dd996a3289
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/trunk@15164 16af8721-9629-0410-8352-f15c8da7e697
589 lines
21 KiB
C++
589 lines
21 KiB
C++
/* OpenSceneGraph example, osggpx.
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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/Node>
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#include <osg/Geometry>
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#include <osg/Notify>
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#include <osg/MatrixTransform>
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#include <osg/Texture2D>
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#include <osg/DrawPixels>
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#include <osg/PolygonOffset>
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#include <osg/Geode>
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#include <osg/CoordinateSystemNode>
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#include <osgDB/Registry>
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#include <osgDB/ReadFile>
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#include <osgDB/FileUtils>
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#include <osgDB/FileNameUtils>
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#include <osgDB/XmlParser>
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#include <osgText/Text>
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#include <osgGA/TerrainManipulator>
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#include <osgViewer/Viewer>
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class TrackSegment : public osg::Object
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{
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public:
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TrackSegment() {}
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TrackSegment(const TrackSegment& ts, const osg::CopyOp=osg::CopyOp::SHALLOW_COPY) {}
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META_Object(osg, TrackSegment)
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struct TrackPoint
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{
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TrackPoint():
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latitude(0.0),
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longitude(0.0),
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elevation(0.0),
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time(0.0) {}
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double latitude;
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double longitude;
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double elevation;
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double time;
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};
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typedef std::vector< TrackPoint > TrackPoints;
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void addTrackPoint(const TrackPoint& trackPoint) { _trackPoints.push_back(trackPoint); }
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TrackPoints& getTrackPoints() { return _trackPoints; }
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const TrackPoints& getTrackPoints() const { return _trackPoints; }
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protected:
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virtual ~TrackSegment() {}
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TrackPoints _trackPoints;
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};
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class Track : public osg::Object
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{
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public:
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Track() {}
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Track(const Track& track, const osg::CopyOp=osg::CopyOp::SHALLOW_COPY) {}
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META_Object(osg, Track)
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typedef std::vector< osg::ref_ptr<TrackSegment> > TrackSegments;
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void addTrackSegment(TrackSegment* trackSegment) { _trackSegments.push_back(trackSegment); }
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TrackSegments& getTrackSegments() { return _trackSegments; }
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const TrackSegments& getTrackSegments() const { return _trackSegments; }
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protected:
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virtual ~Track() {}
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TrackSegments _trackSegments;
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};
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double convertTime(const std::string& timestr)
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{
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osg::notify(osg::NOTICE)<<" time = "<<timestr<<std::endl;
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return 0;
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}
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Track* readTrack(const std::string& filename)
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{
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std::string foundFilename = osgDB::findDataFile(filename);
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if (foundFilename.empty()) return 0;
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std::string ext = osgDB::getFileExtension(foundFilename);
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if (ext!="gpx") return 0;
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osgDB::XmlNode::Input input;
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input.open(foundFilename);
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input.readAllDataIntoBuffer();
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osg::ref_ptr<osgDB::XmlNode> doc = new osgDB::XmlNode;
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doc->read(input);
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osgDB::XmlNode* root = 0;
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for(osgDB::XmlNode::Children::iterator itr = doc->children.begin();
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itr != doc->children.end() && !root;
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++itr)
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{
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if ((*itr)->name=="gpx") root = itr->get();
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}
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if (!root) return 0;
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std::string latitude("lat");
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std::string longitude("lon");
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for(osgDB::XmlNode::Children::iterator itr = root->children.begin();
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itr != root->children.end();
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++itr)
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{
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if ((*itr)->name=="rte")
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{
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osg::ref_ptr<Track> track = new Track;
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track->setName(filename);
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osg::ref_ptr<TrackSegment> trackSegment = new TrackSegment;
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for(osgDB::XmlNode::Children::iterator sitr = (*itr)->children.begin();
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sitr != (*itr)->children.end();
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++sitr)
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{
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if ((*sitr)->name=="rtept" )
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{
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osgDB::XmlNode* trkpt = sitr->get();
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TrackSegment::TrackPoint point;
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bool valid = false;
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if (trkpt->properties.count(latitude)!=0)
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{
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valid = true;
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point.latitude = osg::asciiToDouble(trkpt->properties[latitude].c_str());
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}
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if (trkpt->properties.count(longitude)!=0)
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{
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valid = true;
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point.longitude = osg::asciiToDouble(trkpt->properties[longitude].c_str());
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}
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for(osgDB::XmlNode::Children::iterator pitr = trkpt->children.begin();
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pitr != trkpt->children.end();
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++pitr)
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{
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if ((*pitr)->name=="ele") point.elevation = osg::asciiToDouble((*pitr)->contents.c_str());
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else if ((*pitr)->name=="time") point.time = convertTime((*pitr)->contents);
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}
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if (valid)
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{
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osg::notify(osg::NOTICE)<<" point.latitude="<<point.latitude<<", longitude="<<point.longitude<<", elev="<<point.elevation<<", time="<<point.time<<std::endl;
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trackSegment->addTrackPoint(point);
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}
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}
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}
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if (!trackSegment->getTrackPoints().empty())
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{
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track->addTrackSegment(trackSegment.get());
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}
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return track.release();
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}
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else if ((*itr)->name=="trk")
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{
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osg::ref_ptr<Track> track = new Track;
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track->setName(filename);
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for(osgDB::XmlNode::Children::iterator citr = (*itr)->children.begin();
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citr != (*itr)->children.end();
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++citr)
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{
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if ((*citr)->name=="trkseg")
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{
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osg::ref_ptr<TrackSegment> trackSegment = new TrackSegment;
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for(osgDB::XmlNode::Children::iterator sitr = (*citr)->children.begin();
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sitr != (*citr)->children.end();
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++sitr)
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{
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if ((*sitr)->name=="trkpt" || (*sitr)->name=="rtept" )
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{
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osgDB::XmlNode* trkpt = sitr->get();
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TrackSegment::TrackPoint point;
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bool valid = false;
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if (trkpt->properties.count(latitude)!=0)
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{
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valid = true;
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point.latitude = osg::asciiToDouble(trkpt->properties[latitude].c_str());
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}
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if (trkpt->properties.count(longitude)!=0)
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{
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valid = true;
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point.longitude = osg::asciiToDouble(trkpt->properties[longitude].c_str());
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}
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for(osgDB::XmlNode::Children::iterator pitr = trkpt->children.begin();
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pitr != trkpt->children.end();
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++pitr)
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{
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if ((*pitr)->name=="ele") point.elevation = osg::asciiToDouble((*pitr)->contents.c_str());
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else if ((*pitr)->name=="time") point.time = convertTime((*pitr)->contents);
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}
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if (valid)
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{
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// osg::notify(osg::NOTICE)<<" point.latitude="<<point.latitude<<", longitude="<<point.longitude<<", elev="<<point.elevation<<", time="<<point.time<<std::endl;
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trackSegment->addTrackPoint(point);
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}
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}
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}
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if (!trackSegment->getTrackPoints().empty())
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{
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track->addTrackSegment(trackSegment.get());
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}
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}
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}
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return track.release();
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}
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}
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return 0;
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}
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TrackSegment* computeSmoothedTrackSegment(TrackSegment* ts)
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{
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if (!ts) return 0;
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const TrackSegment::TrackPoints& orig_points = ts->getTrackPoints();
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if (orig_points.size()>2)
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{
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// only do smoothing if we have more than two points.
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osg::ref_ptr<TrackSegment> new_ts = new TrackSegment;
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TrackSegment::TrackPoints& new_points = new_ts->getTrackPoints();
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new_points.resize(orig_points.size());
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new_points[0] = orig_points[0];
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new_points[orig_points.size()-1] = orig_points[orig_points.size()-1];
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for(unsigned int i=1; i<orig_points.size()-1; ++i)
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{
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new_points[i].latitude = (orig_points[i-1].latitude+orig_points[i].latitude+orig_points[i+1].latitude)/3.0;
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new_points[i].longitude = (orig_points[i-1].longitude+orig_points[i].longitude+orig_points[i+1].longitude)/3.0;
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new_points[i].elevation = (orig_points[i-1].elevation+orig_points[i].elevation+orig_points[i+1].elevation)/3.0;
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new_points[i].time = (orig_points[i-1].time+orig_points[i].time+orig_points[i+1].time)/3.0;
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}
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return new_ts.release();
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}
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else
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{
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// we have two or less points and can't do smoothing, so will just return original TrackSegment
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return ts;
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}
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}
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TrackSegment* computeAveragedSpeedTrackSegment(TrackSegment* ts)
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{
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if (!ts) return 0;
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osg::ref_ptr<osg::EllipsoidModel> em = new osg::EllipsoidModel;
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const TrackSegment::TrackPoints& orig_points = ts->getTrackPoints();
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if (orig_points.size()>2)
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{
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// only do smoothing if we have more than two points.
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osg::ref_ptr<TrackSegment> new_ts = new TrackSegment;
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// compute overall distance
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double total_distance = 0;
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for(unsigned int i=1; i<orig_points.size()-1; ++i)
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{
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osg::Vec3d point_a, point_b;
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em->convertLatLongHeightToXYZ(osg::DegreesToRadians(orig_points[i].latitude), osg::DegreesToRadians(orig_points[i].longitude), orig_points[i].elevation,
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point_a.x(), point_a.y(), point_a.z());
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em->convertLatLongHeightToXYZ(osg::DegreesToRadians(orig_points[i+1].latitude), osg::DegreesToRadians(orig_points[i+1].longitude), orig_points[i+1].elevation,
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point_b.x(), point_b.y(), point_b.z());
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total_distance += (point_b-point_a).length();
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}
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double total_time = orig_points[orig_points.size()-1].time - orig_points[0].time;
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double average_speed = total_distance/total_time;
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OSG_NOTICE<<"total_time = "<<total_time<<std::endl;
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OSG_NOTICE<<"total_distance = "<<total_distance<<std::endl;
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OSG_NOTICE<<"average_speed = "<<average_speed<<std::endl;
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TrackSegment::TrackPoints& new_points = new_ts->getTrackPoints();
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new_points.resize(orig_points.size());
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new_points[0] = orig_points[0];
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double accumulated_distance = 0.0;
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for(unsigned int i=0; i<orig_points.size()-1; ++i)
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{
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osg::Vec3d point_a, point_b;
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em->convertLatLongHeightToXYZ(osg::DegreesToRadians(orig_points[i].latitude), osg::DegreesToRadians(orig_points[i].longitude), orig_points[i].elevation,
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point_a.x(), point_a.y(), point_a.z());
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em->convertLatLongHeightToXYZ(osg::DegreesToRadians(orig_points[i+1].latitude), osg::DegreesToRadians(orig_points[i+1].longitude), orig_points[i+1].elevation,
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point_b.x(), point_b.y(), point_b.z());
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accumulated_distance += (point_b-point_a).length();
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new_points[i+1] = orig_points[i+1];
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new_points[i+1].time = accumulated_distance / average_speed;
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}
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return new_ts.release();
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}
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else
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{
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// we have two or less points and can't do smoothing, so will just return original TrackSegment
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return ts;
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}
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}
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Track* computeAveragedSpeedTrack(Track* track)
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{
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osg::ref_ptr<Track> new_track = new Track;
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
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itr != track->getTrackSegments().end();
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++itr)
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{
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new_track->addTrackSegment(computeAveragedSpeedTrackSegment(itr->get()));
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}
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return new_track.release();
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}
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Track* computeSmoothedTrack(Track* track)
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{
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osg::ref_ptr<Track> new_track = new Track;
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
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itr != track->getTrackSegments().end();
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++itr)
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{
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new_track->addTrackSegment(computeSmoothedTrackSegment(itr->get()));
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}
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return new_track.release();
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}
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osg::Node* createTrackModel(Track* track, const osg::Vec4& colour)
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{
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osg::ref_ptr<osg::EllipsoidModel> em = new osg::EllipsoidModel;
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osg::ref_ptr<osg::Geode> geode = new osg::Geode;
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
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itr != track->getTrackSegments().end();
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++itr)
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{
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const TrackSegment::TrackPoints& points = (*itr)->getTrackPoints();
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if (points.size()<2) continue;
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osg::ref_ptr<osg::Geometry> geometry = new osg::Geometry;
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osg::ref_ptr<osg::Vec3Array> vertices = new osg::Vec3Array;
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geometry->setVertexArray(vertices.get());
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vertices->resize(points.size());
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for(unsigned int i=0; i<points.size(); ++i)
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{
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osg::Vec3d point;
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em->convertLatLongHeightToXYZ(osg::DegreesToRadians(points[i].latitude), osg::DegreesToRadians(points[i].longitude), points[i].elevation,
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point.x(), point.y(), point.z());
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(*vertices)[i] = point;
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}
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osg::ref_ptr<osg::Vec4Array> colours = new osg::Vec4Array;
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colours->push_back(colour);
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geometry->setColorArray(colours.get(), osg::Array::BIND_OVERALL);
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geometry->addPrimitiveSet(new osg::DrawArrays(GL_LINE_STRIP, 0, points.size()));
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geode->addDrawable(geometry.get());
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}
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geode->getOrCreateStateSet()->setMode(GL_LIGHTING, osg::StateAttribute::OFF);
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return geode.release();
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}
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int main(int argv, char **argc)
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{
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osg::ArgumentParser arguments(&argv, argc);
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typedef std::list< osg::ref_ptr<Track> > Tracks;
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Tracks tracks;
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bool average = false;
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while (arguments.read("-a") || arguments.read("--average")) average = true;
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bool smooth = false;
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while (arguments.read("-s") || arguments.read("--smooth")) smooth = true;
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std::string outputFilename;
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while (arguments.read("-o",outputFilename)) {}
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std::string trackFilename;
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while (arguments.read("-t",trackFilename))
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{
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osg::ref_ptr<Track> track = readTrack(trackFilename);
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if (track.valid()) tracks.push_back(track.get());
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}
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osg::ref_ptr<osg::EllipsoidModel> em = new osg::EllipsoidModel;
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osg::ref_ptr<osg::Group> group = new osg::Group;
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osg::ref_ptr<osg::Node> loadedModel = osgDB::readRefNodeFiles(arguments);
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if (loadedModel.valid()) group->addChild(loadedModel);
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for(Tracks::iterator itr = tracks.begin();
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itr != tracks.end();
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++itr)
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{
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Track* track = itr->get();
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group->addChild(createTrackModel(track, osg::Vec4(1.0,1.0,1.0,1.0)));
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// smooth the track
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if (average)
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{
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
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itr != track->getTrackSegments().end();
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++itr)
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{
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*itr = computeAveragedSpeedTrackSegment(itr->get());
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}
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}
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// smooth the track
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if (smooth)
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{
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
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itr != track->getTrackSegments().end();
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++itr)
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{
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*itr = computeSmoothedTrackSegment(itr->get());
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}
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for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
|
|
itr != track->getTrackSegments().end();
|
|
++itr)
|
|
{
|
|
*itr = computeSmoothedTrackSegment(itr->get());
|
|
}
|
|
|
|
for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
|
|
itr != track->getTrackSegments().end();
|
|
++itr)
|
|
{
|
|
*itr = computeSmoothedTrackSegment(itr->get());
|
|
}
|
|
|
|
for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
|
|
itr != track->getTrackSegments().end();
|
|
++itr)
|
|
{
|
|
*itr = computeSmoothedTrackSegment(itr->get());
|
|
}
|
|
}
|
|
|
|
double totalDistance = 0.0;
|
|
double totalAscent = 0.0;
|
|
double totalDescent = 0.0;
|
|
|
|
osg::notify(osg::NOTICE)<<"Track read "<<track->getName()<<std::endl;
|
|
for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
|
|
itr != track->getTrackSegments().end();
|
|
++itr)
|
|
{
|
|
TrackSegment* ts = itr->get();
|
|
|
|
const TrackSegment::TrackPoints& points = ts->getTrackPoints();
|
|
if (points.size()>1)
|
|
{
|
|
TrackSegment::TrackPoints::iterator pitr = ts->getTrackPoints().begin();
|
|
osg::Vec3d previousPos;
|
|
double previousElevation = pitr->elevation;
|
|
em->convertLatLongHeightToXYZ(osg::DegreesToRadians(pitr->latitude), osg::DegreesToRadians(pitr->longitude), 0.0,
|
|
previousPos.x(), previousPos.y(), previousPos.z());
|
|
++pitr;
|
|
|
|
for(;
|
|
pitr != ts->getTrackPoints().end();
|
|
++pitr)
|
|
{
|
|
osg::Vec3d newPos;
|
|
double newElevation = pitr->elevation;
|
|
em->convertLatLongHeightToXYZ(osg::DegreesToRadians(pitr->latitude), osg::DegreesToRadians(pitr->longitude), 0.0,
|
|
newPos.x(), newPos.y(), newPos.z());
|
|
|
|
double distance = (newPos-previousPos).length();
|
|
|
|
totalDistance += distance;
|
|
if (newElevation>previousElevation) totalAscent += (newElevation-previousElevation);
|
|
else totalDescent += (previousElevation-newElevation);
|
|
|
|
osg::notify(osg::NOTICE)<<" distance="<<distance<<", "<<newElevation-previousElevation<<std::endl;
|
|
|
|
previousPos = newPos;
|
|
previousElevation = newElevation;
|
|
}
|
|
}
|
|
}
|
|
|
|
double metersToFeet = 1 / 0.3048;
|
|
double metersToMiles = 1.0 / 1609.344;
|
|
|
|
osg::notify(osg::NOTICE)<<"totalDistance = "<<totalDistance<<"m, "<<totalDistance*metersToMiles<<" miles"<<std::endl;
|
|
osg::notify(osg::NOTICE)<<"totalAscent = "<<totalAscent<<"m, "<<totalAscent*metersToFeet<<"ft"<<std::endl;
|
|
osg::notify(osg::NOTICE)<<"totalDescent = "<<totalDescent<<"m, "<<totalDescent*metersToFeet<<"ft"<<std::endl;
|
|
|
|
}
|
|
|
|
if (!outputFilename.empty())
|
|
{
|
|
std::ofstream fout(outputFilename.c_str());
|
|
|
|
fout<<"<?xml version=\"1.0\" encoding=\"utf-8\"?><gpx version=\"1.0\" creator=\"osggpx\" xmlns:xsi=\"http://www.w3.org/2001/XMLSchema-instance\" xmlns=\"http://www.topografix.com/GPX/1/0\" xsi:schemaLocation=\"http://www.topografix.com/GPX/1/0 http://www.topografix.com/GPX/1/0/gpx.xsd\">"<<std::endl;
|
|
|
|
for(Tracks::iterator itr = tracks.begin();
|
|
itr != tracks.end();
|
|
++itr)
|
|
{
|
|
Track* track = itr->get();
|
|
|
|
fout<<"<trk>"<<std::endl;
|
|
fout<<"<desc>The track description</desc>"<<std::endl;
|
|
for(Track::TrackSegments::iterator itr = track->getTrackSegments().begin();
|
|
itr != track->getTrackSegments().end();
|
|
++itr)
|
|
{
|
|
TrackSegment* ts = itr->get();
|
|
fout<<"<trkseg>"<<std::endl;
|
|
|
|
for(TrackSegment::TrackPoints::iterator pitr = ts->getTrackPoints().begin();
|
|
pitr != ts->getTrackPoints().end();
|
|
++pitr)
|
|
{
|
|
fout<<"<trkpt lat=\""<<pitr->latitude<<"\" lon=\""<<pitr->longitude<<"\">"<<std::endl;
|
|
fout<<"<ele>"<<pitr->elevation<<"</ele>"<<std::endl;
|
|
fout<<"<time>"<<pitr->time<<"</time>"<<std::endl;
|
|
fout<<"</trkpt>"<<std::endl;
|
|
}
|
|
|
|
fout<<"</trkseg>"<<std::endl;
|
|
|
|
}
|
|
fout<<"</trk>"<<std::endl;
|
|
}
|
|
fout<<"</gpx>"<<std::endl;
|
|
}
|
|
|
|
osgViewer::Viewer viewer(arguments);
|
|
viewer.setCameraManipulator(new osgGA::TerrainManipulator);
|
|
viewer.setSceneData(group.get());
|
|
return viewer.run();
|
|
|
|
}
|