From 9884606a9aac36414a14c1a59e148d9392d79d83 Mon Sep 17 00:00:00 2001 From: Kevin Levron Date: Tue, 9 Mar 2021 18:25:02 +0100 Subject: [PATCH] 0.1.13 --- build/trois.js | 11 ++++++----- build/trois.module.cdn.js | 11 ++++++----- build/trois.module.cdn.js.map | 2 +- build/trois.module.cdn.min.js | 2 +- build/trois.module.cdn.min.js.map | 2 +- build/trois.module.js | 11 ++++++----- build/trois.module.js.map | 2 +- build/trois.module.min.js | 2 +- build/trois.module.min.js.map | 2 +- package.json | 2 +- src/meshes/Tube.js | 6 +++--- 11 files changed, 28 insertions(+), 25 deletions(-) diff --git a/build/trois.js b/build/trois.js index 382b8af..861bde2 100644 --- a/build/trois.js +++ b/build/trois.js @@ -2077,9 +2077,9 @@ var Tube = { this$1.refreshGeometry(); }); }); - // watch(() => this.points, () => { - // this.updatePoints(); - // }); + vue.watch(function () { return this$1.points; }, function () { + updateTubeGeometryPoints(this$1.geometry, this$1.points); + }); }, methods: { createGeometry: function createGeometry() { @@ -2093,8 +2093,9 @@ var Tube = { } this.geometry = new three.TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed); }, - updateCurve: function updateCurve() { - updateTubeGeometryPoints(this.geometry, this.points); + // update curve points (without using prop, faster) + updateCurve: function updateCurve(points) { + updateTubeGeometryPoints(this.geometry, points); }, }, __hmrId: 'Tube', diff --git a/build/trois.module.cdn.js b/build/trois.module.cdn.js index 71a18ae..45249bd 100644 --- a/build/trois.module.cdn.js +++ b/build/trois.module.cdn.js @@ -2073,9 +2073,9 @@ var Tube = { this$1.refreshGeometry(); }); }); - // watch(() => this.points, () => { - // this.updatePoints(); - // }); + watch(function () { return this$1.points; }, function () { + updateTubeGeometryPoints(this$1.geometry, this$1.points); + }); }, methods: { createGeometry: function createGeometry() { @@ -2089,8 +2089,9 @@ var Tube = { } this.geometry = new TubeGeometry$1(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed); }, - updateCurve: function updateCurve() { - updateTubeGeometryPoints(this.geometry, this.points); + // update curve points (without using prop, faster) + updateCurve: function updateCurve(points) { + updateTubeGeometryPoints(this.geometry, points); }, }, __hmrId: 'Tube', diff --git a/build/trois.module.cdn.js.map b/build/trois.module.cdn.js.map index 60b4c77..7604c6f 100644 --- a/build/trois.module.cdn.js.map +++ b/build/trois.module.cdn.js.map @@ -1 +1 @@ -{"version":3,"file":"trois.module.cdn.js","sources":["../src/core/useThree.js","../src/core/Renderer.js","../src/tools.js","../src/core/OrthographicCamera.js","../src/core/PerspectiveCamera.js","../src/core/Object3D.js","../src/core/Group.js","../src/core/Scene.js","../src/geometries/Geometry.js","../src/geometries/BoxGeometry.js","../src/geometries/CircleGeometry.js","../src/geometries/ConeGeometry.js","../src/geometries/CylinderGeometry.js","../src/geometries/DodecahedronGeometry.js","../src/geometries/IcosahedronGeometry.js","../src/geometries/LatheGeometry.js","../src/geometries/OctahedronGeometry.js","../src/geometries/PolyhedronGeometry.js","../src/geometries/RingGeometry.js","../src/geometries/SphereGeometry.js","../src/geometries/TetrahedronGeometry.js","../src/geometries/TorusGeometry.js","../src/geometries/TorusKnotGeometry.js","../src/geometries/TubeGeometry.js","../src/lights/Light.js","../src/lights/AmbientLight.js","../src/lights/DirectionalLight.js","../src/lights/HemisphereLight.js","../src/lights/PointLight.js","../src/lights/RectAreaLight.js","../src/lights/SpotLight.js","../src/materials/Material.js","../src/materials/BasicMaterial.js","../src/materials/LambertMaterial.js","../src/materials/MatcapMaterial.js","../src/materials/PhongMaterial.js","../src/materials/StandardMaterial.js","../src/materials/PhysicalMaterial.js","../src/materials/SubsurfaceScatteringShader.js","../src/materials/ShaderMaterial.js","../src/materials/SubSurfaceMaterial.js","../src/materials/ToonMaterial.js","../src/materials/Texture.js","../src/materials/CubeTexture.js","../src/meshes/Mesh.js","../src/meshes/Box.js","../src/meshes/Circle.js","../src/meshes/Cone.js","../src/meshes/Cylinder.js","../src/meshes/Dodecahedron.js","../src/meshes/Icosahedron.js","../src/meshes/Lathe.js","../src/meshes/Octahedron.js","../src/meshes/Plane.js","../src/meshes/Polyhedron.js","../src/meshes/Ring.js","../src/meshes/Sphere.js","../src/meshes/Tetrahedron.js","../src/meshes/TextProps.js","../src/meshes/Text.js","../src/meshes/Torus.js","../src/meshes/TorusKnot.js","../src/meshes/Tube.js","../src/meshes/Gem.js","../src/meshes/Image.js","../src/meshes/InstancedMesh.js","../src/meshes/MirrorMesh.js","../src/meshes/RefractionMesh.js","../src/meshes/Sprite.js","../src/effects/EffectComposer.js","../src/effects/EffectPass.js","../src/effects/RenderPass.js","../src/effects/BokehPass.js","../src/effects/FilmPass.js","../src/effects/FXAAPass.js","../src/effects/HalftonePass.js","../src/effects/SMAAPass.js","../src/shaders/default.js","../src/shaders/TiltShift.js","../src/effects/TiltShiftPass.js","../src/effects/UnrealBloomPass.js","../src/shaders/ZoomBlur.js","../src/effects/ZoomBlurPass.js","../src/plugin.js"],"sourcesContent":["import {\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n // watch(() => this.points, () => {\n // this.updatePoints();\n // });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n updateCurve() {\n updateTubeGeometryPoints(this.geometry, this.points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 'Image',\n 'InstancedMesh',\n 'MirrorMesh',\n 'RefractionMesh',\n 'Sprite',\n\n 'BokehPass',\n 'EffectComposer',\n 'FilmPass',\n 'FXAAPass',\n 'HalftonePass',\n 'RenderPass',\n 'SAOPass',\n 'SMAAPass',\n 'TiltShiftPass',\n 'UnrealBloomPass',\n 'ZoomBlurPass',\n\n 'GLTFViewer',\n ];\n\n comps.forEach(comp => {\n app.component(comp, TROIS[comp]);\n });\n },\n};\n\nexport function createApp(params) {\n return 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{\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n watch(() => this.points, () => {\n updateTubeGeometryPoints(this.geometry, this.points);\n });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n // update curve points (without using prop, faster)\n updateCurve(points) {\n updateTubeGeometryPoints(this.geometry, points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 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\ No newline at end of file diff --git a/build/trois.module.cdn.min.js b/build/trois.module.cdn.min.js index 2d1c99a..c0e21fc 100644 --- a/build/trois.module.cdn.min.js +++ b/build/trois.module.cdn.min.js @@ -1,2 +1,2 @@ -import{h as e,toRef as t,watch as r,createApp as i}from"https://unpkg.com/vue@3.0.7/dist/vue.esm-browser.prod.js";import{Vector2 as s,Vector3 as n,Plane as a,Raycaster as o,WebGLRenderer as h,OrthographicCamera as u,PerspectiveCamera as m,Group as d,Scene as c,Color as l,BoxGeometry as f,CircleGeometry as p,ConeGeometry as g,CylinderGeometry as y,DodecahedronGeometry as b,IcosahedronGeometry as v,LatheGeometry as S,OctahedronGeometry as x,PolyhedronGeometry as N,RingGeometry as w,SphereGeometry as _,TetrahedronGeometry as C,TorusGeometry as M,TorusKnotGeometry as G,Curve as z,TubeGeometry as k,AmbientLight as I,DirectionalLight as R,HemisphereLight as L,PointLight as P,RectAreaLight as B,SpotLight as j,FrontSide as E,MeshBasicMaterial as T,MeshLambertMaterial as 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e=this;this.createGeometry();["radius","height","radialSegments","heightSegments","openEnded","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new se(this.radius,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}},__hmrId:"Cone"},Vt={extends:Dt,props:{radiusTop:{type:Number,default:1},radiusBottom:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["radiusTop","radiusBottom","height","radialSegments","heightSegments","openEnded","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ne(this.radiusTop,this.radiusBottom,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}},__hmrId:"Cylinder"},Xt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ae(this.radius,this.detail)}},__hmrId:"Dodecahedron"},qt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new oe(this.radius,this.detail)}},__hmrId:"Icosahedron"},Zt={extends:Dt,props:{points:Array,segments:{type:Number,default:12},phiStart:{type:Number,default:0},phiLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["points","segments","phiStart","phiLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new he(this.points,this.segments,this.phiStart,this.phiLength)}},__hmrId:"Lathe"},Kt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ue(this.radius,this.detail)}},__hmrId:"Octahedron"},Yt={extends:Dt,props:{width:{type:Number,default:1},height:{type:Number,default:1},widthSegments:{type:Number,default:1},heightSegments:{type:Number,default:1}},created:function(){var e=this;this.createGeometry();["width","height","widthSegments","heightSegments"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new me(this.width,this.height,this.widthSegments,this.heightSegments)}},__hmrId:"Plane"},Jt={extends:Dt,props:{vertices:Array,indices:Array,radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["vertices","indices","radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new de(this.vertices,this.indices,this.radius,this.detail)}},__hmrId:"Polyhedron"},Qt={extends:Dt,props:{innerRadius:{type:Number,default:.5},outerRadius:{type:Number,default:1},thetaSegments:{type:Number,default:8},phiSegments:{type:Number,default:1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["innerRadius","outerRadius","thetaSegments","phiSegments","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ce(this.innerRadius,this.outerRadius,this.thetaSegments,this.phiSegments,this.thetaStart,this.thetaLength)}},__hmrId:"Ring"},er={extends:Dt,props:{radius:Number,widthSegments:{type:Number,default:12},heightSegments:{type:Number,default:12}},watch:{radius:function(){this.refreshGeometry()},widthSegments:function(){this.refreshGeometry()},heightSegments:function(){this.refreshGeometry()}},created:function(){this.createGeometry()},methods:{createGeometry:function(){this.geometry=new le(this.radius,this.widthSegments,this.heightSegments)}},__hmrId:"Sphere"},tr={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new fe(this.radius,this.detail)}},__hmrId:"Tetrahedron"},rr={text:String,fontSrc:String,size:{type:Number,default:80},height:{type:Number,default:5},depth:{type:Number,default:1},curveSegments:{type:Number,default:12},bevelEnabled:{type:Boolean,default:!1},bevelThickness:{type:Number,default:10},bevelSize:{type:Number,default:8},bevelOffset:{type:Number,default:0},bevelSegments:{type:Number,default:5},align:{type:[Boolean,String],default:!1}},ir={extends:Dt,props:Object.assign({},rr),data:function(){return{loading:!0}},created:function(){var e=this;["text","size","height","curveSegments","bevelEnabled","bevelThickness","bevelSize","bevelOffset","bevelSegments","align"].forEach((function(t){r((function(){return e[t]}),(function(){e.font&&e.refreshGeometry()}))})),(new pe).load(this.fontSrc,(function(t){e.loading=!1,e.font=t,e.createGeometry(),e.initMesh()}))},methods:{createGeometry:function(){this.geometry=new ge(this.text,{font:this.font,size:this.size,height:this.height,depth:this.depth,curveSegments:this.curveSegments,bevelEnabled:this.bevelEnabled,bevelThickness:this.bevelThickness,bevelSize:this.bevelSize,bevelOffset:this.bevelOffset,bevelSegments:this.bevelSegments}),"center"===this.align&&this.geometry.center()}}},sr={extends:Dt,props:{radius:{type:Number,default:.5},tube:{type:Number,default:.4},radialSegments:{type:Number,default:8},tubularSegments:{type:Number,default:6},arc:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["radius","tube","radialSegments","tubularSegments","arc"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ye(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.arc)}},__hmrId:"Torus"},nr={extends:Dt,props:{radius:{type:Number,default:.5},tube:{type:Number,default:.4},tubularSegments:{type:Number,default:64},radialSegments:{type:Number,default:8},p:{type:Number,default:2},q:{type:Number,default:3}},created:function(){var e=this;this.createGeometry();["radius","tube","radialSegments","tubularSegments","p","q"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new be(this.radius,this.tube,this.tubularSegments,this.radialSegments,this.p,this.q)}},__hmrId:"TorusKnot"},ar={extends:Dt,props:{path:z,points:Array,tubularSegments:{type:Number,default:64},radius:{type:Number,default:1},radialSegments:{type:Number,default:8},closed:{type:Boolean,default:!1}},created:function(){var e=this;this.createGeometry();["tubularSegments","radius","radialSegments","closed"].forEach((function(t){r((function(){return e[t]}),(function(t){e.refreshGeometry()}))}))},methods:{createGeometry:function(){var e;this.points?e=new ve(this.points):this.path?e=this.path:console.error("Missing path curve or points."),this.geometry=new k(e,this.tubularSegments,this.radius,this.radialSegments,this.closed)},updateCurve:function(){!function(e,t){var r=new ve(t),i=e.parameters,s=i.radialSegments,a=i.radius,o=i.tubularSegments,h=i.closed,u=r.computeFrenetFrames(o,h);e.tangents=u.tangents,e.normals=u.normals,e.binormals=u.binormals,e.parameters.path=r;for(var m,d=e.attributes.position.array,c=e.attributes.normal.array,l=new n,f=0;f1?t=.5/this.iRatio:e=.5/this.iRatio;var r=this.geometry.attributes.position.array;r[0]=-e,r[1]=-t,r[5]=e,r[6]=-t,r[10]=e,r[11]=t,r[15]=-e,r[16]=t,this.geometry.attributes.position.needsUpdate=!0}},__hmrId:"Sprite"},lr={setup:function(){return{passes:[]}},inject:["three"],provide:function(){return{passes:this.passes}},mounted:function(){var e=this;this.three.onAfterInit((function(){e.composer=new Re(e.three.renderer),e.three.renderer.autoClear=!1,e.passes.forEach((function(t){e.composer.addPass(t)})),e.three.composer=e.composer,e.resize(),e.three.onAfterResize(e.resize)}))},unmounted:function(){this.three.offAfterResize(this.resize)},methods:{resize:function(){this.composer.setSize(this.three.size.width,this.three.size.height)}},render:function(){return this.$slots.default()},__hmrId:"EffectComposer"},fr={inject:["three","passes"],beforeMount:function(){this.passes||console.error("Missing parent EffectComposer")},unmounted:function(){this.pass.dispose&&this.pass.dispose()},render:function(){return[]},__hmrId:"EffectPass"},pr={extends:fr,mounted:function(){this.three.scene||console.error("Missing Scene"),this.three.camera||console.error("Missing Camera");var e=new Le(this.three.scene,this.three.camera);this.passes.push(e),this.pass=e},__hmrId:"RenderPass"},gr={extends:fr,props:{focus:{type:Number,default:1},aperture:{type:Number,default:.025},maxblur:{type:Number,default:.01}},watch:{focus:function(){this.pass.uniforms.focus.value=this.focus},aperture:function(){this.pass.uniforms.aperture.value=this.aperture},maxblur:function(){this.pass.uniforms.maxblur.value=this.maxblur}},mounted:function(){this.three.scene||console.error("Missing Scene"),this.three.camera||console.error("Missing Camera");var e={focus:this.focus,aperture:this.aperture,maxblur:this.maxblur,width:this.three.size.width,height:this.three.size.height},t=new Pe(this.three.scene,this.three.camera,e);this.passes.push(t),this.pass=t},__hmrId:"BokehPass"},yr={extends:fr,props:{noiseIntensity:{type:Number,default:.5},scanlinesIntensity:{type:Number,default:.05},scanlinesCount:{type:Number,default:4096},grayscale:{type:Number,default:0}},watch:{noiseIntensity:function(){this.pass.uniforms.nIntensity.value=this.noiseIntensity},scanlinesIntensity:function(){this.pass.uniforms.sIntensity.value=this.scanlinesIntensity},scanlinesCount:function(){this.pass.uniforms.sCount.value=this.scanlinesCount},grayscale:function(){this.pass.uniforms.grayscale.value=this.grayscale}},mounted:function(){var e=new Be(this.noiseIntensity,this.scanlinesIntensity,this.scanlinesCount,this.grayscale);this.passes.push(e),this.pass=e},__hmrId:"FilmPass"},br={extends:fr,mounted:function(){var e=new je(Ee);this.passes.push(e),this.pass=e,this.three.onAfterResize(this.resize)},unmounted:function(){this.three.offAfterResize(this.resize)},methods:{resize:function(){var e=this.pass.material.uniforms.resolution;e.value.x=1/this.three.size.width,e.value.y=1/this.three.size.height}},__hmrId:"FXAAPass"},vr={extends:fr,props:{shape:{type:Number,default:1},radius:{type:Number,default:4},rotateR:{type:Number,default:Math.PI/12*1},rotateG:{type:Number,default:Math.PI/12*2},rotateB:{type:Number,default:Math.PI/12*3},scatter:{type:Number,default:0}},mounted:function(){var e=this,t=new Te(this.three.size.width,this.three.size.height,{});["shape","radius","rotateR","rotateG","rotateB","scatter"].forEach((function(i){t.uniforms[i].value=e[i],r((function(){return e[i]}),(function(){t.uniforms[i].value=e[i]}))})),this.passes.push(t),this.pass=t},__hmrId:"HalftonePass"},Sr={extends:fr,mounted:function(){var e=new Ae(this.three.size.width,this.three.size.height);this.passes.push(e),this.pass=e},__hmrId:"SMAAPass"},xr="\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n ",Nr={uniforms:{tDiffuse:{value:null},blurRadius:{value:0},gradientRadius:{value:0},start:{value:new s},end:{value:new s},delta:{value:new s},texSize:{value:new s}},vertexShader:xr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},wr={extends:fr,props:{blurRadius:{type:Number,default:10},gradientRadius:{type:Number,default:100},start:{type:Object,default:{x:0,y:100}},end:{type:Object,default:{x:10,y:100}}},mounted:function(){var e=this;this.pass=new je(Nr),this.passes.push(this.pass),this.pass1=new je(Nr),this.passes.push(this.pass1);var t=this.uniforms=this.pass.uniforms,i=this.uniforms1=this.pass1.uniforms;i.blurRadius=t.blurRadius,i.gradientRadius=t.gradientRadius,i.start=t.start,i.end=t.end,i.texSize=t.texSize,$e(this,"blurRadius",t.blurRadius,"value"),$e(this,"gradientRadius",t.gradientRadius,"value"),this.updateFocusLine(),["start","end"].forEach((function(t){r((function(){return e[t]}),e.updateFocusLine,{deep:!0})})),this.pass.setSize=function(e,r){t.texSize.value.set(e,r)}},methods:{updateFocusLine:function(){this.uniforms.start.value.copy(this.start),this.uniforms.end.value.copy(this.end);var e=(new s).copy(this.end).sub(this.start).normalize();this.uniforms.delta.value.copy(e),this.uniforms1.delta.value.set(-e.y,e.x)}},__hmrId:"TiltShiftPass"},_r={extends:fr,props:{strength:{type:Number,default:1.5},radius:{type:Number,default:0},threshold:{type:Number,default:0}},watch:{strength:function(){this.pass.strength=this.strength},radius:function(){this.pass.radius=this.radius},threshold:function(){this.pass.threshold=this.threshold}},mounted:function(){var e=new s(this.three.size.width,this.three.size.height),t=new Oe(e,this.strength,this.radius,this.threshold);this.passes.push(t),this.pass=t},__hmrId:"UnrealBloomPass"},Cr={uniforms:{tDiffuse:{value:null},center:{value:new s(.5,.5)},strength:{value:0}},vertexShader:xr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},Mr={extends:fr,props:{center:{type:Object,default:{x:.5,y:.5}},strength:{type:Number,default:.5}},mounted:function(){this.pass=new je(Cr),this.passes.push(this.pass);var e=this.uniforms=this.pass.uniforms;$e(this,"center",e.center,"value"),$e(this,"strength",e.strength,"value")},__hmrId:"ZoomBlurPass"},Gr=Object.freeze({__proto__:null,Renderer:Ue,OrthographicCamera:Ke,PerspectiveCamera:Ye,Camera:Ye,Group:Qe,Scene:et,BoxGeometry:rt,CircleGeometry:it,ConeGeometry:st,CylinderGeometry:nt,DodecahedronGeometry:at,IcosahedronGeometry:ot,LatheGeometry:ht,OctahedronGeometry:ut,PolyhedronGeometry:mt,RingGeometry:dt,SphereGeometry:ct,TetrahedronGeometry:lt,TorusGeometry:ft,TorusKnotGeometry:pt,TubeGeometry:gt,AmbientLight:bt,DirectionalLight:vt,HemisphereLight:St,PointLight:xt,RectAreaLight:Nt,SpotLight:wt,BasicMaterial:Ct,LambertMaterial:Mt,MatcapMaterial:Gt,PhongMaterial:zt,PhysicalMaterial:Rt,StandardMaterial:It,SubSurfaceMaterial:At,ToonMaterial:Ot,Texture:Ft,CubeTexture:Ut,Mesh:Dt,Box:$t,Circle:Ht,Cone:Wt,Cylinder:Vt,Dodecahedron:Xt,Icosahedron:qt,Lathe:Zt,Octahedron:Kt,Plane:Yt,Polyhedron:Jt,Ring:Qt,Sphere:er,Tetrahedron:tr,Text:ir,Torus:sr,TorusKnot:nr,Tube:ar,Gem:or,Image:hr,InstancedMesh:ur,MirrorMesh:mr,RefractionMesh:dr,Sprite:cr,EffectComposer:lr,RenderPass:pr,BokehPass:gr,FilmPass:yr,FXAAPass:br,HalftonePass:vr,SMAAPass:Sr,TiltShiftPass:wr,UnrealBloomPass:_r,ZoomBlurPass:Mr,setFromProp:De,bindProp:$e,propsValues:He,lerp:We,lerpv2:Ve,lerpv3:Xe,limit:qe,getMatcapUrl:Ze}),zr={install:function(e){["Camera","OrthographicCamera","PerspectiveCamera","Renderer","Scene","Group","BoxGeometry","CircleGeometry","ConeGeometry","CylinderGeometry","DodecahedronGeometry","IcosahedronGeometry","LatheGeometry","OctahedronGeometry","PolyhedronGeometry","RingGeometry","SphereGeometry","TetrahedronGeometry","TorusGeometry","TorusKnotGeometry","TubeGeometry","AmbientLight","DirectionalLight","HemisphereLight","PointLight","RectAreaLight","SpotLight","BasicMaterial","LambertMaterial","MatcapMaterial","PhongMaterial","PhysicalMaterial","ShaderMaterial","StandardMaterial","SubSurfaceMaterial","ToonMaterial","Texture","CubeTexture","Box","Circle","Cone","Cylinder","Dodecahedron","Icosahedron","Mesh","Lathe","Octahedron","Plane","Polyhedron","Ring","Sphere","Tetrahedron","Text","Torus","TorusKnot","Tube","Gem","Image","InstancedMesh","MirrorMesh","RefractionMesh","Sprite","BokehPass","EffectComposer","FilmPass","FXAAPass","HalftonePass","RenderPass","SAOPass","SMAAPass","TiltShiftPass","UnrealBloomPass","ZoomBlurPass","GLTFViewer"].forEach((function(t){e.component(t,Gr[t])}))}};function kr(e){return i(e).use(zr)}export{bt as AmbientLight,Ct as BasicMaterial,gr as BokehPass,$t as Box,rt as BoxGeometry,Ye as Camera,Ht as Circle,it as CircleGeometry,Wt as Cone,st as ConeGeometry,Ut as CubeTexture,Vt as Cylinder,nt as CylinderGeometry,vt as DirectionalLight,Xt as Dodecahedron,at as DodecahedronGeometry,lr as EffectComposer,br as FXAAPass,yr as FilmPass,or as Gem,Qe as Group,vr as HalftonePass,St as HemisphereLight,qt as Icosahedron,ot as IcosahedronGeometry,hr as Image,ur as InstancedMesh,Mt as LambertMaterial,Zt as Lathe,ht as LatheGeometry,Gt as MatcapMaterial,Dt as Mesh,mr as MirrorMesh,Kt as Octahedron,ut as OctahedronGeometry,Ke as OrthographicCamera,Ye as PerspectiveCamera,zt as PhongMaterial,Rt as PhysicalMaterial,Yt as Plane,xt as PointLight,Jt as Polyhedron,mt as PolyhedronGeometry,Nt as RectAreaLight,dr as RefractionMesh,pr as RenderPass,Ue as Renderer,Qt as Ring,dt as RingGeometry,Sr as SMAAPass,et as Scene,er as Sphere,ct as SphereGeometry,wt as SpotLight,cr as Sprite,It as StandardMaterial,At as SubSurfaceMaterial,tr as Tetrahedron,lt as TetrahedronGeometry,ir as Text,Ft as Texture,wr as TiltShiftPass,Ot as ToonMaterial,sr as Torus,ft as TorusGeometry,nr as TorusKnot,pt as TorusKnotGeometry,zr as TroisJSVuePlugin,ar as Tube,gt as TubeGeometry,_r as UnrealBloomPass,Mr as ZoomBlurPass,$e as bindProp,kr as createApp,Ze as getMatcapUrl,We as lerp,Ve as lerpv2,Xe as lerpv3,qe as limit,He as propsValues,De as setFromProp}; +import{h as e,toRef as t,watch as r,createApp as i}from"https://unpkg.com/vue@3.0.7/dist/vue.esm-browser.prod.js";import{Vector2 as s,Vector3 as n,Plane as a,Raycaster as o,WebGLRenderer as h,OrthographicCamera as u,PerspectiveCamera as m,Group as d,Scene as c,Color as l,BoxGeometry as f,CircleGeometry as p,ConeGeometry as g,CylinderGeometry as y,DodecahedronGeometry as b,IcosahedronGeometry as v,LatheGeometry as S,OctahedronGeometry as x,PolyhedronGeometry as N,RingGeometry as w,SphereGeometry as _,TetrahedronGeometry as C,TorusGeometry as M,TorusKnotGeometry as G,Curve as z,TubeGeometry as k,AmbientLight as I,DirectionalLight as R,HemisphereLight as L,PointLight as P,RectAreaLight as B,SpotLight as j,FrontSide as E,MeshBasicMaterial as T,MeshLambertMaterial as A,TextureLoader as O,MeshMatcapMaterial as F,MeshPhongMaterial as U,MeshStandardMaterial as D,MeshPhysicalMaterial as $,ShaderChunk as H,UniformsUtils as W,ShaderLib as V,ShaderMaterial as X,MeshToonMaterial as q,UVMapping as Z,ClampToEdgeWrapping as K,LinearFilter as Y,LinearMipmapLinearFilter as J,CubeTextureLoader as Q,CubeRefractionMapping as ee,Mesh as te,BoxBufferGeometry as re,CircleBufferGeometry as ie,ConeBufferGeometry as se,CylinderBufferGeometry as ne,DodecahedronBufferGeometry as ae,IcosahedronBufferGeometry as oe,LatheBufferGeometry as he,OctahedronBufferGeometry as ue,PlaneBufferGeometry as me,PolyhedronBufferGeometry as de,RingBufferGeometry as ce,SphereBufferGeometry as le,TetrahedronBufferGeometry as fe,FontLoader as pe,TextBufferGeometry as ge,TorusBufferGeometry as ye,TorusKnotBufferGeometry as be,CatmullRomCurve3 as ve,WebGLCubeRenderTarget as Se,RGBFormat as xe,CubeCamera as Ne,BackSide as we,DoubleSide as _e,InstancedMesh as Ce,SpriteMaterial as Me,Sprite as Ge}from"https://unpkg.com/three@0.125.2/build/three.module.js";import{OrbitControls as ze}from"https://unpkg.com/three@0.125.2/examples/jsm/controls/OrbitControls.js";import{RectAreaLightUniformsLib as ke}from"https://unpkg.com/three@0.125.2/examples/jsm/lights/RectAreaLightUniformsLib.js";import{RectAreaLightHelper as Ie}from"https://unpkg.com/three@0.125.2/examples/jsm/helpers/RectAreaLightHelper.js";import{EffectComposer as Re}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/EffectComposer.js";import{RenderPass as Le}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/RenderPass.js";import{BokehPass as Pe}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/BokehPass.js";import{FilmPass as Be}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/FilmPass.js";import{ShaderPass as je}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/ShaderPass.js";import{FXAAShader as Ee}from"https://unpkg.com/three@0.125.2/examples/jsm/shaders/FXAAShader.js";import{HalftonePass as Te}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/HalftonePass.js";import{SMAAPass as Ae}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/SMAAPass.js";import{UnrealBloomPass as Oe}from"https://unpkg.com/three@0.125.2/examples/jsm/postprocessing/UnrealBloomPass.js";function Fe(){var e={canvas:null,antialias:!0,alpha:!1,autoClear:!0,orbit_ctrl:!1,mouse_move:!1,mouse_raycast:!1,mouse_over:!1,click:!1,resize:!0,width:0,height:0},t={width:1,height:1,wWidth:1,wHeight:1,ratio:1},r=[],i=[],u=[],m=new s,d=new n,c=new a(new n(0,0,1),0),l=new o,f=[],p={conf:e,renderer:null,camera:null,cameraCtrl:null,materials:{},scene:null,size:t,mouse:m,mouseV3:d,init:function(t){t&&Object.entries(t).forEach((function(t){var r=t[0],i=t[1];e[r]=i}));if(!p.scene)return void console.error("Missing Scene");if(!p.camera)return void console.error("Missing Camera");p.renderer=new h({canvas:e.canvas,antialias:e.antialias,alpha:e.alpha}),p.renderer.autoClear=e.autoClear,e.orbit_ctrl&&(p.orbitCtrl=new ze(p.camera,p.renderer.domElement),e.orbit_ctrl instanceof Object&&Object.entries(e.orbit_ctrl).forEach((function(e){var t=e[0],r=e[1];p.orbitCtrl[t]=r})));e.resize?(x(),window.addEventListener("resize",x)):N(300|e.width,150|e.height);e.mouse_move=e.mouse_move||e.mouse_over,e.mouse_move&&("body"===e.mouse_move?p.mouse_move_element=document.body:p.mouse_move_element=p.renderer.domElement,p.mouse_move_element.addEventListener("mousemove",b),p.mouse_move_element.addEventListener("mouseleave",v));e.click&&p.renderer.domElement.addEventListener("click",y);return r.forEach((function(e){return e()})),!0},dispose:function(){u=[],window.removeEventListener("resize",x),p.mouse_move_element&&(p.mouse_move_element.removeEventListener("mousemove",b),p.mouse_move_element.removeEventListener("mouseleave",v));p.renderer.domElement.removeEventListener("click",y),p.orbitCtrl&&p.orbitCtrl.dispose();this.renderer.dispose()},render:function(){p.orbitCtrl&&p.orbitCtrl.update();u.forEach((function(e){return e()})),p.renderer.render(p.scene,p.camera)},renderC:function(){p.orbitCtrl&&p.orbitCtrl.update();u.forEach((function(e){return e()})),p.composer.render()},setSize:N,onAfterInit:function(e){r.push(e)},onAfterResize:function(e){i.push(e)},offAfterResize:function(e){i=i.filter((function(t){return t!==e}))},onBeforeRender:function(e){u.push(e)},offBeforeRender:function(e){u=u.filter((function(t){return t!==e}))},addIntersectObject:function(e){-1===f.indexOf(e)&&f.push(e)},removeIntersectObject:function(e){var t=f.indexOf(e);-1!==t&&f.splice(t,1)}};function g(e){var r=e.target.getBoundingClientRect();m.x=(e.clientX-r.left)/t.width*2-1,m.y=-(e.clientY-r.top)/t.height*2+1}function y(e){g(e),l.setFromCamera(m,p.camera);for(var t=l.intersectObjects(f),r=0;r1?1:r)}function Ve(e,t,r){e.x=We(e.x,t.x,r),e.y=We(e.y,t.y,r)}function Xe(e,t,r){e.x=We(e.x,t.x,r),e.y=We(e.y,t.y,r),e.z=We(e.z,t.z,r)}function qe(e,t,r){return er?r:e}function Ze(e,t){return void 0===t&&(t=1024),"https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d/"+t+"/"+(""+e+function(e){switch(e){case 64:return"-64px";case 128:return"-128px";case 256:return"-256px";case 512:return"-512px";default:return""}}(t)+".png")}var Ke={name:"OrthographicCamera",inject:["three"],props:{left:{type:Number,default:-1},right:{type:Number,default:1},top:{type:Number,default:1},bottom:{type:Number,default:-1},near:{type:Number,default:.1},far:{type:Number,default:2e3},zoom:{type:Number,default:1},position:{type:Object,default:{x:0,y:0,z:0}}},created:function(){var e=this;this.camera=new u(this.left,this.right,this.top,this.bottom,this.near,this.far),$e(this,"position",this.camera),["left","right","top","bottom","near","far","zoom"].forEach((function(t){r((function(){return e[t]}),(function(){e.camera[t]=e[t],e.camera.updateProjectionMatrix()}))})),this.three.camera=this.camera},render:function(){return[]},__hmrId:"OrthographicCamera"},Ye={name:"PerspectiveCamera",inject:["three"],props:{aspect:{type:Number,default:1},far:{type:Number,default:2e3},fov:{type:Number,default:50},near:{type:Number,default:.1},position:{type:Object,default:{x:0,y:0,z:0}},lookAt:{type:Object,default:null}},created:function(){var e=this;this.camera=new m(this.fov,this.aspect,this.near,this.far),$e(this,"position",this.camera),this.lookAt&&this.camera.lookAt(this.lookAt.x,this.lookAt.y,this.lookAt.z),r((function(){return e.lookAt}),(function(t){e.camera.lookAt(t.x,t.y,t.z)}),{deep:!0}),["aspect","far","fov","near"].forEach((function(t){r((function(){return e[t]}),(function(){e.camera[t]=e[t],e.camera.updateProjectionMatrix()}))})),this.three.camera=this.camera},render:function(){return[]},__hmrId:"PerspectiveCamera"},Je={name:"Object3D",inject:["three","scene","rendererComponent"],props:{position:{type:Object,default:{x:0,y:0,z:0}},rotation:{type:Object,default:{x:0,y:0,z:0}},scale:{type:Object,default:{x:1,y:1,z:1}},lookAt:{type:Object,default:null}},unmounted:function(){this.$parent.remove&&this.$parent.remove(this.o3d)},methods:{initObject3D:function(e){var t=this;this.o3d=e,$e(this,"position",this.o3d),$e(this,"rotation",this.o3d),$e(this,"scale",this.o3d),this.lookAt&&this.o3d.lookAt(this.lookAt.x,this.lookAt.y,this.lookAt.z),r((function(){return t.lookAt}),(function(e){t.o3d.lookAt(e.x,e.y,e.z)}),{deep:!0}),this.$parent.add&&this.$parent.add(this.o3d)},add:function(e){this.o3d.add(e)},remove:function(e){this.o3d.remove(e)}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Object3D"},Qe={name:"Group",extends:Je,created:function(){this.group=new d,this.initObject3D(this.group)},__hmrId:"Group"},et={name:"Scene",inject:["three"],props:{id:String,background:[String,Number]},setup:function(e){var t=new c;return e.background&&(t.background=new l(e.background)),r((function(){return e.background}),(function(e){t.background=new l(e)})),{scene:t}},provide:function(){return{scene:this.scene}},mounted:function(){this.three.scene||(this.three.scene=this.scene)},methods:{add:function(e){this.scene.add(e)},remove:function(e){this.scene.remove(e)}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Scene"},tt={inject:["mesh"],props:{rotateX:Number,rotateY:Number,rotateZ:Number},created:function(){var e=this;this.mesh||console.error("Missing parent Mesh"),this.watchProps=[],Object.entries(this.$props).forEach((function(t){return e.watchProps.push(t[0])})),this.createGeometry(),this.rotateGeometry(),this.mesh.setGeometry(this.geometry),this.addWatchers()},unmounted:function(){this.geometry.dispose()},methods:{addWatchers:function(){var e=this;this.watchProps.forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},rotateGeometry:function(){this.rotateX&&this.geometry.rotateX(this.rotateX),this.rotateY&&this.geometry.rotateY(this.rotateY),this.rotateZ&&this.geometry.rotateZ(this.rotateZ)},refreshGeometry:function(){var e=this.geometry;this.createGeometry(),this.rotateGeometry(),this.mesh.setGeometry(this.geometry),e.dispose()}},render:function(){return[]}},rt={extends:tt,props:{size:Number,width:{type:Number,default:1},height:{type:Number,default:1},depth:{type:Number,default:1},widthSegments:{type:Number,default:1},heightSegments:{type:Number,default:1},depthSegments:{type:Number,default:1}},methods:{createGeometry:function(){var e=this.width,t=this.height,r=this.depth;this.size&&(e=this.size,t=this.size,r=this.size),this.geometry=new f(e,t,r,this.widthSegments,this.heightSegments,this.depthSegments)}}},it={extends:tt,props:{radius:{type:Number,default:1},segments:{type:Number,default:8},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new p(this.radius,this.segments,this.thetaStart,this.thetaLength)}}},st={extends:tt,props:{radius:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new g(this.radius,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}}},nt={extends:tt,props:{radiusTop:{type:Number,default:1},radiusBottom:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new y(this.radiusTop,this.radiusBottom,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}}},at={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new b(this.radius,this.detail)}}},ot={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new v(this.radius,this.detail)}}},ht={extends:tt,props:{points:Array,segments:{type:Number,default:12},phiStart:{type:Number,default:0},phiLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new S(this.points,this.segments,this.phiStart,this.phiLength)}}},ut={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new x(this.radius,this.detail)}}},mt={extends:tt,props:{vertices:Array,indices:Array,radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new N(this.vertices,this.indices,this.radius,this.detail)}}},dt={extends:tt,props:{innerRadius:{type:Number,default:.5},outerRadius:{type:Number,default:1},thetaSegments:{type:Number,default:8},phiSegments:{type:Number,default:1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new w(this.innerRadius,this.outerRadius,this.thetaSegments,this.phiSegments,this.thetaStart,this.thetaLength)}}},ct={extends:tt,props:{radius:{type:Number,default:1},widthSegments:{type:Number,default:12},heightSegments:{type:Number,default:12}},methods:{createGeometry:function(){this.geometry=new _(this.radius,this.widthSegments,this.heightSegments)}}},lt={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new C(this.radius,this.detail)}}},ft={extends:tt,props:{radius:{type:Number,default:1},tube:{type:Number,default:.4},radialSegments:{type:Number,default:8},tubularSegments:{type:Number,default:6},arc:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new M(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.arc)}}},pt={extends:tt,props:{radius:{type:Number,default:1},tube:{type:Number,default:.4},radialSegments:{type:Number,default:64},tubularSegments:{type:Number,default:8},p:{type:Number,default:2},q:{type:Number,default:3}},methods:{createGeometry:function(){this.geometry=new G(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.p,this.q)}}},gt={extends:tt,props:{path:z,tubularSegments:{type:Number,default:64},radius:{type:Number,default:1},radiusSegments:{type:Number,default:8},closed:{type:Boolean,default:!1}},methods:{createGeometry:function(){this.geometry=new k(this.path,this.tubularSegments,this.radius,this.radiusSegments,this.closed)}}},yt={extends:Je,name:"Light",props:{color:{type:String,default:"#ffffff"},intensity:{type:Number,default:1},castShadow:{type:Boolean,default:!1},shadowMapSize:{type:Object,default:{x:512,y:512}}},unmounted:function(){this.light.target&&this.$parent.remove(this.light.target)},methods:{initLight:function(){var e=this;this.light.target&&$e(this,"target",this.light.target,"position"),this.light.shadow&&(this.light.castShadow=this.castShadow,De(this.light.shadow.mapSize,this.shadowMapSize)),["color","intensity","castShadow"].forEach((function(t){r((function(){return e[t]}),(function(){"color"===t?e.light.color=new l(e.color):e.light[t]=e[t]}))})),this.initObject3D(this.light),this.light.target&&this.$parent.add(this.light.target)}},__hmrId:"Light"},bt={extends:yt,created:function(){this.light=new I(this.color,this.intensity),this.initLight()},__hmrId:"AmbientLight"},vt={extends:yt,props:{target:Object},created:function(){this.light=new R(this.color,this.intensity),this.initLight()},__hmrId:"DirectionalLight"},St={extends:yt,props:{groundColor:{type:String,default:"#ffffff"}},created:function(){this.light=new L(this.color,this.groundColor,this.intensity),$e(this,"groundColor",this.light),this.initLight()},__hmrId:"HemisphereLight"},xt={extends:yt,props:{distance:{type:Number,default:0},decay:{type:Number,default:1}},created:function(){this.light=new P(this.color,this.intensity,this.distance,this.decay),this.initLight()},__hmrId:"PointLight"},Nt={extends:yt,props:{width:{type:Number,default:10},height:{type:Number,default:10},helper:Boolean},created:function(){var e=this;ke.init(),this.light=new B(this.color,this.intensity,this.width,this.height),["width","height"].forEach((function(t){r((function(){return e[t]}),(function(){e.light[t]=e[t]}))})),this.helper&&(this.lightHelper=new Ie(this.light),this.$parent.add(this.lightHelper)),this.initLight()},unmounted:function(){this.lightHelper&&this.$parent.remove(this.lightHelper)},__hmrId:"RectAreaLight"},wt={extends:yt,props:{angle:{type:Number,default:Math.PI/3},decay:{type:Number,default:1},distance:{type:Number,default:0},penumbra:{type:Number,default:0},target:Object},created:function(){var e=this;this.light=new j(this.color,this.intensity,this.distance,this.angle,this.penumbra,this.decay),["angle","decay","distance","penumbra"].forEach((function(t){r((function(){return e[t]}),(function(){e.light[t]=e[t]}))})),this.initLight()},__hmrId:"SpotLight"},_t={inject:["three","mesh"],props:{color:{type:[String,Number],default:"#ffffff"},depthTest:{type:Boolean,default:!0},depthWrite:{type:Boolean,default:!0},flatShading:Boolean,fog:{type:Boolean,default:!0},opacity:{type:Number,default:1},side:{type:Number,default:E},transparent:Boolean,vertexColors:Boolean},provide:function(){return{material:this}},created:function(){this.createMaterial(),this.mesh.setMaterial(this.material),this._addWatchers(),this.addWatchers&&this.addWatchers()},unmounted:function(){this.material.dispose()},methods:{setProp:function(e,t,r){void 0===r&&(r=!1),this.material[e]=t,this.material.needsUpdate=r},setTexture:function(e,t){void 0===t&&(t="map"),this.setProp(t,e,!0)},_addWatchers:function(){var e=this;["color","depthTest","depthWrite","fog","opacity","side","transparent"].forEach((function(t){r((function(){return e[t]}),(function(){"color"===t?e.material.color.set(e.color):e.material[t]=e[t]}))}))}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Material"},Ct={extends:_t,methods:{createMaterial:function(){this.material=new T(He(this.$props))}},__hmrId:"BasicMaterial"},Mt={extends:_t,methods:{createMaterial:function(){this.material=new A(He(this.$props))}},__hmrId:"LambertMaterial"},Gt={extends:_t,props:{src:String,name:String},methods:{createMaterial:function(){var e=this.name?Ze(this.name):this.src,t=He(this.$props,["src","name"]);t.matcap=(new O).load(e),this.material=new F(t)}},__hmrId:"MatcapMaterial"},zt={extends:_t,props:{emissive:{type:[Number,String],default:0},emissiveIntensity:{type:Number,default:1},reflectivity:{type:Number,default:1},shininess:{type:Number,default:30},specular:{type:[String,Number],default:1118481}},methods:{createMaterial:function(){this.material=new U(He(this.$props))},addWatchers:function(){var e=this;["emissive","emissiveIntensity","reflectivity","shininess","specular"].forEach((function(t){r((function(){return e[t]}),(function(r){"emissive"===t||"specular"===t?e.material[t].set(r):e.material[t]=r}))}))}},__hmrId:"PhongMaterial"},kt={aoMapIntensity:{type:Number,default:1},bumpScale:{type:Number,default:1},displacementBias:{type:Number,default:0},displacementScale:{type:Number,default:1},emissive:{type:[Number,String],default:0},emissiveIntensity:{type:Number,default:1},envMapIntensity:{type:Number,default:1},lightMapIntensity:{type:Number,default:1},metalness:{type:Number,default:0},normalScale:{type:Object,default:{x:1,y:1}},roughness:{type:Number,default:1},refractionRatio:{type:Number,default:.98},wireframe:Boolean},It={extends:_t,props:kt,methods:{createMaterial:function(){this.material=new D(He(this.$props,["normalScale"]))},addWatchers:function(){var e=this;Object.keys(kt).forEach((function(t){"normalScale"!==t&&r((function(){return e[t]}),(function(r){"emissive"===t?e.material[t].set(r):e.material[t]=r}))})),$e(this,"normalScale",this.material)}},__hmrId:"StandardMaterial"},Rt={extends:It,methods:{createMaterial:function(){this.material=new $(He(this.$props))}},__hmrId:"PhysicalMaterial"};var Lt,Pt,Bt,jt=H.meshphong_frag.slice(0,H.meshphong_frag.indexOf("void main() {")),Et=H.meshphong_frag.slice(H.meshphong_frag.indexOf("void main() {")),Tt={uniforms:W.merge([V.phong.uniforms,{thicknessColor:{value:new l(6718871)},thicknessDistortion:{value:.1},thicknessAmbient:{value:0},thicknessAttenuation:{value:.1},thicknessPower:{value:2},thicknessScale:{value:10}}]),vertexShader:"\n #define USE_UV\n "+H.meshphong_vert+"\n ",fragmentShader:"\n #define USE_UV\n #define SUBSURFACE\n\n "+jt+"\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n "+Et.replace("#include ",(Lt=H.lights_fragment_begin,Pt="RE_Direct( directLight, geometry, material, reflectedLight );",Bt="\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n 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s).copy(this.end).sub(this.start).normalize();this.uniforms.delta.value.copy(e),this.uniforms1.delta.value.set(-e.y,e.x)}},__hmrId:"TiltShiftPass"},Cr={extends:pr,props:{strength:{type:Number,default:1.5},radius:{type:Number,default:0},threshold:{type:Number,default:0}},watch:{strength:function(){this.pass.strength=this.strength},radius:function(){this.pass.radius=this.radius},threshold:function(){this.pass.threshold=this.threshold}},mounted:function(){var e=new s(this.three.size.width,this.three.size.height),t=new Oe(e,this.strength,this.radius,this.threshold);this.passes.push(t),this.pass=t},__hmrId:"UnrealBloomPass"},Mr={uniforms:{tDiffuse:{value:null},center:{value:new s(.5,.5)},strength:{value:0}},vertexShader:Nr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},Gr={extends:pr,props:{center:{type:Object,default:{x:.5,y:.5}},strength:{type:Number,default:.5}},mounted:function(){this.pass=new je(Mr),this.passes.push(this.pass);var e=this.uniforms=this.pass.uniforms;$e(this,"center",e.center,"value"),$e(this,"strength",e.strength,"value")},__hmrId:"ZoomBlurPass"},zr=Object.freeze({__proto__:null,Renderer:Ue,OrthographicCamera:Ke,PerspectiveCamera:Ye,Camera:Ye,Group:Qe,Scene:et,BoxGeometry:rt,CircleGeometry:it,ConeGeometry:st,CylinderGeometry:nt,DodecahedronGeometry:at,IcosahedronGeometry:ot,LatheGeometry:ht,OctahedronGeometry:ut,PolyhedronGeometry:mt,RingGeometry:dt,SphereGeometry:ct,TetrahedronGeometry:lt,TorusGeometry:ft,TorusKnotGeometry:pt,TubeGeometry:gt,AmbientLight:bt,DirectionalLight:vt,HemisphereLight:St,PointLight:xt,RectAreaLight:Nt,SpotLight:wt,BasicMaterial:Ct,LambertMaterial:Mt,MatcapMaterial:Gt,PhongMaterial:zt,PhysicalMaterial:Rt,StandardMaterial:It,SubSurfaceMaterial:At,ToonMaterial:Ot,Texture:Ft,CubeTexture:Ut,Mesh:Dt,Box:$t,Circle:Ht,Cone:Wt,Cylinder:Vt,Dodecahedron:Xt,Icosahedron:qt,Lathe:Zt,Octahedron:Kt,Plane:Yt,Polyhedron:Jt,Ring:Qt,Sphere:er,Tetrahedron:tr,Text:ir,Torus:sr,TorusKnot:nr,Tube:ar,Gem:hr,Image:ur,InstancedMesh:mr,MirrorMesh:dr,RefractionMesh:cr,Sprite:lr,EffectComposer:fr,RenderPass:gr,BokehPass:yr,FilmPass:br,FXAAPass:vr,HalftonePass:Sr,SMAAPass:xr,TiltShiftPass:_r,UnrealBloomPass:Cr,ZoomBlurPass:Gr,setFromProp:De,bindProp:$e,propsValues:He,lerp:We,lerpv2:Ve,lerpv3:Xe,limit:qe,getMatcapUrl:Ze}),kr={install:function(e){["Camera","OrthographicCamera","PerspectiveCamera","Renderer","Scene","Group","BoxGeometry","CircleGeometry","ConeGeometry","CylinderGeometry","DodecahedronGeometry","IcosahedronGeometry","LatheGeometry","OctahedronGeometry","PolyhedronGeometry","RingGeometry","SphereGeometry","TetrahedronGeometry","TorusGeometry","TorusKnotGeometry","TubeGeometry","AmbientLight","DirectionalLight","HemisphereLight","PointLight","RectAreaLight","SpotLight","BasicMaterial","LambertMaterial","MatcapMaterial","PhongMaterial","PhysicalMaterial","ShaderMaterial","StandardMaterial","SubSurfaceMaterial","ToonMaterial","Texture","CubeTexture","Box","Circle","Cone","Cylinder","Dodecahedron","Icosahedron","Mesh","Lathe","Octahedron","Plane","Polyhedron","Ring","Sphere","Tetrahedron","Text","Torus","TorusKnot","Tube","Gem","Image","InstancedMesh","MirrorMesh","RefractionMesh","Sprite","BokehPass","EffectComposer","FilmPass","FXAAPass","HalftonePass","RenderPass","SAOPass","SMAAPass","TiltShiftPass","UnrealBloomPass","ZoomBlurPass","GLTFViewer"].forEach((function(t){e.component(t,zr[t])}))}};function Ir(e){return i(e).use(kr)}export{bt as AmbientLight,Ct as BasicMaterial,yr as BokehPass,$t as Box,rt as BoxGeometry,Ye as Camera,Ht as Circle,it as CircleGeometry,Wt as Cone,st as ConeGeometry,Ut as CubeTexture,Vt as Cylinder,nt as CylinderGeometry,vt as DirectionalLight,Xt as Dodecahedron,at as DodecahedronGeometry,fr as EffectComposer,vr as FXAAPass,br as FilmPass,hr as Gem,Qe as Group,Sr as HalftonePass,St as HemisphereLight,qt as Icosahedron,ot as IcosahedronGeometry,ur as Image,mr as InstancedMesh,Mt as LambertMaterial,Zt as Lathe,ht as LatheGeometry,Gt as MatcapMaterial,Dt as Mesh,dr as MirrorMesh,Kt as Octahedron,ut as OctahedronGeometry,Ke as OrthographicCamera,Ye as PerspectiveCamera,zt as PhongMaterial,Rt as PhysicalMaterial,Yt as Plane,xt as PointLight,Jt as Polyhedron,mt as PolyhedronGeometry,Nt as RectAreaLight,cr as RefractionMesh,gr as RenderPass,Ue as Renderer,Qt as Ring,dt as RingGeometry,xr as SMAAPass,et as Scene,er as Sphere,ct as SphereGeometry,wt as SpotLight,lr as Sprite,It as StandardMaterial,At as SubSurfaceMaterial,tr as Tetrahedron,lt as TetrahedronGeometry,ir as Text,Ft as Texture,_r as TiltShiftPass,Ot as ToonMaterial,sr as Torus,ft as TorusGeometry,nr as TorusKnot,pt as TorusKnotGeometry,kr as TroisJSVuePlugin,ar as Tube,gt as TubeGeometry,Cr as UnrealBloomPass,Gr as ZoomBlurPass,$e as bindProp,Ir as createApp,Ze as getMatcapUrl,We as lerp,Ve as lerpv2,Xe as lerpv3,qe as limit,He as propsValues,De as setFromProp}; //# sourceMappingURL=trois.module.cdn.min.js.map diff --git a/build/trois.module.cdn.min.js.map b/build/trois.module.cdn.min.js.map index fbd0d11..8323306 100644 --- a/build/trois.module.cdn.min.js.map +++ b/build/trois.module.cdn.min.js.map @@ -1 +1 @@ -{"version":3,"file":"trois.module.cdn.min.js","sources":["../src/core/useThree.js","../src/core/Renderer.js","../src/tools.js","../src/core/OrthographicCamera.js","../src/core/PerspectiveCamera.js","../src/core/Object3D.js","../src/core/Group.js","../src/core/Scene.js","../src/geometries/Geometry.js","../src/geometries/BoxGeometry.js","../src/geometries/CircleGeometry.js","../src/geometries/ConeGeometry.js","../src/geometries/CylinderGeometry.js","../src/geometries/DodecahedronGeometry.js","../src/geometries/IcosahedronGeometry.js","../src/geometries/LatheGeometry.js","../src/geometries/OctahedronGeometry.js","../src/geometries/PolyhedronGeometry.js","../src/geometries/RingGeometry.js","../src/geometries/SphereGeometry.js","../src/geometries/TetrahedronGeometry.js","../src/geometries/TorusGeometry.js","../src/geometries/TorusKnotGeometry.js","../src/geometries/TubeGeometry.js","../src/lights/Light.js","../src/lights/AmbientLight.js","../src/lights/DirectionalLight.js","../src/lights/HemisphereLight.js","../src/lights/PointLight.js","../src/lights/RectAreaLight.js","../src/lights/SpotLight.js","../src/materials/Material.js","../src/materials/BasicMaterial.js","../src/materials/LambertMaterial.js","../src/materials/MatcapMaterial.js","../src/materials/PhongMaterial.js","../src/materials/StandardMaterial.js","../src/materials/PhysicalMaterial.js","../src/materials/SubsurfaceScatteringShader.js","../src/materials/SubSurfaceMaterial.js","../src/materials/ShaderMaterial.js","../src/materials/ToonMaterial.js","../src/materials/Texture.js","../src/materials/CubeTexture.js","../src/meshes/Mesh.js","../src/meshes/Box.js","../src/meshes/Circle.js","../src/meshes/Cone.js","../src/meshes/Cylinder.js","../src/meshes/Dodecahedron.js","../src/meshes/Icosahedron.js","../src/meshes/Lathe.js","../src/meshes/Octahedron.js","../src/meshes/Plane.js","../src/meshes/Polyhedron.js","../src/meshes/Ring.js","../src/meshes/Sphere.js","../src/meshes/Tetrahedron.js","../src/meshes/TextProps.js","../src/meshes/Text.js","../src/meshes/Torus.js","../src/meshes/TorusKnot.js","../src/meshes/Tube.js","../src/meshes/Gem.js","../src/meshes/Image.js","../src/meshes/InstancedMesh.js","../src/meshes/MirrorMesh.js","../src/meshes/RefractionMesh.js","../src/meshes/Sprite.js","../src/effects/EffectComposer.js","../src/effects/EffectPass.js","../src/effects/RenderPass.js","../src/effects/BokehPass.js","../src/effects/FilmPass.js","../src/effects/FXAAPass.js","../src/effects/HalftonePass.js","../src/effects/SMAAPass.js","../src/shaders/default.js","../src/shaders/TiltShift.js","../src/effects/TiltShiftPass.js","../src/effects/UnrealBloomPass.js","../src/shaders/ZoomBlur.js","../src/effects/ZoomBlurPass.js","../src/plugin.js"],"sourcesContent":["import {\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n // watch(() => this.points, () => {\n // this.updatePoints();\n // });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n updateCurve() {\n updateTubeGeometryPoints(this.geometry, this.points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 'Image',\n 'InstancedMesh',\n 'MirrorMesh',\n 'RefractionMesh',\n 'Sprite',\n\n 'BokehPass',\n 'EffectComposer',\n 'FilmPass',\n 'FXAAPass',\n 'HalftonePass',\n 'RenderPass',\n 'SAOPass',\n 'SMAAPass',\n 'TiltShiftPass',\n 'UnrealBloomPass',\n 'ZoomBlurPass',\n\n 'GLTFViewer',\n ];\n\n comps.forEach(comp => {\n app.component(comp, TROIS[comp]);\n });\n },\n};\n\nexport function createApp(params) {\n return 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{\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n watch(() => this.points, () => {\n updateTubeGeometryPoints(this.geometry, this.points);\n });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n // update curve points (without using prop, faster)\n updateCurve(points) {\n updateTubeGeometryPoints(this.geometry, points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 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\ No newline at end of file diff --git a/build/trois.module.js b/build/trois.module.js index 5a05f9d..43a94e9 100644 --- a/build/trois.module.js +++ b/build/trois.module.js @@ -2073,9 +2073,9 @@ var Tube = { this$1.refreshGeometry(); }); }); - // watch(() => this.points, () => { - // this.updatePoints(); - // }); + watch(function () { return this$1.points; }, function () { + updateTubeGeometryPoints(this$1.geometry, this$1.points); + }); }, methods: { createGeometry: function createGeometry() { @@ -2089,8 +2089,9 @@ var Tube = { } this.geometry = new TubeGeometry$1(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed); }, - updateCurve: function updateCurve() { - updateTubeGeometryPoints(this.geometry, this.points); + // update curve points (without using prop, faster) + updateCurve: function updateCurve(points) { + updateTubeGeometryPoints(this.geometry, points); }, }, __hmrId: 'Tube', diff --git a/build/trois.module.js.map b/build/trois.module.js.map index 65dbe19..8515f81 100644 --- a/build/trois.module.js.map +++ b/build/trois.module.js.map @@ -1 +1 @@ -{"version":3,"file":"trois.module.js","sources":["../src/core/useThree.js","../src/core/Renderer.js","../src/tools.js","../src/core/OrthographicCamera.js","../src/core/PerspectiveCamera.js","../src/core/Object3D.js","../src/core/Group.js","../src/core/Scene.js","../src/geometries/Geometry.js","../src/geometries/BoxGeometry.js","../src/geometries/CircleGeometry.js","../src/geometries/ConeGeometry.js","../src/geometries/CylinderGeometry.js","../src/geometries/DodecahedronGeometry.js","../src/geometries/IcosahedronGeometry.js","../src/geometries/LatheGeometry.js","../src/geometries/OctahedronGeometry.js","../src/geometries/PolyhedronGeometry.js","../src/geometries/RingGeometry.js","../src/geometries/SphereGeometry.js","../src/geometries/TetrahedronGeometry.js","../src/geometries/TorusGeometry.js","../src/geometries/TorusKnotGeometry.js","../src/geometries/TubeGeometry.js","../src/lights/Light.js","../src/lights/AmbientLight.js","../src/lights/DirectionalLight.js","../src/lights/HemisphereLight.js","../src/lights/PointLight.js","../src/lights/RectAreaLight.js","../src/lights/SpotLight.js","../src/materials/Material.js","../src/materials/BasicMaterial.js","../src/materials/LambertMaterial.js","../src/materials/MatcapMaterial.js","../src/materials/PhongMaterial.js","../src/materials/StandardMaterial.js","../src/materials/PhysicalMaterial.js","../src/materials/SubsurfaceScatteringShader.js","../src/materials/ShaderMaterial.js","../src/materials/SubSurfaceMaterial.js","../src/materials/ToonMaterial.js","../src/materials/Texture.js","../src/materials/CubeTexture.js","../src/meshes/Mesh.js","../src/meshes/Box.js","../src/meshes/Circle.js","../src/meshes/Cone.js","../src/meshes/Cylinder.js","../src/meshes/Dodecahedron.js","../src/meshes/Icosahedron.js","../src/meshes/Lathe.js","../src/meshes/Octahedron.js","../src/meshes/Plane.js","../src/meshes/Polyhedron.js","../src/meshes/Ring.js","../src/meshes/Sphere.js","../src/meshes/Tetrahedron.js","../src/meshes/TextProps.js","../src/meshes/Text.js","../src/meshes/Torus.js","../src/meshes/TorusKnot.js","../src/meshes/Tube.js","../src/meshes/Gem.js","../src/meshes/Image.js","../src/meshes/InstancedMesh.js","../src/meshes/MirrorMesh.js","../src/meshes/RefractionMesh.js","../src/meshes/Sprite.js","../src/effects/EffectComposer.js","../src/effects/EffectPass.js","../src/effects/RenderPass.js","../src/effects/BokehPass.js","../src/effects/FilmPass.js","../src/effects/FXAAPass.js","../src/effects/HalftonePass.js","../src/effects/SMAAPass.js","../src/shaders/default.js","../src/shaders/TiltShift.js","../src/effects/TiltShiftPass.js","../src/effects/UnrealBloomPass.js","../src/shaders/ZoomBlur.js","../src/effects/ZoomBlurPass.js","../src/plugin.js"],"sourcesContent":["import {\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n // watch(() => this.points, () => {\n // this.updatePoints();\n // });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n updateCurve() {\n updateTubeGeometryPoints(this.geometry, this.points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 'Image',\n 'InstancedMesh',\n 'MirrorMesh',\n 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{\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n watch(() => this.points, () => {\n updateTubeGeometryPoints(this.geometry, this.points);\n });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n // update curve points (without using prop, faster)\n updateCurve(points) {\n updateTubeGeometryPoints(this.geometry, points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 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\ No newline at end of file diff --git a/build/trois.module.min.js b/build/trois.module.min.js index 1b0175b..6cf6c13 100644 --- a/build/trois.module.min.js +++ b/build/trois.module.min.js @@ -1,2 +1,2 @@ -import{h as e,toRef as t,watch as r,createApp as i}from"vue";import{Vector2 as s,Vector3 as n,Plane as a,Raycaster as o,WebGLRenderer as h,OrthographicCamera as u,PerspectiveCamera as d,Group as m,Scene as c,Color as l,BoxGeometry as f,CircleGeometry as p,ConeGeometry as g,CylinderGeometry as y,DodecahedronGeometry as b,IcosahedronGeometry as v,LatheGeometry as S,OctahedronGeometry as x,PolyhedronGeometry as N,RingGeometry as w,SphereGeometry as _,TetrahedronGeometry as C,TorusGeometry as M,TorusKnotGeometry as G,Curve as z,TubeGeometry as I,AmbientLight as R,DirectionalLight as L,HemisphereLight as P,PointLight as k,RectAreaLight as B,SpotLight as j,FrontSide as E,MeshBasicMaterial as T,MeshLambertMaterial as A,TextureLoader as O,MeshMatcapMaterial as F,MeshPhongMaterial as 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e[t]}),(function(){e.camera[t]=e[t],e.camera.updateProjectionMatrix()}))})),this.three.camera=this.camera},render:function(){return[]},__hmrId:"PerspectiveCamera"},Je={name:"Object3D",inject:["three","scene","rendererComponent"],props:{position:{type:Object,default:{x:0,y:0,z:0}},rotation:{type:Object,default:{x:0,y:0,z:0}},scale:{type:Object,default:{x:1,y:1,z:1}},lookAt:{type:Object,default:null}},unmounted:function(){this.$parent.remove&&this.$parent.remove(this.o3d)},methods:{initObject3D:function(e){var t=this;this.o3d=e,$e(this,"position",this.o3d),$e(this,"rotation",this.o3d),$e(this,"scale",this.o3d),this.lookAt&&this.o3d.lookAt(this.lookAt.x,this.lookAt.y,this.lookAt.z),r((function(){return t.lookAt}),(function(e){t.o3d.lookAt(e.x,e.y,e.z)}),{deep:!0}),this.$parent.add&&this.$parent.add(this.o3d)},add:function(e){this.o3d.add(e)},remove:function(e){this.o3d.remove(e)}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Object3D"},Qe={name:"Group",extends:Je,created:function(){this.group=new m,this.initObject3D(this.group)},__hmrId:"Group"},et={name:"Scene",inject:["three"],props:{id:String,background:[String,Number]},setup:function(e){var t=new c;return e.background&&(t.background=new l(e.background)),r((function(){return e.background}),(function(e){t.background=new l(e)})),{scene:t}},provide:function(){return{scene:this.scene}},mounted:function(){this.three.scene||(this.three.scene=this.scene)},methods:{add:function(e){this.scene.add(e)},remove:function(e){this.scene.remove(e)}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Scene"},tt={inject:["mesh"],props:{rotateX:Number,rotateY:Number,rotateZ:Number},created:function(){var e=this;this.mesh||console.error("Missing parent Mesh"),this.watchProps=[],Object.entries(this.$props).forEach((function(t){return e.watchProps.push(t[0])})),this.createGeometry(),this.rotateGeometry(),this.mesh.setGeometry(this.geometry),this.addWatchers()},unmounted:function(){this.geometry.dispose()},methods:{addWatchers:function(){var e=this;this.watchProps.forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},rotateGeometry:function(){this.rotateX&&this.geometry.rotateX(this.rotateX),this.rotateY&&this.geometry.rotateY(this.rotateY),this.rotateZ&&this.geometry.rotateZ(this.rotateZ)},refreshGeometry:function(){var e=this.geometry;this.createGeometry(),this.rotateGeometry(),this.mesh.setGeometry(this.geometry),e.dispose()}},render:function(){return[]}},rt={extends:tt,props:{size:Number,width:{type:Number,default:1},height:{type:Number,default:1},depth:{type:Number,default:1},widthSegments:{type:Number,default:1},heightSegments:{type:Number,default:1},depthSegments:{type:Number,default:1}},methods:{createGeometry:function(){var e=this.width,t=this.height,r=this.depth;this.size&&(e=this.size,t=this.size,r=this.size),this.geometry=new f(e,t,r,this.widthSegments,this.heightSegments,this.depthSegments)}}},it={extends:tt,props:{radius:{type:Number,default:1},segments:{type:Number,default:8},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new p(this.radius,this.segments,this.thetaStart,this.thetaLength)}}},st={extends:tt,props:{radius:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new g(this.radius,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}}},nt={extends:tt,props:{radiusTop:{type:Number,default:1},radiusBottom:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new y(this.radiusTop,this.radiusBottom,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}}},at={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new b(this.radius,this.detail)}}},ot={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new v(this.radius,this.detail)}}},ht={extends:tt,props:{points:Array,segments:{type:Number,default:12},phiStart:{type:Number,default:0},phiLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new S(this.points,this.segments,this.phiStart,this.phiLength)}}},ut={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new x(this.radius,this.detail)}}},dt={extends:tt,props:{vertices:Array,indices:Array,radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new N(this.vertices,this.indices,this.radius,this.detail)}}},mt={extends:tt,props:{innerRadius:{type:Number,default:.5},outerRadius:{type:Number,default:1},thetaSegments:{type:Number,default:8},phiSegments:{type:Number,default:1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new w(this.innerRadius,this.outerRadius,this.thetaSegments,this.phiSegments,this.thetaStart,this.thetaLength)}}},ct={extends:tt,props:{radius:{type:Number,default:1},widthSegments:{type:Number,default:12},heightSegments:{type:Number,default:12}},methods:{createGeometry:function(){this.geometry=new _(this.radius,this.widthSegments,this.heightSegments)}}},lt={extends:tt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},methods:{createGeometry:function(){this.geometry=new C(this.radius,this.detail)}}},ft={extends:tt,props:{radius:{type:Number,default:1},tube:{type:Number,default:.4},radialSegments:{type:Number,default:8},tubularSegments:{type:Number,default:6},arc:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new M(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.arc)}}},pt={extends:tt,props:{radius:{type:Number,default:1},tube:{type:Number,default:.4},radialSegments:{type:Number,default:64},tubularSegments:{type:Number,default:8},p:{type:Number,default:2},q:{type:Number,default:3}},methods:{createGeometry:function(){this.geometry=new G(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.p,this.q)}}},gt={extends:tt,props:{path:z,tubularSegments:{type:Number,default:64},radius:{type:Number,default:1},radiusSegments:{type:Number,default:8},closed:{type:Boolean,default:!1}},methods:{createGeometry:function(){this.geometry=new I(this.path,this.tubularSegments,this.radius,this.radiusSegments,this.closed)}}},yt={extends:Je,name:"Light",props:{color:{type:String,default:"#ffffff"},intensity:{type:Number,default:1},castShadow:{type:Boolean,default:!1},shadowMapSize:{type:Object,default:{x:512,y:512}}},unmounted:function(){this.light.target&&this.$parent.remove(this.light.target)},methods:{initLight:function(){var e=this;this.light.target&&$e(this,"target",this.light.target,"position"),this.light.shadow&&(this.light.castShadow=this.castShadow,De(this.light.shadow.mapSize,this.shadowMapSize)),["color","intensity","castShadow"].forEach((function(t){r((function(){return e[t]}),(function(){"color"===t?e.light.color=new l(e.color):e.light[t]=e[t]}))})),this.initObject3D(this.light),this.light.target&&this.$parent.add(this.light.target)}},__hmrId:"Light"},bt={extends:yt,created:function(){this.light=new R(this.color,this.intensity),this.initLight()},__hmrId:"AmbientLight"},vt={extends:yt,props:{target:Object},created:function(){this.light=new L(this.color,this.intensity),this.initLight()},__hmrId:"DirectionalLight"},St={extends:yt,props:{groundColor:{type:String,default:"#ffffff"}},created:function(){this.light=new P(this.color,this.groundColor,this.intensity),$e(this,"groundColor",this.light),this.initLight()},__hmrId:"HemisphereLight"},xt={extends:yt,props:{distance:{type:Number,default:0},decay:{type:Number,default:1}},created:function(){this.light=new k(this.color,this.intensity,this.distance,this.decay),this.initLight()},__hmrId:"PointLight"},Nt={extends:yt,props:{width:{type:Number,default:10},height:{type:Number,default:10},helper:Boolean},created:function(){var e=this;Ie.init(),this.light=new B(this.color,this.intensity,this.width,this.height),["width","height"].forEach((function(t){r((function(){return e[t]}),(function(){e.light[t]=e[t]}))})),this.helper&&(this.lightHelper=new Re(this.light),this.$parent.add(this.lightHelper)),this.initLight()},unmounted:function(){this.lightHelper&&this.$parent.remove(this.lightHelper)},__hmrId:"RectAreaLight"},wt={extends:yt,props:{angle:{type:Number,default:Math.PI/3},decay:{type:Number,default:1},distance:{type:Number,default:0},penumbra:{type:Number,default:0},target:Object},created:function(){var e=this;this.light=new j(this.color,this.intensity,this.distance,this.angle,this.penumbra,this.decay),["angle","decay","distance","penumbra"].forEach((function(t){r((function(){return e[t]}),(function(){e.light[t]=e[t]}))})),this.initLight()},__hmrId:"SpotLight"},_t={inject:["three","mesh"],props:{color:{type:[String,Number],default:"#ffffff"},depthTest:{type:Boolean,default:!0},depthWrite:{type:Boolean,default:!0},flatShading:Boolean,fog:{type:Boolean,default:!0},opacity:{type:Number,default:1},side:{type:Number,default:E},transparent:Boolean,vertexColors:Boolean},provide:function(){return{material:this}},created:function(){this.createMaterial(),this.mesh.setMaterial(this.material),this._addWatchers(),this.addWatchers&&this.addWatchers()},unmounted:function(){this.material.dispose()},methods:{setProp:function(e,t,r){void 0===r&&(r=!1),this.material[e]=t,this.material.needsUpdate=r},setTexture:function(e,t){void 0===t&&(t="map"),this.setProp(t,e,!0)},_addWatchers:function(){var e=this;["color","depthTest","depthWrite","fog","opacity","side","transparent"].forEach((function(t){r((function(){return e[t]}),(function(){"color"===t?e.material.color.set(e.color):e.material[t]=e[t]}))}))}},render:function(){return this.$slots.default?this.$slots.default():[]},__hmrId:"Material"},Ct={extends:_t,methods:{createMaterial:function(){this.material=new T(He(this.$props))}},__hmrId:"BasicMaterial"},Mt={extends:_t,methods:{createMaterial:function(){this.material=new A(He(this.$props))}},__hmrId:"LambertMaterial"},Gt={extends:_t,props:{src:String,name:String},methods:{createMaterial:function(){var e=this.name?Ze(this.name):this.src,t=He(this.$props,["src","name"]);t.matcap=(new O).load(e),this.material=new F(t)}},__hmrId:"MatcapMaterial"},zt={extends:_t,props:{emissive:{type:[Number,String],default:0},emissiveIntensity:{type:Number,default:1},reflectivity:{type:Number,default:1},shininess:{type:Number,default:30},specular:{type:[String,Number],default:1118481}},methods:{createMaterial:function(){this.material=new U(He(this.$props))},addWatchers:function(){var e=this;["emissive","emissiveIntensity","reflectivity","shininess","specular"].forEach((function(t){r((function(){return e[t]}),(function(r){"emissive"===t||"specular"===t?e.material[t].set(r):e.material[t]=r}))}))}},__hmrId:"PhongMaterial"},It={aoMapIntensity:{type:Number,default:1},bumpScale:{type:Number,default:1},displacementBias:{type:Number,default:0},displacementScale:{type:Number,default:1},emissive:{type:[Number,String],default:0},emissiveIntensity:{type:Number,default:1},envMapIntensity:{type:Number,default:1},lightMapIntensity:{type:Number,default:1},metalness:{type:Number,default:0},normalScale:{type:Object,default:{x:1,y:1}},roughness:{type:Number,default:1},refractionRatio:{type:Number,default:.98},wireframe:Boolean},Rt={extends:_t,props:It,methods:{createMaterial:function(){this.material=new D(He(this.$props,["normalScale"]))},addWatchers:function(){var e=this;Object.keys(It).forEach((function(t){"normalScale"!==t&&r((function(){return e[t]}),(function(r){"emissive"===t?e.material[t].set(r):e.material[t]=r}))})),$e(this,"normalScale",this.material)}},__hmrId:"StandardMaterial"},Lt={extends:Rt,methods:{createMaterial:function(){this.material=new $(He(this.$props))}},__hmrId:"PhysicalMaterial"};var Pt,kt,Bt,jt=H.meshphong_frag.slice(0,H.meshphong_frag.indexOf("void main() {")),Et=H.meshphong_frag.slice(H.meshphong_frag.indexOf("void main() {")),Tt={uniforms:W.merge([V.phong.uniforms,{thicknessColor:{value:new l(6718871)},thicknessDistortion:{value:.1},thicknessAmbient:{value:0},thicknessAttenuation:{value:.1},thicknessPower:{value:2},thicknessScale:{value:10}}]),vertexShader:"\n #define USE_UV\n "+H.meshphong_vert+"\n ",fragmentShader:"\n #define USE_UV\n #define SUBSURFACE\n\n "+jt+"\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void 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l(i)),["transparent","vertexColors"].includes(r)||(t[s].value=n)})),this.material=new X(Object.assign({},e,{uniforms:t,lights:!0,transparent:this.transparent,vertexColors:this.vertexColors}))}},__hmrId:"SubSurfaceMaterial"},Ot={extends:_t,methods:{createMaterial:function(){this.material=new q(He(this.$props))}},__hmrId:"ToonMaterial"},Ft={inject:["material"],emits:["loaded"],props:{id:{type:String,default:"map"},src:String,onLoad:Function,onProgress:Function,onError:Function,mapping:{type:Number,default:Z},wrapS:{type:Number,default:K},wrapT:{type:Number,default:K},magFilter:{type:Number,default:Y},minFilter:{type:Number,default:J},repeat:{type:Object,default:{x:1,y:1}},rotation:{type:Number,default:0},center:{type:Object,default:{x:0,y:0}}},created:function(){var e=this;this.refreshTexture(),r((function(){return e.src}),this.refreshTexture)},unmounted:function(){this.material.setTexture(null,this.id),this.texture.dispose()},methods:{createTexture:function(){var e=this;this.texture=(new O).load(this.src,this.onLoaded,this.onProgress,this.onError);["mapping","wrapS","wrapT","magFilter","minFilter","repeat","rotation","rotation","center"].forEach((function(t){$e(e,t,e.texture)}))},refreshTexture:function(){this.createTexture(),this.material.setTexture(this.texture,this.id)},onLoaded:function(){this.onLoad&&this.onLoad(),this.$emit("loaded")}},render:function(){return[]}},Ut={inject:["material"],emits:["loaded"],props:{path:String,urls:{type:Array,default:["px.jpg","nx.jpg","py.jpg","ny.jpg","pz.jpg","nz.jpg"]},onLoad:Function,onProgress:Function,onError:Function,id:{type:String,default:"envMap"},refraction:Boolean,refractionRatio:{type:Number,default:.98}},created:function(){var e=this;this.refreshTexture(),r((function(){return e.path}),this.refreshTexture),r((function(){return e.urls}),this.refreshTexture)},unmounted:function(){this.material.setTexture(null,this.id),this.texture.dispose()},methods:{createTexture:function(){this.texture=(new Q).setPath(this.path).load(this.urls,this.onLoaded,this.onProgress,this.onError)},refreshTexture:function(){this.createTexture(),this.material.setTexture(this.texture,this.id),this.refraction&&(this.texture.mapping=ee,this.material.setProp("refractionRatio",this.refractionRatio))},onLoaded:function(){this.onLoad&&this.onLoad(),this.$emit("loaded")}},render:function(){return[]}},Dt={extends:Je,name:"Mesh",props:{castShadow:Boolean,receiveShadow:Boolean,onHover:Function,onClick:Function},provide:function(){return{mesh:this}},mounted:function(){this.mesh||this.loading||this.initMesh()},methods:{initMesh:function(){var e=this;this.mesh=new te(this.geometry,this.material),["castShadow","receiveShadow"].forEach((function(t){e.mesh[t]=e[t],r((function(){return e[t]}),(function(){e.mesh[t]=e[t]}))})),this.onHover&&(this.mesh.onHover=function(t){e.onHover({component:e,over:t})},this.three.addIntersectObject(this.mesh)),this.onClick&&(this.mesh.onClick=function(t){e.onClick({component:e,event:t})},this.three.addIntersectObject(this.mesh)),this.initObject3D(this.mesh)},setGeometry:function(e){this.geometry=e,this.mesh&&(this.mesh.geometry=e)},setMaterial:function(e){this.material=e,this.mesh&&(this.mesh.material=e)},refreshGeometry:function(){var e=this.geometry;this.createGeometry(),this.mesh.geometry=this.geometry,e.dispose()}},unmounted:function(){this.mesh&&this.three.removeIntersectObject(this.mesh),this.geometry&&this.geometry.dispose(),this.material&&this.material.dispose()},__hmrId:"Mesh"},$t={extends:Dt,props:{size:Number,width:{type:Number,default:1},height:{type:Number,default:1},depth:{type:Number,default:1},widthSegments:{type:Number,default:1},heightSegments:{type:Number,default:1},depthSegments:{type:Number,default:1}},created:function(){var e=this;this.createGeometry(),["size","width","height","depth","widthSegments","heightSegments","depthSegments"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.size?this.geometry=new re(this.size,this.size,this.size):this.geometry=new 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e=this;this.createGeometry();["radius","height","radialSegments","heightSegments","openEnded","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new se(this.radius,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}},__hmrId:"Cone"},Vt={extends:Dt,props:{radiusTop:{type:Number,default:1},radiusBottom:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["radiusTop","radiusBottom","height","radialSegments","heightSegments","openEnded","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ne(this.radiusTop,this.radiusBottom,this.height,this.radialSegments,this.heightSegments,this.openEnded,this.thetaStart,this.thetaLength)}},__hmrId:"Cylinder"},Xt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ae(this.radius,this.detail)}},__hmrId:"Dodecahedron"},qt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new oe(this.radius,this.detail)}},__hmrId:"Icosahedron"},Zt={extends:Dt,props:{points:Array,segments:{type:Number,default:12},phiStart:{type:Number,default:0},phiLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["points","segments","phiStart","phiLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new he(this.points,this.segments,this.phiStart,this.phiLength)}},__hmrId:"Lathe"},Kt={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ue(this.radius,this.detail)}},__hmrId:"Octahedron"},Yt={extends:Dt,props:{width:{type:Number,default:1},height:{type:Number,default:1},widthSegments:{type:Number,default:1},heightSegments:{type:Number,default:1}},created:function(){var e=this;this.createGeometry();["width","height","widthSegments","heightSegments"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new de(this.width,this.height,this.widthSegments,this.heightSegments)}},__hmrId:"Plane"},Jt={extends:Dt,props:{vertices:Array,indices:Array,radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["vertices","indices","radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new me(this.vertices,this.indices,this.radius,this.detail)}},__hmrId:"Polyhedron"},Qt={extends:Dt,props:{innerRadius:{type:Number,default:.5},outerRadius:{type:Number,default:1},thetaSegments:{type:Number,default:8},phiSegments:{type:Number,default:1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["innerRadius","outerRadius","thetaSegments","phiSegments","thetaStart","thetaLength"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ce(this.innerRadius,this.outerRadius,this.thetaSegments,this.phiSegments,this.thetaStart,this.thetaLength)}},__hmrId:"Ring"},er={extends:Dt,props:{radius:Number,widthSegments:{type:Number,default:12},heightSegments:{type:Number,default:12}},watch:{radius:function(){this.refreshGeometry()},widthSegments:function(){this.refreshGeometry()},heightSegments:function(){this.refreshGeometry()}},created:function(){this.createGeometry()},methods:{createGeometry:function(){this.geometry=new le(this.radius,this.widthSegments,this.heightSegments)}},__hmrId:"Sphere"},tr={extends:Dt,props:{radius:{type:Number,default:1},detail:{type:Number,default:0}},created:function(){var e=this;this.createGeometry();["radius","detail"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new fe(this.radius,this.detail)}},__hmrId:"Tetrahedron"},rr={text:String,fontSrc:String,size:{type:Number,default:80},height:{type:Number,default:5},depth:{type:Number,default:1},curveSegments:{type:Number,default:12},bevelEnabled:{type:Boolean,default:!1},bevelThickness:{type:Number,default:10},bevelSize:{type:Number,default:8},bevelOffset:{type:Number,default:0},bevelSegments:{type:Number,default:5},align:{type:[Boolean,String],default:!1}},ir={extends:Dt,props:Object.assign({},rr),data:function(){return{loading:!0}},created:function(){var e=this;["text","size","height","curveSegments","bevelEnabled","bevelThickness","bevelSize","bevelOffset","bevelSegments","align"].forEach((function(t){r((function(){return e[t]}),(function(){e.font&&e.refreshGeometry()}))})),(new pe).load(this.fontSrc,(function(t){e.loading=!1,e.font=t,e.createGeometry(),e.initMesh()}))},methods:{createGeometry:function(){this.geometry=new ge(this.text,{font:this.font,size:this.size,height:this.height,depth:this.depth,curveSegments:this.curveSegments,bevelEnabled:this.bevelEnabled,bevelThickness:this.bevelThickness,bevelSize:this.bevelSize,bevelOffset:this.bevelOffset,bevelSegments:this.bevelSegments}),"center"===this.align&&this.geometry.center()}}},sr={extends:Dt,props:{radius:{type:Number,default:.5},tube:{type:Number,default:.4},radialSegments:{type:Number,default:8},tubularSegments:{type:Number,default:6},arc:{type:Number,default:2*Math.PI}},created:function(){var e=this;this.createGeometry();["radius","tube","radialSegments","tubularSegments","arc"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new ye(this.radius,this.tube,this.radialSegments,this.tubularSegments,this.arc)}},__hmrId:"Torus"},nr={extends:Dt,props:{radius:{type:Number,default:.5},tube:{type:Number,default:.4},tubularSegments:{type:Number,default:64},radialSegments:{type:Number,default:8},p:{type:Number,default:2},q:{type:Number,default:3}},created:function(){var e=this;this.createGeometry();["radius","tube","radialSegments","tubularSegments","p","q"].forEach((function(t){r((function(){return e[t]}),(function(){e.refreshGeometry()}))}))},methods:{createGeometry:function(){this.geometry=new be(this.radius,this.tube,this.tubularSegments,this.radialSegments,this.p,this.q)}},__hmrId:"TorusKnot"},ar={extends:Dt,props:{path:z,points:Array,tubularSegments:{type:Number,default:64},radius:{type:Number,default:1},radialSegments:{type:Number,default:8},closed:{type:Boolean,default:!1}},created:function(){var e=this;this.createGeometry();["tubularSegments","radius","radialSegments","closed"].forEach((function(t){r((function(){return e[t]}),(function(t){e.refreshGeometry()}))}))},methods:{createGeometry:function(){var e;this.points?e=new ve(this.points):this.path?e=this.path:console.error("Missing path curve or points."),this.geometry=new I(e,this.tubularSegments,this.radius,this.radialSegments,this.closed)},updateCurve:function(){!function(e,t){var r=new ve(t),i=e.parameters,s=i.radialSegments,a=i.radius,o=i.tubularSegments,h=i.closed,u=r.computeFrenetFrames(o,h);e.tangents=u.tangents,e.normals=u.normals,e.binormals=u.binormals,e.parameters.path=r;for(var d,m=e.attributes.position.array,c=e.attributes.normal.array,l=new n,f=0;f1?t=.5/this.iRatio:e=.5/this.iRatio;var r=this.geometry.attributes.position.array;r[0]=-e,r[1]=-t,r[5]=e,r[6]=-t,r[10]=e,r[11]=t,r[15]=-e,r[16]=t,this.geometry.attributes.position.needsUpdate=!0}},__hmrId:"Sprite"},lr={setup:function(){return{passes:[]}},inject:["three"],provide:function(){return{passes:this.passes}},mounted:function(){var e=this;this.three.onAfterInit((function(){e.composer=new Le(e.three.renderer),e.three.renderer.autoClear=!1,e.passes.forEach((function(t){e.composer.addPass(t)})),e.three.composer=e.composer,e.resize(),e.three.onAfterResize(e.resize)}))},unmounted:function(){this.three.offAfterResize(this.resize)},methods:{resize:function(){this.composer.setSize(this.three.size.width,this.three.size.height)}},render:function(){return this.$slots.default()},__hmrId:"EffectComposer"},fr={inject:["three","passes"],beforeMount:function(){this.passes||console.error("Missing parent EffectComposer")},unmounted:function(){this.pass.dispose&&this.pass.dispose()},render:function(){return[]},__hmrId:"EffectPass"},pr={extends:fr,mounted:function(){this.three.scene||console.error("Missing Scene"),this.three.camera||console.error("Missing Camera");var e=new Pe(this.three.scene,this.three.camera);this.passes.push(e),this.pass=e},__hmrId:"RenderPass"},gr={extends:fr,props:{focus:{type:Number,default:1},aperture:{type:Number,default:.025},maxblur:{type:Number,default:.01}},watch:{focus:function(){this.pass.uniforms.focus.value=this.focus},aperture:function(){this.pass.uniforms.aperture.value=this.aperture},maxblur:function(){this.pass.uniforms.maxblur.value=this.maxblur}},mounted:function(){this.three.scene||console.error("Missing Scene"),this.three.camera||console.error("Missing Camera");var e={focus:this.focus,aperture:this.aperture,maxblur:this.maxblur,width:this.three.size.width,height:this.three.size.height},t=new ke(this.three.scene,this.three.camera,e);this.passes.push(t),this.pass=t},__hmrId:"BokehPass"},yr={extends:fr,props:{noiseIntensity:{type:Number,default:.5},scanlinesIntensity:{type:Number,default:.05},scanlinesCount:{type:Number,default:4096},grayscale:{type:Number,default:0}},watch:{noiseIntensity:function(){this.pass.uniforms.nIntensity.value=this.noiseIntensity},scanlinesIntensity:function(){this.pass.uniforms.sIntensity.value=this.scanlinesIntensity},scanlinesCount:function(){this.pass.uniforms.sCount.value=this.scanlinesCount},grayscale:function(){this.pass.uniforms.grayscale.value=this.grayscale}},mounted:function(){var e=new Be(this.noiseIntensity,this.scanlinesIntensity,this.scanlinesCount,this.grayscale);this.passes.push(e),this.pass=e},__hmrId:"FilmPass"},br={extends:fr,mounted:function(){var e=new je(Ee);this.passes.push(e),this.pass=e,this.three.onAfterResize(this.resize)},unmounted:function(){this.three.offAfterResize(this.resize)},methods:{resize:function(){var e=this.pass.material.uniforms.resolution;e.value.x=1/this.three.size.width,e.value.y=1/this.three.size.height}},__hmrId:"FXAAPass"},vr={extends:fr,props:{shape:{type:Number,default:1},radius:{type:Number,default:4},rotateR:{type:Number,default:Math.PI/12*1},rotateG:{type:Number,default:Math.PI/12*2},rotateB:{type:Number,default:Math.PI/12*3},scatter:{type:Number,default:0}},mounted:function(){var e=this,t=new Te(this.three.size.width,this.three.size.height,{});["shape","radius","rotateR","rotateG","rotateB","scatter"].forEach((function(i){t.uniforms[i].value=e[i],r((function(){return e[i]}),(function(){t.uniforms[i].value=e[i]}))})),this.passes.push(t),this.pass=t},__hmrId:"HalftonePass"},Sr={extends:fr,mounted:function(){var e=new Ae(this.three.size.width,this.three.size.height);this.passes.push(e),this.pass=e},__hmrId:"SMAAPass"},xr="\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n ",Nr={uniforms:{tDiffuse:{value:null},blurRadius:{value:0},gradientRadius:{value:0},start:{value:new s},end:{value:new s},delta:{value:new s},texSize:{value:new s}},vertexShader:xr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},wr={extends:fr,props:{blurRadius:{type:Number,default:10},gradientRadius:{type:Number,default:100},start:{type:Object,default:{x:0,y:100}},end:{type:Object,default:{x:10,y:100}}},mounted:function(){var e=this;this.pass=new je(Nr),this.passes.push(this.pass),this.pass1=new je(Nr),this.passes.push(this.pass1);var t=this.uniforms=this.pass.uniforms,i=this.uniforms1=this.pass1.uniforms;i.blurRadius=t.blurRadius,i.gradientRadius=t.gradientRadius,i.start=t.start,i.end=t.end,i.texSize=t.texSize,$e(this,"blurRadius",t.blurRadius,"value"),$e(this,"gradientRadius",t.gradientRadius,"value"),this.updateFocusLine(),["start","end"].forEach((function(t){r((function(){return e[t]}),e.updateFocusLine,{deep:!0})})),this.pass.setSize=function(e,r){t.texSize.value.set(e,r)}},methods:{updateFocusLine:function(){this.uniforms.start.value.copy(this.start),this.uniforms.end.value.copy(this.end);var e=(new s).copy(this.end).sub(this.start).normalize();this.uniforms.delta.value.copy(e),this.uniforms1.delta.value.set(-e.y,e.x)}},__hmrId:"TiltShiftPass"},_r={extends:fr,props:{strength:{type:Number,default:1.5},radius:{type:Number,default:0},threshold:{type:Number,default:0}},watch:{strength:function(){this.pass.strength=this.strength},radius:function(){this.pass.radius=this.radius},threshold:function(){this.pass.threshold=this.threshold}},mounted:function(){var e=new s(this.three.size.width,this.three.size.height),t=new Oe(e,this.strength,this.radius,this.threshold);this.passes.push(t),this.pass=t},__hmrId:"UnrealBloomPass"},Cr={uniforms:{tDiffuse:{value:null},center:{value:new s(.5,.5)},strength:{value:0}},vertexShader:xr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},Mr={extends:fr,props:{center:{type:Object,default:{x:.5,y:.5}},strength:{type:Number,default:.5}},mounted:function(){this.pass=new je(Cr),this.passes.push(this.pass);var e=this.uniforms=this.pass.uniforms;$e(this,"center",e.center,"value"),$e(this,"strength",e.strength,"value")},__hmrId:"ZoomBlurPass"},Gr=Object.freeze({__proto__:null,Renderer:Ue,OrthographicCamera:Ke,PerspectiveCamera:Ye,Camera:Ye,Group:Qe,Scene:et,BoxGeometry:rt,CircleGeometry:it,ConeGeometry:st,CylinderGeometry:nt,DodecahedronGeometry:at,IcosahedronGeometry:ot,LatheGeometry:ht,OctahedronGeometry:ut,PolyhedronGeometry:dt,RingGeometry:mt,SphereGeometry:ct,TetrahedronGeometry:lt,TorusGeometry:ft,TorusKnotGeometry:pt,TubeGeometry:gt,AmbientLight:bt,DirectionalLight:vt,HemisphereLight:St,PointLight:xt,RectAreaLight:Nt,SpotLight:wt,BasicMaterial:Ct,LambertMaterial:Mt,MatcapMaterial:Gt,PhongMaterial:zt,PhysicalMaterial:Lt,StandardMaterial:Rt,SubSurfaceMaterial:At,ToonMaterial:Ot,Texture:Ft,CubeTexture:Ut,Mesh:Dt,Box:$t,Circle:Ht,Cone:Wt,Cylinder:Vt,Dodecahedron:Xt,Icosahedron:qt,Lathe:Zt,Octahedron:Kt,Plane:Yt,Polyhedron:Jt,Ring:Qt,Sphere:er,Tetrahedron:tr,Text:ir,Torus:sr,TorusKnot:nr,Tube:ar,Gem:or,Image:hr,InstancedMesh:ur,MirrorMesh:dr,RefractionMesh:mr,Sprite:cr,EffectComposer:lr,RenderPass:pr,BokehPass:gr,FilmPass:yr,FXAAPass:br,HalftonePass:vr,SMAAPass:Sr,TiltShiftPass:wr,UnrealBloomPass:_r,ZoomBlurPass:Mr,setFromProp:De,bindProp:$e,propsValues:He,lerp:We,lerpv2:Ve,lerpv3:Xe,limit:qe,getMatcapUrl:Ze}),zr={install:function(e){["Camera","OrthographicCamera","PerspectiveCamera","Renderer","Scene","Group","BoxGeometry","CircleGeometry","ConeGeometry","CylinderGeometry","DodecahedronGeometry","IcosahedronGeometry","LatheGeometry","OctahedronGeometry","PolyhedronGeometry","RingGeometry","SphereGeometry","TetrahedronGeometry","TorusGeometry","TorusKnotGeometry","TubeGeometry","AmbientLight","DirectionalLight","HemisphereLight","PointLight","RectAreaLight","SpotLight","BasicMaterial","LambertMaterial","MatcapMaterial","PhongMaterial","PhysicalMaterial","ShaderMaterial","StandardMaterial","SubSurfaceMaterial","ToonMaterial","Texture","CubeTexture","Box","Circle","Cone","Cylinder","Dodecahedron","Icosahedron","Mesh","Lathe","Octahedron","Plane","Polyhedron","Ring","Sphere","Tetrahedron","Text","Torus","TorusKnot","Tube","Gem","Image","InstancedMesh","MirrorMesh","RefractionMesh","Sprite","BokehPass","EffectComposer","FilmPass","FXAAPass","HalftonePass","RenderPass","SAOPass","SMAAPass","TiltShiftPass","UnrealBloomPass","ZoomBlurPass","GLTFViewer"].forEach((function(t){e.component(t,Gr[t])}))}};function Ir(e){return i(e).use(zr)}export{bt as AmbientLight,Ct as BasicMaterial,gr as BokehPass,$t as Box,rt as BoxGeometry,Ye as Camera,Ht as Circle,it as CircleGeometry,Wt as Cone,st as ConeGeometry,Ut as CubeTexture,Vt as Cylinder,nt as CylinderGeometry,vt as DirectionalLight,Xt as Dodecahedron,at as DodecahedronGeometry,lr as EffectComposer,br as FXAAPass,yr as FilmPass,or as Gem,Qe as Group,vr as HalftonePass,St as HemisphereLight,qt as Icosahedron,ot as IcosahedronGeometry,hr as Image,ur as InstancedMesh,Mt as LambertMaterial,Zt as Lathe,ht as LatheGeometry,Gt as MatcapMaterial,Dt as Mesh,dr as MirrorMesh,Kt as Octahedron,ut as OctahedronGeometry,Ke as OrthographicCamera,Ye as PerspectiveCamera,zt as PhongMaterial,Lt as PhysicalMaterial,Yt as Plane,xt as PointLight,Jt as Polyhedron,dt as PolyhedronGeometry,Nt as RectAreaLight,mr as RefractionMesh,pr as RenderPass,Ue as Renderer,Qt as Ring,mt as RingGeometry,Sr as SMAAPass,et as Scene,er as Sphere,ct as SphereGeometry,wt as SpotLight,cr as Sprite,Rt as StandardMaterial,At as SubSurfaceMaterial,tr as Tetrahedron,lt as TetrahedronGeometry,ir as Text,Ft as Texture,wr as TiltShiftPass,Ot as ToonMaterial,sr as Torus,ft as TorusGeometry,nr as TorusKnot,pt as TorusKnotGeometry,zr as TroisJSVuePlugin,ar as Tube,gt as TubeGeometry,_r as UnrealBloomPass,Mr as ZoomBlurPass,$e as bindProp,Ir as createApp,Ze as getMatcapUrl,We as lerp,Ve as lerpv2,Xe as lerpv3,qe as limit,He as propsValues,De as setFromProp}; +import{h as e,toRef as t,watch as r,createApp as i}from"vue";import{Vector2 as s,Vector3 as n,Plane as a,Raycaster as o,WebGLRenderer as h,OrthographicCamera as u,PerspectiveCamera as d,Group as m,Scene as c,Color as l,BoxGeometry as f,CircleGeometry as p,ConeGeometry as g,CylinderGeometry as y,DodecahedronGeometry as b,IcosahedronGeometry as v,LatheGeometry as S,OctahedronGeometry as x,PolyhedronGeometry as N,RingGeometry as w,SphereGeometry as _,TetrahedronGeometry as C,TorusGeometry as M,TorusKnotGeometry as G,Curve as z,TubeGeometry as I,AmbientLight as R,DirectionalLight as L,HemisphereLight as P,PointLight as k,RectAreaLight as B,SpotLight as j,FrontSide as E,MeshBasicMaterial as T,MeshLambertMaterial as A,TextureLoader as O,MeshMatcapMaterial as F,MeshPhongMaterial as U,MeshStandardMaterial as D,MeshPhysicalMaterial as $,ShaderChunk as H,UniformsUtils as W,ShaderLib as V,ShaderMaterial as X,MeshToonMaterial as q,UVMapping as Z,ClampToEdgeWrapping as K,LinearFilter as Y,LinearMipmapLinearFilter as J,CubeTextureLoader as Q,CubeRefractionMapping as ee,Mesh as te,BoxBufferGeometry as re,CircleBufferGeometry as ie,ConeBufferGeometry as se,CylinderBufferGeometry as ne,DodecahedronBufferGeometry as ae,IcosahedronBufferGeometry as oe,LatheBufferGeometry as he,OctahedronBufferGeometry as ue,PlaneBufferGeometry as de,PolyhedronBufferGeometry as me,RingBufferGeometry as ce,SphereBufferGeometry as le,TetrahedronBufferGeometry as fe,FontLoader as pe,TextBufferGeometry as ge,TorusBufferGeometry as ye,TorusKnotBufferGeometry as be,CatmullRomCurve3 as ve,WebGLCubeRenderTarget as Se,RGBFormat as xe,CubeCamera as Ne,BackSide as we,DoubleSide as _e,InstancedMesh as Ce,SpriteMaterial as Me,Sprite as Ge}from"three";import{OrbitControls as ze}from"three/examples/jsm/controls/OrbitControls.js";import{RectAreaLightUniformsLib as Ie}from"three/examples/jsm/lights/RectAreaLightUniformsLib.js";import{RectAreaLightHelper as Re}from"three/examples/jsm/helpers/RectAreaLightHelper.js";import{EffectComposer as Le}from"three/examples/jsm/postprocessing/EffectComposer.js";import{RenderPass as Pe}from"three/examples/jsm/postprocessing/RenderPass.js";import{BokehPass as ke}from"three/examples/jsm/postprocessing/BokehPass.js";import{FilmPass as Be}from"three/examples/jsm/postprocessing/FilmPass.js";import{ShaderPass as je}from"three/examples/jsm/postprocessing/ShaderPass.js";import{FXAAShader as Ee}from"three/examples/jsm/shaders/FXAAShader.js";import{HalftonePass as Te}from"three/examples/jsm/postprocessing/HalftonePass.js";import{SMAAPass as Ae}from"three/examples/jsm/postprocessing/SMAAPass.js";import{UnrealBloomPass as Oe}from"three/examples/jsm/postprocessing/UnrealBloomPass.js";function Fe(){var e={canvas:null,antialias:!0,alpha:!1,autoClear:!0,orbit_ctrl:!1,mouse_move:!1,mouse_raycast:!1,mouse_over:!1,click:!1,resize:!0,width:0,height:0},t={width:1,height:1,wWidth:1,wHeight:1,ratio:1},r=[],i=[],u=[],d=new s,m=new n,c=new a(new n(0,0,1),0),l=new o,f=[],p={conf:e,renderer:null,camera:null,cameraCtrl:null,materials:{},scene:null,size:t,mouse:d,mouseV3:m,init:function(t){t&&Object.entries(t).forEach((function(t){var r=t[0],i=t[1];e[r]=i}));if(!p.scene)return void console.error("Missing Scene");if(!p.camera)return void console.error("Missing Camera");p.renderer=new h({canvas:e.canvas,antialias:e.antialias,alpha:e.alpha}),p.renderer.autoClear=e.autoClear,e.orbit_ctrl&&(p.orbitCtrl=new ze(p.camera,p.renderer.domElement),e.orbit_ctrl instanceof Object&&Object.entries(e.orbit_ctrl).forEach((function(e){var t=e[0],r=e[1];p.orbitCtrl[t]=r})));e.resize?(x(),window.addEventListener("resize",x)):N(300|e.width,150|e.height);e.mouse_move=e.mouse_move||e.mouse_over,e.mouse_move&&("body"===e.mouse_move?p.mouse_move_element=document.body:p.mouse_move_element=p.renderer.domElement,p.mouse_move_element.addEventListener("mousemove",b),p.mouse_move_element.addEventListener("mouseleave",v));e.click&&p.renderer.domElement.addEventListener("click",y);return r.forEach((function(e){return e()})),!0},dispose:function(){u=[],window.removeEventListener("resize",x),p.mouse_move_element&&(p.mouse_move_element.removeEventListener("mousemove",b),p.mouse_move_element.removeEventListener("mouseleave",v));p.renderer.domElement.removeEventListener("click",y),p.orbitCtrl&&p.orbitCtrl.dispose();this.renderer.dispose()},render:function(){p.orbitCtrl&&p.orbitCtrl.update();u.forEach((function(e){return 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e=this.width,t=this.height,r=this.depth;this.size&&(e=this.size,t=this.size,r=this.size),this.geometry=new f(e,t,r,this.widthSegments,this.heightSegments,this.depthSegments)}}},it={extends:tt,props:{radius:{type:Number,default:1},segments:{type:Number,default:8},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new p(this.radius,this.segments,this.thetaStart,this.thetaLength)}}},st={extends:tt,props:{radius:{type:Number,default:1},height:{type:Number,default:1},radialSegments:{type:Number,default:8},heightSegments:{type:Number,default:1},openEnded:{type:Boolean,default:!1},thetaStart:{type:Number,default:0},thetaLength:{type:Number,default:2*Math.PI}},methods:{createGeometry:function(){this.geometry=new 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I(this.path,this.tubularSegments,this.radius,this.radiusSegments,this.closed)}}},yt={extends:Je,name:"Light",props:{color:{type:String,default:"#ffffff"},intensity:{type:Number,default:1},castShadow:{type:Boolean,default:!1},shadowMapSize:{type:Object,default:{x:512,y:512}}},unmounted:function(){this.light.target&&this.$parent.remove(this.light.target)},methods:{initLight:function(){var e=this;this.light.target&&$e(this,"target",this.light.target,"position"),this.light.shadow&&(this.light.castShadow=this.castShadow,De(this.light.shadow.mapSize,this.shadowMapSize)),["color","intensity","castShadow"].forEach((function(t){r((function(){return e[t]}),(function(){"color"===t?e.light.color=new l(e.color):e.light[t]=e[t]}))})),this.initObject3D(this.light),this.light.target&&this.$parent.add(this.light.target)}},__hmrId:"Light"},bt={extends:yt,created:function(){this.light=new 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e=this;["emissive","emissiveIntensity","reflectivity","shininess","specular"].forEach((function(t){r((function(){return e[t]}),(function(r){"emissive"===t||"specular"===t?e.material[t].set(r):e.material[t]=r}))}))}},__hmrId:"PhongMaterial"},It={aoMapIntensity:{type:Number,default:1},bumpScale:{type:Number,default:1},displacementBias:{type:Number,default:0},displacementScale:{type:Number,default:1},emissive:{type:[Number,String],default:0},emissiveIntensity:{type:Number,default:1},envMapIntensity:{type:Number,default:1},lightMapIntensity:{type:Number,default:1},metalness:{type:Number,default:0},normalScale:{type:Object,default:{x:1,y:1}},roughness:{type:Number,default:1},refractionRatio:{type:Number,default:.98},wireframe:Boolean},Rt={extends:_t,props:It,methods:{createMaterial:function(){this.material=new D(He(this.$props,["normalScale"]))},addWatchers:function(){var e=this;Object.keys(It).forEach((function(t){"normalScale"!==t&&r((function(){return 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Q).setPath(this.path).load(this.urls,this.onLoaded,this.onProgress,this.onError)},refreshTexture:function(){this.createTexture(),this.material.setTexture(this.texture,this.id),this.refraction&&(this.texture.mapping=ee,this.material.setProp("refractionRatio",this.refractionRatio))},onLoaded:function(){this.onLoad&&this.onLoad(),this.$emit("loaded")}},render:function(){return[]}},Dt={extends:Je,name:"Mesh",props:{castShadow:Boolean,receiveShadow:Boolean,onHover:Function,onClick:Function},provide:function(){return{mesh:this}},mounted:function(){this.mesh||this.loading||this.initMesh()},methods:{initMesh:function(){var e=this;this.mesh=new te(this.geometry,this.material),["castShadow","receiveShadow"].forEach((function(t){e.mesh[t]=e[t],r((function(){return 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ke(this.three.scene,this.three.camera,e);this.passes.push(t),this.pass=t},__hmrId:"BokehPass"},br={extends:pr,props:{noiseIntensity:{type:Number,default:.5},scanlinesIntensity:{type:Number,default:.05},scanlinesCount:{type:Number,default:4096},grayscale:{type:Number,default:0}},watch:{noiseIntensity:function(){this.pass.uniforms.nIntensity.value=this.noiseIntensity},scanlinesIntensity:function(){this.pass.uniforms.sIntensity.value=this.scanlinesIntensity},scanlinesCount:function(){this.pass.uniforms.sCount.value=this.scanlinesCount},grayscale:function(){this.pass.uniforms.grayscale.value=this.grayscale}},mounted:function(){var e=new Be(this.noiseIntensity,this.scanlinesIntensity,this.scanlinesCount,this.grayscale);this.passes.push(e),this.pass=e},__hmrId:"FilmPass"},vr={extends:pr,mounted:function(){var e=new je(Ee);this.passes.push(e),this.pass=e,this.three.onAfterResize(this.resize)},unmounted:function(){this.three.offAfterResize(this.resize)},methods:{resize:function(){var e=this.pass.material.uniforms.resolution;e.value.x=1/this.three.size.width,e.value.y=1/this.three.size.height}},__hmrId:"FXAAPass"},Sr={extends:pr,props:{shape:{type:Number,default:1},radius:{type:Number,default:4},rotateR:{type:Number,default:Math.PI/12*1},rotateG:{type:Number,default:Math.PI/12*2},rotateB:{type:Number,default:Math.PI/12*3},scatter:{type:Number,default:0}},mounted:function(){var e=this,t=new Te(this.three.size.width,this.three.size.height,{});["shape","radius","rotateR","rotateG","rotateB","scatter"].forEach((function(i){t.uniforms[i].value=e[i],r((function(){return e[i]}),(function(){t.uniforms[i].value=e[i]}))})),this.passes.push(t),this.pass=t},__hmrId:"HalftonePass"},xr={extends:pr,mounted:function(){var e=new Ae(this.three.size.width,this.three.size.height);this.passes.push(e),this.pass=e},__hmrId:"SMAAPass"},Nr="\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n 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30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},_r={extends:pr,props:{blurRadius:{type:Number,default:10},gradientRadius:{type:Number,default:100},start:{type:Object,default:{x:0,y:100}},end:{type:Object,default:{x:10,y:100}}},mounted:function(){var e=this;this.pass=new je(wr),this.passes.push(this.pass),this.pass1=new je(wr),this.passes.push(this.pass1);var t=this.uniforms=this.pass.uniforms,i=this.uniforms1=this.pass1.uniforms;i.blurRadius=t.blurRadius,i.gradientRadius=t.gradientRadius,i.start=t.start,i.end=t.end,i.texSize=t.texSize,$e(this,"blurRadius",t.blurRadius,"value"),$e(this,"gradientRadius",t.gradientRadius,"value"),this.updateFocusLine(),["start","end"].forEach((function(t){r((function(){return e[t]}),e.updateFocusLine,{deep:!0})})),this.pass.setSize=function(e,r){t.texSize.value.set(e,r)}},methods:{updateFocusLine:function(){this.uniforms.start.value.copy(this.start),this.uniforms.end.value.copy(this.end);var e=(new s).copy(this.end).sub(this.start).normalize();this.uniforms.delta.value.copy(e),this.uniforms1.delta.value.set(-e.y,e.x)}},__hmrId:"TiltShiftPass"},Cr={extends:pr,props:{strength:{type:Number,default:1.5},radius:{type:Number,default:0},threshold:{type:Number,default:0}},watch:{strength:function(){this.pass.strength=this.strength},radius:function(){this.pass.radius=this.radius},threshold:function(){this.pass.threshold=this.threshold}},mounted:function(){var e=new s(this.three.size.width,this.three.size.height),t=new Oe(e,this.strength,this.radius,this.threshold);this.passes.push(t),this.pass=t},__hmrId:"UnrealBloomPass"},Mr={uniforms:{tDiffuse:{value:null},center:{value:new s(.5,.5)},strength:{value:0}},vertexShader:Nr,fragmentShader:"\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n "},Gr={extends:pr,props:{center:{type:Object,default:{x:.5,y:.5}},strength:{type:Number,default:.5}},mounted:function(){this.pass=new je(Mr),this.passes.push(this.pass);var e=this.uniforms=this.pass.uniforms;$e(this,"center",e.center,"value"),$e(this,"strength",e.strength,"value")},__hmrId:"ZoomBlurPass"},zr=Object.freeze({__proto__:null,Renderer:Ue,OrthographicCamera:Ke,PerspectiveCamera:Ye,Camera:Ye,Group:Qe,Scene:et,BoxGeometry:rt,CircleGeometry:it,ConeGeometry:st,CylinderGeometry:nt,DodecahedronGeometry:at,IcosahedronGeometry:ot,LatheGeometry:ht,OctahedronGeometry:ut,PolyhedronGeometry:dt,RingGeometry:mt,SphereGeometry:ct,TetrahedronGeometry:lt,TorusGeometry:ft,TorusKnotGeometry:pt,TubeGeometry:gt,AmbientLight:bt,DirectionalLight:vt,HemisphereLight:St,PointLight:xt,RectAreaLight:Nt,SpotLight:wt,BasicMaterial:Ct,LambertMaterial:Mt,MatcapMaterial:Gt,PhongMaterial:zt,PhysicalMaterial:Lt,StandardMaterial:Rt,SubSurfaceMaterial:At,ToonMaterial:Ot,Texture:Ft,CubeTexture:Ut,Mesh:Dt,Box:$t,Circle:Ht,Cone:Wt,Cylinder:Vt,Dodecahedron:Xt,Icosahedron:qt,Lathe:Zt,Octahedron:Kt,Plane:Yt,Polyhedron:Jt,Ring:Qt,Sphere:er,Tetrahedron:tr,Text:ir,Torus:sr,TorusKnot:nr,Tube:ar,Gem:hr,Image:ur,InstancedMesh:dr,MirrorMesh:mr,RefractionMesh:cr,Sprite:lr,EffectComposer:fr,RenderPass:gr,BokehPass:yr,FilmPass:br,FXAAPass:vr,HalftonePass:Sr,SMAAPass:xr,TiltShiftPass:_r,UnrealBloomPass:Cr,ZoomBlurPass:Gr,setFromProp:De,bindProp:$e,propsValues:He,lerp:We,lerpv2:Ve,lerpv3:Xe,limit:qe,getMatcapUrl:Ze}),Ir={install:function(e){["Camera","OrthographicCamera","PerspectiveCamera","Renderer","Scene","Group","BoxGeometry","CircleGeometry","ConeGeometry","CylinderGeometry","DodecahedronGeometry","IcosahedronGeometry","LatheGeometry","OctahedronGeometry","PolyhedronGeometry","RingGeometry","SphereGeometry","TetrahedronGeometry","TorusGeometry","TorusKnotGeometry","TubeGeometry","AmbientLight","DirectionalLight","HemisphereLight","PointLight","RectAreaLight","SpotLight","BasicMaterial","LambertMaterial","MatcapMaterial","PhongMaterial","PhysicalMaterial","ShaderMaterial","StandardMaterial","SubSurfaceMaterial","ToonMaterial","Texture","CubeTexture","Box","Circle","Cone","Cylinder","Dodecahedron","Icosahedron","Mesh","Lathe","Octahedron","Plane","Polyhedron","Ring","Sphere","Tetrahedron","Text","Torus","TorusKnot","Tube","Gem","Image","InstancedMesh","MirrorMesh","RefractionMesh","Sprite","BokehPass","EffectComposer","FilmPass","FXAAPass","HalftonePass","RenderPass","SAOPass","SMAAPass","TiltShiftPass","UnrealBloomPass","ZoomBlurPass","GLTFViewer"].forEach((function(t){e.component(t,zr[t])}))}};function Rr(e){return i(e).use(Ir)}export{bt as AmbientLight,Ct as BasicMaterial,yr as BokehPass,$t as Box,rt as BoxGeometry,Ye as Camera,Ht as Circle,it as CircleGeometry,Wt as Cone,st as ConeGeometry,Ut as CubeTexture,Vt as Cylinder,nt as CylinderGeometry,vt as DirectionalLight,Xt as Dodecahedron,at as DodecahedronGeometry,fr as EffectComposer,vr as FXAAPass,br as FilmPass,hr as Gem,Qe as Group,Sr as HalftonePass,St as HemisphereLight,qt as Icosahedron,ot as IcosahedronGeometry,ur as Image,dr as InstancedMesh,Mt as LambertMaterial,Zt as Lathe,ht as LatheGeometry,Gt as MatcapMaterial,Dt as Mesh,mr as MirrorMesh,Kt as Octahedron,ut as OctahedronGeometry,Ke as OrthographicCamera,Ye as PerspectiveCamera,zt as PhongMaterial,Lt as PhysicalMaterial,Yt as Plane,xt as PointLight,Jt as Polyhedron,dt as PolyhedronGeometry,Nt as RectAreaLight,cr as RefractionMesh,gr as RenderPass,Ue as Renderer,Qt as Ring,mt as RingGeometry,xr as SMAAPass,et as Scene,er as Sphere,ct as SphereGeometry,wt as SpotLight,lr as Sprite,Rt as StandardMaterial,At as SubSurfaceMaterial,tr as Tetrahedron,lt as TetrahedronGeometry,ir as Text,Ft as Texture,_r as TiltShiftPass,Ot as ToonMaterial,sr as Torus,ft as TorusGeometry,nr as TorusKnot,pt as TorusKnotGeometry,Ir as TroisJSVuePlugin,ar as Tube,gt as TubeGeometry,Cr as UnrealBloomPass,Gr as ZoomBlurPass,$e as bindProp,Rr as createApp,Ze as getMatcapUrl,We as lerp,Ve as lerpv2,Xe as lerpv3,qe as limit,He as propsValues,De as setFromProp}; //# sourceMappingURL=trois.module.min.js.map diff --git a/build/trois.module.min.js.map b/build/trois.module.min.js.map index cfc8a89..795ecd1 100644 --- a/build/trois.module.min.js.map +++ b/build/trois.module.min.js.map @@ -1 +1 @@ -{"version":3,"file":"trois.module.min.js","sources":["../src/core/useThree.js","../src/core/Renderer.js","../src/tools.js","../src/core/OrthographicCamera.js","../src/core/PerspectiveCamera.js","../src/core/Object3D.js","../src/core/Group.js","../src/core/Scene.js","../src/geometries/Geometry.js","../src/geometries/BoxGeometry.js","../src/geometries/CircleGeometry.js","../src/geometries/ConeGeometry.js","../src/geometries/CylinderGeometry.js","../src/geometries/DodecahedronGeometry.js","../src/geometries/IcosahedronGeometry.js","../src/geometries/LatheGeometry.js","../src/geometries/OctahedronGeometry.js","../src/geometries/PolyhedronGeometry.js","../src/geometries/RingGeometry.js","../src/geometries/SphereGeometry.js","../src/geometries/TetrahedronGeometry.js","../src/geometries/TorusGeometry.js","../src/geometries/TorusKnotGeometry.js","../src/geometries/TubeGeometry.js","../src/lights/Light.js","../src/lights/AmbientLight.js","../src/lights/DirectionalLight.js","../src/lights/HemisphereLight.js","../src/lights/PointLight.js","../src/lights/RectAreaLight.js","../src/lights/SpotLight.js","../src/materials/Material.js","../src/materials/BasicMaterial.js","../src/materials/LambertMaterial.js","../src/materials/MatcapMaterial.js","../src/materials/PhongMaterial.js","../src/materials/StandardMaterial.js","../src/materials/PhysicalMaterial.js","../src/materials/SubsurfaceScatteringShader.js","../src/materials/SubSurfaceMaterial.js","../src/materials/ShaderMaterial.js","../src/materials/ToonMaterial.js","../src/materials/Texture.js","../src/materials/CubeTexture.js","../src/meshes/Mesh.js","../src/meshes/Box.js","../src/meshes/Circle.js","../src/meshes/Cone.js","../src/meshes/Cylinder.js","../src/meshes/Dodecahedron.js","../src/meshes/Icosahedron.js","../src/meshes/Lathe.js","../src/meshes/Octahedron.js","../src/meshes/Plane.js","../src/meshes/Polyhedron.js","../src/meshes/Ring.js","../src/meshes/Sphere.js","../src/meshes/Tetrahedron.js","../src/meshes/TextProps.js","../src/meshes/Text.js","../src/meshes/Torus.js","../src/meshes/TorusKnot.js","../src/meshes/Tube.js","../src/meshes/Gem.js","../src/meshes/Image.js","../src/meshes/InstancedMesh.js","../src/meshes/MirrorMesh.js","../src/meshes/RefractionMesh.js","../src/meshes/Sprite.js","../src/effects/EffectComposer.js","../src/effects/EffectPass.js","../src/effects/RenderPass.js","../src/effects/BokehPass.js","../src/effects/FilmPass.js","../src/effects/FXAAPass.js","../src/effects/HalftonePass.js","../src/effects/SMAAPass.js","../src/shaders/default.js","../src/shaders/TiltShift.js","../src/effects/TiltShiftPass.js","../src/effects/UnrealBloomPass.js","../src/shaders/ZoomBlur.js","../src/effects/ZoomBlurPass.js","../src/plugin.js"],"sourcesContent":["import {\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n // watch(() => this.points, () => {\n // this.updatePoints();\n // });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n updateCurve() {\n updateTubeGeometryPoints(this.geometry, this.points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 'Image',\n 'InstancedMesh',\n 'MirrorMesh',\n 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{\n Plane,\n Raycaster,\n Vector2,\n Vector3,\n WebGLRenderer,\n} from 'three';\n\nimport { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js';\n\n/**\n * Three.js helper\n */\nexport default function useThree() {\n // default conf\n const conf = {\n canvas: null,\n antialias: true,\n alpha: false,\n autoClear: true,\n orbit_ctrl: false,\n mouse_move: false,\n mouse_raycast: false,\n mouse_over: false,\n click: false,\n resize: true,\n width: 0,\n height: 0,\n };\n\n // size\n const size = {\n width: 1, height: 1,\n wWidth: 1, wHeight: 1,\n ratio: 1,\n };\n\n // handlers\n const afterInitCallbacks = [];\n let afterResizeCallbacks = [];\n let beforeRenderCallbacks = [];\n\n // mouse tracking\n const mouse = new Vector2();\n const mouseV3 = new Vector3();\n const mousePlane = new Plane(new Vector3(0, 0, 1), 0);\n const raycaster = new Raycaster();\n\n // raycast objects\n const intersectObjects = [];\n\n // returned object\n const obj = {\n conf,\n renderer: null,\n camera: null,\n cameraCtrl: null,\n materials: {},\n scene: null,\n size,\n mouse, mouseV3,\n init,\n dispose,\n render,\n renderC,\n setSize,\n onAfterInit,\n onAfterResize, offAfterResize,\n onBeforeRender, offBeforeRender,\n addIntersectObject, removeIntersectObject,\n };\n\n /**\n * init three\n */\n function init(params) {\n if (params) {\n Object.entries(params).forEach(([key, value]) => {\n conf[key] = value;\n });\n }\n\n if (!obj.scene) {\n console.error('Missing Scene');\n return;\n }\n\n if (!obj.camera) {\n console.error('Missing Camera');\n return;\n }\n\n obj.renderer = new WebGLRenderer({ canvas: conf.canvas, antialias: conf.antialias, alpha: conf.alpha });\n obj.renderer.autoClear = conf.autoClear;\n\n if (conf.orbit_ctrl) {\n obj.orbitCtrl = new OrbitControls(obj.camera, obj.renderer.domElement);\n if (conf.orbit_ctrl instanceof Object) {\n Object.entries(conf.orbit_ctrl).forEach(([key, value]) => {\n obj.orbitCtrl[key] = value;\n });\n }\n }\n\n if (conf.resize) {\n onResize();\n window.addEventListener('resize', onResize);\n } else {\n setSize(conf.width | 300, conf.height | 150);\n }\n\n conf.mouse_move = conf.mouse_move || conf.mouse_over;\n if (conf.mouse_move) {\n if (conf.mouse_move === 'body') {\n obj.mouse_move_element = document.body;\n } else {\n obj.mouse_move_element = obj.renderer.domElement;\n }\n obj.mouse_move_element.addEventListener('mousemove', onMousemove);\n obj.mouse_move_element.addEventListener('mouseleave', onMouseleave);\n }\n\n if (conf.click) {\n obj.renderer.domElement.addEventListener('click', onClick);\n }\n\n afterInitCallbacks.forEach(c => c());\n\n return true;\n };\n\n /**\n * add after init callback\n */\n function onAfterInit(callback) {\n afterInitCallbacks.push(callback);\n }\n\n /**\n * add after resize callback\n */\n function onAfterResize(callback) {\n afterResizeCallbacks.push(callback);\n }\n\n /**\n * remove after resize callback\n */\n function offAfterResize(callback) {\n afterResizeCallbacks = afterResizeCallbacks.filter(c => c !== callback);\n }\n\n /**\n * add before render callback\n */\n function onBeforeRender(callback) {\n beforeRenderCallbacks.push(callback);\n }\n\n /**\n * remove before render callback\n */\n function offBeforeRender(callback) {\n beforeRenderCallbacks = beforeRenderCallbacks.filter(c => c !== callback);\n }\n\n /**\n * default render\n */\n function render() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.renderer.render(obj.scene, obj.camera);\n }\n\n /**\n * composer render\n */\n function renderC() {\n if (obj.orbitCtrl) obj.orbitCtrl.update();\n beforeRenderCallbacks.forEach(c => c());\n obj.composer.render();\n }\n\n /**\n * add intersect object\n */\n function addIntersectObject(o) {\n if (intersectObjects.indexOf(o) === -1) {\n intersectObjects.push(o);\n }\n }\n\n /**\n * remove intersect object\n */\n function removeIntersectObject(o) {\n const i = intersectObjects.indexOf(o);\n if (i !== -1) {\n intersectObjects.splice(i, 1);\n }\n }\n\n /**\n * remove listeners\n */\n function dispose() {\n beforeRenderCallbacks = [];\n window.removeEventListener('resize', onResize);\n if (obj.mouse_move_element) {\n obj.mouse_move_element.removeEventListener('mousemove', onMousemove);\n obj.mouse_move_element.removeEventListener('mouseleave', onMouseleave);\n }\n obj.renderer.domElement.removeEventListener('click', onClick);\n if (obj.orbitCtrl) obj.orbitCtrl.dispose();\n this.renderer.dispose();\n }\n\n /**\n */\n function updateMouse(e) {\n const rect = e.target.getBoundingClientRect();\n mouse.x = ((e.clientX - rect.left) / size.width) * 2 - 1;\n mouse.y = -((e.clientY - rect.top) / size.height) * 2 + 1;\n }\n\n /**\n * click listener\n */\n function onClick(e) {\n updateMouse(e);\n raycaster.setFromCamera(mouse, obj.camera);\n const objects = raycaster.intersectObjects(intersectObjects);\n for (let i = 0; i < objects.length; i++) {\n const o = objects[i].object;\n if (o.onClick) o.onClick(e);\n }\n }\n\n /**\n * mousemove listener\n */\n function onMousemove(e) {\n updateMouse(e);\n onMousechange(e);\n }\n\n /**\n * mouseleave listener\n */\n function onMouseleave(e) {\n // mouse.x = 0;\n // mouse.y = 0;\n onMousechange(e);\n }\n\n /**\n * mouse change\n */\n function onMousechange(e) {\n if (conf.mouse_over || conf.mouse_raycast) {\n raycaster.setFromCamera(mouse, obj.camera);\n\n if (conf.mouse_raycast) {\n // get mouse 3d position\n obj.camera.getWorldDirection(mousePlane.normal);\n mousePlane.normal.normalize();\n raycaster.ray.intersectPlane(mousePlane, mouseV3);\n }\n\n if (conf.mouse_over) {\n const onObjects = raycaster.intersectObjects(intersectObjects);\n const offObjects = [...intersectObjects];\n for (let i = 0; i < onObjects.length; i++) {\n const o = onObjects[i].object;\n if (!o.hover && o.onHover) {\n o.hover = true;\n o.onHover(true);\n }\n offObjects.splice(offObjects.indexOf(o), 1);\n }\n for (let i = 0; i < offObjects.length; i++) {\n const o = offObjects[i];\n if (o.hover && o.onHover) {\n o.hover = false;\n o.onHover(false);\n }\n }\n }\n }\n }\n\n /**\n * resize listener\n */\n function onResize() {\n if (conf.resize === 'window') {\n setSize(window.innerWidth, window.innerHeight);\n } else {\n const elt = obj.renderer.domElement.parentNode;\n setSize(elt.clientWidth, elt.clientHeight);\n }\n afterResizeCallbacks.forEach(c => c());\n }\n\n /**\n * update renderer size and camera\n */\n function setSize(width, height) {\n size.width = width;\n size.height = height;\n size.ratio = width / height;\n\n obj.renderer.setSize(width, height, false);\n obj.camera.aspect = size.ratio;\n obj.camera.updateProjectionMatrix();\n\n if (obj.composer) {\n obj.composer.setSize(width, height);\n }\n\n if (obj.camera.type === 'OrthographicCamera') {\n size.wWidth = obj.camera.right - obj.camera.left;\n size.wHeight = obj.camera.top - obj.camera.bottom;\n } else {\n const wsize = getCameraSize();\n size.wWidth = wsize[0]; size.wHeight = wsize[1];\n }\n }\n\n /**\n * calculate camera visible area size\n */\n function getCameraSize() {\n const vFOV = (obj.camera.fov * Math.PI) / 180;\n const h = 2 * Math.tan(vFOV / 2) * Math.abs(obj.camera.position.z);\n const w = h * obj.camera.aspect;\n return [w, h];\n }\n\n return obj;\n}\n","import { h } from 'vue';\nimport useThree from './useThree';\n\nexport default {\n name: 'Renderer',\n props: {\n antialias: Boolean,\n alpha: Boolean,\n autoClear: { type: Boolean, default: true },\n mouseMove: { type: [Boolean, String], default: false },\n mouseRaycast: { type: Boolean, default: false },\n mouseOver: { type: Boolean, default: false },\n click: { type: Boolean, default: false },\n orbitCtrl: { type: [Boolean, Object], default: false },\n resize: { type: [Boolean, String], default: false },\n shadow: Boolean,\n width: String,\n height: String,\n },\n setup() {\n return {\n three: useThree(),\n raf: true,\n onMountedCallbacks: [],\n };\n },\n provide() {\n return {\n three: this.three,\n // renderer: this.three.renderer,\n rendererComponent: this,\n };\n },\n mounted() {\n const params = {\n canvas: this.$el,\n antialias: this.antialias,\n alpha: this.alpha,\n autoClear: this.autoClear,\n orbit_ctrl: this.orbitCtrl,\n mouse_move: this.mouseMove,\n mouse_raycast: this.mouseRaycast,\n mouse_over: this.mouseOver,\n click: this.click,\n resize: this.resize,\n width: this.width,\n height: this.height,\n };\n\n if (this.three.init(params)) {\n this.renderer = this.three.renderer;\n this.renderer.shadowMap.enabled = this.shadow;\n if (this.three.composer) this.animateC();\n else this.animate();\n };\n\n this.onMountedCallbacks.forEach(c => c());\n },\n beforeUnmount() {\n this.raf = false;\n this.three.dispose();\n },\n methods: {\n onMounted(callback) {\n this.onMountedCallbacks.push(callback);\n },\n onBeforeRender(callback) {\n this.three.onBeforeRender(callback);\n },\n onAfterResize(callback) {\n this.three.onAfterResize(callback);\n },\n animate() {\n if (this.raf) requestAnimationFrame(this.animate);\n this.three.render();\n },\n animateC() {\n if (this.raf) requestAnimationFrame(this.animateC);\n this.three.renderC();\n },\n },\n render() {\n return h('canvas', {}, this.$slots.default());\n },\n __hmrId: 'Renderer',\n};\n","import { toRef, watch } from 'vue';\n\nexport function setFromProp(o, prop) {\n if (prop instanceof Object) {\n Object.entries(prop).forEach(([key, value]) => {\n o[key] = value;\n });\n }\n};\n\nexport function bindProp(src, srcProp, dst, dstProp) {\n if (!dstProp) dstProp = srcProp;\n const ref = toRef(src, srcProp);\n if (ref.value instanceof Object) {\n setFromProp(dst[dstProp], ref.value);\n watch(ref, (value) => { setFromProp(dst[dstProp], value); }, { deep: true });\n } else {\n if (ref.value) dst[dstProp] = src[srcProp];\n watch(ref, (value) => { dst[dstProp] = value; });\n }\n};\n\nexport function propsValues(props, exclude) {\n const values = {};\n Object.entries(props).forEach(([key, value]) => {\n if (!exclude || (exclude && !exclude.includes(key))) {\n values[key] = value;\n }\n });\n return values;\n};\n\nexport function lerp(value1, value2, amount) {\n amount = amount < 0 ? 0 : amount;\n amount = amount > 1 ? 1 : amount;\n return value1 + (value2 - value1) * amount;\n};\n\nexport function lerpv2(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n};\n\nexport function lerpv3(v1, v2, amount) {\n v1.x = lerp(v1.x, v2.x, amount);\n v1.y = lerp(v1.y, v2.y, amount);\n v1.z = lerp(v1.z, v2.z, amount);\n};\n\nexport function limit(val, min, max) {\n return val < min ? min : (val > max ? max : val);\n};\n\n// from https://github.com/pmndrs/drei/blob/master/src/useMatcapTexture.tsx\nconst MATCAP_ROOT = 'https://rawcdn.githack.com/emmelleppi/matcaps/9b36ccaaf0a24881a39062d05566c9e92be4aa0d';\n\nexport function getMatcapUrl(hash, format = 1024) {\n const fileName = `${hash}${getMatcapFormatString(format)}.png`;\n return `${MATCAP_ROOT}/${format}/${fileName}`;\n};\n\nfunction getMatcapFormatString(format) {\n switch (format) {\n case 64:\n return '-64px';\n case 128:\n return '-128px';\n case 256:\n return '-256px';\n case 512:\n return '-512px';\n default:\n return '';\n }\n}\n","import { OrthographicCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'OrthographicCamera',\n inject: ['three'],\n props: {\n left: { type: Number, default: -1 },\n right: { type: Number, default: 1 },\n top: { type: Number, default: 1 },\n bottom: { type: Number, default: -1 },\n near: { type: Number, default: 0.1 },\n far: { type: Number, default: 2000 },\n zoom: { type: Number, default: 1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n },\n created() {\n this.camera = new OrthographicCamera(this.left, this.right, this.top, this.bottom, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n ['left', 'right', 'top', 'bottom', 'near', 'far', 'zoom'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'OrthographicCamera',\n};\n","import { PerspectiveCamera } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'PerspectiveCamera',\n inject: ['three'],\n props: {\n aspect: { type: Number, default: 1 },\n far: { type: Number, default: 2000 },\n fov: { type: Number, default: 50 },\n near: { type: Number, default: 0.1 },\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n lookAt: { type: Object, default: null },\n },\n created() {\n this.camera = new PerspectiveCamera(this.fov, this.aspect, this.near, this.far);\n bindProp(this, 'position', this.camera);\n\n if (this.lookAt) this.camera.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.camera.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n ['aspect', 'far', 'fov', 'near'].forEach(p => {\n watch(() => this[p], () => {\n this.camera[p] = this[p];\n this.camera.updateProjectionMatrix();\n });\n });\n\n this.three.camera = this.camera;\n },\n render() { return []; },\n __hmrId: 'PerspectiveCamera',\n};\n","import { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n name: 'Object3D',\n inject: ['three', 'scene', 'rendererComponent'],\n props: {\n position: { type: Object, default: { x: 0, y: 0, z: 0 } },\n rotation: { type: Object, default: { x: 0, y: 0, z: 0 } },\n scale: { type: Object, default: { x: 1, y: 1, z: 1 } },\n lookAt: { type: Object, default: null },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.$parent.remove) this.$parent.remove(this.o3d);\n },\n methods: {\n initObject3D(o3d) {\n this.o3d = o3d;\n\n bindProp(this, 'position', this.o3d);\n bindProp(this, 'rotation', this.o3d);\n bindProp(this, 'scale', this.o3d);\n\n // fix lookat.x\n if (this.lookAt) this.o3d.lookAt(this.lookAt.x, this.lookAt.y, this.lookAt.z);\n watch(() => this.lookAt, (v) => { this.o3d.lookAt(v.x, v.y, v.z); }, { deep: true });\n\n if (this.$parent.add) this.$parent.add(this.o3d);\n },\n add(o) { this.o3d.add(o); },\n remove(o) { this.o3d.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Object3D',\n};\n","import { Group } from 'three';\nimport Object3D from './Object3D.js';\n\nexport default {\n name: 'Group',\n extends: Object3D,\n created() {\n this.group = new Group();\n this.initObject3D(this.group);\n },\n __hmrId: 'Group',\n};\n","import { Scene, Color } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n name: 'Scene',\n inject: ['three'],\n props: {\n id: String,\n background: [String, Number],\n },\n setup(props) {\n const scene = new Scene();\n if (props.background) scene.background = new Color(props.background);\n watch(() => props.background, (value) => { scene.background = new Color(value); });\n return { scene };\n },\n provide() {\n return {\n scene: this.scene,\n };\n },\n mounted() {\n if (!this.three.scene) {\n this.three.scene = this.scene;\n }\n },\n methods: {\n add(o) { this.scene.add(o); },\n remove(o) { this.scene.remove(o); },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Scene',\n};\n","import { watch } from 'vue';\n\nexport default {\n inject: ['mesh'],\n props: {\n rotateX: Number,\n rotateY: Number,\n rotateZ: Number,\n },\n created() {\n if (!this.mesh) {\n console.error('Missing parent Mesh');\n }\n\n this.watchProps = [];\n Object.entries(this.$props).forEach(e => this.watchProps.push(e[0]));\n\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n\n this.addWatchers();\n },\n unmounted() {\n this.geometry.dispose();\n },\n methods: {\n addWatchers() {\n this.watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n rotateGeometry() {\n if (this.rotateX) this.geometry.rotateX(this.rotateX);\n if (this.rotateY) this.geometry.rotateY(this.rotateY);\n if (this.rotateZ) this.geometry.rotateZ(this.rotateZ);\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.rotateGeometry();\n this.mesh.setGeometry(this.geometry);\n oldGeo.dispose();\n },\n },\n render() { return []; },\n};\n","import { BoxGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n methods: {\n createGeometry() {\n let w = this.width, h = this.height, d = this.depth;\n if (this.size) {\n w = this.size; h = this.size; d = this.size;\n }\n this.geometry = new BoxGeometry(w, h, d, this.widthSegments, this.heightSegments, this.depthSegments);\n },\n },\n};\n","import { CircleGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { ConeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { CylinderGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { DodecahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { IcosahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { LatheGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n};\n","import { OctahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { PolyhedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n};\n","import { RingGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new RingGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n};\n","import { SphereGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n};\n","import { TetrahedronGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronGeometry(this.radius, this.detail);\n },\n },\n};\n","import { TorusGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n};\n","import { TorusKnotGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n radius: { type: Number, default: 1 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 64 },\n tubularSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.p, this.q);\n },\n },\n};\n","import { Curve, TubeGeometry } from 'three';\nimport Geometry from './Geometry.js';\n\nexport default {\n extends: Geometry,\n props: {\n path: Curve,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radiusSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n methods: {\n createGeometry() {\n this.geometry = new TubeGeometry(this.path, this.tubularSegments, this.radius, this.radiusSegments, this.closed);\n },\n },\n};\n","import { Color } from 'three';\nimport { watch } from 'vue';\nimport Object3D from '../core/Object3D.js';\nimport { bindProp, setFromProp } from '../tools.js';\n\nexport default {\n extends: Object3D,\n name: 'Light',\n props: {\n color: { type: String, default: '#ffffff' },\n intensity: { type: Number, default: 1 },\n castShadow: { type: Boolean, default: false },\n shadowMapSize: { type: Object, default: { x: 512, y: 512 } },\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n unmounted() {\n if (this.light.target) this.$parent.remove(this.light.target);\n },\n methods: {\n initLight() {\n if (this.light.target) {\n bindProp(this, 'target', this.light.target, 'position');\n }\n\n if (this.light.shadow) {\n this.light.castShadow = this.castShadow;\n setFromProp(this.light.shadow.mapSize, this.shadowMapSize);\n }\n\n ['color', 'intensity', 'castShadow'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.light.color = new Color(this.color);\n } else {\n this.light[p] = this[p];\n }\n });\n });\n\n this.initObject3D(this.light);\n if (this.light.target) this.$parent.add(this.light.target);\n },\n },\n __hmrId: 'Light',\n};\n","import { AmbientLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n created() {\n this.light = new AmbientLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'AmbientLight',\n};\n","import { DirectionalLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n target: Object,\n },\n created() {\n this.light = new DirectionalLight(this.color, this.intensity);\n this.initLight();\n },\n __hmrId: 'DirectionalLight',\n};\n","import { HemisphereLight } from 'three';\nimport Light from './Light.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Light,\n props: {\n groundColor: { type: String, default: '#ffffff' },\n },\n created() {\n this.light = new HemisphereLight(this.color, this.groundColor, this.intensity);\n bindProp(this, 'groundColor', this.light);\n this.initLight();\n },\n __hmrId: 'HemisphereLight',\n};\n","import { PointLight } from 'three';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n distance: {\n type: Number,\n default: 0,\n },\n decay: {\n type: Number,\n default: 1,\n },\n },\n created() {\n this.light = new PointLight(this.color, this.intensity, this.distance, this.decay);\n this.initLight();\n },\n __hmrId: 'PointLight',\n};\n","import { RectAreaLight } from 'three';\nimport { RectAreaLightUniformsLib } from 'three/examples/jsm/lights/RectAreaLightUniformsLib.js';\nimport { RectAreaLightHelper } from 'three/examples/jsm/helpers/RectAreaLightHelper.js';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n width: { type: Number, default: 10 },\n height: { type: Number, default: 10 },\n helper: Boolean,\n },\n created() {\n RectAreaLightUniformsLib.init();\n this.light = new RectAreaLight(this.color, this.intensity, this.width, this.height);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n\n if (this.helper) {\n this.lightHelper = new RectAreaLightHelper(this.light);\n this.$parent.add(this.lightHelper);\n }\n\n this.initLight();\n },\n unmounted() {\n if (this.lightHelper) this.$parent.remove(this.lightHelper);\n },\n __hmrId: 'RectAreaLight',\n};\n","import { SpotLight } from 'three';\nimport { watch } from 'vue';\nimport Light from './Light.js';\n\nexport default {\n extends: Light,\n props: {\n angle: { type: Number, default: Math.PI / 3 },\n decay: { type: Number, default: 1 },\n distance: { type: Number, default: 0 },\n penumbra: { type: Number, default: 0 },\n target: Object,\n },\n created() {\n this.light = new SpotLight(this.color, this.intensity, this.distance, this.angle, this.penumbra, this.decay);\n ['angle', 'decay', 'distance', 'penumbra'].forEach(p => {\n watch(() => this[p], () => {\n this.light[p] = this[p];\n });\n });\n this.initLight();\n },\n __hmrId: 'SpotLight',\n};\n","import { watch } from 'vue';\nimport { FrontSide } from 'three';\n\nexport default {\n inject: ['three', 'mesh'],\n props: {\n color: { type: [String, Number], default: '#ffffff' },\n depthTest: { type: Boolean, default: true },\n depthWrite: { type: Boolean, default: true },\n flatShading: Boolean,\n fog: { type: Boolean, default: true },\n opacity: { type: Number, default: 1 },\n side: { type: Number, default: FrontSide },\n transparent: Boolean,\n vertexColors: Boolean,\n },\n provide() {\n return {\n material: this,\n };\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n\n this._addWatchers();\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n methods: {\n setProp(key, value, needsUpdate = false) {\n this.material[key] = value;\n this.material.needsUpdate = needsUpdate;\n },\n setTexture(texture, key = 'map') {\n this.setProp(key, texture, true);\n },\n _addWatchers() {\n // don't work for flatShading\n ['color', 'depthTest', 'depthWrite', 'fog', 'opacity', 'side', 'transparent'].forEach(p => {\n watch(() => this[p], () => {\n if (p === 'color') {\n this.material.color.set(this.color);\n } else {\n this.material[p] = this[p];\n }\n });\n });\n },\n },\n render() {\n return this.$slots.default ? this.$slots.default() : [];\n },\n __hmrId: 'Material',\n};\n","import { MeshBasicMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshBasicMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'BasicMaterial',\n};\n","import { MeshLambertMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshLambertMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'LambertMaterial',\n};\n","import { MeshMatcapMaterial, TextureLoader } from 'three';\n// import { watch } from 'vue';\nimport { propsValues, getMatcapUrl } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n src: String,\n name: String,\n },\n methods: {\n createMaterial() {\n const src = this.name ? getMatcapUrl(this.name) : this.src;\n const opts = propsValues(this.$props, ['src', 'name']);\n opts.matcap = new TextureLoader().load(src);\n this.material = new MeshMatcapMaterial(opts);\n },\n },\n __hmrId: 'MatcapMaterial',\n};\n","import { MeshPhongMaterial } from 'three';\nimport { watch } from 'vue';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n props: {\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n reflectivity: { type: Number, default: 1 },\n shininess: { type: Number, default: 30 },\n specular: { type: [String, Number], default: 0x111111 },\n },\n methods: {\n createMaterial() {\n this.material = new MeshPhongMaterial(propsValues(this.$props));\n },\n addWatchers() {\n ['emissive', 'emissiveIntensity', 'reflectivity', 'shininess', 'specular'].forEach(p => {\n watch(() => this[p], (value) => {\n if (p === 'emissive' || p === 'specular') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n },\n },\n __hmrId: 'PhongMaterial',\n};\n","import { MeshStandardMaterial } from 'three';\nimport { watch } from 'vue';\nimport { bindProp, propsValues } from '../tools.js';\nimport Material from './Material';\n\nconst props = {\n aoMapIntensity: { type: Number, default: 1 },\n bumpScale: { type: Number, default: 1 },\n displacementBias: { type: Number, default: 0 },\n displacementScale: { type: Number, default: 1 },\n emissive: { type: [Number, String], default: 0 },\n emissiveIntensity: { type: Number, default: 1 },\n envMapIntensity: { type: Number, default: 1 },\n lightMapIntensity: { type: Number, default: 1 },\n metalness: { type: Number, default: 0 },\n normalScale: { type: Object, default: { x: 1, y: 1 } },\n roughness: { type: Number, default: 1 },\n refractionRatio: { type: Number, default: 0.98 },\n wireframe: Boolean,\n};\n\nexport default {\n extends: Material,\n props,\n methods: {\n createMaterial() {\n this.material = new MeshStandardMaterial(propsValues(this.$props, ['normalScale']));\n },\n addWatchers() {\n // todo : use setProp ?\n Object.keys(props).forEach(p => {\n if (p === 'normalScale') return;\n watch(() => this[p], (value) => {\n if (p === 'emissive') {\n this.material[p].set(value);\n } else {\n this.material[p] = value;\n }\n });\n });\n bindProp(this, 'normalScale', this.material);\n },\n },\n __hmrId: 'StandardMaterial',\n};\n","import { MeshPhysicalMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport StandardMaterial from './StandardMaterial';\n\nexport default {\n extends: StandardMaterial,\n methods: {\n createMaterial() {\n this.material = new MeshPhysicalMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'PhysicalMaterial',\n};\n","/**\n * ------------------------------------------------------------------------------------------\n * Subsurface Scattering shader\n * Based on three/examples/jsm/shaders/SubsurfaceScatteringShader.js\n * Based on GDC 2011 – Approximating Translucency for a Fast, Cheap and Convincing Subsurface Scattering Look\n * https://colinbarrebrisebois.com/2011/03/07/gdc-2011-approximating-translucency-for-a-fast-cheap-and-convincing-subsurface-scattering-look/\n *------------------------------------------------------------------------------------------\n */\nimport {\n Color,\n ShaderChunk,\n ShaderLib,\n UniformsUtils,\n} from 'three';\n\nfunction replaceAll(string, find, replace) {\n return string.split(find).join(replace);\n}\n\nconst meshphongFragHead = ShaderChunk.meshphong_frag.slice(0, ShaderChunk.meshphong_frag.indexOf('void main() {'));\nconst meshphongFragBody = ShaderChunk.meshphong_frag.slice(ShaderChunk.meshphong_frag.indexOf('void main() {'));\n\nconst SubsurfaceScatteringShader = {\n\n uniforms: UniformsUtils.merge([\n ShaderLib.phong.uniforms,\n {\n thicknessColor: { value: new Color(0x668597) },\n thicknessDistortion: { value: 0.1 },\n thicknessAmbient: { value: 0.0 },\n thicknessAttenuation: { value: 0.1 },\n thicknessPower: { value: 2.0 },\n thicknessScale: { value: 10.0 },\n },\n ]),\n\n vertexShader: `\n #define USE_UV\n ${ShaderChunk.meshphong_vert}\n `,\n\n fragmentShader: `\n #define USE_UV\n #define SUBSURFACE\n\n ${meshphongFragHead}\n\n uniform float thicknessPower;\n uniform float thicknessScale;\n uniform float thicknessDistortion;\n uniform float thicknessAmbient;\n uniform float thicknessAttenuation;\n uniform vec3 thicknessColor;\n\n void RE_Direct_Scattering(const in IncidentLight directLight, const in vec2 uv, const in GeometricContext geometry, inout ReflectedLight reflectedLight) {\n #ifdef USE_COLOR\n vec3 thickness = vColor * thicknessColor;\n #else\n vec3 thickness = thicknessColor;\n #endif\n vec3 scatteringHalf = normalize(directLight.direction + (geometry.normal * thicknessDistortion));\n float scatteringDot = pow(saturate(dot(geometry.viewDir, -scatteringHalf)), thicknessPower) * thicknessScale;\n vec3 scatteringIllu = (scatteringDot + thicknessAmbient) * thickness;\n reflectedLight.directDiffuse += scatteringIllu * thicknessAttenuation * directLight.color;\n }\n ` + meshphongFragBody.replace(\n '#include ',\n replaceAll(\n ShaderChunk.lights_fragment_begin,\n 'RE_Direct( directLight, geometry, material, reflectedLight );',\n `\n RE_Direct( directLight, geometry, material, reflectedLight );\n #if defined( SUBSURFACE ) && defined( USE_UV )\n RE_Direct_Scattering(directLight, vUv, geometry, reflectedLight);\n #endif\n `\n )\n ),\n};\n\nexport default SubsurfaceScatteringShader;\n","import { Color, ShaderMaterial as TShaderMaterial, UniformsUtils } from 'three';\nimport SubsurfaceScatteringShader from './SubsurfaceScatteringShader.js';\nimport ShaderMaterial from './ShaderMaterial';\n\nexport default {\n extends: ShaderMaterial,\n props: {\n color: { type: String, default: '#ffffff' },\n thicknessColor: { type: String, default: '#ffffff' },\n thicknessDistortion: { type: Number, default: 0.4 },\n thicknessAmbient: { type: Number, default: 0.01 },\n thicknessAttenuation: { type: Number, default: 0.7 },\n thicknessPower: { type: Number, default: 2 },\n thicknessScale: { type: Number, default: 4 },\n transparent: { type: Boolean, default: false },\n opacity: { type: Number, default: 1 },\n vertexColors: { type: Boolean, default: false },\n },\n methods: {\n createMaterial() {\n const params = SubsurfaceScatteringShader;\n const uniforms = UniformsUtils.clone(params.uniforms);\n\n Object.entries(this.$props).forEach(([key, value]) => {\n let _key = key, _value = value;\n if (['color', 'thicknessColor'].includes(key)) {\n if (key === 'color') _key = 'diffuse';\n _value = new Color(value);\n }\n if (!['transparent', 'vertexColors'].includes(key)) {\n uniforms[_key].value = _value;\n }\n });\n\n this.material = new TShaderMaterial({\n ...params,\n uniforms,\n lights: true,\n transparent: this.transparent,\n vertexColors: this.vertexColors,\n });\n },\n },\n __hmrId: 'SubSurfaceMaterial',\n};\n","export default {\n inject: ['three', 'mesh'],\n props: {\n uniforms: Object,\n vertexShader: String,\n fragmentShader: String,\n },\n created() {\n this.createMaterial();\n this.mesh.setMaterial(this.material);\n if (this.addWatchers) this.addWatchers();\n },\n unmounted() {\n this.material.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'ShaderMaterial',\n};\n","import { MeshToonMaterial } from 'three';\nimport { propsValues } from '../tools.js';\nimport Material from './Material';\n\nexport default {\n extends: Material,\n methods: {\n createMaterial() {\n this.material = new MeshToonMaterial(propsValues(this.$props));\n },\n },\n __hmrId: 'ToonMaterial',\n};\n","import { ClampToEdgeWrapping, LinearFilter, LinearMipmapLinearFilter, TextureLoader, UVMapping } from 'three';\nimport { watch } from 'vue';\nimport { bindProp } from '../tools.js';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n id: { type: String, default: 'map' },\n src: String,\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n mapping: { type: Number, default: UVMapping },\n wrapS: { type: Number, default: ClampToEdgeWrapping },\n wrapT: { type: Number, default: ClampToEdgeWrapping },\n magFilter: { type: Number, default: LinearFilter },\n minFilter: { type: Number, default: LinearMipmapLinearFilter },\n repeat: { type: Object, default: { x: 1, y: 1 } },\n rotation: { type: Number, default: 0 },\n center: { type: Object, default: { x: 0, y: 0 } },\n },\n created() {\n this.refreshTexture();\n watch(() => this.src, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded, this.onProgress, this.onError);\n const wathProps = ['mapping', 'wrapS', 'wrapT', 'magFilter', 'minFilter', 'repeat', 'rotation', 'rotation', 'center'];\n wathProps.forEach(prop => {\n bindProp(this, prop, this.texture);\n });\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() { return []; },\n};\n","import { CubeTextureLoader, CubeRefractionMapping } from 'three';\nimport { watch } from 'vue';\n\nexport default {\n inject: ['material'],\n emits: ['loaded'],\n props: {\n path: String,\n urls: {\n type: Array,\n default: ['px.jpg', 'nx.jpg', 'py.jpg', 'ny.jpg', 'pz.jpg', 'nz.jpg'],\n },\n onLoad: Function,\n onProgress: Function,\n onError: Function,\n id: { type: String, default: 'envMap' },\n refraction: Boolean,\n // todo: remove ?\n refractionRatio: { type: Number, default: 0.98 },\n },\n created() {\n this.refreshTexture();\n watch(() => this.path, this.refreshTexture);\n watch(() => this.urls, this.refreshTexture);\n },\n unmounted() {\n this.material.setTexture(null, this.id);\n this.texture.dispose();\n },\n methods: {\n createTexture() {\n this.texture = new CubeTextureLoader()\n .setPath(this.path)\n .load(this.urls, this.onLoaded, this.onProgress, this.onError);\n },\n refreshTexture() {\n this.createTexture();\n this.material.setTexture(this.texture, this.id);\n if (this.refraction) {\n this.texture.mapping = CubeRefractionMapping;\n this.material.setProp('refractionRatio', this.refractionRatio);\n }\n },\n onLoaded() {\n if (this.onLoad) this.onLoad();\n this.$emit('loaded');\n },\n },\n render() {\n return [];\n },\n};\n","import { watch } from 'vue';\nimport { Mesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n name: 'Mesh',\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n onHover: Function,\n onClick: Function,\n },\n // can't use setup because it will not be used in sub components\n // setup() {},\n provide() {\n return {\n mesh: this,\n };\n },\n mounted() {\n if (!this.mesh && !this.loading) this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new Mesh(this.geometry, this.material);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n if (this.onHover) {\n this.mesh.onHover = (over) => { this.onHover({ component: this, over }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n if (this.onClick) {\n this.mesh.onClick = (e) => { this.onClick({ component: this, event: e }); };\n this.three.addIntersectObject(this.mesh);\n }\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n refreshGeometry() {\n const oldGeo = this.geometry;\n this.createGeometry();\n this.mesh.geometry = this.geometry;\n oldGeo.dispose();\n },\n },\n unmounted() {\n if (this.mesh) {\n this.three.removeIntersectObject(this.mesh);\n }\n // for predefined mesh (geometry and material are not unmounted)\n if (this.geometry) this.geometry.dispose();\n if (this.material) this.material.dispose();\n },\n __hmrId: 'Mesh',\n};\n","import { BoxBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n size: Number,\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n depth: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n depthSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n ['size', 'width', 'height', 'depth', 'widthSegments', 'heightSegments', 'depthSegments'].forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n if (this.size) {\n this.geometry = new BoxBufferGeometry(this.size, this.size, this.size);\n } else {\n this.geometry = new BoxBufferGeometry(this.width, this.height, this.depth);\n }\n },\n },\n __hmrId: 'Box',\n};\n","import { CircleBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n segments: { type: Number, default: 8 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'segments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CircleBufferGeometry(this.radius, this.segments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Circle',\n};\n","import { ConeBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new ConeBufferGeometry(this.radius, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cone',\n};\n","import { CylinderBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radiusTop: { type: Number, default: 1 },\n radiusBottom: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n heightSegments: { type: Number, default: 1 },\n openEnded: { type: Boolean, default: false },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radiusTop', 'radiusBottom', 'height', 'radialSegments', 'heightSegments', 'openEnded', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new CylinderBufferGeometry(this.radiusTop, this.radiusBottom, this.height, this.radialSegments, this.heightSegments, this.openEnded, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Cylinder',\n};\n","import { DodecahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new DodecahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Dodecahedron',\n};\n","import { IcosahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new IcosahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Icosahedron',\n};\n","import { LatheBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n points: Array,\n segments: { type: Number, default: 12 },\n phiStart: { type: Number, default: 0 },\n phiLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['points', 'segments', 'phiStart', 'phiLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new LatheBufferGeometry(this.points, this.segments, this.phiStart, this.phiLength);\n },\n },\n __hmrId: 'Lathe',\n};\n","import { OctahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new OctahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Octahedron',\n};\n","import { PlaneBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n width: { type: Number, default: 1 },\n height: { type: Number, default: 1 },\n widthSegments: { type: Number, default: 1 },\n heightSegments: { type: Number, default: 1 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['width', 'height', 'widthSegments', 'heightSegments'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(this.width, this.height, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Plane',\n};\n","import { PolyhedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n vertices: Array,\n indices: Array,\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['vertices', 'indices', 'radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new PolyhedronBufferGeometry(this.vertices, this.indices, this.radius, this.detail);\n },\n },\n __hmrId: 'Polyhedron',\n};\n","import { RingBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n innerRadius: { type: Number, default: 0.5 },\n outerRadius: { type: Number, default: 1 },\n thetaSegments: { type: Number, default: 8 },\n phiSegments: { type: Number, default: 1 },\n thetaStart: { type: Number, default: 0 },\n thetaLength: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['innerRadius', 'outerRadius', 'thetaSegments', 'phiSegments', 'thetaStart', 'thetaLength'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new RingBufferGeometry(this.innerRadius, this.outerRadius, this.thetaSegments, this.phiSegments, this.thetaStart, this.thetaLength);\n },\n },\n __hmrId: 'Ring',\n};\n","import { SphereBufferGeometry } from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: Number,\n widthSegments: { type: Number, default: 12 },\n heightSegments: { type: Number, default: 12 },\n },\n watch: {\n radius() { this.refreshGeometry(); },\n widthSegments() { this.refreshGeometry(); },\n heightSegments() { this.refreshGeometry(); },\n },\n created() {\n this.createGeometry();\n },\n methods: {\n createGeometry() {\n this.geometry = new SphereBufferGeometry(this.radius, this.widthSegments, this.heightSegments);\n },\n },\n __hmrId: 'Sphere',\n};\n","import { TetrahedronBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 1 },\n detail: { type: Number, default: 0 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'detail'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TetrahedronBufferGeometry(this.radius, this.detail);\n },\n },\n __hmrId: 'Tetrahedron',\n};\n","export default {\n text: String,\n fontSrc: String,\n size: { type: Number, default: 80 },\n height: { type: Number, default: 5 },\n depth: { type: Number, default: 1 },\n curveSegments: { type: Number, default: 12 },\n bevelEnabled: { type: Boolean, default: false },\n bevelThickness: { type: Number, default: 10 },\n bevelSize: { type: Number, default: 8 },\n bevelOffset: { type: Number, default: 0 },\n bevelSegments: { type: Number, default: 5 },\n align: { type: [Boolean, String], default: false },\n};\n","import { FontLoader, TextBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\nimport TextProps from './TextProps.js';\n\nexport default {\n extends: Mesh,\n props: {\n ...TextProps,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n // add watchers\n const watchProps = [\n 'text', 'size', 'height', 'curveSegments',\n 'bevelEnabled', 'bevelThickness', 'bevelSize', 'bevelOffset', 'bevelSegments',\n 'align',\n ];\n watchProps.forEach(p => {\n watch(() => this[p], () => {\n if (this.font) this.refreshGeometry();\n });\n });\n\n const loader = new FontLoader();\n loader.load(this.fontSrc, (font) => {\n this.loading = false;\n this.font = font;\n this.createGeometry();\n this.initMesh();\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TextBufferGeometry(this.text, {\n font: this.font,\n size: this.size,\n height: this.height,\n depth: this.depth,\n curveSegments: this.curveSegments,\n bevelEnabled: this.bevelEnabled,\n bevelThickness: this.bevelThickness,\n bevelSize: this.bevelSize,\n bevelOffset: this.bevelOffset,\n bevelSegments: this.bevelSegments,\n });\n\n if (this.align === 'center') {\n this.geometry.center();\n }\n },\n },\n};\n","import { TorusBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n radialSegments: { type: Number, default: 8 },\n tubularSegments: { type: Number, default: 6 },\n arc: { type: Number, default: Math.PI * 2 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'arc'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusBufferGeometry(this.radius, this.tube, this.radialSegments, this.tubularSegments, this.arc);\n },\n },\n __hmrId: 'Torus',\n};\n","import { TorusKnotBufferGeometry } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n radius: { type: Number, default: 0.5 },\n tube: { type: Number, default: 0.4 },\n tubularSegments: { type: Number, default: 64 },\n radialSegments: { type: Number, default: 8 },\n p: { type: Number, default: 2 },\n q: { type: Number, default: 3 },\n },\n created() {\n this.createGeometry();\n\n const watchProps = ['radius', 'tube', 'radialSegments', 'tubularSegments', 'p', 'q'];\n watchProps.forEach(prop => {\n watch(() => this[prop], () => {\n this.refreshGeometry();\n });\n });\n },\n methods: {\n createGeometry() {\n this.geometry = new TorusKnotBufferGeometry(this.radius, this.tube, this.tubularSegments, this.radialSegments, this.p, this.q);\n },\n },\n __hmrId: 'TorusKnot',\n};\n","import { CatmullRomCurve3, Curve, TubeGeometry, Vector3 } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n path: Curve,\n points: Array,\n tubularSegments: { type: Number, default: 64 },\n radius: { type: Number, default: 1 },\n radialSegments: { type: Number, default: 8 },\n closed: { type: Boolean, default: false },\n },\n created() {\n this.createGeometry();\n const watchProps = ['tubularSegments', 'radius', 'radialSegments', 'closed'];\n watchProps.forEach(prop => {\n watch(() => this[prop], (v) => {\n this.refreshGeometry();\n });\n });\n watch(() => this.points, () => {\n updateTubeGeometryPoints(this.geometry, this.points);\n });\n },\n methods: {\n createGeometry() {\n let curve;\n if (this.points) {\n curve = new CatmullRomCurve3(this.points);\n } else if (this.path) {\n curve = this.path;\n } else {\n console.error('Missing path curve or points.');\n }\n this.geometry = new TubeGeometry(curve, this.tubularSegments, this.radius, this.radialSegments, this.closed);\n },\n // update curve points (without using prop, faster)\n updateCurve(points) {\n updateTubeGeometryPoints(this.geometry, points);\n },\n },\n __hmrId: 'Tube',\n};\n\nfunction updateTubeGeometryPoints(tube, points) {\n const curve = new CatmullRomCurve3(points);\n const { radialSegments, radius, tubularSegments, closed } = tube.parameters;\n const frames = curve.computeFrenetFrames(tubularSegments, closed);\n tube.tangents = frames.tangents;\n tube.normals = frames.normals;\n tube.binormals = frames.binormals;\n tube.parameters.path = curve;\n\n const pArray = tube.attributes.position.array;\n const nArray = tube.attributes.normal.array;\n const normal = new Vector3();\n let P;\n\n for (let i = 0; i < tubularSegments; i++) {\n updateSegment(i);\n }\n updateSegment(tubularSegments);\n\n tube.attributes.position.needsUpdate = true;\n tube.attributes.normal.needsUpdate = true;\n\n function updateSegment(i) {\n P = curve.getPointAt(i / tubularSegments, P);\n const N = frames.normals[i];\n const B = frames.binormals[i];\n for (let j = 0; j <= radialSegments; j++) {\n const v = j / radialSegments * Math.PI * 2;\n const sin = Math.sin(v);\n const cos = -Math.cos(v);\n normal.x = (cos * N.x + sin * B.x);\n normal.y = (cos * N.y + sin * B.y);\n normal.z = (cos * N.z + sin * B.z);\n normal.normalize();\n const index = (i * (radialSegments + 1) + j) * 3;\n nArray[index] = normal.x;\n nArray[index + 1] = normal.y;\n nArray[index + 2] = normal.z;\n pArray[index] = P.x + radius * normal.x;\n pArray[index + 1] = P.y + radius * normal.y;\n pArray[index + 2] = P.z + radius * normal.z;\n }\n }\n}\n","import {\n BackSide,\n CubeCamera,\n FrontSide,\n LinearMipmapLinearFilter,\n Mesh as TMesh,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initGem();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.meshBack) this.$parent.remove(this.meshBack);\n if (this.materialBack) this.materialBack.dispose();\n },\n methods: {\n initGem() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.side = FrontSide;\n this.material.envMap = cubeRT.texture;\n this.material.envMapIntensity = 10;\n this.material.metalness = 0;\n this.material.roughness = 0;\n this.material.opacity = 0.75;\n this.material.transparent = true;\n this.material.premultipliedAlpha = true;\n this.material.needsUpdate = true;\n\n this.materialBack = this.material.clone();\n this.materialBack.side = BackSide;\n this.materialBack.envMapIntensity = 5;\n this.materialBack.metalness = 1;\n this.materialBack.roughness = 0;\n this.materialBack.opacity = 0.5;\n\n this.meshBack = new TMesh(this.geometry, this.materialBack);\n\n bindProp(this, 'position', this.meshBack);\n bindProp(this, 'rotation', this.meshBack);\n bindProp(this, 'scale', this.meshBack);\n this.$parent.add(this.meshBack);\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.meshBack.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n this.meshBack.visible = true;\n },\n },\n __hmrId: 'Gem',\n};\n","import { DoubleSide, MeshBasicMaterial, PlaneBufferGeometry, TextureLoader } from 'three';\nimport { watch } from 'vue';\nimport Mesh from './Mesh.js';\n\nexport default {\n emits: ['loaded'],\n extends: Mesh,\n props: {\n src: String,\n width: Number,\n height: Number,\n keepSize: Boolean,\n },\n created() {\n this.createGeometry();\n this.createMaterial();\n this.initMesh();\n\n watch(() => this.src, this.refreshTexture);\n\n ['width', 'height'].forEach(p => {\n watch(() => this[p], this.resize);\n });\n\n if (this.keepSize) this.three.onAfterResize(this.resize);\n },\n methods: {\n createGeometry() {\n this.geometry = new PlaneBufferGeometry(1, 1, 1, 1);\n },\n createMaterial() {\n this.material = new MeshBasicMaterial({ side: DoubleSide, map: this.loadTexture() });\n },\n loadTexture() {\n return new TextureLoader().load(this.src, this.onLoaded);\n },\n refreshTexture() {\n if (this.texture) this.texture.dispose();\n this.material.map = this.loadTexture();\n this.material.needsUpdate = true;\n },\n onLoaded(texture) {\n this.texture = texture;\n this.resize();\n this.$emit('loaded');\n },\n resize() {\n if (!this.texture) return;\n const screen = this.three.size;\n const iW = this.texture.image.width;\n const iH = this.texture.image.height;\n const iRatio = iW / iH;\n let w, h;\n if (this.width && this.height) {\n w = this.width * screen.wWidth / screen.width;\n h = this.height * screen.wHeight / screen.height;\n } else if (this.width) {\n w = this.width * screen.wWidth / screen.width;\n h = w / iRatio;\n } else if (this.height) {\n h = this.height * screen.wHeight / screen.height;\n w = h * iRatio;\n }\n this.mesh.scale.x = w;\n this.mesh.scale.y = h;\n },\n },\n __hmrId: 'Image',\n};\n","import { watch } from 'vue';\nimport { InstancedMesh } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n props: {\n castShadow: Boolean,\n receiveShadow: Boolean,\n count: Number,\n },\n provide() {\n return {\n mesh: this,\n };\n },\n beforeMount() {\n if (!this.$slots.default) {\n console.error('Missing Geometry');\n }\n },\n created() {\n this.initMesh();\n },\n methods: {\n initMesh() {\n this.mesh = new InstancedMesh(this.geometry, this.material, this.count);\n\n ['castShadow', 'receiveShadow'].forEach(p => {\n this.mesh[p] = this[p];\n watch(() => this[p], () => { this.mesh[p] = this[p]; });\n });\n\n this.initObject3D(this.mesh);\n },\n setGeometry(geometry) {\n this.geometry = geometry;\n if (this.mesh) this.mesh.geometry = geometry;\n },\n setMaterial(material) {\n this.material = material;\n if (this.mesh) this.mesh.material = material;\n },\n },\n __hmrId: 'InstancedMesh',\n};\n","import {\n CubeCamera,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'MirrorMesh',\n};\n","import {\n CubeCamera,\n CubeRefractionMapping,\n LinearMipmapLinearFilter,\n RGBFormat,\n WebGLCubeRenderTarget,\n} from 'three';\nimport Mesh from './Mesh.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: Mesh,\n props: {\n cubeRTSize: { type: Number, default: 256 },\n cubeCameraNear: { type: Number, default: 0.1 },\n cubeCameraFar: { type: Number, default: 2000 },\n refractionRatio: { type: Number, default: 0.98 },\n autoUpdate: Boolean,\n },\n mounted() {\n this.initMirrorMesh();\n if (this.autoUpdate) this.three.onBeforeRender(this.updateCubeRT);\n else this.rendererComponent.onMounted(this.updateCubeRT);\n },\n unmounted() {\n this.three.offBeforeRender(this.updateCubeRT);\n if (this.cubeCamera) this.$parent.remove(this.cubeCamera);\n },\n methods: {\n initMirrorMesh() {\n const cubeRT = new WebGLCubeRenderTarget(this.cubeRTSize, { mapping: CubeRefractionMapping, format: RGBFormat, generateMipmaps: true, minFilter: LinearMipmapLinearFilter });\n this.cubeCamera = new CubeCamera(this.cubeCameraNear, this.cubeCameraFar, cubeRT);\n bindProp(this, 'position', this.cubeCamera);\n this.$parent.add(this.cubeCamera);\n\n this.material.envMap = cubeRT.texture;\n this.material.refractionRatio = this.refractionRatio;\n this.material.needsUpdate = true;\n },\n updateCubeRT() {\n this.mesh.visible = false;\n this.cubeCamera.update(this.three.renderer, this.scene);\n this.mesh.visible = true;\n },\n },\n __hmrId: 'RefractionMesh',\n};\n","import { Sprite, SpriteMaterial, TextureLoader } from 'three';\nimport Object3D from '../core/Object3D.js';\n\nexport default {\n extends: Object3D,\n emits: ['loaded'],\n props: {\n src: String,\n },\n data() {\n return {\n loading: true,\n };\n },\n created() {\n this.texture = new TextureLoader().load(this.src, this.onLoaded);\n this.material = new SpriteMaterial({ map: this.texture });\n this.sprite = new Sprite(this.material);\n this.geometry = this.sprite.geometry;\n this.initObject3D(this.sprite);\n },\n unmounted() {\n this.texture.dispose();\n this.material.dispose();\n },\n methods: {\n onLoaded() {\n this.loading = false;\n this.updateUV();\n this.$emit('loaded');\n },\n updateUV() {\n this.iWidth = this.texture.image.width;\n this.iHeight = this.texture.image.height;\n this.iRatio = this.iWidth / this.iHeight;\n\n let x = 0.5, y = 0.5;\n if (this.iRatio > 1) {\n y = 0.5 / this.iRatio;\n } else {\n x = 0.5 / this.iRatio;\n }\n\n const positions = this.geometry.attributes.position.array;\n positions[0] = -x; positions[1] = -y;\n positions[5] = x; positions[6] = -y;\n positions[10] = x; positions[11] = y;\n positions[15] = -x; positions[16] = y;\n this.geometry.attributes.position.needsUpdate = true;\n },\n },\n __hmrId: 'Sprite',\n};\n","import { EffectComposer } from 'three/examples/jsm/postprocessing/EffectComposer.js';\n\nexport default {\n setup() {\n return {\n passes: [],\n };\n },\n inject: ['three'],\n provide() {\n return {\n passes: this.passes,\n };\n },\n mounted() {\n this.three.onAfterInit(() => {\n this.composer = new EffectComposer(this.three.renderer);\n this.three.renderer.autoClear = false;\n this.passes.forEach(pass => {\n this.composer.addPass(pass);\n });\n this.three.composer = this.composer;\n\n this.resize();\n this.three.onAfterResize(this.resize);\n });\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n this.composer.setSize(this.three.size.width, this.three.size.height);\n },\n },\n render() {\n return this.$slots.default();\n },\n __hmrId: 'EffectComposer',\n};\n","export default {\n inject: ['three', 'passes'],\n beforeMount() {\n if (!this.passes) {\n console.error('Missing parent EffectComposer');\n }\n },\n unmounted() {\n if (this.pass.dispose) this.pass.dispose();\n },\n render() {\n return [];\n },\n __hmrId: 'EffectPass',\n};\n","import { RenderPass } from 'three/examples/jsm/postprocessing/RenderPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const pass = new RenderPass(this.three.scene, this.three.camera);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'RenderPass',\n};\n","import { BokehPass } from 'three/examples/jsm/postprocessing/BokehPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n focus: {\n type: Number,\n default: 1,\n },\n aperture: {\n type: Number,\n default: 0.025,\n },\n maxblur: {\n type: Number,\n default: 0.01,\n },\n },\n watch: {\n focus() { this.pass.uniforms.focus.value = this.focus; },\n aperture() { this.pass.uniforms.aperture.value = this.aperture; },\n maxblur() { this.pass.uniforms.maxblur.value = this.maxblur; },\n },\n mounted() {\n if (!this.three.scene) {\n console.error('Missing Scene');\n }\n if (!this.three.camera) {\n console.error('Missing Camera');\n }\n const params = {\n focus: this.focus,\n aperture: this.aperture,\n maxblur: this.maxblur,\n width: this.three.size.width,\n height: this.three.size.height,\n };\n const pass = new BokehPass(this.three.scene, this.three.camera, params);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'BokehPass',\n};\n","import { FilmPass } from 'three/examples/jsm/postprocessing/FilmPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n noiseIntensity: {\n type: Number,\n default: 0.5,\n },\n scanlinesIntensity: {\n type: Number,\n default: 0.05,\n },\n scanlinesCount: {\n type: Number,\n default: 4096,\n },\n grayscale: {\n type: Number,\n default: 0,\n },\n },\n watch: {\n noiseIntensity() { this.pass.uniforms.nIntensity.value = this.noiseIntensity; },\n scanlinesIntensity() { this.pass.uniforms.sIntensity.value = this.scanlinesIntensity; },\n scanlinesCount() { this.pass.uniforms.sCount.value = this.scanlinesCount; },\n grayscale() { this.pass.uniforms.grayscale.value = this.grayscale; },\n },\n mounted() {\n const pass = new FilmPass(this.noiseIntensity, this.scanlinesIntensity, this.scanlinesCount, this.grayscale);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'FilmPass',\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { FXAAShader } from 'three/examples/jsm/shaders/FXAAShader.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n const pass = new ShaderPass(FXAAShader);\n this.passes.push(pass);\n this.pass = pass;\n\n // resize will be called in three init\n this.three.onAfterResize(this.resize);\n },\n unmounted() {\n this.three.offAfterResize(this.resize);\n },\n methods: {\n resize() {\n const { resolution } = this.pass.material.uniforms;\n resolution.value.x = 1 / this.three.size.width;\n resolution.value.y = 1 / this.three.size.height;\n },\n },\n __hmrId: 'FXAAPass',\n};\n","import { HalftonePass } from 'three/examples/jsm/postprocessing/HalftonePass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n shape: { type: Number, default: 1 },\n radius: { type: Number, default: 4 },\n rotateR: { type: Number, default: Math.PI / 12 * 1 },\n rotateG: { type: Number, default: Math.PI / 12 * 2 },\n rotateB: { type: Number, default: Math.PI / 12 * 3 },\n scatter: { type: Number, default: 0 },\n },\n mounted() {\n const pass = new HalftonePass(this.three.size.width, this.three.size.height, {});\n\n ['shape', 'radius', 'rotateR', 'rotateG', 'rotateB', 'scatter'].forEach(p => {\n pass.uniforms[p].value = this[p];\n watch(() => this[p], () => {\n pass.uniforms[p].value = this[p];\n });\n });\n\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'HalftonePass',\n};\n","import { SMAAPass } from 'three/examples/jsm/postprocessing/SMAAPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n mounted() {\n // three size is not set yet, but this pass will be resized by effect composer\n const pass = new SMAAPass(this.three.size.width, this.three.size.height);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'SMAAPass',\n};\n","export default {\n uniforms: {},\n vertexShader: `\n varying vec2 vUv;\n void main() {\n vUv = uv;\n gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);\n }\n `,\n fragmentShader: `\n varying vec2 vUv;\n void main() {\n gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n }\n `,\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n blurRadius: { value: 0 },\n gradientRadius: { value: 0 },\n start: { value: new Vector2() },\n end: { value: new Vector2() },\n delta: { value: new Vector2() },\n texSize: { value: new Vector2() },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform float blurRadius;\n uniform float gradientRadius;\n uniform vec2 start;\n uniform vec2 end;\n uniform vec2 delta;\n uniform vec2 texSize;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n\n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n\n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n\n vec2 normal = normalize(vec2(start.y - end.y, end.x - start.x));\n float radius = smoothstep(0.0, 1.0, abs(dot(vUv * texSize - start, normal)) / gradientRadius) * blurRadius;\n for (float t = -30.0; t <= 30.0; t++) {\n float percent = (t + offset - 0.5) / 30.0;\n float weight = 1.0 - abs(percent);\n vec4 texel = texture2D(tDiffuse, vUv + delta / texSize * percent * radius);\n // vec4 texel2 = texture2D(tDiffuse, vUv + vec2(-delta.y, delta.x) / texSize * percent * radius);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n // texel2.rgb *= texel2.a;\n\n color += texel * weight;\n total += 2.0 * weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { Vector2 } from 'three';\nimport { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport { watch } from 'vue';\nimport EffectPass from './EffectPass.js';\nimport TiltShift from '../shaders/TiltShift.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n blurRadius: { type: Number, default: 10 },\n gradientRadius: { type: Number, default: 100 },\n start: { type: Object, default: { x: 0, y: 100 } },\n end: { type: Object, default: { x: 10, y: 100 } },\n },\n mounted() {\n this.pass = new ShaderPass(TiltShift);\n this.passes.push(this.pass);\n\n this.pass1 = new ShaderPass(TiltShift);\n this.passes.push(this.pass1);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n const uniforms1 = this.uniforms1 = this.pass1.uniforms;\n uniforms1.blurRadius = uniforms.blurRadius;\n uniforms1.gradientRadius = uniforms.gradientRadius;\n uniforms1.start = uniforms.start;\n uniforms1.end = uniforms.end;\n uniforms1.texSize = uniforms.texSize;\n\n bindProp(this, 'blurRadius', uniforms.blurRadius, 'value');\n bindProp(this, 'gradientRadius', uniforms.gradientRadius, 'value');\n\n this.updateFocusLine();\n ['start', 'end'].forEach(p => {\n watch(() => this[p], this.updateFocusLine, { deep: true });\n });\n\n this.pass.setSize = (width, height) => {\n uniforms.texSize.value.set(width, height);\n };\n },\n methods: {\n updateFocusLine() {\n this.uniforms.start.value.copy(this.start);\n this.uniforms.end.value.copy(this.end);\n const dv = new Vector2().copy(this.end).sub(this.start).normalize();\n this.uniforms.delta.value.copy(dv);\n this.uniforms1.delta.value.set(-dv.y, dv.x);\n },\n },\n __hmrId: 'TiltShiftPass',\n};\n","import { Vector2 } from 'three';\nimport { UnrealBloomPass } from 'three/examples/jsm/postprocessing/UnrealBloomPass.js';\nimport EffectPass from './EffectPass.js';\n\nexport default {\n extends: EffectPass,\n props: {\n strength: { type: Number, default: 1.5 },\n radius: { type: Number, default: 0 },\n threshold: { type: Number, default: 0 },\n },\n watch: {\n strength() { this.pass.strength = this.strength; },\n radius() { this.pass.radius = this.radius; },\n threshold() { this.pass.threshold = this.threshold; },\n },\n mounted() {\n const size = new Vector2(this.three.size.width, this.three.size.height);\n const pass = new UnrealBloomPass(size, this.strength, this.radius, this.threshold);\n this.passes.push(pass);\n this.pass = pass;\n },\n __hmrId: 'UnrealBloomPass',\n};\n","// From https://github.com/evanw/glfx.js\nimport { Vector2 } from 'three';\nimport DefaultShader from './default';\n\nexport default {\n uniforms: {\n tDiffuse: { value: null },\n center: { value: new Vector2(0.5, 0.5) },\n strength: { value: 0 },\n },\n vertexShader: DefaultShader.vertexShader,\n fragmentShader: `\n uniform sampler2D tDiffuse;\n uniform vec2 center;\n uniform float strength;\n varying vec2 vUv;\n\n float random(vec3 scale, float seed) {\n /* use the fragment position for a different seed per-pixel */\n return fract(sin(dot(gl_FragCoord.xyz + seed, scale)) * 43758.5453 + seed);\n }\n \n void main() {\n vec4 color = vec4(0.0);\n float total = 0.0;\n vec2 toCenter = center - vUv;\n \n /* randomize the lookup values to hide the fixed number of samples */\n float offset = random(vec3(12.9898, 78.233, 151.7182), 0.0);\n \n for (float t = 0.0; t <= 40.0; t++) {\n float percent = (t + offset) / 40.0;\n float weight = 4.0 * (percent - percent * percent);\n vec4 texel = texture2D(tDiffuse, vUv + toCenter * percent * strength);\n\n /* switch to pre-multiplied alpha to correctly blur transparent images */\n texel.rgb *= texel.a;\n\n color += texel * weight;\n total += weight;\n }\n\n gl_FragColor = color / total;\n\n /* switch back from pre-multiplied alpha */\n gl_FragColor.rgb /= gl_FragColor.a + 0.00001;\n }\n `,\n};\n","import { ShaderPass } from 'three/examples/jsm/postprocessing/ShaderPass.js';\nimport EffectPass from './EffectPass.js';\nimport ZoomBlur from '../shaders/ZoomBlur.js';\nimport { bindProp } from '../tools.js';\n\nexport default {\n extends: EffectPass,\n props: {\n center: { type: Object, default: { x: 0.5, y: 0.5 } },\n strength: { type: Number, default: 0.5 },\n },\n mounted() {\n this.pass = new ShaderPass(ZoomBlur);\n this.passes.push(this.pass);\n\n const uniforms = this.uniforms = this.pass.uniforms;\n bindProp(this, 'center', uniforms.center, 'value');\n bindProp(this, 'strength', uniforms.strength, 'value');\n },\n __hmrId: 'ZoomBlurPass',\n};\n","import { createApp as _createApp } from 'vue';\nimport * as TROIS from './index.js';\n\nexport const TroisJSVuePlugin = {\n install: (app) => {\n const comps = [\n 'Camera',\n 'OrthographicCamera',\n 'PerspectiveCamera',\n 'Renderer',\n 'Scene',\n 'Group',\n\n 'BoxGeometry',\n 'CircleGeometry',\n 'ConeGeometry',\n 'CylinderGeometry',\n 'DodecahedronGeometry',\n 'IcosahedronGeometry',\n 'LatheGeometry',\n 'OctahedronGeometry',\n 'PolyhedronGeometry',\n 'RingGeometry',\n 'SphereGeometry',\n 'TetrahedronGeometry',\n 'TorusGeometry',\n 'TorusKnotGeometry',\n 'TubeGeometry',\n\n 'AmbientLight',\n 'DirectionalLight',\n 'HemisphereLight',\n 'PointLight',\n 'RectAreaLight',\n 'SpotLight',\n\n 'BasicMaterial',\n 'LambertMaterial',\n 'MatcapMaterial',\n 'PhongMaterial',\n 'PhysicalMaterial',\n 'ShaderMaterial',\n 'StandardMaterial',\n 'SubSurfaceMaterial',\n 'ToonMaterial',\n\n 'Texture',\n 'CubeTexture',\n\n 'Box',\n 'Circle',\n 'Cone',\n 'Cylinder',\n 'Dodecahedron',\n 'Icosahedron',\n 'Mesh',\n 'Lathe',\n 'Octahedron',\n 'Plane',\n 'Polyhedron',\n 'Ring',\n 'Sphere',\n 'Tetrahedron',\n 'Text',\n 'Torus',\n 'TorusKnot',\n 'Tube',\n\n 'Gem',\n 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\ No newline at end of file diff --git a/package.json b/package.json index 60d1c26..39e1cb3 100644 --- a/package.json +++ b/package.json @@ -1,6 +1,6 @@ { "name": "troisjs", - "version": "0.1.12", + "version": "0.1.13", "scripts": { "dev": "vite", "build": "vite build", diff --git a/src/meshes/Tube.js b/src/meshes/Tube.js index ea0acca..e201ff0 100644 --- a/src/meshes/Tube.js +++ b/src/meshes/Tube.js @@ -20,9 +20,9 @@ export default { this.refreshGeometry(); }); }); - // watch(() => this.points, () => { - // this.updatePoints(); - // }); + watch(() => this.points, () => { + updateTubeGeometryPoints(this.geometry, this.points); + }); }, methods: { createGeometry() {