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120 lines
4.9 KiB
120 lines
4.9 KiB
using Unity.Collections;
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using UnityEngine;
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using UnityEngine.Animations;
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using UnityEngine.Animations.Rigging;
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namespace UnityEditor.Animations.Rigging
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{
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/// <summary>
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/// The MultiRotation inverse constraint job.
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/// </summary>
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[Unity.Burst.BurstCompile]
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public struct MultiRotationInverseConstraintJob : IWeightedAnimationJob
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{
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const float k_Epsilon = 1e-5f;
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/// <summary>The Transform handle for the constrained object Transform.</summary>
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public ReadOnlyTransformHandle driven;
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/// <summary>The Transform handle for the constrained object parent Transform.</summary>
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public ReadOnlyTransformHandle drivenParent;
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/// <summary>The post-rotation offset applied to the constrained object.</summary>
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public Vector3Property drivenOffset;
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/// <summary>List of Transform handles for the source objects.</summary>
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public NativeArray<ReadWriteTransformHandle> sourceTransforms;
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/// <summary>List of weights for the source objects.</summary>
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public NativeArray<PropertyStreamHandle> sourceWeights;
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/// <summary>List of offsets to apply to source rotations if maintainOffset is enabled.</summary>
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public NativeArray<Quaternion> sourceOffsets;
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/// <summary>Buffer used to store weights during job execution.</summary>
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public NativeArray<float> weightBuffer;
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/// <inheritdoc />
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public FloatProperty jobWeight { get; set; }
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/// <summary>
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/// Defines what to do when processing the root motion.
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/// </summary>
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/// <param name="stream">The animation stream to work on.</param>
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public void ProcessRootMotion(AnimationStream stream) { }
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/// <summary>
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/// Defines what to do when processing the animation.
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/// </summary>
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/// <param name="stream">The animation stream to work on.</param>
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public void ProcessAnimation(AnimationStream stream)
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{
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jobWeight.Set(stream, 1f);
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var lRot = driven.GetLocalRotation(stream);
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var offset = drivenOffset.Get(stream);
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if (Vector3.Dot(offset, offset) > 0f)
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lRot *= Quaternion.Inverse(Quaternion.Euler(offset));
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var wRot = lRot;
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if (drivenParent.IsValid(stream))
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{
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wRot = drivenParent.GetRotation(stream) * wRot;
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}
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for (int i = 0; i < sourceTransforms.Length; ++i)
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{
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sourceWeights[i].SetFloat(stream, 1f);
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ReadWriteTransformHandle sourceTransform = sourceTransforms[i];
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sourceTransform.SetRotation(stream, wRot * sourceOffsets[i]);
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// Required to update handles with binding info.
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sourceTransforms[i] = sourceTransform;
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}
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}
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}
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/// <summary>
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/// The MultiRotation inverse constraint job binder.
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/// </summary>
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/// <typeparam name="T">The constraint data type</typeparam>
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public class MultiRotationInverseConstraintJobBinder<T> : AnimationJobBinder<MultiRotationInverseConstraintJob, T>
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where T : struct, IAnimationJobData, IMultiRotationConstraintData
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{
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/// <inheritdoc />
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public override MultiRotationInverseConstraintJob Create(Animator animator, ref T data, Component component)
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{
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var job = new MultiRotationInverseConstraintJob();
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job.driven = ReadOnlyTransformHandle.Bind(animator, data.constrainedObject);
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job.drivenParent = ReadOnlyTransformHandle.Bind(animator, data.constrainedObject.parent);
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job.drivenOffset = Vector3Property.Bind(animator, component, data.offsetVector3Property);
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WeightedTransformArray sourceObjects = data.sourceObjects;
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WeightedTransformArrayBinder.BindReadWriteTransforms(animator, component, sourceObjects, out job.sourceTransforms);
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WeightedTransformArrayBinder.BindWeights(animator, component, sourceObjects, data.sourceObjectsProperty, out job.sourceWeights);
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job.sourceOffsets = new NativeArray<Quaternion>(sourceObjects.Count, Allocator.Persistent, NativeArrayOptions.UninitializedMemory);
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job.weightBuffer = new NativeArray<float>(sourceObjects.Count, Allocator.Persistent, NativeArrayOptions.UninitializedMemory);
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Quaternion drivenRotInv = Quaternion.Inverse(data.constrainedObject.rotation);
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for (int i = 0; i < sourceObjects.Count; ++i)
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{
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job.sourceOffsets[i] = data.maintainOffset ?
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(drivenRotInv * sourceObjects[i].transform.rotation) : Quaternion.identity;
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}
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return job;
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}
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/// <inheritdoc />
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public override void Destroy(MultiRotationInverseConstraintJob job)
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{
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job.sourceTransforms.Dispose();
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job.sourceWeights.Dispose();
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job.sourceOffsets.Dispose();
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job.weightBuffer.Dispose();
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}
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}
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}
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