import { describe, test, expect } from 'bun:test' import { encodeVectorNetworkBlob, decodeVectorNetworkBlob, type VectorNetwork } from '@open-pencil/core' import { lineNetwork, triangleNetwork, vectorNetwork, vectorSegment, vectorVertex } from '#tests/helpers/vector-network' describe('vectorNetworkBlob round-trip', () => { test('empty network', () => { const network: VectorNetwork = { vertices: [], segments: [], regions: [] } const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.vertices).toHaveLength(0) expect(decoded.segments).toHaveLength(0) expect(decoded.regions).toHaveLength(0) }) test('single line segment', () => { const network = lineNetwork() const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.vertices).toHaveLength(2) expect(decoded.vertices[0].x).toBeCloseTo(0) expect(decoded.vertices[1].x).toBeCloseTo(100) expect(decoded.vertices[1].y).toBeCloseTo(50) expect(decoded.segments).toHaveLength(1) expect(decoded.segments[0].start).toBe(0) expect(decoded.segments[0].end).toBe(1) }) test('cubic bezier segment', () => { const network = vectorNetwork( [ { ...vectorVertex(0, 0), handleMirroring: 'ANGLE' }, { ...vectorVertex(100, 100), handleMirroring: 'ANGLE' } ], [vectorSegment(0, 1, { x: 30, y: 0 }, { x: -30, y: 0 })] ) const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.segments[0].tangentStart.x).toBeCloseTo(30) expect(decoded.segments[0].tangentEnd.x).toBeCloseTo(-30) }) test('network with region', () => { const network = triangleNetwork() const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.regions).toHaveLength(1) expect(decoded.regions[0].windingRule).toBe('NONZERO') expect(decoded.regions[0].loops).toEqual([[0, 1, 2]]) }) test('region with EVENODD winding', () => { const network: VectorNetwork = { vertices: [ { x: 0, y: 0, handleMirroring: 'NONE' }, { x: 10, y: 0, handleMirroring: 'NONE' }, { x: 10, y: 10, handleMirroring: 'NONE' }, { x: 0, y: 10, handleMirroring: 'NONE' } ], segments: [ { start: 0, end: 1, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } }, { start: 1, end: 2, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } }, { start: 2, end: 3, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } }, { start: 3, end: 0, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } } ], regions: [{ windingRule: 'EVENODD', loops: [[0, 1, 2, 3]] }] } const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.regions[0].windingRule).toBe('EVENODD') }) test('multiple regions with multiple loops', () => { const network: VectorNetwork = { vertices: [ { x: 0, y: 0, handleMirroring: 'NONE' }, { x: 10, y: 0, handleMirroring: 'NONE' }, { x: 10, y: 10, handleMirroring: 'NONE' } ], segments: [ { start: 0, end: 1, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } }, { start: 1, end: 2, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } }, { start: 2, end: 0, tangentStart: { x: 0, y: 0 }, tangentEnd: { x: 0, y: 0 } } ], regions: [ { windingRule: 'NONZERO', loops: [[0, 1], [2]] }, { windingRule: 'EVENODD', loops: [[0, 2]] } ] } const blob = encodeVectorNetworkBlob(network) const decoded = decodeVectorNetworkBlob(blob) expect(decoded.regions).toHaveLength(2) expect(decoded.regions[0].loops).toEqual([[0, 1], [2]]) expect(decoded.regions[1].loops).toEqual([[0, 2]]) }) })