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https://github.com/Doodle3D/Doodle3D-Slicer.git
synced 2024-11-26 07:24:57 +01:00
move line preview to slice
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4654858c3e
commit
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@ -84,19 +84,19 @@ class Interface extends React.Component {
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const geometry = mesh.geometry.clone();
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const geometry = mesh.geometry.clone();
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mesh.updateMatrix();
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mesh.updateMatrix();
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geometry.applyMatrix(new THREE.Matrix4().makeTranslation(centerY, 0, centerX).multiply(mesh.matrix));
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const { gcode } = await sliceGeometry(settings, geometry, null, true, (process) => {
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const matrix = new THREE.Matrix4().makeTranslation(centerY, 0, centerX).multiply(mesh.matrix);
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const { gcode, linePreview } = await sliceGeometry(settings, geometry, matrix, true, true, (process) => {
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console.log('process: ', process);
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console.log('process: ', process);
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});
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});
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// can't disable control so remove it
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control.dispose();
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control.dispose();
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scene.remove(control, mesh);
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scene.remove(control, mesh);
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const line = createGcodeGeometry(gcode);
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linePreview.position.x = -centerY;
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line.position.x = -centerY;
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linePreview.position.z = -centerX;
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line.position.z = -centerX;
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scene.add(linePreview);
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scene.add(line);
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render();
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render();
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this.setState({ sliced: true });
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this.setState({ sliced: true });
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@ -2,8 +2,6 @@ import * as THREE from 'three';
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import 'three/examples/js/controls/EditorControls';
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import 'three/examples/js/controls/EditorControls';
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import 'three/examples/js/controls/TransformControls';
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import 'three/examples/js/controls/TransformControls';
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const MAX_SPEED = 100 * 60;
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export function placeOnGround(mesh) {
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export function placeOnGround(mesh) {
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const boundingBox = new THREE.Box3();
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const boundingBox = new THREE.Box3();
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const vertices = mesh.geometry.vertices.map(vertex => vertex.clone().applyMatrix4(mesh.matrix));
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const vertices = mesh.geometry.vertices.map(vertex => vertex.clone().applyMatrix4(mesh.matrix));
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@ -85,37 +83,3 @@ export function createScene(canvas, props, state) {
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return { control, editorControls, scene, mesh, camera, renderer, render };
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return { control, editorControls, scene, mesh, camera, renderer, render };
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}
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}
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export function createGcodeGeometry(gcode) {
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const geometry = new THREE.Geometry();
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let lastPoint
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for (let i = 0; i < gcode.length; i ++) {
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const { G, F, X, Y, Z } = gcode[i];
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if (X || Y || Z) {
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const point = new THREE.Vector3(Y, Z, X);
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let color;
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if (G === 0) {
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color = new THREE.Color(0x00ff00);
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} else if (G === 1) {
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color = new THREE.Color().setHSL(F / MAX_SPEED, 0.5, 0.5);
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}
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if (G === 1) {
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if (lastPoint) geometry.vertices.push(lastPoint);
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geometry.vertices.push(new THREE.Vector3(Y, Z, X));
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geometry.colors.push(color);
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geometry.colors.push(color);
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}
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lastPoint = point;
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}
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}
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const material = new THREE.LineBasicMaterial({ vertexColors: THREE.VertexColors });
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const line = new THREE.LineSegments(geometry, material);
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return line;
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}
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@ -2,7 +2,7 @@ import * as THREE from 'three';
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import slice from './sliceActions/slice.js';
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import slice from './sliceActions/slice.js';
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import SlicerWorker from './slicer.worker.js';
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import SlicerWorker from './slicer.worker.js';
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export function sliceMesh(settings, mesh, sync = false, onProgress) {
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export function sliceMesh(settings, mesh, sync = false, constructLinePreview = false, onProgress) {
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if (!mesh || !mesh.isMesh) {
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if (!mesh || !mesh.isMesh) {
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throw new Error('Provided mesh is not intance of THREE.Mesh');
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throw new Error('Provided mesh is not intance of THREE.Mesh');
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}
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}
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@ -12,7 +12,7 @@ export function sliceMesh(settings, mesh, sync = false, onProgress) {
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return sliceGeometry(settings, geometry, matrix, sync, onProgress);
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return sliceGeometry(settings, geometry, matrix, sync, onProgress);
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}
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}
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export function sliceGeometry(settings, geometry, matrix, sync = false, onProgress) {
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export async function sliceGeometry(settings, geometry, matrix, sync = false, constructLinePreview = false, onProgress) {
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if (!geometry) {
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if (!geometry) {
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throw new Error('Missing required geometry argument');
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throw new Error('Missing required geometry argument');
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} else if (geometry.isBufferGeometry) {
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} else if (geometry.isBufferGeometry) {
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@ -31,11 +31,17 @@ export function sliceGeometry(settings, geometry, matrix, sync = false, onProgre
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geometry.applyMatrix(matrix);
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geometry.applyMatrix(matrix);
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}
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}
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let gcode;
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if (sync) {
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if (sync) {
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return sliceSync(settings, geometry, onProgress);
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gcode = sliceSync(settings, geometry, onProgress);
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} else {
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} else {
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return sliceAsync(settings, geometry, onProgress);
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gcode = await sliceAsync(settings, geometry, onProgress);
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}
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}
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if (constructLinePreview) gcode.linePreview = createGcodeGeometry(gcode.gcode);
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gcode.gcode = gcodeToString(gcode.gcode);
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return gcode;
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}
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}
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function sliceSync(settings, geometry, onProgress) {
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function sliceSync(settings, geometry, onProgress) {
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@ -81,3 +87,57 @@ function sliceAsync(settings, geometry, onProgress) {
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});
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});
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});
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});
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}
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}
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function gcodeToString(gcode) {
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const currentValues = {};
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return gcode.reduce((string, command) => {
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let first = true;
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for (const action in command) {
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const value = command[action];
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const currentValue = currentValues[action];
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if (first) {
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string = action + value;
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first = false;
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} else if (currentValue !== value) {
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string += ` ${action}${value}`;
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currentValues[action] = value;
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}
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}
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string += '\n';
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}, '');
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}
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const MAX_SPEED = 100 * 60;
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function createGcodeGeometry(gcode) {
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const geometry = new THREE.Geometry();
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let lastPoint
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for (let i = 0; i < gcode.length; i ++) {
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const { G, F, X, Y, Z } = gcode[i];
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if (X || Y || Z) {
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const point = new THREE.Vector3(Y, Z, X);
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let color;
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if (G === 0) {
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color = new THREE.Color(0x00ff00);
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} else if (G === 1) {
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color = new THREE.Color().setHSL(F / MAX_SPEED, 0.5, 0.5);
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}
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if (G === 1) {
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if (lastPoint) geometry.vertices.push(lastPoint);
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geometry.vertices.push(new THREE.Vector3(Y, Z, X));
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geometry.colors.push(color);
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geometry.colors.push(color);
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}
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lastPoint = point;
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}
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}
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const material = new THREE.LineBasicMaterial({ vertexColors: THREE.VertexColors });
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const line = new THREE.LineSegments(geometry, material);
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return line;
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}
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