update deps, add planet back
This commit is contained in:
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c73e705aaa
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20
package.json
20
package.json
@ -16,19 +16,19 @@
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"author": "Evert \"Diamond\" Prants <evert@lunasqu.ee>",
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"license": "LGPL-3.0-or-later",
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"devDependencies": {
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"@babel/core": "^7.7.4",
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"@babel/plugin-transform-runtime": "^7.7.4",
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"@babel/preset-env": "^7.7.4",
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"babel-loader": "^8.0.6",
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"@babel/core": "^7.9.0",
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"@babel/plugin-transform-runtime": "^7.9.0",
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"@babel/preset-env": "^7.9.0",
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"babel-loader": "^8.1.0",
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"express": "^4.17.1",
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"html-webpack-plugin": "^3.2.0",
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"standard": "^12.0.1",
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"webpack": "^4.41.2",
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"webpack-command": "^0.4.2"
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"html-webpack-plugin": "^4.0.3",
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"standard": "^14.3.3",
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"webpack": "^4.42.1",
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"webpack-command": "^0.5.0"
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},
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"dependencies": {
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"@babel/runtime": "^7.7.4",
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"gl-matrix": "^2.8.1",
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"@babel/runtime": "^7.9.2",
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"gl-matrix": "^3.2.1",
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"open-simplex-noise": "^1.7.0"
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}
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}
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220
src/engine/components/planet/index.js
Normal file
220
src/engine/components/planet/index.js
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@ -0,0 +1,220 @@
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import { Mesh } from '../../mesh'
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import { BoundingBox } from '../../mesh/aabb'
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import { mat4, vec3 } from 'gl-matrix'
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import { subv3, mulv3, addv3, divv3, normalv3, crossv3 } from '../../utility'
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import Screen from '../../screen'
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const lodMax = 8
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class PlanetGenerator {
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constructor (resolution, radius, noise) {
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this.resolution = resolution
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this.radius = radius
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this.noise = noise
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}
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}
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class CubeFace {
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constructor (parent, level, pos, normal, generator) {
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this.parent = parent
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this.children = []
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this.normal = normal
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this.level = level
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this.generated = false
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this.generator = generator
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// Calculate left (x) and forward (z) vectors from the normal (y)
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this.left = [normal[1], normal[2], normal[0]]
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this.forward = crossv3(normal, this.left)
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this.position = pos
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// Center the face
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if (level === 0) {
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this.position = subv3(this.position, mulv3(this.left, generator.radius / 2))
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this.position = subv3(this.position, mulv3(this.forward, generator.radius / 2))
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}
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this.generate()
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}
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generate () {
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if (this.generated) return
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let VERTICES = this.generator.resolution
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let count = VERTICES * VERTICES
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let vertices = new Array(count * 3)
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let normals = new Array(count * 3)
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let textureCoords = new Array(count * 2)
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let indices = new Array(6 * (VERTICES - 1) * (VERTICES - 1))
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let radius = this.generator.radius
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let divisionLevel = Math.pow(2, this.level)
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for (let i = 0, vertexPointer = 0; i < VERTICES; i++) {
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for (let j = 0; j < VERTICES; j++, vertexPointer++) {
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// Vertex index (0 - 1)
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let iindex = i / (VERTICES - 1)
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let jindex = j / (VERTICES - 1)
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// From the left and forward vectors, we can calculate an oriented vertex
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let iv = divv3(mulv3(mulv3(this.left, iindex), radius), divisionLevel)
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let jv = divv3(mulv3(mulv3(this.forward, jindex), radius), divisionLevel)
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// Add the scaled left and forward to the centered origin
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let vertex = addv3(this.position, addv3(iv, jv))
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// Normalize and multiply by radius to create a spherical mesh
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let normal = normalv3(vertex)
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let pos = mulv3(normal, (radius))
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vertices[vertexPointer * 3] = pos[0]
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vertices[vertexPointer * 3 + 1] = pos[1]
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vertices[vertexPointer * 3 + 2] = pos[2]
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normals[vertexPointer * 3] = normal[0]
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normals[vertexPointer * 3 + 1] = normal[1]
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normals[vertexPointer * 3 + 2] = normal[2]
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textureCoords[vertexPointer * 2] = j * (1 / VERTICES)
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textureCoords[vertexPointer * 2 + 1] = i * (1 / VERTICES)
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if (i === VERTICES / 2 && j === VERTICES / 2) {
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this.center = pos
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}
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}
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}
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for (let gz = 0, pointer = 0; gz < VERTICES - 1; gz++) {
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for (let gx = 0; gx < VERTICES - 1; gx++) {
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let topLeft = (gz * VERTICES) + gx
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let topRight = topLeft + 1
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let bottomLeft = ((gz + 1) * VERTICES) + gx
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let bottomRight = bottomLeft + 1
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indices[pointer++] = topLeft
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indices[pointer++] = bottomLeft
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indices[pointer++] = topRight
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indices[pointer++] = topRight
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indices[pointer++] = bottomLeft
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indices[pointer++] = bottomRight
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}
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}
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this.mesh = Mesh.construct(Screen.gl, vertices, indices, textureCoords, normals)
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this.generated = true
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}
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dispose () {
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this.generated = false
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if (this.mesh) {
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// this.mesh.dispose(Screen.gl)
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this.mesh = null
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}
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}
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merge () {
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if (!this.children.length) return
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for (let i in this.children) {
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let ch = this.children[i]
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ch.merge()
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ch.dispose()
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}
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this.children = []
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this.generate()
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}
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subdivide () {
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if (this.level === lodMax) return
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let lv = this.level + 1
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let stepLeft = mulv3(this.left, this.generator.radius / Math.pow(2, lv))
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let stepForward = mulv3(this.forward, this.generator.radius / Math.pow(2, lv))
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this.children = [
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new CubeFace(this, lv, this.position, this.normal, this.generator),
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new CubeFace(this, lv, addv3(this.position, stepForward), this.normal, this.generator),
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new CubeFace(this, lv, addv3(this.position, stepLeft), this.normal, this.generator),
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new CubeFace(this, lv, addv3(this.position, addv3(stepLeft, stepForward)), this.normal, this.generator)
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]
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this.dispose()
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}
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draw (gl, shader) {
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if (!this.mesh) {
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for (let i in this.children) {
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this.children[i].draw(gl, shader)
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}
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return
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}
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this.mesh.prepare(gl, shader)
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this.mesh.draw(gl, shader)
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}
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update (camera, dt) {
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if (!this.center) return
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let camToOrigin = vec3.distance(camera.pos, this.center)
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let divisionLevel = Math.pow(2, this.level)
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let splitDistance = this.generator.radius / divisionLevel
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if (camToOrigin < splitDistance * 1.5 && this.children.length === 0) {
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this.subdivide()
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return
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} else if (camToOrigin > splitDistance * 2 && this.children.length > 0) {
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this.merge()
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return
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}
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if (this.children.length > 0) {
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for (let i in this.children) {
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this.children[i].update(camera, dt)
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}
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}
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}
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}
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class CubePlanet {
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constructor (origin, generator) {
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this.origin = origin
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this.generator = generator
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this.transform = mat4.create()
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mat4.fromTranslation(this.transform, origin)
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let hs = generator.radius / 2
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this.faces = [
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new CubeFace(this, 0, [0, 0, -hs], [0, 0, -1], generator), // front
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new CubeFace(this, 0, [0, 0, hs], [0, 0, 1], generator), // back
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new CubeFace(this, 0, [-hs, 0, 0], [-1, 0, 0], generator), // left
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new CubeFace(this, 0, [hs, 0, 0], [1, 0, 0], generator), // right
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new CubeFace(this, 0, [0, hs, 0], [0, 1, 0], generator), // top
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new CubeFace(this, 0, [0, -hs, 0], [0, -1, 0], generator) // bottom
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]
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}
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update (camera, dt) {
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for (let i in this.faces) {
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this.faces[i].update(camera, dt)
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}
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}
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draw (gl, shader) {
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// Set model transform matrix uniform
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const transformLocation = shader.getUniformLocation(gl, 'uModelMatrix')
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gl.uniformMatrix4fv(transformLocation, false, this.transform)
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for (let i in this.faces) {
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this.faces[i].draw(gl, shader)
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}
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}
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}
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export { CubePlanet, CubeFace, PlanetGenerator }
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@ -42,7 +42,7 @@ class Environment {
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this.fogEnd = 0
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this.fogColor = [0.8, 0.8, 0.8]
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this.sun = new DirectionalLight([0.0, 1000.0, 2000.0], [-1.0, -1.0, 0.0], [1.0, 1.0, 1.0])
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this.sun = new DirectionalLight([0.0, 1000.0, -2000.0], [-1.0, -1.0, 0.0], [1.0, 1.0, 1.0])
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this.lights = [ this.sun ]
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this.maxEnvironmentLights = ENV_MAX_LIGHTS
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@ -325,11 +325,11 @@ class VoxelMapBlock extends Node {
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}
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update (gl, dt) {
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if (!this.generated) return
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if (!this.generated) return false
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for (let i in this.children) {
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let ch = this.children[i]
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if (!(ch instanceof VoxelChunk)) continue
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if (ch.update(gl, dt)) break
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if (ch.update(gl, dt)) return true
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}
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}
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}
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@ -370,7 +370,7 @@ class VoxelWorld extends Node {
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continue
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}
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let absPos = mulv3(pos, this.blockSize * (this.chunkSize / 2))
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let absPos = mulv3(pos, this.blockSize * this.chunkSize)
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let block = new VoxelMapBlock(absPos, this.chunkSize, this.blockSize)
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block.generate(this.generator)
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@ -391,8 +391,8 @@ class VoxelWorld extends Node {
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let slgrid = [Math.floor(cam.pos[0] / total), Math.floor(cam.pos[1] / total), Math.floor(cam.pos[2] / total)]
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for (let x = slgrid[0] - this.renderDistance / 2; x < slgrid[0] + this.renderDistance / 2; x++) {
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for (let z = slgrid[1] - this.renderDistance / 2; z < slgrid[1] + this.renderDistance / 2; z++) {
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for (let y = slgrid[2] - this.renderDistance / 2; y < slgrid[2] + this.renderDistance / 2; y++) {
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for (let z = slgrid[2] - this.renderDistance / 2; z < slgrid[2] + this.renderDistance / 2; z++) {
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for (let y = slgrid[1] - this.renderDistance / 2; y < slgrid[1] + this.renderDistance / 2; y++) {
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if (this.getBlock(x, y, z)) continue
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this.queueMapblock([x, y, z])
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}
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@ -400,7 +400,7 @@ class VoxelWorld extends Node {
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}
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for (let i in this.children) {
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this.children[i].update(gl, dt)
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if (this.children[i].update(gl, dt)) break
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}
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}
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}
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43
src/index.js
43
src/index.js
@ -15,6 +15,8 @@ import { GUIRenderer, GUIImage, Dim4 } from './engine/gui'
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import { FontRenderer, GUIText, Font } from './engine/gui/font'
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import { VoxelWorld, VoxelGenerator } from './engine/voxel'
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import { CubePlanet, PlanetGenerator } from './engine/components/planet'
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let game = Engine
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let env = new Environment()
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let gui = new GUIRenderer()
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@ -29,11 +31,11 @@ async function pipeline () {
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entity.setRotation([0.0, 0.0, -90.0])
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// Initialize water
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let waterRenderer = new WaterRenderer()
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let water = new WaterTile([100.0, 0.0, 100.0], 100.0)
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await waterRenderer.initialize(game)
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await waterRenderer.useDUDVMap(game.gl, 'dudv')
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await waterRenderer.useNormalMap(game.gl, 'normalmap')
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// let waterRenderer = new WaterRenderer()
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// let water = new WaterTile([100.0, 0.0, 100.0], 100.0)
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// await waterRenderer.initialize(game)
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// await waterRenderer.useDUDVMap(game.gl, 'dudv')
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// await waterRenderer.useNormalMap(game.gl, 'normalmap')
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let arialFont = await Font.fromFile('arial')
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await arialFont.loadTextures(game.gl)
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@ -60,7 +62,7 @@ async function pipeline () {
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let hmap = new SimplexHeightMap(1, 1, 256, 50)
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// Create a terrain instance
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let terrain = new LODTerrain([0.0, 0.0, 0.0], 1024, 1024, 850, 4)
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// let terrain = new LODTerrain([0.0, 0.0, 0.0], 1024, 1024, 850, 4)
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// Terrain material
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let material = new Material(['grass-1024.jpg'])
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@ -72,11 +74,11 @@ async function pipeline () {
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}
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// Set generator and material for terrain
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terrain.setGenerator(hmap)
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terrain.setMaterial(material)
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// terrain.setGenerator(hmap)
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// terrain.setMaterial(material)
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// Create and initialize the camera
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let cam = new Camera([-16.0, 25.0, -16.0], [0.8, -0.6, 0.0])
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let cam = new Camera([-1300.0, 1325.0, -1300.0], [0.8, -0.6, 0.0])
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cam.updateProjection(game.gl)
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// Create skybox
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@ -89,6 +91,9 @@ async function pipeline () {
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// let voxgen = new VoxelGenerator(hmap, material)
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// let block = new VoxelWorld(voxgen)
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// Planet test
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let planet = new CubePlanet([0.0, 0.0, 0.0], new PlanetGenerator(16, 1000, hmap))
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// Update function for camera and terrain
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let fpsTimer = 0
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game.addUpdateFunction(function (dt) {
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@ -123,11 +128,11 @@ async function pipeline () {
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}
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// Update detail levels
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terrain.update(game.gl, cam)
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terrain.updateLODMesh(game.gl)
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// terrain.update(game.gl, cam)
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// terrain.updateLODMesh(game.gl)
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// Ripple water
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waterRenderer.update(dt)
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// waterRenderer.update(dt)
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// Update voxel chunk
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// voxgen.update(dt)
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@ -139,6 +144,9 @@ async function pipeline () {
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itms[0].children[0].setText(game.fps + ' fps')
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fpsTimer = 0
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}
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// Update planet LOD
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planet.update(cam, dt)
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})
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function drawEverything (gl) {
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@ -155,21 +163,24 @@ async function pipeline () {
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// Set the viewport uniforms
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cam.draw(gl, terrainShader)
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// Draw terrain
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terrain.draw(gl, terrainShader)
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// terrain.draw(gl, terrainShader)
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// entity.draw(gl, terrainShader)
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// block.draw(gl, terrainShader)
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material.apply(gl, terrainShader)
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planet.draw(gl, terrainShader)
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}
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// Render function for the triangle
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game.addRenderFunction(function (gl) {
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waterRenderer.reflect(gl, cam, drawEverything)
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waterRenderer.refract(gl, cam, drawEverything)
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// waterRenderer.reflect(gl, cam, drawEverything)
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// waterRenderer.refract(gl, cam, drawEverything)
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drawEverything(gl)
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waterRenderer.draw(gl, [water], cam, env.sun)
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// waterRenderer.draw(gl, [water], cam, env.sun)
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// Draw particles
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particleSystem.draw(gl, cam)
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