mirror of
https://github.com/GreemDev/Ryujinx.git
synced 2024-11-18 23:37:09 +01:00
59964f667c
* Add support for bigger UBOs, fix sRGB regression, small improvement to the 2D copy engine * Break into multiple lines * Read fractions for source/step values on the 2d copy engine aswell * Use fixed point math for more speed * Fix reinterpret when texture sizes are different
386 lines
14 KiB
C#
386 lines
14 KiB
C#
using Ryujinx.Graphics.Gal.OpenGL;
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using System;
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using System.Collections.Generic;
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namespace Ryujinx.Graphics.Gal.Shader
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{
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class GlslDecl
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{
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public const int LayerAttr = 0x064;
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public const int PointSizeAttr = 0x06c;
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public const int PointCoordAttrX = 0x2e0;
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public const int PointCoordAttrY = 0x2e4;
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public const int TessCoordAttrX = 0x2f0;
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public const int TessCoordAttrY = 0x2f4;
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public const int TessCoordAttrZ = 0x2f8;
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public const int InstanceIdAttr = 0x2f8;
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public const int VertexIdAttr = 0x2fc;
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public const int FaceAttr = 0x3fc;
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public const int GlPositionVec4Index = 7;
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public const int PositionOutAttrLocation = 15;
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private const int AttrStartIndex = 8;
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private const int TexStartIndex = 8;
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public const string PositionOutAttrName = "position";
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private const string TextureName = "tex";
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private const string UniformName = "c";
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private const string AttrName = "attr";
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private const string InAttrName = "in_" + AttrName;
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private const string OutAttrName = "out_" + AttrName;
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private const string GprName = "gpr";
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private const string PredName = "pred";
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public const string FragmentOutputName = "FragColor";
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public const string ExtraUniformBlockName = "Extra";
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public const string FlipUniformName = "flip";
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public const string InstanceUniformName = "instance";
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public const string BasicBlockName = "bb";
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public const string BasicBlockAName = BasicBlockName + "_a";
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public const string BasicBlockBName = BasicBlockName + "_b";
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public const int SsyStackSize = 16;
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public const string SsyStackName = "ssy_stack";
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public const string SsyCursorName = "ssy_cursor";
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public static int MaxUboSize => OGLLimit.MaxUboSize / 16;
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private string[] StagePrefixes = new string[] { "vp", "tcp", "tep", "gp", "fp" };
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private string StagePrefix;
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private Dictionary<ShaderIrOp, ShaderDeclInfo> m_CbTextures;
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private Dictionary<int, ShaderDeclInfo> m_Textures;
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private Dictionary<int, ShaderDeclInfo> m_Uniforms;
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private Dictionary<int, ShaderDeclInfo> m_Attributes;
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private Dictionary<int, ShaderDeclInfo> m_InAttributes;
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private Dictionary<int, ShaderDeclInfo> m_OutAttributes;
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private Dictionary<int, ShaderDeclInfo> m_Gprs;
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private Dictionary<int, ShaderDeclInfo> m_Preds;
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public IReadOnlyDictionary<ShaderIrOp, ShaderDeclInfo> CbTextures => m_CbTextures;
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public IReadOnlyDictionary<int, ShaderDeclInfo> Textures => m_Textures;
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public IReadOnlyDictionary<int, ShaderDeclInfo> Uniforms => m_Uniforms;
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public IReadOnlyDictionary<int, ShaderDeclInfo> Attributes => m_Attributes;
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public IReadOnlyDictionary<int, ShaderDeclInfo> InAttributes => m_InAttributes;
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public IReadOnlyDictionary<int, ShaderDeclInfo> OutAttributes => m_OutAttributes;
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public IReadOnlyDictionary<int, ShaderDeclInfo> Gprs => m_Gprs;
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public IReadOnlyDictionary<int, ShaderDeclInfo> Preds => m_Preds;
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public GalShaderType ShaderType { get; private set; }
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private GlslDecl(GalShaderType ShaderType)
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{
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this.ShaderType = ShaderType;
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m_CbTextures = new Dictionary<ShaderIrOp, ShaderDeclInfo>();
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m_Textures = new Dictionary<int, ShaderDeclInfo>();
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m_Uniforms = new Dictionary<int, ShaderDeclInfo>();
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m_Attributes = new Dictionary<int, ShaderDeclInfo>();
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m_InAttributes = new Dictionary<int, ShaderDeclInfo>();
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m_OutAttributes = new Dictionary<int, ShaderDeclInfo>();
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m_Gprs = new Dictionary<int, ShaderDeclInfo>();
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m_Preds = new Dictionary<int, ShaderDeclInfo>();
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}
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public GlslDecl(ShaderIrBlock[] Blocks, GalShaderType ShaderType, ShaderHeader Header) : this(ShaderType)
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{
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StagePrefix = StagePrefixes[(int)ShaderType] + "_";
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if (ShaderType == GalShaderType.Fragment)
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{
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int Index = 0;
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for (int Attachment = 0; Attachment < 8; Attachment++)
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{
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for (int Component = 0; Component < 4; Component++)
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{
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if (Header.OmapTargets[Attachment].ComponentEnabled(Component))
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{
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m_Gprs.TryAdd(Index, new ShaderDeclInfo(GetGprName(Index), Index));
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Index++;
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}
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}
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}
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if (Header.OmapDepth)
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{
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Index = Header.DepthRegister;
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m_Gprs.TryAdd(Index, new ShaderDeclInfo(GetGprName(Index), Index));
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}
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}
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foreach (ShaderIrBlock Block in Blocks)
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{
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ShaderIrNode[] Nodes = Block.GetNodes();
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foreach (ShaderIrNode Node in Nodes)
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{
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Traverse(Nodes, null, Node);
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}
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}
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}
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public static GlslDecl Merge(GlslDecl VpA, GlslDecl VpB)
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{
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GlslDecl Combined = new GlslDecl(GalShaderType.Vertex);
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Merge(Combined.m_Textures, VpA.m_Textures, VpB.m_Textures);
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Merge(Combined.m_Uniforms, VpA.m_Uniforms, VpB.m_Uniforms);
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Merge(Combined.m_Attributes, VpA.m_Attributes, VpB.m_Attributes);
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Merge(Combined.m_OutAttributes, VpA.m_OutAttributes, VpB.m_OutAttributes);
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Merge(Combined.m_Gprs, VpA.m_Gprs, VpB.m_Gprs);
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Merge(Combined.m_Preds, VpA.m_Preds, VpB.m_Preds);
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//Merge input attributes.
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foreach (KeyValuePair<int, ShaderDeclInfo> KV in VpA.m_InAttributes)
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{
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Combined.m_InAttributes.TryAdd(KV.Key, KV.Value);
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}
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foreach (KeyValuePair<int, ShaderDeclInfo> KV in VpB.m_InAttributes)
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{
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//If Vertex Program A already writes to this attribute,
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//then we don't need to add it as an input attribute since
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//Vertex Program A will already have written to it anyway,
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//and there's no guarantee that there is an input attribute
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//for this slot.
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if (!VpA.m_OutAttributes.ContainsKey(KV.Key))
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{
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Combined.m_InAttributes.TryAdd(KV.Key, KV.Value);
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}
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}
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return Combined;
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}
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public static string GetGprName(int Index)
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{
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return GprName + Index;
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}
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private static void Merge(
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Dictionary<int, ShaderDeclInfo> C,
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Dictionary<int, ShaderDeclInfo> A,
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Dictionary<int, ShaderDeclInfo> B)
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{
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foreach (KeyValuePair<int, ShaderDeclInfo> KV in A)
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{
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C.TryAdd(KV.Key, KV.Value);
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}
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foreach (KeyValuePair<int, ShaderDeclInfo> KV in B)
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{
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C.TryAdd(KV.Key, KV.Value);
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}
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}
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private void Traverse(ShaderIrNode[] Nodes, ShaderIrNode Parent, ShaderIrNode Node)
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{
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switch (Node)
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{
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case ShaderIrAsg Asg:
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{
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Traverse(Nodes, Asg, Asg.Dst);
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Traverse(Nodes, Asg, Asg.Src);
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break;
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}
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case ShaderIrCond Cond:
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{
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Traverse(Nodes, Cond, Cond.Pred);
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Traverse(Nodes, Cond, Cond.Child);
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break;
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}
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case ShaderIrOp Op:
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{
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Traverse(Nodes, Op, Op.OperandA);
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Traverse(Nodes, Op, Op.OperandB);
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Traverse(Nodes, Op, Op.OperandC);
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if (Op.Inst == ShaderIrInst.Texq ||
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Op.Inst == ShaderIrInst.Texs ||
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Op.Inst == ShaderIrInst.Txlf)
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{
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int Handle = ((ShaderIrOperImm)Op.OperandC).Value;
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int Index = Handle - TexStartIndex;
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string Name = StagePrefix + TextureName + Index;
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m_Textures.TryAdd(Handle, new ShaderDeclInfo(Name, Handle));
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}
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else if (Op.Inst == ShaderIrInst.Texb)
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{
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ShaderIrNode HandleSrc = null;
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int Index = Array.IndexOf(Nodes, Parent) - 1;
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for (; Index >= 0; Index--)
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{
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ShaderIrNode Curr = Nodes[Index];
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if (Curr is ShaderIrAsg Asg && Asg.Dst is ShaderIrOperGpr Gpr)
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{
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if (Gpr.Index == ((ShaderIrOperGpr)Op.OperandC).Index)
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{
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HandleSrc = Asg.Src;
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break;
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}
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}
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}
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if (HandleSrc != null && HandleSrc is ShaderIrOperCbuf Cbuf)
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{
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string Name = StagePrefix + TextureName + "_cb" + Cbuf.Index + "_" + Cbuf.Pos;
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m_CbTextures.Add(Op, new ShaderDeclInfo(Name, Cbuf.Pos, true, Cbuf.Index));
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}
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else
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{
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throw new NotImplementedException("Shader TEX.B instruction is not fully supported!");
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}
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}
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break;
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}
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case ShaderIrOperCbuf Cbuf:
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{
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if (!m_Uniforms.ContainsKey(Cbuf.Index))
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{
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string Name = StagePrefix + UniformName + Cbuf.Index;
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ShaderDeclInfo DeclInfo = new ShaderDeclInfo(Name, Cbuf.Pos, true, Cbuf.Index);
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m_Uniforms.Add(Cbuf.Index, DeclInfo);
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}
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break;
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}
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case ShaderIrOperAbuf Abuf:
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{
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//This is a built-in variable.
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if (Abuf.Offs == LayerAttr ||
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Abuf.Offs == PointSizeAttr ||
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Abuf.Offs == PointCoordAttrX ||
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Abuf.Offs == PointCoordAttrY ||
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Abuf.Offs == VertexIdAttr ||
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Abuf.Offs == InstanceIdAttr ||
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Abuf.Offs == FaceAttr)
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{
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break;
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}
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int Index = Abuf.Offs >> 4;
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int Elem = (Abuf.Offs >> 2) & 3;
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int GlslIndex = Index - AttrStartIndex;
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if (GlslIndex < 0)
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{
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return;
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}
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ShaderDeclInfo DeclInfo;
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if (Parent is ShaderIrAsg Asg && Asg.Dst == Node)
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{
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if (!m_OutAttributes.TryGetValue(Index, out DeclInfo))
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{
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DeclInfo = new ShaderDeclInfo(OutAttrName + GlslIndex, GlslIndex);
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m_OutAttributes.Add(Index, DeclInfo);
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}
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}
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else
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{
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if (!m_InAttributes.TryGetValue(Index, out DeclInfo))
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{
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DeclInfo = new ShaderDeclInfo(InAttrName + GlslIndex, GlslIndex);
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m_InAttributes.Add(Index, DeclInfo);
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}
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}
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DeclInfo.Enlarge(Elem + 1);
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if (!m_Attributes.ContainsKey(Index))
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{
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DeclInfo = new ShaderDeclInfo(AttrName + GlslIndex, GlslIndex, false, 0, 4);
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m_Attributes.Add(Index, DeclInfo);
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}
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Traverse(Nodes, Abuf, Abuf.Vertex);
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break;
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}
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case ShaderIrOperGpr Gpr:
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{
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if (!Gpr.IsConst)
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{
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string Name = GetGprName(Gpr.Index);
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m_Gprs.TryAdd(Gpr.Index, new ShaderDeclInfo(Name, Gpr.Index));
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}
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break;
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}
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case ShaderIrOperPred Pred:
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{
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if (!Pred.IsConst && !HasName(m_Preds, Pred.Index))
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{
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string Name = PredName + Pred.Index;
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m_Preds.TryAdd(Pred.Index, new ShaderDeclInfo(Name, Pred.Index));
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}
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break;
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}
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}
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}
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private bool HasName(Dictionary<int, ShaderDeclInfo> Decls, int Index)
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{
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//This is used to check if the dictionary already contains
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//a entry for a vector at a given index position.
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//Used to enable turning gprs into vectors.
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int VecIndex = Index & ~3;
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if (Decls.TryGetValue(VecIndex, out ShaderDeclInfo DeclInfo))
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{
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if (DeclInfo.Size > 1 && Index < VecIndex + DeclInfo.Size)
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{
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return true;
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}
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}
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return Decls.ContainsKey(Index);
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}
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}
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}
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