#include GraphDisplayerCanvas::GraphDisplayerCanvas(Graph & gr, CoordinatesMap & cm, MapStorage & ms):g(gr),nodesmap(g),edgesmap(g),edgetextmap(g),displayed_graph(*(root()), 0, 0),mapstorage(ms),isbutton(false),active_item(NULL) { for (EdgeIt i(g); i!=INVALID; ++i) { Gnome::Canvas::Points coos; coos.push_back(Gnome::Art::Point(cm[g.source(i)].x,cm[g.source(i)].y)); coos.push_back(Gnome::Art::Point(cm[g.target(i)].x,cm[g.target(i)].y)); edgesmap[i]=new Gnome::Canvas::Line(displayed_graph, coos); *(edgesmap[i]) << Gnome::Canvas::Properties::fill_color("green"); edgesmap[i]->property_width_pixels().set_value(10); double x1, x2, y1, y2; edgesmap[i]->get_bounds(x1, y1, x2, y2); edgetextmap[i]=new Gnome::Canvas::Text(displayed_graph,(x1+x2)/2, (y1+y2)/2, ""); edgetextmap[i]->property_fill_color().set_value("black"); } NodeIt i(g); int maxx=0, maxy=0, minx=(int)cm[i].x, miny=(int)cm[i].y; for (; i!=INVALID; ++i) { if(cm[i].x>maxx)maxx=(int)cm[i].x; if(cm[i].y>maxy)maxy=(int)cm[i].y; if(cm[i].xsignal_event().connect(sigc::bind(sigc::mem_fun(*this, &GraphDisplayerCanvas::event_handler),i)); } double biggest_x=(abs(maxx)>abs(minx))?(abs(maxx)+80):(abs(minx)+80); double biggest_y=(abs(maxy)>abs(miny))?(abs(maxy)+80):(abs(miny)+80); set_pixels_per_unit((biggest_x>biggest_y)?(WIN_WIDTH/biggest_x/2):(WIN_HEIGHT/biggest_y/2)); std::cout< id(g); Graph::NodeMap xc(g); Graph::NodeMap yc(g); int j=1; for (NodeIt i(g); i!=INVALID; ++i) { double x1,y1,x2,y2; nodesmap[i]->get_bounds(x1, y1, x2, y2); id[i]=j++; xc[i]=(x1+x2)/2; yc[i]=(y1+y2)/2; } GraphWriter writer(std::cout,g); writer.writeNodeMap("id", id); writer.writeNodeMap("coordinates_x", xc); writer.writeNodeMap("coordinates_y", yc); writer.run(); } int GraphDisplayerCanvas::changeLineWidth (std::string mapname) { for (EdgeIt i(g); i!=INVALID; ++i) { int w=(int)(*(mapstorage.edgemap_storage)[mapname])[i]; edgesmap[i]->property_width_pixels().set_value(w); } return 0; }; int GraphDisplayerCanvas::changeColor (std::string mapname) { for (EdgeIt i(g); i!=INVALID; ++i) { double w=(*(mapstorage.edgemap_storage)[mapname])[i]; double max=mapstorage.maxOfEdgeMap(mapname); double min=mapstorage.minOfEdgeMap(mapname); //std::cout<property_fill_color_gdk().set_value(color); } return 0; }; int GraphDisplayerCanvas::changeText (std::string mapname) { for (EdgeIt i(g); i!=INVALID; ++i) { if(mapname!="Text") { double number=(*(mapstorage.edgemap_storage)[mapname])[i]; int length=(int)(floor(log(number)/log(10)))+1; int maxpos=(int)(pow(10,length-1)); int strl=length+1+RANGE; char * str=new char[strl]; str[length]='.'; str[strl]='\0'; for(int j=0;jproperty_text().set_value(str); } else { edgetextmap[i]->property_text().set_value(""); } } return 0; }; int GraphDisplayerCanvas::rezoom () { double x1, x2, y1, y2; int x,y; NodeIt i(g); nodesmap[i]->get_bounds(x1, y1, x2, y2); x=(int)((x1+x2)/2); y=(int)((y1+y2)/2); int maxx=0, maxy=0, minx=(int)x, miny=(int)y; for (; i!=INVALID; ++i) { nodesmap[i]->get_bounds(x1, y1, x2, y2); x=(int)((x1+x2)/2); y=(int)((y1+y2)/2); if(x>maxx)maxx=x; if(y>maxy)maxy=y; if(xabs(minx))?(abs(maxx)+80):(abs(minx)+80); double biggest_y=(abs(maxy)>abs(miny))?(abs(maxy)+80):(abs(miny)+80); set_pixels_per_unit((biggest_x-WIN_WIDTH>biggest_y-WIN_HEIGHT)?(WIN_WIDTH/biggest_x/2):(WIN_HEIGHT/biggest_y/2)); return 0; }; ///This function moves only one node of displayed_graph, ///but recalculate the location of weight point, ///and also redraw the sides of the planefigure. bool GraphDisplayerCanvas::event_handler(GdkEvent* e, Node n) { switch(e->type) { case GDK_BUTTON_PRESS: clicked_x=e->button.x; clicked_y=e->button.y; active_item=(get_item_at(e->button.x, e->button.y)); isbutton=true; break; case GDK_BUTTON_RELEASE: isbutton=false; active_item=NULL; break; case GDK_MOTION_NOTIFY: if(isbutton) { double dx=e->motion.x-clicked_x; double dy=e->motion.y-clicked_y; active_item->move(dx, dy); clicked_x=e->motion.x; clicked_y=e->motion.y; EdgeIt e; g.firstOut(e,n); for(;e!=INVALID;g.nextOut(e)) { Gnome::Canvas::Points coos; double x1, x2, y1, y2; nodesmap[g.source(e)]->get_bounds(x1, y1, x2, y2); coos.push_back(Gnome::Art::Point((x1+x2)/2,(y1+y2)/2)); nodesmap[g.target(e)]->get_bounds(x1, y1, x2, y2); coos.push_back(Gnome::Art::Point((x1+x2)/2,(y1+y2)/2)); edgesmap[e]->property_points().set_value(coos); edgesmap[e]->get_bounds(x1, y1, x2, y2); edgetextmap[e]->property_x().set_value((x1+x2)/2); edgetextmap[e]->property_y().set_value((y1+y2)/2); } g.firstIn(e,n); for(;e!=INVALID;g.nextIn(e)) { Gnome::Canvas::Points coos; double x1, x2, y1, y2; nodesmap[g.source(e)]->get_bounds(x1, y1, x2, y2); coos.push_back(Gnome::Art::Point((x1+x2)/2,(y1+y2)/2)); nodesmap[g.target(e)]->get_bounds(x1, y1, x2, y2); coos.push_back(Gnome::Art::Point((x1+x2)/2,(y1+y2)/2)); edgesmap[e]->property_points().set_value(coos); edgesmap[e]->get_bounds(x1, y1, x2, y2); edgetextmap[e]->property_x().set_value((x1+x2)/2); edgetextmap[e]->property_y().set_value((y1+y2)/2); } } default: break; } return true; } bool GraphDisplayerCanvas::on_expose_event(GdkEventExpose *event) { Gnome::Canvas::CanvasAA::on_expose_event(event); //usleep(10000); //rezoom(); return true; }