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osu-lazer/osu.Game.Rulesets.Osu/Edit/OsuHitObjectComposer.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;
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using System.Collections.Generic;
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using System.Linq;
using osu.Framework.Allocation;
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using osu.Framework.Bindables;
using osu.Framework.Caching;
using osu.Framework.Graphics;
using osu.Framework.Graphics.Containers;
using osu.Framework.Graphics.Sprites;
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using osu.Game.Beatmaps;
using osu.Game.Graphics.UserInterface;
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using osu.Game.Rulesets.Edit;
using osu.Game.Rulesets.Edit.Tools;
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using osu.Game.Rulesets.Mods;
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using osu.Game.Rulesets.Objects;
using osu.Game.Rulesets.Osu.Objects;
using osu.Game.Rulesets.UI;
using osu.Game.Screens.Edit.Components.TernaryButtons;
using osu.Game.Screens.Edit.Compose.Components;
using osuTK;
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namespace osu.Game.Rulesets.Osu.Edit
{
public class OsuHitObjectComposer : HitObjectComposer<OsuHitObject>
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{
public OsuHitObjectComposer(Ruleset ruleset)
: base(ruleset)
{
}
protected override DrawableRuleset<OsuHitObject> CreateDrawableRuleset(Ruleset ruleset, IBeatmap beatmap, IReadOnlyList<Mod> mods = null)
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=> new DrawableOsuEditRuleset(ruleset, beatmap, mods);
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protected override IReadOnlyList<HitObjectCompositionTool> CompositionTools => new HitObjectCompositionTool[]
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{
new HitCircleCompositionTool(),
new SliderCompositionTool(),
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new SpinnerCompositionTool()
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};
private readonly Bindable<TernaryState> distanceSnapToggle = new Bindable<TernaryState>();
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protected override IEnumerable<TernaryButton> CreateTernaryButtons() => base.CreateTernaryButtons().Concat(new[]
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{
new TernaryButton(distanceSnapToggle, "Distance Snap", () => new SpriteIcon { Icon = FontAwesome.Solid.Ruler })
});
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private BindableList<HitObject> selectedHitObjects;
private Bindable<HitObject> placementObject;
[BackgroundDependencyLoader]
private void load()
{
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LayerBelowRuleset.AddRange(new Drawable[]
{
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new PlayfieldBorder
{
RelativeSizeAxes = Axes.Both,
PlayfieldBorderStyle = { Value = PlayfieldBorderStyle.Corners }
},
distanceSnapGridContainer = new Container
{
RelativeSizeAxes = Axes.Both
}
});
selectedHitObjects = EditorBeatmap.SelectedHitObjects.GetBoundCopy();
selectedHitObjects.CollectionChanged += (_, __) => updateDistanceSnapGrid();
placementObject = EditorBeatmap.PlacementObject.GetBoundCopy();
placementObject.ValueChanged += _ => updateDistanceSnapGrid();
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distanceSnapToggle.ValueChanged += _ => updateDistanceSnapGrid();
// we may be entering the screen with a selection already active
updateDistanceSnapGrid();
}
protected override ComposeBlueprintContainer CreateBlueprintContainer()
=> new OsuBlueprintContainer(this);
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private DistanceSnapGrid distanceSnapGrid;
private Container distanceSnapGridContainer;
private readonly Cached distanceSnapGridCache = new Cached();
private double? lastDistanceSnapGridTime;
protected override void Update()
{
base.Update();
if (!(BlueprintContainer.CurrentTool is SelectTool))
{
if (EditorClock.CurrentTime != lastDistanceSnapGridTime)
{
distanceSnapGridCache.Invalidate();
lastDistanceSnapGridTime = EditorClock.CurrentTime;
}
if (!distanceSnapGridCache.IsValid)
updateDistanceSnapGrid();
}
}
public override SnapResult SnapScreenSpacePositionToValidPosition(Vector2 screenSpacePosition)
{
if (snapToVisibleBlueprints(screenSpacePosition, out var snapResult))
return snapResult;
return new SnapResult(screenSpacePosition, null);
}
public override SnapResult SnapScreenSpacePositionToValidTime(Vector2 screenSpacePosition)
{
var positionSnap = SnapScreenSpacePositionToValidPosition(screenSpacePosition);
if (positionSnap.ScreenSpacePosition != screenSpacePosition)
return positionSnap;
// will be null if distance snap is disabled or not feasible for the current time value.
if (distanceSnapGrid == null)
return base.SnapScreenSpacePositionToValidTime(screenSpacePosition);
(Vector2 pos, double time) = distanceSnapGrid.GetSnappedPosition(distanceSnapGrid.ToLocalSpace(screenSpacePosition));
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return new SnapResult(distanceSnapGrid.ToScreenSpace(pos), time, PlayfieldAtScreenSpacePosition(screenSpacePosition));
}
private bool snapToVisibleBlueprints(Vector2 screenSpacePosition, out SnapResult snapResult)
{
// check other on-screen objects for snapping/stacking
var blueprints = BlueprintContainer.SelectionBlueprints.AliveChildren;
var playfield = PlayfieldAtScreenSpacePosition(screenSpacePosition);
float snapRadius =
playfield.GamefieldToScreenSpace(new Vector2(OsuHitObject.OBJECT_RADIUS / 5)).X -
playfield.GamefieldToScreenSpace(Vector2.Zero).X;
foreach (var b in blueprints)
{
if (b.IsSelected)
continue;
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var hitObject = (OsuHitObject)b.HitObject;
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Vector2? snap = checkSnap(hitObject.Position);
if (snap == null && hitObject.Position != hitObject.EndPosition)
snap = checkSnap(hitObject.EndPosition);
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if (snap != null)
{
// only return distance portion, since time is not really valid
snapResult = new SnapResult(snap.Value, null, playfield);
return true;
}
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Vector2? checkSnap(Vector2 checkPos)
{
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Vector2 checkScreenPos = playfield.GamefieldToScreenSpace(checkPos);
if (Vector2.Distance(checkScreenPos, screenSpacePosition) < snapRadius)
return checkScreenPos;
return null;
}
}
snapResult = null;
return false;
}
private void updateDistanceSnapGrid()
{
distanceSnapGridContainer.Clear();
distanceSnapGridCache.Invalidate();
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distanceSnapGrid = null;
if (distanceSnapToggle.Value != TernaryState.True)
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return;
switch (BlueprintContainer.CurrentTool)
{
case SelectTool _:
if (!EditorBeatmap.SelectedHitObjects.Any())
return;
distanceSnapGrid = createDistanceSnapGrid(EditorBeatmap.SelectedHitObjects);
break;
default:
if (!CursorInPlacementArea)
return;
distanceSnapGrid = createDistanceSnapGrid(Enumerable.Empty<HitObject>());
break;
}
if (distanceSnapGrid != null)
{
distanceSnapGridContainer.Add(distanceSnapGrid);
distanceSnapGridCache.Validate();
}
}
private DistanceSnapGrid createDistanceSnapGrid(IEnumerable<HitObject> selectedHitObjects)
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{
if (BlueprintContainer.CurrentTool is SpinnerCompositionTool)
return null;
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var objects = selectedHitObjects.ToList();
if (objects.Count == 0)
// use accurate time value to give more instantaneous feedback to the user.
return createGrid(h => h.StartTime <= EditorClock.CurrentTimeAccurate);
double minTime = objects.Min(h => h.StartTime);
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return createGrid(h => h.StartTime < minTime, objects.Count + 1);
}
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/// <summary>
/// Creates a grid from the last <see cref="HitObject"/> matching a predicate to a target <see cref="HitObject"/>.
/// </summary>
/// <param name="sourceSelector">A predicate that matches <see cref="HitObject"/>s where the grid can start from.
/// Only the last <see cref="HitObject"/> matching the predicate is used.</param>
/// <param name="targetOffset">An offset from the <see cref="HitObject"/> selected via <paramref name="sourceSelector"/> at which the grid should stop.</param>
/// <returns>The <see cref="OsuDistanceSnapGrid"/> from a selected <see cref="HitObject"/> to a target <see cref="HitObject"/>.</returns>
private OsuDistanceSnapGrid createGrid(Func<HitObject, bool> sourceSelector, int targetOffset = 1)
{
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if (targetOffset < 1) throw new ArgumentOutOfRangeException(nameof(targetOffset));
int sourceIndex = -1;
for (int i = 0; i < EditorBeatmap.HitObjects.Count; i++)
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{
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if (!sourceSelector(EditorBeatmap.HitObjects[i]))
break;
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sourceIndex = i;
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}
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if (sourceIndex == -1)
return null;
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HitObject sourceObject = EditorBeatmap.HitObjects[sourceIndex];
int targetIndex = sourceIndex + targetOffset;
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HitObject targetObject = null;
// Keep advancing the target object while its start time falls before the end time of the source object
while (true)
{
if (targetIndex >= EditorBeatmap.HitObjects.Count)
break;
if (EditorBeatmap.HitObjects[targetIndex].StartTime >= sourceObject.GetEndTime())
{
targetObject = EditorBeatmap.HitObjects[targetIndex];
break;
}
targetIndex++;
}
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if (sourceObject is Spinner)
return null;
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return new OsuDistanceSnapGrid((OsuHitObject)sourceObject, (OsuHitObject)targetObject);
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}
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}
}