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