242 lines
		
	
	
		
			4.5 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			242 lines
		
	
	
		
			4.5 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
import {
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	Box3,
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	Float32BufferAttribute,
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	InstancedBufferGeometry,
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	InstancedInterleavedBuffer,
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	InterleavedBufferAttribute,
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	Sphere,
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	Vector3,
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	WireframeGeometry
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} from 'three';
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const _box = new Box3();
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const _vector = new Vector3();
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class LineSegmentsGeometry extends InstancedBufferGeometry {
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	constructor() {
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		super();
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		this.isLineSegmentsGeometry = true;
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		this.type = 'LineSegmentsGeometry';
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		const positions = [ - 1, 2, 0, 1, 2, 0, - 1, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 0, - 1, - 1, 0, 1, - 1, 0 ];
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		const uvs = [ - 1, 2, 1, 2, - 1, 1, 1, 1, - 1, - 1, 1, - 1, - 1, - 2, 1, - 2 ];
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		const index = [ 0, 2, 1, 2, 3, 1, 2, 4, 3, 4, 5, 3, 4, 6, 5, 6, 7, 5 ];
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		this.setIndex( index );
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		this.setAttribute( 'position', new Float32BufferAttribute( positions, 3 ) );
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		this.setAttribute( 'uv', new Float32BufferAttribute( uvs, 2 ) );
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	}
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	applyMatrix4( matrix ) {
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		const start = this.attributes.instanceStart;
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		const end = this.attributes.instanceEnd;
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		if ( start !== undefined ) {
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			start.applyMatrix4( matrix );
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			end.applyMatrix4( matrix );
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			start.needsUpdate = true;
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		}
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		if ( this.boundingBox !== null ) {
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			this.computeBoundingBox();
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		}
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		if ( this.boundingSphere !== null ) {
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			this.computeBoundingSphere();
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		}
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		return this;
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	}
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	setPositions( array ) {
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		let lineSegments;
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		if ( array instanceof Float32Array ) {
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			lineSegments = array;
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		} else if ( Array.isArray( array ) ) {
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			lineSegments = new Float32Array( array );
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		}
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		const instanceBuffer = new InstancedInterleavedBuffer( lineSegments, 6, 1 ); // xyz, xyz
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		this.setAttribute( 'instanceStart', new InterleavedBufferAttribute( instanceBuffer, 3, 0 ) ); // xyz
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		this.setAttribute( 'instanceEnd', new InterleavedBufferAttribute( instanceBuffer, 3, 3 ) ); // xyz
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		//
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		this.computeBoundingBox();
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		this.computeBoundingSphere();
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		return this;
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	}
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	setColors( array ) {
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		let colors;
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		if ( array instanceof Float32Array ) {
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			colors = array;
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		} else if ( Array.isArray( array ) ) {
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			colors = new Float32Array( array );
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		}
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		const instanceColorBuffer = new InstancedInterleavedBuffer( colors, 6, 1 ); // rgb, rgb
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		this.setAttribute( 'instanceColorStart', new InterleavedBufferAttribute( instanceColorBuffer, 3, 0 ) ); // rgb
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		this.setAttribute( 'instanceColorEnd', new InterleavedBufferAttribute( instanceColorBuffer, 3, 3 ) ); // rgb
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		return this;
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	}
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	fromWireframeGeometry( geometry ) {
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		this.setPositions( geometry.attributes.position.array );
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		return this;
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	}
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	fromEdgesGeometry( geometry ) {
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		this.setPositions( geometry.attributes.position.array );
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		return this;
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	}
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	fromMesh( mesh ) {
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		this.fromWireframeGeometry( new WireframeGeometry( mesh.geometry ) );
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		// set colors, maybe
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		return this;
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	}
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	fromLineSegments( lineSegments ) {
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		const geometry = lineSegments.geometry;
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		this.setPositions( geometry.attributes.position.array ); // assumes non-indexed
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		// set colors, maybe
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		return this;
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	}
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	computeBoundingBox() {
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		if ( this.boundingBox === null ) {
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			this.boundingBox = new Box3();
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		}
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		const start = this.attributes.instanceStart;
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		const end = this.attributes.instanceEnd;
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		if ( start !== undefined && end !== undefined ) {
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			this.boundingBox.setFromBufferAttribute( start );
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			_box.setFromBufferAttribute( end );
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			this.boundingBox.union( _box );
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		}
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	}
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	computeBoundingSphere() {
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		if ( this.boundingSphere === null ) {
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			this.boundingSphere = new Sphere();
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		}
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		if ( this.boundingBox === null ) {
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			this.computeBoundingBox();
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		}
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		const start = this.attributes.instanceStart;
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		const end = this.attributes.instanceEnd;
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		if ( start !== undefined && end !== undefined ) {
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			const center = this.boundingSphere.center;
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			this.boundingBox.getCenter( center );
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			let maxRadiusSq = 0;
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			for ( let i = 0, il = start.count; i < il; i ++ ) {
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				_vector.fromBufferAttribute( start, i );
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				maxRadiusSq = Math.max( maxRadiusSq, center.distanceToSquared( _vector ) );
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				_vector.fromBufferAttribute( end, i );
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				maxRadiusSq = Math.max( maxRadiusSq, center.distanceToSquared( _vector ) );
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			}
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			this.boundingSphere.radius = Math.sqrt( maxRadiusSq );
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			if ( isNaN( this.boundingSphere.radius ) ) {
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				console.error( 'THREE.LineSegmentsGeometry.computeBoundingSphere(): Computed radius is NaN. The instanced position data is likely to have NaN values.', this );
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			}
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		}
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	}
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	toJSON() {
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		// todo
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	}
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	applyMatrix( matrix ) {
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		console.warn( 'THREE.LineSegmentsGeometry: applyMatrix() has been renamed to applyMatrix4().' );
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		return this.applyMatrix4( matrix );
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	}
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}
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export { LineSegmentsGeometry };
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