// test/pen_polish_test.dart // // Guards the pen-polish work (W1 configurable thinning + W3 tilt): // - the on-screen painter (ink_painters.buildStrokePath) and the export/engine // path (stroke_geometry.buildStrokeOutline) share ONE thinning default // (kDefaultPenThinning) and respond to it identically — the user's core // "thinning 写死" complaint, and the single-source-of-truth invariant the // Critic required; // - tilt survives the PenStroke -> EditorStroke adapter (W3 model fix). import 'dart:ui'; import 'package:flutter_test/flutter_test.dart'; import 'package:badnote/editor/canvas/ink_painters.dart'; import 'package:badnote/editor/canvas/pen_stroke.dart'; import 'package:badnote/editor/engine/stroke_geometry.dart'; import 'package:badnote/editor/engine/stroke_model.dart'; PenStroke _pressuredPen() => PenStroke( // Varied pressure, deliberately NOT reaching full force, so that // thinning>0 (pressure-modulated, narrower) vs thinning=0 (constant full // width) produces a measurably different bounding box. points: const [ PenPoint(0.10, 0.50, 0.10), PenPoint(0.30, 0.50, 0.25), PenPoint(0.50, 0.50, 0.40), PenPoint(0.70, 0.50, 0.55), ], color: 0xFF000000, width: 0.01, kind: PenStrokeKind.pen, ); void main() { const size = Size(1000, 1000); group('W1 — thinning is configurable and single-sourced', () { test('buildStrokePath default == explicit kDefaultPenThinning', () { final pen = _pressuredPen(); final byDefault = buildStrokePath(pen, size, isComplete: true); final explicit = buildStrokePath(pen, size, isComplete: true, thinning: kDefaultPenThinning); expect(byDefault.getBounds(), explicit.getBounds()); }); test('thinning actually affects the outline (not hardcoded/ignored)', () { // NB: the bounding box is thinning-INVARIANT here because // perfect_freehand's round end-caps are drawn at the full `size`; only // the mid-section width tracks pressure×thinning. So we compare the // outline PERIMETER (sum of contour lengths), which does reflect the // pinched middle. double perimeter(Path p) => p.computeMetrics().fold(0.0, (sum, m) => sum + m.length); final pen = _pressuredPen(); final strong = perimeter( buildStrokePath(pen, size, isComplete: true, thinning: 0.85)); final none = perimeter( buildStrokePath(pen, size, isComplete: true, thinning: 0.0)); // Constant width (0.0) vs pressure-thinning (0.85) must differ measurably. expect((strong - none).abs(), greaterThan(1.0), reason: 'thinning had no effect on the outline — it is not wired'); }); test('screen and export builders agree for the same stroke + thinning', () { final pen = _pressuredPen(); final editor = EditorStroke.fromPenStroke(pen); for (final thinning in const [0.0, kDefaultPenThinning, 1.0]) { final screen = buildStrokePath(pen, size, isComplete: true, thinning: thinning) .getBounds(); final export = buildStrokeOutline(editor, size, isComplete: true, thinning: thinning) .getBounds(); expect(screen, export, reason: 'screen vs export diverged at thinning=$thinning'); } }); }); group('W3 — tilt survives the PenStroke adapter', () { test('PenPoint.tilt maps into EditorPoint.tilt', () { const pen = PenStroke( points: [PenPoint(0.1, 0.2, 0.5, tilt: 23.5)], color: 0xFF112233, width: 0.01, kind: PenStrokeKind.pen, ); final editor = EditorStroke.fromPenStroke(pen); expect(editor.points.single.tilt, 23.5); }); test('null tilt stays null through the adapter', () { const pen = PenStroke( points: [PenPoint(0.1, 0.2, 0.5)], color: 0xFF112233, width: 0.01, kind: PenStrokeKind.pen, ); final editor = EditorStroke.fromPenStroke(pen); expect(editor.points.single.tilt, isNull); }); }); }