1 //===-- AMDGPU.h - MachineFunction passes hw codegen --------------*- C++ -*-=// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 /// \file 9 //===----------------------------------------------------------------------===// 10 11 #ifndef LLVM_LIB_TARGET_R600_AMDGPU_H 12 #define LLVM_LIB_TARGET_R600_AMDGPU_H 13 14 #include "llvm/Support/TargetRegistry.h" 15 #include "llvm/Target/TargetMachine.h" 16 17 namespace llvm { 18 19 class AMDGPUInstrPrinter; 20 class AMDGPUSubtarget; 21 class AMDGPUTargetMachine; 22 class FunctionPass; 23 struct MachineSchedContext; 24 class MCAsmInfo; 25 class raw_ostream; 26 class ScheduleDAGInstrs; 27 class Target; 28 class TargetMachine; 29 30 // R600 Passes 31 FunctionPass *createR600VectorRegMerger(TargetMachine &tm); 32 FunctionPass *createR600TextureIntrinsicsReplacer(); 33 FunctionPass *createR600ExpandSpecialInstrsPass(TargetMachine &tm); 34 FunctionPass *createR600EmitClauseMarkers(); 35 FunctionPass *createR600ClauseMergePass(TargetMachine &tm); 36 FunctionPass *createR600Packetizer(TargetMachine &tm); 37 FunctionPass *createR600ControlFlowFinalizer(TargetMachine &tm); 38 FunctionPass *createAMDGPUCFGStructurizerPass(); 39 40 // SI Passes 41 FunctionPass *createSITypeRewriter(); 42 FunctionPass *createSIAnnotateControlFlowPass(); 43 FunctionPass *createSIFoldOperandsPass(); 44 FunctionPass *createSILowerI1CopiesPass(); 45 FunctionPass *createSIShrinkInstructionsPass(); 46 FunctionPass *createSILoadStoreOptimizerPass(TargetMachine &tm); 47 FunctionPass *createSILowerControlFlowPass(TargetMachine &tm); 48 FunctionPass *createSIFixControlFlowLiveIntervalsPass(); 49 FunctionPass *createSIFixSGPRCopiesPass(); 50 FunctionPass *createSIFixSGPRLiveRangesPass(); 51 FunctionPass *createSICodeEmitterPass(formatted_raw_ostream &OS); 52 FunctionPass *createSIInsertWaits(TargetMachine &tm); 53 54 ScheduleDAGInstrs *createSIMachineScheduler(MachineSchedContext *C); 55 56 ModulePass *createAMDGPUAnnotateKernelFeaturesPass(); 57 void initializeAMDGPUAnnotateKernelFeaturesPass(PassRegistry &); 58 extern char &AMDGPUAnnotateKernelFeaturesID; 59 60 void initializeSIFoldOperandsPass(PassRegistry &); 61 extern char &SIFoldOperandsID; 62 63 void initializeSIFixSGPRCopiesPass(PassRegistry &); 64 extern char &SIFixSGPRCopiesID; 65 66 void initializeSILowerI1CopiesPass(PassRegistry &); 67 extern char &SILowerI1CopiesID; 68 69 void initializeSILoadStoreOptimizerPass(PassRegistry &); 70 extern char &SILoadStoreOptimizerID; 71 72 // Passes common to R600 and SI 73 FunctionPass *createAMDGPUPromoteAlloca(const AMDGPUSubtarget &ST); 74 Pass *createAMDGPUStructurizeCFGPass(); 75 FunctionPass *createAMDGPUISelDag(TargetMachine &tm); 76 ModulePass *createAMDGPUAlwaysInlinePass(); 77 ModulePass *createAMDGPUOpenCLImageTypeLoweringPass(); 78 FunctionPass *createAMDGPUAnnotateUniformValues(); 79 80 void initializeSIFixControlFlowLiveIntervalsPass(PassRegistry&); 81 extern char &SIFixControlFlowLiveIntervalsID; 82 83 void initializeSIFixSGPRLiveRangesPass(PassRegistry&); 84 extern char &SIFixSGPRLiveRangesID; 85 86 void initializeAMDGPUAnnotateUniformValuesPass(PassRegistry&); 87 extern char &AMDGPUAnnotateUniformValuesPassID; 88 89 void initializeSIAnnotateControlFlowPass(PassRegistry&); 90 extern char &SIAnnotateControlFlowPassID; 91 92 extern Target TheAMDGPUTarget; 93 extern Target TheGCNTarget; 94 95 namespace AMDGPU { 96 enum TargetIndex { 97 TI_CONSTDATA_START, 98 TI_SCRATCH_RSRC_DWORD0, 99 TI_SCRATCH_RSRC_DWORD1, 100 TI_SCRATCH_RSRC_DWORD2, 101 TI_SCRATCH_RSRC_DWORD3 102 }; 103 } 104 105 } // End namespace llvm 106 107 namespace ShaderType { 108 enum Type { 109 PIXEL = 0, 110 VERTEX = 1, 111 GEOMETRY = 2, 112 COMPUTE = 3 113 }; 114 } 115 116 /// OpenCL uses address spaces to differentiate between 117 /// various memory regions on the hardware. On the CPU 118 /// all of the address spaces point to the same memory, 119 /// however on the GPU, each address space points to 120 /// a separate piece of memory that is unique from other 121 /// memory locations. 122 namespace AMDGPUAS { 123 enum AddressSpaces : unsigned { 124 PRIVATE_ADDRESS = 0, ///< Address space for private memory. 125 GLOBAL_ADDRESS = 1, ///< Address space for global memory (RAT0, VTX0). 126 CONSTANT_ADDRESS = 2, ///< Address space for constant memory 127 LOCAL_ADDRESS = 3, ///< Address space for local memory. 128 FLAT_ADDRESS = 4, ///< Address space for flat memory. 129 REGION_ADDRESS = 5, ///< Address space for region memory. 130 PARAM_D_ADDRESS = 6, ///< Address space for direct addressible parameter memory (CONST0) 131 PARAM_I_ADDRESS = 7, ///< Address space for indirect addressible parameter memory (VTX1) 132 133 // Do not re-order the CONSTANT_BUFFER_* enums. Several places depend on this 134 // order to be able to dynamically index a constant buffer, for example: 135 // 136 // ConstantBufferAS = CONSTANT_BUFFER_0 + CBIdx 137 138 CONSTANT_BUFFER_0 = 8, 139 CONSTANT_BUFFER_1 = 9, 140 CONSTANT_BUFFER_2 = 10, 141 CONSTANT_BUFFER_3 = 11, 142 CONSTANT_BUFFER_4 = 12, 143 CONSTANT_BUFFER_5 = 13, 144 CONSTANT_BUFFER_6 = 14, 145 CONSTANT_BUFFER_7 = 15, 146 CONSTANT_BUFFER_8 = 16, 147 CONSTANT_BUFFER_9 = 17, 148 CONSTANT_BUFFER_10 = 18, 149 CONSTANT_BUFFER_11 = 19, 150 CONSTANT_BUFFER_12 = 20, 151 CONSTANT_BUFFER_13 = 21, 152 CONSTANT_BUFFER_14 = 22, 153 CONSTANT_BUFFER_15 = 23, 154 ADDRESS_NONE = 24, ///< Address space for unknown memory. 155 LAST_ADDRESS = ADDRESS_NONE, 156 157 // Some places use this if the address space can't be determined. 158 UNKNOWN_ADDRESS_SPACE = ~0u 159 }; 160 161 } // namespace AMDGPUAS 162 163 #endif 164