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1/////////////////////////////////////////////////////////////////////////////
2// Name: image.cpp
3// Purpose: wxImage
4// Author: Robert Roebling
5// RCS-ID: $Id$
6// Copyright: (c) Robert Roebling
65571936 7// Licence: wxWindows licence
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8/////////////////////////////////////////////////////////////////////////////
9
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10// For compilers that support precompilation, includes "wx.h".
11#include "wx/wxprec.h"
12
13#ifdef __BORLANDC__
edccf428 14 #pragma hdrstop
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15#endif
16
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17#include "wx/defs.h"
18
19#if wxUSE_IMAGE
20
01111366 21#include "wx/image.h"
99c67c77 22#include "wx/bitmap.h"
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23#include "wx/debug.h"
24#include "wx/log.h"
f6fcbb63 25#include "wx/app.h"
dc86cb34 26#include "wx/filefn.h"
3d05544e 27#include "wx/wfstream.h"
b75867a6 28#include "wx/intl.h"
a91b47e8 29#include "wx/module.h"
ed39ff57 30#include "wx/hash.h"
d0ce3e52 31#include "wx/utils.h"
b713f891 32#include "wx/math.h"
01111366 33
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34#if wxUSE_XPM
35#include "wx/xpmdecod.h"
36#endif
37
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38// For memcpy
39#include <string.h>
40
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41//-----------------------------------------------------------------------------
42// wxImage
43//-----------------------------------------------------------------------------
44
45class wxImageRefData: public wxObjectRefData
46{
fd0eed64 47public:
edccf428 48 wxImageRefData();
487659e0 49 virtual ~wxImageRefData();
c7abc967 50
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51 int m_width;
52 int m_height;
53 unsigned char *m_data;
487659e0 54
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55 bool m_hasMask;
56 unsigned char m_maskRed,m_maskGreen,m_maskBlue;
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57
58 // alpha channel data, may be NULL for the formats without alpha support
59 unsigned char *m_alpha;
60
dbda9e86 61 bool m_ok;
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62
63 // if true, m_data is pointer to static data and shouldn't be freed
f6bcfd97 64 bool m_static;
487659e0 65
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66 // same as m_static but for m_alpha
67 bool m_staticAlpha;
68
d275c7eb 69#if wxUSE_PALETTE
5e5437e0 70 wxPalette m_palette;
d275c7eb 71#endif // wxUSE_PALETTE
487659e0 72
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73 wxArrayString m_optionNames;
74 wxArrayString m_optionValues;
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75
76 DECLARE_NO_COPY_CLASS(wxImageRefData)
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77};
78
edccf428 79wxImageRefData::wxImageRefData()
01111366 80{
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81 m_width = 0;
82 m_height = 0;
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83 m_data =
84 m_alpha = (unsigned char *) NULL;
85
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86 m_maskRed = 0;
87 m_maskGreen = 0;
88 m_maskBlue = 0;
70cd62e9 89 m_hasMask = false;
487659e0 90
70cd62e9 91 m_ok = false;
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92 m_static =
93 m_staticAlpha = false;
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94}
95
edccf428 96wxImageRefData::~wxImageRefData()
01111366 97{
d2502f14 98 if ( !m_static )
58c837a4 99 free( m_data );
d2502f14 100 if ( !m_staticAlpha )
4ea56379 101 free( m_alpha );
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102}
103
104wxList wxImage::sm_handlers;
105
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106wxImage wxNullImage;
107
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108//-----------------------------------------------------------------------------
109
110#define M_IMGDATA ((wxImageRefData *)m_refData)
111
5e5437e0 112IMPLEMENT_DYNAMIC_CLASS(wxImage, wxObject)
01111366 113
ff865c13 114wxImage::wxImage( int width, int height, bool clear )
01111366 115{
ff865c13 116 Create( width, height, clear );
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117}
118
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119wxImage::wxImage( int width, int height, unsigned char* data, bool static_data )
120{
121 Create( width, height, data, static_data );
122}
123
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124wxImage::wxImage( int width, int height, unsigned char* data, unsigned char* alpha, bool static_data )
125{
126 Create( width, height, data, alpha, static_data );
127}
128
60d43ad8 129wxImage::wxImage( const wxString& name, long type, int index )
01111366 130{
60d43ad8 131 LoadFile( name, type, index );
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132}
133
60d43ad8 134wxImage::wxImage( const wxString& name, const wxString& mimetype, int index )
9e9ee68e 135{
60d43ad8 136 LoadFile( name, mimetype, index );
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137}
138
e02afc7a 139#if wxUSE_STREAMS
60d43ad8 140wxImage::wxImage( wxInputStream& stream, long type, int index )
3d05544e 141{
60d43ad8 142 LoadFile( stream, type, index );
3d05544e 143}
9e9ee68e 144
60d43ad8 145wxImage::wxImage( wxInputStream& stream, const wxString& mimetype, int index )
9e9ee68e 146{
60d43ad8 147 LoadFile( stream, mimetype, index );
9e9ee68e 148}
e02afc7a 149#endif // wxUSE_STREAMS
3d05544e 150
4698648f 151wxImage::wxImage( const wxImage& image )
1b0674f7 152 : wxObject()
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153{
154 Ref(image);
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155}
156
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157wxImage::wxImage( const wxImage* image )
158{
159 if (image) Ref(*image);
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160}
161
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162wxImage::wxImage( const char** xpmData )
163{
164 Create(xpmData);
165}
166
167wxImage::wxImage( char** xpmData )
168{
169 Create((const char**) xpmData);
170}
171
172bool wxImage::Create( const char** xpmData )
173{
174#if wxUSE_XPM
175 UnRef();
e9b64c5e 176
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177 wxXPMDecoder decoder;
178 (*this) = decoder.ReadData(xpmData);
179 return Ok();
180#else
181 return false;
182#endif
183}
184
aaa97828 185bool wxImage::Create( int width, int height, bool clear )
01111366 186{
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187 UnRef();
188
fd0eed64 189 m_refData = new wxImageRefData();
c7abc967 190
fd0eed64 191 M_IMGDATA->m_data = (unsigned char *) malloc( width*height*3 );
aaa97828 192 if (!M_IMGDATA->m_data)
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193 {
194 UnRef();
70cd62e9 195 return false;
fd0eed64 196 }
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197
198 if (clear)
199 memset(M_IMGDATA->m_data, 0, width*height*3);
200
201 M_IMGDATA->m_width = width;
202 M_IMGDATA->m_height = height;
70cd62e9 203 M_IMGDATA->m_ok = true;
aaa97828 204
70cd62e9 205 return true;
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206}
207
aaa97828 208bool wxImage::Create( int width, int height, unsigned char* data, bool static_data )
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209{
210 UnRef();
211
70cd62e9 212 wxCHECK_MSG( data, false, _T("NULL data in wxImage::Create") );
aaa97828 213
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214 m_refData = new wxImageRefData();
215
216 M_IMGDATA->m_data = data;
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217 M_IMGDATA->m_width = width;
218 M_IMGDATA->m_height = height;
70cd62e9 219 M_IMGDATA->m_ok = true;
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220 M_IMGDATA->m_static = static_data;
221
70cd62e9 222 return true;
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223}
224
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225bool wxImage::Create( int width, int height, unsigned char* data, unsigned char* alpha, bool static_data )
226{
227 UnRef();
228
229 wxCHECK_MSG( data, false, _T("NULL data in wxImage::Create") );
230
231 m_refData = new wxImageRefData();
232
233 M_IMGDATA->m_data = data;
234 M_IMGDATA->m_alpha = alpha;
235 M_IMGDATA->m_width = width;
236 M_IMGDATA->m_height = height;
237 M_IMGDATA->m_ok = true;
238 M_IMGDATA->m_static = static_data;
239
240 return true;
241}
242
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243void wxImage::Destroy()
244{
fd0eed64 245 UnRef();
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246}
247
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248wxImage wxImage::Copy() const
249{
250 wxImage image;
251
252 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
253
ff865c13 254 image.Create( M_IMGDATA->m_width, M_IMGDATA->m_height, false );
f6bcfd97 255
487659e0 256 unsigned char *data = image.GetData();
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257
258 wxCHECK_MSG( data, image, wxT("unable to create image") );
259
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260 image.SetMaskColour( M_IMGDATA->m_maskRed, M_IMGDATA->m_maskGreen, M_IMGDATA->m_maskBlue );
261 image.SetMask( M_IMGDATA->m_hasMask );
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262
263 memcpy( data, GetData(), M_IMGDATA->m_width*M_IMGDATA->m_height*3 );
264
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265 // also copy the image options
266 wxImageRefData *imgData = (wxImageRefData *)image.m_refData;
267 imgData->m_optionNames = M_IMGDATA->m_optionNames;
268 imgData->m_optionValues = M_IMGDATA->m_optionValues;
269
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270 return image;
271}
272
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273wxImage wxImage::ShrinkBy( int xFactor , int yFactor ) const
274{
275 if( xFactor == 1 && yFactor == 1 )
276 return Copy() ;
7beb59f3 277
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278 wxImage image;
279
280 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
281
282 // can't scale to/from 0 size
283 wxCHECK_MSG( (xFactor > 0) && (yFactor > 0), image,
284 wxT("invalid new image size") );
285
286 long old_height = M_IMGDATA->m_height,
287 old_width = M_IMGDATA->m_width;
7beb59f3 288
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289 wxCHECK_MSG( (old_height > 0) && (old_width > 0), image,
290 wxT("invalid old image size") );
291
292 long width = old_width / xFactor ;
293 long height = old_height / yFactor ;
294
ff865c13 295 image.Create( width, height, false );
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296
297 char unsigned *data = image.GetData();
298
299 wxCHECK_MSG( data, image, wxT("unable to create image") );
300
301 bool hasMask = false ;
302 unsigned char maskRed = 0;
303 unsigned char maskGreen = 0;
304 unsigned char maskBlue =0 ;
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305
306 unsigned char *source_data = M_IMGDATA->m_data;
307 unsigned char *target_data = data;
308 unsigned char *source_alpha = 0 ;
309 unsigned char *target_alpha = 0 ;
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310 if (M_IMGDATA->m_hasMask)
311 {
312 hasMask = true ;
313 maskRed = M_IMGDATA->m_maskRed;
314 maskGreen = M_IMGDATA->m_maskGreen;
315 maskBlue =M_IMGDATA->m_maskBlue ;
7beb59f3 316
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317 image.SetMaskColour( M_IMGDATA->m_maskRed,
318 M_IMGDATA->m_maskGreen,
319 M_IMGDATA->m_maskBlue );
320 }
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321 else
322 {
323 source_alpha = M_IMGDATA->m_alpha ;
324 if ( source_alpha )
325 {
326 image.SetAlpha() ;
327 target_alpha = image.GetAlpha() ;
328 }
329 }
7beb59f3 330
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331 for (long y = 0; y < height; y++)
332 {
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333 for (long x = 0; x < width; x++)
334 {
335 unsigned long avgRed = 0 ;
336 unsigned long avgGreen = 0;
337 unsigned long avgBlue = 0;
cd0bbd03 338 unsigned long avgAlpha = 0 ;
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339 unsigned long counter = 0 ;
340 // determine average
341 for ( int y1 = 0 ; y1 < yFactor ; ++y1 )
342 {
343 long y_offset = (y * yFactor + y1) * old_width;
344 for ( int x1 = 0 ; x1 < xFactor ; ++x1 )
345 {
346 unsigned char *pixel = source_data + 3 * ( y_offset + x * xFactor + x1 ) ;
347 unsigned char red = pixel[0] ;
348 unsigned char green = pixel[1] ;
349 unsigned char blue = pixel[2] ;
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350 unsigned char alpha = 255 ;
351 if ( source_alpha )
352 alpha = *(source_alpha + y_offset + x * xFactor + x1) ;
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353 if ( !hasMask || red != maskRed || green != maskGreen || blue != maskBlue )
354 {
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355 if ( alpha > 0 )
356 {
357 avgRed += red ;
358 avgGreen += green ;
359 avgBlue += blue ;
360 }
361 avgAlpha += alpha ;
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362 counter++ ;
363 }
364 }
365 }
366 if ( counter == 0 )
367 {
368 *(target_data++) = M_IMGDATA->m_maskRed ;
369 *(target_data++) = M_IMGDATA->m_maskGreen ;
370 *(target_data++) = M_IMGDATA->m_maskBlue ;
371 }
372 else
373 {
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374 if ( source_alpha )
375 *(target_alpha++) = (unsigned char)(avgAlpha / counter ) ;
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376 *(target_data++) = (unsigned char)(avgRed / counter);
377 *(target_data++) = (unsigned char)(avgGreen / counter);
378 *(target_data++) = (unsigned char)(avgBlue / counter);
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379 }
380 }
381 }
382
383 // In case this is a cursor, make sure the hotspot is scalled accordingly:
384 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_X) )
385 image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X,
386 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_X))/xFactor);
387 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y) )
388 image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y,
389 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_Y))/yFactor);
390
391 return image;
392}
393
ce9a75d2 394wxImage wxImage::Scale( int width, int height ) const
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395{
396 wxImage image;
c7abc967 397
223d09f6 398 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
c7abc967 399
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400 // can't scale to/from 0 size
401 wxCHECK_MSG( (width > 0) && (height > 0), image,
402 wxT("invalid new image size") );
403
404 long old_height = M_IMGDATA->m_height,
405 old_width = M_IMGDATA->m_width;
406 wxCHECK_MSG( (old_height > 0) && (old_width > 0), image,
407 wxT("invalid old image size") );
c7abc967 408
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409 if ( old_width % width == 0 && old_width >= width &&
410 old_height % height == 0 && old_height >= height )
411 {
412 return ShrinkBy( old_width / width , old_height / height ) ;
413 }
ff865c13 414 image.Create( width, height, false );
c7abc967 415
487659e0 416 unsigned char *data = image.GetData();
c7abc967 417
223d09f6 418 wxCHECK_MSG( data, image, wxT("unable to create image") );
c7abc967 419
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420 unsigned char *source_data = M_IMGDATA->m_data;
421 unsigned char *target_data = data;
422 unsigned char *source_alpha = 0 ;
423 unsigned char *target_alpha = 0 ;
e9b64c5e 424
4bc67cc5 425 if (M_IMGDATA->m_hasMask)
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426 {
427 image.SetMaskColour( M_IMGDATA->m_maskRed,
428 M_IMGDATA->m_maskGreen,
429 M_IMGDATA->m_maskBlue );
430 }
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431 else
432 {
433 source_alpha = M_IMGDATA->m_alpha ;
434 if ( source_alpha )
435 {
436 image.SetAlpha() ;
437 target_alpha = image.GetAlpha() ;
438 }
439 }
c7abc967 440
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441 long x_delta = (old_width<<16) / width;
442 long y_delta = (old_height<<16) / height;
c7abc967 443
ff865c13 444 unsigned char* dest_pixel = target_data;
6721fc38 445
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446 long y = 0;
447 for ( long j = 0; j < height; j++ )
448 {
449 unsigned char* src_line = &source_data[(y>>16)*old_width*3];
8d3b6b8a 450 unsigned char* src_alpha_line = source_alpha ? &source_alpha[(y>>16)*old_width] : 0 ;
e9b64c5e 451
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452 long x = 0;
453 for ( long i = 0; i < width; i++ )
eeca3a46 454 {
ff865c13 455 unsigned char* src_pixel = &src_line[(x>>16)*3];
8d3b6b8a 456 unsigned char* src_alpha_pixel = source_alpha ? &src_alpha_line[(x>>16)] : 0 ;
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457 dest_pixel[0] = src_pixel[0];
458 dest_pixel[1] = src_pixel[1];
459 dest_pixel[2] = src_pixel[2];
460 dest_pixel += 3;
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461 if ( source_alpha )
462 *(target_alpha++) = *src_alpha_pixel ;
ff865c13 463 x += x_delta;
eeca3a46 464 }
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465
466 y += y_delta;
eeca3a46 467 }
36aac195 468
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469 // In case this is a cursor, make sure the hotspot is scalled accordingly:
470 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_X) )
471 image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X,
472 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_X)*width)/old_width);
473 if ( HasOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y) )
474 image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y,
475 (GetOptionInt(wxIMAGE_OPTION_CUR_HOTSPOT_Y)*height)/old_height);
c7abc967 476
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477 return image;
478}
4698648f 479
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480wxImage wxImage::Rotate90( bool clockwise ) const
481{
482 wxImage image;
483
484 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
485
ff865c13 486 image.Create( M_IMGDATA->m_height, M_IMGDATA->m_width, false );
f6bcfd97 487
487659e0 488 unsigned char *data = image.GetData();
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489
490 wxCHECK_MSG( data, image, wxT("unable to create image") );
491
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492 unsigned char *source_data = M_IMGDATA->m_data;
493 unsigned char *target_data;
494 unsigned char *alpha_data = 0 ;
495 unsigned char *source_alpha = 0 ;
496 unsigned char *target_alpha = 0 ;
497
f6bcfd97 498 if (M_IMGDATA->m_hasMask)
921c65ed 499 {
f6bcfd97 500 image.SetMaskColour( M_IMGDATA->m_maskRed, M_IMGDATA->m_maskGreen, M_IMGDATA->m_maskBlue );
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501 }
502 else
503 {
504 source_alpha = M_IMGDATA->m_alpha ;
505 if ( source_alpha )
506 {
507 image.SetAlpha() ;
508 alpha_data = image.GetAlpha() ;
509 }
510 }
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511
512 long height = M_IMGDATA->m_height;
513 long width = M_IMGDATA->m_width;
514
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515 for (long j = 0; j < height; j++)
516 {
517 for (long i = 0; i < width; i++)
518 {
519 if (clockwise)
921c65ed 520 {
f6bcfd97 521 target_data = data + (((i+1)*height) - j - 1)*3;
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522 if(source_alpha)
523 target_alpha = alpha_data + (((i+1)*height) - j - 1);
524 }
f6bcfd97 525 else
921c65ed 526 {
f6bcfd97 527 target_data = data + ((height*(width-1)) + j - (i*height))*3;
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528 if(source_alpha)
529 target_alpha = alpha_data + ((height*(width-1)) + j - (i*height));
530 }
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531 memcpy( target_data, source_data, 3 );
532 source_data += 3;
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533
534 if(source_alpha)
535 {
536 memcpy( target_alpha, source_alpha, 1 );
537 source_alpha += 1;
538 }
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539 }
540 }
541
542 return image;
543}
544
545wxImage wxImage::Mirror( bool horizontally ) const
546{
547 wxImage image;
548
549 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
550
ff865c13 551 image.Create( M_IMGDATA->m_width, M_IMGDATA->m_height, false );
f6bcfd97 552
487659e0 553 unsigned char *data = image.GetData();
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554
555 wxCHECK_MSG( data, image, wxT("unable to create image") );
556
557 if (M_IMGDATA->m_hasMask)
558 image.SetMaskColour( M_IMGDATA->m_maskRed, M_IMGDATA->m_maskGreen, M_IMGDATA->m_maskBlue );
559
560 long height = M_IMGDATA->m_height;
561 long width = M_IMGDATA->m_width;
562
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563 unsigned char *source_data = M_IMGDATA->m_data;
564 unsigned char *target_data;
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565
566 if (horizontally)
567 {
568 for (long j = 0; j < height; j++)
569 {
570 data += width*3;
571 target_data = data-3;
572 for (long i = 0; i < width; i++)
573 {
574 memcpy( target_data, source_data, 3 );
575 source_data += 3;
576 target_data -= 3;
577 }
578 }
579 }
580 else
581 {
582 for (long i = 0; i < height; i++)
583 {
584 target_data = data + 3*width*(height-1-i);
3ca6a5f0 585 memcpy( target_data, source_data, (size_t)3*width );
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586 source_data += 3*width;
587 }
588 }
589
590 return image;
591}
592
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593wxImage wxImage::GetSubImage( const wxRect &rect ) const
594{
595 wxImage image;
596
223d09f6 597 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
7b2471a0 598
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599 wxCHECK_MSG( (rect.GetLeft()>=0) && (rect.GetTop()>=0) && (rect.GetRight()<=GetWidth()) && (rect.GetBottom()<=GetHeight()),
600 image, wxT("invalid subimage size") );
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601
602 int subwidth=rect.GetWidth();
603 const int subheight=rect.GetHeight();
604
ff865c13 605 image.Create( subwidth, subheight, false );
7b2471a0 606
487659e0 607 unsigned char *subdata = image.GetData(), *data=GetData();
7b2471a0 608
223d09f6 609 wxCHECK_MSG( subdata, image, wxT("unable to create image") );
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610
611 if (M_IMGDATA->m_hasMask)
612 image.SetMaskColour( M_IMGDATA->m_maskRed, M_IMGDATA->m_maskGreen, M_IMGDATA->m_maskBlue );
613
614 const int subleft=3*rect.GetLeft();
615 const int width=3*GetWidth();
616 subwidth*=3;
995612e2 617
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618 data+=rect.GetTop()*width+subleft;
619
620 for (long j = 0; j < subheight; ++j)
621 {
622 memcpy( subdata, data, subwidth);
623 subdata+=subwidth;
995612e2 624 data+=width;
7b2471a0
SB
625 }
626
627 return image;
628}
629
e9b64c5e 630wxImage wxImage::Size( const wxSize& size, const wxPoint& pos,
b737ad10
RR
631 int r_, int g_, int b_ ) const
632{
633 wxImage image;
634
635 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
636 wxCHECK_MSG( (size.GetWidth() > 0) && (size.GetHeight() > 0), image, wxT("invalid size") );
637
638 int width = GetWidth(), height = GetHeight();
639 image.Create(size.GetWidth(), size.GetHeight(), false);
640
641 unsigned char r = (unsigned char)r_;
642 unsigned char g = (unsigned char)g_;
643 unsigned char b = (unsigned char)b_;
644 if ((r_ == -1) && (g_ == -1) && (b_ == -1))
645 {
646 GetOrFindMaskColour( &r, &g, &b );
647 image.SetMaskColour(r, g, b);
648 }
649
650 image.SetRGB(wxRect(), r, g, b);
651
652 wxRect subRect(pos.x, pos.y, width, height);
653 wxRect finalRect(0, 0, size.GetWidth(), size.GetHeight());
654
655 subRect.Intersect(finalRect);
656
657 if (!subRect.IsEmpty())
658 {
659 if ((subRect.GetWidth() == width) && (subRect.GetHeight() == height))
660 image.Paste(*this, pos.x, pos.y);
661 else
662 image.Paste(GetSubImage(subRect), pos.x, pos.y);
663 }
664
665 return image;
666}
667
f6bcfd97
BP
668void wxImage::Paste( const wxImage &image, int x, int y )
669{
670 wxCHECK_RET( Ok(), wxT("invalid image") );
671 wxCHECK_RET( image.Ok(), wxT("invalid image") );
672
673 int xx = 0;
674 int yy = 0;
675 int width = image.GetWidth();
676 int height = image.GetHeight();
677
678 if (x < 0)
679 {
680 xx = -x;
681 width += x;
682 }
683 if (y < 0)
684 {
685 yy = -y;
686 height += y;
687 }
688
689 if ((x+xx)+width > M_IMGDATA->m_width)
690 width = M_IMGDATA->m_width - (x+xx);
691 if ((y+yy)+height > M_IMGDATA->m_height)
692 height = M_IMGDATA->m_height - (y+yy);
693
694 if (width < 1) return;
695 if (height < 1) return;
696
697 if ((!HasMask() && !image.HasMask()) ||
b737ad10 698 (HasMask() && !image.HasMask()) ||
f6bcfd97
BP
699 ((HasMask() && image.HasMask() &&
700 (GetMaskRed()==image.GetMaskRed()) &&
701 (GetMaskGreen()==image.GetMaskGreen()) &&
702 (GetMaskBlue()==image.GetMaskBlue()))))
703 {
704 width *= 3;
705 unsigned char* source_data = image.GetData() + xx*3 + yy*3*image.GetWidth();
706 int source_step = image.GetWidth()*3;
707
708 unsigned char* target_data = GetData() + (x+xx)*3 + (y+yy)*3*M_IMGDATA->m_width;
709 int target_step = M_IMGDATA->m_width*3;
710 for (int j = 0; j < height; j++)
711 {
712 memcpy( target_data, source_data, width );
713 source_data += source_step;
714 target_data += target_step;
715 }
aa21b509 716 return;
f6bcfd97 717 }
33ac7e6f 718
aa21b509 719 if (!HasMask() && image.HasMask())
f6bcfd97 720 {
aa21b509
RR
721 unsigned char r = image.GetMaskRed();
722 unsigned char g = image.GetMaskGreen();
723 unsigned char b = image.GetMaskBlue();
33ac7e6f 724
aa21b509
RR
725 width *= 3;
726 unsigned char* source_data = image.GetData() + xx*3 + yy*3*image.GetWidth();
727 int source_step = image.GetWidth()*3;
728
729 unsigned char* target_data = GetData() + (x+xx)*3 + (y+yy)*3*M_IMGDATA->m_width;
730 int target_step = M_IMGDATA->m_width*3;
33ac7e6f 731
aa21b509
RR
732 for (int j = 0; j < height; j++)
733 {
734 for (int i = 0; i < width; i+=3)
735 {
33ac7e6f
KB
736 if ((source_data[i] != r) &&
737 (source_data[i+1] != g) &&
aa21b509
RR
738 (source_data[i+2] != b))
739 {
740 memcpy( target_data+i, source_data+i, 3 );
741 }
33ac7e6f 742 }
aa21b509
RR
743 source_data += source_step;
744 target_data += target_step;
745 }
f6bcfd97
BP
746 }
747}
748
be25e480
RR
749void wxImage::Replace( unsigned char r1, unsigned char g1, unsigned char b1,
750 unsigned char r2, unsigned char g2, unsigned char b2 )
751{
752 wxCHECK_RET( Ok(), wxT("invalid image") );
753
487659e0 754 unsigned char *data = GetData();
06b466c7 755
be25e480
RR
756 const int w = GetWidth();
757 const int h = GetHeight();
758
759 for (int j = 0; j < h; j++)
760 for (int i = 0; i < w; i++)
069d0f27
VZ
761 {
762 if ((data[0] == r1) && (data[1] == g1) && (data[2] == b1))
763 {
764 data[0] = r2;
765 data[1] = g2;
766 data[2] = b2;
767 }
768 data += 3;
769 }
be25e480
RR
770}
771
f515c25a 772wxImage wxImage::ConvertToMono( unsigned char r, unsigned char g, unsigned char b ) const
fec19ea9
VS
773{
774 wxImage image;
775
776 wxCHECK_MSG( Ok(), image, wxT("invalid image") );
777
ff865c13 778 image.Create( M_IMGDATA->m_width, M_IMGDATA->m_height, false );
fec19ea9 779
487659e0 780 unsigned char *data = image.GetData();
fec19ea9
VS
781
782 wxCHECK_MSG( data, image, wxT("unable to create image") );
783
784 if (M_IMGDATA->m_hasMask)
785 {
786 if (M_IMGDATA->m_maskRed == r && M_IMGDATA->m_maskGreen == g &&
787 M_IMGDATA->m_maskBlue == b)
788 image.SetMaskColour( 255, 255, 255 );
789 else
790 image.SetMaskColour( 0, 0, 0 );
791 }
792
793 long size = M_IMGDATA->m_height * M_IMGDATA->m_width;
794
487659e0
VZ
795 unsigned char *srcd = M_IMGDATA->m_data;
796 unsigned char *tard = image.GetData();
fec19ea9
VS
797
798 for ( long i = 0; i < size; i++, srcd += 3, tard += 3 )
799 {
800 if (srcd[0] == r && srcd[1] == g && srcd[2] == b)
801 tard[0] = tard[1] = tard[2] = 255;
802 else
803 tard[0] = tard[1] = tard[2] = 0;
804 }
805
806 return image;
807}
808
21dc4be5
VZ
809int wxImage::GetWidth() const
810{
811 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
812
813 return M_IMGDATA->m_width;
814}
815
816int wxImage::GetHeight() const
817{
818 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
819
820 return M_IMGDATA->m_height;
821}
822
5644ac46 823long wxImage::XYToIndex(int x, int y) const
ef539066 824{
5644ac46
VZ
825 if ( Ok() &&
826 x >= 0 && y >= 0 &&
827 x < M_IMGDATA->m_width && y < M_IMGDATA->m_height )
828 {
829 return y*M_IMGDATA->m_width + x;
830 }
c7abc967 831
5644ac46
VZ
832 return -1;
833}
c7abc967 834
5644ac46
VZ
835void wxImage::SetRGB( int x, int y, unsigned char r, unsigned char g, unsigned char b )
836{
837 long pos = XYToIndex(x, y);
838 wxCHECK_RET( pos != -1, wxT("invalid image coordinates") );
c7abc967 839
5644ac46 840 pos *= 3;
c7abc967 841
ef539066
RR
842 M_IMGDATA->m_data[ pos ] = r;
843 M_IMGDATA->m_data[ pos+1 ] = g;
844 M_IMGDATA->m_data[ pos+2 ] = b;
845}
846
b737ad10
RR
847void wxImage::SetRGB( const wxRect& rect_, unsigned char r, unsigned char g, unsigned char b )
848{
849 wxCHECK_RET( Ok(), wxT("invalid image") );
850
851 wxRect rect(rect_);
852 wxRect imageRect(0, 0, GetWidth(), GetHeight());
853 if ( rect == wxRect() )
854 {
855 rect = imageRect;
856 }
857 else
858 {
e9b64c5e
WS
859 wxCHECK_RET( imageRect.Inside(rect.GetTopLeft()) &&
860 imageRect.Inside(rect.GetBottomRight()),
b737ad10
RR
861 wxT("invalid bounding rectangle") );
862 }
863
864 int x1 = rect.GetLeft(),
865 y1 = rect.GetTop(),
866 x2 = rect.GetRight() + 1,
867 y2 = rect.GetBottom() + 1;
868
e9b64c5e 869 unsigned char *data wxDUMMY_INITIALIZE(NULL);
b737ad10
RR
870 int x, y, width = GetWidth();
871 for (y = y1; y < y2; y++)
872 {
873 data = M_IMGDATA->m_data + (y*width + x1)*3;
874 for (x = x1; x < x2; x++)
875 {
876 *data++ = r;
877 *data++ = g;
878 *data++ = b;
879 }
880 }
881}
882
f6bcfd97 883unsigned char wxImage::GetRed( int x, int y ) const
ef539066 884{
5644ac46
VZ
885 long pos = XYToIndex(x, y);
886 wxCHECK_MSG( pos != -1, 0, wxT("invalid image coordinates") );
c7abc967 887
5644ac46 888 pos *= 3;
c7abc967 889
ef539066
RR
890 return M_IMGDATA->m_data[pos];
891}
892
f6bcfd97 893unsigned char wxImage::GetGreen( int x, int y ) const
ef539066 894{
5644ac46
VZ
895 long pos = XYToIndex(x, y);
896 wxCHECK_MSG( pos != -1, 0, wxT("invalid image coordinates") );
c7abc967 897
5644ac46 898 pos *= 3;
c7abc967 899
ef539066
RR
900 return M_IMGDATA->m_data[pos+1];
901}
902
f6bcfd97 903unsigned char wxImage::GetBlue( int x, int y ) const
ef539066 904{
5644ac46
VZ
905 long pos = XYToIndex(x, y);
906 wxCHECK_MSG( pos != -1, 0, wxT("invalid image coordinates") );
c7abc967 907
5644ac46 908 pos *= 3;
c7abc967 909
ef539066
RR
910 return M_IMGDATA->m_data[pos+2];
911}
4698648f
VZ
912
913bool wxImage::Ok() const
914{
de8c48cf
VZ
915 // image of 0 width or height can't be considered ok - at least because it
916 // causes crashes in ConvertToBitmap() if we don't catch it in time
917 wxImageRefData *data = M_IMGDATA;
918 return data && data->m_ok && data->m_width && data->m_height;
01111366
RR
919}
920
487659e0 921unsigned char *wxImage::GetData() const
01111366 922{
487659e0 923 wxCHECK_MSG( Ok(), (unsigned char *)NULL, wxT("invalid image") );
c7abc967 924
fd0eed64 925 return M_IMGDATA->m_data;
01111366
RR
926}
927
4013de12 928void wxImage::SetData( unsigned char *data, bool static_data )
01111366 929{
223d09f6 930 wxCHECK_RET( Ok(), wxT("invalid image") );
58a8ab88 931
ed58dbea
RR
932 wxImageRefData *newRefData = new wxImageRefData();
933
934 newRefData->m_width = M_IMGDATA->m_width;
935 newRefData->m_height = M_IMGDATA->m_height;
936 newRefData->m_data = data;
70cd62e9 937 newRefData->m_ok = true;
ed58dbea
RR
938 newRefData->m_maskRed = M_IMGDATA->m_maskRed;
939 newRefData->m_maskGreen = M_IMGDATA->m_maskGreen;
940 newRefData->m_maskBlue = M_IMGDATA->m_maskBlue;
941 newRefData->m_hasMask = M_IMGDATA->m_hasMask;
4013de12 942 newRefData->m_static = static_data;
995612e2 943
ed58dbea 944 UnRef();
995612e2 945
ed58dbea 946 m_refData = newRefData;
01111366
RR
947}
948
4013de12 949void wxImage::SetData( unsigned char *data, int new_width, int new_height, bool static_data )
f6bcfd97
BP
950{
951 wxImageRefData *newRefData = new wxImageRefData();
952
953 if (m_refData)
954 {
955 newRefData->m_width = new_width;
956 newRefData->m_height = new_height;
957 newRefData->m_data = data;
70cd62e9 958 newRefData->m_ok = true;
f6bcfd97
BP
959 newRefData->m_maskRed = M_IMGDATA->m_maskRed;
960 newRefData->m_maskGreen = M_IMGDATA->m_maskGreen;
961 newRefData->m_maskBlue = M_IMGDATA->m_maskBlue;
962 newRefData->m_hasMask = M_IMGDATA->m_hasMask;
963 }
964 else
965 {
966 newRefData->m_width = new_width;
967 newRefData->m_height = new_height;
968 newRefData->m_data = data;
70cd62e9 969 newRefData->m_ok = true;
f6bcfd97 970 }
4013de12 971 newRefData->m_static = static_data;
f6bcfd97
BP
972
973 UnRef();
974
975 m_refData = newRefData;
976}
977
487659e0
VZ
978// ----------------------------------------------------------------------------
979// alpha channel support
980// ----------------------------------------------------------------------------
981
982void wxImage::SetAlpha(int x, int y, unsigned char alpha)
983{
5644ac46 984 wxCHECK_RET( HasAlpha(), wxT("no alpha channel") );
487659e0 985
5644ac46
VZ
986 long pos = XYToIndex(x, y);
987 wxCHECK_RET( pos != -1, wxT("invalid image coordinates") );
487659e0 988
5644ac46 989 M_IMGDATA->m_alpha[pos] = alpha;
487659e0
VZ
990}
991
d30ee785 992unsigned char wxImage::GetAlpha(int x, int y) const
487659e0 993{
5644ac46 994 wxCHECK_MSG( HasAlpha(), 0, wxT("no alpha channel") );
487659e0 995
5644ac46
VZ
996 long pos = XYToIndex(x, y);
997 wxCHECK_MSG( pos != -1, 0, wxT("invalid image coordinates") );
487659e0 998
5644ac46 999 return M_IMGDATA->m_alpha[pos];
487659e0
VZ
1000}
1001
5644ac46
VZ
1002bool
1003wxImage::ConvertColourToAlpha(unsigned char r, unsigned char g, unsigned char b)
6408deed 1004{
5644ac46 1005 SetAlpha(NULL);
b713f891 1006
5644ac46
VZ
1007 const int w = M_IMGDATA->m_width;
1008 const int h = M_IMGDATA->m_height;
b713f891 1009
6408deed
RR
1010 unsigned char *alpha = GetAlpha();
1011 unsigned char *data = GetData();
b713f891 1012
5644ac46
VZ
1013 for ( int y = 0; y < h; y++ )
1014 {
1015 for ( int x = 0; x < w; x++ )
1016 {
1017 *alpha++ = *data;
1018 *data++ = r;
1019 *data++ = g;
1020 *data++ = b;
1021 }
1022 }
6408deed
RR
1023
1024 return true;
1025}
1026
4013de12 1027void wxImage::SetAlpha( unsigned char *alpha, bool static_data )
487659e0
VZ
1028{
1029 wxCHECK_RET( Ok(), wxT("invalid image") );
1030
1031 if ( !alpha )
1032 {
edf8e8e0 1033 alpha = (unsigned char *)malloc(M_IMGDATA->m_width*M_IMGDATA->m_height);
487659e0
VZ
1034 }
1035
5402d21d 1036 free(M_IMGDATA->m_alpha);
487659e0 1037 M_IMGDATA->m_alpha = alpha;
d2502f14 1038 M_IMGDATA->m_staticAlpha = static_data;
487659e0
VZ
1039}
1040
1041unsigned char *wxImage::GetAlpha() const
1042{
1043 wxCHECK_MSG( Ok(), (unsigned char *)NULL, wxT("invalid image") );
1044
1045 return M_IMGDATA->m_alpha;
1046}
1047
828f0936
VZ
1048void wxImage::InitAlpha()
1049{
1050 wxCHECK_RET( !HasAlpha(), wxT("image already has an alpha channel") );
1051
1052 // initialize memory for alpha channel
1053 SetAlpha();
1054
1055 unsigned char *alpha = M_IMGDATA->m_alpha;
1056 const size_t lenAlpha = M_IMGDATA->m_width * M_IMGDATA->m_height;
1057
828f0936
VZ
1058 if ( HasMask() )
1059 {
1060 // use the mask to initialize the alpha channel.
1061 const unsigned char * const alphaEnd = alpha + lenAlpha;
1062
1063 const unsigned char mr = M_IMGDATA->m_maskRed;
1064 const unsigned char mg = M_IMGDATA->m_maskGreen;
1065 const unsigned char mb = M_IMGDATA->m_maskBlue;
1066 for ( unsigned char *src = M_IMGDATA->m_data;
1067 alpha < alphaEnd;
1068 src += 3, alpha++ )
1069 {
1070 *alpha = (src[0] == mr && src[1] == mg && src[2] == mb)
21dc4be5
VZ
1071 ? wxIMAGE_ALPHA_TRANSPARENT
1072 : wxIMAGE_ALPHA_OPAQUE;
828f0936
VZ
1073 }
1074
1075 M_IMGDATA->m_hasMask = false;
1076 }
1077 else // no mask
1078 {
1079 // make the image fully opaque
21dc4be5 1080 memset(alpha, wxIMAGE_ALPHA_OPAQUE, lenAlpha);
828f0936
VZ
1081 }
1082}
1083
487659e0
VZ
1084// ----------------------------------------------------------------------------
1085// mask support
1086// ----------------------------------------------------------------------------
1087
01111366
RR
1088void wxImage::SetMaskColour( unsigned char r, unsigned char g, unsigned char b )
1089{
223d09f6 1090 wxCHECK_RET( Ok(), wxT("invalid image") );
c7abc967 1091
fd0eed64
RR
1092 M_IMGDATA->m_maskRed = r;
1093 M_IMGDATA->m_maskGreen = g;
1094 M_IMGDATA->m_maskBlue = b;
70cd62e9 1095 M_IMGDATA->m_hasMask = true;
01111366
RR
1096}
1097
b737ad10
RR
1098bool wxImage::GetOrFindMaskColour( unsigned char *r, unsigned char *g, unsigned char *b ) const
1099{
1100 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
1101
1102 if (M_IMGDATA->m_hasMask)
1103 {
1104 if (r) *r = M_IMGDATA->m_maskRed;
1105 if (g) *g = M_IMGDATA->m_maskGreen;
1106 if (b) *b = M_IMGDATA->m_maskBlue;
1107 return true;
1108 }
1109 else
1110 {
1111 FindFirstUnusedColour(r, g, b);
1112 return false;
1113 }
1114}
1115
01111366
RR
1116unsigned char wxImage::GetMaskRed() const
1117{
223d09f6 1118 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
c7abc967 1119
fd0eed64 1120 return M_IMGDATA->m_maskRed;
01111366
RR
1121}
1122
1123unsigned char wxImage::GetMaskGreen() const
1124{
223d09f6 1125 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
c7abc967 1126
fd0eed64 1127 return M_IMGDATA->m_maskGreen;
01111366
RR
1128}
1129
1130unsigned char wxImage::GetMaskBlue() const
1131{
223d09f6 1132 wxCHECK_MSG( Ok(), 0, wxT("invalid image") );
c7abc967 1133
fd0eed64 1134 return M_IMGDATA->m_maskBlue;
01111366 1135}
4698648f 1136
01111366
RR
1137void wxImage::SetMask( bool mask )
1138{
223d09f6 1139 wxCHECK_RET( Ok(), wxT("invalid image") );
c7abc967 1140
fd0eed64 1141 M_IMGDATA->m_hasMask = mask;
01111366
RR
1142}
1143
1144bool wxImage::HasMask() const
1145{
70cd62e9 1146 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
c7abc967 1147
fd0eed64 1148 return M_IMGDATA->m_hasMask;
01111366
RR
1149}
1150
21dc4be5 1151bool wxImage::IsTransparent(int x, int y, unsigned char threshold) const
4698648f 1152{
21dc4be5
VZ
1153 long pos = XYToIndex(x, y);
1154 wxCHECK_MSG( pos != -1, false, wxT("invalid image coordinates") );
c7abc967 1155
21dc4be5
VZ
1156 // check mask
1157 if ( M_IMGDATA->m_hasMask )
1158 {
1159 const unsigned char *p = M_IMGDATA->m_data + 3*pos;
1160 if ( p[0] == M_IMGDATA->m_maskRed &&
1161 p[1] == M_IMGDATA->m_maskGreen &&
1162 p[2] == M_IMGDATA->m_maskBlue )
1163 {
1164 return true;
1165 }
1166 }
01111366 1167
21dc4be5
VZ
1168 // then check alpha
1169 if ( M_IMGDATA->m_alpha )
1170 {
1171 if ( M_IMGDATA->m_alpha[pos] < threshold )
1172 {
1173 // transparent enough
1174 return true;
1175 }
1176 }
c7abc967 1177
21dc4be5
VZ
1178 // not transparent
1179 return false;
01111366
RR
1180}
1181
487659e0 1182bool wxImage::SetMaskFromImage(const wxImage& mask,
1f5b2017 1183 unsigned char mr, unsigned char mg, unsigned char mb)
52b64b0a 1184{
52b64b0a
RR
1185 // check that the images are the same size
1186 if ( (M_IMGDATA->m_height != mask.GetHeight() ) || (M_IMGDATA->m_width != mask.GetWidth () ) )
1187 {
bc88f66f 1188 wxLogError( _("Image and mask have different sizes.") );
70cd62e9 1189 return false;
52b64b0a 1190 }
487659e0 1191
52b64b0a
RR
1192 // find unused colour
1193 unsigned char r,g,b ;
1f5b2017 1194 if (!FindFirstUnusedColour(&r, &g, &b))
52b64b0a 1195 {
bc88f66f 1196 wxLogError( _("No unused colour in image being masked.") );
70cd62e9 1197 return false ;
52b64b0a 1198 }
487659e0
VZ
1199
1200 unsigned char *imgdata = GetData();
1201 unsigned char *maskdata = mask.GetData();
52b64b0a
RR
1202
1203 const int w = GetWidth();
1204 const int h = GetHeight();
1205
1206 for (int j = 0; j < h; j++)
1f5b2017 1207 {
52b64b0a
RR
1208 for (int i = 0; i < w; i++)
1209 {
1f5b2017 1210 if ((maskdata[0] == mr) && (maskdata[1] == mg) && (maskdata[2] == mb))
52b64b0a
RR
1211 {
1212 imgdata[0] = r;
1213 imgdata[1] = g;
1214 imgdata[2] = b;
1215 }
1216 imgdata += 3;
1217 maskdata += 3;
1218 }
1f5b2017 1219 }
52b64b0a 1220
1f5b2017 1221 SetMaskColour(r, g, b);
70cd62e9 1222 SetMask(true);
487659e0 1223
70cd62e9 1224 return true;
52b64b0a 1225}
7beb59f3 1226
8f2b21e4 1227bool wxImage::ConvertAlphaToMask(unsigned char threshold)
ff5ad794
VS
1228{
1229 if (!HasAlpha())
1230 return true;
1231
1232 unsigned char mr, mg, mb;
1233 if (!FindFirstUnusedColour(&mr, &mg, &mb))
1234 {
1235 wxLogError( _("No unused colour in image being masked.") );
1236 return false;
1237 }
94406a49 1238
ff5ad794
VS
1239 SetMask(true);
1240 SetMaskColour(mr, mg, mb);
94406a49 1241
ff5ad794
VS
1242 unsigned char *imgdata = GetData();
1243 unsigned char *alphadata = GetAlpha();
1244
8f2b21e4
VS
1245 int w = GetWidth();
1246 int h = GetHeight();
ff5ad794 1247
8f2b21e4 1248 for (int y = 0; y < h; y++)
ff5ad794 1249 {
8f2b21e4 1250 for (int x = 0; x < w; x++, imgdata += 3, alphadata++)
ff5ad794 1251 {
e95f0d79 1252 if (*alphadata < threshold)
ff5ad794
VS
1253 {
1254 imgdata[0] = mr;
1255 imgdata[1] = mg;
1256 imgdata[2] = mb;
1257 }
1258 }
1259 }
1260
1261 free(M_IMGDATA->m_alpha);
1262 M_IMGDATA->m_alpha = NULL;
94406a49
DS
1263
1264 return true;
ff5ad794 1265}
52b64b0a 1266
21dc4be5 1267// ----------------------------------------------------------------------------
5e5437e0 1268// Palette functions
21dc4be5
VZ
1269// ----------------------------------------------------------------------------
1270
1271#if wxUSE_PALETTE
5e5437e0
JS
1272
1273bool wxImage::HasPalette() const
1274{
1275 if (!Ok())
70cd62e9 1276 return false;
5e5437e0
JS
1277
1278 return M_IMGDATA->m_palette.Ok();
1279}
1280
1281const wxPalette& wxImage::GetPalette() const
1282{
1283 wxCHECK_MSG( Ok(), wxNullPalette, wxT("invalid image") );
1284
1285 return M_IMGDATA->m_palette;
1286}
1287
1288void wxImage::SetPalette(const wxPalette& palette)
1289{
1290 wxCHECK_RET( Ok(), wxT("invalid image") );
1291
1292 M_IMGDATA->m_palette = palette;
1293}
1294
d275c7eb
VZ
1295#endif // wxUSE_PALETTE
1296
21dc4be5 1297// ----------------------------------------------------------------------------
5e5437e0 1298// Option functions (arbitrary name/value mapping)
21dc4be5
VZ
1299// ----------------------------------------------------------------------------
1300
5e5437e0
JS
1301void wxImage::SetOption(const wxString& name, const wxString& value)
1302{
1303 wxCHECK_RET( Ok(), wxT("invalid image") );
1304
70cd62e9 1305 int idx = M_IMGDATA->m_optionNames.Index(name, false);
5e5437e0
JS
1306 if (idx == wxNOT_FOUND)
1307 {
1308 M_IMGDATA->m_optionNames.Add(name);
1309 M_IMGDATA->m_optionValues.Add(value);
1310 }
1311 else
1312 {
1313 M_IMGDATA->m_optionNames[idx] = name;
1314 M_IMGDATA->m_optionValues[idx] = value;
1315 }
1316}
1317
1318void wxImage::SetOption(const wxString& name, int value)
1319{
1320 wxString valStr;
1321 valStr.Printf(wxT("%d"), value);
1322 SetOption(name, valStr);
1323}
1324
1325wxString wxImage::GetOption(const wxString& name) const
1326{
1327 wxCHECK_MSG( Ok(), wxEmptyString, wxT("invalid image") );
1328
70cd62e9 1329 int idx = M_IMGDATA->m_optionNames.Index(name, false);
5e5437e0
JS
1330 if (idx == wxNOT_FOUND)
1331 return wxEmptyString;
1332 else
1333 return M_IMGDATA->m_optionValues[idx];
1334}
1335
1336int wxImage::GetOptionInt(const wxString& name) const
1337{
5e5437e0
JS
1338 return wxAtoi(GetOption(name));
1339}
1340
1341bool wxImage::HasOption(const wxString& name) const
1342{
70cd62e9 1343 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
5e5437e0 1344
70cd62e9 1345 return (M_IMGDATA->m_optionNames.Index(name, false) != wxNOT_FOUND);
5e5437e0
JS
1346}
1347
21dc4be5
VZ
1348// ----------------------------------------------------------------------------
1349// image I/O
1350// ----------------------------------------------------------------------------
1351
60d43ad8 1352bool wxImage::LoadFile( const wxString& filename, long type, int index )
01111366 1353{
e02afc7a 1354#if wxUSE_STREAMS
d80207c3 1355 if (wxFileExists(filename))
6c28fd33 1356 {
d80207c3
KB
1357 wxFileInputStream stream(filename);
1358 wxBufferedInputStream bstream( stream );
60d43ad8 1359 return LoadFile(bstream, type, index);
6c28fd33 1360 }
d80207c3 1361 else
6c28fd33 1362 {
d80207c3
KB
1363 wxLogError( _("Can't load image from file '%s': file does not exist."), filename.c_str() );
1364
70cd62e9 1365 return false;
6c28fd33 1366 }
9e9ee68e 1367#else // !wxUSE_STREAMS
70cd62e9 1368 return false;
9e9ee68e
VS
1369#endif // wxUSE_STREAMS
1370}
1371
60d43ad8 1372bool wxImage::LoadFile( const wxString& filename, const wxString& mimetype, int index )
9e9ee68e
VS
1373{
1374#if wxUSE_STREAMS
d80207c3 1375 if (wxFileExists(filename))
6c28fd33 1376 {
d80207c3
KB
1377 wxFileInputStream stream(filename);
1378 wxBufferedInputStream bstream( stream );
60d43ad8 1379 return LoadFile(bstream, mimetype, index);
6c28fd33 1380 }
d80207c3 1381 else
6c28fd33 1382 {
d80207c3
KB
1383 wxLogError( _("Can't load image from file '%s': file does not exist."), filename.c_str() );
1384
70cd62e9 1385 return false;
6c28fd33 1386 }
e02afc7a 1387#else // !wxUSE_STREAMS
70cd62e9 1388 return false;
e02afc7a 1389#endif // wxUSE_STREAMS
1ccbb61a
VZ
1390}
1391
45647dcf
VS
1392
1393
1394bool wxImage::SaveFile( const wxString& filename ) const
1395{
1396 wxString ext = filename.AfterLast('.').Lower();
487659e0 1397
45647dcf
VS
1398 wxImageHandler * pHandler = FindHandler(ext, -1);
1399 if (pHandler)
1400 {
1401 SaveFile(filename, pHandler->GetType());
70cd62e9 1402 return true;
45647dcf
VS
1403 }
1404
1405 wxLogError(_("Can't save image to file '%s': unknown extension."), filename.c_str());
1406
70cd62e9 1407 return false;
45647dcf
VS
1408}
1409
e0a76d8d 1410bool wxImage::SaveFile( const wxString& filename, int type ) const
1ccbb61a 1411{
e02afc7a 1412#if wxUSE_STREAMS
2a736739
VZ
1413 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
1414
36aac195 1415 ((wxImage*)this)->SetOption(wxIMAGE_OPTION_FILENAME, filename);
fd94e8aa 1416
1ccbb61a 1417 wxFileOutputStream stream(filename);
9e9ee68e 1418
2b5f62a0 1419 if ( stream.IsOk() )
1b055864 1420 {
069d0f27 1421 wxBufferedOutputStream bstream( stream );
1b055864
RR
1422 return SaveFile(bstream, type);
1423 }
e02afc7a 1424#endif // wxUSE_STREAMS
3ca6a5f0 1425
70cd62e9 1426 return false;
3d05544e 1427}
01111366 1428
e0a76d8d 1429bool wxImage::SaveFile( const wxString& filename, const wxString& mimetype ) const
9e9ee68e
VS
1430{
1431#if wxUSE_STREAMS
2a736739
VZ
1432 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
1433
36aac195 1434 ((wxImage*)this)->SetOption(wxIMAGE_OPTION_FILENAME, filename);
fd94e8aa 1435
9e9ee68e 1436 wxFileOutputStream stream(filename);
c7abc967 1437
2b5f62a0 1438 if ( stream.IsOk() )
1b055864 1439 {
069d0f27 1440 wxBufferedOutputStream bstream( stream );
1b055864
RR
1441 return SaveFile(bstream, mimetype);
1442 }
9e9ee68e 1443#endif // wxUSE_STREAMS
3ca6a5f0 1444
70cd62e9 1445 return false;
9e9ee68e
VS
1446}
1447
87202f78
SB
1448bool wxImage::CanRead( const wxString &name )
1449{
1450#if wxUSE_STREAMS
1451 wxFileInputStream stream(name);
1452 return CanRead(stream);
1453#else
70cd62e9 1454 return false;
87202f78
SB
1455#endif
1456}
1457
649d13e8 1458int wxImage::GetImageCount( const wxString &name, long type )
60d43ad8
VS
1459{
1460#if wxUSE_STREAMS
1461 wxFileInputStream stream(name);
2c0a4e08 1462 if (stream.Ok())
08811762 1463 return GetImageCount(stream, type);
60d43ad8 1464#endif
2c0a4e08
VZ
1465
1466 return 0;
60d43ad8
VS
1467}
1468
e02afc7a 1469#if wxUSE_STREAMS
deb2fec0 1470
87202f78
SB
1471bool wxImage::CanRead( wxInputStream &stream )
1472{
79fa2374 1473 const wxList& list = GetHandlers();
004fd0c8 1474
222ed1d6 1475 for ( wxList::compatibility_iterator node = list.GetFirst(); node; node = node->GetNext() )
004fd0c8 1476 {
60d43ad8
VS
1477 wxImageHandler *handler=(wxImageHandler*)node->GetData();
1478 if (handler->CanRead( stream ))
70cd62e9 1479 return true;
87202f78
SB
1480 }
1481
70cd62e9 1482 return false;
60d43ad8
VS
1483}
1484
649d13e8 1485int wxImage::GetImageCount( wxInputStream &stream, long type )
60d43ad8
VS
1486{
1487 wxImageHandler *handler;
1488
1489 if ( type == wxBITMAP_TYPE_ANY )
1490 {
1491 wxList &list=GetHandlers();
1492
222ed1d6 1493 for (wxList::compatibility_iterator node = list.GetFirst(); node; node = node->GetNext())
60d43ad8
VS
1494 {
1495 handler=(wxImageHandler*)node->GetData();
1496 if ( handler->CanRead(stream) )
649d13e8 1497 return handler->GetImageCount(stream);
60d43ad8
VS
1498
1499 }
1500
1501 wxLogWarning(_("No handler found for image type."));
1502 return 0;
1503 }
1504
1505 handler = FindHandler(type);
1506
1507 if ( !handler )
1508 {
1509 wxLogWarning(_("No image handler for type %d defined."), type);
70cd62e9 1510 return false;
60d43ad8
VS
1511 }
1512
1513 if ( handler->CanRead(stream) )
1514 {
649d13e8 1515 return handler->GetImageCount(stream);
60d43ad8
VS
1516 }
1517 else
1518 {
1519 wxLogError(_("Image file is not of type %d."), type);
1520 return 0;
1521 }
87202f78
SB
1522}
1523
60d43ad8 1524bool wxImage::LoadFile( wxInputStream& stream, long type, int index )
3d05544e
JS
1525{
1526 UnRef();
c7abc967 1527
fd0eed64 1528 m_refData = new wxImageRefData;
c7abc967 1529
deb2fec0
SB
1530 wxImageHandler *handler;
1531
60d43ad8 1532 if ( type == wxBITMAP_TYPE_ANY )
deb2fec0 1533 {
995612e2 1534 wxList &list=GetHandlers();
deb2fec0 1535
222ed1d6 1536 for ( wxList::compatibility_iterator node = list.GetFirst(); node; node = node->GetNext() )
995612e2
VZ
1537 {
1538 handler=(wxImageHandler*)node->GetData();
60d43ad8 1539 if ( handler->CanRead(stream) )
70cd62e9 1540 return handler->LoadFile(this, stream, true/*verbose*/, index);
7b2471a0 1541
995612e2 1542 }
deb2fec0 1543
58c837a4 1544 wxLogWarning( _("No handler found for image type.") );
70cd62e9 1545 return false;
deb2fec0
SB
1546 }
1547
1548 handler = FindHandler(type);
c7abc967 1549
2b5f62a0 1550 if (handler == 0)
fd0eed64 1551 {
58c837a4 1552 wxLogWarning( _("No image handler for type %d defined."), type );
c7abc967 1553
70cd62e9 1554 return false;
fd0eed64 1555 }
c7abc967 1556
70cd62e9 1557 return handler->LoadFile(this, stream, true/*verbose*/, index);
01111366
RR
1558}
1559
60d43ad8 1560bool wxImage::LoadFile( wxInputStream& stream, const wxString& mimetype, int index )
9e9ee68e
VS
1561{
1562 UnRef();
1563
1564 m_refData = new wxImageRefData;
1565
1566 wxImageHandler *handler = FindHandlerMime(mimetype);
1567
2b5f62a0 1568 if (handler == 0)
9e9ee68e 1569 {
58c837a4 1570 wxLogWarning( _("No image handler for type %s defined."), mimetype.GetData() );
9e9ee68e 1571
70cd62e9 1572 return false;
9e9ee68e
VS
1573 }
1574
70cd62e9 1575 return handler->LoadFile( this, stream, true/*verbose*/, index );
9e9ee68e
VS
1576}
1577
e0a76d8d 1578bool wxImage::SaveFile( wxOutputStream& stream, int type ) const
01111366 1579{
70cd62e9 1580 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
c7abc967 1581
fd0eed64 1582 wxImageHandler *handler = FindHandler(type);
2a736739 1583 if ( !handler )
fd0eed64 1584 {
58c837a4 1585 wxLogWarning( _("No image handler for type %d defined."), type );
9e9ee68e 1586
70cd62e9 1587 return false;
9e9ee68e
VS
1588 }
1589
e0a76d8d 1590 return handler->SaveFile( (wxImage*)this, stream );
9e9ee68e
VS
1591}
1592
e0a76d8d 1593bool wxImage::SaveFile( wxOutputStream& stream, const wxString& mimetype ) const
9e9ee68e 1594{
70cd62e9 1595 wxCHECK_MSG( Ok(), false, wxT("invalid image") );
c7abc967 1596
9e9ee68e 1597 wxImageHandler *handler = FindHandlerMime(mimetype);
2a736739 1598 if ( !handler )
9e9ee68e 1599 {
58c837a4 1600 wxLogWarning( _("No image handler for type %s defined."), mimetype.GetData() );
c7abc967 1601
70cd62e9 1602 return false;
fd0eed64 1603 }
c7abc967 1604
e0a76d8d 1605 return handler->SaveFile( (wxImage*)this, stream );
01111366 1606}
e02afc7a 1607#endif // wxUSE_STREAMS
01111366 1608
21dc4be5
VZ
1609// ----------------------------------------------------------------------------
1610// image I/O handlers
1611// ----------------------------------------------------------------------------
1612
01111366
RR
1613void wxImage::AddHandler( wxImageHandler *handler )
1614{
2b5f62a0
VZ
1615 // Check for an existing handler of the type being added.
1616 if (FindHandler( handler->GetType() ) == 0)
1617 {
1618 sm_handlers.Append( handler );
1619 }
1620 else
1621 {
1622 // This is not documented behaviour, merely the simplest 'fix'
1623 // for preventing duplicate additions. If someone ever has
1624 // a good reason to add and remove duplicate handlers (and they
1625 // may) we should probably refcount the duplicates.
1626 // also an issue in InsertHandler below.
1627
1628 wxLogDebug( _T("Adding duplicate image handler for '%s'"),
1629 handler->GetName().c_str() );
1630 delete handler;
1631 }
01111366
RR
1632}
1633
1634void wxImage::InsertHandler( wxImageHandler *handler )
1635{
2b5f62a0
VZ
1636 // Check for an existing handler of the type being added.
1637 if (FindHandler( handler->GetType() ) == 0)
1638 {
1639 sm_handlers.Insert( handler );
1640 }
1641 else
1642 {
1643 // see AddHandler for additional comments.
1644 wxLogDebug( _T("Inserting duplicate image handler for '%s'"),
1645 handler->GetName().c_str() );
1646 delete handler;
1647 }
01111366
RR
1648}
1649
1650bool wxImage::RemoveHandler( const wxString& name )
1651{
fd0eed64
RR
1652 wxImageHandler *handler = FindHandler(name);
1653 if (handler)
1654 {
1655 sm_handlers.DeleteObject(handler);
222ed1d6 1656 delete handler;
70cd62e9 1657 return true;
fd0eed64
RR
1658 }
1659 else
70cd62e9 1660 return false;
01111366
RR
1661}
1662
1663wxImageHandler *wxImage::FindHandler( const wxString& name )
1664{
222ed1d6 1665 wxList::compatibility_iterator node = sm_handlers.GetFirst();
fd0eed64
RR
1666 while (node)
1667 {
b1d4dd7a 1668 wxImageHandler *handler = (wxImageHandler*)node->GetData();
ce3ed50d 1669 if (handler->GetName().Cmp(name) == 0) return handler;
c7abc967 1670
b1d4dd7a 1671 node = node->GetNext();
fd0eed64 1672 }
2b5f62a0 1673 return 0;
01111366
RR
1674}
1675
1676wxImageHandler *wxImage::FindHandler( const wxString& extension, long bitmapType )
1677{
222ed1d6 1678 wxList::compatibility_iterator node = sm_handlers.GetFirst();
fd0eed64
RR
1679 while (node)
1680 {
b1d4dd7a 1681 wxImageHandler *handler = (wxImageHandler*)node->GetData();
ce3ed50d 1682 if ( (handler->GetExtension().Cmp(extension) == 0) &&
fd0eed64 1683 (bitmapType == -1 || handler->GetType() == bitmapType) )
dbda9e86 1684 return handler;
b1d4dd7a 1685 node = node->GetNext();
fd0eed64 1686 }
2b5f62a0 1687 return 0;
01111366
RR
1688}
1689
1690wxImageHandler *wxImage::FindHandler( long bitmapType )
1691{
222ed1d6 1692 wxList::compatibility_iterator node = sm_handlers.GetFirst();
fd0eed64
RR
1693 while (node)
1694 {
b1d4dd7a 1695 wxImageHandler *handler = (wxImageHandler *)node->GetData();
fd0eed64 1696 if (handler->GetType() == bitmapType) return handler;
b1d4dd7a 1697 node = node->GetNext();
fd0eed64 1698 }
2b5f62a0 1699 return 0;
fd0eed64
RR
1700}
1701
9e9ee68e
VS
1702wxImageHandler *wxImage::FindHandlerMime( const wxString& mimetype )
1703{
222ed1d6 1704 wxList::compatibility_iterator node = sm_handlers.GetFirst();
9e9ee68e
VS
1705 while (node)
1706 {
b1d4dd7a 1707 wxImageHandler *handler = (wxImageHandler *)node->GetData();
70cd62e9 1708 if (handler->GetMimeType().IsSameAs(mimetype, false)) return handler;
b1d4dd7a 1709 node = node->GetNext();
9e9ee68e 1710 }
2b5f62a0 1711 return 0;
9e9ee68e
VS
1712}
1713
fd0eed64
RR
1714void wxImage::InitStandardHandlers()
1715{
77fac225 1716#if wxUSE_STREAMS
66e23ad2 1717 AddHandler(new wxBMPHandler);
77fac225 1718#endif // wxUSE_STREAMS
01111366
RR
1719}
1720
1721void wxImage::CleanUpHandlers()
1722{
222ed1d6 1723 wxList::compatibility_iterator node = sm_handlers.GetFirst();
fd0eed64
RR
1724 while (node)
1725 {
b1d4dd7a 1726 wxImageHandler *handler = (wxImageHandler *)node->GetData();
222ed1d6 1727 wxList::compatibility_iterator next = node->GetNext();
fd0eed64 1728 delete handler;
fd0eed64
RR
1729 node = next;
1730 }
01111366 1731
222ed1d6
MB
1732 sm_handlers.Clear();
1733}
ff865c13 1734
939fadc8
JS
1735wxString wxImage::GetImageExtWildcard()
1736{
1737 wxString fmts;
1738
1739 wxList& Handlers = wxImage::GetHandlers();
222ed1d6 1740 wxList::compatibility_iterator Node = Handlers.GetFirst();
939fadc8
JS
1741 while ( Node )
1742 {
1743 wxImageHandler* Handler = (wxImageHandler*)Node->GetData();
1744 fmts += wxT("*.") + Handler->GetExtension();
1745 Node = Node->GetNext();
1746 if ( Node ) fmts += wxT(";");
1747 }
1748
1749 return wxT("(") + fmts + wxT(")|") + fmts;
1750}
1751
978d3d36
VZ
1752wxImage::HSVValue wxImage::RGBtoHSV(const RGBValue& rgb)
1753{
978d3d36
VZ
1754 const double red = rgb.red / 255.0,
1755 green = rgb.green / 255.0,
1756 blue = rgb.blue / 255.0;
1757
c77a6796
VZ
1758 // find the min and max intensity (and remember which one was it for the
1759 // latter)
978d3d36 1760 double minimumRGB = red;
c77a6796 1761 if ( green < minimumRGB )
978d3d36 1762 minimumRGB = green;
c77a6796 1763 if ( blue < minimumRGB )
978d3d36
VZ
1764 minimumRGB = blue;
1765
c77a6796 1766 enum { RED, GREEN, BLUE } chMax = RED;
978d3d36 1767 double maximumRGB = red;
c77a6796
VZ
1768 if ( green > maximumRGB )
1769 {
1770 chMax = GREEN;
978d3d36 1771 maximumRGB = green;
c77a6796
VZ
1772 }
1773 if ( blue > maximumRGB )
1774 {
1775 chMax = BLUE;
978d3d36 1776 maximumRGB = blue;
c77a6796 1777 }
978d3d36 1778
c77a6796 1779 const double value = maximumRGB;
978d3d36 1780
c77a6796
VZ
1781 double hue, saturation;
1782 const double deltaRGB = maximumRGB - minimumRGB;
1783 if ( wxIsNullDouble(deltaRGB) )
978d3d36
VZ
1784 {
1785 // Gray has no color
1786 hue = 0.0;
1787 saturation = 0.0;
1788 }
1789 else
1790 {
c77a6796
VZ
1791 switch ( chMax )
1792 {
1793 case RED:
1794 hue = (green - blue) / deltaRGB;
1795 break;
978d3d36 1796
c77a6796
VZ
1797 case GREEN:
1798 hue = 2.0 + (blue - red) / deltaRGB;
1799 break;
978d3d36 1800
c77a6796
VZ
1801 case BLUE:
1802 hue = 4.0 + (red - green) / deltaRGB;
1803 break;
1804 }
1805
1806 hue /= 6.0;
978d3d36 1807
c77a6796
VZ
1808 if ( hue < 0.0 )
1809 hue += 1.0;
978d3d36 1810
c77a6796 1811 saturation = deltaRGB / maximumRGB;
978d3d36
VZ
1812 }
1813
1814 return HSVValue(hue, saturation, value);
1815}
1816
1817wxImage::RGBValue wxImage::HSVtoRGB(const HSVValue& hsv)
1818{
1819 double red, green, blue;
1820
c77a6796 1821 if ( wxIsNullDouble(hsv.saturation) )
978d3d36 1822 {
c77a6796
VZ
1823 // Grey
1824 red = hsv.value;
978d3d36 1825 green = hsv.value;
c77a6796 1826 blue = hsv.value;
978d3d36 1827 }
c77a6796 1828 else // not grey
978d3d36
VZ
1829 {
1830 double hue = hsv.hue * 6.0; // sector 0 to 5
1831 int i = (int)floor(hue);
1832 double f = hue - i; // fractional part of h
1833 double p = hsv.value * (1.0 - hsv.saturation);
1834
1835 switch (i)
1836 {
1837 case 0:
1838 red = hsv.value;
1839 green = hsv.value * (1.0 - hsv.saturation * (1.0 - f));
1840 blue = p;
1841 break;
1842
1843 case 1:
1844 red = hsv.value * (1.0 - hsv.saturation * f);
1845 green = hsv.value;
1846 blue = p;
1847 break;
1848
1849 case 2:
1850 red = p;
1851 green = hsv.value;
1852 blue = hsv.value * (1.0 - hsv.saturation * (1.0 - f));
1853 break;
1854
1855 case 3:
1856 red = p;
1857 green = hsv.value * (1.0 - hsv.saturation * f);
1858 blue = hsv.value;
1859 break;
1860
1861 case 4:
1862 red = hsv.value * (1.0 - hsv.saturation * (1.0 - f));
1863 green = p;
1864 blue = hsv.value;
1865 break;
1866
1867 default: // case 5:
1868 red = hsv.value;
1869 green = p;
1870 blue = hsv.value * (1.0 - hsv.saturation * f);
1871 break;
1872 }
1873 }
1874
1875 return RGBValue((unsigned char)(red * 255.0),
1876 (unsigned char)(green * 255.0),
1877 (unsigned char)(blue * 255.0));
1878}
1879
1880/*
1881 * Rotates the hue of each pixel of the image. angle is a double in the range
1882 * -1.0..1.0 where -1.0 is -360 degrees and 1.0 is 360 degrees
1883 */
1884void wxImage::RotateHue(double angle)
1885{
1886 unsigned char *srcBytePtr;
1887 unsigned char *dstBytePtr;
1888 unsigned long count;
1889 wxImage::HSVValue hsv;
1890 wxImage::RGBValue rgb;
1891
6926b9c4 1892 wxASSERT (angle >= -1.0 && angle <= 1.0);
978d3d36 1893 count = M_IMGDATA->m_width * M_IMGDATA->m_height;
c77a6796 1894 if ( count > 0 && !wxIsNullDouble(angle) )
978d3d36
VZ
1895 {
1896 srcBytePtr = M_IMGDATA->m_data;
1897 dstBytePtr = srcBytePtr;
1898 do
1899 {
1900 rgb.red = *srcBytePtr++;
1901 rgb.green = *srcBytePtr++;
1902 rgb.blue = *srcBytePtr++;
1903 hsv = RGBtoHSV(rgb);
1904
1905 hsv.hue = hsv.hue + angle;
1906 if (hsv.hue > 1.0)
1907 hsv.hue = hsv.hue - 1.0;
1908 else if (hsv.hue < 0.0)
1909 hsv.hue = hsv.hue + 1.0;
1910
1911 rgb = HSVtoRGB(hsv);
1912 *dstBytePtr++ = rgb.red;
1913 *dstBytePtr++ = rgb.green;
1914 *dstBytePtr++ = rgb.blue;
1915 } while (--count != 0);
1916 }
1917}
1918
01111366
RR
1919//-----------------------------------------------------------------------------
1920// wxImageHandler
1921//-----------------------------------------------------------------------------
1922
63d963a1 1923IMPLEMENT_ABSTRACT_CLASS(wxImageHandler,wxObject)
01111366 1924
e02afc7a 1925#if wxUSE_STREAMS
700ec454 1926bool wxImageHandler::LoadFile( wxImage *WXUNUSED(image), wxInputStream& WXUNUSED(stream), bool WXUNUSED(verbose), int WXUNUSED(index) )
01111366 1927{
70cd62e9 1928 return false;
01111366
RR
1929}
1930
deb2fec0 1931bool wxImageHandler::SaveFile( wxImage *WXUNUSED(image), wxOutputStream& WXUNUSED(stream), bool WXUNUSED(verbose) )
01111366 1932{
70cd62e9 1933 return false;
01111366 1934}
0828c087 1935
649d13e8 1936int wxImageHandler::GetImageCount( wxInputStream& WXUNUSED(stream) )
700ec454
RR
1937{
1938 return 1;
1939}
1940
0828c087
VS
1941bool wxImageHandler::CanRead( const wxString& name )
1942{
0828c087
VS
1943 if (wxFileExists(name))
1944 {
1945 wxFileInputStream stream(name);
1946 return CanRead(stream);
1947 }
1948
39d16996 1949 wxLogError( _("Can't check image format of file '%s': file does not exist."), name.c_str() );
0828c087 1950
70cd62e9 1951 return false;
39d16996
VZ
1952}
1953
1954bool wxImageHandler::CallDoCanRead(wxInputStream& stream)
1955{
30984dea 1956 wxFileOffset posOld = stream.TellI();
39d16996
VZ
1957 if ( posOld == wxInvalidOffset )
1958 {
1959 // can't test unseekable stream
70cd62e9 1960 return false;
39d16996
VZ
1961 }
1962
1963 bool ok = DoCanRead(stream);
1964
1965 // restore the old position to be able to test other formats and so on
1966 if ( stream.SeekI(posOld) == wxInvalidOffset )
1967 {
1968 wxLogDebug(_T("Failed to rewind the stream in wxImageHandler!"));
1969
1970 // reading would fail anyhow as we're not at the right position
70cd62e9 1971 return false;
0828c087 1972 }
39d16996
VZ
1973
1974 return ok;
0828c087
VS
1975}
1976
e02afc7a 1977#endif // wxUSE_STREAMS
01111366 1978
487659e0
VZ
1979// ----------------------------------------------------------------------------
1980// image histogram stuff
1981// ----------------------------------------------------------------------------
1982
1983bool
1984wxImageHistogram::FindFirstUnusedColour(unsigned char *r,
1985 unsigned char *g,
1986 unsigned char *b,
1987 unsigned char r2,
1988 unsigned char b2,
1989 unsigned char g2) const
1990{
1991 unsigned long key = MakeKey(r2, g2, b2);
1992
1993 while ( find(key) != end() )
1994 {
1995 // color already used
1996 r2++;
1997 if ( r2 >= 255 )
1998 {
1999 r2 = 0;
2000 g2++;
2001 if ( g2 >= 255 )
2002 {
2003 g2 = 0;
2004 b2++;
2005 if ( b2 >= 255 )
2006 {
bc88f66f 2007 wxLogError(_("No unused colour in image.") );
70cd62e9 2008 return false;
487659e0
VZ
2009 }
2010 }
2011 }
2012
2013 key = MakeKey(r2, g2, b2);
2014 }
2015
2016 if ( r )
2017 *r = r2;
2018 if ( g )
2019 *g = g2;
2020 if ( b )
2021 *b = b2;
2022
70cd62e9 2023 return true;
487659e0
VZ
2024}
2025
2026bool
2027wxImage::FindFirstUnusedColour(unsigned char *r,
2028 unsigned char *g,
2029 unsigned char *b,
2030 unsigned char r2,
2031 unsigned char b2,
2032 unsigned char g2) const
2033{
2034 wxImageHistogram histogram;
2035
2036 ComputeHistogram(histogram);
2037
2038 return histogram.FindFirstUnusedColour(r, g, b, r2, g2, b2);
2039}
2040
2041
c9d01afd 2042
89d00456
GRG
2043// GRG, Dic/99
2044// Counts and returns the number of different colours. Optionally stops
cc9f7d79
GRG
2045// when it exceeds 'stopafter' different colours. This is useful, for
2046// example, to see if the image can be saved as 8-bit (256 colour or
2047// less, in this case it would be invoked as CountColours(256)). Default
2048// value for stopafter is -1 (don't care).
89d00456 2049//
e0a76d8d 2050unsigned long wxImage::CountColours( unsigned long stopafter ) const
89d00456
GRG
2051{
2052 wxHashTable h;
ad30de59 2053 wxObject dummy;
33ac7e6f 2054 unsigned char r, g, b;
eeca3a46 2055 unsigned char *p;
89d00456
GRG
2056 unsigned long size, nentries, key;
2057
2058 p = GetData();
2059 size = GetWidth() * GetHeight();
2060 nentries = 0;
2061
cc9f7d79 2062 for (unsigned long j = 0; (j < size) && (nentries <= stopafter) ; j++)
89d00456
GRG
2063 {
2064 r = *(p++);
2065 g = *(p++);
2066 b = *(p++);
487659e0 2067 key = wxImageHistogram::MakeKey(r, g, b);
89d00456 2068
ad30de59 2069 if (h.Get(key) == NULL)
89d00456 2070 {
ad30de59 2071 h.Put(key, &dummy);
89d00456
GRG
2072 nentries++;
2073 }
2074 }
2075
89d00456
GRG
2076 return nentries;
2077}
2078
2079
e0a76d8d 2080unsigned long wxImage::ComputeHistogram( wxImageHistogram &h ) const
c9d01afd 2081{
487659e0
VZ
2082 unsigned char *p = GetData();
2083 unsigned long nentries = 0;
952ae1e8
VS
2084
2085 h.clear();
c9d01afd 2086
487659e0 2087 const unsigned long size = GetWidth() * GetHeight();
c9d01afd 2088
487659e0
VZ
2089 unsigned char r, g, b;
2090 for ( unsigned long n = 0; n < size; n++ )
c9d01afd 2091 {
487659e0
VZ
2092 r = *p++;
2093 g = *p++;
2094 b = *p++;
2095
2096 wxImageHistogramEntry& entry = h[wxImageHistogram::MakeKey(r, g, b)];
c9d01afd 2097
952ae1e8
VS
2098 if ( entry.value++ == 0 )
2099 entry.index = nentries++;
c9d01afd
GRG
2100 }
2101
2102 return nentries;
2103}
2104
7a632f10
JS
2105/*
2106 * Rotation code by Carlos Moreno
2107 */
2108
b5c91ac6
GRG
2109// GRG: I've removed wxRotationPoint - we already have wxRealPoint which
2110// does exactly the same thing. And I also got rid of wxRotationPixel
2111// bacause of potential problems in architectures where alignment
2112// is an issue, so I had to rewrite parts of the code.
7a632f10 2113
7a632f10
JS
2114static const double gs_Epsilon = 1e-10;
2115
2116static inline int wxCint (double x)
2117{
2118 return (x > 0) ? (int) (x + 0.5) : (int) (x - 0.5);
2119}
2120
2121
2122// Auxiliary function to rotate a point (x,y) with respect to point p0
2123// make it inline and use a straight return to facilitate optimization
2124// also, the function receives the sine and cosine of the angle to avoid
2125// repeating the time-consuming calls to these functions -- sin/cos can
2126// be computed and stored in the calling function.
2127
b5c91ac6 2128inline wxRealPoint rotated_point (const wxRealPoint & p, double cos_angle, double sin_angle, const wxRealPoint & p0)
7a632f10 2129{
b5c91ac6
GRG
2130 return wxRealPoint (p0.x + (p.x - p0.x) * cos_angle - (p.y - p0.y) * sin_angle,
2131 p0.y + (p.y - p0.y) * cos_angle + (p.x - p0.x) * sin_angle);
7a632f10
JS
2132}
2133
b5c91ac6 2134inline wxRealPoint rotated_point (double x, double y, double cos_angle, double sin_angle, const wxRealPoint & p0)
7a632f10 2135{
b5c91ac6 2136 return rotated_point (wxRealPoint(x,y), cos_angle, sin_angle, p0);
7a632f10
JS
2137}
2138
2139wxImage wxImage::Rotate(double angle, const wxPoint & centre_of_rotation, bool interpolating, wxPoint * offset_after_rotation) const
2140{
7a632f10
JS
2141 int i;
2142 angle = -angle; // screen coordinates are a mirror image of "real" coordinates
b713f891 2143
6408deed 2144 bool has_alpha = HasAlpha();
7a632f10 2145
ad30de59 2146 // Create pointer-based array to accelerate access to wxImage's data
b5c91ac6 2147 unsigned char ** data = new unsigned char * [GetHeight()];
b5c91ac6 2148 data[0] = GetData();
b5c91ac6
GRG
2149 for (i = 1; i < GetHeight(); i++)
2150 data[i] = data[i - 1] + (3 * GetWidth());
7a632f10 2151
b713f891 2152 // Same for alpha channel
6408deed
RR
2153 unsigned char ** alpha = NULL;
2154 if (has_alpha)
2155 {
2156 alpha = new unsigned char * [GetHeight()];
2157 alpha[0] = GetAlpha();
2158 for (i = 1; i < GetHeight(); i++)
2159 alpha[i] = alpha[i - 1] + GetWidth();
2160 }
2161
b5c91ac6 2162 // precompute coefficients for rotation formula
ad30de59 2163 // (sine and cosine of the angle)
7a632f10
JS
2164 const double cos_angle = cos(angle);
2165 const double sin_angle = sin(angle);
2166
ad30de59
GRG
2167 // Create new Image to store the result
2168 // First, find rectangle that covers the rotated image; to do that,
2169 // rotate the four corners
7a632f10 2170
b5c91ac6 2171 const wxRealPoint p0(centre_of_rotation.x, centre_of_rotation.y);
7a632f10 2172
b5c91ac6
GRG
2173 wxRealPoint p1 = rotated_point (0, 0, cos_angle, sin_angle, p0);
2174 wxRealPoint p2 = rotated_point (0, GetHeight(), cos_angle, sin_angle, p0);
2175 wxRealPoint p3 = rotated_point (GetWidth(), 0, cos_angle, sin_angle, p0);
2176 wxRealPoint p4 = rotated_point (GetWidth(), GetHeight(), cos_angle, sin_angle, p0);
7a632f10 2177
4e115ed2
VZ
2178 int x1a = (int) floor (wxMin (wxMin(p1.x, p2.x), wxMin(p3.x, p4.x)));
2179 int y1a = (int) floor (wxMin (wxMin(p1.y, p2.y), wxMin(p3.y, p4.y)));
2180 int x2a = (int) ceil (wxMax (wxMax(p1.x, p2.x), wxMax(p3.x, p4.x)));
2181 int y2a = (int) ceil (wxMax (wxMax(p1.y, p2.y), wxMax(p3.y, p4.y)));
7a632f10 2182
6408deed 2183 // Create rotated image
4e115ed2 2184 wxImage rotated (x2a - x1a + 1, y2a - y1a + 1, false);
6408deed
RR
2185 // With alpha channel
2186 if (has_alpha)
2187 rotated.SetAlpha();
7a632f10
JS
2188
2189 if (offset_after_rotation != NULL)
2190 {
4e115ed2 2191 *offset_after_rotation = wxPoint (x1a, y1a);
7a632f10
JS
2192 }
2193
b5c91ac6
GRG
2194 // GRG: The rotated (destination) image is always accessed
2195 // sequentially, so there is no need for a pointer-based
2196 // array here (and in fact it would be slower).
2197 //
2198 unsigned char * dst = rotated.GetData();
b713f891 2199
6408deed
RR
2200 unsigned char * alpha_dst = NULL;
2201 if (has_alpha)
2202 alpha_dst = rotated.GetAlpha();
7a632f10 2203
ad30de59
GRG
2204 // GRG: if the original image has a mask, use its RGB values
2205 // as the blank pixel, else, fall back to default (black).
2206 //
b5c91ac6
GRG
2207 unsigned char blank_r = 0;
2208 unsigned char blank_g = 0;
2209 unsigned char blank_b = 0;
ad30de59
GRG
2210
2211 if (HasMask())
2212 {
b5c91ac6
GRG
2213 blank_r = GetMaskRed();
2214 blank_g = GetMaskGreen();
2215 blank_b = GetMaskBlue();
2216 rotated.SetMaskColour( blank_r, blank_g, blank_b );
ad30de59
GRG
2217 }
2218
2219 // Now, for each point of the rotated image, find where it came from, by
2220 // performing an inverse rotation (a rotation of -angle) and getting the
2221 // pixel at those coordinates
2222
b5c91ac6
GRG
2223 // GRG: I've taken the (interpolating) test out of the loops, so that
2224 // it is done only once, instead of repeating it for each pixel.
7a632f10
JS
2225
2226 int x;
b5c91ac6 2227 if (interpolating)
7a632f10
JS
2228 {
2229 for (int y = 0; y < rotated.GetHeight(); y++)
2230 {
b5c91ac6 2231 for (x = 0; x < rotated.GetWidth(); x++)
7a632f10 2232 {
4e115ed2 2233 wxRealPoint src = rotated_point (x + x1a, y + y1a, cos_angle, -sin_angle, p0);
b5c91ac6 2234
f2506310
JS
2235 if (-0.25 < src.x && src.x < GetWidth() - 0.75 &&
2236 -0.25 < src.y && src.y < GetHeight() - 0.75)
7a632f10 2237 {
ad30de59
GRG
2238 // interpolate using the 4 enclosing grid-points. Those
2239 // points can be obtained using floor and ceiling of the
2240 // exact coordinates of the point
f2506310
JS
2241 int x1, y1, x2, y2;
2242
2243 if (0 < src.x && src.x < GetWidth() - 1)
2244 {
2245 x1 = wxCint(floor(src.x));
2246 x2 = wxCint(ceil(src.x));
2247 }
2248 else // else means that x is near one of the borders (0 or width-1)
2249 {
2250 x1 = x2 = wxCint (src.x);
2251 }
2252
2253 if (0 < src.y && src.y < GetHeight() - 1)
2254 {
2255 y1 = wxCint(floor(src.y));
2256 y2 = wxCint(ceil(src.y));
2257 }
2258 else
2259 {
2260 y1 = y2 = wxCint (src.y);
2261 }
7a632f10 2262
ad30de59
GRG
2263 // get four points and the distances (square of the distance,
2264 // for efficiency reasons) for the interpolation formula
b5c91ac6
GRG
2265
2266 // GRG: Do not calculate the points until they are
2267 // really needed -- this way we can calculate
2268 // just one, instead of four, if d1, d2, d3
2269 // or d4 are < gs_Epsilon
7a632f10
JS
2270
2271 const double d1 = (src.x - x1) * (src.x - x1) + (src.y - y1) * (src.y - y1);
2272 const double d2 = (src.x - x2) * (src.x - x2) + (src.y - y1) * (src.y - y1);
2273 const double d3 = (src.x - x2) * (src.x - x2) + (src.y - y2) * (src.y - y2);
2274 const double d4 = (src.x - x1) * (src.x - x1) + (src.y - y2) * (src.y - y2);
2275
ad30de59
GRG
2276 // Now interpolate as a weighted average of the four surrounding
2277 // points, where the weights are the distances to each of those points
7a632f10 2278
ad30de59
GRG
2279 // If the point is exactly at one point of the grid of the source
2280 // image, then don't interpolate -- just assign the pixel
7a632f10 2281
06b466c7 2282 if (d1 < gs_Epsilon) // d1,d2,d3,d4 are positive -- no need for abs()
7a632f10 2283 {
b5c91ac6
GRG
2284 unsigned char *p = data[y1] + (3 * x1);
2285 *(dst++) = *(p++);
2286 *(dst++) = *(p++);
6408deed 2287 *(dst++) = *p;
b713f891 2288
6408deed 2289 if (has_alpha)
4e115ed2 2290 *(alpha_dst++) = *(alpha[y1] + x1);
7a632f10
JS
2291 }
2292 else if (d2 < gs_Epsilon)
2293 {
b5c91ac6
GRG
2294 unsigned char *p = data[y1] + (3 * x2);
2295 *(dst++) = *(p++);
2296 *(dst++) = *(p++);
6408deed 2297 *(dst++) = *p;
b713f891 2298
6408deed 2299 if (has_alpha)
4e115ed2 2300 *(alpha_dst++) = *(alpha[y1] + x2);
7a632f10
JS
2301 }
2302 else if (d3 < gs_Epsilon)
2303 {
b5c91ac6
GRG
2304 unsigned char *p = data[y2] + (3 * x2);
2305 *(dst++) = *(p++);
2306 *(dst++) = *(p++);
6408deed 2307 *(dst++) = *p;
b713f891 2308
6408deed 2309 if (has_alpha)
4e115ed2 2310 *(alpha_dst++) = *(alpha[y2] + x2);
7a632f10
JS
2311 }
2312 else if (d4 < gs_Epsilon)
2313 {
b5c91ac6
GRG
2314 unsigned char *p = data[y2] + (3 * x1);
2315 *(dst++) = *(p++);
2316 *(dst++) = *(p++);
6408deed 2317 *(dst++) = *p;
b713f891 2318
6408deed 2319 if (has_alpha)
4e115ed2 2320 *(alpha_dst++) = *(alpha[y2] + x1);
7a632f10
JS
2321 }
2322 else
2323 {
06b466c7 2324 // weights for the weighted average are proportional to the inverse of the distance
b5c91ac6
GRG
2325 unsigned char *v1 = data[y1] + (3 * x1);
2326 unsigned char *v2 = data[y1] + (3 * x2);
2327 unsigned char *v3 = data[y2] + (3 * x2);
2328 unsigned char *v4 = data[y2] + (3 * x1);
2329
06b466c7
VZ
2330 const double w1 = 1/d1, w2 = 1/d2, w3 = 1/d3, w4 = 1/d4;
2331
b5c91ac6
GRG
2332 // GRG: Unrolled.
2333
2334 *(dst++) = (unsigned char)
2335 ( (w1 * *(v1++) + w2 * *(v2++) +
2336 w3 * *(v3++) + w4 * *(v4++)) /
2337 (w1 + w2 + w3 + w4) );
2338 *(dst++) = (unsigned char)
2339 ( (w1 * *(v1++) + w2 * *(v2++) +
2340 w3 * *(v3++) + w4 * *(v4++)) /
2341 (w1 + w2 + w3 + w4) );
2342 *(dst++) = (unsigned char)
999836aa
VZ
2343 ( (w1 * *v1 + w2 * *v2 +
2344 w3 * *v3 + w4 * *v4) /
b5c91ac6 2345 (w1 + w2 + w3 + w4) );
b713f891 2346
6408deed
RR
2347 if (has_alpha)
2348 {
4e115ed2
VZ
2349 v1 = alpha[y1] + (x1);
2350 v2 = alpha[y1] + (x2);
2351 v3 = alpha[y2] + (x2);
2352 v4 = alpha[y2] + (x1);
6408deed
RR
2353
2354 *(alpha_dst++) = (unsigned char)
2355 ( (w1 * *v1 + w2 * *v2 +
2356 w3 * *v3 + w4 * *v4) /
2357 (w1 + w2 + w3 + w4) );
2358 }
7a632f10
JS
2359 }
2360 }
2361 else
2362 {
b5c91ac6
GRG
2363 *(dst++) = blank_r;
2364 *(dst++) = blank_g;
2365 *(dst++) = blank_b;
b713f891 2366
6408deed
RR
2367 if (has_alpha)
2368 *(alpha_dst++) = 0;
7a632f10
JS
2369 }
2370 }
b5c91ac6
GRG
2371 }
2372 }
2373 else // not interpolating
2374 {
2375 for (int y = 0; y < rotated.GetHeight(); y++)
2376 {
2377 for (x = 0; x < rotated.GetWidth(); x++)
7a632f10 2378 {
4e115ed2 2379 wxRealPoint src = rotated_point (x + x1a, y + y1a, cos_angle, -sin_angle, p0);
b5c91ac6
GRG
2380
2381 const int xs = wxCint (src.x); // wxCint rounds to the
457e6c54 2382 const int ys = wxCint (src.y); // closest integer
7a632f10 2383
b5c91ac6
GRG
2384 if (0 <= xs && xs < GetWidth() &&
2385 0 <= ys && ys < GetHeight())
7a632f10 2386 {
b5c91ac6
GRG
2387 unsigned char *p = data[ys] + (3 * xs);
2388 *(dst++) = *(p++);
2389 *(dst++) = *(p++);
999836aa 2390 *(dst++) = *p;
b713f891 2391
6408deed 2392 if (has_alpha)
4e115ed2 2393 *(alpha_dst++) = *(alpha[ys] + (xs));
7a632f10
JS
2394 }
2395 else
2396 {
b5c91ac6
GRG
2397 *(dst++) = blank_r;
2398 *(dst++) = blank_g;
2399 *(dst++) = blank_b;
b713f891 2400
6408deed
RR
2401 if (has_alpha)
2402 *(alpha_dst++) = 255;
7a632f10
JS
2403 }
2404 }
2405 }
2406 }
2407
4aff28fc 2408 delete [] data;
b713f891 2409
6408deed
RR
2410 if (has_alpha)
2411 delete [] alpha;
4aff28fc 2412
7a632f10
JS
2413 return rotated;
2414}
c9d01afd 2415
ef8f37e0
VS
2416
2417
2418
2419
2420// A module to allow wxImage initialization/cleanup
2421// without calling these functions from app.cpp or from
2422// the user's application.
2423
2424class wxImageModule: public wxModule
2425{
2426DECLARE_DYNAMIC_CLASS(wxImageModule)
2427public:
2428 wxImageModule() {}
70cd62e9 2429 bool OnInit() { wxImage::InitStandardHandlers(); return true; };
ef8f37e0
VS
2430 void OnExit() { wxImage::CleanUpHandlers(); };
2431};
2432
2433IMPLEMENT_DYNAMIC_CLASS(wxImageModule, wxModule)
2434
2435
c96ea657 2436#endif // wxUSE_IMAGE