mirror of
https://github.com/ryujinx-mirror/ryujinx.git
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97ca974213
* Implement stencil testing * Implement depth testing * Implement face culling * Implement front face * Comparison functions now take OGL enums too * Fix front facing when flipping was used * Add depth and stencil clear values
306 lines
9.9 KiB
C#
306 lines
9.9 KiB
C#
using OpenTK.Graphics.OpenGL;
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using System;
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using System.Collections.Generic;
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namespace Ryujinx.Graphics.Gal.OpenGL
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{
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public class OGLRasterizer : IGalRasterizer
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{
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private static Dictionary<GalVertexAttribSize, int> AttribElements =
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new Dictionary<GalVertexAttribSize, int>()
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{
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{ GalVertexAttribSize._32_32_32_32, 4 },
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{ GalVertexAttribSize._32_32_32, 3 },
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{ GalVertexAttribSize._16_16_16_16, 4 },
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{ GalVertexAttribSize._32_32, 2 },
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{ GalVertexAttribSize._16_16_16, 3 },
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{ GalVertexAttribSize._8_8_8_8, 4 },
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{ GalVertexAttribSize._16_16, 2 },
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{ GalVertexAttribSize._32, 1 },
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{ GalVertexAttribSize._8_8_8, 3 },
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{ GalVertexAttribSize._8_8, 2 },
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{ GalVertexAttribSize._16, 1 },
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{ GalVertexAttribSize._8, 1 },
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{ GalVertexAttribSize._10_10_10_2, 4 },
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{ GalVertexAttribSize._11_11_10, 3 }
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};
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private static Dictionary<GalVertexAttribSize, VertexAttribPointerType> AttribTypes =
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new Dictionary<GalVertexAttribSize, VertexAttribPointerType>()
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{
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{ GalVertexAttribSize._32_32_32_32, VertexAttribPointerType.Int },
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{ GalVertexAttribSize._32_32_32, VertexAttribPointerType.Int },
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{ GalVertexAttribSize._16_16_16_16, VertexAttribPointerType.Short },
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{ GalVertexAttribSize._32_32, VertexAttribPointerType.Int },
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{ GalVertexAttribSize._16_16_16, VertexAttribPointerType.Short },
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{ GalVertexAttribSize._8_8_8_8, VertexAttribPointerType.Byte },
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{ GalVertexAttribSize._16_16, VertexAttribPointerType.Short },
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{ GalVertexAttribSize._32, VertexAttribPointerType.Int },
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{ GalVertexAttribSize._8_8_8, VertexAttribPointerType.Byte },
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{ GalVertexAttribSize._8_8, VertexAttribPointerType.Byte },
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{ GalVertexAttribSize._16, VertexAttribPointerType.Short },
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{ GalVertexAttribSize._8, VertexAttribPointerType.Byte },
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{ GalVertexAttribSize._10_10_10_2, VertexAttribPointerType.Int }, //?
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{ GalVertexAttribSize._11_11_10, VertexAttribPointerType.Int } //?
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};
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private int VaoHandle;
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private int[] VertexBuffers;
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private OGLCachedResource<int> VboCache;
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private OGLCachedResource<int> IboCache;
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private struct IbInfo
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{
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public int Count;
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public int ElemSizeLog2;
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public DrawElementsType Type;
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}
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private IbInfo IndexBuffer;
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public OGLRasterizer()
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{
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VertexBuffers = new int[32];
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VboCache = new OGLCachedResource<int>(GL.DeleteBuffer);
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IboCache = new OGLCachedResource<int>(GL.DeleteBuffer);
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IndexBuffer = new IbInfo();
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}
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public void ClearBuffers(GalClearBufferFlags Flags)
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{
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ClearBufferMask Mask = ClearBufferMask.ColorBufferBit;
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GL.ColorMask(
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Flags.HasFlag(GalClearBufferFlags.ColorRed),
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Flags.HasFlag(GalClearBufferFlags.ColorGreen),
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Flags.HasFlag(GalClearBufferFlags.ColorBlue),
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Flags.HasFlag(GalClearBufferFlags.ColorAlpha));
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if (Flags.HasFlag(GalClearBufferFlags.Depth))
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{
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Mask |= ClearBufferMask.DepthBufferBit;
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}
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if (Flags.HasFlag(GalClearBufferFlags.Stencil))
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{
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Mask |= ClearBufferMask.StencilBufferBit;
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}
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GL.Clear(Mask);
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GL.ColorMask(true, true, true, true);
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}
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public bool IsVboCached(long Key, long DataSize)
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{
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return VboCache.TryGetSize(Key, out long Size) && Size == DataSize;
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}
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public bool IsIboCached(long Key, long DataSize)
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{
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return IboCache.TryGetSize(Key, out long Size) && Size == DataSize;
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}
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public void SetFrontFace(GalFrontFace FrontFace)
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{
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GL.FrontFace(OGLEnumConverter.GetFrontFace(FrontFace));
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}
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public void EnableCullFace()
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{
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GL.Enable(EnableCap.CullFace);
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}
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public void DisableCullFace()
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{
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GL.Disable(EnableCap.CullFace);
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}
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public void SetCullFace(GalCullFace CullFace)
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{
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GL.CullFace(OGLEnumConverter.GetCullFace(CullFace));
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}
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public void EnableDepthTest()
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{
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GL.Enable(EnableCap.DepthTest);
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}
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public void DisableDepthTest()
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{
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GL.Disable(EnableCap.DepthTest);
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}
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public void SetDepthFunction(GalComparisonOp Func)
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{
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GL.DepthFunc(OGLEnumConverter.GetDepthFunc(Func));
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}
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public void SetClearDepth(float Depth)
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{
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GL.ClearDepth(Depth);
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}
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public void EnableStencilTest()
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{
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GL.Enable(EnableCap.StencilTest);
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}
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public void DisableStencilTest()
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{
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GL.Disable(EnableCap.StencilTest);
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}
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public void SetStencilFunction(bool IsFrontFace, GalComparisonOp Func, int Ref, int Mask)
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{
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GL.StencilFuncSeparate(
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IsFrontFace ? StencilFace.Front : StencilFace.Back,
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OGLEnumConverter.GetStencilFunc(Func),
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Ref,
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Mask);
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}
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public void SetStencilOp(bool IsFrontFace, GalStencilOp Fail, GalStencilOp ZFail, GalStencilOp ZPass)
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{
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GL.StencilOpSeparate(
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IsFrontFace ? StencilFace.Front : StencilFace.Back,
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OGLEnumConverter.GetStencilOp(Fail),
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OGLEnumConverter.GetStencilOp(ZFail),
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OGLEnumConverter.GetStencilOp(ZPass));
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}
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public void SetStencilMask(bool IsFrontFace, int Mask)
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{
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GL.StencilMaskSeparate(IsFrontFace ? StencilFace.Front : StencilFace.Back, Mask);
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}
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public void SetClearStencil(int Stencil)
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{
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GL.ClearStencil(Stencil);
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}
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public void CreateVbo(long Key, byte[] Buffer)
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{
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int Handle = GL.GenBuffer();
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VboCache.AddOrUpdate(Key, Handle, (uint)Buffer.Length);
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IntPtr Length = new IntPtr(Buffer.Length);
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GL.BindBuffer(BufferTarget.ArrayBuffer, Handle);
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GL.BufferData(BufferTarget.ArrayBuffer, Length, Buffer, BufferUsageHint.StreamDraw);
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}
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public void CreateIbo(long Key, byte[] Buffer)
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{
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int Handle = GL.GenBuffer();
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IboCache.AddOrUpdate(Key, Handle, (uint)Buffer.Length);
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IntPtr Length = new IntPtr(Buffer.Length);
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GL.BindBuffer(BufferTarget.ElementArrayBuffer, Handle);
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GL.BufferData(BufferTarget.ElementArrayBuffer, Length, Buffer, BufferUsageHint.StreamDraw);
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}
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public void SetVertexArray(int VbIndex, int Stride, long VboKey, GalVertexAttrib[] Attribs)
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{
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if (!VboCache.TryGetValue(VboKey, out int VboHandle))
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{
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return;
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}
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if (VaoHandle == 0)
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{
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VaoHandle = GL.GenVertexArray();
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}
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GL.BindVertexArray(VaoHandle);
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foreach (GalVertexAttrib Attrib in Attribs)
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{
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GL.EnableVertexAttribArray(Attrib.Index);
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GL.BindBuffer(BufferTarget.ArrayBuffer, VboHandle);
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bool Unsigned =
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Attrib.Type == GalVertexAttribType.Unorm ||
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Attrib.Type == GalVertexAttribType.Uint ||
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Attrib.Type == GalVertexAttribType.Uscaled;
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bool Normalize =
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Attrib.Type == GalVertexAttribType.Snorm ||
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Attrib.Type == GalVertexAttribType.Unorm;
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VertexAttribPointerType Type = 0;
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if (Attrib.Type == GalVertexAttribType.Float)
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{
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Type = VertexAttribPointerType.Float;
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}
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else
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{
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Type = AttribTypes[Attrib.Size] + (Unsigned ? 1 : 0);
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}
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int Size = AttribElements[Attrib.Size];
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int Offset = Attrib.Offset;
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GL.VertexAttribPointer(Attrib.Index, Size, Type, Normalize, Stride, Offset);
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}
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}
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public void SetIndexArray(long Key, int Size, GalIndexFormat Format)
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{
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IndexBuffer.Type = OGLEnumConverter.GetDrawElementsType(Format);
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IndexBuffer.Count = Size >> (int)Format;
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IndexBuffer.ElemSizeLog2 = (int)Format;
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}
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public void DrawArrays(int First, int PrimCount, GalPrimitiveType PrimType)
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{
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if (PrimCount == 0)
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{
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return;
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}
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GL.BindVertexArray(VaoHandle);
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GL.DrawArrays(OGLEnumConverter.GetPrimitiveType(PrimType), First, PrimCount);
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}
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public void DrawElements(long IboKey, int First, int VertexBase, GalPrimitiveType PrimType)
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{
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if (!IboCache.TryGetValue(IboKey, out int IboHandle))
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{
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return;
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}
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PrimitiveType Mode = OGLEnumConverter.GetPrimitiveType(PrimType);
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GL.BindVertexArray(VaoHandle);
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GL.BindBuffer(BufferTarget.ElementArrayBuffer, IboHandle);
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First <<= IndexBuffer.ElemSizeLog2;
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if (VertexBase != 0)
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{
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IntPtr Indices = new IntPtr(First);
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GL.DrawElementsBaseVertex(Mode, IndexBuffer.Count, IndexBuffer.Type, Indices, VertexBase);
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}
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else
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{
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GL.DrawElements(Mode, IndexBuffer.Count, IndexBuffer.Type, First);
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}
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}
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}
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} |