Merge branch 'develop'

This commit is contained in:
max 2021-02-18 19:15:55 +01:00
commit b65a968561
26 changed files with 4369 additions and 1487 deletions

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@ -1,5 +1,17 @@
# Change Log:
## 0.1.4
- Rootmotion option.
- Disabled meshes option.
- Mesh bounds.
- Fixed normal.
- Large mesh support.
- Interpolation.
- Lit shader with GUI.
## 0.1.3
## 0.1.2
- Complete rework of asset pipeline.

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@ -0,0 +1,191 @@
using UnityEditor;
using UnityEngine;
namespace TAO.VertexAnimation.Editor
{
public class LitGUI : ShaderGUI
{
private MaterialEditor materialEditor;
private MaterialProperty[] properties;
private bool foldoutBase = true;
private bool foldoutAnimation = true;
private bool foldoutOther = true;
override public void OnGUI(MaterialEditor materialEditor, MaterialProperty[] properties)
{
this.materialEditor = materialEditor;
this.properties = properties;
if (foldoutBase = EditorGUILayout.BeginFoldoutHeaderGroup(foldoutBase, "Base"))
{
BaseMapGUI();
NormalGUI();
MaskGUI();
EmissionGUI();
MaterialProperty tilingAndOffset = FindProperty("_TilingAndOffset", properties);
materialEditor.ShaderProperty(tilingAndOffset, MakeLabel(tilingAndOffset));
}
EditorGUILayout.EndFoldoutHeaderGroup();
if (foldoutAnimation = EditorGUILayout.BeginFoldoutHeaderGroup(foldoutAnimation, "Vertex Animation"))
{
VertexAnimationGUI();
}
EditorGUILayout.EndFoldoutHeaderGroup();
if (foldoutOther = EditorGUILayout.BeginFoldoutHeaderGroup(foldoutOther, "Other"))
{
OtherGUI();
}
EditorGUILayout.EndFoldoutHeaderGroup();
}
private void BaseMapGUI()
{
MaterialProperty map = FindProperty("_BaseMap", properties);
materialEditor.TexturePropertySingleLine(MakeLabel(map, "(RGB) Albedo, (A) Alpha."), map, FindProperty("_BaseColor", properties));
EditorGUI.indentLevel += 2;
MaterialProperty slider = FindProperty("_AlphaClipThreshhold", properties);
materialEditor.ShaderProperty(slider, MakeLabel(slider));
EditorGUI.indentLevel -= 2;
}
private void NormalGUI()
{
MaterialProperty map = FindProperty("_NormalMap", properties);
MaterialProperty strength = FindProperty("_NormalStrength", properties);
EditorGUI.BeginChangeCheck();
materialEditor.TexturePropertySingleLine(MakeLabel(map), map, map.textureValue ? strength : null);
if (EditorGUI.EndChangeCheck())
{
SetKeyword("USE_NORMALMAP_ON", map.textureValue);
}
}
private void MaskGUI()
{
MaterialProperty map = FindProperty("_MaskMap", properties);
materialEditor.TexturePropertySingleLine(MakeLabel(map, "(R) Metallic, (G) Occlusion, (B) Detail mask, (A) Smoothness."), map);
EditorGUI.indentLevel += 2;
MaterialProperty metalness = FindProperty("_Metalness", properties);
materialEditor.ShaderProperty(metalness, MakeLabel(metalness));
MaterialProperty smoothness = FindProperty("_Smoothness", properties);
materialEditor.ShaderProperty(smoothness, MakeLabel(smoothness));
EditorGUI.indentLevel -= 2;
}
private void EmissionGUI()
{
MaterialProperty map = FindProperty("_EmissionMap", properties);
EditorGUI.BeginChangeCheck();
materialEditor.TexturePropertySingleLine(MakeLabel(map), map, FindProperty("_EmissionColor", properties));
if (EditorGUI.EndChangeCheck())
{
SetKeyword("USE_EMISSIONMAP_ON", map.textureValue);
}
}
private void VertexAnimationGUI()
{
MaterialProperty map = FindProperty("_PositionMap", properties);
materialEditor.TexturePropertySingleLine(MakeLabel(map), map);
var mat = materialEditor.target as Material;
{
bool value = mat.IsKeywordEnabled("USE_INTERPOLATION_ON");
MaterialProperty useInterpolation = FindProperty("USE_INTERPOLATION", properties);
EditorGUI.BeginChangeCheck();
value = EditorGUILayout.Toggle(MakeLabel(useInterpolation, "For smooth animations."), mat.IsKeywordEnabled("USE_INTERPOLATION_ON"));
//materialEditor.ShaderProperty(useInterpolation, MakeLabel(useInterpolation, "For smooth animations."));
if (EditorGUI.EndChangeCheck())
{
SetKeyword("USE_INTERPOLATION_ON", value);
}
}
{
bool value = mat.IsKeywordEnabled("USE_NORMALA_ON");
MaterialProperty useNormalA = FindProperty("USE_NORMALA", properties);
EditorGUI.BeginChangeCheck();
value = EditorGUILayout.Toggle(MakeLabel(useNormalA, "Apply vertex normals saved in the alpha channel of the position map."), mat.IsKeywordEnabled("USE_NORMALA_ON"));
//materialEditor.ShaderProperty(normal, MakeLabel(useNormalA, "Apply vertex normals saved in the alpha channel of the position map."));
if (EditorGUI.EndChangeCheck())
{
SetKeyword("USE_NORMALA_ON", value);
}
}
{
bool value = mat.IsKeywordEnabled("VA_FLIP_UVS");
MaterialProperty flipUV = FindProperty("VA_FLIP_UVS", properties);
EditorGUI.BeginChangeCheck();
value = EditorGUILayout.Toggle(MakeLabel(flipUV, "Flip UVs."), mat.IsKeywordEnabled("VA_FLIP_UVS_ON"));
//materialEditor.ShaderProperty(useInterpolation, MakeLabel(useInterpolation, "For smooth animations."));
if (EditorGUI.EndChangeCheck())
{
SetKeyword("VA_FLIP_UVS_ON", value);
}
}
MaterialProperty maxFrames = FindProperty("_MaxFrames", properties);
materialEditor.ShaderProperty(maxFrames, MakeLabel(maxFrames, "This will be auto filled by the animation system."));
MaterialProperty animationData = FindProperty("_AnimationData", properties);
materialEditor.ShaderProperty(animationData, MakeLabel(animationData, "This will be auto filled by the animation system."));
}
private void OtherGUI()
{
materialEditor.RenderQueueField();
materialEditor.EnableInstancingField();
materialEditor.DoubleSidedGIField();
}
private void SetKeyword(string keyword, bool state)
{
if (state)
{
foreach (Material m in materialEditor.targets)
{
m.EnableKeyword(keyword);
}
}
else
{
foreach (Material m in materialEditor.targets)
{
m.DisableKeyword(keyword);
}
}
}
static readonly GUIContent staticLabel = new GUIContent();
static GUIContent MakeLabel(MaterialProperty property, string tooltip = null)
{
staticLabel.text = property.displayName;
staticLabel.tooltip = tooltip;
return staticLabel;
}
}
}

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@ -0,0 +1,11 @@
fileFormatVersion: 2
guid: f1b095c3c32fa3d47be03ef0060cb3e6
MonoImporter:
externalObjects: {}
serializedVersion: 2
defaultReferences: []
executionOrder: 0
icon: {instanceID: 0}
userData:
assetBundleName:
assetBundleVariant:

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@ -37,6 +37,7 @@ namespace TAO.VertexAnimation.Editor
private void BakeGUI()
{
EditorGUILayout.PropertyField(serializedObject.FindProperty("lodSettings").FindPropertyRelative("lodSettings"));
EditorGUILayout.PropertyField(serializedObject.FindProperty("applyAnimationBounds"));
EditorGUILayout.PropertyField(serializedObject.FindProperty("generateAnimationBook"));
using (new EditorGUILayout.HorizontalScope())
@ -45,6 +46,9 @@ namespace TAO.VertexAnimation.Editor
EditorGUILayout.PropertyField(serializedObject.FindProperty("materialShader"), new GUIContent(""));
}
EditorGUILayout.PropertyField(serializedObject.FindProperty("useNormalA"), new GUIContent("Use Normal (A)"));
EditorGUILayout.PropertyField(serializedObject.FindProperty("useInterpolation"));
if (GUILayout.Button("Bake", GUILayout.Height(32)))
{
modelBaker.Bake();

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@ -1,7 +1,6 @@
using System.Collections.Generic;
using UnityEngine;
using UnityEditor;
using System.Linq;
namespace TAO.VertexAnimation.Editor
{
@ -19,9 +18,12 @@ namespace TAO.VertexAnimation.Editor
public bool includeInactive = false;
public LODSettings lodSettings = new LODSettings();
public bool applyAnimationBounds = true;
public bool generateAnimationBook = true;
public bool generatePrefab = true;
public Shader materialShader = null;
public bool useInterpolation = true;
public bool useNormalA = true;
// Output.
public GameObject prefab = null;
@ -109,13 +111,24 @@ namespace TAO.VertexAnimation.Editor
{
AssetDatabaseUtils.RemoveChildAssets(this, new Object[2] { book, material });
foreach (var m in meshes)
Bounds bounds = new Bounds
{
AssetDatabase.AddObjectToAsset(m, this);
max = bakedData.maxBounds,
min = bakedData.minBounds
};
for (int i = 0; i < meshes.Length; i++)
{
if (applyAnimationBounds)
{
meshes[i].bounds = bounds;
}
meshes[i].Finalize();
AssetDatabase.AddObjectToAsset(meshes[i], this);
}
AssetDatabase.AddObjectToAsset(positionMap, this);
AssetDatabase.SaveAssets();
if (generatePrefab)
@ -139,20 +152,20 @@ namespace TAO.VertexAnimation.Editor
path = path.Remove(start, path.Length - start);
path += "/" + name + ".prefab";
// Get info.
NamingConventionUtils.PositionMapInfo info = bakedData.GetPositionMap.name.GetTextureInfo();
// Generate Material
if (!AssetDatabaseUtils.HasChildAsset(this, material))
{
material = AnimationMaterial.Create(name, materialShader);
material = AnimationMaterial.Create(name, materialShader, positionMap, useNormalA, useInterpolation, info.maxFrames);
AssetDatabase.AddObjectToAsset(material, this);
}
else
{
material.shader = materialShader;
material.Update(name, materialShader, positionMap, useNormalA, useInterpolation, info.maxFrames);
}
material.SetTexture("_PositionMap", positionMap);
material.SetInt("_MaxFrames", bakedData.maxFrames);
// Generate Prefab
prefab = AnimationPrefab.Create(path, name, meshes, material, lodSettings.GetTransitionSettings());
}

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@ -11,6 +11,8 @@ namespace TAO.VertexAnimation
public Mesh mesh;
public List<Texture2D> positionMaps;
public int maxFrames;
public Vector3 minBounds;
public Vector3 maxBounds;
// Returns main position map.
public Texture2D GetPositionMap
@ -53,12 +55,22 @@ namespace TAO.VertexAnimation
}
}
[System.Serializable]
public struct BakedAnimation
{
public Texture2D positionMap;
public Vector3 minBounds;
public Vector3 maxBounds;
}
public static BakedData Bake(this GameObject model, AnimationClip[] animationClips, bool applyRootMotion, int fps, int textureWidth)
{
BakedData bakedData = new BakedData()
{
mesh = null,
positionMaps = new List<Texture2D>()
positionMaps = new List<Texture2D>(),
minBounds = new Vector3(float.MaxValue, float.MaxValue, float.MaxValue),
maxBounds = new Vector3(float.MinValue, float.MinValue, float.MinValue)
};
// Calculate what our max frames/time is going to be.
@ -88,8 +100,16 @@ namespace TAO.VertexAnimation
bakedData.mesh = bd.mesh;
bakedData.positionMaps.AddRange(bd.positionMaps);
bakedData.maxFrames = maxFrames;
bakedData.minBounds = Vector3.Min(bakedData.minBounds, bd.minBounds);
bakedData.maxBounds = Vector3.Max(bakedData.maxBounds, bd.maxBounds);
}
bakedData.mesh.bounds = new Bounds()
{
max = bakedData.maxBounds,
min = bakedData.minBounds
};
return bakedData;
}
@ -113,21 +133,35 @@ namespace TAO.VertexAnimation
mesh.uv3 = mesh.BakePositionUVs(animationInfo);
BakedAnimation bakedAnimation = BakeAnimation(model, animationClip, animationInfo);
BakedData bakedData = new BakedData()
{
mesh = mesh,
positionMaps = new List<Texture2D>() { BakePositionMap(model, animationClip, animationInfo) },
maxFrames = animationInfo.maxFrames
positionMaps = new List<Texture2D>() { bakedAnimation.positionMap },
maxFrames = animationInfo.maxFrames,
minBounds = bakedAnimation.minBounds,
maxBounds = bakedAnimation.maxBounds
};
mesh.bounds = new Bounds()
{
max = bakedAnimation.maxBounds,
min = bakedAnimation.minBounds
};
return bakedData;
}
public static Texture2D BakePositionMap(this GameObject model, AnimationClip animationClip, AnimationInfo animationInfo)
public static BakedAnimation BakeAnimation(this GameObject model, AnimationClip animationClip, AnimationInfo animationInfo)
{
// Create positionMap Texture without MipMaps which is Linear and HDR to store values in a bigger range.
Texture2D positionMap = new Texture2D(animationInfo.textureWidth, animationInfo.textureHeight, TextureFormat.RGBAHalf, false, true);
// Keep track of min/max bounds.
Vector3 min = new Vector3(float.MaxValue, float.MaxValue, float.MaxValue);
Vector3 max = new Vector3(float.MinValue, float.MinValue, float.MinValue);
// Create instance to sample from.
GameObject inst = GameObject.Instantiate(model);
SkinnedMeshRenderer skinnedMeshRenderer = inst.GetComponent<SkinnedMeshRenderer>();
@ -139,7 +173,6 @@ namespace TAO.VertexAnimation
Mesh sampledMesh = new Mesh();
skinnedMeshRenderer.BakeMesh(sampledMesh);
sampledMesh.RecalculateBounds();
List<Vector3> verts = new List<Vector3>();
sampledMesh.GetVertices(verts);
@ -149,9 +182,12 @@ namespace TAO.VertexAnimation
int x = 0;
for (int v = 0; v < verts.Count; v++)
{
min = Vector3.Min(min, verts[v]);
max = Vector3.Max(max, verts[v]);
positionMap.SetPixel(x, y,
new Color(verts[v].x, verts[v].y, verts[v].z,
VectorUtils.Float3ToFloat(normals[v]))
VectorUtils.EncodeFloat3ToFloat1(normals[v]))
);
x++;
@ -170,7 +206,12 @@ namespace TAO.VertexAnimation
positionMap.filterMode = FilterMode.Point;
positionMap.Apply(false, true);
return positionMap;
return new BakedAnimation()
{
positionMap = positionMap,
minBounds = min,
maxBounds = max
};
}
public static Vector2[] BakePositionUVs(this Mesh mesh, AnimationInfo animationInfo)

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@ -14,5 +14,45 @@ namespace TAO.VertexAnimation
return material;
}
public static Material Create(string name, Shader shader, Texture2DArray positionMap, bool useNormalA, bool useInterpolation, int maxFrames)
{
Material material = Create(name, shader);
material.Update(name, shader, positionMap, useNormalA, useInterpolation, maxFrames);
return material;
}
public static void Update(this Material material, string name, Shader shader, Texture2DArray positionMap, bool useNormalA, bool useInterpolation, int maxFrames)
{
material.name = name;
if (material.shader != shader)
{
material.shader = shader;
}
material.SetTexture("_PositionMap", positionMap);
material.SetInt("_MaxFrames", maxFrames);
if (useNormalA)
{
material.EnableKeyword("USE_NORMALA_ON");
}
else
{
material.DisableKeyword("USE_NORMALA_ON");
}
if (useInterpolation)
{
material.EnableKeyword("USE_INTERPOLATION_ON");
}
else
{
material.DisableKeyword("USE_INTERPOLATION_ON");
}
}
}
}

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@ -5,7 +5,6 @@
using UnityEngine;
using System.Collections.Generic;
using System.Linq;
namespace TAO.VertexAnimation
{
@ -212,6 +211,20 @@ namespace TAO.VertexAnimation
// Actually combine and recalculate mesh.
Mesh skinnedMesh = new Mesh();
// Large mesh support.
int vertexCount = 0;
foreach (var ci in combineInstances)
{
vertexCount += ci.mesh.vertexCount;
}
if (vertexCount > 65535)
{
skinnedMesh.indexFormat = UnityEngine.Rendering.IndexFormat.UInt32;
}
// Combine meshes.
skinnedMesh.CombineMeshes(combineInstances.ToArray(), true, true);
skinnedMesh.RecalculateBounds();

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@ -11,7 +11,13 @@ namespace TAO.VertexAnimation
for (int lm = 0; lm < lodMeshes.Length; lm++)
{
lodMeshes[lm] = mesh.Copy();
// Only simplify when needed.
if (quality[lm] < 1.0f)
{
lodMeshes[lm] = lodMeshes[lm].Simplify(quality[lm]);
}
lodMeshes[lm].name = string.Format("{0}_LOD{1}", lodMeshes[lm].name, lm);
}

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@ -20,8 +20,8 @@ namespace TAO.VertexAnimation
// UVs (UV0, UV1, ..., UV7)
// Other...
public List<Vector3> vertices = new List<Vector3>(3);
public List<Vector3> normals = new List<Vector3>(3);
public Vector3[] vertices = new Vector3[3];
public Vector3[] normals = new Vector3[3];
public Dictionary<int, List<Vector2>> uvs = new Dictionary<int, List<Vector2>>();
public float Perimeter()
@ -46,7 +46,7 @@ namespace TAO.VertexAnimation
float distance = Mathf.Infinity;
int closestVertex = -1;
for (int v = 0; v < vertices.Count; v++)
for (int v = 0; v < vertices.Length; v++)
{
if (vertices[v] != vertex)
{
@ -83,7 +83,7 @@ namespace TAO.VertexAnimation
if (sourceTriangle != this)
{
Vector3 sourceVertex = sourceTriangle.vertices[sourceVertexIndex];
int index = vertices.IndexOf(sourceVertex);
int index = System.Array.IndexOf(vertices, sourceVertex);
if (index != -1)
{
@ -156,9 +156,9 @@ namespace TAO.VertexAnimation
{
List<Triangle> triangles = new List<Triangle>();
List<Vector3> verts = new List<Vector3>(mesh.vertices);
List<Vector3> normals = new List<Vector3>(mesh.normals);
List<int> tris = new List<int>(mesh.triangles);
Vector3[] verts = mesh.vertices;
Vector3[] normals = mesh.normals;
int[] tris = mesh.triangles;
Dictionary<int, List<Vector2>> uvs = new Dictionary<int, List<Vector2>>();
for (int u = 0; u < 8; u++)
@ -172,17 +172,17 @@ namespace TAO.VertexAnimation
}
}
for (int t = 0; t < tris.Count; t += 3)
for (int t = 0; t < tris.Length; t += 3)
{
Triangle tri = new Triangle();
tri.vertices.Add(verts[tris[t + 0]]);
tri.vertices.Add(verts[tris[t + 1]]);
tri.vertices.Add(verts[tris[t + 2]]);
tri.vertices[0] = verts[tris[t + 0]];
tri.vertices[1] = verts[tris[t + 1]];
tri.vertices[2] = verts[tris[t + 2]];
tri.normals.Add(normals[tris[t + 0]]);
tri.normals.Add(normals[tris[t + 1]]);
tri.normals.Add(normals[tris[t + 2]]);
tri.normals[0] = normals[tris[t + 0]];
tri.normals[1] = normals[tris[t + 1]];
tri.normals[2] = normals[tris[t + 2]];
foreach (var uv in uvs)
{
@ -215,14 +215,14 @@ namespace TAO.VertexAnimation
mesh.Clear();
List<Vector3> vertices = new List<Vector3>(triangles.Count * 3);
List<int> tris = new List<int>(triangles.Count * 3);
List<Vector3> normals = new List<Vector3>(triangles.Count * 3);
List<int> tris = new List<int>(triangles.Count * 3);
Dictionary<int, List<Vector2>> uvs = new Dictionary<int, List<Vector2>>();
int skipped = 0;
for (int t = 0; t < triangles.Count; t++)
{
for (int v = 0; v < triangles[t].vertices.Count; v++)
for (int v = 0; v < triangles[t].vertices.Length; v++)
{
// Check for existing matching vert.
int vIndex = vertices.IndexOf(triangles[t].vertices[v]);
@ -262,6 +262,12 @@ namespace TAO.VertexAnimation
}
}
// Large mesh support.
if (vertices.Count > 65535)
{
mesh.indexFormat = UnityEngine.Rendering.IndexFormat.UInt32;
}
mesh.vertices = vertices.ToArray();
mesh.normals = normals.ToArray();

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@ -4,6 +4,7 @@ namespace TAO.VertexAnimation
{
public static class MeshUtils
{
// Copy a mesh and it's properties.
public static Mesh Copy(this Mesh mesh)
{
Mesh copy = new Mesh
@ -15,6 +16,7 @@ namespace TAO.VertexAnimation
normals = mesh.normals,
tangents = mesh.tangents,
colors = mesh.colors,
bounds = mesh.bounds,
uv = mesh.uv,
uv2 = mesh.uv2,
uv3 = mesh.uv3,
@ -25,9 +27,14 @@ namespace TAO.VertexAnimation
uv8 = mesh.uv8
};
copy.RecalculateBounds();
return copy;
}
// Optimize the mesh and upload the mesh data, makes the mesh no longer readable.
public static void Finalize(this Mesh mesh)
{
mesh.Optimize();
mesh.UploadMeshData(true);
}
}
}

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@ -4,9 +4,11 @@ namespace TAO.VertexAnimation
{
public static class VectorUtils
{
#region Custom Packing
// Encode.
public static Vector2 Float3ToFloat2(this Vector3 f3)
{
Vector3 rotation = Vector3.Normalize(new Vector3(f3.x, 0, f3.z));
Vector3 rotation = Vector3.Normalize(new Vector3(f3.x, 0, f3.y));
Vector2 f2 = new Vector2();
f2.x = Mathf.Acos(Vector3.Dot(rotation, new Vector3(1, 0, 0))) * Mathf.Sign(f3.z);
@ -30,5 +32,94 @@ namespace TAO.VertexAnimation
{
return Float2ToFloat(Float3ToFloat2(f3));
}
// Decode.
public static Vector2 FloatToFloat2(float f1)
{
f1 *= 256;
Vector2 f2;
f2.x = (f1 % 16) / 15;
f2.y = ((f1 / 256) * 16);
f2.y = Mathf.Floor(f2.y) / 15;
return f2;
}
public static Vector3 Float2ToFloat3(Vector2 f2)
{
float dist = 1 - Mathf.Abs((f2.y - 0.5f) * 2);
float temp = (f2.x * (Mathf.PI * 2)) - Mathf.PI;
Vector3 f3;
f3.x = Mathf.Sin(temp + (Mathf.PI * 2)) * dist;
f3.z = Mathf.Cos((temp - Mathf.PI) + (Mathf.PI * 2)) * dist;
f3.y = (f2.y - 0.5f) * -2;
f3 = f3.normalized;
return f3;
}
public static Vector3 FloatToFloat3(float f1)
{
return Float2ToFloat3(FloatToFloat2(f1));
}
#endregion
#region Houdini Style Packing
// Encode.
public static float EncodeFloat3ToFloat1(Vector3 f3)
{
float f1;
float z = Mathf.Sqrt(f3.z * 8 + 8);
float y = (f3.y / z + 0.5f) * 31;
float x = Mathf.Floor((f3.x / z + 0.5f) * 31) * 32;
f1 = (x + y) / 1023;
return f1;
}
// Decode.
public static Vector2 DecodeFloat1ToFloat2(float f1)
{
Vector2 f2;
f1 *= 1024;
f2.x = Mathf.Floor(f1 / 32.0f) / 31.5f;
f2.y = (f1 - (Mathf.Floor(f1 / 32.0f) * 32.0f)) / 31.5f;
return f2;
}
public static Vector3 DecodeFloat2ToFloat3(Vector2 f2)
{
Vector3 f3;
f2 *= 4;
f2.x -= 2;
f2.y -= 2;
float f2dot = Vector3.Dot(f2, f2);
f3.x = Mathf.Sqrt(1 - (f2dot / 4.0f)) * f2.x;
f3.y = Mathf.Sqrt(1 - (f2dot / 4.0f)) * f2.y;
f3.z = 1 - (f2dot / 2.0f);
//f3.x = Mathf.Clamp(f3.x, -1.0f, 1.0f);
//f3.y = Mathf.Clamp(f3.x, -1.0f, 1.0f);
//f3.z = Mathf.Clamp(f3.x, -1.0f, 1.0f);
f3 = Vector3.ClampMagnitude(f3, 1);
return f3;
}
public static Vector3 DecodeFloat1ToFloat3(float f1)
{
return DecodeFloat2ToFloat3(DecodeFloat1ToFloat2(f1));
}
#endregion
}
}

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@ -15,8 +15,7 @@ namespace TAO.VertexAnimation
public struct VA_AnimatorComponent : IComponentData
{
public int animationIndex;
// TODO: Animation blending.
//public int animationIndexSchedule;
public int animationIndexNext;
public float animationTime;
public BlobAssetReference<VA_AnimationLibraryData> animationLibrary;
}
@ -38,7 +37,7 @@ namespace TAO.VertexAnimation
VA_AnimatorComponent animatorComponent = new VA_AnimatorComponent
{
animationIndex = 0,
//animationIndexSchedule = -1,
animationIndexNext = -1,
animationTime = 0,
animationLibrary = animLib
};

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@ -1,6 +1,7 @@
using Unity.Entities;
using Unity.Transforms;
using Unity.Mathematics;
using UnityEngine.Animations;
namespace TAO.VertexAnimation
{
@ -21,14 +22,31 @@ namespace TAO.VertexAnimation
// Get the animation lib data.
ref VA_AnimationLibraryData animationsRef = ref ac.animationLibrary.Value;
// Lerp animations.
// Set animation for lerp.
int animationIndexNext = ac.animationIndexNext;
if (ac.animationIndexNext < 0)
{
animationIndexNext = ac.animationIndex;
}
// Calculate next frame time for lerp.
float animationTimeNext = ac.animationTime + (1.0f / animationsRef.animations[animationIndexNext].maxFrames);
if (animationTimeNext > animationsRef.animations[animationIndexNext].duration)
{
// Set time. Using the difference to smooth out animations when looping.
animationTimeNext -= ac.animationTime;
}
// Set material data.
animationData[child] = new VA_AnimationDataComponent
{
Value = new float4
{
x = ac.animationTime,
y = VA_AnimationLibraryUtils.GetAnimationMapIndex(ref animationsRef, ac.animationIndex),
z = VA_AnimationLibraryUtils.GetColorMapIndex(ref animationsRef, ac.animationIndex),
w = 0
z = animationTimeNext,
w = VA_AnimationLibraryUtils.GetAnimationMapIndex(ref animationsRef, animationIndexNext)
}
};
}

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@ -6,59 +6,14 @@
#define V_TWO_PI 6.28318530718f
#define V_HALF_PI 1.57079632679f
void EncodeFloat3ToFloat1_float(float3 f3, out float f1)
{
float z = sqrt(f3.z * 8 + 8);
float y = (f3.y / z + 0.5f) * 31;
float x = floor((f3.x / z + 0.5f) * 31) * 32;
f1 = (x + y) / 1023;
}
void DecodeFloat1ToFloat2_float(float f1, out float2 f2)
{
f1 *= 1024;
f2.x = floor(f1 / 32.0) / 31.5;
f2.y = (f1 - (floor(f1 / 32.0) * 32.0)) / 31.5;
}
void DecodeFloat2ToFloat3_float(float f2, out float3 f3)
{
f2 *= 4;
f2 -= 2;
float f2dot = dot(f2, f2);
f3.xy = sqrt(1 - (f2dot / 4.0)) * f2;
f3.z = 1 - (f2dot / 2.0);
f3 = clamp(f3, -1.0, 1.0);
}
void DecodeFloat1ToFloat3_float(float f1, out float3 f3)
{
float2 f2;
DecodeFloat1ToFloat2_float(f1, f2);
DecodeFloat2ToFloat3_float(f2, f3);
}
// Ref:
// https://answers.unity.com/questions/733677/cg-shader-float3-to-float-packunpack-functions.html
// http://aras-p.info/blog/2009/07/30/encoding-floats-to-rgba-the-final/
void Encode2Float3ToFloat1_float(float3 f3, out float f1)
{
f1 = (dot(round((f3) * 255), float3(65536, 256, 1)));
}
void Decode2Float1ToFloat3_float(float f1, out float3 f3)
{
f3 = (frac((f1) / float3(16777216, 65536, 256)));
}
// Custom
// Custom Packing.
// Encode float3 to 0..1 float.
void Float3ToFloat2_float(float3 f3, out float2 f2)
{
//float3 rotation = normalize(float3(f3.x, 0, f3.y));
float3 rotation = normalize(float3(f3.x, 0, f3.z));
f2.x = acos (dot(rotation, float3(1, 0, 0))) * sign(f3.z);
f2.x = acos(dot(rotation, float3(1, 0, 0))) * sign(f3.z);
f2.x = ((f2.x / V_PI) + 1) * 0.5f;
f2.y = acos(f3.y) / V_PI;
@ -110,4 +65,53 @@ void FloatToFloat3_float(float f1, out float3 f3)
Float2ToFloat3_float(f2, f3);
}
// Houdini Style Packing.
// Encode.
void EncodeFloat3ToFloat1_float(float3 f3, out float f1)
{
float z = sqrt(f3.z * 8 + 8);
float y = (f3.y / z + 0.5f) * 31;
float x = floor((f3.x / z + 0.5f) * 31) * 32;
f1 = (x + y) / 1023;
}
// Decode.
void DecodeFloat1ToFloat2_float(float f1, out float2 f2)
{
f1 *= 1024;
f2.x = floor(f1 / 32.0) / 31.5;
f2.y = (f1 - (floor(f1 / 32.0) * 32.0)) / 31.5;
}
void DecodeFloat2ToFloat3_float(float2 f2, out float3 f3)
{
f2 *= 4;
f2 -= 2;
float f2dot = dot(f2, f2);
f3.xy = sqrt(1 - (f2dot / 4.0)) * f2;
f3.z = 1 - (f2dot / 2.0);
f3 = clamp(f3, -1.0, 1.0);
}
void DecodeFloat1ToFloat3_float(float f1, out float3 f3)
{
float2 f2;
DecodeFloat1ToFloat2_float(f1, f2);
DecodeFloat2ToFloat3_float(f2, f3);
}
// Test Packing.
// Ref:
// https://answers.unity.com/questions/733677/cg-shader-float3-to-float-packunpack-functions.html
// http://aras-p.info/blog/2009/07/30/encoding-floats-to-rgba-the-final/
void Encode2Float3ToFloat1_float(float3 f3, out float f1)
{
f1 = (dot(round((f3) * 255), float3(65536, 256, 1)));
}
void Decode2Float1ToFloat3_float(float f1, out float3 f3)
{
f3 = (frac((f1) / float3(16777216, 65536, 256)));
}
#endif

View File

@ -25,7 +25,7 @@ float2 VA_UV_float(float2 uv, int maxFrames, float time)
}
void VA_float(float2 uv, SamplerState texSampler, Texture2D positionMap, float time, int maxFrames,
out float3 position, out float3 alpha)
out float3 position, out float alpha)
{
float2 uvPosition = VA_UV_float(uv, maxFrames, time);
@ -39,7 +39,7 @@ void VA_float(float2 uv, SamplerState texSampler, Texture2D positionMap, float t
}
void VA_ARRAY_float(float2 uv, SamplerState texSampler, Texture2DArray positionMap, float positionMapIndex, float time, int maxFrames,
out float3 position, out float3 alpha)
out float3 position, out float alpha)
{
float2 uvPosition = VA_UV_float(uv, maxFrames, time);

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@ -4,3 +4,7 @@ This package borrows code/assets from various different sources, including:
- Author: [nonlly](https://sketchfab.com/nonlly)
- Source: [Sketchfab](https://skfb.ly/6QYR6)
- License: [Creative Commons Attribution](http://creativecommons.org/licenses/by/4.0/)
### SideFx/Houdini (Vector encoding/decoding)
- Source: [Sketchfab](https://github.com/sideeffects/SideFXLabs/blob/Development/unity/shaders/URP/Editor/Shaders/VAT_Utilies.hlsl)
- License: [LICENSE](https://github.com/sideeffects/SideFXLabs/blob/Development/LICENSE.md)

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