1 /*
2 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3 % %
4 % %
5 % L AAA Y Y EEEEE RRRR %
6 % L A A Y Y E R R %
7 % L AAAAA Y EEE RRRR %
8 % L A A Y E R R %
9 % LLLLL A A Y EEEEE R R %
10 % %
11 % MagickCore Image Layering Methods %
12 % %
13 % Software Design %
14 % Cristy %
15 % Anthony Thyssen %
16 % January 2006 %
17 % %
18 % %
19 % Copyright 1999-2016 ImageMagick Studio LLC, a non-profit organization %
20 % dedicated to making software imaging solutions freely available. %
21 % %
22 % You may not use this file except in compliance with the License. You may %
23 % obtain a copy of the License at %
24 % %
25 % http://www.imagemagick.org/script/license.php %
26 % %
27 % Unless required by applicable law or agreed to in writing, software %
28 % distributed under the License is distributed on an "AS IS" BASIS, %
29 % WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. %
30 % See the License for the specific language governing permissions and %
31 % limitations under the License. %
32 % %
33 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
34 %
35 */
36
37 /*
38 Include declarations.
39 */
40 #include "MagickCore/studio.h"
41 #include "MagickCore/artifact.h"
42 #include "MagickCore/cache.h"
43 #include "MagickCore/channel.h"
44 #include "MagickCore/color.h"
45 #include "MagickCore/color-private.h"
46 #include "MagickCore/composite.h"
47 #include "MagickCore/effect.h"
48 #include "MagickCore/exception.h"
49 #include "MagickCore/exception-private.h"
50 #include "MagickCore/geometry.h"
51 #include "MagickCore/image.h"
52 #include "MagickCore/layer.h"
53 #include "MagickCore/list.h"
54 #include "MagickCore/memory_.h"
55 #include "MagickCore/monitor.h"
56 #include "MagickCore/monitor-private.h"
57 #include "MagickCore/option.h"
58 #include "MagickCore/pixel-accessor.h"
59 #include "MagickCore/property.h"
60 #include "MagickCore/profile.h"
61 #include "MagickCore/resource_.h"
62 #include "MagickCore/resize.h"
63 #include "MagickCore/statistic.h"
64 #include "MagickCore/string_.h"
65 #include "MagickCore/transform.h"
66
67 /*
68 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
69 % %
70 % %
71 % %
72 + C l e a r B o u n d s %
73 % %
74 % %
75 % %
76 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
77 %
78 % ClearBounds() Clear the area specified by the bounds in an image to
79 % transparency. This typically used to handle Background Disposal for the
80 % previous frame in an animation sequence.
81 %
82 % Warning: no bounds checks are performed, except for the null or missed
83 % image, for images that don't change. in all other cases bound must fall
84 % within the image.
85 %
86 % The format is:
87 %
88 % void ClearBounds(Image *image,RectangleInfo *bounds,
89 % ExceptionInfo *exception)
90 %
91 % A description of each parameter follows:
92 %
93 % o image: the image to had the area cleared in
94 %
95 % o bounds: the area to be clear within the imag image
96 %
97 % o exception: return any errors or warnings in this structure.
98 %
99 */
ClearBounds(Image * image,RectangleInfo * bounds,ExceptionInfo * exception)100 static void ClearBounds(Image *image,RectangleInfo *bounds,
101 ExceptionInfo *exception)
102 {
103 ssize_t
104 y;
105
106 if (bounds->x < 0)
107 return;
108 if (image->alpha_trait == UndefinedPixelTrait)
109 (void) SetImageAlphaChannel(image,OpaqueAlphaChannel,exception);
110 for (y=0; y < (ssize_t) bounds->height; y++)
111 {
112 register ssize_t
113 x;
114
115 register Quantum
116 *magick_restrict q;
117
118 q=GetAuthenticPixels(image,bounds->x,bounds->y+y,bounds->width,1,exception);
119 if (q == (Quantum *) NULL)
120 break;
121 for (x=0; x < (ssize_t) bounds->width; x++)
122 {
123 SetPixelAlpha(image,TransparentAlpha,q);
124 q+=GetPixelChannels(image);
125 }
126 if (SyncAuthenticPixels(image,exception) == MagickFalse)
127 break;
128 }
129 }
130
131 /*
132 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
133 % %
134 % %
135 % %
136 + I s B o u n d s C l e a r e d %
137 % %
138 % %
139 % %
140 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
141 %
142 % IsBoundsCleared() tests whether any pixel in the bounds given, gets cleared
143 % when going from the first image to the second image. This typically used
144 % to check if a proposed disposal method will work successfully to generate
145 % the second frame image from the first disposed form of the previous frame.
146 %
147 % Warning: no bounds checks are performed, except for the null or missed
148 % image, for images that don't change. in all other cases bound must fall
149 % within the image.
150 %
151 % The format is:
152 %
153 % MagickBooleanType IsBoundsCleared(const Image *image1,
154 % const Image *image2,RectangleInfo bounds,ExceptionInfo *exception)
155 %
156 % A description of each parameter follows:
157 %
158 % o image1, image 2: the images to check for cleared pixels
159 %
160 % o bounds: the area to be clear within the imag image
161 %
162 % o exception: return any errors or warnings in this structure.
163 %
164 */
IsBoundsCleared(const Image * image1,const Image * image2,RectangleInfo * bounds,ExceptionInfo * exception)165 static MagickBooleanType IsBoundsCleared(const Image *image1,
166 const Image *image2,RectangleInfo *bounds,ExceptionInfo *exception)
167 {
168 register const Quantum
169 *p,
170 *q;
171
172 register ssize_t
173 x;
174
175 ssize_t
176 y;
177
178 if (bounds->x < 0)
179 return(MagickFalse);
180 for (y=0; y < (ssize_t) bounds->height; y++)
181 {
182 p=GetVirtualPixels(image1,bounds->x,bounds->y+y,bounds->width,1,exception);
183 q=GetVirtualPixels(image2,bounds->x,bounds->y+y,bounds->width,1,exception);
184 if ((p == (const Quantum *) NULL) || (q == (Quantum *) NULL))
185 break;
186 for (x=0; x < (ssize_t) bounds->width; x++)
187 {
188 if ((GetPixelAlpha(image1,p) >= (Quantum) (QuantumRange/2)) &&
189 (GetPixelAlpha(image2,q) < (Quantum) (QuantumRange/2)))
190 break;
191 p+=GetPixelChannels(image1);
192 q+=GetPixelChannels(image2);
193 }
194 if (x < (ssize_t) bounds->width)
195 break;
196 }
197 return(y < (ssize_t) bounds->height ? MagickTrue : MagickFalse);
198 }
199
200 /*
201 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
202 % %
203 % %
204 % %
205 % C o a l e s c e I m a g e s %
206 % %
207 % %
208 % %
209 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
210 %
211 % CoalesceImages() composites a set of images while respecting any page
212 % offsets and disposal methods. GIF, MIFF, and MNG animation sequences
213 % typically start with an image background and each subsequent image
214 % varies in size and offset. A new image sequence is returned with all
215 % images the same size as the first images virtual canvas and composited
216 % with the next image in the sequence.
217 %
218 % The format of the CoalesceImages method is:
219 %
220 % Image *CoalesceImages(Image *image,ExceptionInfo *exception)
221 %
222 % A description of each parameter follows:
223 %
224 % o image: the image sequence.
225 %
226 % o exception: return any errors or warnings in this structure.
227 %
228 */
CoalesceImages(const Image * image,ExceptionInfo * exception)229 MagickExport Image *CoalesceImages(const Image *image,ExceptionInfo *exception)
230 {
231 Image
232 *coalesce_image,
233 *dispose_image,
234 *previous;
235
236 register Image
237 *next;
238
239 RectangleInfo
240 bounds;
241
242 /*
243 Coalesce the image sequence.
244 */
245 assert(image != (Image *) NULL);
246 assert(image->signature == MagickCoreSignature);
247 if (image->debug != MagickFalse)
248 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
249 assert(exception != (ExceptionInfo *) NULL);
250 assert(exception->signature == MagickCoreSignature);
251 next=GetFirstImageInList(image);
252 bounds=next->page;
253 if (bounds.width == 0)
254 {
255 bounds.width=next->columns;
256 if (bounds.x > 0)
257 bounds.width+=bounds.x;
258 }
259 if (bounds.height == 0)
260 {
261 bounds.height=next->rows;
262 if (bounds.y > 0)
263 bounds.height+=bounds.y;
264 }
265 bounds.x=0;
266 bounds.y=0;
267 coalesce_image=CloneImage(next,bounds.width,bounds.height,MagickTrue,
268 exception);
269 if (coalesce_image == (Image *) NULL)
270 return((Image *) NULL);
271 coalesce_image->background_color.alpha=(Quantum) TransparentAlpha;
272 (void) SetImageBackgroundColor(coalesce_image,exception);
273 coalesce_image->alpha_trait=next->alpha_trait;
274 coalesce_image->page=bounds;
275 coalesce_image->dispose=NoneDispose;
276 /*
277 Coalesce rest of the images.
278 */
279 dispose_image=CloneImage(coalesce_image,0,0,MagickTrue,exception);
280 (void) CompositeImage(coalesce_image,next,CopyCompositeOp,MagickTrue,
281 next->page.x,next->page.y,exception);
282 next=GetNextImageInList(next);
283 for ( ; next != (Image *) NULL; next=GetNextImageInList(next))
284 {
285 /*
286 Determine the bounds that was overlaid in the previous image.
287 */
288 previous=GetPreviousImageInList(next);
289 bounds=previous->page;
290 bounds.width=previous->columns;
291 bounds.height=previous->rows;
292 if (bounds.x < 0)
293 {
294 bounds.width+=bounds.x;
295 bounds.x=0;
296 }
297 if ((ssize_t) (bounds.x+bounds.width) > (ssize_t) coalesce_image->columns)
298 bounds.width=coalesce_image->columns-bounds.x;
299 if (bounds.y < 0)
300 {
301 bounds.height+=bounds.y;
302 bounds.y=0;
303 }
304 if ((ssize_t) (bounds.y+bounds.height) > (ssize_t) coalesce_image->rows)
305 bounds.height=coalesce_image->rows-bounds.y;
306 /*
307 Replace the dispose image with the new coalesced image.
308 */
309 if (GetPreviousImageInList(next)->dispose != PreviousDispose)
310 {
311 dispose_image=DestroyImage(dispose_image);
312 dispose_image=CloneImage(coalesce_image,0,0,MagickTrue,exception);
313 if (dispose_image == (Image *) NULL)
314 {
315 coalesce_image=DestroyImageList(coalesce_image);
316 return((Image *) NULL);
317 }
318 }
319 /*
320 Clear the overlaid area of the coalesced bounds for background disposal
321 */
322 if (next->previous->dispose == BackgroundDispose)
323 ClearBounds(dispose_image,&bounds,exception);
324 /*
325 Next image is the dispose image, overlaid with next frame in sequence.
326 */
327 coalesce_image->next=CloneImage(dispose_image,0,0,MagickTrue,exception);
328 coalesce_image->next->previous=coalesce_image;
329 previous=coalesce_image;
330 coalesce_image=GetNextImageInList(coalesce_image);
331 (void) CompositeImage(coalesce_image,next,
332 next->alpha_trait != UndefinedPixelTrait ? OverCompositeOp : CopyCompositeOp,
333 MagickTrue,next->page.x,next->page.y,exception);
334 (void) CloneImageProfiles(coalesce_image,next);
335 (void) CloneImageProperties(coalesce_image,next);
336 (void) CloneImageArtifacts(coalesce_image,next);
337 coalesce_image->page=previous->page;
338 /*
339 If a pixel goes opaque to transparent, use background dispose.
340 */
341 if (IsBoundsCleared(previous,coalesce_image,&bounds,exception) != MagickFalse)
342 coalesce_image->dispose=BackgroundDispose;
343 else
344 coalesce_image->dispose=NoneDispose;
345 previous->dispose=coalesce_image->dispose;
346 }
347 dispose_image=DestroyImage(dispose_image);
348 return(GetFirstImageInList(coalesce_image));
349 }
350
351 /*
352 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
353 % %
354 % %
355 % %
356 % D i s p o s e I m a g e s %
357 % %
358 % %
359 % %
360 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
361 %
362 % DisposeImages() returns the coalesced frames of a GIF animation as it would
363 % appear after the GIF dispose method of that frame has been applied. That is
364 % it returned the appearance of each frame before the next is overlaid.
365 %
366 % The format of the DisposeImages method is:
367 %
368 % Image *DisposeImages(Image *image,ExceptionInfo *exception)
369 %
370 % A description of each parameter follows:
371 %
372 % o images: the image sequence.
373 %
374 % o exception: return any errors or warnings in this structure.
375 %
376 */
DisposeImages(const Image * images,ExceptionInfo * exception)377 MagickExport Image *DisposeImages(const Image *images,ExceptionInfo *exception)
378 {
379 Image
380 *dispose_image,
381 *dispose_images;
382
383 RectangleInfo
384 bounds;
385
386 register Image
387 *image,
388 *next;
389
390 /*
391 Run the image through the animation sequence
392 */
393 assert(images != (Image *) NULL);
394 assert(images->signature == MagickCoreSignature);
395 if (images->debug != MagickFalse)
396 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",images->filename);
397 assert(exception != (ExceptionInfo *) NULL);
398 assert(exception->signature == MagickCoreSignature);
399 image=GetFirstImageInList(images);
400 dispose_image=CloneImage(image,image->page.width,image->page.height,
401 MagickTrue,exception);
402 if (dispose_image == (Image *) NULL)
403 return((Image *) NULL);
404 dispose_image->page=image->page;
405 dispose_image->page.x=0;
406 dispose_image->page.y=0;
407 dispose_image->dispose=NoneDispose;
408 dispose_image->background_color.alpha=(Quantum) TransparentAlpha;
409 (void) SetImageBackgroundColor(dispose_image,exception);
410 dispose_images=NewImageList();
411 for (next=image; image != (Image *) NULL; image=GetNextImageInList(image))
412 {
413 Image
414 *current_image;
415
416 /*
417 Overlay this frame's image over the previous disposal image.
418 */
419 current_image=CloneImage(dispose_image,0,0,MagickTrue,exception);
420 if (current_image == (Image *) NULL)
421 {
422 dispose_images=DestroyImageList(dispose_images);
423 dispose_image=DestroyImage(dispose_image);
424 return((Image *) NULL);
425 }
426 (void) CompositeImage(current_image,next,
427 next->alpha_trait != UndefinedPixelTrait ? OverCompositeOp : CopyCompositeOp,
428 MagickTrue,next->page.x,next->page.y,exception);
429 /*
430 Handle Background dispose: image is displayed for the delay period.
431 */
432 if (next->dispose == BackgroundDispose)
433 {
434 bounds=next->page;
435 bounds.width=next->columns;
436 bounds.height=next->rows;
437 if (bounds.x < 0)
438 {
439 bounds.width+=bounds.x;
440 bounds.x=0;
441 }
442 if ((ssize_t) (bounds.x+bounds.width) > (ssize_t) current_image->columns)
443 bounds.width=current_image->columns-bounds.x;
444 if (bounds.y < 0)
445 {
446 bounds.height+=bounds.y;
447 bounds.y=0;
448 }
449 if ((ssize_t) (bounds.y+bounds.height) > (ssize_t) current_image->rows)
450 bounds.height=current_image->rows-bounds.y;
451 ClearBounds(current_image,&bounds,exception);
452 }
453 /*
454 Select the appropriate previous/disposed image.
455 */
456 if (next->dispose == PreviousDispose)
457 current_image=DestroyImage(current_image);
458 else
459 {
460 dispose_image=DestroyImage(dispose_image);
461 dispose_image=current_image;
462 current_image=(Image *) NULL;
463 }
464 /*
465 Save the dispose image just calculated for return.
466 */
467 {
468 Image
469 *dispose;
470
471 dispose=CloneImage(dispose_image,0,0,MagickTrue,exception);
472 if (dispose == (Image *) NULL)
473 {
474 dispose_images=DestroyImageList(dispose_images);
475 dispose_image=DestroyImage(dispose_image);
476 return((Image *) NULL);
477 }
478 (void) CloneImageProfiles(dispose,next);
479 (void) CloneImageProperties(dispose,next);
480 (void) CloneImageArtifacts(dispose,next);
481 dispose->page.x=0;
482 dispose->page.y=0;
483 dispose->dispose=next->dispose;
484 AppendImageToList(&dispose_images,dispose);
485 }
486 }
487 dispose_image=DestroyImage(dispose_image);
488 return(GetFirstImageInList(dispose_images));
489 }
490
491 /*
492 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
493 % %
494 % %
495 % %
496 + C o m p a r e P i x e l s %
497 % %
498 % %
499 % %
500 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
501 %
502 % ComparePixels() Compare the two pixels and return true if the pixels
503 % differ according to the given LayerType comparision method.
504 %
505 % This currently only used internally by CompareImagesBounds(). It is
506 % doubtful that this sub-routine will be useful outside this module.
507 %
508 % The format of the ComparePixels method is:
509 %
510 % MagickBooleanType *ComparePixels(const LayerMethod method,
511 % const PixelInfo *p,const PixelInfo *q)
512 %
513 % A description of each parameter follows:
514 %
515 % o method: What differences to look for. Must be one of
516 % CompareAnyLayer, CompareClearLayer, CompareOverlayLayer.
517 %
518 % o p, q: the pixels to test for appropriate differences.
519 %
520 */
521
ComparePixels(const LayerMethod method,const PixelInfo * p,const PixelInfo * q)522 static MagickBooleanType ComparePixels(const LayerMethod method,
523 const PixelInfo *p,const PixelInfo *q)
524 {
525 double
526 o1,
527 o2;
528
529 /*
530 Any change in pixel values
531 */
532 if (method == CompareAnyLayer)
533 return((MagickBooleanType)(IsFuzzyEquivalencePixelInfo(p,q) == MagickFalse));
534
535 o1 = (p->alpha_trait != UndefinedPixelTrait) ? p->alpha : OpaqueAlpha;
536 o2 = (q->alpha_trait != UndefinedPixelTrait) ? q->alpha : OpaqueAlpha;
537 /*
538 Pixel goes from opaque to transprency.
539 */
540 if (method == CompareClearLayer)
541 return((MagickBooleanType) ( (o1 <= ((double) QuantumRange/2.0)) &&
542 (o2 > ((double) QuantumRange/2.0)) ) );
543 /*
544 Overlay would change first pixel by second.
545 */
546 if (method == CompareOverlayLayer)
547 {
548 if (o2 > ((double) QuantumRange/2.0))
549 return MagickFalse;
550 return((MagickBooleanType) (IsFuzzyEquivalencePixelInfo(p,q) == MagickFalse));
551 }
552 return(MagickFalse);
553 }
554
555
556 /*
557 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
558 % %
559 % %
560 % %
561 + C o m p a r e I m a g e B o u n d s %
562 % %
563 % %
564 % %
565 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
566 %
567 % CompareImagesBounds() Given two images return the smallest rectangular area
568 % by which the two images differ, accourding to the given 'Compare...'
569 % layer method.
570 %
571 % This currently only used internally in this module, but may eventually
572 % be used by other modules.
573 %
574 % The format of the CompareImagesBounds method is:
575 %
576 % RectangleInfo *CompareImagesBounds(const LayerMethod method,
577 % const Image *image1, const Image *image2, ExceptionInfo *exception)
578 %
579 % A description of each parameter follows:
580 %
581 % o method: What differences to look for. Must be one of CompareAnyLayer,
582 % CompareClearLayer, CompareOverlayLayer.
583 %
584 % o image1, image2: the two images to compare.
585 %
586 % o exception: return any errors or warnings in this structure.
587 %
588 */
589
CompareImagesBounds(const Image * image1,const Image * image2,const LayerMethod method,ExceptionInfo * exception)590 static RectangleInfo CompareImagesBounds(const Image *image1,
591 const Image *image2,const LayerMethod method,ExceptionInfo *exception)
592 {
593 RectangleInfo
594 bounds;
595
596 PixelInfo
597 pixel1,
598 pixel2;
599
600 register const Quantum
601 *p,
602 *q;
603
604 register ssize_t
605 x;
606
607 ssize_t
608 y;
609
610 /*
611 Set bounding box of the differences between images.
612 */
613 GetPixelInfo(image1,&pixel1);
614 GetPixelInfo(image2,&pixel2);
615 for (x=0; x < (ssize_t) image1->columns; x++)
616 {
617 p=GetVirtualPixels(image1,x,0,1,image1->rows,exception);
618 q=GetVirtualPixels(image2,x,0,1,image2->rows,exception);
619 if ((p == (const Quantum *) NULL) ||
620 (q == (Quantum *) NULL))
621 break;
622 for (y=0; y < (ssize_t) image1->rows; y++)
623 {
624 GetPixelInfoPixel(image1,p,&pixel1);
625 GetPixelInfoPixel(image2,q,&pixel2);
626 if (ComparePixels(method,&pixel1,&pixel2))
627 break;
628 p+=GetPixelChannels(image1);
629 q+=GetPixelChannels(image2);
630 }
631 if (y < (ssize_t) image1->rows)
632 break;
633 }
634 if (x >= (ssize_t) image1->columns)
635 {
636 /*
637 Images are identical, return a null image.
638 */
639 bounds.x=-1;
640 bounds.y=-1;
641 bounds.width=1;
642 bounds.height=1;
643 return(bounds);
644 }
645 bounds.x=x;
646 for (x=(ssize_t) image1->columns-1; x >= 0; x--)
647 {
648 p=GetVirtualPixels(image1,x,0,1,image1->rows,exception);
649 q=GetVirtualPixels(image2,x,0,1,image2->rows,exception);
650 if ((p == (const Quantum *) NULL) ||
651 (q == (Quantum *) NULL))
652 break;
653 for (y=0; y < (ssize_t) image1->rows; y++)
654 {
655 GetPixelInfoPixel(image1,p,&pixel1);
656 GetPixelInfoPixel(image2,q,&pixel2);
657 if (ComparePixels(method,&pixel1,&pixel2))
658 break;
659 p+=GetPixelChannels(image1);
660 q+=GetPixelChannels(image2);
661 }
662 if (y < (ssize_t) image1->rows)
663 break;
664 }
665 bounds.width=(size_t) (x-bounds.x+1);
666 for (y=0; y < (ssize_t) image1->rows; y++)
667 {
668 p=GetVirtualPixels(image1,0,y,image1->columns,1,exception);
669 q=GetVirtualPixels(image2,0,y,image2->columns,1,exception);
670 if ((p == (const Quantum *) NULL) ||
671 (q == (Quantum *) NULL))
672 break;
673 for (x=0; x < (ssize_t) image1->columns; x++)
674 {
675 GetPixelInfoPixel(image1,p,&pixel1);
676 GetPixelInfoPixel(image2,q,&pixel2);
677 if (ComparePixels(method,&pixel1,&pixel2))
678 break;
679 p+=GetPixelChannels(image1);
680 q+=GetPixelChannels(image2);
681 }
682 if (x < (ssize_t) image1->columns)
683 break;
684 }
685 bounds.y=y;
686 for (y=(ssize_t) image1->rows-1; y >= 0; y--)
687 {
688 p=GetVirtualPixels(image1,0,y,image1->columns,1,exception);
689 q=GetVirtualPixels(image2,0,y,image2->columns,1,exception);
690 if ((p == (const Quantum *) NULL) ||
691 (q == (Quantum *) NULL))
692 break;
693 for (x=0; x < (ssize_t) image1->columns; x++)
694 {
695 GetPixelInfoPixel(image1,p,&pixel1);
696 GetPixelInfoPixel(image2,q,&pixel2);
697 if (ComparePixels(method,&pixel1,&pixel2))
698 break;
699 p+=GetPixelChannels(image1);
700 q+=GetPixelChannels(image2);
701 }
702 if (x < (ssize_t) image1->columns)
703 break;
704 }
705 bounds.height=(size_t) (y-bounds.y+1);
706 return(bounds);
707 }
708
709 /*
710 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
711 % %
712 % %
713 % %
714 % C o m p a r e I m a g e L a y e r s %
715 % %
716 % %
717 % %
718 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
719 %
720 % CompareImagesLayers() compares each image with the next in a sequence and
721 % returns the minimum bounding region of all the pixel differences (of the
722 % LayerMethod specified) it discovers.
723 %
724 % Images do NOT have to be the same size, though it is best that all the
725 % images are 'coalesced' (images are all the same size, on a flattened
726 % canvas, so as to represent exactly how an specific frame should look).
727 %
728 % No GIF dispose methods are applied, so GIF animations must be coalesced
729 % before applying this image operator to find differences to them.
730 %
731 % The format of the CompareImagesLayers method is:
732 %
733 % Image *CompareImagesLayers(const Image *images,
734 % const LayerMethod method,ExceptionInfo *exception)
735 %
736 % A description of each parameter follows:
737 %
738 % o image: the image.
739 %
740 % o method: the layers type to compare images with. Must be one of...
741 % CompareAnyLayer, CompareClearLayer, CompareOverlayLayer.
742 %
743 % o exception: return any errors or warnings in this structure.
744 %
745 */
746
CompareImagesLayers(const Image * image,const LayerMethod method,ExceptionInfo * exception)747 MagickExport Image *CompareImagesLayers(const Image *image,
748 const LayerMethod method, ExceptionInfo *exception)
749 {
750 Image
751 *image_a,
752 *image_b,
753 *layers;
754
755 RectangleInfo
756 *bounds;
757
758 register const Image
759 *next;
760
761 register ssize_t
762 i;
763
764 assert(image != (const Image *) NULL);
765 assert(image->signature == MagickCoreSignature);
766 if (image->debug != MagickFalse)
767 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
768 assert(exception != (ExceptionInfo *) NULL);
769 assert(exception->signature == MagickCoreSignature);
770 assert((method == CompareAnyLayer) ||
771 (method == CompareClearLayer) ||
772 (method == CompareOverlayLayer));
773 /*
774 Allocate bounds memory.
775 */
776 next=GetFirstImageInList(image);
777 bounds=(RectangleInfo *) AcquireQuantumMemory((size_t)
778 GetImageListLength(next),sizeof(*bounds));
779 if (bounds == (RectangleInfo *) NULL)
780 ThrowImageException(ResourceLimitError,"MemoryAllocationFailed");
781 /*
782 Set up first comparision images.
783 */
784 image_a=CloneImage(next,next->page.width,next->page.height,
785 MagickTrue,exception);
786 if (image_a == (Image *) NULL)
787 {
788 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
789 return((Image *) NULL);
790 }
791 image_a->background_color.alpha=(Quantum) TransparentAlpha;
792 (void) SetImageBackgroundColor(image_a,exception);
793 image_a->page=next->page;
794 image_a->page.x=0;
795 image_a->page.y=0;
796 (void) CompositeImage(image_a,next,CopyCompositeOp,MagickTrue,next->page.x,
797 next->page.y,exception);
798 /*
799 Compute the bounding box of changes for the later images
800 */
801 i=0;
802 next=GetNextImageInList(next);
803 for ( ; next != (const Image *) NULL; next=GetNextImageInList(next))
804 {
805 image_b=CloneImage(image_a,0,0,MagickTrue,exception);
806 if (image_b == (Image *) NULL)
807 {
808 image_a=DestroyImage(image_a);
809 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
810 return((Image *) NULL);
811 }
812 (void) CompositeImage(image_a,next,CopyCompositeOp,MagickTrue,next->page.x,
813 next->page.y,exception);
814 bounds[i]=CompareImagesBounds(image_b,image_a,method,exception);
815 image_b=DestroyImage(image_b);
816 i++;
817 }
818 image_a=DestroyImage(image_a);
819 /*
820 Clone first image in sequence.
821 */
822 next=GetFirstImageInList(image);
823 layers=CloneImage(next,0,0,MagickTrue,exception);
824 if (layers == (Image *) NULL)
825 {
826 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
827 return((Image *) NULL);
828 }
829 /*
830 Deconstruct the image sequence.
831 */
832 i=0;
833 next=GetNextImageInList(next);
834 for ( ; next != (const Image *) NULL; next=GetNextImageInList(next))
835 {
836 if ((bounds[i].x == -1) && (bounds[i].y == -1) &&
837 (bounds[i].width == 1) && (bounds[i].height == 1))
838 {
839 /*
840 An empty frame is returned from CompareImageBounds(), which means the
841 current frame is identical to the previous frame.
842 */
843 i++;
844 continue;
845 }
846 image_a=CloneImage(next,0,0,MagickTrue,exception);
847 if (image_a == (Image *) NULL)
848 break;
849 image_b=CropImage(image_a,&bounds[i],exception);
850 image_a=DestroyImage(image_a);
851 if (image_b == (Image *) NULL)
852 break;
853 AppendImageToList(&layers,image_b);
854 i++;
855 }
856 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
857 if (next != (Image *) NULL)
858 {
859 layers=DestroyImageList(layers);
860 return((Image *) NULL);
861 }
862 return(GetFirstImageInList(layers));
863 }
864
865 /*
866 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
867 % %
868 % %
869 % %
870 + O p t i m i z e L a y e r F r a m e s %
871 % %
872 % %
873 % %
874 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
875 %
876 % OptimizeLayerFrames() takes a coalesced GIF animation, and compares each
877 % frame against the three different 'disposal' forms of the previous frame.
878 % From this it then attempts to select the smallest cropped image and
879 % disposal method needed to reproduce the resulting image.
880 %
881 % Note that this not easy, and may require the expansion of the bounds
882 % of previous frame, simply clear pixels for the next animation frame to
883 % transparency according to the selected dispose method.
884 %
885 % The format of the OptimizeLayerFrames method is:
886 %
887 % Image *OptimizeLayerFrames(const Image *image,
888 % const LayerMethod method, ExceptionInfo *exception)
889 %
890 % A description of each parameter follows:
891 %
892 % o image: the image.
893 %
894 % o method: the layers technique to optimize with. Must be one of...
895 % OptimizeImageLayer, or OptimizePlusLayer. The Plus form allows
896 % the addition of extra 'zero delay' frames to clear pixels from
897 % the previous frame, and the removal of frames that done change,
898 % merging the delay times together.
899 %
900 % o exception: return any errors or warnings in this structure.
901 %
902 */
903 /*
904 Define a 'fake' dispose method where the frame is duplicated, (for
905 OptimizePlusLayer) with a extra zero time delay frame which does a
906 BackgroundDisposal to clear the pixels that need to be cleared.
907 */
908 #define DupDispose ((DisposeType)9)
909 /*
910 Another 'fake' dispose method used to removed frames that don't change.
911 */
912 #define DelDispose ((DisposeType)8)
913
914 #define DEBUG_OPT_FRAME 0
915
OptimizeLayerFrames(const Image * image,const LayerMethod method,ExceptionInfo * exception)916 static Image *OptimizeLayerFrames(const Image *image,
917 const LayerMethod method, ExceptionInfo *exception)
918 {
919 ExceptionInfo
920 *sans_exception;
921
922 Image
923 *prev_image,
924 *dup_image,
925 *bgnd_image,
926 *optimized_image;
927
928 RectangleInfo
929 try_bounds,
930 bgnd_bounds,
931 dup_bounds,
932 *bounds;
933
934 MagickBooleanType
935 add_frames,
936 try_cleared,
937 cleared;
938
939 DisposeType
940 *disposals;
941
942 register const Image
943 *curr;
944
945 register ssize_t
946 i;
947
948 assert(image != (const Image *) NULL);
949 assert(image->signature == MagickCoreSignature);
950 if (image->debug != MagickFalse)
951 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
952 assert(exception != (ExceptionInfo *) NULL);
953 assert(exception->signature == MagickCoreSignature);
954 assert(method == OptimizeLayer ||
955 method == OptimizeImageLayer ||
956 method == OptimizePlusLayer);
957 /*
958 Are we allowed to add/remove frames from animation?
959 */
960 add_frames=method == OptimizePlusLayer ? MagickTrue : MagickFalse;
961 /*
962 Ensure all the images are the same size.
963 */
964 curr=GetFirstImageInList(image);
965 for (; curr != (Image *) NULL; curr=GetNextImageInList(curr))
966 {
967 if ((curr->columns != image->columns) || (curr->rows != image->rows))
968 ThrowImageException(OptionError,"ImagesAreNotTheSameSize");
969 /*
970 FUTURE: also check that image is also fully coalesced (full page)
971 Though as long as they are the same size it should not matter.
972 */
973 }
974 /*
975 Allocate memory (times 2 if we allow the use of frame duplications)
976 */
977 curr=GetFirstImageInList(image);
978 bounds=(RectangleInfo *) AcquireQuantumMemory((size_t)
979 GetImageListLength(curr),(add_frames != MagickFalse ? 2UL : 1UL)*
980 sizeof(*bounds));
981 if (bounds == (RectangleInfo *) NULL)
982 ThrowImageException(ResourceLimitError,"MemoryAllocationFailed");
983 disposals=(DisposeType *) AcquireQuantumMemory((size_t)
984 GetImageListLength(image),(add_frames != MagickFalse ? 2UL : 1UL)*
985 sizeof(*disposals));
986 if (disposals == (DisposeType *) NULL)
987 {
988 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
989 ThrowImageException(ResourceLimitError,"MemoryAllocationFailed");
990 }
991 /*
992 Initialise Previous Image as fully transparent
993 */
994 prev_image=CloneImage(curr,curr->page.width,curr->page.height,
995 MagickTrue,exception);
996 if (prev_image == (Image *) NULL)
997 {
998 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
999 disposals=(DisposeType *) RelinquishMagickMemory(disposals);
1000 return((Image *) NULL);
1001 }
1002 prev_image->page=curr->page; /* ERROR: <-- should not be need, but is! */
1003 prev_image->page.x=0;
1004 prev_image->page.y=0;
1005 prev_image->dispose=NoneDispose;
1006 prev_image->background_color.alpha_trait=BlendPixelTrait;
1007 prev_image->background_color.alpha=(Quantum) TransparentAlpha;
1008 (void) SetImageBackgroundColor(prev_image,exception);
1009 /*
1010 Figure out the area of overlay of the first frame
1011 No pixel could be cleared as all pixels are already cleared.
1012 */
1013 #if DEBUG_OPT_FRAME
1014 i=0;
1015 (void) FormatLocaleFile(stderr, "frame %.20g :-\n", (double) i);
1016 #endif
1017 disposals[0]=NoneDispose;
1018 bounds[0]=CompareImagesBounds(prev_image,curr,CompareAnyLayer,exception);
1019 #if DEBUG_OPT_FRAME
1020 (void) FormatLocaleFile(stderr, "overlay: %.20gx%.20g%+.20g%+.20g\n\n",
1021 (double) bounds[i].width,(double) bounds[i].height,
1022 (double) bounds[i].x,(double) bounds[i].y );
1023 #endif
1024 /*
1025 Compute the bounding box of changes for each pair of images.
1026 */
1027 i=1;
1028 bgnd_image=(Image *) NULL;
1029 dup_image=(Image *) NULL;
1030 dup_bounds.width=0;
1031 dup_bounds.height=0;
1032 dup_bounds.x=0;
1033 dup_bounds.y=0;
1034 curr=GetNextImageInList(curr);
1035 for ( ; curr != (const Image *) NULL; curr=GetNextImageInList(curr))
1036 {
1037 #if DEBUG_OPT_FRAME
1038 (void) FormatLocaleFile(stderr, "frame %.20g :-\n", (double) i);
1039 #endif
1040 /*
1041 Assume none disposal is the best
1042 */
1043 bounds[i]=CompareImagesBounds(curr->previous,curr,CompareAnyLayer,exception);
1044 cleared=IsBoundsCleared(curr->previous,curr,&bounds[i],exception);
1045 disposals[i-1]=NoneDispose;
1046 #if DEBUG_OPT_FRAME
1047 (void) FormatLocaleFile(stderr, "overlay: %.20gx%.20g%+.20g%+.20g%s%s\n",
1048 (double) bounds[i].width,(double) bounds[i].height,
1049 (double) bounds[i].x,(double) bounds[i].y,
1050 bounds[i].x < 0?" (unchanged)":"",
1051 cleared?" (pixels cleared)":"");
1052 #endif
1053 if ( bounds[i].x < 0 ) {
1054 /*
1055 Image frame is exactly the same as the previous frame!
1056 If not adding frames leave it to be cropped down to a null image.
1057 Otherwise mark previous image for deleted, transfering its crop bounds
1058 to the current image.
1059 */
1060 if ( add_frames && i>=2 ) {
1061 disposals[i-1]=DelDispose;
1062 disposals[i]=NoneDispose;
1063 bounds[i]=bounds[i-1];
1064 i++;
1065 continue;
1066 }
1067 }
1068 else
1069 {
1070 /*
1071 Compare a none disposal against a previous disposal
1072 */
1073 try_bounds=CompareImagesBounds(prev_image,curr,CompareAnyLayer,exception);
1074 try_cleared=IsBoundsCleared(prev_image,curr,&try_bounds,exception);
1075 #if DEBUG_OPT_FRAME
1076 (void) FormatLocaleFile(stderr, "test_prev: %.20gx%.20g%+.20g%+.20g%s\n",
1077 (double) try_bounds.width,(double) try_bounds.height,
1078 (double) try_bounds.x,(double) try_bounds.y,
1079 try_cleared?" (pixels were cleared)":"");
1080 #endif
1081 if ( (!try_cleared && cleared ) ||
1082 try_bounds.width * try_bounds.height
1083 < bounds[i].width * bounds[i].height )
1084 {
1085 cleared=try_cleared;
1086 bounds[i]=try_bounds;
1087 disposals[i-1]=PreviousDispose;
1088 #if DEBUG_OPT_FRAME
1089 (void) FormatLocaleFile(stderr, "previous: accepted\n");
1090 } else {
1091 (void) FormatLocaleFile(stderr, "previous: rejected\n");
1092 #endif
1093 }
1094
1095 /*
1096 If we are allowed lets try a complex frame duplication.
1097 It is useless if the previous image already clears pixels correctly.
1098 This method will always clear all the pixels that need to be cleared.
1099 */
1100 dup_bounds.width=dup_bounds.height=0; /* no dup, no pixel added */
1101 if ( add_frames )
1102 {
1103 dup_image=CloneImage(curr->previous,curr->previous->page.width,
1104 curr->previous->page.height,MagickTrue,exception);
1105 if (dup_image == (Image *) NULL)
1106 {
1107 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
1108 disposals=(DisposeType *) RelinquishMagickMemory(disposals);
1109 prev_image=DestroyImage(prev_image);
1110 return((Image *) NULL);
1111 }
1112 dup_bounds=CompareImagesBounds(dup_image,curr,CompareClearLayer,exception);
1113 ClearBounds(dup_image,&dup_bounds,exception);
1114 try_bounds=CompareImagesBounds(dup_image,curr,CompareAnyLayer,exception);
1115 if ( cleared ||
1116 dup_bounds.width*dup_bounds.height
1117 +try_bounds.width*try_bounds.height
1118 < bounds[i].width * bounds[i].height )
1119 {
1120 cleared=MagickFalse;
1121 bounds[i]=try_bounds;
1122 disposals[i-1]=DupDispose;
1123 /* to be finalised later, if found to be optimial */
1124 }
1125 else
1126 dup_bounds.width=dup_bounds.height=0;
1127 }
1128 /*
1129 Now compare against a simple background disposal
1130 */
1131 bgnd_image=CloneImage(curr->previous,curr->previous->page.width,
1132 curr->previous->page.height,MagickTrue,exception);
1133 if (bgnd_image == (Image *) NULL)
1134 {
1135 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
1136 disposals=(DisposeType *) RelinquishMagickMemory(disposals);
1137 prev_image=DestroyImage(prev_image);
1138 if ( dup_image != (Image *) NULL)
1139 dup_image=DestroyImage(dup_image);
1140 return((Image *) NULL);
1141 }
1142 bgnd_bounds=bounds[i-1]; /* interum bounds of the previous image */
1143 ClearBounds(bgnd_image,&bgnd_bounds,exception);
1144 try_bounds=CompareImagesBounds(bgnd_image,curr,CompareAnyLayer,exception);
1145 try_cleared=IsBoundsCleared(bgnd_image,curr,&try_bounds,exception);
1146 #if DEBUG_OPT_FRAME
1147 (void) FormatLocaleFile(stderr, "background: %s\n",
1148 try_cleared?"(pixels cleared)":"");
1149 #endif
1150 if ( try_cleared )
1151 {
1152 /*
1153 Straight background disposal failed to clear pixels needed!
1154 Lets try expanding the disposal area of the previous frame, to
1155 include the pixels that are cleared. This guaranteed
1156 to work, though may not be the most optimized solution.
1157 */
1158 try_bounds=CompareImagesBounds(curr->previous,curr,CompareClearLayer,exception);
1159 #if DEBUG_OPT_FRAME
1160 (void) FormatLocaleFile(stderr, "expand_clear: %.20gx%.20g%+.20g%+.20g%s\n",
1161 (double) try_bounds.width,(double) try_bounds.height,
1162 (double) try_bounds.x,(double) try_bounds.y,
1163 try_bounds.x<0?" (no expand nessary)":"");
1164 #endif
1165 if ( bgnd_bounds.x < 0 )
1166 bgnd_bounds = try_bounds;
1167 else
1168 {
1169 #if DEBUG_OPT_FRAME
1170 (void) FormatLocaleFile(stderr, "expand_bgnd: %.20gx%.20g%+.20g%+.20g\n",
1171 (double) bgnd_bounds.width,(double) bgnd_bounds.height,
1172 (double) bgnd_bounds.x,(double) bgnd_bounds.y );
1173 #endif
1174 if ( try_bounds.x < bgnd_bounds.x )
1175 {
1176 bgnd_bounds.width+= bgnd_bounds.x-try_bounds.x;
1177 if ( bgnd_bounds.width < try_bounds.width )
1178 bgnd_bounds.width = try_bounds.width;
1179 bgnd_bounds.x = try_bounds.x;
1180 }
1181 else
1182 {
1183 try_bounds.width += try_bounds.x - bgnd_bounds.x;
1184 if ( bgnd_bounds.width < try_bounds.width )
1185 bgnd_bounds.width = try_bounds.width;
1186 }
1187 if ( try_bounds.y < bgnd_bounds.y )
1188 {
1189 bgnd_bounds.height += bgnd_bounds.y - try_bounds.y;
1190 if ( bgnd_bounds.height < try_bounds.height )
1191 bgnd_bounds.height = try_bounds.height;
1192 bgnd_bounds.y = try_bounds.y;
1193 }
1194 else
1195 {
1196 try_bounds.height += try_bounds.y - bgnd_bounds.y;
1197 if ( bgnd_bounds.height < try_bounds.height )
1198 bgnd_bounds.height = try_bounds.height;
1199 }
1200 #if DEBUG_OPT_FRAME
1201 (void) FormatLocaleFile(stderr, " to : %.20gx%.20g%+.20g%+.20g\n",
1202 (double) bgnd_bounds.width,(double) bgnd_bounds.height,
1203 (double) bgnd_bounds.x,(double) bgnd_bounds.y );
1204 #endif
1205 }
1206 ClearBounds(bgnd_image,&bgnd_bounds,exception);
1207 #if DEBUG_OPT_FRAME
1208 /* Something strange is happening with a specific animation
1209 * CompareAnyLayers (normal method) and CompareClearLayers returns the whole
1210 * image, which is not posibly correct! As verified by previous tests.
1211 * Something changed beyond the bgnd_bounds clearing. But without being able
1212 * to see, or writet he image at this point it is hard to tell what is wrong!
1213 * Only CompareOverlay seemed to return something sensible.
1214 */
1215 try_bounds=CompareImagesBounds(bgnd_image,curr,CompareClearLayer,exception);
1216 (void) FormatLocaleFile(stderr, "expand_ctst: %.20gx%.20g%+.20g%+.20g\n",
1217 (double) try_bounds.width,(double) try_bounds.height,
1218 (double) try_bounds.x,(double) try_bounds.y );
1219 try_bounds=CompareImagesBounds(bgnd_image,curr,CompareAnyLayer,exception);
1220 try_cleared=IsBoundsCleared(bgnd_image,curr,&try_bounds,exception);
1221 (void) FormatLocaleFile(stderr, "expand_any : %.20gx%.20g%+.20g%+.20g%s\n",
1222 (double) try_bounds.width,(double) try_bounds.height,
1223 (double) try_bounds.x,(double) try_bounds.y,
1224 try_cleared?" (pixels cleared)":"");
1225 #endif
1226 try_bounds=CompareImagesBounds(bgnd_image,curr,CompareOverlayLayer,exception);
1227 #if DEBUG_OPT_FRAME
1228 try_cleared=IsBoundsCleared(bgnd_image,curr,&try_bounds,exception);
1229 (void) FormatLocaleFile(stderr, "expand_test: %.20gx%.20g%+.20g%+.20g%s\n",
1230 (double) try_bounds.width,(double) try_bounds.height,
1231 (double) try_bounds.x,(double) try_bounds.y,
1232 try_cleared?" (pixels cleared)":"");
1233 #endif
1234 }
1235 /*
1236 Test if this background dispose is smaller than any of the
1237 other methods we tryed before this (including duplicated frame)
1238 */
1239 if ( cleared ||
1240 bgnd_bounds.width*bgnd_bounds.height
1241 +try_bounds.width*try_bounds.height
1242 < bounds[i-1].width*bounds[i-1].height
1243 +dup_bounds.width*dup_bounds.height
1244 +bounds[i].width*bounds[i].height )
1245 {
1246 cleared=MagickFalse;
1247 bounds[i-1]=bgnd_bounds;
1248 bounds[i]=try_bounds;
1249 if ( disposals[i-1] == DupDispose )
1250 dup_image=DestroyImage(dup_image);
1251 disposals[i-1]=BackgroundDispose;
1252 #if DEBUG_OPT_FRAME
1253 (void) FormatLocaleFile(stderr, "expand_bgnd: accepted\n");
1254 } else {
1255 (void) FormatLocaleFile(stderr, "expand_bgnd: reject\n");
1256 #endif
1257 }
1258 }
1259 /*
1260 Finalise choice of dispose, set new prev_image,
1261 and junk any extra images as appropriate,
1262 */
1263 if ( disposals[i-1] == DupDispose )
1264 {
1265 if (bgnd_image != (Image *) NULL)
1266 bgnd_image=DestroyImage(bgnd_image);
1267 prev_image=DestroyImage(prev_image);
1268 prev_image=dup_image, dup_image=(Image *) NULL;
1269 bounds[i+1]=bounds[i];
1270 bounds[i]=dup_bounds;
1271 disposals[i-1]=DupDispose;
1272 disposals[i]=BackgroundDispose;
1273 i++;
1274 }
1275 else
1276 {
1277 if ( dup_image != (Image *) NULL)
1278 dup_image=DestroyImage(dup_image);
1279 if ( disposals[i-1] != PreviousDispose )
1280 prev_image=DestroyImage(prev_image);
1281 if ( disposals[i-1] == BackgroundDispose )
1282 prev_image=bgnd_image, bgnd_image=(Image *) NULL;
1283 if (bgnd_image != (Image *) NULL)
1284 bgnd_image=DestroyImage(bgnd_image);
1285 if ( disposals[i-1] == NoneDispose )
1286 {
1287 prev_image=CloneImage(curr->previous,curr->previous->page.width,
1288 curr->previous->page.height,MagickTrue,exception);
1289 if (prev_image == (Image *) NULL)
1290 {
1291 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
1292 disposals=(DisposeType *) RelinquishMagickMemory(disposals);
1293 return((Image *) NULL);
1294 }
1295 }
1296
1297 }
1298 assert(prev_image != (Image *) NULL);
1299 disposals[i]=disposals[i-1];
1300 #if DEBUG_OPT_FRAME
1301 (void) FormatLocaleFile(stderr, "final %.20g : %s %.20gx%.20g%+.20g%+.20g\n",
1302 (double) i-1,
1303 CommandOptionToMnemonic(MagickDisposeOptions, disposals[i-1]),
1304 (double) bounds[i-1].width, (double) bounds[i-1].height,
1305 (double) bounds[i-1].x, (double) bounds[i-1].y );
1306 #endif
1307 #if DEBUG_OPT_FRAME
1308 (void) FormatLocaleFile(stderr, "interum %.20g : %s %.20gx%.20g%+.20g%+.20g\n",
1309 (double) i,
1310 CommandOptionToMnemonic(MagickDisposeOptions, disposals[i]),
1311 (double) bounds[i].width, (double) bounds[i].height,
1312 (double) bounds[i].x, (double) bounds[i].y );
1313 (void) FormatLocaleFile(stderr, "\n");
1314 #endif
1315 i++;
1316 }
1317 prev_image=DestroyImage(prev_image);
1318 /*
1319 Optimize all images in sequence.
1320 */
1321 sans_exception=AcquireExceptionInfo();
1322 i=0;
1323 curr=GetFirstImageInList(image);
1324 optimized_image=NewImageList();
1325 while ( curr != (const Image *) NULL )
1326 {
1327 prev_image=CloneImage(curr,0,0,MagickTrue,exception);
1328 if (prev_image == (Image *) NULL)
1329 break;
1330 if ( disposals[i] == DelDispose ) {
1331 size_t time = 0;
1332 while ( disposals[i] == DelDispose ) {
1333 time += curr->delay*1000/curr->ticks_per_second;
1334 curr=GetNextImageInList(curr);
1335 i++;
1336 }
1337 time += curr->delay*1000/curr->ticks_per_second;
1338 prev_image->ticks_per_second = 100L;
1339 prev_image->delay = time*prev_image->ticks_per_second/1000;
1340 }
1341 bgnd_image=CropImage(prev_image,&bounds[i],sans_exception);
1342 prev_image=DestroyImage(prev_image);
1343 if (bgnd_image == (Image *) NULL)
1344 break;
1345 bgnd_image->dispose=disposals[i];
1346 if ( disposals[i] == DupDispose ) {
1347 bgnd_image->delay=0;
1348 bgnd_image->dispose=NoneDispose;
1349 }
1350 else
1351 curr=GetNextImageInList(curr);
1352 AppendImageToList(&optimized_image,bgnd_image);
1353 i++;
1354 }
1355 sans_exception=DestroyExceptionInfo(sans_exception);
1356 bounds=(RectangleInfo *) RelinquishMagickMemory(bounds);
1357 disposals=(DisposeType *) RelinquishMagickMemory(disposals);
1358 if (curr != (Image *) NULL)
1359 {
1360 optimized_image=DestroyImageList(optimized_image);
1361 return((Image *) NULL);
1362 }
1363 return(GetFirstImageInList(optimized_image));
1364 }
1365
1366 /*
1367 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1368 % %
1369 % %
1370 % %
1371 % O p t i m i z e I m a g e L a y e r s %
1372 % %
1373 % %
1374 % %
1375 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1376 %
1377 % OptimizeImageLayers() compares each image the GIF disposed forms of the
1378 % previous image in the sequence. From this it attempts to select the
1379 % smallest cropped image to replace each frame, while preserving the results
1380 % of the GIF animation.
1381 %
1382 % The format of the OptimizeImageLayers method is:
1383 %
1384 % Image *OptimizeImageLayers(const Image *image,
1385 % ExceptionInfo *exception)
1386 %
1387 % A description of each parameter follows:
1388 %
1389 % o image: the image.
1390 %
1391 % o exception: return any errors or warnings in this structure.
1392 %
1393 */
OptimizeImageLayers(const Image * image,ExceptionInfo * exception)1394 MagickExport Image *OptimizeImageLayers(const Image *image,
1395 ExceptionInfo *exception)
1396 {
1397 return(OptimizeLayerFrames(image,OptimizeImageLayer,exception));
1398 }
1399
1400 /*
1401 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1402 % %
1403 % %
1404 % %
1405 % O p t i m i z e P l u s I m a g e L a y e r s %
1406 % %
1407 % %
1408 % %
1409 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1410 %
1411 % OptimizeImagePlusLayers() is exactly as OptimizeImageLayers(), but may
1412 % also add or even remove extra frames in the animation, if it improves
1413 % the total number of pixels in the resulting GIF animation.
1414 %
1415 % The format of the OptimizePlusImageLayers method is:
1416 %
1417 % Image *OptimizePlusImageLayers(const Image *image,
1418 % ExceptionInfo *exception)
1419 %
1420 % A description of each parameter follows:
1421 %
1422 % o image: the image.
1423 %
1424 % o exception: return any errors or warnings in this structure.
1425 %
1426 */
OptimizePlusImageLayers(const Image * image,ExceptionInfo * exception)1427 MagickExport Image *OptimizePlusImageLayers(const Image *image,
1428 ExceptionInfo *exception)
1429 {
1430 return OptimizeLayerFrames(image, OptimizePlusLayer, exception);
1431 }
1432
1433 /*
1434 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1435 % %
1436 % %
1437 % %
1438 % O p t i m i z e I m a g e T r a n s p a r e n c y %
1439 % %
1440 % %
1441 % %
1442 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1443 %
1444 % OptimizeImageTransparency() takes a frame optimized GIF animation, and
1445 % compares the overlayed pixels against the disposal image resulting from all
1446 % the previous frames in the animation. Any pixel that does not change the
1447 % disposal image (and thus does not effect the outcome of an overlay) is made
1448 % transparent.
1449 %
1450 % WARNING: This modifies the current images directly, rather than generate
1451 % a new image sequence.
1452 %
1453 % The format of the OptimizeImageTransperency method is:
1454 %
1455 % void OptimizeImageTransperency(Image *image,ExceptionInfo *exception)
1456 %
1457 % A description of each parameter follows:
1458 %
1459 % o image: the image sequence
1460 %
1461 % o exception: return any errors or warnings in this structure.
1462 %
1463 */
OptimizeImageTransparency(const Image * image,ExceptionInfo * exception)1464 MagickExport void OptimizeImageTransparency(const Image *image,
1465 ExceptionInfo *exception)
1466 {
1467 Image
1468 *dispose_image;
1469
1470 register Image
1471 *next;
1472
1473 /*
1474 Run the image through the animation sequence
1475 */
1476 assert(image != (Image *) NULL);
1477 assert(image->signature == MagickCoreSignature);
1478 if (image->debug != MagickFalse)
1479 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1480 assert(exception != (ExceptionInfo *) NULL);
1481 assert(exception->signature == MagickCoreSignature);
1482 next=GetFirstImageInList(image);
1483 dispose_image=CloneImage(next,next->page.width,next->page.height,
1484 MagickTrue,exception);
1485 if (dispose_image == (Image *) NULL)
1486 return;
1487 dispose_image->page=next->page;
1488 dispose_image->page.x=0;
1489 dispose_image->page.y=0;
1490 dispose_image->dispose=NoneDispose;
1491 dispose_image->background_color.alpha_trait=BlendPixelTrait;
1492 dispose_image->background_color.alpha=(Quantum) TransparentAlpha;
1493 (void) SetImageBackgroundColor(dispose_image,exception);
1494
1495 while ( next != (Image *) NULL )
1496 {
1497 Image
1498 *current_image;
1499
1500 /*
1501 Overlay this frame's image over the previous disposal image
1502 */
1503 current_image=CloneImage(dispose_image,0,0,MagickTrue,exception);
1504 if (current_image == (Image *) NULL)
1505 {
1506 dispose_image=DestroyImage(dispose_image);
1507 return;
1508 }
1509 (void) CompositeImage(current_image,next,next->alpha_trait != UndefinedPixelTrait ?
1510 OverCompositeOp : CopyCompositeOp,MagickTrue,next->page.x,next->page.y,
1511 exception);
1512 /*
1513 At this point the image would be displayed, for the delay period
1514 **
1515 Work out the disposal of the previous image
1516 */
1517 if (next->dispose == BackgroundDispose)
1518 {
1519 RectangleInfo
1520 bounds=next->page;
1521
1522 bounds.width=next->columns;
1523 bounds.height=next->rows;
1524 if (bounds.x < 0)
1525 {
1526 bounds.width+=bounds.x;
1527 bounds.x=0;
1528 }
1529 if ((ssize_t) (bounds.x+bounds.width) > (ssize_t) current_image->columns)
1530 bounds.width=current_image->columns-bounds.x;
1531 if (bounds.y < 0)
1532 {
1533 bounds.height+=bounds.y;
1534 bounds.y=0;
1535 }
1536 if ((ssize_t) (bounds.y+bounds.height) > (ssize_t) current_image->rows)
1537 bounds.height=current_image->rows-bounds.y;
1538 ClearBounds(current_image, &bounds,exception);
1539 }
1540 if (next->dispose != PreviousDispose)
1541 {
1542 dispose_image=DestroyImage(dispose_image);
1543 dispose_image=current_image;
1544 }
1545 else
1546 current_image=DestroyImage(current_image);
1547
1548 /*
1549 Optimize Transparency of the next frame (if present)
1550 */
1551 next=GetNextImageInList(next);
1552 if (next != (Image *) NULL) {
1553 (void) CompositeImage(next,dispose_image,ChangeMaskCompositeOp,
1554 MagickTrue,-(next->page.x),-(next->page.y),exception);
1555 }
1556 }
1557 dispose_image=DestroyImage(dispose_image);
1558 return;
1559 }
1560
1561 /*
1562 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1563 % %
1564 % %
1565 % %
1566 % R e m o v e D u p l i c a t e L a y e r s %
1567 % %
1568 % %
1569 % %
1570 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1571 %
1572 % RemoveDuplicateLayers() removes any image that is exactly the same as the
1573 % next image in the given image list. Image size and virtual canvas offset
1574 % must also match, though not the virtual canvas size itself.
1575 %
1576 % No check is made with regards to image disposal setting, though it is the
1577 % dispose setting of later image that is kept. Also any time delays are also
1578 % added together. As such coalesced image animations should still produce the
1579 % same result, though with duplicte frames merged into a single frame.
1580 %
1581 % The format of the RemoveDuplicateLayers method is:
1582 %
1583 % void RemoveDuplicateLayers(Image **image, ExceptionInfo *exception)
1584 %
1585 % A description of each parameter follows:
1586 %
1587 % o images: the image list
1588 %
1589 % o exception: return any errors or warnings in this structure.
1590 %
1591 */
RemoveDuplicateLayers(Image ** images,ExceptionInfo * exception)1592 MagickExport void RemoveDuplicateLayers(Image **images,
1593 ExceptionInfo *exception)
1594 {
1595 register Image
1596 *curr,
1597 *next;
1598
1599 RectangleInfo
1600 bounds;
1601
1602 assert((*images) != (const Image *) NULL);
1603 assert((*images)->signature == MagickCoreSignature);
1604 if ((*images)->debug != MagickFalse)
1605 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",(*images)->filename);
1606 assert(exception != (ExceptionInfo *) NULL);
1607 assert(exception->signature == MagickCoreSignature);
1608
1609 curr=GetFirstImageInList(*images);
1610 for (; (next=GetNextImageInList(curr)) != (Image *) NULL; curr=next)
1611 {
1612 if ( curr->columns != next->columns || curr->rows != next->rows
1613 || curr->page.x != next->page.x || curr->page.y != next->page.y )
1614 continue;
1615 bounds=CompareImagesBounds(curr,next,CompareAnyLayer,exception);
1616 if ( bounds.x < 0 ) {
1617 /*
1618 the two images are the same, merge time delays and delete one.
1619 */
1620 size_t time;
1621 time = curr->delay*1000/curr->ticks_per_second;
1622 time += next->delay*1000/next->ticks_per_second;
1623 next->ticks_per_second = 100L;
1624 next->delay = time*curr->ticks_per_second/1000;
1625 next->iterations = curr->iterations;
1626 *images = curr;
1627 (void) DeleteImageFromList(images);
1628 }
1629 }
1630 *images = GetFirstImageInList(*images);
1631 }
1632
1633 /*
1634 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1635 % %
1636 % %
1637 % %
1638 % R e m o v e Z e r o D e l a y L a y e r s %
1639 % %
1640 % %
1641 % %
1642 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1643 %
1644 % RemoveZeroDelayLayers() removes any image that as a zero delay time. Such
1645 % images generally represent intermediate or partial updates in GIF
1646 % animations used for file optimization. They are not ment to be displayed
1647 % to users of the animation. Viewable images in an animation should have a
1648 % time delay of 3 or more centi-seconds (hundredths of a second).
1649 %
1650 % However if all the frames have a zero time delay, then either the animation
1651 % is as yet incomplete, or it is not a GIF animation. This a non-sensible
1652 % situation, so no image will be removed and a 'Zero Time Animation' warning
1653 % (exception) given.
1654 %
1655 % No warning will be given if no image was removed because all images had an
1656 % appropriate non-zero time delay set.
1657 %
1658 % Due to the special requirements of GIF disposal handling, GIF animations
1659 % should be coalesced first, before calling this function, though that is not
1660 % a requirement.
1661 %
1662 % The format of the RemoveZeroDelayLayers method is:
1663 %
1664 % void RemoveZeroDelayLayers(Image **image, ExceptionInfo *exception)
1665 %
1666 % A description of each parameter follows:
1667 %
1668 % o images: the image list
1669 %
1670 % o exception: return any errors or warnings in this structure.
1671 %
1672 */
RemoveZeroDelayLayers(Image ** images,ExceptionInfo * exception)1673 MagickExport void RemoveZeroDelayLayers(Image **images,
1674 ExceptionInfo *exception)
1675 {
1676 Image
1677 *i;
1678
1679 assert((*images) != (const Image *) NULL);
1680 assert((*images)->signature == MagickCoreSignature);
1681 if ((*images)->debug != MagickFalse)
1682 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",(*images)->filename);
1683 assert(exception != (ExceptionInfo *) NULL);
1684 assert(exception->signature == MagickCoreSignature);
1685
1686 i=GetFirstImageInList(*images);
1687 for ( ; i != (Image *) NULL; i=GetNextImageInList(i))
1688 if ( i->delay != 0L ) break;
1689 if ( i == (Image *) NULL ) {
1690 (void) ThrowMagickException(exception,GetMagickModule(),OptionWarning,
1691 "ZeroTimeAnimation","`%s'",GetFirstImageInList(*images)->filename);
1692 return;
1693 }
1694 i=GetFirstImageInList(*images);
1695 while ( i != (Image *) NULL )
1696 {
1697 if ( i->delay == 0L ) {
1698 (void) DeleteImageFromList(&i);
1699 *images=i;
1700 }
1701 else
1702 i=GetNextImageInList(i);
1703 }
1704 *images=GetFirstImageInList(*images);
1705 }
1706
1707 /*
1708 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1709 % %
1710 % %
1711 % %
1712 % C o m p o s i t e L a y e r s %
1713 % %
1714 % %
1715 % %
1716 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1717 %
1718 % CompositeLayers() compose the source image sequence over the destination
1719 % image sequence, starting with the current image in both lists.
1720 %
1721 % Each layer from the two image lists are composted together until the end of
1722 % one of the image lists is reached. The offset of each composition is also
1723 % adjusted to match the virtual canvas offsets of each layer. As such the
1724 % given offset is relative to the virtual canvas, and not the actual image.
1725 %
1726 % Composition uses given x and y offsets, as the 'origin' location of the
1727 % source images virtual canvas (not the real image) allowing you to compose a
1728 % list of 'layer images' into the destiantioni images. This makes it well
1729 % sutiable for directly composing 'Clears Frame Animations' or 'Coaleased
1730 % Animations' onto a static or other 'Coaleased Animation' destination image
1731 % list. GIF disposal handling is not looked at.
1732 %
1733 % Special case:- If one of the image sequences is the last image (just a
1734 % single image remaining), that image is repeatally composed with all the
1735 % images in the other image list. Either the source or destination lists may
1736 % be the single image, for this situation.
1737 %
1738 % In the case of a single destination image (or last image given), that image
1739 % will ve cloned to match the number of images remaining in the source image
1740 % list.
1741 %
1742 % This is equivelent to the "-layer Composite" Shell API operator.
1743 %
1744 %
1745 % The format of the CompositeLayers method is:
1746 %
1747 % void CompositeLayers(Image *destination, const CompositeOperator
1748 % compose, Image *source, const ssize_t x_offset, const ssize_t y_offset,
1749 % ExceptionInfo *exception);
1750 %
1751 % A description of each parameter follows:
1752 %
1753 % o destination: the destination images and results
1754 %
1755 % o source: source image(s) for the layer composition
1756 %
1757 % o compose, x_offset, y_offset: arguments passed on to CompositeImages()
1758 %
1759 % o exception: return any errors or warnings in this structure.
1760 %
1761 */
1762
CompositeCanvas(Image * destination,const CompositeOperator compose,Image * source,ssize_t x_offset,ssize_t y_offset,ExceptionInfo * exception)1763 static inline void CompositeCanvas(Image *destination,
1764 const CompositeOperator compose,Image *source,ssize_t x_offset,
1765 ssize_t y_offset,ExceptionInfo *exception)
1766 {
1767 x_offset+=source->page.x-destination->page.x;
1768 y_offset+=source->page.y-destination->page.y;
1769 (void) CompositeImage(destination,source,compose,MagickTrue,x_offset,
1770 y_offset,exception);
1771 }
1772
CompositeLayers(Image * destination,const CompositeOperator compose,Image * source,const ssize_t x_offset,const ssize_t y_offset,ExceptionInfo * exception)1773 MagickExport void CompositeLayers(Image *destination,
1774 const CompositeOperator compose, Image *source,const ssize_t x_offset,
1775 const ssize_t y_offset,ExceptionInfo *exception)
1776 {
1777 assert(destination != (Image *) NULL);
1778 assert(destination->signature == MagickCoreSignature);
1779 assert(source != (Image *) NULL);
1780 assert(source->signature == MagickCoreSignature);
1781 assert(exception != (ExceptionInfo *) NULL);
1782 assert(exception->signature == MagickCoreSignature);
1783 if (source->debug != MagickFalse || destination->debug != MagickFalse)
1784 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s - %s",
1785 source->filename, destination->filename);
1786
1787 /*
1788 Overlay single source image over destation image/list
1789 */
1790 if ( source->next == (Image *) NULL )
1791 while ( destination != (Image *) NULL )
1792 {
1793 CompositeCanvas(destination, compose, source, x_offset, y_offset,
1794 exception);
1795 destination=GetNextImageInList(destination);
1796 }
1797
1798 /*
1799 Overlay source image list over single destination.
1800 Multiple clones of destination image are created to match source list.
1801 Original Destination image becomes first image of generated list.
1802 As such the image list pointer does not require any change in caller.
1803 Some animation attributes however also needs coping in this case.
1804 */
1805 else if ( destination->next == (Image *) NULL )
1806 {
1807 Image *dest = CloneImage(destination,0,0,MagickTrue,exception);
1808
1809 CompositeCanvas(destination, compose, source, x_offset, y_offset,
1810 exception);
1811 /* copy source image attributes ? */
1812 if ( source->next != (Image *) NULL )
1813 {
1814 destination->delay = source->delay;
1815 destination->iterations = source->iterations;
1816 }
1817 source=GetNextImageInList(source);
1818
1819 while ( source != (Image *) NULL )
1820 {
1821 AppendImageToList(&destination,
1822 CloneImage(dest,0,0,MagickTrue,exception));
1823 destination=GetLastImageInList(destination);
1824
1825 CompositeCanvas(destination, compose, source, x_offset, y_offset,
1826 exception);
1827 destination->delay = source->delay;
1828 destination->iterations = source->iterations;
1829 source=GetNextImageInList(source);
1830 }
1831 dest=DestroyImage(dest);
1832 }
1833
1834 /*
1835 Overlay a source image list over a destination image list
1836 until either list runs out of images. (Does not repeat)
1837 */
1838 else
1839 while ( source != (Image *) NULL && destination != (Image *) NULL )
1840 {
1841 CompositeCanvas(destination, compose, source, x_offset, y_offset,
1842 exception);
1843 source=GetNextImageInList(source);
1844 destination=GetNextImageInList(destination);
1845 }
1846 }
1847
1848 /*
1849 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1850 % %
1851 % %
1852 % %
1853 % M e r g e I m a g e L a y e r s %
1854 % %
1855 % %
1856 % %
1857 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1858 %
1859 % MergeImageLayers() composes all the image layers from the current given
1860 % image onward to produce a single image of the merged layers.
1861 %
1862 % The inital canvas's size depends on the given LayerMethod, and is
1863 % initialized using the first images background color. The images
1864 % are then compositied onto that image in sequence using the given
1865 % composition that has been assigned to each individual image.
1866 %
1867 % The format of the MergeImageLayers is:
1868 %
1869 % Image *MergeImageLayers(const Image *image,
1870 % const LayerMethod method, ExceptionInfo *exception)
1871 %
1872 % A description of each parameter follows:
1873 %
1874 % o image: the image list to be composited together
1875 %
1876 % o method: the method of selecting the size of the initial canvas.
1877 %
1878 % MergeLayer: Merge all layers onto a canvas just large enough
1879 % to hold all the actual images. The virtual canvas of the
1880 % first image is preserved but otherwise ignored.
1881 %
1882 % FlattenLayer: Use the virtual canvas size of first image.
1883 % Images which fall outside this canvas is clipped.
1884 % This can be used to 'fill out' a given virtual canvas.
1885 %
1886 % MosaicLayer: Start with the virtual canvas of the first image,
1887 % enlarging left and right edges to contain all images.
1888 % Images with negative offsets will be clipped.
1889 %
1890 % TrimBoundsLayer: Determine the overall bounds of all the image
1891 % layers just as in "MergeLayer", then adjust the the canvas
1892 % and offsets to be relative to those bounds, without overlaying
1893 % the images.
1894 %
1895 % WARNING: a new image is not returned, the original image
1896 % sequence page data is modified instead.
1897 %
1898 % o exception: return any errors or warnings in this structure.
1899 %
1900 */
MergeImageLayers(Image * image,const LayerMethod method,ExceptionInfo * exception)1901 MagickExport Image *MergeImageLayers(Image *image,const LayerMethod method,
1902 ExceptionInfo *exception)
1903 {
1904 #define MergeLayersTag "Merge/Layers"
1905
1906 Image
1907 *canvas;
1908
1909 MagickBooleanType
1910 proceed;
1911
1912 RectangleInfo
1913 page;
1914
1915 register const Image
1916 *next;
1917
1918 size_t
1919 number_images,
1920 height,
1921 width;
1922
1923 ssize_t
1924 scene;
1925
1926 assert(image != (Image *) NULL);
1927 assert(image->signature == MagickCoreSignature);
1928 if (image->debug != MagickFalse)
1929 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1930 assert(exception != (ExceptionInfo *) NULL);
1931 assert(exception->signature == MagickCoreSignature);
1932 /*
1933 Determine canvas image size, and its virtual canvas size and offset
1934 */
1935 page=image->page;
1936 width=image->columns;
1937 height=image->rows;
1938 switch (method)
1939 {
1940 case TrimBoundsLayer:
1941 case MergeLayer:
1942 default:
1943 {
1944 next=GetNextImageInList(image);
1945 for ( ; next != (Image *) NULL; next=GetNextImageInList(next))
1946 {
1947 if (page.x > next->page.x)
1948 {
1949 width+=page.x-next->page.x;
1950 page.x=next->page.x;
1951 }
1952 if (page.y > next->page.y)
1953 {
1954 height+=page.y-next->page.y;
1955 page.y=next->page.y;
1956 }
1957 if ((ssize_t) width < (next->page.x+(ssize_t) next->columns-page.x))
1958 width=(size_t) next->page.x+(ssize_t) next->columns-page.x;
1959 if ((ssize_t) height < (next->page.y+(ssize_t) next->rows-page.y))
1960 height=(size_t) next->page.y+(ssize_t) next->rows-page.y;
1961 }
1962 break;
1963 }
1964 case FlattenLayer:
1965 {
1966 if (page.width > 0)
1967 width=page.width;
1968 if (page.height > 0)
1969 height=page.height;
1970 page.x=0;
1971 page.y=0;
1972 break;
1973 }
1974 case MosaicLayer:
1975 {
1976 if (page.width > 0)
1977 width=page.width;
1978 if (page.height > 0)
1979 height=page.height;
1980 for (next=image; next != (Image *) NULL; next=GetNextImageInList(next))
1981 {
1982 if (method == MosaicLayer)
1983 {
1984 page.x=next->page.x;
1985 page.y=next->page.y;
1986 if ((ssize_t) width < (next->page.x+(ssize_t) next->columns))
1987 width=(size_t) next->page.x+next->columns;
1988 if ((ssize_t) height < (next->page.y+(ssize_t) next->rows))
1989 height=(size_t) next->page.y+next->rows;
1990 }
1991 }
1992 page.width=width;
1993 page.height=height;
1994 page.x=0;
1995 page.y=0;
1996 }
1997 break;
1998 }
1999 /*
2000 Set virtual canvas size if not defined.
2001 */
2002 if (page.width == 0)
2003 page.width=page.x < 0 ? width : width+page.x;
2004 if (page.height == 0)
2005 page.height=page.y < 0 ? height : height+page.y;
2006 /*
2007 Handle "TrimBoundsLayer" method separately to normal 'layer merge'.
2008 */
2009 if (method == TrimBoundsLayer)
2010 {
2011 number_images=GetImageListLength(image);
2012 for (scene=0; scene < (ssize_t) number_images; scene++)
2013 {
2014 image->page.x-=page.x;
2015 image->page.y-=page.y;
2016 image->page.width=width;
2017 image->page.height=height;
2018 proceed=SetImageProgress(image,MergeLayersTag,(MagickOffsetType) scene,
2019 number_images);
2020 if (proceed == MagickFalse)
2021 break;
2022 image=GetNextImageInList(image);
2023 if (image == (Image *) NULL)
2024 break;
2025 }
2026 return((Image *) NULL);
2027 }
2028 /*
2029 Create canvas size of width and height, and background color.
2030 */
2031 canvas=CloneImage(image,width,height,MagickTrue,exception);
2032 if (canvas == (Image *) NULL)
2033 return((Image *) NULL);
2034 (void) SetImageBackgroundColor(canvas,exception);
2035 canvas->page=page;
2036 canvas->dispose=UndefinedDispose;
2037 /*
2038 Compose images onto canvas, with progress monitor
2039 */
2040 number_images=GetImageListLength(image);
2041 for (scene=0; scene < (ssize_t) number_images; scene++)
2042 {
2043 (void) CompositeImage(canvas,image,image->compose,MagickTrue,image->page.x-
2044 canvas->page.x,image->page.y-canvas->page.y,exception);
2045 proceed=SetImageProgress(image,MergeLayersTag,(MagickOffsetType) scene,
2046 number_images);
2047 if (proceed == MagickFalse)
2048 break;
2049 image=GetNextImageInList(image);
2050 if (image == (Image *) NULL)
2051 break;
2052 }
2053 return(canvas);
2054 }
2055
2056