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forcing users to use osgDB::readRef*File() methods. The later is preferable as it closes a potential threading bug when using paging databases in conjunction with the osgDB::Registry Object Cache. This threading bug occurs when one thread gets an object from the Cache via an osgDB::read*File() call where only a pointer to the object is passed back, so taking a reference to the object is delayed till it gets reassigned to a ref_ptr<>, but at the same time another thread calls a flush of the Object Cache deleting this object as it's referenceCount is now zero. Using osgDB::readREf*File() makes sure the a ref_ptr<> is passed back and the referenceCount never goes to zero. To ensure the OSG builds when OSG_PROVIDE_READFILE is to OFF the many cases of osgDB::read*File() usage had to be replaced with a ref_ptr<> osgDB::readRef*File() usage. The avoid this change causing lots of other client code to be rewritten to handle the use of ref_ptr<> in place of C pointer I introduced a serious of templte methods in various class to adapt ref_ptr<> to the underly C pointer to be passed to old OSG API's, example of this is found in include/osg/Group: bool addChild(Node* child); // old method which can only be used with a Node* tempalte<class T> bool addChild(const osg::ref_ptr<T>& child) { return addChild(child.get()); } // adapter template method These changes together cover 149 modified files, so it's a large submission. This extent of changes are warrent to make use of the Object Cache and multi-threaded loaded more robust. git-svn-id: http://svn.openscenegraph.org/osg/OpenSceneGraph/branches/OpenSceneGraph-3.4@15165 16af8721-9629-0410-8352-f15c8da7e697
248 lines
8.1 KiB
C++
248 lines
8.1 KiB
C++
/* OpenSceneGraph example, osglightpoint.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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#include <osg/GL>
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#include <osgViewer/Viewer>
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#include <osg/MatrixTransform>
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#include <osg/Billboard>
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#include <osg/Geode>
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#include <osg/Group>
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#include <osg/ShapeDrawable>
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#include <osg/Notify>
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#include <osg/PointSprite>
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#include <osg/Texture2D>
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#include <osg/BlendFunc>
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#include <osgDB/Registry>
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#include <osgDB/ReadFile>
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#include <osgUtil/Optimizer>
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#include <osgSim/LightPointNode>
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#include <iostream>
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#define INTERPOLATE(member) lp.member = start.member*rstart + end.member*rend;
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void addToLightPointNode(osgSim::LightPointNode& lpn,osgSim::LightPoint& start,osgSim::LightPoint& end,unsigned int noSteps)
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{
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if (noSteps<=1)
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{
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lpn.addLightPoint(start);
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return;
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}
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float rend = 0.0f;
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float rdelta = 1.0f/((float)noSteps-1.0f);
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lpn.getLightPointList().reserve(noSteps);
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for(unsigned int i=0;i<noSteps;++i,rend+=rdelta)
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{
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float rstart = 1.0f-rend;
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osgSim::LightPoint lp(start);
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INTERPOLATE(_position)
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INTERPOLATE(_intensity);
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INTERPOLATE(_color);
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INTERPOLATE(_radius);
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lpn.addLightPoint(lp);
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}
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}
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#undef INTERPOLATE
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bool usePointSprites;
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osg::Node* createLightPointsDatabase()
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{
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osgSim::LightPoint start;
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osgSim::LightPoint end;
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start._position.set(-500.0f,-500.0f,0.0f);
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start._color.set(1.0f,0.0f,0.0f,1.0f);
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end._position.set(500.0f,-500.0f,0.0f);
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end._color.set(1.0f,1.0f,1.0f,1.0f);
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osg::MatrixTransform* transform = new osg::MatrixTransform;
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transform->setDataVariance(osg::Object::STATIC);
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transform->setMatrix(osg::Matrix::scale(0.1,0.1,0.1));
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osg::Vec3 start_delta(0.0f,10.0f,0.0f);
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osg::Vec3 end_delta(0.0f,10.0f,1.0f);
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int noStepsX = 100;
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int noStepsY = 100;
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// osgSim::BlinkSequence* bs = new osgSim::BlinkSequence;
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// bs->addPulse(1.0,osg::Vec4(1.0f,0.0f,0.0f,1.0f));
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// bs->addPulse(0.5,osg::Vec4(0.0f,0.0f,0.0f,0.0f)); // off
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// bs->addPulse(1.5,osg::Vec4(1.0f,1.0f,0.0f,1.0f));
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// bs->addPulse(0.5,osg::Vec4(0.0f,0.0f,0.0f,0.0f)); // off
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// bs->addPulse(1.0,osg::Vec4(1.0f,1.0f,1.0f,1.0f));
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// bs->addPulse(0.5,osg::Vec4(0.0f,0.0f,0.0f,0.0f)); // off
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// osgSim::Sector* sector = new osgSim::ConeSector(osg::Vec3(0.0f,0.0f,1.0f),osg::inDegrees(45.0),osg::inDegrees(45.0));
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// osgSim::Sector* sector = new osgSim::ElevationSector(-osg::inDegrees(45.0),osg::inDegrees(45.0),osg::inDegrees(45.0));
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// osgSim::Sector* sector = new osgSim::AzimSector(-osg::inDegrees(45.0),osg::inDegrees(45.0),osg::inDegrees(90.0));
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// osgSim::Sector* sector = new osgSim::AzimElevationSector(osg::inDegrees(180),osg::inDegrees(90), // azim range
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// osg::inDegrees(0.0),osg::inDegrees(90.0), // elevation range
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// osg::inDegrees(5.0));
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for(int i=0;i<noStepsY;++i)
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{
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// osgSim::BlinkSequence* local_bs = new osgSim::BlinkSequence(*bs);
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// local_bs->setSequenceGroup(new osgSim::BlinkSequence::SequenceGroup((double)i*0.1));
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// start._blinkSequence = local_bs;
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// start._sector = sector;
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osgSim::LightPointNode* lpn = new osgSim::LightPointNode;
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//
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osg::StateSet* set = lpn->getOrCreateStateSet();
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if (usePointSprites)
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{
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lpn->setPointSprite();
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// Set point sprite texture in LightPointNode StateSet.
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osg::Texture2D *tex = new osg::Texture2D();
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tex->setImage(osgDB::readRefImageFile("Images/particle.rgb"));
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set->setTextureAttributeAndModes(0, tex, osg::StateAttribute::ON);
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}
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//set->setMode(GL_BLEND, osg::StateAttribute::ON);
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//osg::BlendFunc *fn = new osg::BlendFunc();
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//fn->setFunction(osg::BlendFunc::SRC_ALPHA, osg::BlendFunc::DST_ALPHA);
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//set->setAttributeAndModes(fn, osg::StateAttribute::ON);
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//
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addToLightPointNode(*lpn,start,end,noStepsX);
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start._position += start_delta;
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end._position += end_delta;
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transform->addChild(lpn);
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}
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osg::Group* group = new osg::Group;
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group->addChild(transform);
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return group;
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}
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static osg::Node* CreateBlinkSequenceLightNode()
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{
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osgSim::LightPointNode* lightPointNode = new osgSim::LightPointNode;;
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osgSim::LightPointNode::LightPointList lpList;
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osg::ref_ptr<osgSim::SequenceGroup> seq_0;
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seq_0 = new osgSim::SequenceGroup;
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seq_0->_baseTime = 0.0;
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osg::ref_ptr<osgSim::SequenceGroup> seq_1;
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seq_1 = new osgSim::SequenceGroup;
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seq_1->_baseTime = 0.5;
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const int max_points = 32;
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for( int i = 0; i < max_points; ++i )
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{
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osgSim::LightPoint lp;
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double x = cos( (2.0*osg::PI*i)/max_points );
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double z = sin( (2.0*osg::PI*i)/max_points );
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lp._position.set( x, 0.0f, z + 30.0f );
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lp._blinkSequence = new osgSim::BlinkSequence;
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for( int j = 10; j > 0; --j )
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{
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float intensity = j/10.0f;
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lp._blinkSequence->addPulse( 1.0/max_points,
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osg::Vec4( intensity, intensity, intensity, intensity ) );
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}
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if( max_points > 10 )
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{
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lp._blinkSequence->addPulse( 1.0 - 10.0/max_points,
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osg::Vec4( 0.0f, 0.0f, 0.0f, 0.0f ) );
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}
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if( i & 1 )
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{
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lp._blinkSequence->setSequenceGroup( seq_1.get() );
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}
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else
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{
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lp._blinkSequence->setSequenceGroup( seq_0.get() );
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}
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lp._blinkSequence->setPhaseShift( i/(static_cast<double>(max_points)) );
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lpList.push_back( lp );
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}
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lightPointNode->setLightPointList( lpList );
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return lightPointNode;
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}
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int main( int argc, char **argv )
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{
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// use an ArgumentParser object to manage the program arguments.
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osg::ArgumentParser arguments(&argc,argv);
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// set up the usage document, in case we need to print out how to use this program.
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arguments.getApplicationUsage()->setDescription(arguments.getApplicationName()+" is the example which demonstrates use high quality light point, typically used for naviagional lights.");
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arguments.getApplicationUsage()->setCommandLineUsage(arguments.getApplicationName()+" [options] filename ...");
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arguments.getApplicationUsage()->addCommandLineOption("-h or --help","Display this information");
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arguments.getApplicationUsage()->addCommandLineOption("--sprites","Point sprites.");
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// construct the viewer.
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osgViewer::Viewer viewer;
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// if user request help write it out to cout.
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if (arguments.read("-h") || arguments.read("--help"))
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{
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arguments.getApplicationUsage()->write(std::cout);
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return 1;
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}
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usePointSprites = false;
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while (arguments.read("--sprites")) { usePointSprites = true; };
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osg::Group* rootnode = new osg::Group;
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// load the nodes from the commandline arguments.
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rootnode->addChild(osgDB::readRefNodeFiles(arguments));
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rootnode->addChild(createLightPointsDatabase());
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rootnode->addChild(CreateBlinkSequenceLightNode());
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// run optimization over the scene graph
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osgUtil::Optimizer optimzer;
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optimzer.optimize(rootnode);
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// add a viewport to the viewer and attach the scene graph.
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viewer.setSceneData( rootnode );
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return viewer.run();
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}
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