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function _typeof(o) { "@babel/helpers - typeof"; return _typeof = "function" == typeof Symbol && "symbol" == typeof Symbol.iterator ? function (o) { return typeof o; } : function (o) { return o && "function" == typeof Symbol && o.constructor === Symbol && o !== Symbol.prototype ? "symbol" : typeof o; }, _typeof(o); } function _toConsumableArray(r) { return _arrayWithoutHoles(r) || _iterableToArray(r) || _unsupportedIterableToArray(r) || _nonIterableSpread(); } function _nonIterableSpread() { throw new TypeError("Invalid attempt to spread non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } function _iterableToArray(r) { if ("undefined" != typeof Symbol && null != r[Symbol.iterator] || null != r["@@iterator"]) return Array.from(r); } function _arrayWithoutHoles(r) { if (Array.isArray(r)) return _arrayLikeToArray(r); } function _slicedToArray(r, e) { return _arrayWithHoles(r) || _iterableToArrayLimit(r, e) || _unsupportedIterableToArray(r, e) || _nonIterableRest(); } function _nonIterableRest() { throw new TypeError("Invalid attempt to destructure non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } function _unsupportedIterableToArray(r, a) { if (r) { if ("string" == typeof r) return _arrayLikeToArray(r, a); var t = {}.toString.call(r).slice(8, -1); return "Object" === t && r.constructor && (t = r.constructor.name), "Map" === t || "Set" === t ? Array.from(r) : "Arguments" === t || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(t) ? _arrayLikeToArray(r, a) : void 0; } } function _arrayLikeToArray(r, a) { (null == a || a > r.length) && (a = r.length); for (var e = 0, n = Array(a); e < a; e++) n[e] = r[e]; return n; } function _iterableToArrayLimit(r, l) { var t = null == r ? null : "undefined" != typeof Symbol && r[Symbol.iterator] || r["@@iterator"]; if (null != t) { var e, n, i, u, a = [], f = !0, o = !1; try { if (i = (t = t.call(r)).next, 0 === l) { if (Object(t) !== t) return; f = !1; } else for (; !(f = (e = i.call(t)).done) && (a.push(e.value), a.length !== l); f = !0); } catch (r) { o = !0, n = r; } finally { try { if (!f && null != t["return"] && (u = t["return"](), Object(u) !== u)) return; } finally { if (o) throw n; } } return a; } } function _arrayWithHoles(r) { if (Array.isArray(r)) return r; } function _classCallCheck(a, n) { if (!(a instanceof n)) throw new TypeError("Cannot call a class as a function"); } function _defineProperties(e, r) { for (var t = 0; t < r.length; t++) { var o = r[t]; o.enumerable = o.enumerable || !1, o.configurable = !0, "value" in o && (o.writable = !0), Object.defineProperty(e, _toPropertyKey(o.key), o); } } function _createClass(e, r, t) { return r && _defineProperties(e.prototype, r), t && _defineProperties(e, t), Object.defineProperty(e, "prototype", { writable: !1 }), e; } function _callSuper(t, o, e) { return o = _getPrototypeOf(o), _possibleConstructorReturn(t, _isNativeReflectConstruct() ? Reflect.construct(o, e || [], _getPrototypeOf(t).constructor) : o.apply(t, e)); } function _possibleConstructorReturn(t, e) { if (e && ("object" == _typeof(e) || "function" == typeof e)) return e; if (void 0 !== e) throw new TypeError("Derived constructors may only return object or undefined"); return _assertThisInitialized(t); } function _assertThisInitialized(e) { if (void 0 === e) throw new ReferenceError("this hasn't been initialised - super() hasn't been called"); return e; } function _isNativeReflectConstruct() { try { var t = !Boolean.prototype.valueOf.call(Reflect.construct(Boolean, [], function () {})); } catch (t) {} return (_isNativeReflectConstruct = function _isNativeReflectConstruct() { return !!t; })(); } function _getPrototypeOf(t) { return _getPrototypeOf = Object.setPrototypeOf ? Object.getPrototypeOf.bind() : function (t) { return t.__proto__ || Object.getPrototypeOf(t); }, _getPrototypeOf(t); } function _inherits(t, e) { if ("function" != typeof e && null !== e) throw new TypeError("Super expression must either be null or a function"); t.prototype = Object.create(e && e.prototype, { constructor: { value: t, writable: !0, configurable: !0 } }), Object.defineProperty(t, "prototype", { writable: !1 }), e && _setPrototypeOf(t, e); } function _setPrototypeOf(t, e) { return _setPrototypeOf = Object.setPrototypeOf ? Object.setPrototypeOf.bind() : function (t, e) { return t.__proto__ = e, t; }, _setPrototypeOf(t, e); } function _defineProperty(e, r, t) { return (r = _toPropertyKey(r)) in e ? Object.defineProperty(e, r, { value: t, enumerable: !0, configurable: !0, writable: !0 }) : e[r] = t, e; } function _toPropertyKey(t) { var i = _toPrimitive(t, "string"); return "symbol" == _typeof(i) ? i : i + ""; } function _toPrimitive(t, r) { if ("object" != _typeof(t) || !t) return t; var e = t[Symbol.toPrimitive]; if (void 0 !== e) { var i = e.call(t, r || "default"); if ("object" != _typeof(i)) return i; throw new TypeError("@@toPrimitive must return a primitive value."); } return ("string" === r ? String : Number)(t); } /** * Copyright 2024 Sourcepole AG * All rights reserved. * * This source code is licensed under the BSD-style license found in the * LICENSE file in the root directory of this source tree. */ import React from 'react'; import { connect } from 'react-redux'; import axios from 'axios'; import isEmpty from 'lodash.isempty'; import PropTypes from 'prop-types'; import { BufferGeometry, Float32BufferAttribute, Mesh, MeshStandardMaterial, Raycaster, Vector2 } from 'three'; import ResizeableWindow from '../../components/ResizeableWindow'; import { TileMeshHelper } from '../../components/map3d/utils/MiscUtils3D'; import LocaleUtils from '../../utils/LocaleUtils'; import '../../components/style/IdentifyViewer.css'; /** * Query attributes of objects in the 3D map. */ var Identify3D = /*#__PURE__*/function (_React$Component) { function Identify3D() { var _this; _classCallCheck(this, Identify3D); for (var _len = arguments.length, args = new Array(_len), _key = 0; _key < _len; _key++) { args[_key] = arguments[_key]; } _this = _callSuper(this, Identify3D, [].concat(args)); _defineProperty(_this, "state", { pickAttrs: null }); _defineProperty(_this, "clear", function () { _this.setState({ pickAttrs: null }); _this.props.sceneContext.removeSceneObject("__identify3d_highlight"); }); _defineProperty(_this, "identifyOnRelease", function (ev) { if (ev.button !== 0) { return; } ev.view.addEventListener('pointerup', _this.identify, { once: true }); ev.view.addEventListener('pointermove', function () { ev.view.removeEventListener('pointerup', _this.identify); }, { once: true }); }); _defineProperty(_this, "identify", function (ev) { if (_this.props.identifyEnabled !== true) { return; } _this.clear(); // Setup raycaster var raycaster = new Raycaster(); raycaster.firstHitOnly = true; var camera = _this.props.sceneContext.scene.view.camera; var rect = ev.target.getBoundingClientRect(); var x = (ev.clientX - rect.left) / rect.width * 2 - 1; var y = -((ev.clientY - rect.top) / rect.height) * 2 + 1; raycaster.setFromCamera(new Vector2(x, y), camera); var picks = []; Object.entries(_this.props.sceneContext.sceneObjects).forEach(function (_ref) { var _object$tiles; var _ref2 = _slicedToArray(_ref, 2), objId = _ref2[0], options = _ref2[1]; if (!options.layertree || !options.visibility) { return; } var object = _this.props.sceneContext.getSceneObject(objId); if ((_object$tiles = object.tiles) !== null && _object$tiles !== void 0 && _object$tiles.raycast) { var intersections = []; object.tiles.raycast(raycaster, intersections); intersections.forEach(function (entry) { entry.isTilePick = true; }); picks.push.apply(picks, intersections); } else { picks.push.apply(picks, _toConsumableArray(raycaster.intersectObjects([object], true))); } }); picks.sort(function (a, b) { return a.distance - b.distance; }); if (isEmpty(picks)) { return; } else if (picks[0].isTilePick) { _this.identifyTilePick(picks[0]); } else { _this.identifyObjectPick(picks[0]); } }); _defineProperty(_this, "identifyTilePick", function (pick) { var posAttr = pick.object.geometry.getAttribute('position'); var norAttr = pick.object.geometry.getAttribute('normal'); var helper = new TileMeshHelper(pick.object); if (!helper.isValid()) { return; } var pickFeatureId = helper.getFeatureId(pick.face); var featureAttrs = helper.getFeatureProperties(pickFeatureId); // Extract feature geometry var pickPosition = []; var pickNormal = []; helper.forEachFeatureTriangle(pickFeatureId, function (i0, i1, i2) { pickPosition.push(posAttr.getX(i0), posAttr.getY(i0), posAttr.getZ(i0)); pickPosition.push(posAttr.getX(i1), posAttr.getY(i1), posAttr.getZ(i1)); pickPosition.push(posAttr.getX(i2), posAttr.getY(i2), posAttr.getZ(i2)); pickNormal.push(norAttr.getX(i0), norAttr.getY(i0), norAttr.getZ(i0)); pickNormal.push(norAttr.getX(i1), norAttr.getY(i1), norAttr.getZ(i1)); pickNormal.push(norAttr.getX(i2), norAttr.getY(i2), norAttr.getZ(i2)); }); // Add selection object _this.addHiglightGeometry(pick.object.matrixWorld, pickPosition, pickNormal); // Gather extra attributes if (_this.props.tileInfoServiceUrl) { var _helper$getTileUserDa = helper.getTileUserData(), tilesetName = _helper$getTileUserDa.tilesetName, featureIdAttr = _helper$getTileUserDa.featureIdAttr; var url = _this.props.tileInfoServiceUrl.replace('{tileset}', tilesetName).replace('{objectid}', featureAttrs[featureIdAttr]); axios.get(url).then(function (response) { response.data.forEach(function (attr) { if (attr.name in featureAttrs && featureAttrs[attr.name] === attr.value) { // Use attribute alias delete featureAttrs[attr.name]; } featureAttrs[attr.alias] = attr.value; }); _this.setState({ pickAttrs: featureAttrs }); })["catch"](function () { _this.setState({ pickAttrs: featureAttrs }); }); } else { _this.setState({ pickAttrs: featureAttrs }); } }); _defineProperty(_this, "identifyObjectPick", function (pick) { var posAttr = pick.object.geometry.getAttribute('position'); var norAttr = pick.object.geometry.getAttribute('normal'); var index = pick.object.geometry.getIndex(); // Add selection object _this.addHiglightGeometry(pick.object.matrixWorld, posAttr.array, norAttr === null || norAttr === void 0 ? void 0 : norAttr.array, index); // Set pick attrs _this.setState({ pickAttrs: pick.object.userData }); }); _defineProperty(_this, "addHiglightGeometry", function (matrixWorld, position, normal) { var index = arguments.length > 3 && arguments[3] !== undefined ? arguments[3] : null; var material = new MeshStandardMaterial({ color: 0xff0000 }); var geometry = new BufferGeometry(); geometry.setAttribute('position', new Float32BufferAttribute(position, 3)); if (normal) { geometry.setAttribute('normal', new Float32BufferAttribute(normal, 3)); } geometry.setIndex(index); var mesh = new Mesh(geometry, material); mesh.applyMatrix4(matrixWorld); mesh.updateMatrixWorld(); mesh.receiveShadow = true; _this.props.sceneContext.addSceneObject("__identify3d_highlight", mesh); }); return _this; } _inherits(Identify3D, _React$Component); return _createClass(Identify3D, [{ key: "componentDidMount", value: function componentDidMount() { this.props.sceneContext.scene.viewport.addEventListener('pointerdown', this.identifyOnRelease); } }, { key: "componentDidUpdate", value: function componentDidUpdate(prevProps) { if (!this.props.identifyEnabled && prevProps.identifyEnabled) { this.clear(); } } }, { key: "render", value: function render() { if (this.state.pickAttrs === null) { return null; } return /*#__PURE__*/React.createElement(ResizeableWindow, { dockable: this.props.geometry.side, icon: "info-sign", initialHeight: this.props.geometry.initialHeight, initialWidth: this.props.geometry.initialWidth, initialX: this.props.geometry.initialX, initialY: this.props.geometry.initialY, initiallyDocked: this.props.geometry.initiallyDocked, onClose: this.clear, title: LocaleUtils.tr("identify.title") }, /*#__PURE__*/React.createElement("div", { className: "identify-body" }, isEmpty(this.state.pickAttrs) ? /*#__PURE__*/React.createElement("span", null, /*#__PURE__*/React.createElement("i", null, LocaleUtils.tr("identify.noattributes"))) : /*#__PURE__*/React.createElement("div", { className: "identify-result-box" }, /*#__PURE__*/React.createElement("table", { className: "attribute-list" }, /*#__PURE__*/React.createElement("tbody", null, Object.entries(this.state.pickAttrs).map(function (_ref3) { var _ref4 = _slicedToArray(_ref3, 2), key = _ref4[0], value = _ref4[1]; return /*#__PURE__*/React.createElement("tr", { key: key }, /*#__PURE__*/React.createElement("td", { className: "identify-attr-title" }, /*#__PURE__*/React.createElement("i", null, key)), /*#__PURE__*/React.createElement("td", { className: "identify-attr-value" }, value.toString())); })))))); } }]); }(React.Component); _defineProperty(Identify3D, "propTypes", { /** Default window geometry with size, position and docking status. Positive position values (including '0') are related to top (InitialY) and left (InitialX), negative values (including '-0') to bottom (InitialY) and right (InitialX). */ geometry: PropTypes.shape({ initialWidth: PropTypes.number, initialHeight: PropTypes.number, initialX: PropTypes.number, initialY: PropTypes.number, initiallyDocked: PropTypes.bool, side: PropTypes.string }), identifyEnabled: PropTypes.bool, sceneContext: PropTypes.object, /** URL to service for querying additional tile information. * Can contain the `{tileset}` and `{objectid}` placeholders. * Expected to return a JSON dict with attributes.*/ tileInfoServiceUrl: PropTypes.string }); _defineProperty(Identify3D, "defaultProps", { geometry: { initialWidth: 240, initialHeight: 320, initialX: 0, initialY: 0, initiallyDocked: false, side: 'left' } }); export default connect(function (state) { return { identifyEnabled: state.task.identifyEnabled }; }, {})(Identify3D);