2001-10-04 05:44:07 +08:00
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#include <osg/GL>
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#include <osg/GLU>
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#include <osg/Image>
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#include <osg/Notify>
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2001-01-11 00:32:10 +08:00
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#include <osg/Geode>
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#include <osg/GeoSet>
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2001-09-20 05:08:56 +08:00
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#include <osg/StateSet>
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2001-01-11 00:32:10 +08:00
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#include <osg/Texture>
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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using namespace osg;
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Image::Image()
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{
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2001-09-20 05:08:56 +08:00
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_fileName = "";
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2001-01-11 00:32:10 +08:00
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_s = _t = _r = 0;
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_internalFormat = 0;
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_pixelFormat = (unsigned int)0;
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_dataType = (unsigned int)0;
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_packing = 4;
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_data = (unsigned char *)0L;
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2001-11-19 05:31:16 +08:00
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_modifiedTag = 0;
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2001-01-11 00:32:10 +08:00
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}
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Added support for shallow and deep copy of nodes, drawables and state, via a
copy constructor which takes an optional Cloner object, and the old
osg::Object::clone() has changed so that it now requires a Cloner as paramter.
This is passed on to the copy constructor to help control the shallow vs
deep copying. The old functionality of clone() which was clone of type has
been renamed to cloneType().
Updated all of the OSG to work with these new conventions, implemention all
the required copy constructors etc. A couple of areas will do shallow
copies by design, a couple of other still need to be updated to do either
shallow or deep.
Neither of the shallow or deep copy operations have been tested yet, only
the old functionality of the OSG has been checked so far, such running the
viewer on various demo datasets.
Also fixed a problem in osg::Optimize::RemoveRendundentNodesVisitor which
was not checking that Group didn't have have any attached StateSet's, Callbacks
or UserData. These checks have now been added, which fixes a bug which was
revealled by the new osgscribe demo, this related to removal of group acting
as state decorator.
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2002-01-29 05:17:01 +08:00
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Image::Image(const Image& image,const Cloner& cloner):
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Object(image,cloner),
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_fileName(image._fileName),
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_s(image._s), _t(image._t), _r(image._r),
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_internalFormat(image._internalFormat),
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_pixelFormat(image._pixelFormat),
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_dataType(image._dataType),
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_packing(image._packing),
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_data(0L),
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_modifiedTag(image._modifiedTag)
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{
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if (image._data)
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{
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int num_components =
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_pixelFormat == GL_LUMINANCE ? 1 :
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_pixelFormat == GL_LUMINANCE_ALPHA ? 2 :
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_pixelFormat == GL_RGB ? 3 :
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_pixelFormat == GL_RGBA ? 4 : 4;
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int size = _s*_t*_r*num_components;
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_data = (unsigned char*) malloc(size);
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memcpy(_data,image._data,size);
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}
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}
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2001-01-11 00:32:10 +08:00
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Image::~Image()
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{
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if (_data) ::free(_data);
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}
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2001-09-20 05:08:56 +08:00
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void Image::setFileName(const std::string& fileName)
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2001-01-11 00:32:10 +08:00
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{
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_fileName = fileName;
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2001-01-11 00:32:10 +08:00
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}
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2001-09-20 05:08:56 +08:00
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void Image::setImage(const int s,const int t,const int r,
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const int internalFormat,
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const unsigned int pixelFormat,
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const unsigned int dataType,
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2001-01-11 00:32:10 +08:00
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unsigned char *data,
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const int packing)
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2001-01-11 00:32:10 +08:00
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{
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if (_data) ::free(_data);
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_s = s;
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_t = t;
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_r = r;
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_internalFormat = internalFormat;
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_pixelFormat = pixelFormat;
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_dataType = dataType;
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_data = data;
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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if (packing<0)
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{
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if (_s%4==0)
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_packing = 4;
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else
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2001-09-20 05:08:56 +08:00
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_packing = 1;
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2001-01-11 00:32:10 +08:00
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}
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else
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_packing = packing;
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2001-09-20 05:08:56 +08:00
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// test scaling...
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// scaleImageTo(16,16,_r);
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2001-11-19 05:31:16 +08:00
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++_modifiedTag;
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2001-01-11 00:32:10 +08:00
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}
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2001-09-20 05:08:56 +08:00
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void Image::scaleImage(const int s,const int t,const int /*r*/)
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2001-01-11 00:32:10 +08:00
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{
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if (_data==NULL) return;
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unsigned char* newData = (unsigned char *)malloc(2 * (s+1)*(t+1)*4);
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glPixelStorei(GL_PACK_ALIGNMENT,_packing);
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glPixelStorei(GL_UNPACK_ALIGNMENT,_packing);
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GLint status = gluScaleImage((GLenum)_pixelFormat,
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2001-09-20 05:08:56 +08:00
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_s,
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_t,
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(GLenum)_dataType,
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_data,
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s,
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t,
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(GLenum)_dataType,
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newData);
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if (status==0)
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{
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2001-01-11 00:32:10 +08:00
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// free old image.
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::free(_data);
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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_s = s;
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_t = t;
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_data = newData;
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}
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else
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{
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::free(newData);
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2001-12-15 07:18:28 +08:00
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notify(WARN) << "Error Image::scaleImage() do not succeed : errorString = "<<gluErrorString((GLenum)status)<<std::endl;
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2001-01-11 00:32:10 +08:00
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}
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2001-11-19 05:31:16 +08:00
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++_modifiedTag;
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2001-01-11 00:32:10 +08:00
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}
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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void Image::ensureDimensionsArePowerOfTwo()
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{
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float sp2 = logf((float)_s)/logf(2.0f);
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float rounded_sp2 = floorf(sp2+0.5f);
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int new_s = (int)(powf(2.0f,rounded_sp2));
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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float tp2 = logf((float)_t)/logf(2.0f);
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float rounded_tp2 = floorf(tp2+0.5f);
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int new_t = (int)(powf(2.0f,rounded_tp2));
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2001-10-05 18:38:16 +08:00
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if (new_s!=_s || new_t!=_t)
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2001-01-11 00:32:10 +08:00
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{
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2001-12-15 07:18:28 +08:00
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if (!_fileName.empty()) notify(NOTICE) << "Scaling image '"<<_fileName<<"' from ("<<_s<<","<<_t<<") to ("<<new_s<<","<<new_t<<")"<<std::endl;
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else notify(NOTICE) << "Scaling image from ("<<_s<<","<<_t<<") to ("<<new_s<<","<<new_t<<")"<<std::endl;
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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scaleImage(new_s,new_t,_r);
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}
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}
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2001-09-20 05:08:56 +08:00
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2001-01-11 00:32:10 +08:00
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Geode* osg::createGeodeForImage(osg::Image* image)
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{
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return createGeodeForImage(image,image->s(),image->t());
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}
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2001-09-20 05:08:56 +08:00
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Geode* osg::createGeodeForImage(osg::Image* image,const float s,const float t)
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2001-01-11 00:32:10 +08:00
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{
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if (image)
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{
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if (s>0 && t>0)
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{
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float y = 1.0;
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float x = y*(s/t);
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2001-09-20 05:08:56 +08:00
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// set up the texture.
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2001-01-11 00:32:10 +08:00
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osg::Texture* texture = new osg::Texture;
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texture->setImage(image);
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2001-09-20 05:08:56 +08:00
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// set up the drawstate.
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osg::StateSet* dstate = new osg::StateSet;
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dstate->setMode(GL_CULL_FACE,osg::StateAttribute::OFF);
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dstate->setMode(GL_LIGHTING,osg::StateAttribute::OFF);
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dstate->setAttributeAndModes(texture,osg::StateAttribute::ON);
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2001-01-11 00:32:10 +08:00
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// set up the geoset.
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osg::GeoSet* gset = new osg::GeoSet;
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2001-09-20 05:08:56 +08:00
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gset->setStateSet(dstate);
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2001-01-11 00:32:10 +08:00
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osg::Vec3* coords = new Vec3 [4];
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coords[0].set(-x,0.0f,y);
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coords[1].set(-x,0.0f,-y);
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coords[2].set(x,0.0f,-y);
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coords[3].set(x,0.0f,y);
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gset->setCoords(coords);
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osg::Vec2* tcoords = new Vec2 [4];
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tcoords[0].set(0.0f,1.0f);
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tcoords[1].set(0.0f,0.0f);
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tcoords[2].set(1.0f,0.0f);
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tcoords[3].set(1.0f,1.0f);
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gset->setTextureCoords(tcoords);
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gset->setTextureBinding(osg::GeoSet::BIND_PERVERTEX);
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osg::Vec4* colours = new Vec4;
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2001-09-20 05:08:56 +08:00
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colours->set(1.0f,1.0f,1.0,1.0f);
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2001-01-11 00:32:10 +08:00
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gset->setColors(colours);
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gset->setColorBinding(osg::GeoSet::BIND_OVERALL);
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gset->setNumPrims(1);
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gset->setPrimType(osg::GeoSet::QUADS);
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// set up the geode.
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osg::Geode* geode = new osg::Geode;
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2001-09-20 05:08:56 +08:00
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geode->addDrawable(gset);
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2001-01-11 00:32:10 +08:00
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return geode;
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}
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else
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{
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return NULL;
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}
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}
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else
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{
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return NULL;
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}
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}
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