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138 lines
3.9 KiB
C#
138 lines
3.9 KiB
C#
using UnityEngine;
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using System.Collections;
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using System;
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namespace RootMotion.FinalIK
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{
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/// <summary>
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/// Posing the children of a Transform to match the children of another Transform that has different bone orientations.
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/// </summary>
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public class UniversalPoser : Poser
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{
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/// <summary>
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/// Mapping a bone to its target
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/// </summary>
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[System.Serializable]
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public class Map
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{
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public Transform bone;
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[HideInInspector]
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public Transform target;
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private Vector3 defaultLocalPosition;
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private Quaternion defaultLocalRotation;
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// Custom constructor
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public Map(Transform bone, Transform target)
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{
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this.bone = bone;
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this.target = target;
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StoreDefaultState();
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}
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public void StoreDefaultState()
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{
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defaultLocalPosition = bone.localPosition;
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defaultLocalRotation = bone.localRotation;
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}
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public void FixTransform()
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{
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bone.localPosition = defaultLocalPosition;
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bone.localRotation = defaultLocalRotation;
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}
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// Update mapping
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public void Update(float localRotationWeight, float localPositionWeight, Vector3 targetAxis1, Vector3 targetAxis2, Vector3 axis1, Vector3 axis2)
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{
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if (targetAxis1 == axis1 && targetAxis2 == axis2)
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{
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bone.localRotation = Quaternion.Lerp(bone.localRotation, target.localRotation, localRotationWeight);
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}
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else
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{
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Quaternion r = Quaternion.Lerp(bone.localRotation, QuaTools.MatchRotation(target.localRotation, targetAxis1, targetAxis2, axis1, axis2), localRotationWeight);
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Quaternion c = QuaTools.MatchRotation(Quaternion.identity, targetAxis1, targetAxis2, axis1, axis2);
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bone.localRotation = c * r;
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}
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//bone.localPosition = Vector3.Lerp(bone.localPosition, target.localPosition, localPositionWeight); //TODO
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}
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}
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[Tooltip("Choose 2 axes of a finger bone. For example 1 pointing towards the next finger and 2 pointing up. Select a finger bone in the InteractionTarget hierarchy and see which local axis points towards the next bone and which local axis points up and set targetAxis1 and targetAxis2 accordingly. Then select a finger in this poser's hierarchy and do the same for axis1 and axis2.")]
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public Vector3 targetAxis1, targetAxis2, axis1, axis2;
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[Tooltip("List of bones must match InteractionTarget's list of bones in both array size and hierarchy.")]
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public Map[] bones;
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public override void AutoMapping() {}
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public override void AutoMapping(Transform[] bones)
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{
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if (bones.Length != this.bones.Length)
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{
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Debug.LogError("Trying to use UniversalPoser with an InteractionTarget that has a different number of bones. Bones must match with UniversalPoser bones in both array size and hierarchy", transform);
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return;
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}
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for (int i = 0; i < this.bones.Length; i++)
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{
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this.bones[i].target = bones[i];
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}
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StoreDefaultState();
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}
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protected override void InitiatePoser()
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{
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StoreDefaultState();
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}
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protected override void UpdatePoser()
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{
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if (weight <= 0f) return;
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if (localPositionWeight <= 0f && localRotationWeight <= 0f) return;
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if (poseRoot == null) return;
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// Calculate weights
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float rW = localRotationWeight * weight;
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float pW = localPositionWeight * weight;
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// Lerping the localRotation and the localPosition
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for (int i = 0; i < bones.Length; i++) bones[i].Update(rW, pW, targetAxis1, targetAxis2, axis1, axis2);
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}
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protected override void FixPoserTransforms()
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{
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for (int i = 0; i < bones.Length; i++)
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{
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bones[i].FixTransform();
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}
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}
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private void StoreDefaultState()
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{
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for (int i = 0; i < bones.Length; i++)
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{
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bones[i].StoreDefaultState();
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}
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}
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// Returns a Transform from the array that has the specified name
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private Transform GetTargetNamed(string tName, Transform[] array)
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{
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for (int i = 0; i < array.Length; i++)
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{
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if (array[i].name == tName) return array[i];
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}
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return null;
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}
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}
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}
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