MA_TextureAtlasser/Assets/MA_ToolBox/MA_Utilities/MeshUtils/MA_MeshUtils.cs

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//https://github.com/maxartz15/MA_MeshUtils
//References:
//http://wiki.unity3d.com/index.php?title=ObjExporter
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#if UNITY_EDITOR
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using System;
using System.IO;
using System.Text;
using System.Collections;
using System.Collections.Generic;
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using System.Linq;
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using UnityEngine;
using UnityEditor;
namespace MA_Mesh
{
public static class MA_MeshUtils
{
public static string MA_SaveMeshAsset(Mesh mesh, string savePath)
{
if (string.IsNullOrEmpty(mesh.name))
{
mesh.name = UnityEngine.Random.Range(11111, 99999).ToString();
}
string assetPath = savePath + mesh.name + ".asset";
AssetDatabase.CreateAsset(mesh, assetPath);
AssetDatabase.SaveAssets();
return assetPath;
}
public static string MA_SaveMeshPrefab(Mesh mesh, string prefabName, string savePath, string materialPath)
{
string assetPath = null;
string meshAssetPath = MA_SaveMeshAsset(mesh, savePath);
Mesh meshAsset = AssetDatabase.LoadAssetAtPath<Mesh>(meshAssetPath);
if (meshAsset != null)
{
GameObject gameObject = new GameObject
{
name = prefabName
};
gameObject.AddComponent<MeshFilter>().mesh = meshAsset;
gameObject.AddComponent<MeshRenderer>();
Material curMaterial = AssetDatabase.LoadAssetAtPath<Material>(materialPath);
if (curMaterial != null)
{
gameObject.GetComponent<MeshRenderer>().material = curMaterial;
}
if (string.IsNullOrEmpty(prefabName))
{
prefabName = UnityEngine.Random.Range(11111, 99999).ToString();
}
assetPath = savePath + prefabName + ".prefab";
PrefabUtility.SaveAsPrefabAsset(gameObject, assetPath);
UnityEngine.Object.DestroyImmediate(gameObject);
}
return assetPath;
}
public static Mesh MA_DuplicateMesh(Mesh mesh)
{
Mesh newMesh = new Mesh
{
name = mesh.name,
bounds = mesh.bounds,
subMeshCount = mesh.subMeshCount
};
newMesh.SetVertices(new List<Vector3>(mesh.vertices));
for (int i = 0; i < mesh.subMeshCount; i++)
{
newMesh.SetTriangles(mesh.GetTriangles(i), i);
}
newMesh.SetNormals(new List<Vector3>(mesh.normals));
for (int i = 0; i < 8; i++)
{
List<Vector2> uvs = new List<Vector2>();
mesh.GetUVs(i, uvs);
newMesh.SetUVs(i, uvs);
}
newMesh.SetTangents(new List<Vector4>(mesh.tangents));
newMesh.SetColors(new List<Color>(mesh.colors));
return newMesh;
}
public static Mesh MA_ReMapUV(this Mesh mesh, Vector2 atlasSize, Vector2 textureSize, Vector2 texturePosition, int uvChannel = 0)
{
/*
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0 1
512 x 512
0 .5 = 1 / 512 * 256
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256 x 256
+ pos
*/
List<Vector2> uvs = new List<Vector2>();
//Get UV's
mesh.GetUVs(uvChannel, uvs);
foreach (Vector2 uvCordinate in uvs)
{
float x = (uvCordinate.x / atlasSize.x * textureSize.x) + texturePosition.x;
float y = (uvCordinate.y / atlasSize.y * textureSize.y) + texturePosition.y;
uvCordinate.Set(x, y);
}
mesh.SetUVs(uvChannel, uvs);
return mesh;
}
public static Mesh MA_UVReMap(this Mesh mesh, Vector2 atlasSize, Rect textureRect, int uvChannel = 0, bool flipY = true, bool wrap = true)
{
//Get UV's
List<Vector2> uvs = new List<Vector2>();
mesh.GetUVs(uvChannel, uvs);
//Min and max bounds in 0-1 space.
float xMin, xMax, yMin, yMax;
xMin = (1f / atlasSize.x * textureRect.width);
xMax = (1f / atlasSize.x * textureRect.x);
yMin = (1f / atlasSize.y * textureRect.height);
//Flip uv's if needed.
if (flipY)
{
yMax = (1f / atlasSize.y * (atlasSize.y - textureRect.height - textureRect.y));
}
else
{
yMax = (1f / atlasSize.y * textureRect.y);
}
for (int i = 0; i < uvs.Count; i++)
{
float newX = uvs[i].x * xMin + xMax;
float newY = uvs[i].y * yMin + yMax;
//Wrap the verts outside of the uv space around back into the uv space.
if (wrap)
{
newX = Wrap(newX, xMax, xMin + xMax);
newY = Wrap(newY, yMax, yMin + yMax);
}
uvs[i] = new Vector2(newX, newY);
}
mesh.SetUVs(uvChannel, uvs);
return mesh;
}
public static float Wrap(float val, float min, float max)
{
val -= (float)Math.Round((val - min) / (max - min)) * (max - min);
if (val < min)
val = val + max - min;
return val;
}
}
}
#endif