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It's safe to remove the unneeded `void`s from setters since the blocking issues in the `always_declare_return_types` lint have been fixed (https://github.com/dart-lang/linter/). We can also safely flip the bit on `avoid_return_types_on_setters`.
211 lines
5.7 KiB
Dart
211 lines
5.7 KiB
Dart
part of flutter_sprites;
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enum EffectLineWidthMode {
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linear,
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barrel,
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}
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enum EffectLineAnimationMode {
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none,
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scroll,
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random,
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}
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class EffectLine extends Node {
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EffectLine({
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this.texture: null,
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this.transferMode: TransferMode.dstOver,
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List<Point> points,
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this.widthMode : EffectLineWidthMode.linear,
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this.minWidth: 10.0,
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this.maxWidth: 10.0,
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this.widthGrowthSpeed: 0.0,
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this.animationMode: EffectLineAnimationMode.none,
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this.scrollSpeed: 0.1,
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double scrollStart: 0.0,
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this.fadeDuration: null,
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this.fadeAfterDelay: null,
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this.textureLoopLength: null,
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this.simplify: true,
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ColorSequence colorSequence
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}) {
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if (points == null)
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this.points = <Point>[];
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else
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this.points = points;
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_colorSequence = colorSequence;
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if (_colorSequence == null) {
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_colorSequence = new ColorSequence.fromStartAndEndColor(
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const Color(0xffffffff),
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const Color(0xffffffff)
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);
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}
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_offset = scrollStart;
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_painter = new TexturedLinePainter(points, _colors, _widths, texture);
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_painter.textureLoopLength = textureLoopLength;
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}
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final Texture texture;
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final TransferMode transferMode;
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final EffectLineWidthMode widthMode;
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final double minWidth;
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final double maxWidth;
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final double widthGrowthSpeed;
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final EffectLineAnimationMode animationMode;
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final double scrollSpeed;
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ColorSequence _colorSequence;
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ColorSequence get colorSequence => _colorSequence;
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List<Point> _points;
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List<Point> get points => _points;
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set points(List<Point> points) {
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_points = points;
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_pointAges = <double>[];
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for (int i = 0; i < _points.length; i++) {
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_pointAges.add(0.0);
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}
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}
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List<double> _pointAges;
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List<Color> _colors;
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List<double> _widths;
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final double fadeDuration;
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final double fadeAfterDelay;
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final double textureLoopLength;
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final bool simplify;
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TexturedLinePainter _painter;
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double _offset = 0.0;
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@override
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void update(double dt) {
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// Update scrolling position
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if (animationMode == EffectLineAnimationMode.scroll) {
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_offset += dt * scrollSpeed;
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_offset %= 1.0;
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} else if (animationMode == EffectLineAnimationMode.random) {
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_offset = randomDouble();
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}
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// Update age of line points and remove if neccesasry
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if (fadeDuration != null && fadeAfterDelay != null) {
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// Increase age of points
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for (int i = _points.length - 1; i >= 0; i--) {
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_pointAges[i] += dt;
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}
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// Check if the first/oldest point should be removed
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while(_points.length > 0 && _pointAges[0] > (fadeDuration + fadeAfterDelay)) {
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// Update scroll if it isn't the last and only point that is about to removed
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if (_points.length > 1 && textureLoopLength != null) {
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double dist = GameMath.distanceBetweenPoints(_points[0], _points[1]);
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_offset = (_offset - (dist / textureLoopLength)) % 1.0;
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if (_offset < 0.0) _offset += 1;
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}
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// Remove the point
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_pointAges.removeAt(0);
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_points.removeAt(0);
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}
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}
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}
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@override
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void paint(Canvas canvas) {
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if (points.length < 2) return;
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_painter.points = points;
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// Calculate colors
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List<double> stops = _painter.calculatedTextureStops;
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List<Color> colors = <Color>[];
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for (int i = 0; i < stops.length; i++) {
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double stop = stops[i];
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Color color = _colorSequence.colorAtPosition(stop);
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if (fadeDuration != null && fadeAfterDelay != null) {
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double age = _pointAges[i];
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if (age > fadeAfterDelay) {
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double fade = 1.0 - (age - fadeAfterDelay) / fadeDuration;
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int alpha = (color.alpha * fade).toInt().clamp(0, 255);
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color = new Color.fromARGB(alpha, color.red, color.green, color.blue);
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}
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}
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colors.add(color);
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}
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_painter.colors = colors;
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// Calculate widths
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List<double> widths = <double>[];
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for (int i = 0; i < stops.length; i++) {
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double stop = stops[i];
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double growth = math.max(widthGrowthSpeed * _pointAges[i], 0.0);
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if (widthMode == EffectLineWidthMode.linear) {
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double width = minWidth + (maxWidth - minWidth) * stop + growth;
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widths.add(width);
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} else if (widthMode == EffectLineWidthMode.barrel) {
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double width = minWidth + math.sin(stop * math.PI) * (maxWidth - minWidth) + growth;
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widths.add(width);
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}
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}
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_painter.widths = widths;
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_painter.textureStopOffset = _offset;
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_painter.paint(canvas);
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}
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void addPoint(Point point) {
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// Skip duplicate points
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if (points.length > 0 && point.x == points[points.length - 1].x && point.y == points[points.length - 1].y)
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return;
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if (simplify && points.length >= 2 && GameMath.distanceBetweenPoints(point, points[points.length - 2]) < 10.0) {
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// Check if we should remove last point before adding the new one
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// Calculate the square distance from the middle point to the line of the
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// new point and the second to last point
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double dist2 = _distToSeqment2(
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points[points.length - 1],
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point,
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points[points.length - 2]
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);
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// If the point is on the line, remove it
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if (dist2 < 1.0) {
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_points.removeAt(_points.length - 1);
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}
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}
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// Add point and point's age
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_points.add(point);
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_pointAges.add(0.0);
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}
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double _sqr(double x) => x * x;
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double _dist2(Point v, Point w) => _sqr(v.x - w.x) + _sqr(v.y - w.y);
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double _distToSeqment2(Point p, Point v, Point w) {
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double l2 = _dist2(v, w);
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if (l2 == 0.0) return _dist2(p, v);
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double t = ((p.x - v.x) * (w.x - v.x) + (p.y - v.y) * (w.y - v.y)) / l2;
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if (t < 0) return _dist2(p, v);
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if (t > 1) return _dist2(p, w);
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return _dist2(p, new Point(v.x + t * (w.x - v.x), v.y + t * (w.y - v.y)));
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}
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}
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