mirror of
https://github.com/CNCKitchen/stlTexturizer.git
synced 2026-04-07 22:11:32 +00:00
Add wireframe toggle in UI and implement wireframe rendering functionality
This commit is contained in:
@@ -44,6 +44,10 @@
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</div>
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<div id="viewport-footer">
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<span id="mesh-info" class="mesh-info"></span>
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<label class="wireframe-toggle">
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<input type="checkbox" id="wireframe-toggle" />
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Wireframe
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</label>
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<div class="viewport-controls-hint">Left drag: orbit · Right drag: pan · Scroll: zoom</div>
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</div>
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</section>
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+3
-8
@@ -10,15 +10,10 @@ const exporter = new STLExporter();
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* @param {string} [filename]
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*/
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export function exportSTL(geometry, filename = 'textured.stl') {
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// The geometry was rotated -90° around X on load to convert Z-up → Y-up for the viewer.
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// Undo that rotation before export so the STL lands back in the original Z-up orientation
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// that 3D-print slicers expect.
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const exportGeom = geometry.clone();
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exportGeom.applyMatrix4(new THREE.Matrix4().makeRotationX(Math.PI / 2));
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const mesh = new THREE.Mesh(exportGeom, new THREE.MeshBasicMaterial());
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// Geometry is already in the original Z-up orientation (the loader never rotates it;
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// the viewer uses a Z-up camera instead). Export as-is so slicers receive the correct pose.
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const mesh = new THREE.Mesh(geometry, new THREE.MeshBasicMaterial());
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const result = exporter.parse(mesh, { binary: true });
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exportGeom.dispose();
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// result is an ArrayBuffer in binary mode
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const blob = new Blob([result], { type: 'application/octet-stream' });
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+5
-1
@@ -1,4 +1,4 @@
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import { initViewer, loadGeometry, setMeshMaterial } from './viewer.js';
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import { initViewer, loadGeometry, setMeshMaterial, setWireframe } from './viewer.js';
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import { loadSTLFile, computeBounds, getTriangleCount } from './stlLoader.js';
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import { PRESETS, loadCustomTexture } from './presetTextures.js';
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import { createPreviewMaterial, updateMaterial } from './previewMaterial.js';
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@@ -42,6 +42,7 @@ const exportProgress = document.getElementById('export-progress');
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const exportProgBar = document.getElementById('export-progress-bar');
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const exportProgLbl = document.getElementById('export-progress-label');
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const triLimitWarning = document.getElementById('tri-limit-warning');
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const wireframeToggle = document.getElementById('wireframe-toggle');
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const mappingSelect = document.getElementById('mapping-mode');
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const scaleUSlider = document.getElementById('scale-u');
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@@ -192,6 +193,9 @@ function wireEvents() {
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// ── Export ──
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exportBtn.addEventListener('click', handleExport);
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// ── Wireframe ──
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wireframeToggle.addEventListener('change', () => setWireframe(wireframeToggle.checked));
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}
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// ── Slider helper ─────────────────────────────────────────────────────────────
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+19
-4
@@ -51,12 +51,27 @@ export function computeUV(pos, normal, mode, settings, bounds) {
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}
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case MODE_CYLINDRICAL: {
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// Z is up: wrap around Z axis, height along Z
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// Cylindrical around Z axis with automatic caps.
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//
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// Side: V arc-length-normalised by circumference C = 2πr so that
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// scaleU = scaleV gives un-stretched square texels on the surface.
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//
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// Cap (|normalZ| > 0.5): planar XY centred on the axis, scaled to the
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// diameter so one tile covers the full cap disc.
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const r = Math.max(size.x, size.y) * 0.5;
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const C = TWO_PI * Math.max(r, 1e-6);
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const rx = pos.x - center.x;
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const ry = pos.y - center.y;
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const theta = Math.atan2(ry, rx); // [-PI, PI]
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u = (theta / TWO_PI) + 0.5; // [0, 1]
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v = (pos.z - min.z) / Math.max(size.z, 1e-6);
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if (Math.abs(normal.z) > 0.5) {
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// Cap face — normalise by C so one tile = same world size as on the side
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u = rx / C + 0.5;
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v = ry / C + 0.5;
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} else {
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// Side face
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const theta = Math.atan2(ry, rx);
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u = (theta / TWO_PI) + 0.5;
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v = (pos.z - min.z) / C;
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}
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break;
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}
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+21
-4
@@ -77,10 +77,27 @@ const fragmentShader = /* glsl */`
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return sampleMap((pos.yz - boundsMin.yz) / max(boundsSize.yz, vec2(1e-4)));
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} else if (mappingMode == 3) {
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// Cylindrical around Z axis (Z is up)
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float u = atan(rel.y, rel.x) / TWO_PI + 0.5;
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float v = (pos.z - boundsMin.z) / max(boundsSize.z, 1e-4);
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return sampleMap(vec2(u, v));
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// Cylindrical around Z axis (Z is up) with automatic caps.
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//
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// Side: V is arc-length-normalised (divided by circumference C = 2πr)
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// so that scaleU = scaleV gives square, un-stretched texels on the surface.
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//
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// Cap (|normalZ| > 0.5): planar XY centred on the cylinder axis, one tile
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// fills the diameter × diameter square so the disc looks fully textured.
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float r = max(boundsSize.x, boundsSize.y) * 0.5;
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float C = TWO_PI * max(r, 1e-4);
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if (abs(vModelNormal.z) > 0.5) {
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// Cap face — normalise by C so one tile = same world size as on the side
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return sampleMap(vec2(
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rel.x / C + 0.5,
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rel.y / C + 0.5
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));
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}
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// Side face
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return sampleMap(vec2(
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atan(rel.y, rel.x) / TWO_PI + 0.5,
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(pos.z - boundsMin.z) / C
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));
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} else if (mappingMode == 4) {
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// Spherical — Z is up
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@@ -1,9 +1,14 @@
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import * as THREE from 'three';
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import { OrbitControls } from 'three/addons/controls/OrbitControls.js';
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import { LineSegments2 } from 'three/addons/lines/LineSegments2.js';
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import { LineSegmentsGeometry } from 'three/addons/lines/LineSegmentsGeometry.js';
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import { LineMaterial } from 'three/addons/lines/LineMaterial.js';
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let renderer, camera, scene, controls, meshGroup, ambientLight, dirLight1, dirLight2, grid;
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let currentMesh = null;
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let axesGroup = null;
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let wireframeLines = null; // LineSegments overlay, or null when hidden
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let wireframeVisible = false;
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// Build a labelled coordinate axes indicator scaled to `size`.
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// X = red, Y = green, Z = blue (up).
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@@ -131,6 +136,13 @@ function onResize() {
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camera.left = -halfH * aspect;
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camera.right = halfH * aspect;
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camera.updateProjectionMatrix();
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// LineMaterial needs the actual pixel resolution to compute linewidth correctly
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if (wireframeLines) {
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wireframeLines.material.resolution.set(
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w * renderer.getPixelRatio(),
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h * renderer.getPixelRatio(),
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);
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}
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}
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/**
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@@ -161,6 +173,11 @@ export function loadGeometry(geometry, material) {
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currentMesh.receiveShadow = true;
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meshGroup.add(currentMesh);
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// Rebuild wireframe overlay to match the new geometry
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// (old overlay is already gone because meshGroup was cleared above)
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wireframeLines = null;
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if (wireframeVisible) _buildWireframe(geometry);
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// Position grid at mesh bottom (Z-up: move grid along Z)
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geometry.computeBoundingBox();
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const box = geometry.boundingBox;
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@@ -232,3 +249,51 @@ export function getRenderer() { return renderer; }
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export function getCamera() { return camera; }
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export function getScene() { return scene; }
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export function getCurrentMesh() { return currentMesh; }
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/**
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* Show or hide the triangle-edge wireframe overlay.
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* @param {boolean} enabled
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*/
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export function setWireframe(enabled) {
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wireframeVisible = enabled;
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if (enabled) {
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if (!wireframeLines && currentMesh) _buildWireframe(currentMesh.geometry);
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if (wireframeLines) wireframeLines.visible = true;
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} else {
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if (wireframeLines) wireframeLines.visible = false;
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}
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}
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function _buildWireframe(geometry) {
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// Dispose any stale overlay
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if (wireframeLines) {
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if (wireframeLines.parent) wireframeLines.parent.remove(wireframeLines);
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wireframeLines.geometry.dispose();
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wireframeLines.material.dispose();
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wireframeLines = null;
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}
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// EdgesGeometry gives one segment per unique triangle edge
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const edgesGeo = new THREE.EdgesGeometry(geometry, 1);
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// Convert to LineSegmentsGeometry (required by LineMaterial / LineSegments2)
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const lsGeo = new LineSegmentsGeometry().fromEdgesGeometry(edgesGeo);
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edgesGeo.dispose();
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const lsMat = new LineMaterial({
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color: 0xffffff,
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opacity: 0.75,
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transparent: true,
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linewidth: 1.5, // pixels — works on all desktop GPUs
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depthTest: true,
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resolution: new THREE.Vector2(
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renderer.domElement.width * renderer.getPixelRatio(),
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renderer.domElement.height * renderer.getPixelRatio(),
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),
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});
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wireframeLines = new LineSegments2(lsGeo, lsMat);
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wireframeLines.renderOrder = 1;
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// Add to meshGroup so it's automatically removed when a new model is loaded
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meshGroup.add(wireframeLines);
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}
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@@ -145,6 +145,16 @@ main {
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color: #555566;
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}
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.wireframe-toggle {
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display: flex;
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align-items: center;
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gap: 5px;
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font-size: 11px;
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color: var(--text-muted);
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cursor: pointer;
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user-select: none;
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}
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/* ── Settings panel ──────────────────────────────────────────────────── */
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#settings-panel {
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width: var(--sidebar-w);
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