/////////////////////////////////////////////////////////////////////////// // Copyright © 2020 zhongsong. All Rights Reserved. // 模块描述:河流水面线分析 /////////////////////////////////////////////////////////////////////////// define(['dojo/_base/declare', 'dojo/_base/lang', 'dojo/_base/array', 'dojo/_base/html', 'dojo/topic', 'jimu/BaseWidget', './Tooltip-div', './DynamicDraw'], function (declare, lang, array, html, topic, BaseWidget) { return declare([BaseWidget], { baseClass: 'jimu-widget-LocDynamicRiver', name: 'LocDynamicRiver', riverWidth: 200, riverHeight: 10, speed: 10, positions: [], sideRes: null, riverPrimitive: null, material: null, drawingPolyline: null, startup: function startup() { topic.subscribe("ooooo", lang.hitch(this, this.oooo)); // this.inherited(arguments); var self = this; this.map.scene.globe.depthTestAgainstTerrain = true; //取消双击事件 this.map.cesiumWidget.screenSpaceEventHandler.removeInputAction(Cesium.ScreenSpaceEventType.LEFT_DOUBLE_CLICK); $("#hzsm").click(function () { DrawDynamicClampGround.startDrawingPolyline(self.map, function (cartesians) { if (self.drawingPolyline != undefined) self.map.entities.remove(self.drawingPolyline); var lineOpts = { polyline: { positions: cartesians, clampToGround: true, width: 3, color: "#279a9a" } }; self.drawingPolyline = self.map.entities.add(lineOpts); debugger; cartesians.splice(cartesians.length - 1, cartesians.length); self.drawLines(cartesians); }); }); $('#qcsmx').click(function () { self.map.entities.remove(self.drawingPolyline); self.map.scene.primitives.remove(self.riverPrimitive); }); $("#hlkd").change(function (e) { self.riverWidth = Number($(this).val()); self.resetPos(); }); $("#hlgd").change(function (e) { self.riverHeight = Number($(this).val()); self.resetPos(); }); $("#sls").change(function (e) { self.speed = Number($(this).val()); self.resetPos(); }); $("#smsz").click(function () { self.offsetHeight(Number($("#bhz").val()), 5); }); $("#smxj").click(function () { self.offsetHeight(-Number($("#bhz").val()), 5); }); $('.close-dynamicriver').click(function () { $('.jimu-widget-LocDynamicRiver').hide(); }); /*for(var e = [ [115.907543, 30.441563, 541.47], [115.904337, 30.439412, 491.79], [115.900612, 30.438483, 449.11], [115.896375, 30.439377, 388.29], [115.890586, 30.442215, 345.94], [115.876946, 30.444641, 292.73] ], r = [], i = 0; i < e.length; i++) r.push(Cesium.Cartesian3.fromDegrees(e[i][0], e[i][1], e[i][2])); this.positions = r; this.init();*/ }, oooo: function oooo(item) { if (item == name) { $('.jimu-widget-LocDynamicRive').stop().show(); } }, init: function init() { this.prepareVertex(); if (this.sideRes) { this.material = this.prepareMaterial(); this.riverPrimitive && this.map.scene.primitives.remove(this.riverPrimitive); this.riverPrimitive = this.createPrimitive(); this.map.scene.primitives.add(this.riverPrimitive); } }, prepareVertex: function prepareVertex() { if (this.positions.length > 0) { this.sideRes = this._lines2Plane(this.positions, this.riverWidth, this.riverHeight); } }, setPositions: function setPositions(e) { this.positions = e; this.init(); }, resetPos: function resetPos() { this.sideRes = this._lines2Plane(this.positions, this.riverWidth, this.riverHeight); if (this.sideRes) { this.material = this.prepareMaterial(); this.riverPrimitive && this.map.scene.primitives.remove(this.riverPrimitive); this.riverPrimitive = this.createPrimitive(); this.map.scene.primitives.add(this.riverPrimitive); } }, drawLines: function drawLines(r) { this.setPositions(r); }, prepareMaterial: function prepareMaterial() { var e = new Cesium.Material({ fabric: { uniforms: { image: "widgets/LocDynamicRiver/images/movingRiver.png", alpha: 0.5, moveVar: new Cesium.Cartesian3(50, 1, 100), reflux: -1, speed: this.speed, move: true, flipY: false }, source: "czm_material czm_getMaterial(czm_materialInput materialInput) { \n czm_material material = czm_getDefaultMaterial(materialInput); \n vec2 st = materialInput.st;\n if(move){\n float r = sqrt((st.x-0.8)*(st.x-0.8) + (st.y-0.8)*(st.y-0.8));\n float r2 = sqrt((st.x-0.2)*(st.x-0.2) + (st.y-0.2)*(st.y-0.2));\n float z = cos(moveVar.x*r + czm_frameNumber/100.0*moveVar.y)/moveVar.z;\n float z2 = cos(moveVar.x*r2 + czm_frameNumber/100.0*moveVar.y)/moveVar.z;\n st += sqrt(z*z+z2*z2);\n st.s += reflux * czm_frameNumber/1000.0 * speed;\n st.s = mod(st.s,1.0);\n }\n if(flipY){\n st = vec2(st.t,st.s);\n }\n vec4 colorImage = texture2D(image, st);\n material.alpha = alpha;\n material.diffuse = colorImage.rgb; \n return material; \n }" } }); return e; }, createPrimitive: function createPrimitive() { var t = new Float64Array(this.sideRes.vertexs), i = new Cesium.GeometryAttributes(); i.position = new Cesium.GeometryAttribute({ componentDatatype: Cesium.ComponentDatatype.DOUBLE, componentsPerAttribute: 3, values: t }), i.st = new Cesium.GeometryAttribute({ componentDatatype: Cesium.ComponentDatatype.FLOAT, componentsPerAttribute: 2, values: this.sideRes.uvs }); var r = new Cesium.Geometry({ attributes: i, indices: this.sideRes.indexs, primitiveType: Cesium.PrimitiveType.TRIANGLES, boundingSphere: Cesium.BoundingSphere.fromVertices(t) }), n = new Cesium.GeometryInstance({ geometry: r }), o = new Cesium.RenderState(); return o.depthTest.enabled = !0, new Cesium.Primitive({ geometryInstances: n, appearance: new Cesium.Appearance({ material: this.material, renderState: o, vertexShaderSource: "attribute vec3 position3DHigh;\n attribute vec3 position3DLow;\n attribute vec2 st;\n attribute float batchId;\n \n varying vec3 v_positionMC;\n varying vec3 v_positionEC;\n varying vec2 v_st;\n \n void main()\n {\n vec4 p = czm_computePosition();\n \n v_positionMC = position3DHigh + position3DLow; // position in model coordinates\n v_positionEC = (czm_modelViewRelativeToEye * p).xyz; // position in eye coordinates\n v_st = st;\n \n gl_Position = czm_modelViewProjectionRelativeToEye * p;\n }\n ", fragmentShaderSource: "varying vec3 v_positionMC;\n varying vec3 v_positionEC;\n varying vec2 v_st;\n \n void main()\n {\n czm_materialInput materialInput;\n \n vec3 normalEC = normalize(czm_normal3D * czm_geodeticSurfaceNormal(v_positionMC, vec3(0.0), vec3(1.0)));\n #ifdef FACE_FORWARD\n normalEC = faceforward(normalEC, vec3(0.0, 0.0, 1.0), -normalEC);\n #endif\n \n materialInput.s = v_st.s;\n materialInput.st = v_st;\n materialInput.str = vec3(v_st, 0.0);\n \n // Convert tangent space material normal to eye space\n materialInput.normalEC = normalEC;\n materialInput.tangentToEyeMatrix = czm_eastNorthUpToEyeCoordinates(v_positionMC, materialInput.normalEC);\n \n // Convert view vector to world space\n vec3 positionToEyeEC = -v_positionEC;\n materialInput.positionToEyeEC = positionToEyeEC;\n \n czm_material material = czm_getMaterial(materialInput);\n \n #ifdef FLAT\n gl_FragColor = vec4(material.diffuse + material.emission, material.alpha);\n #else\n gl_FragColor = czm_phong(normalize(positionToEyeEC), material,czm_lightDirectionEC);\n #endif\n }\n " }) }); }, offsetHeight: function offsetHeight(height, time) { this.startDH(height, time); }, startDH: function startDH(height, time) { if (height && time && this.riverPrimitive) { for (var i = this, r = 0, n = height / (20 * time), o = this.sideRes.self, s = new Cesium.Cartesian3(), l = 0, u = o.length; l < u; l++) { var c = Cesium.Cartesian3.normalize(o[l], new Cesium.Cartesian3()); Cesium.Cartesian3.add(s, c, s); } Cesium.Cartesian3.normalize(s, s); var h = Cesium.clone(this.riverPrimitive.modelMatrix); this.dhEvent = function () { if (Math.abs(r) <= Math.abs(height)) { var t = Cesium.Cartesian3.multiplyByScalar(s, r, new Cesium.Cartesian3()); i.riverPrimitive.modelMatrix = Cesium.Matrix4.multiplyByTranslation(h, t, new Cesium.Matrix4()); } else i.map.clock.onTick.removeEventListener(i.dhEvent); r += n; }, this.map.clock.onTick.addEventListener(this.dhEvent); } }, //水面线转成水面 _lines2Plane: function _lines2Plane(positions, width, height) { function n(point, height) { if (!(point instanceof Cesium.Cartesian3)) return void console.log("请确认点是Cartesian3类型!"); if (!height || 0 == height) return void console.log("请确认高度是非零数值!"); var i = Cesium.Cartesian3.normalize(point, new Cesium.Cartesian3()), r = new Cesium.Ray(point, i); //射线 return Cesium.Ray.getPoint(r, height); } function o(point, point1, height) { var r = Cesium.Cartesian3.normalize(Cesium.Cartesian3.subtract(point1, point, new Cesium.Cartesian3()), new Cesium.Cartesian3()), n = Cesium.Cartesian3.normalize(point, new Cesium.Cartesian3()), o = Cesium.Cartesian3.cross(n, r, new Cesium.Cartesian3()), a = Cesium.Cartesian3.cross(r, n, new Cesium.Cartesian3()), l = new Cesium.Ray(point, o), u = new Cesium.Ray(point, a); return { left: Cesium.Ray.getPoint(l, height), right: Cesium.Ray.getPoint(u, height) }; } if (!positions || positions.length <= 1 || !width || 0 == width) return void console.log("请确认参数符合规则:数组长度大于1,宽高不能为0!"); for (var r = positions.length, a = [], l = [], u = width / 2, c = 0; c < r; c++) { var h = void 0, d = void 0, f = void 0, p = void 0, m = void 0; if (0 == c ? (h = positions[c], d = positions[c], f = positions[c + 1]) : c == r - 1 ? (h = positions[c - 1], d = positions[c], f = positions[c - 1]) : (h = positions[c - 1], d = positions[c], f = positions[c + 1]), 0 != height && (h = n(h, height), d = n(d, height), f = n(f, height)), h && d && f) { var g = o(d, f, u); if (p = g.left, m = g.right, 0 == c) { a.push(p), l.push(m), a.push(p), l.push(m); continue; } if (!(c < r - 1)) { a.push(m), l.push(p), a.push(m), l.push(p); continue; } a.push(p), l.push(m), g = o(d, h, u), p = g.left, m = g.right, a.push(m), l.push(p); } } var v = [], y = []; if (a.length != 2 * r) return void console.log("计算左右侧点出问题!"); for (var _ = 0; _ < r; _++) { var w = positions[_], b = a[2 * _ + 0], C = a[2 * _ + 1], x = Cesium.Cartesian3.subtract(b, w, new Cesium.Cartesian3()), P = Cesium.Cartesian3.subtract(C, w, new Cesium.Cartesian3()), M = Cesium.Cartesian3.add(x, P, new Cesium.Cartesian3()), E = Cesium.Cartesian3.add(w, M, new Cesium.Cartesian3()); v.push(Cesium.clone(E)); var T = l[2 * _ + 0], S = l[2 * _ + 1]; x = Cesium.Cartesian3.subtract(T, w, new Cesium.Cartesian3()), P = Cesium.Cartesian3.subtract(S, w, new Cesium.Cartesian3()), M = Cesium.Cartesian3.add(x, P, new Cesium.Cartesian3()), E = Cesium.Cartesian3.add(w, M, new Cesium.Cartesian3()), y.push(Cesium.clone(E)); } for (var O = [], D = [], k = [], A = [], R = [], F = 0; F < r; F++) { var L = Cesium.EncodedCartesian3.fromCartesian(y[F]); D.push(y[F].x), D.push(y[F].y), D.push(y[F].z), k.push(L.high.x), k.push(L.high.y), k.push(L.high.z), A.push(L.low.x), A.push(L.low.y), A.push(L.low.z), O.push(1, 1), F < r - 1 && (R.push(F + 2 * r), R.push(F + 1), R.push(F + 1 + r), R.push(F + 2 * r), R.push(F + 1 + r), R.push(r + F + 2 * r)); } for (var I = 0; I < r; I++) { var N = Cesium.EncodedCartesian3.fromCartesian(v[I]); D.push(v[I].x), D.push(v[I].y), D.push(v[I].z), k.push(N.high.x), k.push(N.high.y), k.push(N.high.z), A.push(N.low.x), A.push(N.low.y), A.push(N.low.z), O.push(1, 0); } for (var V = 0; V < r; V++) { var z = Cesium.EncodedCartesian3.fromCartesian(y[V]); D.push(y[V].x), D.push(y[V].y), D.push(y[V].z), k.push(z.high.x), k.push(z.high.y), k.push(z.high.z), A.push(z.low.x), A.push(z.low.y), A.push(z.low.z), O.push(0, 1); } for (var H = 0; H < r; H++) { var B = Cesium.EncodedCartesian3.fromCartesian(v[H]); D.push(v[H].x), D.push(v[H].y), D.push(v[H].z), k.push(B.high.x), k.push(B.high.y), k.push(B.high.z), A.push(B.low.x), A.push(B.low.y), A.push(B.low.z), O.push(0, 0); } return { left: v, right: y, self: positions, vertexs: new Float32Array(D), vertexsH: new Float32Array(k), vertexsL: new Float32Array(A), indexs: new Uint16Array(R), uvs: new Float32Array(O) }; }, onOpen: function onOpen() { //面板打开的时候触发 (when open this panel trigger) }, onClose: function onClose() { //面板关闭的时候触发 (when this panel is closed trigger) }, onMinimize: function onMinimize() { this.resize(); }, onMaximize: function onMaximize() { this.resize(); }, resize: function resize() {}, destroy: function destroy() { //销毁的时候触发 //todo //do something before this func this.inherited(arguments); } }); });