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// Copyright (c) ppy Pty Ltd <contact@ppy.sh>. Licensed under the MIT Licence.
// See the LICENCE file in the repository root for full licence text.
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using System ;
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using System.Collections.Generic ;
using System.Linq ;
using osu.Framework.Allocation ;
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using osu.Framework.Bindables ;
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using osu.Framework.Graphics ;
using osu.Framework.Input.Bindings ;
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using osu.Framework.Input.Events ;
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using osu.Framework.Lists ;
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using osu.Framework.Threading ;
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using osu.Game.Beatmaps ;
using osu.Game.Beatmaps.ControlPoints ;
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using osu.Game.Configuration ;
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using osu.Game.Input.Bindings ;
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using osu.Game.Rulesets.Mods ;
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using osu.Game.Rulesets.Objects ;
using osu.Game.Rulesets.Timing ;
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using osu.Game.Rulesets.UI.Scrolling.Algorithms ;
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namespace osu.Game.Rulesets.UI.Scrolling
{
/// <summary>
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/// A type of <see cref="DrawableRuleset{TObject}"/> that supports a <see cref="ScrollingPlayfield"/>.
/// <see cref="HitObject"/>s inside this <see cref="DrawableRuleset{TObject}"/> will scroll within the playfield.
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/// </summary>
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public abstract class DrawableScrollingRuleset < TObject > : DrawableRuleset < TObject > , IKeyBindingHandler < GlobalAction >
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where TObject : HitObject
{
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/// <summary>
/// The default span of time visible by the length of the scrolling axes.
/// This is clamped between <see cref="time_span_min"/> and <see cref="time_span_max"/>.
/// </summary>
private const double time_span_default = 1500 ;
/// <summary>
/// The minimum span of time that may be visible by the length of the scrolling axes.
/// </summary>
private const double time_span_min = 50 ;
/// <summary>
/// The maximum span of time that may be visible by the length of the scrolling axes.
/// </summary>
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private const double time_span_max = 20000 ;
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/// <summary>
/// The step increase/decrease of the span of time visible by the length of the scrolling axes.
/// </summary>
private const double time_span_step = 200 ;
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protected readonly Bindable < ScrollingDirection > Direction = new Bindable < ScrollingDirection > ( ) ;
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/// <summary>
/// The span of time that is visible by the length of the scrolling axes.
/// For example, only hit objects with start time less than or equal to 1000 will be visible with <see cref="TimeRange"/> = 1000.
/// </summary>
protected readonly BindableDouble TimeRange = new BindableDouble ( time_span_default )
{
Default = time_span_default ,
MinValue = time_span_min ,
MaxValue = time_span_max
} ;
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protected virtual ScrollVisualisationMethod VisualisationMethod = > ScrollVisualisationMethod . Sequential ;
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/// <summary>
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/// Whether the player can change <see cref="TimeRange"/>.
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/// </summary>
protected virtual bool UserScrollSpeedAdjustment = > true ;
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/// <summary>
/// Whether <see cref="TimingControlPoint"/> beat lengths should scale relative to the most common beat length in the <see cref="Beatmap"/>.
/// </summary>
protected virtual bool RelativeScaleBeatLengths = > false ;
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/// <summary>
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/// The <see cref="MultiplierControlPoint"/>s that adjust the scrolling rate of <see cref="HitObject"/>s inside this <see cref="DrawableRuleset{TObject}"/>.
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/// </summary>
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protected readonly SortedList < MultiplierControlPoint > ControlPoints = new SortedList < MultiplierControlPoint > ( Comparer < MultiplierControlPoint > . Default ) ;
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protected IScrollingInfo ScrollingInfo = > scrollingInfo ;
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[Cached(Type = typeof(IScrollingInfo))]
private readonly LocalScrollingInfo scrollingInfo ;
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protected DrawableScrollingRuleset ( Ruleset ruleset , IBeatmap beatmap , IReadOnlyList < Mod > mods = null )
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: base ( ruleset , beatmap , mods )
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{
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scrollingInfo = new LocalScrollingInfo ( ) ;
scrollingInfo . Direction . BindTo ( Direction ) ;
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scrollingInfo . TimeRange . BindTo ( TimeRange ) ;
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}
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[BackgroundDependencyLoader]
private void load ( )
{
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switch ( VisualisationMethod )
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{
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case ScrollVisualisationMethod . Sequential :
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scrollingInfo . Algorithm = new SequentialScrollAlgorithm ( ControlPoints ) ;
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break ;
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case ScrollVisualisationMethod . Overlapping :
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scrollingInfo . Algorithm = new OverlappingScrollAlgorithm ( ControlPoints ) ;
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break ;
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case ScrollVisualisationMethod . Constant :
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scrollingInfo . Algorithm = new ConstantScrollAlgorithm ( ) ;
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break ;
}
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double lastObjectTime = Objects . LastOrDefault ( ) ? . GetEndTime ( ) ? ? double . MaxValue ;
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double baseBeatLength = TimingControlPoint . DEFAULT_BEAT_LENGTH ;
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if ( RelativeScaleBeatLengths )
{
IReadOnlyList < TimingControlPoint > timingPoints = Beatmap . ControlPointInfo . TimingPoints ;
double maxDuration = 0 ;
for ( int i = 0 ; i < timingPoints . Count ; i + + )
{
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if ( timingPoints [ i ] . Time > lastObjectTime )
break ;
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double endTime = i < timingPoints . Count - 1 ? timingPoints [ i + 1 ] . Time : lastObjectTime ;
double duration = endTime - timingPoints [ i ] . Time ;
if ( duration > maxDuration )
{
maxDuration = duration ;
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// The slider multiplier is post-multiplied to determine the final velocity, but for relative scale beat lengths
// the multiplier should not affect the effective timing point (the longest in the beatmap), so it is factored out here
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baseBeatLength = timingPoints [ i ] . BeatLength / Beatmap . Difficulty . SliderMultiplier ;
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}
}
}
// Merge sequences of timing and difficulty control points to create the aggregate "multiplier" control point
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var lastTimingPoint = new TimingControlPoint ( ) ;
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var lastEffectPoint = new EffectControlPoint ( ) ;
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var allPoints = new SortedList < ControlPoint > ( Comparer < ControlPoint > . Default ) ;
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allPoints . AddRange ( Beatmap . ControlPointInfo . TimingPoints ) ;
allPoints . AddRange ( Beatmap . ControlPointInfo . EffectPoints ) ;
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// Generate the timing points, making non-timing changes use the previous timing change and vice-versa
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var timingChanges = allPoints . Select ( c = >
{
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switch ( c )
{
case TimingControlPoint timingPoint :
lastTimingPoint = timingPoint ;
break ;
case EffectControlPoint difficultyPoint :
lastEffectPoint = difficultyPoint ;
break ;
}
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return new MultiplierControlPoint ( c . Time )
{
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Velocity = Beatmap . Difficulty . SliderMultiplier ,
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BaseBeatLength = baseBeatLength ,
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TimingPoint = lastTimingPoint ,
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EffectPoint = lastEffectPoint
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} ;
} ) ;
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// Trim unwanted sequences of timing changes
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timingChanges = timingChanges
// Collapse sections after the last hit object
. Where ( s = > s . StartTime < = lastObjectTime )
// Collapse sections with the same start time
. GroupBy ( s = > s . StartTime ) . Select ( g = > g . Last ( ) ) . OrderBy ( s = > s . StartTime ) ;
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ControlPoints . AddRange ( timingChanges ) ;
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if ( ControlPoints . Count = = 0 )
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ControlPoints . Add ( new MultiplierControlPoint { Velocity = Beatmap . Difficulty . SliderMultiplier } ) ;
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}
protected override void LoadComplete ( )
{
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base . LoadComplete ( ) ;
if ( ! ( Playfield is ScrollingPlayfield ) )
throw new ArgumentException ( $"{nameof(Playfield)} must be a {nameof(ScrollingPlayfield)} when using {nameof(DrawableScrollingRuleset<TObject>)}." ) ;
}
/// <summary>
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/// Adjusts the scroll speed of <see cref="HitObject"/>s.
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/// </summary>
/// <param name="amount">The amount to adjust by. Greater than 0 if the scroll speed should be increased, less than 0 if it should be decreased.</param>
protected virtual void AdjustScrollSpeed ( int amount ) = > this . TransformBindableTo ( TimeRange , TimeRange . Value - amount * time_span_step , 200 , Easing . OutQuint ) ;
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public bool OnPressed ( KeyBindingPressEvent < GlobalAction > e )
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{
if ( ! UserScrollSpeedAdjustment )
return false ;
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switch ( e . Action )
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{
case GlobalAction . IncreaseScrollSpeed :
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AdjustScrollSpeed ( 1 ) ;
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return true ;
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case GlobalAction . DecreaseScrollSpeed :
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AdjustScrollSpeed ( - 1 ) ;
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return true ;
}
return false ;
}
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private ScheduledDelegate scheduledScrollSpeedAdjustment ;
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public void OnReleased ( KeyBindingReleaseEvent < GlobalAction > e )
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{
scheduledScrollSpeedAdjustment ? . Cancel ( ) ;
scheduledScrollSpeedAdjustment = null ;
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}
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private class LocalScrollingInfo : IScrollingInfo
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{
public IBindable < ScrollingDirection > Direction { get ; } = new Bindable < ScrollingDirection > ( ) ;
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public IBindable < double > TimeRange { get ; } = new BindableDouble ( ) ;
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public IScrollAlgorithm Algorithm { get ; set ; }
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}
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}
}