Add more bmd material conversion. Reorder bmd object draw, and check transparency
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@ -15,6 +15,14 @@ namespace FirstPlugin
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public Material Material;
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SuperBMDLib.Model ParentModel;
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public bool isTransparent
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{
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get
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{
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return (Material.Flag & 3) == 0;
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}
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}
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public BMDMaterialWrapper(Material mat, SuperBMDLib.Model model)
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{
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Material = mat;
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@ -22,25 +22,54 @@ namespace FirstPlugin
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}
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public override void DrawModels(ShaderProgram shader, GL_ControlModern control)
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{
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shader.EnableVertexAttributes();
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List<STGenericObject> opaque = new List<STGenericObject>();
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List<STGenericObject> transparent = new List<STGenericObject>();
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for (int m = 0; m < Meshes.Count; m++)
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{
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if (((BMDMaterialWrapper)Meshes[m].GetMaterial()).isTransparent)
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transparent.Add(Meshes[m]);
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else
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opaque.Add(Meshes[m]);
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}
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for (int m = 0; m < transparent.Count; m++)
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{
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DrawModel(control, Skeleton, transparent[m].GetMaterial(), transparent[m], shader);
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}
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for (int m = 0; m < opaque.Count; m++)
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{
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DrawModel(control, Skeleton, opaque[m].GetMaterial(), opaque[m], shader);
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}
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shader.DisableVertexAttributes();
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}
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public override void SetRenderData(STGenericMaterial mat, ShaderProgram shader, STGenericObject m)
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{
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var bmdMaterial = (BMDMaterialWrapper)mat;
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switch (bmdMaterial.Material.CullMode)
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{
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case CullMode.None:
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GL.Disable(EnableCap.CullFace);
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break;
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case CullMode.Back:
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GL.CullFace(CullFaceMode.Back);
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break;
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case CullMode.Front:
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GL.CullFace(CullFaceMode.Front);
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break;
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case CullMode.All:
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GL.CullFace(CullFaceMode.FrontAndBack);
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break;
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shader.SetBoolToInt("isTransparent", bmdMaterial.isTransparent);
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GXToOpenGL.SetBlendState(bmdMaterial.Material.BMode);
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GXToOpenGL.SetCullState(bmdMaterial.Material.CullMode);
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GXToOpenGL.SetDepthState(bmdMaterial.Material.ZMode, false);
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GXToOpenGL.SetDitherEnabled(bmdMaterial.Material.Dither);
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}
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public static TextureMagFilter GetMagFilter(SuperBMDLib.Materials.BinaryTextureImage.FilterMode fromMode)
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{
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switch (fromMode)
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{
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case SuperBMDLib.Materials.BinaryTextureImage.FilterMode.Nearest: return TextureMagFilter.Nearest;
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case SuperBMDLib.Materials.BinaryTextureImage.FilterMode.Linear: return TextureMagFilter.Linear;
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}
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return TextureMagFilter.Nearest;
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}
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public override int BindTexture(STGenericMatTexture tex, ShaderProgram shader)
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154
Switch_FileFormatsMain/GL/GXToOpenGL.cs
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154
Switch_FileFormatsMain/GL/GXToOpenGL.cs
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@ -0,0 +1,154 @@
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using OpenTK.Graphics.OpenGL;
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using OpenTK;
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using SuperBMDLib.Materials;
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using SuperBMDLib.Materials.Enums;
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namespace FirstPlugin
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{
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//From https://github.com/LordNed/JStudio/blob/b9c4eabb1c7e80a8da7f63f8d5003df704de369c/JStudio/GXToOpenGL.cs
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public static class GXToOpenGL
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{
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public static TextureWrapMode GetWrapMode(BinaryTextureImage.WrapModes fromMode)
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{
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switch (fromMode)
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{
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case BinaryTextureImage.WrapModes.ClampToEdge: return TextureWrapMode.ClampToEdge;
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case BinaryTextureImage.WrapModes.Repeat: return TextureWrapMode.Repeat;
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case BinaryTextureImage.WrapModes.MirroredRepeat: return TextureWrapMode.MirroredRepeat;
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}
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return TextureWrapMode.Repeat;
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}
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public static TextureMinFilter GetMinFilter(BinaryTextureImage.FilterMode fromMode)
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{
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switch (fromMode)
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{
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case BinaryTextureImage.FilterMode.Nearest: return TextureMinFilter.Nearest;
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case BinaryTextureImage.FilterMode.Linear: return TextureMinFilter.Linear;
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case BinaryTextureImage.FilterMode.NearestMipmapNearest: return TextureMinFilter.NearestMipmapNearest;
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case BinaryTextureImage.FilterMode.NearestMipmapLinear: return TextureMinFilter.NearestMipmapLinear;
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case BinaryTextureImage.FilterMode.LinearMipmapNearest: return TextureMinFilter.LinearMipmapNearest;
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case BinaryTextureImage.FilterMode.LinearMipmapLinear: return TextureMinFilter.LinearMipmapLinear;
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}
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return TextureMinFilter.Nearest;
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}
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public static TextureMagFilter GetMagFilter(BinaryTextureImage.FilterMode fromMode)
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{
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switch (fromMode)
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{
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case BinaryTextureImage.FilterMode.Nearest: return TextureMagFilter.Nearest;
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case BinaryTextureImage.FilterMode.Linear: return TextureMagFilter.Linear;
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}
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return TextureMagFilter.Nearest;
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}
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public static void SetBlendState(SuperBMDLib.Materials.BlendMode blendMode)
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{
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if (blendMode.Type == SuperBMDLib.Materials.Enums.BlendMode.Blend)
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{
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GL.Enable(EnableCap.Blend);
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GL.BlendFunc(GetBlendFactorSrc(blendMode.SourceFact), GetBlendFactorDest(blendMode.DestinationFact));
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}
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else if (blendMode.Type == SuperBMDLib.Materials.Enums.BlendMode.None)
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{
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GL.Disable(EnableCap.Blend);
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}
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else
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{
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// Logic, Subtract?
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}
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}
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public static BlendingFactor GetBlendFactorSrc(BlendModeControl sourceFactor)
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{
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switch (sourceFactor)
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{
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case BlendModeControl.Zero: return BlendingFactor.Zero;
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case BlendModeControl.One: return BlendingFactor.One;
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case BlendModeControl.SrcColor: return BlendingFactor.SrcColor;
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case BlendModeControl.InverseSrcColor: return BlendingFactor.OneMinusSrcColor;
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case BlendModeControl.SrcAlpha: return BlendingFactor.SrcAlpha;
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case BlendModeControl.InverseSrcAlpha: return BlendingFactor.OneMinusSrcAlpha;
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case BlendModeControl.DstAlpha: return BlendingFactor.DstAlpha;
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case BlendModeControl.InverseDstAlpha: return BlendingFactor.OneMinusDstAlpha;
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default:
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Console.WriteLine("Unsupported GXBlendModeControl: \"{0}\" in GetOpenGLBlendSrc!", sourceFactor);
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return BlendingFactor.SrcAlpha;
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}
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}
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public static BlendingFactor GetBlendFactorDest(BlendModeControl destinationFactor)
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{
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switch (destinationFactor)
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{
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case BlendModeControl.Zero: return BlendingFactor.Zero;
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case BlendModeControl.One: return BlendingFactor.One;
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case BlendModeControl.SrcColor: return BlendingFactor.SrcColor;
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case BlendModeControl.InverseSrcColor: return BlendingFactor.OneMinusSrcColor;
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case BlendModeControl.SrcAlpha: return BlendingFactor.SrcAlpha;
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case BlendModeControl.InverseSrcAlpha: return BlendingFactor.OneMinusSrcAlpha;
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case BlendModeControl.DstAlpha: return BlendingFactor.DstAlpha;
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case BlendModeControl.InverseDstAlpha: return BlendingFactor.OneMinusDstAlpha;
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default:
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Console.WriteLine("Unsupported GXBlendModeControl: \"{0}\" in GetOpenGLBlendDest!", destinationFactor);
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return BlendingFactor.OneMinusSrcAlpha;
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}
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}
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public static void SetCullState(CullMode cullState)
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{
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GL.Enable(EnableCap.CullFace);
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switch (cullState)
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{
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case CullMode.None: GL.Disable(EnableCap.CullFace); break;
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case CullMode.Front: GL.CullFace(CullFaceMode.Front); break;
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case CullMode.Back: GL.CullFace(CullFaceMode.Back); break;
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case CullMode.All: GL.CullFace(CullFaceMode.FrontAndBack); break;
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}
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}
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public static void SetDepthState(ZMode depthState, bool bDepthOnlyPrePass)
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{
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if (depthState.Enable || bDepthOnlyPrePass)
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{
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GL.Enable(EnableCap.DepthTest);
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GL.DepthMask(depthState.UpdateEnable || bDepthOnlyPrePass);
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switch (depthState.Function)
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{
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case CompareType.Never: GL.DepthFunc(DepthFunction.Never); break;
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case CompareType.Less: GL.DepthFunc(DepthFunction.Less); break;
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case CompareType.Equal: GL.DepthFunc(DepthFunction.Equal); break;
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case CompareType.LEqual: GL.DepthFunc(DepthFunction.Lequal); break;
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case CompareType.Greater: GL.DepthFunc(DepthFunction.Greater); break;
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case CompareType.NEqual: GL.DepthFunc(DepthFunction.Notequal); break;
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case CompareType.GEqual: GL.DepthFunc(DepthFunction.Gequal); break;
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case CompareType.Always: GL.DepthFunc(DepthFunction.Always); break;
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default: Console.WriteLine("Unsupported GXCompareType: \"{0}\" in GetOpenGLDepthFunc!", depthState.Function); break;
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}
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}
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else
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{
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GL.Disable(EnableCap.DepthTest);
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GL.DepthMask(false);
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}
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}
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public static void SetDitherEnabled(bool ditherEnabled)
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{
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if (ditherEnabled)
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GL.Enable(EnableCap.Dither);
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else
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GL.Disable(EnableCap.Dither);
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}
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}
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}
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@ -173,6 +173,7 @@ namespace FirstPlugin.Forms
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public List<int> KeyFrames = new List<int>(); //Used for getting the frame of the list item
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public bool IsLoading = false;
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private Thread Thread;
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private void LoadAniamtion(MaterialAnimation anim, MaterialAnimation.SamplerKeyGroup activeSampler)
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{
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if (activeSampler == null || IsLoading)
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@ -200,7 +201,7 @@ namespace FirstPlugin.Forms
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}
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}
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Thread Thread = new Thread((ThreadStart)(() =>
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Thread = new Thread((ThreadStart)(() =>
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{
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for (int Frame = 0; Frame <= anim.FrameCount; Frame++)
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{
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@ -256,6 +256,7 @@
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<Compile Include="FileFormats\Texture\TPL.cs" />
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<Compile Include="FileFormats\Rom\GCDisk.cs" />
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<Compile Include="GL\BMD_Renderer.cs" />
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<Compile Include="GL\GXToOpenGL.cs" />
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<Compile Include="GUI\BMD\BMDModelImportSettings.cs">
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<SubType>Form</SubType>
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</Compile>
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@ -378,7 +378,7 @@ namespace Switch_Toolbox.Library.Rendering
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shader.SetBoolToInt("renderVertColor", Runtime.renderVertColor);
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}
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private void DrawModels(ShaderProgram shader, GL_ControlModern control)
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public virtual void DrawModels(ShaderProgram shader, GL_ControlModern control)
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{
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shader.EnableVertexAttributes();
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foreach (STGenericObject shp in Meshes)
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@ -405,7 +405,7 @@ namespace Switch_Toolbox.Library.Rendering
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GL.BindBuffer(BufferTarget.ElementArrayBuffer, ibo_elements);
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}
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private void DrawModel(GLControl control, STSkeleton Skeleton, STGenericMaterial Material, STGenericObject m, ShaderProgram shader)
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public void DrawModel(GLControl control, STSkeleton Skeleton, STGenericMaterial Material, STGenericObject m, ShaderProgram shader)
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{
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if (m.PolygonGroups.Count > 0)
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{
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