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233 lines
8.2 KiB
C#
233 lines
8.2 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.Collections.Generic;
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using System.Linq;
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using osu.Framework.Allocation;
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using osu.Framework.Input.Bindings;
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using osu.Framework.Input.Events;
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using osu.Framework.Screens;
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using osu.Game.Beatmaps;
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using osu.Game.Input.Bindings;
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using osu.Game.Overlays;
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using osu.Game.Rulesets.Judgements;
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using osu.Game.Rulesets.Mods;
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using osu.Game.Rulesets.Objects;
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using osu.Game.Screens.Play;
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using osu.Game.Users;
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namespace osu.Game.Screens.Edit.GameplayTest
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{
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public partial class EditorPlayer : Player, IKeyBindingHandler<GlobalAction>
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{
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private readonly Editor editor;
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private readonly EditorState editorState;
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protected override UserActivity InitialActivity => new UserActivity.TestingBeatmap(Beatmap.Value.BeatmapInfo);
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[Resolved]
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private MusicController musicController { get; set; } = null!;
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public EditorPlayer(Editor editor)
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: base(new PlayerConfiguration { ShowResults = false })
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{
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this.editor = editor;
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editorState = editor.GetState();
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}
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protected override GameplayClockContainer CreateGameplayClockContainer(WorkingBeatmap beatmap, double gameplayStart)
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{
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var masterGameplayClockContainer = new MasterGameplayClockContainer(beatmap, gameplayStart);
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// Only reset the time to the current point if the editor is later than the normal start time (and the first object).
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// This allows more sane test playing from the start of the beatmap (ie. correctly adding lead-in time).
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if (editorState.Time > gameplayStart && editorState.Time > DrawableRuleset.Objects.FirstOrDefault()?.StartTime)
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masterGameplayClockContainer.Reset(editorState.Time);
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return masterGameplayClockContainer;
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}
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protected override void LoadComplete()
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{
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base.LoadComplete();
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markPreviousObjectsHit();
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markVisibleDrawableObjectsHit();
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ScoreProcessor.HasCompleted.BindValueChanged(completed =>
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{
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if (completed.NewValue)
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{
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Scheduler.AddDelayed(() =>
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{
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if (this.IsCurrentScreen())
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this.Exit();
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}, RESULTS_DISPLAY_DELAY);
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}
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});
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}
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private void markPreviousObjectsHit()
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{
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foreach (var hitObject in enumerateHitObjects(DrawableRuleset.Objects, editorState.Time))
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{
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var judgement = hitObject.Judgement;
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var result = new JudgementResult(hitObject, judgement)
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{
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Type = judgement.MaxResult,
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GameplayRate = GameplayClockContainer.GetTrueGameplayRate(),
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};
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HealthProcessor.ApplyResult(result);
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ScoreProcessor.ApplyResult(result);
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}
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static IEnumerable<HitObject> enumerateHitObjects(IEnumerable<HitObject> hitObjects, double cutoffTime)
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{
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foreach (var hitObject in hitObjects)
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{
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foreach (var nested in enumerateHitObjects(hitObject.NestedHitObjects, cutoffTime))
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{
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if (nested.GetEndTime() < cutoffTime)
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yield return nested;
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}
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if (hitObject.GetEndTime() < cutoffTime)
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yield return hitObject;
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}
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}
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}
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private void markVisibleDrawableObjectsHit()
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{
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if (!DrawableRuleset.Playfield.IsLoaded)
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{
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Schedule(markVisibleDrawableObjectsHit);
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return;
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}
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foreach (var drawableObjectEntry in enumerateDrawableEntries(
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DrawableRuleset.Playfield.AllHitObjects
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.Select(ho => ho.Entry)
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.Where(e => e != null)
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.Cast<HitObjectLifetimeEntry>(), editorState.Time))
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{
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drawableObjectEntry.Result = new JudgementResult(drawableObjectEntry.HitObject, drawableObjectEntry.HitObject.Judgement)
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{
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Type = drawableObjectEntry.HitObject.Judgement.MaxResult
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};
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}
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static IEnumerable<HitObjectLifetimeEntry> enumerateDrawableEntries(IEnumerable<HitObjectLifetimeEntry> entries, double cutoffTime)
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{
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foreach (var entry in entries)
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{
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foreach (var nested in enumerateDrawableEntries(entry.NestedEntries, cutoffTime))
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{
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if (nested.HitObject.GetEndTime() < cutoffTime)
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yield return nested;
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}
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if (entry.HitObject.GetEndTime() < cutoffTime)
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yield return entry;
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}
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}
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}
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protected override void PrepareReplay()
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{
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// don't record replays.
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}
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protected override bool CheckModsAllowFailure() => false; // never fail.
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public bool OnPressed(KeyBindingPressEvent<GlobalAction> e)
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{
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if (e.Repeat)
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return false;
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switch (e.Action)
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{
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case GlobalAction.EditorTestPlayToggleAutoplay:
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toggleAutoplay();
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return true;
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case GlobalAction.EditorTestPlayToggleQuickPause:
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toggleQuickPause();
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return true;
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case GlobalAction.EditorTestPlayQuickExitToInitialTime:
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quickExit(false);
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return true;
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case GlobalAction.EditorTestPlayQuickExitToCurrentTime:
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quickExit(true);
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return true;
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default:
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return false;
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}
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}
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public void OnReleased(KeyBindingReleaseEvent<GlobalAction> e)
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{
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}
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private void toggleAutoplay()
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{
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if (DrawableRuleset.ReplayScore == null)
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{
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var autoplay = Ruleset.Value.CreateInstance().GetAutoplayMod();
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if (autoplay == null)
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return;
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var score = autoplay.CreateScoreFromReplayData(GameplayState.Beatmap, [autoplay]);
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// remove past frames to prevent replay frame handler from seeking back to start in an attempt to play back the entirety of the replay.
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score.Replay.Frames.RemoveAll(f => f.Time <= GameplayClockContainer.CurrentTime);
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DrawableRuleset.SetReplayScore(score);
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// Without this schedule, the `GlobalCursorDisplay.Update()` machinery will fade the gameplay cursor out, but we still want it to show.
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Schedule(() => DrawableRuleset.Cursor?.Show());
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}
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else
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DrawableRuleset.SetReplayScore(null);
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}
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private void toggleQuickPause()
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{
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if (GameplayClockContainer.IsPaused.Value)
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GameplayClockContainer.Start();
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else
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GameplayClockContainer.Stop();
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}
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private void quickExit(bool useCurrentTime)
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{
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if (useCurrentTime)
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editorState.Time = GameplayClockContainer.CurrentTime;
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editor.RestoreState(editorState);
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this.Exit();
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}
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public override void OnEntering(ScreenTransitionEvent e)
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{
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base.OnEntering(e);
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// finish alpha transforms on entering to avoid gameplay starting in a half-hidden state.
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// the finish calls are purposefully not propagated to children to avoid messing up their state.
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FinishTransforms();
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GameplayClockContainer.FinishTransforms(false, nameof(Alpha));
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}
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public override bool OnExiting(ScreenExitEvent e)
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{
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musicController.Stop();
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editor.RestoreState(editorState);
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return base.OnExiting(e);
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}
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}
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}
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