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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.Collections.Generic ;
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using System.Linq ;
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using osu.Framework.Allocation ;
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using osu.Framework.Graphics ;
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using osu.Framework.Graphics.Primitives ;
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using osu.Framework.Graphics.UserInterface ;
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using osu.Framework.Input.Events ;
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using osu.Framework.Utils ;
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using osu.Game.Extensions ;
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using osu.Game.Graphics.UserInterface ;
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using osu.Game.Rulesets.Edit ;
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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 osu.Game.Rulesets.Osu.UI ;
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using osu.Game.Screens.Edit.Compose.Components ;
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using osuTK ;
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using osuTK.Input ;
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namespace osu.Game.Rulesets.Osu.Edit
{
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public partial class OsuSelectionHandler : EditorSelectionHandler
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{
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[Resolved(CanBeNull = true)]
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private IDistanceSnapProvider ? snapProvider { get ; set ; }
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/// <summary>
/// During a transform, the initial origin is stored so it can be used throughout the operation.
/// </summary>
private Vector2 ? referenceOrigin ;
/// <summary>
/// During a transform, the initial path types of a single selected slider are stored so they
/// can be maintained throughout the operation.
/// </summary>
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private List < PathType ? > ? referencePathTypes ;
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protected override void OnSelectionChanged ( )
{
base . OnSelectionChanged ( ) ;
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Quad quad = selectedMovableObjects . Length > 0 ? getSurroundingQuad ( selectedMovableObjects ) : new Quad ( ) ;
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SelectionBox . CanRotate = quad . Width > 0 | | quad . Height > 0 ;
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SelectionBox . CanFlipX = SelectionBox . CanScaleX = quad . Width > 0 ;
SelectionBox . CanFlipY = SelectionBox . CanScaleY = quad . Height > 0 ;
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SelectionBox . CanReverse = EditorBeatmap . SelectedHitObjects . Count > 1 | | EditorBeatmap . SelectedHitObjects . Any ( s = > s is Slider ) ;
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}
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protected override void OnOperationEnded ( )
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{
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base . OnOperationEnded ( ) ;
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referenceOrigin = null ;
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referencePathTypes = null ;
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}
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protected override bool OnKeyDown ( KeyDownEvent e )
{
if ( e . Key = = Key . M & & e . ControlPressed & & e . ShiftPressed )
{
mergeSelection ( ) ;
return true ;
}
return false ;
}
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public override bool HandleMovement ( MoveSelectionEvent < HitObject > moveEvent )
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{
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var hitObjects = selectedMovableObjects ;
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// this will potentially move the selection out of bounds...
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foreach ( var h in hitObjects )
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h . Position + = this . ScreenSpaceDeltaToParentSpace ( moveEvent . ScreenSpaceDelta ) ;
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// but this will be corrected.
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moveSelectionInBounds ( ) ;
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return true ;
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}
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public override bool HandleReverse ( )
{
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var hitObjects = EditorBeatmap . SelectedHitObjects ;
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double endTime = hitObjects . Max ( h = > h . GetEndTime ( ) ) ;
double startTime = hitObjects . Min ( h = > h . StartTime ) ;
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bool moreThanOneObject = hitObjects . Count > 1 ;
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foreach ( var h in hitObjects )
{
if ( moreThanOneObject )
h . StartTime = endTime - ( h . GetEndTime ( ) - startTime ) ;
if ( h is Slider slider )
{
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slider . Path . Reverse ( out Vector2 offset ) ;
slider . Position + = offset ;
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}
}
return true ;
}
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public override bool HandleFlip ( Direction direction , bool flipOverOrigin )
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{
var hitObjects = selectedMovableObjects ;
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var flipQuad = flipOverOrigin ? new Quad ( 0 , 0 , OsuPlayfield . BASE_SIZE . X , OsuPlayfield . BASE_SIZE . Y ) : getSurroundingQuad ( hitObjects ) ;
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bool didFlip = false ;
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foreach ( var h in hitObjects )
{
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var flippedPosition = GetFlippedPosition ( direction , flipQuad , h . Position ) ;
if ( ! Precision . AlmostEquals ( flippedPosition , h . Position ) )
{
h . Position = flippedPosition ;
didFlip = true ;
}
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if ( h is Slider slider )
{
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didFlip = true ;
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foreach ( var cp in slider . Path . ControlPoints )
{
cp . Position = new Vector2 (
( direction = = Direction . Horizontal ? - 1 : 1 ) * cp . Position . X ,
( direction = = Direction . Vertical ? - 1 : 1 ) * cp . Position . Y
) ;
}
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}
}
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return didFlip ;
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}
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public override bool HandleScale ( Vector2 scale , Anchor reference )
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{
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adjustScaleFromAnchor ( ref scale , reference ) ;
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var hitObjects = selectedMovableObjects ;
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// for the time being, allow resizing of slider paths only if the slider is
// the only hit object selected. with a group selection, it's likely the user
// is not looking to change the duration of the slider but expand the whole pattern.
if ( hitObjects . Length = = 1 & & hitObjects . First ( ) is Slider slider )
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scaleSlider ( slider , scale ) ;
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else
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scaleHitObjects ( hitObjects , reference , scale ) ;
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moveSelectionInBounds ( ) ;
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return true ;
}
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private static void adjustScaleFromAnchor ( ref Vector2 scale , Anchor reference )
{
// cancel out scale in axes we don't care about (based on which drag handle was used).
if ( ( reference & Anchor . x1 ) > 0 ) scale . X = 0 ;
if ( ( reference & Anchor . y1 ) > 0 ) scale . Y = 0 ;
// reverse the scale direction if dragging from top or left.
if ( ( reference & Anchor . x0 ) > 0 ) scale . X = - scale . X ;
if ( ( reference & Anchor . y0 ) > 0 ) scale . Y = - scale . Y ;
}
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public override bool HandleRotation ( float delta )
{
var hitObjects = selectedMovableObjects ;
Quad quad = getSurroundingQuad ( hitObjects ) ;
referenceOrigin ? ? = quad . Centre ;
foreach ( var h in hitObjects )
{
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h . Position = RotatePointAroundOrigin ( h . Position , referenceOrigin . Value , delta ) ;
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if ( h is IHasPath path )
{
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foreach ( PathControlPoint cp in path . Path . ControlPoints )
cp . Position = RotatePointAroundOrigin ( cp . Position , Vector2 . Zero , delta ) ;
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}
}
// this isn't always the case but let's be lenient for now.
return true ;
}
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private void scaleSlider ( Slider slider , Vector2 scale )
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{
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referencePathTypes ? ? = slider . Path . ControlPoints . Select ( p = > p . Type ) . ToList ( ) ;
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Quad sliderQuad = GetSurroundingQuad ( slider . Path . ControlPoints . Select ( p = > p . Position ) ) ;
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// Limit minimum distance between control points after scaling to almost 0. Less than 0 causes the slider to flip, exactly 0 causes a crash through division by 0.
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scale = Vector2 . ComponentMax ( new Vector2 ( Precision . FLOAT_EPSILON ) , sliderQuad . Size + scale ) - sliderQuad . Size ;
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Vector2 pathRelativeDeltaScale = new Vector2 (
sliderQuad . Width = = 0 ? 0 : 1 + scale . X / sliderQuad . Width ,
sliderQuad . Height = = 0 ? 0 : 1 + scale . Y / sliderQuad . Height ) ;
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Queue < Vector2 > oldControlPoints = new Queue < Vector2 > ( ) ;
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foreach ( var point in slider . Path . ControlPoints )
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{
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oldControlPoints . Enqueue ( point . Position ) ;
point . Position * = pathRelativeDeltaScale ;
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}
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// Maintain the path types in case they were defaulted to bezier at some point during scaling
for ( int i = 0 ; i < slider . Path . ControlPoints . Count ; + + i )
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slider . Path . ControlPoints [ i ] . Type = referencePathTypes [ i ] ;
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// Snap the slider's length to the current beat divisor
// to calculate the final resulting duration / bounding box before the final checks.
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slider . SnapTo ( snapProvider ) ;
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//if sliderhead or sliderend end up outside playfield, revert scaling.
Quad scaledQuad = getSurroundingQuad ( new OsuHitObject [ ] { slider } ) ;
( bool xInBounds , bool yInBounds ) = isQuadInBounds ( scaledQuad ) ;
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if ( xInBounds & & yInBounds & & slider . Path . HasValidLength )
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return ;
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foreach ( var point in slider . Path . ControlPoints )
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point . Position = oldControlPoints . Dequeue ( ) ;
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// Snap the slider's length again to undo the potentially-invalid length applied by the previous snap.
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slider . SnapTo ( snapProvider ) ;
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}
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private void scaleHitObjects ( OsuHitObject [ ] hitObjects , Anchor reference , Vector2 scale )
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{
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scale = getClampedScale ( hitObjects , reference , scale ) ;
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Quad selectionQuad = getSurroundingQuad ( hitObjects ) ;
foreach ( var h in hitObjects )
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h . Position = GetScaledPosition ( reference , scale , selectionQuad , h . Position ) ;
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}
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private ( bool X , bool Y ) isQuadInBounds ( Quad quad )
{
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bool xInBounds = ( quad . TopLeft . X > = 0 ) & & ( quad . BottomRight . X < = DrawWidth ) ;
bool yInBounds = ( quad . TopLeft . Y > = 0 ) & & ( quad . BottomRight . Y < = DrawHeight ) ;
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return ( xInBounds , yInBounds ) ;
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}
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private void moveSelectionInBounds ( )
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{
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var hitObjects = selectedMovableObjects ;
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Quad quad = getSurroundingQuad ( hitObjects ) ;
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Vector2 delta = Vector2 . Zero ;
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if ( quad . TopLeft . X < 0 )
delta . X - = quad . TopLeft . X ;
if ( quad . TopLeft . Y < 0 )
delta . Y - = quad . TopLeft . Y ;
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if ( quad . BottomRight . X > DrawWidth )
delta . X - = quad . BottomRight . X - DrawWidth ;
if ( quad . BottomRight . Y > DrawHeight )
delta . Y - = quad . BottomRight . Y - DrawHeight ;
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foreach ( var h in hitObjects )
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h . Position + = delta ;
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}
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/// <summary>
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/// Clamp scale for multi-object-scaling where selection does not exceed playfield bounds or flip.
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/// </summary>
/// <param name="hitObjects">The hitobjects to be scaled</param>
/// <param name="reference">The anchor from which the scale operation is performed</param>
/// <param name="scale">The scale to be clamped</param>
/// <returns>The clamped scale vector</returns>
private Vector2 getClampedScale ( OsuHitObject [ ] hitObjects , Anchor reference , Vector2 scale )
{
float xOffset = ( ( reference & Anchor . x0 ) > 0 ) ? - scale . X : 0 ;
float yOffset = ( ( reference & Anchor . y0 ) > 0 ) ? - scale . Y : 0 ;
Quad selectionQuad = getSurroundingQuad ( hitObjects ) ;
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//todo: this is not always correct for selections involving sliders. This approximation assumes each point is scaled independently, but sliderends move with the sliderhead.
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Quad scaledQuad = new Quad ( selectionQuad . TopLeft . X + xOffset , selectionQuad . TopLeft . Y + yOffset , selectionQuad . Width + scale . X , selectionQuad . Height + scale . Y ) ;
//max Size -> playfield bounds
if ( scaledQuad . TopLeft . X < 0 )
scale . X + = scaledQuad . TopLeft . X ;
if ( scaledQuad . TopLeft . Y < 0 )
scale . Y + = scaledQuad . TopLeft . Y ;
if ( scaledQuad . BottomRight . X > DrawWidth )
scale . X - = scaledQuad . BottomRight . X - DrawWidth ;
if ( scaledQuad . BottomRight . Y > DrawHeight )
scale . Y - = scaledQuad . BottomRight . Y - DrawHeight ;
//min Size -> almost 0. Less than 0 causes the quad to flip, exactly 0 causes scaling to get stuck at minimum scale.
Vector2 scaledSize = selectionQuad . Size + scale ;
Vector2 minSize = new Vector2 ( Precision . FLOAT_EPSILON ) ;
scale = Vector2 . ComponentMax ( minSize , scaledSize ) - selectionQuad . Size ;
return scale ;
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}
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/// <summary>
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/// Returns a gamefield-space quad surrounding the provided hit objects.
/// </summary>
/// <param name="hitObjects">The hit objects to calculate a quad for.</param>
private Quad getSurroundingQuad ( OsuHitObject [ ] hitObjects ) = >
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GetSurroundingQuad ( hitObjects . SelectMany ( h = >
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{
if ( h is IHasPath path )
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{
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return new [ ]
{
h . Position ,
// can't use EndPosition for reverse slider cases.
h . Position + path . Path . PositionAt ( 1 )
} ;
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}
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return new [ ] { h . Position } ;
} ) ) ;
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/// <summary>
/// All osu! hitobjects which can be moved/rotated/scaled.
/// </summary>
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private OsuHitObject [ ] selectedMovableObjects = > SelectedItems . OfType < OsuHitObject > ( )
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. Where ( h = > h is not Spinner )
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. ToArray ( ) ;
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/// <summary>
/// All osu! hitobjects which can be merged.
/// </summary>
private OsuHitObject [ ] selectedMergeableObjects = > SelectedItems . OfType < OsuHitObject > ( )
. Where ( h = > h is HitCircle or Slider )
. OrderBy ( h = > h . StartTime )
. ToArray ( ) ;
private void mergeSelection ( )
{
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var mergeableObjects = selectedMergeableObjects ;
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if ( ! canMerge ( mergeableObjects ) )
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return ;
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EditorBeatmap . BeginChange ( ) ;
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// Have an initial slider object.
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var firstHitObject = mergeableObjects [ 0 ] ;
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var mergedHitObject = firstHitObject as Slider ? ? new Slider
{
StartTime = firstHitObject . StartTime ,
Position = firstHitObject . Position ,
NewCombo = firstHitObject . NewCombo ,
SampleControlPoint = firstHitObject . SampleControlPoint ,
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Samples = firstHitObject . Samples ,
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} ;
if ( mergedHitObject . Path . ControlPoints . Count = = 0 )
{
mergedHitObject . Path . ControlPoints . Add ( new PathControlPoint ( Vector2 . Zero , PathType . Linear ) ) ;
}
// Merge all the selected hit objects into one slider path.
bool lastCircle = firstHitObject is HitCircle ;
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foreach ( var selectedMergeableObject in mergeableObjects . Skip ( 1 ) )
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{
if ( selectedMergeableObject is IHasPath hasPath )
{
var offset = lastCircle ? selectedMergeableObject . Position - mergedHitObject . Position : mergedHitObject . Path . ControlPoints [ ^ 1 ] . Position ;
float distanceToLastControlPoint = Vector2 . Distance ( mergedHitObject . Path . ControlPoints [ ^ 1 ] . Position , offset ) ;
// Calculate the distance required to travel to the expected distance of the merging slider.
mergedHitObject . Path . ExpectedDistance . Value = mergedHitObject . Path . CalculatedDistance + distanceToLastControlPoint + hasPath . Path . Distance ;
// Remove the last control point if it sits exactly on the start of the next control point.
if ( Precision . AlmostEquals ( distanceToLastControlPoint , 0 ) )
{
mergedHitObject . Path . ControlPoints . RemoveAt ( mergedHitObject . Path . ControlPoints . Count - 1 ) ;
}
mergedHitObject . Path . ControlPoints . AddRange ( hasPath . Path . ControlPoints . Select ( o = > new PathControlPoint ( o . Position + offset , o . Type ) ) ) ;
lastCircle = false ;
}
else
{
// Turn the last control point into a linear type if this is the first merging circle in a sequence, so the subsequent control points can be inherited path type.
if ( ! lastCircle )
{
mergedHitObject . Path . ControlPoints . Last ( ) . Type = PathType . Linear ;
}
mergedHitObject . Path . ControlPoints . Add ( new PathControlPoint ( selectedMergeableObject . Position - mergedHitObject . Position ) ) ;
mergedHitObject . Path . ExpectedDistance . Value = null ;
lastCircle = true ;
}
}
// Make sure only the merged hit object is in the beatmap.
if ( firstHitObject is Slider )
{
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foreach ( var selectedMergeableObject in mergeableObjects . Skip ( 1 ) )
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{
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EditorBeatmap . Remove ( selectedMergeableObject ) ;
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}
}
else
{
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foreach ( var selectedMergeableObject in mergeableObjects )
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{
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EditorBeatmap . Remove ( selectedMergeableObject ) ;
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}
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EditorBeatmap . Add ( mergedHitObject ) ;
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}
// Make sure the merged hitobject is selected.
SelectedItems . Clear ( ) ;
SelectedItems . Add ( mergedHitObject ) ;
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EditorBeatmap . EndChange ( ) ;
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}
protected override IEnumerable < MenuItem > GetContextMenuItemsForSelection ( IEnumerable < SelectionBlueprint < HitObject > > selection )
{
foreach ( var item in base . GetContextMenuItemsForSelection ( selection ) )
yield return item ;
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if ( canMerge ( selectedMergeableObjects ) )
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yield return new OsuMenuItem ( "Merge selection" , MenuItemType . Destructive , mergeSelection ) ;
}
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private bool canMerge ( IReadOnlyList < OsuHitObject > objects ) = >
objects . Count > 1
& & ( objects . Any ( h = > h is Slider )
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| | objects . Zip ( objects . Skip ( 1 ) , ( h1 , h2 ) = > Precision . DefinitelyBigger ( Vector2 . DistanceSquared ( h1 . Position , h2 . Position ) , 1 ) ) . Any ( x = > x ) ) ;
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}
}