1 /////////////////////////////////////////////////////////////////////////////
2 // Name: src/common/imagbmp.cpp
3 // Purpose: wxImage BMP,ICO and CUR handlers
4 // Author: Robert Roebling, Chris Elliott
6 // Copyright: (c) Robert Roebling, Chris Elliott
7 // Licence: wxWindows licence
8 /////////////////////////////////////////////////////////////////////////////
10 // For compilers that support precompilation, includes "wx.h".
11 #include "wx/wxprec.h"
19 #include "wx/imagbmp.h"
23 #include "wx/msw/wrapwin.h"
27 #include "wx/bitmap.h"
28 #include "wx/palette.h"
33 #include "wx/filefn.h"
34 #include "wx/wfstream.h"
35 #include "wx/quantize.h"
36 #include "wx/anidecod.h"
47 //-----------------------------------------------------------------------------
49 //-----------------------------------------------------------------------------
51 IMPLEMENT_DYNAMIC_CLASS(wxBMPHandler
,wxImageHandler
)
68 #define BI_BITFIELDS 3
71 #define poffset (line * width * 3 + column * 3)
73 bool wxBMPHandler::SaveFile(wxImage
*image
,
74 wxOutputStream
& stream
,
77 return SaveDib(image
, stream
, verbose
, true/*IsBmp*/, false/*IsMask*/);
80 bool wxBMPHandler::SaveDib(wxImage
*image
,
81 wxOutputStream
& stream
,
87 wxCHECK_MSG( image
, false, _T("invalid pointer in wxBMPHandler::SaveFile") );
92 wxLogError(_("BMP: Couldn't save invalid image."));
96 // get the format of the BMP file to save, else use 24bpp
97 unsigned format
= wxBMP_24BPP
;
98 if ( image
->HasOption(wxIMAGE_OPTION_BMP_FORMAT
) )
99 format
= image
->GetOptionInt(wxIMAGE_OPTION_BMP_FORMAT
);
101 wxUint16 bpp
; // # of bits per pixel
102 int palette_size
; // # of color map entries, ie. 2^bpp colors
104 // set the bpp and appropriate palette_size, and do additional checks
105 if ( (format
== wxBMP_1BPP
) || (format
== wxBMP_1BPP_BW
) )
110 else if ( format
== wxBMP_4BPP
)
115 else if ( (format
== wxBMP_8BPP
) || (format
== wxBMP_8BPP_GREY
) ||
116 (format
== wxBMP_8BPP_RED
) || (format
== wxBMP_8BPP_PALETTE
) )
118 // need to set a wxPalette to use this, HOW TO CHECK IF VALID, SIZE?
119 if ((format
== wxBMP_8BPP_PALETTE
)
121 && !image
->HasPalette()
122 #endif // wxUSE_PALETTE
126 wxLogError(_("BMP: wxImage doesn't have own wxPalette."));
132 else // you get 24bpp
134 format
= wxBMP_24BPP
;
139 unsigned width
= image
->GetWidth();
140 unsigned row_padding
= (4 - int(width
*bpp
/8.0) % 4) % 4; // # bytes to pad to dword
141 unsigned row_width
= int(width
* bpp
/8.0) + row_padding
; // # of bytes per row
146 wxUint16 magic
; // format magic, always 'BM'
147 wxUint32 filesize
; // total file size, inc. headers
148 wxUint32 reserved
; // for future use
149 wxUint32 data_offset
; // image data offset in the file
152 wxUint32 bih_size
; // 2nd part's size
153 wxUint32 width
, height
; // bitmap's dimensions
154 wxUint16 planes
; // num of planes
155 wxUint16 bpp
; // bits per pixel
156 wxUint32 compression
; // compression method
157 wxUint32 size_of_bmp
; // size of the bitmap
158 wxUint32 h_res
, v_res
; // image resolution in pixels-per-meter
159 wxUint32 num_clrs
; // number of colors used
160 wxUint32 num_signif_clrs
;// number of significant colors
163 wxUint32 hdr_size
= 14/*BitmapHeader*/ + 40/*BitmapInfoHeader*/;
165 hdr
.magic
= wxUINT16_SWAP_ON_BE(0x4D42/*'BM'*/);
166 hdr
.filesize
= wxUINT32_SWAP_ON_BE( hdr_size
+ palette_size
*4 +
167 row_width
* image
->GetHeight() );
169 hdr
.data_offset
= wxUINT32_SWAP_ON_BE(hdr_size
+ palette_size
*4);
171 hdr
.bih_size
= wxUINT32_SWAP_ON_BE(hdr_size
- 14);
172 hdr
.width
= wxUINT32_SWAP_ON_BE(image
->GetWidth());
175 hdr
.height
= wxUINT32_SWAP_ON_BE(image
->GetHeight());
179 hdr
.height
= wxUINT32_SWAP_ON_BE(2 * image
->GetHeight());
181 hdr
.planes
= wxUINT16_SWAP_ON_BE(1); // always 1 plane
182 hdr
.bpp
= wxUINT16_SWAP_ON_BE(bpp
);
183 hdr
.compression
= 0; // RGB uncompressed
184 hdr
.size_of_bmp
= wxUINT32_SWAP_ON_BE(row_width
* image
->GetHeight());
186 // get the resolution from the image options or fall back to 72dpi standard
187 // for the BMP format if not specified
188 wxUint32 hres
= image
->GetOptionInt(wxIMAGE_OPTION_RESOLUTIONX
),
189 vres
= image
->GetOptionInt(wxIMAGE_OPTION_RESOLUTIONY
);
190 switch ( image
->GetOptionInt(wxIMAGE_OPTION_RESOLUTION
) )
193 wxFAIL_MSG( _T("unexpected image resolution units") );
196 case wxIMAGE_RESOLUTION_NONE
:
199 // fall through to convert it to correct units
201 case wxIMAGE_RESOLUTION_INCHES
:
202 // convert resolution in inches to resolution in centimeters
203 hres
= (wxUint32
)(100*mm2inches
*hres
);
204 vres
= (wxUint32
)(100*mm2inches
*vres
);
205 // fall through to convert it to resolution in meters
207 case wxIMAGE_RESOLUTION_CM
:
208 // convert resolution in centimeters to resolution in meters
214 hdr
.h_res
= wxUINT32_SWAP_ON_BE(hres
);
215 hdr
.v_res
= wxUINT32_SWAP_ON_BE(vres
);
216 hdr
.num_clrs
= wxUINT32_SWAP_ON_BE(palette_size
); // # colors in colormap
217 hdr
.num_signif_clrs
= 0; // all colors are significant
221 if (// VS: looks ugly but compilers tend to do ugly things with structs,
222 // like aligning hdr.filesize's ofset to dword :(
223 // VZ: we should add padding then...
224 !stream
.Write(&hdr
.magic
, 2) ||
225 !stream
.Write(&hdr
.filesize
, 4) ||
226 !stream
.Write(&hdr
.reserved
, 4) ||
227 !stream
.Write(&hdr
.data_offset
, 4)
231 wxLogError(_("BMP: Couldn't write the file (Bitmap) header."));
238 !stream
.Write(&hdr
.bih_size
, 4) ||
239 !stream
.Write(&hdr
.width
, 4) ||
240 !stream
.Write(&hdr
.height
, 4) ||
241 !stream
.Write(&hdr
.planes
, 2) ||
242 !stream
.Write(&hdr
.bpp
, 2) ||
243 !stream
.Write(&hdr
.compression
, 4) ||
244 !stream
.Write(&hdr
.size_of_bmp
, 4) ||
245 !stream
.Write(&hdr
.h_res
, 4) ||
246 !stream
.Write(&hdr
.v_res
, 4) ||
247 !stream
.Write(&hdr
.num_clrs
, 4) ||
248 !stream
.Write(&hdr
.num_signif_clrs
, 4)
252 wxLogError(_("BMP: Couldn't write the file (BitmapInfo) header."));
257 wxPalette
*palette
= NULL
; // entries for quantized images
258 wxUint8
*rgbquad
= NULL
; // for the RGBQUAD bytes for the colormap
259 wxImage
*q_image
= NULL
; // destination for quantized image
261 // if <24bpp use quantization to reduce colors for *some* of the formats
262 if ( (format
== wxBMP_1BPP
) || (format
== wxBMP_4BPP
) ||
263 (format
== wxBMP_8BPP
) || (format
== wxBMP_8BPP_PALETTE
) )
265 // make a new palette and quantize the image
266 if (format
!= wxBMP_8BPP_PALETTE
)
268 q_image
= new wxImage();
270 // I get a delete error using Quantize when desired colors > 236
271 int quantize
= ((palette_size
> 236) ? 236 : palette_size
);
272 // fill the destination too, it gives much nicer 4bpp images
273 wxQuantize::Quantize( *image
, *q_image
, &palette
, quantize
, 0,
274 wxQUANTIZE_FILL_DESTINATION_IMAGE
);
279 palette
= new wxPalette(image
->GetPalette());
280 #endif // wxUSE_PALETTE
284 unsigned char r
, g
, b
;
285 rgbquad
= new wxUint8
[palette_size
*4];
287 for (i
= 0; i
< palette_size
; i
++)
290 if ( !palette
->GetRGB(i
, &r
, &g
, &b
) )
291 #endif // wxUSE_PALETTE
300 // make a 256 entry greyscale colormap or 2 entry black & white
301 else if ( (format
== wxBMP_8BPP_GREY
) || (format
== wxBMP_8BPP_RED
) ||
302 (format
== wxBMP_1BPP_BW
) )
304 rgbquad
= new wxUint8
[palette_size
*4];
306 for ( int i
= 0; i
< palette_size
; i
++ )
308 // if 1BPP_BW then the value should be either 0 or 255
309 wxUint8 c
= (wxUint8
)((i
> 0) && (format
== wxBMP_1BPP_BW
) ? 255 : i
);
318 // if the colormap was made, then it needs to be written
323 if ( !stream
.Write(rgbquad
, palette_size
*4) )
326 wxLogError(_("BMP: Couldn't write RGB color map."));
330 #endif // wxUSE_PALETTE
338 // pointer to the image data, use quantized if available
339 wxUint8
*data
= (wxUint8
*) image
->GetData();
340 if (q_image
) if (q_image
->Ok()) data
= (wxUint8
*) q_image
->GetData();
342 wxUint8
*buffer
= new wxUint8
[row_width
];
343 memset(buffer
, 0, row_width
);
347 for (y
= image
->GetHeight() -1; y
>= 0; y
--)
349 if ( format
== wxBMP_24BPP
) // 3 bytes per pixel red,green,blue
351 for ( x
= 0; x
< width
; x
++ )
353 pixel
= 3*(y
*width
+ x
);
355 buffer
[3*x
] = data
[pixel
+2];
356 buffer
[3*x
+ 1] = data
[pixel
+1];
357 buffer
[3*x
+ 2] = data
[pixel
];
360 else if ((format
== wxBMP_8BPP
) || // 1 byte per pixel in color
361 (format
== wxBMP_8BPP_PALETTE
))
363 for (x
= 0; x
< width
; x
++)
365 pixel
= 3*(y
*width
+ x
);
367 buffer
[x
] = (wxUint8
)palette
->GetPixel( data
[pixel
],
371 // FIXME: what should this be? use some std palette maybe?
373 #endif // wxUSE_PALETTE
376 else if ( format
== wxBMP_8BPP_GREY
) // 1 byte per pix, rgb ave to grey
378 for (x
= 0; x
< width
; x
++)
380 pixel
= 3*(y
*width
+ x
);
381 buffer
[x
] = (wxUint8
)(.299*data
[pixel
] +
386 else if ( format
== wxBMP_8BPP_RED
) // 1 byte per pixel, red as greys
388 for (x
= 0; x
< width
; x
++)
390 buffer
[x
] = (wxUint8
)data
[3*(y
*width
+ x
)];
393 else if ( format
== wxBMP_4BPP
) // 4 bpp in color
395 for (x
= 0; x
< width
; x
+=2)
397 pixel
= 3*(y
*width
+ x
);
399 // fill buffer, ignore if > width
401 buffer
[x
/2] = (wxUint8
)(
402 ((wxUint8
)palette
->GetPixel(data
[pixel
],
404 data
[pixel
+2]) << 4) |
407 : ((wxUint8
)palette
->GetPixel(data
[pixel
+3],
411 // FIXME: what should this be? use some std palette maybe?
413 #endif // wxUSE_PALETTE
416 else if ( format
== wxBMP_1BPP
) // 1 bpp in "color"
418 for (x
= 0; x
< width
; x
+=8)
420 pixel
= 3*(y
*width
+ x
);
423 buffer
[x
/8] = (wxUint8
)(
424 ((wxUint8
)palette
->GetPixel(data
[pixel
], data
[pixel
+1], data
[pixel
+2]) << 7) |
425 (((x
+1) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+3], data
[pixel
+4], data
[pixel
+5]) << 6)) |
426 (((x
+2) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+6], data
[pixel
+7], data
[pixel
+8]) << 5)) |
427 (((x
+3) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+9], data
[pixel
+10], data
[pixel
+11]) << 4)) |
428 (((x
+4) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+12], data
[pixel
+13], data
[pixel
+14]) << 3)) |
429 (((x
+5) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+15], data
[pixel
+16], data
[pixel
+17]) << 2)) |
430 (((x
+6) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+18], data
[pixel
+19], data
[pixel
+20]) << 1)) |
431 (((x
+7) > width
) ? 0 : ((wxUint8
)palette
->GetPixel(data
[pixel
+21], data
[pixel
+22], data
[pixel
+23]) )) );
433 // FIXME: what should this be? use some std palette maybe?
435 #endif // wxUSE_PALETTE
438 else if ( format
== wxBMP_1BPP_BW
) // 1 bpp B&W colormap from red color ONLY
440 for (x
= 0; x
< width
; x
+=8)
442 pixel
= 3*(y
*width
+ x
);
444 buffer
[x
/8] = (wxUint8
)(
445 (((wxUint8
)(data
[pixel
] /128.)) << 7) |
446 (((x
+1) > width
) ? 0 : (((wxUint8
)(data
[pixel
+3] /128.)) << 6)) |
447 (((x
+2) > width
) ? 0 : (((wxUint8
)(data
[pixel
+6] /128.)) << 5)) |
448 (((x
+3) > width
) ? 0 : (((wxUint8
)(data
[pixel
+9] /128.)) << 4)) |
449 (((x
+4) > width
) ? 0 : (((wxUint8
)(data
[pixel
+12]/128.)) << 3)) |
450 (((x
+5) > width
) ? 0 : (((wxUint8
)(data
[pixel
+15]/128.)) << 2)) |
451 (((x
+6) > width
) ? 0 : (((wxUint8
)(data
[pixel
+18]/128.)) << 1)) |
452 (((x
+7) > width
) ? 0 : (((wxUint8
)(data
[pixel
+21]/128.)) )) );
456 if ( !stream
.Write(buffer
, row_width
) )
459 wxLogError(_("BMP: Couldn't write data."));
463 #endif // wxUSE_PALETTE
471 #endif // wxUSE_PALETTE
480 unsigned char r
, g
, b
;
483 bool wxBMPHandler::DoLoadDib(wxImage
* image
, int width
, int height
,
484 int bpp
, int ncolors
, int comp
,
485 wxFileOffset bmpOffset
, wxInputStream
& stream
,
486 bool verbose
, bool IsBmp
, bool hasPalette
)
488 wxInt32 aDword
, rmask
= 0, gmask
= 0, bmask
= 0;
489 int rshift
= 0, gshift
= 0, bshift
= 0;
490 int rbits
= 0, gbits
= 0, bbits
= 0;
496 // allocate space for palette if needed:
501 cmap
= new _cmap
[ncolors
];
505 wxLogError(_("BMP: Couldn't allocate memory."));
512 // destroy existing here instead of:
514 image
->Create(width
, height
);
516 unsigned char *ptr
= image
->GetData();
521 wxLogError( _("BMP: Couldn't allocate memory.") );
527 // Reading the palette, if it exists:
528 if ( bpp
< 16 && ncolors
!= 0 )
530 unsigned char* r
= new unsigned char[ncolors
];
531 unsigned char* g
= new unsigned char[ncolors
];
532 unsigned char* b
= new unsigned char[ncolors
];
533 for (int j
= 0; j
< ncolors
; j
++)
537 stream
.Read(bbuf
, 4);
548 //used in reading .ico file mask
551 b
[j
] = cmap
[j
].b
= ( j
? 255 : 0 );
556 // Set the palette for the wxImage
557 image
->SetPalette(wxPalette(ncolors
, r
, g
, b
));
558 #endif // wxUSE_PALETTE
564 else if ( bpp
== 16 || bpp
== 32 )
566 if ( comp
== BI_BITFIELDS
)
569 stream
.Read(dbuf
, 4 * 3);
570 rmask
= wxINT32_SWAP_ON_BE(dbuf
[0]);
571 gmask
= wxINT32_SWAP_ON_BE(dbuf
[1]);
572 bmask
= wxINT32_SWAP_ON_BE(dbuf
[2]);
573 // find shift amount (Least significant bit of mask)
574 for (bit
= bpp
-1; bit
>=0; bit
--)
576 if (bmask
& (1 << bit
))
578 if (gmask
& (1 << bit
))
580 if (rmask
& (1 << bit
))
583 // Find number of bits in mask (MSB-LSB+1)
584 for (bit
= 0; bit
< bpp
; bit
++)
586 if (bmask
& (1 << bit
))
587 bbits
= bit
-bshift
+1;
588 if (gmask
& (1 << bit
))
589 gbits
= bit
-gshift
+1;
590 if (rmask
& (1 << bit
))
591 rbits
= bit
-rshift
+1;
594 else if ( bpp
== 16 )
606 else if ( bpp
== 32 )
621 * Reading the image data
624 stream
.SeekI(bmpOffset
); // else icon, just carry on
626 unsigned char *data
= ptr
;
628 /* set the whole image to the background color */
629 if ( bpp
< 16 && (comp
== BI_RLE4
|| comp
== BI_RLE8
) )
631 for (int i
= 0; i
< width
* height
; i
++)
640 int linesize
= ((width
* bpp
+ 31) / 32) * 4;
642 /* BMPs are stored upside down */
643 for ( int line
= (height
- 1); line
>= 0; line
-- )
646 for ( int column
= 0; column
< width
; )
651 aByte
= stream
.GetC();
654 for (int bit
= 0; bit
< 8 && column
< width
; bit
++)
656 int index
= ((aByte
& (0x80 >> bit
)) ? 1 : 0);
657 ptr
[poffset
] = cmap
[index
].r
;
658 ptr
[poffset
+ 1] = cmap
[index
].g
;
659 ptr
[poffset
+ 2] = cmap
[index
].b
;
665 if ( comp
== BI_RLE4
)
669 aByte
= stream
.GetC();
677 else if ( aByte
== 1 )
682 else if ( aByte
== 2 )
684 aByte
= stream
.GetC();
686 linepos
= column
* bpp
/ 4;
687 aByte
= stream
.GetC();
688 line
-= aByte
; // upside down
692 int absolute
= aByte
;
695 for (int k
= 0; k
< absolute
; k
++)
700 aByte
= stream
.GetC();
701 nibble
[0] = (wxUint8
)( (aByte
& 0xF0) >> 4 ) ;
702 nibble
[1] = (wxUint8
)( aByte
& 0x0F ) ;
704 ptr
[poffset
] = cmap
[nibble
[k%2
]].r
;
705 ptr
[poffset
+ 1] = cmap
[nibble
[k%2
]].g
;
706 ptr
[poffset
+ 2] = cmap
[nibble
[k%2
]].b
;
711 if ( readBytes
& 0x01 )
712 aByte
= stream
.GetC();
718 nibble
[0] = (wxUint8
)( (aByte
& 0xF0) >> 4 ) ;
719 nibble
[1] = (wxUint8
)( aByte
& 0x0F ) ;
721 for ( int l
= 0; l
< first
&& column
< width
; l
++ )
723 ptr
[poffset
] = cmap
[nibble
[l%2
]].r
;
724 ptr
[poffset
+ 1] = cmap
[nibble
[l%2
]].g
;
725 ptr
[poffset
+ 2] = cmap
[nibble
[l%2
]].b
;
734 for (int nibble
= 0; nibble
< 2 && column
< width
; nibble
++)
736 int index
= ((aByte
& (0xF0 >> nibble
* 4)) >> (!nibble
* 4));
739 ptr
[poffset
] = cmap
[index
].r
;
740 ptr
[poffset
+ 1] = cmap
[index
].g
;
741 ptr
[poffset
+ 2] = cmap
[index
].b
;
748 if ( comp
== BI_RLE8
)
752 aByte
= stream
.GetC();
757 /* column = width; */
759 else if ( aByte
== 1 )
764 else if ( aByte
== 2 )
766 aByte
= stream
.GetC();
768 linepos
= column
* bpp
/ 8;
769 aByte
= stream
.GetC();
774 int absolute
= aByte
;
775 for (int k
= 0; k
< absolute
; k
++)
778 aByte
= stream
.GetC();
779 ptr
[poffset
] = cmap
[aByte
].r
;
780 ptr
[poffset
+ 1] = cmap
[aByte
].g
;
781 ptr
[poffset
+ 2] = cmap
[aByte
].b
;
784 if ( absolute
& 0x01 )
785 aByte
= stream
.GetC();
790 for ( int l
= 0; l
< first
&& column
< width
; l
++ )
792 ptr
[poffset
] = cmap
[aByte
].r
;
793 ptr
[poffset
+ 1] = cmap
[aByte
].g
;
794 ptr
[poffset
+ 2] = cmap
[aByte
].b
;
802 ptr
[poffset
] = cmap
[aByte
].r
;
803 ptr
[poffset
+ 1] = cmap
[aByte
].g
;
804 ptr
[poffset
+ 2] = cmap
[aByte
].b
;
806 // linepos += size; seems to be wrong, RR
810 else if ( bpp
== 24 )
812 stream
.Read(bbuf
, 3);
814 ptr
[poffset
] = (unsigned char)bbuf
[2];
815 ptr
[poffset
+ 1] = (unsigned char)bbuf
[1];
816 ptr
[poffset
+ 2] = (unsigned char)bbuf
[0];
819 else if ( bpp
== 16 )
822 stream
.Read(&aWord
, 2);
823 aWord
= wxUINT16_SWAP_ON_BE(aWord
);
825 /* use the masks and calculated amonut of shift
826 to retrieve the color data out of the word. Then
827 shift it left by (8 - number of bits) such that
828 the image has the proper dynamic range */
829 temp
= (unsigned char)((aWord
& rmask
) >> rshift
<< (8-rbits
));
831 temp
= (unsigned char)((aWord
& gmask
) >> gshift
<< (8-gbits
));
832 ptr
[poffset
+ 1] = temp
;
833 temp
= (unsigned char)((aWord
& bmask
) >> bshift
<< (8-bbits
));
834 ptr
[poffset
+ 2] = temp
;
840 stream
.Read(&aDword
, 4);
841 aDword
= wxINT32_SWAP_ON_BE(aDword
);
843 temp
= (unsigned char)((aDword
& rmask
) >> rshift
);
845 temp
= (unsigned char)((aDword
& gmask
) >> gshift
);
846 ptr
[poffset
+ 1] = temp
;
847 temp
= (unsigned char)((aDword
& bmask
) >> bshift
);
848 ptr
[poffset
+ 2] = temp
;
852 while ( (linepos
< linesize
) && (comp
!= 1) && (comp
!= 2) )
854 stream
.Read(&aByte
, 1);
863 image
->SetMask(false);
865 const wxStreamError err
= stream
.GetLastError();
866 return err
== wxSTREAM_NO_ERROR
|| err
== wxSTREAM_EOF
;
869 bool wxBMPHandler::LoadDib(wxImage
*image
, wxInputStream
& stream
,
870 bool verbose
, bool IsBmp
)
876 wxFileOffset offset
= 0; // keep gcc quiet
879 // read the header off the .BMP format file
881 offset
= stream
.TellI();
882 if (offset
== wxInvalidOffset
)
885 stream
.Read(bbuf
, 2);
886 stream
.Read(dbuf
, 16);
890 stream
.Read(dbuf
, 4);
893 wxInt32 size
= wxINT32_SWAP_ON_BE(dbuf
[0]);
895 offset
= offset
+ wxINT32_SWAP_ON_BE(dbuf
[2]);
897 stream
.Read(dbuf
, 4 * 2);
898 int width
= wxINT32_SWAP_ON_BE((int)dbuf
[0]);
899 int height
= wxINT32_SWAP_ON_BE((int)dbuf
[1]);
900 if ( !IsBmp
)height
= height
/ 2; // for icons divide by 2
905 wxLogError( _("DIB Header: Image width > 32767 pixels for file.") );
908 if ( height
> 32767 )
911 wxLogError( _("DIB Header: Image height > 32767 pixels for file.") );
915 stream
.Read(&aWord
, 2);
918 int planes = (int)wxUINT16_SWAP_ON_BE( aWord );
920 stream
.Read(&aWord
, 2);
921 int bpp
= wxUINT16_SWAP_ON_BE((int)aWord
);
922 if ( bpp
!= 1 && bpp
!= 4 && bpp
!= 8 && bpp
!= 16 && bpp
!= 24 && bpp
!= 32 )
925 wxLogError( _("DIB Header: Unknown bitdepth in file.") );
929 stream
.Read(dbuf
, 4 * 4);
930 int comp
= wxINT32_SWAP_ON_BE((int)dbuf
[0]);
931 if ( comp
!= BI_RGB
&& comp
!= BI_RLE4
&& comp
!= BI_RLE8
&&
932 comp
!= BI_BITFIELDS
)
935 wxLogError( _("DIB Header: Unknown encoding in file.") );
939 stream
.Read(dbuf
, 4 * 2);
941 int ncolors
= wxINT32_SWAP_ON_BE( (int)dbuf
[0] );
944 /* some more sanity checks */
945 if (((comp
== BI_RLE4
) && (bpp
!= 4)) ||
946 ((comp
== BI_RLE8
) && (bpp
!= 8)) ||
947 ((comp
== BI_BITFIELDS
) && (bpp
!= 16 && bpp
!= 32)))
950 wxLogError( _("DIB Header: Encoding doesn't match bitdepth.") );
954 //read DIB; this is the BMP image or the XOR part of an icon image
955 if ( !DoLoadDib(image
, width
, height
, bpp
, ncolors
, comp
, offset
, stream
,
956 verbose
, IsBmp
, true) )
959 wxLogError( _("Error in reading image DIB.") );
965 //read Icon mask which is monochrome
966 //there is no palette, so we will create one
968 if ( !DoLoadDib(&mask
, width
, height
, 1, 2, BI_RGB
, offset
, stream
,
969 verbose
, IsBmp
, false) )
972 wxLogError( _("ICO: Error in reading mask DIB.") );
975 image
->SetMaskFromImage(mask
, 255, 255, 255);
979 // the resolution in the bitmap header is in meters, convert to centimeters
980 image
->SetOption(wxIMAGE_OPTION_RESOLUTIONUNIT
, wxIMAGE_RESOLUTION_CM
);
981 image
->SetOption(wxIMAGE_OPTION_RESOLUTIONX
, dbuf
[2]/100);
982 image
->SetOption(wxIMAGE_OPTION_RESOLUTIONY
, dbuf
[3]/100);
987 bool wxBMPHandler::LoadFile(wxImage
*image
, wxInputStream
& stream
,
988 bool verbose
, int WXUNUSED(index
))
990 // Read a single DIB fom the file:
991 return LoadDib(image
, stream
, verbose
, true/*isBmp*/);
994 bool wxBMPHandler::DoCanRead(wxInputStream
& stream
)
996 unsigned char hdr
[2];
998 if ( !stream
.Read(hdr
, WXSIZEOF(hdr
)) )
1001 // do we have the BMP file signature?
1002 return hdr
[0] == 'B' && hdr
[1] == 'M';
1005 #endif // wxUSE_STREAMS
1009 //-----------------------------------------------------------------------------
1011 //-----------------------------------------------------------------------------
1013 IMPLEMENT_DYNAMIC_CLASS(wxICOHandler
, wxBMPHandler
)
1019 wxUint8 bWidth
; // Width of the image
1020 wxUint8 bHeight
; // Height of the image (times 2)
1021 wxUint8 bColorCount
; // Number of colors in image (0 if >=8bpp)
1022 wxUint8 bReserved
; // Reserved
1024 // these two are different in icons and cursors:
1026 wxUint16 wPlanes
; // Color Planes or XHotSpot
1027 wxUint16 wBitCount
; // Bits per pixel or YHotSpot
1029 wxUint32 dwBytesInRes
; // how many bytes in this resource?
1030 wxUint32 dwImageOffset
; // where in the file is this image
1035 wxUint16 idReserved
; // Reserved
1036 wxUint16 idType
; // resource type (1 for icons, 2 for cursors)
1037 wxUint16 idCount
; // how many images?
1041 bool wxICOHandler::SaveFile(wxImage
*image
,
1042 wxOutputStream
& stream
,
1046 //sanity check; icon must be less than 127 pixels high and 255 wide
1047 if ( image
->GetHeight () > 127 )
1050 wxLogError(_("ICO: Image too tall for an icon."));
1053 if ( image
->GetWidth () > 255 )
1056 wxLogError(_("ICO: Image too wide for an icon."));
1060 const int images
= 1; // only generate one image
1062 // VS: This is a hack of sort - since ICO and CUR files are almost
1063 // identical, we have all the meat in wxICOHandler and check for
1064 // the actual (handler) type when the code has to distinguish between
1066 int type
= (this->GetType() == wxBITMAP_TYPE_CUR
) ? 2 : 1;
1068 // write a header, (ICONDIR)
1069 // Calculate the header size
1070 wxUint32 offset
= 3 * sizeof(wxUint16
);
1073 IconDir
.idReserved
= 0;
1074 IconDir
.idType
= wxUINT16_SWAP_ON_BE((wxUint16
)type
);
1075 IconDir
.idCount
= wxUINT16_SWAP_ON_BE((wxUint16
)images
);
1076 stream
.Write(&IconDir
.idReserved
, sizeof(IconDir
.idReserved
));
1077 stream
.Write(&IconDir
.idType
, sizeof(IconDir
.idType
));
1078 stream
.Write(&IconDir
.idCount
, sizeof(IconDir
.idCount
));
1079 if ( !stream
.IsOk() )
1082 wxLogError(_("ICO: Error writing the image file!"));
1086 // for each iamage write a description ICONDIRENTRY:
1087 ICONDIRENTRY icondirentry
;
1088 for (int img
= 0; img
< images
; img
++)
1092 if ( image
->HasMask() )
1094 // make another image with black/white:
1095 mask
= image
->ConvertToMono (image
->GetMaskRed(), image
->GetMaskGreen(), image
->GetMaskBlue() );
1097 // now we need to change the masked regions to black:
1098 unsigned char r
= image
->GetMaskRed();
1099 unsigned char g
= image
->GetMaskGreen();
1100 unsigned char b
= image
->GetMaskBlue();
1101 if ( (r
!= 0) || (g
!= 0) || (b
!= 0) )
1103 // Go round and apply black to the masked bits:
1105 for (i
= 0; i
< mask
.GetWidth(); i
++)
1107 for (j
= 0; j
< mask
.GetHeight(); j
++)
1109 if ((r
== mask
.GetRed(i
, j
)) &&
1110 (g
== mask
.GetGreen(i
, j
))&&
1111 (b
== mask
.GetBlue(i
, j
)) )
1112 image
->SetRGB(i
, j
, 0, 0, 0 );
1119 // just make a black mask all over:
1120 mask
= image
->Copy();
1122 for (i
= 0; i
< mask
.GetWidth(); i
++)
1123 for (j
= 0; j
< mask
.GetHeight(); j
++)
1124 mask
.SetRGB(i
, j
, 0, 0, 0 );
1126 // Set the formats for image and mask
1127 // (Windows never saves with more than 8 colors):
1128 image
->SetOption(wxIMAGE_OPTION_BMP_FORMAT
, wxBMP_8BPP
);
1130 // monochome bitmap:
1131 mask
.SetOption(wxIMAGE_OPTION_BMP_FORMAT
, wxBMP_1BPP_BW
);
1133 bool IsMask
= false;
1135 //calculate size and offset of image and mask
1136 wxCountingOutputStream cStream
;
1137 bool bResult
= SaveDib(image
, cStream
, verbose
, IsBmp
, IsMask
);
1141 wxLogError(_("ICO: Error writing the image file!"));
1146 bResult
= SaveDib(&mask
, cStream
, verbose
, IsBmp
, IsMask
);
1150 wxLogError(_("ICO: Error writing the image file!"));
1153 wxUint32 Size
= cStream
.GetSize();
1155 // wxCountingOutputStream::IsOk() always returns true for now and this
1156 // "if" provokes VC++ warnings in optimized build
1158 if ( !cStream
.Ok() )
1161 wxLogError(_("ICO: Error writing the image file!"));
1166 offset
= offset
+ sizeof(ICONDIRENTRY
);
1168 icondirentry
.bWidth
= (wxUint8
)image
->GetWidth();
1169 icondirentry
.bHeight
= (wxUint8
)(2 * image
->GetHeight());
1170 icondirentry
.bColorCount
= 0;
1171 icondirentry
.bReserved
= 0;
1172 icondirentry
.wPlanes
= wxUINT16_SWAP_ON_BE(1);
1173 icondirentry
.wBitCount
= wxUINT16_SWAP_ON_BE(wxBMP_8BPP
);
1174 if ( type
== 2 /*CUR*/)
1176 int hx
= image
->HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
) ?
1177 image
->GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_X
) :
1178 image
->GetWidth() / 2;
1179 int hy
= image
->HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
) ?
1180 image
->GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_Y
) :
1181 image
->GetHeight() / 2;
1183 // actually write the values of the hot spot here:
1184 icondirentry
.wPlanes
= wxUINT16_SWAP_ON_BE((wxUint16
)hx
);
1185 icondirentry
.wBitCount
= wxUINT16_SWAP_ON_BE((wxUint16
)hy
);
1187 icondirentry
.dwBytesInRes
= wxUINT32_SWAP_ON_BE(Size
);
1188 icondirentry
.dwImageOffset
= wxUINT32_SWAP_ON_BE(offset
);
1190 // increase size to allow for the data written:
1194 stream
.Write(&icondirentry
.bWidth
, sizeof(icondirentry
.bWidth
));
1195 stream
.Write(&icondirentry
.bHeight
, sizeof(icondirentry
.bHeight
));
1196 stream
.Write(&icondirentry
.bColorCount
, sizeof(icondirentry
.bColorCount
));
1197 stream
.Write(&icondirentry
.bReserved
, sizeof(icondirentry
.bReserved
));
1198 stream
.Write(&icondirentry
.wPlanes
, sizeof(icondirentry
.wPlanes
));
1199 stream
.Write(&icondirentry
.wBitCount
, sizeof(icondirentry
.wBitCount
));
1200 stream
.Write(&icondirentry
.dwBytesInRes
, sizeof(icondirentry
.dwBytesInRes
));
1201 stream
.Write(&icondirentry
.dwImageOffset
, sizeof(icondirentry
.dwImageOffset
));
1202 if ( !stream
.IsOk() )
1205 wxLogError(_("ICO: Error writing the image file!"));
1209 // actually save it:
1211 bResult
= SaveDib(image
, stream
, verbose
, IsBmp
, IsMask
);
1215 wxLogError(_("ICO: Error writing the image file!"));
1220 bResult
= SaveDib(&mask
, stream
, verbose
, IsBmp
, IsMask
);
1224 wxLogError(_("ICO: Error writing the image file!"));
1228 } // end of for loop
1233 bool wxICOHandler::LoadFile(wxImage
*image
, wxInputStream
& stream
,
1234 bool verbose
, int index
)
1237 return DoLoadFile(image
, stream
, verbose
, index
);
1240 bool wxICOHandler::DoLoadFile(wxImage
*image
, wxInputStream
& stream
,
1241 bool WXUNUSED(verbose
), int index
)
1243 bool bResult
wxDUMMY_INITIALIZE(false);
1248 wxFileOffset iPos
= stream
.TellI();
1249 stream
.Read(&IconDir
, sizeof(IconDir
));
1250 wxUint16 nIcons
= wxUINT16_SWAP_ON_BE(IconDir
.idCount
);
1251 // nType is 1 for Icons, 2 for Cursors:
1252 wxUint16 nType
= wxUINT16_SWAP_ON_BE(IconDir
.idType
);
1254 // loop round the icons and choose the best one:
1255 ICONDIRENTRY
*pIconDirEntry
= new ICONDIRENTRY
[nIcons
];
1256 ICONDIRENTRY
*pCurrentEntry
= pIconDirEntry
;
1259 int iSel
= wxNOT_FOUND
;
1261 for (int i
= 0; i
< nIcons
; i
++ )
1263 stream
.Read(pCurrentEntry
, sizeof(ICONDIRENTRY
));
1264 // bHeight and bColorCount are wxUint8
1265 if ( pCurrentEntry
->bWidth
>= wMax
)
1267 // see if we have more colors, ==0 indicates > 8bpp:
1268 if ( pCurrentEntry
->bColorCount
== 0 )
1269 pCurrentEntry
->bColorCount
= 255;
1270 if ( pCurrentEntry
->bColorCount
>= colmax
)
1273 wMax
= pCurrentEntry
->bWidth
;
1274 colmax
= pCurrentEntry
->bColorCount
;
1282 // VS: Note that we *have* to run the loop above even if index != -1, because
1283 // it reads ICONDIRENTRies.
1287 if ( iSel
== wxNOT_FOUND
|| iSel
< 0 || iSel
>= nIcons
)
1289 wxLogError(_("ICO: Invalid icon index."));
1294 // seek to selected icon:
1295 pCurrentEntry
= pIconDirEntry
+ iSel
;
1296 stream
.SeekI(iPos
+ wxUINT32_SWAP_ON_BE(pCurrentEntry
->dwImageOffset
), wxFromStart
);
1297 bResult
= LoadDib(image
, stream
, true, IsBmp
);
1298 bool bIsCursorType
= (this->GetType() == wxBITMAP_TYPE_CUR
) || (this->GetType() == wxBITMAP_TYPE_ANI
);
1299 if ( bResult
&& bIsCursorType
&& nType
== 2 )
1301 // it is a cursor, so let's set the hotspot:
1302 image
->SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
, wxUINT16_SWAP_ON_BE(pCurrentEntry
->wPlanes
));
1303 image
->SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
, wxUINT16_SWAP_ON_BE(pCurrentEntry
->wBitCount
));
1306 delete[] pIconDirEntry
;
1310 int wxICOHandler::GetImageCount(wxInputStream
& stream
)
1313 wxFileOffset iPos
= stream
.TellI();
1315 stream
.Read(&IconDir
, sizeof(IconDir
));
1316 wxUint16 nIcons
= wxUINT16_SWAP_ON_BE(IconDir
.idCount
);
1321 bool wxICOHandler::DoCanRead(wxInputStream
& stream
)
1324 unsigned char hdr
[4];
1325 if ( !stream
.Read(hdr
, WXSIZEOF(hdr
)) )
1328 // hdr[2] is one for an icon and two for a cursor
1329 return hdr
[0] == '\0' && hdr
[1] == '\0' && hdr
[2] == '\1' && hdr
[3] == '\0';
1332 #endif // wxUSE_STREAMS
1335 //-----------------------------------------------------------------------------
1337 //-----------------------------------------------------------------------------
1339 IMPLEMENT_DYNAMIC_CLASS(wxCURHandler
, wxICOHandler
)
1343 bool wxCURHandler::DoCanRead(wxInputStream
& stream
)
1346 unsigned char hdr
[4];
1347 if ( !stream
.Read(hdr
, WXSIZEOF(hdr
)) )
1350 // hdr[2] is one for an icon and two for a cursor
1351 return hdr
[0] == '\0' && hdr
[1] == '\0' && hdr
[2] == '\2' && hdr
[3] == '\0';
1354 #endif // wxUSE_STREAMS
1356 //-----------------------------------------------------------------------------
1358 //-----------------------------------------------------------------------------
1360 IMPLEMENT_DYNAMIC_CLASS(wxANIHandler
, wxCURHandler
)
1364 bool wxANIHandler::LoadFile(wxImage
*image
, wxInputStream
& stream
,
1365 bool WXUNUSED(verbose
), int index
)
1367 wxANIDecoder decoder
;
1368 if (!decoder
.Load(stream
))
1371 return decoder
.ConvertToImage(index
!= -1 ? (size_t)index
: 0, image
);
1374 bool wxANIHandler::DoCanRead(wxInputStream
& stream
)
1377 return decod
.CanRead(stream
);
1380 int wxANIHandler::GetImageCount(wxInputStream
& stream
)
1382 wxANIDecoder decoder
;
1383 if (!decoder
.Load(stream
))
1386 return decoder
.GetFrameCount();
1389 #endif // wxUSE_STREAMS
1391 #endif // wxUSE_ICO_CUR
1393 #endif // wxUSE_IMAGE