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cristy3ed852e2009-09-05 21:47:34 +00001/*
2%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3% %
4% %
5% %
6% DDDD IIIII BBBB %
7% D D I B B %
8% D D I BBBB %
9% D D I B B %
10% DDDD IIIII BBBB %
11% %
12% %
13% Read/Write Windows DIB Image Format %
14% %
15% Software Design %
16% John Cristy %
17% July 1992 %
18% %
19% %
cristy16af1cb2009-12-11 21:38:29 +000020% Copyright 1999-2010 ImageMagick Studio LLC, a non-profit organization %
cristy3ed852e2009-09-05 21:47:34 +000021% dedicated to making software imaging solutions freely available. %
22% %
23% You may not use this file except in compliance with the License. You may %
24% obtain a copy of the License at %
25% %
26% http://www.imagemagick.org/script/license.php %
27% %
28% Unless required by applicable law or agreed to in writing, software %
29% distributed under the License is distributed on an "AS IS" BASIS, %
30% WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. %
31% See the License for the specific language governing permissions and %
32% limitations under the License. %
33% %
34%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
35%
36%
37*/
38
39/*
40 Include declarations.
41*/
42#include "magick/studio.h"
43#include "magick/blob.h"
44#include "magick/blob-private.h"
45#include "magick/cache.h"
46#include "magick/color.h"
cristy3ed852e2009-09-05 21:47:34 +000047#include "magick/color-private.h"
cristye7e40552010-04-24 21:34:22 +000048#include "magick/colormap.h"
49#include "magick/colormap-private.h"
cristy3ed852e2009-09-05 21:47:34 +000050#include "magick/colorspace.h"
51#include "magick/draw.h"
52#include "magick/exception.h"
53#include "magick/exception-private.h"
54#include "magick/geometry.h"
55#include "magick/image.h"
56#include "magick/image-private.h"
57#include "magick/list.h"
58#include "magick/log.h"
59#include "magick/magick.h"
60#include "magick/memory_.h"
61#include "magick/monitor.h"
62#include "magick/monitor-private.h"
63#include "magick/quantum-private.h"
64#include "magick/static.h"
65#include "magick/string_.h"
66#include "magick/module.h"
67#include "magick/transform.h"
68
69/*
70 Typedef declarations.
71*/
72typedef struct _DIBInfo
73{
74 unsigned long
75 size;
76
77 long
78 width,
79 height;
80
81 unsigned short
82 planes,
83 bits_per_pixel;
84
85 unsigned long
86 compression,
87 image_size,
88 x_pixels,
89 y_pixels,
90 number_colors,
91 red_mask,
92 green_mask,
93 blue_mask,
94 alpha_mask,
95 colors_important;
96
97 long
98 colorspace;
99
100 PointInfo
101 red_primary,
102 green_primary,
103 blue_primary,
104 gamma_scale;
105} DIBInfo;
106
107/*
108 Forward declarations.
109*/
110static MagickBooleanType
111 WriteDIBImage(const ImageInfo *,Image *);
112
113/*
114%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
115% %
116% %
117% %
118% D e c o d e I m a g e %
119% %
120% %
121% %
122%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
123%
124% DecodeImage unpacks the packed image pixels into runlength-encoded
125% pixel packets.
126%
127% The format of the DecodeImage method is:
128%
129% MagickBooleanType DecodeImage(Image *image,
130% const MagickBooleanType compression,unsigned char *pixels)
131%
132% A description of each parameter follows:
133%
134% o image: the address of a structure of type Image.
135%
136% o compression: A value of 1 means the compressed pixels are runlength
137% encoded for a 256-color bitmap. A value of 2 means a 16-color bitmap.
138%
139% o pixels: The address of a byte (8 bits) array of pixel data created by
140% the decoding process.
141%
142*/
143
144static inline size_t MagickMin(const size_t x,const size_t y)
145{
146 if (x < y)
147 return(x);
148 return(y);
149}
150
151static MagickBooleanType DecodeImage(Image *image,
152 const MagickBooleanType compression,unsigned char *pixels)
153{
cristy0157aea2010-04-24 21:12:18 +0000154#if !defined(MAGICKCORE_WINDOWS_SUPPORT) || defined(__MINGW32__)
cristy3ed852e2009-09-05 21:47:34 +0000155#define BI_RGB 0
156#define BI_RLE8 1
157#define BI_RLE4 2
158#define BI_BITFIELDS 3
159#endif
160
161 int
162 count;
163
164 long
165 y;
166
167 register long
168 i,
169 x;
170
171 register unsigned char
172 *p,
173 *q;
174
175 unsigned char
176 byte;
177
178 assert(image != (Image *) NULL);
179 assert(image->signature == MagickSignature);
180 if (image->debug != MagickFalse)
181 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
182 assert(pixels != (unsigned char *) NULL);
183 (void) ResetMagickMemory(pixels,0,(size_t) image->columns*image->rows*
184 sizeof(*pixels));
185 byte=0;
186 x=0;
187 p=pixels;
188 q=pixels+(size_t) image->columns*image->rows;
189 for (y=0; y < (long) image->rows; )
190 {
191 if ((p < pixels) || (p >= q))
192 break;
193 count=ReadBlobByte(image);
194 if (count == EOF)
195 break;
196 if (count != 0)
197 {
198 count=(int) MagickMin((size_t) count,(size_t) (q-p));
199 /*
200 Encoded mode.
201 */
202 byte=(unsigned char) ReadBlobByte(image);
203 if (compression == BI_RLE8)
204 {
205 for (i=0; i < count; i++)
206 *p++=(unsigned char) byte;
207 }
208 else
209 {
210 for (i=0; i < count; i++)
211 *p++=(unsigned char)
212 ((i & 0x01) != 0 ? (byte & 0x0f) : ((byte >> 4) & 0x0f));
213 }
214 x+=count;
215 }
216 else
217 {
218 /*
219 Escape mode.
220 */
221 count=ReadBlobByte(image);
222 if (count == 0x01)
223 return(MagickTrue);
224 switch (count)
225 {
226 case 0x00:
227 {
228 /*
229 End of line.
230 */
231 x=0;
232 y++;
233 p=pixels+y*image->columns;
234 break;
235 }
236 case 0x02:
237 {
238 /*
239 Delta mode.
240 */
241 x+=ReadBlobByte(image);
242 y+=ReadBlobByte(image);
243 p=pixels+y*image->columns+x;
244 break;
245 }
246 default:
247 {
248 /*
249 Absolute mode.
250 */
251 count=(int) MagickMin((size_t) count,(size_t) (q-p));
252 if (compression == BI_RLE8)
253 for (i=0; i < count; i++)
254 *p++=(unsigned char) ReadBlobByte(image);
255 else
256 for (i=0; i < count; i++)
257 {
258 if ((i & 0x01) == 0)
259 byte=(unsigned char) ReadBlobByte(image);
260 *p++=(unsigned char)
261 ((i & 0x01) != 0 ? (byte & 0x0f) : ((byte >> 4) & 0x0f));
262 }
263 x+=count;
264 /*
265 Read pad byte.
266 */
267 if (compression == BI_RLE8)
268 {
269 if ((count & 0x01) != 0)
270 (void) ReadBlobByte(image);
271 }
272 else
273 if (((count & 0x03) == 1) || ((count & 0x03) == 2))
274 (void) ReadBlobByte(image);
275 break;
276 }
277 }
278 }
279 if (SetImageProgress(image,LoadImageTag,y,image->rows) == MagickFalse)
280 break;
281 }
282 (void) ReadBlobByte(image); /* end of line */
283 (void) ReadBlobByte(image);
284 return(MagickTrue);
285}
286
287/*
288%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
289% %
290% %
291% %
292% E n c o d e I m a g e %
293% %
294% %
295% %
296%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
297%
298% EncodeImage compresses pixels using a runlength encoded format.
299%
300% The format of the EncodeImage method is:
301%
302% static MagickBooleanType EncodeImage(Image *image,
303% const unsigned long bytes_per_line,const unsigned char *pixels,
304% unsigned char *compressed_pixels)
305%
306% A description of each parameter follows:
307%
308% o image: The image.
309%
310% o bytes_per_line: the number of bytes in a scanline of compressed pixels
311%
312% o pixels: The address of a byte (8 bits) array of pixel data created by
313% the compression process.
314%
315% o compressed_pixels: The address of a byte (8 bits) array of compressed
316% pixel data.
317%
318*/
319static size_t EncodeImage(Image *image,const unsigned long bytes_per_line,
320 const unsigned char *pixels,unsigned char *compressed_pixels)
321{
322 long
323 y;
324
325 register const unsigned char
326 *p;
327
328 register long
329 i,
330 x;
331
332 register unsigned char
333 *q;
334
335 /*
336 Runlength encode pixels.
337 */
338 assert(image != (Image *) NULL);
339 assert(image->signature == MagickSignature);
340 if (image->debug != MagickFalse)
341 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
342 assert(pixels != (const unsigned char *) NULL);
343 assert(compressed_pixels != (unsigned char *) NULL);
344 p=pixels;
345 q=compressed_pixels;
346 i=0;
347 for (y=0; y < (long) image->rows; y++)
348 {
349 for (x=0; x < (long) bytes_per_line; x+=i)
350 {
351 /*
352 Determine runlength.
353 */
354 for (i=1; ((x+i) < (long) bytes_per_line); i++)
355 if ((*(p+i) != *p) || (i == 255))
356 break;
357 *q++=(unsigned char) i;
358 *q++=(*p);
359 p+=i;
360 }
361 /*
362 End of line.
363 */
364 *q++=0x00;
365 *q++=0x00;
366 if (SetImageProgress(image,LoadImageTag,y,image->rows) == MagickFalse)
367 break;
368 }
369 /*
370 End of bitmap.
371 */
372 *q++=0;
373 *q++=0x01;
374 return((size_t) (q-compressed_pixels));
375}
376
377/*
378%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
379% %
380% %
381% %
382% I s D I B %
383% %
384% %
385% %
386%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
387%
388% IsDIB() returns MagickTrue if the image format type, identified by the
389% magick string, is DIB.
390%
391% The format of the IsDIB method is:
392%
393% MagickBooleanType IsDIB(const unsigned char *magick,const size_t length)
394%
395% A description of each parameter follows:
396%
397% o magick: compare image format pattern against these bytes.
398%
399% o length: Specifies the length of the magick string.
400%
401*/
402static MagickBooleanType IsDIB(const unsigned char *magick,const size_t length)
403{
404 if (length < 2)
405 return(MagickFalse);
406 if (memcmp(magick,"\050\000",2) == 0)
407 return(MagickTrue);
408 return(MagickFalse);
409}
410
411/*
412%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
413% %
414% %
415% %
416% R e a d D I B I m a g e %
417% %
418% %
419% %
420%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
421%
422% ReadDIBImage() reads a Microsoft Windows bitmap image file and
423% returns it. It allocates the memory necessary for the new Image structure
424% and returns a pointer to the new image.
425%
426% The format of the ReadDIBImage method is:
427%
428% image=ReadDIBImage(image_info)
429%
430% A description of each parameter follows:
431%
432% o image_info: the image info.
433%
434% o exception: return any errors or warnings in this structure.
435%
436*/
437
438static inline long MagickAbsoluteValue(const long x)
439{
440 if (x < 0)
441 return(-x);
442 return(x);
443}
444
445static inline size_t MagickMax(const size_t x,const size_t y)
446{
447 if (x > y)
448 return(x);
449 return(y);
450}
451
452static Image *ReadDIBImage(const ImageInfo *image_info,ExceptionInfo *exception)
453{
454 DIBInfo
455 dib_info;
456
457 Image
458 *image;
459
460 IndexPacket
461 index;
462
463 long
464 bit,
465 y;
466
467 MagickBooleanType
468 status;
469
470 register IndexPacket
471 *indexes;
472
473 register long
474 x;
475
476 register PixelPacket
477 *q;
478
479 register long
480 i;
481
482 register unsigned char
483 *p;
484
485 size_t
486 length;
487
488 ssize_t
489 count;
490
491 unsigned char
492 *pixels;
493
494 unsigned long
495 bytes_per_line;
496
497 /*
498 Open image file.
499 */
500 assert(image_info != (const ImageInfo *) NULL);
501 assert(image_info->signature == MagickSignature);
502 if (image_info->debug != MagickFalse)
503 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",
504 image_info->filename);
505 assert(exception != (ExceptionInfo *) NULL);
506 assert(exception->signature == MagickSignature);
507 image=AcquireImage(image_info);
508 status=OpenBlob(image_info,image,ReadBinaryBlobMode,exception);
509 if (status == MagickFalse)
510 {
511 image=DestroyImageList(image);
512 return((Image *) NULL);
513 }
514 /*
515 Determine if this a DIB file.
516 */
517 (void) ResetMagickMemory(&dib_info,0,sizeof(dib_info));
518 dib_info.size=ReadBlobLSBLong(image);
519 if (dib_info.size!=40)
520 ThrowReaderException(CorruptImageError,"ImproperImageHeader");
521 /*
522 Microsoft Windows 3.X DIB image file.
523 */
524 dib_info.width=(short) ReadBlobLSBLong(image);
525 dib_info.height=(short) ReadBlobLSBLong(image);
526 dib_info.planes=ReadBlobLSBShort(image);
527 dib_info.bits_per_pixel=ReadBlobLSBShort(image);
528 dib_info.compression=ReadBlobLSBLong(image);
529 dib_info.image_size=ReadBlobLSBLong(image);
530 dib_info.x_pixels=ReadBlobLSBLong(image);
531 dib_info.y_pixels=ReadBlobLSBLong(image);
532 dib_info.number_colors=ReadBlobLSBLong(image);
533 dib_info.colors_important=ReadBlobLSBLong(image);
534 if ((dib_info.compression == BI_BITFIELDS) &&
535 ((dib_info.bits_per_pixel == 16) || (dib_info.bits_per_pixel == 32)))
536 {
537 dib_info.red_mask=ReadBlobLSBLong(image);
538 dib_info.green_mask=ReadBlobLSBLong(image);
539 dib_info.blue_mask=ReadBlobLSBLong(image);
540 }
541 image->matte=dib_info.bits_per_pixel == 32 ? MagickTrue : MagickFalse;
542 image->columns=(unsigned long) MagickAbsoluteValue(dib_info.width);
543 image->rows=(unsigned long) MagickAbsoluteValue(dib_info.height);
544 image->depth=8;
545 if ((dib_info.number_colors != 0) || (dib_info.bits_per_pixel < 16))
546 {
547 image->storage_class=PseudoClass;
548 image->colors=dib_info.number_colors;
549 if (image->colors == 0)
550 image->colors=1L << dib_info.bits_per_pixel;
551 }
552 if (image_info->size)
553 {
554 RectangleInfo
555 geometry;
556
557 MagickStatusType
558 flags;
559
560 flags=ParseAbsoluteGeometry(image_info->size,&geometry);
561 if (flags & WidthValue)
562 if ((geometry.width != 0) && (geometry.width < image->columns))
563 image->columns=geometry.width;
564 if (flags & HeightValue)
565 if ((geometry.height != 0) && (geometry.height < image->rows))
566 image->rows=geometry.height;
567 }
568 if (image->storage_class == PseudoClass)
569 {
570 size_t
571 length,
572 packet_size;
573
574 unsigned char
575 *dib_colormap;
576
577 /*
578 Read DIB raster colormap.
579 */
580 if (AcquireImageColormap(image,image->colors) == MagickFalse)
581 ThrowReaderException(ResourceLimitError,"MemoryAllocationFailed");
582 length=(size_t) image->colors;
583 dib_colormap=(unsigned char *) AcquireQuantumMemory(length,
584 4*sizeof(*dib_colormap));
585 if (dib_colormap == (unsigned char *) NULL)
586 ThrowReaderException(ResourceLimitError,"MemoryAllocationFailed");
587 packet_size=4;
588 count=ReadBlob(image,packet_size*image->colors,dib_colormap);
589 if (count != (ssize_t) (packet_size*image->colors))
590 ThrowReaderException(CorruptImageError,"InsufficientImageDataInFile");
591 p=dib_colormap;
592 for (i=0; i < (long) image->colors; i++)
593 {
594 image->colormap[i].blue=ScaleCharToQuantum(*p++);
595 image->colormap[i].green=ScaleCharToQuantum(*p++);
596 image->colormap[i].red=ScaleCharToQuantum(*p++);
597 if (packet_size == 4)
598 p++;
599 }
600 dib_colormap=(unsigned char *) RelinquishMagickMemory(dib_colormap);
601 }
602 /*
603 Read image data.
604 */
605 if (dib_info.compression == BI_RLE4)
606 dib_info.bits_per_pixel<<=1;
607 bytes_per_line=4*((image->columns*dib_info.bits_per_pixel+31)/32);
608 length=bytes_per_line*image->rows;
609 pixels=(unsigned char *) AcquireQuantumMemory((size_t) image->rows,
610 MagickMax(bytes_per_line,image->columns+256UL)*sizeof(*pixels));
611 if (pixels == (unsigned char *) NULL)
612 ThrowReaderException(ResourceLimitError,"MemoryAllocationFailed");
613 if ((dib_info.compression == BI_RGB) ||
614 (dib_info.compression == BI_BITFIELDS))
615 {
616 count=ReadBlob(image,length,pixels);
617 if (count != (ssize_t) (length))
618 ThrowReaderException(CorruptImageError,"InsufficientImageDataInFile");
619 }
620 else
621 {
622 /*
623 Convert run-length encoded raster pixels.
624 */
625 status=DecodeImage(image,dib_info.compression ? MagickTrue : MagickFalse,
626 pixels);
627 if (status == MagickFalse)
628 ThrowReaderException(CorruptImageError,"UnableToRunlengthDecodeImage");
629 }
630 /*
631 Initialize image structure.
632 */
633 image->units=PixelsPerCentimeterResolution;
634 image->x_resolution=(double) dib_info.x_pixels/100.0;
635 image->y_resolution=(double) dib_info.y_pixels/100.0;
636 /*
637 Convert DIB raster image to pixel packets.
638 */
639 switch (dib_info.bits_per_pixel)
640 {
641 case 1:
642 {
643 /*
644 Convert bitmap scanline.
645 */
646 for (y=(long) image->rows-1; y >= 0; y--)
647 {
648 p=pixels+(image->rows-y-1)*bytes_per_line;
649 q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
650 if (q == (PixelPacket *) NULL)
651 break;
652 indexes=GetAuthenticIndexQueue(image);
653 for (x=0; x < ((long) image->columns-7); x+=8)
654 {
655 for (bit=0; bit < 8; bit++)
656 {
657 index=(IndexPacket) ((*p) & (0x80 >> bit) ? 0x01 : 0x00);
658 indexes[x+bit]=index;
659 *q++=image->colormap[(long) index];
660 }
661 p++;
662 }
663 if ((image->columns % 8) != 0)
664 {
665 for (bit=0; bit < (long) (image->columns % 8); bit++)
666 {
667 index=(IndexPacket) ((*p) & (0x80 >> bit) ? 0x01 : 0x00);
668 indexes[x+bit]=index;
669 *q++=image->colormap[(long) index];
670 }
671 p++;
672 }
673 if (SyncAuthenticPixels(image,exception) == MagickFalse)
674 break;
675 if (image->previous == (Image *) NULL)
676 {
677 status=SetImageProgress(image,LoadImageTag,image->rows-y-1,
678 image->rows);
679 if (status == MagickFalse)
680 break;
681 }
682 }
683 break;
684 }
685 case 4:
686 {
687 /*
688 Convert PseudoColor scanline.
689 */
690 for (y=(long) image->rows-1; y >= 0; y--)
691 {
692 p=pixels+(image->rows-y-1)*bytes_per_line;
693 q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
694 if (q == (PixelPacket *) NULL)
695 break;
696 indexes=GetAuthenticIndexQueue(image);
697 for (x=0; x < ((long) image->columns-1); x+=2)
698 {
699 index=ConstrainColormapIndex(image,(*p >> 4) & 0xf);
700 indexes[x]=index;
701 *q++=image->colormap[(long) index];
702 index=ConstrainColormapIndex(image,*p & 0xf);
703 indexes[x+1]=index;
704 *q++=image->colormap[(long) index];
705 p++;
706 }
707 if ((image->columns % 2) != 0)
708 {
709 index=ConstrainColormapIndex(image,(*p >> 4) & 0xf);
710 indexes[x]=index;
711 *q++=image->colormap[(long) index];
712 p++;
713 }
714 if (SyncAuthenticPixels(image,exception) == MagickFalse)
715 break;
716 if (image->previous == (Image *) NULL)
717 {
718 status=SetImageProgress(image,LoadImageTag,image->rows-y-1,
719 image->rows);
720 if (status == MagickFalse)
721 break;
722 }
723 }
724 break;
725 }
726 case 8:
727 {
728 /*
729 Convert PseudoColor scanline.
730 */
731 if ((dib_info.compression == BI_RLE8) ||
732 (dib_info.compression == BI_RLE4))
733 bytes_per_line=image->columns;
734 for (y=(long) image->rows-1; y >= 0; y--)
735 {
736 p=pixels+(image->rows-y-1)*bytes_per_line;
737 q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
738 if (q == (PixelPacket *) NULL)
739 break;
740 indexes=GetAuthenticIndexQueue(image);
741 for (x=0; x < (long) image->columns; x++)
742 {
743 index=ConstrainColormapIndex(image,*p);
744 indexes[x]=index;
745 *q=image->colormap[(long) index];
746 p++;
747 q++;
748 }
749 if (SyncAuthenticPixels(image,exception) == MagickFalse)
750 break;
751 if (image->previous == (Image *) NULL)
752 {
753 status=SetImageProgress(image,LoadImageTag,image->rows-y-1,
754 image->rows);
755 if (status == MagickFalse)
756 break;
757 }
758 }
759 break;
760 }
761 case 16:
762 {
763 unsigned short
764 word;
765
766 /*
767 Convert PseudoColor scanline.
768 */
769 image->storage_class=DirectClass;
770 if (dib_info.compression == BI_RLE8)
771 bytes_per_line=2*image->columns;
772 for (y=(long) image->rows-1; y >= 0; y--)
773 {
774 p=pixels+(image->rows-y-1)*bytes_per_line;
775 q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
776 if (q == (PixelPacket *) NULL)
777 break;
778 for (x=0; x < (long) image->columns; x++)
779 {
780 word=(*p++);
781 word|=(*p++ << 8);
782 if (dib_info.red_mask == 0)
783 {
784 q->red=ScaleCharToQuantum(ScaleColor5to8((unsigned char)
785 ((word >> 10) & 0x1f)));
786 q->green=ScaleCharToQuantum(ScaleColor5to8((unsigned char)
787 ((word >> 5) & 0x1f)));
788 q->blue=ScaleCharToQuantum(ScaleColor5to8((unsigned char)
789 (word & 0x1f)));
790 }
791 else
792 {
793 q->red=ScaleCharToQuantum(ScaleColor5to8((unsigned char)
794 ((word >> 11) & 0x1f)));
795 q->green=ScaleCharToQuantum(ScaleColor6to8((unsigned char)
796 ((word >> 5) & 0x3f)));
797 q->blue=ScaleCharToQuantum(ScaleColor5to8((unsigned char)
798 (word & 0x1f)));
799 }
800 q++;
801 }
802 if (SyncAuthenticPixels(image,exception) == MagickFalse)
803 break;
804 if (image->previous == (Image *) NULL)
805 {
806 status=SetImageProgress(image,LoadImageTag,image->rows-y-1,
807 image->rows);
808 if (status == MagickFalse)
809 break;
810 }
811 }
812 break;
813 }
814 case 24:
815 case 32:
816 {
817 /*
818 Convert DirectColor scanline.
819 */
820 for (y=(long) image->rows-1; y >= 0; y--)
821 {
822 p=pixels+(image->rows-y-1)*bytes_per_line;
823 q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
824 if (q == (PixelPacket *) NULL)
825 break;
826 for (x=0; x < (long) image->columns; x++)
827 {
828 q->blue=ScaleCharToQuantum(*p++);
829 q->green=ScaleCharToQuantum(*p++);
830 q->red=ScaleCharToQuantum(*p++);
831 if (image->matte != MagickFalse)
832 q->opacity=ScaleCharToQuantum(*p++);
833 q++;
834 }
835 if (SyncAuthenticPixels(image,exception) == MagickFalse)
836 break;
837 if (image->previous == (Image *) NULL)
838 {
839 status=SetImageProgress(image,LoadImageTag,image->rows-y-1,
840 image->rows);
841 if (status == MagickFalse)
842 break;
843 }
844 }
845 break;
846 }
847 default:
848 ThrowReaderException(CorruptImageError,"ImproperImageHeader");
849 }
850 pixels=(unsigned char *) RelinquishMagickMemory(pixels);
851 if (EOFBlob(image) != MagickFalse)
852 ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile",
853 image->filename);
854 if (dib_info.height < 0)
855 {
856 Image
857 *flipped_image;
858
859 /*
860 Correct image orientation.
861 */
862 flipped_image=FlipImage(image,exception);
cristybbfd4cd2010-04-13 21:54:39 +0000863 if (flipped_image != (Image *) NULL)
cristy3ed852e2009-09-05 21:47:34 +0000864 {
cristybbfd4cd2010-04-13 21:54:39 +0000865 DuplicateBlob(flipped_image,image);
866 image=DestroyImage(image);
867 image=flipped_image;
cristy3ed852e2009-09-05 21:47:34 +0000868 }
cristy3ed852e2009-09-05 21:47:34 +0000869 }
870 (void) CloseBlob(image);
871 return(GetFirstImageInList(image));
872}
873
874/*
875%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
876% %
877% %
878% %
879% R e g i s t e r D I B I m a g e %
880% %
881% %
882% %
883%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
884%
885% RegisterDIBImage() adds attributes for the DIB image format to
886% the list of supported formats. The attributes include the image format
887% tag, a method to read and/or write the format, whether the format
888% supports the saving of more than one frame to the same file or blob,
889% whether the format supports native in-memory I/O, and a brief
890% description of the format.
891%
892% The format of the RegisterDIBImage method is:
893%
894% unsigned long RegisterDIBImage(void)
895%
896*/
897ModuleExport unsigned long RegisterDIBImage(void)
898{
899 MagickInfo
900 *entry;
901
902 entry=SetMagickInfo("DIB");
903 entry->decoder=(DecodeImageHandler *) ReadDIBImage;
904 entry->encoder=(EncodeImageHandler *) WriteDIBImage;
905 entry->magick=(IsImageFormatHandler *) IsDIB;
906 entry->adjoin=MagickFalse;
907 entry->stealth=MagickTrue;
908 entry->description=ConstantString(
909 "Microsoft Windows 3.X Packed Device-Independent Bitmap");
910 entry->module=ConstantString("DIB");
911 (void) RegisterMagickInfo(entry);
912 return(MagickImageCoderSignature);
913}
914
915/*
916%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
917% %
918% %
919% %
920% U n r e g i s t e r D I B I m a g e %
921% %
922% %
923% %
924%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
925%
926% UnregisterDIBImage() removes format registrations made by the
927% DIB module from the list of supported formats.
928%
929% The format of the UnregisterDIBImage method is:
930%
931% UnregisterDIBImage(void)
932%
933*/
934ModuleExport void UnregisterDIBImage(void)
935{
936 (void) UnregisterMagickInfo("DIB");
937}
938
939/*
940%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
941% %
942% %
943% %
944% W r i t e D I B I m a g e %
945% %
946% %
947% %
948%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
949%
950% WriteDIBImage() writes an image in Microsoft Windows bitmap encoded
951% image format.
952%
953% The format of the WriteDIBImage method is:
954%
955% MagickBooleanType WriteDIBImage(const ImageInfo *image_info,Image *image)
956%
957% A description of each parameter follows.
958%
959% o image_info: the image info.
960%
961% o image: The image.
962%
963*/
964static MagickBooleanType WriteDIBImage(const ImageInfo *image_info,Image *image)
965{
966 DIBInfo
967 dib_info;
968
969 long
970 y;
971
972 MagickBooleanType
973 status;
974
975 register const IndexPacket
976 *indexes;
977
978 register const PixelPacket
979 *p;
980
981 register long
982 i,
983 x;
984
985 register unsigned char
986 *q;
987
988 unsigned char
989 *dib_data,
990 *pixels;
991
992 unsigned long
993 bytes_per_line;
994
995 /*
996 Open output image file.
997 */
998 assert(image_info != (const ImageInfo *) NULL);
999 assert(image_info->signature == MagickSignature);
1000 assert(image != (Image *) NULL);
1001 assert(image->signature == MagickSignature);
1002 if (image->debug != MagickFalse)
1003 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1004 status=OpenBlob(image_info,image,WriteBinaryBlobMode,&image->exception);
1005 if (status == MagickFalse)
1006 return(status);
1007 /*
1008 Initialize DIB raster file header.
1009 */
1010 if (image->colorspace != RGBColorspace)
1011 (void) TransformImageColorspace(image,RGBColorspace);
1012 if (image->storage_class == DirectClass)
1013 {
1014 /*
1015 Full color DIB raster.
1016 */
1017 dib_info.number_colors=0;
1018 dib_info.bits_per_pixel=(unsigned short) (image->matte ? 32 : 24);
1019 }
1020 else
1021 {
1022 /*
1023 Colormapped DIB raster.
1024 */
1025 dib_info.bits_per_pixel=8;
1026 if (image_info->depth > 8)
1027 dib_info.bits_per_pixel=16;
1028 if (IsMonochromeImage(image,&image->exception) != MagickFalse)
1029 dib_info.bits_per_pixel=1;
1030 dib_info.number_colors=(dib_info.bits_per_pixel == 16) ? 0 :
1031 (1UL << dib_info.bits_per_pixel);
1032 }
1033 bytes_per_line=4*((image->columns*dib_info.bits_per_pixel+31)/32);
1034 dib_info.size=40;
1035 dib_info.width=(long) image->columns;
1036 dib_info.height=(long) image->rows;
1037 dib_info.planes=1;
1038 dib_info.compression=(unsigned long) (dib_info.bits_per_pixel == 16 ?
1039 BI_BITFIELDS : BI_RGB);
1040 dib_info.image_size=bytes_per_line*image->rows;
1041 dib_info.x_pixels=75*39;
1042 dib_info.y_pixels=75*39;
1043 switch (image->units)
1044 {
1045 case UndefinedResolution:
1046 case PixelsPerInchResolution:
1047 {
1048 dib_info.x_pixels=(unsigned long) (100.0*image->x_resolution/2.54);
1049 dib_info.y_pixels=(unsigned long) (100.0*image->y_resolution/2.54);
1050 break;
1051 }
1052 case PixelsPerCentimeterResolution:
1053 {
1054 dib_info.x_pixels=(unsigned long) (100.0*image->x_resolution);
1055 dib_info.y_pixels=(unsigned long) (100.0*image->y_resolution);
1056 break;
1057 }
1058 }
1059 dib_info.colors_important=dib_info.number_colors;
1060 /*
1061 Convert MIFF to DIB raster pixels.
1062 */
1063 pixels=(unsigned char *) AcquireQuantumMemory(dib_info.image_size,
1064 sizeof(*pixels));
1065 if (pixels == (unsigned char *) NULL)
1066 ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed");
1067 (void) ResetMagickMemory(pixels,0,dib_info.image_size);
1068 switch (dib_info.bits_per_pixel)
1069 {
1070 case 1:
1071 {
1072 register unsigned char
1073 bit,
1074 byte;
1075
1076 /*
1077 Convert PseudoClass image to a DIB monochrome image.
1078 */
1079 for (y=0; y < (long) image->rows; y++)
1080 {
1081 p=GetVirtualPixels(image,0,y,image->columns,1,&image->exception);
1082 if (p == (const PixelPacket *) NULL)
1083 break;
1084 indexes=GetVirtualIndexQueue(image);
1085 q=pixels+(image->rows-y-1)*bytes_per_line;
1086 bit=0;
1087 byte=0;
1088 for (x=0; x < (long) image->columns; x++)
1089 {
1090 byte<<=1;
1091 byte|=indexes[x] != 0 ? 0x01 : 0x00;
1092 bit++;
1093 if (bit == 8)
1094 {
1095 *q++=byte;
1096 bit=0;
1097 byte=0;
1098 }
1099 p++;
1100 }
1101 if (bit != 0)
1102 {
1103 *q++=(unsigned char) (byte << (8-bit));
1104 x++;
1105 }
1106 for (x=(long) (image->columns+7)/8; x < (long) bytes_per_line; x++)
1107 *q++=0x00;
1108 status=SetImageProgress(image,SaveImageTag,y,image->rows);
1109 if (status == MagickFalse)
1110 break;
1111 }
1112 break;
1113 }
1114 case 8:
1115 {
1116 /*
1117 Convert PseudoClass packet to DIB pixel.
1118 */
1119 for (y=0; y < (long) image->rows; y++)
1120 {
1121 p=GetVirtualPixels(image,0,y,image->columns,1,&image->exception);
1122 if (p == (const PixelPacket *) NULL)
1123 break;
1124 indexes=GetVirtualIndexQueue(image);
1125 q=pixels+(image->rows-y-1)*bytes_per_line;
1126 for (x=0; x < (long) image->columns; x++)
1127 *q++=(unsigned char) indexes[x];
1128 for ( ; x < (long) bytes_per_line; x++)
1129 *q++=0x00;
1130 status=SetImageProgress(image,SaveImageTag,y,image->rows);
1131 if (status == MagickFalse)
1132 break;
1133 }
1134 break;
1135 }
1136 case 16:
1137 {
1138 unsigned short
1139 word;
1140 /*
1141 Convert PseudoClass packet to DIB pixel.
1142 */
1143 for (y=0; y < (long) image->rows; y++)
1144 {
1145 p=GetVirtualPixels(image,0,y,image->columns,1,&image->exception);
1146 if (p == (const PixelPacket *) NULL)
1147 break;
1148 q=pixels+(image->rows-y-1)*bytes_per_line;
1149 for (x=0; x < (long) image->columns; x++)
1150 {
1151 word=(unsigned short) ((ScaleColor8to5((unsigned char)
cristyce70c172010-01-07 17:15:30 +00001152 ScaleQuantumToChar(GetRedPixelComponent(p))) << 11) | (ScaleColor8to6((unsigned char)
1153 ScaleQuantumToChar(GetGreenPixelComponent(p))) << 5) | (ScaleColor8to5(
1154 (unsigned char) ScaleQuantumToChar((unsigned char) GetBluePixelComponent(p)) << 0)));
cristy3ed852e2009-09-05 21:47:34 +00001155 *q++=(unsigned char)(word & 0xff);
1156 *q++=(unsigned char)(word >> 8);
1157 p++;
1158 }
1159 for (x=2L*image->columns; x < (long) bytes_per_line; x++)
1160 *q++=0x00;
1161 status=SetImageProgress(image,SaveImageTag,y,image->rows);
1162 if (status == MagickFalse)
1163 break;
1164 }
1165 break;
1166 }
1167 case 24:
1168 case 32:
1169 {
1170 /*
1171 Convert DirectClass packet to DIB RGB pixel.
1172 */
1173 for (y=0; y < (long) image->rows; y++)
1174 {
1175 p=GetVirtualPixels(image,0,y,image->columns,1,&image->exception);
1176 if (p == (const PixelPacket *) NULL)
1177 break;
1178 q=pixels+(image->rows-y-1)*bytes_per_line;
1179 for (x=0; x < (long) image->columns; x++)
1180 {
cristyce70c172010-01-07 17:15:30 +00001181 *q++=ScaleQuantumToChar(GetBluePixelComponent(p));
1182 *q++=ScaleQuantumToChar(GetGreenPixelComponent(p));
1183 *q++=ScaleQuantumToChar(GetRedPixelComponent(p));
cristy3ed852e2009-09-05 21:47:34 +00001184 if (image->matte != MagickFalse)
cristyce70c172010-01-07 17:15:30 +00001185 *q++=ScaleQuantumToChar(GetOpacityPixelComponent(p));
cristy3ed852e2009-09-05 21:47:34 +00001186 p++;
1187 }
1188 if (dib_info.bits_per_pixel == 24)
1189 for (x=3L*image->columns; x < (long) bytes_per_line; x++)
1190 *q++=0x00;
1191 status=SetImageProgress(image,SaveImageTag,y,image->rows);
1192 if (status == MagickFalse)
1193 break;
1194 }
1195 break;
1196 }
1197 }
1198 if (dib_info.bits_per_pixel == 8)
1199 if (image_info->compression != NoCompression)
1200 {
1201 size_t
1202 length;
1203
1204 /*
1205 Convert run-length encoded raster pixels.
1206 */
1207 length=2UL*(bytes_per_line+2UL)+2UL;
1208 dib_data=(unsigned char *) AcquireQuantumMemory(length,
1209 (image->rows+2UL)*sizeof(*dib_data));
1210 if (pixels == (unsigned char *) NULL)
1211 {
1212 pixels=(unsigned char *) RelinquishMagickMemory(pixels);
1213 ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed");
1214 }
1215 dib_info.image_size=(unsigned long) EncodeImage(image,bytes_per_line,
1216 pixels,dib_data);
1217 pixels=(unsigned char *) RelinquishMagickMemory(pixels);
1218 pixels=dib_data;
1219 dib_info.compression = BI_RLE8;
1220 }
1221 /*
1222 Write DIB header.
1223 */
1224 (void) WriteBlobLSBLong(image,dib_info.size);
1225 (void) WriteBlobLSBLong(image,(unsigned long) dib_info.width);
1226 (void) WriteBlobLSBLong(image,(unsigned short) dib_info.height);
1227 (void) WriteBlobLSBShort(image,(unsigned short) dib_info.planes);
1228 (void) WriteBlobLSBShort(image,dib_info.bits_per_pixel);
1229 (void) WriteBlobLSBLong(image,dib_info.compression);
1230 (void) WriteBlobLSBLong(image,dib_info.image_size);
1231 (void) WriteBlobLSBLong(image,dib_info.x_pixels);
1232 (void) WriteBlobLSBLong(image,dib_info.y_pixels);
1233 (void) WriteBlobLSBLong(image,dib_info.number_colors);
1234 (void) WriteBlobLSBLong(image,dib_info.colors_important);
1235 if (image->storage_class == PseudoClass)
1236 {
1237 if (dib_info.bits_per_pixel <= 8)
1238 {
1239 unsigned char
1240 *dib_colormap;
1241
1242 /*
1243 Dump colormap to file.
1244 */
1245 dib_colormap=(unsigned char *) AcquireQuantumMemory((size_t)
1246 (1UL << dib_info.bits_per_pixel),4*sizeof(dib_colormap));
1247 if (dib_colormap == (unsigned char *) NULL)
1248 ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed");
1249 q=dib_colormap;
1250 for (i=0; i < (long) MagickMin(image->colors,dib_info.number_colors); i++)
1251 {
1252 *q++=ScaleQuantumToChar(image->colormap[i].blue);
1253 *q++=ScaleQuantumToChar(image->colormap[i].green);
1254 *q++=ScaleQuantumToChar(image->colormap[i].red);
1255 *q++=(Quantum) 0x0;
1256 }
1257 for ( ; i < (long) (1L << dib_info.bits_per_pixel); i++)
1258 {
1259 *q++=(Quantum) 0x0;
1260 *q++=(Quantum) 0x0;
1261 *q++=(Quantum) 0x0;
1262 *q++=(Quantum) 0x0;
1263 }
1264 (void) WriteBlob(image,(size_t) (4*(1 << dib_info.bits_per_pixel)),
1265 dib_colormap);
1266 dib_colormap=(unsigned char *) RelinquishMagickMemory(dib_colormap);
1267 }
1268 else
1269 if ((dib_info.bits_per_pixel == 16) &&
1270 (dib_info.compression == BI_BITFIELDS))
1271 {
1272 (void) WriteBlobLSBLong(image,0xf800);
1273 (void) WriteBlobLSBLong(image,0x07e0);
1274 (void) WriteBlobLSBLong(image,0x001f);
1275 }
1276 }
1277 (void) WriteBlob(image,dib_info.image_size,pixels);
1278 pixels=(unsigned char *) RelinquishMagickMemory(pixels);
1279 (void) CloseBlob(image);
1280 return(MagickTrue);
1281}