// NOCOMPILE // this example uses topolis and toastr for which we don't have an externs file. import Feature from '../src/ol/Feature.js'; import Map from '../src/ol/Map.js'; import View from '../src/ol/View.js'; import Point from '../src/ol/geom/Point.js'; import LineString from '../src/ol/geom/LineString.js'; import Polygon from '../src/ol/geom/Polygon.js'; import Draw from '../src/ol/interaction/Draw.js'; import Snap from '../src/ol/interaction/Snap.js'; import TileLayer from '../src/ol/layer/Tile.js'; import VectorLayer from '../src/ol/layer/Vector.js'; import OSM from '../src/ol/source/OSM.js'; import VectorSource from '../src/ol/source/Vector.js'; import Style from '../src/ol/style/Style.js'; import Stroke from '../src/ol/style/Stroke.js'; import Fill from '../src/ol/style/Fill.js'; import CircleStyle from '../src/ol/style/Circle.js'; import Text from '../src/ol/style/Text.js'; import MousePosition from '../src/ol/control/MousePosition.js'; const raster = new TileLayer({ source: new OSM() }); const nodes = new VectorSource({wrapX: false}); const nodesLayer = new VectorLayer({ source: nodes, style: function(f) { const style = new Style({ image: new CircleStyle({ radius: 8, fill: new Fill({color: 'rgba(255, 0, 0, 0.2)'}), stroke: new Stroke({color: 'red', width: 1}) }), text: new Text({ text: f.get('node').id.toString(), fill: new Fill({color: 'red'}), stroke: new Stroke({ color: 'white', width: 3 }) }) }); return [style]; } }); const edges = new VectorSource({wrapX: false}); const edgesLayer = new VectorLayer({ source: edges, style: function(f) { const style = new Style({ stroke: new Stroke({ color: 'blue', width: 1 }), text: new Text({ text: f.get('edge').id.toString(), fill: new Fill({color: 'blue'}), stroke: new Stroke({ color: 'white', width: 2 }) }) }); return [style]; } }); const faces = new VectorSource({wrapX: false}); const facesLayer = new VectorLayer({ source: faces, style: function(f) { const style = new Style({ stroke: new Stroke({ color: 'black', width: 1 }), fill: new Fill({ color: 'rgba(0, 255, 0, 0.2)' }), text: new Text({ font: 'bold 12px sans-serif', text: f.get('face').id.toString(), fill: new Fill({color: 'green'}), stroke: new Stroke({ color: 'white', width: 2 }) }) }); return [style]; } }); const map = new Map({ layers: [raster, facesLayer, edgesLayer, nodesLayer], target: 'map', view: new View({ center: [-11000000, 4600000], zoom: 16 }) }); const topo = topolis.createTopology(); topo.on('addnode', nodeToFeature); topo.on('removenode', function(e) { removeElementFeature(nodes, e); }); topo.on('addedge', edgeToFeature); topo.on('modedge', function(e) { const feature = edges.getFeatureById(e.id); feature.setGeometry(new LineString(e.coordinates)); }); topo.on('removeedge', function(e) { removeElementFeature(edges, e); }); topo.on('addface', faceToFeature); topo.on('removeface', function(e) { removeElementFeature(faces, e); }); function removeElementFeature(source, element) { const feature = source.getFeatureById(element.id); source.removeFeature(feature); } function nodeToFeature(node) { const feature = new Feature({ geometry: new Point(node.coordinate), node: node }); feature.setId(node.id); nodes.addFeature(feature); } function edgeToFeature(edge) { const feature = new Feature({ geometry: new LineString(edge.coordinates), edge: edge }); feature.setId(edge.id); edges.addFeature(feature); } function faceToFeature(face) { const coordinates = topo.getFaceGeometry(face); const feature = new Feature({ geometry: new Polygon(coordinates), face: face }); feature.setId(face.id); faces.addFeature(feature); } function createNode(topo, coord) { let node; const existingEdge = topo.getEdgeByPoint(coord, 5)[0]; if (existingEdge) { node = topo.modEdgeSplit(existingEdge, coord); } else { node = topo.addIsoNode(coord); } return node; } function onDrawend(e) { const edgeGeom = e.feature.getGeometry().getCoordinates(); const startCoord = edgeGeom[0]; const endCoord = edgeGeom[edgeGeom.length - 1]; let start, end; try { start = topo.getNodeByPoint(startCoord); end = topo.getNodeByPoint(endCoord); const edgesAtStart = topo.getEdgeByPoint(startCoord, 5); const edgesAtEnd = topo.getEdgeByPoint(endCoord, 5); const crossing = topo.getEdgesByLine(edgeGeom); if (crossing.length === 1 && !start && !end && edgesAtStart.length === 0 && edgesAtEnd.length === 0) { topo.remEdgeNewFace(crossing[0]); start = crossing[0].start; if (start.face) { topo.removeIsoNode(start); } end = crossing[0].end; if (end.face) { topo.removeIsoNode(end); } return; } if (!start) { start = createNode(topo, startCoord); edgeGeom[0] = start.coordinate; } if (!end) { end = createNode(topo, endCoord); edgeGeom[edgeGeom.length - 1] = end.coordinate; } topo.addEdgeNewFaces(start, end, edgeGeom); } catch (e) { toastr.warning(e.toString()); } } const draw = new Draw({ type: 'LineString' }); draw.on('drawend', onDrawend); map.addInteraction(draw); const snap = new Snap({ source: edges }); map.addInteraction(snap); map.addControl(new MousePosition());