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81 lines
3.1 KiB
C#
81 lines
3.1 KiB
C#
// Copyright (c) 2007-2018 ppy Pty Ltd <contact@ppy.sh>.
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// Licensed under the MIT Licence - https://raw.githubusercontent.com/ppy/osu/master/LICENCE
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using System.Collections.Generic;
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using osu.Framework.Lists;
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using osu.Game.Rulesets.Objects.Drawables;
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using osu.Game.Rulesets.Timing;
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using OpenTK;
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namespace osu.Game.Rulesets.UI.Scrolling.Visualisers
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{
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public class OverlappingSpeedChangeVisualiser : ISpeedChangeVisualiser
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{
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private readonly SortedList<MultiplierControlPoint> controlPoints;
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public OverlappingSpeedChangeVisualiser(SortedList<MultiplierControlPoint> controlPoints)
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{
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this.controlPoints = controlPoints;
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}
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public void ComputeInitialStates(IEnumerable<DrawableHitObject> hitObjects, ScrollingDirection direction, double timeRange, Vector2 length)
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{
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foreach (var obj in hitObjects)
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{
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var controlPoint = controlPointAt(obj.HitObject.StartTime);
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obj.LifetimeStart = obj.HitObject.StartTime - timeRange / controlPoint.Multiplier;
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if (obj.HasNestedHitObjects)
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{
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ComputeInitialStates(obj.NestedHitObjects, direction, timeRange, length);
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ComputePositions(obj.NestedHitObjects, direction, obj.HitObject.StartTime, timeRange, length);
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}
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}
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}
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public void ComputePositions(IEnumerable<DrawableHitObject> hitObjects, ScrollingDirection direction, double currentTime, double timeRange, Vector2 length)
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{
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foreach (var obj in hitObjects)
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{
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var controlPoint = controlPointAt(obj.HitObject.StartTime);
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var position = (obj.HitObject.StartTime - currentTime) * controlPoint.Multiplier / timeRange;
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switch (direction)
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{
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case ScrollingDirection.Up:
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obj.Y = (float)(position * length.Y);
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break;
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case ScrollingDirection.Down:
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obj.Y = (float)(-position * length.Y);
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break;
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case ScrollingDirection.Left:
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obj.X = (float)(position * length.X);
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break;
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case ScrollingDirection.Right:
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obj.X = (float)(-position * length.X);
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break;
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}
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}
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}
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private readonly MultiplierControlPoint searchPoint = new MultiplierControlPoint();
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private MultiplierControlPoint controlPointAt(double time)
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{
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if (controlPoints.Count == 0)
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return new MultiplierControlPoint(double.NegativeInfinity);
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if (time < controlPoints[0].StartTime)
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return controlPoints[0];
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searchPoint.StartTime = time;
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int index = controlPoints.BinarySearch(searchPoint);
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if (index < 0)
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index = ~index - 1;
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return controlPoints[index];
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}
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}
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}
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