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543 行
18 KiB
543 行
18 KiB
using System;
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using System.Collections.Generic;
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using System.Linq;
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using Unity.UIWidgets.foundation;
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using Unity.UIWidgets.ui;
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using UnityEngine;
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using Canvas = Unity.UIWidgets.ui.Canvas;
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using Color = Unity.UIWidgets.ui.Color;
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using Rect = Unity.UIWidgets.ui.Rect;
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namespace Unity.UIWidgets.painting {
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public enum BorderStyle {
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none,
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solid,
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}
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public class BorderSide : IEquatable<BorderSide> {
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public BorderSide(
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Color color = null,
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float width = 1.0f,
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BorderStyle style = BorderStyle.solid
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) {
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this.color = color ?? Color.black;
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this.width = width;
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this.style = style;
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}
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public static BorderSide merge(BorderSide a, BorderSide b) {
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D.assert(a != null);
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D.assert(b != null);
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D.assert(canMerge(a, b));
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bool aIsNone = a.style == BorderStyle.none && a.width == 0.0;
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bool bIsNone = b.style == BorderStyle.none && b.width == 0.0;
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if (aIsNone && bIsNone) {
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return none;
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}
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if (aIsNone) {
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return b;
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}
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if (bIsNone) {
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return a;
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}
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D.assert(a.color == b.color);
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D.assert(a.style == b.style);
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return new BorderSide(
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color: a.color, // == b.color
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width: a.width + b.width,
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style: a.style // == b.style
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);
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}
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public readonly Color color;
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public readonly float width;
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public readonly BorderStyle style;
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public static readonly BorderSide none = new BorderSide(width: 0.0f, style: BorderStyle.none);
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public BorderSide copyWith(
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Color color = null,
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float? width = null,
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BorderStyle? style = null
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) {
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D.assert(width == null || width >= 0.0);
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return new BorderSide(
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color: color ?? this.color,
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width: width ?? this.width,
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style: style ?? this.style
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);
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}
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public BorderSide scale(float t) {
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return new BorderSide(
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color: color,
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width: Mathf.Max(0.0f, width * t),
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style: t <= 0.0 ? BorderStyle.none : style
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);
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}
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public Paint toPaint() {
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switch (style) {
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case BorderStyle.solid:
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return new Paint {
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color = color,
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strokeWidth = width,
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style = PaintingStyle.stroke,
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};
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case BorderStyle.none:
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return new Paint {
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color = Color.clear,
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strokeWidth = 0.0f,
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style = PaintingStyle.stroke
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};
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}
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return null;
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}
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public static bool canMerge(BorderSide a, BorderSide b) {
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D.assert(a != null);
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D.assert(b != null);
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if ((a.style == BorderStyle.none && a.width == 0.0) ||
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(b.style == BorderStyle.none && b.width == 0.0)) {
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return true;
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}
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return a.style == b.style && a.color == b.color;
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}
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public static BorderSide lerp(BorderSide a, BorderSide b, float t) {
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D.assert(a != null);
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D.assert(b != null);
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if (t == 0.0f) {
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return a;
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}
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if (t == 1.0f) {
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return b;
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}
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float width = Mathf.Lerp(a.width, b.width, t);
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if (width < 0.0) {
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return none;
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}
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if (a.style == b.style) {
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return new BorderSide(
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color: Color.lerp(a.color, b.color, t),
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width: width,
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style: a.style // == b.style
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);
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}
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Color colorA = null, colorB = null;
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switch (a.style) {
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case BorderStyle.solid:
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colorA = a.color;
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break;
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case BorderStyle.none:
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colorA = a.color.withAlpha(0x00);
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break;
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}
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switch (b.style) {
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case BorderStyle.solid:
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colorB = b.color;
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break;
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case BorderStyle.none:
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colorB = b.color.withAlpha(0x00);
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break;
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}
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return new BorderSide(
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color: Color.lerp(colorA, colorB, t),
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width: width,
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style: BorderStyle.solid
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);
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}
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public bool Equals(BorderSide other) {
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if (ReferenceEquals(null, other)) {
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return false;
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}
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if (ReferenceEquals(this, other)) {
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return true;
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}
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return Equals(color, other.color) && width.Equals(other.width) && style == other.style;
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}
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public override bool Equals(object obj) {
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if (ReferenceEquals(null, obj)) {
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return false;
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}
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if (ReferenceEquals(this, obj)) {
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return true;
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}
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if (obj.GetType() != GetType()) {
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return false;
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}
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return Equals((BorderSide) obj);
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}
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public override int GetHashCode() {
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unchecked {
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var hashCode = (color != null ? color.GetHashCode() : 0);
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hashCode = (hashCode * 397) ^ width.GetHashCode();
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hashCode = (hashCode * 397) ^ (int) style;
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return hashCode;
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}
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}
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public static bool operator ==(BorderSide left, BorderSide right) {
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return Equals(left, right);
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}
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public static bool operator !=(BorderSide left, BorderSide right) {
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return !Equals(left, right);
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}
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public override string ToString() {
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return $"{foundation_.objectRuntimeType(this, "BorderSize")}({color}, {width:F1}, {style})";
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}
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}
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public abstract class ShapeBorder {
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protected ShapeBorder() {
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}
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public virtual EdgeInsetsGeometry dimensions { get; }
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public virtual ShapeBorder add(ShapeBorder other, bool reversed = false) {
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return null;
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}
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public static ShapeBorder operator +(ShapeBorder it, ShapeBorder other) {
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return it.add(other) ?? other.add(it, reversed: true) ??
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new _CompoundBorder(new List<ShapeBorder> {other, it});
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}
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public abstract ShapeBorder scale(float t);
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public virtual ShapeBorder lerpFrom(ShapeBorder a, float t) {
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if (a == null) {
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return scale(t);
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}
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return null;
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}
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public virtual ShapeBorder lerpTo(ShapeBorder b, float t) {
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if (b == null) {
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return scale(1.0f - t);
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}
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return null;
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}
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public static ShapeBorder lerp(ShapeBorder a, ShapeBorder b, float t) {
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ShapeBorder result = null;
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if (b != null) {
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result = b.lerpFrom(a, t);
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}
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if (result == null && a != null) {
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result = a.lerpTo(b, t);
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}
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return result ?? (t < 0.5 ? a : b);
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}
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public abstract Path getOuterPath(Rect rect, TextDirection? textDirection = null);
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public abstract Path getInnerPath(Rect rect, TextDirection? textDirection = null);
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public abstract void paint(Canvas canvas, Rect rect, TextDirection? textDirection);
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public override string ToString() {
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return $"{foundation_.objectRuntimeType(this, "BorderShape")}()";
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}
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}
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class _CompoundBorder : ShapeBorder, IEquatable<_CompoundBorder> {
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public _CompoundBorder(List<ShapeBorder> borders) {
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D.assert(borders != null);
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D.assert(borders.Count >= 2);
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D.assert(!borders.Any(border => border is _CompoundBorder));
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this.borders = borders;
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}
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public readonly List<ShapeBorder> borders;
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public override EdgeInsetsGeometry dimensions {
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get {
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return borders.Aggregate(
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EdgeInsets.zero,
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(previousValue, border) => previousValue.add(border.dimensions));
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}
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}
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public override ShapeBorder add(ShapeBorder other, bool reversed = false) {
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if (!(other is _CompoundBorder)) {
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ShapeBorder ours = reversed ? borders.Last() : borders.First();
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ShapeBorder merged = ours.add(other, reversed: reversed) ?? other.add(ours, reversed: !reversed);
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if (merged != null) {
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List<ShapeBorder> result = new List<ShapeBorder>(borders);
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result[reversed ? result.Count - 1 : 0] = merged;
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return new _CompoundBorder(result);
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}
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}
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List<ShapeBorder> mergedBorders = new List<ShapeBorder>();
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if (reversed) {
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mergedBorders.AddRange(borders);
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}
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if (other is _CompoundBorder border) {
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mergedBorders.AddRange(border.borders);
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}
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else {
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mergedBorders.Add(other);
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}
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if (!reversed) {
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mergedBorders.AddRange(borders);
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}
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return new _CompoundBorder(mergedBorders);
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}
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public override ShapeBorder scale(float t) {
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return new _CompoundBorder(
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borders.Select(border => border.scale(t)).ToList()
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);
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}
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public override ShapeBorder lerpFrom(ShapeBorder a, float t) {
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return lerp(a, this, t);
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}
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public override ShapeBorder lerpTo(ShapeBorder b, float t) {
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return lerp(this, b, t);
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}
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public new static _CompoundBorder lerp(ShapeBorder a, ShapeBorder b, float t) {
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D.assert(a is _CompoundBorder || b is _CompoundBorder);
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List<ShapeBorder> aList = a is _CompoundBorder aBorder ? aBorder.borders : new List<ShapeBorder> {a};
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List<ShapeBorder> bList = b is _CompoundBorder bBorder ? bBorder.borders : new List<ShapeBorder> {b};
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List<ShapeBorder> results = new List<ShapeBorder>();
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int length = Mathf.Max(aList.Count, bList.Count);
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for (int index = 0; index < length; index += 1) {
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ShapeBorder localA = index < aList.Count ? aList[index] : null;
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ShapeBorder localB = index < bList.Count ? bList[index] : null;
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if (localA != null && localB != null) {
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ShapeBorder localResult = localA.lerpTo(localB, t) ?? localB.lerpFrom(localA, t);
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if (localResult != null) {
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results.Add(localResult);
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continue;
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}
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}
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if (localB != null) {
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results.Add(localB.scale(t));
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}
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if (localA != null) {
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results.Add(localA.scale(1.0f - t));
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}
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}
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return new _CompoundBorder(results);
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}
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public override Path getInnerPath(Rect rect, TextDirection? textDirection = null) {
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for (int index = 0; index < borders.Count - 1; index += 1) {
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rect = borders[index].dimensions.resolve(textDirection).deflateRect(rect);
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}
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return borders.Last().getInnerPath(rect);
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}
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public override Path getOuterPath(Rect rect, TextDirection? textDirection = null) {
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return borders.First().getOuterPath(rect);
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}
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public override void paint(Canvas canvas, Rect rect, TextDirection? textDirection = null) {
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foreach (ShapeBorder border in borders) {
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border.paint(canvas, rect, textDirection);
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rect = border.dimensions.resolve(textDirection).deflateRect(rect);
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}
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}
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public bool Equals(_CompoundBorder other) {
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if (ReferenceEquals(null, other)) {
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return false;
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}
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if (ReferenceEquals(this, other)) {
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return true;
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}
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return borders.SequenceEqual(other.borders);
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}
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public override bool Equals(object obj) {
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if (ReferenceEquals(null, obj)) {
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return false;
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}
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if (ReferenceEquals(this, obj)) {
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return true;
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}
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if (obj.GetType() != GetType()) {
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return false;
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}
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return Equals((_CompoundBorder) obj);
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}
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public override int GetHashCode() {
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return (borders != null ? borders.GetHashCode() : 0);
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}
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public static bool operator ==(_CompoundBorder left, _CompoundBorder right) {
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return Equals(left, right);
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}
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public static bool operator !=(_CompoundBorder left, _CompoundBorder right) {
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return !Equals(left, right);
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}
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public override string ToString() {
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return string.Join(" + ",
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((IList<ShapeBorder>) borders).Reverse().Select((border) => border.ToString()));
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}
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}
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public static class BorderUtils {
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public static void paintBorder(Canvas canvas, Rect rect,
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BorderSide top = null,
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BorderSide right = null,
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BorderSide bottom = null,
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BorderSide left = null
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) {
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D.assert(canvas != null);
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D.assert(rect != null);
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top = top ?? BorderSide.none;
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right = right ?? BorderSide.none;
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bottom = bottom ?? BorderSide.none;
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left = left ?? BorderSide.none;
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switch (top.style) {
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case BorderStyle.solid:
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Paint paint = new Paint {
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strokeWidth = 0.0f,
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color = top.color,
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};
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Path path = new Path();
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path.moveTo(rect.left, rect.top);
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path.lineTo(rect.right, rect.top);
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if (top.width == 0.0f) {
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paint.style = PaintingStyle.stroke;
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}
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else {
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paint.style = PaintingStyle.fill;
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path.lineTo(rect.right - right.width, rect.top + top.width);
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path.lineTo(rect.left + left.width, rect.top + top.width);
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}
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canvas.drawPath(path, paint);
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break;
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case BorderStyle.none:
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break;
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}
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switch (right.style) {
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case BorderStyle.solid:
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Paint paint = new Paint {
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strokeWidth = 0.0f,
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color = right.color,
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};
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Path path = new Path();
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path.moveTo(rect.right, rect.top);
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path.lineTo(rect.right, rect.bottom);
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if (right.width == 0.0) {
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paint.style = PaintingStyle.stroke;
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}
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else {
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paint.style = PaintingStyle.fill;
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path.lineTo(rect.right - right.width, rect.bottom - bottom.width);
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path.lineTo(rect.right - right.width, rect.top + top.width);
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}
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canvas.drawPath(path, paint);
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break;
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case BorderStyle.none:
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break;
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}
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switch (bottom.style) {
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case BorderStyle.solid:
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Paint paint = new Paint {
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strokeWidth = 0.0f,
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color = bottom.color,
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};
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Path path = new Path();
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path.moveTo(rect.right, rect.bottom);
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path.lineTo(rect.left, rect.bottom);
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if (bottom.width == 0.0) {
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paint.style = PaintingStyle.stroke;
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}
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else {
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paint.style = PaintingStyle.fill;
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path.lineTo(rect.left + left.width, rect.bottom - bottom.width);
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path.lineTo(rect.right - right.width, rect.bottom - bottom.width);
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}
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canvas.drawPath(path, paint);
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break;
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case BorderStyle.none:
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break;
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}
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switch (left.style) {
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case BorderStyle.solid:
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Paint paint = new Paint {
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strokeWidth = 0.0f,
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color = left.color,
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};
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Path path = new Path();
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path.moveTo(rect.left, rect.bottom);
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path.lineTo(rect.left, rect.top);
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if (left.width == 0.0f) {
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paint.style = PaintingStyle.stroke;
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}
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else {
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paint.style = PaintingStyle.fill;
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path.lineTo(rect.left + left.width, rect.top + top.width);
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path.lineTo(rect.left + left.width, rect.bottom - bottom.width);
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}
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canvas.drawPath(path, paint);
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break;
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case BorderStyle.none:
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break;
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}
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}
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}
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}
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