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https://github.com/RetroShare/RetroShare.git
synced 2024-10-01 02:35:48 -04:00
improved display of tunnels in network simulator
git-svn-id: http://svn.code.sf.net/p/retroshare/code/trunk@5643 b45a01b8-16f6-495d-af2f-9b41ad6348cc
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@ -40,7 +40,7 @@ bool Network::initRandom(uint32_t nb_nodes,float connexion_probability)
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//
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for(uint32_t i=0;i<nb_nodes;++i)
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{
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int nb_friends = (int)ceil(-log(1-drand48())) ;
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int nb_friends = std::min((int)nb_nodes-1,(int)ceil(-log(1-drand48())/(1.00001-connexion_probability))) ;
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for(uint32_t j=0;j<nb_friends;++j)
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{
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@ -11,15 +11,17 @@ NetworkViewer::NetworkViewer(QWidget *parent,Network&net)
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: QGLViewer(parent),_network(net) , timerId(0)
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{
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_current_selected_node = -1 ;
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_current_displayed_node = -1 ;
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_dragging = false ;
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_nodes_need_recomputing = true ;
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_node_coords.resize(net.n_nodes()) ;
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_node_speeds.resize(net.n_nodes()) ;
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for(int i=0;i<_node_coords.size();++i)
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{
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_node_coords[i].x = drand48()*width() ;
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_node_coords[i].y = drand48()*height() ;
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_node_coords[i].x = drand48()*width()*5;
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_node_coords[i].y = drand48()*height()*5 ;
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_node_speeds[i].x = 0 ;
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_node_speeds[i].y = 0 ;
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}
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@ -30,6 +32,8 @@ NetworkViewer::NetworkViewer(QWidget *parent,Network&net)
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action_ManageHash = new QAction(QString("Manage new random hash"),this) ;
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QObject::connect(action_ManageHash,SIGNAL(triggered()),this,SLOT(actionManageHash())) ;
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setMouseTracking(true) ;
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}
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void NetworkViewer::draw()
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@ -52,6 +56,8 @@ void NetworkViewer::draw()
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// Now, draw all edges
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std::set<int> tunnel_nodes ;
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glEnable(GL_LINE_SMOOTH) ;
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glBegin(GL_LINES) ;
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@ -65,7 +71,11 @@ void NetworkViewer::draw()
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for(std::set<uint32_t>::const_iterator it(neighs.begin());it!=neighs.end();++it)
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{
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if(traffic_info.local_src.find(_network.node(*it).id())!=traffic_info.local_src.end() || traffic_info.local_dst.find(_network.node(*it).id())!=traffic_info.local_dst.end())
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{
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glColor3f(0.9f,0.4f,0.2f) ;
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tunnel_nodes.insert(i) ;
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tunnel_nodes.insert(*it) ;
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}
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else
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glColor3f(0.4f,0.4f,0.4f) ;
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@ -82,21 +92,64 @@ void NetworkViewer::draw()
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// Draw all nodes.
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//
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glEnable(GL_POINT_SMOOTH) ;
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glPointSize(20.0f) ;
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glBegin(GL_POINTS) ;
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if(_current_selected_node > -1)
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{
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glColor4f(1.0f,0.2f,0.1f,0.7f) ;
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glVertex2f(_node_coords[_current_selected_node].x, _node_coords[_current_selected_node].y) ;
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}
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glEnd() ;
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glPointSize(10.0f) ;
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glBegin(GL_POINTS) ;
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for(uint32_t i=0;i<_network.n_nodes();++i)
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{
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if((int)i == _current_selected_node)
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glColor3f(1.0f,0.2f,0.1f) ;
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else
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glColor3f(0.8f,0.8f,0.8f) ;
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float r = 0.8 ;
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float g = 0.8 ;
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float b = 0.8 ;
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if(!_network.node(i).providedHashes().empty())
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r *= 2.0, g /= 2.0, b /= 2.0f ;
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if(!_network.node(i).managedHashes().empty())
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g *= 2.0, b /= 2.0, r /= 2.0f ;
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if(tunnel_nodes.find(i) != tunnel_nodes.end() && r==0.8f && g==0.8f && b==0.8f)
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r = 0.9f, g=0.4f,b=0.2f ;
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glColor3f(r,g,b) ;
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glVertex2f(_node_coords[i].x, _node_coords[i].y) ;
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}
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glEnd() ;
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// Draw info about current node under mouse.
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//
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if(_current_displayed_node > -1)
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{
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const PeerNode& node(_network.node(_current_displayed_node)) ;
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int offset = 0 ;
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int text_height = 15 ;
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drawText(10+_node_coords[_current_displayed_node].x,offset + height()-_node_coords[_current_displayed_node].y, "Node id = " + QString::fromStdString(node.id())) ;
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offset += text_height ;
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for(std::set<TurtleFileHash>::const_iterator it(node.providedHashes().begin());it!=node.providedHashes().end();++it)
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{
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drawText(10+_node_coords[_current_displayed_node].x,offset + height()-_node_coords[_current_displayed_node].y, "Server for hash " + QString::fromStdString(*it) );
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offset += text_height ;
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}
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for(std::set<TurtleFileHash>::const_iterator it(node.managedHashes().begin());it!=node.managedHashes().end();++it)
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{
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drawText(10+_node_coords[_current_displayed_node].x,offset + height()-_node_coords[_current_displayed_node].y, "Client for hash " + QString::fromStdString(*it) ) ;
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offset += text_height ;
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}
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}
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glMatrixMode(GL_MODELVIEW) ;
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glPopMatrix() ;
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@ -222,70 +275,77 @@ void NetworkViewer::timerEvent(QTimerEvent *event)
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if(!isVisible())
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return ;
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static const int S = 256 ;
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static double *forceMap = new double[2*S*S] ;
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memset(forceMap,0,2*S*S*sizeof(double)) ;
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for(uint32_t i=0;i<_network.n_nodes();++i)
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if(_nodes_need_recomputing)
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{
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float x = S*_node_coords[i].x/width() ;
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float y = S*_node_coords[i].y/height() ;
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std::cerr << "Updating forces..."<< std::endl;
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static const int S = 256 ;
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static double *forceMap = new double[2*S*S] ;
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int i=(int)floor(x) ;
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int j=(int)floor(y) ;
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memset(forceMap,0,2*S*S*sizeof(double)) ;
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float di = x-i ;
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float dj = y-j ;
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if( i>=0 && i<S-1 && j>=0 && j<S-1)
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for(uint32_t i=0;i<_network.n_nodes();++i)
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{
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forceMap[2*(i +S*(j ))] += (1-di)*(1-dj) ;
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forceMap[2*(i+1+S*(j ))] += di *(1-dj) ;
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forceMap[2*(i +S*(j+1))] += (1-di)*dj ;
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forceMap[2*(i+1+S*(j+1))] += di *dj ;
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}
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}
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float x = S*_node_coords[i].x/width() ;
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float y = S*_node_coords[i].y/height() ;
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// compute convolution with 1/omega kernel.
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//
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convolveWithGaussian(forceMap,S,20) ;
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static float speedf=1.0f;
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int i=(int)floor(x) ;
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int j=(int)floor(y) ;
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std::vector<NodeCoord> new_coords(_node_coords) ;
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float di = x-i ;
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float dj = y-j ;
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for(uint32_t i=0;i<_network.n_nodes();++i)
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if(i != _current_selected_node || !_dragging)
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{
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float x = _node_coords[i].x ;
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float y = _node_coords[i].y ;
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calculateForces(i,forceMap,S,S,x,y,speedf,new_coords[i].x,new_coords[i].y);
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if( i>=0 && i<S-1 && j>=0 && j<S-1)
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{
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forceMap[2*(i +S*(j ))] += (1-di)*(1-dj) ;
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forceMap[2*(i+1+S*(j ))] += di *(1-dj) ;
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forceMap[2*(i +S*(j+1))] += (1-di)*dj ;
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forceMap[2*(i+1+S*(j+1))] += di *dj ;
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}
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}
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bool itemsMoved = false;
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for(uint32_t i=0;i<_node_coords.size();++i)
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{
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if( fabsf(_node_coords[i].x - new_coords[i].x) > 0.2 || fabsf(_node_coords[i].y - new_coords[i].y) > 0.2)
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itemsMoved = true;
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// compute convolution with 1/omega kernel.
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//
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convolveWithGaussian(forceMap,S,20) ;
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//std::cerr << "Old i = " << _node_coords[i].x << ", new = " << new_coords[i].x << std::endl;
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_node_coords[i] = new_coords[i] ;
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static float speedf=1.0f;
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std::vector<NodeCoord> new_coords(_node_coords) ;
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for(uint32_t i=0;i<_network.n_nodes();++i)
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if(i != _current_selected_node || !_dragging)
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{
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float x = _node_coords[i].x ;
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float y = _node_coords[i].y ;
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calculateForces(i,forceMap,S,S,x,y,speedf,new_coords[i].x,new_coords[i].y);
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}
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bool itemsMoved = false;
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for(uint32_t i=0;i<_node_coords.size();++i)
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{
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if( fabsf(_node_coords[i].x - new_coords[i].x) > 1.0 || fabsf(_node_coords[i].y - new_coords[i].y) > 1.0)
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itemsMoved = true;
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//std::cerr << "Old i = " << _node_coords[i].x << ", new = " << new_coords[i].x << std::endl;
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_node_coords[i] = new_coords[i] ;
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}
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if (!itemsMoved) {
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// killTimer(timerId);
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//#ifdef DEBUG_ELASTIC
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std::cerr << "Killing timr" << std::endl ;
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_nodes_need_recomputing = false ;
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//#endif
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timerId = 0;
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}
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else
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{
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updateGL() ;
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usleep(2000) ;
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}
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}
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if (!itemsMoved) {
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killTimer(timerId);
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//#ifdef DEBUG_ELASTIC
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std::cerr << "Killing timr" << std::endl ;
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//#endif
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timerId = 0;
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}
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else
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{
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updateGL() ;
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usleep(2000) ;
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}
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}
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@ -296,11 +356,22 @@ void NetworkViewer::mouseMoveEvent(QMouseEvent *e)
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_node_coords[_current_selected_node].x = e->x() ;
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_node_coords[_current_selected_node].y = height() - e->y() ;
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if(timerId == 0)
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timerId = startTimer(1000/25) ;
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_nodes_need_recomputing = true ;
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updateGL() ;
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}
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float x = e->x() ;
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float y = height()-e->y() ;
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_current_displayed_node = -1 ;
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for(uint32_t i=0;i<_node_coords.size();++i)
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if( pow(_node_coords[i].x-x,2)+pow(_node_coords[i].y-y,2) < 5*5)
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{
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_current_displayed_node = i;
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break ;
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}
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}
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void NetworkViewer::mouseReleaseEvent(QMouseEvent *e)
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@ -60,16 +60,19 @@ class NetworkViewer: public QGLViewer
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std::vector<NodeCoord> _node_coords ;
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std::vector<NodeCoord> _node_speeds ;
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static const float MASS_FACTOR = 7 ;
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static const float FRICTION_FACTOR = 9.8 ;
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static const float MASS_FACTOR = 10 ;
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static const float FRICTION_FACTOR = 15.8 ;
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static const float REPULSION_FACTOR = 8 ;
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static const float NODE_DISTANCE = 30.0 ;
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int timerId ;
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int _current_selected_node ;
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int _current_displayed_node ;
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bool _dragging ;
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bool _nodes_need_recomputing ;
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QAction *action_ManageHash ;
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QAction *action_ProvideHash ;
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};
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@ -17,8 +17,12 @@ int main(int argc, char *argv[])
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#endif
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argstream as(argc,argv) ;
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bool show_gui = false;
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int nb_nodes = 20 ;
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float connexion_probability = 0.2 ;
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as >> option('i',"gui",show_gui,"show gui (vs. do the pipeline automatically)")
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>> parameter('n',"nodes",nb_nodes,"number of nodes in the network")
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>> parameter('p',"connexion probability",connexion_probability,"probability that two nodes are connected (exponential law)")
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>> help() ;
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as.defaultErrorHandling() ;
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@ -27,7 +31,7 @@ int main(int argc, char *argv[])
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Network network ;
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network.initRandom(20,0.2) ;
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network.initRandom(nb_nodes,connexion_probability) ;
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rsPeers = new MonitoredRsPeers(network) ;
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