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osu-lazer/osu.Game/Rulesets/Edit/HitObjectComposer.cs

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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;
using System.Collections.Generic;
using System.Linq;
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using JetBrains.Annotations;
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using osu.Framework.Allocation;
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using osu.Framework.Bindables;
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using osu.Framework.Graphics;
using osu.Framework.Graphics.Containers;
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using osu.Framework.Input;
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using osu.Framework.Logging;
using osu.Framework.Threading;
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using osu.Framework.Timing;
using osu.Game.Beatmaps;
using osu.Game.Beatmaps.ControlPoints;
using osu.Game.Rulesets.Configuration;
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using osu.Game.Rulesets.Edit.Tools;
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using osu.Game.Rulesets.Mods;
using osu.Game.Rulesets.Objects;
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using osu.Game.Rulesets.Objects.Drawables;
using osu.Game.Rulesets.UI;
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using osu.Game.Screens.Edit;
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using osu.Game.Screens.Edit.Components.RadioButtons;
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using osu.Game.Screens.Edit.Compose;
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using osu.Game.Screens.Edit.Compose.Components;
using osuTK;
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namespace osu.Game.Rulesets.Edit
{
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[Cached(Type = typeof(IPlacementHandler))]
public abstract class HitObjectComposer<TObject> : HitObjectComposer, IPlacementHandler
where TObject : HitObject
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{
protected IRulesetConfigManager Config { get; private set; }
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protected EditorBeatmap<TObject> EditorBeatmap { get; private set; }
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protected readonly Ruleset Ruleset;
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[Resolved]
protected IFrameBasedClock EditorClock { get; private set; }
[Resolved]
private IAdjustableClock adjustableClock { get; set; }
[Resolved]
private BindableBeatDivisor beatDivisor { get; set; }
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private IWorkingBeatmap workingBeatmap;
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private Beatmap<TObject> playableBeatmap;
private IBeatmapProcessor beatmapProcessor;
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private DrawableEditRulesetWrapper<TObject> drawableRulesetWrapper;
private BlueprintContainer blueprintContainer;
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private Container distanceSnapGridContainer;
private DistanceSnapGrid distanceSnapGrid;
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private readonly List<Container> layerContainers = new List<Container>();
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private InputManager inputManager;
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protected HitObjectComposer(Ruleset ruleset)
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{
Ruleset = ruleset;
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RelativeSizeAxes = Axes.Both;
}
[BackgroundDependencyLoader]
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private void load(IFrameBasedClock framedClock)
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{
try
{
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drawableRulesetWrapper = new DrawableEditRulesetWrapper<TObject>(CreateDrawableRuleset(Ruleset, workingBeatmap, Array.Empty<Mod>()))
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{
Clock = framedClock,
ProcessCustomClock = false
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};
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}
catch (Exception e)
{
Logger.Error(e, "Could not load beatmap sucessfully!");
return;
}
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var layerBelowRuleset = drawableRulesetWrapper.CreatePlayfieldAdjustmentContainer().WithChildren(new Drawable[]
{
distanceSnapGridContainer = new Container { RelativeSizeAxes = Axes.Both },
new EditorPlayfieldBorder { RelativeSizeAxes = Axes.Both }
});
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var layerAboveRuleset = drawableRulesetWrapper.CreatePlayfieldAdjustmentContainer().WithChild(blueprintContainer = new BlueprintContainer());
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layerContainers.Add(layerBelowRuleset);
layerContainers.Add(layerAboveRuleset);
RadioButtonCollection toolboxCollection;
InternalChild = new GridContainer
{
RelativeSizeAxes = Axes.Both,
Content = new[]
{
new Drawable[]
{
new FillFlowContainer
{
Name = "Sidebar",
RelativeSizeAxes = Axes.Both,
Padding = new MarginPadding { Right = 10 },
Children = new Drawable[]
{
new ToolboxGroup { Child = toolboxCollection = new RadioButtonCollection { RelativeSizeAxes = Axes.X } }
}
},
new Container
{
Name = "Content",
RelativeSizeAxes = Axes.Both,
Children = new Drawable[]
{
layerBelowRuleset,
drawableRulesetWrapper,
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layerAboveRuleset
}
}
},
},
ColumnDimensions = new[]
{
new Dimension(GridSizeMode.Absolute, 200),
}
};
toolboxCollection.Items =
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CompositionTools.Select(t => new RadioButton(t.Name, () => selectTool(t)))
.Prepend(new RadioButton("Select", () => selectTool(null)))
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.ToList();
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toolboxCollection.Items[0].Select();
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blueprintContainer.SelectionChanged += selectionChanged;
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}
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protected override IReadOnlyDependencyContainer CreateChildDependencies(IReadOnlyDependencyContainer parent)
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{
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var parentWorkingBeatmap = parent.Get<IBindable<WorkingBeatmap>>().Value;
playableBeatmap = (Beatmap<TObject>)parentWorkingBeatmap.GetPlayableBeatmap(Ruleset.RulesetInfo, Array.Empty<Mod>());
workingBeatmap = new EditorWorkingBeatmap<TObject>(playableBeatmap, parentWorkingBeatmap);
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beatmapProcessor = Ruleset.CreateBeatmapProcessor(playableBeatmap);
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EditorBeatmap = new EditorBeatmap<TObject>(playableBeatmap);
EditorBeatmap.HitObjectAdded += addHitObject;
EditorBeatmap.HitObjectRemoved += removeHitObject;
EditorBeatmap.StartTimeChanged += UpdateHitObject;
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var dependencies = new DependencyContainer(parent);
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dependencies.CacheAs<IEditorBeatmap>(EditorBeatmap);
dependencies.CacheAs<IEditorBeatmap<TObject>>(EditorBeatmap);
Config = dependencies.Get<RulesetConfigCache>().GetConfigFor(Ruleset);
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return base.CreateChildDependencies(dependencies);
}
protected override void LoadComplete()
{
base.LoadComplete();
inputManager = GetContainingInputManager();
}
private double lastGridUpdateTime;
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protected override void Update()
{
base.Update();
if (EditorClock.CurrentTime != lastGridUpdateTime && blueprintContainer.CurrentTool != null)
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showGridFor(Enumerable.Empty<HitObject>());
}
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protected override void UpdateAfterChildren()
{
base.UpdateAfterChildren();
layerContainers.ForEach(l =>
{
l.Anchor = drawableRulesetWrapper.Playfield.Anchor;
l.Origin = drawableRulesetWrapper.Playfield.Origin;
l.Position = drawableRulesetWrapper.Playfield.Position;
l.Size = drawableRulesetWrapper.Playfield.Size;
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});
}
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private void selectionChanged(IEnumerable<HitObject> selectedHitObjects)
{
var hitObjects = selectedHitObjects.ToArray();
if (!hitObjects.Any())
distanceSnapGridContainer.Hide();
else
showGridFor(hitObjects);
}
private void selectTool(HitObjectCompositionTool tool)
{
blueprintContainer.CurrentTool = tool;
if (tool == null)
distanceSnapGridContainer.Hide();
else
showGridFor(Enumerable.Empty<HitObject>());
}
private void showGridFor(IEnumerable<HitObject> selectedHitObjects)
{
distanceSnapGridContainer.Clear();
distanceSnapGrid = CreateDistanceSnapGrid(selectedHitObjects);
if (distanceSnapGrid != null)
{
distanceSnapGridContainer.Child = distanceSnapGrid;
distanceSnapGridContainer.Show();
}
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lastGridUpdateTime = EditorClock.CurrentTime;
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}
private ScheduledDelegate scheduledUpdate;
public override void UpdateHitObject(HitObject hitObject)
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{
scheduledUpdate?.Cancel();
scheduledUpdate = Schedule(() =>
{
beatmapProcessor?.PreProcess();
hitObject?.ApplyDefaults(playableBeatmap.ControlPointInfo, playableBeatmap.BeatmapInfo.BaseDifficulty);
beatmapProcessor?.PostProcess();
});
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}
private void addHitObject(HitObject hitObject) => UpdateHitObject(hitObject);
private void removeHitObject(HitObject hitObject) => UpdateHitObject(null);
public override IEnumerable<DrawableHitObject> HitObjects => drawableRulesetWrapper.Playfield.AllHitObjects;
public override bool CursorInPlacementArea => drawableRulesetWrapper.Playfield.ReceivePositionalInputAt(inputManager.CurrentState.Mouse.Position);
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protected abstract IReadOnlyList<HitObjectCompositionTool> CompositionTools { get; }
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protected abstract DrawableRuleset<TObject> CreateDrawableRuleset(Ruleset ruleset, IWorkingBeatmap beatmap, IReadOnlyList<Mod> mods);
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public void BeginPlacement(HitObject hitObject)
{
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if (distanceSnapGrid != null)
hitObject.StartTime = GetSnappedPosition(distanceSnapGrid.ToLocalSpace(inputManager.CurrentState.Mouse.Position), hitObject.StartTime).time;
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}
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public void EndPlacement(HitObject hitObject)
{
EditorBeatmap.Add(hitObject);
adjustableClock.Seek(hitObject.StartTime);
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showGridFor(Enumerable.Empty<HitObject>());
}
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public void Delete(HitObject hitObject) => EditorBeatmap.Remove(hitObject);
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public override (Vector2 position, double time) GetSnappedPosition(Vector2 position, double time) => distanceSnapGrid?.GetSnappedPosition(position) ?? (position, time);
public override float GetBeatSnapDistanceAt(double referenceTime)
{
DifficultyControlPoint difficultyPoint = EditorBeatmap.ControlPointInfo.DifficultyPointAt(referenceTime);
return (float)(100 * EditorBeatmap.BeatmapInfo.BaseDifficulty.SliderMultiplier * difficultyPoint.SpeedMultiplier / beatDivisor.Value);
}
public override float DurationToDistance(double referenceTime, double duration)
{
double beatLength = EditorBeatmap.ControlPointInfo.TimingPointAt(referenceTime).BeatLength / beatDivisor.Value;
return (float)(duration / beatLength * GetBeatSnapDistanceAt(referenceTime));
}
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public override double DistanceToDuration(double referenceTime, float distance)
{
double beatLength = EditorBeatmap.ControlPointInfo.TimingPointAt(referenceTime).BeatLength / beatDivisor.Value;
return distance / GetBeatSnapDistanceAt(referenceTime) * beatLength;
}
public override double GetSnappedDurationFromDistance(double referenceTime, float distance)
=> beatSnap(referenceTime, DistanceToDuration(referenceTime, distance));
public override float GetSnappedDistanceFromDistance(double referenceTime, float distance)
=> DurationToDistance(referenceTime, beatSnap(referenceTime, DistanceToDuration(referenceTime, distance)));
/// <summary>
/// Snaps a duration to the closest beat of a timing point applicable at the reference time.
/// </summary>
/// <param name="referenceTime">The time of the timing point which <paramref name="duration"/> resides in.</param>
/// <param name="duration">The duration to snap.</param>
/// <returns>A value that represents <paramref name="duration"/> snapped to the closest beat of the timing point.</returns>
private double beatSnap(double referenceTime, double duration)
{
double beatLength = EditorBeatmap.ControlPointInfo.TimingPointAt(referenceTime).BeatLength / beatDivisor.Value;
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// A 1ms offset prevents rounding errors due to minute variations in duration
return (int)((duration + 1) / beatLength) * beatLength;
}
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protected override void Dispose(bool isDisposing)
{
base.Dispose(isDisposing);
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if (EditorBeatmap != null)
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{
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EditorBeatmap.HitObjectAdded -= addHitObject;
EditorBeatmap.HitObjectRemoved -= removeHitObject;
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}
}
}
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[Cached(typeof(HitObjectComposer))]
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[Cached(typeof(IDistanceSnapProvider))]
public abstract class HitObjectComposer : CompositeDrawable, IDistanceSnapProvider
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{
internal HitObjectComposer()
{
RelativeSizeAxes = Axes.Both;
}
/// <summary>
/// All the <see cref="DrawableHitObject"/>s.
/// </summary>
public abstract IEnumerable<DrawableHitObject> HitObjects { get; }
/// <summary>
/// Whether the user's cursor is currently in an area of the <see cref="HitObjectComposer"/> that is valid for placement.
/// </summary>
public abstract bool CursorInPlacementArea { get; }
/// <summary>
/// Creates a <see cref="SelectionBlueprint"/> for a specific <see cref="DrawableHitObject"/>.
/// </summary>
/// <param name="hitObject">The <see cref="DrawableHitObject"/> to create the overlay for.</param>
public virtual SelectionBlueprint CreateBlueprintFor(DrawableHitObject hitObject) => null;
/// <summary>
/// Creates a <see cref="SelectionHandler"/> which outlines <see cref="DrawableHitObject"/>s and handles movement of selections.
/// </summary>
public virtual SelectionHandler CreateSelectionHandler() => new SelectionHandler();
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/// <summary>
/// Creates the <see cref="DistanceSnapGrid"/> applicable for a <see cref="HitObject"/> selection.
/// </summary>
/// <param name="selectedHitObjects">The <see cref="HitObject"/> selection.</param>
/// <returns>The <see cref="DistanceSnapGrid"/> for <paramref name="selectedHitObjects"/>.</returns>
[CanBeNull]
protected virtual DistanceSnapGrid CreateDistanceSnapGrid([NotNull] IEnumerable<HitObject> selectedHitObjects) => null;
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/// <summary>
/// Updates a <see cref="HitObject"/>, invoking <see cref="HitObject.ApplyDefaults"/> and re-processing the beatmap.
/// </summary>
/// <param name="hitObject">The <see cref="HitObject"/> to update.</param>
public abstract void UpdateHitObject([CanBeNull] HitObject hitObject);
public abstract (Vector2 position, double time) GetSnappedPosition(Vector2 position, double time);
public abstract float GetBeatSnapDistanceAt(double referenceTime);
public abstract float DurationToDistance(double referenceTime, double duration);
public abstract double DistanceToDuration(double referenceTime, float distance);
public abstract double GetSnappedDurationFromDistance(double referenceTime, float distance);
public abstract float GetSnappedDistanceFromDistance(double referenceTime, float distance);
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}
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}