02fcb9a13f
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/trunk@53108 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
202 lines
4.9 KiB
Objective-C
202 lines
4.9 KiB
Objective-C
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/**
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@class wxPixelData
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@wxheader{rawbmp.h}
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A class template with ready to use implementations for getting
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direct and efficient access to wxBitmap's internal data and
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wxImage's internal data through a standard interface. It is
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possible to extend this class (interface) to other types of
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image content.
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Implemented on Windows, GTK+ and OS X:
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@li wxNativePixelData: Class to access to wxBitmap's internal data without alpha channel (RGB).
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@li wxAlphaPixelData: Class to access to wxBitmap's internal data with alpha channel (RGBA).
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Implemented everywhere:
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@li wxImagePixelData: Class to access to wxImage's internal data with alpha channel (RGBA).
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@code
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wxBitmap bmp;
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wxNativePixelData data(bmp);
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if ( !data )
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{
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// ... raw access to bitmap data unavailable, do something else ...
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return;
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}
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if ( data.GetWidth() < 20 || data.GetHeight() < 20 )
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{
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// ... complain: the bitmap it too small ...
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return;
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}
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wxNativePixelData::Iterator p(data);
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// we draw a (10, 10)-(20, 20) rect manually using the given r, g, b
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p.Offset(data, 10, 10);
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for ( int y = 0; y < 10; ++y )
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{
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wxNativePixelData::Iterator rowStart = p;
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for ( int x = 0; x < 10; ++x, ++p )
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{
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p.Red() = r;
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p.Green() = g;
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p.Blue() = b;
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}
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p = rowStart;
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p.OffsetY(data, 1);
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}
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@endcode
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@library{wxcore}
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@category{gdi}
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@see wxBitmap, wxImage
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*/
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template <class Image, class PixelFormat = wxPixelFormatFor<Image> >
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class wxPixelData :
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public wxPixelDataOut<Image>::template wxPixelDataIn<PixelFormat>
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{
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public:
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/**
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the type of the class we're working with
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*/
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typedef Image ImageType;
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/**
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Create pixel data object representing the entire image
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*/
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wxPixelData(Image& image);
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/**
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Create pixel data object representing the area
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of the image defined by @e rect.
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*/
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wxPixelData(Image& i, const wxRect& rect);
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/**
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Create pixel data object representing the area
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of the image defined by @e pt and @e sz.
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*/
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wxPixelData(Image& i, const wxPoint& pt, const wxSize& sz)
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/**
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Return true of if we could get access to bitmap data
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successfully
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*/
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operator bool() const:
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/**
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Return the iterator pointing to the origin of the image
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*/
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Iterator GetPixels() const;
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/**
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Returns origin of the rectangular region we represent
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*/
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wxPoint GetOrigin() const;
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/**
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Return width of the region we represent
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*/
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int GetWidth() const;
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/**
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Return height of the region we represent
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*/
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int GetHeight() const;
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/*
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Return area which this class represents in the image
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*/
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wxSize GetSize() const;
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/**
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Return the distance between two rows
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*/
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int GetRowStride() const;
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/**
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Iterator
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*/
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class Iterator
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{
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public:
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/**
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go back to (0, 0)
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*/
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void Reset(const PixelData& data);
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/**
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Initializes the iterator to point to the origin of the given
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pixel data
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*/
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Iterator(PixelData& data);
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/**
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Initializes the iterator to point to the origin of the given
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Bitmap
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*/
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Iterator(wxBitmap& bmp, PixelData& data);
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/**
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Default constructor
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*/
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Iterator();
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/**
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Return true if this iterator is valid
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*/
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bool IsOk() const;
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/**
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Advance the iterator to the next pixel, prefix version
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*/
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Iterator& operator++();
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/**
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Postfix (hence less efficient -- don't use it unless you
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absolutely must) version
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*/
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Iterator operator++(int);
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/**
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Move x pixels to the right and y down
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note that the rows don't wrap!
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*/
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void Offset(const PixelData& data, int x, int y);
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/**
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Move x pixels to the right (again, no row wrapping)
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*/
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void OffsetX(const PixelData&data, int x);
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/**
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Move y rows to the bottom
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*/
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void OffsetY(const PixelData& data, int y);
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/**
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Go to the given position
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*/
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void MoveTo(const PixelData& data, int x, int y);
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//@{
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/**
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Data access: gives access to invidividual colour components.
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*/
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ChannelType& Red();
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ChannelType& Green();
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ChannelType& Blue();
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ChannelType& Alpha();
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//@}
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};
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};
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