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added visual tests
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osu.Game.Rulesets.Osu.Tests/Editor/TestSceneObjectMerging.cs
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179
osu.Game.Rulesets.Osu.Tests/Editor/TestSceneObjectMerging.cs
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// 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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#nullable disable
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using System.Linq;
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using NUnit.Framework;
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using osu.Framework.Utils;
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using osu.Game.Rulesets.Objects;
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using osu.Game.Rulesets.Objects.Types;
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using osu.Game.Rulesets.Osu.Objects;
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using osuTK;
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using osuTK.Input;
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namespace osu.Game.Rulesets.Osu.Tests.Editor
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{
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public class TestSceneObjectMerging : TestSceneOsuEditor
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{
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[Test]
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public void TestSimpleMerge()
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{
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HitCircle circle1 = null;
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HitCircle circle2 = null;
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AddStep("select first two circles", () =>
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{
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circle1 = (HitCircle)EditorBeatmap.HitObjects.First(h => h is HitCircle);
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circle2 = (HitCircle)EditorBeatmap.HitObjects.First(h => h is HitCircle && h != circle1);
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EditorClock.Seek(circle1.StartTime);
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EditorBeatmap.SelectedHitObjects.Add(circle1);
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EditorBeatmap.SelectedHitObjects.Add(circle2);
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});
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mergeSelection();
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AddAssert("slider created", () => sliderCreatedFor(
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(pos: circle1.Position, pathType: PathType.Linear),
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(pos: circle2.Position, pathType: null)));
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AddStep("undo", () => Editor.Undo());
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AddAssert("merged objects restored", () => objectsRestored(circle1, circle2));
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}
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[Test]
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public void TestMergeCircleSlider()
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{
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HitCircle circle1 = null;
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Slider slider = null;
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HitCircle circle2 = null;
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AddStep("select a circle, slider, circle", () =>
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{
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circle1 = (HitCircle)EditorBeatmap.HitObjects.First(h => h is HitCircle);
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slider = (Slider)EditorBeatmap.HitObjects.First(h => h is Slider && h.StartTime > circle1.StartTime);
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circle2 = (HitCircle)EditorBeatmap.HitObjects.First(h => h is HitCircle && h.StartTime > slider.StartTime);
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EditorClock.Seek(circle1.StartTime);
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EditorBeatmap.SelectedHitObjects.Add(circle1);
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EditorBeatmap.SelectedHitObjects.Add(slider);
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EditorBeatmap.SelectedHitObjects.Add(circle2);
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});
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mergeSelection();
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AddAssert("slider created", () =>
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{
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var controlPoints = slider.Path.ControlPoints;
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(Vector2, PathType?)[] args = new (Vector2, PathType?)[controlPoints.Count + 2];
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args[0] = (circle1.Position, PathType.Linear);
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for (int i = 0; i < controlPoints.Count; i++)
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{
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args[i + 1] = (controlPoints[i].Position + slider.Position, i == controlPoints.Count - 1 ? PathType.Linear : controlPoints[i].Type);
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}
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args[^1] = (circle2.Position, null);
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return sliderCreatedFor(args);
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});
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AddStep("undo", () => Editor.Undo());
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AddAssert("merged objects restored", () => objectsRestored(circle1, slider, circle2));
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}
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[Test]
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public void TestMergeSliderSlider()
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{
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Slider slider1 = null;
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SliderPath slider1Path = null;
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Slider slider2 = null;
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AddStep("select two sliders", () =>
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{
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slider1 = (Slider)EditorBeatmap.HitObjects.First(h => h is Slider);
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slider1Path = new SliderPath(slider1.Path.ControlPoints.Select(p => new PathControlPoint(p.Position, p.Type)).ToArray(), slider1.Path.ExpectedDistance.Value);
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slider2 = (Slider)EditorBeatmap.HitObjects.First(h => h is Slider && h.StartTime > slider1.StartTime);
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EditorClock.Seek(slider1.StartTime);
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EditorBeatmap.SelectedHitObjects.Add(slider1);
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EditorBeatmap.SelectedHitObjects.Add(slider2);
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});
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mergeSelection();
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AddAssert("slider created", () =>
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{
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var controlPoints1 = slider1Path.ControlPoints;
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var controlPoints2 = slider2.Path.ControlPoints;
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(Vector2, PathType?)[] args = new (Vector2, PathType?)[controlPoints1.Count + controlPoints2.Count - 1];
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for (int i = 0; i < controlPoints1.Count - 1; i++)
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{
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args[i] = (controlPoints1[i].Position + slider1.Position, controlPoints1[i].Type);
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}
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for (int i = 0; i < controlPoints2.Count; i++)
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{
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args[i + controlPoints1.Count - 1] = (controlPoints2[i].Position + controlPoints1[^1].Position + slider1.Position, controlPoints2[i].Type);
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}
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return sliderCreatedFor(args);
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});
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AddAssert("merged slider matches first slider", () =>
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{
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var mergedSlider = (Slider)EditorBeatmap.SelectedHitObjects.First();
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return mergedSlider.HeadCircle.Samples.SequenceEqual(slider1.HeadCircle.Samples)
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&& mergedSlider.TailCircle.Samples.SequenceEqual(slider1.TailCircle.Samples)
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&& mergedSlider.Samples.SequenceEqual(slider1.Samples)
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&& mergedSlider.SampleControlPoint.IsRedundant(slider1.SampleControlPoint);
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});
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AddAssert("slider end is at same completion for last slider", () =>
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{
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var mergedSlider = (Slider)EditorBeatmap.SelectedHitObjects.First();
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return Precision.AlmostEquals(mergedSlider.Path.Distance, slider1Path.CalculatedDistance + slider2.Path.Distance);
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});
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}
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private void mergeSelection()
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{
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AddStep("merge selection", () =>
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{
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InputManager.PressKey(Key.LControl);
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InputManager.PressKey(Key.LShift);
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InputManager.Key(Key.M);
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InputManager.ReleaseKey(Key.LShift);
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InputManager.ReleaseKey(Key.LControl);
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});
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}
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private bool sliderCreatedFor(params (Vector2 pos, PathType? pathType)[] expectedControlPoints)
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{
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if (EditorBeatmap.SelectedHitObjects.Count != 1)
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return false;
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var mergedSlider = (Slider)EditorBeatmap.SelectedHitObjects.First();
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int i = 0;
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foreach ((Vector2 pos, PathType? pathType) in expectedControlPoints)
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{
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var controlPoint = mergedSlider.Path.ControlPoints[i++];
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if (!Precision.AlmostEquals(controlPoint.Position + mergedSlider.Position, pos) || controlPoint.Type != pathType)
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return false;
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}
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return true;
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}
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private bool objectsRestored(params HitObject[] objects)
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{
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foreach (var hitObject in objects)
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{
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if (EditorBeatmap.HitObjects.Contains(hitObject))
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return false;
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}
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return true;
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}
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}
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}
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