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https://github.com/maxartz15/VertexAnimation.git
synced 2024-11-09 22:32:55 +01:00
Rewrote Animator to ISystem
This commit is contained in:
parent
9f8a7fb7d8
commit
9dca839eaf
@ -17,7 +17,7 @@ namespace TAO.VertexAnimation
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public uint Seed;
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}
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internal struct SkinnedMeshEntity : IBufferElementData
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public struct SkinnedMeshEntity : IBufferElementData
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{
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public Entity Value;
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}
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@ -75,7 +75,7 @@ public class AnimationLibraryComponentBaker : Baker < AnimationLibraryComponentA
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Random random = new Random( authoring.Seed != 0 ? authoring.Seed : 42 );
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int index = random.NextInt( 20 );
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// Add animator to 'parent'.
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VA_AnimatorComponent animatorComponent = new VA_AnimatorComponent
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AnimatorComponent animatorComponent = new AnimatorComponent
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{
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Enabled = true,
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AnimationName = animationsRef.animations[index].name,
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@ -87,7 +87,7 @@ public class AnimationLibraryComponentBaker : Baker < AnimationLibraryComponentA
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AddComponent(animatorComponent);
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VA_AnimatorBlendStateComponent animatorStateComponent = new VA_AnimatorBlendStateComponent
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AnimatorBlendStateComponent animatorStateComponent = new AnimatorBlendStateComponent
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{
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BlendingEnabled = true,
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AnimationIndex = 1,
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@ -110,21 +110,24 @@ public class AnimationLibraryComponentBaker : Baker < AnimationLibraryComponentA
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}
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//[GenerateAuthoringComponent]
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public struct VA_AnimatorComponent : IComponentData
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public struct AnimatorComponent : IComponentData
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{
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public bool Enabled;
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public FixedString64Bytes AnimationName;
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public int AnimationIndex;
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public int AnimationIndexNext;
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public float AnimationTime;
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public float AnimationTimeNext;
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public BlobAssetReference<VA_AnimationLibraryData> AnimationLibrary;
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}
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public struct VA_AnimatorBlendStateComponent : IComponentData
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public struct AnimatorBlendStateComponent : IComponentData
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{
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public bool BlendingEnabled;
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public int AnimationIndex;
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public int AnimationIndexNext;
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public float AnimationTime;
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public float AnimationTimeNext;
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}
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}
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@ -4,152 +4,6 @@ using Unity.Mathematics;
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namespace TAO.VertexAnimation
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{
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public readonly partial struct AnimatorAspect : IAspect
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{
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private readonly RefRW < VA_AnimatorComponent > m_Animator;
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private readonly RefRW < VA_AnimatorBlendStateComponent > m_AnimatorBlendState;
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private readonly DynamicBuffer < SkinnedMeshEntity > m_SkinnedMeshEntities;
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public void UpdateAnimator(float deltaTime, EntityCommandBuffer.ParallelWriter ecb, ref int startIndex)
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{
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if ( m_Animator.ValueRO.Enabled )
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{
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// Get the animation lib data.
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ref VA_AnimationLibraryData animationsRef = ref m_Animator.ValueRO.AnimationLibrary.Value;
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//if ( m_Animator.ValueRO.AnimationName != vaAnimatorStateComponent.CurrentAnimationName )
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//{
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// // Set the animation index on the AnimatorComponent to play this animation.
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// m_Animator.ValueRO.AnimationIndexNext = VA_AnimationLibraryUtils.GetAnimation(ref animationsRef, vaAnimatorStateComponent.CurrentAnimationName);
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// m_Animator.ValueRO.AnimationName = vaAnimatorStateComponent.CurrentAnimationName;
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//}
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// 'Play' the actual animation.
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m_Animator.ValueRW.AnimationTime += deltaTime * animationsRef.animations[m_Animator.ValueRO.AnimationIndex].frameTime;
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if ( m_Animator.ValueRO.AnimationTime > animationsRef.animations[m_Animator.ValueRO.AnimationIndex].duration )
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{
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// Set time. Using the difference to smoothen out animations when looping.
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m_Animator.ValueRW.AnimationTime -= animationsRef.animations[m_Animator.ValueRO.AnimationIndex].duration;
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//m_Animator.ValueRW.animationIndexNext = vaAnimatorStateComponent.Rand.NextInt( 20 );
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}
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// Lerp animations.
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// Set animation for lerp.
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int animationIndexNext = m_Animator.ValueRO.AnimationIndexNext;
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if ( animationIndexNext < 0 )
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{
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animationIndexNext = m_Animator.ValueRO.AnimationIndex;
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//m_Animator.ValueRO.animationIndexNext = animationIndexNext + 1;
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}
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// Calculate next frame time for lerp.
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float animationTimeNext = m_Animator.ValueRO.AnimationTime +
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( 1.0f / animationsRef.animations[animationIndexNext].maxFrames );
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if ( animationTimeNext > animationsRef.animations[animationIndexNext].duration )
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{
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// Set time. Using the difference to smooth out animations when looping.
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animationTimeNext -= m_Animator.ValueRO.AnimationTime;
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}
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int animationIndexNextBlend = 0;
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float animationTimeNextBlend = 0.0f;
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if ( m_AnimatorBlendState.ValueRO.BlendingEnabled )
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{
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// 'Play' the actual animation.
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m_AnimatorBlendState.ValueRW.AnimationTime += deltaTime *
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animationsRef.
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animations[m_AnimatorBlendState.ValueRO.AnimationIndex].
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frameTime;
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if ( m_AnimatorBlendState.ValueRO.AnimationTime >
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animationsRef.animations[m_AnimatorBlendState.ValueRO.AnimationIndex].duration )
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{
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// Set time. Using the difference to smoothen out animations when looping.
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m_AnimatorBlendState.ValueRW.AnimationTime -=
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animationsRef.animations[m_AnimatorBlendState.ValueRO.AnimationIndex].duration;
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//m_Animator.ValueRO.animationIndexNext = vaAnimatorStateComponent.Rand.NextInt( 20 );
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}
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// Lerp animations.
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// Set animation for lerp.
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animationIndexNextBlend = m_AnimatorBlendState.ValueRO.AnimationIndexNext;
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if ( animationIndexNextBlend < 0 )
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{
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animationIndexNextBlend = m_AnimatorBlendState.ValueRO.AnimationIndex;
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//m_Animator.ValueRO.animationIndexNext = animationIndexNext + 1;
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}
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// Calculate next frame time for lerp.
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animationTimeNextBlend = m_AnimatorBlendState.ValueRO.AnimationTime +
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( 1.0f / animationsRef.animations[animationIndexNextBlend].maxFrames );
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if ( animationTimeNextBlend > animationsRef.animations[animationIndexNextBlend].duration )
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{
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// Set time. Using the difference to smooth out animations when looping.
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animationTimeNextBlend -= m_AnimatorBlendState.ValueRO.AnimationTime;
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}
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}
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for ( int i = 0; i < m_SkinnedMeshEntities.Length; i++ )
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{
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FirstAnimationDataComponent animationDataComponent = new FirstAnimationDataComponent();
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animationDataComponent.Value = new float4
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{
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x = m_Animator.ValueRO.AnimationTime,
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y = VA_AnimationLibraryUtils.GetAnimationMapIndex(
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ref animationsRef,
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m_Animator.ValueRO.AnimationIndex ),
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z = animationTimeNext,
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w = VA_AnimationLibraryUtils.GetAnimationMapIndex( ref animationsRef, animationIndexNext )
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};
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ecb.SetComponent < FirstAnimationDataComponent >(startIndex,
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m_SkinnedMeshEntities[i].Value,
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animationDataComponent );
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startIndex++;
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if ( m_AnimatorBlendState.ValueRO.BlendingEnabled )
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{
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SecondAnimationDataComponent animationDataComponent2 = new SecondAnimationDataComponent();
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animationDataComponent2.Value = new float4
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{
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x = m_AnimatorBlendState.ValueRO.AnimationTime,
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y = VA_AnimationLibraryUtils.GetAnimationMapIndex(
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ref animationsRef,
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m_AnimatorBlendState.ValueRO.AnimationIndex ),
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z = animationTimeNextBlend,
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w = VA_AnimationLibraryUtils.GetAnimationMapIndex(
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ref animationsRef,
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animationIndexNextBlend )
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};
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ecb.SetComponent < SecondAnimationDataComponent >(startIndex,
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m_SkinnedMeshEntities[i].Value,
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animationDataComponent2 );
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startIndex++;
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}
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}
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if ( m_Animator.ValueRO.AnimationIndexNext >= 0 )
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{
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m_Animator.ValueRW.AnimationIndex = animationIndexNext;
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m_Animator.ValueRW.AnimationIndexNext = -1;
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}
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}
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}
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}
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}
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@ -1,35 +1,208 @@
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using System.Collections.Generic;
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using Unity.Burst;
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using Unity.Collections;
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using Unity.Entities;
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using Unity.Transforms;
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using Unity.Jobs;
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using Unity.Mathematics;
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namespace TAO.VertexAnimation
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{
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// System to update all the animations.
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[BurstCompile]
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[UpdateInGroup( typeof( SimulationSystemGroup ) )]
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[UpdateAfter( typeof( BeginSimulationEntityCommandBufferSystem ) )]
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public partial struct AnimatorSystem : ISystem
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{
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//private EntityQuery m_Group;
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[BurstCompile]
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public void OnCreate( ref SystemState state )
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{
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//NativeArray < ComponentType > componentTypes = new NativeArray < ComponentType >( 2, Allocator.Persistent );
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//componentTypes[0] = ComponentType.ReadWrite < AnimatorComponent >();
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//componentTypes[1] = ComponentType.ReadWrite<AnimatorBlendStateComponent>();
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//m_Group = state.GetEntityQuery(componentTypes);
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}
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[BurstCompile]
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public void OnDestroy( ref SystemState state )
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{
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}
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[BurstCompile]
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public void OnUpdate( ref SystemState state )
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{
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float deltaTime = SystemAPI.Time.DeltaTime;
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EntityCommandBuffer ecb = new EntityCommandBuffer( Allocator.Temp );
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int i = 0;
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foreach ( var animatorAspect in SystemAPI.
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Query < AnimatorAspect >() )
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{
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animatorAspect.UpdateAnimator( deltaTime, ecb.AsParallelWriter(), ref i );
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}
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ecb.Playback( state.EntityManager );
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EntityCommandBuffer ecb = SystemAPI.GetSingleton < BeginSimulationEntityCommandBufferSystem.Singleton >().
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CreateCommandBuffer( state.WorldUnmanaged );
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UpdateAnimatorJob job =
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new UpdateAnimatorJob { DeltaTime = deltaTime, StartIndex = 0, Ecb = ecb.AsParallelWriter() };
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job.Run();
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//handle.Complete();
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// state.Dependency = JobHandle.CombineDependencies( ecb., state.Dependency );
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//state.Dependency.Complete();
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// int i = 0;
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// for ( int j = 0; j < jobHandles.Length; j++ )
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// {
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// jobHandles2.Add(new UpdateAnimatedMeshMaterialParametersJob { Ecb = ecb.AsParallelWriter(), StartIndex = i }.ScheduleParallel(jobHandles[j] ));
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// i += 2;
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// }
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//
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// for ( int j = 0; j < jobHandles2.Length; j++ )
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// {
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// jobHandles2[j].Complete();
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// }
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// //ecb.Playback( state.EntityManager );
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}
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}
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[BurstCompile]
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public partial struct UpdateAnimatorJob : IJobEntity
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{
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public float DeltaTime;
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public int StartIndex;
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public EntityCommandBuffer.ParallelWriter Ecb;
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[BurstCompile]
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public void Execute(
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ref AnimatorComponent animator,
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ref AnimatorBlendStateComponent animatorBlendState,
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in DynamicBuffer < SkinnedMeshEntity > buffer )
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{
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if ( animator.Enabled )
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{
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// Get the animation lib data.
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ref VA_AnimationLibraryData animationsRef = ref animator.AnimationLibrary.Value;
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//if ( animator.AnimationName != vaAnimatorStateComponent.CurrentAnimationName )
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//{
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// // Set the animation index on the AnimatorComponent to play this animation.
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// animator.AnimationIndexNext = VA_AnimationLibraryUtils.GetAnimation(ref animationsRef, vaAnimatorStateComponent.CurrentAnimationName);
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// animator.AnimationName = vaAnimatorStateComponent.CurrentAnimationName;
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//}
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// 'Play' the actual animation.
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animator.AnimationTime += DeltaTime * animationsRef.animations[animator.AnimationIndex].frameTime;
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if ( animator.AnimationTime > animationsRef.animations[animator.AnimationIndex].duration )
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{
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// Set time. Using the difference to smoothen out animations when looping.
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animator.AnimationTime -= animationsRef.animations[animator.AnimationIndex].duration;
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//animator.animationIndexNext = vaAnimatorStateComponent.Rand.NextInt( 20 );
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}
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// Lerp animations.
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// Set animation for lerp.
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int animationIndexNext = animator.AnimationIndexNext;
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if ( animationIndexNext < 0 )
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{
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animationIndexNext = animator.AnimationIndex;
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//animator.animationIndexNext = animationIndexNext + 1;
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}
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// Calculate next frame time for lerp.
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float animationTimeNext = animator.AnimationTime +
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( 1.0f / animationsRef.animations[animationIndexNext].maxFrames );
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if ( animationTimeNext > animationsRef.animations[animationIndexNext].duration )
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{
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// Set time. Using the difference to smooth out animations when looping.
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animationTimeNext -= animator.AnimationTime;
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}
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int animationIndexNextBlend = 0;
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float animationTimeNextBlend = 0.0f;
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if ( animatorBlendState.BlendingEnabled )
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{
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// 'Play' the actual animation.
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animatorBlendState.AnimationTime += DeltaTime *
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animationsRef.
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animations[animatorBlendState.AnimationIndex].
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frameTime;
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if ( animatorBlendState.AnimationTime >
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animationsRef.animations[animatorBlendState.AnimationIndex].duration )
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{
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// Set time. Using the difference to smoothen out animations when looping.
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animatorBlendState.AnimationTime -=
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animationsRef.animations[animatorBlendState.AnimationIndex].duration;
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//animator.animationIndexNext = vaAnimatorStateComponent.Rand.NextInt( 20 );
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}
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// Lerp animations.
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// Set animation for lerp.
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animationIndexNextBlend = animatorBlendState.AnimationIndexNext;
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if ( animationIndexNextBlend < 0 )
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{
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animationIndexNextBlend = animatorBlendState.AnimationIndex;
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//animator.animationIndexNext = animationIndexNext + 1;
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}
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// Calculate next frame time for lerp.
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animationTimeNextBlend = animatorBlendState.AnimationTime +
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( 1.0f / animationsRef.animations[animationIndexNextBlend].maxFrames );
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if ( animationTimeNextBlend > animationsRef.animations[animationIndexNextBlend].duration )
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{
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// Set time. Using the difference to smooth out animations when looping.
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animationTimeNextBlend -= animatorBlendState.AnimationTime;
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}
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}
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for ( int i = 0; i < buffer.Length; i++ )
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{
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FirstAnimationDataComponent vaAnimationDataComponent = new FirstAnimationDataComponent();
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vaAnimationDataComponent.Value = new float4
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{
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x = animator.AnimationTime,
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y = VA_AnimationLibraryUtils.GetAnimationMapIndex( ref animationsRef, animator.AnimationIndex ),
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z = animationTimeNext,
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w = VA_AnimationLibraryUtils.GetAnimationMapIndex( ref animationsRef, animationIndexNext )
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};
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SystemAPI.SetComponent < FirstAnimationDataComponent >( buffer[i].Value, vaAnimationDataComponent );
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if ( animatorBlendState.BlendingEnabled )
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{
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SecondAnimationDataComponent vaAnimationDataComponent2 = new SecondAnimationDataComponent();
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vaAnimationDataComponent2.Value = new float4
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{
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x = animatorBlendState.AnimationTime,
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y = VA_AnimationLibraryUtils.GetAnimationMapIndex(
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ref animationsRef,
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animatorBlendState.AnimationIndex ),
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z = animationTimeNextBlend,
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w = VA_AnimationLibraryUtils.GetAnimationMapIndex(
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ref animationsRef,
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animationIndexNextBlend )
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};
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SystemAPI.SetComponent < SecondAnimationDataComponent >(
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buffer[i].Value,
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vaAnimationDataComponent2 );
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}
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}
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if ( animator.AnimationIndexNext >= 0 )
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{
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animator.AnimationIndex = animationIndexNext;
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animator.AnimationIndexNext = -1;
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}
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}
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}
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}
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