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#if UNITY_2019_3_11 || UNITY_2019_3_12 || UNITY_2019_3_13 || UNITY_2019_3_14 || UNITY_2019_3_15 || UNITY_2019_4_OR_NEWER
#define SERIALIZE_FIELD_MASKABLE
# endif
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using System.Collections.Generic ;
using System.Runtime.CompilerServices ;
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using Coffee.UIParticleExtensions ;
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using UnityEngine ;
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using UnityEngine.Rendering ;
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using UnityEngine.UI ;
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[assembly: InternalsVisibleTo("Coffee.UIParticle.Editor")]
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namespace Coffee.UIExtensions
{
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/// <summary>
/// Render maskable and sortable particle effect ,without Camera, RenderTexture or Canvas.
/// </summary>
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[ExecuteAlways]
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[RequireComponent(typeof(RectTransform))]
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[RequireComponent(typeof(CanvasRenderer))]
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public class UIParticle : MaskableGraphic
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{
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public enum MeshSharing
{
None ,
Auto ,
Primary ,
PrimarySimulator ,
Reprica ,
}
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[HideInInspector] [ SerializeField ] internal bool m_IsTrail = false ;
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[Tooltip("Particle effect scale")]
[SerializeField]
private Vector3 m_Scale3D = new Vector3 ( 10 , 10 , 10 ) ;
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[Tooltip("Animatable material properties. If you want to change the material properties of the ParticleSystem in Animation, enable it.")]
[SerializeField]
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internal AnimatableProperty [ ] m_AnimatableProperties = new AnimatableProperty [ 0 ] ;
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[Tooltip("Particles")]
[SerializeField]
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private List < ParticleSystem > m_Particles = new List < ParticleSystem > ( ) ;
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[Tooltip("Mesh sharing.None: disable mesh sharing.\nAuto: automatically select Primary/Reprica.\nPrimary: provides particle simulation results to the same group.\nPrimary Simulator: Primary, but do not render the particle (simulation only).\nReprica: render simulation results provided by the primary.")]
[SerializeField]
private MeshSharing m_MeshSharing = MeshSharing . None ;
[Tooltip("Mesh sharing group ID. If non-zero is specified, particle simulation results are shared within the group.")]
[SerializeField]
private int m_GroupId = 0 ;
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private List < UIParticleRenderer > m_Renderers = new List < UIParticleRenderer > ( ) ;
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#if !SERIALIZE_FIELD_MASKABLE
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[SerializeField] private bool m_Maskable = true ;
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# endif
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private DrivenRectTransformTracker _tracker ;
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private Camera _orthoCamera ;
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/// <summary>
/// Should this graphic be considered a target for raycasting?
/// </summary>
public override bool raycastTarget
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{
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get { return false ; }
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set { }
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}
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/// <summary>
/// Mesh sharing.None: disable mesh sharing.
/// Auto: automatically select Primary/Reprica.
/// Primary: provides particle simulation results to the same group.
/// Primary Simulator: Primary, but do not render the particle (simulation only).
/// Reprica: render simulation results provided by the primary.
/// </summary>
public MeshSharing meshSharing
{
get { return m_MeshSharing ; }
set { m_MeshSharing = value ; }
}
/// <summary>
/// Mesh sharing group ID. If non-zero is specified, particle simulation results are shared within the group.
/// </summary>
public int groupId
{
get { return m_GroupId ; }
set { m_GroupId = value ; }
}
internal bool useMeshSharing
{
get { return m_MeshSharing ! = MeshSharing . None ; }
}
internal bool isPrimary
{
get { return m_MeshSharing = = MeshSharing . Primary | | m_MeshSharing = = MeshSharing . PrimarySimulator ; }
}
internal bool canSimulate
{
get { return m_MeshSharing = = MeshSharing . None | | m_MeshSharing = = MeshSharing . Auto | | m_MeshSharing = = MeshSharing . Primary | | m_MeshSharing = = MeshSharing . PrimarySimulator ; }
}
internal bool canRender
{
get { return m_MeshSharing = = MeshSharing . None | | m_MeshSharing = = MeshSharing . Auto | | m_MeshSharing = = MeshSharing . Primary | | m_MeshSharing = = MeshSharing . Reprica ; }
}
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/// <summary>
/// Particle effect scale.
/// </summary>
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public float scale
{
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get { return m_Scale3D . x ; }
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set { m_Scale3D = new Vector3 ( value , value , value ) ; }
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}
/// <summary>
/// Particle effect scale.
/// </summary>
public Vector3 scale3D
{
get { return m_Scale3D ; }
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set { m_Scale3D = value ; }
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}
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public List < ParticleSystem > particles
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{
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get { return m_Particles ; }
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}
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/// <summary>
/// Get all base materials to render.
/// </summary>
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public IEnumerable < Material > materials
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{
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get
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{
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for ( var i = 0 ; i < m_Renderers . Count ; i + + )
{
if ( ! m_Renderers [ i ] | | ! m_Renderers [ i ] . material ) continue ;
yield return m_Renderers [ i ] . material ;
}
yield break ;
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}
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}
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public override Material materialForRendering
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{
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get { return null ; }
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}
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/// <summary>
/// Paused.
/// </summary>
public bool isPaused { get ; internal set ; }
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public void Play ( )
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{
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particles . Exec ( p = > p . Simulate ( 0 , false , true ) ) ;
isPaused = false ;
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}
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public void Pause ( )
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{
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particles . Exec ( p = > p . Pause ( ) ) ;
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isPaused = true ;
}
public void Resume ( )
{
isPaused = false ;
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}
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public void Stop ( )
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{
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particles . Exec ( p = > p . Stop ( ) ) ;
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isPaused = true ;
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}
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public void Clear ( )
{
particles . Exec ( p = > p . Clear ( ) ) ;
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isPaused = true ;
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}
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public void SetParticleSystemInstance ( GameObject instance )
{
SetParticleSystemInstance ( instance , true ) ;
}
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public void SetParticleSystemInstance ( GameObject instance , bool destroyOldParticles )
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{
if ( ! instance ) return ;
foreach ( Transform child in transform )
{
var go = child . gameObject ;
go . SetActive ( false ) ;
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if ( ! destroyOldParticles ) continue ;
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#if UNITY_EDITOR
if ( ! Application . isPlaying )
DestroyImmediate ( go ) ;
else
# endif
Destroy ( go ) ;
}
var tr = instance . transform ;
tr . SetParent ( transform , false ) ;
tr . localPosition = Vector3 . zero ;
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RefreshParticles ( instance ) ;
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}
public void SetParticleSystemPrefab ( GameObject prefab )
{
if ( ! prefab ) return ;
SetParticleSystemInstance ( Instantiate ( prefab . gameObject ) , true ) ;
}
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public void RefreshParticles ( )
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{
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RefreshParticles ( gameObject ) ;
}
public void RefreshParticles ( GameObject root )
{
if ( ! root ) return ;
root . GetComponentsInChildren ( particles ) ;
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particles . RemoveAll ( x = > x . GetComponentInParent < UIParticle > ( ) ! = this ) ;
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foreach ( var ps in particles )
{
var tsa = ps . textureSheetAnimation ;
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if ( tsa . mode = = ParticleSystemAnimationMode . Sprites & & tsa . uvChannelMask = = 0 )
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tsa . uvChannelMask = UVChannelFlags . UV0 ;
}
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RefreshParticles ( particles ) ;
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}
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public void RefreshParticles ( List < ParticleSystem > particles )
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{
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GetComponentsInChildren ( m_Renderers ) ;
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for ( var i = 0 ; i < m_Renderers . Count ; i + + )
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{
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GetRenderer ( i ) . Clear ( i ) ;
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}
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var j = 0 ;
for ( var i = 0 ; i < particles . Count ; i + + )
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{
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GetRenderer ( j + + ) . Set ( this , particles [ i ] , false ) ;
if ( particles [ i ] . trails . enabled )
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{
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GetRenderer ( j + + ) . Set ( this , particles [ i ] , true ) ;
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}
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}
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}
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internal void UpdateTransformScale ( )
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{
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//var newScale = Vector3.one;
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//if (uiScaling)
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//{
// newScale = transform.parent.lossyScale.Inverse();
//}
var newScale = transform . parent . lossyScale . Inverse ( ) ;
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if ( transform . localScale ! = newScale )
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{
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transform . localScale = newScale ;
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}
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}
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internal void UpdateRenderers ( )
{
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var bakeCamera = GetBakeCamera ( ) ;
for ( var i = 0 ; i < m_Renderers . Count ; i + + )
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{
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m_Renderers [ i ] . UpdateMesh ( bakeCamera ) ;
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}
}
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protected override void OnEnable ( )
{
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#if !SERIALIZE_FIELD_MASKABLE
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maskable = m_Maskable ;
# endif
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_tracker . Add ( this , rectTransform , DrivenTransformProperties . Scale ) ;
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UIParticleUpdater . Register ( this ) ;
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RegisterDirtyMaterialCallback ( UpdateRendererMaterial ) ;
RefreshParticles ( particles ) ;
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base . OnEnable ( ) ;
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}
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/// <summary>
/// This function is called when the behaviour becomes disabled.
/// </summary>
protected override void OnDisable ( )
{
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_tracker . Clear ( ) ;
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UIParticleUpdater . Unregister ( this ) ;
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m_Renderers . ForEach ( r = > r . Clear ( ) ) ;
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UnregisterDirtyMaterialCallback ( UpdateRendererMaterial ) ;
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base . OnDisable ( ) ;
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}
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protected override void UpdateMaterial ( )
{
}
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/// <summary>
/// Call to update the geometry of the Graphic onto the CanvasRenderer.
/// </summary>
protected override void UpdateGeometry ( )
{
}
/// <summary>
/// Callback for when properties have been changed by animation.
/// </summary>
protected override void OnDidApplyAnimationProperties ( )
{
}
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private void UpdateRendererMaterial ( )
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{
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for ( var i = 0 ; i < m_Renderers . Count ; i + + )
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{
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if ( ! m_Renderers [ i ] ) continue ;
m_Renderers [ i ] . maskable = maskable ;
m_Renderers [ i ] . SetMaterialDirty ( ) ;
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}
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}
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internal UIParticleRenderer GetRenderer ( int index )
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{
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if ( m_Renderers . Count < = index )
{
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m_Renderers . Add ( UIParticleRenderer . AddRenderer ( this , index ) ) ;
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}
return m_Renderers [ index ] ;
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}
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private Camera GetBakeCamera ( )
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{
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if ( ! canvas ) return Camera . main ;
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// World camera.
var root = canvas . rootCanvas ;
if ( root . renderMode ! = RenderMode . ScreenSpaceOverlay ) return root . worldCamera ? root . worldCamera : Camera . main ;
// Create ortho-camera.
if ( ! _orthoCamera )
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{
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_orthoCamera = GetComponentInChildren < Camera > ( ) ;
if ( ! _orthoCamera )
{
var go = new GameObject ( "UIParticleOverlayCamera" )
{
hideFlags = HideFlags . DontSave ,
} ;
go . SetActive ( false ) ;
go . transform . SetParent ( transform , false ) ;
_orthoCamera = go . AddComponent < Camera > ( ) ;
_orthoCamera . enabled = false ;
}
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}
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//
var size = ( ( RectTransform ) root . transform ) . rect . size ;
_orthoCamera . orthographicSize = Mathf . Max ( size . x , size . y ) * root . scaleFactor ;
_orthoCamera . transform . SetPositionAndRotation ( new Vector3 ( 0 , 0 , - 1000 ) , Quaternion . identity ) ;
_orthoCamera . orthographic = true ;
_orthoCamera . farClipPlane = 2000f ;
return _orthoCamera ;
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}
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}
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}