1 /////////////////////////////////////////////////////////////////////////////
4 // Author: Robert Roebling
6 // Copyright: (c) Robert Roebling
7 // Licence: wxWindows licence
8 /////////////////////////////////////////////////////////////////////////////
11 #pragma implementation "image.h"
14 // For compilers that support precompilation, includes "wx.h".
15 #include "wx/wxprec.h"
26 #include "wx/bitmap.h"
30 #include "wx/filefn.h"
31 #include "wx/wfstream.h"
33 #include "wx/module.h"
45 //-----------------------------------------------------------------------------
47 //-----------------------------------------------------------------------------
49 class wxImageRefData
: public wxObjectRefData
53 virtual ~wxImageRefData();
57 unsigned char *m_data
;
60 unsigned char m_maskRed
,m_maskGreen
,m_maskBlue
;
62 // alpha channel data, may be NULL for the formats without alpha support
63 unsigned char *m_alpha
;
70 #endif // wxUSE_PALETTE
72 wxArrayString m_optionNames
;
73 wxArrayString m_optionValues
;
75 DECLARE_NO_COPY_CLASS(wxImageRefData
)
78 wxImageRefData::wxImageRefData()
83 m_alpha
= (unsigned char *) NULL
;
94 wxImageRefData::~wxImageRefData()
102 wxList
wxImage::sm_handlers
;
106 //-----------------------------------------------------------------------------
108 #define M_IMGDATA ((wxImageRefData *)m_refData)
110 IMPLEMENT_DYNAMIC_CLASS(wxImage
, wxObject
)
116 wxImage::wxImage( int width
, int height
, bool clear
)
118 Create( width
, height
, clear
);
121 wxImage::wxImage( int width
, int height
, unsigned char* data
, bool static_data
)
123 Create( width
, height
, data
, static_data
);
126 wxImage::wxImage( const wxString
& name
, long type
, int index
)
128 LoadFile( name
, type
, index
);
131 wxImage::wxImage( const wxString
& name
, const wxString
& mimetype
, int index
)
133 LoadFile( name
, mimetype
, index
);
137 wxImage::wxImage( wxInputStream
& stream
, long type
, int index
)
139 LoadFile( stream
, type
, index
);
142 wxImage::wxImage( wxInputStream
& stream
, const wxString
& mimetype
, int index
)
144 LoadFile( stream
, mimetype
, index
);
146 #endif // wxUSE_STREAMS
148 wxImage::wxImage( const wxImage
& image
)
154 wxImage::wxImage( const wxImage
* image
)
156 if (image
) Ref(*image
);
159 void wxImage::Create( int width
, int height
, bool clear
)
163 m_refData
= new wxImageRefData();
165 M_IMGDATA
->m_data
= (unsigned char *) malloc( width
*height
*3 );
166 if (M_IMGDATA
->m_data
)
168 if (clear
) memset(M_IMGDATA
->m_data
, 0, width
*height
*3);
170 M_IMGDATA
->m_width
= width
;
171 M_IMGDATA
->m_height
= height
;
172 M_IMGDATA
->m_ok
= TRUE
;
180 void wxImage::Create( int width
, int height
, unsigned char* data
, bool static_data
)
184 m_refData
= new wxImageRefData();
186 M_IMGDATA
->m_data
= data
;
187 if (M_IMGDATA
->m_data
)
189 M_IMGDATA
->m_width
= width
;
190 M_IMGDATA
->m_height
= height
;
191 M_IMGDATA
->m_ok
= TRUE
;
192 M_IMGDATA
->m_static
= static_data
;
200 void wxImage::Destroy()
205 wxImage
wxImage::Copy() const
209 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
211 image
.Create( M_IMGDATA
->m_width
, M_IMGDATA
->m_height
, false );
213 unsigned char *data
= image
.GetData();
215 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
217 image
.SetMaskColour( M_IMGDATA
->m_maskRed
, M_IMGDATA
->m_maskGreen
, M_IMGDATA
->m_maskBlue
);
218 image
.SetMask( M_IMGDATA
->m_hasMask
);
220 memcpy( data
, GetData(), M_IMGDATA
->m_width
*M_IMGDATA
->m_height
*3 );
225 wxImage
wxImage::ShrinkBy( int xFactor
, int yFactor
) const
227 if( xFactor
== 1 && yFactor
== 1 )
232 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
234 // can't scale to/from 0 size
235 wxCHECK_MSG( (xFactor
> 0) && (yFactor
> 0), image
,
236 wxT("invalid new image size") );
238 long old_height
= M_IMGDATA
->m_height
,
239 old_width
= M_IMGDATA
->m_width
;
241 wxCHECK_MSG( (old_height
> 0) && (old_width
> 0), image
,
242 wxT("invalid old image size") );
244 long width
= old_width
/ xFactor
;
245 long height
= old_height
/ yFactor
;
247 image
.Create( width
, height
, false );
249 char unsigned *data
= image
.GetData();
251 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
253 bool hasMask
= false ;
254 unsigned char maskRed
= 0;
255 unsigned char maskGreen
= 0;
256 unsigned char maskBlue
=0 ;
257 if (M_IMGDATA
->m_hasMask
)
260 maskRed
= M_IMGDATA
->m_maskRed
;
261 maskGreen
= M_IMGDATA
->m_maskGreen
;
262 maskBlue
=M_IMGDATA
->m_maskBlue
;
264 image
.SetMaskColour( M_IMGDATA
->m_maskRed
,
265 M_IMGDATA
->m_maskGreen
,
266 M_IMGDATA
->m_maskBlue
);
268 char unsigned *source_data
= M_IMGDATA
->m_data
;
269 char unsigned *target_data
= data
;
271 for (long y
= 0; y
< height
; y
++)
273 for (long x
= 0; x
< width
; x
++)
275 unsigned long avgRed
= 0 ;
276 unsigned long avgGreen
= 0;
277 unsigned long avgBlue
= 0;
278 unsigned long counter
= 0 ;
280 for ( int y1
= 0 ; y1
< yFactor
; ++y1
)
282 long y_offset
= (y
* yFactor
+ y1
) * old_width
;
283 for ( int x1
= 0 ; x1
< xFactor
; ++x1
)
285 unsigned char *pixel
= source_data
+ 3 * ( y_offset
+ x
* xFactor
+ x1
) ;
286 unsigned char red
= pixel
[0] ;
287 unsigned char green
= pixel
[1] ;
288 unsigned char blue
= pixel
[2] ;
289 if ( !hasMask
|| red
!= maskRed
|| green
!= maskGreen
|| blue
!= maskBlue
)
300 *(target_data
++) = M_IMGDATA
->m_maskRed
;
301 *(target_data
++) = M_IMGDATA
->m_maskGreen
;
302 *(target_data
++) = M_IMGDATA
->m_maskBlue
;
306 *(target_data
++) = avgRed
/ counter
;
307 *(target_data
++) = avgGreen
/ counter
;
308 *(target_data
++) = avgBlue
/ counter
;
313 // In case this is a cursor, make sure the hotspot is scalled accordingly:
314 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
) )
315 image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
,
316 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_X
))/xFactor
);
317 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
) )
318 image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
,
319 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_Y
))/yFactor
);
324 wxImage
wxImage::Scale( int width
, int height
) const
328 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
330 // can't scale to/from 0 size
331 wxCHECK_MSG( (width
> 0) && (height
> 0), image
,
332 wxT("invalid new image size") );
334 long old_height
= M_IMGDATA
->m_height
,
335 old_width
= M_IMGDATA
->m_width
;
336 wxCHECK_MSG( (old_height
> 0) && (old_width
> 0), image
,
337 wxT("invalid old image size") );
339 if ( old_width
% width
== 0 && old_width
>= width
&&
340 old_height
% height
== 0 && old_height
>= height
)
342 return ShrinkBy( old_width
/ width
, old_height
/ height
) ;
344 image
.Create( width
, height
, false );
346 unsigned char *data
= image
.GetData();
348 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
350 if (M_IMGDATA
->m_hasMask
)
352 image
.SetMaskColour( M_IMGDATA
->m_maskRed
,
353 M_IMGDATA
->m_maskGreen
,
354 M_IMGDATA
->m_maskBlue
);
357 unsigned char *source_data
= M_IMGDATA
->m_data
;
358 unsigned char *target_data
= data
;
360 long x_delta
= (old_width
<<16) / width
;
361 long y_delta
= (old_height
<<16) / height
;
363 unsigned char* dest_pixel
= target_data
;
366 for ( long j
= 0; j
< height
; j
++ )
368 unsigned char* src_line
= &source_data
[(y
>>16)*old_width
*3];
371 for ( long i
= 0; i
< width
; i
++ )
373 unsigned char* src_pixel
= &src_line
[(x
>>16)*3];
374 dest_pixel
[0] = src_pixel
[0];
375 dest_pixel
[1] = src_pixel
[1];
376 dest_pixel
[2] = src_pixel
[2];
384 // In case this is a cursor, make sure the hotspot is scalled accordingly:
385 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
) )
386 image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
,
387 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_X
)*width
)/old_width
);
388 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
) )
389 image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
,
390 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_Y
)*height
)/old_height
);
395 wxImage
wxImage::Rotate90( bool clockwise
) const
399 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
401 image
.Create( M_IMGDATA
->m_height
, M_IMGDATA
->m_width
, false );
403 unsigned char *data
= image
.GetData();
405 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
407 if (M_IMGDATA
->m_hasMask
)
408 image
.SetMaskColour( M_IMGDATA
->m_maskRed
, M_IMGDATA
->m_maskGreen
, M_IMGDATA
->m_maskBlue
);
410 long height
= M_IMGDATA
->m_height
;
411 long width
= M_IMGDATA
->m_width
;
413 unsigned char *source_data
= M_IMGDATA
->m_data
;
414 unsigned char *target_data
;
416 for (long j
= 0; j
< height
; j
++)
418 for (long i
= 0; i
< width
; i
++)
421 target_data
= data
+ (((i
+1)*height
) - j
- 1)*3;
423 target_data
= data
+ ((height
*(width
-1)) + j
- (i
*height
))*3;
424 memcpy( target_data
, source_data
, 3 );
432 wxImage
wxImage::Mirror( bool horizontally
) const
436 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
438 image
.Create( M_IMGDATA
->m_width
, M_IMGDATA
->m_height
, false );
440 unsigned char *data
= image
.GetData();
442 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
444 if (M_IMGDATA
->m_hasMask
)
445 image
.SetMaskColour( M_IMGDATA
->m_maskRed
, M_IMGDATA
->m_maskGreen
, M_IMGDATA
->m_maskBlue
);
447 long height
= M_IMGDATA
->m_height
;
448 long width
= M_IMGDATA
->m_width
;
450 unsigned char *source_data
= M_IMGDATA
->m_data
;
451 unsigned char *target_data
;
455 for (long j
= 0; j
< height
; j
++)
458 target_data
= data
-3;
459 for (long i
= 0; i
< width
; i
++)
461 memcpy( target_data
, source_data
, 3 );
469 for (long i
= 0; i
< height
; i
++)
471 target_data
= data
+ 3*width
*(height
-1-i
);
472 memcpy( target_data
, source_data
, (size_t)3*width
);
473 source_data
+= 3*width
;
480 wxImage
wxImage::GetSubImage( const wxRect
&rect
) const
484 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
486 wxCHECK_MSG( (rect
.GetLeft()>=0) && (rect
.GetTop()>=0) && (rect
.GetRight()<=GetWidth()) && (rect
.GetBottom()<=GetHeight()),
487 image
, wxT("invalid subimage size") );
489 int subwidth
=rect
.GetWidth();
490 const int subheight
=rect
.GetHeight();
492 image
.Create( subwidth
, subheight
, false );
494 unsigned char *subdata
= image
.GetData(), *data
=GetData();
496 wxCHECK_MSG( subdata
, image
, wxT("unable to create image") );
498 if (M_IMGDATA
->m_hasMask
)
499 image
.SetMaskColour( M_IMGDATA
->m_maskRed
, M_IMGDATA
->m_maskGreen
, M_IMGDATA
->m_maskBlue
);
501 const int subleft
=3*rect
.GetLeft();
502 const int width
=3*GetWidth();
505 data
+=rect
.GetTop()*width
+subleft
;
507 for (long j
= 0; j
< subheight
; ++j
)
509 memcpy( subdata
, data
, subwidth
);
517 void wxImage::Paste( const wxImage
&image
, int x
, int y
)
519 wxCHECK_RET( Ok(), wxT("invalid image") );
520 wxCHECK_RET( image
.Ok(), wxT("invalid image") );
524 int width
= image
.GetWidth();
525 int height
= image
.GetHeight();
538 if ((x
+xx
)+width
> M_IMGDATA
->m_width
)
539 width
= M_IMGDATA
->m_width
- (x
+xx
);
540 if ((y
+yy
)+height
> M_IMGDATA
->m_height
)
541 height
= M_IMGDATA
->m_height
- (y
+yy
);
543 if (width
< 1) return;
544 if (height
< 1) return;
546 if ((!HasMask() && !image
.HasMask()) ||
547 ((HasMask() && image
.HasMask() &&
548 (GetMaskRed()==image
.GetMaskRed()) &&
549 (GetMaskGreen()==image
.GetMaskGreen()) &&
550 (GetMaskBlue()==image
.GetMaskBlue()))))
553 unsigned char* source_data
= image
.GetData() + xx
*3 + yy
*3*image
.GetWidth();
554 int source_step
= image
.GetWidth()*3;
556 unsigned char* target_data
= GetData() + (x
+xx
)*3 + (y
+yy
)*3*M_IMGDATA
->m_width
;
557 int target_step
= M_IMGDATA
->m_width
*3;
558 for (int j
= 0; j
< height
; j
++)
560 memcpy( target_data
, source_data
, width
);
561 source_data
+= source_step
;
562 target_data
+= target_step
;
567 if (!HasMask() && image
.HasMask())
569 unsigned char r
= image
.GetMaskRed();
570 unsigned char g
= image
.GetMaskGreen();
571 unsigned char b
= image
.GetMaskBlue();
574 unsigned char* source_data
= image
.GetData() + xx
*3 + yy
*3*image
.GetWidth();
575 int source_step
= image
.GetWidth()*3;
577 unsigned char* target_data
= GetData() + (x
+xx
)*3 + (y
+yy
)*3*M_IMGDATA
->m_width
;
578 int target_step
= M_IMGDATA
->m_width
*3;
580 for (int j
= 0; j
< height
; j
++)
582 for (int i
= 0; i
< width
; i
+=3)
584 if ((source_data
[i
] != r
) &&
585 (source_data
[i
+1] != g
) &&
586 (source_data
[i
+2] != b
))
588 memcpy( target_data
+i
, source_data
+i
, 3 );
591 source_data
+= source_step
;
592 target_data
+= target_step
;
597 void wxImage::Replace( unsigned char r1
, unsigned char g1
, unsigned char b1
,
598 unsigned char r2
, unsigned char g2
, unsigned char b2
)
600 wxCHECK_RET( Ok(), wxT("invalid image") );
602 unsigned char *data
= GetData();
604 const int w
= GetWidth();
605 const int h
= GetHeight();
607 for (int j
= 0; j
< h
; j
++)
608 for (int i
= 0; i
< w
; i
++)
610 if ((data
[0] == r1
) && (data
[1] == g1
) && (data
[2] == b1
))
620 wxImage
wxImage::ConvertToMono( unsigned char r
, unsigned char g
, unsigned char b
) const
624 wxCHECK_MSG( Ok(), image
, wxT("invalid image") );
626 image
.Create( M_IMGDATA
->m_width
, M_IMGDATA
->m_height
, false );
628 unsigned char *data
= image
.GetData();
630 wxCHECK_MSG( data
, image
, wxT("unable to create image") );
632 if (M_IMGDATA
->m_hasMask
)
634 if (M_IMGDATA
->m_maskRed
== r
&& M_IMGDATA
->m_maskGreen
== g
&&
635 M_IMGDATA
->m_maskBlue
== b
)
636 image
.SetMaskColour( 255, 255, 255 );
638 image
.SetMaskColour( 0, 0, 0 );
641 long size
= M_IMGDATA
->m_height
* M_IMGDATA
->m_width
;
643 unsigned char *srcd
= M_IMGDATA
->m_data
;
644 unsigned char *tard
= image
.GetData();
646 for ( long i
= 0; i
< size
; i
++, srcd
+= 3, tard
+= 3 )
648 if (srcd
[0] == r
&& srcd
[1] == g
&& srcd
[2] == b
)
649 tard
[0] = tard
[1] = tard
[2] = 255;
651 tard
[0] = tard
[1] = tard
[2] = 0;
657 void wxImage::SetRGB( int x
, int y
, unsigned char r
, unsigned char g
, unsigned char b
)
659 wxCHECK_RET( Ok(), wxT("invalid image") );
661 int w
= M_IMGDATA
->m_width
;
662 int h
= M_IMGDATA
->m_height
;
664 wxCHECK_RET( (x
>=0) && (y
>=0) && (x
<w
) && (y
<h
), wxT("invalid image index") );
666 long pos
= (y
* w
+ x
) * 3;
668 M_IMGDATA
->m_data
[ pos
] = r
;
669 M_IMGDATA
->m_data
[ pos
+1 ] = g
;
670 M_IMGDATA
->m_data
[ pos
+2 ] = b
;
673 unsigned char wxImage::GetRed( int x
, int y
) const
675 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
677 int w
= M_IMGDATA
->m_width
;
678 int h
= M_IMGDATA
->m_height
;
680 wxCHECK_MSG( (x
>=0) && (y
>=0) && (x
<w
) && (y
<h
), 0, wxT("invalid image index") );
682 long pos
= (y
* w
+ x
) * 3;
684 return M_IMGDATA
->m_data
[pos
];
687 unsigned char wxImage::GetGreen( int x
, int y
) const
689 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
691 int w
= M_IMGDATA
->m_width
;
692 int h
= M_IMGDATA
->m_height
;
694 wxCHECK_MSG( (x
>=0) && (y
>=0) && (x
<w
) && (y
<h
), 0, wxT("invalid image index") );
696 long pos
= (y
* w
+ x
) * 3;
698 return M_IMGDATA
->m_data
[pos
+1];
701 unsigned char wxImage::GetBlue( int x
, int y
) const
703 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
705 int w
= M_IMGDATA
->m_width
;
706 int h
= M_IMGDATA
->m_height
;
708 wxCHECK_MSG( (x
>=0) && (y
>=0) && (x
<w
) && (y
<h
), 0, wxT("invalid image index") );
710 long pos
= (y
* w
+ x
) * 3;
712 return M_IMGDATA
->m_data
[pos
+2];
715 bool wxImage::Ok() const
717 // image of 0 width or height can't be considered ok - at least because it
718 // causes crashes in ConvertToBitmap() if we don't catch it in time
719 wxImageRefData
*data
= M_IMGDATA
;
720 return data
&& data
->m_ok
&& data
->m_width
&& data
->m_height
;
723 unsigned char *wxImage::GetData() const
725 wxCHECK_MSG( Ok(), (unsigned char *)NULL
, wxT("invalid image") );
727 return M_IMGDATA
->m_data
;
730 void wxImage::SetData( unsigned char *data
)
732 wxCHECK_RET( Ok(), wxT("invalid image") );
734 wxImageRefData
*newRefData
= new wxImageRefData();
736 newRefData
->m_width
= M_IMGDATA
->m_width
;
737 newRefData
->m_height
= M_IMGDATA
->m_height
;
738 newRefData
->m_data
= data
;
739 newRefData
->m_ok
= TRUE
;
740 newRefData
->m_maskRed
= M_IMGDATA
->m_maskRed
;
741 newRefData
->m_maskGreen
= M_IMGDATA
->m_maskGreen
;
742 newRefData
->m_maskBlue
= M_IMGDATA
->m_maskBlue
;
743 newRefData
->m_hasMask
= M_IMGDATA
->m_hasMask
;
747 m_refData
= newRefData
;
750 void wxImage::SetData( unsigned char *data
, int new_width
, int new_height
)
752 wxImageRefData
*newRefData
= new wxImageRefData();
756 newRefData
->m_width
= new_width
;
757 newRefData
->m_height
= new_height
;
758 newRefData
->m_data
= data
;
759 newRefData
->m_ok
= TRUE
;
760 newRefData
->m_maskRed
= M_IMGDATA
->m_maskRed
;
761 newRefData
->m_maskGreen
= M_IMGDATA
->m_maskGreen
;
762 newRefData
->m_maskBlue
= M_IMGDATA
->m_maskBlue
;
763 newRefData
->m_hasMask
= M_IMGDATA
->m_hasMask
;
767 newRefData
->m_width
= new_width
;
768 newRefData
->m_height
= new_height
;
769 newRefData
->m_data
= data
;
770 newRefData
->m_ok
= TRUE
;
775 m_refData
= newRefData
;
778 // ----------------------------------------------------------------------------
779 // alpha channel support
780 // ----------------------------------------------------------------------------
782 void wxImage::SetAlpha(int x
, int y
, unsigned char alpha
)
784 wxCHECK_RET( Ok() && HasAlpha(), wxT("invalid image or no alpha channel") );
786 int w
= M_IMGDATA
->m_width
,
787 h
= M_IMGDATA
->m_height
;
789 wxCHECK_RET( x
>=0 && y
>= 0 && x
< w
&& y
< h
, wxT("invalid image index") );
791 M_IMGDATA
->m_alpha
[y
*w
+ x
] = alpha
;
794 unsigned char wxImage::GetAlpha(int x
, int y
)
796 wxCHECK_MSG( Ok() && HasAlpha(), 0, wxT("invalid image or no alpha channel") );
798 int w
= M_IMGDATA
->m_width
,
799 h
= M_IMGDATA
->m_height
;
801 wxCHECK_MSG( x
>=0 && y
>= 0 && x
< w
&& y
< h
, 0, wxT("invalid image index") );
803 return M_IMGDATA
->m_alpha
[y
*w
+ x
];
806 void wxImage::SetAlpha( unsigned char *alpha
)
808 wxCHECK_RET( Ok(), wxT("invalid image") );
812 alpha
= (unsigned char *)
813 malloc(M_IMGDATA
->m_width
*M_IMGDATA
->m_height
*3);
816 delete [] M_IMGDATA
->m_alpha
;
817 M_IMGDATA
->m_alpha
= alpha
;
820 unsigned char *wxImage::GetAlpha() const
822 wxCHECK_MSG( Ok(), (unsigned char *)NULL
, wxT("invalid image") );
824 return M_IMGDATA
->m_alpha
;
827 // ----------------------------------------------------------------------------
829 // ----------------------------------------------------------------------------
831 void wxImage::SetMaskColour( unsigned char r
, unsigned char g
, unsigned char b
)
833 wxCHECK_RET( Ok(), wxT("invalid image") );
835 M_IMGDATA
->m_maskRed
= r
;
836 M_IMGDATA
->m_maskGreen
= g
;
837 M_IMGDATA
->m_maskBlue
= b
;
838 M_IMGDATA
->m_hasMask
= TRUE
;
841 unsigned char wxImage::GetMaskRed() const
843 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
845 return M_IMGDATA
->m_maskRed
;
848 unsigned char wxImage::GetMaskGreen() const
850 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
852 return M_IMGDATA
->m_maskGreen
;
855 unsigned char wxImage::GetMaskBlue() const
857 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
859 return M_IMGDATA
->m_maskBlue
;
862 void wxImage::SetMask( bool mask
)
864 wxCHECK_RET( Ok(), wxT("invalid image") );
866 M_IMGDATA
->m_hasMask
= mask
;
869 bool wxImage::HasMask() const
871 wxCHECK_MSG( Ok(), FALSE
, wxT("invalid image") );
873 return M_IMGDATA
->m_hasMask
;
876 int wxImage::GetWidth() const
878 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
880 return M_IMGDATA
->m_width
;
883 int wxImage::GetHeight() const
885 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
887 return M_IMGDATA
->m_height
;
890 bool wxImage::SetMaskFromImage(const wxImage
& mask
,
891 unsigned char mr
, unsigned char mg
, unsigned char mb
)
893 // check that the images are the same size
894 if ( (M_IMGDATA
->m_height
!= mask
.GetHeight() ) || (M_IMGDATA
->m_width
!= mask
.GetWidth () ) )
896 wxLogError( _("Image and Mask have different sizes") );
900 // find unused colour
901 unsigned char r
,g
,b
;
902 if (!FindFirstUnusedColour(&r
, &g
, &b
))
904 wxLogError( _("No Unused Color in image being masked") );
908 unsigned char *imgdata
= GetData();
909 unsigned char *maskdata
= mask
.GetData();
911 const int w
= GetWidth();
912 const int h
= GetHeight();
914 for (int j
= 0; j
< h
; j
++)
916 for (int i
= 0; i
< w
; i
++)
918 if ((maskdata
[0] == mr
) && (maskdata
[1] == mg
) && (maskdata
[2] == mb
))
929 SetMaskColour(r
, g
, b
);
939 bool wxImage::HasPalette() const
944 return M_IMGDATA
->m_palette
.Ok();
947 const wxPalette
& wxImage::GetPalette() const
949 wxCHECK_MSG( Ok(), wxNullPalette
, wxT("invalid image") );
951 return M_IMGDATA
->m_palette
;
954 void wxImage::SetPalette(const wxPalette
& palette
)
956 wxCHECK_RET( Ok(), wxT("invalid image") );
958 M_IMGDATA
->m_palette
= palette
;
961 #endif // wxUSE_PALETTE
963 // Option functions (arbitrary name/value mapping)
964 void wxImage::SetOption(const wxString
& name
, const wxString
& value
)
966 wxCHECK_RET( Ok(), wxT("invalid image") );
968 int idx
= M_IMGDATA
->m_optionNames
.Index(name
, FALSE
);
969 if (idx
== wxNOT_FOUND
)
971 M_IMGDATA
->m_optionNames
.Add(name
);
972 M_IMGDATA
->m_optionValues
.Add(value
);
976 M_IMGDATA
->m_optionNames
[idx
] = name
;
977 M_IMGDATA
->m_optionValues
[idx
] = value
;
981 void wxImage::SetOption(const wxString
& name
, int value
)
984 valStr
.Printf(wxT("%d"), value
);
985 SetOption(name
, valStr
);
988 wxString
wxImage::GetOption(const wxString
& name
) const
990 wxCHECK_MSG( Ok(), wxEmptyString
, wxT("invalid image") );
992 int idx
= M_IMGDATA
->m_optionNames
.Index(name
, FALSE
);
993 if (idx
== wxNOT_FOUND
)
994 return wxEmptyString
;
996 return M_IMGDATA
->m_optionValues
[idx
];
999 int wxImage::GetOptionInt(const wxString
& name
) const
1001 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
1003 return wxAtoi(GetOption(name
));
1006 bool wxImage::HasOption(const wxString
& name
) const
1008 wxCHECK_MSG( Ok(), FALSE
, wxT("invalid image") );
1010 return (M_IMGDATA
->m_optionNames
.Index(name
, FALSE
) != wxNOT_FOUND
);
1013 bool wxImage::LoadFile( const wxString
& filename
, long type
, int index
)
1016 if (wxFileExists(filename
))
1018 wxFileInputStream
stream(filename
);
1019 wxBufferedInputStream
bstream( stream
);
1020 return LoadFile(bstream
, type
, index
);
1024 wxLogError( _("Can't load image from file '%s': file does not exist."), filename
.c_str() );
1028 #else // !wxUSE_STREAMS
1030 #endif // wxUSE_STREAMS
1033 bool wxImage::LoadFile( const wxString
& filename
, const wxString
& mimetype
, int index
)
1036 if (wxFileExists(filename
))
1038 wxFileInputStream
stream(filename
);
1039 wxBufferedInputStream
bstream( stream
);
1040 return LoadFile(bstream
, mimetype
, index
);
1044 wxLogError( _("Can't load image from file '%s': file does not exist."), filename
.c_str() );
1048 #else // !wxUSE_STREAMS
1050 #endif // wxUSE_STREAMS
1055 bool wxImage::SaveFile( const wxString
& filename
) const
1057 wxString ext
= filename
.AfterLast('.').Lower();
1059 wxImageHandler
* pHandler
= FindHandler(ext
, -1);
1062 SaveFile(filename
, pHandler
->GetType());
1066 wxLogError(_("Can't save image to file '%s': unknown extension."), filename
.c_str());
1071 bool wxImage::SaveFile( const wxString
& filename
, int type
) const
1074 ((wxImage
*)this)->SetOption(wxIMAGE_OPTION_FILENAME
, filename
);
1076 wxFileOutputStream
stream(filename
);
1078 if ( stream
.IsOk() )
1080 wxBufferedOutputStream
bstream( stream
);
1081 return SaveFile(bstream
, type
);
1083 #endif // wxUSE_STREAMS
1088 bool wxImage::SaveFile( const wxString
& filename
, const wxString
& mimetype
) const
1091 ((wxImage
*)this)->SetOption(wxIMAGE_OPTION_FILENAME
, filename
);
1093 wxFileOutputStream
stream(filename
);
1095 if ( stream
.IsOk() )
1097 wxBufferedOutputStream
bstream( stream
);
1098 return SaveFile(bstream
, mimetype
);
1100 #endif // wxUSE_STREAMS
1105 bool wxImage::CanRead( const wxString
&name
)
1108 wxFileInputStream
stream(name
);
1109 return CanRead(stream
);
1115 int wxImage::GetImageCount( const wxString
&name
, long type
)
1118 wxFileInputStream
stream(name
);
1120 return GetImageCount(stream
, type
);
1128 bool wxImage::CanRead( wxInputStream
&stream
)
1130 const wxList
& list
= GetHandlers();
1132 for ( wxList::Node
*node
= list
.GetFirst(); node
; node
= node
->GetNext() )
1134 wxImageHandler
*handler
=(wxImageHandler
*)node
->GetData();
1135 if (handler
->CanRead( stream
))
1142 int wxImage::GetImageCount( wxInputStream
&stream
, long type
)
1144 wxImageHandler
*handler
;
1146 if ( type
== wxBITMAP_TYPE_ANY
)
1148 wxList
&list
=GetHandlers();
1150 for (wxList::Node
*node
= list
.GetFirst(); node
; node
= node
->GetNext())
1152 handler
=(wxImageHandler
*)node
->GetData();
1153 if ( handler
->CanRead(stream
) )
1154 return handler
->GetImageCount(stream
);
1158 wxLogWarning(_("No handler found for image type."));
1162 handler
= FindHandler(type
);
1166 wxLogWarning(_("No image handler for type %d defined."), type
);
1170 if ( handler
->CanRead(stream
) )
1172 return handler
->GetImageCount(stream
);
1176 wxLogError(_("Image file is not of type %d."), type
);
1181 bool wxImage::LoadFile( wxInputStream
& stream
, long type
, int index
)
1185 m_refData
= new wxImageRefData
;
1187 wxImageHandler
*handler
;
1189 if ( type
== wxBITMAP_TYPE_ANY
)
1191 wxList
&list
=GetHandlers();
1193 for ( wxList::Node
*node
= list
.GetFirst(); node
; node
= node
->GetNext() )
1195 handler
=(wxImageHandler
*)node
->GetData();
1196 if ( handler
->CanRead(stream
) )
1197 return handler
->LoadFile(this, stream
, TRUE
/*verbose*/, index
);
1201 wxLogWarning( _("No handler found for image type.") );
1205 handler
= FindHandler(type
);
1209 wxLogWarning( _("No image handler for type %d defined."), type
);
1214 return handler
->LoadFile(this, stream
, TRUE
/*verbose*/, index
);
1217 bool wxImage::LoadFile( wxInputStream
& stream
, const wxString
& mimetype
, int index
)
1221 m_refData
= new wxImageRefData
;
1223 wxImageHandler
*handler
= FindHandlerMime(mimetype
);
1227 wxLogWarning( _("No image handler for type %s defined."), mimetype
.GetData() );
1232 return handler
->LoadFile( this, stream
, TRUE
/*verbose*/, index
);
1235 bool wxImage::SaveFile( wxOutputStream
& stream
, int type
) const
1237 wxCHECK_MSG( Ok(), FALSE
, wxT("invalid image") );
1239 wxImageHandler
*handler
= FindHandler(type
);
1243 wxLogWarning( _("No image handler for type %d defined."), type
);
1248 return handler
->SaveFile( (wxImage
*)this, stream
);
1251 bool wxImage::SaveFile( wxOutputStream
& stream
, const wxString
& mimetype
) const
1253 wxCHECK_MSG( Ok(), FALSE
, wxT("invalid image") );
1255 wxImageHandler
*handler
= FindHandlerMime(mimetype
);
1259 wxLogWarning( _("No image handler for type %s defined."), mimetype
.GetData() );
1264 return handler
->SaveFile( (wxImage
*)this, stream
);
1266 #endif // wxUSE_STREAMS
1268 void wxImage::AddHandler( wxImageHandler
*handler
)
1270 // make sure that the memory will be freed at the program end
1271 sm_handlers
.DeleteContents(TRUE
);
1273 // Check for an existing handler of the type being added.
1274 if (FindHandler( handler
->GetType() ) == 0)
1276 sm_handlers
.Append( handler
);
1280 // This is not documented behaviour, merely the simplest 'fix'
1281 // for preventing duplicate additions. If someone ever has
1282 // a good reason to add and remove duplicate handlers (and they
1283 // may) we should probably refcount the duplicates.
1284 // also an issue in InsertHandler below.
1286 wxLogDebug( _T("Adding duplicate image handler for '%s'"),
1287 handler
->GetName().c_str() );
1292 void wxImage::InsertHandler( wxImageHandler
*handler
)
1294 // make sure that the memory will be freed at the program end
1295 sm_handlers
.DeleteContents(TRUE
);
1297 // Check for an existing handler of the type being added.
1298 if (FindHandler( handler
->GetType() ) == 0)
1300 sm_handlers
.Insert( handler
);
1304 // see AddHandler for additional comments.
1305 wxLogDebug( _T("Inserting duplicate image handler for '%s'"),
1306 handler
->GetName().c_str() );
1311 bool wxImage::RemoveHandler( const wxString
& name
)
1313 wxImageHandler
*handler
= FindHandler(name
);
1316 sm_handlers
.DeleteObject(handler
);
1323 wxImageHandler
*wxImage::FindHandler( const wxString
& name
)
1325 wxNode
*node
= sm_handlers
.GetFirst();
1328 wxImageHandler
*handler
= (wxImageHandler
*)node
->GetData();
1329 if (handler
->GetName().Cmp(name
) == 0) return handler
;
1331 node
= node
->GetNext();
1336 wxImageHandler
*wxImage::FindHandler( const wxString
& extension
, long bitmapType
)
1338 wxNode
*node
= sm_handlers
.GetFirst();
1341 wxImageHandler
*handler
= (wxImageHandler
*)node
->GetData();
1342 if ( (handler
->GetExtension().Cmp(extension
) == 0) &&
1343 (bitmapType
== -1 || handler
->GetType() == bitmapType
) )
1345 node
= node
->GetNext();
1350 wxImageHandler
*wxImage::FindHandler( long bitmapType
)
1352 wxNode
*node
= sm_handlers
.GetFirst();
1355 wxImageHandler
*handler
= (wxImageHandler
*)node
->GetData();
1356 if (handler
->GetType() == bitmapType
) return handler
;
1357 node
= node
->GetNext();
1362 wxImageHandler
*wxImage::FindHandlerMime( const wxString
& mimetype
)
1364 wxNode
*node
= sm_handlers
.GetFirst();
1367 wxImageHandler
*handler
= (wxImageHandler
*)node
->GetData();
1368 if (handler
->GetMimeType().IsSameAs(mimetype
, FALSE
)) return handler
;
1369 node
= node
->GetNext();
1374 void wxImage::InitStandardHandlers()
1377 AddHandler(new wxBMPHandler
);
1378 #endif // wxUSE_STREAMS
1381 void wxImage::CleanUpHandlers()
1383 wxNode
*node
= sm_handlers
.GetFirst();
1386 wxImageHandler
*handler
= (wxImageHandler
*)node
->GetData();
1387 wxNode
*next
= node
->GetNext();
1395 //-----------------------------------------------------------------------------
1397 //-----------------------------------------------------------------------------
1399 IMPLEMENT_ABSTRACT_CLASS(wxImageHandler
,wxObject
)
1402 bool wxImageHandler::LoadFile( wxImage
*WXUNUSED(image
), wxInputStream
& WXUNUSED(stream
), bool WXUNUSED(verbose
), int WXUNUSED(index
) )
1407 bool wxImageHandler::SaveFile( wxImage
*WXUNUSED(image
), wxOutputStream
& WXUNUSED(stream
), bool WXUNUSED(verbose
) )
1412 int wxImageHandler::GetImageCount( wxInputStream
& WXUNUSED(stream
) )
1417 bool wxImageHandler::CanRead( const wxString
& name
)
1419 if (wxFileExists(name
))
1421 wxFileInputStream
stream(name
);
1422 return CanRead(stream
);
1425 wxLogError( _("Can't check image format of file '%s': file does not exist."), name
.c_str() );
1430 bool wxImageHandler::CallDoCanRead(wxInputStream
& stream
)
1432 off_t posOld
= stream
.TellI();
1433 if ( posOld
== wxInvalidOffset
)
1435 // can't test unseekable stream
1439 bool ok
= DoCanRead(stream
);
1441 // restore the old position to be able to test other formats and so on
1442 if ( stream
.SeekI(posOld
) == wxInvalidOffset
)
1444 wxLogDebug(_T("Failed to rewind the stream in wxImageHandler!"));
1446 // reading would fail anyhow as we're not at the right position
1453 #endif // wxUSE_STREAMS
1457 //-----------------------------------------------------------------------------
1458 // Deprecated wxBitmap conversion routines
1459 //-----------------------------------------------------------------------------
1461 #if WXWIN_COMPATIBILITY_2_2 && wxUSE_GUI
1464 wxBitmap
wxImage::ConvertToMonoBitmap( unsigned char red
, unsigned char green
, unsigned char blue
) const
1466 wxImage mono
= this->ConvertToMono( red
, green
, blue
);
1467 wxBitmap
bitmap( mono
, 1 );
1472 wxBitmap
wxImage::ConvertToBitmap() const
1474 wxBitmap
bitmap( *this );
1478 wxImage::wxImage( const wxBitmap
&bitmap
)
1480 *this = bitmap
.ConvertToImage();
1483 #endif // WXWIN_COMPATIBILITY_2_2 && wxUSE_GUI
1486 // ----------------------------------------------------------------------------
1487 // image histogram stuff
1488 // ----------------------------------------------------------------------------
1491 wxImageHistogram::FindFirstUnusedColour(unsigned char *r
,
1496 unsigned char g2
) const
1498 unsigned long key
= MakeKey(r2
, g2
, b2
);
1500 while ( find(key
) != end() )
1502 // color already used
1514 wxLogError(_("GetUnusedColour:: No Unused Color in image ") );
1520 key
= MakeKey(r2
, g2
, b2
);
1534 wxImage::FindFirstUnusedColour(unsigned char *r
,
1539 unsigned char g2
) const
1541 wxImageHistogram histogram
;
1543 ComputeHistogram(histogram
);
1545 return histogram
.FindFirstUnusedColour(r
, g
, b
, r2
, g2
, b2
);
1551 // Counts and returns the number of different colours. Optionally stops
1552 // when it exceeds 'stopafter' different colours. This is useful, for
1553 // example, to see if the image can be saved as 8-bit (256 colour or
1554 // less, in this case it would be invoked as CountColours(256)). Default
1555 // value for stopafter is -1 (don't care).
1557 unsigned long wxImage::CountColours( unsigned long stopafter
) const
1561 unsigned char r
, g
, b
;
1563 unsigned long size
, nentries
, key
;
1566 size
= GetWidth() * GetHeight();
1569 for (unsigned long j
= 0; (j
< size
) && (nentries
<= stopafter
) ; j
++)
1574 key
= wxImageHistogram::MakeKey(r
, g
, b
);
1576 if (h
.Get(key
) == NULL
)
1587 unsigned long wxImage::ComputeHistogram( wxImageHistogram
&h
) const
1589 unsigned char *p
= GetData();
1590 unsigned long nentries
= 0;
1594 const unsigned long size
= GetWidth() * GetHeight();
1596 unsigned char r
, g
, b
;
1597 for ( unsigned long n
= 0; n
< size
; n
++ )
1603 wxImageHistogramEntry
& entry
= h
[wxImageHistogram::MakeKey(r
, g
, b
)];
1605 if ( entry
.value
++ == 0 )
1606 entry
.index
= nentries
++;
1613 * Rotation code by Carlos Moreno
1616 // GRG: I've removed wxRotationPoint - we already have wxRealPoint which
1617 // does exactly the same thing. And I also got rid of wxRotationPixel
1618 // bacause of potential problems in architectures where alignment
1619 // is an issue, so I had to rewrite parts of the code.
1621 static const double gs_Epsilon
= 1e-10;
1623 static inline int wxCint (double x
)
1625 return (x
> 0) ? (int) (x
+ 0.5) : (int) (x
- 0.5);
1629 // Auxiliary function to rotate a point (x,y) with respect to point p0
1630 // make it inline and use a straight return to facilitate optimization
1631 // also, the function receives the sine and cosine of the angle to avoid
1632 // repeating the time-consuming calls to these functions -- sin/cos can
1633 // be computed and stored in the calling function.
1635 inline wxRealPoint
rotated_point (const wxRealPoint
& p
, double cos_angle
, double sin_angle
, const wxRealPoint
& p0
)
1637 return wxRealPoint (p0
.x
+ (p
.x
- p0
.x
) * cos_angle
- (p
.y
- p0
.y
) * sin_angle
,
1638 p0
.y
+ (p
.y
- p0
.y
) * cos_angle
+ (p
.x
- p0
.x
) * sin_angle
);
1641 inline wxRealPoint
rotated_point (double x
, double y
, double cos_angle
, double sin_angle
, const wxRealPoint
& p0
)
1643 return rotated_point (wxRealPoint(x
,y
), cos_angle
, sin_angle
, p0
);
1646 wxImage
wxImage::Rotate(double angle
, const wxPoint
& centre_of_rotation
, bool interpolating
, wxPoint
* offset_after_rotation
) const
1649 angle
= -angle
; // screen coordinates are a mirror image of "real" coordinates
1651 // Create pointer-based array to accelerate access to wxImage's data
1652 unsigned char ** data
= new unsigned char * [GetHeight()];
1654 data
[0] = GetData();
1656 for (i
= 1; i
< GetHeight(); i
++)
1657 data
[i
] = data
[i
- 1] + (3 * GetWidth());
1659 // precompute coefficients for rotation formula
1660 // (sine and cosine of the angle)
1661 const double cos_angle
= cos(angle
);
1662 const double sin_angle
= sin(angle
);
1664 // Create new Image to store the result
1665 // First, find rectangle that covers the rotated image; to do that,
1666 // rotate the four corners
1668 const wxRealPoint
p0(centre_of_rotation
.x
, centre_of_rotation
.y
);
1670 wxRealPoint p1
= rotated_point (0, 0, cos_angle
, sin_angle
, p0
);
1671 wxRealPoint p2
= rotated_point (0, GetHeight(), cos_angle
, sin_angle
, p0
);
1672 wxRealPoint p3
= rotated_point (GetWidth(), 0, cos_angle
, sin_angle
, p0
);
1673 wxRealPoint p4
= rotated_point (GetWidth(), GetHeight(), cos_angle
, sin_angle
, p0
);
1675 int x1
= (int) floor (wxMin (wxMin(p1
.x
, p2
.x
), wxMin(p3
.x
, p4
.x
)));
1676 int y1
= (int) floor (wxMin (wxMin(p1
.y
, p2
.y
), wxMin(p3
.y
, p4
.y
)));
1677 int x2
= (int) ceil (wxMax (wxMax(p1
.x
, p2
.x
), wxMax(p3
.x
, p4
.x
)));
1678 int y2
= (int) ceil (wxMax (wxMax(p1
.y
, p2
.y
), wxMax(p3
.y
, p4
.y
)));
1680 wxImage
rotated (x2
- x1
+ 1, y2
- y1
+ 1, false);
1682 if (offset_after_rotation
!= NULL
)
1684 *offset_after_rotation
= wxPoint (x1
, y1
);
1687 // GRG: The rotated (destination) image is always accessed
1688 // sequentially, so there is no need for a pointer-based
1689 // array here (and in fact it would be slower).
1691 unsigned char * dst
= rotated
.GetData();
1693 // GRG: if the original image has a mask, use its RGB values
1694 // as the blank pixel, else, fall back to default (black).
1696 unsigned char blank_r
= 0;
1697 unsigned char blank_g
= 0;
1698 unsigned char blank_b
= 0;
1702 blank_r
= GetMaskRed();
1703 blank_g
= GetMaskGreen();
1704 blank_b
= GetMaskBlue();
1705 rotated
.SetMaskColour( blank_r
, blank_g
, blank_b
);
1708 // Now, for each point of the rotated image, find where it came from, by
1709 // performing an inverse rotation (a rotation of -angle) and getting the
1710 // pixel at those coordinates
1712 // GRG: I've taken the (interpolating) test out of the loops, so that
1713 // it is done only once, instead of repeating it for each pixel.
1718 for (int y
= 0; y
< rotated
.GetHeight(); y
++)
1720 for (x
= 0; x
< rotated
.GetWidth(); x
++)
1722 wxRealPoint src
= rotated_point (x
+ x1
, y
+ y1
, cos_angle
, -sin_angle
, p0
);
1724 if (-0.25 < src
.x
&& src
.x
< GetWidth() - 0.75 &&
1725 -0.25 < src
.y
&& src
.y
< GetHeight() - 0.75)
1727 // interpolate using the 4 enclosing grid-points. Those
1728 // points can be obtained using floor and ceiling of the
1729 // exact coordinates of the point
1730 // C.M. 2000-02-17: when the point is near the border, special care is required.
1734 if (0 < src
.x
&& src
.x
< GetWidth() - 1)
1736 x1
= wxCint(floor(src
.x
));
1737 x2
= wxCint(ceil(src
.x
));
1739 else // else means that x is near one of the borders (0 or width-1)
1741 x1
= x2
= wxCint (src
.x
);
1744 if (0 < src
.y
&& src
.y
< GetHeight() - 1)
1746 y1
= wxCint(floor(src
.y
));
1747 y2
= wxCint(ceil(src
.y
));
1751 y1
= y2
= wxCint (src
.y
);
1754 // get four points and the distances (square of the distance,
1755 // for efficiency reasons) for the interpolation formula
1757 // GRG: Do not calculate the points until they are
1758 // really needed -- this way we can calculate
1759 // just one, instead of four, if d1, d2, d3
1760 // or d4 are < gs_Epsilon
1762 const double d1
= (src
.x
- x1
) * (src
.x
- x1
) + (src
.y
- y1
) * (src
.y
- y1
);
1763 const double d2
= (src
.x
- x2
) * (src
.x
- x2
) + (src
.y
- y1
) * (src
.y
- y1
);
1764 const double d3
= (src
.x
- x2
) * (src
.x
- x2
) + (src
.y
- y2
) * (src
.y
- y2
);
1765 const double d4
= (src
.x
- x1
) * (src
.x
- x1
) + (src
.y
- y2
) * (src
.y
- y2
);
1767 // Now interpolate as a weighted average of the four surrounding
1768 // points, where the weights are the distances to each of those points
1770 // If the point is exactly at one point of the grid of the source
1771 // image, then don't interpolate -- just assign the pixel
1773 if (d1
< gs_Epsilon
) // d1,d2,d3,d4 are positive -- no need for abs()
1775 unsigned char *p
= data
[y1
] + (3 * x1
);
1780 else if (d2
< gs_Epsilon
)
1782 unsigned char *p
= data
[y1
] + (3 * x2
);
1787 else if (d3
< gs_Epsilon
)
1789 unsigned char *p
= data
[y2
] + (3 * x2
);
1794 else if (d4
< gs_Epsilon
)
1796 unsigned char *p
= data
[y2
] + (3 * x1
);
1803 // weights for the weighted average are proportional to the inverse of the distance
1804 unsigned char *v1
= data
[y1
] + (3 * x1
);
1805 unsigned char *v2
= data
[y1
] + (3 * x2
);
1806 unsigned char *v3
= data
[y2
] + (3 * x2
);
1807 unsigned char *v4
= data
[y2
] + (3 * x1
);
1809 const double w1
= 1/d1
, w2
= 1/d2
, w3
= 1/d3
, w4
= 1/d4
;
1813 *(dst
++) = (unsigned char)
1814 ( (w1
* *(v1
++) + w2
* *(v2
++) +
1815 w3
* *(v3
++) + w4
* *(v4
++)) /
1816 (w1
+ w2
+ w3
+ w4
) );
1817 *(dst
++) = (unsigned char)
1818 ( (w1
* *(v1
++) + w2
* *(v2
++) +
1819 w3
* *(v3
++) + w4
* *(v4
++)) /
1820 (w1
+ w2
+ w3
+ w4
) );
1821 *(dst
++) = (unsigned char)
1822 ( (w1
* *(v1
++) + w2
* *(v2
++) +
1823 w3
* *(v3
++) + w4
* *(v4
++)) /
1824 (w1
+ w2
+ w3
+ w4
) );
1836 else // not interpolating
1838 for (int y
= 0; y
< rotated
.GetHeight(); y
++)
1840 for (x
= 0; x
< rotated
.GetWidth(); x
++)
1842 wxRealPoint src
= rotated_point (x
+ x1
, y
+ y1
, cos_angle
, -sin_angle
, p0
);
1844 const int xs
= wxCint (src
.x
); // wxCint rounds to the
1845 const int ys
= wxCint (src
.y
); // closest integer
1847 if (0 <= xs
&& xs
< GetWidth() &&
1848 0 <= ys
&& ys
< GetHeight())
1850 unsigned char *p
= data
[ys
] + (3 * xs
);
1874 // A module to allow wxImage initialization/cleanup
1875 // without calling these functions from app.cpp or from
1876 // the user's application.
1878 class wxImageModule
: public wxModule
1880 DECLARE_DYNAMIC_CLASS(wxImageModule
)
1883 bool OnInit() { wxImage::InitStandardHandlers(); return TRUE
; };
1884 void OnExit() { wxImage::CleanUpHandlers(); };
1887 IMPLEMENT_DYNAMIC_CLASS(wxImageModule
, wxModule
)
1890 #endif // wxUSE_IMAGE