216 lines
4.8 KiB
C++
216 lines
4.8 KiB
C++
/* -*-c++-*- OpenSceneGraph - Copyright (C) 1998-2009 Robert Osfield
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*
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* This library is open source and may be redistributed and/or modified under
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* the terms of the OpenSceneGraph Public License (OSGPL) version 0.0 or
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* (at your option) any later version. The full license is in LICENSE file
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* included with this distribution, and on the openscenegraph.org website.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* OpenSceneGraph Public License for more details.
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*/
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#include <osgVolume/VolumeTile>
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#include <osgVolume/Volume>
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using namespace osg;
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using namespace osgVolume;
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/////////////////////////////////////////////////////////////////////////////////
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//
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// TileID
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//
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TileID::TileID():
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level(-1),
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x(-1),
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y(-1),
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z(-1)
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{
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}
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TileID::TileID(int in_level, int in_x, int in_y, int in_z):
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level(in_level),
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x(in_x),
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y(in_y),
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z(in_z)
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{
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}
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/////////////////////////////////////////////////////////////////////////////////
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//
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// VolumeTile
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//
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VolumeTile::VolumeTile():
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_volume(0),
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_dirty(false),
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_hasBeenTraversal(false)
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{
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setThreadSafeRefUnref(true);
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}
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VolumeTile::VolumeTile(const VolumeTile& volumeTile,const osg::CopyOp& copyop):
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Group(volumeTile,copyop),
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_volume(0),
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_dirty(false),
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_hasBeenTraversal(false),
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_layer(volumeTile._layer)
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{
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if (volumeTile.getVolumeTechnique())
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{
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setVolumeTechnique(osg::clone(volumeTile.getVolumeTechnique()));
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}
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}
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VolumeTile::~VolumeTile()
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{
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if (_volume) setVolume(0);
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}
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void VolumeTile::setVolume(Volume* volume)
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{
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if (_volume == volume) return;
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if (_volume) _volume->unregisterVolumeTile(this);
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_volume = volume;
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if (_volume) _volume->registerVolumeTile(this);
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}
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void VolumeTile::setTileID(const TileID& tileID)
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{
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if (_tileID == tileID) return;
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if (_volume) _volume->unregisterVolumeTile(this);
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_tileID = tileID;
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if (_volume) _volume->registerVolumeTile(this);
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}
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void VolumeTile::traverse(osg::NodeVisitor& nv)
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{
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if (!_hasBeenTraversal)
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{
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if (!_volume)
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{
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osg::NodePath& nodePath = nv.getNodePath();
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if (!nodePath.empty())
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{
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for(osg::NodePath::reverse_iterator itr = nodePath.rbegin();
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itr != nodePath.rend() && !_volume;
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++itr)
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{
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osgVolume::Volume* volume = dynamic_cast<Volume*>(*itr);
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if (volume)
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{
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OSG_INFO<<"Assigning volume system "<<volume<<std::endl;
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setVolume(volume);
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}
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}
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}
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}
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_hasBeenTraversal = true;
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}
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if (nv.getVisitorType()==osg::NodeVisitor::UPDATE_VISITOR &&
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_layer->requiresUpdateTraversal())
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{
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_layer->update(nv);
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}
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if (_volumeTechnique.valid())
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{
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_volumeTechnique->traverse(nv);
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}
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else
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{
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osg::Group::traverse(nv);
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}
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}
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void VolumeTile::init()
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{
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if (_volumeTechnique.valid() && getDirty())
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{
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_volumeTechnique->init();
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setDirty(false);
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}
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}
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void VolumeTile::setLayer(Layer* layer)
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{
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_layer = layer;
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}
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void VolumeTile::setVolumeTechnique(VolumeTechnique* volumeTechnique)
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{
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if (_volumeTechnique == volumeTechnique) return;
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int dirtyDelta = _dirty ? -1 : 0;
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if (_volumeTechnique.valid())
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{
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_volumeTechnique->_volumeTile = 0;
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}
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_volumeTechnique = volumeTechnique;
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if (_volumeTechnique.valid())
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{
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_volumeTechnique->_volumeTile = this;
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++dirtyDelta;
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}
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if (dirtyDelta>0) setDirty(true);
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else if (dirtyDelta<0) setDirty(false);
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}
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void VolumeTile::setDirty(bool dirty)
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{
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if (_dirty==dirty) return;
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_dirty = dirty;
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if (_dirty)
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{
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setNumChildrenRequiringUpdateTraversal(getNumChildrenRequiringUpdateTraversal()+1);
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}
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else if (getNumChildrenRequiringUpdateTraversal()>0)
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{
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setNumChildrenRequiringUpdateTraversal(getNumChildrenRequiringUpdateTraversal()-1);
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}
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}
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osg::BoundingSphere VolumeTile::computeBound() const
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{
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const Locator* masterLocator = getLocator();
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if (_layer.valid() && !masterLocator)
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{
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masterLocator = _layer->getLocator();
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}
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if (masterLocator)
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{
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osg::Vec3d left, right;
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masterLocator->computeLocalBounds(left, right);
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return osg::BoundingSphere((left+right)*0.5, (right-left).length()*0.5);
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}
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else if (_layer.valid())
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{
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// we have a layer but no Locator defined so will assume a Identity Locator
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return osg::BoundingSphere( osg::Vec3(0.5,0.5,0.5), 0.867);
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}
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else
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{
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return osg::BoundingSphere();
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}
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}
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