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1 | ///////////////////////////////////////////////////////////////////////////// | |
2 | // Name: wx/image.h | |
3 | // Purpose: wxImage class | |
4 | // Author: Robert Roebling | |
5 | // RCS-ID: $Id$ | |
6 | // Copyright: (c) Robert Roebling | |
7 | // Licence: wxWindows licence | |
8 | ///////////////////////////////////////////////////////////////////////////// | |
9 | ||
10 | #ifndef _WX_IMAGE_H_ | |
11 | #define _WX_IMAGE_H_ | |
12 | ||
13 | #include "wx/defs.h" | |
14 | ||
15 | #if wxUSE_IMAGE | |
16 | ||
17 | #include "wx/object.h" | |
18 | #include "wx/string.h" | |
19 | #include "wx/gdicmn.h" | |
20 | #include "wx/hashmap.h" | |
21 | ||
22 | #if wxUSE_STREAMS | |
23 | # include "wx/stream.h" | |
24 | #endif | |
25 | ||
26 | // on some systems (Unixware 7.x) index is defined as a macro in the headers | |
27 | // which breaks the compilation below | |
28 | #undef index | |
29 | ||
30 | #define wxIMAGE_OPTION_QUALITY wxString(_T("quality")) | |
31 | #define wxIMAGE_OPTION_FILENAME wxString(_T("FileName")) | |
32 | ||
33 | #define wxIMAGE_OPTION_RESOLUTION wxString(_T("Resolution")) | |
34 | #define wxIMAGE_OPTION_RESOLUTIONX wxString(_T("ResolutionX")) | |
35 | #define wxIMAGE_OPTION_RESOLUTIONY wxString(_T("ResolutionY")) | |
36 | ||
37 | #define wxIMAGE_OPTION_RESOLUTIONUNIT wxString(_T("ResolutionUnit")) | |
38 | ||
39 | #define wxIMAGE_OPTION_MAX_WIDTH wxString(_T("MaxWidth")) | |
40 | #define wxIMAGE_OPTION_MAX_HEIGHT wxString(_T("MaxHeight")) | |
41 | ||
42 | // constants used with wxIMAGE_OPTION_RESOLUTIONUNIT | |
43 | // | |
44 | // NB: don't change these values, they correspond to libjpeg constants | |
45 | enum wxImageResolution | |
46 | { | |
47 | // Resolution not specified | |
48 | wxIMAGE_RESOLUTION_NONE = 0, | |
49 | ||
50 | // Resolution specified in inches | |
51 | wxIMAGE_RESOLUTION_INCHES = 1, | |
52 | ||
53 | // Resolution specified in centimeters | |
54 | wxIMAGE_RESOLUTION_CM = 2 | |
55 | }; | |
56 | ||
57 | // Constants for wxImage::Scale() for determining the level of quality | |
58 | enum | |
59 | { | |
60 | wxIMAGE_QUALITY_NORMAL = 0, | |
61 | wxIMAGE_QUALITY_HIGH = 1 | |
62 | }; | |
63 | ||
64 | // alpha channel values: fully transparent, default threshold separating | |
65 | // transparent pixels from opaque for a few functions dealing with alpha and | |
66 | // fully opaque | |
67 | const unsigned char wxIMAGE_ALPHA_TRANSPARENT = 0; | |
68 | const unsigned char wxIMAGE_ALPHA_THRESHOLD = 0x80; | |
69 | const unsigned char wxIMAGE_ALPHA_OPAQUE = 0xff; | |
70 | ||
71 | //----------------------------------------------------------------------------- | |
72 | // classes | |
73 | //----------------------------------------------------------------------------- | |
74 | ||
75 | class WXDLLIMPEXP_FWD_CORE wxImageHandler; | |
76 | class WXDLLIMPEXP_FWD_CORE wxImage; | |
77 | class WXDLLIMPEXP_FWD_CORE wxPalette; | |
78 | ||
79 | //----------------------------------------------------------------------------- | |
80 | // wxVariant support | |
81 | //----------------------------------------------------------------------------- | |
82 | ||
83 | #if wxUSE_VARIANT | |
84 | #include "wx/variant.h" | |
85 | DECLARE_VARIANT_OBJECT_EXPORTED(wxImage,WXDLLIMPEXP_CORE) | |
86 | #endif | |
87 | ||
88 | //----------------------------------------------------------------------------- | |
89 | // wxImageHandler | |
90 | //----------------------------------------------------------------------------- | |
91 | ||
92 | class WXDLLIMPEXP_CORE wxImageHandler: public wxObject | |
93 | { | |
94 | public: | |
95 | wxImageHandler() | |
96 | : m_name(wxEmptyString), m_extension(wxEmptyString), m_mime(), m_type(wxBITMAP_TYPE_INVALID) | |
97 | { } | |
98 | ||
99 | #if wxUSE_STREAMS | |
100 | virtual bool LoadFile( wxImage *image, wxInputStream& stream, bool verbose=true, int index=-1 ); | |
101 | virtual bool SaveFile( wxImage *image, wxOutputStream& stream, bool verbose=true ); | |
102 | ||
103 | virtual int GetImageCount( wxInputStream& stream ); | |
104 | ||
105 | bool CanRead( wxInputStream& stream ) { return CallDoCanRead(stream); } | |
106 | bool CanRead( const wxString& name ); | |
107 | #endif // wxUSE_STREAMS | |
108 | ||
109 | void SetName(const wxString& name) { m_name = name; } | |
110 | void SetExtension(const wxString& ext) { m_extension = ext; } | |
111 | void SetAltExtensions(const wxArrayString& exts) { m_altExtensions = exts; } | |
112 | void SetType(wxBitmapType type) { m_type = type; } | |
113 | void SetMimeType(const wxString& type) { m_mime = type; } | |
114 | const wxString& GetName() const { return m_name; } | |
115 | const wxString& GetExtension() const { return m_extension; } | |
116 | const wxArrayString& GetAltExtensions() const { return m_altExtensions; } | |
117 | wxBitmapType GetType() const { return m_type; } | |
118 | const wxString& GetMimeType() const { return m_mime; } | |
119 | ||
120 | #if WXWIN_COMPATIBILITY_2_8 | |
121 | wxDEPRECATED( | |
122 | void SetType(long type) { SetType((wxBitmapType)type); } | |
123 | ) | |
124 | #endif // WXWIN_COMPATIBILITY_2_8 | |
125 | ||
126 | protected: | |
127 | #if wxUSE_STREAMS | |
128 | virtual bool DoCanRead( wxInputStream& stream ) = 0; | |
129 | ||
130 | // save the stream position, call DoCanRead() and restore the position | |
131 | bool CallDoCanRead(wxInputStream& stream); | |
132 | #endif // wxUSE_STREAMS | |
133 | ||
134 | // helper for the derived classes SaveFile() implementations: returns the | |
135 | // values of x- and y-resolution options specified as the image options if | |
136 | // any | |
137 | static wxImageResolution | |
138 | GetResolutionFromOptions(const wxImage& image, int *x, int *y); | |
139 | ||
140 | ||
141 | wxString m_name; | |
142 | wxString m_extension; | |
143 | wxArrayString m_altExtensions; | |
144 | wxString m_mime; | |
145 | wxBitmapType m_type; | |
146 | ||
147 | private: | |
148 | DECLARE_CLASS(wxImageHandler) | |
149 | }; | |
150 | ||
151 | //----------------------------------------------------------------------------- | |
152 | // wxImageHistogram | |
153 | //----------------------------------------------------------------------------- | |
154 | ||
155 | class WXDLLIMPEXP_CORE wxImageHistogramEntry | |
156 | { | |
157 | public: | |
158 | wxImageHistogramEntry() { index = value = 0; } | |
159 | unsigned long index; | |
160 | unsigned long value; | |
161 | }; | |
162 | ||
163 | WX_DECLARE_EXPORTED_HASH_MAP(unsigned long, wxImageHistogramEntry, | |
164 | wxIntegerHash, wxIntegerEqual, | |
165 | wxImageHistogramBase); | |
166 | ||
167 | class WXDLLIMPEXP_CORE wxImageHistogram : public wxImageHistogramBase | |
168 | { | |
169 | public: | |
170 | wxImageHistogram() : wxImageHistogramBase(256) { } | |
171 | ||
172 | // get the key in the histogram for the given RGB values | |
173 | static unsigned long MakeKey(unsigned char r, | |
174 | unsigned char g, | |
175 | unsigned char b) | |
176 | { | |
177 | return (r << 16) | (g << 8) | b; | |
178 | } | |
179 | ||
180 | // find first colour that is not used in the image and has higher | |
181 | // RGB values than RGB(startR, startG, startB) | |
182 | // | |
183 | // returns true and puts this colour in r, g, b (each of which may be NULL) | |
184 | // on success or returns false if there are no more free colours | |
185 | bool FindFirstUnusedColour(unsigned char *r, | |
186 | unsigned char *g, | |
187 | unsigned char *b, | |
188 | unsigned char startR = 1, | |
189 | unsigned char startG = 0, | |
190 | unsigned char startB = 0 ) const; | |
191 | }; | |
192 | ||
193 | //----------------------------------------------------------------------------- | |
194 | // wxImage | |
195 | //----------------------------------------------------------------------------- | |
196 | ||
197 | class WXDLLIMPEXP_CORE wxImage: public wxObject | |
198 | { | |
199 | public: | |
200 | // red, green and blue are 8 bit unsigned integers in the range of 0..255 | |
201 | // We use the identifier RGBValue instead of RGB, since RGB is #defined | |
202 | class RGBValue | |
203 | { | |
204 | public: | |
205 | RGBValue(unsigned char r=0, unsigned char g=0, unsigned char b=0) | |
206 | : red(r), green(g), blue(b) {} | |
207 | unsigned char red; | |
208 | unsigned char green; | |
209 | unsigned char blue; | |
210 | }; | |
211 | ||
212 | // hue, saturation and value are doubles in the range 0.0..1.0 | |
213 | class HSVValue | |
214 | { | |
215 | public: | |
216 | HSVValue(double h=0.0, double s=0.0, double v=0.0) | |
217 | : hue(h), saturation(s), value(v) {} | |
218 | double hue; | |
219 | double saturation; | |
220 | double value; | |
221 | }; | |
222 | ||
223 | wxImage() {} | |
224 | wxImage( int width, int height, bool clear = true ) | |
225 | { Create( width, height, clear ); } | |
226 | wxImage( int width, int height, unsigned char* data, bool static_data = false ) | |
227 | { Create( width, height, data, static_data ); } | |
228 | wxImage( int width, int height, unsigned char* data, unsigned char* alpha, bool static_data = false ) | |
229 | { Create( width, height, data, alpha, static_data ); } | |
230 | ||
231 | // ctor variants using wxSize: | |
232 | wxImage( const wxSize& sz, bool clear = true ) | |
233 | { Create( sz, clear ); } | |
234 | wxImage( const wxSize& sz, unsigned char* data, bool static_data = false ) | |
235 | { Create( sz, data, static_data ); } | |
236 | wxImage( const wxSize& sz, unsigned char* data, unsigned char* alpha, bool static_data = false ) | |
237 | { Create( sz, data, alpha, static_data ); } | |
238 | ||
239 | wxImage( const wxString& name, wxBitmapType type = wxBITMAP_TYPE_ANY, int index = -1 ) | |
240 | { LoadFile( name, type, index ); } | |
241 | wxImage( const wxString& name, const wxString& mimetype, int index = -1 ) | |
242 | { LoadFile( name, mimetype, index ); } | |
243 | wxImage( const char* const* xpmData ) | |
244 | { Create(xpmData); } | |
245 | ||
246 | #if wxUSE_STREAMS | |
247 | wxImage( wxInputStream& stream, wxBitmapType type = wxBITMAP_TYPE_ANY, int index = -1 ) | |
248 | { LoadFile( stream, type, index ); } | |
249 | wxImage( wxInputStream& stream, const wxString& mimetype, int index = -1 ) | |
250 | { LoadFile( stream, mimetype, index ); } | |
251 | #endif // wxUSE_STREAMS | |
252 | ||
253 | bool Create( const char* const* xpmData ); | |
254 | #ifdef __BORLANDC__ | |
255 | // needed for Borland 5.5 | |
256 | wxImage( char** xpmData ) { Create(const_cast<const char* const*>(xpmData)); } | |
257 | bool Create( char** xpmData ) { return Create(const_cast<const char* const*>(xpmData)); } | |
258 | #endif | |
259 | ||
260 | bool Create( int width, int height, bool clear = true ); | |
261 | bool Create( int width, int height, unsigned char* data, bool static_data = false ); | |
262 | bool Create( int width, int height, unsigned char* data, unsigned char* alpha, bool static_data = false ); | |
263 | ||
264 | // Create() variants using wxSize: | |
265 | bool Create( const wxSize& sz, bool clear = true ) | |
266 | { return Create(sz.GetWidth(), sz.GetHeight(), clear); } | |
267 | bool Create( const wxSize& sz, unsigned char* data, bool static_data = false ) | |
268 | { return Create(sz.GetWidth(), sz.GetHeight(), data, static_data); } | |
269 | bool Create( const wxSize& sz, unsigned char* data, unsigned char* alpha, bool static_data = false ) | |
270 | { return Create(sz.GetWidth(), sz.GetHeight(), data, alpha, static_data); } | |
271 | ||
272 | void Destroy(); | |
273 | ||
274 | // initialize the image data with zeroes | |
275 | void Clear(unsigned char value = 0); | |
276 | ||
277 | // creates an identical copy of the image (the = operator | |
278 | // just raises the ref count) | |
279 | wxImage Copy() const; | |
280 | ||
281 | // return the new image with size width*height | |
282 | wxImage GetSubImage( const wxRect& rect) const; | |
283 | ||
284 | // Paste the image or part of this image into an image of the given size at the pos | |
285 | // any newly exposed areas will be filled with the rgb colour | |
286 | // by default if r = g = b = -1 then fill with this image's mask colour or find and | |
287 | // set a suitable mask colour | |
288 | wxImage Size( const wxSize& size, const wxPoint& pos, | |
289 | int r = -1, int g = -1, int b = -1 ) const; | |
290 | ||
291 | // pastes image into this instance and takes care of | |
292 | // the mask colour and out of bounds problems | |
293 | void Paste( const wxImage &image, int x, int y ); | |
294 | ||
295 | // return the new image with size width*height | |
296 | wxImage Scale( int width, int height, int quality = wxIMAGE_QUALITY_NORMAL ) const; | |
297 | ||
298 | // box averager and bicubic filters for up/down sampling | |
299 | wxImage ResampleBox(int width, int height) const; | |
300 | wxImage ResampleBicubic(int width, int height) const; | |
301 | ||
302 | // blur the image according to the specified pixel radius | |
303 | wxImage Blur(int radius) const; | |
304 | wxImage BlurHorizontal(int radius) const; | |
305 | wxImage BlurVertical(int radius) const; | |
306 | ||
307 | wxImage ShrinkBy( int xFactor , int yFactor ) const ; | |
308 | ||
309 | // rescales the image in place | |
310 | wxImage& Rescale( int width, int height, int quality = wxIMAGE_QUALITY_NORMAL ) { return *this = Scale(width, height, quality); } | |
311 | ||
312 | // resizes the image in place | |
313 | wxImage& Resize( const wxSize& size, const wxPoint& pos, | |
314 | int r = -1, int g = -1, int b = -1 ) { return *this = Size(size, pos, r, g, b); } | |
315 | ||
316 | // Rotates the image about the given point, 'angle' radians. | |
317 | // Returns the rotated image, leaving this image intact. | |
318 | wxImage Rotate(double angle, const wxPoint & centre_of_rotation, | |
319 | bool interpolating = true, wxPoint * offset_after_rotation = NULL) const; | |
320 | ||
321 | wxImage Rotate90( bool clockwise = true ) const; | |
322 | wxImage Mirror( bool horizontally = true ) const; | |
323 | ||
324 | // replace one colour with another | |
325 | void Replace( unsigned char r1, unsigned char g1, unsigned char b1, | |
326 | unsigned char r2, unsigned char g2, unsigned char b2 ); | |
327 | ||
328 | // Convert to greyscale image. Uses the luminance component (Y) of the image. | |
329 | // The luma value (YUV) is calculated using (R * lr) + (G * lg) + (B * lb), defaults to ITU-T BT.601 | |
330 | wxImage ConvertToGreyscale( double lr = 0.299, double lg = 0.587, double lb = 0.114 ) const; | |
331 | ||
332 | // convert to monochrome image (<r,g,b> will be replaced by white, | |
333 | // everything else by black) | |
334 | wxImage ConvertToMono( unsigned char r, unsigned char g, unsigned char b ) const; | |
335 | ||
336 | // these routines are slow but safe | |
337 | void SetRGB( int x, int y, unsigned char r, unsigned char g, unsigned char b ); | |
338 | void SetRGB( const wxRect& rect, unsigned char r, unsigned char g, unsigned char b ); | |
339 | unsigned char GetRed( int x, int y ) const; | |
340 | unsigned char GetGreen( int x, int y ) const; | |
341 | unsigned char GetBlue( int x, int y ) const; | |
342 | ||
343 | void SetAlpha(int x, int y, unsigned char alpha); | |
344 | unsigned char GetAlpha(int x, int y) const; | |
345 | ||
346 | // find first colour that is not used in the image and has higher | |
347 | // RGB values than <startR,startG,startB> | |
348 | bool FindFirstUnusedColour( unsigned char *r, unsigned char *g, unsigned char *b, | |
349 | unsigned char startR = 1, unsigned char startG = 0, | |
350 | unsigned char startB = 0 ) const; | |
351 | // Set image's mask to the area of 'mask' that has <r,g,b> colour | |
352 | bool SetMaskFromImage(const wxImage & mask, | |
353 | unsigned char mr, unsigned char mg, unsigned char mb); | |
354 | ||
355 | // converts image's alpha channel to mask (choosing mask colour | |
356 | // automatically or using the specified colour for the mask), if it has | |
357 | // any, does nothing otherwise: | |
358 | bool ConvertAlphaToMask(unsigned char threshold = wxIMAGE_ALPHA_THRESHOLD); | |
359 | void ConvertAlphaToMask(unsigned char mr, unsigned char mg, unsigned char mb, | |
360 | unsigned char threshold = wxIMAGE_ALPHA_THRESHOLD); | |
361 | ||
362 | ||
363 | // This method converts an image where the original alpha | |
364 | // information is only available as a shades of a colour | |
365 | // (actually shades of grey) typically when you draw anti- | |
366 | // aliased text into a bitmap. The DC drawinf routines | |
367 | // draw grey values on the black background although they | |
368 | // actually mean to draw white with differnt alpha values. | |
369 | // This method reverses it, assuming a black (!) background | |
370 | // and white text (actually only the red channel is read). | |
371 | // The method will then fill up the whole image with the | |
372 | // colour given. | |
373 | bool ConvertColourToAlpha( unsigned char r, unsigned char g, unsigned char b ); | |
374 | ||
375 | static bool CanRead( const wxString& name ); | |
376 | static int GetImageCount( const wxString& name, wxBitmapType type = wxBITMAP_TYPE_ANY ); | |
377 | virtual bool LoadFile( const wxString& name, wxBitmapType type = wxBITMAP_TYPE_ANY, int index = -1 ); | |
378 | virtual bool LoadFile( const wxString& name, const wxString& mimetype, int index = -1 ); | |
379 | ||
380 | #if wxUSE_STREAMS | |
381 | static bool CanRead( wxInputStream& stream ); | |
382 | static int GetImageCount( wxInputStream& stream, wxBitmapType type = wxBITMAP_TYPE_ANY ); | |
383 | virtual bool LoadFile( wxInputStream& stream, wxBitmapType type = wxBITMAP_TYPE_ANY, int index = -1 ); | |
384 | virtual bool LoadFile( wxInputStream& stream, const wxString& mimetype, int index = -1 ); | |
385 | #endif | |
386 | ||
387 | virtual bool SaveFile( const wxString& name ) const; | |
388 | virtual bool SaveFile( const wxString& name, wxBitmapType type ) const; | |
389 | virtual bool SaveFile( const wxString& name, const wxString& mimetype ) const; | |
390 | ||
391 | #if wxUSE_STREAMS | |
392 | virtual bool SaveFile( wxOutputStream& stream, wxBitmapType type ) const; | |
393 | virtual bool SaveFile( wxOutputStream& stream, const wxString& mimetype ) const; | |
394 | #endif | |
395 | ||
396 | bool Ok() const { return IsOk(); } | |
397 | bool IsOk() const; | |
398 | int GetWidth() const; | |
399 | int GetHeight() const; | |
400 | ||
401 | wxSize GetSize() const | |
402 | { return wxSize(GetWidth(), GetHeight()); } | |
403 | ||
404 | // Gets the type of image found by LoadFile or specified with SaveFile | |
405 | wxBitmapType GetType() const; | |
406 | ||
407 | // Set the image type, this is normally only called if the image is being | |
408 | // created from data in the given format but not using LoadFile() (e.g. | |
409 | // wxGIFDecoder uses this) | |
410 | void SetType(wxBitmapType type); | |
411 | ||
412 | // these functions provide fastest access to wxImage data but should be | |
413 | // used carefully as no checks are done | |
414 | unsigned char *GetData() const; | |
415 | void SetData( unsigned char *data, bool static_data=false ); | |
416 | void SetData( unsigned char *data, int new_width, int new_height, bool static_data=false ); | |
417 | ||
418 | unsigned char *GetAlpha() const; // may return NULL! | |
419 | bool HasAlpha() const { return GetAlpha() != NULL; } | |
420 | void SetAlpha(unsigned char *alpha = NULL, bool static_data=false); | |
421 | void InitAlpha(); | |
422 | ||
423 | // return true if this pixel is masked or has alpha less than specified | |
424 | // threshold | |
425 | bool IsTransparent(int x, int y, | |
426 | unsigned char threshold = wxIMAGE_ALPHA_THRESHOLD) const; | |
427 | ||
428 | // Mask functions | |
429 | void SetMaskColour( unsigned char r, unsigned char g, unsigned char b ); | |
430 | // Get the current mask colour or find a suitable colour | |
431 | // returns true if using current mask colour | |
432 | bool GetOrFindMaskColour( unsigned char *r, unsigned char *g, unsigned char *b ) const; | |
433 | unsigned char GetMaskRed() const; | |
434 | unsigned char GetMaskGreen() const; | |
435 | unsigned char GetMaskBlue() const; | |
436 | void SetMask( bool mask = true ); | |
437 | bool HasMask() const; | |
438 | ||
439 | #if wxUSE_PALETTE | |
440 | // Palette functions | |
441 | bool HasPalette() const; | |
442 | const wxPalette& GetPalette() const; | |
443 | void SetPalette(const wxPalette& palette); | |
444 | #endif // wxUSE_PALETTE | |
445 | ||
446 | // Option functions (arbitrary name/value mapping) | |
447 | void SetOption(const wxString& name, const wxString& value); | |
448 | void SetOption(const wxString& name, int value); | |
449 | wxString GetOption(const wxString& name) const; | |
450 | int GetOptionInt(const wxString& name) const; | |
451 | bool HasOption(const wxString& name) const; | |
452 | ||
453 | unsigned long CountColours( unsigned long stopafter = (unsigned long) -1 ) const; | |
454 | ||
455 | // Computes the histogram of the image and fills a hash table, indexed | |
456 | // with integer keys built as 0xRRGGBB, containing wxImageHistogramEntry | |
457 | // objects. Each of them contains an 'index' (useful to build a palette | |
458 | // with the image colours) and a 'value', which is the number of pixels | |
459 | // in the image with that colour. | |
460 | // Returned value: # of entries in the histogram | |
461 | unsigned long ComputeHistogram( wxImageHistogram &h ) const; | |
462 | ||
463 | // Rotates the hue of each pixel of the image. angle is a double in the range | |
464 | // -1.0..1.0 where -1.0 is -360 degrees and 1.0 is 360 degrees | |
465 | void RotateHue(double angle); | |
466 | ||
467 | static wxList& GetHandlers() { return sm_handlers; } | |
468 | static void AddHandler( wxImageHandler *handler ); | |
469 | static void InsertHandler( wxImageHandler *handler ); | |
470 | static bool RemoveHandler( const wxString& name ); | |
471 | static wxImageHandler *FindHandler( const wxString& name ); | |
472 | static wxImageHandler *FindHandler( const wxString& extension, wxBitmapType imageType ); | |
473 | static wxImageHandler *FindHandler( wxBitmapType imageType ); | |
474 | ||
475 | static wxImageHandler *FindHandlerMime( const wxString& mimetype ); | |
476 | ||
477 | static wxString GetImageExtWildcard(); | |
478 | ||
479 | static void CleanUpHandlers(); | |
480 | static void InitStandardHandlers(); | |
481 | ||
482 | static HSVValue RGBtoHSV(const RGBValue& rgb); | |
483 | static RGBValue HSVtoRGB(const HSVValue& hsv); | |
484 | ||
485 | #if WXWIN_COMPATIBILITY_2_8 | |
486 | wxDEPRECATED_CONSTRUCTOR( | |
487 | wxImage(const wxString& name, long type, int index = -1) | |
488 | { | |
489 | LoadFile(name, (wxBitmapType)type, index); | |
490 | } | |
491 | ) | |
492 | ||
493 | #if wxUSE_STREAMS | |
494 | wxDEPRECATED_CONSTRUCTOR( | |
495 | wxImage(wxInputStream& stream, long type, int index = -1) | |
496 | { | |
497 | LoadFile(stream, (wxBitmapType)type, index); | |
498 | } | |
499 | ) | |
500 | ||
501 | wxDEPRECATED( | |
502 | bool LoadFile(wxInputStream& stream, long type, int index = -1) | |
503 | { | |
504 | return LoadFile(stream, (wxBitmapType)type, index); | |
505 | } | |
506 | ) | |
507 | ||
508 | wxDEPRECATED( | |
509 | bool SaveFile(wxOutputStream& stream, long type) const | |
510 | { | |
511 | return SaveFile(stream, (wxBitmapType)type); | |
512 | } | |
513 | ) | |
514 | #endif // wxUSE_STREAMS | |
515 | ||
516 | wxDEPRECATED( | |
517 | bool LoadFile(const wxString& name, long type, int index = -1) | |
518 | { | |
519 | return LoadFile(name, (wxBitmapType)type, index); | |
520 | } | |
521 | ) | |
522 | ||
523 | wxDEPRECATED( | |
524 | bool SaveFile(const wxString& name, long type) const | |
525 | { | |
526 | return SaveFile(name, (wxBitmapType)type); | |
527 | } | |
528 | ) | |
529 | ||
530 | wxDEPRECATED( | |
531 | static wxImageHandler *FindHandler(const wxString& ext, long type) | |
532 | { | |
533 | return FindHandler(ext, (wxBitmapType)type); | |
534 | } | |
535 | ) | |
536 | ||
537 | wxDEPRECATED( | |
538 | static wxImageHandler *FindHandler(long imageType) | |
539 | { | |
540 | return FindHandler((wxBitmapType)imageType); | |
541 | } | |
542 | ) | |
543 | #endif // WXWIN_COMPATIBILITY_2_8 | |
544 | ||
545 | protected: | |
546 | static wxList sm_handlers; | |
547 | ||
548 | // return the index of the point with the given coordinates or -1 if the | |
549 | // image is invalid of the coordinates are out of range | |
550 | // | |
551 | // note that index must be multiplied by 3 when using it with RGB array | |
552 | long XYToIndex(int x, int y) const; | |
553 | ||
554 | virtual wxObjectRefData* CreateRefData() const; | |
555 | virtual wxObjectRefData* CloneRefData(const wxObjectRefData* data) const; | |
556 | ||
557 | private: | |
558 | friend class WXDLLIMPEXP_FWD_CORE wxImageHandler; | |
559 | ||
560 | #if wxUSE_STREAMS | |
561 | // read the image from the specified stream updating image type if | |
562 | // successful | |
563 | bool DoLoad(wxImageHandler& handler, wxInputStream& stream, int index); | |
564 | ||
565 | // write the image to the specified stream and also update the image type | |
566 | // if successful | |
567 | bool DoSave(wxImageHandler& handler, wxOutputStream& stream) const; | |
568 | #endif // wxUSE_STREAMS | |
569 | ||
570 | DECLARE_DYNAMIC_CLASS(wxImage) | |
571 | }; | |
572 | ||
573 | ||
574 | extern void WXDLLIMPEXP_CORE wxInitAllImageHandlers(); | |
575 | ||
576 | extern WXDLLIMPEXP_DATA_CORE(wxImage) wxNullImage; | |
577 | ||
578 | //----------------------------------------------------------------------------- | |
579 | // wxImage handlers | |
580 | //----------------------------------------------------------------------------- | |
581 | ||
582 | #include "wx/imagbmp.h" | |
583 | #include "wx/imagpng.h" | |
584 | #include "wx/imaggif.h" | |
585 | #include "wx/imagpcx.h" | |
586 | #include "wx/imagjpeg.h" | |
587 | #include "wx/imagtga.h" | |
588 | #include "wx/imagtiff.h" | |
589 | #include "wx/imagpnm.h" | |
590 | #include "wx/imagxpm.h" | |
591 | #include "wx/imagiff.h" | |
592 | ||
593 | #endif // wxUSE_IMAGE | |
594 | ||
595 | #endif | |
596 | // _WX_IMAGE_H_ |