2022-12-01 11:53:46 +08:00
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var viewer;
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let fragProxy;
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var targetFloorZ;
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var elevatorSpeed;
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function launchViewer(urn) {
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var options = {
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env: 'AutodeskProduction',
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getAccessToken: getForgeToken
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};
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Autodesk.Viewing.Initializer(options, () => {
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viewer = new Autodesk.Viewing.GuiViewer3D(document.getElementById('forgeViewer'));
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2022-12-04 01:06:51 +08:00
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//viewer = new Autodesk.Viewing.Viewer3D(document.getElementById('forgeViewer'));//沒有工具列
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2022-12-01 11:53:46 +08:00
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viewer.start();
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var documentId = 'urn:' + urn;
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Autodesk.Viewing.Document.load(documentId, onDocumentLoadSuccess, onDocumentLoadFailure);
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});
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}
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function getAllLeafComponents(viewer, callback) {
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var cbCount = 0;
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var tree;
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var jsData = []
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function getLeafComponentsRec(current, parent) {
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cbCount++;
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if (tree.getChildCount(current) != 0) {
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tree.enumNodeChildren(current, function (children) {
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getLeafComponentsRec(children, current);
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}, false);
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}
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var nodeName = viewer.model.getInstanceTree().getNodeName(current)
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jsData.push({ id: current, parent: parent, text: nodeName })
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if (--cbCount == 0) callback(jsData);
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}
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viewer.getObjectTree(function (objectTree) {
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tree = objectTree;
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var rootId = tree.getRootId()
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var nodeName = viewer.model.getInstanceTree().getNodeName(rootId)
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jsData.push({ id: rootId, parent: '#', text: nodeName })
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var allLeafComponents = getLeafComponentsRec(rootId, '#');
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});
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}
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function onDocumentLoadSuccess(doc) {
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var viewables = doc.getRoot().getDefaultGeometry();
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viewer.loadDocumentNode(doc, viewables).then(i => {
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// documented loaded, any action?
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});
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viewer.addEventListener(Autodesk.Viewing.AGGREGATE_SELECTION_CHANGED_EVENT, (args) => {
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var currSelection = viewer.getSelection();
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var domElem = document.getElementById('id_printer');
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domElem.innerText = currSelection[0];
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2022-12-04 01:06:51 +08:00
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//var color = new THREE.Vector4(255 / 255, 0, 0, 1);
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//viewer.setThemingColor(751, color);
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//var color = new THREE.Vector4(0, 1, 0, 1);
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//viewer.setThemingColor(751, color);
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//var dbid = currSelection[0]; //750;
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//var it = NOP_VIEWER.model.getData().instanceTree;
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//var indexinNames = it.nodeAccess.dbIdToIndex[dbid];
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//var indexinStrings = it.nodeAccess.names[indexinNames];
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//var nodeMainString = it.nodeAccess.strings[indexinStrings];
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//var nodeSuffixString = it.nodeAccess.nameSuffixes[indexinStrings];
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//var nodeFinalName = it.getNodeName(dbid);
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//console.log("names: " + indexinNames + ", inStrings: " + indexinStrings + ", nodeMainString: " + nodeMainString + ", nodeSuffix: " + nodeSuffixString);
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//console.log("nodeFinalName: " + nodeFinalName);
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//var vp = viewer.impl.clientToViewport(event.canvasX, event.canvasY);
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//var renderer = viewer.impl.renderer();
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//var dbId = renderer.idAtPixel(vp.x, vp.y);
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//if (dbId) {
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// console.debug("Selected Id: " + dbId);
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// //viewer.select(dbId);
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// //viewer.impl.invalidate(true);
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// viewer.model.getExternalIdMapping(data => console.log(data));
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//}
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//set color
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//let nodeIdObj = 750;
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//this.viewer.setThemingColor(nodeIdObj, red, this.model);
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//const color = new THREE.Vector4(1.0, 0.0, 0.0, 0.5);
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//viewer.setThemingColor(751, color, null, true);
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var myDbid = currSelection;
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viewer.getProperties(myDbid, function (e) {
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//console.log('Entire object response ', e);
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//console.log('Properties ', e.properties);
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//foreach(item in e.properties) {
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// if (item.displayName == "【tag_id】") {
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// console.log(">> " + item.displayValue);
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// }
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//}
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e.properties.forEach(function (item) {
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if (item.displayName == "【tag_id】") {
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console.log(">> " + item.displayValue);
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}
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});
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});
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2022-12-01 11:53:46 +08:00
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});
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2022-12-04 01:06:51 +08:00
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2022-12-01 11:53:46 +08:00
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viewer.addEventListener(Autodesk.Viewing.GEOMETRY_LOADED_EVENT, function () {
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var instanceTree = viewer.model.getData().instanceTree;
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var allDbIdsStr = Object.keys(instanceTree.nodeAccess.dbIdToIndex);
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var domElem = document.getElementById('all_id');
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domElem.innerText = allDbIdsStr;
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let tree = viewer.model.getData().instanceTree;
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let nodeId = 749;//10952;
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let nodeId2 = 750;
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let nodeId3 = 751;
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tree.enumNodeFragments(nodeId, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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let fragPosition = new THREE.Vector3(0, 0, 0);// 一樓0 二樓15 三樓 26
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fragProxy.position = fragPosition
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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//------------ add -------------
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tree.enumNodeFragments(nodeId2, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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let fragPosition = new THREE.Vector3(0, 0, 0);// 一樓0 二樓15 三樓 26
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fragProxy.position = fragPosition
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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tree.enumNodeFragments(nodeId3, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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let fragPosition = new THREE.Vector3(0, 0, 0);// 一樓0 二樓15 三樓 26
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fragProxy.position = fragPosition
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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});
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2022-12-04 01:06:51 +08:00
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//NOP_VIEWER.getProperties(NOP_VIEWER.getSelection(), data => console.log(data));
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2022-12-01 11:53:46 +08:00
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}
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2022-12-04 01:06:51 +08:00
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2022-12-01 11:53:46 +08:00
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function setElevatorFloor(floor) {
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if (floor == 0)
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targetFloorZ = 0;
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else if (floor == 1)
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targetFloorZ = 14.6;// 15;
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else if (floor == 2)
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targetFloorZ = 24.6;// 26;
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else if (floor == 3)
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targetFloorZ = 34.6;
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else if (floor == 4)
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targetFloorZ = 44.6;
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else if (floor == 5)
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targetFloorZ = 54.6;
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else if (floor == 6)
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targetFloorZ = 64.6;
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else if (floor == 7)
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targetFloorZ = 74.6;
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else if (floor == 8)
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targetFloorZ = 84.6;
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else if (floor == 9)
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targetFloorZ = 94.6;
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else if (floor == 10)
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targetFloorZ = 104.6;
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else if (floor == 11)
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targetFloorZ = 114.6;
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else if (floor == 12)
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targetFloorZ = 124.6;
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else if (floor == -1)
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targetFloorZ = -13;
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}
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function setElevatorSpeed(speed) { //0.01 ~ 1
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elevatorSpeed = speed;
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}
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function movElevator() {
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2022-12-04 01:06:51 +08:00
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let tree = viewer.model.getData().instanceTree;//三組:(749,750,751),(755,756,757),(761,762,763)
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2022-12-01 11:53:46 +08:00
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let nodeId = 749; //10952;
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let nodeId2 = 750;
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let nodeId3 = 751;
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let fragProxyZ = 0;
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var movStatus = 0; // 0=no 1=up 2=down
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2022-12-04 01:06:51 +08:00
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changeColor(nodeId3);
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2022-12-01 11:53:46 +08:00
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if (fragProxy.position.z > targetFloorZ) {
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movStatus = 2
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}
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else if (fragProxy.position.z < targetFloorZ) {
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movStatus = 1
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}
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if (movStatus == 0) {
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return;
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}
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tree.enumNodeFragments(nodeId, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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//let fragPosition = new THREE.Vector3(0, 0, 15);// 一樓0 二樓15 三樓 26
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if (movStatus == 2) {
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fragProxy.position.z -= elevatorSpeed;
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}
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else if (movStatus == 1) {
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fragProxy.position.z += elevatorSpeed;
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}
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fragProxyZ = fragProxy.position.z;
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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tree.enumNodeFragments(nodeId2, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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//let fragPosition = new THREE.Vector3(0, 0, 15);// 一樓0 二樓15 三樓 26
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if (movStatus == 2) {
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fragProxy.position.z -= elevatorSpeed;
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}
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else if (movStatus == 1) {
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fragProxy.position.z += elevatorSpeed;
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}
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fragProxyZ = fragProxy.position.z;
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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tree.enumNodeFragments(nodeId3, function (frag) {
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fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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fragProxy.getAnimTransform();
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//let fragPosition = new THREE.Vector3(0, 0, 15);// 一樓0 二樓15 三樓 26
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if (movStatus == 2) {
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fragProxy.position.z -= elevatorSpeed;
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}
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else if (movStatus == 1) {
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fragProxy.position.z += elevatorSpeed;
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}
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fragProxyZ = fragProxy.position.z;
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fragProxy.updateAnimTransform()
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});
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viewer.impl.sceneUpdated(true);
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if (movStatus == 2) {
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if (fragProxyZ >= targetFloorZ) {
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requestAnimationFrame(movElevator);
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}
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2022-12-04 01:06:51 +08:00
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else {
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hideColor(nodeId3);
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}
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2022-12-01 11:53:46 +08:00
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}
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else if (movStatus == 1) {
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if (fragProxyZ <= targetFloorZ) {
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requestAnimationFrame(movElevator);
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}
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2022-12-04 01:06:51 +08:00
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else {
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hideColor(nodeId3);
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}
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2022-12-01 11:53:46 +08:00
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}
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//let fragPosition = new THREE.Vector3(position);// 一樓0 二樓15 三樓 26
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//fragProxy.position = fragPosition;
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//fragProxy.updateAnimTransform();
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//viewer.impl.sceneUpdated(true);
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}
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2022-12-04 01:06:51 +08:00
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function changeColor(nodeId) {
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var color = new THREE.Vector4(0, 1, 0, 1);
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viewer.setThemingColor(nodeId, color);
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}
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function hideColor(nodeId) {
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var color = new THREE.Vector4(0, 1, 0, 0);
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viewer.setThemingColor(nodeId, color);
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}
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2022-12-01 11:53:46 +08:00
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//function movElevator() {
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// let tree = viewer.model.getData().instanceTree;
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// let nodeId = 750;// 10952;
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// let fragProxyZ = 0;
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// var movStatus = 0; // 0=no 1=up 2=down
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// if (fragProxy.position.z > targetFloorZ) {
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// movStatus = 2
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// }
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// else if (fragProxy.position.z < targetFloorZ) {
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// movStatus = 1
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// }
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// if (movStatus == 0) {
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// return;
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// }
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// tree.enumNodeFragments(nodeId, function (frag) {
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// fragProxy = viewer.impl.getFragmentProxy(viewer.model, frag);
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// fragProxy.getAnimTransform();
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// //let fragPosition = new THREE.Vector3(0, 0, 15);// 一樓0 二樓15 三樓 26
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// if (movStatus == 2) {
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// fragProxy.position.z -= elevatorSpeed;
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// }
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// else if (movStatus == 1) {
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// fragProxy.position.z += elevatorSpeed;
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// }
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// fragProxyZ = fragProxy.position.z;
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// fragProxy.updateAnimTransform()
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// });
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// viewer.impl.sceneUpdated(true);
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// if (movStatus == 2) {
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// if (fragProxyZ >= targetFloorZ) {
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// requestAnimationFrame(movElevator);
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// }
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// }
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// else if (movStatus == 1) {
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// if (fragProxyZ <= targetFloorZ) {
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// requestAnimationFrame(movElevator);
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// }
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// }
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// //let fragPosition = new THREE.Vector3(position);// 一樓0 二樓15 三樓 26
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// //fragProxy.position = fragPosition;
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// //fragProxy.updateAnimTransform();
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// //viewer.impl.sceneUpdated(true);
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//}
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function getAllDbIds(viewer) {
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var instanceTree = viewer.model.getData().instanceTree;
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var allDbIdsStr = Object.keys(instanceTree.nodeAccess.dbIdToIndex);
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return allDbIdsStr.map(function (id) { return parseInt(id) });
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}
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2022-12-04 01:06:51 +08:00
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//釋放viewer
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function ReleaseViewer() {
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viewer.finish();
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viewer = null;
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Autodesk.Viewing.shutdown();
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}
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//擴展類 刪除添加的所有DOM元素和事件
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//ToolbarExtension.prototype.unload = function () {
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// if (this.subToolbar) {
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// this.viewer.toolbar.removeControl(this.subToolbar);
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// this.subToolbar = null;
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// }
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//};
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// ---- 模型剖面 ----
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function getCutPlaneParam(idx, n) {
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if (idx < 0 || !n) return;
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const level = this.levels[idx];
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if (!level) return;
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//const precision = Autodesk.Viewing.Private.calculatePrecision( level.elevation );
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const model = this.viewer.model;
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const globalOffset = model.getData().globalOffset;
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const units = model.getUnitString();
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const elevRaw = Autodesk.Viewing.Private.convertUnits('ft', units, 1, level.elevation);
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let d = elevRaw - globalOffset.z - 0.5;
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if (n == 1)
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d = -1 * d;
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return new THREE.Vector4(0, 0, n, d);
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}
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function onButtonClicked() {
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const upperSelector = document.getElementById('adn-upper-lvl-selector');
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const lowerSelector = document.getElementById('adn-lower-lvl-selector');
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if (!upperSelector || !lowerSelector)
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return;
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const upperIdx = upperSelector.selectedIndex;
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const upperCutPlaneParam = this.getCutPlaneParam(upperIdx, 1);
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const lowerIdx = lowerSelector.selectedIndex;
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const lowerCutPlaneParam = this.getCutPlaneParam(lowerIdx, -1);
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this.viewer.setCutPlanes([upperCutPlaneParam, lowerCutPlaneParam]);
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}
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function displayCuttedPlane() {
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}
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2022-12-01 11:53:46 +08:00
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/**
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* Autodesk.Viewing.Document.load() failuire callback.
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*/
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function onDocumentLoadFailure(viewerErrorCode) {
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console.error("onDocumentLoadFailure() - errorCode:" + viewerErrorCode);
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}
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function getForgeToken(callback) {
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fetch(baseApiUrl + '/api/forge/oauth/token').then(res => {
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res.json().then(data => {
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callback(data.dictionary.access_token, data.dictionary.expires_in);
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});
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});
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//callback("eyJhbGciOiJSUzI1NiIsImtpZCI6IlU3c0dGRldUTzlBekNhSzBqZURRM2dQZXBURVdWN2VhIn0.eyJzY29wZSI6WyJkYXRhOndyaXRlIiwiZGF0YTpyZWFkIiwiYnVja2V0OnJlYWQiLCJidWNrZXQ6dXBkYXRlIiwiYnVja2V0OmNyZWF0ZSJdLCJjbGllbnRfaWQiOiJUQTNocXNGZnpRYk5PVVhLcGxkS1VLU2V3NFNKMjF3NSIsImF1ZCI6Imh0dHBzOi8vYXV0b2Rlc2suY29tL2F1ZC9hand0ZXhwNjAiLCJqdGkiOiJiemxzWE5qWElvZ2R1UjUzTUJkdlhrTTNTT01qeVB1bHJrMmdTVWJudGNTeDg1b01kRG1xejg3Z05jenJkRzhpIiwiZXhwIjoxNjY4MTgzMDM2fQ.VU3qLwTJ9nlXnomKCdk4y5UcgszGEO_zlvE7w5mWWajeBMwKLo-zw7LJEqUEajRksvssppR9SbVsjLSx-vDVc3DRhCo3jYTWKPT1T3wQrlkOSqLeIrAdnKdBDNBWKgrGJt_xcmXc3dZ3XNKf9L_F6Ex808rUlo6cem1mcPpKl1jCBDqKu1mAX7aDtZ65TTQZbGGhbG4HdnET-d1i5w4LunGN11UAHhDUW3n0SWWIBL27PiiUQONZttajhD5st6IngYLcjr93BYVyJmDF7-wm4WZlHSw2OnXIfbJcFXEd83uVv_Rej4UXjzZ0e6kHwzc2nvGvKSIFu3Nt7CabdR8CkA", 3599);
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}
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async function loadHeatmaps(model) {
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const dataVizExtn = await viewer.loadExtension("Autodesk.DataVisualization");
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// Given a model loaded from Forge
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const structureInfo = new Autodesk.DataVisualization.Core.ModelStructureInfo(model);
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const devices = [
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{
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id: "Oficina 6",
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name: "Oficina-",
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position: { x: 22.475382737884104, y: 7.4884431474006163, z: 3.0 },
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sensorTypes: ["temperature", "humidity"]
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}
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];
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var offset = Autodesk.viewer.model.getGlobalOffset();
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removeOffset(devices[0], offset)
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// Generates `SurfaceShadingData` after assigning each device to a room.
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const shadingData = await Autodesk.structureInfo.generateSurfaceShadingData(devices);
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// Use the resulting shading data to generate heatmap from.
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await dataVizExtn.setupSurfaceShading(model, shadingData);
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// Register color stops for the heatmap. Along with the normalized sensor value
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// in the range of [0.0, 1.0], `renderSurfaceShading` will interpolate the final
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// heatmap color based on these specified colors.
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const sensorColors = [0x0000ff, 0x00ff00, 0xffff00, 0xff0000];
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// Set heatmap colors for temperature
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const sensorType = "temperature";
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dataVizExtn.registerSurfaceShadingColors(sensorType, sensorColors);
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// Function that provides sensor value in the range of [0.0, 1.0]
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function getSensorValue(surfaceShadingPoint, sensorType) {
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// The `SurfaceShadingPoint.id` property matches one of the identifiers passed
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// to `generateSurfaceShadingData` function. In our case above, this will either
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// be "cafeteria-entrace-01" or "cafeteria-exit-01".
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const deviceId = surfaceShadingPoint.id;
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// Read the sensor data, along with its possible value range
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let sensorValue = readSensorValue(deviceId, sensorType);
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const maxSensorValue = getMaxSensorValue(sensorType);
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const minSensorValue = getMinSensorValue(sensorType);
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// Normalize sensor value to [0, 1.0]
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sensorValue = (sensorValue - minSensorValue) / (maxSensorValue - minSensorValue);
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return clamp(sensorValue, 0.0, 1.0);
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}
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// This value can also be a room instead of a floor
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const floorName = "01 - Entry Level";
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dataVizExtn.renderSurfaceShading(floorName, sensorType, getSensorValue);
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2022-12-04 01:06:51 +08:00
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2022-12-01 11:53:46 +08:00
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}
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