]>
git.saurik.com Git - wxWidgets.git/blob - src/common/gifdecod.cpp
1 /////////////////////////////////////////////////////////////////////////////
3 // Purpose: wxGIFDecoder, GIF reader for wxImage and wxAnimation
4 // Author: Guillermo Rodriguez Garcia <guille@iies.es>
7 // Copyright: (c) Guillermo Rodriguez Garcia
8 // Licence: wxWindows licence
9 /////////////////////////////////////////////////////////////////////////////
11 // For compilers that support precompilation, includes "wx.h".
12 #include "wx/wxprec.h"
20 # include "wx/palette.h"
23 #if wxUSE_STREAMS && wxUSE_GIF
27 #include "wx/gifdecod.h"
30 //---------------------------------------------------------------------------
31 // GIFImage constructor
32 //---------------------------------------------------------------------------
42 p
= (unsigned char *) NULL
;
43 pal
= (unsigned char *) NULL
;
44 next
= (GIFImage
*) NULL
;
45 prev
= (GIFImage
*) NULL
;
48 //---------------------------------------------------------------------------
49 // wxGIFDecoder constructor and destructor
50 //---------------------------------------------------------------------------
52 wxGIFDecoder::wxGIFDecoder(wxInputStream
*s
, bool anim
)
68 wxGIFDecoder::~wxGIFDecoder()
73 void wxGIFDecoder::Destroy()
75 GIFImage
*pimg
, *paux
;
96 //---------------------------------------------------------------------------
97 // Convert this image to a wxImage object
98 //---------------------------------------------------------------------------
100 // This function was designed by Vaclav Slavik
102 bool wxGIFDecoder::ConvertToImage(wxImage
*image
) const
104 unsigned char *src
, *dst
, *pal
;
108 /* just in case... */
111 /* create the image */
112 image
->Create(GetWidth(), GetHeight());
119 dst
= image
->GetData();
120 transparent
= GetTransparentColour();
122 /* set transparent colour mask */
123 if (transparent
!= -1)
125 for (i
= 0; i
< 256; i
++)
127 if ((pal
[3 * i
+ 0] == 255) &&
128 (pal
[3 * i
+ 1] == 0) &&
129 (pal
[3 * i
+ 2] == 255))
131 pal
[3 * i
+ 2] = 254;
135 pal
[3 * transparent
+ 0] = 255,
136 pal
[3 * transparent
+ 1] = 0,
137 pal
[3 * transparent
+ 2] = 255;
139 image
->SetMaskColour(255, 0, 255);
142 image
->SetMask(false);
145 unsigned char r
[256];
146 unsigned char g
[256];
147 unsigned char b
[256];
149 for (i
= 0; i
< 256; i
++)
156 image
->SetPalette(wxPalette(256, r
, g
, b
));
157 #endif // wxUSE_PALETTE
159 /* copy image data */
160 for (i
= 0; i
< (GetWidth() * GetHeight()); i
++, src
++)
162 *(dst
++) = pal
[3 * (*src
) + 0];
163 *(dst
++) = pal
[3 * (*src
) + 1];
164 *(dst
++) = pal
[3 * (*src
) + 2];
171 //---------------------------------------------------------------------------
173 //---------------------------------------------------------------------------
175 // Get data for current frame
177 int wxGIFDecoder::GetFrameIndex() const { return m_image
; }
178 unsigned char* wxGIFDecoder::GetData() const { return (m_pimage
->p
); }
179 unsigned char* wxGIFDecoder::GetPalette() const { return (m_pimage
->pal
); }
180 unsigned int wxGIFDecoder::GetWidth() const { return (m_pimage
->w
); }
181 unsigned int wxGIFDecoder::GetHeight() const { return (m_pimage
->h
); }
182 unsigned int wxGIFDecoder::GetTop() const { return (m_pimage
->top
); }
183 unsigned int wxGIFDecoder::GetLeft() const { return (m_pimage
->left
); }
184 int wxGIFDecoder::GetTransparentColour() const { return (m_pimage
->transparent
); }
185 int wxGIFDecoder::GetDisposalMethod() const { return (m_pimage
->disposal
); }
186 long wxGIFDecoder::GetDelay() const { return (m_pimage
->delay
); }
190 unsigned int wxGIFDecoder::GetLogicalScreenWidth() const { return m_screenw
; }
191 unsigned int wxGIFDecoder::GetLogicalScreenHeight() const { return m_screenh
; }
192 int wxGIFDecoder::GetBackgroundColour() const { return m_background
; }
193 int wxGIFDecoder::GetNumberOfFrames() const { return m_nimages
; }
194 bool wxGIFDecoder::IsAnimation() const { return (m_nimages
> 1); }
197 //---------------------------------------------------------------------------
198 // Functions to move through the animation
199 //---------------------------------------------------------------------------
201 bool wxGIFDecoder::GoFirstFrame()
211 bool wxGIFDecoder::GoLastFrame()
221 bool wxGIFDecoder::GoNextFrame(bool cyclic
)
226 if ((m_image
< m_nimages
) || (cyclic
))
228 m_pimage
= m_pimage
->next
;
243 bool wxGIFDecoder::GoPrevFrame(bool cyclic
)
248 if ((m_image
> 1) || (cyclic
))
250 m_pimage
= m_pimage
->prev
;
265 bool wxGIFDecoder::GoFrame(int which
)
270 if ((which
>= 1) && (which
<= m_nimages
))
275 while (m_image
< which
)
278 m_pimage
= m_pimage
->next
;
288 //---------------------------------------------------------------------------
289 // GIF reading and decoding
290 //---------------------------------------------------------------------------
293 // Reads the next code from the file stream, with size 'bits'
295 int wxGIFDecoder::getcode(int bits
, int ab_fin
)
297 unsigned int mask
; /* bit mask */
298 unsigned int code
; /* code (result) */
301 /* get remaining bits from last byte read */
302 mask
= (1 << bits
) - 1;
303 code
= (m_lastbyte
>> (8 - m_restbits
)) & mask
;
305 /* keep reading new bytes while needed */
306 while (bits
> m_restbits
)
308 /* if no bytes left in this block, read the next block */
311 m_restbyte
= (unsigned char)m_f
->GetC();
313 /* Some encoders are a bit broken: instead of issuing
314 * an end-of-image symbol (ab_fin) they come up with
315 * a zero-length subblock!! We catch this here so
316 * that the decoder sees an ab_fin code.
325 m_f
->Read((void *) m_buffer
, m_restbyte
);
326 if (m_f
->LastRead() != m_restbyte
)
334 /* read next byte and isolate the bits we need */
335 m_lastbyte
= (unsigned char) (*m_bufp
++);
336 mask
= (1 << (bits
- m_restbits
)) - 1;
337 code
= code
+ ((m_lastbyte
& mask
) << m_restbits
);
340 /* adjust total number of bits extracted from the buffer */
341 m_restbits
= m_restbits
+ 8;
344 /* find number of bits remaining for next code */
345 m_restbits
= (m_restbits
- bits
);
352 // GIF decoding function. The initial code size (aka root size)
353 // is 'bits'. Supports interlaced images (interl == 1).
354 // Returns wxGIF_OK (== 0) on success, or an error code if something
355 // fails (see header file for details)
356 int wxGIFDecoder::dgif(GIFImage
*img
, int interl
, int bits
)
358 static const int allocSize
= 4096 + 1;
359 int *ab_prefix
= new int[allocSize
]; /* alphabet (prefixes) */
360 if (ab_prefix
== NULL
)
365 int *ab_tail
= new int[allocSize
]; /* alphabet (tails) */
372 int *stack
= new int[allocSize
]; /* decompression stack */
380 int ab_clr
; /* clear code */
381 int ab_fin
; /* end of info code */
382 int ab_bits
; /* actual symbol width, in bits */
383 int ab_free
; /* first free position in alphabet */
384 int ab_max
; /* last possible character in alphabet */
385 int pass
; /* pass number in interlaced images */
386 int pos
; /* index into decompresion stack */
387 unsigned int x
, y
; /* position in image buffer */
389 int code
, readcode
, lastcode
, abcabca
;
391 /* these won't change */
392 ab_clr
= (1 << bits
);
393 ab_fin
= (1 << bits
) + 1;
395 /* these will change through the decompression proccess */
397 ab_free
= (1 << bits
) + 2;
398 ab_max
= (1 << ab_bits
) - 1;
404 /* reset decoder vars */
412 readcode
= code
= getcode(ab_bits
, ab_fin
);
415 if (code
== ab_fin
) break;
417 /* reset alphabet? */
420 /* reset main variables */
422 ab_free
= (1 << bits
) + 2;
423 ab_max
= (1 << ab_bits
) - 1;
427 /* skip to next code */
431 /* unknown code: special case (like in ABCABCA) */
434 code
= lastcode
; /* take last string */
435 stack
[pos
++] = abcabca
; /* add first character */
438 /* build the string for this code in the stack */
439 while (code
> ab_clr
)
441 stack
[pos
++] = ab_tail
[code
];
442 code
= ab_prefix
[code
];
444 // Don't overflow. This shouldn't happen with normal
445 // GIF files, the allocSize of 4096+1 is enough. This
446 // will only happen with badly formed GIFs.
447 if (pos
>= allocSize
)
452 return wxGIF_INVFORMAT
;
456 if (pos
>= allocSize
)
461 return wxGIF_INVFORMAT
;
464 stack
[pos
] = code
; /* push last code into the stack */
465 abcabca
= code
; /* save for special case */
467 /* make new entry in alphabet (only if NOT just cleared) */
470 ab_prefix
[ab_free
] = lastcode
;
471 ab_tail
[ab_free
] = code
;
474 if ((ab_free
> ab_max
) && (ab_bits
< 12))
477 ab_max
= (1 << ab_bits
) - 1;
481 /* dump stack data to the image buffer */
484 (img
->p
)[x
+ (y
* (img
->w
))] = (char) stack
[pos
];
493 /* support for interlaced images */
496 case 1: y
+= 8; break;
497 case 2: y
+= 8; break;
498 case 3: y
+= 4; break;
499 case 4: y
+= 2; break;
502 /* loop until a valid y coordinate has been
503 found, Or if the maximum number of passes has
504 been reached, exit the loop, and stop image
505 decoding (At this point the image is successfully
507 If we don't loop, but merely set y to some other
508 value, that new value might still be invalid depending
509 on the height of the image. This would cause out of
512 while (y
>= (img
->h
))
516 case 2: y
= 4; break;
517 case 3: y
= 2; break;
518 case 4: y
= 1; break;
522 It's possible we arrive here. For example this
523 happens when the image is interlaced, and the
524 height is 1. Looking at the above cases, the
525 lowest possible y is 1. While the only valid
526 one would be 0 for an image of height 1. So
527 'eventually' the loop will arrive here.
528 This case makes sure this while loop is
529 exited, as well as the 2 other ones.
532 // Set y to a valid coordinate so the local
533 // while loop will be exited. (y = 0 always
534 // is >= img->h since if img->h == 0 the
535 // image is never decoded)
538 // This will exit the other outer while loop
541 // This will halt image decoding.
553 Normally image decoding is finished when an End of Information code is
554 encountered (code == ab_fin) however some broken encoders write wrong
555 "block byte counts" (The first byte value after the "code size" byte),
556 being one value too high. It might very well be possible other variants
557 of this problem occur as well. The only sensible solution seems to
558 be to check for clipping.
559 Example of wrong encoding:
560 (1 * 1 B/W image, raster data stream follows in hex bytes)
562 02 << B/W images have a code size of 2
563 02 << Block byte count
565 00 << Zero byte count (terminates data stream)
567 Because the block byte count is 2, the zero byte count is used in the
568 decoding process, and decoding is continued after this byte. (While it
569 should signal an end of image)
575 01 << When decoded this correctly includes the End of Information code
583 (The 44 doesn't include an End of Information code, but at least the
584 decoder correctly skips to 00 now after decoding, and signals this
585 as an End of Information itself)
599 while (code
!= ab_fin
);
601 delete [] ab_prefix
;
610 // Returns true if the file looks like a valid GIF, false otherwise.
612 bool wxGIFDecoder::CanRead()
614 unsigned char buf
[3];
616 if ( !m_f
->Read(buf
, WXSIZEOF(buf
)) )
619 m_f
->SeekI(-(wxFileOffset
)WXSIZEOF(buf
), wxFromCurrent
);
621 return memcmp(buf
, "GIF", WXSIZEOF(buf
)) == 0;
626 // Reads and decodes one or more GIF images, depending on whether
627 // animated GIF support is enabled. Can read GIFs with any bit
628 // size (color depth), but the output images are always expanded
629 // to 8 bits per pixel. Also, the image palettes always contain
630 // 256 colors, although some of them may be unused. Returns wxGIF_OK
631 // (== 0) on success, or an error code if something fails (see
632 // header file for details)
634 int wxGIFDecoder::ReadGIF()
636 unsigned int ncolors
;
637 int bits
, interl
, transparent
, disposal
, i
;
640 unsigned char type
= 0;
641 unsigned char pal
[768];
642 unsigned char buf
[16];
644 GIFImage
*pimg
, *pprev
;
646 /* check GIF signature */
648 return wxGIF_INVFORMAT
;
650 /* check for animated GIF support (ver. >= 89a) */
652 static const size_t headerSize
= (3 + 3);
653 m_f
->Read(buf
, headerSize
);
654 if (m_f
->LastRead() != headerSize
)
656 return wxGIF_INVFORMAT
;
659 if (memcmp(buf
+ 3, "89a", 3) < 0)
664 /* read logical screen descriptor block (LSDB) */
665 static const size_t lsdbSize
= (2 + 2 + 1 + 1 + 1);
666 m_f
->Read(buf
, lsdbSize
);
667 if (m_f
->LastRead() != lsdbSize
)
669 return wxGIF_INVFORMAT
;
672 m_screenw
= buf
[0] + 256 * buf
[1];
673 m_screenh
= buf
[2] + 256 * buf
[3];
675 if ((m_screenw
== 0) || (m_screenh
== 0))
677 return wxGIF_INVFORMAT
;
680 /* load global color map if available */
681 if ((buf
[4] & 0x80) == 0x80)
683 m_background
= buf
[5];
685 ncolors
= 2 << (buf
[4] & 0x07);
686 size_t numBytes
= 3 * ncolors
;
687 m_f
->Read(pal
, numBytes
);
688 if (m_f
->LastRead() != numBytes
)
690 return wxGIF_INVFORMAT
;
694 /* transparent colour, disposal method and delay default to unused */
708 type
= (unsigned char)m_f
->GetC();
711 If the end of file has been reached (or an error) and a ";"
712 (0x3B) hasn't been encountered yet, exit the loop. (Without this
713 check the while loop would loop endlessly.) Later on, in the next while
714 loop, the file will be treated as being truncated (But still
715 be decoded as far as possible). returning wxGIF_TRUNCATED is not
716 possible here since some init code is done after this loop.
718 if (m_f
->Eof())// || !m_f->IsOk())
721 type is set to some bogus value, so there's no
722 need to continue evaluating it.
724 break; // Alternative : "return wxGIF_INVFORMAT;"
733 /* extension block? */
736 if (((unsigned char)m_f
->GetC()) == 0xF9)
737 /* graphics control extension, parse it */
739 static const size_t gceSize
= 6;
740 m_f
->Read(buf
, gceSize
);
741 if (m_f
->LastRead() != gceSize
)
744 return wxGIF_INVFORMAT
;
747 /* read delay and convert from 1/100 of a second to ms */
748 delay
= 10 * (buf
[2] + 256 * buf
[3]);
750 /* read transparent colour index, if used */
752 transparent
= buf
[4];
754 /* read disposal method */
755 disposal
= ((buf
[1] & 0x1C) >> 2) - 1;
758 /* other extension, skip */
760 while ((i
= (unsigned char)m_f
->GetC()) != 0)
762 m_f
->SeekI(i
, wxFromCurrent
);
772 /* image descriptor block? */
775 /* allocate memory for IMAGEN struct */
776 pimg
= (*ppimg
) = new GIFImage();
784 /* fill in the data */
785 static const size_t idbSize
= (2 + 2 + 2 + 2 + 1);
786 m_f
->Read(buf
, idbSize
);
787 if (m_f
->LastRead() != idbSize
)
790 return wxGIF_INVFORMAT
;
793 pimg
->left
= buf
[0] + 256 * buf
[1];
794 pimg
->top
= buf
[2] + 256 * buf
[3];
796 pimg->left = buf[4] + 256 * buf[5];
797 pimg->top = buf[4] + 256 * buf[5];
799 pimg
->w
= buf
[4] + 256 * buf
[5];
800 pimg
->h
= buf
[6] + 256 * buf
[7];
802 if ((pimg
->w
== 0) || (pimg
->w
> m_screenw
) || (pimg
->h
== 0) || (pimg
->h
> m_screenh
))
805 return wxGIF_INVFORMAT
;
808 interl
= ((buf
[8] & 0x40)? 1 : 0);
809 size
= pimg
->w
* pimg
->h
;
811 pimg
->transparent
= transparent
;
812 pimg
->disposal
= disposal
;
819 /* allocate memory for image and palette */
820 pimg
->p
= (unsigned char *) malloc((size_t)size
);
821 pimg
->pal
= (unsigned char *) malloc(768);
823 if ((!pimg
->p
) || (!pimg
->pal
))
829 /* load local color map if available, else use global map */
830 if ((buf
[8] & 0x80) == 0x80)
832 ncolors
= 2 << (buf
[8] & 0x07);
833 size_t numBytes
= 3 * ncolors
;
834 m_f
->Read(pimg
->pal
, numBytes
);
835 if (m_f
->LastRead() != numBytes
)
838 return wxGIF_INVFORMAT
;
843 memcpy(pimg
->pal
, pal
, 768);
846 /* get initial code size from first byte in raster data */
847 bits
= (unsigned char)m_f
->GetC();
851 return wxGIF_INVFORMAT
;
855 int result
= dgif(pimg
, interl
, bits
);
856 if (result
!= wxGIF_OK
)
863 /* if this is not an animated GIF, exit after first image */
872 return wxGIF_INVFORMAT
;
875 /* setup image pointers */
880 /* try to read to the end of the stream */
884 return wxGIF_TRUNCATED
;
886 type
= (unsigned char)m_f
->GetC();
894 while ((i
= (unsigned char)m_f
->GetC()) != 0)
896 m_f
->SeekI(i
, wxFromCurrent
);
899 else if (type
== 0x2C)
901 /* image descriptor block */
902 static const size_t idbSize
= (2 + 2 + 2 + 2 + 1);
903 m_f
->Read(buf
, idbSize
);
904 if (m_f
->LastRead() != idbSize
)
907 return wxGIF_INVFORMAT
;
910 /* local color map */
911 if ((buf
[8] & 0x80) == 0x80)
913 ncolors
= 2 << (buf
[8] & 0x07);
914 wxFileOffset pos
= m_f
->TellI();
915 wxFileOffset numBytes
= 3 * ncolors
;
916 m_f
->SeekI(numBytes
, wxFromCurrent
);
917 if (m_f
->TellI() != (pos
+ numBytes
))
920 return wxGIF_INVFORMAT
;
924 /* initial code size */
928 while ((i
= (unsigned char)m_f
->GetC()) != 0)
930 m_f
->SeekI(i
, wxFromCurrent
);
933 else if ((type
!= 0x3B) && (type
!= 00)) /* testing */
935 /* images are OK, but couldn't read to the end of the stream */
936 return wxGIF_TRUNCATED
;
943 #endif // wxUSE_STREAMS && wxUSE_GIF