forked from Mirror/Ryujinx
b34de74f81
* Avoid adding shader buffer descriptors for constant buffers that are not used * Shader cache version
277 lines
No EOL
9.7 KiB
C#
277 lines
No EOL
9.7 KiB
C#
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
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using System.Collections.Generic;
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using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
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using static Ryujinx.Graphics.Shader.Translation.GlobalMemory;
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namespace Ryujinx.Graphics.Shader.Translation.Optimizations
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{
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static class GlobalToStorage
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{
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public static void RunPass(BasicBlock block, ShaderConfig config)
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{
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int sbStart = GetStorageBaseCbOffset(config.Stage);
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int sbEnd = sbStart + StorageDescsSize;
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for (LinkedListNode<INode> node = block.Operations.First; node != null; node = node.Next)
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{
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if (!(node.Value is Operation operation))
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{
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continue;
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}
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if (UsesGlobalMemory(operation.Inst))
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{
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Operand source = operation.GetSource(0);
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int storageIndex = SearchForStorageBase(block, source, sbStart, sbEnd);
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if (storageIndex >= 0)
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{
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// Storage buffers are implemented using global memory access.
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// If we know from where the base address of the access is loaded,
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// we can guess which storage buffer it is accessing.
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// We can then replace the global memory access with a storage
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// buffer access.
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node = ReplaceGlobalWithStorage(node, config, storageIndex);
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}
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else if (config.Stage == ShaderStage.Compute && operation.Inst == Instruction.LoadGlobal)
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{
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// Here we effectively try to replace a LDG instruction with LDC.
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// The hardware only supports a limited amount of constant buffers
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// so NVN "emulates" more constant buffers using global memory access.
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// Here we try to replace the global access back to a constant buffer
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// load.
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storageIndex = SearchForStorageBase(block, source, UbeBaseOffset, UbeBaseOffset + UbeDescsSize);
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if (storageIndex >= 0)
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{
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node = ReplaceLdgWithLdc(node, config, storageIndex);
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}
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}
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}
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}
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}
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private static LinkedListNode<INode> ReplaceGlobalWithStorage(LinkedListNode<INode> node, ShaderConfig config, int storageIndex)
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{
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Operation operation = (Operation)node.Value;
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bool isAtomic = operation.Inst.IsAtomic();
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bool isStg16Or8 = operation.Inst == Instruction.StoreGlobal16 || operation.Inst == Instruction.StoreGlobal8;
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bool isWrite = isAtomic || operation.Inst == Instruction.StoreGlobal || isStg16Or8;
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config.SetUsedStorageBuffer(storageIndex, isWrite);
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Operand GetStorageOffset()
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{
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Operand addrLow = operation.GetSource(0);
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Operand baseAddrLow = Cbuf(0, GetStorageCbOffset(config.Stage, storageIndex));
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Operand baseAddrTrunc = Local();
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Operand alignMask = Const(-config.GpuAccessor.QueryHostStorageBufferOffsetAlignment());
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Operation andOp = new Operation(Instruction.BitwiseAnd, baseAddrTrunc, baseAddrLow, alignMask);
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node.List.AddBefore(node, andOp);
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Operand byteOffset = Local();
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Operation subOp = new Operation(Instruction.Subtract, byteOffset, addrLow, baseAddrTrunc);
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node.List.AddBefore(node, subOp);
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if (isStg16Or8)
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{
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return byteOffset;
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}
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Operand wordOffset = Local();
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Operation shrOp = new Operation(Instruction.ShiftRightU32, wordOffset, byteOffset, Const(2));
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node.List.AddBefore(node, shrOp);
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return wordOffset;
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}
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Operand[] sources = new Operand[operation.SourcesCount];
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sources[0] = Const(storageIndex);
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sources[1] = GetStorageOffset();
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for (int index = 2; index < operation.SourcesCount; index++)
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{
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sources[index] = operation.GetSource(index);
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}
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Operation storageOp;
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if (isAtomic)
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{
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Instruction inst = (operation.Inst & ~Instruction.MrMask) | Instruction.MrStorage;
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storageOp = new Operation(inst, operation.Dest, sources);
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}
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else if (operation.Inst == Instruction.LoadGlobal)
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{
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storageOp = new Operation(Instruction.LoadStorage, operation.Dest, sources);
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}
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else
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{
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Instruction storeInst = operation.Inst switch
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{
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Instruction.StoreGlobal16 => Instruction.StoreStorage16,
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Instruction.StoreGlobal8 => Instruction.StoreStorage8,
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_ => Instruction.StoreStorage
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};
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storageOp = new Operation(storeInst, null, sources);
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}
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for (int index = 0; index < operation.SourcesCount; index++)
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{
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operation.SetSource(index, null);
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}
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LinkedListNode<INode> oldNode = node;
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node = node.List.AddBefore(node, storageOp);
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node.List.Remove(oldNode);
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return node;
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}
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private static LinkedListNode<INode> ReplaceLdgWithLdc(LinkedListNode<INode> node, ShaderConfig config, int storageIndex)
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{
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Operation operation = (Operation)node.Value;
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Operand GetCbufOffset()
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{
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Operand addrLow = operation.GetSource(0);
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Operand baseAddrLow = Cbuf(0, UbeBaseOffset + storageIndex * StorageDescSize);
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Operand baseAddrTrunc = Local();
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Operand alignMask = Const(-config.GpuAccessor.QueryHostStorageBufferOffsetAlignment());
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Operation andOp = new Operation(Instruction.BitwiseAnd, baseAddrTrunc, baseAddrLow, alignMask);
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node.List.AddBefore(node, andOp);
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Operand byteOffset = Local();
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Operand wordOffset = Local();
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Operation subOp = new Operation(Instruction.Subtract, byteOffset, addrLow, baseAddrTrunc);
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Operation shrOp = new Operation(Instruction.ShiftRightU32, wordOffset, byteOffset, Const(2));
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node.List.AddBefore(node, subOp);
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node.List.AddBefore(node, shrOp);
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return wordOffset;
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}
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Operand[] sources = new Operand[operation.SourcesCount];
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int cbSlot = UbeFirstCbuf + storageIndex;
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sources[0] = Const(cbSlot);
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sources[1] = GetCbufOffset();
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config.SetUsedConstantBuffer(cbSlot);
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for (int index = 2; index < operation.SourcesCount; index++)
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{
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sources[index] = operation.GetSource(index);
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}
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Operation ldcOp = new Operation(Instruction.LoadConstant, operation.Dest, sources);
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for (int index = 0; index < operation.SourcesCount; index++)
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{
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operation.SetSource(index, null);
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}
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LinkedListNode<INode> oldNode = node;
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node = node.List.AddBefore(node, ldcOp);
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node.List.Remove(oldNode);
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return node;
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}
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private static int SearchForStorageBase(BasicBlock block, Operand globalAddress, int sbStart, int sbEnd)
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{
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globalAddress = Utils.FindLastOperation(globalAddress, block);
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if (globalAddress.Type == OperandType.ConstantBuffer)
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{
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return GetStorageIndex(globalAddress, sbStart, sbEnd);
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}
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Operation operation = globalAddress.AsgOp as Operation;
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if (operation == null || operation.Inst != Instruction.Add)
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{
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return -1;
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}
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Operand src1 = operation.GetSource(0);
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Operand src2 = operation.GetSource(1);
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if ((src1.Type == OperandType.LocalVariable && src2.Type == OperandType.Constant) ||
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(src2.Type == OperandType.LocalVariable && src1.Type == OperandType.Constant))
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{
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if (src1.Type == OperandType.LocalVariable)
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{
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operation = Utils.FindLastOperation(src1, block).AsgOp as Operation;
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}
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else
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{
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operation = Utils.FindLastOperation(src2, block).AsgOp as Operation;
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}
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if (operation == null || operation.Inst != Instruction.Add)
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{
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return -1;
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}
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}
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for (int index = 0; index < operation.SourcesCount; index++)
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{
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Operand source = operation.GetSource(index);
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int storageIndex = GetStorageIndex(source, sbStart, sbEnd);
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if (storageIndex != -1)
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{
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return storageIndex;
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}
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}
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return -1;
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}
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private static int GetStorageIndex(Operand operand, int sbStart, int sbEnd)
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{
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if (operand.Type == OperandType.ConstantBuffer)
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{
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int slot = operand.GetCbufSlot();
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int offset = operand.GetCbufOffset();
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if (slot == 0 && offset >= sbStart && offset < sbEnd)
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{
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int storageIndex = (offset - sbStart) / StorageDescSize;
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return storageIndex;
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}
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}
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return -1;
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}
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}
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} |