (png_byte)(x & 0xff); 3837 8];
3838 *sp = (png_byte)((w >> 8) & 0xff);
3839 *(sp + 1) = (png_byte)(w & 0xff);
3840
3444 v = gamma_16_to_1[*(sp + 3) >> gamma_shift][*(sp + 2)]; 3841 v = gamma_16_to_1[*(sp + 3) >> gamma_shift][*(sp + 2)];
3445 png_composite_16(w, v, a, background_1->green); 3842 png_composite_16(w, v, a, png_ptr->background_1.green);
3446 x = gamma_16_from_1[((w&0xff) >> gamma_shift)][w >> 8]; 3843 if (optimize == 0)
3447 *(dp + 2) = (png_byte)((x >> 8) & 0xff); 3844 w = gamma_16_from_1[((w & 0xff) >> gamma_shift)][w >>
3448 *(dp + 3) = (png_byte)(x & 0xff); 3845 8];
3846
3847 *(sp + 2) = (png_byte)((w >> 8) & 0xff);
3848 *(sp + 3) = (png_byte)(w & 0xff);
3849
3449 v = gamma_16_to_1[*(sp + 5) >> gamma_shift][*(sp + 4)]; 3850 v = gamma_16_to_1[*(sp + 5) >> gamma_shift][*(sp + 4)];
3450 png_composite_16(w, v, a, background_1->blue); 3851 png_composite_16(w, v, a, png_ptr->background_1.blue);
3451 x = gamma_16_from_1[(w & 0xff) >> gamma_shift][w >> 8]; 3852 if (optimize == 0)
3452 *(dp + 4) = (png_byte)((x >> 8) & 0xff); 3853 w = gamma_16_from_1[((w & 0xff) >> gamma_shift)][w >>
3453 *(dp + 5) = (png_byte)(x & 0xff); 3854 8];
3855
3856 *(sp + 4) = (png_byte)((w >> 8) & 0xff);
3857 *(sp + 5) = (png_byte)(w & 0xff);
3454 } 3858 }
3455 } 3859 }
3456 } 3860 }
3861
3457 else 3862 else
3458 #endif 3863 #endif
3459 { 3864 {
3460 sp = row; 3865 sp = row;
3461 dp = row; 3866 for (i = 0; i < row_width; i++, sp += 8)
3462 for (i = 0; i < row_width; i++, sp += 8, dp += 6)
3463 { 3867 {
3464 png_uint_16 a = (png_uint_16)(((png_uint_16)(*(sp + 6)) 3868 png_uint_16 a = (png_uint_16)(((png_uint_16)(*(sp + 6))
3465 << 8) + (png_uint_16)(*(sp + 7))); 3869 << 8) + (png_uint_16)(*(sp + 7)));
3466 if (a == (png_uint_16)0xffff) 3870
3871 if (a == 0)
3467 { 3872 {
3468 png_memcpy(dp, sp, 6); 3873 *sp = (png_byte)((png_ptr->background.red >> 8) & 0xff);
3874 *(sp + 1) = (png_byte)(png_ptr->background.red & 0xff);
3875 *(sp + 2) = (png_byte)((png_ptr->background.green >> 8)
3876 & 0xff);
3877 *(sp + 3) = (png_byte)(png_ptr->background.green
3878 & 0xff);
3879 *(sp + 4) = (png_byte)((png_ptr->background.blue >> 8)
3880 & 0xff);
3881 *(sp + 5) = (png_byte)(png_ptr->background.blue & 0xff);
3469 } 3882 }
3470 else if (a == 0) 3883
3471 { 3884 else if (a < 0xffff)
3472 *dp = (png_byte)((background->red >> 8) & 0xff);
3473 *(dp + 1) = (png_byte)(background->red & 0xff);
3474 *(dp + 2) = (png_byte)((background->green >> 8) & 0xff);
3475 *(dp + 3) = (png_byte)(background->green & 0xff);
3476 *(dp + 4) = (png_byte)((background->blue >> 8) & 0xff);
3477 *(dp + 5) = (png_byte)(background->blue & 0xff);
3478 }
3479 else
3480 { 3885 {
3481 png_uint_16 v; 3886 png_uint_16 v;
3482 3887
3483 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp + 1)); 3888 png_uint_16 r = (png_uint_16)(((*sp) << 8) + *(sp + 1));
3484 png_uint_16 g = (png_uint_16)(((*(sp + 2)) << 8) 3889 png_uint_16 g = (png_uint_16)(((*(sp + 2)) << 8)
3485 + *(sp + 3)); 3890 + *(sp + 3));
3486 png_uint_16 b = (png_uint_16)(((*(sp + 4)) << 8) 3891 png_uint_16 b = (png_uint_16)(((*(sp + 4)) << 8)
3487 + *(sp + 5)); 3892 + *(sp + 5));
3488 3893
3489 png_composite_16(v, r, a, background->red); 3894 png_composite_16(v, r, a, png_ptr->background.red);
3490 *dp = (png_byte)((v >> 8) & 0xff); 3895 *sp = (png_byte)((v >> 8) & 0xff);
3491 *(dp + 1) = (png_byte)(v & 0xff); 3896 *(sp + 1) = (png_byte)(v & 0xff);
3492 png_composite_16(v, g, a, background->green); 3897
3493 *(dp + 2) = (png_byte)((v >> 8) & 0xff); 3898 png_composite_16(v, g, a, png_ptr->background.green);
3494 *(dp + 3) = (png_byte)(v & 0xff); 3899 *(sp + 2) = (png_byte)((v >> 8) & 0xff);
3495 png_composite_16(v, b, a, background->blue); 3900 *(sp + 3) = (png_byte)(v & 0xff);
3496 *(dp + 4) = (png_byte)((v >> 8) & 0xff); 3901
3497 *(dp + 5) = (png_byte)(v & 0xff); 3902 png_composite_16(v, b, a, png_ptr->background.blue);
3903 *(sp + 4) = (png_byte)((v >> 8) & 0xff);
3904 *(sp + 5) = (png_byte)(v & 0xff);
3498 } 3905 }
3499 } 3906 }
3500 } 3907 }
3501 } 3908 }
3502 break; 3909 break;
3503 } 3910 }
3504 }
3505 3911
3506 if (row_info->color_type & PNG_COLOR_MASK_ALPHA) 3912 default:
3507 { 3913 break;
3508 row_info->color_type &= ~PNG_COLOR_MASK_ALPHA;
3509 row_info->channels--;
3510 row_info->pixel_depth = (png_byte)(row_info->channels *
3511 row_info->bit_depth);
3512 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
3513 } 3914 }
3514 } 3915 }
3515 } 3916 }
3516 #endif 3917 #endif /* READ_BACKGROUND || READ_ALPHA_MODE */
3517 3918
3518 #ifdef PNG_READ_GAMMA_SUPPORTED 3919 #ifdef PNG_READ_GAMMA_SUPPORTED
3519 /* Gamma correct the image, avoiding the alpha channel. Make sure 3920 /* Gamma correct the image, avoiding the alpha channel. Make sure
3520 * you do this after you deal with the transparency issue on grayscale 3921 * you do this after you deal with the transparency issue on grayscale
3521 * or RGB images. If your bit depth is 8, use gamma_table, if it 3922 * or RGB images. If your bit depth is 8, use gamma_table, if it
3522 * is 16, use gamma_16_table and gamma_shift. Build these with 3923 * is 16, use gamma_16_table and gamma_shift. Build these with
3523 * build_gamma_table(). 3924 * build_gamma_table().
3524 */ 3925 */
3525 void /* PRIVATE */ 3926 static void
3526 png_do_gamma(png_row_infop row_info, png_bytep row, 3927 png_do_gamma(png_row_infop row_info, png_bytep row, png_structrp png_ptr)
3527 png_bytep gamma_table, png_uint_16pp gamma_16_table,
3528 int gamma_shift)
3529 { 3928 {
3929 png_const_bytep gamma_table = png_ptr->gamma_table;
3930 png_const_uint_16pp gamma_16_table = png_ptr->gamma_16_table;
3931 int gamma_shift = png_ptr->gamma_shift;
3932
3530 png_bytep sp; 3933 png_bytep sp;
3531 png_uint_32 i; 3934 png_uint_32 i;
3532 png_uint_32 row_width=row_info->width; 3935 png_uint_32 row_width=row_info->width;
3533 3936
3534 png_debug(1, "in png_do_gamma"); 3937 png_debug(1, "in png_do_gamma");
3535 3938
3536 if ( 3939 if (((row_info->bit_depth <= 8 && gamma_table != NULL) ||
3537 #ifdef PNG_USELESS_TESTS_SUPPORTED 3940 (row_info->bit_depth == 16 && gamma_16_table != NULL)))
3538 row != NULL && row_info != NULL &&
3539 #endif
3540 ((row_info->bit_depth <= 8 && gamma_table != NULL) ||
3541 (row_info->bit_depth == 16 && gamma_16_table != NULL)))
3542 { 3941 {
3543 switch (row_info->color_type) 3942 switch (row_info->color_type)
3544 { 3943 {
3545 case PNG_COLOR_TYPE_RGB: 3944 case PNG_COLOR_TYPE_RGB:
3546 { 3945 {
3547 if (row_info->bit_depth == 8) 3946 if (row_info->bit_depth == 8)
3548 { 3947 {
3549 sp = row; 3948 sp = row;
3550 for (i = 0; i < row_width; i++) 3949 for (i = 0; i < row_width; i++)
3551 { 3950 {
3552 *sp = gamma_table[*sp]; 3951 *sp = gamma_table[*sp];
3553 sp++; 3952 sp++;
3554 *sp = gamma_table[*sp]; 3953 *sp = gamma_table[*sp];
3555 sp++; 3954 sp++;
3556 *sp = gamma_table[*sp]; 3955 *sp = gamma_table[*sp];
3557 sp++; 3956 sp++;
3558 } 3957 }
3559 } 3958 }
3959
3560 else /* if (row_info->bit_depth == 16) */ 3960 else /* if (row_info->bit_depth == 16) */
3561 { 3961 {
3562 sp = row; 3962 sp = row;
3563 for (i = 0; i < row_width; i++) 3963 for (i = 0; i < row_width; i++)
3564 { 3964 {
3565 png_uint_16 v; 3965 png_uint_16 v;
3566 3966
3567 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 3967 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3568 *sp = (png_byte)((v >> 8) & 0xff); 3968 *sp = (png_byte)((v >> 8) & 0xff);
3569 *(sp + 1) = (png_byte)(v & 0xff); 3969 *(sp + 1) = (png_byte)(v & 0xff);
3570 sp += 2; 3970 sp += 2;
3971
3571 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 3972 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3572 *sp = (png_byte)((v >> 8) & 0xff); 3973 *sp = (png_byte)((v >> 8) & 0xff);
3573 *(sp + 1) = (png_byte)(v & 0xff); 3974 *(sp + 1) = (png_byte)(v & 0xff);
3574 sp += 2; 3975 sp += 2;
3976
3575 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 3977 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3576 *sp = (png_byte)((v >> 8) & 0xff); 3978 *sp = (png_byte)((v >> 8) & 0xff);
3577 *(sp + 1) = (png_byte)(v & 0xff); 3979 *(sp + 1) = (png_byte)(v & 0xff);
3578 sp += 2; 3980 sp += 2;
3579 } 3981 }
3580 } 3982 }
3581 break; 3983 break;
3582 } 3984 }
3583 3985
3584 case PNG_COLOR_TYPE_RGB_ALPHA: 3986 case PNG_COLOR_TYPE_RGB_ALPHA:
3585 { 3987 {
3586 if (row_info->bit_depth == 8) 3988 if (row_info->bit_depth == 8)
3587 { 3989 {
3588 sp = row; 3990 sp = row;
3589 for (i = 0; i < row_width; i++) 3991 for (i = 0; i < row_width; i++)
3590 { 3992 {
3591 *sp = gamma_table[*sp]; 3993 *sp = gamma_table[*sp];
3592 sp++; 3994 sp++;
3995
3593 *sp = gamma_table[*sp]; 3996 *sp = gamma_table[*sp];
3594 sp++; 3997 sp++;
3998
3595 *sp = gamma_table[*sp]; 3999 *sp = gamma_table[*sp];
3596 sp++; 4000 sp++;
4001
3597 sp++; 4002 sp++;
3598 } 4003 }
3599 } 4004 }
4005
3600 else /* if (row_info->bit_depth == 16) */ 4006 else /* if (row_info->bit_depth == 16) */
3601 { 4007 {
3602 sp = row; 4008 sp = row;
3603 for (i = 0; i < row_width; i++) 4009 for (i = 0; i < row_width; i++)
3604 { 4010 {
3605 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 4011 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3606 *sp = (png_byte)((v >> 8) & 0xff); 4012 *sp = (png_byte)((v >> 8) & 0xff);
3607 *(sp + 1) = (png_byte)(v & 0xff); 4013 *(sp + 1) = (png_byte)(v & 0xff);
3608 sp += 2; 4014 sp += 2;
4015
3609 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 4016 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3610 *sp = (png_byte)((v >> 8) & 0xff); 4017 *sp = (png_byte)((v >> 8) & 0xff);
3611 *(sp + 1) = (png_byte)(v & 0xff); 4018 *(sp + 1) = (png_byte)(v & 0xff);
3612 sp += 2; 4019 sp += 2;
4020
3613 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 4021 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3614 *sp = (png_byte)((v >> 8) & 0xff); 4022 *sp = (png_byte)((v >> 8) & 0xff);
3615 *(sp + 1) = (png_byte)(v & 0xff); 4023 *(sp + 1) = (png_byte)(v & 0xff);
3616 sp += 4; 4024 sp += 4;
3617 } 4025 }
3618 } 4026 }
3619 break; 4027 break;
3620 } 4028 }
3621 4029
3622 case PNG_COLOR_TYPE_GRAY_ALPHA: 4030 case PNG_COLOR_TYPE_GRAY_ALPHA:
3623 { 4031 {
3624 if (row_info->bit_depth == 8) 4032 if (row_info->bit_depth == 8)
3625 { 4033 {
3626 sp = row; 4034 sp = row;
3627 for (i = 0; i < row_width; i++) 4035 for (i = 0; i < row_width; i++)
3628 { 4036 {
3629 *sp = gamma_table[*sp]; 4037 *sp = gamma_table[*sp];
3630 sp += 2; 4038 sp += 2;
3631 } 4039 }
3632 } 4040 }
4041
3633 else /* if (row_info->bit_depth == 16) */ 4042 else /* if (row_info->bit_depth == 16) */
3634 { 4043 {
3635 sp = row; 4044 sp = row;
3636 for (i = 0; i < row_width; i++) 4045 for (i = 0; i < row_width; i++)
3637 { 4046 {
3638 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 4047 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3639 *sp = (png_byte)((v >> 8) & 0xff); 4048 *sp = (png_byte)((v >> 8) & 0xff);
3640 *(sp + 1) = (png_byte)(v & 0xff); 4049 *(sp + 1) = (png_byte)(v & 0xff);
3641 sp += 4; 4050 sp += 4;
3642 } 4051 }
(...skipping 52 matching lines...) Expand 10 before | Expand all | Expand 10 after
3695 for (i = 0; i < row_width; i++) 4104 for (i = 0; i < row_width; i++)
3696 { 4105 {
3697 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp]; 4106 png_uint_16 v = gamma_16_table[*(sp + 1) >> gamma_shift][*sp];
3698 *sp = (png_byte)((v >> 8) & 0xff); 4107 *sp = (png_byte)((v >> 8) & 0xff);
3699 *(sp + 1) = (png_byte)(v & 0xff); 4108 *(sp + 1) = (png_byte)(v & 0xff);
3700 sp += 2; 4109 sp += 2;
3701 } 4110 }
3702 } 4111 }
3703 break; 4112 break;
3704 } 4113 }
4114
4115 default:
4116 break;
3705 } 4117 }
3706 } 4118 }
3707 } 4119 }
3708 #endif 4120 #endif
3709 4121
4122 #ifdef PNG_READ_ALPHA_MODE_SUPPORTED
4123 /* Encode the alpha channel to the output gamma (the input channel is always
4124 * linear.) Called only with color types that have an alpha channel. Needs the
4125 * from_1 tables.
4126 */
4127 static void
4128 png_do_encode_alpha(png_row_infop row_info, png_bytep row, png_structrp png_ptr)
4129 {
4130 png_uint_32 row_width = row_info->width;
4131
4132 png_debug(1, "in png_do_encode_alpha");
4133
4134 if ((row_info->color_type & PNG_COLOR_MASK_ALPHA) != 0)
4135 {
4136 if (row_info->bit_depth == 8)
4137 {
4138 PNG_CONST png_bytep table = png_ptr->gamma_from_1;
4139
4140 if (table != NULL)
4141 {
4142 PNG_CONST int step =
4143 (row_info->color_type & PNG_COLOR_MASK_COLOR) ? 4 : 2;
4144
4145 /* The alpha channel is the last component: */
4146 row += step - 1;
4147
4148 for (; row_width > 0; --row_width, row += step)
4149 *row = table[*row];
4150
4151 return;
4152 }
4153 }
4154
4155 else if (row_info->bit_depth == 16)
4156 {
4157 PNG_CONST png_uint_16pp table = png_ptr->gamma_16_from_1;
4158 PNG_CONST int gamma_shift = png_ptr->gamma_shift;
4159
4160 if (table != NULL)
4161 {
4162 PNG_CONST int step =
4163 (row_info->color_type & PNG_COLOR_MASK_COLOR) ? 8 : 4;
4164
4165 /* The alpha channel is the last component: */
4166 row += step - 2;
4167
4168 for (; row_width > 0; --row_width, row += step)
4169 {
4170 png_uint_16 v;
4171
4172 v = table[*(row + 1) >> gamma_shift][*row];
4173 *row = (png_byte)((v >> 8) & 0xff);
4174 *(row + 1) = (png_byte)(v & 0xff);
4175 }
4176
4177 return;
4178 }
4179 }
4180 }
4181
4182 /* Only get to here if called with a weird row_info; no harm has been done,
4183 * so just issue a warning.
4184 */
4185 png_warning(png_ptr, "png_do_encode_alpha: unexpected call");
4186 }
4187 #endif
4188
3710 #ifdef PNG_READ_EXPAND_SUPPORTED 4189 #ifdef PNG_READ_EXPAND_SUPPORTED
3711 /* Expands a palette row to an RGB or RGBA row depending 4190 /* Expands a palette row to an RGB or RGBA row depending
3712 * upon whether you supply trans and num_trans. 4191 * upon whether you supply trans and num_trans.
3713 */ 4192 */
3714 void /* PRIVATE */ 4193 static void
3715 png_do_expand_palette(png_row_infop row_info, png_bytep row, 4194 png_do_expand_palette(png_row_infop row_info, png_bytep row,
3716 png_colorp palette, png_bytep trans, int num_trans) 4195 png_const_colorp palette, png_const_bytep trans_alpha, int num_trans)
3717 { 4196 {
3718 int shift, value; 4197 int shift, value;
3719 png_bytep sp, dp; 4198 png_bytep sp, dp;
3720 png_uint_32 i; 4199 png_uint_32 i;
3721 png_uint_32 row_width=row_info->width; 4200 png_uint_32 row_width=row_info->width;
3722 4201
3723 png_debug(1, "in png_do_expand_palette"); 4202 png_debug(1, "in png_do_expand_palette");
3724 4203
3725 if ( 4204 if (row_info->color_type == PNG_COLOR_TYPE_PALETTE)
3726 #ifdef PNG_USELESS_TESTS_SUPPORTED
3727 row != NULL && row_info != NULL &&
3728 #endif
3729 row_info->color_type == PNG_COLOR_TYPE_PALETTE)
3730 { 4205 {
3731 if (row_info->bit_depth < 8) 4206 if (row_info->bit_depth < 8)
3732 { 4207 {
3733 switch (row_info->bit_depth) 4208 switch (row_info->bit_depth)
3734 { 4209 {
3735 case 1: 4210 case 1:
3736 { 4211 {
3737 sp = row + (png_size_t)((row_width - 1) >> 3); 4212 sp = row + (png_size_t)((row_width - 1) >> 3);
3738 dp = row + (png_size_t)row_width - 1; 4213 dp = row + (png_size_t)row_width - 1;
3739 shift = 7 - (int)((row_width + 7) & 0x07); 4214 shift = 7 - (int)((row_width + 7) & 0x07);
3740 for (i = 0; i < row_width; i++) 4215 for (i = 0; i < row_width; i++)
3741 { 4216 {
3742 if ((*sp >> shift) & 0x01) 4217 if ((*sp >> shift) & 0x01)
3743 *dp = 1; 4218 *dp = 1;
4219
3744 else 4220 else
3745 *dp = 0; 4221 *dp = 0;
4222
3746 if (shift == 7) 4223 if (shift == 7)
3747 { 4224 {
3748 shift = 0; 4225 shift = 0;
3749 sp--; 4226 sp--;
3750 } 4227 }
4228
3751 else 4229 else
3752 shift++; 4230 shift++;
3753 4231
3754 dp--; 4232 dp--;
3755 } 4233 }
3756 break; 4234 break;
3757 } 4235 }
3758 4236
3759 case 2: 4237 case 2:
3760 { 4238 {
3761 sp = row + (png_size_t)((row_width - 1) >> 2); 4239 sp = row + (png_size_t)((row_width - 1) >> 2);
3762 dp = row + (png_size_t)row_width - 1; 4240 dp = row + (png_size_t)row_width - 1;
3763 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1); 4241 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1);
3764 for (i = 0; i < row_width; i++) 4242 for (i = 0; i < row_width; i++)
3765 { 4243 {
3766 value = (*sp >> shift) & 0x03; 4244 value = (*sp >> shift) & 0x03;
3767 *dp = (png_byte)value; 4245 *dp = (png_byte)value;
3768 if (shift == 6) 4246 if (shift == 6)
3769 { 4247 {
3770 shift = 0; 4248 shift = 0;
3771 sp--; 4249 sp--;
3772 } 4250 }
4251
3773 else 4252 else
3774 shift += 2; 4253 shift += 2;
3775 4254
3776 dp--; 4255 dp--;
3777 } 4256 }
3778 break; 4257 break;
3779 } 4258 }
3780 4259
3781 case 4: 4260 case 4:
3782 { 4261 {
3783 sp = row + (png_size_t)((row_width - 1) >> 1); 4262 sp = row + (png_size_t)((row_width - 1) >> 1);
3784 dp = row + (png_size_t)row_width - 1; 4263 dp = row + (png_size_t)row_width - 1;
3785 shift = (int)((row_width & 0x01) << 2); 4264 shift = (int)((row_width & 0x01) << 2);
3786 for (i = 0; i < row_width; i++) 4265 for (i = 0; i < row_width; i++)
3787 { 4266 {
3788 value = (*sp >> shift) & 0x0f; 4267 value = (*sp >> shift) & 0x0f;
3789 *dp = (png_byte)value; 4268 *dp = (png_byte)value;
3790 if (shift == 4) 4269 if (shift == 4)
3791 { 4270 {
3792 shift = 0; 4271 shift = 0;
3793 sp--; 4272 sp--;
3794 } 4273 }
4274
3795 else 4275 else
3796 shift += 4; 4276 shift += 4;
3797 4277
3798 dp--; 4278 dp--;
3799 } 4279 }
3800 break; 4280 break;
3801 } 4281 }
4282
4283 default:
4284 break;
3802 } 4285 }
3803 row_info->bit_depth = 8; 4286 row_info->bit_depth = 8;
3804 row_info->pixel_depth = 8; 4287 row_info->pixel_depth = 8;
3805 row_info->rowbytes = row_width; 4288 row_info->rowbytes = row_width;
3806 } 4289 }
3807 switch (row_info->bit_depth) 4290
4291 if (row_info->bit_depth == 8)
3808 { 4292 {
3809 case 8:
3810 { 4293 {
3811 if (trans != NULL) 4294 if (num_trans > 0)
3812 { 4295 {
3813 sp = row + (png_size_t)row_width - 1; 4296 sp = row + (png_size_t)row_width - 1;
3814 dp = row + (png_size_t)(row_width << 2) - 1; 4297 dp = row + (png_size_t)(row_width << 2) - 1;
3815 4298
3816 for (i = 0; i < row_width; i++) 4299 for (i = 0; i < row_width; i++)
3817 { 4300 {
3818 if ((int)(*sp) >= num_trans) 4301 if ((int)(*sp) >= num_trans)
3819 *dp-- = 0xff; 4302 *dp-- = 0xff;
4303
3820 else 4304 else
3821 *dp-- = trans[*sp]; 4305 *dp-- = trans_alpha[*sp];
4306
3822 *dp-- = palette[*sp].blue; 4307 *dp-- = palette[*sp].blue;
3823 *dp-- = palette[*sp].green; 4308 *dp-- = palette[*sp].green;
3824 *dp-- = palette[*sp].red; 4309 *dp-- = palette[*sp].red;
3825 sp--; 4310 sp--;
3826 } 4311 }
3827 row_info->bit_depth = 8; 4312 row_info->bit_depth = 8;
3828 row_info->pixel_depth = 32; 4313 row_info->pixel_depth = 32;
3829 row_info->rowbytes = row_width * 4; 4314 row_info->rowbytes = row_width * 4;
3830 row_info->color_type = 6; 4315 row_info->color_type = 6;
3831 row_info->channels = 4; 4316 row_info->channels = 4;
3832 } 4317 }
4318
3833 else 4319 else
3834 { 4320 {
3835 sp = row + (png_size_t)row_width - 1; 4321 sp = row + (png_size_t)row_width - 1;
3836 dp = row + (png_size_t)(row_width * 3) - 1; 4322 dp = row + (png_size_t)(row_width * 3) - 1;
3837 4323
3838 for (i = 0; i < row_width; i++) 4324 for (i = 0; i < row_width; i++)
3839 { 4325 {
3840 *dp-- = palette[*sp].blue; 4326 *dp-- = palette[*sp].blue;
3841 *dp-- = palette[*sp].green; 4327 *dp-- = palette[*sp].green;
3842 *dp-- = palette[*sp].red; 4328 *dp-- = palette[*sp].red;
3843 sp--; 4329 sp--;
3844 } 4330 }
3845 4331
3846 row_info->bit_depth = 8; 4332 row_info->bit_depth = 8;
3847 row_info->pixel_depth = 24; 4333 row_info->pixel_depth = 24;
3848 row_info->rowbytes = row_width * 3; 4334 row_info->rowbytes = row_width * 3;
3849 row_info->color_type = 2; 4335 row_info->color_type = 2;
3850 row_info->channels = 3; 4336 row_info->channels = 3;
3851 } 4337 }
3852 break;
3853 } 4338 }
3854 } 4339 }
3855 } 4340 }
3856 } 4341 }
3857 4342
3858 /* If the bit depth < 8, it is expanded to 8. Also, if the already 4343 /* If the bit depth < 8, it is expanded to 8. Also, if the already
3859 * expanded transparency value is supplied, an alpha channel is built. 4344 * expanded transparency value is supplied, an alpha channel is built.
3860 */ 4345 */
3861 void /* PRIVATE */ 4346 static void
3862 png_do_expand(png_row_infop row_info, png_bytep row, 4347 png_do_expand(png_row_infop row_info, png_bytep row,
3863 png_color_16p trans_value) 4348 png_const_color_16p trans_color)
3864 { 4349 {
3865 int shift, value; 4350 int shift, value;
3866 png_bytep sp, dp; 4351 png_bytep sp, dp;
3867 png_uint_32 i; 4352 png_uint_32 i;
3868 png_uint_32 row_width=row_info->width; 4353 png_uint_32 row_width=row_info->width;
3869 4354
3870 png_debug(1, "in png_do_expand"); 4355 png_debug(1, "in png_do_expand");
3871 4356
3872 #ifdef PNG_USELESS_TESTS_SUPPORTED
3873 if (row != NULL && row_info != NULL)
3874 #endif
3875 { 4357 {
3876 if (row_info->color_type == PNG_COLOR_TYPE_GRAY) 4358 if (row_info->color_type == PNG_COLOR_TYPE_GRAY)
3877 { 4359 {
3878 png_uint_16 gray = (png_uint_16)(trans_value ? trans_value->gray : 0); 4360 unsigned int gray = trans_color != NULL ? trans_color->gray : 0;
3879 4361
3880 if (row_info->bit_depth < 8) 4362 if (row_info->bit_depth < 8)
3881 { 4363 {
3882 switch (row_info->bit_depth) 4364 switch (row_info->bit_depth)
3883 { 4365 {
3884 case 1: 4366 case 1:
3885 { 4367 {
3886 gray = (png_uint_16)((gray&0x01)*0xff); 4368 gray = (gray & 0x01) * 0xff;
3887 sp = row + (png_size_t)((row_width - 1) >> 3); 4369 sp = row + (png_size_t)((row_width - 1) >> 3);
3888 dp = row + (png_size_t)row_width - 1; 4370 dp = row + (png_size_t)row_width - 1;
3889 shift = 7 - (int)((row_width + 7) & 0x07); 4371 shift = 7 - (int)((row_width + 7) & 0x07);
3890 for (i = 0; i < row_width; i++) 4372 for (i = 0; i < row_width; i++)
3891 { 4373 {
3892 if ((*sp >> shift) & 0x01) 4374 if ((*sp >> shift) & 0x01)
3893 *dp = 0xff; 4375 *dp = 0xff;
4376
3894 else 4377 else
3895 *dp = 0; 4378 *dp = 0;
4379
3896 if (shift == 7) 4380 if (shift == 7)
3897 { 4381 {
3898 shift = 0; 4382 shift = 0;
3899 sp--; 4383 sp--;
3900 } 4384 }
4385
3901 else 4386 else
3902 shift++; 4387 shift++;
3903 4388
3904 dp--; 4389 dp--;
3905 } 4390 }
3906 break; 4391 break;
3907 } 4392 }
3908 4393
3909 case 2: 4394 case 2:
3910 { 4395 {
3911 gray = (png_uint_16)((gray&0x03)*0x55); 4396 gray = (gray & 0x03) * 0x55;
3912 sp = row + (png_size_t)((row_width - 1) >> 2); 4397 sp = row + (png_size_t)((row_width - 1) >> 2);
3913 dp = row + (png_size_t)row_width - 1; 4398 dp = row + (png_size_t)row_width - 1;
3914 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1); 4399 shift = (int)((3 - ((row_width + 3) & 0x03)) << 1);
3915 for (i = 0; i < row_width; i++) 4400 for (i = 0; i < row_width; i++)
3916 { 4401 {
3917 value = (*sp >> shift) & 0x03; 4402 value = (*sp >> shift) & 0x03;
3918 *dp = (png_byte)(value | (value << 2) | (value << 4) | 4403 *dp = (png_byte)(value | (value << 2) | (value << 4) |
3919 (value << 6)); 4404 (value << 6));
3920 if (shift == 6) 4405 if (shift == 6)
3921 { 4406 {
3922 shift = 0; 4407 shift = 0;
3923 sp--; 4408 sp--;
3924 } 4409 }
4410
3925 else 4411 else
3926 shift += 2; 4412 shift += 2;
3927 4413
3928 dp--; 4414 dp--;
3929 } 4415 }
3930 break; 4416 break;
3931 } 4417 }
3932 4418
3933 case 4: 4419 case 4:
3934 { 4420 {
3935 gray = (png_uint_16)((gray&0x0f)*0x11); 4421 gray = (gray & 0x0f) * 0x11;
3936 sp = row + (png_size_t)((row_width - 1) >> 1); 4422 sp = row + (png_size_t)((row_width - 1) >> 1);
3937 dp = row + (png_size_t)row_width - 1; 4423 dp = row + (png_size_t)row_width - 1;
3938 shift = (int)((1 - ((row_width + 1) & 0x01)) << 2); 4424 shift = (int)((1 - ((row_width + 1) & 0x01)) << 2);
3939 for (i = 0; i < row_width; i++) 4425 for (i = 0; i < row_width; i++)
3940 { 4426 {
3941 value = (*sp >> shift) & 0x0f; 4427 value = (*sp >> shift) & 0x0f;
3942 *dp = (png_byte)(value | (value << 4)); 4428 *dp = (png_byte)(value | (value << 4));
3943 if (shift == 4) 4429 if (shift == 4)
3944 { 4430 {
3945 shift = 0; 4431 shift = 0;
3946 sp--; 4432 sp--;
3947 } 4433 }
4434
3948 else 4435 else
3949 shift = 4; 4436 shift = 4;
3950 4437
3951 dp--; 4438 dp--;
3952 } 4439 }
3953 break; 4440 break;
3954 } 4441 }
4442
4443 default:
4444 break;
3955 } 4445 }
3956 4446
3957 row_info->bit_depth = 8; 4447 row_info->bit_depth = 8;
3958 row_info->pixel_depth = 8; 4448 row_info->pixel_depth = 8;
3959 row_info->rowbytes = row_width; 4449 row_info->rowbytes = row_width;
3960 } 4450 }
3961 4451
3962 if (trans_value != NULL) 4452 if (trans_color != NULL)
3963 { 4453 {
3964 if (row_info->bit_depth == 8) 4454 if (row_info->bit_depth == 8)
3965 { 4455 {
3966 gray = gray & 0xff; 4456 gray = gray & 0xff;
3967 sp = row + (png_size_t)row_width - 1; 4457 sp = row + (png_size_t)row_width - 1;
3968 dp = row + (png_size_t)(row_width << 1) - 1; 4458 dp = row + (png_size_t)(row_width << 1) - 1;
4459
3969 for (i = 0; i < row_width; i++) 4460 for (i = 0; i < row_width; i++)
3970 { 4461 {
3971 if (*sp == gray) 4462 if ((*sp & 0xffU) == gray)
3972 *dp-- = 0; 4463 *dp-- = 0;
4464
3973 else 4465 else
3974 *dp-- = 0xff; 4466 *dp-- = 0xff;
4467
3975 *dp-- = *sp--; 4468 *dp-- = *sp--;
3976 } 4469 }
3977 } 4470 }
3978 4471
3979 else if (row_info->bit_depth == 16) 4472 else if (row_info->bit_depth == 16)
3980 { 4473 {
3981 png_byte gray_high = (gray >> 8) & 0xff; 4474 unsigned int gray_high = (gray >> 8) & 0xff;
3982 png_byte gray_low = gray & 0xff; 4475 unsigned int gray_low = gray & 0xff;
3983 sp = row + row_info->rowbytes - 1; 4476 sp = row + row_info->rowbytes - 1;
3984 dp = row + (row_info->rowbytes << 1) - 1; 4477 dp = row + (row_info->rowbytes << 1) - 1;
3985 for (i = 0; i < row_width; i++) 4478 for (i = 0; i < row_width; i++)
3986 { 4479 {
3987 if (*(sp - 1) == gray_high && *(sp) == gray_low) 4480 if ((*(sp - 1) & 0xffU) == gray_high &&
4481 (*(sp) & 0xffU) == gray_low)
3988 { 4482 {
3989 *dp-- = 0; 4483 *dp-- = 0;
3990 *dp-- = 0; 4484 *dp-- = 0;
3991 } 4485 }
4486
3992 else 4487 else
3993 { 4488 {
3994 *dp-- = 0xff; 4489 *dp-- = 0xff;
3995 *dp-- = 0xff; 4490 *dp-- = 0xff;
3996 } 4491 }
4492
3997 *dp-- = *sp--; 4493 *dp-- = *sp--;
3998 *dp-- = *sp--; 4494 *dp-- = *sp--;
3999 } 4495 }
4000 } 4496 }
4001 4497
4002 row_info->color_type = PNG_COLOR_TYPE_GRAY_ALPHA; 4498 row_info->color_type = PNG_COLOR_TYPE_GRAY_ALPHA;
4003 row_info->channels = 2; 4499 row_info->channels = 2;
4004 row_info->pixel_depth = (png_byte)(row_info->bit_depth << 1); 4500 row_info->pixel_depth = (png_byte)(row_info->bit_depth << 1);
4005 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, 4501 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth,
4006 row_width); 4502 row_width);
4007 } 4503 }
4008 } 4504 }
4009 else if (row_info->color_type == PNG_COLOR_TYPE_RGB && trans_value) 4505 else if (row_info->color_type == PNG_COLOR_TYPE_RGB &&
4506 trans_color != NULL)
4010 { 4507 {
4011 if (row_info->bit_depth == 8) 4508 if (row_info->bit_depth == 8)
4012 { 4509 {
4013 png_byte red = trans_value->red & 0xff; 4510 png_byte red = (png_byte)(trans_color->red & 0xff);
4014 png_byte green = trans_value->green & 0xff; 4511 png_byte green = (png_byte)(trans_color->green & 0xff);
4015 png_byte blue = trans_value->blue & 0xff; 4512 png_byte blue = (png_byte)(trans_color->blue & 0xff);
4016 sp = row + (png_size_t)row_info->rowbytes - 1; 4513 sp = row + (png_size_t)row_info->rowbytes - 1;
4017 dp = row + (png_size_t)(row_width << 2) - 1; 4514 dp = row + (png_size_t)(row_width << 2) - 1;
4018 for (i = 0; i < row_width; i++) 4515 for (i = 0; i < row_width; i++)
4019 { 4516 {
4020 if (*(sp - 2) == red && *(sp - 1) == green && *(sp) == blue) 4517 if (*(sp - 2) == red && *(sp - 1) == green && *(sp) == blue)
4021 *dp-- = 0; 4518 *dp-- = 0;
4519
4022 else 4520 else
4023 *dp-- = 0xff; 4521 *dp-- = 0xff;
4522
4024 *dp-- = *sp--; 4523 *dp-- = *sp--;
4025 *dp-- = *sp--; 4524 *dp-- = *sp--;
4026 *dp-- = *sp--; 4525 *dp-- = *sp--;
4027 } 4526 }
4028 } 4527 }
4029 else if (row_info->bit_depth == 16) 4528 else if (row_info->bit_depth == 16)
4030 { 4529 {
4031 png_byte red_high = (trans_value->red >> 8) & 0xff; 4530 png_byte red_high = (png_byte)((trans_color->red >> 8) & 0xff);
4032 png_byte green_high = (trans_value->green >> 8) & 0xff; 4531 png_byte green_high = (png_byte)((trans_color->green >> 8) & 0xff);
4033 png_byte blue_high = (trans_value->blue >> 8) & 0xff; 4532 png_byte blue_high = (png_byte)((trans_color->blue >> 8) & 0xff);
4034 png_byte red_low = trans_value->red & 0xff; 4533 png_byte red_low = (png_byte)(trans_color->red & 0xff);
4035 png_byte green_low = trans_value->green & 0xff; 4534 png_byte green_low = (png_byte)(trans_color->green & 0xff);
4036 png_byte blue_low = trans_value->blue & 0xff; 4535 png_byte blue_low = (png_byte)(trans_color->blue & 0xff);
4037 sp = row + row_info->rowbytes - 1; 4536 sp = row + row_info->rowbytes - 1;
4038 dp = row + (png_size_t)(row_width << 3) - 1; 4537 dp = row + (png_size_t)(row_width << 3) - 1;
4039 for (i = 0; i < row_width; i++) 4538 for (i = 0; i < row_width; i++)
4040 { 4539 {
4041 if (*(sp - 5) == red_high && 4540 if (*(sp - 5) == red_high &&
4042 *(sp - 4) == red_low && 4541 *(sp - 4) == red_low &&
4043 *(sp - 3) == green_high && 4542 *(sp - 3) == green_high &&
4044 *(sp - 2) == green_low && 4543 *(sp - 2) == green_low &&
4045 *(sp - 1) == blue_high && 4544 *(sp - 1) == blue_high &&
4046 *(sp ) == blue_low) 4545 *(sp ) == blue_low)
4047 { 4546 {
4048 *dp-- = 0; 4547 *dp-- = 0;
4049 *dp-- = 0; 4548 *dp-- = 0;
4050 } 4549 }
4550
4051 else 4551 else
4052 { 4552 {
4053 *dp-- = 0xff; 4553 *dp-- = 0xff;
4054 *dp-- = 0xff; 4554 *dp-- = 0xff;
4055 } 4555 }
4556
4056 *dp-- = *sp--; 4557 *dp-- = *sp--;
4057 *dp-- = *sp--; 4558 *dp-- = *sp--;
4058 *dp-- = *sp--; 4559 *dp-- = *sp--;
4059 *dp-- = *sp--; 4560 *dp-- = *sp--;
4060 *dp-- = *sp--; 4561 *dp-- = *sp--;
4061 *dp-- = *sp--; 4562 *dp-- = *sp--;
4062 } 4563 }
4063 } 4564 }
4064 row_info->color_type = PNG_COLOR_TYPE_RGB_ALPHA; 4565 row_info->color_type = PNG_COLOR_TYPE_RGB_ALPHA;
4065 row_info->channels = 4; 4566 row_info->channels = 4;
4066 row_info->pixel_depth = (png_byte)(row_info->bit_depth << 2); 4567 row_info->pixel_depth = (png_byte)(row_info->bit_depth << 2);
4067 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width); 4568 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
4068 } 4569 }
4069 } 4570 }
4070 } 4571 }
4071 #endif 4572 #endif
4072 4573
4073 #ifdef PNG_READ_DITHER_SUPPORTED 4574 #ifdef PNG_READ_EXPAND_16_SUPPORTED
4074 void /* PRIVATE */ 4575 /* If the bit depth is 8 and the color type is not a palette type expand the
4075 png_do_dither(png_row_infop row_info, png_bytep row, 4576 * whole row to 16 bits. Has no effect otherwise.
4076 png_bytep palette_lookup, png_bytep dither_lookup) 4577 */
4578 static void
4579 png_do_expand_16(png_row_infop row_info, png_bytep row)
4580 {
4581 if (row_info->bit_depth == 8 &&
4582 row_info->color_type != PNG_COLOR_TYPE_PALETTE)
4583 {
4584 /* The row have a sequence of bytes containing [0..255] and we need
4585 * to turn it into another row containing [0..65535], to do this we
4586 * calculate:
4587 *
4588 * (input / 255) * 65535
4589 *
4590 * Which happens to be exactly input * 257 and this can be achieved
4591 * simply by byte replication in place (copying backwards).
4592 */
4593 png_byte *sp = row + row_info->rowbytes; /* source, last byte + 1 */
4594 png_byte *dp = sp + row_info->rowbytes; /* destination, end + 1 */
4595 while (dp > sp)
4596 dp[-2] = dp[-1] = *--sp, dp -= 2;
4597
4598 row_info->rowbytes *= 2;
4599 row_info->bit_depth = 16;
4600 row_info->pixel_depth = (png_byte)(row_info->channels * 16);
4601 }
4602 }
4603 #endif
4604
4605 #ifdef PNG_READ_QUANTIZE_SUPPORTED
4606 static void
4607 png_do_quantize(png_row_infop row_info, png_bytep row,
4608 png_const_bytep palette_lookup, png_const_bytep quantize_lookup)
4077 { 4609 {
4078 png_bytep sp, dp; 4610 png_bytep sp, dp;
4079 png_uint_32 i; 4611 png_uint_32 i;
4080 png_uint_32 row_width=row_info->width; 4612 png_uint_32 row_width=row_info->width;
4081 4613
4082 png_debug(1, "in png_do_dither"); 4614 png_debug(1, "in png_do_quantize");
4083 4615
4084 #ifdef PNG_USELESS_TESTS_SUPPORTED 4616 if (row_info->bit_depth == 8)
4085 if (row != NULL && row_info != NULL)
4086 #endif
4087 { 4617 {
4088 if (row_info->color_type == PNG_COLOR_TYPE_RGB && 4618 if (row_info->color_type == PNG_COLOR_TYPE_RGB && palette_lookup)
4089 palette_lookup && row_info->bit_depth == 8)
4090 { 4619 {
4091 int r, g, b, p; 4620 int r, g, b, p;
4092 sp = row; 4621 sp = row;
4093 dp = row; 4622 dp = row;
4094 for (i = 0; i < row_width; i++) 4623 for (i = 0; i < row_width; i++)
4095 { 4624 {
4096 r = *sp++; 4625 r = *sp++;
4097 g = *sp++; 4626 g = *sp++;
4098 b = *sp++; 4627 b = *sp++;
4099 4628
4100 /* This looks real messy, but the compiler will reduce 4629 /* This looks real messy, but the compiler will reduce
4101 * it down to a reasonable formula. For example, with 4630 * it down to a reasonable formula. For example, with
4102 * 5 bits per color, we get: 4631 * 5 bits per color, we get:
4103 * p = (((r >> 3) & 0x1f) << 10) | 4632 * p = (((r >> 3) & 0x1f) << 10) |
4104 * (((g >> 3) & 0x1f) << 5) | 4633 * (((g >> 3) & 0x1f) << 5) |
4105 * ((b >> 3) & 0x1f); 4634 * ((b >> 3) & 0x1f);
4106 */ 4635 */
4107 p = (((r >> (8 - PNG_DITHER_RED_BITS)) & 4636 p = (((r >> (8 - PNG_QUANTIZE_RED_BITS)) &
4108 ((1 << PNG_DITHER_RED_BITS) - 1)) << 4637 ((1 << PNG_QUANTIZE_RED_BITS) - 1)) <<
4109 (PNG_DITHER_GREEN_BITS + PNG_DITHER_BLUE_BITS)) | 4638 (PNG_QUANTIZE_GREEN_BITS + PNG_QUANTIZE_BLUE_BITS)) |
4110 (((g >> (8 - PNG_DITHER_GREEN_BITS)) & 4639 (((g >> (8 - PNG_QUANTIZE_GREEN_BITS)) &
4111 ((1 << PNG_DITHER_GREEN_BITS) - 1)) << 4640 ((1 << PNG_QUANTIZE_GREEN_BITS) - 1)) <<
4112 (PNG_DITHER_BLUE_BITS)) | 4641 (PNG_QUANTIZE_BLUE_BITS)) |
4113 ((b >> (8 - PNG_DITHER_BLUE_BITS)) & 4642 ((b >> (8 - PNG_QUANTIZE_BLUE_BITS)) &
4114 ((1 << PNG_DITHER_BLUE_BITS) - 1)); 4643 ((1 << PNG_QUANTIZE_BLUE_BITS) - 1));
4115 4644
4116 *dp++ = palette_lookup[p]; 4645 *dp++ = palette_lookup[p];
4117 } 4646 }
4647
4118 row_info->color_type = PNG_COLOR_TYPE_PALETTE; 4648 row_info->color_type = PNG_COLOR_TYPE_PALETTE;
4119 row_info->channels = 1; 4649 row_info->channels = 1;
4120 row_info->pixel_depth = row_info->bit_depth; 4650 row_info->pixel_depth = row_info->bit_depth;
4121 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width); 4651 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
4122 } 4652 }
4653
4123 else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA && 4654 else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA &&
4124 palette_lookup != NULL && row_info->bit_depth == 8) 4655 palette_lookup != NULL)
4125 { 4656 {
4126 int r, g, b, p; 4657 int r, g, b, p;
4127 sp = row; 4658 sp = row;
4128 dp = row; 4659 dp = row;
4129 for (i = 0; i < row_width; i++) 4660 for (i = 0; i < row_width; i++)
4130 { 4661 {
4131 r = *sp++; 4662 r = *sp++;
4132 g = *sp++; 4663 g = *sp++;
4133 b = *sp++; 4664 b = *sp++;
4134 sp++; 4665 sp++;
4135 4666
4136 p = (((r >> (8 - PNG_DITHER_RED_BITS)) & 4667 p = (((r >> (8 - PNG_QUANTIZE_RED_BITS)) &
4137 ((1 << PNG_DITHER_RED_BITS) - 1)) << 4668 ((1 << PNG_QUANTIZE_RED_BITS) - 1)) <<
4138 (PNG_DITHER_GREEN_BITS + PNG_DITHER_BLUE_BITS)) | 4669 (PNG_QUANTIZE_GREEN_BITS + PNG_QUANTIZE_BLUE_BITS)) |
4139 (((g >> (8 - PNG_DITHER_GREEN_BITS)) & 4670 (((g >> (8 - PNG_QUANTIZE_GREEN_BITS)) &
4140 ((1 << PNG_DITHER_GREEN_BITS) - 1)) << 4671 ((1 << PNG_QUANTIZE_GREEN_BITS) - 1)) <<
4141 (PNG_DITHER_BLUE_BITS)) | 4672 (PNG_QUANTIZE_BLUE_BITS)) |
4142 ((b >> (8 - PNG_DITHER_BLUE_BITS)) & 4673 ((b >> (8 - PNG_QUANTIZE_BLUE_BITS)) &
4143 ((1 << PNG_DITHER_BLUE_BITS) - 1)); 4674 ((1 << PNG_QUANTIZE_BLUE_BITS) - 1));
4144 4675
4145 *dp++ = palette_lookup[p]; 4676 *dp++ = palette_lookup[p];
4146 } 4677 }
4678
4147 row_info->color_type = PNG_COLOR_TYPE_PALETTE; 4679 row_info->color_type = PNG_COLOR_TYPE_PALETTE;
4148 row_info->channels = 1; 4680 row_info->channels = 1;
4149 row_info->pixel_depth = row_info->bit_depth; 4681 row_info->pixel_depth = row_info->bit_depth;
4150 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width); 4682 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_width);
4151 } 4683 }
4684
4152 else if (row_info->color_type == PNG_COLOR_TYPE_PALETTE && 4685 else if (row_info->color_type == PNG_COLOR_TYPE_PALETTE &&
4153 dither_lookup && row_info->bit_depth == 8) 4686 quantize_lookup)
4154 { 4687 {
4155 sp = row; 4688 sp = row;
4689
4156 for (i = 0; i < row_width; i++, sp++) 4690 for (i = 0; i < row_width; i++, sp++)
4157 { 4691 {
4158 *sp = dither_lookup[*sp]; 4692 *sp = quantize_lookup[*sp];
4159 } 4693 }
4160 } 4694 }
4161 } 4695 }
4162 } 4696 }
4163 #endif 4697 #endif /* READ_QUANTIZE */
4164 4698
4165 #ifdef PNG_FLOATING_POINT_SUPPORTED 4699 /* Transform the row. The order of transformations is significant,
4700 * and is very touchy. If you add a transformation, take care to
4701 * decide how it fits in with the other transformations here.
4702 */
4703 void /* PRIVATE */
4704 png_do_read_transformations(png_structrp png_ptr, png_row_infop row_info)
4705 {
4706 png_debug(1, "in png_do_read_transformations");
4707
4708 if (png_ptr->row_buf == NULL)
4709 {
4710 /* Prior to 1.5.4 this output row/pass where the NULL pointer is, but this
4711 * error is incredibly rare and incredibly easy to debug without this
4712 * information.
4713 */
4714 png_error(png_ptr, "NULL row buffer");
4715 }
4716
4717 /* The following is debugging; prior to 1.5.4 the code was never compiled in;
4718 * in 1.5.4 PNG_FLAG_DETECT_UNINITIALIZED was added and the macro
4719 * PNG_WARN_UNINITIALIZED_ROW removed. In 1.6 the new flag is set only for
4720 * all transformations, however in practice the ROW_INIT always gets done on
4721 * demand, if necessary.
4722 */
4723 if ((png_ptr->flags & PNG_FLAG_DETECT_UNINITIALIZED) != 0 &&
4724 (png_ptr->flags & PNG_FLAG_ROW_INIT) == 0)
4725 {
4726 /* Application has failed to call either png_read_start_image() or
4727 * png_read_update_info() after setting transforms that expand pixels.
4728 * This check added to libpng-1.2.19 (but not enabled until 1.5.4).
4729 */
4730 png_error(png_ptr, "Uninitialized row");
4731 }
4732
4733 #ifdef PNG_READ_EXPAND_SUPPORTED
4734 if ((png_ptr->transformations & PNG_EXPAND) != 0)
4735 {
4736 if (row_info->color_type == PNG_COLOR_TYPE_PALETTE)
4737 {
4738 png_do_expand_palette(row_info, png_ptr->row_buf + 1,
4739 png_ptr->palette, png_ptr->trans_alpha, png_ptr->num_trans);
4740 }
4741
4742 else
4743 {
4744 if (png_ptr->num_trans != 0 &&
4745 (png_ptr->transformations & PNG_EXPAND_tRNS) != 0)
4746 png_do_expand(row_info, png_ptr->row_buf + 1,
4747 &(png_ptr->trans_color));
4748
4749 else
4750 png_do_expand(row_info, png_ptr->row_buf + 1,
4751 NULL);
4752 }
4753 }
4754 #endif
4755
4756 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
4757 if ((png_ptr->transformations & PNG_STRIP_ALPHA) != 0 &&
4758 (png_ptr->transformations & PNG_COMPOSE) == 0 &&
4759 (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA ||
4760 row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA))
4761 png_do_strip_channel(row_info, png_ptr->row_buf + 1,
4762 0 /* at_start == false, because SWAP_ALPHA happens later */);
4763 #endif
4764
4765 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
4766 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) != 0)
4767 {
4768 int rgb_error =
4769 png_do_rgb_to_gray(png_ptr, row_info,
4770 png_ptr->row_buf + 1);
4771
4772 if (rgb_error != 0)
4773 {
4774 png_ptr->rgb_to_gray_status=1;
4775 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) ==
4776 PNG_RGB_TO_GRAY_WARN)
4777 png_warning(png_ptr, "png_do_rgb_to_gray found nongray pixel");
4778
4779 if ((png_ptr->transformations & PNG_RGB_TO_GRAY) ==
4780 PNG_RGB_TO_GRAY_ERR)
4781 png_error(png_ptr, "png_do_rgb_to_gray found nongray pixel");
4782 }
4783 }
4784 #endif
4785
4786 /* From Andreas Dilger e-mail to png-implement, 26 March 1998:
4787 *
4788 * In most cases, the "simple transparency" should be done prior to doing
4789 * gray-to-RGB, or you will have to test 3x as many bytes to check if a
4790 * pixel is transparent. You would also need to make sure that the
4791 * transparency information is upgraded to RGB.
4792 *
4793 * To summarize, the current flow is:
4794 * - Gray + simple transparency -> compare 1 or 2 gray bytes and composite
4795 * with background "in place" if transparent,
4796 * convert to RGB if necessary
4797 * - Gray + alpha -> composite with gray background and remove alpha bytes,
4798 * convert to RGB if necessary
4799 *
4800 * To support RGB backgrounds for gray images we need:
4801 * - Gray + simple transparency -> convert to RGB + simple transparency,
4802 * compare 3 or 6 bytes and composite with
4803 * background "in place" if transparent
4804 * (3x compare/pixel compared to doing
4805 * composite with gray bkgrnd)
4806 * - Gray + alpha -> convert to RGB + alpha, composite with background and
4807 * remove alpha bytes (3x float
4808 * operations/pixel compared with composite
4809 * on gray background)
4810 *
4811 * Greg's change will do this. The reason it wasn't done before is for
4812 * performance, as this increases the per-pixel operations. If we would check
4813 * in advance if the background was gray or RGB, and position the gray-to-RGB
4814 * transform appropriately, then it would save a lot of work/time.
4815 */
4816
4817 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
4818 /* If gray -> RGB, do so now only if background is non-gray; else do later
4819 * for performance reasons
4820 */
4821 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) != 0 &&
4822 (png_ptr->mode & PNG_BACKGROUND_IS_GRAY) == 0)
4823 png_do_gray_to_rgb(row_info, png_ptr->row_buf + 1);
4824 #endif
4825
4826 #if defined(PNG_READ_BACKGROUND_SUPPORTED) ||\
4827 defined(PNG_READ_ALPHA_MODE_SUPPORTED)
4828 if ((png_ptr->transformations & PNG_COMPOSE) != 0)
4829 png_do_compose(row_info, png_ptr->row_buf + 1, png_ptr);
4830 #endif
4831
4166 #ifdef PNG_READ_GAMMA_SUPPORTED 4832 #ifdef PNG_READ_GAMMA_SUPPORTED
4167 static PNG_CONST int png_gamma_shift[] = 4833 if ((png_ptr->transformations & PNG_GAMMA) != 0 &&
4168 {0x10, 0x21, 0x42, 0x84, 0x110, 0x248, 0x550, 0xff0, 0x00}; 4834 #ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
4169 4835 /* Because RGB_TO_GRAY does the gamma transform. */
4170 /* We build the 8- or 16-bit gamma tables here. Note that for 16-bit 4836 (png_ptr->transformations & PNG_RGB_TO_GRAY) == 0 &&
4171 * tables, we don't make a full table if we are reducing to 8-bit in 4837 #endif
4172 * the future. Note also how the gamma_16 tables are segmented so that 4838 #if defined(PNG_READ_BACKGROUND_SUPPORTED) ||\
4173 * we don't need to allocate > 64K chunks for a full 16-bit table. 4839 defined(PNG_READ_ALPHA_MODE_SUPPORTED)
4174 * 4840 /* Because PNG_COMPOSE does the gamma transform if there is something to
4175 * See the PNG extensions document for an integer algorithm for creating 4841 * do (if there is an alpha channel or transparency.)
4176 * the gamma tables. Maybe we will implement that here someday. 4842 */
4177 * 4843 !((png_ptr->transformations & PNG_COMPOSE) != 0 &&
4178 * We should only reach this point if 4844 ((png_ptr->num_trans != 0) ||
4179 * 4845 (png_ptr->color_type & PNG_COLOR_MASK_ALPHA) != 0)) &&
4180 * the file_gamma is known (i.e., the gAMA or sRGB chunk is present, 4846 #endif
4181 * or the application has provided a file_gamma) 4847 /* Because png_init_read_transformations transforms the palette, unless
4182 * 4848 * RGB_TO_GRAY will do the transform.
4183 * AND 4849 */
4184 * { 4850 (png_ptr->color_type != PNG_COLOR_TYPE_PALETTE))
4185 * the screen_gamma is known 4851 png_do_gamma(row_info, png_ptr->row_buf + 1, png_ptr);
4186 * OR 4852 #endif
4187 * 4853
4188 * RGB_to_gray transformation is being performed 4854 #ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
4189 * } 4855 if ((png_ptr->transformations & PNG_STRIP_ALPHA) != 0 &&
4190 * 4856 (png_ptr->transformations & PNG_COMPOSE) != 0 &&
4191 * AND 4857 (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA ||
4192 * { 4858 row_info->color_type == PNG_COLOR_TYPE_GRAY_ALPHA))
4193 * the screen_gamma is different from the reciprocal of the 4859 png_do_strip_channel(row_info, png_ptr->row_buf + 1,
4194 * file_gamma by more than the specified threshold 4860 0 /* at_start == false, because SWAP_ALPHA happens later */);
4195 * 4861 #endif
4196 * OR 4862
4197 * 4863 #ifdef PNG_READ_ALPHA_MODE_SUPPORTED
4198 * a background color has been specified and the file_gamma 4864 if ((png_ptr->transformations & PNG_ENCODE_ALPHA) != 0 &&
4199 * and screen_gamma are not 1.0, within the specified threshold. 4865 (row_info->color_type & PNG_COLOR_MASK_ALPHA) != 0)
4200 * } 4866 png_do_encode_alpha(row_info, png_ptr->row_buf + 1, png_ptr);
4201 */ 4867 #endif
4202 4868
4203 void /* PRIVATE */ 4869 #ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
4204 png_build_gamma_table(png_structp png_ptr) 4870 if ((png_ptr->transformations & PNG_SCALE_16_TO_8) != 0)
4205 { 4871 png_do_scale_16_to_8(row_info, png_ptr->row_buf + 1);
4206 png_debug(1, "in png_build_gamma_table"); 4872 #endif
4207 4873
4208 if (png_ptr->bit_depth <= 8) 4874 #ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
4209 { 4875 /* There is no harm in doing both of these because only one has any effect,
4210 int i; 4876 * by putting the 'scale' option first if the app asks for scale (either by
4211 double g; 4877 * calling the API or in a TRANSFORM flag) this is what happens.
4212 4878 */
4213 if (png_ptr->screen_gamma > .000001) 4879 if ((png_ptr->transformations & PNG_16_TO_8) != 0)
4214 g = 1.0 / (png_ptr->gamma * png_ptr->screen_gamma); 4880 png_do_chop(row_info, png_ptr->row_buf + 1);
4215 4881 #endif
4216 else 4882
4217 g = 1.0; 4883 #ifdef PNG_READ_QUANTIZE_SUPPORTED
4218 4884 if ((png_ptr->transformations & PNG_QUANTIZE) != 0)
4219 png_ptr->gamma_table = (png_bytep)png_malloc(png_ptr, 4885 {
4220 (png_uint_32)256); 4886 png_do_quantize(row_info, png_ptr->row_buf + 1,
4221 4887 png_ptr->palette_lookup, png_ptr->quantize_index);
4222 for (i = 0; i < 256; i++) 4888
4223 { 4889 if (row_info->rowbytes == 0)
4224 png_ptr->gamma_table[i] = (png_byte)(pow((double)i / 255.0, 4890 png_error(png_ptr, "png_do_quantize returned rowbytes=0");
4225 g) * 255.0 + .5); 4891 }
4226 } 4892 #endif /* READ_QUANTIZE */
4227 4893
4228 #if defined(PNG_READ_BACKGROUND_SUPPORTED) || \ 4894 #ifdef PNG_READ_EXPAND_16_SUPPORTED
4229 defined(PNG_READ_RGB_TO_GRAY_SUPPORTED) 4895 /* Do the expansion now, after all the arithmetic has been done. Notice
4230 if (png_ptr->transformations & ((PNG_BACKGROUND) | PNG_RGB_TO_GRAY)) 4896 * that previous transformations can handle the PNG_EXPAND_16 flag if this
4231 { 4897 * is efficient (particularly true in the case of gamma correction, where
4232 4898 * better accuracy results faster!)
4233 g = 1.0 / (png_ptr->gamma); 4899 */
4234 4900 if ((png_ptr->transformations & PNG_EXPAND_16) != 0)
4235 png_ptr->gamma_to_1 = (png_bytep)png_malloc(png_ptr, 4901 png_do_expand_16(row_info, png_ptr->row_buf + 1);
4236 (png_uint_32)256); 4902 #endif
4237 4903
4238 for (i = 0; i < 256; i++) 4904 #ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
4239 { 4905 /* NOTE: moved here in 1.5.4 (from much later in this list.) */
4240 png_ptr->gamma_to_1[i] = (png_byte)(pow((double)i / 255.0, 4906 if ((png_ptr->transformations & PNG_GRAY_TO_RGB) != 0 &&
4241 g) * 255.0 + .5); 4907 (png_ptr->mode & PNG_BACKGROUND_IS_GRAY) != 0)
4242 } 4908 png_do_gray_to_rgb(row_info, png_ptr->row_buf + 1);
4243 4909 #endif
4244 4910
4245 png_ptr->gamma_from_1 = (png_bytep)png_malloc(png_ptr, 4911 #ifdef PNG_READ_INVERT_SUPPORTED
4246 (png_uint_32)256); 4912 if ((png_ptr->transformations & PNG_INVERT_MONO) != 0)
4247 4913 png_do_invert(row_info, png_ptr->row_buf + 1);
4248 if (png_ptr->screen_gamma > 0.000001) 4914 #endif
4249 g = 1.0 / png_ptr->screen_gamma; 4915
4250 4916 #ifdef PNG_READ_INVERT_ALPHA_SUPPORTED
4251 else 4917 if ((png_ptr->transformations & PNG_INVERT_ALPHA) != 0)
4252 g = png_ptr->gamma; /* Probably doing rgb_to_gray */ 4918 png_do_read_invert_alpha(row_info, png_ptr->row_buf + 1);
4253 4919 #endif
4254 for (i = 0; i < 256; i++) 4920
4255 { 4921 #ifdef PNG_READ_SHIFT_SUPPORTED
4256 png_ptr->gamma_from_1[i] = (png_byte)(pow((double)i / 255.0, 4922 if ((png_ptr->transformations & PNG_SHIFT) != 0)
4257 g) * 255.0 + .5); 4923 png_do_unshift(row_info, png_ptr->row_buf + 1,
4258 4924 &(png_ptr->shift));
4259 } 4925 #endif
4260 } 4926
4261 #endif /* PNG_READ_BACKGROUND_SUPPORTED || PNG_RGB_TO_GRAY_SUPPORTED */ 4927 #ifdef PNG_READ_PACK_SUPPORTED
4262 } 4928 if ((png_ptr->transformations & PNG_PACK) != 0)
4263 else 4929 png_do_unpack(row_info, png_ptr->row_buf + 1);
4264 { 4930 #endif
4265 double g; 4931
4266 int i, j, shift, num; 4932 #ifdef PNG_READ_CHECK_FOR_INVALID_INDEX_SUPPORTED
4267 int sig_bit; 4933 /* Added at libpng-1.5.10 */
4268 png_uint_32 ig; 4934 if (row_info->color_type == PNG_COLOR_TYPE_PALETTE &&
4269 4935 png_ptr->num_palette_max >= 0)
4270 if (png_ptr->color_type & PNG_COLOR_MASK_COLOR) 4936 png_do_check_palette_indexes(png_ptr, row_info);
4271 { 4937 #endif
4272 sig_bit = (int)png_ptr->sig_bit.red; 4938
4273 4939 #ifdef PNG_READ_BGR_SUPPORTED
4274 if ((int)png_ptr->sig_bit.green > sig_bit) 4940 if ((png_ptr->transformations & PNG_BGR) != 0)
4275 sig_bit = png_ptr->sig_bit.green; 4941 png_do_bgr(row_info, png_ptr->row_buf + 1);
4276 4942 #endif
4277 if ((int)png_ptr->sig_bit.blue > sig_bit) 4943
4278 sig_bit = png_ptr->sig_bit.blue; 4944 #ifdef PNG_READ_PACKSWAP_SUPPORTED
4279 } 4945 if ((png_ptr->transformations & PNG_PACKSWAP) != 0)
4280 else 4946 png_do_packswap(row_info, png_ptr->row_buf + 1);
4281 { 4947 #endif
4282 sig_bit = (int)png_ptr->sig_bit.gray; 4948
4283 } 4949 #ifdef PNG_READ_FILLER_SUPPORTED
4284 4950 if ((png_ptr->transformations & PNG_FILLER) != 0)
4285 if (sig_bit > 0) 4951 png_do_read_filler(row_info, png_ptr->row_buf + 1,
4286 shift = 16 - sig_bit; 4952 (png_uint_32)png_ptr->filler, png_ptr->flags);
4287 4953 #endif
4288 else 4954
4289 shift = 0; 4955 #ifdef PNG_READ_SWAP_ALPHA_SUPPORTED
4290 4956 if ((png_ptr->transformations & PNG_SWAP_ALPHA) != 0)
4291 if (png_ptr->transformations & PNG_16_TO_8) 4957 png_do_read_swap_alpha(row_info, png_ptr->row_buf + 1);
4292 { 4958 #endif
4293 if (shift < (16 - PNG_MAX_GAMMA_8)) 4959
4294 shift = (16 - PNG_MAX_GAMMA_8); 4960 #ifdef PNG_READ_16BIT_SUPPORTED
4295 } 4961 #ifdef PNG_READ_SWAP_SUPPORTED
4296 4962 if ((png_ptr->transformations & PNG_SWAP_BYTES) != 0)
4297 if (shift > 8) 4963 png_do_swap(row_info, png_ptr->row_buf + 1);
4298 shift = 8; 4964 #endif
4299 4965 #endif
4300 if (shift < 0) 4966
4301 shift = 0; 4967 #ifdef PNG_READ_USER_TRANSFORM_SUPPORTED
4302 4968 if ((png_ptr->transformations & PNG_USER_TRANSFORM) != 0)
4303 png_ptr->gamma_shift = (png_byte)shift; 4969 {
4304 4970 if (png_ptr->read_user_transform_fn != NULL)
4305 num = (1 << (8 - shift)); 4971 (*(png_ptr->read_user_transform_fn)) /* User read transform function */
4306 4972 (png_ptr, /* png_ptr */
4307 if (png_ptr->screen_gamma > .000001) 4973 row_info, /* row_info: */
4308 g = 1.0 / (png_ptr->gamma * png_ptr->screen_gamma); 4974 /* png_uint_32 width; width of row */
4309 else 4975 /* png_size_t rowbytes; number of bytes in row */
4310 g = 1.0; 4976 /* png_byte color_type; color type of pixels */
4311 4977 /* png_byte bit_depth; bit depth of samples */
4312 png_ptr->gamma_16_table = (png_uint_16pp)png_calloc(png_ptr, 4978 /* png_byte channels; number of channels (1-4) */
4313 (png_uint_32)(num * png_sizeof(png_uint_16p))); 4979 /* png_byte pixel_depth; bits per pixel (depth*channels) */
4314 4980 png_ptr->row_buf + 1); /* start of pixel data for row */
4315 if (png_ptr->transformations & (PNG_16_TO_8 | PNG_BACKGROUND)) 4981 #ifdef PNG_USER_TRANSFORM_PTR_SUPPORTED
4316 { 4982 if (png_ptr->user_transform_depth != 0)
4317 double fin, fout; 4983 row_info->bit_depth = png_ptr->user_transform_depth;
4318 png_uint_32 last, max; 4984
4319 4985 if (png_ptr->user_transform_channels != 0)
4320 for (i = 0; i < num; i++) 4986 row_info->channels = png_ptr->user_transform_channels;
4321 { 4987 #endif
4322 png_ptr->gamma_16_table[i] = (png_uint_16p)png_malloc(png_ptr, 4988 row_info->pixel_depth = (png_byte)(row_info->bit_depth *
4323 (png_uint_32)(256 * png_sizeof(png_uint_16))); 4989 row_info->channels);
4324 } 4990
4325 4991 row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth, row_info->width);
4326 g = 1.0 / g; 4992 }
4327 last = 0; 4993 #endif
4328 for (i = 0; i < 256; i++)
4329 {
4330 fout = ((double)i + 0.5) / 256.0;
4331 fin = pow(fout, g);
4332 max = (png_uint_32)(fin * (double)((png_uint_32)num << 8));
4333 while (last <= max)
4334 {
4335 png_ptr->gamma_16_table[(int)(last & (0xff >> shift))]
4336 [(int)(last >> (8 - shift))] = (png_uint_16)(
4337 (png_uint_16)i | ((png_uint_16)i << 8));
4338 last++;
4339 }
4340 }
4341 while (last < ((png_uint_32)num << 8))
4342 {
4343 png_ptr->gamma_16_table[(int)(last & (0xff >> shift))]
4344 [(int)(last >> (8 - shift))] = (png_uint_16)65535L;
4345 last++;
4346 }
4347 }
4348 else
4349 {
4350 for (i = 0; i < num; i++)
4351 {
4352 png_ptr->gamma_16_table[i] = (png_uint_16p)png_malloc(png_ptr,
4353 (png_uint_32)(256 * png_sizeof(png_uint_16)));
4354
4355 ig = (((png_uint_32)i * (png_uint_32)png_gamma_shift[shift]) >> 4);
4356
4357 for (j = 0; j < 256; j++)
4358 {
4359 png_ptr->gamma_16_table[i][j] =
4360 (png_uint_16)(pow((double)(ig + ((png_uint_32)j << 8)) /
4361 65535.0, g) * 65535.0 + .5);
4362 }
4363 }
4364 }
4365
4366 #if defined(PNG_READ_BACKGROUND_SUPPORTED) || \
4367 defined(PNG_READ_RGB_TO_GRAY_SUPPORTED)
4368 if (png_ptr->transformations & (PNG_BACKGROUND | PNG_RGB_TO_GRAY))
4369 {
4370
4371 g = 1.0 / (png_ptr->gamma);
4372
4373 png_ptr->gamma_16_to_1 = (png_uint_16pp)png_calloc(png_ptr,
4374 (png_uint_32)(num * png_sizeof(png_uint_16p )));
4375
4376 for (i = 0; i < num; i++)
4377 {
4378 png_ptr->gamma_16_to_1[i] = (png_uint_16p)png_malloc(png_ptr,
4379 (png_uint_32)(256 * png_sizeof(png_uint_16)));
4380
4381 ig = (((png_uint_32)i *
4382 (png_uint_32)png_gamma_shift[shift]) >> 4);
4383 for (j = 0; j < 256; j++)
4384 {
4385 png_ptr->gamma_16_to_1[i][j] =
4386 (png_uint_16)(pow((double)(ig + ((png_uint_32)j << 8)) /
4387 65535.0, g) * 65535.0 + .5);
4388 }
4389 }
4390
4391 if (png_ptr->screen_gamma > 0.000001)
4392 g = 1.0 / png_ptr->screen_gamma;
4393
4394 else
4395 g = png_ptr->gamma; /* Probably doing rgb_to_gray */
4396
4397 png_ptr->gamma_16_from_1 = (png_uint_16pp)png_calloc(png_ptr,
4398 (png_uint_32)(num * png_sizeof(png_uint_16p)));
4399
4400 for (i = 0; i < num; i++)
4401 {
4402 png_ptr->gamma_16_from_1[i] = (png_uint_16p)png_malloc(png_ptr,
4403 (png_uint_32)(256 * png_sizeof(png_uint_16)));
4404
4405 ig = (((png_uint_32)i *
4406 (png_uint_32)png_gamma_shift[shift]) >> 4);
4407
4408 for (j = 0; j < 256; j++)
4409 {
4410 png_ptr->gamma_16_from_1[i][j] =
4411 (png_uint_16)(pow((double)(ig + ((png_uint_32)j << 8)) /
4412 65535.0, g) * 65535.0 + .5);
4413 }
4414 }
4415 }
4416 #endif /* PNG_READ_BACKGROUND_SUPPORTED || PNG_RGB_TO_GRAY_SUPPORTED */
4417 }
4418 } 4994 }
4419 #endif 4995
4420 /* To do: install integer version of png_build_gamma_table here */ 4996 #endif /* READ_TRANSFORMS */
4421 #endif 4997 #endif /* READ */
4422
4423 #ifdef PNG_MNG_FEATURES_SUPPORTED
4424 /* Undoes intrapixel differencing */
4425 void /* PRIVATE */
4426 png_do_read_intrapixel(png_row_infop row_info, png_bytep row)
4427 {
4428 png_debug(1, "in png_do_read_intrapixel");
4429
4430 if (
4431 #ifdef PNG_USELESS_TESTS_SUPPORTED
4432 row != NULL && row_info != NULL &&
4433 #endif
4434 (row_info->color_type & PNG_COLOR_MASK_COLOR))
4435 {
4436 int bytes_per_pixel;
4437 png_uint_32 row_width = row_info->width;
4438 if (row_info->bit_depth == 8)
4439 {
4440 png_bytep rp;
4441 png_uint_32 i;
4442
4443 if (row_info->color_type == PNG_COLOR_TYPE_RGB)
4444 bytes_per_pixel = 3;
4445
4446 else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
4447 bytes_per_pixel = 4;
4448
4449 else
4450 return;
4451
4452 for (i = 0, rp = row; i < row_width; i++, rp += bytes_per_pixel)
4453 {
4454 *(rp) = (png_byte)((256 + *rp + *(rp+1))&0xff);
4455 *(rp+2) = (png_byte)((256 + *(rp+2) + *(rp+1))&0xff);
4456 }
4457 }
4458 else if (row_info->bit_depth == 16)
4459 {
4460 png_bytep rp;
4461 png_uint_32 i;
4462
4463 if (row_info->color_type == PNG_COLOR_TYPE_RGB)
4464 bytes_per_pixel = 6;
4465
4466 else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
4467 bytes_per_pixel = 8;
4468
4469 else
4470 return;
4471
4472 for (i = 0, rp = row; i < row_width; i++, rp += bytes_per_pixel)
4473 {
4474 png_uint_32 s0 = (*(rp ) << 8) | *(rp + 1);
4475 png_uint_32 s1 = (*(rp + 2) << 8) | *(rp + 3);
4476 png_uint_32 s2 = (*(rp + 4) << 8) | *(rp + 5);
4477 png_uint_32 red = (png_uint_32)((s0 + s1 + 65536L) & 0xffffL);
4478 png_uint_32 blue = (png_uint_32)((s2 + s1 + 65536L) & 0xffffL);
4479 *(rp ) = (png_byte)((red >> 8) & 0xff);
4480 *(rp+1) = (png_byte)(red & 0xff);
4481 *(rp+4) = (png_byte)((blue >> 8) & 0xff);
4482 *(rp+5) = (png_byte)(blue & 0xff);
4483 }
4484 }
4485 }
4486 }
4487 #endif /* PNG_MNG_FEATURES_SUPPORTED */
4488 #endif /* PNG_READ_SUPPORTED */
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