grid-apps-cmms/src2/kiri/tools.js
2025-07-04 22:18:48 -04:00

166 lines
4.1 KiB
JavaScript

/** Copyright Stewart Allen <sa@grid.space> -- All Rights Reserved */
import { api } from './api.js';
import { THREE } from '../ext/three.js';
const { Vector3, Quaternion } = THREE;
const { kiri, moto } = root;
const XAXIS = new THREE.Vector3(1,0,0);
const ZAXIS = new THREE.Vector3(0,0,1);
// circle
let pgeo = new THREE.CircleGeometry(8, 30);
let pmat = new THREE.MeshBasicMaterial({color: 0xddeeff, opacity: 0.6, transparent: true});
let pmesh = new THREE.Mesh(pgeo, pmat);
// circle outline
let pi = pgeo.index.array;
let pp = pgeo.attributes.position.array;
let np = [];
for (let i=0; i<pi.length; i++) {
if (pi[i] * pi[i+1]) {
np.push(pp[pi[i]*3+0]);
np.push(pp[pi[i]*3+1]);
np.push(pp[pi[i]*3+2]);
np.push(pp[pi[i+1]*3+0]);
np.push(pp[pi[i+1]*3+1]);
np.push(pp[pi[i+1]*3+2]);
}
}
let wgeo = new THREE.BufferGeometry();
wgeo.setAttribute('position', new THREE.BufferAttribute(np.toFloat32(), 3));
let wmat = new THREE.LineBasicMaterial({ color: 0x6699cc });
let wmesh = new THREE.LineSegments(wgeo, wmat);
pmesh.add(wmesh);
let alert;
let lastobj;
let lastface;
let enabled = false;
let opName = 'lay flat';
let onDone = onLayFlatSelect;
function onLayFlatSelect() {
let q = new Quaternion().setFromUnitVectors(lastface.normal, new Vector3(0,0,-1));
api.selection.rotate(q);
// endIt();
}
function onFaceUpSelect() {
api.event.emit('tool.mesh.face-normal', lastface.normal);
// endIt();
}
function startIt() {
if (enabled) {
endIt();
return;
}
if (api.feature.hover) {
console.log(`${opName} cannot pre-empt hover`);
return;
}
api.feature.hover = true;
enabled = true;
alert = api.show.alert(`[ESC] to end ${opName}`, 600000);
}
function endIt() {
if (enabled) {
api.hide.alert(alert);
api.feature.hover = false;
enabled = false;
alert = undefined;
cleanup();
}
}
function cleanup() {
if (lastobj) {
lastobj.remove(pmesh);
lastobj = undefined;
}
}
api.event.on('key.esc', endIt);
api.event.on('tool.camera.focus', (fn) => {
opName = 'camera focus';
onDone = fn;
startIt();
});
api.event.on('tool.mesh.face-up', () => {
opName = 'face select';
onDone = onFaceUpSelect;
startIt();
});
api.event.on('tool.mesh.lay-flat', () => {
opName = 'lay flat';
onDone = onLayFlatSelect;
startIt();
});
function scale() {
let cam = moto.space.internals().camera;
let dist = cam.position.distanceTo(pmesh.position);
let scale = opName === 'camera focus' ?
Math.min(0.25, 100 / dist) : dist / 100;
pmesh.scale.set(scale,scale,scale);
}
api.event.on("space.view.zoom", scale);
api.event.on('mouse.hover', (ev) => {
if (!enabled) {
return;
}
cleanup();
let { int, ints, event, point, type } = ev;
if (type === 'widget') {
lastface = int.face;
let obj = lastobj = int.object;
let norm = int.face.normal;
let widget = obj.widget;
let track = widget.track;
let opos = track.pos;
obj.add(pmesh);
pmesh.position.x = point.x - opos.x + norm.x * 0.1;
if (track.indexed) {
let rad = track.indexRad;
let py = point.y * 1.001;
let pz = point.z * 1.001;
let v = new THREE.Vector3(point.x, py, pz).applyAxisAngle(XAXIS, rad);
pmesh.position.y = -v.z;
pmesh.position.z = v.y;
} else {
const zcomp = api.mode.get() === 'CAM' ? track.tzoff : 0;
pmesh.position.y = -point.z - opos.y + norm.y * 0.1;
pmesh.position.z = point.y + zcomp + norm.z * 0.1;
}
let q = new Quaternion().setFromUnitVectors(ZAXIS,
new Vector3(norm.x,norm.y,norm.z)
);
pmesh.setRotationFromQuaternion(q);
scale();
}
});
api.event.on('mouse.hover.up', (ev) => {
if (!enabled) {
return;
}
let { object } = ev;
if (!object) {
return;
}
onDone(ev);
endIt();
});
export { onLayFlatSelect, onFaceUpSelect, startIt, endIt, cleanup, scale, onDone };