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286 lines
9.1 KiB
C#
286 lines
9.1 KiB
C#
// Copyright (c) ppy Pty Ltd <contact@ppy.sh>. Licensed under the MIT Licence.
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// See the LICENCE file in the repository root for full licence text.
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using System;
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using System.Linq;
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using osu.Framework.Allocation;
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using osu.Framework.Audio;
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using osu.Framework.Bindables;
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using osu.Framework.Graphics;
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using osu.Framework.Graphics.Containers;
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using osu.Game.Graphics;
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using osu.Game.Rulesets.Objects;
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using osu.Game.Rulesets.Objects.Drawables;
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using osu.Game.Rulesets.Osu.Objects.Drawables.Pieces;
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using osu.Game.Rulesets.Osu.Skinning;
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using osu.Game.Rulesets.Scoring;
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using osu.Game.Screens.Ranking;
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using osu.Game.Skinning;
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using osuTK;
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namespace osu.Game.Rulesets.Osu.Objects.Drawables
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{
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public class DrawableSpinner : DrawableOsuHitObject
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{
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protected readonly Spinner Spinner;
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private readonly Container<DrawableSpinnerTick> ticks;
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public readonly SpinnerRotationTracker RotationTracker;
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public readonly SpinnerSpmCounter SpmCounter;
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private readonly SpinnerBonusDisplay bonusDisplay;
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private readonly IBindable<Vector2> positionBindable = new Bindable<Vector2>();
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private bool spinnerFrequencyModulate;
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public DrawableSpinner(Spinner s)
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: base(s)
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{
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Origin = Anchor.Centre;
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Position = s.Position;
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RelativeSizeAxes = Axes.Both;
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Spinner = s;
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InternalChildren = new Drawable[]
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{
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ticks = new Container<DrawableSpinnerTick>(),
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new AspectContainer
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{
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Anchor = Anchor.Centre,
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Origin = Anchor.Centre,
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RelativeSizeAxes = Axes.Y,
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Children = new Drawable[]
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{
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new SkinnableDrawable(new OsuSkinComponent(OsuSkinComponents.SpinnerBody), _ => new DefaultSpinnerDisc()),
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RotationTracker = new SpinnerRotationTracker(Spinner)
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}
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},
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SpmCounter = new SpinnerSpmCounter
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{
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Anchor = Anchor.Centre,
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Origin = Anchor.Centre,
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Y = 120,
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Alpha = 0
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},
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bonusDisplay = new SpinnerBonusDisplay
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{
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Anchor = Anchor.Centre,
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Origin = Anchor.Centre,
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Y = -120,
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}
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};
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}
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private Bindable<bool> isSpinning;
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protected override void LoadComplete()
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{
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base.LoadComplete();
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isSpinning = RotationTracker.IsSpinning.GetBoundCopy();
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isSpinning.BindValueChanged(updateSpinningSample);
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}
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private PausableSkinnableSound spinningSample;
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private const float spinning_sample_initial_frequency = 1.0f;
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private const float spinning_sample_modulated_base_frequency = 0.5f;
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protected override void LoadSamples()
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{
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base.LoadSamples();
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spinningSample?.Expire();
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spinningSample = null;
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var firstSample = HitObject.Samples.FirstOrDefault();
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if (firstSample != null)
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{
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var clone = HitObject.SampleControlPoint.ApplyTo(firstSample);
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clone.Name = "spinnerspin";
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AddInternal(spinningSample = new PausableSkinnableSound(clone)
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{
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Volume = { Value = 0 },
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Looping = true,
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Frequency = { Value = spinning_sample_initial_frequency }
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});
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}
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}
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private void updateSpinningSample(ValueChangedEvent<bool> tracking)
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{
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if (tracking.NewValue)
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{
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spinningSample?.Play();
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spinningSample?.VolumeTo(1, 200);
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}
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else
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{
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spinningSample?.VolumeTo(0, 200).Finally(_ => spinningSample.Stop());
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}
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}
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public override void StopAllSamples()
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{
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base.StopAllSamples();
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spinningSample?.Stop();
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}
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protected override void AddNestedHitObject(DrawableHitObject hitObject)
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{
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base.AddNestedHitObject(hitObject);
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switch (hitObject)
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{
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case DrawableSpinnerTick tick:
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ticks.Add(tick);
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break;
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}
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}
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protected override void UpdateStateTransforms(ArmedState state)
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{
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base.UpdateStateTransforms(state);
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using (BeginDelayedSequence(Spinner.Duration, true))
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this.FadeOut(160);
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// skin change does a rewind of transforms, which will stop the spinning sound from playing if it's currently in playback.
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isSpinning?.TriggerChange();
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}
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protected override void ClearNestedHitObjects()
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{
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base.ClearNestedHitObjects();
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ticks.Clear();
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}
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protected override DrawableHitObject CreateNestedHitObject(HitObject hitObject)
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{
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switch (hitObject)
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{
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case SpinnerBonusTick bonusTick:
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return new DrawableSpinnerBonusTick(bonusTick);
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case SpinnerTick tick:
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return new DrawableSpinnerTick(tick);
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}
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return base.CreateNestedHitObject(hitObject);
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}
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[BackgroundDependencyLoader]
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private void load(OsuColour colours)
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{
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positionBindable.BindValueChanged(pos => Position = pos.NewValue);
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positionBindable.BindTo(HitObject.PositionBindable);
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}
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protected override void ApplySkin(ISkinSource skin, bool allowFallback)
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{
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base.ApplySkin(skin, allowFallback);
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spinnerFrequencyModulate = skin.GetConfig<OsuSkinConfiguration, bool>(OsuSkinConfiguration.SpinnerFrequencyModulate)?.Value ?? true;
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}
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/// <summary>
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/// The completion progress of this spinner from 0..1 (clamped).
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/// </summary>
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public float Progress
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{
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get
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{
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if (Spinner.SpinsRequired == 0)
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// some spinners are so short they can't require an integer spin count.
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// these become implicitly hit.
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return 1;
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return Math.Clamp(RotationTracker.RateAdjustedRotation / 360 / Spinner.SpinsRequired, 0, 1);
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}
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}
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protected override void CheckForResult(bool userTriggered, double timeOffset)
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{
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if (Time.Current < HitObject.StartTime) return;
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RotationTracker.Complete.Value = Progress >= 1;
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if (userTriggered || Time.Current < Spinner.EndTime)
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return;
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// Trigger a miss result for remaining ticks to avoid infinite gameplay.
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foreach (var tick in ticks.Where(t => !t.Result.HasResult))
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tick.TriggerResult(false);
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ApplyResult(r =>
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{
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if (Progress >= 1)
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r.Type = HitResult.Great;
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else if (Progress > .9)
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r.Type = HitResult.Ok;
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else if (Progress > .75)
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r.Type = HitResult.Meh;
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else if (Time.Current >= Spinner.EndTime)
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r.Type = r.Judgement.MinResult;
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});
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}
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protected override void Update()
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{
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base.Update();
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if (HandleUserInput)
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RotationTracker.Tracking = !Result.HasResult && (OsuActionInputManager?.PressedActions.Any(x => x == OsuAction.LeftButton || x == OsuAction.RightButton) ?? false);
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if (spinningSample != null && spinnerFrequencyModulate)
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spinningSample.Frequency.Value = spinning_sample_modulated_base_frequency + Progress;
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}
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protected override void UpdateAfterChildren()
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{
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base.UpdateAfterChildren();
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if (!SpmCounter.IsPresent && RotationTracker.Tracking)
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SpmCounter.FadeIn(HitObject.TimeFadeIn);
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SpmCounter.SetRotation(RotationTracker.RateAdjustedRotation);
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updateBonusScore();
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}
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private int wholeSpins;
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private void updateBonusScore()
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{
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if (ticks.Count == 0)
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return;
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int spins = (int)(RotationTracker.RateAdjustedRotation / 360);
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if (spins < wholeSpins)
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{
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// rewinding, silently handle
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wholeSpins = spins;
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return;
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}
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while (wholeSpins != spins)
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{
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var tick = ticks.FirstOrDefault(t => !t.Result.HasResult);
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// tick may be null if we've hit the spin limit.
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if (tick != null)
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{
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tick.TriggerResult(true);
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if (tick is DrawableSpinnerBonusTick)
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bonusDisplay.SetBonusCount(spins - Spinner.SpinsRequired);
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}
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wholeSpins++;
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}
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}
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}
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}
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